FoxIntermediateBackend.Mod 539 KB

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  1. MODULE FoxIntermediateBackend; (** AUTHOR ""; PURPOSE ""; *)
  2. IMPORT Basic := FoxBasic, SyntaxTree := FoxSyntaxTree, SemanticChecker := FoxSemanticChecker, Backend := FoxBackend, Global := FoxGlobal,
  3. Scanner := FoxScanner, IntermediateCode := FoxIntermediateCode, Sections := FoxSections, BinaryCode := FoxBinaryCode, Printout := FoxPrintout,
  4. SYSTEM, Diagnostics, Strings, Options, Streams, Compiler, Formats := FoxFormats, SymbolFileFormat := FoxTextualSymbolFile, D := Debugging,
  5. FingerPrinter := FoxFingerPrinter, StringPool;
  6. CONST
  7. (* operand modes *)
  8. ModeUndefined = 0;
  9. ModeReference = 1;
  10. ModeValue = 2;
  11. (* heap data offsets *)
  12. ArrayDimTable = 3; (* dimension table in dyn arrays *)
  13. (* math array offsets *)
  14. MathPtrOffset=0;
  15. MathAdrOffset=1;
  16. MathFlagsOffset=2;
  17. MathDimOffset=3;
  18. MathElementSizeOffset=4;
  19. MathLenOffset=5;
  20. MathIncrOffset=6;
  21. SysDataArrayOffset* = 0; (* array offset in system bl ock, for 32 byte alignment *)
  22. ArrDataArrayOffset*= 16*8; (* 16 bytes array offset in array block, to be compatible with the GC scheme of POINTER TO ARRAY OF ... *)
  23. TensorFlag* = 0; (* flag indicating a tensor array *)
  24. RangeFlag* = 1; (* flag indicating a range, e.g. an array derived from A[..,..] *)
  25. StackFlag* = 2; (* flag indicates temporary result *)
  26. StaticFlag* = 1; (* flag indicating a static array, may not be reallocated *)
  27. (** compiler generated traps *)
  28. WithTrap* = 1; (* generated when a WITH statement fails *)
  29. CaseTrap* = 2; (* generated when a case statement without else block fails *)
  30. ReturnTrap* = 3;
  31. TypeEqualTrap* = 5;
  32. TypeCheckTrap* = 6;
  33. IndexCheckTrap* = 7; (* generated when index is out of bounds or range is invalid *)
  34. AssertTrap* = 8; (* generated when an assert fails *)
  35. ArraySizeTrap* = 9;
  36. ArrayFormTrap*=10; (* indicates that array cannot be (re-)allocated since shape, type or size does not match *)
  37. SetElementTrap*=11; (* indicates that a set element is out of MIN(SET)...MAX(SET) *)
  38. NegativeDivisorTrap*=12;
  39. NoReturnTrap*=16; (* indicates that a procedure marked no return did return *)
  40. NilPointerTrap*=17; (* indicates that a nil pointer was being dereferenced *)
  41. Trace = FALSE;
  42. TraceRegisterUsageCount=TRUE;
  43. ArrayAlignment = 8*8; (* first array element of ArrayBlock and first data element of SystemBlock must be aligned to 0 MOD ArrayAlignment *)
  44. (** system call numbers *)
  45. NumberSystemCalls* = 12;
  46. SysNewRec* = 0; SysNewArr* = 1; SysNewSys* = 2; SysCaseTable* = 3; SysProcAddr* = 4;
  47. SysLock* = 5; SysUnlock* = 6; SysStart* = 7; SysAwait* = 8; SysInterfaceLookup* = 9;
  48. SysRegisterInterface* = 10; SysGetProcedure* = 11;
  49. DefaultRuntimeModuleName ="Runtime";
  50. DefaultTraceModuleName ="KernelLog";
  51. ChannelModuleName = "Channels";
  52. suppressModuleRegistration=FALSE;
  53. NonPointer = -1; (* special pointer values *)
  54. NoType = 0; (* special type info values *)
  55. LhsIsPointer = 0; (* for the operator kind *)
  56. RhsIsPointer = 1;
  57. (* priority values, lower means higher priority *)
  58. EntryPriority=-4;
  59. FirstPriority=-3;
  60. InitPriority=-2;
  61. ExitPriority=-1;
  62. StrictChecks = FALSE;
  63. BasePointerTypeSize = 5;
  64. BaseArrayTypeSize = BasePointerTypeSize + 3;
  65. LengthOffset = BasePointerTypeSize + 0;
  66. DataOffset = BasePointerTypeSize + 1;
  67. DescriptorOffset = BasePointerTypeSize + 2;
  68. BaseRecordTypeSize = BasePointerTypeSize + 2;
  69. ActionOffset = BasePointerTypeSize + 0;
  70. MonitorOffset = BasePointerTypeSize + 1;
  71. BaseObjectTypeSize = BaseRecordTypeSize;
  72. ActionTypeSize = 3;
  73. MonitorTypeSize = 7;
  74. ProcessorOffset = BaseObjectTypeSize + 1;
  75. StackLimitOffset* = BaseObjectTypeSize + 3;
  76. QuantumOffset = BaseObjectTypeSize + 4;
  77. (* flags for optimizations with small matricies and vectors (Alexey Morozov) *)
  78. SmallMatrixFlag = 3; (* flag for identification of a small matrix *)
  79. SmallVectorFlag = 3; (* flag for identification of a small vector *)
  80. Size2Flag = 4; (* size = 2 *)
  81. Size3Flag = 5; (* size = 3 *)
  82. Size4Flag = 6; (* size = 4 *)
  83. Size5Flag = 7; (* size = 5 *)
  84. Size6Flag = 8; (* size = 6 *)
  85. Size7Flag = 9; (* size = 7 *)
  86. Size8Flag = 10; (* size = 8 *)
  87. ReflectionSupport = TRUE;
  88. TYPE
  89. SupportedInstructionProcedure* = PROCEDURE {DELEGATE} (CONST instr: IntermediateCode.Instruction; VAR moduleName,procedureName: ARRAY OF CHAR): BOOLEAN;
  90. SupportedImmediateProcedure* = PROCEDURE {DELEGATE} (CONST op: IntermediateCode.Operand): BOOLEAN;
  91. Operand = RECORD
  92. mode: SHORTINT;
  93. op: IntermediateCode.Operand;
  94. tag: IntermediateCode.Operand;
  95. extra: IntermediateCode.Operand; (* stores the step size of an array range *)
  96. dimOffset: LONGINT;
  97. END;
  98. Fixup= POINTER TO RECORD
  99. pc: LONGINT;
  100. nextFixup: Fixup;
  101. END;
  102. WriteBackCall = POINTER TO RECORD
  103. call: SyntaxTree.ProcedureCallDesignator;
  104. next: WriteBackCall;
  105. END;
  106. Label= OBJECT
  107. VAR
  108. fixups: Fixup;
  109. section: IntermediateCode.Section;
  110. pc: LONGINT;
  111. PROCEDURE &InitLabel(section: IntermediateCode.Section);
  112. BEGIN
  113. SELF.section := section; pc := -1;
  114. END InitLabel;
  115. PROCEDURE Resolve(pc: LONGINT);
  116. VAR at: LONGINT;
  117. BEGIN
  118. SELF.pc := pc;
  119. WHILE(fixups # NIL) DO
  120. at := fixups.pc;
  121. section.PatchAddress(at,pc);
  122. fixups := fixups.nextFixup;
  123. END;
  124. END Resolve;
  125. PROCEDURE AddFixup(at: LONGINT);
  126. VAR fixup: Fixup;
  127. BEGIN
  128. ASSERT(pc=-1);
  129. NEW(fixup); fixup.pc := at; fixup.nextFixup := fixups; fixups := fixup;
  130. END AddFixup;
  131. END Label;
  132. ConditionalBranch = PROCEDURE {DELEGATE}(label: Label; op1,op2: IntermediateCode.Operand);
  133. DeclarationVisitor =OBJECT(SyntaxTree.Visitor)
  134. VAR
  135. backend: IntermediateBackend;
  136. implementationVisitor: ImplementationVisitor;
  137. meta: MetaDataGenerator;
  138. system: Global.System;
  139. currentScope: SyntaxTree.Scope;
  140. module: Sections.Module;
  141. moduleSelf: SyntaxTree.Variable;
  142. dump: BOOLEAN;
  143. forceModuleBody: BOOLEAN;
  144. addressType: IntermediateCode.Type;
  145. PROCEDURE & Init(system: Global.System; implementationVisitor: ImplementationVisitor; backend: IntermediateBackend; forceModuleBody, dump: BOOLEAN);
  146. BEGIN
  147. currentScope := NIL; module := NIL; moduleSelf := NIL;
  148. SELF.system := system; SELF.implementationVisitor := implementationVisitor;
  149. SELF.dump := dump;
  150. SELF.backend := backend;
  151. SELF.forceModuleBody := forceModuleBody;
  152. addressType := IntermediateCode.GetType(system,system.addressType)
  153. END Init;
  154. PROCEDURE Error(position: LONGINT; CONST s: ARRAY OF CHAR);
  155. BEGIN
  156. backend.Error(module.module.sourceName, position, Diagnostics.Invalid, s);
  157. END Error;
  158. PROCEDURE Type(x: SyntaxTree.Type);
  159. BEGIN
  160. x.Accept(SELF);
  161. END Type;
  162. (** types **)
  163. PROCEDURE VisitBasicType(x: SyntaxTree.BasicType);
  164. BEGIN (* no code emission *) END VisitBasicType;
  165. PROCEDURE VisitCharacterType(x: SyntaxTree.CharacterType);
  166. BEGIN (* no code emission *) END VisitCharacterType;
  167. PROCEDURE VisitIntegerType(x: SyntaxTree.IntegerType);
  168. BEGIN (* no code emission *) END VisitIntegerType;
  169. PROCEDURE VisitFloatType(x: SyntaxTree.FloatType);
  170. BEGIN (* no code emission *) END VisitFloatType;
  171. PROCEDURE VisitComplexType(x: SyntaxTree.ComplexType);
  172. BEGIN (* no code emission *) END VisitComplexType;
  173. PROCEDURE VisitQualifiedType(x: SyntaxTree.QualifiedType);
  174. VAR type: SyntaxTree.Type;
  175. BEGIN (* no further traversal to x.resolved necessary since type descriptor and code will be inserted at "original" position ? *)
  176. type := x.resolved;
  177. IF (type.typeDeclaration # NIL) & (type.typeDeclaration.scope.ownerModule # module.module) THEN
  178. meta.CheckTypeDeclaration(type);
  179. END;
  180. END VisitQualifiedType;
  181. PROCEDURE VisitStringType(x: SyntaxTree.StringType);
  182. BEGIN (* no code emission *) END VisitStringType;
  183. PROCEDURE VisitArrayRangeType(x: SyntaxTree.RangeType);
  184. BEGIN (* no code emission *)
  185. END VisitArrayRangeType;
  186. PROCEDURE VisitArrayType(x: SyntaxTree.ArrayType);
  187. BEGIN (* no code emission *) END VisitArrayType;
  188. PROCEDURE VisitMathArrayType(x: SyntaxTree.MathArrayType);
  189. BEGIN
  190. meta.CheckTypeDeclaration(x);
  191. END VisitMathArrayType;
  192. PROCEDURE VisitPointerType(x: SyntaxTree.PointerType);
  193. BEGIN
  194. meta.CheckTypeDeclaration(x);
  195. (* base type must not be visited => will be done via record type declaration, otherwise is done twice ! *)
  196. END VisitPointerType;
  197. PROCEDURE VisitRecordType(x: SyntaxTree.RecordType);
  198. VAR name: ARRAY 256 OF CHAR; td: SyntaxTree.TypeDeclaration;
  199. BEGIN (* no code emission *)
  200. meta.CheckTypeDeclaration(x);
  201. IF (x.recordScope.ownerModule = module.module) & (x.isObject) THEN
  202. IF x.pointerType.typeDeclaration # NIL THEN
  203. td := x.pointerType.typeDeclaration
  204. ELSE
  205. td := x.typeDeclaration
  206. END;
  207. Global.GetSymbolName(td,name);
  208. (* code section for object *)
  209. END;
  210. Scope(x.recordScope);
  211. END VisitRecordType;
  212. PROCEDURE HasFlag(modifiers: SyntaxTree.Modifier; CONST name: ARRAY OF CHAR): BOOLEAN;
  213. VAR this: SyntaxTree.Modifier; id: SyntaxTree.Identifier;
  214. BEGIN
  215. this := modifiers; id := SyntaxTree.NewIdentifier(name);
  216. WHILE (this # NIL) & (this.identifier# id) DO
  217. this := this.nextModifier;
  218. END;
  219. RETURN this # NIL
  220. END HasFlag;
  221. PROCEDURE VisitCellType(x: SyntaxTree.CellType);
  222. VAR port,adr: LONGINT; symbol: IntermediateCode.Section; op: IntermediateCode.Operand; capabilities: SET;
  223. (*
  224. PROCEDURE CreatePorts(type: SyntaxTree.Type; len: LONGINT);
  225. VAR i,len2: LONGINT; baseType: SyntaxTree.Type;
  226. BEGIN
  227. FOR i := 0 TO len-1 DO
  228. IF SemanticChecker.IsStaticArray(type, baseType, len2) THEN
  229. CreatePorts(baseType, len*len2);
  230. ELSIF IsSemiDynamicArray(type) THEN
  231. port := MIN(LONGINT); (* unknown port address from here on *)
  232. ELSE
  233. IntermediateCode.InitImmediate(op,addressType,adr);
  234. symbol.Emit(Data(-1,op));
  235. INC(port);
  236. END;
  237. END;
  238. END CreatePorts;
  239. *)
  240. BEGIN
  241. IF backend.cellsAreObjects THEN meta.CheckTypeDeclaration(x) END;
  242. (*
  243. IF (x.cellScope.ownerModule = module.module) THEN
  244. td := x.typeDeclaration;
  245. Global.GetSymbolSegmentedName(td,name);
  246. (* code section for object *)
  247. END;
  248. *)
  249. (* unnecessary to generate space for ports: already represented as hidden variables *)
  250. (*
  251. port := 0;
  252. parameter := x.firstParameter;
  253. WHILE parameter # NIL DO
  254. type := parameter.type.resolved;
  255. Global.GetSymbolSegmentedName(parameter,name);
  256. symbol := implementationVisitor.NewSection(module.allSections, Sections.ConstSection,name,parameter,dump);
  257. IF port >= 0 THEN
  258. (*! could be used for optimization: query value here ???
  259. parameter.SetResolved(SyntaxTree.NewIntegerValue(-1, port));
  260. *)
  261. END;
  262. CreatePorts(type, 1);
  263. IF backend.cellsAreObjects THEN
  264. IF IsStaticArray(parameter.type.resolved) THEN
  265. Error(parameter.position, "static arrays of ports are currently not implemented, please use a property (array property of port)");
  266. END;
  267. END;
  268. parameter := parameter.nextParameter;
  269. END;
  270. *)
  271. capabilities := {};
  272. IF HasFlag(x.modifiers, Global.StringFloatingPoint) THEN INCL(capabilities, Global.FloatingPointCapability) END;
  273. IF HasFlag(x.modifiers, Global.StringVector) THEN INCL(capabilities, Global.VectorCapability) END;
  274. backend.SetCapabilities(capabilities);
  275. Scope(x.cellScope);
  276. END VisitCellType;
  277. PROCEDURE VisitProcedureType(x: SyntaxTree.ProcedureType);
  278. BEGIN (* no code emission *) END VisitProcedureType;
  279. PROCEDURE VisitEnumerationType(x: SyntaxTree.EnumerationType);
  280. BEGIN (* no code emission, exported enumeration type values should be included in symbol file *)
  281. END VisitEnumerationType;
  282. (* symbols *)
  283. PROCEDURE VisitProcedure(x: SyntaxTree.Procedure);
  284. BEGIN
  285. Procedure(x);
  286. END VisitProcedure;
  287. PROCEDURE VisitOperator(x: SyntaxTree.Operator);
  288. BEGIN
  289. Procedure(x);
  290. END VisitOperator;
  291. PROCEDURE VisitVariable(x: SyntaxTree.Variable);
  292. VAR name: Basic.SegmentedName; irv: IntermediateCode.Section; align, i, dim: LONGINT;
  293. size, addressSize: LONGINT; lastUpdated: LONGINT; imm: IntermediateCode.Operand;
  294. PROCEDURE TypeNeedsInitialization(type: SyntaxTree.Type): BOOLEAN;
  295. BEGIN
  296. type := type.resolved;
  297. IF type IS SyntaxTree.RecordType THEN
  298. IF ScopeNeedsInitialization(type(SyntaxTree.RecordType).recordScope) THEN RETURN TRUE END;
  299. ELSIF (type IS SyntaxTree.ArrayType) THEN
  300. IF type(SyntaxTree.ArrayType).form = SyntaxTree.Static THEN
  301. IF TypeNeedsInitialization(type(SyntaxTree.ArrayType).arrayBase) THEN RETURN TRUE END;
  302. END;
  303. ELSIF type IS SyntaxTree.MathArrayType THEN
  304. WITH type: SyntaxTree.MathArrayType DO
  305. IF type.form = SyntaxTree.Open THEN
  306. RETURN TRUE
  307. ELSIF type.form = SyntaxTree.Static THEN
  308. IF TypeNeedsInitialization(type.arrayBase) THEN RETURN TRUE END;
  309. END;
  310. END;
  311. END;
  312. RETURN FALSE
  313. END TypeNeedsInitialization;
  314. PROCEDURE ScopeNeedsInitialization(scope: SyntaxTree.Scope): BOOLEAN;
  315. VAR variable: SyntaxTree.Variable;
  316. BEGIN
  317. variable := scope.firstVariable;
  318. WHILE variable # NIL DO
  319. IF TypeNeedsInitialization(variable.type) THEN RETURN TRUE END;
  320. IF variable.initializer # NIL THEN RETURN TRUE END;
  321. variable := variable.nextVariable;
  322. END;
  323. RETURN FALSE
  324. END ScopeNeedsInitialization;
  325. PROCEDURE SingleInitialize(CONST op: IntermediateCode.Operand; offset: LONGINT);
  326. BEGIN
  327. size := offset - lastUpdated;
  328. IF size > 0 THEN
  329. irv.Emit(Reserve(x.position,size));
  330. END;
  331. irv.Emit(Data(x.position, op));
  332. lastUpdated := offset + ToMemoryUnits(system, op.type.sizeInBits);
  333. END SingleInitialize;
  334. PROCEDURE Initialize(type: SyntaxTree.Type; initializer: SyntaxTree.Expression; offset: LONGINT);
  335. VAR op: Operand; baseType: SyntaxTree.Type; variable: SyntaxTree.Variable;
  336. BEGIN
  337. IF type = NIL THEN RETURN ELSE type := type.resolved END;
  338. WITH type: SyntaxTree.RecordType DO
  339. baseType := type.baseType;
  340. IF baseType # NIL THEN
  341. baseType := baseType.resolved;
  342. IF baseType IS SyntaxTree.PointerType THEN
  343. baseType := baseType(SyntaxTree.PointerType).pointerBase
  344. END;
  345. Initialize(baseType,NIL, offset);
  346. END;
  347. variable := type.recordScope.firstVariable;
  348. WHILE variable # NIL DO
  349. Initialize(variable.type, variable.initializer, offset+ToMemoryUnits(system,variable.offsetInBits));
  350. variable := variable.nextVariable
  351. END;
  352. | type: SyntaxTree.ArrayType DO
  353. IF type.form = SyntaxTree.Static THEN
  354. baseType := type.arrayBase;
  355. IF TypeNeedsInitialization(baseType) THEN
  356. size := ToMemoryUnits(system,system.AlignedSizeOf(baseType));
  357. FOR i := 0 TO type.staticLength-1 DO
  358. Initialize(baseType,NIL,offset+i*size);
  359. END;
  360. END;
  361. END;
  362. | type: SyntaxTree.MathArrayType DO
  363. IF type.form = SyntaxTree.Open THEN
  364. dim := DynamicDim(type);
  365. baseType := SemanticChecker.ArrayBase(type,dim);
  366. imm := IntermediateCode.Immediate(addressType,dim);
  367. SingleInitialize(imm, offset + ToMemoryUnits(system, addressType.sizeInBits)* MathDimOffset);
  368. IF baseType = NIL THEN size := 0 ELSE size := system.AlignedSizeOf(baseType) END;
  369. imm := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,size));
  370. SingleInitialize(imm, offset + ToMemoryUnits(system, addressType.sizeInBits)* MathElementSizeOffset);
  371. (* flags remain empty (=0) for open array *)
  372. ELSIF type.form = SyntaxTree.Static THEN
  373. baseType := type.arrayBase;
  374. IF TypeNeedsInitialization(baseType) THEN
  375. size := ToMemoryUnits(system,system.AlignedSizeOf(baseType));
  376. ASSERT(type.staticLength < 1024*1024*1024);
  377. FOR i := 0 TO type.staticLength-1 DO
  378. Initialize(baseType,NIL,offset+i*size);
  379. END;
  380. END;
  381. END;
  382. ELSE
  383. IF initializer # NIL THEN
  384. implementationVisitor.Evaluate(initializer, op);
  385. SingleInitialize(op.op, offset);
  386. END;
  387. END;
  388. END Initialize;
  389. BEGIN
  390. IF x.externalName # NIL THEN RETURN END;
  391. IF (currentScope IS SyntaxTree.ModuleScope) OR (currentScope IS SyntaxTree.CellScope) & ~backend.cellsAreObjects THEN
  392. (* code section for variable *)
  393. Global.GetSymbolSegmentedName(x,name);
  394. irv := implementationVisitor.NewSection(module.allSections, Sections.VarSection, name,x,dump);
  395. irv.SetExported(IsExported(x));
  396. irv.SetOffset(ToMemoryUnits(system,x.offsetInBits));
  397. IF (currentScope IS SyntaxTree.CellScope) & IsSemiDynamicArray(x.type) THEN
  398. irv.Emit(Reserve(x.position, ToMemoryUnits(system, system.addressSize)));
  399. Basic.SuffixSegmentedName (name, Basic.MakeString ("@len"));
  400. irv := implementationVisitor.NewSection(module.allSections, Sections.VarSection, name,NIL,dump);
  401. FOR i := 0 TO DynamicDim(x.type)-1 DO
  402. irv.Emit(Reserve(x.position, ToMemoryUnits(system, system.addressSize)));
  403. END;
  404. ELSE
  405. lastUpdated:= 0;
  406. IF implementationVisitor.newObjectFile & ((x.initializer # NIL) OR TypeNeedsInitialization(x.type)) THEN
  407. Initialize(x.type, x.initializer, 0);
  408. END;
  409. size := ToMemoryUnits(system,system.SizeOf(x.type)) - lastUpdated;
  410. IF size > 0 THEN
  411. irv.Emit(Reserve(x.position,size));
  412. END;
  413. IF ~x.fixed THEN
  414. align := CommonAlignment(x.alignment, ToMemoryUnits(system, system.AlignmentOf(system.variableAlignment, x.type)));
  415. ELSE
  416. align := x.alignment;
  417. END;
  418. irv.SetPositionOrAlignment(x.fixed, align);
  419. meta.CheckTypeDeclaration(x.type);
  420. END;
  421. ELSIF currentScope IS SyntaxTree.RecordScope THEN
  422. ELSIF currentScope IS SyntaxTree.ProcedureScope THEN
  423. END;
  424. (* do not call Type(x.type) here as this must already performed in the type declaration section ! *)
  425. END VisitVariable;
  426. PROCEDURE VisitParameter(x: SyntaxTree.Parameter);
  427. VAR name: Basic.SegmentedName; irv, irl: IntermediateCode.Section; op: Operand; dim: LONGINT;
  428. BEGIN
  429. HALT(100);
  430. (*
  431. ASSERT(currentScope.outerScope IS SyntaxTree.CellScope);
  432. (* code section for variable *)
  433. Global.GetSymbolSegmentedName(x,name);
  434. irv := implementationVisitor.NewSection(module.allSections, Sections.VarSection, name,x,dump);
  435. irv.SetPositionOrAlignment(x.fixed, x.alignment);
  436. (*
  437. irv.SetOffset(ToMemoryUnits(system,x.offsetInBits));
  438. *)
  439. IF IsSemiDynamicArray(x.type) & ~backend.cellsAreObjects THEN
  440. HALT(100);
  441. irv.Emit(Reserve(x.position, system.addressSize));
  442. Basic.SuffixSegmentedName (name, Basic.MakeString ("@len"));
  443. irl := implementationVisitor.NewSection(module.allSections, Sections.VarSection, name,x,dump);
  444. irl.Emit(Reserve(x.position, DynamicDim(x.type) * system.addressSize));
  445. ELSIF x.defaultValue = NIL THEN
  446. irv.Emit(Reserve(x.position,ToMemoryUnits(system,system.SizeOf(x.type))))
  447. ELSE
  448. implementationVisitor.inData := TRUE;
  449. implementationVisitor.Evaluate(x.defaultValue, op);
  450. irv.Emit(Data(x.position,op.op));
  451. implementationVisitor.inData := FALSE;
  452. END;
  453. meta.CheckTypeDeclaration(x.type);
  454. *)
  455. END VisitParameter;
  456. PROCEDURE VisitTypeDeclaration(x: SyntaxTree.TypeDeclaration);
  457. BEGIN
  458. Type(x.declaredType); (* => code in objects *)
  459. IF ~(x.declaredType IS SyntaxTree.QualifiedType) & (x.declaredType.resolved IS SyntaxTree.PointerType) THEN
  460. Type(x.declaredType.resolved(SyntaxTree.PointerType).pointerBase);
  461. END;
  462. END VisitTypeDeclaration;
  463. PROCEDURE VisitConstant(x: SyntaxTree.Constant);
  464. BEGIN
  465. IF (SyntaxTree.Public * x.access # {}) THEN
  466. implementationVisitor.VisitConstant(x);
  467. END;
  468. END VisitConstant;
  469. PROCEDURE Scope(x: SyntaxTree.Scope);
  470. VAR procedure: SyntaxTree.Procedure;
  471. constant: SyntaxTree.Constant;
  472. variable: SyntaxTree.Variable;
  473. prevScope: SyntaxTree.Scope; typeDeclaration: SyntaxTree.TypeDeclaration;
  474. BEGIN
  475. prevScope := currentScope;
  476. currentScope := x;
  477. (* constants treated in implementation visitor *)
  478. typeDeclaration := x.firstTypeDeclaration;
  479. WHILE typeDeclaration # NIL DO
  480. VisitTypeDeclaration(typeDeclaration);
  481. typeDeclaration := typeDeclaration.nextTypeDeclaration;
  482. END;
  483. variable := x.firstVariable;
  484. WHILE variable # NIL DO
  485. VisitVariable(variable);
  486. variable := variable.nextVariable;
  487. END;
  488. procedure := x.firstProcedure;
  489. WHILE procedure # NIL DO
  490. VisitProcedure(procedure);
  491. procedure := procedure.nextProcedure;
  492. END;
  493. constant := x.firstConstant;
  494. WHILE constant # NIL DO
  495. VisitConstant(constant);
  496. constant := constant.nextConstant;
  497. END;
  498. currentScope := prevScope;
  499. END Scope;
  500. PROCEDURE Parameters(first: SyntaxTree.Parameter);
  501. VAR parameter: SyntaxTree.Parameter;
  502. BEGIN
  503. parameter := first;
  504. WHILE parameter # NIL DO
  505. VisitParameter(parameter);
  506. parameter := parameter.nextParameter;
  507. END;
  508. END Parameters;
  509. PROCEDURE Procedure(x: SyntaxTree.Procedure);
  510. VAR scope: SyntaxTree.ProcedureScope;
  511. prevScope: SyntaxTree.Scope;
  512. inline, finalizer: BOOLEAN;
  513. procedureType: SyntaxTree.ProcedureType;
  514. pc: LONGINT;
  515. stackSize: LONGINT;
  516. name,baseObject: Basic.SegmentedName; ir: IntermediateCode.Section;
  517. null,size,src,dest,fp,res: IntermediateCode.Operand;
  518. cc: LONGINT;
  519. cellType: SyntaxTree.CellType;
  520. registerNumber: LONGINT;
  521. registerClass: IntermediateCode.RegisterClass;
  522. type: IntermediateCode.Type;
  523. formalParameter: SyntaxTree.Parameter;
  524. recordType: SyntaxTree.RecordType;
  525. isModuleBody: BOOLEAN;
  526. PROCEDURE Signature;
  527. VAR parameter: SyntaxTree.Parameter; procedureType: SyntaxTree.ProcedureType; returnType : SyntaxTree.Type;
  528. BEGIN
  529. procedureType := x.type(SyntaxTree.ProcedureType);
  530. returnType := procedureType.returnType;
  531. IF returnType # NIL THEN
  532. meta.CheckTypeDeclaration(returnType)
  533. END;
  534. parameter := procedureType.firstParameter;
  535. WHILE parameter # NIL DO
  536. meta.CheckTypeDeclaration(parameter.type); (* we have to re-export a type, i.e. it has to be present in the list of symbols *)
  537. parameter := parameter.nextParameter;
  538. END;
  539. END Signature;
  540. PROCEDURE CheckIntegerValue(x: SyntaxTree.Expression; VAR value: LONGINT): BOOLEAN;
  541. VAR result: BOOLEAN;
  542. BEGIN
  543. result := FALSE;
  544. IF x = SyntaxTree.invalidExpression THEN
  545. ELSIF (x.resolved # NIL) & (x.resolved IS SyntaxTree.IntegerValue) THEN
  546. result := TRUE;
  547. value := x.resolved(SyntaxTree.IntegerValue).value;
  548. ELSE
  549. Error(x.position,"expression is not an integer constant");
  550. END;
  551. RETURN result;
  552. END CheckIntegerValue;
  553. PROCEDURE HasValue(modifiers: SyntaxTree.Modifier; CONST name: ARRAY OF CHAR; VAR value: LONGINT): BOOLEAN;
  554. VAR this: SyntaxTree.Modifier; id: SyntaxTree.Identifier;
  555. BEGIN
  556. this := modifiers; id := SyntaxTree.NewIdentifier(name);
  557. WHILE (this # NIL) & (this.identifier # id) DO
  558. this := this.nextModifier;
  559. END;
  560. IF this # NIL THEN
  561. IF this.expression = NIL THEN
  562. Error(this.position,"expected expression value");
  563. ELSIF CheckIntegerValue(this.expression,value) THEN
  564. END;
  565. RETURN TRUE
  566. ELSE RETURN FALSE
  567. END;
  568. END HasValue;
  569. CONST DefaultDataMemorySize=512;
  570. BEGIN
  571. IF x.externalName # NIL THEN RETURN END;
  572. (*
  573. IF Trace & (dump # NIL) THEN dump.String("DeclarationVisitor:Procedure"); dump.Ln END;
  574. *)
  575. (* code section for this procedure *)
  576. scope := x.procedureScope;
  577. prevScope := currentScope;
  578. currentScope := scope;
  579. procedureType := x.type(SyntaxTree.ProcedureType);
  580. isModuleBody := x = module.module.moduleScope.bodyProcedure;
  581. implementationVisitor.temporaries.Init;
  582. implementationVisitor.usedRegisters := NIL;
  583. implementationVisitor.registerUsageCount.Init;
  584. implementationVisitor.GetCodeSectionNameForSymbol(x, name);
  585. IF (scope.body # NIL) & (x.isInline) THEN
  586. inline := TRUE;
  587. ir := implementationVisitor.NewSection(module.allSections, Sections.InlineCodeSection, name,x,dump);
  588. ir.SetExported(IsExported(x));
  589. ELSIF (x.scope # NIL) & (x.scope IS SyntaxTree.CellScope) & (x.scope(SyntaxTree.CellScope).ownerCell.isCellNet)
  590. OR (x.scope # NIL) & (x.scope IS SyntaxTree.ModuleScope) & (x.scope(SyntaxTree.ModuleScope).ownerModule.isCellNet) THEN
  591. IF backend.cellsAreObjects THEN
  592. ir := implementationVisitor.NewSection(module.allSections, Sections.CodeSection, name, x, dump);
  593. ir.SetExported(IsExported(x));
  594. ELSE
  595. RETURN; (* cellnet cannot be compiled for final static hardware *)
  596. END;
  597. ELSIF x = module.module.moduleScope.bodyProcedure THEN
  598. inline := FALSE;
  599. AddBodyCallStub(x);
  600. ir := implementationVisitor.NewSection(module.allSections, Sections.BodyCodeSection, name,x,dump);
  601. ir.SetExported(IsExported(x));
  602. ELSIF (scope.outerScope IS SyntaxTree.CellScope) & (x = scope.outerScope(SyntaxTree.CellScope).bodyProcedure) THEN
  603. inline := FALSE;
  604. cellType := scope.outerScope(SyntaxTree.CellScope).ownerCell;
  605. IF ~HasValue(cellType.modifiers,Global.StringDataMemorySize,stackSize) THEN stackSize := DefaultDataMemorySize END;
  606. AddBodyCallStub(x);
  607. AddStackAllocation(x,stackSize);
  608. ir := implementationVisitor.NewSection(module.allSections,Sections.BodyCodeSection, name,x,dump);
  609. ir.SetExported(IsExported(x));
  610. ELSIF (scope.outerScope IS SyntaxTree.CellScope) & (x.isConstructor) THEN
  611. inline := FALSE;
  612. Parameters(procedureType.firstParameter);
  613. ir := implementationVisitor.NewSection(module.allSections, Sections.CodeSection, name,x,dump);
  614. ir.SetExported(IsExported(x));
  615. ELSE
  616. inline := FALSE;
  617. IF x.isEntry OR x.isExit THEN
  618. ir := implementationVisitor.NewSection(module.allSections, Sections.InitCodeSection, name,x,dump);
  619. ir.SetExported(TRUE);
  620. IF x.isEntry THEN ir.SetPriority(EntryPriority) ELSE ir.SetPriority(ExitPriority) END;
  621. ELSE
  622. ir := implementationVisitor.NewSection(module.allSections, Sections.CodeSection, name,x,dump);
  623. ir.SetExported(IsExported(x) OR SemanticChecker.InMethodTable(x));
  624. END;
  625. END;
  626. cc := procedureType.callingConvention;
  627. IF scope.body # NIL THEN
  628. IF implementationVisitor.emitLabels THEN ir.Emit(LabelInstruction(scope.body.position)) END;
  629. registerNumber := 0;
  630. IF ~inline THEN
  631. IF scope.lastVariable = NIL THEN
  632. stackSize := 0
  633. ELSE
  634. stackSize := scope.lastVariable.offsetInBits;
  635. IF stackSize <0 THEN stackSize := -stackSize END;
  636. Basic.Align(stackSize,system.AlignmentOf(system.parameterAlignment,system.byteType)); (* round up to parameter alignment *)
  637. END;
  638. (*
  639. ir.Emit(Nop(position)); (* placeholder for stack frame check *)
  640. ir.Emit(Nop(position)); (* placeholder for stack frame check (2) *)
  641. *)
  642. IF ~procedureType.noPAF THEN (* no procedure activation frame ! *)
  643. implementationVisitor.EmitEnter(ir,x.position,x,cc,ToMemoryUnits(system,stackSize),registerNumber);
  644. END;
  645. pc := ir.pc-1;
  646. (*
  647. ir.Emit(Nop(position)); (* placeholder for fill *)
  648. *)
  649. IF procedureType.callingConvention # SyntaxTree.OberonCallingConvention THEN
  650. formalParameter := procedureType.lastParameter;
  651. WHILE (formalParameter # NIL) & (registerNumber < system.registerParameters) DO
  652. IF ~PassInRegister(formalParameter) THEN
  653. Error(formalParameter.position,"Calling convention error: cannot be passed as register");
  654. ELSE
  655. IntermediateCode.InitRegisterClass(registerClass, IntermediateCode.Parameter, SHORT(registerNumber));
  656. type := GetType(system, formalParameter.type);
  657. src := IntermediateCode.Register(type, registerClass, implementationVisitor.AcquireRegister(type, registerClass));
  658. IntermediateCode.InitMemory(dest,GetType(system,formalParameter.type),implementationVisitor.fp,ToMemoryUnits(system,formalParameter.offsetInBits));
  659. ir.Emit(Mov(-1,dest, src));
  660. implementationVisitor.ReleaseIntermediateOperand(src);
  661. INC(registerNumber);
  662. formalParameter := formalParameter.prevParameter;
  663. END;
  664. END;
  665. END;
  666. ir.EnterValidPAF;
  667. END;
  668. implementationVisitor.tagsAvailable := procedureType.callingConvention = SyntaxTree.OberonCallingConvention;
  669. implementationVisitor.Body(scope.body,currentScope,ir,isModuleBody);
  670. IF ~inline & ~(procedureType.noPAF) & ~x.isEntry & ~x.isExit THEN
  671. IF scope.lastVariable # NIL THEN
  672. stackSize := scope.lastVariable.offsetInBits;
  673. IF stackSize <0 THEN stackSize := -stackSize END;
  674. Basic.Align(stackSize,system.AlignmentOf(system.parameterAlignment,system.byteType)); (* round up to parameter alignment *)
  675. END;
  676. END;
  677. IF ~inline & ~(procedureType.noPAF) & ~x.isEntry & ~x.isExit THEN
  678. IF ToMemoryUnits(system,stackSize) > 4*1024-256 THEN (* stack frame potentially larger than page size *) (*! get page size from backend *)
  679. (*! unnecessary with new implementation of ENTER -- should potentially be called by backend
  680. IF implementationVisitor.GetRuntimeProcedure(implementationVisitor.runtimeModuleName,"EnsureAllocatedStack",procedure,TRUE) THEN
  681. size := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,stackSize+256));
  682. ir.EmitAt(pc,Push(size));
  683. implementationVisitor.StaticCallOperand(result,procedure);
  684. ir.EmitAt(pc+1,Call(result.op,ProcedureParametersSize(system,procedure)));
  685. END;
  686. *)
  687. END;
  688. ir.EmitAt(pc(*+2*),implementationVisitor.Enter(x.position,cc,ToMemoryUnits(system,stackSize))); (*!!*)
  689. IF stackSize > 0 THEN
  690. IF (stackSize MOD system.addressSize = 0) THEN
  691. null := IntermediateCode.Immediate(addressType,0);
  692. fp := IntermediateCode.Register(addressType,IntermediateCode.GeneralPurposeRegister,IntermediateCode.FP);
  693. IntermediateCode.AddOffset(fp,ToMemoryUnits(system,-system.addressSize));
  694. size := IntermediateCode.Immediate(addressType,stackSize DIV system.addressSize);
  695. ELSE
  696. null := IntermediateCode.Immediate(int8,0);
  697. fp := IntermediateCode.Register(addressType,IntermediateCode.GeneralPurposeRegister,IntermediateCode.FP);
  698. IntermediateCode.AddOffset(fp,ToMemoryUnits(system,-null.type.sizeInBits));
  699. size := IntermediateCode.Immediate(addressType,stackSize DIV null.type.sizeInBits);
  700. END;
  701. (*! should potentially be called by backend -- enter might initialize
  702. ir.EmitAt(pc+3,Fill(fp,null,size,TRUE));
  703. *)
  704. END;
  705. ir.ExitValidPAF;
  706. IF (procedureType.returnType = NIL) OR (scope.body.code # NIL) THEN
  707. finalizer := FALSE;
  708. IF backend.cooperative & x.isFinalizer THEN
  709. recordType := x.scope(SyntaxTree.RecordScope).ownerRecord;
  710. Basic.ToSegmentedName("BaseTypes.Object", baseObject);
  711. GetRecordTypeName(recordType,name);
  712. finalizer := (name # baseObject) & (recordType.baseType = NIL);
  713. END;
  714. implementationVisitor.SetLabel(implementationVisitor.exitLabel);
  715. IF backend.cooperative THEN
  716. IF HasPointers (scope) THEN implementationVisitor.ResetVariables(scope); END;
  717. IF implementationVisitor.profile & ~isModuleBody THEN
  718. implementationVisitor.ProfilerEnterExit(implementationVisitor.numberProcedures-1, FALSE)
  719. END;
  720. END;
  721. implementationVisitor.EmitLeave(ir, x.position,cc);
  722. IF finalizer THEN
  723. IF backend.hasLinkRegister THEN
  724. ir.Emit(Pop(-1, implementationVisitor.lr));
  725. END;
  726. Basic.ToSegmentedName("BaseTypes.Object.Finalize", name);
  727. IntermediateCode.InitAddress(dest, addressType, name , 0, 0);
  728. ir.Emit(Br(x.position,dest));
  729. ELSE
  730. ir.Emit(Exit(x.position,procedureType.pcOffset,cc));
  731. END;
  732. ELSE
  733. IF ~scope.body.isUnchecked & ~backend.noRuntimeChecks THEN
  734. implementationVisitor.EmitTrap(x.position,ReturnTrap);
  735. END;
  736. implementationVisitor.SetLabel(implementationVisitor.exitLabel);
  737. IF backend.cooperative THEN
  738. IF HasPointers (scope) THEN
  739. IF ~ReturnedAsParameter(procedureType.returnType) THEN
  740. res := implementationVisitor.NewRegisterOperand(IntermediateCode.GetType(system, procedureType.returnType));
  741. ir.Emit(Result(x.position, res));
  742. ir.Emit(Push(x.position, res));
  743. implementationVisitor.ResetVariables(scope);
  744. IF implementationVisitor.profile & ~isModuleBody THEN implementationVisitor.ProfilerEnterExit(implementationVisitor.numberProcedures-1, FALSE) END;
  745. ir.Emit(Pop(x.position, res));
  746. ir.Emit(Return(x.position, res));
  747. ELSE
  748. implementationVisitor.ResetVariables(scope);
  749. IF implementationVisitor.profile & ~isModuleBody THEN implementationVisitor.ProfilerEnterExit(implementationVisitor.numberProcedures-1, FALSE) END;
  750. END;
  751. ELSIF implementationVisitor.profile & ~isModuleBody THEN
  752. IF ~ReturnedAsParameter(procedureType.returnType) THEN
  753. res := implementationVisitor.NewRegisterOperand(IntermediateCode.GetType(system, procedureType.returnType));
  754. ir.Emit(Result(x.position, res));
  755. ir.Emit(Push(x.position, res));
  756. implementationVisitor.ProfilerEnterExit(implementationVisitor.numberProcedures-1, FALSE);
  757. ir.Emit(Pop(x.position, res));
  758. ir.Emit(Return(x.position, res));
  759. ELSE
  760. implementationVisitor.ProfilerEnterExit(implementationVisitor.numberProcedures-1, FALSE);
  761. END;
  762. END;
  763. implementationVisitor.EmitLeave(ir,x.position,cc);
  764. ir.Emit(Exit(x.position,procedureType.pcOffset,cc));
  765. ELSE
  766. ir.Emit(Nop(x.position));
  767. IF scope.body.isUnchecked OR backend.noRuntimeChecks THEN (* return from procedure in any case *)
  768. implementationVisitor.EmitLeave(ir,x.position,cc);
  769. ir.Emit(Exit(x.position,procedureType.pcOffset,cc));
  770. END;
  771. END;
  772. END
  773. END;
  774. ELSE (* force body for procedures *)
  775. implementationVisitor.EmitEnter(ir, x.position,x,cc,0,0);
  776. ir.EnterValidPAF;
  777. implementationVisitor.Body(scope.body,currentScope,ir,x = module.module.moduleScope.bodyProcedure);
  778. IF implementationVisitor.usedRegisters # NIL THEN D.TraceBack END;
  779. ir.ExitValidPAF;
  780. implementationVisitor.EmitLeave(ir,x.position,cc);
  781. ir.Emit(Exit(x.position,procedureType.pcOffset,cc));
  782. END;
  783. Scope(scope);
  784. Signature;
  785. IF (x IS SyntaxTree.Operator) & x(SyntaxTree.Operator).isDynamic THEN implementationVisitor.RegisterDynamicOperator(x(SyntaxTree.Operator)) END;
  786. currentScope := prevScope;
  787. END Procedure;
  788. PROCEDURE AddBodyCallStub(bodyProcedure: SyntaxTree.Procedure); (* code that is only necessary for static linkers *)
  789. VAR procedure: SyntaxTree.Procedure; procedureScope: SyntaxTree.ProcedureScope; name: Basic.SegmentedName;
  790. ir: IntermediateCode.Section; op: IntermediateCode.Operand;
  791. BEGIN
  792. ASSERT (bodyProcedure # NIL);
  793. procedureScope := SyntaxTree.NewProcedureScope(bodyProcedure.scope);
  794. procedure := SyntaxTree.NewProcedure(-1,SyntaxTree.NewIdentifier("@BodyStub"), procedureScope);
  795. procedure.SetScope(bodyProcedure.scope);
  796. procedure.SetType(SyntaxTree.NewProcedureType(-1,bodyProcedure.scope));
  797. procedure.SetAccess(SyntaxTree.Hidden);
  798. Global.GetSymbolSegmentedName (procedure,name);
  799. ir := implementationVisitor.NewSection(module.allSections, Sections.InitCodeSection, name,procedure,dump);
  800. ir.SetExported(TRUE);
  801. ir.SetPriority(InitPriority);
  802. Global.GetSymbolSegmentedName (bodyProcedure,name);
  803. IF (backend.newObjectFile OR backend.cooperative) & ~meta.simple THEN
  804. implementationVisitor.currentScope := module.module.moduleScope;
  805. implementationVisitor.section := ir;
  806. implementationVisitor.PushSelfPointer();
  807. implementationVisitor.CallThis(bodyProcedure.position,"Modules","Register",1);
  808. ELSIF backend.preregisterStatic THEN
  809. implementationVisitor.currentScope := module.module.moduleScope;
  810. implementationVisitor.section := ir;
  811. implementationVisitor.PushSelfPointer();
  812. implementationVisitor.CallThis(bodyProcedure.position,"Modules","Preregister",1);
  813. ELSE
  814. IntermediateCode.InitAddress(op, addressType, name, implementationVisitor.GetFingerprint(bodyProcedure), 0);
  815. ir.Emit(Call(bodyProcedure.position,op, 0));
  816. END;
  817. END AddBodyCallStub;
  818. PROCEDURE AddStackAllocation(symbol: SyntaxTree.Symbol; initStack: LONGINT); (* code that is only necessary for static linkers *)
  819. VAR name: Basic.SegmentedName;
  820. ir: IntermediateCode.Section; op: IntermediateCode.Operand;
  821. BEGIN
  822. Global.GetSymbolSegmentedName (symbol,name);
  823. Basic.RemoveSuffix(name);
  824. Basic.SuffixSegmentedName(name, Basic.MakeString("@StackAllocation"));
  825. ir := implementationVisitor.NewSection(module.allSections,Sections.InitCodeSection,name,NIL,dump);
  826. ir.SetExported(TRUE);
  827. ir.SetPriority(FirstPriority);
  828. IntermediateCode.InitImmediate(op,addressType,initStack);
  829. ir.Emit(Mov(-1,implementationVisitor.sp,op));
  830. END AddStackAllocation;
  831. (** entry function to visit a complete module *)
  832. PROCEDURE Module(x: SyntaxTree.Module; module: Sections.Module);
  833. VAR
  834. ir: IntermediateCode.Section; op: IntermediateCode.Operand; name: Basic.SegmentedName; idstr: SyntaxTree.IdentifierString;
  835. hasDynamicOperatorDeclarations: BOOLEAN;
  836. operator: SyntaxTree.Operator;
  837. import: SyntaxTree.Import;
  838. PROCEDURE TypeNeedsInitialization(type: SyntaxTree.Type): BOOLEAN;
  839. BEGIN
  840. type := type.resolved;
  841. IF type IS SyntaxTree.RecordType THEN
  842. IF ScopeNeedsInitialization(type(SyntaxTree.RecordType).recordScope) THEN RETURN TRUE END;
  843. ELSIF (type IS SyntaxTree.ArrayType) THEN
  844. IF type(SyntaxTree.ArrayType).form = SyntaxTree.Static THEN
  845. IF TypeNeedsInitialization(type(SyntaxTree.ArrayType).arrayBase) THEN RETURN TRUE END;
  846. END;
  847. ELSIF type IS SyntaxTree.MathArrayType THEN
  848. WITH type: SyntaxTree.MathArrayType DO
  849. IF type.form = SyntaxTree.Open THEN
  850. RETURN TRUE
  851. ELSIF type.form = SyntaxTree.Static THEN
  852. IF TypeNeedsInitialization(type.arrayBase) THEN RETURN TRUE END;
  853. END;
  854. END;
  855. END;
  856. RETURN FALSE
  857. END TypeNeedsInitialization;
  858. PROCEDURE ScopeNeedsInitialization(scope: SyntaxTree.Scope): BOOLEAN;
  859. VAR variable: SyntaxTree.Variable;
  860. BEGIN
  861. variable := scope.firstVariable;
  862. WHILE variable # NIL DO
  863. IF TypeNeedsInitialization(variable.type) THEN RETURN TRUE END;
  864. IF variable.initializer # NIL THEN RETURN TRUE END;
  865. variable := variable.nextVariable;
  866. END;
  867. RETURN FALSE
  868. END ScopeNeedsInitialization;
  869. BEGIN
  870. ASSERT(x # NIL); ASSERT(module # NIL);
  871. SELF.module := module;
  872. (* add import names to the generated Sections.Module *)
  873. import := x.moduleScope.firstImport;
  874. WHILE import # NIL DO
  875. import.module.GetName(idstr);
  876. module.imports.AddName(idstr);
  877. import := import.nextImport
  878. END;
  879. IF ~implementationVisitor.newObjectFile & ~meta.simple THEN
  880. Global.GetModuleSegmentedName(module.module,name); Basic.SuffixSegmentedName(name, Basic.MakeString("@moduleSelf"));
  881. moduleSelf := SyntaxTree.NewVariable(0,SyntaxTree.NewIdentifier("@moduleSelf"));
  882. moduleSelf.SetType(system.anyType);
  883. moduleSelf.SetScope(x.moduleScope);
  884. moduleSelf.SetUntraced(TRUE);
  885. ir := implementationVisitor.NewSection(module.allSections, Sections.ConstSection, name,moduleSelf,dump); ir.SetOffset(0);
  886. ir.SetExported(TRUE);
  887. IntermediateCode.InitImmediate(op,addressType,0);
  888. ir.Emit(Data(-1,op));
  889. END;
  890. implementationVisitor.module := module;
  891. implementationVisitor.moduleScope := x.moduleScope;
  892. implementationVisitor.moduleSelf := moduleSelf;
  893. implementationVisitor.canBeLoaded := TRUE;
  894. meta.SetModule(module);
  895. IF (forceModuleBody OR implementationVisitor.newObjectFile & ~meta.simple OR ScopeNeedsInitialization(x.moduleScope)) THEN
  896. EnsureBodyProcedure(x.moduleScope); (* currently needed in Oberon, remove ? *)
  897. END;
  898. IF backend.profile THEN
  899. EnsureBodyProcedure(x.moduleScope);
  900. Global.GetModuleSegmentedName(module.module,name); Basic.SuffixSegmentedName(name, Basic.MakeString("@ModuleId"));
  901. implementationVisitor.profileId := implementationVisitor.NewSection(module.allSections, Sections.VarSection, name,NIL,dump);
  902. implementationVisitor.profileId.Emit(Reserve(-1,ToMemoryUnits(system,system.SizeOf(system.longintType))));
  903. Global.GetModuleSegmentedName(module.module,name); Basic.SuffixSegmentedName(name, Basic.MakeString("@InitProfiler"));
  904. implementationVisitor.profileInit := implementationVisitor.NewSection(module.allSections, Sections.CodeSection, name,NIL,dump);
  905. implementationVisitor.EmitEnter(implementationVisitor.profileInit,-1,NIL,0,0,0);
  906. Global.GetModuleName(module.module,idstr);
  907. implementationVisitor.ProfilerAddModule(idstr);
  908. implementationVisitor.numberProcedures := 0;
  909. END;
  910. implementationVisitor.profile := backend.profile;
  911. (* check if there is at least one dynamic operator locally defined *)
  912. hasDynamicOperatorDeclarations := FALSE;
  913. operator := x.moduleScope.firstOperator;
  914. WHILE operator # NIL DO
  915. IF operator.isDynamic THEN hasDynamicOperatorDeclarations := TRUE END;
  916. operator := operator.nextOperator
  917. END;
  918. (* add operator initialization code section *)
  919. IF hasDynamicOperatorDeclarations THEN
  920. EnsureBodyProcedure(x.moduleScope);
  921. Global.GetModuleSegmentedName(module.module,name); Basic.SuffixSegmentedName(name, Basic.MakeString("@OperatorInitialization"));
  922. implementationVisitor.operatorInitializationCodeSection := implementationVisitor.NewSection(module.allSections, Sections.CodeSection,name, NIL, dump);
  923. implementationVisitor.EmitEnter(implementationVisitor.operatorInitializationCodeSection,-1,NIL,0,0,0);
  924. END;
  925. Scope(x.moduleScope);
  926. IF hasDynamicOperatorDeclarations THEN
  927. implementationVisitor.EmitLeave(implementationVisitor.operatorInitializationCodeSection,-1,0);
  928. implementationVisitor.operatorInitializationCodeSection.Emit(Exit(-1,0,0));
  929. END;
  930. IF backend.profile THEN
  931. implementationVisitor.ProfilerPatchInit;
  932. END;
  933. END Module;
  934. END DeclarationVisitor;
  935. UsedArray*=POINTER TO ARRAY OF RECORD count: LONGINT; map: LONGINT; type: IntermediateCode.Type; class: IntermediateCode.RegisterClass END;
  936. RegisterUsageCount*=OBJECT
  937. VAR used: UsedArray; count: LONGINT;
  938. PROCEDURE &Init;
  939. VAR i: LONGINT;
  940. BEGIN
  941. count := 0;
  942. IF used = NIL THEN NEW(used,64); END;
  943. FOR i := 0 TO LEN(used)-1 DO used[i].count := 0; used[i].map := i END;
  944. END Init;
  945. PROCEDURE Grow;
  946. VAR new: UsedArray; size,i: LONGINT;
  947. BEGIN
  948. size := LEN(used)*2;
  949. NEW(new,size);
  950. FOR i := 0 TO LEN(used)-1 DO
  951. new[i].count := used[i].count;
  952. new[i].type := used[i].type;
  953. new[i].map := used[i].map
  954. END;
  955. FOR i := LEN(used) TO LEN(new)-1 DO new[i].count := 0 END;
  956. used := new
  957. END Grow;
  958. PROCEDURE Next(type: IntermediateCode.Type; class: IntermediateCode.RegisterClass): LONGINT;
  959. BEGIN
  960. INC(count);
  961. IF count = LEN(used) THEN Grow END;
  962. used[count].type := type;
  963. used[count].class := class;
  964. used[count].map := count;
  965. RETURN count;
  966. END Next;
  967. PROCEDURE IncUse(register: LONGINT);
  968. BEGIN
  969. INC(used[register].count);
  970. (*
  971. IF (register = 1) & (count > 30) THEN
  972. D.TraceBack;
  973. END;
  974. *)
  975. END IncUse;
  976. PROCEDURE DecUse(register: LONGINT);
  977. BEGIN
  978. DEC(used[register].count);
  979. END DecUse;
  980. PROCEDURE Map(register: LONGINT): LONGINT;
  981. VAR map : LONGINT;
  982. BEGIN
  983. IF register > 0 THEN
  984. map := used[register].map;
  985. WHILE register # map DO register := map; map := used[register].map END;
  986. END;
  987. RETURN register
  988. END Map;
  989. PROCEDURE Use(register: LONGINT): LONGINT;
  990. BEGIN
  991. IF register< LEN(used) THEN
  992. RETURN used[register].count
  993. ELSE
  994. RETURN 0
  995. END
  996. END Use;
  997. END RegisterUsageCount;
  998. RegisterEntry = POINTER TO RECORD
  999. prev,next: RegisterEntry;
  1000. register: LONGINT;
  1001. registerClass: IntermediateCode.RegisterClass;
  1002. type: IntermediateCode.Type;
  1003. END;
  1004. VariableUse= ARRAY 32 OF SET; (* upper bound of 1024 temporary variables in a procedure .. should be enough for all times *)
  1005. Variables = OBJECT (Basic.List)
  1006. VAR
  1007. inUse: VariableUse;
  1008. registerIndex: LONGINT;
  1009. PROCEDURE & Init;
  1010. VAR i: LONGINT;
  1011. BEGIN
  1012. InitList(16);
  1013. FOR i := 0 TO LEN(inUse)-1 DO inUse[i] := {} END;
  1014. registerIndex := 1024;
  1015. END Init;
  1016. PROCEDURE GetUsage(VAR use: VariableUse);
  1017. BEGIN
  1018. use := inUse;
  1019. END GetUsage;
  1020. PROCEDURE SetUsage(CONST use: VariableUse);
  1021. BEGIN
  1022. inUse := use;
  1023. END SetUsage;
  1024. PROCEDURE GetVariable(i: LONGINT): SyntaxTree.Variable;
  1025. VAR any: ANY;
  1026. BEGIN
  1027. any := Get(i);;
  1028. IF any = NIL THEN RETURN NIL ELSE RETURN any(SyntaxTree.Variable) END;
  1029. END GetVariable;
  1030. PROCEDURE Occupy(pos: LONGINT);
  1031. BEGIN
  1032. INCL(inUse[pos DIV 32], pos MOD 32);
  1033. END Occupy;
  1034. PROCEDURE AddVariable(v: SyntaxTree.Variable);
  1035. BEGIN
  1036. Occupy(Length());
  1037. Add(v);
  1038. END AddVariable;
  1039. PROCEDURE GetFreeVariable(type: SyntaxTree.Type; VAR pos: LONGINT): SyntaxTree.Variable;
  1040. VAR var : SyntaxTree.Variable;
  1041. BEGIN
  1042. FOR pos := 0 TO Length()-1 DO
  1043. IF ~((pos MOD 32) IN inUse[pos DIV 32]) THEN
  1044. var := GetVariable(pos);
  1045. IF type.SameType(var.type) THEN
  1046. Occupy(pos); RETURN var
  1047. END;
  1048. END;
  1049. END;
  1050. pos := Length();
  1051. RETURN NIL
  1052. END GetFreeVariable;
  1053. END Variables;
  1054. SymbolMap = POINTER TO RECORD this: SyntaxTree.Symbol; to, tag: SyntaxTree.Expression; next: SymbolMap; END;
  1055. SymbolMapper = OBJECT
  1056. VAR
  1057. first: SymbolMap;
  1058. PROCEDURE & Init;
  1059. BEGIN
  1060. first := NIL;
  1061. END Init;
  1062. PROCEDURE Add(this: SyntaxTree.Symbol; to, tag: SyntaxTree.Expression);
  1063. VAR new: SymbolMap;
  1064. BEGIN
  1065. NEW(new); new.this := this; new.to := to; new.tag := tag;
  1066. new.next := first; first := new;
  1067. END Add;
  1068. PROCEDURE Get(this: SyntaxTree.Symbol): SymbolMap;
  1069. VAR s: SymbolMap;
  1070. BEGIN
  1071. s := first;
  1072. WHILE (s # NIL) & (s.this # this) DO
  1073. s := s.next
  1074. END;
  1075. RETURN s
  1076. END Get;
  1077. END SymbolMapper;
  1078. ImplementationVisitor =OBJECT(SyntaxTree.Visitor)
  1079. VAR
  1080. system: Global.System;
  1081. section: IntermediateCode.Section;
  1082. module: Sections.Module;
  1083. moduleScope : SyntaxTree.ModuleScope; (* shortcut for module.module.moduleScope *)
  1084. awaitProcCounter, labelId, constId, caseId: LONGINT;
  1085. hiddenPointerType: SyntaxTree.RecordType; (* used as hidden pointer, for example for ARRAY OF ANY *)
  1086. delegatePointerType: SyntaxTree.RecordType; (* used for delegates, for example in ARRAY OF PROCEDURE{DELEGATE} *)
  1087. checker: SemanticChecker.Checker;
  1088. backend: IntermediateBackend;
  1089. meta: MetaDataGenerator;
  1090. position: LONGINT;
  1091. moduleSelf: SyntaxTree.Variable;
  1092. (* variables for hand over of variables / temporary state *)
  1093. currentScope: SyntaxTree.Scope;
  1094. constantDeclaration : SyntaxTree.Symbol;
  1095. result: Operand; (* result of the most recent expression / statement *)
  1096. destination: IntermediateCode.Operand;
  1097. arrayDestinationTag: IntermediateCode.Operand;
  1098. arrayDestinationDimension:LONGINT;
  1099. currentLoop: Label; (* variable to hand over loop exit jump list *)
  1100. conditional: BOOLEAN;
  1101. trueLabel, falseLabel, exitLabel: Label;
  1102. locked: BOOLEAN;
  1103. (*
  1104. usedRegisters: Registers;
  1105. *)
  1106. registerUsageCount: RegisterUsageCount;
  1107. usedRegisters: RegisterEntry;
  1108. (* useful operands and types *)
  1109. nil,fp,sp,ap,lr,true,false: IntermediateCode.Operand;
  1110. bool,addressType,setType, sizeType, byteType: IntermediateCode.Type;
  1111. commentPrintout: Printout.Printer;
  1112. dump: Streams.Writer;
  1113. tagsAvailable : BOOLEAN;
  1114. supportedInstruction: SupportedInstructionProcedure;
  1115. supportedImmediate: SupportedImmediateProcedure;
  1116. inData: BOOLEAN; (* to prevent indirect reference to data within data sections, cf. VisitIntegerValue *)
  1117. emitLabels: BOOLEAN;
  1118. runtimeModuleName : SyntaxTree.IdentifierString;
  1119. newObjectFile: BOOLEAN;
  1120. indexCounter: LONGINT;
  1121. profile: BOOLEAN;
  1122. profileId, profileInit: IntermediateCode.Section;
  1123. profileInitPatchPosition: LONGINT;
  1124. numberProcedures: LONGINT;
  1125. procedureResultDesignator : SyntaxTree.Designator;
  1126. operatorInitializationCodeSection: IntermediateCode.Section;
  1127. fingerPrinter: FingerPrinter.FingerPrinter;
  1128. temporaries: Variables;
  1129. canBeLoaded : BOOLEAN;
  1130. currentIsInline: BOOLEAN;
  1131. currentMapper: SymbolMapper;
  1132. currentInlineExit: Label;
  1133. moduleBodySection: IntermediateCode.Section;
  1134. NeedDescriptor : BOOLEAN;
  1135. cooperativeSwitches: BOOLEAN;
  1136. lastSwitchPC: LONGINT;
  1137. isUnchecked: BOOLEAN;
  1138. PROCEDURE & Init(system: Global.System; checker: SemanticChecker.Checker; supportedInstructionProcedure: SupportedInstructionProcedure; supportedImmediateProcedure: SupportedImmediateProcedure; emitLabels: BOOLEAN; CONST runtime: SyntaxTree.IdentifierString; backend: IntermediateBackend;
  1139. newObjectFile: BOOLEAN);
  1140. BEGIN
  1141. SELF.system := system;
  1142. SELF.runtimeModuleName := runtime;
  1143. currentScope := NIL;
  1144. hiddenPointerType := NIL;
  1145. delegatePointerType := NIL;
  1146. awaitProcCounter := 0;
  1147. labelId := 0; constId := 0; labelId := 0;
  1148. SELF.checker := checker;
  1149. SELF.backend := backend;
  1150. position := Diagnostics.Invalid;
  1151. conditional := FALSE;
  1152. locked := FALSE;
  1153. InitOperand(result,ModeUndefined);
  1154. addressType := IntermediateCode.GetType(system,system.addressType);
  1155. setType := IntermediateCode.GetType(system,system.setType);
  1156. sizeType := IntermediateCode.GetType(system, system.sizeType);
  1157. byteType := IntermediateCode.GetType(system, system.byteType);
  1158. fp := IntermediateCode.Register(addressType,IntermediateCode.GeneralPurposeRegister,IntermediateCode.FP);
  1159. sp := IntermediateCode.Register(addressType,IntermediateCode.GeneralPurposeRegister,IntermediateCode.SP);
  1160. ap := IntermediateCode.Register(addressType,IntermediateCode.GeneralPurposeRegister,IntermediateCode.AP);
  1161. lr := IntermediateCode.Register(addressType,IntermediateCode.GeneralPurposeRegister,IntermediateCode.LR);
  1162. nil := IntermediateCode.Immediate(addressType,0);
  1163. IntermediateCode.InitOperand(destination);
  1164. tagsAvailable := TRUE;
  1165. supportedInstruction := supportedInstructionProcedure;
  1166. supportedImmediate := supportedImmediateProcedure;
  1167. inData := FALSE;
  1168. SELF.emitLabels := emitLabels;
  1169. IntermediateCode.InitOperand(arrayDestinationTag);
  1170. bool := IntermediateCode.GetType(system,system.booleanType);
  1171. IntermediateCode.InitImmediate(false,bool,0);
  1172. IntermediateCode.InitImmediate(true,bool,1);
  1173. SELF.newObjectFile := newObjectFile;
  1174. indexCounter := 0;
  1175. NEW(registerUsageCount);
  1176. usedRegisters := NIL;
  1177. procedureResultDesignator := NIL;
  1178. NEW(fingerPrinter, system);
  1179. NEW(temporaries);
  1180. currentIsInline := FALSE;
  1181. NeedDescriptor := FALSE;
  1182. isUnchecked := backend.noRuntimeChecks;
  1183. END Init;
  1184. TYPE Context = RECORD
  1185. section: IntermediateCode.Section;
  1186. registerUsageCount: RegisterUsageCount;
  1187. usedRegisters: RegisterEntry;
  1188. END;
  1189. PROCEDURE SwitchContext(new: IntermediateCode.Section): Context;
  1190. VAR context: Context;
  1191. BEGIN
  1192. context.section := section;
  1193. context.registerUsageCount := registerUsageCount;
  1194. context.usedRegisters := usedRegisters;
  1195. section := new;
  1196. NEW(registerUsageCount);
  1197. usedRegisters := NIL;
  1198. RETURN context;
  1199. END SwitchContext;
  1200. PROCEDURE ReturnToContext(context: Context);
  1201. BEGIN
  1202. section := context.section;
  1203. registerUsageCount := context.registerUsageCount;
  1204. usedRegisters := context.usedRegisters;
  1205. END ReturnToContext;
  1206. PROCEDURE NewSection(list: Sections.SectionList; type: SHORTINT; CONST name: Basic.SegmentedName; syntaxTreeSymbol: SyntaxTree.Symbol; dump: BOOLEAN): IntermediateCode.Section;
  1207. VAR fp: SyntaxTree.FingerPrint; section: IntermediateCode.Section;
  1208. BEGIN
  1209. IF (syntaxTreeSymbol # NIL) & ~((syntaxTreeSymbol IS SyntaxTree.Procedure) & (syntaxTreeSymbol(SyntaxTree.Procedure).isInline)) THEN
  1210. fp := fingerPrinter.SymbolFP(syntaxTreeSymbol)
  1211. END;
  1212. section := IntermediateCode.NewSection(list, type, name, syntaxTreeSymbol, dump);
  1213. section.SetExported(IsExported(syntaxTreeSymbol));
  1214. RETURN section
  1215. END NewSection;
  1216. PROCEDURE AcquireRegister(CONST type: IntermediateCode.Type; class: IntermediateCode.RegisterClass): LONGINT;
  1217. VAR new: LONGINT;
  1218. BEGIN
  1219. new := registerUsageCount.Next(type,class);
  1220. UseRegister(new);
  1221. RETURN new
  1222. END AcquireRegister;
  1223. (** get the name for the code section that represens a certain symbol
  1224. (essentially the same as Global.GetSymbolName, apart from operators) **)
  1225. PROCEDURE GetCodeSectionNameForSymbol(symbol: SyntaxTree.Symbol; VAR name: Basic.SegmentedName);
  1226. VAR
  1227. operatorFingerPrint: SyntaxTree.FingerPrint;
  1228. operatorFingerPrintString,string: ARRAY 32 OF CHAR;
  1229. BEGIN
  1230. Global.GetSymbolSegmentedName(symbol, name);
  1231. (* if the symbol is an operator, then append the fingerprint to the name *)
  1232. IF symbol IS SyntaxTree.Operator THEN
  1233. operatorFingerPrint := fingerPrinter.SymbolFP(symbol);
  1234. string := "[";
  1235. Strings.IntToHexStr(operatorFingerPrint.shallow, 8, operatorFingerPrintString);
  1236. Strings.Append(string, operatorFingerPrintString);
  1237. Strings.Append(string, "]");
  1238. Basic.AppendToSegmentedName(name,string);
  1239. END
  1240. END GetCodeSectionNameForSymbol;
  1241. PROCEDURE TraceEnter(CONST s: ARRAY OF CHAR);
  1242. BEGIN
  1243. IF dump # NIL THEN
  1244. dump.String("enter "); dump.String(s); dump.Ln;
  1245. END;
  1246. END TraceEnter;
  1247. PROCEDURE TraceExit(CONST s: ARRAY OF CHAR);
  1248. BEGIN
  1249. IF dump # NIL THEN
  1250. dump.String("exit "); dump.String(s); dump.Ln;
  1251. END;
  1252. END TraceExit;
  1253. PROCEDURE Emit(instruction: IntermediateCode.Instruction);
  1254. VAR moduleName, procedureName: SyntaxTree.IdentifierString;
  1255. PROCEDURE CheckRegister(VAR op: IntermediateCode.Operand);
  1256. VAR i: LONGINT;
  1257. BEGIN
  1258. IF op.register >0 THEN IntermediateCode.SetRegister(op,registerUsageCount.Map(op.register)) END;
  1259. IF op.rule # NIL THEN
  1260. FOR i := 0 TO LEN(op.rule)-1 DO
  1261. CheckRegister(op.rule[i])
  1262. END;
  1263. END;
  1264. END CheckRegister;
  1265. BEGIN
  1266. CheckRegister(instruction.op1);
  1267. CheckRegister(instruction.op2);
  1268. CheckRegister(instruction.op3);
  1269. IF supportedInstruction(instruction,moduleName,procedureName) THEN section.Emit(instruction)
  1270. ELSE section.Emit(instruction);
  1271. EnsureSymbol(moduleName,procedureName); (* remainder for binary object file *)
  1272. END;
  1273. END Emit;
  1274. PROCEDURE EmitTrap (position, trapNo: LONGINT);
  1275. BEGIN
  1276. IF backend.cooperative THEN
  1277. Emit(Push(position,IntermediateCode.Immediate(sizeType,trapNo)));
  1278. CallThis(position,DefaultRuntimeModuleName,"Trap",1);
  1279. ELSE
  1280. Emit(Trap(position,trapNo));
  1281. END;
  1282. END EmitTrap;
  1283. PROCEDURE EmitEnter (section: IntermediateCode.Section; position: LONGINT; procedure: SyntaxTree.Procedure; callconv: LONGINT; varSize: LONGINT; numRegs: LONGINT);
  1284. VAR name: Basic.SegmentedName;
  1285. VAR op1, op2, reg: IntermediateCode.Operand;
  1286. VAR call, nocall: Label;
  1287. VAR parametersSize: LONGINT;
  1288. VAR prevSection: IntermediateCode.Section;
  1289. VAR prevDump: Streams.Writer;
  1290. VAR body: SyntaxTree.Body;
  1291. BEGIN
  1292. ASSERT((procedure = NIL) OR ~procedure.type(SyntaxTree.ProcedureType).noPAF);
  1293. prevSection := SELF.section;
  1294. SELF.section := section;
  1295. prevDump := dump;
  1296. dump := section.comments;
  1297. IF backend.hasLinkRegister THEN
  1298. Emit(Push(-1, lr));
  1299. END;
  1300. Emit(Push(-1,fp));
  1301. IF backend.cooperative & (callconv = SyntaxTree.OberonCallingConvention) THEN
  1302. IF (procedure # NIL) & (HasPointers (procedure.procedureScope) OR HasVariableParameters (procedure.procedureScope) OR IsNested (procedure)) THEN
  1303. GetCodeSectionNameForSymbol(procedure, name);
  1304. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Descriptor"));
  1305. ELSE
  1306. Basic.ToSegmentedName ("BaseTypes.StackFrame",name);
  1307. END;
  1308. IntermediateCode.InitAddress(op1, addressType, name , 0, 0);
  1309. Emit(Push(-1,op1));
  1310. Emit(Mov(-1,fp, sp));
  1311. body := procedure.procedureScope.body;
  1312. IF (body # NIL) & (body.code = NIL) & ~procedure.procedureScope.body.isUnchecked THEN
  1313. NEW(call, section);
  1314. NEW(nocall, section);
  1315. reg := NewRegisterOperand(addressType);
  1316. IntermediateCode.InitImmediate(op1,addressType, varSize);
  1317. Emit(Sub(-1,reg, sp, op1));
  1318. BrltL(call, sp, reg);
  1319. IntermediateCode.InitMemory(op2, addressType,ap,ToMemoryUnits(system,system.addressSize*10));
  1320. BrgeL(nocall, sp, op2);
  1321. call.Resolve(section.pc);
  1322. parametersSize := ProcedureParametersSize(backend.system,procedure);
  1323. IntermediateCode.InitImmediate(op2,addressType, parametersSize);
  1324. Emit(Push(-1, op2));
  1325. Emit(Push(-1, reg));
  1326. ReleaseIntermediateOperand(reg);
  1327. CallThis(position, "Activities","ExpandStack",2);
  1328. Emit(Result(-1, sp));
  1329. nocall.Resolve(section.pc);
  1330. END;
  1331. ELSE
  1332. Emit(Mov(-1, fp, sp));
  1333. END;
  1334. Emit(Enter(-1, callconv, varSize));
  1335. SELF.section := prevSection;
  1336. dump := prevDump;
  1337. END EmitEnter;
  1338. PROCEDURE Enter(position: LONGINT; callconv: LONGINT; varSize: LONGINT): IntermediateCode.Instruction;
  1339. VAR op1,op2: IntermediateCode.Operand;
  1340. VAR instruction: IntermediateCode.Instruction;
  1341. BEGIN
  1342. IntermediateCode.InitNumber(op1,callconv);
  1343. IntermediateCode.InitNumber(op2,varSize);
  1344. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.enter,op1,op2,emptyOperand);
  1345. RETURN instruction
  1346. END Enter;
  1347. PROCEDURE Leave(position: LONGINT; callconv: LONGINT): IntermediateCode.Instruction;
  1348. VAR op1: IntermediateCode.Operand;
  1349. VAR instruction: IntermediateCode.Instruction;
  1350. BEGIN
  1351. IntermediateCode.InitNumber(op1,callconv);
  1352. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.leave,op1,emptyOperand,emptyOperand);
  1353. RETURN instruction
  1354. END Leave;
  1355. PROCEDURE EmitLeave(section: IntermediateCode.Section; position: LONGINT; callconv: LONGINT);
  1356. VAR prevSection: IntermediateCode.Section;
  1357. VAR op2: IntermediateCode.Operand;
  1358. BEGIN
  1359. prevSection := SELF.section;
  1360. SELF.section := section;
  1361. Emit(Leave(position, callconv));
  1362. IF backend.cooperative THEN
  1363. IntermediateCode.InitImmediate(op2,addressType, ToMemoryUnits(system, system.addressSize));
  1364. Emit(Add(position, sp, fp, op2));
  1365. ELSE
  1366. Emit(Mov(position, sp, fp));
  1367. END;
  1368. Emit(Pop(position, fp));
  1369. SELF.section := prevSection;
  1370. END EmitLeave;
  1371. PROCEDURE Symbol(x: SyntaxTree.Symbol; VAR op: Operand);
  1372. VAR m: SymbolMap;
  1373. BEGIN
  1374. position := x.position;
  1375. IF currentIsInline THEN
  1376. m := currentMapper.Get(x);
  1377. IF m # NIL THEN
  1378. (*
  1379. Printout.Info("mapping from", x);
  1380. Printout.Info("mapping to ", m.to);
  1381. *)
  1382. m.to.Accept(SELF);
  1383. op := result;
  1384. IF m.tag # NIL THEN
  1385. ReleaseIntermediateOperand(result.tag);
  1386. m.tag.Accept(SELF);
  1387. op.tag := result.op;
  1388. ReleaseIntermediateOperand(result.tag);
  1389. END;
  1390. RETURN
  1391. END;
  1392. END;
  1393. x.Accept(SELF);
  1394. op := result;
  1395. END Symbol;
  1396. PROCEDURE Expression(x: SyntaxTree.Expression);
  1397. BEGIN
  1398. position := x.position;
  1399. constantDeclaration := NIL;
  1400. IF (x IS SyntaxTree.SymbolDesignator) & (x(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Constant) THEN
  1401. constantDeclaration := x(SyntaxTree.SymbolDesignator).symbol;
  1402. END;
  1403. IF x.resolved # NIL THEN
  1404. x.resolved.Accept(SELF)
  1405. ELSE
  1406. x.Accept(SELF)
  1407. END;
  1408. (* check this, was commented out in ActiveCells3 *)
  1409. IF (x IS SyntaxTree.Designator) & (x(SyntaxTree.Designator).modifiers # NIL) & ~backend.cellsAreObjects THEN
  1410. Error(x.position, "unsupported modifier");
  1411. END;
  1412. END Expression;
  1413. (*
  1414. PROCEDURE ResetUsedTemporaries(previous: VariableUse);
  1415. VAR current: VariableUse; set: SET; i,j: LONGINT; variable: SyntaxTree.Variable; op: Operand; tmp: IntermediateCode.Operand;
  1416. BEGIN
  1417. temporaries.GetUsage(current);
  1418. FOR i := 0 TO LEN(current)-1 DO
  1419. set := current[i] - previous[i];
  1420. IF set # {} THEN
  1421. FOR j := 0 TO MAX(SET)-1 DO
  1422. IF j IN set THEN
  1423. variable := temporaries.GetVariable(i*MAX(SET)+j);
  1424. IF (variable.type.resolved IS SyntaxTree.MathArrayType) & (variable.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor) THEN
  1425. Symbol(variable, op);
  1426. MakeMemory(tmp,op.op,addressType,0);
  1427. ReleaseOperand(op);
  1428. Emit(Mov(position,tmp, nil ) );
  1429. ReleaseIntermediateOperand(tmp);
  1430. END;
  1431. END;
  1432. END;
  1433. END;
  1434. END;
  1435. END ResetUsedTemporaries;
  1436. *)
  1437. PROCEDURE Statement(x: SyntaxTree.Statement);
  1438. VAR use: VariableUse;
  1439. BEGIN
  1440. temporaries.GetUsage(use);
  1441. position := x.position;
  1442. IF emitLabels THEN Emit(LabelInstruction(x.position)) END;
  1443. IF commentPrintout # NIL THEN
  1444. commentPrintout.Statement(x);
  1445. dump.Ln;
  1446. (*dump.Update;*)
  1447. END;
  1448. x.Accept(SELF);
  1449. (*
  1450. CheckRegistersFree();
  1451. *)
  1452. (*ResetUsedTemporaries(use);*)
  1453. temporaries.SetUsage(use);
  1454. END Statement;
  1455. (* dereference op. If op is already a memory operand then use auxiliary register to dereference
  1456. result will be registered as a new use of operand, op is not released (op must be released by caller)
  1457. *)
  1458. PROCEDURE MakeMemory(VAR res: IntermediateCode.Operand; op: IntermediateCode.Operand; type: IntermediateCode.Type; offset: LONGINT);
  1459. BEGIN
  1460. IF op.mode = IntermediateCode.ModeMemory THEN
  1461. ReuseCopy(res,op);
  1462. ELSE
  1463. res := op;
  1464. UseIntermediateOperand(res);
  1465. END;
  1466. IntermediateCode.AddOffset(res,offset);
  1467. IntermediateCode.MakeMemory(res,type);
  1468. END MakeMemory;
  1469. PROCEDURE ToMemory(VAR res: IntermediateCode.Operand; type: IntermediateCode.Type; offset: LONGINT);
  1470. VAR mem: IntermediateCode.Operand;
  1471. BEGIN
  1472. MakeMemory(mem,res,type,offset);
  1473. ReleaseIntermediateOperand(res);
  1474. res := mem;
  1475. END ToMemory;
  1476. PROCEDURE LoadValue(VAR operand: Operand; type: SyntaxTree.Type);
  1477. VAR mem: IntermediateCode.Operand;
  1478. firstOp, lastOp, stepOp: IntermediateCode.Operand;
  1479. componentType: SyntaxTree.Type;
  1480. BEGIN
  1481. type := type.resolved;
  1482. IF operand.mode = ModeReference THEN
  1483. IF type IS SyntaxTree.RangeType THEN
  1484. MakeMemory(firstOp, operand.op, IntermediateCode.GetType(system, system.longintType), 0);
  1485. MakeMemory(lastOp, operand.op, IntermediateCode.GetType(system, system.longintType), ToMemoryUnits(system, system.SizeOf(system.longintType)));
  1486. MakeMemory(stepOp, operand.op, IntermediateCode.GetType(system, system.longintType), 2 * ToMemoryUnits(system, system.SizeOf(system.longintType)));
  1487. ReleaseOperand(operand);
  1488. operand.op := firstOp;
  1489. operand.tag := lastOp;
  1490. operand.extra := stepOp;
  1491. ELSIF type IS SyntaxTree.ComplexType THEN
  1492. componentType := type(SyntaxTree.ComplexType).componentType;
  1493. ASSERT((componentType.SameType(system.realType)) OR (componentType.SameType(system.longrealType)));
  1494. MakeMemory(firstOp, operand.op, IntermediateCode.GetType(system, componentType), 0);
  1495. MakeMemory(lastOp, operand.op, IntermediateCode.GetType(system, componentType), ToMemoryUnits(system, system.SizeOf(componentType)));
  1496. ReleaseOperand(operand);
  1497. operand.op := firstOp;
  1498. operand.tag := lastOp
  1499. ELSE
  1500. MakeMemory(mem,operand.op,IntermediateCode.GetType(system,type),0);
  1501. ReleaseIntermediateOperand(operand.op);
  1502. operand.op := mem;
  1503. END;
  1504. operand.mode := ModeValue;
  1505. END;
  1506. ASSERT(operand.mode = ModeValue);
  1507. END LoadValue;
  1508. PROCEDURE Evaluate(x: SyntaxTree.Expression; VAR op: Operand);
  1509. VAR prevConditional: BOOLEAN;
  1510. BEGIN
  1511. prevConditional := conditional;
  1512. conditional := FALSE;
  1513. InitOperand(result, ModeUndefined);
  1514. Expression(x);
  1515. op := result;
  1516. LoadValue(op,x.type.resolved);
  1517. conditional := prevConditional;
  1518. END Evaluate;
  1519. PROCEDURE Designate(x: SyntaxTree.Expression; VAR op: Operand);
  1520. VAR prevConditional: BOOLEAN;
  1521. BEGIN
  1522. prevConditional := conditional;
  1523. conditional := FALSE;
  1524. InitOperand(result,ModeUndefined);
  1525. Expression(x);
  1526. op := result;
  1527. (*
  1528. ASSERT((op.mode = ModeReference) OR (x.type.resolved IS SyntaxTree.NilType)); (* special case: winapi NIL parameter on references *)
  1529. *)
  1530. conditional := prevConditional;
  1531. END Designate;
  1532. PROCEDURE Condition(x: SyntaxTree.Expression; trueL,falseL: Label);
  1533. VAR prevTrue, prevFalse: Label; prevConditional: BOOLEAN;
  1534. BEGIN
  1535. ASSERT(trueL # NIL); ASSERT(falseL # NIL);
  1536. prevTrue := trueLabel; prevFalse := falseLabel; prevConditional := conditional;
  1537. conditional := TRUE;
  1538. trueLabel := trueL; falseLabel := falseL;
  1539. Expression(x);
  1540. trueL := trueLabel; falseL := falseLabel;
  1541. trueLabel := prevTrue;falseLabel := prevFalse;conditional := prevConditional;
  1542. END Condition;
  1543. PROCEDURE NewRegisterOperand(type: IntermediateCode.Type): IntermediateCode.Operand;
  1544. VAR op: IntermediateCode.Operand; reg: LONGINT;
  1545. BEGIN
  1546. reg := AcquireRegister(type,IntermediateCode.GeneralPurposeRegister);
  1547. IntermediateCode.InitRegister(op, type, IntermediateCode.GeneralPurposeRegister,reg);
  1548. RETURN op
  1549. END NewRegisterOperand;
  1550. PROCEDURE UnuseRegister(register: LONGINT);
  1551. BEGIN
  1552. IF (register > 0) THEN
  1553. register := registerUsageCount.Map(register);
  1554. registerUsageCount.DecUse(register);
  1555. IF TraceRegisterUsageCount & (dump# NIL) THEN
  1556. dump.String("unuse register "); dump.Int(register,1); dump.String(": ");dump.Int(registerUsageCount.Use(register),1); dump.Ln; dump.Update;
  1557. END;
  1558. IF registerUsageCount.Use(register)=0 THEN
  1559. IF ~RemoveRegisterEntry(usedRegisters,register) THEN
  1560. Warning(position, "register cannot be removed");
  1561. END;
  1562. IF TraceRegisterUsageCount & (dump# NIL) THEN
  1563. dump.String("remove register from usedRegisters"); dump.Ln; dump.Update;
  1564. END;
  1565. ELSIF registerUsageCount.Use(register)<0 THEN
  1566. Warning(position, "register removed too often");
  1567. IF dump # NIL THEN
  1568. dump.String("register removed too often"); dump.Ln; dump.Update;
  1569. END;
  1570. D.TraceBack;
  1571. END;
  1572. END;
  1573. END UnuseRegister;
  1574. PROCEDURE UseRegister(register: LONGINT);
  1575. BEGIN
  1576. IF (register > 0) THEN
  1577. register := registerUsageCount.Map(register);
  1578. registerUsageCount.IncUse(register);
  1579. IF TraceRegisterUsageCount & (dump# NIL) THEN
  1580. dump.String("use register "); dump.Int(register,1); dump.String(": ");dump.Int(registerUsageCount.Use(register),1); dump.Ln; dump.Update;
  1581. END;
  1582. IF registerUsageCount.Use(register)=1 THEN
  1583. AddRegisterEntry(usedRegisters,register, registerUsageCount.used[register].class, registerUsageCount.used[register].type);
  1584. IF TraceRegisterUsageCount & (dump# NIL) THEN
  1585. dump.String("add register to usedRegisters"); dump.Ln; dump.Update;
  1586. END;
  1587. END;
  1588. END;
  1589. END UseRegister;
  1590. PROCEDURE ReleaseIntermediateOperand(CONST op: IntermediateCode.Operand);
  1591. BEGIN
  1592. UnuseRegister(op.register)
  1593. END ReleaseIntermediateOperand;
  1594. PROCEDURE UseIntermediateOperand(CONST op: IntermediateCode.Operand);
  1595. BEGIN
  1596. UseRegister(op.register)
  1597. END UseIntermediateOperand;
  1598. PROCEDURE ReleaseOperand(CONST op: Operand);
  1599. BEGIN
  1600. UnuseRegister(op.op.register);
  1601. UnuseRegister(op.tag.register);
  1602. UnuseRegister(op.extra.register);
  1603. END ReleaseOperand;
  1604. (* save registers marked in array "markedRegisters" to the stack
  1605. remove entries from array "markedRegisters" and save to array "saved" (=> recursion possible)
  1606. *)
  1607. PROCEDURE SaveRegisters();
  1608. VAR op: IntermediateCode.Operand; entry: RegisterEntry; type: IntermediateCode.Type;
  1609. BEGIN
  1610. entry := usedRegisters;
  1611. WHILE entry # NIL DO
  1612. type := registerUsageCount.used[entry.register].type;
  1613. IntermediateCode.InitRegister(op,entry.type,entry.registerClass, entry.register);
  1614. Emit(Push(position,op));
  1615. entry := entry.next;
  1616. END;
  1617. END SaveRegisters;
  1618. PROCEDURE ReleaseUsedRegisters(VAR saved: RegisterEntry);
  1619. BEGIN
  1620. saved := usedRegisters;
  1621. usedRegisters := NIL;
  1622. END ReleaseUsedRegisters;
  1623. (** remove parameter registers from used queue *)
  1624. PROCEDURE ReleaseParameterRegisters;
  1625. VAR entry,prev,next: RegisterEntry;
  1626. BEGIN
  1627. entry := usedRegisters; prev := NIL; usedRegisters := NIL;
  1628. WHILE entry # NIL DO
  1629. next := entry.next;
  1630. IF entry.registerClass.class = IntermediateCode.Parameter THEN
  1631. registerUsageCount.DecUse(entry.register);
  1632. ASSERT(registerUsageCount.Use(entry.register)=0);
  1633. IF TraceRegisterUsageCount & (dump# NIL) THEN
  1634. dump.String("unuse register "); dump.Int(entry.register,1); dump.Ln; dump.Update;
  1635. END;
  1636. ELSIF prev = NIL THEN
  1637. usedRegisters := entry; entry.prev := NIL; entry.next := NIL; prev := entry;
  1638. ELSE
  1639. prev.next := entry; entry.prev := prev; entry.next := NIL; prev:= entry;
  1640. END;
  1641. entry := next;
  1642. END;
  1643. END ReleaseParameterRegisters;
  1644. (* restore registers from array saved and re-enter into array markedRegisters (recursion possible) *)
  1645. PROCEDURE RestoreRegisters(CONST saved: RegisterEntry);
  1646. VAR op: IntermediateCode.Operand; entry,prev: RegisterEntry; type: IntermediateCode.Type; class: IntermediateCode.RegisterClass;
  1647. BEGIN
  1648. entry := saved;
  1649. WHILE (entry # NIL) DO prev := entry; entry := entry.next END;
  1650. entry := prev;
  1651. WHILE entry # NIL DO
  1652. prev := entry.prev;
  1653. type := entry.type;
  1654. class := entry.registerClass;
  1655. IntermediateCode.InitRegister(op,type,class,entry.register);
  1656. (*
  1657. new := registerUsageCount.Next(type,class);
  1658. registerUsageCount.Remap(entry.register,new);
  1659. IF TraceRegisterUsageCount & (dump# NIL) THEN
  1660. dump.String("remap register "); dump.Int(entry.register,1);
  1661. dump.String("to "); dump.Int(new,1);
  1662. dump.String("with count "); dump.Int(registerUsageCount.Use(new),1); dump.Ln; dump.Update;
  1663. END;
  1664. entry.register := new;
  1665. *)
  1666. Emit(Pop(position,op));
  1667. AddRegisterEntry(usedRegisters,entry.register,entry.registerClass, entry.type);
  1668. entry := prev;
  1669. END;
  1670. (*
  1671. usedRegisters := saved;
  1672. *)
  1673. END RestoreRegisters;
  1674. PROCEDURE CheckRegistersFree;
  1675. VAR r: RegisterEntry; warning: ARRAY 128 OF CHAR; i: LONGINT;
  1676. BEGIN
  1677. IF usedRegisters # NIL THEN
  1678. r := usedRegisters;
  1679. WHILE r # NIL DO
  1680. warning := "register ";
  1681. Strings.AppendInt(warning, r.register);
  1682. Strings.Append(warning, " not released.");
  1683. Warning(position,warning);
  1684. r := r .next;
  1685. END;
  1686. END;
  1687. FOR i := 0 TO registerUsageCount.count-1 DO
  1688. IF registerUsageCount.used[i].count < 0 THEN
  1689. warning := "register ";
  1690. Strings.AppendInt(warning, i);
  1691. Strings.Append(warning, " unused too often.");
  1692. Warning(position,warning);
  1693. ELSIF registerUsageCount.used[i].count > 0 THEN (* should always coincide with cases above *)
  1694. warning := "register ";
  1695. Strings.AppendInt(warning, i);
  1696. Strings.Append(warning, " not unused often enough.");
  1697. Warning(position,warning);
  1698. END;
  1699. END;
  1700. END CheckRegistersFree;
  1701. (* Reuse2: reuse src1 or src2 for ongoing computation if src1 or src2, respectively, is a register.
  1702. Otherwise allocate a new register.
  1703. Does NOT necessarily keep the content of src1 or src2 in result! *)
  1704. PROCEDURE Reuse2(VAR result: IntermediateCode.Operand; src1,src2: IntermediateCode.Operand);
  1705. BEGIN
  1706. IF ReusableRegister(src1) THEN IntermediateCode.InitRegister(result,src1.type,src1.registerClass, src1.register);
  1707. UseIntermediateOperand(result);
  1708. ELSIF ReusableRegister(src2) THEN IntermediateCode.InitRegister(result,src2.type,src2.registerClass, src2.register);
  1709. UseIntermediateOperand(result);
  1710. ELSE IntermediateCode.InitRegister(result,src1.type,src1.registerClass,AcquireRegister(src1.type, src1.registerClass));
  1711. END;
  1712. END Reuse2;
  1713. (* Reuse2a: reuse src1 or src2 for ongoing computation if src1 or src2, respectively, is a register.
  1714. Otherwise check if an alternative destination is available. If so, then take the alternative (which is not necessarily a register).
  1715. If not then allocate a new register.
  1716. Does NOT necessarily keep the content of src1 or src2 in result!
  1717. *)
  1718. PROCEDURE Reuse2a(VAR result: IntermediateCode.Operand; src1,src2: IntermediateCode.Operand; VAR alternative: IntermediateCode.Operand);
  1719. BEGIN
  1720. IF ReusableRegister(src1) THEN IntermediateCode.InitRegister(result,src1.type,src1.registerClass, src1.register);
  1721. UseIntermediateOperand(result);
  1722. ELSIF ReusableRegister(src2) THEN IntermediateCode.InitRegister(result,src2.type,src2.registerClass, src2.register);
  1723. UseIntermediateOperand(result);
  1724. ELSIF alternative.mode # IntermediateCode.Undefined THEN
  1725. result := alternative; alternative := emptyOperand;
  1726. UseIntermediateOperand(result);
  1727. ELSE IntermediateCode.InitRegister(result,src1.type,src1.registerClass, AcquireRegister(src1.type, src1.registerClass));
  1728. END;
  1729. END Reuse2a;
  1730. (* like reuse2 but only one source *)
  1731. PROCEDURE Reuse1(VAR result: IntermediateCode.Operand; src1: IntermediateCode.Operand);
  1732. BEGIN
  1733. IF ReusableRegister(src1) THEN IntermediateCode.InitRegister(result,src1.type,src1.registerClass, src1.register);
  1734. UseIntermediateOperand(result);
  1735. ELSE IntermediateCode.InitRegister(result,src1.type,src1.registerClass, AcquireRegister(src1.type, src1.registerClass));
  1736. END;
  1737. END Reuse1;
  1738. (* like reuse2a but only one source *)
  1739. PROCEDURE Reuse1a(VAR result: IntermediateCode.Operand; src1: IntermediateCode.Operand; VAR alternative: IntermediateCode.Operand);
  1740. BEGIN
  1741. IF ReusableRegister(src1) THEN IntermediateCode.InitRegister(result,src1.type,src1.registerClass, src1.register);
  1742. UseIntermediateOperand(result);
  1743. ELSIF alternative.mode # IntermediateCode.Undefined THEN result := alternative; alternative := emptyOperand;
  1744. UseIntermediateOperand(result);
  1745. ELSE IntermediateCode.InitRegister(result,src1.type,src1.registerClass, AcquireRegister(src1.type, src1.registerClass));
  1746. END;
  1747. END Reuse1a;
  1748. (* like reuse1 but guarantees that content of src1 is in result *)
  1749. PROCEDURE ReuseCopy(VAR result: IntermediateCode.Operand; src1: IntermediateCode.Operand);
  1750. BEGIN
  1751. IF ReusableRegister(src1) THEN
  1752. IntermediateCode.InitRegister(result,src1.type,src1.registerClass, src1.register);
  1753. ASSERT((src1.mode = IntermediateCode.ModeRegister) & (src1.offset = 0));
  1754. UseIntermediateOperand(result);
  1755. ELSE
  1756. IntermediateCode.InitRegister(result,src1.type,src1.registerClass, AcquireRegister(src1.type, src1.registerClass));
  1757. Emit(Mov(position,result,src1));
  1758. END
  1759. END ReuseCopy;
  1760. PROCEDURE TransferToRegister(VAR result: IntermediateCode.Operand; src: IntermediateCode.Operand);
  1761. BEGIN
  1762. IF ReusableRegister(src) THEN
  1763. IntermediateCode.InitRegister(result,src.type,src.registerClass, src.register);
  1764. ELSE
  1765. IntermediateCode.InitRegister(result,src.type,src.registerClass, AcquireRegister(src.type, src.registerClass));
  1766. Emit(Mov(position,result,src));
  1767. ReleaseIntermediateOperand(src);
  1768. END
  1769. END TransferToRegister;
  1770. (** labels and branches **)
  1771. PROCEDURE NewLabel(): Label;
  1772. VAR label: Label;
  1773. BEGIN
  1774. NEW(label,section); RETURN label;
  1775. END NewLabel;
  1776. PROCEDURE SetLabel(label: Label);
  1777. BEGIN label.Resolve(section.pc);
  1778. END SetLabel;
  1779. PROCEDURE LabelOperand(label: Label): IntermediateCode.Operand;
  1780. BEGIN
  1781. ASSERT(label # NIL);
  1782. IF label.pc < 0 THEN (* label not yet set *)
  1783. label.AddFixup(section.pc);
  1784. END;
  1785. RETURN IntermediateCode.Address(addressType,label.section.name,GetFingerprint(label.section.symbol), label.pc);
  1786. END LabelOperand;
  1787. PROCEDURE BrL(label: Label);
  1788. BEGIN
  1789. Emit(Br(position,LabelOperand(label)));
  1790. END BrL;
  1791. PROCEDURE BrgeL(label: Label; left,right: IntermediateCode.Operand);
  1792. BEGIN
  1793. Emit(Brge(position,LabelOperand(label),left,right));
  1794. END BrgeL;
  1795. PROCEDURE BrltL(label: Label; left,right: IntermediateCode.Operand);
  1796. BEGIN
  1797. Emit(Brlt(position,LabelOperand(label),left,right));
  1798. END BrltL;
  1799. PROCEDURE BreqL(label: Label; left,right: IntermediateCode.Operand);
  1800. BEGIN
  1801. Emit(Breq(position,LabelOperand(label),left,right));
  1802. END BreqL;
  1803. PROCEDURE BrneL(label: Label; left,right: IntermediateCode.Operand);
  1804. BEGIN
  1805. Emit(Brne(position,LabelOperand(label),left,right));
  1806. END BrneL;
  1807. PROCEDURE Convert(VAR operand: IntermediateCode.Operand; type: IntermediateCode.Type);
  1808. VAR new: IntermediateCode.Operand;
  1809. BEGIN
  1810. IF Trace THEN TraceEnter("Convert") END;
  1811. IF IntermediateCode.TypeEquals(type,operand.type) THEN (* nothing to be done *)
  1812. ELSIF (operand.mode = IntermediateCode.ModeRegister) THEN
  1813. IF (type.sizeInBits = operand.type.sizeInBits) & (type.form IN IntermediateCode.Integer) & (operand.type.form IN IntermediateCode.Integer)
  1814. & (operand.offset = 0)
  1815. THEN
  1816. IntermediateCode.InitRegister(new,type,IntermediateCode.GeneralPurposeRegister,operand.register);
  1817. Emit(Conv(position,new,operand));
  1818. ELSE
  1819. IntermediateCode.InitRegister(new,type,IntermediateCode.GeneralPurposeRegister,AcquireRegister(type,IntermediateCode.GeneralPurposeRegister));
  1820. Emit(Conv(position,new,operand));
  1821. ReleaseIntermediateOperand(operand);
  1822. END;
  1823. operand := new;
  1824. ELSIF (operand.mode = IntermediateCode.ModeImmediate) & (operand.symbol.name = "") & (operand.type.sizeInBits <= type.sizeInBits) & (operand.type.form IN IntermediateCode.Integer) & (type.form IN IntermediateCode.Integer) THEN
  1825. IntermediateCode.InitImmediate(operand,type,operand.intValue);
  1826. ELSE
  1827. IntermediateCode.InitRegister(new,type,IntermediateCode.GeneralPurposeRegister,AcquireRegister(type,IntermediateCode.GeneralPurposeRegister));
  1828. Emit(Conv(position,new,operand));
  1829. ReleaseIntermediateOperand(operand);
  1830. operand := new;
  1831. END;
  1832. IF Trace THEN TraceExit("Convert") END;
  1833. END Convert;
  1834. PROCEDURE TrapC(br: ConditionalBranch; left,right:IntermediateCode.Operand; trapNo: LONGINT);
  1835. VAR exit: Label;
  1836. BEGIN
  1837. Assert((left.mode # IntermediateCode.ModeImmediate) OR (right.mode # IntermediateCode.ModeImmediate),"trap emission with two immediates");
  1838. exit := NewLabel();
  1839. br(exit,left,right);
  1840. EmitTrap(position,trapNo);
  1841. SetLabel(exit);
  1842. END TrapC;
  1843. (** expressions *)
  1844. (** emit necessary runtime check for set elements **)
  1845. PROCEDURE CheckSetElement(o: IntermediateCode.Operand);
  1846. VAR max: IntermediateCode.Operand;
  1847. BEGIN
  1848. IF isUnchecked THEN RETURN END;
  1849. IF o.mode # IntermediateCode.ModeImmediate THEN (* otherwise it's the job of the checker *)
  1850. IntermediateCode.InitImmediate(max, setType, setType.sizeInBits (* number of bits in set *) -1);
  1851. TrapC(BrgeL, max, o, SetElementTrap);
  1852. END;
  1853. END CheckSetElement;
  1854. (** the set that a range represents **)
  1855. PROCEDURE SetFromRange(x: SyntaxTree.RangeExpression): IntermediateCode.Operand;
  1856. VAR
  1857. operand: Operand;
  1858. resultingSet, temp, size, allBits, noBits, one: IntermediateCode.Operand;
  1859. BEGIN
  1860. ASSERT((x.first # NIL) & (x.last # NIL)); (* ensured by the checker *)
  1861. allBits := IntermediateCode.Immediate(setType, -1); (* bit mask 111...11111 *)
  1862. noBits := IntermediateCode.Immediate(setType, 0); (* bit mask 0...0 *)
  1863. one := IntermediateCode.Immediate(setType, 1);
  1864. Evaluate(x, operand);
  1865. Convert(operand.op, setType);
  1866. Convert(operand.tag, setType);
  1867. CheckSetElement(operand.op);
  1868. CheckSetElement(operand.tag);
  1869. (* create mask for lower bound
  1870. i.e. shift 11111111 to the left by the value of the lower bound
  1871. *)
  1872. Reuse1(temp, operand.op);
  1873. Emit(Shl(position,temp, allBits, operand.op));
  1874. ReleaseIntermediateOperand(operand.op);
  1875. operand.op := temp;
  1876. (* create mask for upper bound
  1877. i.e. shift 11111111 to the right by the difference between the
  1878. upper bound and the maximum number of set elements
  1879. *)
  1880. IF (operand.tag.mode = IntermediateCode.ModeImmediate) & (operand.tag.symbol.name = "") THEN
  1881. IntermediateCode.InitImmediate(operand.tag, operand.tag.type, operand.op.type.sizeInBits - 1- operand.tag.intValue);
  1882. Reuse1(temp, operand.tag);
  1883. ELSE
  1884. Reuse1(temp, operand.tag);
  1885. IntermediateCode.InitImmediate(size, operand.tag.type, operand.op.type.sizeInBits - 1);
  1886. Emit(Sub(position,temp, size, operand.tag));
  1887. END;
  1888. Emit(Shr(position,temp, allBits, operand.tag));
  1889. ReleaseIntermediateOperand(operand.tag);
  1890. operand.tag := temp;
  1891. Reuse2(resultingSet, operand.op, operand.tag);
  1892. (* intersect the two masks *)
  1893. Emit(And(position,resultingSet, operand.op, operand.tag));
  1894. ReleaseOperand(operand);
  1895. RETURN resultingSet
  1896. END SetFromRange;
  1897. PROCEDURE VisitSet(x: SyntaxTree.Set);
  1898. VAR
  1899. res, operand: Operand;
  1900. temp, one, noBits, dest: IntermediateCode.Operand;
  1901. expression: SyntaxTree.Expression;
  1902. i: LONGINT;
  1903. BEGIN
  1904. IF Trace THEN TraceEnter("VisitSet") END;
  1905. dest := destination;
  1906. destination := emptyOperand;
  1907. noBits := IntermediateCode.Immediate(setType, 0);
  1908. one := IntermediateCode.Immediate(setType, 1);
  1909. (* start off with the empty set *)
  1910. InitOperand(res, ModeValue);
  1911. IntermediateCode.InitRegister(res.op, setType, IntermediateCode.GeneralPurposeRegister, AcquireRegister(setType, IntermediateCode.GeneralPurposeRegister));
  1912. Emit(Mov(position,res.op, noBits));
  1913. FOR i := 0 TO x.elements.Length() - 1 DO
  1914. expression := x.elements.GetExpression(i);
  1915. IF expression IS SyntaxTree.RangeExpression THEN
  1916. (* range of set elements *)
  1917. temp := SetFromRange(expression(SyntaxTree.RangeExpression));
  1918. ASSERT(IntermediateCode.TypeEquals(setType, temp.type));
  1919. Emit(Or(position,res.op, res.op, temp)); (* unify subset with current set *)
  1920. ReleaseIntermediateOperand(temp)
  1921. ELSE
  1922. (* singelton element *)
  1923. Evaluate(expression, operand);
  1924. Convert(operand.op, setType);
  1925. CheckSetElement(operand.op);
  1926. (* create subset containing single element *)
  1927. Reuse1(temp, operand.op);
  1928. Emit(Shl(position,temp, one, operand.op));
  1929. ReleaseOperand(operand);
  1930. Emit(Or(position,res.op, res.op, temp)); (* unify subset with current set *)
  1931. ReleaseIntermediateOperand(temp);
  1932. END
  1933. END;
  1934. result := res;
  1935. destination := dest;
  1936. IF Trace THEN TraceExit("VisitSet") END;
  1937. END VisitSet;
  1938. PROCEDURE VisitMathArrayExpression(x: SyntaxTree.MathArrayExpression);
  1939. VAR variable: SyntaxTree.Variable; index: SyntaxTree.IndexDesignator; dim: LONGINT;
  1940. designator: SyntaxTree.Designator; i: LONGINT; element: SyntaxTree.IntegerValue;
  1941. PROCEDURE RecursiveAssignment(x: SyntaxTree.MathArrayExpression; dim: LONGINT);
  1942. VAR numberElements,i: LONGINT; expression: SyntaxTree.Expression;
  1943. element: SyntaxTree.IntegerValue;
  1944. BEGIN
  1945. numberElements := x.elements.Length();
  1946. expression := index.parameters.GetExpression(dim);
  1947. element := expression(SyntaxTree.IntegerValue);
  1948. FOR i := 0 TO numberElements-1 DO
  1949. expression := x.elements.GetExpression(i);
  1950. element.SetValue(i);
  1951. IF expression IS SyntaxTree.MathArrayExpression THEN
  1952. RecursiveAssignment(expression(SyntaxTree.MathArrayExpression),dim+1);
  1953. ELSE
  1954. Assign(index,expression);
  1955. END;
  1956. END;
  1957. END RecursiveAssignment;
  1958. BEGIN
  1959. variable := GetTemporaryVariable(x.type, FALSE);
  1960. designator := SyntaxTree.NewSymbolDesignator(-1,NIL,variable);
  1961. designator.SetType(variable.type);
  1962. dim := SemanticChecker.Dimension(x.type,{SyntaxTree.Static});
  1963. index := SyntaxTree.NewIndexDesignator(x.position,designator);
  1964. FOR i := 0 TO dim-1 DO
  1965. element := SyntaxTree.NewIntegerValue(x.position,0);
  1966. element.SetType(system.longintType);
  1967. index.parameters.AddExpression(element);
  1968. END;
  1969. index.SetType(SemanticChecker.ArrayBase(x.type,dim));
  1970. RecursiveAssignment(x,0);
  1971. Expression(designator);
  1972. END VisitMathArrayExpression;
  1973. PROCEDURE VisitUnaryExpression(x: SyntaxTree.UnaryExpression);
  1974. VAR type,t0: SyntaxTree.Type; operand: Operand; dest: IntermediateCode.Operand;
  1975. BEGIN
  1976. IF Trace THEN TraceEnter("VisitUnaryExpression") END;
  1977. dest := destination; destination := emptyOperand;
  1978. IF x.operator = Scanner.Not THEN
  1979. IF conditional THEN
  1980. Condition(x.left,falseLabel,trueLabel)
  1981. ELSE
  1982. Evaluate(x.left,operand);
  1983. InitOperand(result,ModeValue);
  1984. Reuse1a(result.op,operand.op,dest);
  1985. Emit(Xor(position,result.op,operand.op,true));
  1986. ReleaseOperand(operand);
  1987. END;
  1988. ELSIF x.operator = Scanner.Minus THEN
  1989. Evaluate(x.left,operand);
  1990. InitOperand(result,ModeValue);
  1991. Reuse1a(result.op,operand.op,dest);
  1992. type := x.left.type.resolved;
  1993. IF type IS SyntaxTree.SetType THEN
  1994. Emit(Not(position,result.op,operand.op));
  1995. ELSIF (type IS SyntaxTree.ComplexType) THEN
  1996. Reuse1(result.tag,operand.tag);
  1997. Emit(Neg(position,result.op,operand.op)); (* real part *)
  1998. Emit(Neg(position,result.tag,operand.tag)) (* imaginary part *)
  1999. ELSIF (type IS SyntaxTree.NumberType) OR (type IS SyntaxTree.SizeType) OR (type IS SyntaxTree.AddressType) THEN
  2000. Emit(Neg(position,result.op,operand.op));
  2001. ELSE HALT(200)
  2002. END;
  2003. ReleaseOperand(operand);
  2004. ELSIF x.operator = Scanner.Address THEN
  2005. Designate(x.left,operand);
  2006. operand.mode := ModeValue;
  2007. t0 := x.left.type.resolved;
  2008. IF (t0 IS SyntaxTree.MathArrayType) & (t0(SyntaxTree.MathArrayType).form = SyntaxTree.Open) THEN
  2009. ReleaseIntermediateOperand(operand.op);
  2010. operand.op := operand.tag;
  2011. IntermediateCode.InitOperand(operand.tag);
  2012. END;
  2013. Convert(operand.op,IntermediateCode.GetType(system,x.type));
  2014. result := operand;
  2015. ELSE HALT(100)
  2016. END;
  2017. destination := dest;
  2018. IF Trace THEN TraceExit("VisitUnaryExpression") END;
  2019. END VisitUnaryExpression;
  2020. (* test if e is of type type, side effect: result of evaluation of e stays in the operand *)
  2021. PROCEDURE TypeTest(tag: IntermediateCode.Operand; type: SyntaxTree.Type; trueL,falseL: Label);
  2022. VAR left,right: IntermediateCode.Operand; level,offset: LONGINT; repeatL: Label; originalType: SyntaxTree.Type;
  2023. BEGIN
  2024. type := type.resolved;
  2025. originalType := type;
  2026. IF type IS SyntaxTree.PointerType THEN
  2027. type := type(SyntaxTree.PointerType).pointerBase.resolved;
  2028. END;
  2029. IF type IS SyntaxTree.ObjectType THEN
  2030. BrL(trueL);
  2031. ELSE
  2032. ASSERT(type IS SyntaxTree.RecordType);
  2033. (*
  2034. IntermediateCode.MakeMemory(tag,addressType); (*! already done during generation *)
  2035. *)
  2036. ReuseCopy(left,tag);
  2037. right := TypeDescriptorAdr(type);
  2038. IF ~newObjectFile THEN
  2039. IntermediateCode.MakeMemory(right,addressType);
  2040. END;
  2041. IF backend.cooperative THEN
  2042. repeatL := NewLabel();
  2043. IF (originalType IS SyntaxTree.PointerType) & ~type(SyntaxTree.RecordType).isObject THEN
  2044. Emit(Mov(position,left,IntermediateCode.Memory(addressType,left,ToMemoryUnits(system,addressType.sizeInBits))));
  2045. END;
  2046. SetLabel(repeatL);
  2047. BreqL(trueL,left,right);
  2048. Emit(Mov(position,left,IntermediateCode.Memory(addressType,left,0)));
  2049. BrneL(repeatL,left,nil);
  2050. ELSIF meta.simple THEN
  2051. level := type(SyntaxTree.RecordType).Level();
  2052. (* get type desc tag of level relative to base tag *)
  2053. offset := (meta.BaseTypesTableOffset + level) * addressType.sizeInBits;
  2054. IntermediateCode.AddOffset(left,ToMemoryUnits(system,offset));
  2055. IntermediateCode.MakeMemory(left,addressType);
  2056. BreqL(trueL,left,right);
  2057. ELSE
  2058. level := type(SyntaxTree.RecordType).Level();
  2059. (* get type desc tag of level relative to base tag *)
  2060. offset := (meta.BaseTypesTableOffset - level) * addressType.sizeInBits;
  2061. IntermediateCode.AddOffset(left,ToMemoryUnits(system,offset));
  2062. IntermediateCode.MakeMemory(left,addressType);
  2063. BreqL(trueL,left,right);
  2064. END;
  2065. ReleaseIntermediateOperand(left); ReleaseIntermediateOperand(right);
  2066. BrL(falseL);
  2067. END;
  2068. END TypeTest;
  2069. PROCEDURE Error(position: LONGINT; CONST s: ARRAY OF CHAR);
  2070. BEGIN
  2071. backend.Error(module.module.sourceName,position,Diagnostics.Invalid,s);
  2072. IF dump # NIL THEN
  2073. dump.String(s); dump.Ln;
  2074. END;
  2075. END Error;
  2076. PROCEDURE Warning(position: LONGINT; CONST s: ARRAY OF CHAR);
  2077. BEGIN
  2078. backend.diagnostics.Warning(module.module.sourceName,position,Diagnostics.Invalid,s);
  2079. IF dump # NIL THEN
  2080. dump.String(s); dump.Ln; dump.Update;
  2081. END;
  2082. END Warning;
  2083. PROCEDURE CreateTraceModuleMethod(mod: SyntaxTree.Module);
  2084. VAR name: Basic.SectionName; pooledName: Basic.SegmentedName; previousSection: IntermediateCode.Section;
  2085. VAR variable: SyntaxTree.Variable; register,op: IntermediateCode.Operand;
  2086. operand:Operand;
  2087. BEGIN
  2088. previousSection := section;
  2089. Global.GetModuleName(mod,name);
  2090. Strings.Append(name,".@Trace");
  2091. Basic.ToSegmentedName(name, pooledName);
  2092. section := IntermediateCode.NewSection(module.allSections, Sections.CodeSection, pooledName,NIL,TRUE);
  2093. IF dump # NIL THEN dump := section.comments END;
  2094. IF backend.hasLinkRegister THEN
  2095. Emit(Push(-1, lr));
  2096. END;
  2097. variable := mod.moduleScope.firstVariable;
  2098. WHILE variable # NIL DO
  2099. IF ~variable.untraced & variable.type.resolved.hasPointers THEN
  2100. Symbol(variable, operand);
  2101. register := operand.op;
  2102. CallTraceMethod(register, variable.type);
  2103. ReleaseIntermediateOperand(register);
  2104. END;
  2105. variable := variable.nextVariable;
  2106. END;
  2107. IF backend.hasLinkRegister THEN
  2108. Emit(Pop(-1, lr));
  2109. END;
  2110. Basic.ToSegmentedName ("Modules.Module.@Trace",pooledName);
  2111. IntermediateCode.InitAddress(op, addressType, pooledName , 0, 0);
  2112. Emit(Br(position,op));
  2113. INC(statCoopTraceModule, section.pc);
  2114. section := previousSection;
  2115. IF dump # NIL THEN dump := section.comments END;
  2116. END CreateTraceModuleMethod;
  2117. PROCEDURE CallAssignPointer(CONST dst (* address *) , src (* value *): IntermediateCode.Operand);
  2118. BEGIN
  2119. Emit (Push(position, dst));
  2120. Emit (Push(position, src));
  2121. CallThis(position,"GarbageCollector","Assign", 2);
  2122. END CallAssignPointer;
  2123. PROCEDURE CallAssignMethod(CONST dst (* address *) , src (* address *) : IntermediateCode.Operand; type: SyntaxTree.Type);
  2124. VAR name: Basic.SegmentedName; size: LONGINT; base: SyntaxTree.Type; op: IntermediateCode.Operand;
  2125. BEGIN
  2126. IF SemanticChecker.IsPointerType (type) THEN
  2127. CallAssignPointer(dst, IntermediateCode.Memory (addressType,src,0));
  2128. ELSIF type.IsRecordType() THEN
  2129. Emit (Push(position,dst));
  2130. Emit (Push(position,src));
  2131. GetRecordTypeName (type.resolved(SyntaxTree.RecordType),name);
  2132. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  2133. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2134. Emit(Call(position,op, ToMemoryUnits(system, 2*system.addressSize)));
  2135. ELSIF IsStaticArray(type) THEN
  2136. size := StaticArrayNumElements(type);
  2137. base := StaticArrayBaseType(type);
  2138. IF base.IsRecordType() THEN
  2139. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2140. Emit (Push(position, dst));
  2141. Emit (Push(position, src));
  2142. GetRecordTypeName (base.resolved(SyntaxTree.RecordType),name);
  2143. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  2144. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  2145. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2146. Emit(Call(position,op,ToMemoryUnits(system, 3*system.addressSize)));
  2147. ELSIF base.resolved IS SyntaxTree.ProcedureType THEN (* array of delegates *)
  2148. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2149. Emit (Push(position, dst));
  2150. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2151. Emit (Push(position, src));
  2152. CallThis(position,"GarbageCollector","AssignDelegateArray", 4);
  2153. ELSE
  2154. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2155. Emit (Push(position, dst));
  2156. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2157. Emit (Push(position, src));
  2158. CallThis(position,"GarbageCollector","AssignPointerArray", 4);
  2159. ASSERT(StaticArrayBaseType(type).IsPointer());
  2160. END;
  2161. ELSIF type.resolved IS SyntaxTree.ProcedureType THEN
  2162. ASSERT(type.resolved(SyntaxTree.ProcedureType).isDelegate);
  2163. Emit (Push(position, dst));
  2164. Emit (Push(position, src));
  2165. CallThis(position,"GarbageCollector","AssignDelegate", 2);
  2166. ELSE HALT(100); (* missing ? *)
  2167. END;
  2168. END CallAssignMethod;
  2169. PROCEDURE CreateAssignProcedure (recordType: SyntaxTree.RecordType);
  2170. VAR name: Basic.SegmentedName;
  2171. VAR variable: SyntaxTree.Variable; src, dst, op, ofs: IntermediateCode.Operand; recordBase: SyntaxTree.RecordType;
  2172. parameter1, parameter2, parameter0: IntermediateCode.Operand; label: Label;
  2173. context: Context;
  2174. BEGIN
  2175. parameter0 (* len *) := IntermediateCode.Memory(sizeType,sp,ToMemoryUnits(system,3*addressType.sizeInBits));
  2176. parameter1 (* dest *) := IntermediateCode.Memory(addressType,sp,ToMemoryUnits(system,2*addressType.sizeInBits));
  2177. parameter2 (* src *) := IntermediateCode.Memory(addressType,sp,ToMemoryUnits(system,1*addressType.sizeInBits));
  2178. GetRecordTypeName (recordType,name);
  2179. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  2180. context := SwitchContext(IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE));
  2181. IF dump # NIL THEN dump := section.comments END;
  2182. IF backend.hasLinkRegister THEN
  2183. Emit(Push(-1, lr));
  2184. END;
  2185. variable := recordType.recordScope.firstVariable;
  2186. WHILE variable # NIL DO
  2187. IF variable.NeedsTrace() THEN
  2188. dst := NewRegisterOperand (addressType);
  2189. src := NewRegisterOperand (addressType);
  2190. Emit (Mov(position, dst, parameter1));
  2191. Emit (Mov(position, src, parameter2));
  2192. IntermediateCode.AddOffset(dst,ToMemoryUnits(system,variable.offsetInBits));
  2193. IntermediateCode.AddOffset(src,ToMemoryUnits(system,variable.offsetInBits));
  2194. CallAssignMethod(dst, src, variable.type);
  2195. ReleaseIntermediateOperand(src);
  2196. ReleaseIntermediateOperand(dst);
  2197. END;
  2198. variable := variable.nextVariable;
  2199. END;
  2200. recordBase := recordType.GetBaseRecord();
  2201. IF (recordBase # NIL) & recordBase.NeedsTrace() THEN
  2202. IF backend.hasLinkRegister THEN
  2203. Emit(Pop(-1, lr));
  2204. END;
  2205. GetRecordTypeName (recordBase,name);
  2206. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  2207. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2208. Emit(Br(position,op));
  2209. ELSE
  2210. Emit(Exit(position,0,0));
  2211. END;
  2212. IF ~recordType.isObject THEN
  2213. GetRecordTypeName (recordType,name);
  2214. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  2215. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  2216. section := IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE);
  2217. NEW(registerUsageCount);
  2218. usedRegisters := NIL;
  2219. dst := NewRegisterOperand (addressType);
  2220. src := NewRegisterOperand (addressType);
  2221. ofs := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(recordType)));
  2222. Emit(Mov(position, dst, parameter1));
  2223. Emit(Mov(position, src, parameter2));
  2224. label := NewLabel();
  2225. SetLabel(label);
  2226. Emit(Push(position, dst));
  2227. Emit(Push(position, src));
  2228. GetRecordTypeName (recordType,name);
  2229. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  2230. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2231. Emit(Call(position, op, 0));
  2232. Emit(Pop(position, src));
  2233. Emit(Pop(position, dst));
  2234. Emit(Add(position, dst, dst, ofs));
  2235. Emit(Add(position, src, src, ofs));
  2236. Emit(Sub(position, parameter0, parameter0, IntermediateCode.Immediate(sizeType, 1)));
  2237. BrneL(label, parameter0, IntermediateCode.Immediate(sizeType, 0));
  2238. Emit(Exit(position,0,0));
  2239. END;
  2240. INC(statCoopAssignProcedure, section.pc);
  2241. ReturnToContext(context);
  2242. IF dump # NIL THEN dump := section.comments END;
  2243. END CreateAssignProcedure;
  2244. PROCEDURE CallTraceMethod(CONST register: IntermediateCode.Operand; type: SyntaxTree.Type);
  2245. VAR name: Basic.SegmentedName; op: IntermediateCode.Operand; size: LONGINT; base: SyntaxTree.Type; skip: Label;
  2246. BEGIN
  2247. IF IsUnsafePointer (type) THEN
  2248. skip := NewLabel();
  2249. IntermediateCode.InitRegister(op, addressType, IntermediateCode.GeneralPurposeRegister, register.register);
  2250. Emit (Mov (position, op, IntermediateCode.Memory (addressType,register,0)));
  2251. BreqL (skip, op, nil);
  2252. CallTraceMethod (op,type.resolved(SyntaxTree.PointerType).pointerBase);
  2253. SetLabel (skip);
  2254. ELSIF SemanticChecker.IsPointerType (type) THEN
  2255. Emit (Push(position, IntermediateCode.Memory (addressType,register,0)));
  2256. CallThis(position,"GarbageCollector","Mark", 1);
  2257. ELSIF type.IsRecordType() THEN
  2258. Emit (Push(position,register));
  2259. GetRecordTypeName (type.resolved(SyntaxTree.RecordType),name);
  2260. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2261. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2262. Emit(Call(position,op, ToMemoryUnits(system, system.addressSize)));
  2263. ELSIF IsStaticArray(type) THEN
  2264. size := StaticArrayNumElements(type);
  2265. base := StaticArrayBaseType(type);
  2266. IF base.IsRecordType() THEN
  2267. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2268. Emit (Push(position, register));
  2269. GetRecordTypeName (base.resolved(SyntaxTree.RecordType), name);
  2270. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  2271. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2272. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2273. Emit(Call(position, op, ToMemoryUnits(system, system.addressSize*2)));
  2274. ELSIF base.resolved IS SyntaxTree.ProcedureType THEN (* array of delegates *)
  2275. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2276. Emit (Push(position, register));
  2277. CallThis(position,"GarbageCollector","MarkDelegateArray", 2);
  2278. ELSE
  2279. Emit (Push(position, IntermediateCode.Immediate (sizeType,size)));
  2280. Emit (Push(position, register));
  2281. CallThis(position,"GarbageCollector","MarkPointerArray", 2);
  2282. ASSERT(base.IsPointer());
  2283. END;
  2284. ELSIF type.resolved IS SyntaxTree.ProcedureType THEN
  2285. Emit (Push(position, IntermediateCode.Memory (addressType,register,ToMemoryUnits(system,addressType.sizeInBits))));
  2286. CallThis(position,"GarbageCollector","Mark", 1);
  2287. ELSE HALT(100); (* missing ? *)
  2288. END;
  2289. END CallTraceMethod;
  2290. PROCEDURE CreateTraceMethod (recordType: SyntaxTree.RecordType);
  2291. VAR name: Basic.SegmentedName; previousSection: IntermediateCode.Section;
  2292. VAR variable: SyntaxTree.Variable; register,op,ofs: IntermediateCode.Operand; recordBase: SyntaxTree.RecordType;
  2293. parameter0, parameter1: IntermediateCode.Operand; label: Label; context: Context;
  2294. BEGIN
  2295. previousSection := section;
  2296. parameter0 (* size *) := IntermediateCode.Memory(sizeType,sp,ToMemoryUnits(system,2*addressType.sizeInBits));
  2297. parameter1 (* address *) := IntermediateCode.Memory(addressType,sp,ToMemoryUnits(system,1*addressType.sizeInBits));
  2298. GetRecordTypeName (recordType,name);
  2299. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2300. context := SwitchContext(IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE));
  2301. IF dump # NIL THEN dump := section.comments END;
  2302. IF backend.hasLinkRegister THEN
  2303. Emit(Push(-1, lr));
  2304. END;
  2305. variable := recordType.recordScope.firstVariable;
  2306. WHILE variable # NIL DO
  2307. IF variable.NeedsTrace() THEN
  2308. register := NewRegisterOperand (addressType);
  2309. Emit (Mov(position,register,parameter1));
  2310. IntermediateCode.AddOffset(register,ToMemoryUnits(system,variable.offsetInBits));
  2311. IF recordType.isObject & ((recordType.pointerType = NIL) OR ~recordType.pointerType.isPlain) THEN
  2312. IntermediateCode.AddOffset(register,BaseObjectTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  2313. END;
  2314. CallTraceMethod(register, variable.type);
  2315. ReleaseIntermediateOperand(register);
  2316. END;
  2317. variable := variable.nextVariable;
  2318. END;
  2319. recordBase := recordType.GetBaseRecord();
  2320. WHILE (recordBase # NIL) & ~recordBase.hasPointers DO
  2321. recordBase := recordBase.GetBaseRecord();
  2322. END;
  2323. IF recordBase # NIL THEN
  2324. IF backend.hasLinkRegister THEN
  2325. Emit(Pop(-1, lr));
  2326. END;
  2327. GetRecordTypeName (recordBase,name);
  2328. IF HasExplicitTraceMethod (recordBase) THEN
  2329. Basic.SuffixSegmentedName (name, Basic.MakeString ("Trace"));
  2330. ELSE
  2331. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2332. END;
  2333. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2334. Emit(Br(position,op));
  2335. ELSIF (recordType.pointerType # NIL) & recordType.pointerType.isPlain THEN
  2336. Emit(Exit(position,0,0));
  2337. ELSE
  2338. IF backend.hasLinkRegister THEN
  2339. Emit(Pop(-1, lr));
  2340. END;
  2341. IF recordType.isObject THEN
  2342. Basic.ToSegmentedName ("BaseTypes.Object",name);
  2343. ELSE
  2344. Basic.ToSegmentedName ("BaseTypes.Record",name);
  2345. END;
  2346. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2347. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2348. Emit(Br(position,op));
  2349. END;
  2350. IF ~recordType.isObject THEN
  2351. GetRecordTypeName (recordType,name);
  2352. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Pointer"));
  2353. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2354. section := IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE);
  2355. NEW(registerUsageCount);
  2356. usedRegisters := NIL;
  2357. IF dump # NIL THEN dump := section.comments END;
  2358. register := NewRegisterOperand (addressType);
  2359. Emit (Mov(position,register,IntermediateCode.Memory(addressType,sp,ToMemoryUnits(system,addressType.sizeInBits))));
  2360. IF (recordType.pointerType = NIL) OR ~recordType.pointerType.isPlain THEN
  2361. IntermediateCode.AddOffset(register,BaseRecordTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  2362. END;
  2363. Emit (Push(position,register));
  2364. GetRecordTypeName (recordType,name);
  2365. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2366. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2367. Emit(Call(position,op, ToMemoryUnits(system, system.addressSize)));
  2368. ReleaseIntermediateOperand(register);
  2369. Emit(Exit(position,0,0));
  2370. GetRecordTypeName (recordType,name);
  2371. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  2372. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2373. section := IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE);
  2374. NEW(registerUsageCount);
  2375. usedRegisters := NIL;
  2376. register := NewRegisterOperand (addressType);
  2377. ofs := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(recordType)));
  2378. Emit(Mov(position, register, parameter1));
  2379. label := NewLabel();
  2380. SetLabel(label);
  2381. Emit(Push(position, register));
  2382. GetRecordTypeName (recordType,name);
  2383. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  2384. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2385. Emit(Call(position, op, 0));
  2386. Emit(Pop(position, register));
  2387. Emit(Add(position, register, register, ofs));
  2388. Emit(Sub(position, parameter0, parameter0, IntermediateCode.Immediate(sizeType, 1)));
  2389. BrneL(label, parameter0, IntermediateCode.Immediate(sizeType, 0));
  2390. Emit(Exit(position,0,0));
  2391. END;
  2392. INC(statCoopTraceMethod, section.pc);
  2393. ReturnToContext(context);
  2394. IF dump # NIL THEN dump := section.comments END;
  2395. END CreateTraceMethod;
  2396. PROCEDURE CreateResetProcedure (recordType: SyntaxTree.RecordType);
  2397. VAR name: Basic.SegmentedName;
  2398. VAR variable: SyntaxTree.Variable; dst, op, ofs: IntermediateCode.Operand; recordBase: SyntaxTree.RecordType;
  2399. parameter1, parameter0: IntermediateCode.Operand; label: Label;
  2400. context: Context;
  2401. BEGIN
  2402. IF recordType.isObject THEN RETURN END;
  2403. parameter0 (* len *) := IntermediateCode.Memory(sizeType,sp,ToMemoryUnits(system,2*addressType.sizeInBits));
  2404. parameter1 (* dest *) := IntermediateCode.Memory(addressType,sp,ToMemoryUnits(system,1*addressType.sizeInBits));
  2405. GetRecordTypeName (recordType,name);
  2406. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2407. context := SwitchContext(IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE));
  2408. IF dump # NIL THEN dump := section.comments END;
  2409. IF backend.hasLinkRegister THEN
  2410. Emit(Push(-1, lr));
  2411. END;
  2412. variable := recordType.recordScope.firstVariable;
  2413. WHILE variable # NIL DO
  2414. IF variable.NeedsTrace() THEN
  2415. dst := NewRegisterOperand (addressType);
  2416. Emit (Mov(position, dst, parameter1));
  2417. IntermediateCode.AddOffset(dst,ToMemoryUnits(system,variable.offsetInBits));
  2418. IF recordType.isObject & ((recordType.pointerType = NIL) OR ~recordType.pointerType.isPlain) THEN
  2419. IntermediateCode.AddOffset(dst,BaseObjectTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  2420. END;
  2421. CallResetProcedure(dst, nil, variable.type);
  2422. ReleaseIntermediateOperand(dst);
  2423. END;
  2424. variable := variable.nextVariable;
  2425. END;
  2426. recordBase := recordType.GetBaseRecord();
  2427. IF (recordBase # NIL) & recordBase.NeedsTrace() THEN
  2428. IF backend.hasLinkRegister THEN
  2429. Emit(Pop(-1, lr));
  2430. END;
  2431. GetRecordTypeName (recordBase,name);
  2432. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2433. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2434. Emit(Br(position,op));
  2435. ELSE
  2436. Emit(Exit(position,0,0));
  2437. END;
  2438. GetRecordTypeName (recordType,name);
  2439. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  2440. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2441. section := IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE);
  2442. NEW(registerUsageCount);
  2443. usedRegisters := NIL;
  2444. dst := NewRegisterOperand (addressType);
  2445. ofs := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(recordType)));
  2446. Emit(Mov(position, dst, parameter1));
  2447. label := NewLabel();
  2448. SetLabel(label);
  2449. Emit(Push(position, dst));
  2450. GetRecordTypeName (recordType,name);
  2451. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2452. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2453. Emit(Call(position, op, 0));
  2454. Emit(Pop(position, dst));
  2455. Emit(Add(position, dst, dst, ofs));
  2456. Emit(Sub(position, parameter0, parameter0, IntermediateCode.Immediate(sizeType, 1)));
  2457. BrneL(label, parameter0, IntermediateCode.Immediate(sizeType, 0));
  2458. Emit(Exit(position,0,0));
  2459. INC(statCoopResetProcedure, section.pc);
  2460. ReturnToContext(context);
  2461. IF dump # NIL THEN dump := section.comments END;
  2462. END CreateResetProcedure;
  2463. PROCEDURE CreateResetMethod (scope: SyntaxTree.ProcedureScope);
  2464. VAR name: Basic.SegmentedName; context: Context;
  2465. BEGIN
  2466. GetCodeSectionNameForSymbol(scope.ownerProcedure, name);
  2467. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2468. context := SwitchContext(IntermediateCode.NewSection(module.allSections, Sections.CodeSection, name,NIL,TRUE));
  2469. IF dump # NIL THEN dump := section.comments END;
  2470. IF backend.hasLinkRegister THEN
  2471. Emit(Push(-1, lr));
  2472. END;
  2473. Emit(Push(position,fp));
  2474. Emit(Mov(position,fp, IntermediateCode.Memory(addressType,sp,ToMemoryUnits(system,addressType.sizeInBits * 2))));
  2475. ResetVariables(scope);
  2476. Emit(Pop(position,fp));
  2477. Emit(Exit(position,0,0));
  2478. ReturnToContext(context);
  2479. IF dump # NIL THEN dump := section.comments END;
  2480. END CreateResetMethod;
  2481. PROCEDURE CallResetProcedure(dest, tag: IntermediateCode.Operand; type: SyntaxTree.Type);
  2482. VAR base: SyntaxTree.Type; op, size: IntermediateCode.Operand; name: Basic.SegmentedName;
  2483. BEGIN
  2484. IF SemanticChecker.IsPointerType (type) THEN
  2485. Emit (Push(position, dest));
  2486. CallThis(position,"GarbageCollector","Reset", 1);
  2487. ELSIF type.IsRecordType() THEN
  2488. Emit (Push(position, dest));
  2489. GetRecordTypeName (type.resolved(SyntaxTree.RecordType),name);
  2490. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2491. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2492. Emit(Call(position,op, ToMemoryUnits(system, system.addressSize)));
  2493. ELSIF type.resolved IS SyntaxTree.ArrayType THEN
  2494. size := GetArrayLength(type, tag);
  2495. base := ArrayBaseType(type);
  2496. IF base.IsRecordType() THEN
  2497. Emit (Push(position, size));
  2498. Emit (Push(position, dest));
  2499. GetRecordTypeName (base.resolved(SyntaxTree.RecordType),name);
  2500. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  2501. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2502. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2503. Emit(Call(position,op,ToMemoryUnits(system, 2*system.addressSize)));
  2504. ELSIF base.resolved IS SyntaxTree.ProcedureType THEN (* array of delegates *)
  2505. Emit (Push(position, size));
  2506. Emit (Push(position, dest));
  2507. CallThis(position,"GarbageCollector","ResetDelegateArray", 2);
  2508. ELSE
  2509. Emit (Push(position, size));
  2510. Emit (Push(position, dest));
  2511. CallThis(position,"GarbageCollector","ResetArray", 2);
  2512. ASSERT(ArrayBaseType(type).IsPointer());
  2513. END;
  2514. ReleaseIntermediateOperand(size);
  2515. ELSIF type.resolved IS SyntaxTree.ProcedureType THEN
  2516. ASSERT(type.resolved(SyntaxTree.ProcedureType).isDelegate);
  2517. Emit (Push(position, dest));
  2518. CallThis(position,"GarbageCollector","ResetDelegate", 1);
  2519. ELSE HALT(100); (* missing ? *)
  2520. END;
  2521. END CallResetProcedure;
  2522. PROCEDURE ResetVariables (scope: SyntaxTree.ProcedureScope);
  2523. VAR variable: SyntaxTree.Variable; parameter: SyntaxTree.Parameter; previousScope: SyntaxTree.Scope; pc: LONGINT;
  2524. PROCEDURE Reset (symbol: SyntaxTree.Symbol);
  2525. VAR operand: Operand;
  2526. BEGIN
  2527. Symbol (symbol, operand);
  2528. CallResetProcedure(operand.op, operand.tag, symbol.type.resolved);
  2529. ReleaseOperand(operand);
  2530. END Reset;
  2531. BEGIN
  2532. previousScope := currentScope;
  2533. currentScope := scope;
  2534. pc := section.pc;
  2535. variable := scope.firstVariable;
  2536. WHILE variable # NIL DO
  2537. IF variable.NeedsTrace() THEN
  2538. Reset (variable);
  2539. END;
  2540. variable := variable.nextVariable;
  2541. END;
  2542. parameter := scope.ownerProcedure.type(SyntaxTree.ProcedureType).firstParameter;
  2543. WHILE parameter # NIL DO
  2544. IF parameter.NeedsTrace() & ~IsVariableParameter(parameter) THEN
  2545. Reset (parameter);
  2546. END;
  2547. parameter := parameter.nextParameter;
  2548. END;
  2549. INC(statCoopResetVariables, section.pc - pc);
  2550. currentScope := previousScope;
  2551. END ResetVariables;
  2552. PROCEDURE CreateProcedureDescriptor (procedure: SyntaxTree.Procedure);
  2553. VAR previousSection: IntermediateCode.Section; name: Basic.SegmentedName;
  2554. VAR op: IntermediateCode.Operand; context: Context;
  2555. BEGIN
  2556. previousSection := section;
  2557. GetCodeSectionNameForSymbol(procedure, name);
  2558. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Descriptor"));
  2559. context := SwitchContext(IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,NIL,TRUE));
  2560. IF dump # NIL THEN dump := section.comments END;
  2561. Basic.ToSegmentedName ("BaseTypes.StackFrame",name);
  2562. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2563. Emit(Data(position,op));
  2564. Emit(Data(position,nil));
  2565. IF HasPointers (procedure.procedureScope) THEN
  2566. GetCodeSectionNameForSymbol(procedure, name);
  2567. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Reset"));
  2568. ELSE
  2569. Basic.ToSegmentedName ("BaseTypes.StackFrame.Reset",name);
  2570. END;
  2571. IntermediateCode.InitAddress(op, addressType, name , 0, 0);
  2572. Emit(Data(position,op));
  2573. ReturnToContext(context);
  2574. IF dump # NIL THEN dump := section.comments END;
  2575. END CreateProcedureDescriptor;
  2576. PROCEDURE AddImport(CONST moduleName: ARRAY OF CHAR; VAR module: SyntaxTree.Module; force: BOOLEAN): BOOLEAN;
  2577. VAR import: SyntaxTree.Import;
  2578. s: Basic.MessageString;
  2579. selfName: SyntaxTree.IdentifierString;
  2580. BEGIN
  2581. moduleScope.ownerModule.GetName(selfName);
  2582. IF (moduleName = selfName) & (moduleScope.ownerModule.context = Global.A2Name) THEN
  2583. module := moduleScope.ownerModule
  2584. ELSE
  2585. import := moduleScope.ImportByModuleName(SyntaxTree.NewIdentifier(moduleName),SyntaxTree.NewIdentifier("A2"));
  2586. IF import = NIL THEN
  2587. import := SyntaxTree.NewImport(-1,SyntaxTree.NewIdentifier(moduleName),SyntaxTree.NewIdentifier(moduleName),FALSE);
  2588. import.SetContext(SyntaxTree.NewIdentifier("A2"));
  2589. IF ~checker.AddImport(moduleScope.ownerModule,import) THEN
  2590. s := "Module ";
  2591. Strings.Append(s,moduleName);
  2592. Strings.Append(s," cannot be imported.");
  2593. IF force THEN
  2594. Error(position,s);
  2595. ELSIF canBeLoaded THEN
  2596. Strings.Append(s, "=> no dynamic linking.");
  2597. Warning(position, s);
  2598. canBeLoaded := FALSE;
  2599. END;
  2600. RETURN FALSE
  2601. ELSE
  2602. SELF.module.imports.AddName(moduleName)
  2603. END;
  2604. ELSIF import.module = NIL THEN (* already tried *)
  2605. RETURN FALSE
  2606. END;
  2607. module := import.module;
  2608. END;
  2609. RETURN TRUE
  2610. END AddImport;
  2611. (* needed for old binary object file format*)
  2612. PROCEDURE EnsureSymbol(CONST moduleName,procedureName: SyntaxTree.IdentifierString);
  2613. VAR r: Operand; procedure: SyntaxTree.Procedure; module: SyntaxTree.Module; s: ARRAY 128 OF CHAR; fp: LONGINT;
  2614. BEGIN
  2615. IF AddImport(moduleName,module,TRUE) THEN
  2616. procedure := module.moduleScope.FindProcedure(SyntaxTree.NewIdentifier(procedureName));
  2617. IF procedure = NIL THEN
  2618. s := "Instruction not supported on target, emulation procedure ";
  2619. Strings.Append(s,moduleName);
  2620. Strings.Append(s,".");
  2621. Strings.Append(s,procedureName);
  2622. Strings.Append(s," not present");
  2623. Error(position,s);
  2624. ELSE
  2625. StaticCallOperand(r,procedure);
  2626. ReleaseOperand(r);
  2627. fp := GetFingerprint(procedure);
  2628. END;
  2629. END;
  2630. END EnsureSymbol;
  2631. PROCEDURE ConditionToValue(x: SyntaxTree.Expression);
  2632. VAR exit: Label; trueL,falseL: Label;
  2633. BEGIN
  2634. trueL := NewLabel();
  2635. falseL := NewLabel();
  2636. exit := NewLabel();
  2637. Condition(x,trueL,falseL);
  2638. InitOperand(result,ModeValue);
  2639. SetLabel(trueL);
  2640. IntermediateCode.InitRegister(result.op,IntermediateCode.GetType(system,x.type),IntermediateCode.GeneralPurposeRegister,AcquireRegister(IntermediateCode.GetType(system,x.type),IntermediateCode.GeneralPurposeRegister));
  2641. Emit(Mov(position,result.op,true));
  2642. BrL(exit);
  2643. SetLabel(falseL);
  2644. Emit(MovReplace(position,result.op,false));
  2645. SetLabel(exit);
  2646. END ConditionToValue;
  2647. PROCEDURE ValueToCondition(VAR op: Operand);
  2648. BEGIN
  2649. LoadValue(op,system.booleanType);
  2650. BrneL(trueLabel,op.op, false);
  2651. ReleaseOperand(op);
  2652. BrL(falseLabel);
  2653. END ValueToCondition;
  2654. PROCEDURE GetDynamicSize(type: SyntaxTree.Type; tag: IntermediateCode.Operand):IntermediateCode.Operand;
  2655. VAR size: LONGINT;
  2656. PROCEDURE GetArraySize(type: SyntaxTree.ArrayType; offset: LONGINT):IntermediateCode.Operand;
  2657. VAR baseType: SyntaxTree.Type; size: LONGINT; sizeOperand,len,res: IntermediateCode.Operand;
  2658. BEGIN
  2659. ASSERT(type.form = SyntaxTree.Open);
  2660. baseType := type.arrayBase.resolved;
  2661. IF IsOpenArray(baseType) THEN
  2662. sizeOperand := GetArraySize(baseType(SyntaxTree.ArrayType),offset+system.addressSize);
  2663. ELSE
  2664. size := ToMemoryUnits(system,system.AlignedSizeOf(baseType));
  2665. sizeOperand := IntermediateCode.Immediate(addressType,size);
  2666. END;
  2667. len := tag;
  2668. IntermediateCode.AddOffset(len,ToMemoryUnits(system,offset));
  2669. IntermediateCode.MakeMemory(len,addressType);
  2670. UseIntermediateOperand(len);
  2671. Reuse2(res,sizeOperand,len);
  2672. Emit(Mul(position,res,sizeOperand,len));
  2673. ReleaseIntermediateOperand(sizeOperand); ReleaseIntermediateOperand(len);
  2674. RETURN res
  2675. END GetArraySize;
  2676. BEGIN
  2677. type := type.resolved;
  2678. IF IsOpenArray(type) THEN
  2679. IF tag.mode = IntermediateCode.ModeImmediate THEN (* special rule for winapi/c arrays *)
  2680. RETURN tag
  2681. ELSE
  2682. RETURN GetArraySize(type.resolved(SyntaxTree.ArrayType),0)
  2683. END;
  2684. ELSE
  2685. size := ToMemoryUnits(system,system.SizeOf(type));
  2686. RETURN IntermediateCode.Immediate(addressType,size)
  2687. END;
  2688. END GetDynamicSize;
  2689. PROCEDURE GetArrayLength(type: SyntaxTree.Type; tag: IntermediateCode.Operand):IntermediateCode.Operand;
  2690. PROCEDURE GetLength(type: SyntaxTree.ArrayType; offset: LONGINT):IntermediateCode.Operand;
  2691. VAR baseType: SyntaxTree.Type; sizeOperand,len,res: IntermediateCode.Operand;
  2692. BEGIN
  2693. ASSERT(type.form = SyntaxTree.Open);
  2694. baseType := type.arrayBase.resolved;
  2695. IF IsOpenArray(baseType) THEN
  2696. sizeOperand := GetLength(baseType(SyntaxTree.ArrayType),offset+system.addressSize);
  2697. ELSE
  2698. sizeOperand := IntermediateCode.Immediate(addressType,StaticArrayNumElements(baseType));
  2699. END;
  2700. len := tag;
  2701. IntermediateCode.AddOffset(len,ToMemoryUnits(system,offset));
  2702. IntermediateCode.MakeMemory(len,addressType);
  2703. UseIntermediateOperand(len);
  2704. Reuse2(res,sizeOperand,len);
  2705. Emit(Mul(position,res,sizeOperand,len));
  2706. ReleaseIntermediateOperand(sizeOperand); ReleaseIntermediateOperand(len);
  2707. RETURN res
  2708. END GetLength;
  2709. BEGIN
  2710. type := type.resolved;
  2711. IF IsOpenArray(type) THEN
  2712. ASSERT(tag.mode # IntermediateCode.ModeImmediate);
  2713. RETURN GetLength(type.resolved(SyntaxTree.ArrayType),0)
  2714. ELSE
  2715. RETURN IntermediateCode.Immediate(addressType,1)
  2716. END;
  2717. END GetArrayLength;
  2718. PROCEDURE GetSizeFromTag(tag: IntermediateCode.Operand): IntermediateCode.Operand;
  2719. VAR result: IntermediateCode.Operand;
  2720. BEGIN
  2721. IF backend.cooperative THEN
  2722. MakeMemory(result, tag, addressType, ToMemoryUnits(system,system.addressSize));
  2723. ELSE
  2724. MakeMemory(result, tag, addressType, 0);
  2725. END;
  2726. RETURN result
  2727. END GetSizeFromTag;
  2728. PROCEDURE GetArrayOfBytesSize(e: SyntaxTree.Expression; tag: IntermediateCode.Operand): IntermediateCode.Operand;
  2729. VAR parameter: SyntaxTree.Parameter;
  2730. BEGIN
  2731. IF (e IS SyntaxTree.SymbolDesignator) & (e(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Parameter) THEN
  2732. parameter := e(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Parameter);
  2733. IF (parameter.kind IN {SyntaxTree.VarParameter,SyntaxTree.ConstParameter}) & (parameter.type.resolved IS SyntaxTree.RecordType) THEN RETURN GetSizeFromTag(tag) END;
  2734. ELSIF e IS SyntaxTree.DereferenceDesignator THEN
  2735. IF (e.type.resolved IS SyntaxTree.RecordType) THEN RETURN GetSizeFromTag(tag) END;
  2736. END;
  2737. RETURN GetDynamicSize(e.type, tag);
  2738. END GetArrayOfBytesSize;
  2739. (*
  2740. to find imported symbol. not needed ?
  2741. PROCEDURE SymbolByName(CONST moduleName, symbolName: ARRAY OF CHAR): SyntaxTree.Symbol;
  2742. VAR importedModule: SyntaxTree.Module; symbol: SyntaxTree.Symbol;
  2743. BEGIN
  2744. IF AddImport(moduleName,importedModule,FALSE) THEN
  2745. symbol := importedModule.moduleScope.FindSymbol(SyntaxTree.NewIdentifier(symbolName));
  2746. RETURN symbol
  2747. ELSE
  2748. RETURN NIL
  2749. END
  2750. END SymbolByName;
  2751. *)
  2752. PROCEDURE GetRuntimeProcedure(CONST moduleName, procedureName: ARRAY OF CHAR; VAR procedure: SyntaxTree.Procedure; force: BOOLEAN): BOOLEAN;
  2753. VAR runtimeModule: SyntaxTree.Module; s: Basic.MessageString;
  2754. BEGIN
  2755. IF AddImport(moduleName,runtimeModule,force) THEN
  2756. procedure := runtimeModule.moduleScope.FindProcedure(SyntaxTree.NewIdentifier(procedureName));
  2757. IF procedure = NIL THEN
  2758. s := "Procedure ";
  2759. Strings.Append(s,moduleName);
  2760. Strings.Append(s,".");
  2761. Strings.Append(s,procedureName);
  2762. Strings.Append(s," not present");
  2763. Error(position,s);
  2764. RETURN FALSE
  2765. ELSE
  2766. RETURN TRUE
  2767. END;
  2768. ELSE RETURN FALSE
  2769. END;
  2770. END GetRuntimeProcedure;
  2771. PROCEDURE GetTypeDescriptor(CONST moduleName, typeName: ARRAY OF CHAR; VAR name: Basic.SegmentedName): SyntaxTree.Symbol;
  2772. VAR importedModule: SyntaxTree.Module; source: IntermediateCode.Section; symbol: SyntaxTree.Symbol;
  2773. s: Basic.MessageString;
  2774. BEGIN
  2775. Basic.InitSegmentedName(name);
  2776. name[0] := Basic.MakeString(moduleName);
  2777. name[1] := Basic.MakeString(typeName);
  2778. name[2] := -1;
  2779. IF AddImport(moduleName,importedModule, FALSE) THEN
  2780. symbol := importedModule.moduleScope.FindTypeDeclaration(SyntaxTree.NewIdentifier(typeName));
  2781. IF symbol = NIL THEN
  2782. s := "type ";
  2783. Strings.Append(s,moduleName);
  2784. Strings.Append(s,".");
  2785. Strings.Append(s,typeName);
  2786. Strings.Append(s," not present");
  2787. Error(position,s);
  2788. END;
  2789. ELSE symbol := NIL;
  2790. END;
  2791. IF importedModule = moduleScope.ownerModule THEN
  2792. source := NewSection(module.allSections, Sections.ConstSection, name, symbol, commentPrintout # NIL);
  2793. ELSE
  2794. source := NewSection(module.importedSections, Sections.ConstSection, name, symbol, commentPrintout # NIL);
  2795. END;
  2796. RETURN symbol
  2797. END GetTypeDescriptor;
  2798. (* Call a runtime procedure. If numberParameters >= 0 then the procedure may be called without module import. Otherwise the signature has to be inferred from the import. *)
  2799. PROCEDURE CallThisChecked(position: LONGINT; CONST moduleName, procedureName: ARRAY OF CHAR; numberParameters: LONGINT; checkNumParameters: BOOLEAN);
  2800. VAR procedure: SyntaxTree.Procedure; result: Operand; reg: IntermediateCode.Operand; source: IntermediateCode.Section;
  2801. pooledName: Basic.SegmentedName; size: LONGINT;
  2802. BEGIN
  2803. IF GetRuntimeProcedure(moduleName,procedureName,procedure,numberParameters < 0) THEN (* ready for dynamic linking *)
  2804. StaticCallOperand(result,procedure);
  2805. IF numberParameters < 0 THEN
  2806. size := ProcedureParametersSize(system,procedure);
  2807. ELSE
  2808. size := ToMemoryUnits(system,numberParameters * system.addressSize);
  2809. IF checkNumParameters & (size # ProcedureParametersSize(system,procedure)) THEN
  2810. Error(position,"runtime call parameter count mismatch");
  2811. END;
  2812. END;
  2813. Emit(Call(position, result.op, size));
  2814. ReleaseOperand(result);
  2815. ELSE (* only static linking possible *)
  2816. ASSERT(numberParameters >= 0);
  2817. Basic.InitSegmentedName(pooledName);
  2818. pooledName[0] := Basic.MakeString(moduleName);
  2819. pooledName[1] := Basic.MakeString(procedureName);
  2820. pooledName[2] := -1;
  2821. source := NewSection(module.importedSections, Sections.CodeSection, pooledName, NIL,commentPrintout # NIL);
  2822. IntermediateCode.InitAddress(reg, addressType, pooledName , 0, 0);
  2823. Emit(Call(position,reg, ToMemoryUnits(system,numberParameters * system.addressSize)));
  2824. END;
  2825. END CallThisChecked;
  2826. (* Call a runtime procedure. If numberParameters >= 0 then the procedure may be called without module import. Otherwise the signature has to be inferred from the import. *)
  2827. PROCEDURE CallThis(position: LONGINT; CONST moduleName, procedureName: ARRAY OF CHAR; numberParameters: LONGINT);
  2828. BEGIN
  2829. CallThisChecked(position, moduleName, procedureName, numberParameters,TRUE);
  2830. END CallThis;
  2831. PROCEDURE CompareString(br: ConditionalBranch; leftExpression,rightExpression: SyntaxTree.Expression);
  2832. VAR
  2833. left,right: Operand;
  2834. leftSize, rightSize: IntermediateCode.Operand;
  2835. saved: RegisterEntry;
  2836. reg: IntermediateCode.Operand;
  2837. procedureName: SyntaxTree.IdentifierString;
  2838. BEGIN
  2839. procedureName := "CompareString";
  2840. SaveRegisters();ReleaseUsedRegisters(saved);
  2841. Designate(leftExpression,left);
  2842. leftSize := GetDynamicSize(leftExpression.type,left.tag);
  2843. Emit(Push(position,leftSize));
  2844. ReleaseIntermediateOperand(leftSize);
  2845. Emit(Push(position,left.op));
  2846. ReleaseOperand(left);
  2847. Designate(rightExpression,right);
  2848. rightSize := GetDynamicSize(rightExpression.type,right.tag);
  2849. Emit(Push(position,rightSize));
  2850. ReleaseIntermediateOperand(rightSize);
  2851. Emit(Push(position,right.op));
  2852. ReleaseOperand(right);
  2853. IF backend.cooperative THEN
  2854. CallThis(position,DefaultRuntimeModuleName,procedureName, 4);
  2855. ELSE
  2856. CallThis(position,runtimeModuleName,procedureName, 4);
  2857. END;
  2858. IntermediateCode.InitRegister(reg,int8,IntermediateCode.GeneralPurposeRegister,AcquireRegister(int8,IntermediateCode.GeneralPurposeRegister));
  2859. Emit(Result(position,reg));
  2860. (*
  2861. AcquireThisRegister(int8,IntermediateCode.Result);
  2862. *)
  2863. RestoreRegisters(saved); (* must be done before use of result, might be jumped over otherwise *)
  2864. (*
  2865. IntermediateCode.InitRegister(reg,int8,IntermediateCode.Result);
  2866. *)
  2867. br(trueLabel,reg,IntermediateCode.Immediate(int8,0));
  2868. ReleaseIntermediateOperand(reg);
  2869. BrL(falseLabel);
  2870. END CompareString;
  2871. PROCEDURE CopyString(leftExpression,rightExpression: SyntaxTree.Expression);
  2872. VAR
  2873. left,right: Operand;
  2874. leftSize, rightSize: IntermediateCode.Operand;
  2875. saved: RegisterEntry;
  2876. procedureName: SyntaxTree.IdentifierString;
  2877. BEGIN
  2878. procedureName := "CopyString";
  2879. SaveRegisters();ReleaseUsedRegisters(saved);
  2880. Designate(leftExpression,left);
  2881. leftSize := GetDynamicSize(leftExpression.type,left.tag);
  2882. Emit(Push(position,leftSize));
  2883. ReleaseIntermediateOperand(leftSize);
  2884. Emit(Push(position,left.op));
  2885. ReleaseOperand(left);
  2886. Designate(rightExpression,right);
  2887. rightSize := GetDynamicSize(rightExpression.type,right.tag);
  2888. Emit(Push(position,rightSize));
  2889. ReleaseIntermediateOperand(rightSize);
  2890. Emit(Push(position,right.op));
  2891. ReleaseOperand(right);
  2892. IF backend.cooperative THEN
  2893. CallThis(position,DefaultRuntimeModuleName,procedureName, 4);
  2894. ELSE
  2895. CallThis(position,runtimeModuleName,procedureName,4);
  2896. END;
  2897. RestoreRegisters(saved);
  2898. END CopyString;
  2899. PROCEDURE VisitBinaryExpression(x: SyntaxTree.BinaryExpression);
  2900. VAR left,right: Operand; temp: Operand; zero, one, tempReg, tempReg2: IntermediateCode.Operand;
  2901. leftType,rightType: SyntaxTree.Type;
  2902. leftExpression,rightExpression : SyntaxTree.Expression;
  2903. componentType: IntermediateCode.Type;
  2904. value: HUGEINT; exp: LONGINT;next,exit: Label; recordType: SyntaxTree.RecordType; dest: IntermediateCode.Operand;
  2905. size: LONGINT;
  2906. BEGIN
  2907. IF Trace THEN TraceEnter("VisitBinaryExpression") END;
  2908. dest := destination; destination := emptyOperand;
  2909. leftType := x.left.type.resolved;
  2910. rightType := x.right.type.resolved;
  2911. (* for "OR" and "&" the left and right expressions may not be emitted first <= shortcut evaluation *)
  2912. CASE x.operator OF
  2913. Scanner.Or:
  2914. (* shortcut evaluation of left OR right *)
  2915. IF ~conditional THEN ConditionToValue(x);
  2916. ELSE
  2917. next := NewLabel();
  2918. Condition(x.left,trueLabel,next);
  2919. SetLabel(next);
  2920. Condition(x.right,trueLabel,falseLabel);
  2921. END;
  2922. |Scanner.And:
  2923. (* shortcut evaluation of left & right *)
  2924. IF ~conditional THEN ConditionToValue(x);
  2925. ELSE
  2926. next := NewLabel();
  2927. Condition(x.left,next,falseLabel);
  2928. SetLabel(next);
  2929. Condition(x.right,trueLabel,falseLabel);
  2930. END;
  2931. |Scanner.Is:
  2932. IF ~conditional THEN ConditionToValue(x);
  2933. ELSE
  2934. (* get type desc tag *)
  2935. IF IsPointerToRecord(leftType,recordType) THEN
  2936. Evaluate(x.left,left);
  2937. Dereference(left,recordType,IsUnsafePointer(leftType))
  2938. ELSE
  2939. Designate(x.left,left);
  2940. END;
  2941. TypeTest(left.tag,x.right(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.TypeDeclaration).declaredType.resolved,trueLabel,falseLabel);
  2942. ReleaseOperand(left);
  2943. END;
  2944. |Scanner.Plus:
  2945. Evaluate(x.left,left);
  2946. Evaluate(x.right,right);
  2947. IF leftType IS SyntaxTree.SetType THEN
  2948. InitOperand(result,ModeValue);
  2949. Reuse2a(result.op,left.op,right.op,dest);
  2950. Emit(Or(position,result.op,left.op,right.op));
  2951. ELSIF leftType IS SyntaxTree.ComplexType THEN
  2952. InitOperand(result,ModeValue);
  2953. Reuse2a(result.op,left.op,right.op,dest); (* TODO: review this *)
  2954. Reuse2(result.tag,left.tag,right.tag);
  2955. Emit(Add(position,result.op,left.op,right.op));
  2956. Emit(Add(position,result.tag,left.tag,right.tag))
  2957. ELSE
  2958. InitOperand(result,ModeValue);
  2959. Reuse2a(result.op,left.op,right.op,dest);
  2960. Emit(Add(position,result.op,left.op,right.op));
  2961. END;
  2962. ReleaseOperand(left); ReleaseOperand(right);
  2963. |Scanner.Minus:
  2964. Evaluate(x.left,left);
  2965. Evaluate(x.right,right);
  2966. IF leftType IS SyntaxTree.SetType THEN
  2967. InitOperand(result,ModeValue);
  2968. Reuse1(result.op,right.op);
  2969. Emit(Not(position,result.op,right.op));
  2970. ReleaseOperand(right);
  2971. Emit(And(position,result.op,result.op,left.op));
  2972. ReleaseOperand(left);
  2973. ELSIF leftType IS SyntaxTree.ComplexType THEN
  2974. InitOperand(result,ModeValue);
  2975. Reuse2a(result.op,left.op,right.op,dest); (* TODO: review this *)
  2976. Reuse2(result.tag,left.tag,right.tag);
  2977. Emit(Sub(position,result.op,left.op,right.op));
  2978. Emit(Sub(position,result.tag,left.tag,right.tag));
  2979. ReleaseOperand(left); ReleaseOperand(right)
  2980. ELSE
  2981. InitOperand(result,ModeValue);
  2982. Reuse2a(result.op,left.op,right.op,dest);
  2983. Emit(Sub(position,result.op,left.op,right.op));
  2984. ReleaseOperand(left); ReleaseOperand(right);
  2985. END;
  2986. |Scanner.Times:
  2987. Evaluate(x.left,left);
  2988. Evaluate(x.right,right);
  2989. IF leftType IS SyntaxTree.SetType THEN
  2990. InitOperand(result,ModeValue);
  2991. Reuse2a(result.op,left.op,right.op,dest);
  2992. Emit(And(position,result.op,left.op,right.op));
  2993. ELSIF (x.type.resolved IS SyntaxTree.IntegerType) & IsIntegerConstant(x.right,value) & PowerOf2(value,exp) THEN
  2994. InitOperand(result,ModeValue);
  2995. Reuse1a(result.op,left.op,dest);
  2996. IntermediateCode.InitImmediate(right.op,IntermediateCode.GetType(system, system.longintType),exp);
  2997. Emit(Shl(position,result.op,left.op,right.op));
  2998. ELSIF leftType IS SyntaxTree.ComplexType THEN
  2999. InitOperand(result, ModeValue);
  3000. componentType := left.op.type;
  3001. (* TODO: review this *)
  3002. (*
  3003. result.op = left.op * right.op - left.tag * right.tag
  3004. result.tag = left.tag * right.op + left.op * right.tag
  3005. *)
  3006. result.op := IntermediateCode.Register(componentType, IntermediateCode.GeneralPurposeRegister,AcquireRegister(componentType,IntermediateCode.GeneralPurposeRegister));
  3007. Emit(Mul(position,result.op, left.op, right.op));
  3008. tempReg := IntermediateCode.Register(componentType, IntermediateCode.GeneralPurposeRegister,AcquireRegister(componentType,IntermediateCode.GeneralPurposeRegister));
  3009. Emit(Mul(position,tempReg, left.tag, right.tag));
  3010. Emit(Sub(position,result.op, result.op, tempReg));
  3011. Reuse2(result.tag, left.tag, right.op);
  3012. Emit(Mul(position,result.tag, left.tag, right.op));
  3013. Emit(Mul(position,tempReg, left.op, right.tag));
  3014. Emit(Add(position,result.tag, result.tag, tempReg));
  3015. ReleaseIntermediateOperand(tempReg)
  3016. ELSE
  3017. InitOperand(result,ModeValue);
  3018. Reuse2a(result.op,left.op,right.op,dest);
  3019. Emit(Mul(position,result.op,left.op,right.op));
  3020. END;
  3021. ReleaseOperand(left); ReleaseOperand(right);
  3022. |Scanner.Div:
  3023. Evaluate(x.left,left);
  3024. Evaluate(x.right,right);
  3025. IF ((x.type.resolved IS SyntaxTree.IntegerType) OR (x.type.resolved IS SyntaxTree.AddressType)) & IsIntegerConstant(x.right,value) & PowerOf2(value,exp) THEN
  3026. InitOperand(result,ModeValue);
  3027. Reuse1a(result.op,left.op,dest);
  3028. IntermediateCode.InitImmediate(right.op,IntermediateCode.GetType(system, system.longintType),exp);
  3029. Emit(Shr(position,result.op,left.op,right.op));
  3030. ELSE
  3031. IF (x.type.resolved IS SyntaxTree.IntegerType) & (x.right.resolved = NIL) THEN (* divisor negative check *)
  3032. IntermediateCode.InitImmediate(zero,IntermediateCode.GetType(system,rightType),0);
  3033. IF ~isUnchecked THEN
  3034. exit := NewLabel();
  3035. BrltL(exit,zero,right.op);
  3036. EmitTrap(position,NegativeDivisorTrap);
  3037. SetLabel(exit);
  3038. END;
  3039. END;
  3040. InitOperand(result,ModeValue);
  3041. Reuse2a(result.op,left.op,right.op,dest);
  3042. Emit(Div(position,result.op,left.op,right.op));
  3043. END;
  3044. ReleaseOperand(left); ReleaseOperand(right);
  3045. |Scanner.Mod:
  3046. Evaluate(x.left,left);
  3047. Evaluate(x.right,right);
  3048. IF ((x.type.resolved IS SyntaxTree.IntegerType) OR (x.type.resolved IS SyntaxTree.AddressType)) & IsIntegerConstant(x.right,value) & PowerOf2(value,exp) THEN
  3049. IntermediateCode.InitImmediate(right.op,IntermediateCode.GetType(system,x.type),value-1);
  3050. InitOperand(result,ModeValue);
  3051. Reuse1a(result.op,left.op,dest);
  3052. Emit(And(position,result.op,left.op,right.op));
  3053. ELSE
  3054. IF (x.type.resolved IS SyntaxTree.IntegerType) & (x.right.resolved = NIL) THEN (* divisor negative check *)
  3055. IntermediateCode.InitImmediate(zero,IntermediateCode.GetType(system,rightType),0);
  3056. IF ~isUnchecked THEN
  3057. exit := NewLabel();
  3058. BrltL(exit,zero,right.op);
  3059. EmitTrap(position,NegativeDivisorTrap);
  3060. SetLabel(exit);
  3061. END;
  3062. END;
  3063. InitOperand(result,ModeValue);
  3064. Reuse2a(result.op,left.op,right.op,dest);
  3065. Emit(Mod(position,result.op,left.op,right.op));
  3066. END;
  3067. ReleaseOperand(left); ReleaseOperand(right);
  3068. |Scanner.Slash:
  3069. Evaluate(x.left,left);
  3070. Evaluate(x.right,right);
  3071. IF leftType IS SyntaxTree.SetType THEN
  3072. InitOperand(result,ModeValue);
  3073. Reuse2a(result.op,left.op,right.op,dest);
  3074. Emit(Xor(position,result.op,left.op,right.op));
  3075. ELSIF leftType IS SyntaxTree.ComplexType THEN
  3076. InitOperand(result,ModeValue);
  3077. componentType := left.op.type;
  3078. (* review this *)
  3079. (*
  3080. divisor = right.op * right.op + right.tag * right.tag
  3081. result.op = (left.op * right.op + left.tag * right.tag) / divisor
  3082. result.tag = (left.tag * right.op - left.op * right.tag) / divisor
  3083. *)
  3084. tempReg := IntermediateCode.Register(componentType, IntermediateCode.GeneralPurposeRegister,AcquireRegister(componentType,IntermediateCode.GeneralPurposeRegister));
  3085. tempReg2 := IntermediateCode.Register(componentType, IntermediateCode.GeneralPurposeRegister,AcquireRegister(componentType,IntermediateCode.GeneralPurposeRegister));
  3086. Emit(Mul(position,tempReg, right.op, right.op));
  3087. Emit(Mul(position,tempReg2, right.tag, right.tag));
  3088. Emit(Add(position,tempReg, tempReg, tempReg2));
  3089. result.op := tempReg2;
  3090. Emit(Mul(position,result.op, left.op, right.op));
  3091. tempReg2 := IntermediateCode.Register(componentType, IntermediateCode.GeneralPurposeRegister, AcquireRegister(componentType,IntermediateCode.GeneralPurposeRegister));
  3092. Emit(Mul(position,tempReg2, left.tag, right.tag));
  3093. Emit(Add(position,result.op, result.op, tempReg2));
  3094. Emit(Div(position,result.op, result.op, tempReg));
  3095. Reuse2(result.tag, left.tag, right.op);
  3096. Emit(Mul(position,result.tag, left.tag, right.op));
  3097. Emit(Mul(position,tempReg2, left.op, right.tag));
  3098. Emit(Sub(position,result.tag, result.tag, tempReg2));
  3099. Emit(Div(position,result.tag, result.tag, tempReg));
  3100. ReleaseIntermediateOperand(tempReg);
  3101. ReleaseIntermediateOperand(tempReg2)
  3102. ELSE
  3103. InitOperand(result,ModeValue);
  3104. Reuse2a(result.op,left.op,right.op,dest);
  3105. Emit(Div(position,result.op,left.op,right.op));
  3106. END;
  3107. ReleaseOperand(left); ReleaseOperand(right);
  3108. |Scanner.Equal:
  3109. IF ~conditional THEN ConditionToValue(x);
  3110. ELSIF (leftType IS SyntaxTree.ArrayType) OR (leftType IS SyntaxTree.StringType) THEN (* string comparison *)
  3111. CompareString(BreqL,x.left,x.right);
  3112. ELSE
  3113. Evaluate(x.left,left);
  3114. Evaluate(x.right,right);
  3115. IF leftType IS SyntaxTree.RangeType THEN
  3116. ASSERT(rightType IS SyntaxTree.RangeType);
  3117. BrneL(falseLabel, left.op, right.op); (* first *)
  3118. BrneL(falseLabel, left.tag, right.tag); (* last *)
  3119. BrneL(falseLabel, left.extra, right.extra); (* step *)
  3120. ReleaseOperand(left); ReleaseOperand(right);
  3121. BrL(trueLabel)
  3122. ELSIF IsDelegate(leftType) THEN (* delegate comparison *)
  3123. BrneL(falseLabel, left.op, right.op); (* first *)
  3124. BrneL(falseLabel, left.tag, right.tag); (* last *)
  3125. ReleaseOperand(left); ReleaseOperand(right);
  3126. BrL(trueLabel)
  3127. ELSIF leftType IS SyntaxTree.ComplexType THEN
  3128. (* TODO: review this *)
  3129. BrneL(falseLabel, left.op, right.op); (* real part *)
  3130. BrneL(falseLabel, left.tag, right.tag); (* imaginary part *)
  3131. ReleaseOperand(left); ReleaseOperand(right);
  3132. BrL(trueLabel)
  3133. ELSE
  3134. BrneL(falseLabel,left.op,right.op); (* inverse evaluation to optimize jumps for true case *)
  3135. ReleaseOperand(left); ReleaseOperand(right);
  3136. BrL(trueLabel);
  3137. END;
  3138. END;
  3139. |Scanner.LessEqual:
  3140. IF ~conditional THEN ConditionToValue(x);
  3141. ELSIF (leftType IS SyntaxTree.ArrayType) OR (leftType IS SyntaxTree.StringType) THEN (* string comparison *)
  3142. CompareString(BrgeL,x.right,x.left);
  3143. ELSE
  3144. Evaluate(x.left,left);
  3145. Evaluate(x.right,right);
  3146. IF leftType IS SyntaxTree.SetType THEN (* left subsetequal right: left \cap right = left *)
  3147. Reuse1(temp.op,right.op);
  3148. Emit(And(position,temp.op,left.op,right.op));
  3149. ReleaseOperand(right);
  3150. BreqL(trueLabel,temp.op,left.op);
  3151. BrL(falseLabel);
  3152. ReleaseOperand(temp);ReleaseOperand(left);
  3153. ELSE
  3154. BrltL(falseLabel,right.op,left.op); (* inverse evaluation to optimize jumps for true case *)
  3155. ReleaseOperand(left); ReleaseOperand(right);
  3156. BrL(trueLabel);
  3157. END;
  3158. END;
  3159. |Scanner.Less:
  3160. IF leftType IS SyntaxTree.SetType THEN (* left < right <=> left <= right & left # right *)
  3161. leftExpression := SyntaxTree.NewBinaryExpression(-1,x.left,x.right,Scanner.LessEqual);
  3162. leftExpression.SetType(system.booleanType);
  3163. rightExpression := SyntaxTree.NewBinaryExpression(-1,x.left,x.right,Scanner.Unequal);
  3164. rightExpression.SetType(system.booleanType);
  3165. leftExpression := SyntaxTree.NewBinaryExpression(-1,leftExpression,rightExpression,Scanner.And);
  3166. leftExpression.SetType(system.booleanType);
  3167. Expression(leftExpression);
  3168. ELSIF ~conditional THEN ConditionToValue(x);
  3169. ELSIF (leftType IS SyntaxTree.ArrayType) OR (leftType IS SyntaxTree.StringType) THEN (* string comparison *)
  3170. CompareString(BrltL,x.left,x.right);
  3171. ELSE
  3172. Evaluate(x.left,left);
  3173. Evaluate(x.right,right);
  3174. BrgeL(falseLabel,left.op,right.op); (* inverse evaluation to optimize jumps for true case *)
  3175. ReleaseOperand(left); ReleaseOperand(right);
  3176. BrL(trueLabel);
  3177. END;
  3178. |Scanner.Greater:
  3179. IF leftType IS SyntaxTree.SetType THEN (* left > right <=> left >= right & left # right *)
  3180. leftExpression := SyntaxTree.NewBinaryExpression(-1,x.left,x.right,Scanner.GreaterEqual);
  3181. leftExpression.SetType(system.booleanType);
  3182. rightExpression := SyntaxTree.NewBinaryExpression(-1,x.left,x.right,Scanner.Unequal);
  3183. rightExpression.SetType(system.booleanType);
  3184. leftExpression := SyntaxTree.NewBinaryExpression(-1,leftExpression,rightExpression,Scanner.And);
  3185. leftExpression.SetType(system.booleanType);
  3186. Expression(leftExpression);
  3187. ELSIF ~conditional THEN ConditionToValue(x);
  3188. ELSIF (leftType IS SyntaxTree.ArrayType) OR (leftType IS SyntaxTree.StringType) THEN (* string comparison *)
  3189. CompareString(BrltL,x.right,x.left);
  3190. ELSE
  3191. Evaluate(x.left,left);
  3192. Evaluate(x.right,right);
  3193. BrgeL(falseLabel, right.op,left.op); (* inverse evaluation to optimize jumps for true case *)
  3194. ReleaseOperand(left); ReleaseOperand(right);
  3195. BrL(trueLabel);
  3196. END;
  3197. |Scanner.GreaterEqual:
  3198. IF ~conditional THEN ConditionToValue(x);
  3199. ELSIF (leftType IS SyntaxTree.ArrayType) OR (leftType IS SyntaxTree.StringType) THEN (* string comparison *)
  3200. CompareString(BrgeL,x.left,x.right);
  3201. ELSE
  3202. Evaluate(x.left,left);
  3203. Evaluate(x.right,right);
  3204. IF leftType IS SyntaxTree.SetType THEN (* left supsetequal right: left \cap right = right *)
  3205. Reuse1(temp.op,left.op);
  3206. Emit(And(position,temp.op,left.op,right.op));
  3207. ReleaseOperand(left);
  3208. BreqL(trueLabel, temp.op,right.op);
  3209. ReleaseOperand(temp); ReleaseOperand(right);
  3210. BrL(falseLabel);
  3211. ELSE
  3212. BrltL(falseLabel, left.op,right.op); (* inverse evaluation to optimize jumps for true case *)
  3213. ReleaseOperand(left); ReleaseOperand(right);
  3214. BrL(trueLabel);
  3215. END;
  3216. END;
  3217. |Scanner.Unequal:
  3218. IF ~conditional THEN ConditionToValue(x);
  3219. ELSIF (leftType IS SyntaxTree.ArrayType) OR (leftType IS SyntaxTree.StringType) THEN (* string comparison *)
  3220. CompareString(BrneL,x.left,x.right);
  3221. ELSE
  3222. Evaluate(x.left,left);
  3223. Evaluate(x.right,right);
  3224. IF leftType IS SyntaxTree.RangeType THEN
  3225. ASSERT(rightType IS SyntaxTree.RangeType);
  3226. BrneL(trueLabel, left.op, right.op); (* first *)
  3227. BrneL(trueLabel, left.tag, right.tag); (* last *)
  3228. BrneL(trueLabel, left.extra, right.extra); (* step *)
  3229. ReleaseOperand(left); ReleaseOperand(right);
  3230. BrL(falseLabel)
  3231. ELSIF IsDelegate(leftType) THEN (* delegate comparison *)
  3232. BrneL(trueLabel, left.op, right.op); (* first *)
  3233. BrneL(trueLabel, left.tag, right.tag); (* last *)
  3234. ReleaseOperand(left); ReleaseOperand(right);
  3235. BrL(falseLabel)
  3236. ELSIF leftType IS SyntaxTree.ComplexType THEN
  3237. (* TODO: review this *)
  3238. BrneL(trueLabel, left.op, right.op); (* real part *)
  3239. BrneL(trueLabel, left.tag, right.tag); (* imaginary part *)
  3240. ReleaseOperand(left); ReleaseOperand(right);
  3241. BrL(falseLabel)
  3242. ELSE
  3243. BreqL(falseLabel,left.op,right.op); (* inverse evaluation to optimize jumps for true case *)
  3244. ReleaseOperand(left); ReleaseOperand(right);
  3245. BrL(trueLabel);
  3246. END;
  3247. END;
  3248. |Scanner.In:
  3249. ASSERT(rightType.resolved IS SyntaxTree.SetType);
  3250. Evaluate(x.left,left);
  3251. Evaluate(x.right,right);
  3252. Convert(left.op,setType);
  3253. ReuseCopy(temp.op,right.op);
  3254. Emit(Shr(position,temp.op,temp.op,left.op));
  3255. ReleaseOperand(right); ReleaseOperand(left);
  3256. IntermediateCode.InitImmediate(one,setType,1);
  3257. Emit(And(position,temp.op,temp.op,one));
  3258. IF conditional THEN
  3259. IntermediateCode.InitImmediate(zero,setType,0);
  3260. BrneL(trueLabel,temp.op,zero);
  3261. ReleaseOperand(temp);
  3262. BrL(falseLabel);
  3263. ELSE
  3264. Convert(temp.op,bool);
  3265. result.mode := ModeValue;
  3266. result.op := temp.op;
  3267. result.tag := nil; (* may be left over from calls to evaluate *)
  3268. END;
  3269. ELSE
  3270. IF (x.operator = Scanner.Questionmarks) OR (x.operator = Scanner.LessLessQ) & (x.right.type.resolved IS SyntaxTree.PortType) THEN
  3271. IF x.operator = Scanner.Questionmarks THEN
  3272. leftExpression := x.left;
  3273. rightExpression := x.right;
  3274. ELSE
  3275. leftExpression := x.right;
  3276. rightExpression := x.left;
  3277. END;
  3278. Evaluate(leftExpression, left);
  3279. Emit(Push(position,left.op));
  3280. ReleaseOperand(left);
  3281. Designate(rightExpression, right);
  3282. size := ToMemoryUnits(system,system.SizeOf(x.right.type));
  3283. IF ~backend.cellsAreObjects THEN
  3284. IF size # 1 THEN Error(x.right.position,"receive not implemented for complex data types") END;
  3285. END;
  3286. Emit(Push(position,right.op));
  3287. ReleaseOperand(right);
  3288. IF backend.cellsAreObjects THEN
  3289. CallThis(position,"ActiveCellsRuntime","ReceiveNonBlocking",2);
  3290. ELSE
  3291. CallThis(position,ChannelModuleName,"ReceiveNonBlocking",2);
  3292. END;
  3293. InitOperand(result, ModeValue);
  3294. result.op := NewRegisterOperand(bool);
  3295. Emit(Result(position,result.op));
  3296. IF conditional THEN
  3297. IntermediateCode.InitImmediate(zero,setType,0);
  3298. BrneL(trueLabel,result.op,zero);
  3299. ReleaseOperand(result);
  3300. BrL(falseLabel);
  3301. END;
  3302. ELSIF (x.operator = Scanner.ExclamationMarks) OR (x.operator = Scanner.LessLessQ) & (x.left.type.resolved IS SyntaxTree.PortType) THEN
  3303. leftExpression := x.left;
  3304. rightExpression := x.right;
  3305. Evaluate(leftExpression, left);
  3306. Emit(Push(position,left.op));
  3307. ReleaseOperand(left);
  3308. Evaluate(rightExpression, right);
  3309. size := ToMemoryUnits(system,system.SizeOf(x.right.type));
  3310. IF ~backend.cellsAreObjects THEN
  3311. IF size # 1 THEN Error(x.right.position,"send not implemented for complex data types") END;
  3312. END;
  3313. Emit(Push(position,right.op));
  3314. ReleaseOperand(right);
  3315. IF backend.cellsAreObjects THEN
  3316. CallThis(position,"ActiveCellsRuntime","SendNonBlocking",2);
  3317. ELSE
  3318. CallThis(position,ChannelModuleName,"SendNonBlocking",2);
  3319. END;
  3320. InitOperand(result, ModeValue);
  3321. result.op := NewRegisterOperand(bool);
  3322. Emit(Result(position,result.op));
  3323. IF conditional THEN
  3324. IntermediateCode.InitImmediate(zero,setType,0);
  3325. BrneL(trueLabel,result.op,zero);
  3326. ReleaseOperand(result);
  3327. BrL(falseLabel);
  3328. END;
  3329. ELSE
  3330. HALT(100);
  3331. END;
  3332. END;
  3333. destination := dest;
  3334. IF Trace THEN TraceExit("VisitBinaryExpression") END;
  3335. END VisitBinaryExpression;
  3336. PROCEDURE VisitRangeExpression(x: SyntaxTree.RangeExpression);
  3337. VAR localResult, operand: Operand;
  3338. BEGIN
  3339. IF Trace THEN TraceEnter("VisitRangeExpression") END;
  3340. InitOperand(localResult, ModeValue);
  3341. ASSERT(x.first # NIL);
  3342. Evaluate(x.first, operand);
  3343. localResult.op := operand.op;
  3344. ReleaseOperand(operand);
  3345. UseIntermediateOperand(localResult.op);
  3346. ASSERT(x.last # NIL);
  3347. Evaluate(x.last, operand);
  3348. localResult.tag := operand.op;
  3349. ReleaseOperand(operand);
  3350. UseIntermediateOperand(localResult.tag);
  3351. IF x.step # NIL THEN
  3352. Evaluate(x.step, operand);
  3353. localResult.extra := operand.op;
  3354. ReleaseOperand(operand);
  3355. UseIntermediateOperand(localResult.extra);
  3356. END;
  3357. result := localResult;
  3358. IF Trace THEN TraceExit("VisitRangeExpression") END
  3359. END VisitRangeExpression;
  3360. PROCEDURE VisitTensorRangeExpression*(x: SyntaxTree.TensorRangeExpression);
  3361. BEGIN
  3362. HALT(100); (* should never be evaluated *)
  3363. END VisitTensorRangeExpression;
  3364. PROCEDURE VisitConversion(x: SyntaxTree.Conversion);
  3365. VAR old: Operand; dest: IntermediateCode.Operand; componentType: SyntaxTree.Type;
  3366. BEGIN
  3367. IF Trace THEN TraceEnter("VisitConversion") END;
  3368. ASSERT(~(x.expression.type.resolved IS SyntaxTree.RangeType));
  3369. dest := destination; destination := emptyOperand;
  3370. Evaluate(x.expression,old);
  3371. InitOperand(result,ModeValue);
  3372. result.op := old.op;
  3373. ASSERT(result.op.mode # 0);
  3374. IF x.type.resolved IS SyntaxTree.ComplexType THEN
  3375. (* convert TO a complex number *)
  3376. componentType := x.type.resolved(SyntaxTree.ComplexType).componentType;
  3377. Convert(result.op,IntermediateCode.GetType(system, componentType));
  3378. ASSERT(result.op.mode # 0);
  3379. IF x.expression.type.resolved IS SyntaxTree.ComplexType THEN
  3380. (* convert FROM a complex number TO a complex number*)
  3381. result.tag := old.tag;
  3382. ASSERT(result.tag.mode # 0);
  3383. Convert(result.tag,IntermediateCode.GetType(system, componentType));
  3384. ASSERT(result.tag.mode # 0)
  3385. ELSE
  3386. ASSERT(componentType IS SyntaxTree.FloatType); (* this excludes complex types based on integer types *)
  3387. result.tag := IntermediateCode.FloatImmediate(IntermediateCode.GetType(system, componentType), 0); (* the imaginary part is set to 0 *)
  3388. END
  3389. ELSE
  3390. Convert(result.op,IntermediateCode.GetType(system,x.type));
  3391. ASSERT(result.op.mode # 0);
  3392. result.tag := old.tag; (*! probably never used *)
  3393. END;
  3394. destination := dest;
  3395. IF Trace THEN TraceExit("VisitConversion") END;
  3396. END VisitConversion;
  3397. PROCEDURE VisitTypeDeclaration(x: SyntaxTree.TypeDeclaration);
  3398. BEGIN
  3399. IF Trace THEN TraceEnter("VisitTypeDeclaration") END;
  3400. ASSERT((x.declaredType.resolved IS SyntaxTree.EnumerationType) OR (x.declaredType.resolved IS SyntaxTree.RecordType)
  3401. OR (x.declaredType.resolved IS SyntaxTree.PointerType) & (x.declaredType.resolved(SyntaxTree.PointerType).pointerBase.resolved IS SyntaxTree.RecordType));
  3402. IF Trace THEN TraceExit("VisitTypeDeclaration") END;
  3403. END VisitTypeDeclaration;
  3404. (** designators (expressions) *)
  3405. PROCEDURE VisitSymbolDesignator(x: SyntaxTree.SymbolDesignator);
  3406. VAR ownerType, designatorType: SyntaxTree.RecordType;
  3407. BEGIN
  3408. IF Trace THEN TraceEnter("VisitSymbolDesignator") END;
  3409. IF x.left # NIL THEN Expression(x.left) END;
  3410. Symbol(x.symbol,result);
  3411. IF backend.cooperative & (x.symbol IS SyntaxTree.Variable) & (x.symbol.scope IS SyntaxTree.RecordScope) THEN
  3412. ASSERT ((x.left # NIL) & (x.left.type.resolved IS SyntaxTree.RecordType));
  3413. ownerType := x.symbol.scope(SyntaxTree.RecordScope).ownerRecord;
  3414. designatorType := x.left.type.resolved(SyntaxTree.RecordType);
  3415. IF ~ownerType.isObject & designatorType.isObject & ~designatorType.pointerType.isPlain THEN
  3416. IntermediateCode.AddOffset(result.op,BaseRecordTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  3417. END;
  3418. END;
  3419. IF Trace THEN TraceExit("VisitSymbolDesignator") END;
  3420. END VisitSymbolDesignator;
  3421. PROCEDURE BoundCheck(index,length: IntermediateCode.Operand);
  3422. BEGIN
  3423. IF isUnchecked THEN RETURN END;
  3424. IF tagsAvailable THEN
  3425. TrapC(BrltL,index,length,IndexCheckTrap);
  3426. END;
  3427. END BoundCheck;
  3428. PROCEDURE DimensionCheck(base,dim: IntermediateCode.Operand; op: ConditionalBranch );
  3429. VAR d: IntermediateCode.Operand;
  3430. BEGIN
  3431. IF isUnchecked THEN RETURN END;
  3432. MakeMemory(d,base,dim.type,ToMemoryUnits(system,MathDimOffset * addressType.sizeInBits));
  3433. TrapC(op,dim,d,ArraySizeTrap);
  3434. ReleaseIntermediateOperand(d);
  3435. END DimensionCheck;
  3436. PROCEDURE MathIndexDesignator(x: SyntaxTree.IndexDesignator);
  3437. VAR
  3438. index, range, array, sourceLength, sourceIncrement, localResult: Operand;
  3439. firstIndex, lastIndex, stepSize, summand, targetLength, targetIncrement, tmp, srcDim, destDim: IntermediateCode.Operand;
  3440. expression: SyntaxTree.Expression;
  3441. resultingType, leftType, baseType: SyntaxTree.Type;
  3442. skipLabel1: Label;
  3443. i, indexListSize, indexDim, rangeCount, indexCount, tensorRangeCount, srcDimOffset, destDimOffset, targetArrayDimensionality: LONGINT;
  3444. staticSourceLength, staticSourceIncrement, staticIndex, staticFirstIndex, staticLastIndex, staticStepSize, staticTargetLength: LONGINT;
  3445. variableOp: Operand;
  3446. variable: SyntaxTree.Variable;
  3447. PROCEDURE CountIndices(parameters: SyntaxTree.ExpressionList; VAR indexCount: LONGINT; VAR rangeCount: LONGINT; VAR tensorRangeCount: LONGINT);
  3448. VAR expression: SyntaxTree.Expression;
  3449. BEGIN
  3450. (* count the number of indices, ranges and tensorRanges in the index list *)
  3451. indexCount := 0; rangeCount := 0; tensorRangeCount := 0;
  3452. FOR i := 0 TO parameters.Length() - 1 DO
  3453. expression := parameters.GetExpression(i);
  3454. IF expression IS SyntaxTree.TensorRangeExpression THEN INC(tensorRangeCount)
  3455. ELSIF (expression.type # NIL) & (expression.type.resolved IS SyntaxTree.RangeType) THEN INC(indexCount)
  3456. ELSE INC(indexCount)
  3457. END
  3458. END;
  3459. END CountIndices;
  3460. BEGIN
  3461. ASSERT(tagsAvailable);
  3462. resultingType := x.type.resolved; (* resulting type *)
  3463. leftType := x.left.type.resolved; (* type of array to be indexed over *)
  3464. InitOperand(localResult, ModeReference);
  3465. IF (resultingType IS SyntaxTree.MathArrayType) & ( (resultingType(SyntaxTree.MathArrayType).form # SyntaxTree.Static) OR NeedDescriptor) THEN
  3466. targetArrayDimensionality := resultingType(SyntaxTree.MathArrayType).Dimensionality();
  3467. IF arrayDestinationTag.mode # IntermediateCode.Undefined THEN
  3468. (* a globally defined array destination tag is available -> use and invalidate it*)
  3469. localResult.tag := arrayDestinationTag;
  3470. IntermediateCode.InitOperand(arrayDestinationTag)
  3471. ELSE
  3472. (* otherwise, create a temporary variable and use it to store the array destination tag *)
  3473. variable := GetTemporaryVariable(GetMathArrayDescriptorType(targetArrayDimensionality), FALSE);
  3474. Symbol(variable, variableOp);
  3475. ReuseCopy(localResult.tag, variableOp.op);
  3476. ReleaseOperand(variableOp);
  3477. END
  3478. END;
  3479. indexListSize := x.parameters.Length();
  3480. CountIndices(x.parameters, indexCount, rangeCount, tensorRangeCount);
  3481. ASSERT(tensorRangeCount <= 1);
  3482. (* designate the array to be indexed over, perform tensor range check if known *)
  3483. Designate(x.left, array);
  3484. IF leftType(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  3485. Dereference(array, leftType,FALSE);
  3486. IF tensorRangeCount=0 THEN
  3487. DimensionCheck(array.tag, IntermediateCode.Immediate(int32, rangeCount+indexCount), BreqL)
  3488. END
  3489. END;
  3490. (* determine source and destination dimension offsets; this depends on if the list starts with a '?' *)
  3491. IF x.parameters.GetExpression(0) IS SyntaxTree.TensorRangeExpression THEN
  3492. srcDimOffset := -indexListSize;
  3493. destDimOffset := -rangeCount
  3494. ELSE
  3495. srcDimOffset := 0;
  3496. destDimOffset := 0
  3497. END;
  3498. indexDim := 0;
  3499. (* use address of source array as basis *)
  3500. (*
  3501. ReuseCopy(localResult.op, array.op);
  3502. *)
  3503. localResult.op := array.op;
  3504. UseIntermediateOperand(localResult.op);
  3505. (* go through the index list *)
  3506. FOR i := 0 TO indexListSize - 1 DO
  3507. expression := x.parameters.GetExpression(i);
  3508. IF expression IS SyntaxTree.TensorRangeExpression THEN
  3509. (* nothing to do *)
  3510. ELSE
  3511. (* determine which dimension of source array is currently looked at *)
  3512. IF srcDimOffset < 0 THEN (* tensor expression or the form a[?,i,j] *)
  3513. (* get the memory operand pointing to array descriptor dimension *)
  3514. GetMathArrayField(tmp, array.tag, MathDimOffset);
  3515. (* make a reusable register from it *)
  3516. ReuseCopy(srcDim, tmp);
  3517. ReleaseIntermediateOperand(tmp);
  3518. AddInt(srcDim, srcDim, IntermediateCode.Immediate(addressType, i + srcDimOffset));
  3519. ELSE
  3520. srcDim := IntermediateCode.Immediate(int32, i)
  3521. END;
  3522. (* get length and increment of source array for current dimension *)
  3523. GetMathArrayLength(leftType(SyntaxTree.MathArrayType), array, srcDim, FALSE, sourceLength);
  3524. Convert(sourceLength.op, sizeType);
  3525. GetMathArrayIncrement(leftType(SyntaxTree.MathArrayType), array, srcDim, FALSE, sourceIncrement);
  3526. Convert(sourceIncrement.op, sizeType);
  3527. (* release the dim operand, if dynamic. No register reuse to decrease register pressure *)
  3528. ReleaseIntermediateOperand(srcDim);
  3529. IF SemanticChecker.IsIntegerType(expression.type.resolved) THEN
  3530. (* SINGLE INDEX *)
  3531. Evaluate(expression, index);
  3532. ReleaseIntermediateOperand(index.tag);
  3533. index.tag := emptyOperand;
  3534. Convert(index.op, sizeType);
  3535. (* lower bound check *)
  3536. IF IsIntegerImmediate(index.op, staticIndex) THEN
  3537. ASSERT(staticIndex >= 0) (* ensured by the checker *)
  3538. ELSIF isUnchecked THEN (* do nothing *)
  3539. ELSE
  3540. TrapC(BrgeL, index.op, IntermediateCode.Immediate(sizeType, 0), IndexCheckTrap)
  3541. END;
  3542. (* upper bound check *)
  3543. IF IsIntegerImmediate(index.op, staticIndex) & IsIntegerImmediate(sourceLength.op, staticSourceLength) THEN
  3544. ASSERT(staticIndex < staticSourceLength) (* ensured by checker *)
  3545. ELSIF isUnchecked THEN (* do nothing *)
  3546. ELSE
  3547. TrapC(BrltL, index.op, sourceLength.op, IndexCheckTrap)
  3548. END;
  3549. ReleaseOperand(sourceLength);
  3550. Convert(index.op, addressType);
  3551. summand := index.op;
  3552. ELSIF expression.type.resolved IS SyntaxTree.RangeType THEN
  3553. (* RANGE OF INDICES *)
  3554. Evaluate(expression, range);
  3555. firstIndex := range.op; UseIntermediateOperand(firstIndex);
  3556. lastIndex := range.tag; UseIntermediateOperand(lastIndex);
  3557. stepSize := range.extra; UseIntermediateOperand(stepSize);
  3558. ReleaseOperand(range);
  3559. Convert(firstIndex, sizeType);
  3560. Convert(lastIndex, sizeType);
  3561. Convert(stepSize, sizeType);
  3562. (* for dynamic upper bounds: add a runtime check, which repaces the upper bound with the largest valid index
  3563. if it is 'MAX(LONGINT)' *)
  3564. IF ~IsIntegerImmediate(lastIndex, staticLastIndex) THEN
  3565. TransferToRegister(lastIndex, lastIndex);
  3566. skipLabel1 := NewLabel();
  3567. BrneL(skipLabel1, lastIndex, IntermediateCode.Immediate(sizeType, MAX(LONGINT)));
  3568. Emit(MovReplace(position,lastIndex, sourceLength.op)); (* make sure that no new register is allocated *)
  3569. Emit(Sub(position,lastIndex, lastIndex, IntermediateCode.Immediate(sizeType, 1)));
  3570. SetLabel(skipLabel1)
  3571. END;
  3572. (* check if step size is valid *)
  3573. IF IsIntegerImmediate(stepSize, staticStepSize) THEN
  3574. ASSERT(staticStepSize >= 1) (* ensured by the checker *)
  3575. ELSIF isUnchecked THEN (* do nothing *)
  3576. ELSE
  3577. TrapC(BrgeL, stepSize, IntermediateCode.Immediate(sizeType, 1), IndexCheckTrap)
  3578. END;
  3579. (* check lower bound check *)
  3580. IF IsIntegerImmediate(firstIndex, staticFirstIndex) THEN
  3581. ASSERT(staticFirstIndex >= 0) (* ensured by the checker *)
  3582. ELSIF isUnchecked THEN (* do nothing *)
  3583. ELSE
  3584. TrapC(BrgeL, firstIndex, IntermediateCode.Immediate(sizeType, 0), IndexCheckTrap)
  3585. END;
  3586. (* check upper bound check *)
  3587. IF IsIntegerImmediate(lastIndex, staticLastIndex) & (staticLastIndex = MAX(LONGINT)) THEN
  3588. (* statically open range: nothing to do *)
  3589. ELSIF IsIntegerImmediate(lastIndex, staticLastIndex) & IsIntegerImmediate(sourceLength.op, staticSourceLength) THEN
  3590. ASSERT(staticLastIndex < staticSourceLength)
  3591. ELSIF isUnchecked THEN (* do nothing *)
  3592. ELSE
  3593. TrapC(BrltL, lastIndex, sourceLength.op, IndexCheckTrap)
  3594. END;
  3595. (* determine length of target array for current dimension *)
  3596. (* 1. incorporate last index: *)
  3597. IF IsIntegerImmediate(lastIndex, staticLastIndex) THEN
  3598. (* last index is static *)
  3599. IF IsIntegerImmediate(lastIndex, staticLastIndex) & (staticLastIndex = MAX(LONGINT)) THEN
  3600. targetLength := sourceLength.op
  3601. ELSE
  3602. targetLength := IntermediateCode.Immediate(sizeType, staticLastIndex + 1)
  3603. END;
  3604. UseIntermediateOperand(targetLength);
  3605. ELSE
  3606. (* targetLength := lastIndex + 1
  3607. Reuse1(targetLength, lastIndex);
  3608. *)
  3609. AddInt(targetLength, lastIndex, IntermediateCode.Immediate(sizeType, 1));
  3610. END;
  3611. ReleaseOperand(sourceLength);
  3612. ReleaseIntermediateOperand(lastIndex);
  3613. (* 2. incorporate first index: *)
  3614. IF IsIntegerImmediate(firstIndex, staticFirstIndex) & IsIntegerImmediate(targetLength, staticTargetLength) THEN
  3615. (* first index and current target length are static *)
  3616. targetLength := IntermediateCode.Immediate(sizeType, staticTargetLength - staticFirstIndex)
  3617. ELSIF IsIntegerImmediate(firstIndex, staticFirstIndex) & (staticFirstIndex = 0) THEN
  3618. (* first index = 0: nothing to do *)
  3619. ELSE
  3620. (* targetLength := targetLength - firstIndex *)
  3621. TransferToRegister(targetLength, targetLength);
  3622. Emit(Sub(position,targetLength, targetLength, firstIndex))
  3623. END;
  3624. (* clip negative lengths to 0 *)
  3625. IF IsIntegerImmediate(targetLength, staticTargetLength) THEN
  3626. IF staticTargetLength < 0 THEN
  3627. targetLength := IntermediateCode.Immediate(sizeType, 0)
  3628. END
  3629. ELSE
  3630. skipLabel1 := NewLabel();
  3631. TransferToRegister(targetLength, targetLength);
  3632. BrgeL(skipLabel1, targetLength, IntermediateCode.Immediate(sizeType, 0));
  3633. Emit(Mov(position,targetLength, IntermediateCode.Immediate(sizeType, 0)));
  3634. SetLabel(skipLabel1)
  3635. END;
  3636. (* 3. incorporate index step size: *)
  3637. IF IsIntegerImmediate(stepSize, staticStepSize) & IsIntegerImmediate(targetLength, staticTargetLength) THEN
  3638. (*step size and current target length are static *)
  3639. staticTargetLength := (staticTargetLength-1) DIV staticStepSize + 1;
  3640. targetLength := IntermediateCode.Immediate(sizeType, staticTargetLength)
  3641. ELSIF IsIntegerImmediate(stepSize, staticStepSize) & (staticStepSize = 1) THEN
  3642. (* step size = 1: nothing to do *)
  3643. ELSE
  3644. (* emit code for this:
  3645. targetLength := (targetLength-1) DIV stepSize +1;
  3646. *)
  3647. AddInt(targetLength, targetLength, IntermediateCode.Immediate(sizeType, -1));
  3648. DivInt(targetLength, targetLength, stepSize);
  3649. AddInt(targetLength, targetLength, IntermediateCode.Immediate(sizeType, 1));
  3650. END;
  3651. (* determine increment of target array for current dimension *)
  3652. IF IsIntegerImmediate(sourceIncrement.op, staticSourceIncrement) & IsIntegerImmediate(stepSize, staticStepSize) THEN
  3653. targetIncrement := IntermediateCode.Immediate(sizeType, staticSourceIncrement * staticStepSize);
  3654. ELSIF IsIntegerImmediate(stepSize, staticStepSize) & (staticStepSize = 1) THEN
  3655. (* step size = 1 *)
  3656. targetIncrement := sourceIncrement.op;
  3657. UseIntermediateOperand(targetIncrement)
  3658. ELSE
  3659. (* targetIncrement := sourceIncrement * stepSize *)
  3660. Reuse1(targetIncrement, stepSize);
  3661. ASSERT((sourceIncrement.op.mode # IntermediateCode.ModeImmediate) OR (stepSize.mode # IntermediateCode.ModeImmediate));
  3662. MulInt(targetIncrement, sourceIncrement.op, stepSize);
  3663. END;
  3664. ReleaseIntermediateOperand(stepSize);
  3665. (* write length and increment of target array to descriptor *)
  3666. IF destDimOffset < 0 THEN
  3667. (* determine which dimension of target array is currently looked at *)
  3668. GetMathArrayField(tmp, array.tag, MathDimOffset);
  3669. TransferToRegister(destDim, tmp);
  3670. AddInt(destDim, destDim, IntermediateCode.Immediate(sizeType, indexDim + destDimOffset));
  3671. PutMathArrayLenOrIncr(localResult.tag, targetLength, destDim, FALSE);
  3672. PutMathArrayLenOrIncr(localResult.tag, targetIncrement, destDim, TRUE);
  3673. ReleaseIntermediateOperand(destDim)
  3674. ELSE
  3675. PutMathArrayLength(localResult.tag, targetLength, indexDim);
  3676. PutMathArrayIncrement(localResult.tag , targetIncrement, indexDim)
  3677. END;
  3678. ReleaseIntermediateOperand(targetLength); targetLength := nil;
  3679. ReleaseIntermediateOperand(targetIncrement); targetIncrement := nil;
  3680. INC(indexDim);
  3681. Convert(firstIndex, addressType);
  3682. TransferToRegister(summand, firstIndex);
  3683. ELSE HALT(100);
  3684. END;
  3685. (*
  3686. ASSERT((summand.mode # IntermediateCode.ModeImmediate) OR (sourceIncrement.op.mode # IntermediateCode.ModeImmediate));
  3687. *)
  3688. Convert(sourceIncrement.op, addressType);
  3689. Convert(summand, addressType);
  3690. MulInt(summand, summand, sourceIncrement.op);
  3691. ReleaseIntermediateOperand(sourceIncrement.op);
  3692. AddInt(localResult.op, localResult.op, summand);
  3693. ReleaseIntermediateOperand(summand);
  3694. END
  3695. END;
  3696. result := localResult;
  3697. IF (resultingType IS SyntaxTree.RecordType) & (resultingType(SyntaxTree.RecordType).pointerType = NIL) THEN
  3698. ReleaseIntermediateOperand(result.tag);
  3699. result.tag := TypeDescriptorAdr(resultingType);
  3700. IF ~newObjectFile THEN
  3701. IntermediateCode.MakeMemory(result.tag,addressType);
  3702. END;
  3703. ELSIF IsDelegate(resultingType) THEN
  3704. ReleaseIntermediateOperand(result.tag);
  3705. IntermediateCode.InitMemory(result.tag,addressType,result.op,ToMemoryUnits(system,system.addressSize));
  3706. UseIntermediateOperand(result.tag);
  3707. ELSIF (resultingType IS SyntaxTree.ArrayType) & (resultingType(SyntaxTree.ArrayType).form = SyntaxTree.Static) THEN
  3708. ReleaseIntermediateOperand(result.tag);
  3709. IntermediateCode.InitImmediate(result.tag,addressType,resultingType(SyntaxTree.ArrayType).staticLength);
  3710. ELSIF (resultingType IS SyntaxTree.ArrayType) THEN
  3711. result.tag := array.tag; UseIntermediateOperand(result.tag); result.dimOffset := array.dimOffset+indexListSize-1;
  3712. ELSIF (resultingType IS SyntaxTree.MathArrayType) & ( (resultingType(SyntaxTree.MathArrayType).form # SyntaxTree.Static) OR NeedDescriptor) THEN
  3713. (* finalize target array descriptor *)
  3714. ASSERT(result.tag.mode # IntermediateCode.Undefined); (* tag has been already set in the beginning *)
  3715. (* write lengths and increments of target array for remaining dimensions *)
  3716. i := indexListSize;
  3717. WHILE indexDim < targetArrayDimensionality DO
  3718. GetMathArrayLengthAt(leftType(SyntaxTree.MathArrayType),array,i,FALSE, sourceLength);
  3719. PutMathArrayLength(result.tag, sourceLength.op,indexDim);
  3720. ReleaseOperand(sourceLength);
  3721. GetMathArrayIncrementAt(leftType(SyntaxTree.MathArrayType),array,i,FALSE,sourceIncrement);
  3722. PutMathArrayIncrement(result.tag, sourceIncrement.op,indexDim);
  3723. ReleaseOperand(sourceIncrement);
  3724. INC(i); INC(indexDim);
  3725. END;
  3726. IF leftType(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  3727. tmp := nil;
  3728. ELSE
  3729. GetMathArrayField(tmp,array.tag,MathPtrOffset);
  3730. END;
  3731. PutMathArrayField(result.tag, tmp, MathPtrOffset);
  3732. ReleaseIntermediateOperand(tmp);
  3733. IF leftType(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  3734. baseType := SemanticChecker.ArrayBase(resultingType, indexDim);
  3735. tmp := IntermediateCode.Immediate(addressType, ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  3736. ELSE
  3737. GetMathArrayField(tmp,array.tag, MathElementSizeOffset);
  3738. END;
  3739. PutMathArrayField(result.tag, tmp, MathElementSizeOffset);
  3740. ReleaseIntermediateOperand(tmp);
  3741. PutMathArrayField(result.tag, result.op, MathAdrOffset);
  3742. (* write dimensionality *)
  3743. IF targetArrayDimensionality # 0 THEN
  3744. PutMathArrayField(result.tag, IntermediateCode.Immediate(addressType, targetArrayDimensionality),MathDimOffset);
  3745. END;
  3746. PutMathArrayField(result.tag, IntermediateCode.Immediate(addressType,SYSTEM.VAL(LONGINT,{RangeFlag})),MathFlagsOffset);
  3747. END;
  3748. ReleaseOperand(array);
  3749. IF conditional & (resultingType.resolved IS SyntaxTree.BooleanType) THEN
  3750. ValueToCondition(result); (*! wrong as the result of an index designator is always an address *)
  3751. END;
  3752. END MathIndexDesignator;
  3753. (* TENTATIVE *)
  3754. PROCEDURE DumpOperand(operand: Operand);
  3755. BEGIN
  3756. D.Log.String(" op = ");
  3757. IntermediateCode.DumpOperand(D.Log, operand.op );
  3758. D.Log.Ln;
  3759. D.Log.String(" tag = ");
  3760. IntermediateCode.DumpOperand(D.Log, operand.tag );
  3761. D.Log.Ln;
  3762. D.Log.String(" extra = ");
  3763. IntermediateCode.DumpOperand(D.Log, operand.extra );
  3764. D.Log.Ln;
  3765. D.Log.Update
  3766. END DumpOperand;
  3767. (* get the length of an array , trying to make use of static information *)
  3768. PROCEDURE ArrayLength(type: SyntaxTree.Type; dim: LONGINT; tag: IntermediateCode.Operand): IntermediateCode.Operand;
  3769. VAR res: IntermediateCode.Operand; size: LONGINT;
  3770. BEGIN
  3771. type := type.resolved;
  3772. IF type IS SyntaxTree.ArrayType THEN
  3773. WITH type: SyntaxTree.ArrayType DO
  3774. IF type.form = SyntaxTree.Static THEN
  3775. RETURN IntermediateCode.Immediate(addressType,type.staticLength);
  3776. (*ELSIF (type.form = SyntaxTree.SemiDynamic) & backend.cellsAreObjects THEN
  3777. Evaluate(type.length, op);
  3778. ReleaseIntermediateOperand(op.tag);
  3779. RETURN op.op;*)
  3780. ELSE
  3781. res := tag;
  3782. IntermediateCode.AddOffset(res,ToMemoryUnits(system,addressType.sizeInBits*(DynamicDim(type)-1)));
  3783. IntermediateCode.MakeMemory(res,addressType);
  3784. UseIntermediateOperand(res);
  3785. RETURN res
  3786. END
  3787. END;
  3788. ELSE
  3789. size := ToMemoryUnits(system,system.AlignedSizeOf(type));
  3790. RETURN IntermediateCode.Immediate(addressType,size);
  3791. END;
  3792. END ArrayLength;
  3793. PROCEDURE AddInt(VAR res: IntermediateCode.Operand; x,y: IntermediateCode.Operand);
  3794. BEGIN
  3795. ReleaseIntermediateOperand(res);
  3796. IF IsImmediate(x) & IsImmediate(y) THEN
  3797. IntermediateCode.InitImmediate(res,x.type,x.intValue+y.intValue);
  3798. ELSIF IsAddress(x) & IsImmediate(y) THEN
  3799. IntermediateCode.InitAddress(res,x.type,x.symbol.name, x.symbol.fingerprint, x.symbolOffset);
  3800. IntermediateCode.AddOffset(res, LONGINT(y.intValue)+x.offset);
  3801. ELSIF IsAddress(y) & IsImmediate(x) THEN
  3802. IntermediateCode.InitAddress(res,y.type,y.symbol.name, y.symbol.fingerprint, y.symbolOffset);
  3803. IntermediateCode.AddOffset(res, LONGINT(x.intValue)+y.offset);
  3804. ELSIF IsRegister(x) & IsImmediate(y) THEN
  3805. IntermediateCode.InitRegister(res, x.type, x.registerClass, x.register);
  3806. IntermediateCode.AddOffset(res, x.offset + LONGINT(y.intValue));
  3807. UseIntermediateOperand(res);
  3808. ELSIF IsRegister(y) & IsImmediate(x) THEN
  3809. IntermediateCode.InitRegister(res, y.type, y.registerClass, y.register);
  3810. IntermediateCode.AddOffset(res, y.offset + LONGINT(x.intValue));
  3811. UseIntermediateOperand(res);
  3812. ELSE
  3813. IF ~ReusableRegister(res) THEN
  3814. IntermediateCode.InitRegister(res,x.type,IntermediateCode.GeneralPurposeRegister,AcquireRegister(x.type,IntermediateCode.GeneralPurposeRegister));
  3815. ELSE
  3816. UseIntermediateOperand(res);
  3817. END;
  3818. IF IsImmediate(x) & (x.intValue = 0) THEN
  3819. Emit(Mov(position,res,y))
  3820. ELSIF IsImmediate(y) & (y.intValue=0) THEN
  3821. Emit(Mov(position,res,x))
  3822. ELSE
  3823. Emit(Add(position,res, x, y));
  3824. END;
  3825. END;
  3826. END AddInt;
  3827. PROCEDURE MulInt(VAR res: IntermediateCode.Operand; x,y: IntermediateCode.Operand);
  3828. BEGIN
  3829. ReleaseIntermediateOperand(res);
  3830. IF IsImmediate(x) & IsImmediate(y) THEN
  3831. IntermediateCode.InitImmediate(res,x.type,x.intValue*y.intValue);
  3832. ELSE
  3833. IF ~ReusableRegister(res) THEN
  3834. IntermediateCode.InitRegister(res,x.type,IntermediateCode.GeneralPurposeRegister,AcquireRegister(x.type,IntermediateCode.GeneralPurposeRegister));
  3835. ELSE UseIntermediateOperand(res);
  3836. END;
  3837. IF IsImmediate(x) & (x.intValue = 1) THEN
  3838. Emit(Mov(position,res,y))
  3839. ELSIF IsImmediate(y) & (y.intValue=1) THEN
  3840. Emit(Mov(position,res,x))
  3841. ELSE
  3842. Emit(Mul(position,res, x, y));
  3843. END;
  3844. END;
  3845. END MulInt;
  3846. PROCEDURE DivInt(VAR res: IntermediateCode.Operand; x,y: IntermediateCode.Operand);
  3847. BEGIN
  3848. ReleaseIntermediateOperand(res);
  3849. IF IsImmediate(x) & IsImmediate(y) THEN
  3850. IntermediateCode.InitImmediate(res,x.type,x.intValue DIV y.intValue);
  3851. ELSE
  3852. IF ~ReusableRegister(res) THEN
  3853. IntermediateCode.InitRegister(res,x.type,IntermediateCode.GeneralPurposeRegister,AcquireRegister(x.type,IntermediateCode.GeneralPurposeRegister));
  3854. ELSE UseIntermediateOperand(res);
  3855. END;
  3856. IF IsImmediate(x) & (x.intValue = 1) THEN
  3857. Emit(Mov(position,res,y))
  3858. ELSIF IsImmediate(y) & (y.intValue=1) THEN
  3859. Emit(Mov(position,res,x))
  3860. ELSE
  3861. Emit(Div(position,res, x, y));
  3862. END;
  3863. END;
  3864. END DivInt;
  3865. PROCEDURE IndexDesignator(x: SyntaxTree.IndexDesignator);
  3866. VAR length,res: IntermediateCode.Operand; type: SyntaxTree.Type; maxDim: LONGINT; array:Operand;
  3867. index: Operand; e: SyntaxTree.Expression;i: LONGINT; size: LONGINT; atype: SyntaxTree.ArrayType;
  3868. BEGIN
  3869. type := x.left.type.resolved;
  3870. IF type IS SyntaxTree.StringType THEN
  3871. atype := SyntaxTree.NewArrayType(-1, NIL, SyntaxTree.Static);
  3872. atype.SetArrayBase(type(SyntaxTree.StringType).baseType);
  3873. atype.SetLength(Global.NewIntegerValue(system,-1, type(SyntaxTree.StringType).length));
  3874. type := atype;
  3875. x.left.SetType(type);
  3876. END;
  3877. IntermediateCode.InitImmediate(res,addressType,0);
  3878. maxDim := x.parameters.Length()-1;
  3879. FOR i := 0 TO maxDim DO
  3880. e := x.parameters.GetExpression(i);
  3881. Evaluate(e,index);
  3882. Convert(index.op,addressType);
  3883. AddInt(res, res, index.op);
  3884. IF i = 0 THEN
  3885. (*
  3886. ReuseCopy(res, index.op);
  3887. *)
  3888. Designate(x.left,array);
  3889. type := x.left.type.resolved;
  3890. IF (type(SyntaxTree.ArrayType).form = SyntaxTree.SemiDynamic) & backend.cellsAreObjects THEN
  3891. Dereference(array, type, FALSE);
  3892. END;
  3893. (*
  3894. ELSE AddInt(res, res, index.op);
  3895. *)
  3896. END;
  3897. IF (array.tag.mode # IntermediateCode.Undefined ) THEN
  3898. length := ArrayLength(type(SyntaxTree.ArrayType),array.dimOffset+i,array.tag);
  3899. IF ((length.mode # IntermediateCode.ModeImmediate) OR (index.op.mode # IntermediateCode.ModeImmediate)) & tagsAvailable THEN
  3900. BoundCheck(index.op, length);
  3901. END;
  3902. ReleaseIntermediateOperand(length);
  3903. END;
  3904. ReleaseOperand(index);
  3905. type := type(SyntaxTree.ArrayType).arrayBase.resolved;
  3906. length := ArrayLength(type,array.dimOffset+i-1,array.tag);
  3907. IF (length.mode # IntermediateCode.ModeImmediate) OR (length.intValue # 1) THEN
  3908. MulInt(res,res,length);
  3909. END;
  3910. ReleaseIntermediateOperand(length);
  3911. END;
  3912. IF (type IS SyntaxTree.ArrayType) THEN
  3913. IF (type(SyntaxTree.ArrayType).form # SyntaxTree.Static) THEN
  3914. size := StaticSize(system, type);
  3915. IF size # 1 THEN
  3916. length := IntermediateCode.Immediate(addressType,size);
  3917. MulInt(res,res,length);
  3918. END;
  3919. ELSE
  3920. size := StaticSize(system, type(SyntaxTree.ArrayType).arrayBase);
  3921. IF size # 1 THEN
  3922. length := IntermediateCode.Immediate(addressType,size);
  3923. MulInt(res,res,length);
  3924. END;
  3925. END;
  3926. END;
  3927. AddInt(res,res,array.op);
  3928. InitOperand(result,ModeReference);
  3929. result.op := res;
  3930. IF (type IS SyntaxTree.RecordType) & (type(SyntaxTree.RecordType).pointerType = NIL) THEN
  3931. ReleaseIntermediateOperand(result.tag);
  3932. result.tag := TypeDescriptorAdr(type);
  3933. IF ~newObjectFile THEN
  3934. IntermediateCode.MakeMemory(result.tag,addressType);
  3935. END
  3936. ELSIF IsDelegate(type) THEN
  3937. ReleaseIntermediateOperand(result.tag);
  3938. IntermediateCode.InitMemory(result.tag,addressType,result.op,ToMemoryUnits(system,system.addressSize));
  3939. UseIntermediateOperand(result.tag);
  3940. ELSIF (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form = SyntaxTree.Static) THEN
  3941. ReleaseIntermediateOperand(result.tag);
  3942. IntermediateCode.InitImmediate(result.tag,addressType,type(SyntaxTree.ArrayType).staticLength);
  3943. ELSIF (type IS SyntaxTree.ArrayType) THEN
  3944. result.tag := array.tag; UseIntermediateOperand(result.tag); result.dimOffset := array.dimOffset+maxDim;
  3945. END;
  3946. ReleaseOperand(array);
  3947. IF (conditional) & (type.resolved IS SyntaxTree.BooleanType) THEN
  3948. ValueToCondition(result); (*! wrong as the result of an index designator is always an address *)
  3949. END;
  3950. END IndexDesignator;
  3951. PROCEDURE VisitIndexDesignator(x: SyntaxTree.IndexDesignator);
  3952. VAR type: SyntaxTree.Type; dest: IntermediateCode.Operand;
  3953. BEGIN
  3954. IF Trace THEN TraceEnter("VisitIndexDesignator") END;
  3955. dest := destination; destination := emptyOperand;
  3956. type := x.left.type.resolved;
  3957. IF type IS SyntaxTree.MathArrayType THEN
  3958. MathIndexDesignator(x);
  3959. ELSE ASSERT((type IS SyntaxTree.ArrayType) OR (type IS SyntaxTree.StringType));
  3960. IndexDesignator(x);
  3961. END;
  3962. destination := dest;
  3963. IF Trace THEN TraceExit("VisitIndexDesignator") END;
  3964. END VisitIndexDesignator;
  3965. PROCEDURE PrepareTensorDescriptor(expression: SyntaxTree.IndexDesignator): SyntaxTree.Variable;
  3966. VAR variable: SyntaxTree.Variable; srcOperand,destOperand,procOp: Operand;
  3967. moduleName, procedureName: SyntaxTree.IdentifierString; arrayBase: SyntaxTree.Module; saved: RegisterEntry; s: Basic.MessageString;
  3968. procedure: SyntaxTree.Procedure;
  3969. parameters: SyntaxTree.ExpressionList; e: SyntaxTree.Expression;
  3970. prefixIndices, prefixRanges, suffixIndices, suffixRanges,i : LONGINT; tensorFound: BOOLEAN;
  3971. BEGIN
  3972. variable := GetTemporaryVariable(expression.left.type, FALSE);
  3973. parameters := expression.parameters;
  3974. moduleName := "FoxArrayBase";
  3975. procedureName := "CopyDescriptor";
  3976. IF AddImport(moduleName,arrayBase,TRUE) THEN
  3977. SaveRegisters();ReleaseUsedRegisters(saved);
  3978. procedure := arrayBase.moduleScope.FindProcedure(SyntaxTree.NewIdentifier(procedureName));
  3979. IF procedure = NIL THEN
  3980. s := "procedure ";
  3981. Strings.Append(s,moduleName);
  3982. Strings.Append(s,".");
  3983. Strings.Append(s,procedureName);
  3984. Strings.Append(s," not present");
  3985. Error(position,s);
  3986. ELSE
  3987. (* push address of temporary variable *)
  3988. Symbol(variable,destOperand);
  3989. Emit(Push(position,destOperand.op));
  3990. ReleaseOperand(destOperand);
  3991. (* push src *)
  3992. Evaluate(expression.left,srcOperand);
  3993. (*
  3994. Dereference(srcOperand,expression.type.resolved);
  3995. Emit(Push(position,srcOperand.tag));
  3996. *)
  3997. Emit(Push(position,srcOperand.op));
  3998. ReleaseOperand(srcOperand);
  3999. tensorFound := FALSE;
  4000. FOR i := 0 TO parameters.Length()-1 DO
  4001. e := parameters.GetExpression(i);
  4002. IF e IS SyntaxTree.TensorRangeExpression THEN
  4003. tensorFound := TRUE;
  4004. ELSIF e IS SyntaxTree.RangeExpression THEN
  4005. IF tensorFound THEN INC(suffixRanges) ELSE INC(prefixRanges) END;
  4006. ELSE
  4007. IF tensorFound THEN INC(suffixIndices) ELSE INC(prefixIndices) END;
  4008. END;
  4009. END;
  4010. Emit(Push(position,IntermediateCode.Immediate(int32,prefixIndices)));
  4011. Emit(Push(position,IntermediateCode.Immediate(int32,prefixRanges)));
  4012. Emit(Push(position,IntermediateCode.Immediate(int32,suffixIndices)));
  4013. Emit(Push(position,IntermediateCode.Immediate(int32,suffixRanges)));
  4014. StaticCallOperand(procOp,procedure);
  4015. Emit(Call(position,procOp.op,ProcedureParametersSize(system,procedure)));
  4016. ReleaseOperand(procOp);
  4017. END;
  4018. RestoreRegisters(saved);
  4019. END;
  4020. RETURN variable
  4021. END PrepareTensorDescriptor;
  4022. PROCEDURE PushParameter(expression: SyntaxTree.Expression; parameter: SyntaxTree.Parameter; callingConvention: LONGINT; needsParameterBackup: BOOLEAN; VAR parameterBackup: IntermediateCode.Operand; numberRegister: LONGINT);
  4023. VAR
  4024. type, descriptorType, baseType: SyntaxTree.Type;
  4025. operand, tmpOperand, variableOp, variable2Op: Operand;
  4026. baseReg, tmp, dimOp, null, dst: IntermediateCode.Operand;
  4027. variable, variable2: SyntaxTree.Variable;
  4028. dim, i, size: LONGINT;
  4029. (* TODO: needed? *)
  4030. oldArrayDestinationTag: IntermediateCode.Operand;
  4031. oldArrayDestinationDimension: LONGINT;
  4032. position: LONGINT;
  4033. saved: RegisterEntry;
  4034. arrayFlags: SET;
  4035. m, n: LONGINT;
  4036. PROCEDURE Pass(op: IntermediateCode.Operand);
  4037. VAR registerClass: IntermediateCode.RegisterClass; parameterRegister: IntermediateCode.Operand;
  4038. BEGIN
  4039. IF numberRegister >= 0 THEN
  4040. IntermediateCode.InitRegisterClass(registerClass, IntermediateCode.Parameter, SHORT(numberRegister));
  4041. IntermediateCode.InitRegister(parameterRegister, op.type, registerClass, AcquireRegister(op.type, registerClass));
  4042. Emit(Mov(position,parameterRegister, op));
  4043. ELSE
  4044. Emit(Push(position,op))
  4045. END
  4046. END Pass;
  4047. PROCEDURE PushArrayLens(formalType,actualType: SyntaxTree.Type; dim: LONGINT);
  4048. VAR tmp: IntermediateCode.Operand; actualArrayBase: SyntaxTree.Type;
  4049. BEGIN
  4050. formalType := formalType.resolved; actualType := actualType.resolved;
  4051. IF IsOpenArray(formalType)THEN
  4052. IF actualType IS SyntaxTree.StringType THEN
  4053. Pass((IntermediateCode.Immediate(addressType,actualType(SyntaxTree.StringType).length)));
  4054. RETURN;
  4055. ELSIF (actualType IS SyntaxTree.MathArrayType) & (actualType(SyntaxTree.MathArrayType).form = SyntaxTree.Static) THEN
  4056. Pass((IntermediateCode.Immediate(addressType,actualType(SyntaxTree.MathArrayType).staticLength)));
  4057. actualArrayBase := actualType(SyntaxTree.MathArrayType).arrayBase.resolved;
  4058. ELSIF actualType(SyntaxTree.ArrayType).form = SyntaxTree.Static THEN
  4059. Pass((IntermediateCode.Immediate(addressType,actualType(SyntaxTree.ArrayType).staticLength)));
  4060. actualArrayBase := actualType(SyntaxTree.ArrayType).arrayBase.resolved;
  4061. ELSE
  4062. tmp := baseReg;
  4063. IntermediateCode.AddOffset(tmp,ToMemoryUnits(system,dim*system.addressSize));
  4064. IntermediateCode.MakeMemory(tmp,addressType);
  4065. Pass((tmp));
  4066. actualArrayBase := actualType(SyntaxTree.ArrayType).arrayBase.resolved;
  4067. END;
  4068. PushArrayLens(formalType(SyntaxTree.ArrayType).arrayBase.resolved, actualArrayBase,dim-1);
  4069. END;
  4070. END PushArrayLens;
  4071. PROCEDURE SetSmallArraySizeFlag(VAR flags: SET; size: LONGINT);
  4072. BEGIN
  4073. CASE size OF
  4074. |2: INCL(flags,Size2Flag);
  4075. |3: INCL(flags,Size3Flag);
  4076. |4: INCL(flags,Size4Flag);
  4077. |5: INCL(flags,Size5Flag);
  4078. |6: INCL(flags,Size6Flag);
  4079. |7: INCL(flags,Size7Flag);
  4080. |8: INCL(flags,Size8Flag);
  4081. END;
  4082. END SetSmallArraySizeFlag;
  4083. BEGIN
  4084. IF Trace THEN TraceEnter("PushParameter") END;
  4085. position := expression.position;
  4086. IF expression.resolved # NIL THEN expression := expression.resolved END;
  4087. type := expression.type.resolved;
  4088. ASSERT( ((type IS SyntaxTree.MathArrayType) = (parameter.type.resolved IS SyntaxTree.MathArrayType))
  4089. OR (type IS SyntaxTree.MathArrayType) & (parameter.type.resolved IS SyntaxTree.ArrayType)
  4090. & (type(SyntaxTree.MathArrayType).form = SyntaxTree.Static)
  4091. & (parameter.type.resolved(SyntaxTree.ArrayType).form = SyntaxTree.Open)
  4092. );
  4093. (* TODO: needed? *)
  4094. oldArrayDestinationTag := arrayDestinationTag;
  4095. oldArrayDestinationDimension := arrayDestinationDimension;
  4096. IF IsArrayOfSystemByte(parameter.type) THEN
  4097. Designate(expression,operand);
  4098. tmp := GetArrayOfBytesSize(expression,operand.tag);
  4099. ReleaseIntermediateOperand(operand.tag);
  4100. operand.tag := tmp;
  4101. IF callingConvention = SyntaxTree.OberonCallingConvention THEN
  4102. Pass((operand.tag));
  4103. END;
  4104. Pass((operand.op));
  4105. ELSIF IsOpenArray(parameter.type) THEN
  4106. Designate(expression,operand);
  4107. baseReg := operand.tag;
  4108. IF callingConvention = SyntaxTree.OberonCallingConvention THEN
  4109. PushArrayLens(parameter.type,type,operand.dimOffset+DynamicDim(parameter.type)-1);
  4110. END;
  4111. Pass((operand.op)); (* address of the array *)
  4112. ELSIF parameter.type.resolved IS SyntaxTree.MathArrayType THEN
  4113. (* case 1 *)
  4114. IF (parameter.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open) &
  4115. (parameter.kind IN {SyntaxTree.ValueParameter, SyntaxTree.ConstParameter}) THEN
  4116. size := MathLenOffset + 2*SemanticChecker.Dimension(parameter.type.resolved,{SyntaxTree.Open});
  4117. size := ToMemoryUnits(system,size*addressType.sizeInBits);
  4118. Emit(Sub(position,sp,sp,IntermediateCode.Immediate(addressType,size)));
  4119. dim := SemanticChecker.Dimension(parameter.type.resolved,{SyntaxTree.Open});
  4120. arrayDestinationTag := sp;
  4121. (* case 1b *)
  4122. IF expression IS SyntaxTree.IndexDesignator THEN
  4123. (*
  4124. dim := SemanticChecker.Dimension(parameter.type.resolved,{SyntaxTree.Open});
  4125. descriptorType := GetMathArrayDescriptorType(dim);
  4126. variable := GetTemporaryVariable(descriptorType,expression.position);
  4127. Symbol(variable,variableOp);
  4128. arrayDestinationTag := variableOp.op;
  4129. *)
  4130. ReuseCopy(arrayDestinationTag,arrayDestinationTag);
  4131. dim := SemanticChecker.Dimension(parameter.type.resolved,{SyntaxTree.Open});
  4132. arrayDestinationDimension := dim;
  4133. Designate(expression,operand);
  4134. (* case 1a *)
  4135. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open THEN
  4136. Designate(expression,operand);
  4137. Emit(Copy(position,arrayDestinationTag,operand.tag,IntermediateCode.Immediate(addressType,size)));
  4138. i := 0;
  4139. WHILE (i< dim) & (type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open) DO
  4140. type := type.resolved(SyntaxTree.MathArrayType).arrayBase;
  4141. INC(i);
  4142. END;
  4143. type := expression.type.resolved;
  4144. WHILE (i<dim) DO (* remaining static dimensions *)
  4145. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4146. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4147. ReleaseOperand(tmpOperand);
  4148. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4149. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4150. ReleaseOperand(tmpOperand);
  4151. INC(i);
  4152. END;
  4153. dimOp := IntermediateCode.Immediate(addressType,dim);
  4154. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4155. PutMathArrayField(arrayDestinationTag,nil,MathFlagsOffset);
  4156. (* case 1d *)
  4157. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  4158. Designate(expression,operand);
  4159. Dereference(operand,type.resolved,FALSE);
  4160. DimensionCheck(operand.tag, IntermediateCode.Immediate(int32,dim),BreqL);
  4161. Emit(Copy(position,sp(*arrayDestinationTag*),operand.tag,IntermediateCode.Immediate(addressType,size)));
  4162. PutMathArrayField(arrayDestinationTag,nil,MathFlagsOffset);
  4163. (* case 1f *)
  4164. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  4165. Designate(expression,operand);
  4166. FOR i := 0 TO dim-1 DO
  4167. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4168. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4169. ReleaseOperand(tmpOperand);
  4170. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4171. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4172. ReleaseOperand(tmpOperand);
  4173. END;
  4174. (*******
  4175. identify the cases of small vector and matrices, used for optimizations in FoxArrayBase module (Alexey Morozov)
  4176. *)
  4177. arrayFlags := {StaticFlag};
  4178. IF dim = 1 THEN
  4179. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,0,FALSE,tmpOperand);
  4180. ReleaseOperand(tmpOperand);
  4181. ASSERT(tmpOperand.op.mode = IntermediateCode.ModeImmediate);
  4182. m := LONGINT(tmpOperand.op.intValue);
  4183. IF (m >= 2) & (m <= 8) THEN INCL(arrayFlags,SmallVectorFlag); SetSmallArraySizeFlag(arrayFlags,m); END;
  4184. ELSIF dim = 2 THEN
  4185. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,0,FALSE,tmpOperand);
  4186. ReleaseOperand(tmpOperand);
  4187. ASSERT(tmpOperand.op.mode = IntermediateCode.ModeImmediate);
  4188. m := LONGINT(tmpOperand.op.intValue);
  4189. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,1,FALSE,tmpOperand);
  4190. ReleaseOperand(tmpOperand);
  4191. ASSERT(tmpOperand.op.mode = IntermediateCode.ModeImmediate);
  4192. n := LONGINT(tmpOperand.op.intValue);
  4193. IF (m >= 2) & (m <= 8) & (n >= 2) & (n <= 8) THEN
  4194. INCL(arrayFlags,SmallMatrixFlag);
  4195. IF m = n THEN SetSmallArraySizeFlag(arrayFlags,m); END;
  4196. END;
  4197. END;
  4198. (*******)
  4199. dimOp := IntermediateCode.Immediate(addressType,dim);
  4200. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4201. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4202. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4203. PutMathArrayField(arrayDestinationTag,IntermediateCode.Immediate(addressType,SYSTEM.VAL(LONGINT,arrayFlags)),MathFlagsOffset);
  4204. baseType := SemanticChecker.ArrayBase(type,dim);
  4205. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4206. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4207. ELSE HALT(100);
  4208. END;
  4209. ELSIF (parameter.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open) & (parameter.kind = SyntaxTree.VarParameter) THEN
  4210. dim := SemanticChecker.Dimension(parameter.type.resolved,{SyntaxTree.Open});
  4211. (* case 2b *)
  4212. IF expression IS SyntaxTree.IndexDesignator THEN
  4213. descriptorType := GetMathArrayDescriptorType(dim);
  4214. variable := GetTemporaryVariable(descriptorType, FALSE);
  4215. Symbol(variable,variableOp);
  4216. arrayDestinationTag := variableOp.op;
  4217. ReuseCopy(arrayDestinationTag,arrayDestinationTag);
  4218. arrayDestinationDimension := dim;
  4219. NeedDescriptor := TRUE;
  4220. Designate(expression,operand);
  4221. Pass((operand.tag));
  4222. NeedDescriptor := FALSE;
  4223. (* case 2a *)
  4224. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open THEN
  4225. WHILE (i< dim) & (type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open) DO
  4226. type := type.resolved(SyntaxTree.MathArrayType).arrayBase;
  4227. INC(i);
  4228. END;
  4229. IF i = dim THEN
  4230. Designate(expression,operand);
  4231. Pass((operand.tag));
  4232. ELSE (* open-static *)
  4233. type := expression.type.resolved;
  4234. descriptorType := GetMathArrayDescriptorType(dim);
  4235. variable := GetTemporaryVariable(descriptorType, FALSE);
  4236. Symbol(variable,variableOp);
  4237. arrayDestinationTag := variableOp.op;
  4238. Designate(expression,operand);
  4239. FOR i := 0 TO dim-1 DO
  4240. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4241. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4242. ReleaseOperand(tmpOperand);
  4243. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4244. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4245. ReleaseOperand(tmpOperand);
  4246. END;
  4247. dimOp := IntermediateCode.Immediate(addressType,dim);
  4248. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4249. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4250. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4251. PutMathArrayField(arrayDestinationTag, IntermediateCode.Immediate(addressType,SYSTEM.VAL(LONGINT,{StaticFlag})),MathFlagsOffset);
  4252. baseType := SemanticChecker.ArrayBase(type,dim);
  4253. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4254. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4255. Pass((arrayDestinationTag));
  4256. END;
  4257. (* case 2d *)
  4258. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  4259. Designate(expression,operand);
  4260. Dereference(operand,type.resolved,FALSE);
  4261. DimensionCheck(operand.tag, IntermediateCode.Immediate(int32,dim),BreqL);
  4262. Pass((operand.tag));
  4263. (* case 2f *)
  4264. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  4265. descriptorType := GetMathArrayDescriptorType(dim);
  4266. variable := GetTemporaryVariable(descriptorType, FALSE);
  4267. Symbol(variable,variableOp);
  4268. arrayDestinationTag := variableOp.op;
  4269. Designate(expression,operand);
  4270. FOR i := 0 TO dim-1 DO
  4271. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4272. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4273. ReleaseOperand(tmpOperand);
  4274. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4275. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4276. ReleaseOperand(tmpOperand);
  4277. END;
  4278. (*
  4279. identify the cases of small vector and matrices, used for optimizations in FoxArrayBase module (Alexey Morozov)
  4280. *)
  4281. arrayFlags := {StaticFlag};
  4282. IF dim = 1 THEN
  4283. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,0,FALSE,tmpOperand);
  4284. ReleaseOperand(tmpOperand);
  4285. ASSERT(tmpOperand.op.mode = IntermediateCode.ModeImmediate);
  4286. m := LONGINT(tmpOperand.op.intValue);
  4287. IF (m >= 2) & (m <= 8) THEN INCL(arrayFlags,SmallVectorFlag); SetSmallArraySizeFlag(arrayFlags,m); END;
  4288. ELSIF dim = 2 THEN
  4289. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,0,FALSE,tmpOperand);
  4290. ReleaseOperand(tmpOperand);
  4291. ASSERT(tmpOperand.op.mode = IntermediateCode.ModeImmediate);
  4292. m := LONGINT(tmpOperand.op.intValue);
  4293. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,1,FALSE,tmpOperand);
  4294. ReleaseOperand(tmpOperand);
  4295. ASSERT(tmpOperand.op.mode = IntermediateCode.ModeImmediate);
  4296. n := LONGINT(tmpOperand.op.intValue);
  4297. IF (m >= 2) & (m <= 8) & (n >= 2) & (n <= 8) THEN
  4298. INCL(arrayFlags,SmallMatrixFlag);
  4299. IF m = n THEN SetSmallArraySizeFlag(arrayFlags,m); END;
  4300. END;
  4301. END;
  4302. (*******)
  4303. dimOp := IntermediateCode.Immediate(addressType,dim);
  4304. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4305. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4306. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4307. PutMathArrayField(arrayDestinationTag,IntermediateCode.Immediate(addressType,SYSTEM.VAL(LONGINT,arrayFlags)),MathFlagsOffset);
  4308. baseType := SemanticChecker.ArrayBase(type,dim);
  4309. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4310. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4311. Pass((arrayDestinationTag));
  4312. ELSE HALT(100);
  4313. END;
  4314. ELSIF (parameter.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor) & (parameter.kind IN {SyntaxTree.ConstParameter,SyntaxTree.ValueParameter}) THEN
  4315. dim := SemanticChecker.Dimension(type,{SyntaxTree.Open,SyntaxTree.Static});
  4316. (* case 3b *)
  4317. IF (expression IS SyntaxTree.IndexDesignator) & (type.resolved(SyntaxTree.MathArrayType).form # SyntaxTree.Static) THEN
  4318. IF type(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN (* indexer of form a[e,....,?] *)
  4319. variable := PrepareTensorDescriptor(expression(SyntaxTree.IndexDesignator));
  4320. Symbol(variable,variableOp);
  4321. LoadValue(variableOp,system.addressType);
  4322. ELSE
  4323. descriptorType := GetMathArrayDescriptorType(dim);
  4324. variable := GetTemporaryVariable(descriptorType, FALSE);
  4325. Symbol(variable,variableOp);
  4326. END;
  4327. arrayDestinationTag := variableOp.op;
  4328. ReuseCopy(arrayDestinationTag,arrayDestinationTag);
  4329. arrayDestinationDimension := 0;
  4330. Designate(expression,operand);
  4331. Pass((operand.tag));
  4332. (* case 3a *)
  4333. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open THEN
  4334. i := 0;
  4335. WHILE (i< dim) & (type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open) DO
  4336. type := type.resolved(SyntaxTree.MathArrayType).arrayBase;
  4337. INC(i);
  4338. END;
  4339. IF i = dim THEN
  4340. Designate(expression,operand);
  4341. Pass((operand.tag));
  4342. ELSE (* open-static *)
  4343. type := expression.type.resolved;
  4344. descriptorType := GetMathArrayDescriptorType(dim);
  4345. variable := GetTemporaryVariable(descriptorType, FALSE);
  4346. Symbol(variable,variableOp);
  4347. arrayDestinationTag := variableOp.op;
  4348. Designate(expression,operand);
  4349. FOR i := 0 TO dim-1 DO
  4350. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4351. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4352. ReleaseOperand(tmpOperand);
  4353. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4354. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4355. ReleaseOperand(tmpOperand);
  4356. END;
  4357. dimOp := IntermediateCode.Immediate(addressType,dim);
  4358. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4359. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4360. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4361. PutMathArrayField(arrayDestinationTag,nil,MathFlagsOffset); (* static flag ? *)
  4362. baseType := SemanticChecker.ArrayBase(type,dim);
  4363. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4364. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4365. Pass((arrayDestinationTag));
  4366. END;
  4367. (* case 3d *)
  4368. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  4369. Designate(expression,operand);
  4370. Dereference(operand,type.resolved,FALSE);
  4371. (*
  4372. DimensionCheck(operand.tag, IntermediateCode.Immediate(int32,dim),BreqL);
  4373. *)
  4374. Pass((operand.tag));
  4375. (* case 3f *)
  4376. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  4377. descriptorType := GetMathArrayDescriptorType(dim);
  4378. variable := GetTemporaryVariable(descriptorType, FALSE);
  4379. Symbol(variable,variableOp);
  4380. arrayDestinationTag := variableOp.op;
  4381. Designate(expression,operand);
  4382. IF operand.op.type.length >1 THEN (* vector register *)
  4383. variable2 := GetTemporaryVariable(type, FALSE);
  4384. Symbol(variable2, variable2Op);
  4385. MakeMemory(tmp,variable2Op.op,operand.op.type,0);
  4386. Emit(Mov(position,tmp, operand.op));
  4387. ReleaseOperand(operand);
  4388. Symbol(variable2, operand);
  4389. END;
  4390. FOR i := 0 TO dim-1 DO
  4391. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4392. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4393. ReleaseOperand(tmpOperand);
  4394. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4395. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4396. ReleaseOperand(tmpOperand);
  4397. END;
  4398. dimOp := IntermediateCode.Immediate(addressType,dim);
  4399. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4400. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4401. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4402. PutMathArrayField(arrayDestinationTag,IntermediateCode.Immediate(addressType,SYSTEM.VAL(LONGINT,{StaticFlag})),MathFlagsOffset);
  4403. baseType := SemanticChecker.ArrayBase(type,dim);
  4404. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4405. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4406. Pass((arrayDestinationTag));
  4407. ELSE HALT(100);
  4408. END;
  4409. ELSIF (parameter.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor) & (parameter.kind = SyntaxTree.VarParameter) THEN
  4410. dim := SemanticChecker.Dimension(type,{SyntaxTree.Open,SyntaxTree.Static});
  4411. (* case 4b *)
  4412. IF (expression IS SyntaxTree.IndexDesignator) & (type(SyntaxTree.MathArrayType).form # SyntaxTree.Static) THEN
  4413. IF type(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN (* indexer of form a[e,....,?] *)
  4414. variable := PrepareTensorDescriptor(expression(SyntaxTree.IndexDesignator));
  4415. Symbol(variable,variableOp);
  4416. LoadValue(variableOp,system.addressType);
  4417. ELSE
  4418. descriptorType := GetMathArrayDescriptorType(dim);
  4419. variable := GetTemporaryVariable(descriptorType, FALSE);
  4420. Symbol(variable,variableOp);
  4421. END;
  4422. arrayDestinationTag := variableOp.op;
  4423. ReuseCopy(arrayDestinationTag,arrayDestinationTag);
  4424. arrayDestinationDimension := 0;
  4425. Designate(expression,operand);
  4426. IF type(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  4427. Symbol(variable,variableOp);
  4428. ELSE
  4429. variable := GetTemporaryVariable(parameter.type.resolved, FALSE);
  4430. Symbol(variable,variableOp);
  4431. MakeMemory(tmp,variableOp.op,addressType,0);
  4432. Emit(Mov(position,tmp,operand.tag));
  4433. ReleaseIntermediateOperand(tmp);
  4434. END;
  4435. Pass((variableOp.op));
  4436. ReleaseOperand(variableOp);
  4437. (* case 4a *)
  4438. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open THEN
  4439. i := 0;
  4440. WHILE (i< dim) & (type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Open) DO
  4441. type := type.resolved(SyntaxTree.MathArrayType).arrayBase;
  4442. INC(i);
  4443. END;
  4444. IF i = dim THEN
  4445. Designate(expression,operand);
  4446. arrayDestinationTag := operand.tag;
  4447. ELSE (* open-static *)
  4448. type := expression.type.resolved;
  4449. descriptorType := GetMathArrayDescriptorType(dim);
  4450. variable := GetTemporaryVariable(descriptorType, FALSE);
  4451. Symbol(variable,variableOp);
  4452. arrayDestinationTag := variableOp.op;
  4453. Designate(expression,operand);
  4454. FOR i := 0 TO dim-1 DO
  4455. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4456. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4457. ReleaseOperand(tmpOperand);
  4458. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4459. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4460. ReleaseOperand(tmpOperand);
  4461. END;
  4462. dimOp := IntermediateCode.Immediate(addressType,dim);
  4463. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4464. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4465. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4466. PutMathArrayField(arrayDestinationTag,nil,MathFlagsOffset);
  4467. baseType := SemanticChecker.ArrayBase(type,dim);
  4468. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4469. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4470. END;
  4471. variable := GetTemporaryVariable(parameter.type.resolved, FALSE);
  4472. Symbol(variable,variableOp);
  4473. MakeMemory(tmp,variableOp.op,addressType,0);
  4474. Emit(Mov(position,tmp,arrayDestinationTag));
  4475. ReleaseIntermediateOperand(tmp);
  4476. Pass((variableOp.op));
  4477. ReleaseOperand(variableOp);
  4478. (* case 4d *)
  4479. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  4480. Designate(expression,operand);
  4481. (*
  4482. Dereference(operand,type.resolved,FALSE);
  4483. *)
  4484. (*
  4485. DimensionCheck(operand.tag, IntermediateCode.Immediate(int32,dim),BreqL);
  4486. *)
  4487. Pass((operand.op));
  4488. (* case 4f *)
  4489. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  4490. descriptorType := GetMathArrayDescriptorType(dim);
  4491. variable := GetTemporaryVariable(descriptorType, FALSE);
  4492. Symbol(variable,variableOp);
  4493. arrayDestinationTag := variableOp.op;
  4494. Designate(expression,operand);
  4495. FOR i := 0 TO dim-1 DO
  4496. GetMathArrayLengthAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4497. PutMathArrayLength(arrayDestinationTag,tmpOperand.op,i);
  4498. ReleaseOperand(tmpOperand);
  4499. GetMathArrayIncrementAt(type.resolved(SyntaxTree.MathArrayType),operand,i,FALSE,tmpOperand);
  4500. PutMathArrayIncrement(arrayDestinationTag,tmpOperand.op,i);
  4501. ReleaseOperand(tmpOperand);
  4502. END;
  4503. dimOp := IntermediateCode.Immediate(addressType,dim);
  4504. PutMathArrayField(arrayDestinationTag,dimOp,MathDimOffset);
  4505. PutMathArrayField(arrayDestinationTag,operand.op,MathAdrOffset);
  4506. PutMathArrayField(arrayDestinationTag,nil,MathPtrOffset);
  4507. PutMathArrayField(arrayDestinationTag,IntermediateCode.Immediate(addressType,SYSTEM.VAL(LONGINT,{StaticFlag})),MathFlagsOffset);
  4508. baseType := SemanticChecker.ArrayBase(type,dim);
  4509. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.AlignedSizeOf(baseType)));
  4510. PutMathArrayField(arrayDestinationTag,tmp,MathElementSizeOffset);
  4511. variable := GetTemporaryVariable(parameter.type.resolved, FALSE);
  4512. Symbol(variable,variableOp);
  4513. MakeMemory(tmp,variableOp.op,addressType,0);
  4514. Emit(Mov(position,tmp,arrayDestinationTag));
  4515. ReleaseIntermediateOperand(tmp);
  4516. Pass((variableOp.op));
  4517. ReleaseOperand(variableOp);
  4518. ELSE HALT(100);
  4519. END;
  4520. ELSIF (parameter.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static) & (parameter.kind = SyntaxTree.ValueParameter) THEN
  4521. ASSERT(type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static);
  4522. Designate(expression,operand);
  4523. IF operand.op.type.length > 1 THEN
  4524. Emit(Push(position, operand.op));
  4525. ReleaseOperand(operand);
  4526. ELSE
  4527. size := system.SizeOf(type);
  4528. Basic.Align(size,system.AlignmentOf(system.parameterAlignment,type));
  4529. size := ToMemoryUnits(system,size);
  4530. Emit(Sub(position,sp,sp,IntermediateCode.Immediate(addressType,size)));
  4531. arrayDestinationTag := sp;
  4532. Emit(Copy(position,arrayDestinationTag,operand.op,IntermediateCode.Immediate(addressType,size)));
  4533. END;
  4534. ELSIF (parameter.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static) & (parameter.kind IN {SyntaxTree.VarParameter,SyntaxTree.ConstParameter}) THEN
  4535. Designate(expression,operand);
  4536. IF operand.op.type.length > 1 THEN (* need temporary to pass register *)
  4537. variable := GetTemporaryVariable(parameter.type.resolved, FALSE);
  4538. Symbol(variable,variableOp);
  4539. MakeMemory(tmp,variableOp.op,operand.op.type,0);
  4540. Emit(Mov(position,tmp,operand.op));
  4541. Emit(Push(position,variableOp.op));
  4542. ELSIF type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Static THEN
  4543. Pass((operand.op));
  4544. ELSE Error(position,"Forbidden non-static actual type. Conversion involved?");
  4545. END;
  4546. ELSE HALT(200)
  4547. END;
  4548. ELSIF parameter.type.resolved IS SyntaxTree.RangeType THEN
  4549. IF parameter.kind = SyntaxTree.VarParameter THEN
  4550. ASSERT(~(expression IS SyntaxTree.RangeExpression));
  4551. Designate(expression, operand);
  4552. Pass((operand.op));
  4553. ELSE
  4554. ASSERT((parameter.kind = SyntaxTree.ValueParameter) OR (parameter.kind = SyntaxTree.ConstParameter));
  4555. Evaluate(expression, operand);
  4556. Pass((operand.extra)); (* step *)
  4557. Pass((operand.tag)); (* last *)
  4558. Pass((operand.op)) (* first *)
  4559. END
  4560. ELSIF parameter.type.resolved IS SyntaxTree.ComplexType THEN
  4561. IF parameter.kind = SyntaxTree.VarParameter THEN
  4562. Designate(expression, operand);
  4563. Pass((operand.op));
  4564. ELSE
  4565. ASSERT((parameter.kind = SyntaxTree.ValueParameter) OR (parameter.kind = SyntaxTree.ConstParameter));
  4566. Evaluate(expression, operand);
  4567. Pass((operand.tag)); (* real part *)
  4568. Pass((operand.op)) (* imaginary part *)
  4569. END
  4570. ELSE
  4571. IF (parameter.kind = SyntaxTree.ValueParameter) OR (parameter.kind = SyntaxTree.ConstParameter) & ~(parameter.type.resolved IS SyntaxTree.RecordType) & ~(parameter.type.resolved IS SyntaxTree.ArrayType) THEN
  4572. IF (type IS SyntaxTree.RecordType) OR IsStaticArray(parameter.type) THEN
  4573. Designate(expression,operand);
  4574. size := ToMemoryUnits(system,system.SizeOf(parameter.type));
  4575. (* stack allocation *)
  4576. Emit(Sub(position,sp,sp,IntermediateCode.Immediate(addressType,size + (-size) MOD (system.addressSize DIV system.dataUnit))));
  4577. (*! parameter alignment to be discussed ... *)
  4578. IF type IS SyntaxTree.StringType THEN (* source potentially shorter than destination *)
  4579. size := type(SyntaxTree.StringType).length;
  4580. END;
  4581. IF backend.cooperative & parameter.NeedsTrace() THEN
  4582. dst := NewRegisterOperand (addressType);
  4583. Emit(Mov(position,dst, sp));
  4584. IntermediateCode.InitImmediate(null, byteType, 0);
  4585. Emit(Fill(position, dst, IntermediateCode.Immediate(addressType,size), null));
  4586. ReleaseIntermediateOperand(dst);
  4587. SaveRegisters();ReleaseUsedRegisters(saved);
  4588. (* register dst has been freed before SaveRegisters already *)
  4589. CallAssignMethod(dst, operand.op, parameter.type);
  4590. RestoreRegisters(saved);
  4591. END;
  4592. Emit(Copy(position,sp,operand.op,IntermediateCode.Immediate(addressType,size)));
  4593. ELSIF IsOpenArray(parameter.type) THEN
  4594. Designate(expression,operand);
  4595. baseReg := operand.tag;
  4596. IF callingConvention = SyntaxTree.OberonCallingConvention THEN
  4597. PushArrayLens(parameter.type,type,operand.dimOffset+DynamicDim(parameter.type)-1);
  4598. END;
  4599. Pass((operand.op)); (* address of the array *)
  4600. ELSIF IsDelegate(parameter.type) THEN
  4601. Evaluate(expression,operand);
  4602. IF backend.cooperative & parameter.NeedsTrace() THEN
  4603. Emit(Push(position, nil));
  4604. dst := NewRegisterOperand (addressType);
  4605. Emit(Mov(position,dst, sp));
  4606. ReleaseIntermediateOperand(dst);
  4607. SaveRegisters();ReleaseUsedRegisters(saved);
  4608. Emit(Push(position, dst));
  4609. (* register dst has been freed before SaveRegisters already *)
  4610. Emit(Push(position, operand.tag));
  4611. CallThis(position,"GarbageCollector","Assign",2);
  4612. RestoreRegisters(saved);
  4613. ELSE
  4614. Pass((operand.tag));
  4615. END;
  4616. Pass((operand.op));
  4617. ELSE
  4618. Evaluate(expression,operand);
  4619. IF backend.cooperative & parameter.NeedsTrace() & (operand.op.mode # IntermediateCode.ModeImmediate) THEN
  4620. Emit(Push(position, nil));
  4621. dst := NewRegisterOperand (addressType);
  4622. Emit(Mov(position,dst, sp));
  4623. ReleaseIntermediateOperand(dst);
  4624. SaveRegisters();ReleaseUsedRegisters(saved);
  4625. Emit(Push(position, dst));
  4626. (* register dst has been freed before SaveRegisters already *)
  4627. Emit(Push(position, operand.op));
  4628. CallThis(position,"GarbageCollector","Assign",2);
  4629. RestoreRegisters(saved);
  4630. ELSE
  4631. Pass((operand.op));
  4632. END;
  4633. END;
  4634. ELSIF expression IS SyntaxTree.NilValue THEN (* for special WinAPI rule *)
  4635. Evaluate(expression,operand);
  4636. Pass((operand.op));
  4637. ELSE (* var parameter *)
  4638. Designate(expression,operand);
  4639. IF (type IS SyntaxTree.RecordType) & (parameter.kind IN {SyntaxTree.ConstParameter, SyntaxTree.VarParameter}) THEN
  4640. IF callingConvention = SyntaxTree.OberonCallingConvention THEN
  4641. Pass((operand.tag));
  4642. END;
  4643. END;
  4644. Pass((operand.op));
  4645. END;
  4646. END;
  4647. (* TODO: needed? *)
  4648. arrayDestinationTag := oldArrayDestinationTag;
  4649. arrayDestinationDimension := oldArrayDestinationDimension;
  4650. IF needsParameterBackup THEN
  4651. (* IF dump # NIL THEN dump.String("backup parameter"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  4652. ReuseCopy(parameterBackup, operand.op)
  4653. END;
  4654. ReleaseOperand(operand);
  4655. IF Trace THEN TraceExit("PushParameter") END;
  4656. END PushParameter;
  4657. PROCEDURE VisitStatementDesignator(x: SyntaxTree.StatementDesignator);
  4658. VAR prevConditional: BOOLEAN;
  4659. BEGIN
  4660. prevConditional := conditional;
  4661. conditional := FALSE;
  4662. IF (x.result # NIL) & ( x.result IS SyntaxTree.SymbolDesignator) & (x.result(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Variable) & (x.result(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Variable).useRegister) THEN
  4663. Expression(x.result); (* use register *)
  4664. END;
  4665. Statement(x.statement);
  4666. conditional := prevConditional;
  4667. IF x.result # NIL THEN Expression(x.result) END;
  4668. IF (x.result # NIL) & (x.result IS SyntaxTree.SymbolDesignator) & (x.result(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Variable) & (x.result(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Variable).useRegister) THEN
  4669. ReleaseIntermediateOperand(result.op);
  4670. END;
  4671. END VisitStatementDesignator;
  4672. PROCEDURE InlineProcedureCall(x: SyntaxTree.ProcedureCallDesignator): BOOLEAN;
  4673. VAR
  4674. procedure: SyntaxTree.Procedure;
  4675. procedureType: SyntaxTree.ProcedureType;
  4676. wasInline: BOOLEAN;
  4677. actualParameters: SyntaxTree.ExpressionList;
  4678. formalParameter: SyntaxTree.Parameter;
  4679. actualParameter: SyntaxTree.Expression;
  4680. i: LONGINT;
  4681. localVariable: SyntaxTree.Variable;
  4682. variableDesignator, returnDesignator: SyntaxTree.Expression;
  4683. src, dest: Operand;
  4684. prevInlineExit : Label;
  4685. prevMapper: SymbolMapper;
  4686. tooComplex: BOOLEAN;
  4687. PROCEDURE SimpleExpression(e: SyntaxTree.Expression): BOOLEAN;
  4688. BEGIN
  4689. IF e = NIL THEN RETURN TRUE
  4690. ELSIF (e IS SyntaxTree.SymbolDesignator) THEN RETURN SimpleExpression(e(SyntaxTree.SymbolDesignator).left)
  4691. ELSIF (e IS SyntaxTree.Value) THEN RETURN TRUE
  4692. ELSIF (e IS SyntaxTree.SelfDesignator) THEN RETURN TRUE
  4693. ELSIF (e IS SyntaxTree.ResultDesignator) THEN RETURN TRUE
  4694. ELSIF (e IS SyntaxTree.DereferenceDesignator) THEN RETURN SimpleExpression(e(SyntaxTree.DereferenceDesignator).left)
  4695. ELSE RETURN FALSE
  4696. END;
  4697. END SimpleExpression;
  4698. PROCEDURE FitsInRegister(type: SyntaxTree.Type): BOOLEAN;
  4699. BEGIN
  4700. RETURN checker.CanPassInRegister(type)
  4701. END FitsInRegister;
  4702. PROCEDURE GetTemp(type: SyntaxTree.Type; tryRegister: BOOLEAN): SyntaxTree.Expression;
  4703. VAR
  4704. variable: SyntaxTree.Variable;
  4705. variableDesignator: SyntaxTree.Designator;
  4706. BEGIN
  4707. variable := GetTemporaryVariable(type, tryRegister & FitsInRegister(type));
  4708. variableDesignator := SyntaxTree.NewSymbolDesignator(SemanticChecker.InvalidPosition, NIL, variable);
  4709. variableDesignator.SetType(type);
  4710. RETURN variableDesignator
  4711. END GetTemp;
  4712. BEGIN
  4713. wasInline := currentIsInline;
  4714. prevInlineExit := currentInlineExit;
  4715. prevMapper := currentMapper;
  4716. currentInlineExit := NewLabel();
  4717. tooComplex := FALSE;
  4718. NEW(currentMapper);
  4719. currentIsInline := TRUE;
  4720. procedure := x.left(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Procedure);
  4721. procedureType := procedure.type(SyntaxTree.ProcedureType);
  4722. formalParameter := procedureType.firstParameter;
  4723. actualParameters := x.parameters;
  4724. i := 0;
  4725. WHILE (i < actualParameters.Length()) & ~tooComplex DO
  4726. actualParameter := actualParameters.GetExpression(i);
  4727. IF actualParameter.resolved # NIL THEN
  4728. actualParameter := actualParameter.resolved
  4729. END;
  4730. (*
  4731. if expression is simple and can be passed immediately
  4732. or if type fits in register then we can proceed
  4733. otherwise we escape to ordinary procedure call.
  4734. *)
  4735. (* cases where the expression can be mapped identically *)
  4736. IF SimpleExpression(actualParameter) & (formalParameter.kind IN {SyntaxTree.ConstParameter, SyntaxTree.VarParameter}) THEN
  4737. currentMapper.Add(formalParameter, actualParameter, NIL);
  4738. ELSIF FitsInRegister(actualParameter.type) & (formalParameter.kind IN {SyntaxTree.ConstParameter, SyntaxTree.ValueParameter}) THEN
  4739. variableDesignator := GetTemp(formalParameter.type, TRUE);
  4740. (*
  4741. Assign(variableDesignator, actualParameter);
  4742. *)
  4743. Evaluate(actualParameter, src);
  4744. Designate(variableDesignator, dest);
  4745. Emit(Mov(x.position, dest.op, src.op));
  4746. ReleaseOperand(dest);
  4747. ReleaseOperand(src);
  4748. currentMapper.Add(formalParameter, variableDesignator, NIL);
  4749. ELSE tooComplex := TRUE
  4750. END;
  4751. (*
  4752. ELSIF (formalParameter.kind = SyntaxTree.ConstParameter) & IsSimple(actualParameter) THEN
  4753. currentMapper.Add(formalParameter, actualParameter, NIL);
  4754. ELSIF (formalParameter.kind = SyntaxTree.VarParameter) OR formalParameter.type.IsComposite() & (formalParameter.kind = SyntaxTree.ConstParameter) THEN
  4755. variableDesignator := GetTemp(system.addressType, FALSE);
  4756. Designate(actualParameter, src);
  4757. Designate(variableDesignator, dest);
  4758. IntermediateCode.MakeMemory(dest.op,addressType);
  4759. Emit(Mov(x.position, dest.op, src.op));
  4760. ReleaseOperand(dest);
  4761. IF src.tag.mode # IntermediateCode.Undefined THEN
  4762. tagDesignator := GetTemp(system.addressType, FALSE);
  4763. Designate(tagDesignator, dest);
  4764. IntermediateCode.MakeMemory(dest.op,addressType);
  4765. Emit(Mov(x.position, dest.op, src.op));
  4766. END;
  4767. ReleaseOperand(dest); ReleaseOperand(src);
  4768. currentMapper.Add(formalParameter, variableDesignator, tagDesignator);
  4769. END;
  4770. *)
  4771. formalParameter := formalParameter.nextParameter;
  4772. INC(i);
  4773. END;
  4774. IF ~tooComplex & (procedureType.returnType # NIL) THEN
  4775. returnDesignator := GetTemp(procedureType.returnType, TRUE);
  4776. currentMapper.Add(NIL, returnDesignator, NIL);
  4777. END;
  4778. localVariable := procedure.procedureScope.firstVariable;
  4779. WHILE ~tooComplex & (localVariable # NIL) DO
  4780. variableDesignator := GetTemp(localVariable.type, FALSE);
  4781. currentMapper.Add(localVariable, variableDesignator, NIL);
  4782. localVariable := localVariable.nextVariable;
  4783. END;
  4784. IF ~tooComplex THEN
  4785. VisitStatementBlock(procedure.procedureScope.body);
  4786. SetLabel(currentInlineExit);
  4787. IF procedureType.returnType # NIL THEN
  4788. Designate(returnDesignator, result);
  4789. IF conditional THEN
  4790. ASSERT (procedureType.returnType.resolved IS SyntaxTree.BooleanType);
  4791. ValueToCondition(result)
  4792. END;
  4793. END;
  4794. END;
  4795. currentMapper := prevMapper;
  4796. currentInlineExit := prevInlineExit;
  4797. currentIsInline := wasInline;
  4798. RETURN ~tooComplex
  4799. END InlineProcedureCall;
  4800. PROCEDURE VisitProcedureCallDesignator(x: SyntaxTree.ProcedureCallDesignator);
  4801. VAR
  4802. parameters: SyntaxTree.ExpressionList;
  4803. d, resultDesignator, actualParameter: SyntaxTree.Expression;
  4804. designator: SyntaxTree.Designator;
  4805. procedureType: SyntaxTree.ProcedureType;
  4806. formalParameter: SyntaxTree.Parameter;
  4807. operand, returnValue: Operand;
  4808. reg, size, mask, dest: IntermediateCode.Operand;
  4809. saved: RegisterEntry;
  4810. symbol: SyntaxTree.Symbol;
  4811. variable: SyntaxTree.Variable;
  4812. i, parametersSize, returnTypeSize : LONGINT;
  4813. structuredReturnType: BOOLEAN;
  4814. firstWriteBackCall, currentWriteBackCall: WriteBackCall;
  4815. tempVariableDesignator: SyntaxTree.Designator;
  4816. gap, alignment: LONGINT; (*fld*)
  4817. (* TODO: remove unnecessary backup variables *)
  4818. oldResult: Operand;
  4819. oldCurrentScope: SyntaxTree.Scope;
  4820. oldArrayDestinationTag: IntermediateCode.Operand;
  4821. oldArrayDestinationDimension: LONGINT;
  4822. oldConstantDeclaration: SyntaxTree.Symbol;
  4823. oldDestination: IntermediateCode.Operand;
  4824. oldCurrentLoop: Label;
  4825. oldConditional: BOOLEAN;
  4826. oldTrueLabel, oldFalseLabel: Label;
  4827. oldLocked: BOOLEAN;
  4828. usedRegisters,oldUsedRegisters: RegisterEntry;
  4829. return: IntermediateCode.Operand;
  4830. parameterBackups: ARRAY 2 OF IntermediateCode.Operand;
  4831. arg: IntermediateCode.Operand;
  4832. dummy: IntermediateCode.Operand;
  4833. recordType: SyntaxTree.RecordType;
  4834. operatorSelectionProcedureOperand: Operand;
  4835. operatorSelectionProcedure: SyntaxTree.Procedure;
  4836. fingerPrint: SyntaxTree.FingerPrint;
  4837. isCallOfDynamicOperator, hasDynamicOperands: BOOLEAN;
  4838. identifierNumber: LONGINT;
  4839. passByRegister: BOOLEAN; registerNumber,stackSize: LONGINT;
  4840. procedure: SyntaxTree.Procedure;
  4841. PROCEDURE BackupGlobalState;
  4842. BEGIN
  4843. oldResult := result;
  4844. oldCurrentScope := currentScope;
  4845. oldArrayDestinationTag := arrayDestinationTag;
  4846. oldArrayDestinationDimension := arrayDestinationDimension;
  4847. oldConstantDeclaration := constantDeclaration;
  4848. oldDestination := destination;
  4849. oldCurrentLoop := currentLoop;
  4850. oldConditional := conditional;
  4851. oldTrueLabel := trueLabel;
  4852. oldFalseLabel := falseLabel;
  4853. oldLocked := locked;
  4854. oldUsedRegisters := usedRegisters
  4855. END BackupGlobalState;
  4856. PROCEDURE RestoreGlobalState;
  4857. BEGIN
  4858. result := oldResult;
  4859. currentScope := oldCurrentScope;
  4860. arrayDestinationTag := oldArrayDestinationTag;
  4861. arrayDestinationDimension := oldArrayDestinationDimension;
  4862. constantDeclaration := oldConstantDeclaration;
  4863. destination := oldDestination;
  4864. currentLoop := oldCurrentLoop;
  4865. conditional := oldConditional;
  4866. trueLabel := oldTrueLabel;
  4867. falseLabel := oldFalseLabel;
  4868. locked := oldLocked;
  4869. usedRegisters := oldUsedRegisters
  4870. END RestoreGlobalState;
  4871. (** do preparations before parameter push for array-structured object types (ASOTs):
  4872. if ASOT is passed as VAR parameter:
  4873. - allocate temporary variable of math array type
  4874. - copy contents of ASOT to be passed to temporary variable
  4875. - use temporary variable as the actual parameter instead
  4876. - create and store a write-back call in a list (an index operator call that writes the contents of the temp. variable back into the ASOT)
  4877. **)
  4878. PROCEDURE PrepareParameter(VAR actualParameter: SyntaxTree.Expression; formalParameter: SyntaxTree.Parameter);
  4879. VAR
  4880. expression: SyntaxTree.Expression;
  4881. BEGIN
  4882. IF actualParameter IS SyntaxTree.Designator THEN
  4883. designator := actualParameter(SyntaxTree.Designator);
  4884. IF (formalParameter.kind = SyntaxTree.VarParameter) & (designator.relatedAsot # NIL) & (actualParameter.type.resolved IS SyntaxTree.MathArrayType) THEN
  4885. (* actual parameter is an index read operator call on ASOT and formal parameter is of VAR kind *)
  4886. (* IF dump # NIL THEN dump.String("!!! BEGIN ASOT VAR parameter preparation"); dump.Ln; dump.Update END; *) (* TENTATIVE*)
  4887. ASSERT(checker # NIL);
  4888. checker.SetCurrentScope(currentScope);
  4889. (* allocate temporary variable *)
  4890. ASSERT(actualParameter.type # NIL);
  4891. ASSERT(actualParameter.type.resolved IS SyntaxTree.MathArrayType);
  4892. variable := GetTemporaryVariable(actualParameter.type.resolved, FALSE);
  4893. tempVariableDesignator := SyntaxTree.NewSymbolDesignator(SemanticChecker.InvalidPosition, NIL, variable);
  4894. tempVariableDesignator.SetType(actualParameter.type.resolved);
  4895. ASSERT(tempVariableDesignator IS SyntaxTree.SymbolDesignator);
  4896. ASSERT(tempVariableDesignator.type # NIL);
  4897. ASSERT(tempVariableDesignator.type.resolved IS SyntaxTree.MathArrayType);
  4898. (* copy math array stored in actual parameter to temporary variable *)
  4899. BackupGlobalState;
  4900. AssignMathArray(tempVariableDesignator, actualParameter);
  4901. RestoreGlobalState;
  4902. (* use temporary variable as actual parameter instead of the original one *)
  4903. actualParameter := tempVariableDesignator;
  4904. (* create write-back call and store it in linked list *)
  4905. (* create new list entry *)
  4906. IF firstWriteBackCall = NIL THEN
  4907. NEW(firstWriteBackCall);
  4908. currentWriteBackCall := firstWriteBackCall
  4909. ELSE
  4910. ASSERT(currentWriteBackCall # NIL);
  4911. NEW(currentWriteBackCall.next);
  4912. currentWriteBackCall := currentWriteBackCall.next
  4913. END;
  4914. expression := checker.NewIndexOperatorCall(SemanticChecker.InvalidPosition, designator.relatedAsot, designator.relatedIndexList, tempVariableDesignator);
  4915. ASSERT(expression.type = NIL);
  4916. currentWriteBackCall.call := expression(SyntaxTree.ProcedureCallDesignator);
  4917. ELSIF (formalParameter.kind = SyntaxTree.VarParameter) & (designator.relatedAsot # NIL) THEN
  4918. (* prepare writeback for any other "normal" indexer *)
  4919. variable := GetTemporaryVariable(actualParameter.type.resolved, FALSE);
  4920. tempVariableDesignator := SyntaxTree.NewSymbolDesignator(SemanticChecker.InvalidPosition, NIL, variable);
  4921. tempVariableDesignator.SetType(actualParameter.type.resolved);
  4922. Assign(tempVariableDesignator, actualParameter);
  4923. actualParameter := tempVariableDesignator;
  4924. IF firstWriteBackCall = NIL THEN
  4925. NEW(firstWriteBackCall);
  4926. currentWriteBackCall := firstWriteBackCall
  4927. ELSE
  4928. ASSERT(currentWriteBackCall # NIL);
  4929. NEW(currentWriteBackCall.next);
  4930. currentWriteBackCall := currentWriteBackCall.next
  4931. END;
  4932. expression := checker.NewObjectOperatorCall(SemanticChecker.InvalidPosition, designator.relatedAsot, designator.relatedIndexList, tempVariableDesignator);
  4933. currentWriteBackCall.call := expression(SyntaxTree.ProcedureCallDesignator);
  4934. END
  4935. END
  4936. END PrepareParameter;
  4937. BEGIN
  4938. IF Trace THEN TraceEnter("VisitProcedureCallDesignator") END;
  4939. IF (x.left IS SyntaxTree.SymbolDesignator) & (x.left(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Procedure) THEN
  4940. procedure := x.left(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Procedure);
  4941. IF procedure.isOberonInline & (procedure.scope.ownerModule = module.module) THEN
  4942. IF InlineProcedureCall(x) THEN
  4943. RETURN
  4944. ELSE
  4945. Warning(x.position, "Inline call with complex parameters not yet implemented. Emitting ordinary procedure call.")
  4946. END
  4947. END;
  4948. END;
  4949. resultDesignator := procedureResultDesignator; procedureResultDesignator := NIL;
  4950. procedureType := x.left.type.resolved(SyntaxTree.ProcedureType);
  4951. dest := destination; destination := emptyOperand;
  4952. SaveRegisters();ReleaseUsedRegisters(saved);
  4953. parameters := x.parameters;
  4954. IF (x.left IS SyntaxTree.SymbolDesignator) & (x.left(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Operator) THEN
  4955. (* an operator is called *)
  4956. (* IF dump # NIL THEN dump.String("*** begin of operator call ***"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  4957. ASSERT(procedureType.callingConvention = SyntaxTree.OberonCallingConvention);
  4958. (* check if a dynamic operator call should be performed *)
  4959. isCallOfDynamicOperator := x.left(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Operator).isDynamic
  4960. ELSE
  4961. isCallOfDynamicOperator := FALSE
  4962. END;
  4963. IF backend.cooperative & (procedureType.callingConvention = SyntaxTree.WinAPICallingConvention) THEN
  4964. Emit(Push(position, ap));
  4965. END;
  4966. alignment := procedureType.stackAlignment;
  4967. IF alignment > 1 THEN
  4968. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  4969. Emit(Mov(position,reg, sp));
  4970. gap := ParametersSize(system, procedureType, FALSE) + ToMemoryUnits(system,system.offsetFirstParameter) + ToMemoryUnits(system,system.addressSize);
  4971. Emit(Sub(position,sp, sp, IntermediateCode.Immediate(addressType,gap)));
  4972. IntermediateCode.InitImmediate(mask,addressType,-alignment);
  4973. Emit(And(position,sp, sp, mask));
  4974. Emit(Add(position, sp, sp, IntermediateCode.Immediate(addressType, gap)));
  4975. Emit(Push(position,reg));
  4976. (*
  4977. IntermediateCode.InitMemory(mem, addressType, sp, 0);
  4978. Emit(Mov(position,mem,reg));
  4979. *)
  4980. ReleaseIntermediateOperand(reg);
  4981. END;
  4982. IF procedureType.callingConvention = SyntaxTree.DarwinCCallingConvention THEN (*fld*)
  4983. IntermediateCode.InitImmediate(mask,addressType,-16);
  4984. Emit(And(position,sp, sp, mask));
  4985. gap := (-ParametersSize( system, procedureType, FALSE )) MOD 16;
  4986. IF gap # 0 THEN
  4987. IntermediateCode.InitImmediate(size,addressType,gap);
  4988. Emit(Sub(position,sp,sp,size))
  4989. END;
  4990. END;
  4991. IF x.left IS SyntaxTree.SupercallDesignator THEN
  4992. symbol := x.left(SyntaxTree.SupercallDesignator).left(SyntaxTree.SymbolDesignator).symbol;
  4993. ELSIF x.left IS SyntaxTree.IndexDesignator THEN
  4994. symbol := x.left(SyntaxTree.IndexDesignator).left(SyntaxTree.SymbolDesignator).symbol;
  4995. ELSE
  4996. symbol := x.left(SyntaxTree.SymbolDesignator).symbol;
  4997. END;
  4998. IF isCallOfDynamicOperator & hasDynamicOperands THEN
  4999. IF dump # NIL THEN dump.String("++++++++++ dynamic operator call ++++++++++"); dump.Ln; dump.Update END; (* TENTATIVE *)
  5000. (* push ID *)
  5001. (* IF dump # NIL THEN dump.String("push ID"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5002. ASSERT(x.left IS SyntaxTree.SymbolDesignator);
  5003. identifierNumber := Global.GetSymbol(module.module.case, x.left(SyntaxTree.SymbolDesignator).symbol.name);
  5004. Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), identifierNumber)));
  5005. formalParameter := procedureType.firstParameter;
  5006. FOR i := 0 TO parameters.Length() - 1 DO
  5007. IF formalParameter.access # SyntaxTree.Hidden THEN
  5008. ASSERT(i < 2);
  5009. IF IsStrictlyPointerToRecord(formalParameter.type) THEN
  5010. (* push pointer *)
  5011. (* IF dump # NIL THEN dump.String("push pointer"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5012. IF formalParameter.kind = SyntaxTree.VarParameter THEN
  5013. (* add dereference *)
  5014. (* IF dump # NIL THEN dump.String("dereference pointer"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5015. ReleaseIntermediateOperand(parameterBackups[i]);
  5016. MakeMemory(parameterBackups[i], parameterBackups[i], addressType, 0)
  5017. END;
  5018. Emit(Push(position,parameterBackups[i]));
  5019. ReleaseIntermediateOperand(parameterBackups[i]);
  5020. (* push typetag *)
  5021. (* IF dump # NIL THEN dump.String("push typetag"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5022. recordType := formalParameter.type.resolved(SyntaxTree.PointerType).pointerBase.resolved(SyntaxTree.RecordType);
  5023. arg := TypeDescriptorAdr(recordType);
  5024. IF ~newObjectFile THEN IntermediateCode.MakeMemory(arg, addressType) END;
  5025. Emit(Push(position,arg));
  5026. ELSE
  5027. (* push 'NonPointer' *)
  5028. (* IF dump # NIL THEN dump.String("push 'NonPointer'"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5029. Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), NonPointer)));
  5030. (* push fingerprint *)
  5031. (* IF dump # NIL THEN dump.String("push fingerprint"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5032. fingerPrint := fingerPrinter.TypeFP(formalParameter.type.resolved);
  5033. Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), fingerPrint.shallow))) (* TODO: push the type's fingerprint *)
  5034. END
  5035. END;
  5036. formalParameter := formalParameter.nextParameter
  5037. END;
  5038. (* for unary operators: complete the information for the second parameter *)
  5039. IF procedureType.numberParameters < 2 THEN
  5040. (* push 'NonPointer' *)
  5041. (* IF dump # NIL THEN dump.String("push 'NonPointer'"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5042. Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), NonPointer)));
  5043. (* push 'NoType' *)
  5044. (* IF dump # NIL THEN dump.String("push 'NoType'"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5045. Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), NoType)));
  5046. END;
  5047. (* call operator selection procedure *)
  5048. IF GetRuntimeProcedure("FoxOperatorRuntime", "SelectOperator", operatorSelectionProcedure, TRUE) THEN
  5049. StaticCallOperand(operatorSelectionProcedureOperand, operatorSelectionProcedure);
  5050. Emit(Call(position,operatorSelectionProcedureOperand.op, ProcedureParametersSize(system, operatorSelectionProcedure)));
  5051. ReleaseOperand(operatorSelectionProcedureOperand);
  5052. (* use the address that the operator selection procedure returned as the target address of the call *)
  5053. InitOperand(operand, ModeValue);
  5054. operand.op := IntermediateCode.Register(addressType, IntermediateCode.GeneralPurposeRegister, AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  5055. Emit(Result(position,operand.op))
  5056. END
  5057. ELSE
  5058. Evaluate(x.left, operand)
  5059. END;
  5060. IF symbol IS SyntaxTree.Procedure THEN
  5061. IF x.left IS SyntaxTree.SupercallDesignator THEN
  5062. Emit(Push(position,operand.tag));
  5063. ELSIF (procedureType.isDelegate) THEN
  5064. Emit(Push(position,operand.tag));
  5065. END;
  5066. ELSIF (symbol IS SyntaxTree.Variable) OR (symbol IS SyntaxTree.Parameter) THEN
  5067. IF (procedureType.isDelegate) THEN (* push self pointer only if procedure is a method *)
  5068. Emit(Push(position,operand.tag));
  5069. END;
  5070. ELSE HALT(200);
  5071. END;
  5072. ReleaseIntermediateOperand(operand.tag);
  5073. operand.tag := emptyOperand;
  5074. (* determine if a structured return type is needed *)
  5075. structuredReturnType := StructuredReturnType(procedureType);
  5076. IF structuredReturnType THEN
  5077. IF resultDesignator # NIL THEN
  5078. d := resultDesignator;
  5079. ELSE
  5080. variable := GetTemporaryVariable(procedureType.returnType, FALSE);
  5081. variable.SetUntraced(procedureType.hasUntracedReturn);
  5082. d := SyntaxTree.NewSymbolDesignator(-1,NIL,variable);
  5083. d.SetType(variable.type);
  5084. END;
  5085. IF (procedureType.returnType.resolved IS SyntaxTree.RecordType) THEN
  5086. Designate(d,returnValue);
  5087. returnTypeSize := system.SizeOf(procedureType.returnType.resolved);
  5088. size := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,returnTypeSize));
  5089. Emit(Push(position,size));
  5090. Emit(Push(position,returnValue.op));
  5091. ReleaseOperand(returnValue);
  5092. ELSE
  5093. PushParameter(d,procedureType.returnParameter,procedureType.callingConvention, FALSE, dummy,-1)
  5094. END;
  5095. END;
  5096. firstWriteBackCall := NIL; (* reset write-back call list *)
  5097. IF procedureType.callingConvention # SyntaxTree.OberonCallingConvention THEN
  5098. passByRegister := system.registerParameters > 0;
  5099. registerNumber := 0;
  5100. formalParameter := procedureType.lastParameter;
  5101. FOR i := parameters.Length() - 1 TO 0 BY -1 DO
  5102. actualParameter := parameters.GetExpression(i);
  5103. PrepareParameter(actualParameter, formalParameter);
  5104. IF passByRegister & (i < system.registerParameters) THEN
  5105. IF ~PassInRegister(formalParameter) THEN
  5106. Error(actualParameter.position,"cannot be passed by register")
  5107. ELSE
  5108. PushParameter(actualParameter, formalParameter, procedureType.callingConvention, FALSE, dummy,i);
  5109. END;
  5110. INC(registerNumber);
  5111. ELSE
  5112. PushParameter(actualParameter, formalParameter, procedureType.callingConvention, FALSE, dummy,-1);
  5113. END;
  5114. formalParameter := formalParameter.prevParameter;
  5115. END;
  5116. IF passByRegister & (registerNumber > 0) THEN
  5117. stackSize := ToMemoryUnits(system,system.registerParameters*addressType.sizeInBits);
  5118. Emit(Sub(position,sp,sp,IntermediateCode.Immediate(addressType,stackSize)));
  5119. END;
  5120. ELSE
  5121. hasDynamicOperands := FALSE;
  5122. formalParameter := procedureType.firstParameter;
  5123. FOR i := 0 TO parameters.Length() - 1 DO
  5124. actualParameter := parameters.GetExpression(i);
  5125. IF formalParameter # NIL THEN (* TENTATIVE *)
  5126. PrepareParameter(actualParameter, formalParameter);
  5127. IF isCallOfDynamicOperator & IsStrictlyPointerToRecord(formalParameter.type) & (formalParameter.access # SyntaxTree.Hidden) THEN (* TODO: remove hidden parameters *)
  5128. ASSERT(i < 2);
  5129. hasDynamicOperands := TRUE;
  5130. PushParameter(actualParameter, formalParameter, procedureType.callingConvention, TRUE, parameterBackups[i],-1)
  5131. ELSE
  5132. IF passByRegister & (registerNumber > 0) THEN
  5133. stackSize := ToMemoryUnits(system,registerNumber*addressType.sizeInBits);
  5134. Emit(Sub(position,sp,sp,IntermediateCode.Immediate(addressType,stackSize)));
  5135. END;
  5136. passByRegister := FALSE;
  5137. PushParameter(actualParameter, formalParameter, procedureType.callingConvention, FALSE, dummy,-1);
  5138. END;
  5139. formalParameter := formalParameter.nextParameter;
  5140. END;
  5141. END;
  5142. END;
  5143. IF symbol IS SyntaxTree.Procedure THEN
  5144. IF IsNested(symbol(SyntaxTree.Procedure)) THEN
  5145. GetBaseRegister(reg,currentScope,symbol.scope); (* static link, may be fp or [fp+8] (if nested proc calls itself) *)
  5146. Emit(Push(position,reg));
  5147. ReleaseIntermediateOperand(reg);
  5148. END;
  5149. parametersSize := ProcedureParametersSize(system,symbol(SyntaxTree.Procedure));
  5150. ELSIF (symbol IS SyntaxTree.Variable) OR (symbol IS SyntaxTree.Parameter) THEN
  5151. parametersSize := ParametersSize(system,procedureType,FALSE);
  5152. END;
  5153. ReleaseParameterRegisters();
  5154. IF (procedureType.callingConvention = SyntaxTree.WinAPICallingConvention) OR (procedureType.callingConvention = SyntaxTree.CCallingConvention) THEN
  5155. Emit(Call(position,operand.op,0));
  5156. ELSE
  5157. Emit(Call(position,operand.op,parametersSize));
  5158. END;
  5159. ReleaseOperand(operand);
  5160. IF procedureType.noReturn THEN
  5161. EmitTrap(position,NoReturnTrap);
  5162. END;
  5163. IF (procedureType.returnType # NIL) & ~structuredReturnType THEN
  5164. return := NewRegisterOperand(IntermediateCode.GetType(system,procedureType.returnType));
  5165. Emit(Result(position,return));
  5166. END;
  5167. IF procedureType.callingConvention = SyntaxTree.CCallingConvention THEN
  5168. IF passByRegister & (registerNumber > 0) & (registerNumber < system.registerParameters) THEN (* allocated space for all registers *)
  5169. parametersSize := ToMemoryUnits(system,system.registerParameters*addressType.sizeInBits);
  5170. END;
  5171. size := IntermediateCode.Immediate(addressType,parametersSize);
  5172. Emit(Add(position,sp,sp,size));
  5173. END;
  5174. IF (resultDesignator = NIL) & (procedureType.returnType # NIL) THEN
  5175. IF structuredReturnType THEN
  5176. (* stack pointer rewinding done by callee
  5177. size := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.SizeOfParameter(procedureType.returnParameter)));
  5178. Emit(Add(position,sp,sp,size));
  5179. *)
  5180. RestoreRegisters(saved);
  5181. InitOperand(result,ModeReference);
  5182. Symbol(variable,result);
  5183. ELSE
  5184. RestoreRegisters(saved);
  5185. InitOperand(result,ModeValue);
  5186. result.op := return;
  5187. END;
  5188. END;
  5189. IF alignment > 1 THEN
  5190. Emit(Pop(position,sp));
  5191. END;
  5192. IF backend.cooperative & (procedureType.callingConvention = SyntaxTree.WinAPICallingConvention) THEN
  5193. Emit(Pop(position, ap));
  5194. END;
  5195. IF conditional & (procedureType.returnType # NIL) & (procedureType.returnType.resolved IS SyntaxTree.BooleanType) THEN
  5196. ValueToCondition(result);
  5197. END;
  5198. destination := dest;
  5199. (* perform all write-back calls in the list *)
  5200. BackupGlobalState;
  5201. currentWriteBackCall := firstWriteBackCall;
  5202. WHILE currentWriteBackCall # NIL DO
  5203. VisitProcedureCallDesignator(currentWriteBackCall.call);
  5204. currentWriteBackCall := currentWriteBackCall.next
  5205. END;
  5206. RestoreGlobalState;
  5207. (* TENATIVE *)
  5208. (*
  5209. IF isOperatorCall THEN
  5210. IF dump # NIL THEN dump.String("*** end of operator call ***"); dump.Ln; dump.Update END
  5211. END;
  5212. *)
  5213. IF Trace THEN TraceExit("VisitProcedureCallDesignator") END;
  5214. END VisitProcedureCallDesignator;
  5215. PROCEDURE TypeDescriptorAdr(t: SyntaxTree.Type): IntermediateCode.Operand;
  5216. VAR res: IntermediateCode.Operand; offset: LONGINT; name: Basic.SegmentedName;
  5217. td: SyntaxTree.Symbol;
  5218. PROCEDURE GetHiddenPointerType(): SyntaxTree.Type;
  5219. VAR scope: SyntaxTree.RecordScope; variable: SyntaxTree.Variable; typeDeclaration: SyntaxTree.TypeDeclaration;
  5220. BEGIN
  5221. IF (hiddenPointerType = NIL) OR (hiddenPointerType.typeDeclaration.scope.ownerModule # module.module) THEN
  5222. scope := SyntaxTree.NewRecordScope(module.module.moduleScope);
  5223. variable := SyntaxTree.NewVariable(-1,SyntaxTree.NewIdentifier("@Any"));
  5224. variable.SetType(system.anyType);
  5225. scope.AddVariable(variable);
  5226. hiddenPointerType := SyntaxTree.NewRecordType(-1,NIL,scope);
  5227. typeDeclaration := SyntaxTree.NewTypeDeclaration(-1,SyntaxTree.NewIdentifier("@HdPtrDesc"));
  5228. typeDeclaration.SetDeclaredType(hiddenPointerType);
  5229. typeDeclaration.SetScope(module.module.moduleScope);
  5230. hiddenPointerType.SetTypeDeclaration(typeDeclaration);
  5231. hiddenPointerType.SetState(SyntaxTree.Resolved);
  5232. END;
  5233. RETURN hiddenPointerType;
  5234. END GetHiddenPointerType;
  5235. PROCEDURE GetDelegateType(): SyntaxTree.Type;
  5236. VAR scope: SyntaxTree.RecordScope; variable: SyntaxTree.Variable; typeDeclaration: SyntaxTree.TypeDeclaration;
  5237. BEGIN
  5238. IF (delegatePointerType = NIL) OR (delegatePointerType.typeDeclaration.scope.ownerModule # module.module) THEN
  5239. scope := SyntaxTree.NewRecordScope(module.module.moduleScope);
  5240. variable := SyntaxTree.NewVariable(-1,SyntaxTree.NewIdentifier("@Procedure"));
  5241. variable.SetType(SyntaxTree.NewProcedureType(-1,NIL));
  5242. scope.AddVariable(variable);
  5243. variable := SyntaxTree.NewVariable(-1,SyntaxTree.NewIdentifier("@Any"));
  5244. variable.SetType(system.anyType);
  5245. scope.AddVariable(variable);
  5246. delegatePointerType := SyntaxTree.NewRecordType(-1,NIL,scope);
  5247. typeDeclaration := SyntaxTree.NewTypeDeclaration(-1,SyntaxTree.NewIdentifier("@Delegate"));
  5248. typeDeclaration.SetDeclaredType(delegatePointerType);
  5249. typeDeclaration.SetScope(module.module.moduleScope);
  5250. delegatePointerType.SetTypeDeclaration(typeDeclaration);
  5251. delegatePointerType.SetState(SyntaxTree.Resolved);
  5252. END;
  5253. RETURN delegatePointerType
  5254. END GetDelegateType;
  5255. PROCEDURE GetBackendType(x: SyntaxTree.Type; VAR offset: LONGINT; VAR name: Basic.SegmentedName): SyntaxTree.Symbol;
  5256. (* create anonymous type declaration for types that need a type descriptor but have been declared anonymously
  5257. such as in VAR a: RECORD ... END;
  5258. reason: type desciptors in Sections are then accessible via a type declaration symbol and for types
  5259. and variables, constants and procedures the same mechanism can be used for fixups etc.
  5260. *)
  5261. VAR source: Sections.Section;null: HUGEINT; td: SyntaxTree.TypeDeclaration;
  5262. op: IntermediateCode.Operand; baseRecord: SyntaxTree.RecordType;
  5263. BEGIN (* no code emission *)
  5264. source := NIL;
  5265. x := x.resolved;
  5266. IF (x IS SyntaxTree.AnyType) OR (x IS SyntaxTree.PointerType) THEN
  5267. x := GetHiddenPointerType();
  5268. ELSIF IsDelegate(x) THEN
  5269. x := GetDelegateType();
  5270. ELSIF (x IS SyntaxTree.RecordType) OR (x IS SyntaxTree.CellType) THEN
  5271. ELSE HALT(200);
  5272. END;
  5273. td := x.typeDeclaration;
  5274. IF td = NIL THEN
  5275. ASSERT(x(SyntaxTree.RecordType).pointerType # NIL);
  5276. td := x(SyntaxTree.RecordType).pointerType.resolved.typeDeclaration;
  5277. ASSERT(td # NIL);
  5278. END;
  5279. IF newObjectFile THEN
  5280. GetCodeSectionNameForSymbol(td,name);
  5281. IF (td.scope = NIL) OR (td.scope.ownerModule = module.module) THEN
  5282. meta.CheckTypeDeclaration(x);
  5283. source := NewSection(module.allSections, Sections.ConstSection, name,td,commentPrintout # NIL);
  5284. ELSE
  5285. source := NewSection(module.importedSections, Sections.ConstSection,name,td,commentPrintout # NIL);
  5286. END;
  5287. IF backend.cooperative OR meta.simple THEN
  5288. offset := 0;
  5289. ELSE
  5290. IF x IS SyntaxTree.CellType THEN
  5291. baseRecord := x(SyntaxTree.CellType).GetBaseRecord();
  5292. IF baseRecord = NIL THEN
  5293. offset := ToMemoryUnits(system, meta.GetTypeRecordBaseOffset(0));
  5294. ELSE
  5295. offset := ToMemoryUnits(system, meta.GetTypeRecordBaseOffset(baseRecord.recordScope.numberMethods)*system.addressSize);
  5296. END;
  5297. ELSE
  5298. offset := ToMemoryUnits(system,meta.GetTypeRecordBaseOffset(x(SyntaxTree.RecordType).recordScope.numberMethods)*system.addressSize);
  5299. END;
  5300. END;
  5301. ELSE
  5302. offset := 0;
  5303. source := module.allSections.FindBySymbol(td); (*TODO*)
  5304. IF source = NIL THEN
  5305. null := 0;
  5306. GetCodeSectionNameForSymbol(td,name);
  5307. Basic.SuffixSegmentedName (name, Basic.MakeString("@"));
  5308. Basic.SuffixSegmentedName (name, module.module.name);
  5309. source := NewSection(module.allSections, Sections.ConstSection, name,td,commentPrintout # NIL);
  5310. IntermediateCode.InitImmediate(op,addressType,0);
  5311. source(IntermediateCode.Section).Emit(Data(position,op));
  5312. source.SetReferenced(FALSE)
  5313. ELSE
  5314. name := source.name;
  5315. END;
  5316. END;
  5317. RETURN td
  5318. END GetBackendType;
  5319. BEGIN
  5320. (*td := t.typeDeclaration;*)
  5321. td := GetBackendType(t,offset,name); (*! do not dereference a pointer here as the type descriptor for the pointer might be asked for *)
  5322. (*
  5323. IF t IS SyntaxTree.PointerType THEN
  5324. source := GetBackendType(t(SyntaxTree.PointerType).pointerBase.resolved);
  5325. ELSE
  5326. source := GetBackendType(t);
  5327. END;
  5328. *)
  5329. IF newObjectFile THEN
  5330. IntermediateCode.InitAddress(res, addressType, name, GetFingerprint(td), 0 (*
  5331. 1+t(SyntaxTree.RecordType).recordScope.numberMethods+16+1 *));
  5332. IntermediateCode.SetOffset(res,offset);
  5333. ELSE
  5334. IntermediateCode.InitAddress(res, addressType, name, GetFingerprint(td), 0);
  5335. END;
  5336. (*
  5337. IntermediateCode.MakeMemory(res,IntermediateCode.UnsignedInteger,addressType.sizeInBits);
  5338. make memory should be used when tag is used, not earlier
  5339. *)
  5340. RETURN res
  5341. END TypeDescriptorAdr;
  5342. (*
  5343. PROCEDURE MakeTypeTag(VAR operand: Operand);
  5344. VAR result: IntermediateCode.Operand;
  5345. BEGIN
  5346. IF operand.tag.mode = IntermediateCode.Undefined THEN
  5347. operand.tag := TypeDescriptorAdr(operand.type);
  5348. IntermediateCode.MakeMemory(operand.tag,addressType);
  5349. UseIntermediateOperand(operand.tag);
  5350. END;
  5351. END MakeTypeTag;
  5352. *)
  5353. PROCEDURE ProfilerInit;
  5354. VAR reg: IntermediateCode.Operand;
  5355. BEGIN
  5356. IntermediateCode.InitAddress(reg, addressType, profileInit.name , GetFingerprint(profileInit.symbol), 0);
  5357. Emit(Call(position,reg,0));
  5358. END ProfilerInit;
  5359. PROCEDURE ProfilerEnterExit(procedureNumber: LONGINT; enter: BOOLEAN);
  5360. VAR reg: IntermediateCode.Operand; result: Operand; procedure: SyntaxTree.Procedure;
  5361. BEGIN
  5362. IF enter & GetRuntimeProcedure("FoxProfiler","EnterProcedure",procedure,TRUE)
  5363. OR ~enter & GetRuntimeProcedure("FoxProfiler","ExitProcedure",procedure,TRUE)
  5364. THEN
  5365. IntermediateCode.InitAddress(reg, addressType, profileId.name , GetFingerprint(profileId.symbol), 0);
  5366. IntermediateCode.MakeMemory(reg, IntermediateCode.GetType(system,system.longintType));
  5367. Emit(Push(position,reg));
  5368. IntermediateCode.InitImmediate(reg, IntermediateCode.GetType(system,system.longintType), procedureNumber);
  5369. Emit(Push(position,reg));
  5370. StaticCallOperand(result,procedure);
  5371. Emit(Call(position,result.op,ProcedureParametersSize(system,procedure)));
  5372. ReleaseOperand(result);
  5373. END;
  5374. END ProfilerEnterExit;
  5375. PROCEDURE ProfilerAddProcedure(procedureNumber: LONGINT; CONST name: ARRAY OF CHAR);
  5376. VAR string: SyntaxTree.String; reg: IntermediateCode.Operand; result: Operand; procedure: SyntaxTree.Procedure; sv: SyntaxTree.StringValue;type: SyntaxTree.Type;
  5377. BEGIN
  5378. IF GetRuntimeProcedure("FoxProfiler","AddProcedure",procedure,TRUE) THEN
  5379. IntermediateCode.InitAddress(reg, addressType, profileId.name , GetFingerprint(profileId.symbol), 0);
  5380. IntermediateCode.MakeMemory(reg, IntermediateCode.GetType(system,system.longintType));
  5381. profileInit.Emit(Push(position,reg));
  5382. IntermediateCode.InitImmediate(reg, IntermediateCode.GetType(system,system.longintType), procedureNumber);
  5383. profileInit.Emit(Push(position,reg));
  5384. NEW(string, LEN(name)); COPY(name, string^);
  5385. sv := SyntaxTree.NewStringValue(-1,string);
  5386. type := SyntaxTree.NewStringType(-1,system.characterType,Strings.Length(name));
  5387. sv.SetType(type);
  5388. Designate(sv,result);
  5389. profileInit.Emit(Push(position,result.tag));
  5390. profileInit.Emit(Push(position,result.op));
  5391. StaticCallOperand(result,procedure);
  5392. profileInit.Emit(Call(position,result.op,ProcedureParametersSize(system,procedure)));
  5393. ReleaseOperand(result);
  5394. END;
  5395. END ProfilerAddProcedure;
  5396. PROCEDURE ProfilerAddModule(CONST name: ARRAY OF CHAR);
  5397. VAR string: SyntaxTree.String; sv: SyntaxTree.StringValue; type: SyntaxTree.Type; result: Operand; reg: IntermediateCode.Operand; procedure: SyntaxTree.Procedure;
  5398. BEGIN
  5399. IF GetRuntimeProcedure("FoxProfiler","AddModule",procedure,TRUE) THEN
  5400. IntermediateCode.InitAddress(reg, addressType, profileId.name , GetFingerprint(profileId.symbol), 0);
  5401. profileInit.Emit(Push(position,reg));
  5402. profileInitPatchPosition := profileInit.pc;
  5403. profileInit.Emit(Nop(position)); (* placeholder, will be patched by number of procedures *)
  5404. NEW(string, LEN(name)); COPY(name, string^);
  5405. sv := SyntaxTree.NewStringValue(-1,string);
  5406. type := SyntaxTree.NewStringType(-1,system.characterType,Strings.Length(name));
  5407. sv.SetType(type);
  5408. Designate(sv,result);
  5409. profileInit.Emit(Push(position,result.tag));
  5410. profileInit.Emit(Push(position,result.op));
  5411. StaticCallOperand(result,procedure);
  5412. profileInit.Emit(Call(position,result.op,ProcedureParametersSize(system,procedure)));
  5413. ReleaseOperand(result);
  5414. END;
  5415. END ProfilerAddModule;
  5416. PROCEDURE ProfilerPatchInit;
  5417. VAR reg: IntermediateCode.Operand;
  5418. BEGIN
  5419. IntermediateCode.InitImmediate(reg, IntermediateCode.GetType(system,system.longintType), numberProcedures);
  5420. profileInit.EmitAt(profileInitPatchPosition,Push(position,reg));
  5421. EmitLeave(profileInit,position,0);
  5422. profileInit.Emit(Exit(position,0,0));
  5423. END ProfilerPatchInit;
  5424. (** if operator can be overloaded dynamically, emit code that registers it in the runtime **)
  5425. PROCEDURE RegisterDynamicOperator(operator: SyntaxTree.Operator);
  5426. VAR
  5427. id: LONGINT;
  5428. leftType, rightType: SyntaxTree.Type;
  5429. procedureType: SyntaxTree.ProcedureType;
  5430. runtimeProcedure: SyntaxTree.Procedure;
  5431. runtimeProcedureOperand, operatorOperand: Operand;
  5432. kind: SET;
  5433. PROCEDURE PushTypeInfo(type: SyntaxTree.Type);
  5434. VAR
  5435. arg: IntermediateCode.Operand;
  5436. recordType: SyntaxTree.RecordType;
  5437. fingerPrint: SyntaxTree.FingerPrint;
  5438. BEGIN
  5439. IF type = NIL THEN
  5440. (* no type: push 'NoType' *)
  5441. (* IF dump # NIL THEN dump.String("push 'NoType'"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5442. arg := IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), NoType)
  5443. ELSIF IsStrictlyPointerToRecord(type) THEN
  5444. (* pointer to record type: push typetag *)
  5445. (* IF dump # NIL THEN dump.String("push typetag"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5446. recordType := type.resolved(SyntaxTree.PointerType).pointerBase.resolved(SyntaxTree.RecordType);
  5447. arg := TypeDescriptorAdr(recordType);
  5448. IF ~newObjectFile THEN IntermediateCode.MakeMemory(arg, addressType) END;
  5449. ELSE
  5450. (* non-pointer to record type: push fingerprint *)
  5451. (* IF dump # NIL THEN dump.String("push fingerprint"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5452. fingerPrint := fingerPrinter.TypeFP(type.resolved);
  5453. arg := IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), fingerPrint.shallow)
  5454. END;
  5455. operatorInitializationCodeSection.Emit(Push(position,arg))
  5456. END PushTypeInfo;
  5457. BEGIN
  5458. ASSERT(operatorInitializationCodeSection # NIL);
  5459. ASSERT(operator.type IS SyntaxTree.ProcedureType);
  5460. procedureType := operator.type(SyntaxTree.ProcedureType);
  5461. (* determine types *)
  5462. leftType := procedureType.firstParameter.type;
  5463. IF procedureType.numberParameters = 2 THEN
  5464. ASSERT(procedureType.firstParameter.nextParameter # NIL);
  5465. rightType := procedureType.firstParameter.nextParameter.type;
  5466. ELSE
  5467. rightType := NIL
  5468. END;
  5469. (* determine operator kind *)
  5470. IF IsStrictlyPointerToRecord(leftType) THEN
  5471. kind := {LhsIsPointer}
  5472. ELSE
  5473. kind := {}
  5474. END;
  5475. IF IsStrictlyPointerToRecord(rightType) THEN
  5476. kind := kind + {RhsIsPointer}
  5477. END;
  5478. IF kind # {} THEN (* TODO: to be removed later on *)
  5479. (* at least one of the types is a pointer to record *)
  5480. (* emit a code that registers this specific operator in the runtime *)
  5481. dump := operatorInitializationCodeSection.comments;
  5482. (* IF dump # NIL THEN dump.String("*** begin of operator registration ***"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5483. IF GetRuntimeProcedure("FoxOperatorRuntime", "RegisterOperator", runtimeProcedure, TRUE) THEN
  5484. (* push ID *)
  5485. (* IF dump # NIL THEN dump.String("push ID"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5486. id := Global.GetSymbol(module.module.case, operator.name);
  5487. operatorInitializationCodeSection.Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType), id)));
  5488. (* push kind *)
  5489. (* IF dump # NIL THEN dump.String("push kind"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5490. operatorInitializationCodeSection.Emit(Push(position,IntermediateCode.Immediate(setType, SYSTEM.VAL(LONGINT, kind))));
  5491. (* push type infos *)
  5492. PushTypeInfo(leftType);
  5493. PushTypeInfo(rightType);
  5494. (* push operator address *)
  5495. (* IF dump # NIL THEN dump.String("push operator address"); dump.Ln; dump.Update END; *) (* TENTATIVE *)
  5496. StaticCallOperand(operatorOperand, operator);
  5497. operatorInitializationCodeSection.Emit(Push(position,operatorOperand.op));
  5498. ReleaseOperand(operatorOperand);
  5499. StaticCallOperand(runtimeProcedureOperand, runtimeProcedure);
  5500. operatorInitializationCodeSection.Emit(Call(position,runtimeProcedureOperand.op, ProcedureParametersSize(system, runtimeProcedure)));
  5501. ReleaseOperand(runtimeProcedureOperand)
  5502. END
  5503. (* IF dump # NIL THEN dump.String("*** end of operator registration ***"); dump.Ln; dump.Update END *) (* TENTATIVE *)
  5504. END
  5505. END RegisterDynamicOperator;
  5506. PROCEDURE SystemTrace(x: SyntaxTree.ExpressionList; pos: LONGINT);
  5507. VAR
  5508. traceModule: SyntaxTree.Module;
  5509. procedure: SyntaxTree.Procedure;
  5510. procedureVariable: SyntaxTree.Variable;
  5511. s,msg: Basic.MessageString;
  5512. res: Operand;
  5513. i: LONGINT;
  5514. sv: SyntaxTree.StringValue;
  5515. type: SyntaxTree.Type;
  5516. recordType: SyntaxTree.RecordType;
  5517. printout: Printout.Printer;
  5518. stringWriter: Streams.StringWriter;
  5519. expression: SyntaxTree.Expression;
  5520. PROCEDURE GetProcedure(CONST procedureName: ARRAY OF CHAR): BOOLEAN;
  5521. BEGIN
  5522. procedure := traceModule.moduleScope.FindProcedure(SyntaxTree.NewIdentifier(procedureName));
  5523. IF procedure = NIL THEN
  5524. procedureVariable := traceModule.moduleScope.FindVariable(SyntaxTree.NewIdentifier(procedureName));
  5525. END;
  5526. IF (procedure = NIL) & (procedureVariable = NIL) THEN
  5527. s := "procedure ";
  5528. Strings.Append(s,backend.traceModuleName);
  5529. Strings.Append(s,".");
  5530. Strings.Append(s,procedureName);
  5531. Strings.Append(s," not present");
  5532. Error(position,s);
  5533. RETURN FALSE
  5534. ELSE
  5535. RETURN TRUE
  5536. END;
  5537. END GetProcedure;
  5538. PROCEDURE CallProcedure;
  5539. VAR size: LONGINT;
  5540. BEGIN
  5541. IF procedure # NIL THEN
  5542. StaticCallOperand(result,procedure);
  5543. size := ProcedureParametersSize(system,procedure);
  5544. ELSE
  5545. Symbol(procedureVariable, result);
  5546. LoadValue(result, procedureVariable.type.resolved);
  5547. size := ParametersSize(system, procedureVariable.type.resolved(SyntaxTree.ProcedureType), FALSE);
  5548. END;
  5549. Emit(Call(position,result.op,size));
  5550. END CallProcedure;
  5551. PROCEDURE String(CONST s: ARRAY OF CHAR);
  5552. VAR res: Operand; string: SyntaxTree.String;
  5553. BEGIN
  5554. IF GetProcedure("String") THEN
  5555. NEW(string, LEN(s)); COPY(s, string^);
  5556. sv := SyntaxTree.NewStringValue(-1,string);
  5557. type := SyntaxTree.NewStringType(-1,system.characterType,Strings.Length(s));
  5558. sv.SetType(type);
  5559. Designate(sv,res);
  5560. Emit(Push(position,res.tag));
  5561. Emit(Push(position,res.op));
  5562. ReleaseOperand(res);
  5563. CallProcedure;
  5564. END;
  5565. END String;
  5566. PROCEDURE Integer(op: IntermediateCode.Operand);
  5567. BEGIN
  5568. IF GetProcedure("Int") THEN
  5569. Emit(Push(position,op));
  5570. Emit(Push(position,IntermediateCode.Immediate(int32,1)));
  5571. CallProcedure;
  5572. END;
  5573. END Integer;
  5574. PROCEDURE Float(op: IntermediateCode.Operand);
  5575. BEGIN
  5576. IF GetProcedure("HIntHex") THEN
  5577. Emit(Push(position,op));
  5578. Emit(Push(position,IntermediateCode.Immediate(int32,16)));
  5579. CallProcedure;
  5580. END;
  5581. END Float;
  5582. PROCEDURE Set(op: IntermediateCode.Operand);
  5583. BEGIN
  5584. IF GetProcedure("Set") THEN
  5585. Emit(Push(position,op));
  5586. (*
  5587. Emit(Push(position,IntermediateCode.Immediate(int32,0))); (* ofs *)
  5588. Emit(Push(position,IntermediateCode.Immediate(int32,32))); (* n *)
  5589. *)
  5590. CallProcedure;
  5591. END;
  5592. END Set;
  5593. PROCEDURE Boolean(op: IntermediateCode.Operand);
  5594. BEGIN
  5595. IF GetProcedure("Boolean") THEN
  5596. Emit(Push(position,op));
  5597. CallProcedure;
  5598. END;
  5599. END Boolean;
  5600. PROCEDURE Char(op: IntermediateCode.Operand);
  5601. BEGIN
  5602. IF GetProcedure("Char") THEN
  5603. Emit(Push(position,op));
  5604. CallProcedure;
  5605. END;
  5606. END Char;
  5607. PROCEDURE Address(op: IntermediateCode.Operand);
  5608. BEGIN
  5609. IF GetProcedure("Address") THEN
  5610. Emit(Push(position,op));
  5611. CallProcedure;
  5612. END;
  5613. END Address;
  5614. PROCEDURE StringOperand(op,tag: IntermediateCode.Operand);
  5615. BEGIN
  5616. IF GetProcedure("String") THEN
  5617. Emit(Push(position,tag));
  5618. Emit(Push(position,op));
  5619. CallProcedure;
  5620. END;
  5621. END StringOperand;
  5622. PROCEDURE Ln;
  5623. BEGIN
  5624. IF GetProcedure("Ln") THEN
  5625. CallProcedure;
  5626. END;
  5627. END Ln;
  5628. BEGIN
  5629. IF backend.traceModuleName = "" THEN RETURN END;
  5630. IF AddImport(backend.traceModuleName,traceModule,TRUE) THEN
  5631. IF GetProcedure("Enter") THEN
  5632. CallProcedure
  5633. END;
  5634. NEW(stringWriter,LEN(s));
  5635. FOR i := 0 TO x.Length()-1 DO
  5636. msg := "";
  5637. expression := x.GetExpression(i);
  5638. IF currentScope IS SyntaxTree.ProcedureScope THEN
  5639. Global.GetSymbolName(currentScope(SyntaxTree.ProcedureScope).ownerProcedure, s)
  5640. ELSE
  5641. Global.GetModuleName(module.module, s);
  5642. END;
  5643. IF i = 0 THEN
  5644. stringWriter.String(s); stringWriter.String("@"); stringWriter.Int(pos,1);
  5645. stringWriter.String(":");
  5646. END;
  5647. printout := Printout.NewPrinter(stringWriter,Printout.SourceCode,FALSE);
  5648. IF ~(expression IS SyntaxTree.StringValue) THEN
  5649. printout.Expression(expression);
  5650. stringWriter.Get(s);
  5651. Strings.Append(msg,s);
  5652. Strings.Append(msg,"= ");
  5653. ELSE stringWriter.Get(s); (* remove from string writer *)
  5654. Strings.Append(msg, s);
  5655. END;
  5656. String(msg);
  5657. IF SemanticChecker.IsStringType(expression.type) THEN
  5658. Designate(expression,res);
  5659. StringOperand(res.op,res.tag);
  5660. ELSE
  5661. Evaluate(expression,res);
  5662. IF expression.type.resolved IS SyntaxTree.IntegerType THEN
  5663. IF res.op.type.sizeInBits < IntermediateCode.Bits64 THEN
  5664. Convert(res.op,int64);
  5665. END;
  5666. Integer(res.op);
  5667. ELSIF expression.type.resolved IS SyntaxTree.BooleanType THEN
  5668. Boolean(res.op);
  5669. ELSIF expression.type.resolved IS SyntaxTree.SetType THEN
  5670. Set(res.op);
  5671. ELSIF expression.type.resolved IS SyntaxTree.FloatType THEN
  5672. IF res.op.type.sizeInBits = IntermediateCode.Bits32 THEN
  5673. Convert(res.op,float64);
  5674. END;
  5675. Float(res.op);
  5676. ELSIF (expression.type.resolved IS SyntaxTree.CharacterType) & (expression.type.resolved.sizeInBits = 8) THEN
  5677. Char(res.op);
  5678. ELSIF expression.type.resolved IS SyntaxTree.AddressType THEN
  5679. Address(res.op);String("H");
  5680. ELSIF expression.type.resolved IS SyntaxTree.SizeType THEN
  5681. Address(res.op);String("H");
  5682. ELSIF (expression.type.resolved IS SyntaxTree.PointerType) OR IsPointerToRecord(expression.type,recordType) THEN
  5683. Address(res.op);String("H");
  5684. ELSIF (expression.type.resolved IS SyntaxTree.ProcedureType) THEN
  5685. Address(res.op);String("H");
  5686. ELSIF expression.type.resolved IS SyntaxTree.NilType THEN
  5687. String("NIL");
  5688. ELSE HALT(200);
  5689. END;
  5690. END;
  5691. ReleaseOperand(res);
  5692. String("; ");
  5693. END;
  5694. IF GetProcedure("Exit") THEN
  5695. CallProcedure
  5696. ELSE
  5697. Ln;
  5698. END;
  5699. END;
  5700. END SystemTrace;
  5701. PROCEDURE InitFields(type: SyntaxTree.Type; CONST adr: IntermediateCode.Operand; offset: LONGINT);
  5702. VAR baseType: SyntaxTree.Type; imm,mem: IntermediateCode.Operand; dim,size: LONGINT;
  5703. variable: SyntaxTree.Variable; i: LONGINT; initializerOp: Operand;
  5704. BEGIN
  5705. type := type.resolved;
  5706. IF type IS SyntaxTree.RecordType THEN
  5707. WITH type: SyntaxTree.RecordType DO
  5708. baseType := type.baseType;
  5709. IF baseType # NIL THEN
  5710. baseType := baseType.resolved;
  5711. IF baseType IS SyntaxTree.PointerType THEN baseType := baseType(SyntaxTree.PointerType).pointerBase END;
  5712. InitFields(baseType,adr,offset);
  5713. END;
  5714. variable := type.recordScope.firstVariable;
  5715. WHILE variable # NIL DO
  5716. IF variable.initializer # NIL THEN
  5717. Evaluate(variable.initializer,initializerOp);
  5718. MakeMemory(mem,adr,IntermediateCode.GetType(system,variable.type),offset+ ToMemoryUnits(system,variable.offsetInBits));
  5719. Emit(Mov(position,mem,initializerOp.op));
  5720. ReleaseOperand(initializerOp);
  5721. ReleaseIntermediateOperand(mem);
  5722. END;
  5723. InitFields(variable.type, adr, offset+ ToMemoryUnits(system,variable.offsetInBits));
  5724. variable := variable.nextVariable
  5725. END;
  5726. END;
  5727. ELSIF (type IS SyntaxTree.ArrayType) THEN
  5728. WITH type: SyntaxTree.ArrayType DO
  5729. IF type.form = SyntaxTree.Static THEN
  5730. baseType := type.arrayBase;
  5731. size := ToMemoryUnits(system,system.AlignedSizeOf(baseType));
  5732. FOR i := 0 TO type.staticLength-1 DO
  5733. InitFields(baseType,adr,offset+i*size);
  5734. END;
  5735. END;
  5736. END;
  5737. ELSIF type IS SyntaxTree.MathArrayType THEN
  5738. WITH type: SyntaxTree.MathArrayType DO
  5739. IF type.form = SyntaxTree.Open THEN
  5740. dim := DynamicDim(type);
  5741. imm := IntermediateCode.Immediate(addressType,dim);
  5742. PutMathArrayFieldOffset(adr,imm,MathDimOffset,offset);
  5743. baseType := SemanticChecker.ArrayBase(type,dim);
  5744. IF baseType = NIL THEN size := 0 ELSE size := system.AlignedSizeOf(baseType) END;
  5745. imm := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,size));
  5746. PutMathArrayFieldOffset(adr,imm,MathElementSizeOffset,offset);
  5747. ReleaseIntermediateOperand(imm);
  5748. (* flags remain empty (=0) for open array *)
  5749. ELSIF type.form = SyntaxTree.Static THEN
  5750. baseType := type.arrayBase;
  5751. size := ToMemoryUnits(system,system.AlignedSizeOf(baseType));
  5752. ASSERT(type.staticLength < 1024*1024*1024);
  5753. FOR i := 0 TO type.staticLength-1 DO
  5754. InitFields(baseType,adr,offset+i*size);
  5755. END;
  5756. END;
  5757. END;
  5758. END;
  5759. END InitFields;
  5760. PROCEDURE InitVariable(VAR variable: SyntaxTree.Variable);
  5761. VAR type: SyntaxTree.Type; operand: Operand; tmp: IntermediateCode.Operand; reference: SyntaxTree.Expression;
  5762. BEGIN
  5763. type := variable.type.resolved;
  5764. IF (type IS SyntaxTree.MathArrayType) THEN
  5765. WITH type: SyntaxTree.MathArrayType DO
  5766. IF type.form = SyntaxTree.Open THEN
  5767. Symbol(variable,operand);
  5768. InitFields(type, operand.tag,0);
  5769. ELSIF type.form = SyntaxTree.Tensor THEN
  5770. Symbol(variable, operand);
  5771. MakeMemory(tmp,operand.op,addressType,0);
  5772. ReleaseOperand(operand);
  5773. Emit(Mov(position,tmp, nil ) );
  5774. ReleaseIntermediateOperand(tmp);
  5775. END;
  5776. END;
  5777. ELSE
  5778. Symbol(variable,operand);
  5779. IF variable.initializer # NIL THEN
  5780. reference := SyntaxTree.NewSymbolDesignator(variable.initializer.position,NIL,variable);
  5781. reference.SetType(variable.type.resolved);
  5782. reference.SetAssignable(TRUE);
  5783. Assign(reference,variable.initializer);
  5784. END;
  5785. InitFields(type, operand.op,0);
  5786. ReleaseOperand(operand);
  5787. END;
  5788. END InitVariable;
  5789. PROCEDURE MathArrayDim(type: SyntaxTree.MathArrayType; CONST base: IntermediateCode.Operand; VAR result: Operand);
  5790. VAR end: Label;
  5791. BEGIN
  5792. IF type.form = SyntaxTree.Tensor THEN
  5793. InitOperand(result,ModeValue);
  5794. ReuseCopy(result.op,base);
  5795. end := NewLabel();
  5796. BreqL(end,result.op,IntermediateCode.Immediate(addressType,0));
  5797. Emit(MovReplace(position,result.op,IntermediateCode.Memory(addressType,result.op,ToMemoryUnits(system,MathDimOffset*addressType.sizeInBits))));
  5798. SetLabel(end);
  5799. Convert(result.op,int32);
  5800. ELSE
  5801. InitOperand(result,ModeValue);
  5802. IntermediateCode.InitImmediate(result.op, int32, SemanticChecker.Dimension(type,{SyntaxTree.Open, SyntaxTree.Static}));
  5803. END
  5804. END MathArrayDim;
  5805. PROCEDURE PutMathArrayField(base,value: IntermediateCode.Operand; fieldOffset: LONGINT);
  5806. VAR mem: IntermediateCode.Operand; offset: LONGINT;
  5807. BEGIN
  5808. offset := ToMemoryUnits(system,fieldOffset*addressType.sizeInBits);
  5809. MakeMemory(mem,base,addressType,offset);
  5810. Emit(Mov(position,mem,value));
  5811. ReleaseIntermediateOperand(mem);
  5812. END PutMathArrayField;
  5813. PROCEDURE PutMathArrayFieldOffset(base,value: IntermediateCode.Operand; fieldOffset, offset: LONGINT);
  5814. VAR mem: IntermediateCode.Operand;
  5815. BEGIN
  5816. offset := offset + ToMemoryUnits(system,fieldOffset*addressType.sizeInBits);
  5817. MakeMemory(mem,base,addressType,offset);
  5818. Emit(Mov(position,mem,value));
  5819. ReleaseIntermediateOperand(mem);
  5820. END PutMathArrayFieldOffset;
  5821. PROCEDURE GetMathArrayField(VAR value: IntermediateCode.Operand; base: IntermediateCode.Operand; offset: LONGINT);
  5822. BEGIN
  5823. offset := ToMemoryUnits(system,offset*addressType.sizeInBits);
  5824. MakeMemory(value,base,addressType,offset);
  5825. END GetMathArrayField;
  5826. PROCEDURE PutMathArrayLenOrIncr(CONST base,value,dim: IntermediateCode.Operand; incr: BOOLEAN);
  5827. VAR offset: LONGINT; reg,mem: IntermediateCode.Operand;
  5828. BEGIN
  5829. IF incr THEN
  5830. offset := ToMemoryUnits(system,MathIncrOffset*addressType.sizeInBits);
  5831. ELSE
  5832. offset := ToMemoryUnits(system,MathLenOffset*addressType.sizeInBits);
  5833. END;
  5834. IF dim.mode=IntermediateCode.ModeImmediate THEN
  5835. PutMathArrayField(base,value,offset + ToMemoryUnits(system,SHORT(dim.intValue) * 2 * addressType.sizeInBits));
  5836. ELSE
  5837. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  5838. Emit(Mov(position,reg,dim));
  5839. Emit(Mul(position,reg,reg,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,2*addressType.sizeInBits))));
  5840. Emit(Add(position,reg,reg,base));
  5841. MakeMemory(mem, reg, addressType, offset);
  5842. ReleaseIntermediateOperand(reg);
  5843. Emit(Mov(position,mem,value));
  5844. ReleaseIntermediateOperand(mem);
  5845. END;
  5846. END PutMathArrayLenOrIncr;
  5847. PROCEDURE PutMathArrayLength(base,value: IntermediateCode.Operand; dim: LONGINT);
  5848. BEGIN
  5849. PutMathArrayField(base,value,MathLenOffset + dim * 2);
  5850. END PutMathArrayLength;
  5851. PROCEDURE PutMathArrayIncrement(base,value: IntermediateCode.Operand; dim: LONGINT);
  5852. BEGIN
  5853. PutMathArrayField(base,value,MathIncrOffset + dim * 2);
  5854. END PutMathArrayIncrement;
  5855. PROCEDURE GetMathArrayIncrement(type: SyntaxTree.MathArrayType; CONST operand: Operand; VAR dim: IntermediateCode.Operand; check: BOOLEAN; VAR result: Operand);
  5856. BEGIN
  5857. MathArrayLenOrIncr(type,operand,dim,TRUE,check,result);
  5858. END GetMathArrayIncrement;
  5859. PROCEDURE GetMathArrayLength(type: SyntaxTree.MathArrayType; CONST operand: Operand; VAR dim: IntermediateCode.Operand; check: BOOLEAN; VAR result: Operand);
  5860. BEGIN
  5861. MathArrayLenOrIncr(type,operand,dim,FALSE,check,result);
  5862. END GetMathArrayLength;
  5863. PROCEDURE GetMathArrayLengthAt(type: SyntaxTree.MathArrayType; CONST operand: Operand; dim: LONGINT; check: BOOLEAN; VAR result: Operand);
  5864. VAR dimOp: IntermediateCode.Operand;
  5865. BEGIN
  5866. dimOp := IntermediateCode.Immediate(int32, dim);
  5867. GetMathArrayLength(type, operand, dimOp, check, result);
  5868. END GetMathArrayLengthAt;
  5869. PROCEDURE GetMathArrayIncrementAt(type: SyntaxTree.MathArrayType; CONST operand: Operand; dim: LONGINT; check: BOOLEAN; VAR result: Operand);
  5870. VAR dimOp: IntermediateCode.Operand;
  5871. BEGIN
  5872. dimOp := IntermediateCode.Immediate(int32, dim);
  5873. GetMathArrayIncrement(type, operand, dimOp, check, result);
  5874. END GetMathArrayIncrementAt;
  5875. PROCEDURE MathArrayLenOrIncr(type: SyntaxTree.MathArrayType; CONST operand: Operand; VAR dim: IntermediateCode.Operand; increment: BOOLEAN; check: BOOLEAN; VAR result: Operand );
  5876. VAR val: LONGINT; res,res2: IntermediateCode.Operand; end,next: Label; t: SyntaxTree.Type; imm: IntermediateCode.Operand; hasDynamicPart: BOOLEAN;
  5877. offset: LONGINT;
  5878. BEGIN
  5879. IF increment THEN
  5880. offset := MathIncrOffset;
  5881. ELSE
  5882. offset := MathLenOffset;
  5883. END;
  5884. INC(offset,operand.dimOffset*2);
  5885. IF check & (type.form = SyntaxTree.Tensor) & ~isUnchecked THEN
  5886. TrapC(BrneL,operand.tag,IntermediateCode.Immediate(addressType,0),IndexCheckTrap);
  5887. END;
  5888. (* static dimension *)
  5889. IF dim.mode = IntermediateCode.ModeImmediate THEN
  5890. IF check & (type.form = SyntaxTree.Tensor) THEN
  5891. DimensionCheck(operand.tag,dim,BrltL);
  5892. END;
  5893. val := SHORT(dim.intValue);
  5894. IF type.form # SyntaxTree.Tensor THEN
  5895. t := SemanticChecker.ArrayBase(type,val);
  5896. type := t.resolved(SyntaxTree.MathArrayType);
  5897. IF type.form = SyntaxTree.Static THEN
  5898. IF increment THEN
  5899. res := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,type.staticIncrementInBits));
  5900. ELSE
  5901. res := IntermediateCode.Immediate(addressType,type.staticLength);
  5902. END;
  5903. InitOperand(result,ModeValue);
  5904. result.op := res;
  5905. RETURN;
  5906. END;
  5907. END;
  5908. offset := ToMemoryUnits(system, (val*2+offset)*addressType.sizeInBits);
  5909. MakeMemory(res,operand.tag,addressType,offset);
  5910. (*
  5911. res := IntermediateCode.Memory(addressType,operand.tag,offset);
  5912. *)
  5913. InitOperand(result,ModeValue);
  5914. result.op := res;
  5915. ELSE
  5916. Convert(dim,addressType);
  5917. IF check THEN
  5918. IF type.form = SyntaxTree.Tensor THEN
  5919. DimensionCheck(operand.tag,dim,BrltL);
  5920. ELSIF isUnchecked THEN (* do nothing *)
  5921. ELSE
  5922. TrapC(BrltL,dim,IntermediateCode.Immediate(addressType,SemanticChecker.Dimension(type,{SyntaxTree.Open,SyntaxTree.Static})), IndexCheckTrap);
  5923. END;
  5924. END;
  5925. end := NewLabel(); next := NIL;
  5926. IntermediateCode.InitRegister(res,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  5927. Emit(Mov(position,res,dim));
  5928. Convert(res,int32);
  5929. t := type; val := operand.dimOffset; hasDynamicPart := FALSE;
  5930. WHILE t IS SyntaxTree.MathArrayType DO
  5931. type := t(SyntaxTree.MathArrayType);
  5932. IF type.form = SyntaxTree.Static THEN
  5933. imm := IntermediateCode.Immediate(int32,val);
  5934. next := NewLabel();
  5935. BrneL(next,imm,res);
  5936. IF increment THEN
  5937. imm := IntermediateCode.Immediate(int32,ToMemoryUnits(system,type.staticIncrementInBits));
  5938. ELSE
  5939. imm := IntermediateCode.Immediate(int32,type.staticLength);
  5940. END;
  5941. Emit(MovReplace(position,res,imm));
  5942. BrL(end);
  5943. ELSE hasDynamicPart := TRUE;
  5944. END;
  5945. t := type.arrayBase.resolved;
  5946. val := val + 1;
  5947. IF next # NIL THEN SetLabel(next) END;
  5948. END;
  5949. IF hasDynamicPart THEN
  5950. IntermediateCode.InitRegister(res2,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  5951. Emit(Mov(position,res2,dim));
  5952. Emit(Mul(position,res2,res2,IntermediateCode.Immediate(addressType,2*ToMemoryUnits(system,addressType.sizeInBits))));
  5953. imm := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,offset*addressType.sizeInBits));
  5954. Emit(Add(position,res2,res2,imm));
  5955. Emit(Add(position,res2,res2,operand.tag));
  5956. IntermediateCode.MakeMemory(res2,int32);
  5957. Emit(MovReplace(position,res,res2));
  5958. ReleaseIntermediateOperand(res2);
  5959. END;
  5960. SetLabel(end);
  5961. Convert(res,int32);
  5962. InitOperand(result,ModeValue);
  5963. result.op := res;
  5964. END;
  5965. END MathArrayLenOrIncr;
  5966. PROCEDURE ArrayLen(type: SyntaxTree.ArrayType; VAR operand: Operand; VAR dim: IntermediateCode.Operand; VAR result: Operand );
  5967. VAR val: LONGINT; res,res2: IntermediateCode.Operand; end,next: Label; t: SyntaxTree.Type; imm: IntermediateCode.Operand; hasDynamicPart: BOOLEAN;
  5968. offset: LONGINT;
  5969. BEGIN
  5970. offset := operand.dimOffset+DynamicDim(type)-1;
  5971. IF dim.mode = IntermediateCode.ModeImmediate THEN
  5972. ASSERT(type.form IN {SyntaxTree.Open, SyntaxTree.SemiDynamic});
  5973. val := SHORT(dim.intValue);
  5974. t := SemanticChecker.ArrayBase(type,val);
  5975. type := t.resolved(SyntaxTree.ArrayType);
  5976. IF type.form = SyntaxTree.Static THEN
  5977. res := IntermediateCode.Immediate(addressType,type.staticLength);
  5978. ELSE
  5979. offset := ToMemoryUnits(system, (offset-val)*addressType.sizeInBits);
  5980. res := IntermediateCode.Memory(addressType,operand.tag,offset);
  5981. END;
  5982. UseIntermediateOperand(res);
  5983. InitOperand(result,ModeValue);
  5984. result.op := res;
  5985. ELSE
  5986. Convert(dim,addressType);
  5987. IF ~isUnchecked THEN
  5988. TrapC(BrltL,dim,IntermediateCode.Immediate(addressType,SemanticChecker.Dimension(type,{SyntaxTree.Open,SyntaxTree.Static})), IndexCheckTrap);
  5989. END;
  5990. end := NewLabel(); next := NIL;
  5991. (* ReuseCopy(dim,res); *)
  5992. IntermediateCode.InitRegister(res,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType, IntermediateCode.GeneralPurposeRegister));
  5993. Emit(Mov(position,res,dim));
  5994. Convert(res,int32);
  5995. Convert(res,int32);
  5996. t := type; val := operand.dimOffset; hasDynamicPart := FALSE;
  5997. WHILE t IS SyntaxTree.ArrayType DO
  5998. type := t(SyntaxTree.ArrayType);
  5999. IF type.form = SyntaxTree.Static THEN
  6000. imm := IntermediateCode.Immediate(int32,val);
  6001. next := NewLabel();
  6002. BrneL(next,imm,res);
  6003. imm := IntermediateCode.Immediate(int32,type.staticLength);
  6004. Emit(MovReplace(position,res,imm));
  6005. BrL(end);
  6006. ELSE hasDynamicPart := TRUE;
  6007. END;
  6008. t := type.arrayBase.resolved;
  6009. val := val + 1;
  6010. IF next # NIL THEN SetLabel(next) END;
  6011. END;
  6012. IF hasDynamicPart THEN
  6013. ReuseCopy(res2,dim); (* dim is now in register res2 *)
  6014. Convert(res2,addressType);
  6015. Emit(Mul(position,res2,res2,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,addressType.sizeInBits))));
  6016. imm := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,offset*addressType.sizeInBits));
  6017. Emit(Sub(position,res2,imm,res2));
  6018. Emit(Add(position,res2,res2,operand.tag));
  6019. IntermediateCode.MakeMemory(res2,int32);
  6020. Emit(MovReplace(position,res,res2));
  6021. ReleaseIntermediateOperand(res2);
  6022. END;
  6023. SetLabel(end);
  6024. Convert(res,int32);
  6025. InitOperand(result,ModeValue);
  6026. result.op := res;
  6027. END;
  6028. END ArrayLen;
  6029. (**
  6030. create a temporary variable in current scope
  6031. **)
  6032. PROCEDURE GetTemporaryVariable(type: SyntaxTree.Type; register: BOOLEAN): SyntaxTree.Variable;
  6033. VAR name: SyntaxTree.Identifier; string: SyntaxTree.IdentifierString ; variable: SyntaxTree.Variable;
  6034. scope: SyntaxTree.Scope; duplicate: BOOLEAN; offset, index: LONGINT;
  6035. BEGIN
  6036. IF ~register THEN
  6037. variable := temporaries.GetFreeVariable(type, index);
  6038. ELSE
  6039. index := temporaries.registerIndex; INC(temporaries.registerIndex);
  6040. END;
  6041. scope := currentScope;
  6042. IF variable = NIL THEN
  6043. COPY("@hiddenIRVar",string);
  6044. Basic.AppendNumber(string,index);
  6045. name := SyntaxTree.NewIdentifier(string);
  6046. variable := SyntaxTree.NewVariable(Diagnostics.Invalid,name);
  6047. variable.SetType(type);
  6048. variable.SetAccess(SyntaxTree.Hidden);
  6049. IF ~register THEN
  6050. temporaries.AddVariable(variable);
  6051. IF scope.lastVariable # NIL THEN
  6052. offset := scope.lastVariable.offsetInBits;
  6053. ELSE
  6054. offset := 0;
  6055. END;
  6056. DEC(offset,system.SizeOf(variable.type));
  6057. Basic.Align(offset,-system.AlignmentOf(system.variableAlignment,variable.type));
  6058. variable(SyntaxTree.Variable).SetOffset(offset);
  6059. scope.AddVariable(variable(SyntaxTree.Variable));
  6060. scope.EnterSymbol(variable, duplicate);
  6061. ASSERT(~duplicate);
  6062. InitVariable(variable(SyntaxTree.Variable));
  6063. ELSE
  6064. variable.SetUseRegister(TRUE);
  6065. variable(SyntaxTree.Variable).SetOffset(0);
  6066. END;
  6067. ELSE
  6068. InitVariable(variable(SyntaxTree.Variable));
  6069. (*
  6070. ASSERT(variable.type.resolved = type.resolved)
  6071. *)
  6072. END;
  6073. RETURN variable(SyntaxTree.Variable)
  6074. END GetTemporaryVariable;
  6075. PROCEDURE GetMathArrayDescriptorType(dimensions: LONGINT): SyntaxTree.Type;
  6076. VAR name: ARRAY 32 OF CHAR; symbol: SyntaxTree.Symbol; typeDeclaration: SyntaxTree.TypeDeclaration;
  6077. recordType: SyntaxTree.RecordType; type: SyntaxTree.Type;
  6078. recordScope: SyntaxTree.RecordScope; parentScope: SyntaxTree.Scope; identifier: SyntaxTree.Identifier;
  6079. i: LONGINT; duplicate: BOOLEAN;
  6080. PROCEDURE AddVariable(CONST name: ARRAY OF CHAR; type: SyntaxTree.Type);
  6081. VAR variable: SyntaxTree.Variable;
  6082. BEGIN
  6083. variable := SyntaxTree.NewVariable(-1,SyntaxTree.NewIdentifier(name));
  6084. variable.SetType(type);
  6085. recordScope.AddVariable(variable);
  6086. END AddVariable;
  6087. BEGIN
  6088. name := "@ArrayDescriptor";
  6089. Basic.AppendNumber(name,dimensions);
  6090. identifier := SyntaxTree.NewIdentifier(name);
  6091. parentScope := module.module.moduleScope;
  6092. symbol := parentScope.FindSymbol(identifier);
  6093. IF symbol # NIL THEN
  6094. typeDeclaration := symbol(SyntaxTree.TypeDeclaration);
  6095. type := typeDeclaration.declaredType;
  6096. ELSE
  6097. typeDeclaration := SyntaxTree.NewTypeDeclaration(-1,SyntaxTree.NewIdentifier(name));
  6098. typeDeclaration.SetAccess(SyntaxTree.Hidden);
  6099. recordScope := SyntaxTree.NewRecordScope(parentScope);
  6100. recordType := SyntaxTree.NewRecordType( -1, parentScope, recordScope);
  6101. recordType.SetTypeDeclaration(typeDeclaration);
  6102. recordType.SetState(SyntaxTree.Resolved);
  6103. typeDeclaration.SetDeclaredType(recordType);
  6104. AddVariable("@ptr",system.anyType);
  6105. AddVariable("@adr",system.addressType);
  6106. AddVariable("@flags",system.addressType);
  6107. AddVariable("@dim",system.addressType);
  6108. AddVariable("@elementSize",system.addressType);
  6109. FOR i := 0 TO dimensions-1 DO
  6110. name := "@len";
  6111. Basic.AppendNumber(name,i);
  6112. AddVariable(name,system.addressType);
  6113. name := "@incr";
  6114. Basic.AppendNumber(name,i);
  6115. AddVariable(name,system.addressType);
  6116. END;
  6117. parentScope.AddTypeDeclaration(typeDeclaration);
  6118. parentScope.EnterSymbol(typeDeclaration,duplicate);
  6119. ASSERT(~duplicate);
  6120. type := recordType;
  6121. END;
  6122. RETURN type
  6123. END GetMathArrayDescriptorType;
  6124. PROCEDURE NewMathArrayDescriptor(op: Operand; dimensions: LONGINT);
  6125. VAR reg: IntermediateCode.Operand; type: SyntaxTree.Type;
  6126. BEGIN
  6127. type := GetMathArrayDescriptorType(dimensions);
  6128. Emit(Push(position,op.op));
  6129. (* push type descriptor *)
  6130. reg := TypeDescriptorAdr(type);
  6131. IF ~newObjectFile THEN
  6132. IntermediateCode.MakeMemory(reg,addressType);
  6133. END;
  6134. Emit(Push(position,reg));
  6135. ReleaseIntermediateOperand(reg);
  6136. (* push realtime flag: false by default *)
  6137. Emit(Push(position,false));
  6138. CallThis(position,"Heaps","NewRec",3);
  6139. END NewMathArrayDescriptor;
  6140. PROCEDURE PushConstString(CONST s: ARRAY OF CHAR);
  6141. VAR res: Operand; string: SyntaxTree.String; sv: SyntaxTree.StringValue; type: SyntaxTree.Type;
  6142. BEGIN
  6143. NEW(string, LEN(s)); COPY(s, string^);
  6144. sv := SyntaxTree.NewStringValue(-1,string);
  6145. type := SyntaxTree.NewStringType(-1,system.characterType,Strings.Length(s));
  6146. sv.SetType(type);
  6147. Designate(sv,res);
  6148. Emit(Push(position,res.tag));
  6149. Emit(Push(position,res.op));
  6150. ReleaseOperand(res);
  6151. END PushConstString;
  6152. PROCEDURE PushConstBoolean(b: BOOLEAN);
  6153. BEGIN
  6154. IF b THEN
  6155. Emit(Push(-1, true));
  6156. ELSE
  6157. Emit(Push(-1, false));
  6158. END;
  6159. END PushConstBoolean;
  6160. PROCEDURE PushConstSet(v: SET);
  6161. VAR value: SyntaxTree.Value; op: Operand;
  6162. BEGIN
  6163. value := SyntaxTree.NewSetValue(-1, v);
  6164. value.SetType(system.setType);
  6165. Evaluate(value, op);
  6166. Emit(Push(-1, op.op));
  6167. ReleaseOperand(op);
  6168. END PushConstSet;
  6169. PROCEDURE PushConstInteger(v: LONGINT);
  6170. VAR value: SyntaxTree.Value; op: Operand;
  6171. BEGIN
  6172. value := SyntaxTree.NewIntegerValue(-1, v);
  6173. value.SetType(system.longintType);
  6174. Evaluate(value, op);
  6175. Emit(Push(-1, op.op));
  6176. ReleaseOperand(op);
  6177. END PushConstInteger;
  6178. PROCEDURE OpenInitializer(symbol: SyntaxTree.Symbol; scope: SyntaxTree.Scope): IntermediateCode.Section;
  6179. VAR name: Basic.SegmentedName; procedure: SyntaxTree.Procedure; procedureScope: SyntaxTree.ProcedureScope;
  6180. section: IntermediateCode.Section;
  6181. BEGIN
  6182. procedureScope := SyntaxTree.NewProcedureScope(scope);
  6183. Global.GetSymbolSegmentedName(symbol, name);
  6184. Basic.SuffixSegmentedName(name, Basic.MakeString("@Initializer"));
  6185. procedure := SyntaxTree.NewProcedure(-1, SyntaxTree.NewIdentifier(""), procedureScope);
  6186. procedure.SetScope(moduleScope);
  6187. procedure.SetType(SyntaxTree.NewProcedureType(-1,scope));
  6188. procedure.type(SyntaxTree.ProcedureType).SetDelegate(TRUE);
  6189. procedure.SetAccess(SyntaxTree.Hidden);
  6190. currentScope := procedureScope;
  6191. section := NewSection(module.allSections, Sections.CodeSection, name, NIL,commentPrintout # NIL);
  6192. EmitEnter(section, -1,NIL,0,0,0);
  6193. RETURN section;
  6194. END OpenInitializer;
  6195. PROCEDURE CloseInitializer(prev: IntermediateCode.Section);
  6196. BEGIN
  6197. EmitLeave(section, 0, 0 );
  6198. Emit(Exit(-1,ToMemoryUnits(system,addressType.sizeInBits),0));
  6199. section := prev;
  6200. END CloseInitializer;
  6201. PROCEDURE AddPorts(cell: SyntaxTree.Symbol; x: SyntaxTree.CellType);
  6202. VAR name: SyntaxTree.IdentifierString;
  6203. variable: SyntaxTree.Variable;
  6204. type: SyntaxTree.Type;
  6205. PROCEDURE Field(symbol: SyntaxTree.Symbol; VAR op: Operand);
  6206. BEGIN
  6207. InitOperand(op,ModeReference);
  6208. op.op := fp;
  6209. IntermediateCode.AddOffset(op.op,ToMemoryUnits(system,2*addressType.sizeInBits));
  6210. Dereference(op, x, FALSE);
  6211. result := op;
  6212. Symbol(symbol, op);
  6213. END Field;
  6214. PROCEDURE Direction(direction: LONGINT): SET;
  6215. BEGIN
  6216. IF direction = SyntaxTree.OutPort THEN RETURN {0}
  6217. ELSIF direction = SyntaxTree.InPort THEN RETURN {1}
  6218. ELSE HALT(100);
  6219. END;
  6220. END Direction;
  6221. PROCEDURE AddPortProperty(port: SyntaxTree.Variable; modifier: SyntaxTree.Modifier; value: SyntaxTree.Expression);
  6222. VAR name: ARRAY 256 OF CHAR; op: Operand;
  6223. BEGIN
  6224. Field(port, op);
  6225. ToMemory(op.op,addressType,0);
  6226. Emit(Push(-1, op.op));
  6227. ReleaseOperand(op);
  6228. Basic.GetString(modifier.identifier, name);
  6229. PushConstString(name);
  6230. IF SemanticChecker.IsStringType(modifier.expression.type) THEN
  6231. ASSERT(SemanticChecker.IsStringType(value.type));
  6232. Designate(value, op);
  6233. Emit(Push(modifier.position, op.tag));
  6234. Emit(Push(modifier.position, op.op));
  6235. ReleaseOperand(op);
  6236. CallThis(position,"ActiveCellsRuntime","AddPortStringProperty",5);
  6237. ELSIF (modifier.expression.type.resolved IS SyntaxTree.IntegerType) THEN
  6238. ASSERT(value.type.resolved IS SyntaxTree.IntegerType);
  6239. Evaluate(value, op);
  6240. Emit(Push(modifier.position, op.op));
  6241. ReleaseOperand(op);
  6242. CallThis(position,"ActiveCellsRuntime","AddPortIntegerProperty",4);
  6243. ELSE
  6244. CallThis(position,"ActiveCellsRuntime","AddPortFlagProperty",3);
  6245. END;
  6246. END AddPortProperty;
  6247. PROCEDURE AddPortProperties(variable: SyntaxTree.Variable);
  6248. VAR modifier: SyntaxTree.Modifier;
  6249. BEGIN
  6250. modifier := variable.modifiers;
  6251. WHILE modifier # NIL DO
  6252. AddPortProperty(variable,modifier, modifier.expression);
  6253. modifier := modifier.nextModifier;
  6254. END;
  6255. END AddPortProperties;
  6256. PROCEDURE Variable(name: ARRAY OF CHAR; variable: SyntaxTree.Variable);
  6257. VAR op : Operand; portType: SyntaxTree.PortType; baseType: SyntaxTree.Type;
  6258. size, reg: IntermediateCode.Operand; dim, len: LONGINT;
  6259. PROCEDURE PushLens(type: SyntaxTree.Type);
  6260. BEGIN
  6261. IF IsSemiDynamicArray(type) THEN
  6262. PushLens(type(SyntaxTree.ArrayType).arrayBase.resolved);
  6263. Evaluate(type(SyntaxTree.ArrayType).length, op);
  6264. Emit(Push(-1, op.op));
  6265. ReleaseOperand(op);
  6266. INC(dim);
  6267. ELSIF IsStaticArray(type) THEN
  6268. len := len * type(SyntaxTree.ArrayType).staticLength;
  6269. PushLens(type(SyntaxTree.ArrayType).arrayBase.resolved);
  6270. INC(dim);
  6271. ELSE
  6272. baseType := type;
  6273. END;
  6274. END PushLens;
  6275. BEGIN
  6276. (* cell *)
  6277. IF variable.type IS SyntaxTree.ArrayType THEN
  6278. type := variable.type;
  6279. dim := 0;
  6280. len := 1;
  6281. PushLens(type);
  6282. portType := baseType.resolved(SyntaxTree.PortType);
  6283. ELSE
  6284. portType := variable.type(SyntaxTree.PortType);
  6285. END;
  6286. PushSelfPointer();
  6287. (* port / array of ports *)
  6288. IF IsStaticArray(type) THEN
  6289. PushConstInteger(len);
  6290. END;
  6291. Field(variable, op);
  6292. (*left := SyntaxTree.NewSymbolDesignator(-1,left,cell); left.SetType(system.anyType);
  6293. left := SyntaxTree.NewDereferenceDesignator(-1, left); left.SetType(x);
  6294. d := SyntaxTree.NewSymbolDesignator(-1, left, variable); d.SetType(variable.type);
  6295. Designate(d, op);*)
  6296. Emit(Push(-1, op.op));
  6297. ReleaseOperand(op);
  6298. (* name *)
  6299. PushConstString(name);
  6300. (* inout *)
  6301. PushConstSet(Direction(portType.direction));
  6302. (* width *)
  6303. PushConstInteger(portType.sizeInBits);
  6304. IF variable.type IS SyntaxTree.PortType THEN
  6305. CallThis(variable.position,"ActiveCellsRuntime","AddPort",6);
  6306. AddPortProperties(variable);
  6307. ELSIF IsStaticArray(type)THEN
  6308. CallThis(variable.position,"ActiveCellsRuntime","AddStaticPortArray",7);
  6309. ELSIF IsSemiDynamicArray(type) THEN
  6310. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  6311. size := IntermediateCode.Immediate(addressType, ToMemoryUnits(system,6*addressType.sizeInBits));
  6312. Emit(Add(position,reg, sp, size));
  6313. (* dim *)
  6314. PushConstInteger(dim);
  6315. (* len array *)
  6316. Emit(Push(position, reg));
  6317. ReleaseIntermediateOperand(reg);
  6318. CallThis(position,"ActiveCellsRuntime","AddPortArray",8);
  6319. size := IntermediateCode.Immediate(addressType, ToMemoryUnits(system,dim*addressType.sizeInBits));
  6320. Emit(Add(position, sp,sp, size));
  6321. ELSE
  6322. HALT(100);
  6323. END;
  6324. END Variable;
  6325. BEGIN
  6326. IF backend.cellsAreObjects THEN
  6327. variable := x.cellScope.firstVariable;
  6328. WHILE (variable # NIL) DO
  6329. type := variable.type.resolved;
  6330. WHILE (type IS SyntaxTree.ArrayType) DO
  6331. type := type(SyntaxTree.ArrayType).arrayBase.resolved;
  6332. END;
  6333. IF (type IS SyntaxTree.PortType) THEN (* port found *)
  6334. Global.GetSymbolNameInScope(variable,x.cellScope,name);
  6335. Variable(name,variable);
  6336. END;
  6337. variable := variable.nextVariable;
  6338. END;
  6339. ELSE HALT(200)
  6340. END;
  6341. (*prevActiveCellsScope := currentActiveCellsScope;*)
  6342. (*
  6343. x.typeDeclaration.GetName(componentName);
  6344. instanceType := currentActiveCellsScope.NewType(componentName); (*backend.cification.NewType(componentName);*)
  6345. IF HasValue(x.modifiers,Global.StringDataMemorySize,dataMemorySize) THEN
  6346. instanceType.SetDataMemorySize(dataMemorySize);
  6347. END;
  6348. IF HasValue(x.modifiers,Global.StringCodeMemorySize,codeMemorySize) THEN
  6349. instanceType.SetInstructionMemorySize(codeMemorySize)
  6350. END;
  6351. IF HasFlag(x.modifiers, Global.StringVector) THEN
  6352. instanceType.AddCapability(ActiveCells.VectorCapability)
  6353. END;
  6354. IF HasFlag(x.modifiers, Global.StringTRMS) THEN
  6355. instanceType.AddCapability(ActiveCells.TRMSCapability)
  6356. END;
  6357. IF HasFlag(x.modifiers, Global.StringFloatingPoint) THEN
  6358. instanceType.AddCapability(ActiveCells.FloatingPointCapability)
  6359. END;
  6360. AddDevices(instanceType, x);
  6361. *)
  6362. (*
  6363. IF x.isCellNet THEN
  6364. IF HasValue(x.modifiers,Global.StringFrequencyDivider,value) THEN backend.activeCellsSpecification.SetFrequencyDivider(value) END;
  6365. END;
  6366. *)
  6367. (*currentActiveCellsScope := instanceType;*)
  6368. (*
  6369. parameter := x.firstParameter;
  6370. portIndex := 0;
  6371. WHILE parameter # NIL DO
  6372. parameter.GetName(parameterName);
  6373. parameterType := parameter.type.resolved;
  6374. Parameter(parameterName, parameterType);
  6375. (*
  6376. IF SemanticChecker.IsStaticArray(parameterType,parameterType,len) THEN
  6377. ParameterArray(parameterType);
  6378. direction := Direction(parameterType(SyntaxTree.PortType).direction);
  6379. FOR i := 0 TO len-1 DO
  6380. COPY(parameterName,name);
  6381. AppendIndex(name,i);
  6382. port := instanceType.NewPort(name,direction,backend.activeCellsSpecification.GetPortAddress(portIndex));
  6383. port.SetWidth(parameterType(SyntaxTree.PortType).sizeInBits);
  6384. INC(portIndex);
  6385. END;
  6386. ELSE
  6387. direction := Direction(parameterType(SyntaxTree.PortType).direction);
  6388. port := instanceType.NewPort(parameterName,direction,backend.activeCellsSpecification.GetPortAddress(portIndex));
  6389. port.SetWidth(parameterType(SyntaxTree.PortType).sizeInBits);
  6390. INC(portIndex);
  6391. END;
  6392. *)
  6393. parameter := parameter.nextParameter;
  6394. END;
  6395. *)
  6396. (*
  6397. Scope(x.cellScope);
  6398. currentActiveCellsScope := prevActiveCellsScope;
  6399. AddModules(instanceType,x.cellScope);
  6400. *)
  6401. END AddPorts;
  6402. PROCEDURE AddProperty(cellType: SyntaxTree.CellType; cell: SyntaxTree.Symbol; property: SyntaxTree.Property; value: SyntaxTree.Expression);
  6403. VAR name: ARRAY 256 OF CHAR; op: Operand; left, d: SyntaxTree.Designator;
  6404. BEGIN
  6405. Symbol(cell,op);
  6406. ToMemory(op.op,addressType,0);
  6407. Emit(Push(position,op.op));
  6408. ReleaseOperand(op);
  6409. Global.GetSymbolNameInScope(property, cellType.cellScope , name);
  6410. PushConstString(name);
  6411. IF (value # NIL) THEN
  6412. ASSERT(
  6413. SemanticChecker.IsStringType(property.type)
  6414. OR (property.type.resolved IS SyntaxTree.IntegerType)
  6415. OR (property.type.resolved IS SyntaxTree.FloatType)
  6416. OR (property.type.resolved IS SyntaxTree.BooleanType)
  6417. OR (property.type.resolved IS SyntaxTree.SetType)
  6418. );
  6419. left := SyntaxTree.NewSymbolDesignator(-1,left,cell); left.SetType(system.anyType);
  6420. left := SyntaxTree.NewDereferenceDesignator(-1, left); left.SetType(cellType);
  6421. d := SyntaxTree.NewSymbolDesignator(-1, left, property); d.SetType(property.type);
  6422. Designate(d, op);
  6423. IF SemanticChecker.IsStringType(property.type) THEN
  6424. Emit(Push(-1, op.tag))
  6425. END;
  6426. Emit(Push(-1, op.op));
  6427. ReleaseOperand(op);
  6428. END;
  6429. IF value = NIL THEN
  6430. CallThis(position,"ActiveCellsRuntime","AddFlagProperty",3);
  6431. ELSIF SemanticChecker.IsStringType(property.type) THEN
  6432. ASSERT(SemanticChecker.IsStringType(value.type));
  6433. Designate(value, op);
  6434. Emit(Push(property.position, op.tag));
  6435. Emit(Push(property.position, op.op));
  6436. ReleaseOperand(op);
  6437. CallThis(position,"ActiveCellsRuntime","AddStringProperty",7);
  6438. ELSIF (property.type.resolved IS SyntaxTree.IntegerType) THEN
  6439. ASSERT(value.type.resolved IS SyntaxTree.IntegerType);
  6440. Evaluate(value, op);
  6441. Emit(Push(property.position, op.op));
  6442. ReleaseOperand(op);
  6443. CallThis(position,"ActiveCellsRuntime","AddIntegerProperty",5);
  6444. ELSIF (property.type.resolved IS SyntaxTree.BooleanType) THEN
  6445. ASSERT(value.type.resolved IS SyntaxTree.BooleanType);
  6446. Evaluate(value, op);
  6447. Emit(Push(property.position, op.op));
  6448. ReleaseOperand(op);
  6449. CallThis(position,"ActiveCellsRuntime","AddBooleanProperty",5);
  6450. ELSIF (property.type.resolved IS SyntaxTree.FloatType) THEN
  6451. ASSERT((value.type.resolved IS SyntaxTree.FloatType) & (value.type.resolved(SyntaxTree.FloatType).sizeInBits =64));
  6452. Evaluate(value, op);
  6453. Emit(Push(property.position, op.op));
  6454. ReleaseOperand(op);
  6455. CallThis(position,"ActiveCellsRuntime","AddRealProperty",-1); (* must import *)
  6456. ELSIF (property.type.resolved IS SyntaxTree.SetType) THEN
  6457. ASSERT((value.type.resolved IS SyntaxTree.SetType));
  6458. Evaluate(value, op);
  6459. Emit(Push(property.position, op.op));
  6460. ReleaseOperand(op);
  6461. CallThis(position,"ActiveCellsRuntime","AddSetProperty",-1); (* must import *)
  6462. ELSE
  6463. HALT(200);
  6464. END;
  6465. END AddProperty;
  6466. PROCEDURE AddModifiers(cellType: SyntaxTree.CellType; cell: SyntaxTree.Symbol; modifier: SyntaxTree.Modifier);
  6467. VAR symbol: SyntaxTree.Symbol;
  6468. BEGIN
  6469. WHILE modifier # NIL DO
  6470. symbol := cellType.cellScope.FindSymbol(modifier.identifier);
  6471. IF (symbol # NIL) & (symbol IS SyntaxTree.Property) THEN
  6472. AddProperty(cellType, cell, symbol(SyntaxTree.Property), modifier.expression);
  6473. ELSE
  6474. (*! move this check to checker *)
  6475. Error(modifier.position, "undefined property");
  6476. END;
  6477. modifier := modifier.nextModifier;
  6478. END;
  6479. END AddModifiers;
  6480. PROCEDURE AppendModifier(VAR to: SyntaxTree.Modifier; this: SyntaxTree.Modifier);
  6481. VAR last: SyntaxTree.Modifier;
  6482. BEGIN
  6483. IF to = NIL THEN
  6484. to := SyntaxTree.NewModifier(this.position, this.identifier, this.expression);
  6485. ELSE
  6486. last := to;
  6487. WHILE (last.nextModifier # NIL) & (this.identifier # last.identifier) DO
  6488. last := last.nextModifier;
  6489. END;
  6490. IF last.identifier # this.identifier THEN
  6491. ASSERT(last.nextModifier = NIL);
  6492. last.SetNext(SyntaxTree.NewModifier(this.position, this.identifier, this.expression));
  6493. END;
  6494. END;
  6495. END AppendModifier;
  6496. PROCEDURE AppendModifiers(VAR to: SyntaxTree.Modifier; this: SyntaxTree.Modifier);
  6497. BEGIN
  6498. WHILE this # NIL DO
  6499. AppendModifier(to, this);
  6500. this := this.nextModifier;
  6501. END;
  6502. END AppendModifiers;
  6503. PROCEDURE AppendCellTypeModifiers(VAR to: SyntaxTree.Modifier; c: SyntaxTree.CellType);
  6504. VAR base: SyntaxTree.Type;
  6505. BEGIN
  6506. AppendModifiers(to, c.modifiers);
  6507. base := c.GetBaseValueType();
  6508. IF (base # NIL) & (base IS SyntaxTree.CellType) THEN
  6509. AppendCellTypeModifiers(to, base(SyntaxTree.CellType))
  6510. END;
  6511. END AppendCellTypeModifiers;
  6512. PROCEDURE PushPort(p: SyntaxTree.Expression);
  6513. VAR op: Operand;
  6514. BEGIN
  6515. Evaluate(p, op);
  6516. Emit(Push(p.position, op.op));
  6517. ReleaseOperand(op);
  6518. (*
  6519. WHILE (p # NIL) & ~(p.type.resolved IS SyntaxTree.CellType) DO
  6520. p := p(SyntaxTree.Designator).left;
  6521. END;
  6522. IF p # NIL THEN
  6523. Evaluate(p, op);
  6524. Emit(Push(p.position, op.op));
  6525. ReleaseOperand(op);
  6526. ELSE
  6527. Emit(Push(-1, nil));
  6528. END;
  6529. *)
  6530. END PushPort;
  6531. PROCEDURE VisitBuiltinCallDesignator(x: SyntaxTree.BuiltinCallDesignator);
  6532. VAR
  6533. p0,p1,p2,parameter: SyntaxTree.Expression; len,val: LONGINT; l,r: Operand; res,adr,reg: IntermediateCode.Operand; type, componentType: SyntaxTree.Type;
  6534. constructor: SyntaxTree.Procedure; s0,s1,s2: Operand; hint: HUGEINT;
  6535. i: LONGINT; formalParameter: SyntaxTree.Parameter;
  6536. tmp:IntermediateCode.Operand;
  6537. size: LONGINT; dim,openDim: LONGINT; pointer: IntermediateCode.Operand; t,t0,t1,t2: SyntaxTree.Type; trueL,falseL,ignore: Label;
  6538. exit,else,end: Label; procedureType: SyntaxTree.ProcedureType;
  6539. name: Basic.SegmentedName; symbol: Sections.Section; operand: Operand;
  6540. dest: IntermediateCode.Operand;
  6541. staticLength: LONGINT; itype: IntermediateCode.Type;
  6542. convert,isTensor: BOOLEAN;
  6543. recordType: SyntaxTree.RecordType;
  6544. baseType: SyntaxTree.Type;
  6545. flags: SET;
  6546. left: SyntaxTree.Expression;
  6547. call: SyntaxTree.Designator;
  6548. procedure: SyntaxTree.Procedure;
  6549. temporaryVariable: SyntaxTree.Variable;
  6550. dummy: IntermediateCode.Operand;
  6551. customBuiltin: SyntaxTree.CustomBuiltin;
  6552. isVarPar: ARRAY 3 OF BOOLEAN;
  6553. callsection: Sections.Section;
  6554. segmentedName: Basic.SegmentedName;
  6555. needsTrace: BOOLEAN;
  6556. n: ARRAY 256 OF CHAR;
  6557. modifier: SyntaxTree.Modifier;
  6558. previous, init: IntermediateCode.Section;
  6559. prevScope: SyntaxTree.Scope;
  6560. PROCEDURE CallBodies(self: IntermediateCode.Operand; type: SyntaxTree.Type);
  6561. VAR recordScope: SyntaxTree.RecordScope; procedure: SyntaxTree.Procedure; body: SyntaxTree.Body; flags: LONGINT;
  6562. priority: IntermediateCode.Operand;
  6563. op,callop: Operand;
  6564. BEGIN
  6565. IF type = NIL THEN RETURN END;
  6566. type := type.resolved;
  6567. IF type IS SyntaxTree.PointerType THEN
  6568. type := type(SyntaxTree.PointerType).pointerBase.resolved
  6569. END;
  6570. IF type IS SyntaxTree.MathArrayType THEN RETURN END;
  6571. CallBodies(self,type(SyntaxTree.RecordType).baseType);
  6572. recordScope := type(SyntaxTree.RecordType).recordScope;
  6573. IF recordScope.bodyProcedure # NIL THEN
  6574. procedure := recordScope.bodyProcedure;
  6575. body := procedure.procedureScope.body;
  6576. Emit(Push(position,self));
  6577. IF body.isActive THEN
  6578. StaticCallOperand(callop,procedure);
  6579. Emit(Push(position,callop.op));
  6580. IF body.priority # NIL THEN Evaluate(body.priority,op); priority := op.op;
  6581. Convert(priority,sizeType);
  6582. ELSE priority := IntermediateCode.Immediate(sizeType,0)
  6583. END;
  6584. Emit(Push(position,priority));
  6585. ReleaseIntermediateOperand(priority);
  6586. IF backend.cooperative THEN
  6587. Emit(Push(position,self));
  6588. CallThis(position,"Activities","Create",3)
  6589. ELSE
  6590. flags := 0;
  6591. IF body.isSafe THEN
  6592. flags := 1;
  6593. END;
  6594. Emit(Push(position,IntermediateCode.Immediate(IntermediateCode.GetType(system,system.setType),flags)));
  6595. Emit(Push(position,self));
  6596. CallThis(position,"Objects","CreateProcess",4)
  6597. END;
  6598. ELSE
  6599. Emit(Push(position,self));
  6600. StaticCallOperand(callop,procedure);
  6601. Emit(Call(position,callop.op,ProcedureParametersSize(system,procedure)));
  6602. END;
  6603. Emit(Pop(position,self));
  6604. END;
  6605. END CallBodies;
  6606. PROCEDURE PushString(op: Operand; actualType: SyntaxTree.Type);
  6607. BEGIN
  6608. actualType := actualType.resolved;
  6609. IF actualType IS SyntaxTree.StringType THEN
  6610. Emit(Push(position,IntermediateCode.Immediate(addressType,actualType(SyntaxTree.StringType).length)));
  6611. ELSIF actualType(SyntaxTree.ArrayType).form = SyntaxTree.Static THEN
  6612. Emit(Push(position,IntermediateCode.Immediate(addressType,actualType(SyntaxTree.ArrayType).staticLength)));
  6613. ELSE
  6614. tmp := op.tag;
  6615. IntermediateCode.MakeMemory(tmp,addressType);
  6616. Emit(Push(position,tmp));
  6617. END;
  6618. Emit(Push(position,op.op))
  6619. END PushString;
  6620. PROCEDURE PushTD(type: SyntaxTree.Type);
  6621. VAR op: IntermediateCode.Operand;
  6622. BEGIN
  6623. IF type = NIL THEN Emit(Push(position,IntermediateCode.Immediate(addressType,0)))
  6624. ELSIF type.resolved IS SyntaxTree.AnyType THEN Emit(Push(position,IntermediateCode.Immediate(addressType,1)))
  6625. ELSE
  6626. IF type.resolved IS SyntaxTree.PointerType THEN
  6627. type := type.resolved(SyntaxTree.PointerType).pointerBase;
  6628. END;
  6629. op := TypeDescriptorAdr(type.resolved);
  6630. IF ~newObjectFile THEN
  6631. IntermediateCode.MakeMemory(op,addressType);
  6632. END;
  6633. Emit(Push(position,op));
  6634. END
  6635. END PushTD;
  6636. BEGIN
  6637. IF Trace THEN TraceEnter("VisitBuiltinCallDesignator") END;
  6638. dest := destination; destination := emptyOperand;
  6639. p0 := NIL; p1 := NIL; p2 := NIL; len := x.parameters.Length();
  6640. IF len > 0 THEN p0 := x.parameters.GetExpression(0); t0 := p0.type.resolved END;
  6641. IF len > 1 THEN p1 := x.parameters.GetExpression(1); t1 := p1.type.resolved END;
  6642. IF len > 2 THEN p2 := x.parameters.GetExpression(2); t2 := p2.type.resolved END;
  6643. CASE x.id OF
  6644. (* ---- COPY ----- *)
  6645. |Global.Copy:
  6646. CopyString(p1,p0); (* roles exchanged: COPY ( src => dest ) *)
  6647. (* ---- EXCL, INCL----- *)
  6648. |Global.Excl,Global.Incl:
  6649. Evaluate(p0,s0);
  6650. Evaluate(p1,s1);
  6651. Convert(s1.op,setType);
  6652. IF (s1.op.mode # IntermediateCode.ModeImmediate) & ~isUnchecked THEN
  6653. TrapC(BrltL,s1.op,IntermediateCode.Immediate(setType,setType.sizeInBits),IndexCheckTrap);
  6654. END;
  6655. ReuseCopy(res,s0.op);
  6656. ReleaseOperand(s0);
  6657. Reuse1(tmp,s1.op);
  6658. ReleaseOperand(s1);
  6659. Emit(Shl(position,tmp,IntermediateCode.Immediate(setType,1),s1.op));
  6660. IF x.id = Global.Excl THEN
  6661. Emit(Not(position,tmp,tmp));
  6662. Emit(And(position,res,res,tmp));
  6663. ELSE
  6664. Emit(Or(position,res,res,tmp));
  6665. END;
  6666. ReleaseIntermediateOperand(tmp);
  6667. Designate(p0,s0);
  6668. ToMemory(s0.op,setType,0);
  6669. Emit(Mov(position,s0.op,res));
  6670. ReleaseOperand(s0); ReleaseIntermediateOperand(res);
  6671. (* ---- DISPOSE ----- *)
  6672. |Global.Dispose:
  6673. Designate(p0,s0);
  6674. Emit(Push(position,s0.op));
  6675. ReleaseOperand(s0);
  6676. CallThis(position,DefaultRuntimeModuleName,"Dispose", 1);
  6677. (* ---- GETPROCEDURE ----- *)
  6678. |Global.GetProcedure:
  6679. Designate(p0,s0);
  6680. PushString(s0,p0.type);
  6681. Designate(p1,s1);
  6682. PushString(s1,p1.type);
  6683. procedureType := p2.type.resolved(SyntaxTree.ProcedureType);
  6684. IF (procedureType.firstParameter = NIL) OR (procedureType.firstParameter.access = SyntaxTree.Hidden) THEN PushTD(NIL)
  6685. ELSE PushTD(procedureType.firstParameter.type)
  6686. END;
  6687. PushTD(procedureType.returnType);
  6688. Designate(p2,s2);
  6689. Emit(Push(position,s2.op));
  6690. ReleaseOperand(s0); ReleaseOperand(s1); ReleaseOperand(s2);
  6691. CallThis(position,"Modules","GetProcedure", 7);
  6692. (* ---- ASH, LSH, ROT ----- *)
  6693. |Global.Ash, Global.Asr, Global.Lsh, Global.Rot, Global.Ror:
  6694. Evaluate(p0,s0);
  6695. IF (x.id = Global.Lsh) OR (x.id = Global.Rot) OR (x.id = Global.Ror)THEN
  6696. (* make unsigned arguments in order to produced a logical shift *)
  6697. IF s0.op.type.form = IntermediateCode.SignedInteger THEN
  6698. convert:= TRUE;
  6699. itype := s0.op.type;
  6700. IntermediateCode.InitType(itype,IntermediateCode.UnsignedInteger,s0.op.type.sizeInBits);
  6701. Convert(s0.op,itype);
  6702. ELSE
  6703. convert := FALSE;
  6704. END;
  6705. END;
  6706. Evaluate(p1,s1);
  6707. IF IsIntegerConstant(p1,hint) THEN
  6708. ReuseCopy(reg,s0.op);
  6709. IF hint > 0 THEN
  6710. IntermediateCode.InitImmediate(s1.op,s1.op.type,hint);
  6711. IF x.id = Global.Ash THEN Emit(Shl(position,reg,s0.op,s1.op))
  6712. ELSIF x.id = Global.Lsh THEN Emit(Shl(position,reg,s0.op,s1.op))
  6713. ELSIF x.id = Global.Rot THEN Emit(Rol(position,reg,s0.op,s1.op))
  6714. ELSIF x.id = Global.Ror THEN Emit(Ror(position,reg,s0.op,s1.op))
  6715. ELSIF x.id = Global.Asr THEN Emit(Shr(position,reg,s0.op,s1.op))
  6716. END;
  6717. ELSIF hint < 0 THEN
  6718. IntermediateCode.InitImmediate(s1.op,s1.op.type,-hint);
  6719. IF x.id = Global.Ash THEN Emit(Shr(position,reg,s0.op,s1.op));
  6720. ELSIF x.id = Global.Lsh THEN Emit(Shr(position,reg,s0.op,s1.op));
  6721. ELSIF x.id = Global.Rot THEN Emit(Ror(position,reg,s0.op,s1.op));
  6722. ELSIF x.id = Global.Ror THEN Emit(Rol(position,reg,s0.op,s1.op))
  6723. ELSIF x.id = Global.Asr THEN Emit(Shl(position,reg,s0.op,s1.op))
  6724. END;
  6725. END;
  6726. ReleaseOperand(s0); ReleaseOperand(s1);
  6727. ELSE
  6728. exit := NewLabel();
  6729. end := NewLabel();
  6730. ReuseCopy(reg,s0.op);
  6731. BrgeL(exit,s1.op,IntermediateCode.Immediate(IntermediateCode.GetType(system,p1.type),0));
  6732. Reuse1(tmp,s1.op);
  6733. Emit(Neg(position,tmp,s1.op));
  6734. Convert(tmp,s1.op.type);
  6735. IF x.id = Global.Ash THEN Emit(Shr(position,reg,reg,tmp))
  6736. ELSIF x.id = Global.Lsh THEN Emit(Shr(position,reg,reg,tmp))
  6737. ELSIF x.id = Global.Rot THEN Emit(Ror(position,reg,reg,tmp))
  6738. ELSIF x.id = Global.Ror THEN Emit(Rol(position,reg,reg,tmp))
  6739. ELSIF x.id = Global.Asr THEN Emit(Shl(position,reg,reg,tmp))
  6740. END;
  6741. ReleaseIntermediateOperand(tmp);
  6742. BrL(end);
  6743. SetLabel(exit);
  6744. ReuseCopy(tmp,s1.op);
  6745. Convert(tmp,s1.op.type);
  6746. IF x.id = Global.Ash THEN Emit(Shl(position,reg,reg,tmp))
  6747. ELSIF x.id = Global.Lsh THEN Emit(Shl(position,reg,reg,tmp))
  6748. ELSIF x.id = Global.Rot THEN Emit(Rol(position,reg,reg,tmp))
  6749. ELSIF x.id = Global.Ror THEN Emit(Ror(position,reg,reg,tmp))
  6750. ELSIF x.id = Global.Asr THEN Emit(Shr(position,reg,reg,tmp))
  6751. END;
  6752. ReleaseIntermediateOperand(tmp);
  6753. SetLabel(end);
  6754. ReleaseOperand(s0); ReleaseOperand(s1);
  6755. END;
  6756. InitOperand(result,ModeValue);
  6757. IF convert THEN
  6758. itype := reg.type;
  6759. IntermediateCode.InitType(itype,IntermediateCode.SignedInteger,reg.type.sizeInBits);
  6760. Convert(reg,itype);
  6761. END;
  6762. result.op := reg;
  6763. (* ---- CAP ----- *)
  6764. |Global.Cap:
  6765. Evaluate(p0,result);
  6766. ReuseCopy(reg,result.op);
  6767. ReleaseIntermediateOperand(result.op);
  6768. ignore := NewLabel();
  6769. BrltL(ignore, reg,IntermediateCode.Immediate(IntermediateCode.GetType(system,system.characterType),ORD("a")));
  6770. BrltL(ignore,IntermediateCode.Immediate(IntermediateCode.GetType(system,system.characterType),ORD("z")),reg);
  6771. Emit(And(position,reg,reg,IntermediateCode.Immediate(IntermediateCode.GetType(system,system.characterType),5FH)));
  6772. SetLabel(ignore);
  6773. result.op := reg;
  6774. (* ---- CHR ----- *)
  6775. |Global.Chr, Global.Chr32:
  6776. Evaluate(p0,result);
  6777. Convert(result.op,IntermediateCode.GetType(system,x.type));
  6778. |Global.Entier, Global.EntierH:
  6779. Evaluate(p0,result);
  6780. Convert(result.op,IntermediateCode.GetType(system,x.type));
  6781. (* ---- MIN and MAX ----- *)
  6782. |Global.Max,Global.Min:
  6783. Evaluate(p0,s0);
  6784. Evaluate(p1,s1);
  6785. Reuse2(res,s0.op,s1.op);
  6786. else := NewLabel();
  6787. IF x.id = Global.Max THEN BrltL(else,s0.op,s1.op);
  6788. ELSE BrltL(else,s1.op,s0.op) END;
  6789. Emit(Mov(position,res,s0.op));
  6790. ReleaseOperand(s0);
  6791. end := NewLabel();
  6792. BrL(end);
  6793. SetLabel(else);
  6794. Emit(MovReplace(position,res,s1.op));
  6795. SetLabel(end);
  6796. ReleaseOperand(s1);
  6797. InitOperand(result,ModeValue);
  6798. result.op := res;
  6799. (* ---- ODD ----- *)
  6800. |Global.Odd:
  6801. IF ~conditional THEN
  6802. ConditionToValue(x)
  6803. ELSE
  6804. Evaluate(p0,result);
  6805. res := IntermediateCode.Immediate(IntermediateCode.GetType(system,p0.type),1);
  6806. Reuse1(res,result.op);
  6807. Emit(And(position,res,result.op,IntermediateCode.Immediate(IntermediateCode.GetType(system,p0.type),1)));
  6808. ReleaseIntermediateOperand(result.op);
  6809. result.op := res;
  6810. BreqL(trueLabel,IntermediateCode.Immediate(IntermediateCode.GetType(system,p0.type),1),result.op);
  6811. ReleaseOperand(result);
  6812. BrL(falseLabel);
  6813. END;
  6814. (* ---- ORD ----- *)
  6815. |Global.Ord, Global.Ord32:
  6816. Evaluate(p0,result);
  6817. Convert(result.op,IntermediateCode.GetType(system,x.type));
  6818. (* ---- SHORT, LONG ----- *)
  6819. |Global.Short, Global.Long:
  6820. Evaluate(p0,result);
  6821. IF x.type IS SyntaxTree.ComplexType THEN
  6822. componentType := x.type(SyntaxTree.ComplexType).componentType;
  6823. Convert(result.op, IntermediateCode.GetType(system, componentType));
  6824. Convert(result.tag, IntermediateCode.GetType(system, componentType));
  6825. ELSE
  6826. Convert(result.op,IntermediateCode.GetType(system,x.type));
  6827. END
  6828. (* ---- HALT, SYSTEM.HALT----- *)
  6829. |Global.Halt, Global.systemHalt:
  6830. val := p0.resolved(SyntaxTree.IntegerValue).value;
  6831. EmitTrap (position, val);
  6832. (* ---- ASSERT ----- *)
  6833. |Global.Assert:
  6834. IF ~backend.noAsserts & (p0.resolved = NIL) THEN
  6835. trueL := NewLabel();
  6836. falseL := NewLabel();
  6837. Condition(p0,trueL,falseL);
  6838. IF p1 = NIL THEN val := AssertTrap
  6839. ELSE val := p1.resolved(SyntaxTree.IntegerValue).value;
  6840. END;
  6841. SetLabel(falseL);
  6842. EmitTrap(position,val);
  6843. SetLabel(trueL);
  6844. END;
  6845. (*
  6846. Emit(TrapC(result.op,val);
  6847. *)
  6848. (* ---- INC, DEC----- *)
  6849. |Global.Inc,Global.Dec:
  6850. Expression(p0); adr := result.op;
  6851. LoadValue(result,p0.type); l := result;
  6852. IF p1 = NIL THEN r.op := IntermediateCode.Immediate(IntermediateCode.GetType(system,p0.type),1);
  6853. ELSE Expression(p1); LoadValue(result,p1.type); r := result;
  6854. END;
  6855. IF x.id = Global.Inc THEN
  6856. Emit(Add(position,l.op,l.op,r.op));
  6857. ELSE
  6858. Emit(Sub(position,l.op,l.op,r.op));
  6859. END;
  6860. ReleaseOperand(l); ReleaseOperand(r);
  6861. (* ---- LEN ----- *)
  6862. |Global.Len: (* dynamic length, static length done by checker *)
  6863. Designate(p0,operand);
  6864. IF p1 = NIL THEN
  6865. InitOperand(l,ModeValue);
  6866. l.op := IntermediateCode.Immediate(int32,0);
  6867. ELSE
  6868. Evaluate(p1,l);
  6869. END;
  6870. IF p0.type.resolved IS SyntaxTree.ArrayType THEN
  6871. IF (p0.type.resolved(SyntaxTree.ArrayType).form= SyntaxTree.SemiDynamic) THEN
  6872. Dereference(operand, p0.type.resolved, FALSE);
  6873. END;
  6874. ArrayLen(p0.type.resolved(SyntaxTree.ArrayType),operand,l.op, result);
  6875. ReleaseOperand(operand); ReleaseOperand(l);
  6876. ELSIF p0.type.resolved IS SyntaxTree.MathArrayType THEN
  6877. ASSERT(p1 # NIL);
  6878. IF p0.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  6879. Dereference(operand,p0.type.resolved,FALSE);
  6880. END;
  6881. GetMathArrayLength(p0.type.resolved(SyntaxTree.MathArrayType),operand, l.op, TRUE, result);
  6882. ReleaseOperand(operand); ReleaseOperand(l);
  6883. ELSE HALT(100);
  6884. END;
  6885. Convert(result.op,IntermediateCode.GetType(system, x.type));
  6886. (* ---- FIRST ---- *)
  6887. |Global.First:
  6888. IF p0 IS SyntaxTree.RangeExpression THEN (* optimization, could also work with designate *)
  6889. Evaluate(p0(SyntaxTree.RangeExpression).first, result)
  6890. ELSE
  6891. Designate(p0, result)
  6892. END
  6893. (* ---- LAST ---- *)
  6894. |Global.Last:
  6895. IF p0 IS SyntaxTree.RangeExpression THEN (* optimization, could also work with designate *)
  6896. Evaluate(p0(SyntaxTree.RangeExpression).last, result)
  6897. ELSE
  6898. Designate(p0, result);
  6899. (* make sure result.op is a register *)
  6900. tmp := result.op;
  6901. ReuseCopy(result.op, result.op);
  6902. ReleaseIntermediateOperand(tmp);
  6903. (* add offset to result.op *)
  6904. IntermediateCode.AddOffset(result.op, ToMemoryUnits(system, system.SizeOf(system.longintType)))
  6905. END
  6906. (* ---- STEP ---- *)
  6907. |Global.Step:
  6908. IF p0 IS SyntaxTree.RangeExpression THEN (* optimization, could also work with designate *)
  6909. Evaluate(p0(SyntaxTree.RangeExpression).step, result)
  6910. ELSE
  6911. Designate(p0, result);
  6912. (* make sure result.op is a register *)
  6913. tmp := result.op;
  6914. ReuseCopy(result.op, result.op);
  6915. ReleaseIntermediateOperand(tmp);
  6916. (* add offset to result.op *)
  6917. IntermediateCode.AddOffset(result.op, 2 * ToMemoryUnits(system, system.SizeOf(system.longintType)))
  6918. END
  6919. (* ---- RE ---- *)
  6920. |Global.Re:
  6921. IF p0.type.resolved IS SyntaxTree.ComplexType THEN
  6922. Designate(p0, result)
  6923. ELSE
  6924. Evaluate(p0, result)
  6925. END
  6926. (* ---- IM ---- *)
  6927. |Global.Im:
  6928. ASSERT(p0.type.resolved IS SyntaxTree.ComplexType);
  6929. componentType := p0.type.resolved(SyntaxTree.ComplexType).componentType;
  6930. Designate(p0, result);
  6931. (* make sure result.op is a register *)
  6932. tmp := result.op;
  6933. ReuseCopy(result.op, result.op);
  6934. ReleaseIntermediateOperand(tmp);
  6935. (* add offset to result.op *)
  6936. IntermediateCode.AddOffset(result.op, ToMemoryUnits(system, system.SizeOf(componentType)));
  6937. (* ---- ABS ----- *)
  6938. |Global.Abs:
  6939. Evaluate(p0,operand);
  6940. type := p0.type.resolved;
  6941. InitOperand(result,ModeValue);
  6942. Reuse1a(result.op,operand.op,dest);
  6943. Emit(Abs(position,result.op,operand.op));
  6944. ReleaseOperand(operand);
  6945. (* ---- WAIT ----- *)
  6946. |Global.Wait:
  6947. Evaluate(p0,operand);
  6948. Emit(Push(position,operand.op));
  6949. ReleaseOperand(operand);
  6950. CallThis(position,"Activities","Wait", 1);
  6951. (* ---- NEW ----- *)
  6952. |Global.New:
  6953. (*! the following code is only correct for "standard" Oberon calling convention *)
  6954. type := p0.type.resolved;
  6955. IF (type IS SyntaxTree.PointerType) & (type(SyntaxTree.PointerType).pointerBase.resolved IS SyntaxTree.RecordType)
  6956. THEN
  6957. recordType := type(SyntaxTree.PointerType).pointerBase.resolved(SyntaxTree.RecordType);
  6958. IF backend.cooperative THEN
  6959. size := ToMemoryUnits(system,system.SizeOf(recordType));
  6960. IF ~type(SyntaxTree.PointerType).isPlain THEN
  6961. IF recordType.isObject THEN
  6962. INC (size, BaseObjectTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  6963. IF recordType.IsActive() THEN
  6964. INC (size, ActionTypeSize * ToMemoryUnits(system,addressType.sizeInBits))
  6965. END;
  6966. IF recordType.IsProtected() THEN
  6967. INC (size, MonitorTypeSize * ToMemoryUnits(system,addressType.sizeInBits))
  6968. END;
  6969. ELSE
  6970. INC (size, BaseRecordTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  6971. END;
  6972. END;
  6973. Emit(Push(position,IntermediateCode.Immediate(sizeType,size)));
  6974. CallThis(position,"Runtime","New", 1);
  6975. pointer := NewRegisterOperand(IntermediateCode.GetType(system, p0.type));
  6976. Emit(Result(position, pointer));
  6977. exit := NewLabel();
  6978. BreqL(exit,pointer,nil);
  6979. IF ~type(SyntaxTree.PointerType).isPlain THEN
  6980. GetRecordTypeName (recordType,name);
  6981. IF ~recordType.isObject THEN
  6982. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Pointer"));
  6983. END;
  6984. IntermediateCode.InitAddress(adr, addressType, name , 0, 0);
  6985. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,0),adr));
  6986. IF recordType.isObject THEN
  6987. IF recordType.IsProtected() THEN
  6988. DEC (size, MonitorTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  6989. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,MonitorOffset * ToMemoryUnits(system,addressType.sizeInBits)), IntermediateCode.RegisterOffset(addressType,IntermediateCode.GeneralPurposeRegister,pointer.register,size)));
  6990. END;
  6991. IF recordType.IsActive() THEN
  6992. DEC (size, ActionTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  6993. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,ActionOffset * ToMemoryUnits(system,addressType.sizeInBits)), IntermediateCode.RegisterOffset(addressType,IntermediateCode.GeneralPurposeRegister,pointer.register,size)));
  6994. END;
  6995. END;
  6996. END;
  6997. (* initialize fields *)
  6998. IF type(SyntaxTree.PointerType).isPlain THEN
  6999. size := 0;
  7000. ELSIF recordType.isObject THEN
  7001. size := BaseObjectTypeSize;
  7002. ELSE
  7003. size := BaseRecordTypeSize;
  7004. END;
  7005. InitFields(recordType, pointer,size*ToMemoryUnits(system,addressType.sizeInBits));
  7006. (* call initializer *)
  7007. constructor := GetConstructor(recordType);
  7008. IF constructor # NIL THEN
  7009. (*! should be unified with ProcedureCallDesignator *)
  7010. Emit(Push(position,pointer));
  7011. ReleaseIntermediateOperand(pointer);
  7012. formalParameter := constructor.type(SyntaxTree.ProcedureType).firstParameter;
  7013. FOR i := 1 TO x.parameters.Length()-1 DO
  7014. PushParameter(x.parameters.GetExpression(i), formalParameter,SyntaxTree.OberonCallingConvention, FALSE, dummy,-1);
  7015. formalParameter := formalParameter.nextParameter;
  7016. END;
  7017. (* static call of the constructor *)
  7018. GetCodeSectionNameForSymbol(constructor,name);
  7019. ASSERT(~constructor.isInline);
  7020. IF constructor.scope.ownerModule # module.module THEN
  7021. symbol := NewSection(module.importedSections, Sections.CodeSection, name,constructor,commentPrintout # NIL);
  7022. ELSE
  7023. symbol := NewSection(module.allSections, Sections.CodeSection, name,constructor,commentPrintout # NIL);
  7024. END;
  7025. Emit(Call(position,IntermediateCode.Address(addressType, symbol.name, GetFingerprint(constructor), 0),ProcedureParametersSize(system,constructor) - ToMemoryUnits(system,addressType.sizeInBits)));
  7026. IntermediateCode.InitRegister(pointer,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7027. Emit(Pop(position,pointer));
  7028. END;
  7029. (* call bodies *)
  7030. CallBodies(pointer,p0.type);
  7031. SetLabel(exit);
  7032. needsTrace := p0.NeedsTrace();
  7033. IF needsTrace THEN ModifyAssignments(true) END;
  7034. IF ~type(SyntaxTree.PointerType).isDisposable THEN
  7035. Emit(Push(position, pointer));
  7036. CallThisChecked(position,"GarbageCollector","Watch",0,FALSE);
  7037. Emit(Pop(position, pointer));
  7038. END;
  7039. Designate(p0,l);
  7040. IF needsTrace THEN
  7041. CallAssignPointer(l.op, pointer);
  7042. ELSE
  7043. ToMemory(l.op,addressType,0);
  7044. Emit(Mov(position,l.op,pointer));
  7045. END;
  7046. ReleaseIntermediateOperand(pointer);
  7047. ReleaseOperand(l);
  7048. IF needsTrace THEN ModifyAssignments(false) END;
  7049. ELSE
  7050. temporaryVariable := GetTemporaryVariable(type, FALSE);
  7051. IF temporaryVariable # NIL THEN
  7052. Symbol(temporaryVariable,l); (*Designate(temporaryVariable,l)*)
  7053. ELSE
  7054. Designate(p0,l);
  7055. END;
  7056. (* l.op contains address of pointer to record *)
  7057. Emit(Push(position,l.op)); (* address for use after syscall *)
  7058. Emit(Push(position,l.op));
  7059. ReleaseOperand(l);
  7060. (* push type descriptor *)
  7061. reg := TypeDescriptorAdr(recordType);
  7062. IF ~newObjectFile THEN
  7063. IntermediateCode.MakeMemory(reg,addressType);
  7064. END;
  7065. Emit(Push(position,reg));
  7066. ReleaseIntermediateOperand(reg);
  7067. (* push realtime flag *)
  7068. IF (p0.type.resolved.isRealtime) THEN Emit(Push(position,true));
  7069. ELSE Emit(Push(position,false));
  7070. END;
  7071. CallThis(position,"Heaps","NewRec", 3);
  7072. (* check allocation success, if not successful then do not call initializers and bodies *)
  7073. IntermediateCode.InitRegister(pointer,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7074. Emit(Pop(position,pointer));
  7075. MakeMemory(reg,pointer,addressType,0);
  7076. ReleaseIntermediateOperand(pointer);
  7077. pointer := reg;
  7078. exit := NewLabel();
  7079. BreqL(exit,pointer,nil);
  7080. Emit(Push(position,pointer));
  7081. (* initialize fields *)
  7082. InitFields(recordType, pointer,0);
  7083. (* call initializer *)
  7084. constructor := GetConstructor(recordType);
  7085. IF constructor # NIL THEN
  7086. (*! should be unified with ProcedureCallDesignator *)
  7087. Emit(Push(position,pointer));
  7088. ReleaseIntermediateOperand(pointer);
  7089. formalParameter := constructor.type(SyntaxTree.ProcedureType).firstParameter;
  7090. FOR i := 1 TO x.parameters.Length()-1 DO
  7091. PushParameter(x.parameters.GetExpression(i), formalParameter,SyntaxTree.OberonCallingConvention, FALSE, dummy,-1);
  7092. formalParameter := formalParameter.nextParameter;
  7093. END;
  7094. (* static call of the constructor *)
  7095. GetCodeSectionNameForSymbol(constructor,name);
  7096. ASSERT(~constructor.isInline);
  7097. IF constructor.scope.ownerModule # module.module THEN
  7098. symbol := NewSection(module.importedSections, Sections.CodeSection, name,constructor,commentPrintout # NIL);
  7099. ELSE
  7100. symbol := NewSection(module.allSections, Sections.CodeSection, name,constructor,commentPrintout # NIL);
  7101. END;
  7102. Emit(Call(position,IntermediateCode.Address(addressType, symbol.name, GetFingerprint(constructor), 0),ProcedureParametersSize(system,constructor)));
  7103. ELSE
  7104. ReleaseIntermediateOperand(pointer);
  7105. END;
  7106. IntermediateCode.InitRegister(pointer,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7107. Emit(Pop(position,pointer));
  7108. IF temporaryVariable # NIL THEN
  7109. Designate(p0,l);
  7110. ToMemory(l.op,addressType,0);
  7111. Emit(Mov(position,l.op,pointer));
  7112. ReleaseOperand(l);
  7113. result.tag := emptyOperand;
  7114. END;
  7115. (* call bodies *)
  7116. CallBodies(pointer,p0.type);
  7117. ReleaseIntermediateOperand(pointer);
  7118. IF temporaryVariable # NIL THEN
  7119. end := NewLabel();
  7120. BrL(end);
  7121. SetLabel(exit);
  7122. Designate(p0,l);
  7123. ToMemory(l.op,addressType,0);
  7124. Emit(Mov(position,l.op,nil)); (* write NIL to adr *)
  7125. ReleaseOperand(l);
  7126. SetLabel(end);
  7127. ELSE
  7128. SetLabel(exit);
  7129. END;
  7130. END;
  7131. ELSIF (type IS SyntaxTree.PointerType) & (type(SyntaxTree.PointerType).pointerBase.resolved IS SyntaxTree.ArrayType) THEN
  7132. type := type(SyntaxTree.PointerType).pointerBase.resolved;
  7133. dim := 0;
  7134. IF p1 # NIL THEN
  7135. FOR i := 1 TO x.parameters.Length()-1 DO
  7136. type := type(SyntaxTree.ArrayType).arrayBase.resolved;
  7137. parameter := x.parameters.GetExpression(i);
  7138. Evaluate(parameter,r);
  7139. IF (r.op.mode # IntermediateCode.ModeImmediate) & ~isUnchecked THEN
  7140. IntermediateCode.InitImmediate(tmp,IntermediateCode.GetType(system,parameter.type),0);
  7141. TrapC(BrgeL,r.op,tmp,ArraySizeTrap);
  7142. END;
  7143. Emit(Push(position,r.op));
  7144. IF i=1 THEN
  7145. ReuseCopy(reg,r.op);
  7146. ELSE
  7147. Emit(Mul(position,reg,reg,r.op)); (*! optimize the multiplication of immediate operands *)
  7148. END;
  7149. ReleaseOperand(r);
  7150. INC(dim);
  7151. END;
  7152. Convert(reg,addressType);
  7153. ELSE
  7154. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7155. Emit(Mov(position,reg,IntermediateCode.Immediate(addressType,1)));
  7156. END;
  7157. openDim := dim;
  7158. ASSERT(~(type IS SyntaxTree.ArrayType) OR (type(SyntaxTree.ArrayType).form = SyntaxTree.Static));
  7159. IF backend.cooperative THEN
  7160. size := ToMemoryUnits(system,system.SizeOf(type));
  7161. WHILE type IS SyntaxTree.ArrayType DO
  7162. type := type(SyntaxTree.ArrayType).arrayBase.resolved;
  7163. END;
  7164. size := size DIV ToMemoryUnits(system,system.SizeOf(type));
  7165. IF (size # 1) THEN
  7166. Emit(Mul(position,reg,reg,IntermediateCode.Immediate(addressType,size))); (*! optimize the multiplication of immediate operands *)
  7167. END;
  7168. Emit(Push(position,reg));
  7169. size := ToMemoryUnits(system,system.SizeOf(type));
  7170. IF (size # 1) THEN
  7171. Emit(Mul(position,reg,reg,IntermediateCode.Immediate(addressType,size))); (*! optimize the multiplication of immediate operands *)
  7172. END;
  7173. Emit(Add(position,reg,reg,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,(BaseArrayTypeSize + openDim)* system.addressSize))));
  7174. Emit(Push(position,reg));
  7175. ReleaseIntermediateOperand(reg);
  7176. CallThis(position,"Runtime","New", 1);
  7177. pointer := NewRegisterOperand(IntermediateCode.GetType(system, p0.type));
  7178. Emit(Result(position, pointer));
  7179. exit := NewLabel();
  7180. else := NewLabel();
  7181. BreqL(else,pointer,nil);
  7182. IF ~type.hasPointers THEN
  7183. Basic.ToSegmentedName ("BaseTypes.Array",name);
  7184. ELSIF type IS SyntaxTree.RecordType THEN
  7185. Basic.ToSegmentedName ("BaseTypes.RecordArray",name);
  7186. ELSIF type IS SyntaxTree.ProcedureType THEN
  7187. Basic.ToSegmentedName ("BaseTypes.DelegateArray",name);
  7188. ELSE
  7189. Basic.ToSegmentedName ("BaseTypes.PointerArray",name);
  7190. END;
  7191. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,0),IntermediateCode.Address(addressType,name,0,0)));
  7192. Emit(Pop(position,IntermediateCode.Memory(addressType,pointer,ToMemoryUnits(system,LengthOffset * system.addressSize))));
  7193. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,ToMemoryUnits(system,DataOffset * system.addressSize)),IntermediateCode.RegisterOffset(addressType,IntermediateCode.GeneralPurposeRegister,pointer.register,ToMemoryUnits(system,(BaseArrayTypeSize + openDim)* system.addressSize))));
  7194. IF type IS SyntaxTree.RecordType THEN
  7195. GetRecordTypeName(type(SyntaxTree.RecordType),name);
  7196. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,ToMemoryUnits(system,DescriptorOffset * system.addressSize)),IntermediateCode.Address(addressType,name,0,0)));
  7197. ELSE
  7198. Emit(Mov(position,IntermediateCode.Memory(addressType,pointer,ToMemoryUnits(system,DescriptorOffset * system.addressSize)),nil));
  7199. END;
  7200. i := openDim;
  7201. WHILE i > 0 DO
  7202. DEC (i);
  7203. Emit(Pop(position,IntermediateCode.Memory(addressType,pointer,ToMemoryUnits(system,(BaseArrayTypeSize + i)* system.addressSize))));
  7204. END;
  7205. needsTrace := p0.NeedsTrace();
  7206. IF needsTrace THEN ModifyAssignments(true) END;
  7207. IF ~p0.type.resolved(SyntaxTree.PointerType).isDisposable THEN
  7208. Emit(Push(position, pointer));
  7209. CallThisChecked(position,"GarbageCollector","Watch",0,FALSE);
  7210. Emit(Pop(position, pointer));
  7211. END;
  7212. Designate(p0,l);
  7213. IF needsTrace THEN
  7214. CallAssignPointer(l.op, pointer);
  7215. ModifyAssignments(false);
  7216. ELSE
  7217. ToMemory(l.op,addressType,0);
  7218. Emit(Mov(position,l.op,pointer));
  7219. END;
  7220. ReleaseIntermediateOperand(pointer);
  7221. ReleaseOperand(l);
  7222. BrL(exit);
  7223. SetLabel(else);
  7224. Emit(Add(position,sp,sp,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,(openDim+1)*system.addressSize))));
  7225. Designate(p0,l);
  7226. IF needsTrace THEN
  7227. CallResetProcedure(l.op,l.tag,p0.type.resolved);
  7228. ELSE
  7229. ToMemory(l.op,addressType,0);
  7230. Emit(Mov(position,l.op,pointer));
  7231. END;
  7232. ReleaseOperand(l);
  7233. SetLabel(exit);
  7234. ELSE
  7235. (*! the following code is only correct for "standard" Oberon calling convention *)
  7236. IF SemanticChecker.ContainsPointer(type) THEN
  7237. IF type IS SyntaxTree.ArrayType THEN
  7238. staticLength := 1;
  7239. WHILE (type IS SyntaxTree.ArrayType) DO (* static array *)
  7240. staticLength := staticLength * type(SyntaxTree.ArrayType).staticLength;
  7241. type := type(SyntaxTree.ArrayType).arrayBase.resolved;
  7242. END;
  7243. tmp := IntermediateCode.Immediate(reg.type,staticLength);
  7244. Emit(Mul(position,reg,reg,tmp));
  7245. END;
  7246. Designate(p0,l);
  7247. IF openDim > 0 THEN
  7248. Emit(Push(position,l.op)); (* address for use after syscall *)
  7249. END;
  7250. Emit(Push(position,l.op)); (* address *)
  7251. ReleaseOperand(l);
  7252. tmp := TypeDescriptorAdr(type);
  7253. IF ~newObjectFile THEN
  7254. IntermediateCode.MakeMemory(tmp,addressType);
  7255. END;
  7256. Emit(Push(position,tmp)); (* type descriptor *)
  7257. ReleaseIntermediateOperand(tmp);
  7258. Emit(Push(position,reg)); (* number Elements *)
  7259. ReleaseIntermediateOperand(reg);
  7260. tmp := IntermediateCode.Immediate(addressType,dim);
  7261. Emit(Push(position,tmp)); (* dimensions *)
  7262. (* push realtime flag *)
  7263. IF (p0.type.resolved.isRealtime) THEN Emit(Push(position,true));
  7264. ELSE Emit(Push(position,false));
  7265. END;
  7266. CallThis(position,"Heaps","NewArr",5)
  7267. ELSE
  7268. size := ToMemoryUnits(system,system.SizeOf(type));
  7269. IF (size # 1) THEN
  7270. Emit(Mul(position,reg,reg,IntermediateCode.Immediate(addressType,size))); (*! optimize the multiplication of immediate operands *)
  7271. END;
  7272. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,ArrayDimTable * system.addressSize+ system.addressSize+ system.addressSize * 2 * (openDim DIV 2)));
  7273. (* DIV 2 term for some strange alignment, don't understand it at the moment - copied from PCC *)
  7274. Emit(Add(position,reg,reg,tmp));
  7275. Designate(p0,l);
  7276. IF openDim >0 THEN
  7277. Emit(Push(position,l.op)); (* address for use after syscall *)
  7278. END;
  7279. Emit(Push(position,l.op)); (* address for syscall *)
  7280. ReleaseOperand(l); (* pointer address *)
  7281. Emit(Push(position,reg)); (* size *)
  7282. ReleaseIntermediateOperand(reg);
  7283. (* push realtime flag *)
  7284. IF (p0.type.resolved.isRealtime) THEN Emit(Push(position,true));
  7285. ELSE Emit(Push(position,false));
  7286. END;
  7287. CallThis(position,"Heaps","NewSys", 3)
  7288. END;
  7289. IF openDim > 0 THEN
  7290. IntermediateCode.InitRegister(adr,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7291. Emit(Pop(position,adr));
  7292. ToMemory(adr,addressType,0);
  7293. ReuseCopy(tmp,adr);
  7294. ReleaseIntermediateOperand(adr);
  7295. adr := tmp;
  7296. else := NewLabel();
  7297. BreqL(else,adr,IntermediateCode.Immediate(addressType,0));
  7298. i := openDim-1;
  7299. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7300. WHILE (i >= 0) DO
  7301. Emit(Pop(position,reg));
  7302. IntermediateCode.InitMemory(res,addressType,adr,ToMemoryUnits(system,ArrayDimTable* system.addressSize + system.addressSize*((openDim-1)-i)));
  7303. Emit(Mov(position,res,reg));
  7304. DEC(i);
  7305. END;
  7306. ReleaseIntermediateOperand(adr);
  7307. ReleaseIntermediateOperand(reg);
  7308. exit := NewLabel();
  7309. BrL(exit);
  7310. SetLabel(else);
  7311. (* else part: array could not be allocated *)
  7312. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,openDim*system.addressSize));
  7313. Emit(Add(position,sp,sp,tmp));
  7314. SetLabel(exit);
  7315. END;
  7316. END;
  7317. ELSIF (type IS SyntaxTree.MathArrayType) THEN
  7318. IF t1 IS SyntaxTree.MathArrayType THEN (* NEW(a, array) *)
  7319. IF GetRuntimeProcedure("FoxArrayBase","AllocateTensorX",procedure,TRUE) THEN
  7320. left := SyntaxTree.NewSymbolDesignator(Diagnostics.Invalid,NIL,procedure);
  7321. procedureType := procedure.type(SyntaxTree.ProcedureType);
  7322. left.SetType(procedure.type);
  7323. formalParameter := procedureType.firstParameter;
  7324. (* push array to allocate *)
  7325. PushParameter(p0, formalParameter, procedureType.callingConvention, FALSE, dummy,-1);
  7326. formalParameter :=formalParameter.nextParameter;
  7327. (* push length array *)
  7328. PushParameter(p1, formalParameter, procedureType.callingConvention, FALSE, dummy,-1);
  7329. (* push size *)
  7330. type := t0;
  7331. WHILE (type IS SyntaxTree.MathArrayType) & (type(SyntaxTree.MathArrayType).form # SyntaxTree.Static) DO
  7332. type := type(SyntaxTree.MathArrayType).arrayBase.resolved;
  7333. END;
  7334. tmp := IntermediateCode.Immediate(IntermediateCode.GetType(system, system.longintType),ToMemoryUnits(system,system.SizeOf(type))); (* alignment *)
  7335. Emit(Push(position,tmp));
  7336. (* *)
  7337. IF SemanticChecker.ContainsPointer(type) THEN
  7338. tmp := TypeDescriptorAdr(type);
  7339. IF ~newObjectFile THEN
  7340. IntermediateCode.MakeMemory(tmp,addressType);
  7341. END;
  7342. ELSE
  7343. tmp := IntermediateCode.Immediate(addressType, 0);
  7344. END;
  7345. Emit(Push(position,tmp)); (* type descriptor *)
  7346. StaticCallOperand(result,procedure);
  7347. Emit(Call(position,result.op,ProcedureParametersSize(system,procedure)));
  7348. ReleaseOperand(result);
  7349. END;
  7350. (*
  7351. designator := SyntaxTree.NewIdentifierDesignator(InvalidPosition, Global.ArrayBaseName);
  7352. designator := SyntaxTree.NewSelectorDesignator(InvalidPosition, designator, SyntaxTree.NewIdentifier(InvalidPosition, "AllocateTensorX"));
  7353. result := ResolveExpression(SyntaxTree.NewParameterDesignator(InvalidPosition, designator, actualParameters));
  7354. *)
  7355. ELSE
  7356. dim := 0;
  7357. IF type(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  7358. (* generate geometry descriptor *)
  7359. Designate(p0,l);
  7360. NewMathArrayDescriptor(l, x.parameters.Length()-1);
  7361. ReleaseOperand(l);
  7362. isTensor := TRUE;
  7363. ELSE
  7364. isTensor := FALSE;
  7365. END;
  7366. FOR i := 1 TO x.parameters.Length()-1 DO
  7367. IF ~isTensor THEN
  7368. type := type(SyntaxTree.MathArrayType).arrayBase.resolved;
  7369. END;
  7370. parameter := x.parameters.GetExpression(i);
  7371. Evaluate(parameter,r);
  7372. IF (r.op.mode # IntermediateCode.ModeImmediate) & ~isUnchecked THEN
  7373. IntermediateCode.InitImmediate(tmp,IntermediateCode.GetType(system,parameter.type),0);
  7374. TrapC(BrgeL,r.op,tmp,ArraySizeTrap);
  7375. END;
  7376. Emit(Push(position,r.op));
  7377. IF i=1 THEN
  7378. ReuseCopy(reg,r.op);
  7379. ELSE
  7380. Emit(Mul(position,reg,reg,r.op)); (*! optimize the multiplication of immediate operands *)
  7381. END;
  7382. ReleaseOperand(r);
  7383. INC(dim);
  7384. END;
  7385. Convert(reg,addressType);
  7386. openDim := dim;
  7387. ASSERT(~(type IS SyntaxTree.MathArrayType) OR (type(SyntaxTree.MathArrayType).form IN {SyntaxTree.Static,SyntaxTree.Tensor}));
  7388. (*! the following code is only correct for "standard" Oberon calling convention *)
  7389. IF SemanticChecker.ContainsPointer(SemanticChecker.ArrayBase(type,MAX(LONGINT))) THEN
  7390. t := type;
  7391. IF ~isTensor & (t IS SyntaxTree.MathArrayType) THEN
  7392. staticLength := 1;
  7393. WHILE (t IS SyntaxTree.MathArrayType) DO (* static array *)
  7394. staticLength := staticLength * t(SyntaxTree.MathArrayType).staticLength;
  7395. t := t(SyntaxTree.MathArrayType).arrayBase.resolved;
  7396. END;
  7397. tmp := IntermediateCode.Immediate(reg.type,staticLength);
  7398. Emit(Mul(position,reg,reg,tmp));
  7399. END;
  7400. Designate(p0,l);
  7401. IF isTensor THEN
  7402. Dereference(l,type,FALSE);
  7403. t := SemanticChecker.ArrayBase(type,MAX(LONGINT));
  7404. END;
  7405. Emit(Push(position,l.tag)); (* address for use after syscall *)
  7406. Emit(Push(position,l.tag)); (* address *)
  7407. ReleaseOperand(l);
  7408. tmp := TypeDescriptorAdr(t);
  7409. IF ~newObjectFile THEN
  7410. IntermediateCode.MakeMemory(tmp,addressType);
  7411. END;
  7412. Emit(Push(position,tmp)); (* type descriptor *)
  7413. ReleaseIntermediateOperand(tmp);
  7414. Emit(Push(position,reg)); (* number Elements *)
  7415. ReleaseIntermediateOperand(reg);
  7416. tmp := IntermediateCode.Immediate(addressType,0);
  7417. Emit(Push(position,tmp)); (* dimensions = 0, we control dimensions in the geometry descriptor *)
  7418. (* push realtime flag: false by default *)
  7419. Emit(Push(position,false));
  7420. CallThis(position,"Heaps","NewArr",5);
  7421. IntermediateCode.InitRegister(adr,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7422. Emit(Pop(position,adr));
  7423. GetMathArrayField(tmp,adr,MathPtrOffset);
  7424. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7425. Emit(Add(position,reg,tmp,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,ArrDataArrayOffset))));
  7426. PutMathArrayField(adr,reg,MathAdrOffset);
  7427. ReleaseIntermediateOperand(tmp);
  7428. ReleaseIntermediateOperand(reg);
  7429. ELSE
  7430. IF isTensor THEN
  7431. size := ToMemoryUnits(system,system.AlignedSizeOf(SemanticChecker.ArrayBase(type,MAX(LONGINT))));
  7432. ELSE
  7433. size := ToMemoryUnits(system,system.AlignedSizeOf(SemanticChecker.ArrayBase(type,openDim)));
  7434. END;
  7435. IF (size # 1) THEN
  7436. Emit(Mul(position,reg,reg,IntermediateCode.Immediate(addressType,size))); (*! optimize the multiplication of immediate operands *)
  7437. END;
  7438. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,SysDataArrayOffset));
  7439. Emit(Add(position,reg,reg,tmp));
  7440. Designate(p0,l);
  7441. IF isTensor THEN
  7442. Dereference(l,type,FALSE);
  7443. END;
  7444. Emit(Push(position,l.tag)); (* address for use after syscall *)
  7445. Emit(Push(position,l.tag)); (* address for syscall *)
  7446. ReleaseOperand(l); (* pointer address *)
  7447. Emit(Push(position,reg)); (* size *)
  7448. ReleaseIntermediateOperand(reg);
  7449. (* push realtime flag: false by default *)
  7450. Emit(Push(position,false));
  7451. CallThis(position,"Heaps","NewSys",3);
  7452. IntermediateCode.InitRegister(adr,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7453. Emit(Pop(position,adr));
  7454. GetMathArrayField(tmp,adr,MathPtrOffset);
  7455. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7456. Emit(Add(position,reg,tmp,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,SysDataArrayOffset))));
  7457. PutMathArrayField(adr,reg,MathAdrOffset);
  7458. ReleaseIntermediateOperand(tmp);
  7459. ReleaseIntermediateOperand(reg);
  7460. END;
  7461. flags := {};
  7462. IntermediateCode.InitImmediate(tmp,addressType,SYSTEM.VAL(LONGINT,flags));
  7463. PutMathArrayField(adr,tmp,MathFlagsOffset);
  7464. IntermediateCode.InitImmediate(tmp,addressType,openDim);
  7465. PutMathArrayField(adr,tmp,MathDimOffset);
  7466. else := NewLabel();
  7467. BreqL(else,IntermediateCode.Memory(addressType,adr,0),IntermediateCode.Immediate(addressType,0));
  7468. i := openDim-1;
  7469. IntermediateCode.InitRegister(reg,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  7470. IF isTensor THEN
  7471. IntermediateCode.InitImmediate(tmp,addressType,ToMemoryUnits(system,system.AlignedSizeOf(SemanticChecker.ArrayBase(type,MAX(LONGINT)))));
  7472. ELSE
  7473. IntermediateCode.InitImmediate(tmp,addressType,ToMemoryUnits(system,system.AlignedSizeOf(SemanticChecker.ArrayBase(type,openDim))));
  7474. END;
  7475. PutMathArrayField(adr,tmp,MathElementSizeOffset);
  7476. WHILE (i >= 0) DO
  7477. Emit(Pop(position,reg));
  7478. PutMathArrayLength(adr,reg,i);
  7479. PutMathArrayIncrement(adr,tmp,i);
  7480. IF i > 0 THEN
  7481. IF i=openDim-1 THEN
  7482. ReuseCopy(tmp,tmp);
  7483. END;
  7484. Emit(Mul(position,tmp,tmp,reg));
  7485. END;
  7486. DEC(i);
  7487. END;
  7488. ReleaseIntermediateOperand(adr);
  7489. ReleaseIntermediateOperand(reg);
  7490. ReleaseIntermediateOperand(tmp);
  7491. exit := NewLabel();
  7492. BrL(exit);
  7493. SetLabel(else);
  7494. (* else part: array could not be allocated *)
  7495. tmp := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,openDim*system.addressSize));
  7496. Emit(Add(position,sp,sp,tmp));
  7497. SetLabel(exit);
  7498. END;
  7499. ELSIF (type IS SyntaxTree.PointerType) & (type(SyntaxTree.PointerType).pointerBase.resolved IS SyntaxTree.CellType)
  7500. THEN
  7501. IF ~backend.cellsAreObjects THEN RETURN END;
  7502. IF InCellScope(currentScope) THEN
  7503. PushSelfPointer()
  7504. ELSE
  7505. Emit(Push(position, nil));
  7506. END;
  7507. (* push temp address *)
  7508. baseType := type(SyntaxTree.PointerType).pointerBase.resolved;
  7509. temporaryVariable := GetTemporaryVariable(type, FALSE);
  7510. Symbol(temporaryVariable,l); (*Designate(temporaryVariable,l)*)
  7511. (* l.op contains address of pointer to record *)
  7512. Emit(Push(position,l.op)); (* address for use after syscall *)
  7513. ReleaseOperand(l);
  7514. (* push type descriptor *)
  7515. reg := TypeDescriptorAdr(baseType);
  7516. IF ~newObjectFile THEN
  7517. IntermediateCode.MakeMemory(reg,addressType);
  7518. END;
  7519. Emit(Push(position,reg));
  7520. ReleaseIntermediateOperand(reg);
  7521. (* push name *)
  7522. (*Global.GetSymbolName(p0, n);*)
  7523. IF currentScope IS SyntaxTree.ProcedureScope THEN
  7524. Global.GetSymbolName(currentScope(SyntaxTree.ProcedureScope).ownerProcedure, n)
  7525. ELSE
  7526. Global.GetModuleName(module.module, n);
  7527. END;
  7528. Strings.Append(n,"@"); Strings.AppendInt(n, p0.position);
  7529. (*type.typeDeclaration.GetName(n);*)
  7530. PushConstString(n);
  7531. (* push cellnet boolean *)
  7532. PushConstBoolean(baseType(SyntaxTree.CellType).isCellNet);
  7533. (* push engine boolean *)
  7534. PushConstBoolean(baseType(SyntaxTree.CellType).FindProperty(Global.NameEngine) # NIL);
  7535. (* allocate *)
  7536. CallThis(position,"ActiveCellsRuntime","Allocate",7);
  7537. (* add capabilities *)
  7538. modifier := p0(SyntaxTree.Designator).modifiers;
  7539. IF (p0 IS SyntaxTree.SymbolDesignator) & (p0(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Variable) THEN
  7540. (*modifier := p0(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Variable).modifiers;*)
  7541. AppendModifiers(modifier, p0(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Variable).modifiers );
  7542. (* AddModifiers(baseType(SyntaxTree.CellType), temporaryVariable, modifier);*)
  7543. END;
  7544. AppendCellTypeModifiers(modifier, baseType(SyntaxTree.CellType));
  7545. (*
  7546. modifier := baseType(SyntaxTree.CellType).modifiers;
  7547. AddProperties(baseType(SyntaxTree.CellType), temporaryVariable, baseType(SyntaxTree.CellType).firstProperty);
  7548. modifier := p0(SyntaxTree.Designator).modifiers;
  7549. *)
  7550. AddModifiers(baseType(SyntaxTree.CellType), temporaryVariable, modifier);
  7551. Symbol(temporaryVariable,l); (*Designate(temporaryVariable,l)*)
  7552. (* l.op contains address of pointer to record *)
  7553. ToMemory(l.op,addressType,0);
  7554. (* l.op contains value of pointer to record *)
  7555. Emit(Push(position,l.op)); (* address for use after syscall *)
  7556. ReleaseOperand(l);
  7557. CallThis(position,"ActiveCellsRuntime","FinishedProperties",1);
  7558. prevScope := currentScope;
  7559. init := OpenInitializer(temporaryVariable, baseType(SyntaxTree.CellType).cellScope);
  7560. previous := section;
  7561. section := init;
  7562. (* add ports *)
  7563. AddPorts(temporaryVariable, baseType(SyntaxTree.CellType));
  7564. CloseInitializer(previous);
  7565. currentScope := prevScope;
  7566. Symbol(temporaryVariable,l);
  7567. ToMemory(l.op,addressType,0);
  7568. Emit(Push(position,l.op));
  7569. Emit(Call(position,IntermediateCode.Address(addressType, init.name, 0, 0), ToMemoryUnits(system, addressType.sizeInBits)));
  7570. (*
  7571. constructor := type(SyntaxTree.CellType).cellScope.constructor;
  7572. IF constructor # NIL THEN
  7573. parameter := constructor.type(SyntaxTree.ProcedureType).firstParameter;
  7574. FOR i := 1 TO x.parameters.Length()-1 DO
  7575. p := x.parameters.GetExpression(i);
  7576. Global.GetSymbolName(parameter,name);
  7577. Evaluate(p, value);
  7578. ASSERT(value.type # NIL);
  7579. IF value.type.resolved IS SyntaxTree.IntegerType THEN
  7580. par := instance.AddParameter(name);
  7581. par.SetInteger(value.integer);
  7582. ELSIF value.type.resolved IS SyntaxTree.BooleanType THEN
  7583. par := instance.AddParameter(name);
  7584. par.SetBoolean(value.boolean);
  7585. ELSE Error(x.position,NotYetImplemented)
  7586. END;
  7587. parameter := parameter.nextParameter
  7588. END;
  7589. END;
  7590. *)
  7591. (* call initializer *)
  7592. constructor := baseType(SyntaxTree.CellType).cellScope.constructor (*GetConstructor(p0.type.resolved(SyntaxTree.PointerType).pointerBase.resolved(SyntaxTree.RecordType))*);
  7593. IF constructor # NIL THEN
  7594. (*! should be unified with ProcedureCallDesignator *)
  7595. IF backend.cellsAreObjects THEN
  7596. Symbol(temporaryVariable,l);
  7597. ToMemory(l.op,addressType,0);
  7598. Emit(Push(position,l.op));
  7599. ReleaseOperand(l);
  7600. END;
  7601. formalParameter := constructor.type(SyntaxTree.ProcedureType).firstParameter;
  7602. FOR i := 1 TO x.parameters.Length()-1 DO
  7603. PushParameter(x.parameters.GetExpression(i), formalParameter,SyntaxTree.OberonCallingConvention, FALSE, dummy,-1);
  7604. formalParameter := formalParameter.nextParameter;
  7605. END;
  7606. (* static call of the constructor *)
  7607. Global.GetSymbolSegmentedName(constructor,name);
  7608. ASSERT(~constructor.isInline);
  7609. IF constructor.scope.ownerModule # module.module THEN
  7610. symbol := NewSection(module.importedSections, Sections.CodeSection, name, constructor, commentPrintout # NIL);
  7611. ELSE
  7612. symbol := NewSection(module.allSections, Sections.CodeSection, name, constructor, commentPrintout # NIL);
  7613. END;
  7614. Emit(Call(position,IntermediateCode.Address(addressType, symbol.name, GetFingerprint(constructor), 0),ProcedureParametersSize(system,constructor)));
  7615. (*ELSE
  7616. ReleaseIntermediateOperand(pointer);*)
  7617. END;
  7618. Symbol(temporaryVariable,l); (*Designate(temporaryVariable,l)*)
  7619. ToMemory(l.op, addressType, 0);
  7620. Designate(p0,s0);
  7621. ToMemory(s0.op,addressType,0);
  7622. Emit(Mov(position,s0.op,l.op));
  7623. ReleaseOperand(l);
  7624. ReleaseOperand(s0);
  7625. result.tag := emptyOperand;
  7626. (* start *)
  7627. IF baseType(SyntaxTree.CellType).cellScope.bodyProcedure # NIL THEN
  7628. (* push cell *)
  7629. Symbol(temporaryVariable, l);
  7630. ToMemory(l.op,addressType,0);
  7631. Emit(Push(-1,l.op));
  7632. (* push delegate *)
  7633. Emit(Push(-1,l.op));
  7634. ReleaseOperand(l);
  7635. StaticCallOperand(s1,baseType(SyntaxTree.CellType).cellScope.bodyProcedure);
  7636. Emit(Push(position, s1.op));
  7637. ReleaseOperand(s1);
  7638. CallThis(position,"ActiveCellsRuntime","Start",3);
  7639. END;
  7640. (*IF temporaryVariable # NIL THEN
  7641. end := NewLabel();
  7642. BrL(end);
  7643. SetLabel(exit);
  7644. Designate(p0,l);
  7645. ToMemory(l.op,addressType,0);
  7646. Emit(Mov(position,l.op,nil)); (* write NIL to adr *)
  7647. ReleaseOperand(l);
  7648. SetLabel(end);
  7649. ELSE
  7650. SetLabel(exit);
  7651. END;
  7652. *)
  7653. (*Error(p0.position,"cannot be allocated in runtime yet");*)
  7654. ELSE (* no pointer to record, no pointer to array *)
  7655. IF ~backend.cellsAreObjects & (type IS SyntaxTree.CellType) THEN
  7656. (* ignore new statement *)
  7657. Warning(p0.position, "cannot run on final hardware");
  7658. ELSE
  7659. HALT(200);
  7660. END;
  7661. END;
  7662. (* ---- ADDRESSOF----- *)
  7663. |Global.systemAdr:
  7664. Designate(p0,s0);
  7665. s0.mode := ModeValue;
  7666. IF (t0 IS SyntaxTree.MathArrayType) & (t0(SyntaxTree.MathArrayType).form = SyntaxTree.Open) THEN
  7667. ReleaseIntermediateOperand(s0.op);
  7668. s0.op := s0.tag;
  7669. IntermediateCode.InitOperand(s0.tag);
  7670. END;
  7671. Convert(s0.op,IntermediateCode.GetType(system,x.type));
  7672. result := s0;
  7673. (* ---- BIT ----- *)
  7674. |Global.systemBit:
  7675. Evaluate(p0,s0);
  7676. ToMemory(s0.op,addressType,0);
  7677. ReuseCopy(res,s0.op);
  7678. ReleaseOperand(s0);
  7679. Evaluate(p1,s1);
  7680. Emit(Ror(position,res,res,s1.op));
  7681. ReleaseOperand(s1);
  7682. Emit(And(position,res,res,IntermediateCode.Immediate(IntermediateCode.GetType(system,p0.type),1)));
  7683. Convert(res,IntermediateCode.GetType(system,system.booleanType));
  7684. IF ~conditional THEN
  7685. InitOperand(result,ModeValue); result.op := res;
  7686. ELSE
  7687. BreqL(trueLabel,IntermediateCode.Immediate(res.type,1),res);
  7688. BrL(falseLabel);
  7689. ReleaseIntermediateOperand(res);
  7690. END;
  7691. (* --- MSK ----*)
  7692. |Global.systemMsk:
  7693. Evaluate(p0,s0);
  7694. Evaluate(p1,s1);
  7695. ReuseCopy(res,s0.op);
  7696. ReleaseOperand(s0);
  7697. Emit(And(position,res,res,s1.op));
  7698. ReleaseOperand(s1);
  7699. InitOperand(result,ModeValue);
  7700. result.op := res;
  7701. (* ---- SYSTEM.GET8|16|32|64 ----- *)
  7702. |Global.systemGet8, Global.systemGet16, Global.systemGet32, Global.systemGet64:
  7703. Evaluate(p0,s0);
  7704. MakeMemory(res,s0.op,IntermediateCode.GetType(system,x.type),0);
  7705. ReleaseOperand(s0);
  7706. InitOperand(result,ModeValue);
  7707. result.op := res;
  7708. (* ---- SYSTEM.GetStackPointer ----- *)
  7709. |Global.systemGetStackPointer:
  7710. InitOperand(result,ModeValue);
  7711. result.op := sp;
  7712. (* ---- SYSTEM.GetFramePointer ----- *)
  7713. |Global.systemGetFramePointer:
  7714. InitOperand(result,ModeValue);
  7715. result.op := fp;
  7716. (* ---- SYSTEM.GetActivity ----- *)
  7717. |Global.systemGetActivity:
  7718. ASSERT(backend.cooperative);
  7719. InitOperand(result,ModeValue);
  7720. result.op := ap;
  7721. (* ---- SYSTEM.SetStackPointer ----- *)
  7722. |Global.systemSetStackPointer:
  7723. Evaluate(p0,s0); (* *)
  7724. Emit(Mov(position,sp,s0.op));
  7725. ReleaseOperand(s0);
  7726. (* ---- SYSTEM.SetFramePointer ----- *)
  7727. |Global.systemSetFramePointer:
  7728. Evaluate(p0,s0); (* *)
  7729. Emit(Mov(position,fp,s0.op));
  7730. ReleaseOperand(s0);
  7731. (* ---- SYSTEM.Activity ----- *)
  7732. |Global.systemSetActivity:
  7733. ASSERT(backend.cooperative);
  7734. Evaluate(p0,s0); (* *)
  7735. Emit(Mov(position,ap,s0.op));
  7736. ReleaseOperand(s0);
  7737. (* ---- SYSTEM.VAL ----- *)
  7738. |Global.systemVal:
  7739. Expression(p1);
  7740. s1 := result;
  7741. type :=p0(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.TypeDeclaration).declaredType;
  7742. IF s1.mode = ModeReference THEN
  7743. (* nothing to be done if not record type, just take over new type *)
  7744. IF (type IS SyntaxTree.RecordType) THEN
  7745. ReleaseIntermediateOperand(s1.tag);
  7746. s1.tag := TypeDescriptorAdr(type);
  7747. IF ~newObjectFile THEN
  7748. IntermediateCode.MakeMemory(s1.tag,addressType);
  7749. END;
  7750. UseIntermediateOperand(s1.tag);
  7751. END;
  7752. result := s1;
  7753. ELSE (* copy over result to different type, may not use convert *)
  7754. itype := IntermediateCode.GetType(system,type);
  7755. IF itype.sizeInBits = s1.op.type.sizeInBits THEN
  7756. IntermediateCode.InitRegister(s0.op,itype,IntermediateCode.GeneralPurposeRegister,AcquireRegister(itype,IntermediateCode.GeneralPurposeRegister));
  7757. Emit(Mov(position,s0.op,s1.op));
  7758. ReleaseOperand(s1);
  7759. InitOperand(result,ModeValue);
  7760. result.op := s0.op;
  7761. ELSE (* different size, must convert *)
  7762. (*! this is not very clean, should we forbid conversions between operands with different sizes or should we implement a cutting move ??? *)
  7763. Convert(s1.op, IntermediateCode.GetType(system,type));
  7764. result := s1;
  7765. END;
  7766. END;
  7767. (* ---- SYSTEM.GET ----- *)
  7768. |Global.systemGet:
  7769. Evaluate(p0,s0); (* adr *)
  7770. Designate(p1,s1); (* variable *)
  7771. ToMemory(s0.op,IntermediateCode.GetType(system,p1.type),0);
  7772. ToMemory(s1.op,IntermediateCode.GetType(system,p1.type),0);
  7773. Emit(Mov(position,s1.op,s0.op));
  7774. ReleaseOperand(s1);
  7775. ReleaseOperand(s0);
  7776. (* ---- SYSTEM.PUT 8|16|32|64 ----- *)
  7777. |Global.systemPut, Global.systemPut64, Global.systemPut32, Global.systemPut16, Global.systemPut8:
  7778. Evaluate(p0,s0); (* *)
  7779. Evaluate(p1,s1); (* variable *)
  7780. IF p1.type.resolved IS SyntaxTree.ComplexType THEN
  7781. componentType := p1.type.resolved(SyntaxTree.ComplexType).componentType;
  7782. (* real part *)
  7783. MakeMemory(res, s0.op, IntermediateCode.GetType(system, componentType), 0);
  7784. Emit(Mov(position,res, s1.op));
  7785. ReleaseIntermediateOperand(res);
  7786. (* imaginary part *)
  7787. MakeMemory(res, s0.op, IntermediateCode.GetType(system, componentType), ToMemoryUnits(system, system.SizeOf(componentType)));
  7788. Emit(Mov(position,res, s1.tag));
  7789. ReleaseIntermediateOperand(res);
  7790. ReleaseOperand(s1);
  7791. ReleaseOperand(s0);
  7792. ELSE
  7793. MakeMemory(res,s0.op,IntermediateCode.GetType(system,p1.type),0);
  7794. ReleaseOperand(s0);
  7795. Emit(Mov(position,res,s1.op));
  7796. ReleaseIntermediateOperand(res);
  7797. ReleaseOperand(s1);
  7798. END;
  7799. (* ---- SYSTEM.MOVE ----- *)
  7800. |Global.systemMove:
  7801. Evaluate(p0,s0);
  7802. Evaluate(p1,s1);
  7803. Evaluate(p2,s2);
  7804. Emit(Copy(position,s1.op,s0.op,s2.op));
  7805. ReleaseOperand(s0); ReleaseOperand(s1); ReleaseOperand(s2);
  7806. (* ---- SYSTEM.NEW ----- *)
  7807. |Global.systemNew:
  7808. Designate(p0,s0);
  7809. Emit(Push(position,s0.op));
  7810. ReleaseOperand(s0);
  7811. Evaluate(p1,s1);
  7812. Emit(Push(position,s1.op));
  7813. ReleaseOperand(s1);
  7814. (* push realtime flag: false by default *)
  7815. Emit(Push(position,false));
  7816. CallThis(position,"Heaps","NewSys",3);
  7817. (* ---- SYSTEM.CALL ----- *)
  7818. |Global.systemRef:
  7819. Basic.ToSegmentedName(p0(SyntaxTree.StringValue).value^, segmentedName);
  7820. callsection := NewSection(module.allSections, Sections.CodeSection, segmentedName, NIL,commentPrintout # NIL);
  7821. s0.mode := ModeValue;
  7822. IntermediateCode.InitAddress(s0.op, addressType, callsection.name, 0, 0);
  7823. result := s0
  7824. (* ---- INCR ----- *)
  7825. |Global.Incr:
  7826. Designate(p0,operand);
  7827. IF p0.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  7828. Dereference(operand,p0.type.resolved,FALSE);
  7829. END;
  7830. ASSERT(p1 # NIL);
  7831. Evaluate(p1,l);
  7832. GetMathArrayIncrement(p0.type.resolved(SyntaxTree.MathArrayType),operand, l.op,TRUE, result);
  7833. ReleaseOperand(operand); ReleaseOperand(l);
  7834. Convert(result.op,IntermediateCode.GetType(system, x.type));
  7835. (* ---- SUM ----- *)
  7836. |Global.Sum: HALT(200);
  7837. (* ---- ALL ----- *)
  7838. |Global.All: HALT(200);
  7839. (* ---- CAS ----- *)
  7840. |Global.Cas:
  7841. needsTrace := p0.NeedsTrace();
  7842. IF needsTrace THEN ModifyAssignments(true) END;
  7843. Designate(p0,s0);
  7844. Evaluate(p1,s1);
  7845. Evaluate(p2,s2);
  7846. IF needsTrace THEN
  7847. Emit(Push(position, s0.op));
  7848. Emit(Push(position, s1.op));
  7849. Emit(Push(position, s2.op));
  7850. CallThis(position,"GarbageCollector","CompareAndSwap",3);
  7851. ELSE
  7852. Emit(Cas(position,s0.op,s1.op,s2.op));
  7853. END;
  7854. ReleaseOperand(s0); ReleaseOperand(s1); ReleaseOperand(s2);
  7855. IF needsTrace THEN ModifyAssignments(false) END;
  7856. res := NewRegisterOperand(IntermediateCode.GetType(system, p0.type));
  7857. Emit(Result(position, res)); result.op := res; result.mode := ModeValue;
  7858. IF conditional THEN
  7859. BreqL(trueLabel,IntermediateCode.Immediate(res.type,1),res);
  7860. BrL(falseLabel);
  7861. ReleaseIntermediateOperand(res);
  7862. END;
  7863. (* ---- DIM ----- *)
  7864. |Global.Dim:
  7865. ASSERT(~SemanticChecker.IsArrayStructuredObjectType(p0.type));
  7866. Designate(p0,s0);
  7867. IF p0.type.resolved(SyntaxTree.MathArrayType).form = SyntaxTree.Tensor THEN
  7868. Dereference(s0,p0.type.resolved,FALSE);
  7869. END;
  7870. MathArrayDim(p0.type.resolved(SyntaxTree.MathArrayType),s0.tag,result);
  7871. ReleaseOperand(s0);
  7872. (* ---- RESHAPE ----- *)
  7873. |Global.Reshape:
  7874. IF GetRuntimeProcedure("FoxArrayBase","Reshape",procedure,TRUE) THEN
  7875. left := SyntaxTree.NewSymbolDesignator(Diagnostics.Invalid,NIL,procedure);
  7876. left.SetType(procedure.type);
  7877. call := SyntaxTree.NewProcedureCallDesignator(position,left(SyntaxTree.Designator),x.parameters);
  7878. VisitProcedureCallDesignator(call(SyntaxTree.ProcedureCallDesignator));
  7879. END;
  7880. (* ---- SYSTEM.TYPECODE ----- *)
  7881. |Global.systemTypeCode:
  7882. type := p0(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.TypeDeclaration).declaredType;
  7883. IF type.resolved IS SyntaxTree.PointerType THEN
  7884. type := type.resolved(SyntaxTree.PointerType).pointerBase;
  7885. END;
  7886. result.op := TypeDescriptorAdr(type);
  7887. IF ~newObjectFile THEN
  7888. ToMemory(result.op,IntermediateCode.GetType(system,x.type),0);
  7889. ELSE Convert(result.op, IntermediateCode.GetType(system,x.type));
  7890. END;
  7891. result.mode := ModeValue;
  7892. (* ---- SYSTEM.TRACE ----- *)
  7893. |Global.systemTrace:
  7894. SystemTrace(x.parameters, x.position);
  7895. (* ----- CONNECT ------*)
  7896. |Global.Connect:
  7897. IF backend.cellsAreObjects THEN
  7898. PushPort(p0);
  7899. PushPort(p1);
  7900. IF p2 # NIL THEN
  7901. Evaluate(p2, s2);
  7902. Emit(Push(p2.position, s2.op));
  7903. ReleaseOperand(s2);
  7904. ELSE
  7905. Emit(Push(-1, IntermediateCode.Immediate(int32, -1)));
  7906. END;
  7907. CallThis(position,"ActiveCellsRuntime","Connect",3);
  7908. ELSE
  7909. Warning(x.position, "cannot run on final hardware");
  7910. END;
  7911. (* ----- DELEGATE ------*)
  7912. |Global.Delegate:
  7913. IF backend.cellsAreObjects THEN
  7914. PushPort(p0);
  7915. PushPort(p1);
  7916. CallThis(position,"ActiveCellsRuntime","Delegate",2);
  7917. ELSE
  7918. Warning(x.position, "cannot run on final hardware");
  7919. END;
  7920. (* ----- SEND ------*)
  7921. |Global.Send:
  7922. Evaluate(p0,s0);
  7923. Evaluate(p1,s1);
  7924. size := ToMemoryUnits(system,system.SizeOf(p1.type));
  7925. Emit(Push(position,s0.op));
  7926. Emit(Push(position,s1.op));
  7927. (*
  7928. Emit(Push(position,IntermediateCode.Immediate(addressType,size)));
  7929. *)
  7930. IF ~backend.cellsAreObjects THEN
  7931. IF size # 1 THEN Error(p1.position,"send not implemented for complex data types") END;
  7932. END;
  7933. ReleaseOperand(s0);
  7934. ReleaseOperand(s1);
  7935. IF backend.cellsAreObjects THEN
  7936. CallThis(position,"ActiveCellsRuntime","Send",2);
  7937. ELSE
  7938. CallThis(position,ChannelModuleName,"Send",2);
  7939. END;
  7940. (* ----- RECEIVE ------*)
  7941. |Global.Receive:
  7942. Evaluate(p0,s0);
  7943. Emit(Push(position,s0.op));
  7944. Designate(p1,s1);
  7945. size := ToMemoryUnits(system,system.SizeOf(p1.type));
  7946. Emit(Push(position,s1.op));
  7947. IF p2 # NIL THEN
  7948. Designate(p2,s2);
  7949. Emit(Push(position,s2.op));
  7950. END;
  7951. (*
  7952. Emit(Push(position,IntermediateCode.Immediate(addressType,size)));
  7953. *)
  7954. IF ~backend.cellsAreObjects THEN
  7955. IF size # 1 THEN Error(p1.position,"receive not implemented for complex data types") END;
  7956. END;
  7957. ReleaseOperand(s0);
  7958. ReleaseOperand(s1);
  7959. ReleaseOperand(s2);
  7960. IF backend.cellsAreObjects THEN
  7961. IF p2 = NIL THEN
  7962. CallThis(position,"ActiveCellsRuntime","Receive",2)
  7963. ELSE
  7964. CallThis(position,"ActiveCellsRuntime","ReceiveNonBlockingVar",3)
  7965. END;
  7966. ELSE
  7967. IF p2 = NIL THEN
  7968. CallThis(position,ChannelModuleName,"Receive",2)
  7969. ELSE
  7970. CallThis(position,ChannelModuleName,"ReceiveNonBlockingVar",3)
  7971. END;
  7972. END;
  7973. | Global.systemSpecial:
  7974. customBuiltin := x.left(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.CustomBuiltin);
  7975. ASSERT(customBuiltin.type IS SyntaxTree.ProcedureType);
  7976. procedureType := customBuiltin.type(SyntaxTree.ProcedureType);
  7977. (* determine if parameters are of the VAR kind *)
  7978. ASSERT(x.parameters.Length() <= 3);
  7979. formalParameter := procedureType.firstParameter;
  7980. FOR i := 0 TO x.parameters.Length() - 1 DO
  7981. isVarPar[i] := formalParameter.kind = SyntaxTree.VarParameter;
  7982. formalParameter := formalParameter.nextParameter
  7983. END;
  7984. IF p0 # NIL THEN IF isVarPar[0] THEN Designate(p0, s0) ELSE Evaluate(p0,s0) END ELSE InitOperand(s0, ModeValue) END;
  7985. IF p1 # NIL THEN IF isVarPar[1] THEN Designate(p1, s1) ELSE Evaluate(p1,s1) END ELSE InitOperand(s1, ModeValue) END;
  7986. IF p2 # NIL THEN IF isVarPar[2] THEN Designate(p2, s2) ELSE Evaluate(p2,s2) END ELSE InitOperand(s2, ModeValue) END;
  7987. Emit(SpecialInstruction(x.position, customBuiltin.subType,s0.op, s1.op, s2.op));
  7988. ReleaseOperand(s0); ReleaseOperand(s1); ReleaseOperand(s2);
  7989. IF procedureType.returnType # NIL THEN
  7990. res := NewRegisterOperand(IntermediateCode.GetType(system, procedureType.returnType));
  7991. Emit(Result(position, res));
  7992. (*InitOperand(result,ModeValue);
  7993. result.op := res;
  7994. *)
  7995. IF ~conditional THEN
  7996. InitOperand(result,ModeValue); result.op := res;
  7997. ELSE
  7998. BreqL(trueLabel,IntermediateCode.Immediate(res.type,1),res);
  7999. BrL(falseLabel);
  8000. ReleaseIntermediateOperand(res);
  8001. END;
  8002. END
  8003. ELSE (* function not yet implemented *)
  8004. Error(position,"not yet implemented");
  8005. END;
  8006. destination := dest;
  8007. IF Trace THEN TraceExit("VisitBuiltinCallDesignator") END;
  8008. END VisitBuiltinCallDesignator;
  8009. PROCEDURE VisitTypeGuardDesignator(x: SyntaxTree.TypeGuardDesignator);
  8010. VAR trueL,falseL: Label; recordType: SyntaxTree.RecordType; dest,tag,ptr: IntermediateCode.Operand;
  8011. BEGIN
  8012. IF Trace THEN TraceEnter("VisitTypeGuardDesignator") END;
  8013. dest := destination; destination := emptyOperand;
  8014. Expression(x.left);
  8015. IF x.left.type.resolved = x.type.resolved THEN (* always true: do nothing *)
  8016. ELSIF isUnchecked THEN (* no check *)
  8017. ELSE
  8018. trueL := NewLabel();
  8019. falseL := NewLabel();
  8020. IF IsPointerToRecord(x.left.type,recordType) THEN
  8021. IntermediateCode.InitRegister(tag,addressType,IntermediateCode.GeneralPurposeRegister,AcquireRegister(addressType,IntermediateCode.GeneralPurposeRegister));
  8022. Emit(Mov(position,tag, result.op));
  8023. IF result.mode # ModeValue THEN
  8024. ptr := tag;
  8025. IntermediateCode.MakeMemory(ptr,addressType);
  8026. Emit(Mov(position,tag, ptr));
  8027. END;
  8028. IF ~backend.cooperative THEN
  8029. IntermediateCode.AddOffset(tag,ToMemoryUnits(system,-addressType.sizeInBits));
  8030. END;
  8031. IntermediateCode.MakeMemory(tag,addressType);
  8032. ELSE
  8033. tag := result.tag;
  8034. END;
  8035. TypeTest(tag,x.type,trueL,falseL);
  8036. ReleaseIntermediateOperand(tag);
  8037. SetLabel(falseL);
  8038. EmitTrap(position,TypeCheckTrap);
  8039. SetLabel(trueL);
  8040. END;
  8041. destination := dest;
  8042. IF Trace THEN TraceExit("VisitTypeGuardDesignator") END;
  8043. END VisitTypeGuardDesignator;
  8044. PROCEDURE Dereference(VAR operand: Operand; type: SyntaxTree.Type; isUnsafe: BOOLEAN);
  8045. VAR dereferenced: IntermediateCode.Operand; arrayDataOffset: LONGINT;
  8046. PROCEDURE NilCheck(CONST op: IntermediateCode.Operand);
  8047. VAR label: Label; pc: LONGINT;
  8048. BEGIN
  8049. IF backend.cooperative & ~isUnchecked THEN
  8050. pc := section.pc;
  8051. label := NewLabel();
  8052. BrneL(label, operand.op, nil);
  8053. EmitTrap(position, NilPointerTrap);
  8054. SetLabel(label);
  8055. INC(statCoopNilCheck, section.pc - pc);
  8056. END;
  8057. END NilCheck;
  8058. BEGIN
  8059. LoadValue(operand,system.addressType); (* in case operand is not a value yet *)
  8060. ReuseCopy(dereferenced,operand.op);
  8061. ReleaseOperand(operand);
  8062. operand.mode := ModeReference;
  8063. operand.op := dereferenced;
  8064. operand.tag := dereferenced;
  8065. UseIntermediateOperand(operand.tag);
  8066. IF (type=NIL) OR (type IS SyntaxTree.RecordType)OR (type IS SyntaxTree.CellType) THEN
  8067. IF isUnsafe & ((type = NIL) OR ~type(SyntaxTree.RecordType).isObject) THEN
  8068. ReleaseIntermediateOperand(operand.tag);
  8069. operand.tag := TypeDescriptorAdr(type);
  8070. IF ~newObjectFile THEN
  8071. IntermediateCode.MakeMemory(operand.tag,addressType);
  8072. END;
  8073. ELSE
  8074. IF ~backend.cooperative THEN
  8075. IntermediateCode.AddOffset(operand.tag,ToMemoryUnits(system,-addressType.sizeInBits));
  8076. END;
  8077. IntermediateCode.MakeMemory(operand.tag,addressType);
  8078. END;
  8079. NilCheck(operand.op);
  8080. ELSIF type IS SyntaxTree.ArrayType THEN
  8081. IF isUnsafe THEN
  8082. NilCheck(operand.op);
  8083. ReleaseIntermediateOperand(operand.tag);
  8084. IF type(SyntaxTree.ArrayType).form = SyntaxTree.Static THEN
  8085. IntermediateCode.InitImmediate(operand.tag,addressType,type(SyntaxTree.ArrayType).staticLength);
  8086. ELSE
  8087. operand.tag := emptyOperand;
  8088. END;
  8089. ELSE
  8090. NilCheck(operand.op);
  8091. IF backend.cooperative THEN
  8092. arrayDataOffset := (BaseArrayTypeSize + DynamicDim(type)) * addressType.sizeInBits;
  8093. IntermediateCode.AddOffset(operand.op,ToMemoryUnits(system,arrayDataOffset));
  8094. IntermediateCode.AddOffset(operand.tag,ToMemoryUnits(system,BaseArrayTypeSize*system.addressSize));
  8095. ELSE
  8096. arrayDataOffset := DynamicDim(type) * addressType.sizeInBits + 3 * addressType.sizeInBits;
  8097. INC(arrayDataOffset, (-arrayDataOffset) MOD ArrayAlignment); (* round up to multiple of ArrayAlignment to ensure that first array element is aligned at 0 MOD ArrayAlignment *)
  8098. IntermediateCode.AddOffset(operand.op,ToMemoryUnits(system,arrayDataOffset));
  8099. IntermediateCode.AddOffset(operand.tag,ToMemoryUnits(system,ArrayDimTable*system.addressSize))
  8100. END;
  8101. END;
  8102. ELSIF type IS SyntaxTree.MathArrayType THEN
  8103. IntermediateCode.AddOffset(operand.op,ToMemoryUnits(system,MathAdrOffset*addressType.sizeInBits));
  8104. IntermediateCode.MakeMemory(operand.op,addressType);
  8105. ELSE HALT(100);
  8106. END;
  8107. END Dereference;
  8108. PROCEDURE VisitDereferenceDesignator(x: SyntaxTree.DereferenceDesignator);
  8109. VAR type: SyntaxTree.Type; d: Operand; dest: IntermediateCode.Operand;prevIsUnchecked: BOOLEAN;
  8110. BEGIN
  8111. IF Trace THEN TraceEnter("VisitDereferenceDesignator") END;
  8112. dest := destination; destination := emptyOperand;
  8113. Evaluate(x.left,d);
  8114. type := x.type.resolved;
  8115. prevIsUnchecked := isUnchecked;
  8116. IF (x.left # NIL) & (x.left IS SyntaxTree.SelfDesignator) THEN
  8117. isUnchecked := TRUE; (* avoid NIL-pointer-check for SELF pointer *)
  8118. END;
  8119. Dereference(d,type,IsUnsafePointer(x.left.type));
  8120. isUnchecked := prevIsUnchecked;
  8121. result := d;
  8122. IF backend.cooperative & (x.left.type.resolved IS SyntaxTree.PointerType) & ~x.left.type.resolved(SyntaxTree.PointerType).isPlain & ~x.left.type.resolved(SyntaxTree.PointerType).isUnsafe THEN
  8123. IF (type IS SyntaxTree.RecordType) & ~type(SyntaxTree.RecordType).isObject THEN
  8124. IntermediateCode.AddOffset(result.op,BaseRecordTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  8125. END;
  8126. END;
  8127. destination := dest;
  8128. IF Trace THEN TraceExit("VisitDereferenceDesignator") END;
  8129. END VisitDereferenceDesignator;
  8130. PROCEDURE VisitSupercallDesignator(x: SyntaxTree.SupercallDesignator);
  8131. VAR procedure: SyntaxTree.Procedure; tag: IntermediateCode.Operand; dest: IntermediateCode.Operand;
  8132. BEGIN
  8133. IF Trace THEN TraceEnter("VisitSupercallDesignator") END;
  8134. dest := destination; destination := emptyOperand;
  8135. Designate(x.left(SyntaxTree.SymbolDesignator).left,result);
  8136. tag := result.op;
  8137. (*ReleaseIntermediateOperand(result.tag); not necessary -- done in StaticCallOperand *)
  8138. procedure := x.left(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Procedure);
  8139. StaticCallOperand(result,procedure.super);
  8140. ReleaseIntermediateOperand(result.tag);
  8141. UseIntermediateOperand(tag); (* necessary ? *)
  8142. result.tag := tag;
  8143. destination := dest;
  8144. IF Trace THEN TraceExit("VisitSupercallDesignator") END;
  8145. END VisitSupercallDesignator;
  8146. PROCEDURE VisitSelfDesignator(x: SyntaxTree.SelfDesignator);
  8147. VAR basereg: IntermediateCode.Operand; scope: SyntaxTree.Scope; dest: IntermediateCode.Operand;
  8148. moduleSection: IntermediateCode.Section; moduleOffset, parametersSize: LONGINT;
  8149. name: Basic.SegmentedName;
  8150. BEGIN
  8151. IF Trace THEN TraceEnter("VisitSelfDesignator") END;
  8152. dest := destination; destination := emptyOperand;
  8153. scope := currentScope;
  8154. WHILE (scope.outerScope # NIL) & (scope.outerScope IS SyntaxTree.ProcedureScope) DO
  8155. scope := scope.outerScope;
  8156. END;
  8157. IF scope.outerScope IS SyntaxTree.ModuleScope THEN
  8158. IF newObjectFile THEN
  8159. moduleSection := meta.ModuleSection();
  8160. IF backend.cooperative THEN
  8161. moduleOffset := 0;
  8162. ELSE
  8163. moduleOffset := moduleSection.pc;
  8164. END;
  8165. result.mode := ModeValue;
  8166. result.op := IntermediateCode.Address(addressType, moduleSection.name, GetFingerprint(moduleSection.symbol), moduleOffset);
  8167. ELSE
  8168. Symbol(moduleSelf,result);
  8169. IntermediateCode.MakeMemory(result.op,addressType);
  8170. END
  8171. ELSIF (scope.outerScope IS SyntaxTree.CellScope) & ~backend.cellsAreObjects THEN
  8172. result.mode := ModeValue;
  8173. Global.GetSymbolSegmentedName(scope.outerScope(SyntaxTree.CellScope).ownerCell.typeDeclaration, name);
  8174. result.op := IntermediateCode.Address(addressType, name, 0, moduleOffset);
  8175. ELSE
  8176. GetBaseRegister(basereg,currentScope,scope);
  8177. InitOperand(result,ModeReference);
  8178. result.op := basereg;
  8179. parametersSize := ProcedureParametersSize(system,scope(SyntaxTree.ProcedureScope).ownerProcedure);
  8180. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,addressType.sizeInBits)+parametersSize);
  8181. IF backend.cooperative THEN
  8182. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,addressType.sizeInBits));
  8183. END;
  8184. (* tag must be loaded when dereferencing SELF pointer *)
  8185. END;
  8186. destination := dest;
  8187. IF Trace THEN TraceExit("VisitSelfDesignator") END;
  8188. END VisitSelfDesignator;
  8189. PROCEDURE VisitResultDesignator(x: SyntaxTree.ResultDesignator);
  8190. VAR procedure: SyntaxTree.Procedure; procedureType: SyntaxTree.ProcedureType; parameter: SyntaxTree.Parameter;
  8191. BEGIN
  8192. IF Trace THEN TraceEnter("VisitResultDesignator") END;
  8193. procedure := currentScope(SyntaxTree.ProcedureScope).ownerProcedure;
  8194. procedureType := procedure.type(SyntaxTree.ProcedureType);
  8195. parameter := procedureType.returnParameter;
  8196. VisitParameter(parameter);
  8197. IF Trace THEN TraceExit("VisitResultDesignator") END;
  8198. END VisitResultDesignator;
  8199. (** values *)
  8200. PROCEDURE VisitBooleanValue(x: SyntaxTree.BooleanValue);
  8201. BEGIN
  8202. IF Trace THEN TraceEnter("VisitBooleanValue") END;
  8203. IF conditional THEN
  8204. IF x.value THEN BrL(trueLabel)
  8205. ELSE BrL(falseLabel)
  8206. END;
  8207. ELSE
  8208. InitOperand(result,ModeValue);
  8209. IF x.value THEN result.op := true ELSE result.op := false END;
  8210. END;
  8211. END VisitBooleanValue;
  8212. PROCEDURE GetDataSection*(): IntermediateCode.Section;
  8213. VAR name: Basic.SegmentedName; section: IntermediateCode.Section;
  8214. BEGIN
  8215. Global.GetModuleSegmentedName(module.module, name);
  8216. Basic.SuffixSegmentedName(name,Basic.MakeString("@Immediates"));
  8217. section := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,NIL,TRUE);
  8218. RETURN section
  8219. END GetDataSection;
  8220. PROCEDURE GetImmediateMem(VAR vop: IntermediateCode.Operand);
  8221. VAR data: IntermediateCode.Section;pc: LONGINT; type: IntermediateCode.Type;
  8222. BEGIN
  8223. type := vop.type;
  8224. data := GetDataSection();
  8225. pc := EnterImmediate(data,vop);
  8226. IntermediateCode.InitAddress(vop, addressType, data.name, 0, pc);
  8227. IntermediateCode.MakeMemory(vop, type);
  8228. END GetImmediateMem;
  8229. PROCEDURE VisitIntegerValue(x: SyntaxTree.IntegerValue);
  8230. BEGIN
  8231. IF Trace THEN TraceEnter("VisitIntegerValue") END;
  8232. InitOperand(result,ModeValue);
  8233. IntermediateCode.InitImmediate(result.op,IntermediateCode.GetType(system,x.type),x.hvalue);
  8234. IF ~supportedImmediate(result.op) &~inData THEN
  8235. GetImmediateMem(result.op)
  8236. END;
  8237. END VisitIntegerValue;
  8238. PROCEDURE VisitCharacterValue(x: SyntaxTree.CharacterValue);
  8239. BEGIN
  8240. IF Trace THEN TraceEnter("VisitCharacterValue") END;
  8241. InitOperand(result,ModeValue);
  8242. IntermediateCode.InitImmediate(result.op,IntermediateCode.GetType(system,x.type),ORD(x.value));
  8243. END VisitCharacterValue;
  8244. PROCEDURE VisitSetValue(x: SyntaxTree.SetValue);
  8245. BEGIN
  8246. IF Trace THEN TraceEnter("VisitSetValue") END;
  8247. InitOperand(result,ModeValue);
  8248. IntermediateCode.InitImmediate(result.op,IntermediateCode.GetType(system,x.type),SYSTEM.VAL(LONGINT,x.value));
  8249. END VisitSetValue;
  8250. PROCEDURE VisitMathArrayValue(x: SyntaxTree.MathArrayValue);
  8251. VAR irv: IntermediateCode.Section; name:Basic.SegmentedName;
  8252. PROCEDURE RecursiveData(x: SyntaxTree.MathArrayExpression);
  8253. VAR numberElements,i: LONGINT; expression: SyntaxTree.Expression; op: Operand;
  8254. BEGIN
  8255. numberElements := x.elements.Length();
  8256. FOR i := 0 TO numberElements-1 DO
  8257. expression := x.elements.GetExpression(i);
  8258. IF expression IS SyntaxTree.MathArrayExpression THEN
  8259. RecursiveData(expression(SyntaxTree.MathArrayExpression));
  8260. ELSE
  8261. inData := TRUE;
  8262. Evaluate(expression,op);
  8263. irv.Emit(Data(position,op.op));
  8264. inData := FALSE;
  8265. ReleaseOperand(op);
  8266. END;
  8267. END;
  8268. END RecursiveData;
  8269. BEGIN
  8270. IF Trace THEN TraceEnter("VisitMathArrayValue") END;
  8271. IF ~TryConstantDeclaration() THEN
  8272. IF constantDeclaration = NIL THEN constantDeclaration:=BuildConstant(module.module,x,constId) END;
  8273. GetCodeSectionNameForSymbol(constantDeclaration,name);
  8274. IF ~newObjectFile OR (constantDeclaration.scope = NIL) OR (constantDeclaration.scope.ownerModule = module.module) THEN
  8275. irv := NewSection(module.allSections,Sections.ConstSection,name,constantDeclaration,commentPrintout # NIL);
  8276. ELSE
  8277. irv := NewSection(module.importedSections, Sections.ConstSection, name,constantDeclaration,commentPrintout # NIL);
  8278. END;
  8279. RecursiveData(x.array);
  8280. InitOperand(result,ModeReference);
  8281. IntermediateCode.InitAddress(result.op, addressType, irv.name, GetFingerprint(irv.symbol), 0);
  8282. END
  8283. END VisitMathArrayValue;
  8284. PROCEDURE TryConstantDeclaration(): BOOLEAN;
  8285. VAR constant: Sections.Section;
  8286. BEGIN
  8287. IF constantDeclaration = NIL THEN
  8288. RETURN FALSE
  8289. ELSE
  8290. (* Is a constant in this module: did we generate it already? *)
  8291. constant := module.allSections.FindBySymbol(constantDeclaration); (*TODO*)
  8292. IF constant # NIL THEN
  8293. InitOperand(result,ModeReference);
  8294. IntermediateCode.InitAddress(result.op,addressType,constant.name,GetFingerprint(constant.symbol), 0);
  8295. RETURN TRUE;
  8296. END;
  8297. END;
  8298. RETURN FALSE
  8299. END TryConstantDeclaration;
  8300. PROCEDURE VisitConstant(x: SyntaxTree.Constant);
  8301. BEGIN
  8302. constantDeclaration := x;
  8303. x.value.resolved.Accept(SELF);
  8304. END VisitConstant;
  8305. PROCEDURE VisitRealValue(x: SyntaxTree.RealValue);
  8306. BEGIN
  8307. IF Trace THEN TraceEnter("VisitRealValue") END;
  8308. InitOperand(result,ModeValue);
  8309. IntermediateCode.InitFloatImmediate(result.op,IntermediateCode.GetType(system,x.type),x.value);
  8310. END VisitRealValue;
  8311. PROCEDURE VisitComplexValue(x: SyntaxTree.ComplexValue);
  8312. VAR
  8313. componentType: SyntaxTree.Type;
  8314. BEGIN
  8315. IF Trace THEN TraceEnter("VisitComplexValue") END;
  8316. ASSERT(x.type IS SyntaxTree.ComplexType);
  8317. componentType := x.type(SyntaxTree.ComplexType).componentType;
  8318. InitOperand(result,ModeValue);
  8319. IntermediateCode.InitFloatImmediate(result.op,IntermediateCode.GetType(system,componentType),x.realValue); (* real part *)
  8320. IntermediateCode.InitFloatImmediate(result.tag,IntermediateCode.GetType(system,componentType),x.imagValue); (* imaginary part *)
  8321. END VisitComplexValue;
  8322. PROCEDURE VisitStringValue(x: SyntaxTree.StringValue);
  8323. VAR i: LONGINT; name: Basic.SegmentedName;
  8324. irv: IntermediateCode.Section; op: IntermediateCode.Operand;
  8325. BEGIN
  8326. IF Trace THEN TraceEnter("VisitStringValue") END;
  8327. IF ~TryConstantDeclaration() THEN
  8328. IF constantDeclaration = NIL THEN constantDeclaration:=BuildConstant(module.module,x,constId) END;
  8329. GetCodeSectionNameForSymbol(constantDeclaration,name);
  8330. IF ~newObjectFile OR (constantDeclaration.scope = NIL) OR (constantDeclaration.scope.ownerModule = module.module) THEN
  8331. irv := NewSection(module.allSections, Sections.ConstSection, name,constantDeclaration,commentPrintout # NIL);
  8332. ELSE
  8333. irv := NewSection(module.importedSections, Sections.ConstSection, name,constantDeclaration,commentPrintout # NIL);
  8334. END;
  8335. FOR i := 0 TO x.length-1 DO
  8336. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(system,system.characterType),ORD(x.value[i]));
  8337. irv.Emit(Data(position,op));
  8338. END;
  8339. InitOperand(result,ModeReference);
  8340. IntermediateCode.InitAddress(result.op, addressType, irv.name, GetFingerprint(irv.symbol), 0);
  8341. result.tag := IntermediateCode.Immediate(addressType,x.length);
  8342. END
  8343. END VisitStringValue;
  8344. PROCEDURE VisitNilValue(x: SyntaxTree.NilValue);
  8345. BEGIN
  8346. IF Trace THEN TraceEnter("VisitNilValue") END;
  8347. InitOperand(result,ModeValue);
  8348. result.op := IntermediateCode.Immediate(IntermediateCode.GetType(system,x.type),0);
  8349. result.tag := IntermediateCode.Immediate(IntermediateCode.GetType(system,x.type),0);
  8350. END VisitNilValue;
  8351. PROCEDURE VisitEnumerationValue(x: SyntaxTree.EnumerationValue);
  8352. BEGIN
  8353. IF Trace THEN TraceEnter("VisitEnumerationValue") END;
  8354. InitOperand(result,ModeValue);
  8355. result.op := IntermediateCode.Immediate(IntermediateCode.GetType(system,x.type),x.value);
  8356. END VisitEnumerationValue;
  8357. (** symbols *)
  8358. PROCEDURE VisitImport(x: SyntaxTree.Import);
  8359. BEGIN (* nothing to be done, might however be called via some designator module.procedure *)
  8360. END VisitImport;
  8361. PROCEDURE GetBaseRegister(VAR result: IntermediateCode.Operand; scope,baseScope: SyntaxTree.Scope);
  8362. VAR left,right: IntermediateCode.Operand;level: LONGINT;
  8363. BEGIN
  8364. IF scope # baseScope THEN
  8365. (* left := [fp+8] *)
  8366. IntermediateCode.InitMemory(right,addressType,fp,ToMemoryUnits(system,2*addressType.sizeInBits));
  8367. IF backend.cooperative THEN IntermediateCode.AddOffset (right, ToMemoryUnits(system,addressType.sizeInBits)) END;
  8368. ReuseCopy(left,right);
  8369. ReleaseIntermediateOperand(right);
  8370. scope := scope.outerScope; DEC(level);
  8371. (* { left := [left+8] } *)
  8372. IntermediateCode.InitMemory(right,addressType,left,ToMemoryUnits(system,2*addressType.sizeInBits));
  8373. IF backend.cooperative THEN IntermediateCode.AddOffset (right, ToMemoryUnits(system,addressType.sizeInBits)) END;
  8374. WHILE (scope # baseScope) & (scope IS SyntaxTree.ProcedureScope) DO
  8375. Emit(Mov(position,left,right));
  8376. scope := scope.outerScope; DEC(level);
  8377. END;
  8378. ASSERT((scope = baseScope) OR (baseScope = NIL));
  8379. result := left;
  8380. ELSE
  8381. result := fp;
  8382. END;
  8383. END GetBaseRegister;
  8384. PROCEDURE VisitVariable(x: SyntaxTree.Variable);
  8385. VAR symbol: Sections.Section; type: SyntaxTree.Type; recordType: SyntaxTree.RecordType; name: Basic.SegmentedName; temp: IntermediateCode.Operand; reg: LONGINT;
  8386. BEGIN
  8387. IF Trace THEN TraceEnter("VisitVariable"); END;
  8388. type := x.type.resolved;
  8389. IF (x.useRegister) THEN
  8390. InitOperand(result, ModeValue);
  8391. IF x.registerNumber < 0 THEN
  8392. x.SetRegisterNumber(AcquireRegister(IntermediateCode.GetType(system, type),IntermediateCode.GeneralPurposeRegister));
  8393. reg := x.registerNumber;
  8394. ELSE
  8395. reg := registerUsageCount.Map(x.registerNumber);
  8396. UseRegister(reg);
  8397. END;
  8398. IntermediateCode.InitRegister(result.op,IntermediateCode.GetType(system, type),IntermediateCode.GeneralPurposeRegister,reg);
  8399. ELSIF x.externalName # NIL THEN
  8400. InitOperand(result,ModeReference);
  8401. Basic.ToSegmentedName(x.externalName^, name);
  8402. IntermediateCode.InitAddress(result.op, addressType, name, 0, 0);
  8403. ELSIF (x.scope IS SyntaxTree.ProcedureScope) THEN (* local variable (potentially via nested procedure) *)
  8404. InitOperand(result,ModeReference);
  8405. GetBaseRegister(result.op,currentScope,x.scope);
  8406. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8407. ELSIF (x.scope = moduleScope) OR (x.scope IS SyntaxTree.CellScope) & ~backend.cellsAreObjects THEN (* global variable *)
  8408. InitOperand(result,ModeReference);
  8409. GetCodeSectionNameForSymbol(x,name);
  8410. symbol := NewSection(module.allSections, Sections.VarSection, name,x,commentPrintout # NIL);
  8411. IntermediateCode.InitAddress(result.op, addressType, symbol.name, GetFingerprint(symbol.symbol), 0);
  8412. ELSIF x.scope IS SyntaxTree.ModuleScope THEN (* global variable in imported module *)
  8413. InitOperand(result,ModeReference);
  8414. GetCodeSectionNameForSymbol(x,name);
  8415. symbol := NewSection(module.importedSections, Sections.VarSection, name,x,commentPrintout # NIL);
  8416. IntermediateCode.InitAddress(result.op, addressType, symbol.name, GetFingerprint(symbol.symbol), 0)
  8417. ELSE (* field, left designator must have been emitted *)
  8418. ASSERT(result.mode = ModeReference);
  8419. IF result.op.mode = IntermediateCode.ModeMemory THEN
  8420. ReuseCopy(temp,result.op);
  8421. ReleaseIntermediateOperand(result.op);
  8422. result.op := temp;
  8423. END;
  8424. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8425. IF backend.cooperative & (x.scope IS SyntaxTree.RecordScope) THEN
  8426. recordType := x.scope(SyntaxTree.RecordScope).ownerRecord;
  8427. IF recordType.isObject & ~recordType.pointerType.isPlain THEN
  8428. IntermediateCode.AddOffset(result.op,BaseObjectTypeSize * ToMemoryUnits(system,addressType.sizeInBits));
  8429. END;
  8430. END;
  8431. END;
  8432. IF conditional & (x.type.resolved IS SyntaxTree.BooleanType) THEN
  8433. ValueToCondition(result);
  8434. ELSIF type IS SyntaxTree.ProcedureType THEN
  8435. ReleaseIntermediateOperand(result.tag);
  8436. IF type(SyntaxTree.ProcedureType).isDelegate THEN
  8437. IntermediateCode.InitMemory(result.tag,addressType,result.op,ToMemoryUnits(system,system.addressSize));
  8438. UseIntermediateOperand(result.tag);
  8439. ELSE
  8440. result.tag := nil; (* nil *)
  8441. END;
  8442. ELSIF (type IS SyntaxTree.ArrayType) THEN
  8443. IF type(SyntaxTree.ArrayType).form = SyntaxTree.SemiDynamic THEN
  8444. IF (x.scope IS SyntaxTree.ModuleScope) OR (x.scope IS SyntaxTree.CellScope) & ~backend.cellsAreObjects THEN
  8445. ReleaseIntermediateOperand(result.tag);
  8446. Global.GetSymbolSegmentedName(x,name);
  8447. Basic.SuffixSegmentedName (name, Basic.MakeString ("@len"));
  8448. symbol := NewSection(module.allSections, Sections.VarSection, name,NIL ,commentPrintout # NIL);
  8449. IntermediateCode.InitAddress(result.tag, addressType, symbol.name,0 , 0);
  8450. ELSE
  8451. END;
  8452. ELSE
  8453. ReleaseIntermediateOperand(result.tag);
  8454. IntermediateCode.InitImmediate(result.tag,addressType,type(SyntaxTree.ArrayType).staticLength);
  8455. END;
  8456. ELSIF (type IS SyntaxTree.MathArrayType) THEN
  8457. IF type(SyntaxTree.MathArrayType).form IN {SyntaxTree.Open} THEN
  8458. ReleaseIntermediateOperand(result.tag);
  8459. result.tag := result.op;
  8460. UseIntermediateOperand(result.tag);
  8461. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,MathAdrOffset*addressType.sizeInBits));
  8462. IntermediateCode.MakeMemory(result.op,addressType);
  8463. END;
  8464. ELSIF (type IS SyntaxTree.RecordType) & (type(SyntaxTree.RecordType).pointerType = NIL) THEN
  8465. ReleaseIntermediateOperand(result.tag);
  8466. result.tag := TypeDescriptorAdr(type);
  8467. IF ~newObjectFile THEN
  8468. IntermediateCode.MakeMemory(result.tag,addressType);
  8469. END;
  8470. UseIntermediateOperand(result.tag);
  8471. (* tag for pointer type computed not here but during dereferencing *)
  8472. END;
  8473. IF Trace THEN TraceExit("VisitVariable") END;
  8474. END VisitVariable;
  8475. PROCEDURE VisitProperty(property: SyntaxTree.Property);
  8476. BEGIN
  8477. VisitVariable(property);
  8478. END VisitProperty;
  8479. PROCEDURE VisitParameter(x: SyntaxTree.Parameter);
  8480. VAR type: SyntaxTree.Type; basereg, mem: IntermediateCode.Operand; parameter: SyntaxTree.Parameter;adr: LONGINT; symbol: Sections.Section;
  8481. name: Basic.SegmentedName; parameterType, ptype: SyntaxTree.Type; len,inc: LONGINT;
  8482. BEGIN
  8483. type := x.type.resolved;
  8484. IF Trace THEN TraceEnter("VisitParameter") END;
  8485. IF x.ownerType IS SyntaxTree.CellType THEN
  8486. ptype := x.type.resolved;
  8487. IF ptype IS SyntaxTree.ArrayType THEN ptype := ptype(SyntaxTree.ArrayType).arrayBase.resolved END;
  8488. IF ~(ptype IS SyntaxTree.PortType) THEN
  8489. InitOperand(result,ModeReference);
  8490. GetCodeSectionNameForSymbol(x,name);
  8491. symbol := NewSection(module.allSections, Sections.ConstSection, name,x,commentPrintout # NIL);
  8492. IntermediateCode.InitAddress(result.op, addressType, symbol.name, GetFingerprint(symbol.symbol),0);
  8493. RETURN
  8494. ELSE
  8495. InitOperand(result, ModeValue);
  8496. parameter := x.ownerType(SyntaxTree.CellType).firstParameter;
  8497. adr := 0;
  8498. WHILE parameter # x DO
  8499. parameterType := parameter.type;
  8500. inc := 1;
  8501. WHILE SemanticChecker.IsStaticArray(parameterType, parameterType, len) DO inc := inc * len END;
  8502. INC(adr, inc);
  8503. parameter := parameter.nextParameter
  8504. END;
  8505. IntermediateCode.InitImmediate(result.op,addressType,adr);
  8506. RETURN
  8507. END;
  8508. ELSIF ~backend.cellsAreObjects & (currentScope IS SyntaxTree.ProcedureScope) & (currentScope(SyntaxTree.ProcedureScope).ownerProcedure.isConstructor) & (currentScope.outerScope IS SyntaxTree.CellScope) THEN
  8509. InitOperand(result,ModeReference);
  8510. GetCodeSectionNameForSymbol(x,name);
  8511. symbol := NewSection(module.allSections, Sections.VarSection, name,x,commentPrintout # NIL);
  8512. IntermediateCode.InitAddress(result.op, addressType, symbol.name, GetFingerprint(symbol.symbol), 0);
  8513. RETURN
  8514. ELSE
  8515. GetBaseRegister(basereg,currentScope,x.scope);
  8516. InitOperand(result,ModeReference);
  8517. result.op := basereg;
  8518. END;
  8519. IF IsOpenArray(type) THEN
  8520. result.tag := basereg;
  8521. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8522. IntermediateCode.MakeMemory(result.op,addressType);
  8523. IF Global.IsOberonProcedure(x.ownerType) THEN
  8524. IntermediateCode.AddOffset(result.tag,ToMemoryUnits(system,x.offsetInBits+addressType.sizeInBits));
  8525. UseIntermediateOperand(result.tag);
  8526. ELSE
  8527. IntermediateCode.InitImmediate(result.tag,addressType,MAX(LONGINT)); (* non-Oberon procedure => unbounded array length *)
  8528. END;
  8529. ELSIF IsStaticArray(type) & (x.kind = SyntaxTree.ValueParameter) THEN
  8530. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8531. ELSIF IsStaticArray(type) THEN
  8532. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8533. IntermediateCode.MakeMemory(result.op,addressType);
  8534. IntermediateCode.InitImmediate(result.tag,addressType,type(SyntaxTree.ArrayType).staticLength);
  8535. ELSIF type IS SyntaxTree.MathArrayType THEN
  8536. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8537. WITH type: SyntaxTree.MathArrayType DO
  8538. IF (x.kind = SyntaxTree.ValueParameter) OR (x.kind = SyntaxTree.ConstParameter) THEN
  8539. IF type.form = SyntaxTree.Tensor THEN
  8540. ELSIF type.form = SyntaxTree.Open THEN
  8541. result.tag := result.op;
  8542. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,MathAdrOffset*addressType.sizeInBits));
  8543. IntermediateCode.MakeMemory(result.op,addressType);
  8544. UseIntermediateOperand(result.tag);
  8545. ELSIF type.form = SyntaxTree.Static THEN
  8546. IF x.kind = SyntaxTree.ConstParameter THEN
  8547. IntermediateCode.MakeMemory(result.op,addressType);
  8548. END;
  8549. ELSE HALT(100)
  8550. END;
  8551. ELSIF x.kind = SyntaxTree.VarParameter THEN
  8552. IF type.form = SyntaxTree.Tensor THEN
  8553. ToMemory(result.op,addressType,0);
  8554. ELSIF type.form = SyntaxTree.Open THEN
  8555. MakeMemory(mem, result.op, addressType, 0); (* offset already added above *)
  8556. ReuseCopy(result.tag, mem);
  8557. ReleaseIntermediateOperand(mem);
  8558. ReleaseIntermediateOperand(result.op);
  8559. MakeMemory(result.op, result.tag, addressType, ToMemoryUnits(system,MathAdrOffset*addressType.sizeInBits));
  8560. ELSIF type.form = SyntaxTree.Static THEN
  8561. IntermediateCode.MakeMemory(result.op,addressType);
  8562. ELSE HALT(100)
  8563. END;
  8564. ELSE HALT(100)
  8565. END;
  8566. END;
  8567. ELSIF (x.kind = SyntaxTree.VarParameter) OR (x.kind = SyntaxTree.ConstParameter) & (type IS SyntaxTree.RecordType) THEN
  8568. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8569. IntermediateCode.MakeMemory(result.op,addressType);
  8570. ELSIF (x.kind = SyntaxTree.ValueParameter) OR (x.kind = SyntaxTree.ConstParameter) THEN
  8571. IntermediateCode.AddOffset(result.op,ToMemoryUnits(system,x.offsetInBits));
  8572. END;
  8573. IF conditional & (x.type.resolved IS SyntaxTree.BooleanType) THEN
  8574. ValueToCondition(result);
  8575. ELSIF type IS SyntaxTree.ProcedureType THEN
  8576. ReleaseIntermediateOperand(result.tag);
  8577. IF type(SyntaxTree.ProcedureType).isDelegate THEN
  8578. IF x.kind = SyntaxTree.VarParameter THEN
  8579. ReuseCopy(result.tag,result.op);
  8580. IntermediateCode.AddOffset(result.tag,ToMemoryUnits(system,system.addressSize));
  8581. IntermediateCode.MakeMemory(result.tag,addressType);
  8582. ELSE
  8583. IntermediateCode.InitMemory(result.tag,addressType,result.op,ToMemoryUnits(system,system.addressSize));
  8584. UseIntermediateOperand(result.tag);
  8585. END;
  8586. ELSE
  8587. result.tag := nil;
  8588. END;
  8589. (* tag for pointer type computed not here but during dereferencing *)
  8590. ELSIF (type IS SyntaxTree.RecordType) & (type(SyntaxTree.RecordType).pointerType= NIL) & (x.kind IN {SyntaxTree.VarParameter, SyntaxTree.ConstParameter}) THEN
  8591. ReleaseIntermediateOperand(result.tag);
  8592. result.tag := basereg;
  8593. IntermediateCode.AddOffset(result.tag,ToMemoryUnits(system,x.offsetInBits+system.addressSize));
  8594. IntermediateCode.MakeMemory(result.tag,addressType);
  8595. UseIntermediateOperand(result.tag);
  8596. ELSIF (type IS SyntaxTree.RecordType) & (type(SyntaxTree.RecordType).pointerType= NIL) & (x.kind = SyntaxTree.ValueParameter) THEN
  8597. ReleaseIntermediateOperand(result.tag);
  8598. result.tag := TypeDescriptorAdr(type);
  8599. IF ~newObjectFile THEN
  8600. IntermediateCode.MakeMemory(result.tag,addressType);
  8601. END;
  8602. UseIntermediateOperand(result.tag);
  8603. END;
  8604. IF Trace THEN TraceExit("VisitParameter") END;
  8605. END VisitParameter;
  8606. PROCEDURE DynamicCallOperand(VAR operand: Operand; x: SyntaxTree.Procedure);
  8607. VAR tag,reg,tmp: IntermediateCode.Operand; offset: LONGINT; recordType: SyntaxTree.RecordType; name, stackFrame: Basic.SegmentedName;
  8608. BEGIN
  8609. IF Trace THEN TraceEnter("DynamicCallOperand") END;
  8610. (* left.p: left already emitted *)
  8611. tag := result.op; (* value of pointer to left *)
  8612. (* get type desc *)
  8613. tmp := result.tag;
  8614. IntermediateCode.MakeMemory(tmp,addressType);
  8615. (* get method adr *)
  8616. Reuse1(reg,tmp);
  8617. ReleaseIntermediateOperand(tmp);
  8618. IF backend.cooperative THEN
  8619. recordType := x.scope(SyntaxTree.RecordScope).ownerRecord;
  8620. WHILE recordType.baseType # NIL DO
  8621. recordType := recordType.GetBaseRecord ();
  8622. END;
  8623. GetRecordTypeName (recordType,name);
  8624. Basic.ToSegmentedName ("BaseTypes.StackFrame",stackFrame);
  8625. IF (name = stackFrame) OR HasExplicitTraceMethod (recordType) THEN
  8626. offset := 0;
  8627. ELSE
  8628. offset := 2;
  8629. END;
  8630. Emit(Add(position,reg,tmp,IntermediateCode.Immediate(addressType, ToMemoryUnits(system,system.addressSize *(meta.MethodTableOffset + x.methodNumber + offset)))));
  8631. ELSE
  8632. Emit(Add(position,reg,tmp,IntermediateCode.Immediate(addressType, ToMemoryUnits(system,system.addressSize *(meta.MethodTableOffset - x.methodNumber)))));
  8633. END;
  8634. InitOperand(operand,ModeReference);
  8635. (* then operand.op contains the method adr and operand.tag contains the potential self pointer value *)
  8636. operand.op := reg;
  8637. operand.tag := tag;
  8638. IF Trace THEN TraceExit("DynamicCallOperand") END;
  8639. END DynamicCallOperand;
  8640. PROCEDURE StaticCallOperand(VAR operand: Operand; x: SyntaxTree.Procedure);
  8641. VAR source: IntermediateCode.Section; tag,reg: IntermediateCode.Operand; name:Basic.SegmentedName; sectionType: SHORTINT;
  8642. binary: BinaryCode.Section; bits: SyntaxTree.BinaryCode;
  8643. BEGIN
  8644. IF Trace THEN TraceEnter("StaticCallOperand") END;
  8645. IF x.type(SyntaxTree.ProcedureType).isDelegate THEN
  8646. tag := operand.op;
  8647. ReleaseIntermediateOperand(operand.tag);
  8648. ELSE tag := nil
  8649. END;
  8650. IF x.isInline THEN
  8651. sectionType := Sections.InlineCodeSection;
  8652. ELSE
  8653. sectionType := Sections.CodeSection;
  8654. END;
  8655. IF x.externalName # NIL THEN
  8656. Basic.ToSegmentedName(x.externalName^, name);
  8657. IntermediateCode.InitAddress(reg, addressType, name, 0, 0);
  8658. ELSE
  8659. GetCodeSectionNameForSymbol(x, name);
  8660. IF (x.scope.ownerModule = module.module) THEN
  8661. source := NewSection(module.allSections, sectionType, name,x,commentPrintout # NIL);
  8662. ELSIF (sectionType = Sections.InlineCodeSection) & (x.procedureScope.body.code.sourceCode # NIL) THEN
  8663. source := NewSection(module.allSections, sectionType, name,x,commentPrintout # NIL);
  8664. IF source.pc = 0 THEN (* no code yet *)
  8665. source.Emit(Asm(position,x.procedureScope.body.code.sourceCode,NIL,NIL));
  8666. END;
  8667. ELSIF (sectionType = Sections.InlineCodeSection) & (x.procedureScope.body.code.inlineCode # NIL) THEN
  8668. bits := x.procedureScope.body.code.inlineCode;
  8669. source := NewSection(module.allSections, sectionType, name, x, commentPrintout # NIL);
  8670. binary := BinaryCode.NewBinarySection(source.type, source.priority, system.codeUnit, name, FALSE, FALSE);
  8671. binary.CopyBits(bits, 0, bits.GetSize());
  8672. source.SetResolved(binary);
  8673. ELSE
  8674. source := NewSection(module.importedSections, sectionType, name,x,commentPrintout # NIL);
  8675. END;
  8676. IntermediateCode.InitAddress(reg, addressType, source.name , GetFingerprint(source.symbol), 0);
  8677. END;
  8678. InitOperand(operand,ModeValue);
  8679. operand.op := reg;
  8680. operand.tag := tag;
  8681. IF Trace THEN TraceExit("StaticCallOperand") END;
  8682. END StaticCallOperand;
  8683. PROCEDURE VisitProcedure(x: SyntaxTree.Procedure);
  8684. (* handle expressions of the form designator.procedure or procedure *)
  8685. BEGIN
  8686. IF Trace THEN TraceEnter("VisitProcedure") END;
  8687. IF (x.type(SyntaxTree.ProcedureType).isDelegate) & ~SemanticChecker.IsStaticProcedure(x) THEN
  8688. DynamicCallOperand(result,x);
  8689. ELSIF x.isInline THEN
  8690. StaticCallOperand(result,x);
  8691. ELSE
  8692. StaticCallOperand(result,x);
  8693. END;
  8694. IF Trace THEN TraceExit("VisitProcedure") END;
  8695. END VisitProcedure;
  8696. PROCEDURE VisitOperator(x: SyntaxTree.Operator);
  8697. BEGIN
  8698. VisitProcedure(x);
  8699. END VisitOperator;
  8700. (** statements *)
  8701. PROCEDURE VisitProcedureCallStatement(x: SyntaxTree.ProcedureCallStatement);
  8702. BEGIN
  8703. IF Trace THEN TraceEnter("VisitProcedureCallStatement") END;
  8704. Expression(x.call);
  8705. IF (x.call.type # NIL) THEN (* WINAPI call: procedure returning unused value *)
  8706. ReleaseOperand(result)
  8707. END;
  8708. IF Trace THEN TraceExit("VisitProcedureCallStatement") END;
  8709. END VisitProcedureCallStatement;
  8710. PROCEDURE AssignMathArray(left,right: SyntaxTree.Expression);
  8711. VAR leftType, rightType: SyntaxTree.MathArrayType;
  8712. leftBase, rightBase: SyntaxTree.Type;
  8713. procedureName,s: SyntaxTree.IdentifierString;
  8714. arrayBase: SyntaxTree.Module; saved: RegisterEntry; procedure: SyntaxTree.Procedure; parameter: SyntaxTree.Parameter;
  8715. size: LONGINT; rightKind: LONGINT;
  8716. dummy: IntermediateCode.Operand;
  8717. CONST moduleName = "FoxArrayBase";
  8718. PROCEDURE OpenArray(from: SyntaxTree.MathArrayType): SyntaxTree.MathArrayType;
  8719. VAR result: SyntaxTree.MathArrayType; base: SyntaxTree.Type;
  8720. BEGIN
  8721. base := from(SyntaxTree.MathArrayType).arrayBase.resolved;
  8722. IF base IS SyntaxTree.MathArrayType THEN
  8723. base := OpenArray(base(SyntaxTree.MathArrayType));
  8724. END;
  8725. result := SyntaxTree.NewMathArrayType(left.position,currentScope,SyntaxTree.Open);
  8726. result.SetArrayBase(base);
  8727. RETURN result
  8728. END OpenArray;
  8729. BEGIN
  8730. IF AddImport(moduleName,arrayBase,TRUE) THEN
  8731. SaveRegisters();ReleaseUsedRegisters(saved);
  8732. leftType := left.type.resolved(SyntaxTree.MathArrayType);
  8733. rightType := right.type.resolved(SyntaxTree.MathArrayType);
  8734. leftBase := SemanticChecker.ArrayBase(leftType,MAX(LONGINT));
  8735. rightBase := SemanticChecker.ArrayBase(rightType,MAX(LONGINT));
  8736. ASSERT(leftBase.resolved.SameType(rightBase.resolved));
  8737. IF leftType.form = SyntaxTree.Tensor THEN
  8738. procedureName := "CopyTensor"; rightKind := SyntaxTree.ValueParameter;
  8739. ELSIF leftType.form = SyntaxTree.Open THEN
  8740. procedureName := "CopyArray"; rightKind := SyntaxTree.VarParameter;
  8741. ELSIF leftType.form = SyntaxTree.Static THEN
  8742. procedureName := "CopyArray";rightKind := SyntaxTree.VarParameter;
  8743. leftType := OpenArray(leftType); (* necessary since copy procedure presumes an open array *)
  8744. END;
  8745. procedure := arrayBase.moduleScope.FindProcedure(SyntaxTree.NewIdentifier(procedureName));
  8746. IF procedure = NIL THEN
  8747. s := "Instruction not supported on target, emulation procedure ";
  8748. Strings.Append(s,moduleName);
  8749. Strings.Append(s,".");
  8750. Strings.Append(s,procedureName);
  8751. Strings.Append(s," not present");
  8752. Error(position,s);
  8753. ELSE
  8754. parameter := SyntaxTree.NewParameter(left.position,procedure.type(SyntaxTree.ProcedureType),SyntaxTree.NewIdentifier("temp"), SyntaxTree.VarParameter);
  8755. parameter.SetType(leftType);
  8756. parameter.SetAccess(SyntaxTree.Internal);
  8757. PushParameter(left,parameter,SyntaxTree.OberonCallingConvention, FALSE, dummy,-1);
  8758. parameter.SetKind(rightKind);
  8759. PushParameter(right,parameter,SyntaxTree.OberonCallingConvention, FALSE, dummy,-1);
  8760. size := ToMemoryUnits(system,system.SizeOf(rightBase));
  8761. Emit(Push(position,IntermediateCode.Immediate(int32,size)));
  8762. StaticCallOperand(result,procedure);
  8763. Emit(Call(position,result.op,ProcedureParametersSize(system,procedure)));
  8764. ReleaseOperand(result);
  8765. END;
  8766. RestoreRegisters(saved);
  8767. END;
  8768. END AssignMathArray;
  8769. VAR modifyAssignmentCounter := 0: LONGINT;
  8770. PROCEDURE ModifyAssignments(CONST value: IntermediateCode.Operand);
  8771. VAR processor,mem,dst: IntermediateCode.Operand;
  8772. BEGIN
  8773. IF value.intValue = true.intValue THEN
  8774. INC(modifyAssignmentCounter);
  8775. IF (modifyAssignmentCounter > 1) THEN RETURN END;
  8776. modifyAssignmentsPC := section.pc;
  8777. ELSE
  8778. DEC(modifyAssignmentCounter);
  8779. IF (modifyAssignmentCounter > 0) THEN RETURN END;
  8780. INC(statCoopModifyAssignments , section.pc - modifyAssignmentsPC);
  8781. END;
  8782. IntermediateCode.InitMemory (processor, IntermediateCode.SignedIntegerType(addressType.sizeInBits), ap, ToMemoryUnits(system, ProcessorOffset * addressType.sizeInBits));
  8783. dst := NewRegisterOperand (addressType);
  8784. Emit(Mov(position,dst, processor));
  8785. IntermediateCode.InitMemory(mem,bool, dst, 0);
  8786. Emit(Mov(position,mem, value));
  8787. ReleaseIntermediateOperand(dst);
  8788. END ModifyAssignments;
  8789. PROCEDURE CopySize(left: SyntaxTree.Expression): IntermediateCode.Operand;
  8790. VAR type: SyntaxTree.Type; procedureType: SyntaxTree.ProcedureType; parameter: SyntaxTree.Parameter;
  8791. BEGIN
  8792. type := left.type.resolved;
  8793. IF (type IS SyntaxTree.RecordType) & (left IS SyntaxTree.SymbolDesignator) & (left(SyntaxTree.SymbolDesignator).symbol IS SyntaxTree.Parameter) THEN
  8794. parameter := left(SyntaxTree.SymbolDesignator).symbol(SyntaxTree.Parameter);
  8795. procedureType := parameter.ownerType.resolved(SyntaxTree.ProcedureType);
  8796. IF procedureType.returnParameter = parameter THEN
  8797. RETURN IntermediateCode.Memory(addressType, fp, ToMemoryUnits(system, parameter.offsetInBits + system.addressSize));
  8798. END;
  8799. END;
  8800. RETURN IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.SizeOf(type)));
  8801. END CopySize;
  8802. PROCEDURE Assign(left,right: SyntaxTree.Expression);
  8803. VAR
  8804. leftO, rightO: Operand;
  8805. mem, sizeOp: IntermediateCode.Operand;
  8806. leftType, rightType, componentType: SyntaxTree.Type;
  8807. size: LONGINT;
  8808. parameters: SyntaxTree.ExpressionList;
  8809. procedure: SyntaxTree.Procedure;
  8810. call: SyntaxTree.ProcedureCallDesignator;
  8811. designator: SyntaxTree.Designator;
  8812. PROCEDURE CanPassAsResultParameter(right: SyntaxTree.Expression): BOOLEAN;
  8813. VAR procedureType: SyntaxTree.ProcedureType;
  8814. BEGIN
  8815. IF ReturnedAsParameter(right.type) THEN
  8816. IF right IS SyntaxTree.ProcedureCallDesignator THEN
  8817. procedureType := right(SyntaxTree.ProcedureCallDesignator).left.type.resolved(SyntaxTree.ProcedureType);
  8818. RETURN procedureType.callingConvention = SyntaxTree.OberonCallingConvention
  8819. ELSIF right IS SyntaxTree.BuiltinCallDesignator THEN
  8820. WITH right: SyntaxTree.BuiltinCallDesignator DO
  8821. IF right.id = Global.Reshape THEN RETURN TRUE
  8822. END;
  8823. END;
  8824. END;
  8825. END;
  8826. RETURN FALSE
  8827. END CanPassAsResultParameter;
  8828. BEGIN
  8829. ASSERT(left.type # NIL); ASSERT(right.type # NIL);
  8830. leftType := left.type.resolved; rightType:= right.type.resolved;
  8831. IF backend.cooperative & left.NeedsTrace() THEN
  8832. ModifyAssignments(true);
  8833. IF (leftType IS SyntaxTree.RecordType) OR IsStaticArray(leftType) THEN
  8834. Designate(right, rightO);
  8835. Designate(left, leftO);
  8836. ASSERT(leftO.mode = ModeReference);
  8837. TransferToRegister(leftO.op, leftO.op);
  8838. TransferToRegister(rightO.op, rightO.op);
  8839. Emit(Push(position, leftO.op));
  8840. Emit(Push(position, rightO.op));
  8841. CallAssignMethod(leftO.op, rightO.op, left.type);
  8842. Emit(Pop(position, rightO.op));
  8843. Emit(Pop(position, leftO.op));
  8844. sizeOp := CopySize(left);
  8845. Emit(Copy(position,leftO.op,rightO.op,sizeOp));
  8846. ReleaseOperand(leftO);
  8847. ReleaseOperand(rightO);
  8848. ELSE
  8849. Evaluate(right,rightO);
  8850. Designate(left,leftO);
  8851. ASSERT(leftO.mode = ModeReference);
  8852. IF (leftType IS SyntaxTree.ProcedureType) THEN
  8853. (* copy procedure address first *)
  8854. MakeMemory(mem,leftO.op,addressType,0);
  8855. Emit(Mov(position,mem,rightO.op));
  8856. ReleaseIntermediateOperand(mem);
  8857. (* copy pointer address *)
  8858. IntermediateCode.MakeAddress(leftO.tag, addressType);
  8859. CallAssignPointer(leftO.tag, rightO.tag);
  8860. ELSE
  8861. ASSERT(system.SizeOf(left.type) = system.addressSize);
  8862. CallAssignPointer(leftO.op, rightO.op);
  8863. END;
  8864. ReleaseOperand(leftO);
  8865. ReleaseOperand(rightO);
  8866. END;
  8867. ModifyAssignments(false);
  8868. RETURN;
  8869. END;
  8870. IF CanPassAsResultParameter(right) THEN
  8871. procedureResultDesignator := left(SyntaxTree.Designator);
  8872. Expression(right);
  8873. procedureResultDesignator := NIL;
  8874. ELSIF (right IS SyntaxTree.UnaryExpression) & (right(SyntaxTree.UnaryExpression).operator = Scanner.Alias) THEN
  8875. (* left <-- ALIAS OF right: zerocopy *)
  8876. IF GetRuntimeProcedure("FoxArrayBase","ZeroCopy",procedure,TRUE) THEN
  8877. designator := SyntaxTree.NewSymbolDesignator(Diagnostics.Invalid, NIL, procedure);
  8878. designator.SetType(procedure.type);
  8879. parameters := SyntaxTree.NewExpressionList(); parameters.AddExpression(right(SyntaxTree.UnaryExpression).left); parameters.AddExpression(left);
  8880. call := SyntaxTree.NewProcedureCallDesignator(position,designator(SyntaxTree.Designator),parameters);
  8881. VisitProcedureCallDesignator(call(SyntaxTree.ProcedureCallDesignator));
  8882. END;
  8883. ELSIF leftType IS SyntaxTree.RangeType THEN
  8884. (* LHS is of array range type *)
  8885. ASSERT(rightType IS SyntaxTree.RangeType); (* ensured by the checker *)
  8886. Evaluate(right, rightO);
  8887. Designate(left, leftO);(* The order is crucial. Do not reorder emission of left and right *)
  8888. (* first *)
  8889. MakeMemory(mem, leftO.op, IntermediateCode.GetType(system, system.longintType), 0);
  8890. Emit(Mov(position,mem, rightO.op));
  8891. ReleaseIntermediateOperand(mem);
  8892. (* last *)
  8893. MakeMemory(mem, leftO.op, IntermediateCode.GetType(system, system.longintType), ToMemoryUnits(system, system.SizeOf(system.longintType)));
  8894. Emit(Mov(position,mem, rightO.tag));
  8895. ReleaseIntermediateOperand(mem);
  8896. (* step *)
  8897. MakeMemory(mem, leftO.op, IntermediateCode.GetType(system, system.longintType), 2 * ToMemoryUnits(system, system.SizeOf(system.longintType)));
  8898. Emit(Mov(position,mem, rightO.extra));
  8899. ReleaseIntermediateOperand(mem);
  8900. ReleaseOperand(rightO);
  8901. ReleaseOperand(leftO)
  8902. ELSIF leftType IS SyntaxTree.ComplexType THEN
  8903. ASSERT(leftType.SameType(rightType)); (* ensured by the checker *)
  8904. Evaluate(right, rightO);
  8905. Designate(left, leftO); (* The order is crucial. Do not reorder emission of left and right *)
  8906. componentType := leftType(SyntaxTree.ComplexType).componentType;
  8907. (* real part *)
  8908. MakeMemory(mem, leftO.op, IntermediateCode.GetType(system, componentType), 0);
  8909. Emit(Mov(position,mem, rightO.op));
  8910. ReleaseIntermediateOperand(mem);
  8911. (* imaginary part *)
  8912. MakeMemory(mem, leftO.op, IntermediateCode.GetType(system, componentType), ToMemoryUnits(system, system.SizeOf(componentType)));
  8913. Emit(Mov(position,mem, rightO.tag));
  8914. ReleaseIntermediateOperand(mem);
  8915. ReleaseOperand(rightO);
  8916. ReleaseOperand(leftO)
  8917. ELSIF (leftType IS SyntaxTree.BasicType) OR (leftType IS SyntaxTree.PointerType) OR (leftType IS SyntaxTree.EnumerationType)
  8918. OR (leftType IS SyntaxTree.PortType) THEN
  8919. (* rightO := leftO;*)
  8920. Evaluate(right,rightO);
  8921. (* DO NOT REORDER EMISSION OF LEFT AND RIGHT OPERAND *)
  8922. Designate(left,leftO);
  8923. IF leftO.mode = ModeReference THEN
  8924. MakeMemory(mem,leftO.op,IntermediateCode.GetType(system,left.type),0);
  8925. destination := mem;
  8926. ELSE
  8927. destination := leftO.op;
  8928. END;
  8929. ReleaseOperand(leftO);
  8930. IF destination.mode # IntermediateCode.Undefined THEN
  8931. Emit(Mov(position,destination,rightO.op));
  8932. END;
  8933. ReleaseOperand(rightO);
  8934. ReleaseIntermediateOperand(mem);
  8935. IntermediateCode.InitOperand(destination);
  8936. ELSIF (leftType IS SyntaxTree.ProcedureType) THEN
  8937. Evaluate(right,rightO);
  8938. Designate(left,leftO);
  8939. MakeMemory(mem,leftO.op,addressType,0);
  8940. Emit(Mov(position,mem,rightO.op));
  8941. ReleaseIntermediateOperand(mem);
  8942. IF leftType(SyntaxTree.ProcedureType).isDelegate THEN
  8943. (* delegate *)
  8944. (*
  8945. MakeMemory(leftO.tag,leftO.tag,addressType); no! is already memory
  8946. *)
  8947. Emit(Mov(position,leftO.tag,rightO.tag));
  8948. END;
  8949. ReleaseOperand(leftO);
  8950. ReleaseOperand(rightO);
  8951. ELSIF (leftType IS SyntaxTree.RecordType) THEN
  8952. Designate(right,rightO);
  8953. Designate(left,leftO);
  8954. sizeOp := CopySize(left);
  8955. Emit(Copy(position,leftO.op,rightO.op,sizeOp));
  8956. ReleaseOperand(leftO); ReleaseOperand(rightO);
  8957. ELSIF (leftType IS SyntaxTree.ArrayType) THEN
  8958. IF (rightType IS SyntaxTree.StringType) THEN
  8959. CopyString(left,right);
  8960. ELSIF ((rightType IS SyntaxTree.ArrayType) & (rightType(SyntaxTree.ArrayType).staticLength # 0) OR (rightType IS SyntaxTree.MathArrayType) & (rightType(SyntaxTree.MathArrayType).staticLength # 0)) & (leftType(SyntaxTree.ArrayType).staticLength # 0) THEN
  8961. Designate(right,rightO);
  8962. Designate(left,leftO);
  8963. size := ToMemoryUnits(system,system.SizeOf(rightType));
  8964. Emit(Copy(position,leftO.op, rightO.op, IntermediateCode.Immediate(addressType,size)));
  8965. ReleaseOperand(leftO); ReleaseOperand(rightO);
  8966. ELSE
  8967. HALT(201)
  8968. END;
  8969. ELSIF (leftType IS SyntaxTree.MathArrayType) THEN
  8970. AssignMathArray(left,right);
  8971. ELSE
  8972. HALT(200);
  8973. END;
  8974. END Assign;
  8975. PROCEDURE VisitAssignment(x: SyntaxTree.Assignment);
  8976. BEGIN
  8977. IF Trace THEN TraceEnter("VisitAssignment") END;
  8978. Assign(x.left,x.right);
  8979. IF Trace THEN TraceExit("VisitAssignment") END;
  8980. END VisitAssignment;
  8981. PROCEDURE EmitCooperativeSwitch;
  8982. VAR quantum, offset, zero: IntermediateCode.Operand; skip: Label; pc: LONGINT;
  8983. BEGIN
  8984. ASSERT (cooperativeSwitches);
  8985. pc := section.pc;
  8986. IF lastSwitchPC = section.pc THEN RETURN END;
  8987. IntermediateCode.InitMemory (quantum, IntermediateCode.SignedIntegerType(addressType.sizeInBits), ap, ToMemoryUnits(system, QuantumOffset * addressType.sizeInBits));
  8988. IntermediateCode.InitImmediate(offset, quantum.type, section.pc - lastSwitchPC); IntermediateCode.InitImmediate(zero, quantum.type, 0);
  8989. Emit(Sub(position,quantum,quantum, offset)); skip := NewLabel(); BrgeL(skip, quantum, zero);
  8990. lastSwitchPC := section.pc; CallThis(position,"Activities","Switch",0); SetLabel(skip);
  8991. INC(statCoopSwitch, section.pc - pc);
  8992. END EmitCooperativeSwitch;
  8993. PROCEDURE VisitCommunicationStatement(communication: SyntaxTree.CommunicationStatement);
  8994. VAR p0,p1,tmp: SyntaxTree.Expression; s0,s1: Operand; size: LONGINT;
  8995. BEGIN
  8996. p0 := communication.left; p1 := communication.right;
  8997. IF (communication.op = Scanner.ExclamationMark) OR (communication.op = Scanner.LessLess) & (communication.left.type.resolved IS SyntaxTree.PortType) THEN
  8998. Evaluate(p0,s0);
  8999. Evaluate(p1,s1);
  9000. size := ToMemoryUnits(system,system.SizeOf(p1.type));
  9001. Emit(Push(position,s0.op));
  9002. Emit(Push(position,s1.op));
  9003. (*
  9004. Emit(Push(position,IntermediateCode.Immediate(addressType,size)));
  9005. *)
  9006. IF ~backend.cellsAreObjects THEN
  9007. IF size > ToMemoryUnits(system, system.addressSize) THEN Error(p1.position,"send not implemented for complex data types") END;
  9008. END;
  9009. ReleaseOperand(s0);
  9010. ReleaseOperand(s1);
  9011. IF backend.cellsAreObjects THEN
  9012. CallThis(position,"ActiveCellsRuntime","Send",2);
  9013. ELSE
  9014. CallThis(position,ChannelModuleName,"Send",2);
  9015. END;
  9016. (* ----- RECEIVE ------*)
  9017. ELSE
  9018. IF (communication.op = Scanner.LessLess) & (communication.right.type.resolved IS SyntaxTree.PortType) THEN
  9019. tmp := p0; p0 := p1; p1 := tmp;
  9020. END;
  9021. Evaluate(p0,s0);
  9022. Emit(Push(position,s0.op));
  9023. Designate(p1,s1);
  9024. size := ToMemoryUnits(system,system.SizeOf(p1.type));
  9025. Emit(Push(position,s1.op));
  9026. (*
  9027. Emit(Push(position,IntermediateCode.Immediate(addressType,size)));
  9028. *)
  9029. IF ~backend.cellsAreObjects THEN
  9030. IF size > ToMemoryUnits(system, system.addressSize) THEN Error(p1.position,"receive not implemented for complex data types") END;
  9031. END;
  9032. ReleaseOperand(s0);
  9033. ReleaseOperand(s1);
  9034. IF backend.cellsAreObjects THEN
  9035. CallThis(position,"ActiveCellsRuntime","Receive",2);
  9036. ELSE
  9037. CallThis(position,ChannelModuleName,"Receive",2)
  9038. END;
  9039. END;
  9040. END VisitCommunicationStatement;
  9041. PROCEDURE VisitIfStatement(x: SyntaxTree.IfStatement);
  9042. VAR end: Label; i,elsifs: LONGINT; elsif: SyntaxTree.IfPart; escape: BOOLEAN;
  9043. PROCEDURE IfPart(if: SyntaxTree.IfPart);
  9044. VAR true, false: Label; condition, value: BOOLEAN;
  9045. BEGIN
  9046. condition := ~SemanticChecker.IsBooleanValue(if.condition, value);
  9047. IF condition THEN
  9048. true := NewLabel();
  9049. false := NewLabel();
  9050. Condition(if.condition,true,false);
  9051. SetLabel(true);
  9052. StatementSequence(if.statements);
  9053. BrL(end);
  9054. SetLabel(false);
  9055. ELSE
  9056. IF value THEN (* always true *)
  9057. escape := TRUE;
  9058. StatementSequence(if.statements);
  9059. (* no branch necessary -- rest skipped *)
  9060. END;
  9061. END;
  9062. END IfPart;
  9063. BEGIN
  9064. IF Trace THEN TraceEnter("VisitIfStatement") END;
  9065. end := NewLabel();
  9066. elsifs := x.ElsifParts();
  9067. IfPart(x.ifPart);
  9068. FOR i := 0 TO elsifs-1 DO
  9069. IF ~escape THEN
  9070. elsif := x.GetElsifPart(i);
  9071. IfPart(elsif);
  9072. END;
  9073. END;
  9074. IF (x.elsePart # NIL) & ~escape THEN
  9075. StatementSequence(x.elsePart);
  9076. END;
  9077. SetLabel(end);
  9078. IF Trace THEN TraceExit("VisitIfStatement") END;
  9079. END VisitIfStatement;
  9080. PROCEDURE WithPart(x: SyntaxTree.WithPart; VAR falseL, endL: Label);
  9081. VAR trueL: Label; res: Operand; recordType: SyntaxTree.RecordType;
  9082. BEGIN
  9083. (*IF x.variable.type.resolved = x.type.resolved THEN
  9084. (* always true, do nothing *)
  9085. ELSE*)
  9086. Designate(x.variable,res);
  9087. IF IsPointerToRecord(x.variable.type,recordType) THEN
  9088. Dereference(res,recordType,IsUnsafePointer(x.variable.type))
  9089. END;
  9090. trueL := NewLabel();
  9091. TypeTest(res.tag,x.type,trueL,falseL);
  9092. ReleaseOperand(res);
  9093. SetLabel(trueL);
  9094. StatementSequence(x.statements);
  9095. BrL(endL);
  9096. END WithPart;
  9097. PROCEDURE VisitWithStatement(x: SyntaxTree.WithStatement);
  9098. VAR endL,falseL: Label;i: LONGINT;
  9099. BEGIN
  9100. IF Trace THEN TraceEnter("VisitWithStatement") END;
  9101. endL := NewLabel();
  9102. FOR i := 0 TO x.WithParts()-1 DO
  9103. falseL := NewLabel();
  9104. WithPart(x.GetWithPart(i),falseL,endL);
  9105. SetLabel(falseL);
  9106. END;
  9107. IF x.elsePart = NIL THEN
  9108. IF ~isUnchecked THEN
  9109. EmitTrap(position,WithTrap);
  9110. END;
  9111. ELSE
  9112. StatementSequence(x.elsePart)
  9113. END;
  9114. SetLabel(endL);
  9115. IF Trace THEN TraceExit("VisitWithStatement") END;
  9116. END VisitWithStatement;
  9117. PROCEDURE VisitCaseStatement(x: SyntaxTree.CaseStatement);
  9118. VAR var: Operand; jmp,res,op,tmp: IntermediateCode.Operand; j,i,size: LONGINT; part: SyntaxTree.CasePart; constant: SyntaxTree.CaseConstant;
  9119. out,else: Label; label: Label;
  9120. fixups: POINTER TO ARRAY OF Label; section: IntermediateCode.Section; name: Basic.SegmentedName; string: ARRAY 32 OF CHAR;
  9121. symbol: SyntaxTree.Symbol;
  9122. BEGIN
  9123. (*! split case statement into if-elsif statements for large case label lists *)
  9124. IF Trace THEN TraceEnter("VisitCaseStatement") END;
  9125. size := x.max-x.min+1;
  9126. IF (size<0) OR (size > 1024*1024) THEN Error(x.position,"implementation restriction: case table size too large"); RETURN
  9127. END;
  9128. Evaluate(x.variable,var);
  9129. ReuseCopy(tmp,var.op);
  9130. ReleaseIntermediateOperand(var.op);
  9131. var.op := tmp;
  9132. Emit(Sub(position,var.op,var.op,IntermediateCode.Immediate(IntermediateCode.GetType(system,x.variable.type),x.min)));
  9133. Convert(var.op,addressType);
  9134. size := x.max-x.min+1;
  9135. else := NewLabel();
  9136. BrgeL(else,var.op,IntermediateCode.Immediate(addressType,size));
  9137. (*
  9138. UniqueId(name,module.module,"case",caseId);
  9139. *)
  9140. string := "@case"; Basic.AppendNumber(string, caseId); INC(caseId);
  9141. Global.GetModuleSegmentedName(module.module, name);
  9142. Basic.SuffixSegmentedName(name,Basic.MakeString(string));
  9143. symbol := SyntaxTree.NewSymbol(name[1]);
  9144. symbol.SetScope(moduleScope);
  9145. NEW(fixups,size); FOR i := 0 TO size-1 DO fixups[i] := NIL END;
  9146. section := NewSection(module.allSections, Sections.ConstSection,name,SyntaxTree.NewSymbol(name[1]),commentPrintout # NIL);
  9147. section.isCaseTable := TRUE;
  9148. IntermediateCode.InitAddress(jmp, addressType, section.name, GetFingerprint(section.symbol), 0);
  9149. ReuseCopy(res,var.op);
  9150. ReleaseOperand(var);
  9151. Emit(Mul(position,res,res,IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.addressSize))));
  9152. Emit(Add(position,res,res,jmp));
  9153. IntermediateCode.MakeMemory(res,addressType);
  9154. Emit(Br(position,res));
  9155. ReleaseIntermediateOperand(res);
  9156. out := NewLabel();
  9157. FOR i := 0 TO x.caseParts.Length()-1 DO (* case parts *)
  9158. part := x.GetCasePart(i);
  9159. constant := part.firstConstant;
  9160. label := NewLabel();
  9161. SetLabel(label);
  9162. WHILE(constant # NIL) DO (* case labels for this case part *)
  9163. FOR j := constant.min TO constant.max DO
  9164. fixups[j-x.min] := label;
  9165. END;
  9166. constant := constant.next;
  9167. END;
  9168. StatementSequence(part.statements);
  9169. BrL(out);
  9170. END;
  9171. SetLabel(else);
  9172. FOR i := 0 TO size-1 DO
  9173. IF fixups[i] = NIL THEN
  9174. fixups[i] := else;
  9175. END;
  9176. END;
  9177. IF x.elsePart # NIL THEN
  9178. StatementSequence(x.elsePart);
  9179. ELSIF ~isUnchecked THEN
  9180. EmitTrap(position,CaseTrap);
  9181. END;
  9182. SetLabel(out);
  9183. FOR i := 0 TO size-1 DO
  9184. IntermediateCode.InitAddress(op, addressType, fixups[i].section.name, GetFingerprint(fixups[i].section.symbol), fixups[i].pc);
  9185. section.Emit(Data(position,op));
  9186. END;
  9187. IF Trace THEN TraceExit("VisitCaseStatement") END;
  9188. END VisitCaseStatement;
  9189. PROCEDURE VisitWhileStatement(x: SyntaxTree.WhileStatement);
  9190. VAR start: Label; true,false: Label;
  9191. BEGIN
  9192. IF Trace THEN TraceEnter("VisitWhileStatement") END;
  9193. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9194. start := NewLabel();
  9195. true := NewLabel();
  9196. false := NewLabel();
  9197. SetLabel(start);
  9198. Condition(x.condition,true,false);
  9199. SetLabel(true);
  9200. StatementSequence(x.statements);
  9201. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9202. BrL(start);
  9203. SetLabel(false);
  9204. IF Trace THEN TraceExit("VisitWhileStatement") END;
  9205. END VisitWhileStatement;
  9206. PROCEDURE VisitRepeatStatement(x: SyntaxTree.RepeatStatement);
  9207. VAR false,true: Label;
  9208. BEGIN
  9209. IF Trace THEN TraceEnter("VisitRepeatStatement") END;
  9210. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9211. true := NewLabel();
  9212. false := NewLabel();
  9213. SetLabel(false);
  9214. StatementSequence(x.statements);
  9215. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9216. Condition(x.condition,true,false);
  9217. SetLabel(true);
  9218. IF Trace THEN TraceExit("VisitRepeatStatement") END;
  9219. END VisitRepeatStatement;
  9220. PROCEDURE VisitForStatement(x: SyntaxTree.ForStatement);
  9221. VAR
  9222. binary: SyntaxTree.BinaryExpression; start,true,false : Label; cmp: LONGINT; by: HUGEINT;
  9223. temporaryVariable: SyntaxTree.Variable;
  9224. temporaryVariableDesignator : SyntaxTree.Designator;
  9225. BEGIN
  9226. IF Trace THEN TraceEnter("VisitForStatement") END;
  9227. true := NewLabel();
  9228. false := NewLabel();
  9229. start := NewLabel();
  9230. Assign(x.variable,x.from);
  9231. temporaryVariable := GetTemporaryVariable(x.variable.type, FALSE);
  9232. temporaryVariableDesignator := SyntaxTree.NewSymbolDesignator(SemanticChecker.InvalidPosition, NIL, temporaryVariable);
  9233. temporaryVariableDesignator.SetType(x.variable.type.resolved);
  9234. Assign(temporaryVariableDesignator,x.to);
  9235. IF x.by = NIL THEN by := 1 ELSE by := x.by.resolved(SyntaxTree.IntegerValue).hvalue END;
  9236. IF by > 0 THEN
  9237. cmp := Scanner.LessEqual
  9238. ELSE
  9239. cmp := Scanner.GreaterEqual
  9240. END;
  9241. binary := SyntaxTree.NewBinaryExpression(0,x.variable,temporaryVariableDesignator,cmp);
  9242. binary.SetType(system.booleanType);
  9243. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9244. SetLabel(start);
  9245. Condition(binary,true,false);
  9246. SetLabel(true);
  9247. StatementSequence(x.statements);
  9248. binary := SyntaxTree.NewBinaryExpression(0,x.variable,x.by,Scanner.Plus);
  9249. binary.SetType(x.variable.type);
  9250. Assign(x.variable,binary);
  9251. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9252. BrL(start);
  9253. SetLabel(false);
  9254. IF Trace THEN TraceExit("VisitForStatement") END;
  9255. END VisitForStatement;
  9256. PROCEDURE VisitExitableBlock(x: SyntaxTree.ExitableBlock);
  9257. VAR prevLoop: Label;
  9258. BEGIN
  9259. IF Trace THEN TraceEnter("VisitExitableBlock") END;
  9260. prevLoop := currentLoop;
  9261. currentLoop := NewLabel();
  9262. StatementSequence(x.statements);
  9263. SetLabel(currentLoop);
  9264. currentLoop := prevLoop;
  9265. IF Trace THEN TraceExit("VisitExitableBlock") END;
  9266. END VisitExitableBlock;
  9267. PROCEDURE VisitLoopStatement(x: SyntaxTree.LoopStatement);
  9268. VAR prevLoop,start: Label;
  9269. BEGIN
  9270. IF Trace THEN TraceEnter("VisitLoopStatement") END;
  9271. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9272. start := NewLabel();
  9273. prevLoop := currentLoop;
  9274. SetLabel(start);
  9275. currentLoop := NewLabel();
  9276. StatementSequence(x.statements);
  9277. IF cooperativeSwitches THEN EmitCooperativeSwitch END;
  9278. BrL(start);
  9279. SetLabel(currentLoop);
  9280. currentLoop := prevLoop;
  9281. IF Trace THEN TraceExit("VisitLoopStatement") END;
  9282. END VisitLoopStatement;
  9283. PROCEDURE VisitExitStatement(x: SyntaxTree.ExitStatement);
  9284. VAR outer: SyntaxTree.Statement;
  9285. BEGIN
  9286. IF Trace THEN TraceEnter("VisitExitStatement") END;
  9287. IF locked THEN (* r if we jump out of an exclusive block *)
  9288. outer := x.outer;
  9289. WHILE ~(outer IS SyntaxTree.ExitableBlock) & ~((outer IS SyntaxTree.StatementBlock) & outer(SyntaxTree.StatementBlock).isExclusive) DO
  9290. outer := outer.outer;
  9291. END;
  9292. IF ~(outer IS SyntaxTree.ExitableBlock) THEN
  9293. Lock(FALSE);
  9294. END;
  9295. END;
  9296. BrL(currentLoop);
  9297. IF Trace THEN TraceExit("VisitExitStatement") END;
  9298. END VisitExitStatement;
  9299. PROCEDURE VisitReturnStatement(x: SyntaxTree.ReturnStatement);
  9300. VAR
  9301. expression, parameterDesignator: SyntaxTree.Expression;
  9302. type, componentType: SyntaxTree.Type;
  9303. res, right: Operand;
  9304. left, mem, reg: IntermediateCode.Operand;
  9305. parameter: SyntaxTree.Parameter;
  9306. procedure: SyntaxTree.Procedure;
  9307. procedureType: SyntaxTree.ProcedureType;
  9308. returnTypeOffset: LONGINT;
  9309. delegate: BOOLEAN;
  9310. map: SymbolMap;
  9311. BEGIN
  9312. IF Trace THEN TraceEnter("VisitReturnStatement") END;
  9313. expression := x.returnValue;
  9314. procedure := currentScope(SyntaxTree.ProcedureScope).ownerProcedure;
  9315. procedureType := procedure.type(SyntaxTree.ProcedureType);
  9316. IF currentIsInline THEN
  9317. IF expression # NIL THEN
  9318. map := currentMapper.Get(NIL);
  9319. IF map # NIL THEN
  9320. Assign(map.to, expression);
  9321. END;
  9322. END;
  9323. BrL(currentInlineExit);
  9324. RETURN;
  9325. END;
  9326. IF expression # NIL THEN
  9327. type := expression.type.resolved;
  9328. IF (expression IS SyntaxTree.ResultDesignator) THEN
  9329. IF locked THEN Lock(FALSE) END;
  9330. IF ~backend.cooperative & profile THEN ProfilerEnterExit(numberProcedures,FALSE) END;
  9331. (* "RETURN RESULT" -> no assignment, it is assumed that result has been written to return parameter via structured return type *)
  9332. ELSIF (type IS SyntaxTree.BasicType) & ~(type IS SyntaxTree.RangeType) & ~(type IS SyntaxTree.ComplexType) & ~type.IsPointer() OR (procedureType.callingConvention # SyntaxTree.OberonCallingConvention) THEN
  9333. (* return without structured return parameter *)
  9334. Evaluate(expression,res);
  9335. delegate := (type IS SyntaxTree.ProcedureType) & (type(SyntaxTree.ProcedureType).isDelegate);
  9336. IF locked OR profile THEN
  9337. Emit(Push(position,res.op));
  9338. IF delegate THEN HALT(200) END;
  9339. ReleaseOperand(res);
  9340. IF locked THEN Lock(FALSE) END;
  9341. IF ~backend.cooperative & profile THEN ProfilerEnterExit(numberProcedures,FALSE) END;
  9342. reg := NewRegisterOperand(res.op.type);
  9343. Emit(Pop(position,reg));
  9344. Emit(Return(position,reg));
  9345. ReleaseIntermediateOperand(reg);
  9346. ELSE
  9347. Emit(Return(position,res.op));
  9348. ReleaseOperand(res);
  9349. END;
  9350. ELSIF (type IS SyntaxTree.RecordType) OR (type IS SyntaxTree.ArrayType) OR (type IS SyntaxTree.RangeType) OR (type IS SyntaxTree.ComplexType) OR type.IsPointer()
  9351. THEN
  9352. (* return using structured return parameter *)
  9353. ASSERT((type IS SyntaxTree.RecordType) OR (type IS SyntaxTree.RangeType) OR (type IS SyntaxTree.ComplexType) OR (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form = SyntaxTree.Static)
  9354. OR SemanticChecker.IsPointerType(type));
  9355. (* parameter := currentScope(SyntaxTree.ProcedureScope).FindParameter(Global.ReturnParameterName); *)
  9356. parameter :=procedureType.returnParameter;
  9357. ASSERT(parameter # NIL);
  9358. returnTypeOffset := parameter.offsetInBits;
  9359. (*
  9360. IF parameter# NIL THEN
  9361. returnTypeOffset := parameter.offsetInBits + system.SizeOfParameter(parameter);
  9362. INC(returnTypeOffset,(-returnTypeOffset) MOD system.AlignmentOf(system.parameterAlignment,parameter.type));
  9363. ELSE
  9364. returnTypeOffset := system.offsetFirstParameter
  9365. END;
  9366. *)
  9367. left := IntermediateCode.Memory(addressType,fp,ToMemoryUnits(system,returnTypeOffset));
  9368. IF type IS SyntaxTree.RangeType THEN
  9369. (* array range type *)
  9370. Evaluate(expression, right);
  9371. MakeMemory(mem, left, IntermediateCode.GetType(system, system.longintType), 0);
  9372. Emit(Mov(position,mem, right.op)); (* first *)
  9373. ReleaseIntermediateOperand(mem);
  9374. MakeMemory(mem, left, IntermediateCode.GetType(system, system.longintType), ToMemoryUnits(system, system.SizeOf(system.longintType)));
  9375. Emit(Mov(position,mem, right.tag)); (* last *)
  9376. ReleaseIntermediateOperand(mem);
  9377. MakeMemory(mem, left, IntermediateCode.GetType(system, system.longintType), 2 * ToMemoryUnits(system, system.SizeOf(system.longintType)));
  9378. Emit(Mov(position,mem, right.extra)); (* step *)
  9379. ReleaseIntermediateOperand(mem);
  9380. ReleaseOperand(right);
  9381. ELSIF type IS SyntaxTree.ComplexType THEN
  9382. Evaluate(expression, right);
  9383. componentType := type(SyntaxTree.ComplexType).componentType;
  9384. MakeMemory(mem, left, IntermediateCode.GetType(system, componentType), 0);
  9385. Emit(Mov(position,mem, right.op)); (* real part *)
  9386. ReleaseIntermediateOperand(mem);
  9387. MakeMemory(mem, left, IntermediateCode.GetType(system, componentType), ToMemoryUnits(system, system.SizeOf(componentType)));
  9388. Emit(Mov(position,mem, right.tag)); (* imaginary part *)
  9389. ReleaseIntermediateOperand(mem);
  9390. ReleaseOperand(right);
  9391. ELSE (* covers cases: pointer / record / array *)
  9392. parameter := procedureType.returnParameter;
  9393. checker.SetCurrentScope(currentScope);
  9394. ASSERT(parameter # NIL);
  9395. parameterDesignator := checker.NewSymbolDesignator(expression.position,NIL,parameter);
  9396. Assign(parameterDesignator,expression);
  9397. END;
  9398. ReleaseIntermediateOperand(left);
  9399. IF locked THEN Lock(FALSE) END;
  9400. IF ~backend.cooperative & profile THEN ProfilerEnterExit(numberProcedures,FALSE) END;
  9401. ELSIF (type IS SyntaxTree.MathArrayType) OR (type IS SyntaxTree.ProcedureType) THEN
  9402. parameter := procedureType.returnParameter;
  9403. checker.SetCurrentScope(currentScope);
  9404. IF parameter = NIL THEN
  9405. Error(procedure.position, "structured return of parameter of procedure not found");
  9406. ELSE
  9407. parameterDesignator := checker.NewSymbolDesignator(expression.position,NIL,parameter);
  9408. Assign(parameterDesignator,expression);
  9409. END;
  9410. IF locked THEN Lock(FALSE) END;
  9411. IF ~backend.cooperative & profile THEN ProfilerEnterExit(numberProcedures,FALSE) END;
  9412. ELSE
  9413. HALT(200);
  9414. END;
  9415. ELSE
  9416. IF locked THEN Lock(FALSE) END;
  9417. IF ~backend.cooperative & profile THEN ProfilerEnterExit(numberProcedures,FALSE) END;
  9418. END;
  9419. IF backend.cooperative THEN
  9420. BrL(exitLabel);
  9421. ELSE
  9422. EmitLeave(section, position,procedure.type(SyntaxTree.ProcedureType).callingConvention);
  9423. Emit(Exit(position,procedure.type(SyntaxTree.ProcedureType).pcOffset,procedure.type(SyntaxTree.ProcedureType).callingConvention));
  9424. END;
  9425. IF Trace THEN TraceExit("VisitReturnStatement") END;
  9426. END VisitReturnStatement;
  9427. PROCEDURE MakeAwaitProcedure(x: SyntaxTree.AwaitStatement): SyntaxTree.Procedure;
  9428. VAR procedure: SyntaxTree.Procedure; procedureType: SyntaxTree.ProcedureType; procedureScope: SyntaxTree.ProcedureScope;
  9429. identifier: SyntaxTree.Identifier; body: SyntaxTree.Body; returnStatement : SyntaxTree.ReturnStatement;
  9430. statements: SyntaxTree.StatementSequence;
  9431. name, suffix: SyntaxTree.IdentifierString;
  9432. BEGIN
  9433. Strings.IntToStr(awaitProcCounter,suffix);
  9434. Strings.Concat("@AwaitProcedure",suffix,name);
  9435. identifier := SyntaxTree.NewIdentifier(name);
  9436. INC(awaitProcCounter);
  9437. ASSERT(currentScope IS SyntaxTree.ProcedureScope);
  9438. procedureScope := SyntaxTree.NewProcedureScope(currentScope);
  9439. ASSERT(procedureScope.outerScope IS SyntaxTree.ProcedureScope);
  9440. procedure := SyntaxTree.NewProcedure(x.position,identifier,procedureScope);
  9441. procedure.SetAccess(SyntaxTree.Hidden);
  9442. procedure.SetScope(currentScope);
  9443. procedureType := SyntaxTree.NewProcedureType(x.position,currentScope);
  9444. procedureType.SetReturnType(system.booleanType);
  9445. procedure.SetType(procedureType);
  9446. body := SyntaxTree.NewBody(x.position,procedureScope);
  9447. procedureScope.SetBody(body);
  9448. returnStatement := SyntaxTree.NewReturnStatement(x.position,body);
  9449. returnStatement.SetReturnValue(x.condition);
  9450. statements := SyntaxTree.NewStatementSequence();
  9451. statements.AddStatement(returnStatement);
  9452. body.SetStatementSequence(statements);
  9453. currentScope.AddProcedure(procedure);
  9454. RETURN procedure
  9455. END MakeAwaitProcedure;
  9456. PROCEDURE VisitAwaitStatement(x: SyntaxTree.AwaitStatement);
  9457. VAR proc: SyntaxTree.Procedure; res: IntermediateCode.Operand; symbol: Sections.Section;
  9458. call: IntermediateCode.Operand; label, start, true, false: Label; name: Basic.SegmentedName;
  9459. BEGIN
  9460. IF Trace THEN TraceEnter("VisitAwaitStatement") END;
  9461. IF profile THEN ProfilerEnterExit(numberProcedures, FALSE) END;
  9462. IF backend.cooperative THEN
  9463. start := NewLabel();
  9464. true := NewLabel();
  9465. false := NewLabel();
  9466. SetLabel(start);
  9467. Condition(x.condition,true,false);
  9468. SetLabel(false);
  9469. PushSelfPointer();
  9470. CallThis(position,"ExclusiveBlocks","Await",1);
  9471. BrL(start);
  9472. SetLabel(true);
  9473. PushSelfPointer();
  9474. CallThis(position,"ExclusiveBlocks","FinalizeAwait",1);
  9475. ELSE
  9476. proc := MakeAwaitProcedure(x);
  9477. Emit(Push(position,fp));
  9478. GetCodeSectionNameForSymbol(proc,name);
  9479. symbol := NewSection(module.allSections, Sections.CodeSection, name,proc,commentPrintout # NIL);
  9480. IntermediateCode.InitAddress(call,addressType,name, GetFingerprint(proc), 0);
  9481. res := NewRegisterOperand(IntermediateCode.GetType(system,system.booleanType));
  9482. Emit(Call(position,call,ProcedureParametersSize(system,proc)));
  9483. Emit(Result(position,res));
  9484. (*
  9485. AcquireThisRegister(IntermediateCode.GetType(system,system.booleanType),IntermediateCode.Result);
  9486. IntermediateCode.InitRegister(res,IntermediateCode.GetType(system,system.booleanType),IntermediateCode.Result);
  9487. *)
  9488. InitOperand(result,ModeValue);
  9489. result.op := res;
  9490. label := NewLabel();
  9491. BreqL(label, result.op, SELF.true);
  9492. ReleaseOperand(result);
  9493. symbol := NewSection(module.allSections, Sections.CodeSection, name,proc,commentPrintout # NIL);
  9494. IntermediateCode.InitAddress(res, addressType, name,GetFingerprint(proc), 0);
  9495. Emit(Push(position,res));
  9496. Emit(Push(position,fp));
  9497. PushSelfPointer();
  9498. Emit(Push(position,nil));
  9499. CallThis(position,"Objects","Await",4);
  9500. SetLabel(label);
  9501. END;
  9502. IF profile THEN ProfilerEnterExit(numberProcedures, TRUE) END;
  9503. IF Trace THEN TraceExit("VisitAwaitStatement") END;
  9504. END VisitAwaitStatement;
  9505. PROCEDURE StatementSequence(x: SyntaxTree.StatementSequence);
  9506. VAR statement: SyntaxTree.Statement; i: LONGINT; (* pos: LONGINT; *)
  9507. BEGIN
  9508. FOR i := 0 TO x.Length() - 1 DO
  9509. statement := x.GetStatement( i );
  9510. Statement(statement);
  9511. IF cooperativeSwitches & (section.pc - lastSwitchPC > 1000) THEN EmitCooperativeSwitch END;
  9512. END;
  9513. END StatementSequence;
  9514. PROCEDURE PushSelfPointer;
  9515. VAR scope: SyntaxTree.Scope; op: Operand; moduleSection: IntermediateCode.Section; moduleOffset, parametersSize: LONGINT;
  9516. BEGIN
  9517. scope := currentScope;
  9518. WHILE(scope.outerScope IS SyntaxTree.ProcedureScope) DO
  9519. scope := scope.outerScope;
  9520. END;
  9521. IF scope.outerScope IS SyntaxTree.ModuleScope THEN
  9522. IF ~newObjectFile THEN
  9523. Symbol(moduleSelf,op);
  9524. IntermediateCode.MakeMemory(op.op,addressType);
  9525. ELSE
  9526. moduleSection := meta.ModuleSection();
  9527. IF backend.cooperative THEN
  9528. moduleOffset := 0;
  9529. ELSE
  9530. moduleOffset := moduleSection.pc;
  9531. END;
  9532. op.op := IntermediateCode.Address(addressType, moduleSection.name, GetFingerprint(moduleSection.symbol), moduleOffset);
  9533. END;
  9534. ELSE
  9535. GetBaseRegister(op.op,currentScope,scope);
  9536. parametersSize := ProcedureParametersSize(system,scope(SyntaxTree.ProcedureScope).ownerProcedure);
  9537. IntermediateCode.AddOffset(op.op,ToMemoryUnits(system,addressType.sizeInBits)+parametersSize);
  9538. IF backend.cooperative THEN
  9539. IntermediateCode.AddOffset(op.op,ToMemoryUnits(system,addressType.sizeInBits));
  9540. END;
  9541. IntermediateCode.MakeMemory(op.op,addressType);
  9542. END;
  9543. Emit(Push(position,op.op));
  9544. ReleaseOperand(op);
  9545. END PushSelfPointer;
  9546. PROCEDURE Lock(lock: BOOLEAN);
  9547. BEGIN
  9548. IF Trace THEN TraceEnter("Lock") END;
  9549. IF profile THEN ProfilerEnterExit(numberProcedures, FALSE) END;
  9550. CheckRegistersFree(); (* no register may be in use as operands should not be preserved over the lock / unlock boundary *)
  9551. ASSERT(modifyAssignmentCounter = 0);
  9552. IF dump # NIL THEN
  9553. IF lock THEN dump.String("lock") ELSE dump.String("unlock") END;
  9554. dump.Ln;dump.Update;
  9555. END;
  9556. PushSelfPointer;
  9557. IF backend.cooperative THEN
  9558. Emit(Push(position,IntermediateCode.Immediate(sizeType, 1)));
  9559. IF lock THEN CallThis(position,"ExclusiveBlocks","Enter",2)
  9560. ELSE CallThis(position,"ExclusiveBlocks","Exit",2);
  9561. END;
  9562. ELSE
  9563. Emit(Push(position,true));
  9564. IF lock THEN CallThis(position,"Objects","Lock",2)
  9565. ELSE CallThis(position,"Objects","Unlock",2);
  9566. END;
  9567. END;
  9568. IF profile THEN ProfilerEnterExit(numberProcedures, TRUE) END;
  9569. IF Trace THEN TraceExit("Lock") END;
  9570. END Lock;
  9571. PROCEDURE VisitStatementBlock(x: SyntaxTree.StatementBlock);
  9572. VAR previouslyUnchecked, previouslyCooperativeSwitches: BOOLEAN;
  9573. BEGIN
  9574. IF Trace THEN TraceEnter("VisitStatementBlock") END;
  9575. IF emitLabels THEN Emit(LabelInstruction(x.position)) END;
  9576. previouslyUnchecked := isUnchecked;
  9577. isUnchecked := isUnchecked OR x.isUnchecked;
  9578. previouslyCooperativeSwitches := cooperativeSwitches;
  9579. cooperativeSwitches := cooperativeSwitches & ~x.isUncooperative;
  9580. IF x.isExclusive THEN Lock(TRUE); ASSERT(~locked); locked := TRUE; END;
  9581. IF x.statements # NIL THEN
  9582. StatementSequence(x.statements);
  9583. END;
  9584. IF x.isExclusive THEN Lock(FALSE); ASSERT(locked); locked := FALSE; END;
  9585. isUnchecked := previouslyUnchecked;
  9586. cooperativeSwitches := previouslyCooperativeSwitches;
  9587. IF Trace THEN TraceExit("VisitStatementBlock") END;
  9588. END VisitStatementBlock;
  9589. PROCEDURE VisitCode(x: SyntaxTree.Code);
  9590. VAR (* inline: Sections.CellNet; symbol: SyntaxTree.Symbol; *)
  9591. in, out: IntermediateCode.Rules; statement: SyntaxTree.Statement; i: LONGINT; operand,par: Operand; str: POINTER TO ARRAY OF CHAR;
  9592. result, mem: IntermediateCode.Operand; scope: SyntaxTree.Scope; procedureType: SyntaxTree.ProcedureType; return: IntermediateCode.Operand;
  9593. procedure: SyntaxTree.Procedure;
  9594. map: SymbolMap;
  9595. BEGIN
  9596. scope := currentScope;
  9597. WHILE ~(scope IS SyntaxTree.ProcedureScope) DO scope := scope.outerScope END;
  9598. procedure := scope(SyntaxTree.ProcedureScope).ownerProcedure;
  9599. procedureType := procedure.type(SyntaxTree.ProcedureType);
  9600. return := emptyOperand;
  9601. IF Trace THEN TraceEnter("VisitCode") END;
  9602. IF (x.inRules # NIL) & (x.inRules.Length()>0) THEN
  9603. NEW(in, x.inRules.Length());
  9604. FOR i := 0 TO LEN(in)-1 DO
  9605. statement := x.inRules.GetStatement(i);
  9606. WITH statement: SyntaxTree.Assignment DO
  9607. Evaluate(statement.right, operand);
  9608. result := operand.op;
  9609. NEW(str, 64);
  9610. Basic.GetString(statement.left(SyntaxTree.IdentifierDesignator).identifier, str^);
  9611. in[i] := result; IntermediateCode.SetString(in[i], str);
  9612. ReleaseIntermediateOperand(operand.tag);
  9613. END;
  9614. END;
  9615. ELSE in := NIL
  9616. END;
  9617. IF (x.outRules # NIL) & (x.outRules.Length()>0) THEN
  9618. NEW(out, x.outRules.Length());
  9619. FOR i := 0 TO LEN(out)-1 DO
  9620. statement := x.outRules.GetStatement(i);
  9621. IF statement IS SyntaxTree.StatementBlock THEN statement := statement(SyntaxTree.StatementBlock).statements.GetStatement(0) END;
  9622. WITH statement: SyntaxTree.Assignment DO
  9623. Evaluate(statement.left, operand); (*?? or designate *)
  9624. result := operand.op;
  9625. NEW(str, 64);
  9626. Basic.GetString(statement.right(SyntaxTree.IdentifierDesignator).identifier, str^);
  9627. out[i] := result; IntermediateCode.SetString(out[i], str);
  9628. ReleaseIntermediateOperand(operand.tag);
  9629. |statement: SyntaxTree.ReturnStatement DO
  9630. NEW(str, 64);
  9631. Basic.GetString(statement.returnValue(SyntaxTree.IdentifierDesignator).identifier, str^);
  9632. IF currentIsInline THEN
  9633. map := currentMapper.Get(NIL);
  9634. Evaluate(map.to, operand);
  9635. out[i] := operand.op;
  9636. ELSE
  9637. out[i] :=NewRegisterOperand(IntermediateCode.GetType(system, procedureType.returnType));
  9638. END;
  9639. IntermediateCode.SetString(out[i], str);
  9640. ReleaseIntermediateOperand(operand.tag);
  9641. return := out[i];
  9642. ELSE
  9643. END;
  9644. END;
  9645. ELSE out := NIL
  9646. END;
  9647. Emit(Asm(x.position,x.sourceCode, in, out));
  9648. IF in # NIL THEN
  9649. FOR i := 0 TO LEN(in)-1 DO
  9650. ReleaseIntermediateOperand(in[i]);
  9651. END;
  9652. END;
  9653. IF out # NIL THEN
  9654. FOR i := 0 TO LEN(out)-1 DO
  9655. WITH statement: SyntaxTree.Assignment DO
  9656. ReleaseIntermediateOperand(out[i]);
  9657. ELSE
  9658. IF currentIsInline THEN
  9659. ReleaseIntermediateOperand(out[i]);
  9660. END;
  9661. END;
  9662. statement := x.outRules.GetStatement(i);
  9663. END;
  9664. END;
  9665. IF return.mode # IntermediateCode.Undefined THEN
  9666. IF currentIsInline THEN
  9667. ELSIF ReturnedAsParameter(procedureType.returnType) THEN
  9668. Symbol(procedureType.returnParameter, par);
  9669. MakeMemory(mem, par.op, return.type, 0);
  9670. ReleaseOperand(par);
  9671. Emit(Mov(position, mem, return));
  9672. ReleaseIntermediateOperand(mem);
  9673. ELSE
  9674. Emit(Return(position,return));
  9675. END;
  9676. IF currentIsInline THEN RETURN END;
  9677. EmitLeave(section, position,procedureType(SyntaxTree.ProcedureType).callingConvention);
  9678. Emit(Exit(position,procedureType(SyntaxTree.ProcedureType).pcOffset,procedureType(SyntaxTree.ProcedureType).callingConvention));
  9679. ReleaseIntermediateOperand(return);
  9680. END;
  9681. IF Trace THEN TraceExit("VisitCode") END;
  9682. END VisitCode;
  9683. PROCEDURE ParameterCopies(x: SyntaxTree.ProcedureType);
  9684. VAR parameter: SyntaxTree.Parameter; type, base: SyntaxTree.Type;
  9685. op: Operand; temp,size,par,dst, length,null: IntermediateCode.Operand;
  9686. const, call: IntermediateCode.Operand;
  9687. parameterDesignator: SyntaxTree.Expression;
  9688. saved: RegisterEntry;
  9689. name: Basic.SegmentedName;
  9690. BEGIN
  9691. IF Trace THEN TraceEnter("ParameterCopies") END;
  9692. parameter := x.firstParameter;
  9693. WHILE parameter # NIL DO
  9694. IF parameter.kind = SyntaxTree.ValueParameter THEN
  9695. type := parameter.type.resolved;
  9696. IF IsOpenArray(type) THEN
  9697. VisitParameter(parameter);
  9698. op := result;
  9699. IF backend.cooperative & parameter.NeedsTrace() THEN
  9700. length := GetArrayLength(type, op.tag);
  9701. size := NewRegisterOperand(addressType);
  9702. base := ArrayBaseType(type);
  9703. const := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,system.SizeOf(base)));
  9704. Emit(Mul(position, size, length, const));
  9705. dst := NewRegisterOperand (addressType);
  9706. Emit(Mov(position, dst, size));
  9707. const := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,-system.addressSize)); (* alignment *)
  9708. Emit(Sub(position,dst,sp,dst));
  9709. Emit(And(position,dst,dst,const));
  9710. Emit(Mov(position,sp,dst));
  9711. par := fp;
  9712. IntermediateCode.AddOffset(par,ToMemoryUnits(system,parameter.offsetInBits));
  9713. IntermediateCode.InitImmediate(null, byteType, 0);
  9714. Emit(Fill(position, dst, size, null));
  9715. ReleaseIntermediateOperand(dst);
  9716. ReleaseIntermediateOperand(length);
  9717. SaveRegisters();ReleaseUsedRegisters(saved);
  9718. (* register dst has been freed before SaveRegisters already *)
  9719. base := ArrayBaseType(type);
  9720. (* assign method of open array *)
  9721. IF base.IsRecordType() THEN
  9722. Emit (Push(position, length));
  9723. Emit (Push(position, dst));
  9724. Emit (Push(position, op.op));
  9725. GetRecordTypeName (base.resolved(SyntaxTree.RecordType),name);
  9726. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Array"));
  9727. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Assign"));
  9728. IntermediateCode.InitAddress(call, addressType, name , 0, 0);
  9729. Emit(Call(position,call,ToMemoryUnits(system, 3*system.addressSize)));
  9730. ELSIF base.resolved IS SyntaxTree.ProcedureType THEN (* array of delegates *)
  9731. Emit (Push(position,length));
  9732. Emit (Push(position, dst));
  9733. Emit (Push(position, length));
  9734. Emit (Push(position, op.op));
  9735. CallThis(position,"GarbageCollector","AssignDelegateArray", 4);
  9736. ELSE
  9737. Emit (Push(position, length));
  9738. Emit (Push(position, dst));
  9739. Emit (Push(position, length));
  9740. Emit (Push(position, op.op));
  9741. CallThis(position,"GarbageCollector","AssignPointerArray", 4);
  9742. ASSERT(ArrayBaseType(type).IsPointer());
  9743. END;
  9744. RestoreRegisters(saved);
  9745. ELSE
  9746. temp := GetDynamicSize(type,op.tag);
  9747. ReuseCopy(size,temp);
  9748. ReleaseIntermediateOperand(temp);
  9749. const := IntermediateCode.Immediate(addressType,ToMemoryUnits(system,-system.addressSize)); (* alignment *)
  9750. Emit(Sub(position,size,sp,size));
  9751. Emit(And(position,size,size,const));
  9752. Emit(Mov(position,sp,size));
  9753. par := fp;
  9754. IntermediateCode.AddOffset(par,ToMemoryUnits(system,parameter.offsetInBits));
  9755. ReleaseIntermediateOperand(size);
  9756. size := GetDynamicSize(type,op.tag);
  9757. END;
  9758. Emit(Copy(position,sp,op.op,size));
  9759. ReleaseIntermediateOperand(size);
  9760. ReleaseOperand(op);
  9761. IntermediateCode.MakeMemory(par,addressType);
  9762. Emit(Mov(position,par,sp));
  9763. ELSIF (type IS SyntaxTree.MathArrayType) & (type(SyntaxTree.MathArrayType).form # SyntaxTree.Static) THEN
  9764. checker.SetCurrentScope(currentScope);
  9765. parameterDesignator := checker.NewSymbolDesignator(position,NIL,parameter);
  9766. Assign(parameterDesignator,parameterDesignator);
  9767. END;
  9768. END;
  9769. parameter := parameter.nextParameter;
  9770. END;
  9771. IF Trace THEN TraceExit("ParameterCopies") END;
  9772. END ParameterCopies;
  9773. PROCEDURE InitVariables(scope: SyntaxTree.Scope);
  9774. VAR x: SyntaxTree.Variable;
  9775. BEGIN
  9776. x := scope.firstVariable;
  9777. WHILE x # NIL DO
  9778. InitVariable(x);
  9779. x := x.nextVariable;
  9780. END;
  9781. END InitVariables;
  9782. PROCEDURE GetFingerprint(symbol: SyntaxTree.Symbol): LONGINT;
  9783. BEGIN
  9784. IF (symbol # NIL) THEN
  9785. RETURN fingerPrinter.SymbolFP(symbol).shallow
  9786. ELSE
  9787. RETURN 0
  9788. END;
  9789. END GetFingerprint;
  9790. PROCEDURE Body(x: SyntaxTree.Body; scope: SyntaxTree.Scope; ir: IntermediateCode.Section; moduleBody: BOOLEAN);
  9791. VAR prevScope: SyntaxTree.Scope; procedureType: SyntaxTree.ProcedureType; procedure: SyntaxTree.Procedure;
  9792. cellScope: SyntaxTree.CellScope; op: Operand; string: SyntaxTree.IdentifierString;
  9793. saved: RegisterEntry;
  9794. BEGIN
  9795. IF Trace THEN TraceEnter("Body") END;
  9796. ReleaseUsedRegisters(saved); (* just in case ... *)
  9797. section := ir;
  9798. exitLabel := NewLabel ();
  9799. IF moduleBody THEN moduleBodySection := section END;
  9800. IF ir.comments # NIL THEN
  9801. commentPrintout := Printout.NewPrinter(ir.comments,Printout.SourceCode,FALSE);
  9802. commentPrintout.SingleStatement(TRUE);
  9803. dump := ir.comments;
  9804. ELSE
  9805. commentPrintout := NIL;
  9806. dump := NIL;
  9807. END;
  9808. prevScope := currentScope;
  9809. currentScope := scope;
  9810. lastSwitchPC := 0;
  9811. cooperativeSwitches := backend.cooperative;
  9812. procedure := scope(SyntaxTree.ProcedureScope).ownerProcedure;
  9813. procedureType := procedure.type(SyntaxTree.ProcedureType);
  9814. IF x # NIL THEN
  9815. IF emitLabels THEN Emit(LabelInstruction(x.position)) END;
  9816. IF profile & (x.code = NIL) THEN (* do not profile assembler code sections *)
  9817. IF moduleBody THEN
  9818. ProfilerInit();
  9819. ELSE
  9820. Basic.SegmentedNameToString(ir.name, string);
  9821. ProfilerAddProcedure(numberProcedures,string);
  9822. ProfilerEnterExit(numberProcedures,TRUE);
  9823. END;
  9824. END;
  9825. IF moduleBody & (operatorInitializationCodeSection # NIL) THEN
  9826. Emit(Call(position,IntermediateCode.Address(addressType, operatorInitializationCodeSection.name, GetFingerprint(operatorInitializationCodeSection.symbol), 0), 0))
  9827. END;
  9828. section.SetPositionOrAlignment(procedure.fixed, procedure.alignment);
  9829. IF moduleBody & ~newObjectFile THEN
  9830. InitVariables(moduleScope)
  9831. END;
  9832. IF (scope.outerScope # NIL) & (scope.outerScope IS SyntaxTree.CellScope) THEN
  9833. cellScope := scope.outerScope(SyntaxTree.CellScope);
  9834. IF procedure = cellScope.bodyProcedure THEN
  9835. IF (cellScope.constructor # NIL) & ~backend.cellsAreObjects THEN
  9836. StaticCallOperand(op, cellScope.constructor);
  9837. Emit(Call(position,op.op,0));
  9838. END;
  9839. END;
  9840. END;
  9841. ParameterCopies(procedureType);
  9842. InitVariables(scope);
  9843. IF x.code = NIL THEN
  9844. VisitStatementBlock(x);
  9845. ELSE
  9846. VisitCode(x.code)
  9847. END;
  9848. IF x.finally # NIL THEN (*! mark finally block for object file *)
  9849. ir.SetFinally(ir.pc);
  9850. StatementSequence(x.finally)
  9851. END;
  9852. IF profile & (x.code = NIL) & ~moduleBody THEN (* do not profile assembler code sections *)
  9853. IF ~backend.cooperative THEN
  9854. ProfilerEnterExit(numberProcedures,FALSE);
  9855. END;
  9856. INC(numberProcedures);
  9857. END;
  9858. END;
  9859. IF backend.cooperative THEN
  9860. IF HasPointers (procedure.procedureScope) THEN CreateResetMethod (procedure.procedureScope) END;
  9861. IF HasPointers (procedure.procedureScope) OR HasVariableParameters (procedure.procedureScope) OR IsNested (procedure) THEN CreateProcedureDescriptor (procedure) END;
  9862. ELSIF newObjectFile & moduleBody & ~suppressModuleRegistration & ~meta.simple THEN
  9863. (*! not required any more? check and delete!
  9864. PushSelfPointer();
  9865. CallThis(position,"Modules","SetInitialized",1);
  9866. *)
  9867. (*
  9868. SetLabel(end);
  9869. *)
  9870. END;
  9871. IF x # NIL THEN
  9872. SELF.position := x.position;
  9873. END;
  9874. CheckRegistersFree();
  9875. ASSERT(modifyAssignmentCounter = 0);
  9876. currentScope := prevScope;
  9877. IF Trace THEN TraceExit("Body") END;
  9878. END Body;
  9879. END ImplementationVisitor;
  9880. MetaDataGenerator=OBJECT
  9881. VAR
  9882. implementationVisitor: ImplementationVisitor;
  9883. declarationVisitor: DeclarationVisitor;
  9884. module: Sections.Module;
  9885. moduleName: ARRAY 128 OF CHAR;
  9886. moduleNamePool: Basic.HashTableInt;
  9887. moduleNamePoolSection: IntermediateCode.Section;
  9888. simple: BOOLEAN; (* simple = no methods, no module loading, no reflection *)
  9889. MethodTableOffset: LONGINT; (* method table offset from zero *)
  9890. BaseTypesTableOffset: LONGINT; (* table with all record extensions offset *)
  9891. TypeTags: LONGINT; (* type extension level support *)
  9892. TypeRecordBaseOffset: LONGINT; (* offset of type zero offset (without method entries) *)
  9893. PROCEDURE &InitMetaDataGenerator(implementationVisitor: ImplementationVisitor; declarationVisitor: DeclarationVisitor; simple: BOOLEAN);
  9894. BEGIN
  9895. IF implementationVisitor.backend.cooperative THEN
  9896. TypeTags := MAX(LONGINT);
  9897. BaseTypesTableOffset := 0;
  9898. MethodTableOffset := 2;
  9899. TypeRecordBaseOffset := 0;
  9900. ELSIF simple THEN
  9901. TypeTags := 3; (* only 3 extensions allowed *)
  9902. BaseTypesTableOffset := 1;
  9903. MethodTableOffset := BaseTypesTableOffset+TypeTags;
  9904. TypeRecordBaseOffset := 0;
  9905. ELSE
  9906. TypeTags := 16;
  9907. BaseTypesTableOffset := -2; (* typeInfo and size field *)
  9908. MethodTableOffset := -TypeTags+BaseTypesTableOffset;
  9909. TypeRecordBaseOffset := TypeTags + 2; (* MPO, typeInfo *)
  9910. END;
  9911. SELF.simple := simple;
  9912. SELF.implementationVisitor := implementationVisitor;
  9913. SELF.declarationVisitor := declarationVisitor;
  9914. implementationVisitor.meta := SELF;
  9915. declarationVisitor.meta := SELF;
  9916. END InitMetaDataGenerator;
  9917. PROCEDURE SetModule(module: Sections.Module);
  9918. VAR namePoolOffset: LONGINT;
  9919. BEGIN
  9920. SELF.module := module;
  9921. Global.GetModuleName(module.module,moduleName);
  9922. IF ReflectionSupport & implementationVisitor.newObjectFile & ~simple THEN
  9923. NEW(moduleNamePool, 32);
  9924. moduleNamePoolSection := Block("Heaps","SystemBlockDesc",".@ModuleNamePool", namePoolOffset);
  9925. END;
  9926. END SetModule;
  9927. PROCEDURE GetTypeRecordBaseOffset(numberMethods: LONGINT): LONGINT;
  9928. BEGIN
  9929. IF implementationVisitor.backend.cooperative OR simple THEN RETURN 0 ELSE RETURN TypeRecordBaseOffset + numberMethods END;
  9930. END GetTypeRecordBaseOffset;
  9931. PROCEDURE HeapBlock(CONST moduleName, typeName: ARRAY OF CHAR; section: IntermediateCode.Section; dataAdrOffset: LONGINT);
  9932. VAR offset: LONGINT; name: Basic.SegmentedName; symbol: SyntaxTree.Symbol;
  9933. BEGIN
  9934. INC(dataAdrOffset,6);
  9935. Info(section,"headerAdr");
  9936. Address(section,0);
  9937. Info(section,"typeDesc");
  9938. symbol := implementationVisitor.GetTypeDescriptor(moduleName,typeName, name);
  9939. offset := ToMemoryUnits(module.system,TypeRecordBaseOffset*module.system.addressSize);
  9940. NamedSymbol(section, name, symbol, 0, offset);
  9941. Info(section,"mark: LONGINT;");
  9942. Longint(section,-1);
  9943. Info(section,"dataAdr-: ADDRESS");
  9944. Symbol(section,section, dataAdrOffset,0);
  9945. Info(section,"size-: SIZE");
  9946. Address(section,0);
  9947. Info(section,"nextRealtime: HeapBlock;");
  9948. Address(section,0);
  9949. END HeapBlock;
  9950. PROCEDURE ProtectedHeapBlock(CONST moduleName, typeName: ARRAY OF CHAR; section: IntermediateCode.Section; dataAdrOffset: LONGINT);
  9951. VAR i: LONGINT;
  9952. BEGIN
  9953. INC(dataAdrOffset,14);
  9954. HeapBlock(moduleName,typeName,section,dataAdrOffset);
  9955. Info(section,"count*: LONGINT");
  9956. Longint(section,0);
  9957. Info(section,"locked*: BOOLEAN");
  9958. Longint(section,0);
  9959. Info(section,"awaitingLock*: ProcessQueue");
  9960. Address(section,0);
  9961. Address(section,0);
  9962. Info(section,"awaitingCond*: ProcessQueue");
  9963. Address(section,0);
  9964. Address(section,0);
  9965. Info(section,"lockedBy*: ANY");
  9966. Address(section,0);
  9967. Info(section,"lock*: ANY");
  9968. Address(section,0);
  9969. Info(section,"waitingPriorities*: ARRAY NumPriorities OF LONGINT");
  9970. Longint(section,1);
  9971. FOR i := 2 TO 6 DO
  9972. Longint(section,0);
  9973. END;
  9974. END ProtectedHeapBlock;
  9975. PROCEDURE Info(section: IntermediateCode.Section; CONST s: ARRAY OF CHAR);
  9976. BEGIN
  9977. IF section.comments # NIL THEN section.comments.String(s); section.comments.Ln; section.comments.Update END;
  9978. END Info;
  9979. PROCEDURE Address(section: IntermediateCode.Section; value: LONGINT);
  9980. VAR op: IntermediateCode.Operand;
  9981. BEGIN
  9982. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.addressType),value);
  9983. section.Emit(Data(-11,op));
  9984. END Address;
  9985. PROCEDURE Size(section: IntermediateCode.Section; value: LONGINT);
  9986. VAR op: IntermediateCode.Operand;
  9987. BEGIN
  9988. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.sizeType),value);
  9989. section.Emit(Data(-12,op));
  9990. END Size;
  9991. PROCEDURE Set(section: IntermediateCode.Section; value: SET);
  9992. VAR op: IntermediateCode.Operand;
  9993. BEGIN
  9994. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.longintType),SYSTEM.VAL(LONGINT,value));
  9995. section.Emit(Data(-1,op));
  9996. END Set;
  9997. PROCEDURE Longint(section: IntermediateCode.Section; value: LONGINT);
  9998. VAR op: IntermediateCode.Operand;
  9999. BEGIN
  10000. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.longintType),value);
  10001. section.Emit(Data(-1,op));
  10002. END Longint;
  10003. PROCEDURE PatchAddress(section: IntermediateCode.Section; pc: LONGINT; value: LONGINT);
  10004. VAR op,noOperand: IntermediateCode.Operand;
  10005. BEGIN
  10006. IntermediateCode.InitOperand(noOperand);
  10007. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.addressType),value);
  10008. section.PatchOperands(pc,op,noOperand,noOperand);
  10009. END PatchAddress;
  10010. PROCEDURE PatchLongint(section: IntermediateCode.Section; pc: LONGINT; value: LONGINT);
  10011. VAR op,noOperand: IntermediateCode.Operand;
  10012. BEGIN
  10013. IntermediateCode.InitOperand(noOperand);
  10014. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.longintType),value);
  10015. section.PatchOperands(pc,op,noOperand,noOperand);
  10016. END PatchLongint;
  10017. PROCEDURE PatchSymbol(section: IntermediateCode.Section; pc: LONGINT; name: Basic.SegmentedName; symbol: SyntaxTree.Symbol; virtualOffset, realOffset: LONGINT);
  10018. VAR op, noOperand: IntermediateCode.Operand;
  10019. BEGIN
  10020. IntermediateCode.InitOperand(noOperand);
  10021. IntermediateCode.InitAddress(op, IntermediateCode.GetType(module.system, module.system.addressType), name,implementationVisitor.GetFingerprint(symbol), virtualOffset);
  10022. section.PatchOperands(pc,op,noOperand,noOperand);
  10023. END PatchSymbol;
  10024. PROCEDURE Boolean(section: IntermediateCode.Section; value: BOOLEAN);
  10025. VAR op: IntermediateCode.Operand; intValue: LONGINT;
  10026. BEGIN
  10027. IF value = FALSE THEN intValue := 0 ELSE intValue :=1 END;
  10028. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.booleanType),intValue);
  10029. section.Emit(Data(-1,op));
  10030. END Boolean;
  10031. PROCEDURE Char(section: IntermediateCode.Section; char: CHAR);
  10032. VAR op: IntermediateCode.Operand;
  10033. BEGIN
  10034. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.characterType),ORD(char));
  10035. section.Emit(Data(-1,op));
  10036. END Char;
  10037. PROCEDURE String(section: IntermediateCode.Section; CONST str: ARRAY OF CHAR);
  10038. VAR i: LONGINT;
  10039. BEGIN
  10040. Info(section,str);
  10041. i := 0;
  10042. WHILE(str[i] # 0X) DO
  10043. Char(section,str[i]);
  10044. INC(i);
  10045. END;
  10046. Char(section,0X);
  10047. END String;
  10048. PROCEDURE NamedSymbol(section: IntermediateCode.Section; name: Basic.SegmentedName; symbol: SyntaxTree.Symbol; virtualOffset, realOffset: LONGINT);
  10049. VAR op: IntermediateCode.Operand;
  10050. BEGIN
  10051. IntermediateCode.InitAddress(op, IntermediateCode.GetType(module.system, module.system.addressType), name,implementationVisitor.GetFingerprint(symbol), virtualOffset);
  10052. IntermediateCode.SetOffset(op,realOffset);
  10053. section.Emit(Data(-1,op));
  10054. END NamedSymbol;
  10055. PROCEDURE Symbol(section: IntermediateCode.Section; symbol: Sections.Section; virtualOffset, realOffset: LONGINT);
  10056. BEGIN
  10057. IF symbol= NIL THEN
  10058. Address( section, realOffset);
  10059. ASSERT(virtualOffset = 0);
  10060. ELSE
  10061. NamedSymbol(section, symbol.name, symbol.symbol, virtualOffset, realOffset)
  10062. END;
  10063. END Symbol;
  10064. (* OutPointers delivers
  10065. {pointerOffset}
  10066. *)
  10067. PROCEDURE Pointers(offset: LONGINT; symbol: Sections.Section; section: IntermediateCode.Section; type: SyntaxTree.Type; VAR numberPointers: LONGINT);
  10068. VAR variable: SyntaxTree.Variable; i,n,size: LONGINT; base: SyntaxTree.Type;
  10069. BEGIN
  10070. type := type.resolved;
  10071. IF type IS SyntaxTree.AnyType THEN
  10072. Symbol(section, symbol, 0, (offset ));
  10073. INC(numberPointers);
  10074. IF Trace THEN D.Str("ptr at offset="); D.Int(offset,1); D.Ln; END;
  10075. ELSIF (type IS SyntaxTree.PortType) & implementationVisitor.backend.cellsAreObjects THEN
  10076. Symbol(section, symbol, 0, offset); INC(numberPointers);
  10077. ELSIF type IS SyntaxTree.PointerType THEN
  10078. Symbol(section, symbol, 0, (offset )); INC(numberPointers);
  10079. IF Trace THEN D.Str("ptr at offset="); D.Int(offset,1);D.Ln; END;
  10080. ELSIF (type IS SyntaxTree.ProcedureType) & (type(SyntaxTree.ProcedureType).isDelegate) THEN
  10081. Symbol(section, symbol, 0, (offset )+ToMemoryUnits(module.system,module.system.addressSize)); INC(numberPointers);
  10082. IF Trace THEN D.Str("ptr at offset="); D.Int(offset+ToMemoryUnits(module.system,module.system.addressSize),1); END;
  10083. ELSIF (type IS SyntaxTree.RecordType) THEN
  10084. (* never treat a record like a pointer, even if the pointer field is set! *)
  10085. WITH type: SyntaxTree.RecordType DO
  10086. base := type.GetBaseRecord();
  10087. IF base # NIL THEN
  10088. Pointers(offset,symbol,section, base,numberPointers);
  10089. END;
  10090. variable := type.recordScope.firstVariable;
  10091. WHILE(variable # NIL) DO
  10092. IF ~(variable.untraced) THEN
  10093. Pointers(offset+ToMemoryUnits(module.system,variable.offsetInBits), symbol, section, variable.type,numberPointers);
  10094. END;
  10095. variable := variable.nextVariable;
  10096. END;
  10097. END;
  10098. ELSIF (type IS SyntaxTree.CellType) THEN
  10099. WITH type: SyntaxTree.CellType DO
  10100. base := type.GetBaseRecord();
  10101. IF base # NIL THEN
  10102. Pointers(offset,symbol,section, base,numberPointers);
  10103. END;
  10104. variable := type.cellScope.firstVariable;
  10105. WHILE(variable # NIL) DO
  10106. IF ~(variable.untraced) THEN
  10107. Pointers(offset+ToMemoryUnits(module.system,variable.offsetInBits), symbol, section, variable.type,numberPointers);
  10108. END;
  10109. variable := variable.nextVariable;
  10110. END;
  10111. END;
  10112. ELSIF (type IS SyntaxTree.ArrayType) THEN
  10113. WITH type: SyntaxTree.ArrayType DO
  10114. IF type.form= SyntaxTree.Static THEN
  10115. n := type.staticLength;
  10116. base := type.arrayBase.resolved;
  10117. WHILE(base IS SyntaxTree.ArrayType) DO
  10118. type := base(SyntaxTree.ArrayType);
  10119. n := n* type.staticLength;
  10120. base := type.arrayBase.resolved;
  10121. END;
  10122. size := ToMemoryUnits(module.system,module.system.AlignedSizeOf(base));
  10123. IF SemanticChecker.ContainsPointer(base) THEN
  10124. ASSERT(n<1000000); (* not more than one million pointers on the stack ... *)
  10125. FOR i := 0 TO n-1 DO
  10126. Pointers(offset+i*size, symbol, section, base,numberPointers);
  10127. END;
  10128. END;
  10129. ELSE
  10130. Symbol( section, symbol, 0, (offset )); INC(numberPointers);
  10131. IF Trace THEN D.Str("ptr at offset="); D.Int(offset,1); D.Ln; END;
  10132. END;
  10133. END;
  10134. ELSIF (type IS SyntaxTree.MathArrayType) THEN
  10135. WITH type: SyntaxTree.MathArrayType DO
  10136. IF type.form = SyntaxTree.Static THEN
  10137. n := type.staticLength;
  10138. base := type.arrayBase.resolved;
  10139. WHILE(base IS SyntaxTree.MathArrayType) DO
  10140. type := base(SyntaxTree.MathArrayType);
  10141. n := n* type.staticLength;
  10142. base := type.arrayBase.resolved;
  10143. END;
  10144. size := ToMemoryUnits(module.system,module.system.AlignedSizeOf(base));
  10145. IF SemanticChecker.ContainsPointer(base) THEN
  10146. ASSERT(n<1000000); (* not more than one million pointers on the stack ... *)
  10147. FOR i := 0 TO n-1 DO
  10148. Pointers(offset+i*size, symbol, section, base,numberPointers);
  10149. END;
  10150. END;
  10151. ELSE
  10152. Symbol(section, symbol, 0, (offset )); INC(numberPointers); (* GC relevant pointer is at offset 0 *)
  10153. IF Trace THEN D.Str("ptr at offset="); D.Int(offset,1); D.Ln; END;
  10154. END
  10155. END;
  10156. (* ELSE no pointers in type *)
  10157. END;
  10158. END Pointers;
  10159. PROCEDURE EnterDynamicName(source: IntermediateCode.Section; CONST name: ARRAY OF CHAR; index: LONGINT; pool: Basic.HashTableInt): LONGINT;
  10160. VAR position,i: LONGINT; ch: CHAR;
  10161. BEGIN
  10162. IF pool.Has(index) THEN
  10163. RETURN pool.GetInt(index)
  10164. ELSE
  10165. position := source.pc;
  10166. pool.PutInt(index, position);
  10167. Info(source, name);
  10168. i := 0;
  10169. REPEAT
  10170. ch := name[i]; INC(i);
  10171. Char( source, ch);
  10172. UNTIL ch = 0X;
  10173. END;
  10174. RETURN position;
  10175. END EnterDynamicName;
  10176. PROCEDURE DynamicName(source: IntermediateCode.Section; index: StringPool.Index; pool: Basic.HashTableInt): LONGINT;
  10177. VAR name: Basic.SectionName; position: LONGINT;
  10178. BEGIN
  10179. IF pool.Has(index) THEN
  10180. RETURN pool.GetInt(index)
  10181. ELSE
  10182. StringPool.GetString(index, name);
  10183. position := EnterDynamicName(source,name,index, pool);
  10184. END;
  10185. RETURN position;
  10186. END DynamicName;
  10187. PROCEDURE Block(CONST mName, typeName, suffix: ARRAY OF CHAR; VAR offset: LONGINT): IntermediateCode.Section;
  10188. VAR name: ARRAY 128 OF CHAR; section: IntermediateCode.Section; pooledName: Basic.SegmentedName;
  10189. BEGIN
  10190. COPY(moduleName,name);
  10191. Strings.Append(name,suffix);
  10192. Basic.ToSegmentedName(name, pooledName);
  10193. section := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, pooledName, NIL,TRUE);
  10194. IF implementationVisitor.backend.cooperative THEN
  10195. Info(section, "TypeDescriptor");
  10196. Basic.ToSegmentedName("BaseTypes.Array", pooledName);
  10197. NamedSymbol(section, pooledName,NIL, 0, 0);
  10198. BasePointer(section);
  10199. offset := 0;
  10200. ELSE
  10201. HeapBlock(mName,typeName,section,2);
  10202. Info(section, "HeapBlock");
  10203. (*
  10204. Symbol(section,section,2,0);
  10205. *)
  10206. Address(section,0); (* empty such that GC does not go on traversing *)
  10207. Info(section, "TypeDescriptor");
  10208. Address(section,0);
  10209. offset := section.pc;
  10210. END;
  10211. RETURN section
  10212. END Block;
  10213. PROCEDURE Array(source: IntermediateCode.Section; VAR sizePC: LONGINT; CONST baseType: ARRAY OF CHAR);
  10214. VAR name: Basic.SegmentedName;
  10215. BEGIN
  10216. Info(source,"ArrayHeader");
  10217. IF implementationVisitor.backend.cooperative THEN
  10218. sizePC := source.pc;
  10219. Address(source,0);
  10220. NamedSymbol(source,source.name,NIL,0,ToMemoryUnits(implementationVisitor.system,(BaseArrayTypeSize + 1)*implementationVisitor.addressType.sizeInBits));
  10221. IF baseType # "" THEN
  10222. Basic.ToSegmentedName(baseType, name);
  10223. NamedSymbol(source, name,NIL, 0, 0);
  10224. ELSE
  10225. Address(source,0);
  10226. END;
  10227. Address(source,0);
  10228. ELSE
  10229. Address(source,0);
  10230. Address(source,0);
  10231. Address(source,0);
  10232. sizePC := source.pc;
  10233. Address(source,0);
  10234. Info(source,"array data");
  10235. END;
  10236. END Array;
  10237. PROCEDURE PatchArray(section: IntermediateCode.Section; pc: LONGINT; size: LONGINT);
  10238. BEGIN
  10239. IF implementationVisitor.backend.cooperative THEN
  10240. PatchLongint(section, pc, size);
  10241. PatchLongint(section, pc + 3, size);
  10242. ELSE
  10243. PatchLongint(section, pc, size);
  10244. END;
  10245. END PatchArray;
  10246. PROCEDURE ExportDesc(source: IntermediateCode.Section);
  10247. VAR
  10248. i: LONGINT; section: Sections.Section; fingerPrinter : FingerPrinter.FingerPrinter;
  10249. sectionArray: POINTER TO ARRAY OF Sections.Section;
  10250. poolMap: Basic.HashTableInt;
  10251. namePool: IntermediateCode.Section;
  10252. namePoolOffset: LONGINT;
  10253. PROCEDURE Compare(VAR s1, s2: Sections.Section): BOOLEAN;
  10254. VAR n1, n2: Basic.SectionName; index: LONGINT; ch1, ch2: CHAR;
  10255. BEGIN
  10256. Basic.SegmentedNameToString(s1.name,n1);
  10257. Basic.SegmentedNameToString(s2.name,n2);
  10258. index := 0;
  10259. ch1 := n1[index];
  10260. ch2 := n2[index];
  10261. WHILE (ch1 # 0X) & (ch1 = ch2) DO
  10262. INC(index);
  10263. ch1 := n1[index];
  10264. ch2 := n2[index];
  10265. END;
  10266. RETURN ch1 < ch2;
  10267. END Compare;
  10268. PROCEDURE QuickSort(VAR list: ARRAY OF Sections.Section; lo, hi: LONGINT);
  10269. VAR
  10270. i, j: LONGINT;
  10271. x, t: Sections.Section;
  10272. BEGIN
  10273. IF lo < hi THEN
  10274. i := lo; j := hi; x:= list[(lo+hi) DIV 2];
  10275. WHILE i <= j DO
  10276. WHILE Compare(list[i], x) DO INC(i) END;
  10277. WHILE Compare(x, list[j]) DO DEC(j) END;
  10278. IF i <= j THEN
  10279. t := list[i]; list[i] := list[j]; list[j] := t; (* swap i and j *)
  10280. INC(i); DEC(j)
  10281. END
  10282. END;
  10283. IF lo < j THEN QuickSort(list, lo, j) END;
  10284. IF i < hi THEN QuickSort(list, i, hi) END
  10285. END;
  10286. END QuickSort;
  10287. (*
  10288. ExportDesc* = RECORD
  10289. fp*: ADDRESS;
  10290. name* {UNTRACED}: DynamicName;
  10291. adr*: ADDRESS;
  10292. exports*: LONGINT;
  10293. dsc* {UNTRACED}: ExportArray
  10294. END;
  10295. ExportArray* = POINTER {UNSAFE} TO ARRAY OF ExportDesc;
  10296. *)
  10297. PROCEDURE ExportDesc2(
  10298. source: IntermediateCode.Section;
  10299. namePool: IntermediateCode.Section;
  10300. fingerPrinter: FingerPrinter.FingerPrinter;
  10301. symbol: Sections.Section;
  10302. name: StringPool.Index;
  10303. VAR patchAdr: LONGINT
  10304. ): BOOLEAN;
  10305. VAR fingerPrint: SyntaxTree.FingerPrint;
  10306. BEGIN
  10307. (*IF (implementationVisitor.backend.cooperative) & (symbol.symbol = NIL) OR (symbol.symbol # NIL) & (symbol.type # Sections.InitCodeSection)
  10308. & (symbol.type # Sections.InlineCodeSection)
  10309. THEN
  10310. *)
  10311. IF (symbol = NIL) OR ( (implementationVisitor.backend.cooperative) & (symbol.symbol = NIL) OR (symbol.symbol # NIL) & (symbol.type # Sections.InitCodeSection)
  10312. & (symbol.type # Sections.InlineCodeSection))
  10313. THEN
  10314. IF (symbol = NIL) OR (symbol # NIL) & (symbol.type # Sections.InlineCodeSection) THEN
  10315. IF (symbol # NIL) & (symbol.symbol # NIL) THEN
  10316. fingerPrint := fingerPrinter.SymbolFP(symbol.symbol);
  10317. Longint(source,fingerPrint.shallow);
  10318. ELSE
  10319. Longint(source, 0);
  10320. END;
  10321. Symbol(source, namePool, DynamicName(namePool, name, poolMap), 0); (* reference to dynamic name *)
  10322. Symbol(source, symbol,0,0);
  10323. patchAdr := source.pc;
  10324. Address(source,0);
  10325. Address(source,0);
  10326. END;
  10327. RETURN TRUE
  10328. ELSE
  10329. RETURN FALSE
  10330. END;
  10331. END ExportDesc2;
  10332. PROCEDURE Export(CONST sections: ARRAY OF Sections.Section);
  10333. VAR level, olevel, s: LONGINT; prev, this: Basic.SegmentedName; name: ARRAY 256 OF CHAR;
  10334. scopes: ARRAY LEN(prev)+1 OF Scope; arrayName: ARRAY 32 OF CHAR;
  10335. sym: Sections.Section; ignore: LONGINT; symbol: Sections.Section;
  10336. TYPE
  10337. Scope = RECORD
  10338. elements: LONGINT;
  10339. gelements: LONGINT;
  10340. section: IntermediateCode.Section;
  10341. patchAdr: LONGINT;
  10342. arraySizePC: LONGINT;
  10343. beginPC: LONGINT; (* current scope start pc *)
  10344. END;
  10345. BEGIN
  10346. Basic.InitSegmentedName(prev);
  10347. olevel := -1;
  10348. scopes[0].section := source;
  10349. scopes[0].arraySizePC := MIN(LONGINT);
  10350. FOR s := 0 TO LEN(sections)-1 DO
  10351. symbol := sections[s];
  10352. IF (symbol # NIL) & (implementationVisitor.backend.cooperative) & (symbol.symbol = NIL) OR (symbol.symbol # NIL) & (symbol.type # Sections.InitCodeSection) & (symbol.type # Sections.InlineCodeSection) THEN
  10353. this := sections[s].name;
  10354. level := 0;
  10355. WHILE (this[level] > 0) DO
  10356. WHILE (this[level] > 0) & (prev[level] = this[level]) DO
  10357. INC(level);
  10358. END;
  10359. WHILE level < olevel DO
  10360. (*TRACE("closing",olevel,scopes[olevel].elements); *)
  10361. IF olevel > 0 THEN
  10362. PatchLongint(scopes[olevel-1].section,scopes[olevel-1].patchAdr, scopes[olevel].elements);
  10363. PatchSymbol(scopes[olevel-1].section,scopes[olevel-1].patchAdr+1, scopes[olevel].section.name, scopes[olevel].section.symbol, scopes[olevel].beginPC, 0);
  10364. END;
  10365. scopes[olevel].gelements := scopes[olevel].gelements + scopes[olevel].elements;
  10366. DEC(olevel);
  10367. END;
  10368. IF (this[level] > 0) THEN
  10369. IF level > olevel THEN
  10370. (*TRACE("opening",level); *)
  10371. IF scopes[level].section = NIL THEN
  10372. arrayName := ".@ExportArray";
  10373. Strings.AppendInt(arrayName, level);
  10374. scopes[level].section := Block("Heaps","SystemBlockDesc",arrayName,ignore);
  10375. Array(scopes[level].section,scopes[level].arraySizePC,"Modules.ExportDesc");
  10376. END;
  10377. scopes[level].beginPC := scopes[level].section.pc;
  10378. olevel := level;
  10379. scopes[olevel].elements := 0;
  10380. END;
  10381. IF (level = LEN(this)-1) OR (this[level+1] <= 0) THEN
  10382. sym := sections[s];
  10383. ELSE
  10384. sym := NIL;
  10385. END;
  10386. IF ExportDesc2(scopes[level].section, namePool, fingerPrinter, sym, this[level], scopes[level].patchAdr)
  10387. THEN
  10388. INC(scopes[olevel].elements);
  10389. END;
  10390. (*StringPool.GetString(this[level], name);*)
  10391. (*TRACE(level, name);*)
  10392. (* enter string in scope *)
  10393. INC(level);
  10394. END;
  10395. END;
  10396. Basic.SegmentedNameToString(this, name);
  10397. (*TRACE(level, "enter", name);*)
  10398. prev := this;
  10399. END;
  10400. END;
  10401. WHILE 0 <= olevel DO
  10402. (*TRACE("closing",olevel,scopes[olevel].elements); *)
  10403. IF olevel > 0 THEN
  10404. PatchLongint(scopes[olevel-1].section,scopes[olevel-1].patchAdr, scopes[olevel].elements);
  10405. PatchSymbol(scopes[olevel-1].section,scopes[olevel-1].patchAdr+1, scopes[olevel].section.name, scopes[olevel].section.symbol, scopes[olevel].beginPC, 0);
  10406. END;
  10407. scopes[olevel].gelements := scopes[olevel].gelements + scopes[olevel].elements;
  10408. DEC(olevel);
  10409. END;
  10410. level := 0;
  10411. WHILE (level < LEN(scopes)) DO
  10412. IF (scopes[level].section # NIL) & (scopes[level].arraySizePC # MIN(LONGINT)) THEN
  10413. PatchArray(scopes[level].section, scopes[level].arraySizePC, scopes[level].gelements);
  10414. END;
  10415. INC(level);
  10416. END;
  10417. END Export;
  10418. BEGIN
  10419. NEW(fingerPrinter, module.system);
  10420. NEW(poolMap, 64);
  10421. (* this is the name pool private to the export table -- it is sorted and should not be mixed / used for other names in a module *)
  10422. namePool := Block("Heaps","SystemBlockDesc",".@NamePool",namePoolOffset);
  10423. NEW(sectionArray, module.allSections.Length());
  10424. FOR i := 0 TO module.allSections.Length() - 1 DO
  10425. section := module.allSections.GetSection(i);
  10426. sectionArray[i] := section;
  10427. END;
  10428. QuickSort(sectionArray^,0,module.allSections.Length()-1);
  10429. Export(sectionArray^);
  10430. END ExportDesc;
  10431. PROCEDURE ExceptionArray(source: IntermediateCode.Section);
  10432. VAR
  10433. p: Sections.Section; finallyPC, sizePC, size, i: LONGINT;
  10434. BEGIN
  10435. Info(source, "exception table offsets array descriptor");
  10436. size := 0;
  10437. Array(source,sizePC,"Modules.ExceptionTableEntry");
  10438. Info(source, "exception table content");
  10439. FOR i := 0 TO module.allSections.Length() - 1 DO
  10440. p := module.allSections.GetSection(i);
  10441. IF p.type = Sections.CodeSection THEN
  10442. finallyPC := p(IntermediateCode.Section).finally;
  10443. IF finallyPC>=0 THEN
  10444. Symbol( source, p, 0,0);
  10445. Symbol( source, p, finallyPC, 0);
  10446. Symbol( source, p, finallyPC,0);
  10447. INC(size);
  10448. END;
  10449. END
  10450. END;
  10451. PatchArray(source,sizePC,size);
  10452. END ExceptionArray;
  10453. PROCEDURE Name(section: IntermediateCode.Section; CONST name: ARRAY OF CHAR);
  10454. VAR i: LONGINT; ch: CHAR;
  10455. BEGIN
  10456. i := 0;
  10457. REPEAT
  10458. ch := name[i]; INC(i);
  10459. Char( section, ch);
  10460. UNTIL ch = 0X;
  10461. WHILE i < 32 DO
  10462. Char( section, 0X); INC(i);
  10463. END;
  10464. END Name;
  10465. PROCEDURE References(section: IntermediateCode.Section);
  10466. CONST
  10467. rfDirect = 1X; rfIndirect = 3X;
  10468. rfStaticArray= 12X; rfDynamicArray=14X; rfOpenArray=15X;
  10469. rfByte = 1X; rfBoolean = 2X; rfChar8=3X; rfShortint=04X; rfInteger = 05X; rfLongint = 06X;
  10470. rfReal = 07X; rfLongreal = 08X; rfSet = 09X; rfDelegate = 0EX; rfString = 0FH; rfPointer = 0DX; rfHugeint = 10X;
  10471. rfChar16=11X; rfChar32=12X; rfAll=13X; rfSame=14X; rfRange=15X; rfRecord=16X; rfComplex = 17X; rfLongcomplex = 18X;
  10472. rfPort = 19X;
  10473. rfRecordPointer=1DX;
  10474. rfArrayFlag = 80X;
  10475. VAR
  10476. s: Sections.Section; sizePC, i, startPC, endPC: LONGINT;
  10477. PROCEDURE BaseType(type: SyntaxTree.Type): CHAR;
  10478. VAR char: CHAR;
  10479. BEGIN
  10480. IF type = NIL THEN char := rfLongint
  10481. ELSIF type IS SyntaxTree.ByteType THEN char := rfByte
  10482. ELSIF type IS SyntaxTree.BooleanType THEN char := rfBoolean
  10483. ELSIF type IS SyntaxTree.CharacterType THEN
  10484. IF type.sizeInBits = 8 THEN char := rfChar8
  10485. ELSIF type.sizeInBits = 16 THEN char := rfChar16
  10486. ELSIF type.sizeInBits = 32 THEN char := rfChar32
  10487. END;
  10488. ELSIF (type IS SyntaxTree.IntegerType) OR (type IS SyntaxTree.AddressType) OR (type IS SyntaxTree.SizeType) THEN
  10489. IF type.sizeInBits = 8 THEN char := rfShortint
  10490. ELSIF type.sizeInBits = 16 THEN char := rfInteger
  10491. ELSIF type.sizeInBits = 32 THEN char := rfLongint
  10492. ELSIF type.sizeInBits = 64 THEN char := rfHugeint
  10493. END;
  10494. ELSIF type IS SyntaxTree.SizeType THEN char := rfLongint
  10495. ELSIF type IS SyntaxTree.FloatType THEN
  10496. IF type.sizeInBits = 32 THEN char := rfReal
  10497. ELSIF type.sizeInBits = 64 THEN char := rfLongreal
  10498. END;
  10499. ELSIF type IS SyntaxTree.ComplexType THEN
  10500. IF type.sizeInBits = 64 THEN char := rfComplex
  10501. ELSIF type.sizeInBits = 128 THEN char := rfLongcomplex
  10502. END;
  10503. ELSIF type IS SyntaxTree.SetType THEN char := rfSet
  10504. ELSIF type IS SyntaxTree.AnyType THEN char := rfPointer
  10505. ELSIF type IS SyntaxTree.ObjectType THEN char := rfPointer
  10506. ELSIF type IS SyntaxTree.PointerType THEN char := rfPointer
  10507. ELSIF type IS SyntaxTree.ProcedureType THEN char := rfDelegate
  10508. ELSIF type IS SyntaxTree.RangeType THEN char := rfRange
  10509. ELSIF type IS SyntaxTree.PortType THEN char := rfPort
  10510. ELSE (*ASSERT(arrayOf);*) char := rfPointer; (*RETURN (* ARRAY OF unknown (record): do not write anything *)*)
  10511. END;
  10512. RETURN char
  10513. END BaseType;
  10514. PROCEDURE RecordType(type: SyntaxTree.RecordType);
  10515. VAR destination: Sections.Section;
  10516. BEGIN
  10517. destination := module.allSections.FindBySymbol(type.typeDeclaration); (*TODO*)
  10518. IF type.pointerType # NIL THEN
  10519. Char(section,rfRecordPointer)
  10520. ELSE
  10521. Char(section,rfRecord);
  10522. END;
  10523. IF destination = NIL THEN
  10524. Longint(section,0);
  10525. ELSE
  10526. Longint(section,destination.offset); (* used for ? *)
  10527. END;
  10528. END RecordType;
  10529. PROCEDURE StaticArrayLength(type: SyntaxTree.ArrayType; VAR baseType: SyntaxTree.Type): LONGINT;
  10530. BEGIN
  10531. baseType := type.arrayBase.resolved;
  10532. IF type.form = SyntaxTree.Static THEN
  10533. IF baseType IS SyntaxTree.ArrayType THEN
  10534. RETURN type.staticLength * StaticArrayLength(baseType(SyntaxTree.ArrayType),baseType)
  10535. ELSE
  10536. RETURN type.staticLength
  10537. END
  10538. ELSE
  10539. RETURN 0
  10540. END;
  10541. END StaticArrayLength;
  10542. PROCEDURE ArrayType(type: SyntaxTree.ArrayType);
  10543. VAR length: LONGINT; baseType: SyntaxTree.Type; char: CHAR;
  10544. BEGIN
  10545. length := StaticArrayLength(type, baseType);
  10546. char := BaseType(baseType);
  10547. IF type.form # SyntaxTree.Open THEN
  10548. Char(section,CHR(ORD(char)+ORD(rfArrayFlag)));
  10549. Longint(section, length)
  10550. ELSE
  10551. length :=0;
  10552. (*length := 1+SemanticChecker.Dimension(type,{SyntaxTree.Open});*)
  10553. Char(section, CHR(ORD(char)+ORD(rfArrayFlag)));
  10554. Longint(section, length)
  10555. END;
  10556. END ArrayType;
  10557. PROCEDURE StaticMathArrayLength(type: SyntaxTree.MathArrayType; VAR baseType: SyntaxTree.Type): LONGINT;
  10558. BEGIN
  10559. baseType := type.arrayBase;
  10560. IF baseType # NIL THEN
  10561. baseType := baseType.resolved;
  10562. END;
  10563. IF type.form = SyntaxTree.Static THEN
  10564. IF (baseType # NIL) & (baseType IS SyntaxTree.MathArrayType) THEN
  10565. RETURN type.staticLength * StaticMathArrayLength(baseType(SyntaxTree.MathArrayType),baseType)
  10566. ELSE
  10567. RETURN type.staticLength
  10568. END
  10569. ELSE
  10570. RETURN 0
  10571. END;
  10572. END StaticMathArrayLength;
  10573. PROCEDURE MathArrayType(type: SyntaxTree.MathArrayType);
  10574. VAR length: LONGINT; baseType: SyntaxTree.Type; char: CHAR;
  10575. BEGIN
  10576. length := StaticMathArrayLength(type, baseType);
  10577. char := BaseType(baseType);
  10578. IF type.form = SyntaxTree.Open THEN
  10579. char := BaseType(module.system.addressType);
  10580. length := 5+2*SemanticChecker.Dimension(type,{SyntaxTree.Open});
  10581. Char(section, CHR(ORD(char)+ORD(rfArrayFlag)));
  10582. Longint(section, length)
  10583. ELSIF type.form=SyntaxTree.Tensor THEN
  10584. char := BaseType(module.system.addressType);
  10585. Char(section, CHR(ORD(char)));
  10586. ELSE
  10587. Char(section, CHR(ORD(char)+ORD(rfArrayFlag)));
  10588. Longint(section, length)
  10589. END;
  10590. END MathArrayType;
  10591. PROCEDURE Type(type: SyntaxTree.Type);
  10592. BEGIN
  10593. IF type = NIL THEN Char(section,0X); RETURN ELSE type := type.resolved END;
  10594. IF type IS SyntaxTree.BasicType THEN
  10595. Char(section, BaseType(type));
  10596. ELSIF type IS SyntaxTree.RecordType THEN
  10597. RecordType(type(SyntaxTree.RecordType));
  10598. ELSIF type IS SyntaxTree.ArrayType THEN
  10599. ArrayType(type(SyntaxTree.ArrayType))
  10600. ELSIF type IS SyntaxTree.EnumerationType THEN
  10601. Char(section, BaseType(module.system.longintType))
  10602. ELSIF type IS SyntaxTree.PointerType THEN
  10603. IF type(SyntaxTree.PointerType).pointerBase IS SyntaxTree.RecordType THEN
  10604. RecordType(type(SyntaxTree.PointerType).pointerBase(SyntaxTree.RecordType));
  10605. ELSE
  10606. Char(section, BaseType(type))
  10607. END;
  10608. ELSIF type IS SyntaxTree.ProcedureType THEN
  10609. Char(section, BaseType(type));
  10610. ELSIF type IS SyntaxTree.MathArrayType THEN
  10611. MathArrayType(type(SyntaxTree.MathArrayType));
  10612. ELSIF type IS SyntaxTree.CellType THEN
  10613. Char(section, BaseType(module.system.anyType));
  10614. ELSIF type IS SyntaxTree.PortType THEN
  10615. Char(section, rfPort);
  10616. ELSE HALT(200)
  10617. END;
  10618. END Type;
  10619. PROCEDURE WriteVariable(variable: SyntaxTree.Variable; indirect: BOOLEAN);
  10620. VAR name: ARRAY 256 OF CHAR;
  10621. BEGIN
  10622. IF variable.externalName # NIL THEN RETURN END;
  10623. IF indirect THEN Char(section,rfIndirect) ELSE Char(section,rfDirect) END;
  10624. variable.GetName(name);
  10625. Type(variable.type);
  10626. Longint(section,ToMemoryUnits(module.system,variable.offsetInBits));
  10627. String(section,name);
  10628. END WriteVariable;
  10629. PROCEDURE WriteParameter(variable: SyntaxTree.Parameter; indirect: BOOLEAN);
  10630. VAR name: ARRAY 256 OF CHAR;
  10631. BEGIN
  10632. IF indirect THEN Char(section,rfIndirect) ELSE Char(section,rfDirect) END;
  10633. variable.GetName(name);
  10634. Type(variable.type);
  10635. Longint(section,ToMemoryUnits(module.system,variable.offsetInBits));
  10636. variable.GetName(name);
  10637. String(section,name);
  10638. END WriteParameter;
  10639. PROCEDURE ReturnType(type: SyntaxTree.Type);
  10640. BEGIN
  10641. IF type = NIL THEN Char(section,0X); RETURN ELSE type := type.resolved END;
  10642. IF type IS SyntaxTree.ArrayType THEN
  10643. WITH type: SyntaxTree.ArrayType DO
  10644. IF type.form = SyntaxTree.Static THEN Char(section,rfStaticArray)
  10645. ELSE Char(section,rfOpenArray)
  10646. END;
  10647. END
  10648. ELSIF type IS SyntaxTree.MathArrayType THEN
  10649. WITH type: SyntaxTree.MathArrayType DO
  10650. IF type.form = SyntaxTree.Static THEN Char(section,rfStaticArray)
  10651. ELSE Char(section,rfOpenArray)
  10652. END;
  10653. END
  10654. ELSIF type IS SyntaxTree.RecordType THEN
  10655. Char(section,rfRecord);
  10656. ELSE
  10657. Char(section, BaseType(type));
  10658. END;
  10659. END ReturnType;
  10660. PROCEDURE Procedure(s: Sections.Section);
  10661. VAR procedure: SyntaxTree.Procedure; procedureType: SyntaxTree.ProcedureType;
  10662. parameter: SyntaxTree.Parameter; variable: SyntaxTree.Variable;
  10663. name: ARRAY 256 OF CHAR;
  10664. BEGIN
  10665. procedure := s.symbol(SyntaxTree.Procedure); (*! check for variable or type symbol for object body *)
  10666. (*procedure.name,name);*)
  10667. Global.GetSymbolNameInScope(procedure,module.module.moduleScope,name);
  10668. procedureType := procedure.type(SyntaxTree.ProcedureType);
  10669. Char(section,0F9X);
  10670. Symbol(section,s,0,0);
  10671. Symbol(section,s,s(IntermediateCode.Section).pc,0);
  10672. Longint(section,procedureType.numberParameters);
  10673. ReturnType(procedureType.returnType);
  10674. Longint(section,0); (*! level *)
  10675. Longint(section,0);
  10676. (*
  10677. IF procedure.scope IS SyntaxTree.RecordScope THEN (* add object name *)
  10678. record := procedure.scope(SyntaxTree.RecordScope).ownerRecord;
  10679. recordName := "";
  10680. IF record.pointerType # NIL THEN
  10681. DeclarationName(record.pointerType.typeDeclaration,recordName);
  10682. ELSE
  10683. DeclarationName(record.typeDeclaration,recordName);
  10684. END;
  10685. i := 0;
  10686. Info(section,recordName);
  10687. WHILE recordName[i] # 0X DO
  10688. Char(section,recordName[i]); INC(i);
  10689. INC(size);
  10690. END;
  10691. Char(section,".");
  10692. INC(size);
  10693. END;
  10694. *)
  10695. String(section,name);
  10696. parameter := procedureType.firstParameter;
  10697. WHILE(parameter # NIL) DO
  10698. WriteParameter(parameter,parameter.kind # SyntaxTree.ValueParameter); (*!treat exceptions !*)
  10699. parameter := parameter.nextParameter;
  10700. END;
  10701. variable := procedure.procedureScope.firstVariable;
  10702. WHILE(variable # NIL) DO
  10703. WriteVariable(variable,FALSE);
  10704. variable := variable.nextVariable;
  10705. END;
  10706. END Procedure;
  10707. PROCEDURE Scope(s: Sections.Section);
  10708. BEGIN
  10709. Char(section,0F8X);
  10710. Symbol(section,s,0,0); (* start *)
  10711. Symbol(section,s,s(IntermediateCode.Section).pc,0); (* end *)
  10712. String(section,"$$");
  10713. (* removed variables -- wrongly interpreted by Reflection
  10714. variable := module.module.moduleScope.firstVariable;
  10715. WHILE(variable # NIL) DO
  10716. WriteVariable(variable,FALSE);
  10717. variable := variable.nextVariable;
  10718. END;
  10719. *)
  10720. END Scope;
  10721. PROCEDURE ComputeSize(startPC, endPC: LONGINT): SIZE;
  10722. VAR result, i: LONGINT;
  10723. BEGIN
  10724. FOR i := startPC TO endPC -1 DO
  10725. ASSERT (section.instructions[i].opcode = IntermediateCode.data);
  10726. INC(result, ToMemoryUnits(module.system, section.instructions[i].op1.type.sizeInBits));
  10727. END;
  10728. RETURN result;
  10729. END ComputeSize;
  10730. BEGIN
  10731. Array(section,sizePC,"");
  10732. startPC := section.pc;
  10733. Char(section,0FFX); (* sign for trap writer *)
  10734. FOR i := 0 TO module.allSections.Length() - 1 DO
  10735. s := module.allSections.GetSection(i);
  10736. IF (s.type # Sections.InitCodeSection) & (s.symbol = module.module.moduleScope.bodyProcedure) THEN
  10737. Scope(s) (*! must be first procedure in ref section *)
  10738. END
  10739. END;
  10740. FOR i := 0 TO module.allSections.Length() - 1 DO
  10741. s := module.allSections.GetSection(i);
  10742. IF (s.symbol = module.module.moduleScope.bodyProcedure) THEN (* already done, see above *)
  10743. ELSIF (s.type # Sections.InitCodeSection) & (s.symbol # NIL) & (s.symbol IS SyntaxTree.Procedure) & ~s.symbol(SyntaxTree.Procedure).isInline THEN
  10744. Procedure(s)
  10745. END
  10746. END;
  10747. endPC := section.pc;
  10748. PatchArray(section,sizePC,ComputeSize(startPC, endPC));
  10749. END References;
  10750. (*
  10751. Command* = RECORD
  10752. (* Fields exported for initialization by loader/linker only! Consider read-only! *)
  10753. name*: Name; (* name of the procedure *)
  10754. argTdAdr*, retTdAdr* : ADDRESS; (* address of type descriptors of argument and return type, 0 if no type *)
  10755. entryAdr* : ADDRESS; (* entry address of procedure *)
  10756. END;
  10757. *)
  10758. PROCEDURE CommandArray(source: IntermediateCode.Section);
  10759. VAR
  10760. p: Sections.Section; sizePC, numberCommands: LONGINT;
  10761. procedure : SyntaxTree.Procedure; procedureType: SyntaxTree.ProcedureType;
  10762. name: SyntaxTree.IdentifierString; numberParameters, i: LONGINT;
  10763. (* Returns TRUE if the built-in function GETPROCEDURE can be used with this procedure type *)
  10764. PROCEDURE GetProcedureAllowed() : BOOLEAN;
  10765. PROCEDURE TypeAllowed(type : SyntaxTree.Type) : BOOLEAN;
  10766. BEGIN
  10767. RETURN
  10768. (type = NIL) OR
  10769. (type.resolved IS SyntaxTree.RecordType) OR
  10770. (type.resolved IS SyntaxTree.PointerType) & (type.resolved(SyntaxTree.PointerType).pointerBase.resolved IS SyntaxTree.RecordType) OR
  10771. (type.resolved IS SyntaxTree.AnyType);
  10772. END TypeAllowed;
  10773. BEGIN
  10774. numberParameters := procedureType.numberParameters;
  10775. RETURN
  10776. (numberParameters = 0) & TypeAllowed(procedureType.returnType) OR
  10777. (numberParameters = 1) & TypeAllowed(procedureType.firstParameter.type) & TypeAllowed(procedureType.returnType) OR
  10778. (numberParameters = 1) & (procedureType.firstParameter.type.resolved IS SyntaxTree.AnyType) & (procedureType.returnType # NIL) & (procedureType.returnType.resolved IS SyntaxTree.AnyType);
  10779. END GetProcedureAllowed;
  10780. PROCEDURE WriteType(type : SyntaxTree.Type);
  10781. VAR typeDeclaration: SyntaxTree.TypeDeclaration; section: Sections.Section;
  10782. name: Basic.SegmentedName; offset: LONGINT;
  10783. BEGIN
  10784. IF type = NIL THEN
  10785. Address(source,0);
  10786. ELSIF (type.resolved IS SyntaxTree.AnyType) OR (type.resolved IS SyntaxTree.ObjectType) THEN
  10787. Address(source,1);
  10788. ELSE
  10789. type := type.resolved;
  10790. IF type IS SyntaxTree.PointerType THEN
  10791. type := type(SyntaxTree.PointerType).pointerBase.resolved;
  10792. END;
  10793. typeDeclaration := type.typeDeclaration; (* must be non-nil *)
  10794. IF (typeDeclaration.scope = NIL) OR (typeDeclaration.scope.ownerModule = module.module) THEN
  10795. name[0] := typeDeclaration.name; name[1] := -1;
  10796. section := module.allSections.FindBySymbol(type.typeDeclaration); (*TODO*)
  10797. ASSERT(section # NIL);
  10798. ELSE
  10799. Global.GetSymbolSegmentedName(typeDeclaration,name);
  10800. (* TODO *)
  10801. section := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,typeDeclaration, source.comments # NIL);
  10802. END;
  10803. IF implementationVisitor.backend.cooperative THEN
  10804. offset := 0;
  10805. ELSE
  10806. offset := 1 + type(SyntaxTree.RecordType).recordScope.numberMethods+16+1;
  10807. END;
  10808. Symbol(source,section, 0, ToMemoryUnits(module.system,offset*module.system.addressSize));
  10809. END;
  10810. END WriteType;
  10811. BEGIN
  10812. Info(source, "command array descriptor");
  10813. Array(source,sizePC,"Modules.Command");
  10814. numberCommands := 0;
  10815. Info(source, "command array content");
  10816. FOR i := 0 TO module.allSections.Length() - 1 DO
  10817. p := module.allSections.GetSection(i);
  10818. IF (p.symbol # NIL) & (p.symbol IS SyntaxTree.Procedure) THEN
  10819. procedure := p.symbol(SyntaxTree.Procedure);
  10820. procedureType := procedure.type(SyntaxTree.ProcedureType);
  10821. IF (SyntaxTree.PublicWrite IN procedure.access) & ~(procedure.isInline) & ~(procedureType.isDelegate) & GetProcedureAllowed() THEN
  10822. procedure.GetName(name);
  10823. Name(source,name);
  10824. numberParameters := procedureType.numberParameters;
  10825. (* offset of type of first parameter *)
  10826. IF (numberParameters = 0 ) THEN WriteType(NIL)
  10827. ELSE WriteType(procedureType.firstParameter.type)
  10828. END;
  10829. (* offset of type of return parameter *)
  10830. WriteType(procedureType.returnType);
  10831. (* command name *)
  10832. (* command code offset *)
  10833. Symbol(source,p,0,0);
  10834. INC(numberCommands);
  10835. IF Trace THEN
  10836. D.Ln;
  10837. END;
  10838. END;
  10839. END
  10840. END;
  10841. PatchArray(source,sizePC,numberCommands);
  10842. END CommandArray;
  10843. (* to prevent from double import of different module aliases *)
  10844. PROCEDURE IsFirstDirectOccurence(import: SyntaxTree.Import): BOOLEAN; (*! inefficient *)
  10845. VAR i: SyntaxTree.Import;
  10846. BEGIN
  10847. i := module.module.moduleScope.firstImport;
  10848. WHILE (i # NIL) & ((i.module # import.module) OR ~i.direct) DO
  10849. i := i.nextImport;
  10850. END;
  10851. RETURN i = import
  10852. END IsFirstDirectOccurence;
  10853. PROCEDURE ImportsArray(source: IntermediateCode.Section);
  10854. VAR import: SyntaxTree.Import ; pc: LONGINT;name: Basic.SegmentedName; numberImports: LONGINT; offset: LONGINT;
  10855. BEGIN
  10856. Array(source,pc,"");
  10857. Info(source, "import module array data");
  10858. IF implementationVisitor.backend.cooperative THEN
  10859. offset := 0;
  10860. ELSE
  10861. offset := ToMemoryUnits(module.system, 22* module.system.addressSize) (* Module pointer offset -- cf. ModuleSection(), how to encode generically correct? *);
  10862. END;
  10863. import := module.module.moduleScope.firstImport;
  10864. numberImports := 0;
  10865. WHILE import # NIL DO
  10866. IF import.direct & ~Global.IsSystemModule(import.module) & IsFirstDirectOccurence(import) THEN
  10867. Global.GetModuleSegmentedName(import.module,name);
  10868. Basic.SuffixSegmentedName(name, StringPool.GetIndex1("@Module"));
  10869. NamedSymbol(source, name, NIL, 0, offset);
  10870. INC(numberImports);
  10871. END;
  10872. import := import.nextImport
  10873. END;
  10874. PatchArray(source,pc,numberImports);
  10875. END ImportsArray;
  10876. PROCEDURE TypeInfoSection(source: IntermediateCode.Section);
  10877. VAR
  10878. p: Sections.Section; sizePC, size, i: LONGINT;
  10879. BEGIN
  10880. Info(source, "Type info section");
  10881. size := 0;
  10882. Array(source,sizePC,"Modules.TypeDesc");
  10883. FOR i := 0 TO module.allSections.Length() - 1 DO
  10884. p := module.allSections.GetSection(i);
  10885. WITH p: IntermediateCode.Section DO
  10886. IF Basic.SegmentedNameEndsWith(p.name,"@Info") THEN
  10887. Symbol(source,p,0,0);
  10888. INC(size);
  10889. END;
  10890. END
  10891. END;
  10892. PatchArray(source,sizePC,size);
  10893. END TypeInfoSection;
  10894. (*
  10895. ProcTableEntry* = RECORD
  10896. pcFrom*, pcLimit*, pcStatementBegin*, pcStatementEnd*: ADDRESS;
  10897. noPtr*: LONGINT;
  10898. END;
  10899. ProcTable* = POINTER TO ARRAY OF ProcTableEntry;
  10900. PtrTable* = POINTER TO ARRAY OF ADDRESS;
  10901. *)
  10902. PROCEDURE PointersInProcTables(procArray, pointerArray: IntermediateCode.Section; VAR procArraySize, maxPointers: LONGINT);
  10903. VAR
  10904. destination: Sections.Section;
  10905. pointerArraySizePC, procArraySizePC, pointerArraySize, i: LONGINT;
  10906. PROCEDURE PointerOffsets(destination : IntermediateCode.Section);
  10907. VAR numberPointers: LONGINT; procedure: SyntaxTree.Procedure; procedureType: SyntaxTree.ProcedureType;
  10908. variable: SyntaxTree.Variable; parameter: SyntaxTree.Parameter; string: Basic.SectionName;
  10909. BEGIN
  10910. Info(procArray,"pcFrom");
  10911. Symbol(procArray,destination,0,0);
  10912. Info(procArray,"pcTo");
  10913. Symbol(procArray,destination,destination.pc,0);
  10914. Info(procArray,"pcStatementBegin");
  10915. Symbol(procArray,destination,destination.validPAFEnter,0);
  10916. Info(procArray,"pcStatementEnd");
  10917. Symbol(procArray,destination,destination.validPAFExit,0);
  10918. IF ~implementationVisitor.backend.cooperative THEN
  10919. Basic.SegmentedNameToString(destination.name, string);
  10920. Info(pointerArray,string);
  10921. procedure := destination.symbol(SyntaxTree.Procedure);
  10922. procedureType := procedure.type(SyntaxTree.ProcedureType);
  10923. variable := procedure.procedureScope.firstVariable;
  10924. WHILE(variable # NIL) DO
  10925. IF ~(variable.untraced) THEN
  10926. Pointers(ToMemoryUnits(module.system,variable.offsetInBits), NIL, pointerArray, variable.type, numberPointers);
  10927. END;
  10928. variable := variable.nextVariable
  10929. END;
  10930. parameter := procedureType.firstParameter;
  10931. WHILE(parameter # NIL) DO
  10932. IF ~(parameter.untraced) THEN
  10933. Pointers(ToMemoryUnits(module.system,parameter.offsetInBits), NIL, pointerArray, parameter.type, numberPointers);
  10934. END;
  10935. parameter := parameter.nextParameter;
  10936. END;
  10937. END;
  10938. Info(procArray,"numberPointers");
  10939. Longint(procArray,numberPointers);
  10940. IF numberPointers > maxPointers THEN maxPointers := numberPointers END;
  10941. INC(pointerArraySize, numberPointers);
  10942. END PointerOffsets;
  10943. BEGIN
  10944. maxPointers := 0;
  10945. Info(procArray, "proc array descriptor");
  10946. Address(procArray,0);
  10947. Address(procArray,0);
  10948. Address(procArray,0);
  10949. procArraySizePC := procArray.pc;
  10950. Address(procArray,0);
  10951. procArraySize := 0;
  10952. IF ~implementationVisitor.backend.cooperative THEN
  10953. Info(pointerArray, "pointer array descriptor");
  10954. Address(pointerArray,0);
  10955. Address(pointerArray,0);
  10956. Address(pointerArray,0);
  10957. pointerArraySizePC := pointerArray.pc;
  10958. Address(pointerArray,0);
  10959. pointerArraySize := 0;
  10960. END;
  10961. procArraySize := 0;
  10962. FOR i := 0 TO module.allSections.Length() - 1 DO
  10963. destination := module.allSections.GetSection(i);
  10964. IF (destination.type IN {Sections.CodeSection, Sections.BodyCodeSection}) & (destination.symbol # NIL) & (destination.symbol IS SyntaxTree.Procedure) & ~destination.symbol(SyntaxTree.Procedure).isInline THEN
  10965. PointerOffsets(destination(IntermediateCode.Section));
  10966. INC(procArraySize);
  10967. END
  10968. END;
  10969. PatchLongint(procArray,procArraySizePC,procArraySize);
  10970. IF ~implementationVisitor.backend.cooperative THEN
  10971. PatchLongint(pointerArray,pointerArraySizePC,pointerArraySize);
  10972. END;
  10973. END PointersInProcTables;
  10974. (*
  10975. Module* = OBJECT (Heaps.RootObject) (* cf. Linker0 & Heaps.WriteType *)
  10976. VAR
  10977. next*: Module; (** once a module is published, all fields are read-only *)
  10978. name*: Name;
  10979. init, published: BOOLEAN;
  10980. refcnt*: LONGINT; (* counts loaded modules that import this module *)
  10981. sb*: ADDRESS; <- set to beginning of data section by loader
  10982. entry*: POINTER TO ARRAY OF ADDRESS; <- not needed in new loader
  10983. command*: POINTER TO ARRAY OF Command;
  10984. ptrAdr*: POINTER TO ARRAY OF ADDRESS;
  10985. typeInfo*: POINTER TO ARRAY OF TypeDesc;
  10986. module*: POINTER TO ARRAY OF Module; <---- currently done by loader
  10987. procTable*: ProcTable; (* information inserted by loader, removed after use in Publish *)
  10988. ptrTable*: PtrTable; (* information inserted by loader, removed after use in Publish *)
  10989. data*, code*: Bytes;
  10990. staticTypeDescs* (* ug *), refs*: Bytes; <- staticTypeDescs in data section, refs currently unsupported
  10991. export*: ExportDesc;
  10992. term*: TerminationHandler;
  10993. exTable*: ExceptionTable;
  10994. noProcs*: LONGINT;
  10995. firstProc*: ADDRESS; <- done by loader
  10996. maxPtrs*: LONGINT;
  10997. crc*: LONGINT;
  10998. *)
  10999. PROCEDURE BasePointer (section: IntermediateCode.Section);
  11000. BEGIN
  11001. Info(section, "cycle");
  11002. Size(section,0);
  11003. Info(section, "references");
  11004. Size(section,0);
  11005. Info(section, "nextMarked");
  11006. Address(section,0);
  11007. Info(section, "nextWatched");
  11008. Address(section,0);
  11009. END BasePointer;
  11010. PROCEDURE BaseObject (section: IntermediateCode.Section);
  11011. BEGIN
  11012. BasePointer(section);
  11013. Info(section, "action");
  11014. Address(section,0);
  11015. Info(section, "monitor");
  11016. Address(section,0);
  11017. END BaseObject;
  11018. PROCEDURE ModuleDescriptor(section: IntermediateCode.Section);
  11019. VAR descriptorSection: IntermediateCode.Section; name: ARRAY 128 OF CHAR;
  11020. pooledName: Basic.SegmentedName;
  11021. symbol: SyntaxTree.Symbol;
  11022. BEGIN
  11023. Global.GetModuleName(module.module,name);
  11024. Strings.Append(name,".@Module.@Descriptor");
  11025. Basic.ToSegmentedName(name, pooledName);
  11026. descriptorSection := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, pooledName,NIL,TRUE);
  11027. Symbol(section,descriptorSection,0,0);
  11028. Info(descriptorSection, "descriptor");
  11029. symbol := implementationVisitor.GetTypeDescriptor("Modules","Module", pooledName);
  11030. NamedSymbol(descriptorSection, pooledName,symbol, 0, 0);
  11031. Address(descriptorSection,0);
  11032. Global.GetModuleName(module.module,name);
  11033. Strings.Append(name,".@Trace");
  11034. Basic.ToSegmentedName(name, pooledName);
  11035. NamedSymbol(descriptorSection, pooledName,NIL, 0, 0);
  11036. Basic.ToSegmentedName ("BaseTypes.Object.Finalize",pooledName);
  11037. NamedSymbol(descriptorSection, pooledName,NIL, 0, 0);
  11038. END ModuleDescriptor;
  11039. PROCEDURE ModuleSection(): IntermediateCode.Section;
  11040. VAR name: ARRAY 128 OF CHAR;
  11041. moduleSection: IntermediateCode.Section; offset: LONGINT; pooledName: Basic.SegmentedName;
  11042. symbol: SyntaxTree.Symbol;
  11043. BEGIN
  11044. Global.GetModuleName(module.module,name);
  11045. Strings.Append(name,".@Module");
  11046. Basic.ToSegmentedName(name, pooledName);
  11047. moduleSection := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, pooledName,NIL,TRUE);
  11048. moduleSection.SetExported(TRUE);
  11049. IF moduleSection.pc = 0 THEN
  11050. IF implementationVisitor.backend.cooperative THEN
  11051. Info(moduleSection, "descriptor");
  11052. ModuleDescriptor(moduleSection);
  11053. BaseObject(moduleSection);
  11054. implementationVisitor.CreateTraceModuleMethod(module.module);
  11055. ELSE
  11056. ProtectedHeapBlock("Heaps","ProtRecBlockDesc",moduleSection,2);
  11057. Info(moduleSection, "HeapBlock");
  11058. Symbol(moduleSection,moduleSection,2,0);
  11059. Info(moduleSection, "TypeDescriptor");
  11060. symbol := implementationVisitor.GetTypeDescriptor("Modules","Module", pooledName);
  11061. offset := ToMemoryUnits(module.system,(TypeRecordBaseOffset + 1 (*= numberMethods*))*module.system.addressSize);
  11062. NamedSymbol(moduleSection, pooledName,symbol, 0, offset);
  11063. END;
  11064. END;
  11065. RETURN moduleSection;
  11066. END ModuleSection;
  11067. PROCEDURE Module(bodyProc: IntermediateCode.Section);
  11068. VAR
  11069. moduleSection, pointerSection, importSection, emptyArraySection, exceptionSection, commandsSection,
  11070. typeInfoSection, procTableSection, ptrTableSection, referenceSection : IntermediateCode.Section;
  11071. emptyArraySectionOffset, pointerSectionOffset, importSectionOffset, numberPointers,
  11072. exceptionSectionOffset, commandsSectionOffset, typeInfoSectionOffset, procTableSectionOffset, ptrTableSectionOffset, maxPointers, numberProcs,temp,
  11073. referenceSectionOffset : LONGINT;
  11074. BEGIN
  11075. pointerSection := Block("Heaps","SystemBlockDesc",".@PointerArray",pointerSectionOffset);
  11076. PointerArray(pointerSection,module.module.moduleScope, numberPointers);
  11077. importSection := Block("Heaps","SystemBlockDesc",".@ImportsArray",importSectionOffset);
  11078. ImportsArray(importSection);
  11079. commandsSection := Block("Heaps","SystemBlockDesc",".@CommandArray",commandsSectionOffset);
  11080. CommandArray(commandsSection);
  11081. exceptionSection := Block("Heaps","SystemBlockDesc",".@ExceptionArray",exceptionSectionOffset);
  11082. ExceptionArray(exceptionSection);
  11083. typeInfoSection := Block("Heaps","SystemBlockDesc",".@TypeInfoArray",typeInfoSectionOffset);
  11084. TypeInfoSection(typeInfoSection);
  11085. referenceSection := Block("Heaps","SystemBlockDesc",".@References",referenceSectionOffset);
  11086. References(referenceSection);
  11087. procTableSection := Block("Heaps","SystemBlockDesc",".@ProcTable",procTableSectionOffset);
  11088. IF ~implementationVisitor.backend.cooperative THEN
  11089. ptrTableSection := Block("Heaps","SystemBlockDesc",".@PtrTable",ptrTableSectionOffset);
  11090. ELSE
  11091. ptrTableSection := NIL;
  11092. END;
  11093. PointersInProcTables(procTableSection,ptrTableSection,numberProcs,maxPointers);
  11094. emptyArraySection := Block("Heaps","SystemBlockDesc",".@EmptyArray",emptyArraySectionOffset);
  11095. Array(emptyArraySection,temp,"");
  11096. moduleSection := ModuleSection();
  11097. Info(moduleSection, "nextRoot*: RootObject");
  11098. Address(moduleSection,0);
  11099. Info(moduleSection, "next*: Module");
  11100. Address(moduleSection,0);
  11101. Info(moduleSection, "name*: Name");
  11102. Name(moduleSection,moduleName);
  11103. Info(moduleSection, "init, published: BOOLEAN");
  11104. Boolean(moduleSection,FALSE);
  11105. Boolean(moduleSection,FALSE);
  11106. Info(moduleSection,"filler"); (*! introduce alignment! *)
  11107. Boolean(moduleSection,FALSE);
  11108. Boolean(moduleSection,FALSE);
  11109. Info(moduleSection, "refcnt*: LONGINT");
  11110. Longint(moduleSection,0);
  11111. Info(moduleSection, "sb*: ADDRESS");
  11112. Address(moduleSection,0);
  11113. Info(moduleSection, "entry*: POINTER TO ARRAY OF ADDRESS");
  11114. Symbol(moduleSection,emptyArraySection,emptyArraySectionOffset,0);
  11115. Info(moduleSection, "command*: POINTER TO ARRAY OF Command");
  11116. Symbol(moduleSection,commandsSection,commandsSectionOffset,0);
  11117. Info(moduleSection, "ptrAdr*: POINTER TO ARRAY OF ADDRESS");
  11118. Symbol(moduleSection,pointerSection,pointerSectionOffset,0);
  11119. Info(moduleSection, "typeInfo*: POINTER TO ARRAY OF TypeDesc");
  11120. Symbol(moduleSection,typeInfoSection,typeInfoSectionOffset,0);
  11121. Info(moduleSection, "module*: POINTER TO ARRAY OF Module");
  11122. Symbol(moduleSection,importSection,emptyArraySectionOffset,0);
  11123. Info(moduleSection, "procTable*: ProcTable");
  11124. Symbol(moduleSection,procTableSection,procTableSectionOffset,0);
  11125. Info(moduleSection, "ptrTable*: PtrTable");
  11126. IF ~implementationVisitor.backend.cooperative THEN
  11127. Symbol(moduleSection,ptrTableSection,ptrTableSectionOffset,0);
  11128. ELSE
  11129. Symbol(moduleSection,emptyArraySection,emptyArraySectionOffset,0);
  11130. END;
  11131. Info(moduleSection, "data*, code*, staticTypeDescs*, refs*: Bytes");
  11132. Symbol(moduleSection,emptyArraySection,emptyArraySectionOffset,0);
  11133. Symbol(moduleSection,emptyArraySection,emptyArraySectionOffset,0);
  11134. Symbol(moduleSection,emptyArraySection,emptyArraySectionOffset,0);
  11135. Symbol(moduleSection,referenceSection,referenceSectionOffset,0);
  11136. Info(moduleSection, "export*: ExportDesc");
  11137. ExportDesc(moduleSection);
  11138. IF module.system.addressType.sizeInBits = 64 THEN Longint(moduleSection, 0) END;
  11139. Info(moduleSection, "term*: TerminationHandler");
  11140. Address(moduleSection,0);
  11141. Info(moduleSection, "exTable*: ExceptionTable");
  11142. Symbol(moduleSection,exceptionSection,exceptionSectionOffset,0);
  11143. Info(moduleSection, "noProcs*: LONGINT");
  11144. Longint(moduleSection,numberProcs);
  11145. IF module.system.addressType.sizeInBits = 64 THEN Longint(moduleSection, 0); Longint(moduleSection,0); END;
  11146. Info(moduleSection, "firstProc*: ADDRESS");
  11147. Address(moduleSection,0);
  11148. Info(moduleSection, "maxPtrs*: LONGINT");
  11149. Longint(moduleSection,maxPointers);
  11150. Info(moduleSection, "crc*: LONGINT");
  11151. Longint(moduleSection, 0); (*! must be implemented *)
  11152. Info(moduleSection, "body*: ADDRESS");
  11153. Symbol(moduleSection, bodyProc, 0,0);
  11154. IF implementationVisitor.backend.cooperative THEN
  11155. PatchSymbol(moduleSection,MonitorOffset,moduleSection.name,NIL,moduleSection.pc,0);
  11156. Info(moduleSection, "monitor.owner");
  11157. Address(moduleSection,0);
  11158. Info(moduleSection, "monitor.nestingLevel");
  11159. Address(moduleSection,0);
  11160. Info(moduleSection, "monitor.blockedQueue");
  11161. Address(moduleSection,0); Address(moduleSection,0);
  11162. Info(moduleSection, "monitor.waitingQueue");
  11163. Address(moduleSection,0); Address(moduleSection,0);
  11164. Info(moduleSection, "monitor.waitingSentinel");
  11165. Address(moduleSection,0);
  11166. END;
  11167. END Module;
  11168. PROCEDURE PointerArray(source: IntermediateCode.Section; scope: SyntaxTree.Scope; VAR numberPointers: LONGINT);
  11169. VAR variable: SyntaxTree.Variable; pc: LONGINT; symbol: Sections.Section;
  11170. BEGIN
  11171. Array(source,pc,"");
  11172. Info(source, "pointer offsets array data");
  11173. IF scope IS SyntaxTree.RecordScope THEN
  11174. Pointers(0,symbol, source,scope(SyntaxTree.RecordScope).ownerRecord,numberPointers);
  11175. ELSIF scope IS SyntaxTree.CellScope THEN
  11176. Pointers(0, symbol, source, scope(SyntaxTree.CellScope).ownerCell, numberPointers);
  11177. ELSIF scope IS SyntaxTree.ModuleScope THEN
  11178. variable := scope(SyntaxTree.ModuleScope).firstVariable;
  11179. WHILE variable # NIL DO
  11180. IF ~(variable.untraced) & (variable.externalName = NIL) THEN
  11181. symbol := module.allSections.FindBySymbol(variable);
  11182. ASSERT(symbol # NIL);
  11183. Pointers(0,symbol, source,variable.type,numberPointers);
  11184. END;
  11185. variable := variable.nextVariable;
  11186. END;
  11187. END;
  11188. PatchArray(source,pc,numberPointers);
  11189. END PointerArray;
  11190. PROCEDURE SymbolSection(symbol: SyntaxTree.Symbol; CONST suffix: ARRAY OF CHAR; VAR pc: LONGINT): IntermediateCode.Section;
  11191. VAR
  11192. name: Basic.SegmentedName;
  11193. section: IntermediateCode.Section;
  11194. BEGIN
  11195. ASSERT(implementationVisitor.newObjectFile);
  11196. Global.GetSymbolSegmentedName(symbol,name);
  11197. Basic.AppendToSegmentedName(name,suffix);
  11198. section := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name, NIL,TRUE);
  11199. HeapBlock("Heaps","SystemBlockDesc", section, 2);
  11200. Info(section, "HeapBlock");
  11201. Address(section,0); (* empty such that GC does not go on traversing *)
  11202. Info(section, suffix);
  11203. Address(section,0);
  11204. pc := section.pc;
  11205. RETURN section;
  11206. END SymbolSection;
  11207. PROCEDURE ReflectVariables(in: IntermediateCode.Section; symbol: SyntaxTree.Symbol);
  11208. VAR type: SyntaxTree.Type; variable: SyntaxTree.Variable; pc: LONGINT; section: IntermediateCode.Section;
  11209. BEGIN
  11210. ASSERT(implementationVisitor.newObjectFile);
  11211. IF ~ReflectionSupport OR simple THEN variable := NIL
  11212. ELSIF symbol IS SyntaxTree.TypeDeclaration THEN
  11213. type := symbol(SyntaxTree.TypeDeclaration).declaredType.resolved;
  11214. IF type IS SyntaxTree.PointerType THEN
  11215. type := type(SyntaxTree.PointerType).pointerBase.resolved;
  11216. END;
  11217. IF type IS SyntaxTree.RecordType THEN
  11218. variable := type(SyntaxTree.RecordType).recordScope.firstVariable
  11219. ELSIF type IS SyntaxTree.CellType THEN
  11220. variable := type(SyntaxTree.CellType).cellScope.firstVariable;
  11221. END;
  11222. ELSIF symbol IS SyntaxTree.Procedure THEN
  11223. variable := symbol(SyntaxTree.Procedure).procedureScope.firstVariable;
  11224. END;
  11225. Info(in, "variables");
  11226. IF variable # NIL THEN
  11227. section := SymbolSection(symbol, "@Variables",pc);
  11228. VariableArray(section, variable);
  11229. Symbol(in, section, pc, 0);
  11230. ELSE
  11231. Address(in, 0);
  11232. END;
  11233. END ReflectVariables;
  11234. PROCEDURE ReflectProcedures(in: IntermediateCode.Section; symbol: SyntaxTree.Symbol);
  11235. VAR type: SyntaxTree.Type; procedure: SyntaxTree.Procedure; pc: LONGINT; section: IntermediateCode.Section;
  11236. BEGIN
  11237. ASSERT(implementationVisitor.newObjectFile);
  11238. IF ~ReflectionSupport OR simple THEN procedure := NIL
  11239. ELSIF symbol IS SyntaxTree.TypeDeclaration THEN
  11240. type := symbol(SyntaxTree.TypeDeclaration).declaredType.resolved;
  11241. IF type IS SyntaxTree.PointerType THEN
  11242. type := type(SyntaxTree.PointerType).pointerBase.resolved;
  11243. END;
  11244. IF type IS SyntaxTree.RecordType THEN
  11245. procedure := type(SyntaxTree.RecordType).recordScope.firstProcedure
  11246. ELSIF type IS SyntaxTree.CellType THEN
  11247. procedure := type(SyntaxTree.CellType).cellScope.firstProcedure;
  11248. END;
  11249. ELSIF symbol IS SyntaxTree.Procedure THEN
  11250. procedure := symbol(SyntaxTree.Procedure).procedureScope.firstProcedure;
  11251. END;
  11252. Info(in, "procedures");
  11253. IF procedure # NIL THEN
  11254. section := SymbolSection(symbol, "@Procedures",pc);
  11255. ProcedureArray(section, procedure);
  11256. Symbol(in, section, pc, 0);
  11257. ELSE
  11258. Address(in, 0);
  11259. END;
  11260. END ReflectProcedures;
  11261. PROCEDURE VariableArray(source: IntermediateCode.Section; variable: SyntaxTree.Variable);
  11262. VAR pc, offset: LONGINT; tir: Sections.Section; size: LONGINT;
  11263. segmentedName: Basic.SegmentedName;
  11264. td: SyntaxTree.TypeDeclaration;
  11265. type: SyntaxTree.Type;
  11266. BEGIN
  11267. Array(source,pc,"Modules.FieldEntry");
  11268. Info(source, "FieldArray");
  11269. size :=0;
  11270. WHILE variable # NIL DO
  11271. Info(source,"name");
  11272. Symbol(source, moduleNamePoolSection, DynamicName(moduleNamePoolSection, variable.name, moduleNamePool), 0); (* reference to dynamic name *)
  11273. type := variable.type.resolved;
  11274. Info(source,"offset");
  11275. Size(source, ToMemoryUnits(module.system,variable.offsetInBits));
  11276. Info(source,"type class");
  11277. IF type IS SyntaxTree.PointerType THEN
  11278. Size(source, 1);
  11279. ELSIF type IS SyntaxTree.RecordType THEN
  11280. Size(source, 2);
  11281. ELSIF type IS SyntaxTree.NumberType THEN
  11282. Size(source, 3);
  11283. ELSE
  11284. Size(source, 0);
  11285. END;
  11286. Info(source, "type desc");
  11287. IF type IS SyntaxTree.RecordType THEN
  11288. td := type(SyntaxTree.RecordType).typeDeclaration;
  11289. Global.GetSymbolSegmentedName(td,segmentedName);
  11290. IF (td.scope = NIL) OR (td.scope.ownerModule = module.module) THEN
  11291. tir := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, segmentedName,td,declarationVisitor.dump);
  11292. ELSE
  11293. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, segmentedName,td,declarationVisitor.dump);
  11294. END;
  11295. offset := ToMemoryUnits(module.system,GetTypeRecordBaseOffset(type(SyntaxTree.RecordType).recordScope.numberMethods)*module.system.addressSize);
  11296. Symbol(source, tir, 0, offset);
  11297. ELSE
  11298. Address(source, 0);
  11299. END;
  11300. Info(source,"flags");
  11301. Set(source, {});
  11302. variable := variable.nextVariable;
  11303. INC(size);
  11304. END;
  11305. PatchArray(source,pc,size);
  11306. END VariableArray;
  11307. PROCEDURE ProcedureArray(source: IntermediateCode.Section; procedure: SyntaxTree.Procedure);
  11308. VAR pc: LONGINT; size: LONGINT;
  11309. segmentedName: Basic.SegmentedName;
  11310. BEGIN
  11311. Array(source,pc,"Modules.ProcedureEntry");
  11312. Info(source, "ProcedureArray");
  11313. size :=0;
  11314. WHILE procedure # NIL DO
  11315. Info(source,"name");
  11316. Symbol(source, moduleNamePoolSection, DynamicName(moduleNamePoolSection, procedure.name, moduleNamePool), 0); (* reference to dynamic name *)
  11317. Global.GetSymbolSegmentedName(procedure, segmentedName);
  11318. NamedSymbol(source, segmentedName, procedure, 0 , 0);
  11319. (* size *)
  11320. Size(source, 0);
  11321. (* parameters *)
  11322. Address(source, 0);
  11323. (* variables *)
  11324. ReflectVariables(source, procedure);
  11325. ReflectProcedures(source, procedure);
  11326. (* return type entry *)
  11327. Address(source, 0);
  11328. Address(source, 0);
  11329. procedure := procedure.nextProcedure;
  11330. INC(size);
  11331. END;
  11332. PatchArray(source,pc,size);
  11333. END ProcedureArray;
  11334. PROCEDURE CheckTypeDeclaration(x: SyntaxTree.Type);
  11335. VAR recordType: SyntaxTree.RecordType;
  11336. tir: IntermediateCode.Section; op: IntermediateCode.Operand; name: Basic.SegmentedName; td: SyntaxTree.TypeDeclaration;
  11337. section: Sections.Section; cellType: SyntaxTree.CellType;
  11338. PROCEDURE NewTypeDescriptorInfo(tag: Sections.Section; offset: LONGINT; isProtected: BOOLEAN): Sections.Section;
  11339. VAR name: Basic.SegmentedName;source: IntermediateCode.Section;
  11340. moduleSection: IntermediateCode.Section; i: LONGINT; flags: SET;
  11341. sectionName: Basic.SectionName;
  11342. CONST MPO=-40000000H;
  11343. BEGIN
  11344. (*
  11345. TypeDesc* = POINTER TO RECORD
  11346. descSize: LONGINT;
  11347. sentinel: LONGINT; (* = MPO-4 *)
  11348. tag*: ADDRESS; (* pointer to static type descriptor, only used by linker and loader *)
  11349. flags*: SET;
  11350. mod*: Module; (* hint only, because module may have been freed (at Heaps.ModOfs) *)
  11351. name*: Name;
  11352. END;
  11353. *)
  11354. (* source := module.sections.FindByName(...) *)
  11355. Global.GetSymbolSegmentedName(td,name);
  11356. Basic.AppendToSegmentedName(name,"@Info");
  11357. source := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,NIL,declarationVisitor.dump);
  11358. Info(source, "type info size"); Address(source, 3*ToMemoryUnits(module.system,module.system.addressSize)+32);
  11359. Address(source,MPO-4);
  11360. Info(source, "type tag pointer");
  11361. Symbol( source, tag, offset, 0);
  11362. Info(source, "type flags");
  11363. flags := {};
  11364. IF isProtected THEN INCL(flags,31) END;
  11365. Set( source, flags);
  11366. Info(source, "pointer to module");
  11367. moduleSection := ModuleSection();
  11368. Symbol( source, moduleSection, moduleSection.pc,0);
  11369. Info(source, "type name");
  11370. i := 0;
  11371. Global.GetSymbolNameInScope(td, module.module.moduleScope, sectionName);
  11372. (*
  11373. Global.GetSymbolSegmentedName(td,name);
  11374. Basic.SegmentedNameToString(name, sectionName);
  11375. *)
  11376. Name(source,sectionName);
  11377. source.SetReferenced(FALSE);
  11378. Global.GetSymbolSegmentedName(td,name);
  11379. Basic.AppendToSegmentedName(name,"@Fields");
  11380. ReflectVariables(source, td);
  11381. ReflectProcedures(source, td);
  11382. (*
  11383. fieldSection := VariableArray(
  11384. fieldSection := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name, NIL,TRUE);
  11385. HeapBlock("Heaps","SystemBlockDesc", fieldSection, 2);
  11386. Info(fieldSection, "HeapBlock");
  11387. Address(fieldSection,0); (* empty such that GC does not go on traversing *)
  11388. Info(fieldSection, "TypeDescriptor");
  11389. Address(fieldSection,0);
  11390. Info(source, "FieldArray ref");
  11391. Symbol(source, fieldSection, fieldSection.pc, 0);
  11392. FieldArray(fieldSection);
  11393. Global.GetSymbolSegmentedName(td,name);
  11394. Basic.AppendToSegmentedName(name,"@Procedures");
  11395. fieldSection := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name, NIL,TRUE);
  11396. HeapBlock("Heaps","SystemBlockDesc", fieldSection, 2);
  11397. Info(fieldSection, "HeapBlock");
  11398. Address(fieldSection,0); (* empty such that GC does not go on traversing *)
  11399. Info(fieldSection, "TypeDescriptor");
  11400. Address(fieldSection,0);
  11401. Info(source, "Procedure Array ref");
  11402. Symbol(source, fieldSection, fieldSection.pc, 0);
  11403. ProcedureArray(fieldSection);
  11404. *)
  11405. RETURN source;
  11406. END NewTypeDescriptorInfo;
  11407. PROCEDURE NewTypeDescriptor;
  11408. VAR name: Basic.SegmentedName; op: IntermediateCode.Operand; source, base: IntermediateCode.Section;
  11409. procedure: SyntaxTree.Procedure; baseRecord: SyntaxTree.RecordType;
  11410. baseTD: SyntaxTree.TypeDeclaration; sym: SyntaxTree.Symbol;
  11411. numberPointers: LONGINT; padding, i: LONGINT;
  11412. CONST MPO=-40000000H;
  11413. PROCEDURE TdTable(size: LONGINT; reverse: BOOLEAN);
  11414. VAR i: LONGINT;
  11415. PROCEDURE Td(record: SyntaxTree.RecordType);
  11416. VAR baseTD: SyntaxTree.TypeDeclaration; name: Basic.SegmentedName; offset: LONGINT;
  11417. BEGIN
  11418. IF record # NIL THEN
  11419. IF ~reverse THEN Td(record.GetBaseRecord()) END;
  11420. baseTD := record.typeDeclaration;
  11421. Global.GetSymbolSegmentedName(baseTD,name);
  11422. IF (baseTD.scope = NIL) OR (baseTD.scope.ownerModule = module.module) THEN
  11423. tir := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,baseTD,declarationVisitor.dump);
  11424. ELSE
  11425. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,baseTD,declarationVisitor.dump);
  11426. END;
  11427. offset := ToMemoryUnits(module.system,GetTypeRecordBaseOffset(record.recordScope.numberMethods)*module.system.addressSize);
  11428. Symbol(source, tir, 0, offset);
  11429. IF reverse THEN Td(record.GetBaseRecord()) END;
  11430. END;
  11431. END Td;
  11432. BEGIN
  11433. Info(source, "tag table");
  11434. baseRecord := recordType;
  11435. i := 0;
  11436. WHILE baseRecord # NIL DO
  11437. INC(i);
  11438. baseRecord := baseRecord.GetBaseRecord();
  11439. END;
  11440. IF i > size THEN implementationVisitor.Error(x.position,"maximal extension level exceeded") END;
  11441. IF ~reverse THEN Td(recordType) END;
  11442. WHILE i < size DO
  11443. Address(source,0);
  11444. INC(i);
  11445. END;
  11446. IF reverse THEN Td(recordType) END;
  11447. END TdTable;
  11448. PROCEDURE MethodTable(reverse: BOOLEAN);
  11449. VAR i,methods: LONGINT;
  11450. BEGIN
  11451. Info(source, "method table");
  11452. IF recordType # NIL THEN
  11453. methods := recordType.recordScope.numberMethods;
  11454. IF reverse THEN
  11455. FOR i := methods-1 TO 0 BY -1 DO
  11456. procedure := recordType.recordScope.FindMethod(i);
  11457. Global.GetSymbolSegmentedName(procedure, name);
  11458. NamedSymbol(source, name,procedure, 0,0);
  11459. END;
  11460. ELSE
  11461. FOR i := 0 TO methods-1 DO
  11462. procedure := recordType.recordScope.FindMethod(i);
  11463. Global.GetSymbolSegmentedName(procedure, name);
  11464. NamedSymbol(source, name,procedure, 0,0);
  11465. END;
  11466. END;
  11467. END;
  11468. END MethodTable;
  11469. PROCEDURE CooperativeMethodTable(pointer: BOOLEAN);
  11470. VAR baseRecord: SyntaxTree.RecordType; name, stackFrame: Basic.SegmentedName; i,start,methods: LONGINT;
  11471. BEGIN
  11472. Info(source, "method table");
  11473. baseRecord := recordType;
  11474. WHILE baseRecord.baseType # NIL DO
  11475. baseRecord := baseRecord.GetBaseRecord ();
  11476. END;
  11477. GetRecordTypeName (baseRecord, name);
  11478. Basic.ToSegmentedName ("BaseTypes.StackFrame", stackFrame);
  11479. IF name = stackFrame THEN
  11480. start := 0;
  11481. ELSIF ~HasExplicitTraceMethod(recordType) THEN
  11482. baseRecord := recordType;
  11483. WHILE (baseRecord # NIL) & ~baseRecord.hasPointers DO
  11484. baseRecord := baseRecord.GetBaseRecord ();
  11485. END;
  11486. IF baseRecord # NIL THEN
  11487. GetRecordTypeName (baseRecord, name);
  11488. IF pointer & ~baseRecord.isObject THEN
  11489. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Pointer"));
  11490. END;
  11491. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Trace"));
  11492. ELSIF recordType.isObject THEN
  11493. Basic.ToSegmentedName ("BaseTypes.Object.@Trace",name);
  11494. ELSIF pointer THEN
  11495. Basic.ToSegmentedName ("BaseTypes.Pointer.Trace",name);
  11496. ELSE
  11497. Basic.ToSegmentedName ("BaseTypes.Record.@Trace",name);
  11498. END;
  11499. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,NIL,declarationVisitor.dump);
  11500. Symbol(source, tir, 0, 0);
  11501. start := 0;
  11502. baseRecord := recordType;
  11503. WHILE (baseRecord # NIL) DO
  11504. IF HasExplicitTraceMethod(baseRecord) THEN start := 1 END;
  11505. baseRecord := baseRecord.GetBaseRecord ();
  11506. END;
  11507. ELSE
  11508. (* explicit trace method: *)
  11509. procedure := recordType.recordScope.FindMethod(0);
  11510. IF ~procedure.isFinalizer THEN
  11511. Global.GetSymbolSegmentedName(procedure, name);
  11512. NamedSymbol(source, name,procedure, 0,0);
  11513. END;
  11514. start := 1;
  11515. END;
  11516. IF (name # stackFrame) & recordType.isObject THEN
  11517. baseRecord := recordType;
  11518. WHILE (baseRecord # NIL) & (baseRecord.recordScope.finalizer = NIL) DO
  11519. baseRecord := baseRecord.GetBaseRecord ();
  11520. END;
  11521. IF (baseRecord = NIL) OR (baseRecord.recordScope.finalizer = NIL) THEN
  11522. Basic.ToSegmentedName ("BaseTypes.Object.Finalize",name);
  11523. ELSE
  11524. Global.GetSymbolSegmentedName(baseRecord.recordScope.finalizer, name);
  11525. END;
  11526. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,NIL,declarationVisitor.dump);
  11527. Symbol(source, tir, 0, 0);
  11528. END;
  11529. methods := recordType.recordScope.numberMethods;
  11530. FOR i := start TO methods-1 DO
  11531. procedure := recordType.recordScope.FindMethod(i);
  11532. IF ~procedure.isFinalizer THEN
  11533. Global.GetSymbolSegmentedName(procedure, name);
  11534. NamedSymbol(source, name,procedure, 0,0);
  11535. END;
  11536. END;
  11537. END CooperativeMethodTable;
  11538. BEGIN
  11539. Global.GetSymbolSegmentedName(td,name);
  11540. source := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,td,declarationVisitor.dump);
  11541. source.SetExported(IsExported(td));
  11542. IF (cellType # NIL) THEN recordType := cellType.GetBaseRecord() END;
  11543. IF implementationVisitor.backend.cooperative THEN
  11544. base := NIL;
  11545. baseRecord := recordType.GetBaseRecord();
  11546. IF baseRecord # NIL THEN
  11547. baseTD := baseRecord.typeDeclaration;
  11548. END;
  11549. IF ~recordType.isObject THEN
  11550. Info(source, "parent");
  11551. IF baseRecord # NIL THEN
  11552. Global.GetSymbolSegmentedName(baseTD,name);
  11553. IF (baseTD.scope = NIL) OR (baseTD.scope.ownerModule = module.module) THEN
  11554. tir := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,baseTD,declarationVisitor.dump);
  11555. ELSE
  11556. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,baseTD,declarationVisitor.dump);
  11557. END;
  11558. Symbol(source, tir, 0, 0);
  11559. ELSE
  11560. Address(source,0);
  11561. END;
  11562. Info(source, "record size");
  11563. Address(source, ToMemoryUnits(module.system,module.system.SizeOf(recordType)));
  11564. source.SetReferenced(FALSE);
  11565. CooperativeMethodTable(FALSE);
  11566. base := source;
  11567. Global.GetSymbolSegmentedName(td,name);
  11568. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Pointer"));
  11569. source := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,NIL,declarationVisitor.dump);
  11570. source.SetExported(IsExported(td));
  11571. source.SetReferenced(FALSE);
  11572. END;
  11573. Info(source, "parent");
  11574. IF baseRecord # NIL THEN
  11575. Global.GetSymbolSegmentedName(baseTD,name);
  11576. sym := baseTD;
  11577. IF ~recordType.isObject THEN
  11578. Basic.SuffixSegmentedName (name, Basic.MakeString ("@Pointer"));
  11579. sym := NIL;
  11580. END;
  11581. IF (baseTD.scope = NIL) OR (baseTD.scope.ownerModule = module.module) THEN
  11582. tir := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,sym,declarationVisitor.dump);
  11583. ELSE
  11584. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,sym,declarationVisitor.dump);
  11585. END;
  11586. Symbol(source, tir, 0, 0);
  11587. ELSIF (recordType.pointerType # NIL) & recordType.pointerType.isPlain THEN
  11588. Address(source,0);
  11589. ELSE
  11590. IF recordType.isObject THEN
  11591. Basic.ToSegmentedName ("BaseTypes.Object",name);
  11592. ELSE
  11593. Basic.ToSegmentedName ("BaseTypes.Record",name);
  11594. END;
  11595. tir := IntermediateCode.NewSection(module.importedSections, Sections.ConstSection, name,NIL,declarationVisitor.dump);
  11596. Symbol(source, tir, 0, 0);
  11597. END;
  11598. Info(source, "base record descriptor");
  11599. Symbol(source, base, 0, 0);
  11600. CooperativeMethodTable(TRUE);
  11601. source.SetReferenced(FALSE);
  11602. IF recordType.hasPointers THEN
  11603. IF ~HasExplicitTraceMethod (recordType) THEN
  11604. implementationVisitor.CreateTraceMethod(recordType);
  11605. END;
  11606. implementationVisitor.CreateResetProcedure(recordType);
  11607. implementationVisitor.CreateAssignProcedure(recordType);
  11608. END;
  11609. ELSIF ~simple THEN
  11610. (*
  11611. MethodEnd = MPO
  11612. ---
  11613. methods (# methods)
  11614. ---
  11615. tags (16)
  11616. ---
  11617. TypeDesc = TypeInfoAdr
  11618. ---
  11619. td adr ---> rec size
  11620. ----
  11621. pointer offsets
  11622. ----
  11623. (padding)
  11624. -----
  11625. empty [2 addresses aligned]
  11626. empty
  11627. empty
  11628. numPtrs
  11629. ---
  11630. pointer offsets
  11631. ---
  11632. *)
  11633. Info(source, "MethodEnd = MPO");
  11634. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.addressType),MPO);
  11635. source(IntermediateCode.Section).Emit(Data(-1,op));
  11636. MethodTable(TRUE);
  11637. TdTable(TypeTags, TRUE);
  11638. Info(source, "type descriptor info pointer");
  11639. Symbol(source, NewTypeDescriptorInfo(source,source.pc+1,recordType.IsProtected()),0,0);
  11640. IF (cellType # NIL) THEN
  11641. IF cellType.sizeInBits < 0 THEN
  11642. ASSERT(module.system.GenerateVariableOffsets(cellType.cellScope));
  11643. END;
  11644. Info(source, "cell size");
  11645. Address(source, ToMemoryUnits(module.system,cellType.sizeInBits));
  11646. ELSE
  11647. Info(source, "record size");
  11648. Address(source, ToMemoryUnits(module.system,module.system.SizeOf(recordType)));
  11649. END;
  11650. Info(source, "pointer offsets pointer");
  11651. padding := 1- source.pc MOD 2;
  11652. Symbol(source, source, source.pc+1+padding,0);
  11653. IF padding >0 THEN
  11654. Info(source, "padding");
  11655. FOR i := 1 TO padding DO Address(source,0) END;
  11656. END;
  11657. IF cellType # NIL THEN
  11658. PointerArray(source, cellType.cellScope, numberPointers);
  11659. ELSE
  11660. PointerArray(source, recordType.recordScope, numberPointers);
  11661. END;
  11662. ELSE
  11663. (*
  11664. simple:
  11665. td adr --> size
  11666. tag(1)
  11667. tag(2)
  11668. tag(3)
  11669. methods ->
  11670. *)
  11671. Info(source, "record size");
  11672. Address(source, ToMemoryUnits(module.system,module.system.SizeOf(recordType)));
  11673. TdTable(TypeTags, FALSE);
  11674. MethodTable(FALSE);
  11675. source.SetReferenced(FALSE);
  11676. END;
  11677. END NewTypeDescriptor;
  11678. BEGIN
  11679. x := x.resolved;
  11680. IF (x IS SyntaxTree.PointerType) THEN
  11681. x := x(SyntaxTree.PointerType).pointerBase.resolved;
  11682. END;
  11683. IF (x IS SyntaxTree.RecordType) THEN (* enter: insert only if not already inserted *)
  11684. recordType := x(SyntaxTree.RecordType);
  11685. td := x.typeDeclaration;
  11686. IF td = NIL THEN td := recordType.pointerType.resolved.typeDeclaration END; (* for compatibility with paco *)
  11687. ASSERT(td # NIL);
  11688. section := module.allSections.FindBySymbol(td); (* TODO *)
  11689. IF (section = NIL) OR (section(IntermediateCode.Section).pc = 0) THEN
  11690. IF implementationVisitor.newObjectFile THEN
  11691. IF (td.scope = NIL) OR (td.scope.ownerModule = module.module) THEN
  11692. NewTypeDescriptor
  11693. END;
  11694. ELSE
  11695. (* data section in intermediate code *)
  11696. Global.GetSymbolSegmentedName(td,name);
  11697. Basic.SuffixSegmentedName (name, Basic.MakeString("@"));
  11698. Basic.SuffixSegmentedName (name, module.module.name);
  11699. tir := IntermediateCode.NewSection(module.allSections, Sections.ConstSection, name,td,implementationVisitor.dump # NIL);
  11700. IntermediateCode.InitImmediate(op,IntermediateCode.GetType(module.system, module.system.addressType),0);
  11701. tir.Emit(Data(-1,op));
  11702. END;
  11703. END;
  11704. ELSIF (x IS SyntaxTree.CellType) & implementationVisitor.backend.cellsAreObjects THEN
  11705. cellType := x(SyntaxTree.CellType);
  11706. td := x.typeDeclaration;
  11707. section := module.allSections.FindBySymbol(td); (* TODO *)
  11708. IF (section = NIL) OR (section(IntermediateCode.Section).pc = 0) THEN
  11709. IF implementationVisitor.newObjectFile THEN
  11710. IF (td.scope = NIL) OR (td.scope.ownerModule = module.module) THEN
  11711. NewTypeDescriptor
  11712. END;
  11713. END;
  11714. END;
  11715. END
  11716. END CheckTypeDeclaration
  11717. END MetaDataGenerator;
  11718. IntermediateBackend*= OBJECT (IntermediateCode.IntermediateBackend)
  11719. VAR
  11720. trace-: BOOLEAN;
  11721. traceString-: SyntaxTree.IdentifierString;
  11722. traceModuleName-: SyntaxTree.IdentifierString;
  11723. newObjectFile-: BOOLEAN;
  11724. profile-: BOOLEAN;
  11725. noRuntimeChecks: BOOLEAN;
  11726. simpleMetaData-: BOOLEAN;
  11727. noAsserts: BOOLEAN;
  11728. optimize-: BOOLEAN;
  11729. cooperative-: BOOLEAN;
  11730. preregisterStatic-: BOOLEAN;
  11731. dump-: Basic.Writer;
  11732. cellsAreObjects: BOOLEAN;
  11733. PROCEDURE &InitIntermediateBackend*;
  11734. BEGIN
  11735. simpleMetaData := FALSE;
  11736. newObjectFile := FALSE;
  11737. InitBackend;
  11738. SetRuntimeModuleName(DefaultRuntimeModuleName);
  11739. SetTraceModuleName(DefaultTraceModuleName);
  11740. END InitIntermediateBackend;
  11741. PROCEDURE GenerateIntermediate*(x: SyntaxTree.Module; supportedInstruction: SupportedInstructionProcedure; supportedImmediate: SupportedImmediateProcedure): Sections.Module;
  11742. VAR
  11743. declarationVisitor: DeclarationVisitor;
  11744. implementationVisitor: ImplementationVisitor;
  11745. module: Sections.Module;
  11746. name, platformName: SyntaxTree.IdentifierString;
  11747. meta: MetaDataGenerator;
  11748. BEGIN
  11749. ResetError;
  11750. Global.GetSymbolName(x,name);
  11751. NEW(module,x,system); (* backend structures *)
  11752. Global.GetModuleName(x, name);
  11753. module.SetModuleName(name);
  11754. NEW(implementationVisitor,system,checker,supportedInstruction, supportedImmediate, Compiler.FindPC IN flags, runtimeModuleName, SELF, newObjectFile);
  11755. NEW(declarationVisitor,system,implementationVisitor,SELF,Compiler.ForceModuleBodies IN flags,trace & (Compiler.Info IN flags));
  11756. NEW(meta, implementationVisitor, declarationVisitor,simpleMetaData);
  11757. declarationVisitor.Module(x,module);
  11758. IF newObjectFile & ~meta.simple THEN
  11759. meta.Module(implementationVisitor.moduleBodySection);
  11760. END;
  11761. GetDescription(platformName);
  11762. module.SetPlatformName(platformName);
  11763. RETURN module
  11764. END GenerateIntermediate;
  11765. PROCEDURE SupportedImmediate*(CONST op: IntermediateCode.Operand): BOOLEAN;
  11766. BEGIN RETURN TRUE
  11767. END SupportedImmediate;
  11768. PROCEDURE ProcessSyntaxTreeModule(syntaxTreeModule: SyntaxTree.Module): Formats.GeneratedModule;
  11769. BEGIN RETURN ProcessIntermediateCodeModule(GenerateIntermediate(syntaxTreeModule, SupportedInstruction, SupportedImmediate))
  11770. END ProcessSyntaxTreeModule;
  11771. PROCEDURE ProcessIntermediateCodeModule(intermediateCodeModule: Formats.GeneratedModule): Formats.GeneratedModule;
  11772. VAR
  11773. result: Sections.Module;
  11774. traceName: Basic.MessageString;
  11775. BEGIN
  11776. ASSERT(intermediateCodeModule IS Sections.Module);
  11777. result := intermediateCodeModule(Sections.Module);
  11778. IF trace THEN
  11779. traceName := "intermediate code trace: ";
  11780. Strings.Append(traceName,traceString);
  11781. dump := Basic.GetWriter(Basic.GetDebugWriter(traceName));
  11782. IF (traceString="") OR (traceString="*") THEN
  11783. result.Dump(dump);
  11784. dump.Update
  11785. ELSE
  11786. Sections.DumpFiltered(dump, result, traceString);
  11787. END
  11788. END;
  11789. RETURN result
  11790. END ProcessIntermediateCodeModule;
  11791. PROCEDURE GetDescription*(VAR instructionSet: ARRAY OF CHAR);
  11792. BEGIN instructionSet := "Intermediate";
  11793. END GetDescription;
  11794. PROCEDURE SetNewObjectFile*(newObjectFile: BOOLEAN; simpleMetaData: BOOLEAN);
  11795. BEGIN
  11796. SELF.newObjectFile := newObjectFile;
  11797. SELF.simpleMetaData := simpleMetaData;
  11798. END SetNewObjectFile;
  11799. PROCEDURE SetTraceModuleName(CONST name: ARRAY OF CHAR);
  11800. BEGIN COPY(name, traceModuleName)
  11801. END SetTraceModuleName;
  11802. PROCEDURE DefineOptions(options: Options.Options);
  11803. BEGIN
  11804. DefineOptions^(options);
  11805. options.Add(0X,"trace",Options.String);
  11806. options.Add(0X,"runtime",Options.String);
  11807. options.Add(0X,"newObjectFile",Options.Flag);
  11808. options.Add(0X,"traceModule",Options.String);
  11809. options.Add(0X,"profile",Options.Flag);
  11810. options.Add(0X,"noRuntimeChecks",Options.Flag);
  11811. options.Add(0X,"noAsserts",Options.Flag);
  11812. options.Add(0X,"metaData",Options.String);
  11813. options.Add('o',"optimize", Options.Flag);
  11814. options.Add(0X,"preregisterStatic", Options.Flag);
  11815. options.Add(0X,"cellsAreObjects", Options.Flag);
  11816. END DefineOptions;
  11817. PROCEDURE GetOptions(options: Options.Options);
  11818. VAR name,string: SyntaxTree.IdentifierString;
  11819. BEGIN
  11820. GetOptions^(options);
  11821. trace := options.GetString("trace",traceString);
  11822. profile := options.GetFlag("profile");
  11823. noRuntimeChecks := options.GetFlag("noRuntimeChecks");
  11824. noAsserts := options.GetFlag("noAsserts");
  11825. cooperative := options.GetFlag("cooperative");
  11826. IF options.GetFlag("newObjectFile") THEN newObjectFile := TRUE;
  11827. IF cooperative THEN
  11828. SetRuntimeModuleName("CPU") END
  11829. END;
  11830. IF options.GetString("objectFile",string) & (string = "Minos") THEN
  11831. simpleMetaData := TRUE
  11832. END;
  11833. IF options.GetString("metaData",string) THEN
  11834. IF string = "simple" THEN simpleMetaData := TRUE
  11835. ELSIF string ="full" THEN simpleMetaData := FALSE
  11836. END;
  11837. END;
  11838. IF options.GetString("runtime",name) THEN SetRuntimeModuleName(name) END;
  11839. IF options.GetString("traceModule",name) THEN SetTraceModuleName(name) END;
  11840. optimize := options.GetFlag("optimize");
  11841. preregisterStatic := options.GetFlag("preregisterStatic");
  11842. cellsAreObjects := options.GetFlag("cellsAreObjects");
  11843. END GetOptions;
  11844. PROCEDURE DefaultSymbolFileFormat(): Formats.SymbolFileFormat;
  11845. BEGIN RETURN SymbolFileFormat.Get()
  11846. END DefaultSymbolFileFormat;
  11847. END IntermediateBackend;
  11848. (* ----------------------------------- register allocation ------------------------------------- *)
  11849. (* register mapping scheme
  11850. virtual register number --> register mapping = part(0) --> ticket <--> physical register
  11851. spill offset
  11852. part(n) --> ticket <--> physical register
  11853. spill offset
  11854. *)
  11855. VAR int8-, int16-, int32-, int64-, uint8-, uint16-, uint32-, uint64-, float32-, float64-: IntermediateCode.Type;
  11856. emptyOperand: IntermediateCode.Operand;
  11857. systemCalls: ARRAY NumberSystemCalls OF SyntaxTree.Symbol;
  11858. statCoopResetVariables: LONGINT;
  11859. statCoopModifyAssignments: LONGINT;
  11860. modifyAssignmentsPC : LONGINT;
  11861. statCoopNilCheck: LONGINT;
  11862. statCoopSwitch: LONGINT;
  11863. statCoopAssignProcedure: LONGINT;
  11864. statCoopTraceMethod: LONGINT;
  11865. statCoopResetProcedure: LONGINT;
  11866. statCoopTraceModule: LONGINT;
  11867. PROCEDURE ResetStatistics*;
  11868. BEGIN
  11869. statCoopResetVariables := 0;
  11870. statCoopModifyAssignments := 0;
  11871. statCoopNilCheck:= 0;
  11872. statCoopSwitch:= 0;
  11873. statCoopAssignProcedure:= 0;
  11874. statCoopTraceMethod:= 0;
  11875. statCoopResetProcedure:= 0;
  11876. statCoopTraceModule:= 0;
  11877. END ResetStatistics;
  11878. PROCEDURE Statistics*;
  11879. BEGIN
  11880. TRACE(statCoopResetVariables, statCoopModifyAssignments);
  11881. TRACE(statCoopNilCheck, statCoopSwitch);
  11882. TRACE(statCoopAssignProcedure,
  11883. statCoopTraceMethod,
  11884. statCoopResetProcedure,
  11885. statCoopTraceModule)
  11886. END Statistics;
  11887. PROCEDURE GCD(a,b: LONGINT): LONGINT;
  11888. VAR h: LONGINT;
  11889. BEGIN
  11890. WHILE b # 0 DO
  11891. h := a MOD b;
  11892. a := b;
  11893. b := h;
  11894. END;
  11895. RETURN a
  11896. END GCD;
  11897. PROCEDURE SCM(a,b: LONGINT): LONGINT;
  11898. BEGIN
  11899. RETURN a*b DIV GCD(a,b)
  11900. END SCM;
  11901. PROCEDURE CommonAlignment(a,b: LONGINT): LONGINT;
  11902. BEGIN
  11903. (*TRACE(a,b);*)
  11904. IF a = 0 THEN RETURN b
  11905. ELSIF b = 0 THEN RETURN a
  11906. ELSE RETURN SCM(a,b)
  11907. END;
  11908. END CommonAlignment;
  11909. PROCEDURE PassBySingleReference(parameter: SyntaxTree.Parameter): BOOLEAN;
  11910. BEGIN
  11911. IF parameter.kind = SyntaxTree.ValueParameter THEN RETURN FALSE
  11912. ELSIF parameter.kind = SyntaxTree.ConstParameter THEN
  11913. RETURN (parameter.type.resolved IS SyntaxTree.RecordType) OR (parameter.type.resolved IS SyntaxTree.ArrayType) & (parameter.ownerType(SyntaxTree.ProcedureType).callingConvention = SyntaxTree.CCallingConvention)
  11914. ELSIF parameter.kind = SyntaxTree.VarParameter THEN
  11915. RETURN ~(parameter.type.resolved IS SyntaxTree.ArrayType) & ~(parameter.type.resolved IS SyntaxTree.MathArrayType) OR (parameter.type.resolved IS SyntaxTree.ArrayType) & (parameter.ownerType(SyntaxTree.ProcedureType).callingConvention = SyntaxTree.CCallingConvention)
  11916. END
  11917. END PassBySingleReference;
  11918. PROCEDURE PassInRegister(parameter: SyntaxTree.Parameter): BOOLEAN;
  11919. BEGIN
  11920. RETURN ~parameter.type.IsComposite() OR PassBySingleReference(parameter)
  11921. END PassInRegister;
  11922. PROCEDURE AddRegisterEntry(VAR queue: RegisterEntry; register: LONGINT; class: IntermediateCode.RegisterClass; type: IntermediateCode.Type);
  11923. VAR new: RegisterEntry;
  11924. BEGIN
  11925. NEW(new); new.register := register; new.registerClass := class; new.type := type; new.next := NIL; new.prev := NIL;
  11926. IF queue = NIL THEN
  11927. queue := new
  11928. ELSE
  11929. new.next := queue;
  11930. IF queue#NIL THEN queue.prev := new END;
  11931. queue := new
  11932. END;
  11933. END AddRegisterEntry;
  11934. PROCEDURE RemoveRegisterEntry(VAR queue: RegisterEntry; register: LONGINT): BOOLEAN;
  11935. VAR this: RegisterEntry;
  11936. BEGIN
  11937. this := queue;
  11938. WHILE (this # NIL) & (this.register # register) DO
  11939. this := this.next;
  11940. END;
  11941. IF this = NIL THEN
  11942. RETURN FALSE
  11943. END;
  11944. ASSERT(this # NIL);
  11945. IF this = queue THEN queue := queue.next END;
  11946. IF this.prev # NIL THEN this.prev.next := this.next END;
  11947. IF this.next # NIL THEN this.next.prev := this.prev END;
  11948. RETURN TRUE
  11949. END RemoveRegisterEntry;
  11950. PROCEDURE Assert(cond: BOOLEAN; CONST reason: ARRAY OF CHAR);
  11951. BEGIN ASSERT(cond);
  11952. END Assert;
  11953. PROCEDURE ReusableRegister(op: IntermediateCode.Operand): BOOLEAN;
  11954. BEGIN
  11955. RETURN (op.mode = IntermediateCode.ModeRegister) & (op.register > 0) & (op.offset = 0);
  11956. END ReusableRegister;
  11957. PROCEDURE EnsureBodyProcedure(moduleScope: SyntaxTree.ModuleScope);
  11958. VAR procedure: SyntaxTree.Procedure; procedureScope: SyntaxTree.ProcedureScope;
  11959. BEGIN
  11960. procedure := moduleScope.bodyProcedure;
  11961. IF procedure = NIL THEN (* artificially add body procedure if not existing. Really needed? *)
  11962. procedureScope := SyntaxTree.NewProcedureScope(moduleScope);
  11963. procedure := SyntaxTree.NewProcedure(-1,Global.ModuleBodyName, procedureScope);
  11964. procedure.SetScope(moduleScope);
  11965. procedure.SetType(SyntaxTree.NewProcedureType(-1,moduleScope));
  11966. procedure.SetAccess(SyntaxTree.Hidden);
  11967. moduleScope.SetBodyProcedure(procedure);
  11968. moduleScope.AddProcedure(procedure);
  11969. procedureScope.SetBody(SyntaxTree.NewBody(-1,procedureScope)); (* empty body *)
  11970. END;
  11971. END EnsureBodyProcedure;
  11972. PROCEDURE GetSymbol*(scope: SyntaxTree.ModuleScope; CONST moduleName, symbolName: ARRAY OF CHAR): SyntaxTree.Symbol;
  11973. VAR import: SyntaxTree.Import;
  11974. selfName: SyntaxTree.IdentifierString;
  11975. module: SyntaxTree.Module;
  11976. BEGIN
  11977. scope.ownerModule.GetName(selfName);
  11978. IF (moduleName = selfName) & (scope.ownerModule.context = Global.A2Name) THEN
  11979. module := scope.ownerModule
  11980. ELSE
  11981. import := scope.ImportByModuleName(SyntaxTree.NewIdentifier(moduleName),SyntaxTree.NewIdentifier("A2"));
  11982. IF import = NIL THEN
  11983. RETURN NIL
  11984. ELSIF import.module = NIL THEN
  11985. RETURN NIL
  11986. ELSE module := import.module
  11987. END;
  11988. END;
  11989. RETURN module.moduleScope.FindSymbol(SyntaxTree.NewIdentifier(symbolName));
  11990. END GetSymbol;
  11991. PROCEDURE InitOperand(VAR op: Operand; mode: SHORTINT);
  11992. BEGIN
  11993. op.mode := mode;
  11994. IntermediateCode.InitOperand(op.op);
  11995. IntermediateCode.InitOperand(op.tag);
  11996. IntermediateCode.InitOperand(op.extra);
  11997. op.dimOffset := 0;
  11998. END InitOperand;
  11999. (* TODO: remove this, and redirect calls to 'IntermediateCode.GetType' directly *)
  12000. PROCEDURE GetType*(system: Global.System; type: SyntaxTree.Type): IntermediateCode.Type;
  12001. BEGIN RETURN IntermediateCode.GetType(system, type)
  12002. END GetType;
  12003. PROCEDURE BuildConstant(module: SyntaxTree.Module; value: SyntaxTree.Value; VAR adr: LONGINT): SyntaxTree.Constant;
  12004. VAR name: SyntaxTree.IdentifierString; constant: SyntaxTree.Constant;
  12005. BEGIN
  12006. name := "@const"; Basic.AppendNumber(name, adr); INC(adr);
  12007. (*
  12008. UniqueId(name,module,name,adr);
  12009. *)
  12010. constant := SyntaxTree.NewConstant(-1,SyntaxTree.NewIdentifier(name));
  12011. constant.SetValue(value);
  12012. module.moduleScope.AddConstant(constant);
  12013. constant.SetScope(module.moduleScope);
  12014. RETURN constant
  12015. END BuildConstant;
  12016. PROCEDURE HasPointers (scope: SyntaxTree.ProcedureScope): BOOLEAN;
  12017. VAR variable: SyntaxTree.Variable; parameter: SyntaxTree.Parameter;
  12018. BEGIN
  12019. variable := scope.firstVariable;
  12020. WHILE variable # NIL DO
  12021. IF variable.NeedsTrace() THEN
  12022. RETURN TRUE;
  12023. END;
  12024. variable := variable.nextVariable;
  12025. END;
  12026. parameter := scope.ownerProcedure.type(SyntaxTree.ProcedureType).firstParameter;
  12027. WHILE parameter # NIL DO
  12028. IF parameter.NeedsTrace() & ~IsVariableParameter(parameter) THEN
  12029. RETURN TRUE;
  12030. END;
  12031. parameter := parameter.nextParameter;
  12032. END;
  12033. RETURN FALSE;
  12034. END HasPointers;
  12035. PROCEDURE IsVariableParameter (parameter: SyntaxTree.Parameter): BOOLEAN;
  12036. BEGIN RETURN (parameter.kind = SyntaxTree.VarParameter) OR (parameter.kind = SyntaxTree.ConstParameter) & ((parameter.type.resolved IS SyntaxTree.RecordType) OR (parameter.type.resolved IS SyntaxTree.ArrayType));
  12037. END IsVariableParameter;
  12038. PROCEDURE HasVariableParameters(scope: SyntaxTree.ProcedureScope): BOOLEAN;
  12039. VAR parameter: SyntaxTree.Parameter;
  12040. BEGIN
  12041. parameter := scope.ownerProcedure.type(SyntaxTree.ProcedureType).firstParameter;
  12042. WHILE parameter # NIL DO
  12043. IF IsVariableParameter (parameter) THEN RETURN TRUE END;
  12044. IF parameter.movable THEN RETURN TRUE END;
  12045. parameter := parameter.nextParameter;
  12046. END;
  12047. RETURN scope.ownerProcedure.type(SyntaxTree.ProcedureType).returnParameter # NIL;
  12048. END HasVariableParameters;
  12049. PROCEDURE HasExplicitTraceMethod(recordType: SyntaxTree.RecordType): BOOLEAN;
  12050. BEGIN
  12051. IF (recordType.pointerType # NIL) & ~recordType.pointerType.isPlain THEN RETURN FALSE END;
  12052. RETURN (recordType.recordScope.firstProcedure # NIL) & Basic.StringEqual (Basic.MakeString ("Trace"), recordType.recordScope.firstProcedure.name);
  12053. END HasExplicitTraceMethod;
  12054. PROCEDURE IsIntegerConstant(expression: SyntaxTree.Expression; VAR val: HUGEINT): BOOLEAN;
  12055. BEGIN
  12056. IF expression.resolved # NIL THEN expression := expression.resolved END;
  12057. IF (expression IS SyntaxTree.IntegerValue) THEN
  12058. val := expression(SyntaxTree.IntegerValue).value;
  12059. RETURN TRUE
  12060. ELSE
  12061. RETURN FALSE
  12062. END;
  12063. END IsIntegerConstant;
  12064. PROCEDURE PowerOf2(val: HUGEINT; VAR exp: LONGINT): BOOLEAN;
  12065. BEGIN
  12066. IF val <= 0 THEN RETURN FALSE END;
  12067. exp := 0;
  12068. WHILE ~ODD(val) DO
  12069. val := val DIV 2;
  12070. INC(exp)
  12071. END;
  12072. RETURN val = 1
  12073. END PowerOf2;
  12074. PROCEDURE GetConstructor(record: SyntaxTree.RecordType): SyntaxTree.Procedure;
  12075. VAR procedure: SyntaxTree.Procedure;
  12076. BEGIN
  12077. procedure := record.recordScope.constructor;
  12078. IF procedure = NIL THEN
  12079. record := record.GetBaseRecord();
  12080. IF record # NIL THEN
  12081. procedure := GetConstructor(record)
  12082. END;
  12083. END;
  12084. RETURN procedure;
  12085. END GetConstructor;
  12086. PROCEDURE IsIntegerImmediate(CONST op: IntermediateCode.Operand; VAR value: LONGINT): BOOLEAN;
  12087. BEGIN
  12088. value := SHORT(op.intValue);
  12089. RETURN op.mode = IntermediateCode.ModeImmediate;
  12090. END IsIntegerImmediate;
  12091. (** whether a type strictily is a pointer to record or object type
  12092. (however, the basic type <<OBJECT>> is explicitly excluded) **)
  12093. PROCEDURE IsStrictlyPointerToRecord(type: SyntaxTree.Type): BOOLEAN;
  12094. BEGIN
  12095. IF type = NIL THEN
  12096. RETURN FALSE
  12097. ELSIF type.resolved IS SyntaxTree.PointerType THEN
  12098. RETURN type.resolved(SyntaxTree.PointerType).pointerBase.resolved IS SyntaxTree.RecordType
  12099. ELSE
  12100. RETURN FALSE
  12101. END
  12102. END IsStrictlyPointerToRecord;
  12103. PROCEDURE IsUnsafePointer(type: SyntaxTree.Type): BOOLEAN;
  12104. BEGIN RETURN (type # NIL) & (type.resolved IS SyntaxTree.PointerType) & type.resolved(SyntaxTree.PointerType).isUnsafe
  12105. END IsUnsafePointer;
  12106. PROCEDURE IsPointerToRecord(type: SyntaxTree.Type; VAR recordType: SyntaxTree.RecordType): BOOLEAN;
  12107. BEGIN type := type.resolved;
  12108. IF type IS SyntaxTree.PointerType THEN
  12109. type := type(SyntaxTree.PointerType).pointerBase;
  12110. type := type.resolved;
  12111. IF type IS SyntaxTree.RecordType THEN
  12112. recordType := type(SyntaxTree.RecordType);
  12113. RETURN TRUE
  12114. ELSE
  12115. RETURN FALSE
  12116. END
  12117. ELSIF type IS SyntaxTree.RecordType THEN
  12118. recordType := type(SyntaxTree.RecordType);
  12119. RETURN type(SyntaxTree.RecordType).pointerType # NIL
  12120. ELSIF type IS SyntaxTree.ObjectType THEN
  12121. RETURN TRUE
  12122. ELSIF type IS SyntaxTree.AnyType THEN
  12123. RETURN TRUE (*! potentially is a pointer to record, treat it this way?? *)
  12124. ELSE
  12125. RETURN FALSE
  12126. END;
  12127. END IsPointerToRecord;
  12128. PROCEDURE IsArrayOfSystemByte(type: SyntaxTree.Type): BOOLEAN;
  12129. BEGIN
  12130. type := type.resolved;
  12131. RETURN (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form = SyntaxTree.Open)
  12132. & (type(SyntaxTree.ArrayType).arrayBase.resolved IS SyntaxTree.ByteType);
  12133. END IsArrayOfSystemByte;
  12134. PROCEDURE IsOpenArray(type: SyntaxTree.Type): BOOLEAN;
  12135. BEGIN
  12136. IF type = NIL THEN RETURN FALSE END;
  12137. type := type.resolved;
  12138. RETURN (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form = SyntaxTree.Open);
  12139. END IsOpenArray;
  12140. PROCEDURE IsSemiDynamicArray(type: SyntaxTree.Type): BOOLEAN;
  12141. BEGIN
  12142. IF type = NIL THEN RETURN FALSE END;
  12143. type := type.resolved;
  12144. RETURN (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form = SyntaxTree.SemiDynamic);
  12145. END IsSemiDynamicArray;
  12146. PROCEDURE IsStaticArray(type: SyntaxTree.Type): BOOLEAN;
  12147. BEGIN
  12148. IF type = NIL THEN RETURN FALSE END;
  12149. type := type.resolved;
  12150. RETURN (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form = SyntaxTree.Static);
  12151. END IsStaticArray;
  12152. PROCEDURE StaticArrayNumElements(type: SyntaxTree.Type): LONGINT;
  12153. VAR size: LONGINT;
  12154. BEGIN
  12155. size := 1;
  12156. WHILE (IsStaticArray(type)) DO
  12157. size := size * type.resolved(SyntaxTree.ArrayType).staticLength;
  12158. type := type.resolved(SyntaxTree.ArrayType).arrayBase;
  12159. END;
  12160. RETURN size;
  12161. END StaticArrayNumElements;
  12162. PROCEDURE StaticArrayBaseType(type: SyntaxTree.Type): SyntaxTree.Type;
  12163. BEGIN
  12164. WHILE (IsStaticArray(type)) DO
  12165. type := type.resolved(SyntaxTree.ArrayType).arrayBase;
  12166. END;
  12167. RETURN type;
  12168. END StaticArrayBaseType;
  12169. PROCEDURE ArrayBaseType(type: SyntaxTree.Type): SyntaxTree.Type;
  12170. BEGIN
  12171. WHILE (type.resolved IS SyntaxTree.ArrayType) DO
  12172. type := type.resolved(SyntaxTree.ArrayType).arrayBase;
  12173. END;
  12174. RETURN type;
  12175. END ArrayBaseType;
  12176. PROCEDURE IsDelegate(type: SyntaxTree.Type): BOOLEAN;
  12177. BEGIN
  12178. IF type = NIL THEN RETURN FALSE END;
  12179. type := type.resolved;
  12180. RETURN (type IS SyntaxTree.ProcedureType) & (type(SyntaxTree.ProcedureType).isDelegate)
  12181. END IsDelegate;
  12182. PROCEDURE DynamicDim(type:SyntaxTree.Type): LONGINT;
  12183. VAR i: LONGINT;
  12184. BEGIN
  12185. i := 0; type := type.resolved;
  12186. WHILE(type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form # SyntaxTree.Static) DO
  12187. INC(i);
  12188. type := type(SyntaxTree.ArrayType).arrayBase.resolved;
  12189. END;
  12190. WHILE(type # NIL) & (type IS SyntaxTree.MathArrayType) & (type(SyntaxTree.MathArrayType).form # SyntaxTree.Static) DO
  12191. INC(i);
  12192. type := type(SyntaxTree.MathArrayType).arrayBase;
  12193. IF type # NIL THEN type := type.resolved END;
  12194. END;
  12195. RETURN i
  12196. END DynamicDim;
  12197. PROCEDURE StaticSize(system: Global.System; type: SyntaxTree.Type): LONGINT;
  12198. BEGIN
  12199. WHILE (type IS SyntaxTree.ArrayType) & (type(SyntaxTree.ArrayType).form # SyntaxTree.Static) DO
  12200. type := type(SyntaxTree.ArrayType).arrayBase;
  12201. END;
  12202. WHILE (type IS SyntaxTree.MathArrayType) & (type(SyntaxTree.MathArrayType).form # SyntaxTree.Static) DO
  12203. type := type(SyntaxTree.MathArrayType).arrayBase;
  12204. END;
  12205. RETURN ToMemoryUnits(system,system.AlignedSizeOf(type));
  12206. END StaticSize;
  12207. PROCEDURE IsImmediate(x: IntermediateCode.Operand): BOOLEAN;
  12208. BEGIN
  12209. RETURN (x.mode = IntermediateCode.ModeImmediate) & (x.symbol.name = "");
  12210. END IsImmediate;
  12211. PROCEDURE IsAddress(x: IntermediateCode.Operand): BOOLEAN;
  12212. BEGIN
  12213. RETURN (x.mode = IntermediateCode.ModeImmediate) & (x.symbol.name # "")
  12214. END IsAddress;
  12215. PROCEDURE IsRegister(x: IntermediateCode.Operand): BOOLEAN;
  12216. BEGIN
  12217. RETURN (x.mode = IntermediateCode.ModeRegister);
  12218. END IsRegister;
  12219. PROCEDURE GetRecordTypeName(recordType: SyntaxTree.RecordType; VAR name: Basic.SegmentedName);
  12220. VAR typeDeclaration: SyntaxTree.TypeDeclaration;
  12221. BEGIN
  12222. typeDeclaration := recordType.typeDeclaration;
  12223. IF typeDeclaration = NIL THEN typeDeclaration := recordType.pointerType.resolved.typeDeclaration END; (* for compatibility with paco *)
  12224. Global.GetSymbolSegmentedName(typeDeclaration,name);
  12225. END GetRecordTypeName;
  12226. PROCEDURE ParametersSize(system: Global.System; procedureType: SyntaxTree.ProcedureType; isNested: BOOLEAN): LONGINT;
  12227. VAR parSize: LONGINT; parameter: SyntaxTree.Parameter;
  12228. BEGIN
  12229. parSize := 0;
  12230. IF StructuredReturnType(procedureType) THEN
  12231. parameter := procedureType.returnParameter;
  12232. INC(parSize,system.SizeOfParameter(parameter));
  12233. parSize := parSize + (-parSize) MOD system.addressSize;
  12234. END;
  12235. parameter :=procedureType.lastParameter;
  12236. WHILE (parameter # NIL) DO
  12237. INC(parSize,system.SizeOfParameter(parameter));
  12238. parSize := parSize + (-parSize) MOD system.addressSize;
  12239. parameter := parameter.prevParameter;
  12240. END;
  12241. IF procedureType.isDelegate THEN INC(parSize,system.addressSize) END; (* method => self pointer *)
  12242. IF isNested THEN INC(parSize,system.addressSize) END; (* nested procedure => static base *)
  12243. RETURN ToMemoryUnits(system,parSize)
  12244. END ParametersSize;
  12245. PROCEDURE ReturnedAsParameter(type: SyntaxTree.Type): BOOLEAN;
  12246. BEGIN
  12247. IF type = NIL THEN RETURN FALSE
  12248. ELSE
  12249. type := type.resolved;
  12250. RETURN (type IS SyntaxTree.RecordType) OR (type IS SyntaxTree.RangeType) OR (type IS SyntaxTree.ComplexType) OR (type IS SyntaxTree.ProcedureType) OR SemanticChecker.IsPointerType(type)
  12251. OR (type IS SyntaxTree.ArrayType) OR (type IS SyntaxTree.MathArrayType);
  12252. END
  12253. END ReturnedAsParameter;
  12254. PROCEDURE StructuredReturnType(procedureType: SyntaxTree.ProcedureType): BOOLEAN;
  12255. BEGIN
  12256. RETURN (procedureType # NIL) & (procedureType.callingConvention=SyntaxTree.OberonCallingConvention) & ReturnedAsParameter(procedureType.returnType);
  12257. END StructuredReturnType;
  12258. PROCEDURE IsNested(procedure: SyntaxTree.Procedure): BOOLEAN;
  12259. BEGIN
  12260. RETURN (procedure.scope IS SyntaxTree.ProcedureScope) & (procedure.externalName = NIL);
  12261. END IsNested;
  12262. PROCEDURE InCellScope(scope: SyntaxTree.Scope): BOOLEAN;
  12263. BEGIN
  12264. WHILE (scope # NIL) & ~(scope IS SyntaxTree.CellScope) DO
  12265. scope := scope.outerScope;
  12266. END;
  12267. RETURN scope # NIL;
  12268. END InCellScope;
  12269. PROCEDURE ProcedureParametersSize*(system: Global.System; procedure: SyntaxTree.Procedure): LONGINT;
  12270. BEGIN
  12271. (*IF (procedure.scope IS SyntaxTree.CellScope) & (procedure = procedure.scope(SyntaxTree.CellScope).constructor) & ~backend.cellsAreObjects THEN
  12272. RETURN 0
  12273. ELSE
  12274. *)
  12275. RETURN ParametersSize(system,procedure.type(SyntaxTree.ProcedureType),IsNested(procedure));
  12276. (*END;*)
  12277. END ProcedureParametersSize;
  12278. PROCEDURE ToMemoryUnits*(system: Global.System; size: LONGINT): LONGINT;
  12279. VAR dataUnit: LONGINT;
  12280. BEGIN dataUnit := system.dataUnit;
  12281. ASSERT(size MOD system.dataUnit = 0);
  12282. RETURN size DIV system.dataUnit
  12283. END ToMemoryUnits;
  12284. PROCEDURE Get*(): Backend.Backend;
  12285. VAR backend: IntermediateBackend;
  12286. BEGIN NEW(backend); RETURN backend
  12287. END Get;
  12288. PROCEDURE Nop(position: LONGINT):IntermediateCode.Instruction;
  12289. VAR instruction: IntermediateCode.Instruction;
  12290. BEGIN
  12291. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.nop,emptyOperand,emptyOperand,emptyOperand);
  12292. RETURN instruction
  12293. END Nop;
  12294. PROCEDURE Mov(position: LONGINT;dest,src: IntermediateCode.Operand): IntermediateCode.Instruction;
  12295. VAR instruction: IntermediateCode.Instruction;
  12296. BEGIN
  12297. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.mov,dest,src,emptyOperand);
  12298. RETURN instruction
  12299. END Mov;
  12300. (* like Mov but ensures that no new register will be allocated for dest *)
  12301. PROCEDURE MovReplace(position: LONGINT;dest,src: IntermediateCode.Operand): IntermediateCode.Instruction;
  12302. VAR instruction: IntermediateCode.Instruction;
  12303. BEGIN
  12304. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.mov,dest,src,dest);
  12305. RETURN instruction
  12306. END MovReplace;
  12307. PROCEDURE Conv(position: LONGINT;dest,src: IntermediateCode.Operand): IntermediateCode.Instruction;
  12308. VAR instruction: IntermediateCode.Instruction;
  12309. BEGIN
  12310. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.conv,dest,src,emptyOperand);
  12311. RETURN instruction
  12312. END Conv;
  12313. PROCEDURE Call*(position: LONGINT;op: IntermediateCode.Operand; parSize: LONGINT): IntermediateCode.Instruction;
  12314. VAR instruction: IntermediateCode.Instruction;
  12315. BEGIN
  12316. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.call,op,IntermediateCode.Number(parSize),emptyOperand);
  12317. RETURN instruction
  12318. END Call;
  12319. PROCEDURE Exit(position: LONGINT;pcOffset: LONGINT; callingConvention: LONGINT): IntermediateCode.Instruction;
  12320. VAR op1, op2: IntermediateCode.Operand;
  12321. VAR instruction: IntermediateCode.Instruction;
  12322. BEGIN
  12323. IntermediateCode.InitNumber(op1,pcOffset);
  12324. IntermediateCode.InitNumber(op2,callingConvention);
  12325. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.exit,op1,op2,emptyOperand);
  12326. RETURN instruction
  12327. END Exit;
  12328. PROCEDURE Return(position: LONGINT;res: IntermediateCode.Operand): IntermediateCode.Instruction;
  12329. VAR instruction: IntermediateCode.Instruction;
  12330. BEGIN
  12331. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.return,res,emptyOperand,emptyOperand);
  12332. RETURN instruction
  12333. END Return;
  12334. PROCEDURE Result*(position: LONGINT;res: IntermediateCode.Operand): IntermediateCode.Instruction;
  12335. VAR instruction: IntermediateCode.Instruction;
  12336. BEGIN
  12337. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.result,res,emptyOperand,emptyOperand);
  12338. RETURN instruction
  12339. END Result;
  12340. PROCEDURE Trap(position: LONGINT;nr: LONGINT): IntermediateCode.Instruction;
  12341. VAR op1: IntermediateCode.Operand;
  12342. VAR instruction: IntermediateCode.Instruction;
  12343. BEGIN
  12344. IntermediateCode.InitNumber(op1,nr);
  12345. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.trap,op1,emptyOperand,emptyOperand);
  12346. RETURN instruction
  12347. END Trap;
  12348. PROCEDURE Br(position: LONGINT;dest: IntermediateCode.Operand): IntermediateCode.Instruction;
  12349. VAR instruction: IntermediateCode.Instruction;
  12350. BEGIN
  12351. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.br,dest,emptyOperand,emptyOperand);
  12352. RETURN instruction
  12353. END Br;
  12354. PROCEDURE Breq(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12355. VAR instruction: IntermediateCode.Instruction;
  12356. BEGIN
  12357. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.breq,dest,left,right);
  12358. RETURN instruction
  12359. END Breq;
  12360. PROCEDURE Brne(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12361. VAR instruction: IntermediateCode.Instruction;
  12362. BEGIN
  12363. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.brne,dest,left,right);
  12364. RETURN instruction
  12365. END Brne;
  12366. PROCEDURE Brge(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12367. VAR instruction: IntermediateCode.Instruction;
  12368. BEGIN
  12369. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.brge,dest,left,right);
  12370. RETURN instruction
  12371. END Brge;
  12372. PROCEDURE Brlt(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12373. VAR instruction: IntermediateCode.Instruction;
  12374. BEGIN
  12375. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.brlt,dest,left,right);
  12376. RETURN instruction
  12377. END Brlt;
  12378. PROCEDURE Pop*(position: LONGINT;op:IntermediateCode.Operand): IntermediateCode.Instruction;
  12379. VAR instruction: IntermediateCode.Instruction;
  12380. BEGIN
  12381. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.pop,op,emptyOperand,emptyOperand);
  12382. RETURN instruction
  12383. END Pop;
  12384. PROCEDURE Push*(position: LONGINT;op: IntermediateCode.Operand): IntermediateCode.Instruction;
  12385. VAR instruction: IntermediateCode.Instruction;
  12386. BEGIN
  12387. ASSERT(op.mode # IntermediateCode.Undefined);
  12388. IntermediateCode.InitInstruction(instruction, position, IntermediateCode.push,op,emptyOperand,emptyOperand);
  12389. RETURN instruction
  12390. END Push;
  12391. PROCEDURE Neg(position: LONGINT;dest,src: IntermediateCode.Operand): IntermediateCode.Instruction;
  12392. VAR instruction: IntermediateCode.Instruction;
  12393. BEGIN
  12394. IntermediateCode.InitInstruction(instruction,position, IntermediateCode.neg,dest,src,emptyOperand);
  12395. RETURN instruction
  12396. END Neg;
  12397. PROCEDURE Not(position: LONGINT;dest,src: IntermediateCode.Operand): IntermediateCode.Instruction;
  12398. VAR instruction: IntermediateCode.Instruction;
  12399. BEGIN
  12400. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.not,dest,src,emptyOperand);
  12401. RETURN instruction
  12402. END Not;
  12403. PROCEDURE Abs(position: LONGINT;dest,src: IntermediateCode.Operand): IntermediateCode.Instruction;
  12404. VAR instruction: IntermediateCode.Instruction;
  12405. BEGIN
  12406. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.abs,dest,src,emptyOperand);
  12407. RETURN instruction
  12408. END Abs;
  12409. PROCEDURE Mul(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12410. VAR instruction: IntermediateCode.Instruction;
  12411. BEGIN
  12412. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.mul,dest,left,right);
  12413. RETURN instruction
  12414. END Mul;
  12415. PROCEDURE Div(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12416. VAR instruction: IntermediateCode.Instruction;
  12417. BEGIN
  12418. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.div,dest,left,right);
  12419. RETURN instruction
  12420. END Div;
  12421. PROCEDURE Mod(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12422. VAR instruction: IntermediateCode.Instruction;
  12423. BEGIN
  12424. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.mod,dest,left,right);
  12425. RETURN instruction
  12426. END Mod;
  12427. PROCEDURE Sub(position: LONGINT;dest: IntermediateCode.Operand; left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12428. VAR instruction: IntermediateCode.Instruction;
  12429. BEGIN
  12430. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.sub,dest,left,right);
  12431. RETURN instruction
  12432. END Sub;
  12433. PROCEDURE Add(position: LONGINT;dest: IntermediateCode.Operand; left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12434. VAR instruction: IntermediateCode.Instruction;
  12435. BEGIN
  12436. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.add,dest,left,right);
  12437. RETURN instruction
  12438. END Add;
  12439. PROCEDURE And(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12440. VAR instruction: IntermediateCode.Instruction;
  12441. BEGIN
  12442. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.and,dest,left,right);
  12443. RETURN instruction
  12444. END And;
  12445. PROCEDURE Or(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12446. VAR instruction: IntermediateCode.Instruction;
  12447. BEGIN
  12448. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.or,dest,left,right);
  12449. RETURN instruction
  12450. END Or;
  12451. PROCEDURE Xor(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12452. VAR instruction: IntermediateCode.Instruction;
  12453. BEGIN
  12454. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.xor,dest,left,right);
  12455. RETURN instruction
  12456. END Xor;
  12457. PROCEDURE Shl(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12458. VAR instruction: IntermediateCode.Instruction;
  12459. BEGIN
  12460. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.shl,dest,left, IntermediateCode.ToUnsigned(right));
  12461. RETURN instruction
  12462. END Shl;
  12463. PROCEDURE Shr(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12464. VAR instruction: IntermediateCode.Instruction;
  12465. BEGIN
  12466. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.shr,dest,left, IntermediateCode.ToUnsigned(right));
  12467. RETURN instruction
  12468. END Shr;
  12469. PROCEDURE Rol(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12470. VAR instruction: IntermediateCode.Instruction;
  12471. BEGIN
  12472. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.rol,dest,left, IntermediateCode.ToUnsigned(right));
  12473. RETURN instruction
  12474. END Rol;
  12475. PROCEDURE Ror(position: LONGINT;dest,left,right: IntermediateCode.Operand): IntermediateCode.Instruction;
  12476. VAR instruction: IntermediateCode.Instruction;
  12477. BEGIN
  12478. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.ror,dest,left, IntermediateCode.ToUnsigned(right));
  12479. RETURN instruction
  12480. END Ror;
  12481. PROCEDURE Cas(position: LONGINT;dest,src,size: IntermediateCode.Operand): IntermediateCode.Instruction;
  12482. VAR instruction: IntermediateCode.Instruction;
  12483. BEGIN
  12484. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.cas,dest,src,size);
  12485. RETURN instruction
  12486. END Cas;
  12487. PROCEDURE Copy(position: LONGINT;dest,src,size: IntermediateCode.Operand): IntermediateCode.Instruction;
  12488. VAR instruction: IntermediateCode.Instruction;
  12489. BEGIN
  12490. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.copy,dest,src,size);
  12491. RETURN instruction
  12492. END Copy;
  12493. PROCEDURE Fill(position: LONGINT;dest,size, value: IntermediateCode.Operand): IntermediateCode.Instruction;
  12494. VAR instruction: IntermediateCode.Instruction;
  12495. BEGIN
  12496. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.fill,dest,size,value);
  12497. RETURN instruction
  12498. END Fill;
  12499. PROCEDURE Asm(position: LONGINT;s: SyntaxTree.SourceCode; inRules, outRules: IntermediateCode.Rules): IntermediateCode.Instruction;
  12500. VAR instruction: IntermediateCode.Instruction; string, o1, o2: IntermediateCode.Operand;
  12501. BEGIN
  12502. string := IntermediateCode.String(s);
  12503. IntermediateCode.SetIntValue(string,position); (* for error reporting *)
  12504. IF inRules # NIL THEN IntermediateCode.InitRule(o1, inRules) ELSE o1 := emptyOperand END;
  12505. IF outRules # NIL THEN IntermediateCode.InitRule(o2, outRules) ELSE o2 := emptyOperand END;
  12506. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.asm,string,o1,o2);
  12507. RETURN instruction
  12508. END Asm;
  12509. PROCEDURE Data*(position: LONGINT;op: IntermediateCode.Operand): IntermediateCode.Instruction;
  12510. VAR instruction: IntermediateCode.Instruction;
  12511. BEGIN
  12512. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.data,op,emptyOperand,emptyOperand);
  12513. RETURN instruction
  12514. END Data;
  12515. PROCEDURE SpecialInstruction(position: LONGINT;subtype: SHORTINT; op1,op2,op3: IntermediateCode.Operand): IntermediateCode.Instruction;
  12516. VAR instruction: IntermediateCode.Instruction;
  12517. BEGIN
  12518. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.special,op1,op2,op3);
  12519. IntermediateCode.SetSubType(instruction, subtype);
  12520. RETURN instruction
  12521. END SpecialInstruction;
  12522. PROCEDURE Reserve(position: LONGINT;units: LONGINT): IntermediateCode.Instruction;
  12523. VAR op1: IntermediateCode.Operand;
  12524. VAR instruction: IntermediateCode.Instruction;
  12525. BEGIN
  12526. (*! generate a warning if size exceeds a certain limit *)
  12527. (*
  12528. ASSERT(bytes < 1000000); (* sanity check *)
  12529. *)
  12530. ASSERT(0 <= units); (* sanity check *)
  12531. IntermediateCode.InitNumber(op1,units);
  12532. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.reserve,op1,emptyOperand,emptyOperand);
  12533. RETURN instruction
  12534. END Reserve;
  12535. PROCEDURE LabelInstruction(position: LONGINT): IntermediateCode.Instruction;
  12536. VAR op1: IntermediateCode.Operand;
  12537. VAR instruction: IntermediateCode.Instruction;
  12538. BEGIN
  12539. IntermediateCode.InitNumber(op1,position);
  12540. IntermediateCode.InitInstruction(instruction,position,IntermediateCode.label,op1,emptyOperand,emptyOperand);
  12541. RETURN instruction
  12542. END LabelInstruction;
  12543. PROCEDURE EnterImmediate*(data: IntermediateCode.Section; CONST vop: IntermediateCode.Operand): LONGINT;
  12544. VAR pc: LONGINT;
  12545. PROCEDURE ProvidesValue(CONST instr: IntermediateCode.Instruction; op: IntermediateCode.Operand): BOOLEAN;
  12546. BEGIN
  12547. IF instr.opcode # IntermediateCode.data THEN RETURN FALSE END;
  12548. ASSERT(instr.op1.mode = IntermediateCode.ModeImmediate);
  12549. IF instr.op1.type.sizeInBits # op.type.sizeInBits THEN RETURN FALSE END;
  12550. IF instr.op1.type.form # op.type.form THEN RETURN FALSE END;
  12551. IF instr.op1.type.form = IntermediateCode.Float THEN
  12552. RETURN instr.op1.floatValue = op.floatValue
  12553. ELSE
  12554. RETURN instr.op1.intValue = op.intValue
  12555. END;
  12556. END ProvidesValue;
  12557. BEGIN
  12558. ASSERT(vop.mode = IntermediateCode.ModeImmediate);
  12559. pc := 0;
  12560. WHILE (pc<data.pc) & ~ProvidesValue(data.instructions[pc],vop) DO
  12561. INC(pc);
  12562. END;
  12563. IF pc = data.pc THEN
  12564. data.Emit(Data(-1,vop));
  12565. END;
  12566. RETURN pc
  12567. END EnterImmediate;
  12568. PROCEDURE Init;
  12569. VAR i: LONGINT; name: SyntaxTree.IdentifierString;
  12570. BEGIN
  12571. int8 := IntermediateCode.NewType(IntermediateCode.SignedInteger,IntermediateCode.Bits8);
  12572. int16 := IntermediateCode.NewType(IntermediateCode.SignedInteger,IntermediateCode.Bits16);
  12573. int32 := IntermediateCode.NewType(IntermediateCode.SignedInteger,IntermediateCode.Bits32);
  12574. int64 := IntermediateCode.NewType(IntermediateCode.SignedInteger,IntermediateCode.Bits64);
  12575. uint8 := IntermediateCode.NewType(IntermediateCode.UnsignedInteger,IntermediateCode.Bits8);
  12576. uint16 := IntermediateCode.NewType(IntermediateCode.UnsignedInteger,IntermediateCode.Bits16);
  12577. uint32 := IntermediateCode.NewType(IntermediateCode.UnsignedInteger,IntermediateCode.Bits32);
  12578. uint64 := IntermediateCode.NewType(IntermediateCode.UnsignedInteger,IntermediateCode.Bits64);
  12579. float32 := IntermediateCode.NewType(IntermediateCode.Float,IntermediateCode.Bits32);
  12580. float64 := IntermediateCode.NewType(IntermediateCode.Float,IntermediateCode.Bits64);
  12581. IntermediateCode.InitOperand(emptyOperand);
  12582. FOR i := 0 TO NumberSystemCalls-1 DO
  12583. name := "@SystemCall";
  12584. Basic.AppendNumber(name,i);
  12585. systemCalls[i] := SyntaxTree.NewSymbol(SyntaxTree.NewIdentifier(name));
  12586. END;
  12587. END Init;
  12588. PROCEDURE IsExported(symbol: SyntaxTree.Symbol): BOOLEAN;
  12589. BEGIN
  12590. RETURN (symbol # NIL) & (symbol.access * SyntaxTree.Public # {})
  12591. END IsExported;
  12592. BEGIN
  12593. Init;
  12594. END FoxIntermediateBackend.
  12595. Compiler.Compile FoxIntermediateBackend.Mod ~