StaticLinker.Mod 39 KB

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  1. MODULE StaticLinker; (* AUTHOR "negelef"; PURPOSE "Static Object File Linker"; *)
  2. IMPORT Commands, Options, Diagnostics, Files, GenericLinker, ObjectFile, BitSets, Strings, Streams;
  3. TYPE
  4. ExportName = ARRAY 128 OF CHAR;
  5. PatchBlock*= POINTER TO RECORD
  6. baseAdr: LONGINT;
  7. addresses: LONGINT;
  8. address: ARRAY 1024 OF LONGINT;
  9. next: PatchBlock;
  10. END;
  11. RelocationInfo= OBJECT
  12. CONST blockSize=4096;
  13. VAR
  14. patchBlock: PatchBlock;
  15. PROCEDURE & Init;
  16. BEGIN
  17. patchBlock := NIL;
  18. END Init;
  19. PROCEDURE GetPatchBlock(adr: LONGINT): PatchBlock;
  20. VAR p, t: PatchBlock;
  21. BEGIN
  22. t := patchBlock;
  23. IF (patchBlock = NIL) OR (patchBlock.baseAdr > adr) THEN
  24. NEW(p); p.next := patchBlock; patchBlock := p; p.baseAdr := adr;
  25. ELSIF patchBlock.baseAdr = adr THEN p := patchBlock
  26. ELSE
  27. t := patchBlock;
  28. WHILE (t.next # NIL) & (t.next.baseAdr <= adr) DO
  29. t := t.next;
  30. END;
  31. IF t.baseAdr = adr THEN p := t
  32. ELSE
  33. NEW(p); p.next := t.next; t.next := p; p.baseAdr := adr
  34. END;
  35. END;
  36. RETURN p
  37. END GetPatchBlock;
  38. PROCEDURE AddReloc(adr: LONGINT);
  39. VAR aligned: LONGINT; p: PatchBlock;
  40. BEGIN
  41. aligned := adr - adr MOD blockSize;
  42. p := GetPatchBlock(aligned);
  43. p.address[p.addresses] := adr (*- aligned*); INC(p.addresses);
  44. END AddReloc;
  45. END RelocationInfo;
  46. ExportInfo=OBJECT
  47. VAR
  48. exports: LONGINT;
  49. name: ExportName;
  50. symbolNames: POINTER TO ARRAY OF ExportName;
  51. exportNames: POINTER TO ARRAY OF ExportName;
  52. exportAddresses: POINTER TO ARRAY OF GenericLinker.Address;
  53. PROCEDURE &Init;
  54. BEGIN
  55. exports := 0;
  56. END Init;
  57. PROCEDURE Swap(i,j: LONGINT);
  58. VAR name: ExportName; adr: GenericLinker.Address;
  59. BEGIN
  60. name := exportNames[i]; exportNames[i] := exportNames[j]; exportNames[j] := name;
  61. name := symbolNames[i]; symbolNames[i] := symbolNames[j]; symbolNames[j] := name;
  62. adr := exportAddresses[i]; exportAddresses[i] := exportAddresses[j]; exportAddresses[j] := adr;
  63. END Swap;
  64. PROCEDURE QuickSort(lo, hi: LONGINT);
  65. VAR
  66. i, j,m: LONGINT;
  67. x, t: ANY;
  68. BEGIN
  69. i := lo; j := hi; m := (lo + hi) DIV 2;
  70. WHILE i <= j DO
  71. WHILE exportNames[i] < exportNames[m] DO INC(i) END;
  72. WHILE exportNames[m] < exportNames[j] DO DEC(j) END;
  73. IF i <= j THEN
  74. IF m = i THEN m := j (* pivot will be moved by Swap *)
  75. ELSIF m = j THEN m := i (* pivot will be moved by Swap *)
  76. END;
  77. Swap(i,j);
  78. INC(i); DEC(j)
  79. END
  80. END;
  81. IF lo < j THEN QuickSort( lo, j) END;
  82. IF i < hi THEN QuickSort(i, hi) END
  83. END QuickSort;
  84. PROCEDURE Sort;
  85. BEGIN
  86. QuickSort(0, exports-1)
  87. END Sort;
  88. END ExportInfo;
  89. Arrangement* = OBJECT (GenericLinker.Arrangement);
  90. VAR
  91. displacement: GenericLinker.Address;
  92. bits: BitSets.BitSet;
  93. maxUnitSize: ObjectFile.Bits;
  94. exportInfo: ExportInfo;
  95. relocInfo: RelocationInfo;
  96. PROCEDURE & InitArrangement* (displacement: GenericLinker.Address);
  97. BEGIN
  98. SELF.displacement := displacement; maxUnitSize := 1; NEW (bits, 0); exportInfo := NIL; NEW(relocInfo);
  99. END InitArrangement;
  100. PROCEDURE Allocate* (CONST section: ObjectFile.Section): GenericLinker.Address;
  101. VAR address, alignment: ObjectFile.Bits; i: LONGINT; name: ObjectFile.SegmentedName;
  102. BEGIN
  103. IF section.unit > maxUnitSize THEN maxUnitSize := section.unit END;
  104. IF section.fixed THEN
  105. address := ObjectFile.Bits((section.alignment - displacement) * section.unit);
  106. ELSE
  107. address := bits.GetSize (); alignment := section.alignment * section.unit;
  108. IF alignment = 0 THEN alignment := section.unit; END;
  109. INC (address, (alignment - address MOD alignment) MOD alignment);
  110. END;
  111. IF bits.GetSize () < section.bits.GetSize () + address THEN
  112. bits.Resize (address + section.bits.GetSize ());
  113. END;
  114. (*dest pos is for some reason negative*)
  115. ASSERT(address>=0);
  116. BitSets.CopyBits (section.bits, 0, bits, address, section.bits.GetSize ());
  117. IF exportInfo # NIL THEN
  118. FOR i := 0 TO exportInfo.exports-1 DO
  119. ObjectFile.StringToSegmentedName(exportInfo.symbolNames[i], name);
  120. IF name= section.identifier.name THEN
  121. exportInfo.exportAddresses[i] := address DIV section.unit + displacement;
  122. END;
  123. END
  124. END;
  125. RETURN address DIV section.unit + displacement;
  126. END Allocate;
  127. PROCEDURE SizeInBits*(): LONGINT;
  128. BEGIN RETURN bits.GetSize()
  129. END SizeInBits;
  130. PROCEDURE Patch* (pos, value: GenericLinker.Address; offset, bits, unit: ObjectFile.Bits);
  131. BEGIN SELF.bits.SetBits ((pos - displacement) * unit + offset, bits, value);
  132. END Patch;
  133. PROCEDURE CheckReloc*(target: GenericLinker.Address; pattern: ObjectFile.Pattern; CONST patch: ObjectFile.Patch);
  134. VAR i: LONGINT;
  135. BEGIN
  136. IF (pattern.mode = ObjectFile.Absolute) & (relocInfo # NIL) THEN
  137. relocInfo.AddReloc(LONGINT(target+patch.offset));
  138. END;
  139. END CheckReloc;
  140. END Arrangement;
  141. TYPE FileFormat = PROCEDURE (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  142. VAR defaults: Options.Defaults;
  143. processing, finished: GenericLinker.Block;
  144. PROCEDURE Align(this, to: LONGINT): LONGINT;
  145. BEGIN
  146. this := this + (-this) MOD to;
  147. RETURN this;
  148. END Align;
  149. PROCEDURE ReadObjectFile*(CONST moduleName, path, extension: ARRAY OF CHAR; linker: GenericLinker.Linker; moduleList: GenericLinker.HashTableSegmentedName);
  150. VAR fileName: Files.FileName; file: Files.File; reader: Files.Reader; i: LONGINT;
  151. offers, requires: ObjectFile.NameList;name: ARRAY 256 OF CHAR; sn: ObjectFile.SegmentedName;
  152. BEGIN
  153. sn := moduleName;
  154. IF (moduleList # NIL) & (moduleList.Get(sn) = finished) THEN
  155. linker.Warning(moduleName, "duplicate");
  156. RETURN;
  157. ELSIF (moduleList # NIL) & (moduleList.Get(sn) = processing) THEN
  158. linker.Error(moduleName, "cyclic import");
  159. RETURN;
  160. END;
  161. IF path # "" THEN Files.JoinPath (path, moduleName, fileName); ELSE COPY(moduleName,fileName); END;
  162. file := Files.Old (fileName);
  163. IF file = NIL THEN (* try with extension *)
  164. Files.JoinExtension (fileName, extension, fileName);
  165. file := Files.Old (fileName);
  166. END;
  167. IF file = NIL THEN (* try without extension *)
  168. END;
  169. IF file = NIL THEN linker.Error (fileName, "failed to open file"); RETURN; END;
  170. Files.OpenReader (reader, file, 0);
  171. GenericLinker.OffersRequires(reader, offers, requires);
  172. IF (moduleList # NIL) & (offers # NIL) THEN
  173. FOR i := 0 TO LEN(offers)-1 DO
  174. moduleList.Put(offers[i],processing);
  175. END;
  176. END;
  177. IF (moduleList # NIL) & (requires # NIL) THEN
  178. FOR i := 0 TO LEN(requires)-1 DO
  179. IF moduleList.Get(requires[i]) = NIL THEN
  180. name := requires[i];
  181. (*linker.Information(name, "auto");*)
  182. ReadObjectFile(name,path,extension, linker, moduleList);
  183. IF linker.error THEN RETURN END;
  184. ELSIF moduleList.Get(requires[i]) = processing THEN
  185. name := requires[i];
  186. Strings.Append(name, moduleName);
  187. linker.Error(name, "cyclic import!");
  188. RETURN;
  189. END;
  190. END;
  191. END;
  192. linker.Information (moduleName, "processing");
  193. reader.SetPos(0);
  194. GenericLinker.Process (reader, linker);
  195. IF (moduleList # NIL) & (offers # NIL) THEN
  196. FOR i := 0 TO LEN(offers)-1 DO
  197. moduleList.Put(offers[i],finished);
  198. END;
  199. END;
  200. IF reader.res # Files.Ok THEN linker.Error (fileName, "failed to parse"); END;
  201. END ReadObjectFile;
  202. PROCEDURE WriteRelocations( arr: Arrangement; w: Files.Writer );
  203. VAR pb: PatchBlock; i, relocations, binsize: LONGINT;
  204. BEGIN
  205. binsize := w.Pos();
  206. pb := arr.relocInfo.patchBlock; relocations := 0;
  207. WHILE pb # NIL DO
  208. FOR i := 0 TO pb.addresses -1 DO
  209. w.RawLInt( pb.address[i] ); INC( relocations );
  210. END;
  211. pb := pb.next;
  212. END;
  213. (* now patch header (cf Generic.Unix.I386.Glue.Mod) *)
  214. w.SetPos( 24 );
  215. w.RawLInt( binsize );
  216. w.RawLInt( relocations );
  217. w.RawLInt( 0 ); (* base *)
  218. END WriteRelocations;
  219. PROCEDURE WriteOutputFile* (arrangement: Arrangement; CONST fileName: Files.FileName; linker: GenericLinker.Linker; fileFormat: FileFormat);
  220. VAR file: Files.File; writer: Files.Writer; msg: ARRAY 64 OF CHAR; number: ARRAY 32 OF CHAR;
  221. BEGIN
  222. file := Files.New (fileName);
  223. Files.OpenWriter (writer, file, 0);
  224. fileFormat (linker, arrangement, writer);
  225. writer.Update; Files.Register (file);
  226. msg := "written ";
  227. Strings.IntToStr(arrangement.SizeInBits(), number);
  228. Strings.Append(msg, number);
  229. Strings.Append(msg, " bits (= ");
  230. Strings.IntToStr(arrangement.SizeInBits() DIV arrangement.maxUnitSize, number);
  231. Strings.Append(msg, number);
  232. Strings.Append(msg, " units).");
  233. linker.Information (fileName, msg);
  234. END WriteOutputFile;
  235. PROCEDURE WriteBinaryFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  236. VAR i: LONGINT;
  237. BEGIN
  238. FOR i := 0 TO arrangement.bits.GetSize () - 1 BY 8 DO
  239. writer.Char (CHR (arrangement.bits.GetBits (i, 8)));
  240. END;
  241. END WriteBinaryFile;
  242. PROCEDURE WriteUnixBinaryFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  243. VAR i: LONGINT;
  244. BEGIN
  245. FOR i := 0 TO arrangement.bits.GetSize () - 1 BY 8 DO
  246. writer.Char (CHR (arrangement.bits.GetBits (i, 8)));
  247. END;
  248. WriteRelocations( arrangement, writer )
  249. END WriteUnixBinaryFile;
  250. PROCEDURE WriteTRMFile (arrangement: Arrangement; writer: Files.Writer; bitsPerLine, lines:LONGINT);
  251. VAR i,j,size,end,nonZeroInLeadingNibble,leadingzeros: LONGINT;
  252. PROCEDURE GetBits(pos: LONGINT): LONGINT;
  253. BEGIN
  254. IF pos >= size THEN RETURN 0
  255. ELSIF pos+4 > size THEN RETURN arrangement.bits.GetBits(pos,size-pos)
  256. ELSE RETURN arrangement.bits.GetBits(pos,4)
  257. END;
  258. END GetBits;
  259. PROCEDURE GetFirstNibble(pos: LONGINT): LONGINT;
  260. BEGIN
  261. RETURN arrangement.bits.GetBits(pos,nonZeroInLeadingNibble);
  262. END GetFirstNibble;
  263. BEGIN
  264. (*allow line size not divisible by 4 by padding the line to a multiple of 4 bits with leading zeros*)
  265. size := arrangement.bits.GetSize();
  266. end := (size-1) DIV bitsPerLine + 1;
  267. (*
  268. D.String("bits per line: ");D.Int(bitsPerLine,0);
  269. D.String(" number of bits: ");D.Int(size,0);
  270. D.String(" number of words: ");D.Int(end,0);D.Ln;
  271. *)
  272. nonZeroInLeadingNibble:=bitsPerLine MOD 4;
  273. FOR i := 0 TO end-1 DO
  274. (*be aware we are writing msb first here*)
  275. (*padded first nibble*)
  276. IF nonZeroInLeadingNibble > 0 THEN
  277. writer.Char(ObjectFile.NibbleToCharacter(GetFirstNibble(i*bitsPerLine+bitsPerLine-nonZeroInLeadingNibble) ) ) ;
  278. END;
  279. (*rest of the instruction word*)
  280. FOR j := bitsPerLine DIV 4 -1 TO 0 BY -1 DO
  281. writer.Char(ObjectFile.NibbleToCharacter(GetBits(i*bitsPerLine+j*4)));
  282. END;
  283. writer.Ln;
  284. END;
  285. IF end > 0 THEN (* allow at least one block, if size = 0 *)
  286. lines := (((end-1) DIV lines)+1)*lines; (* round up to next multiple of lines *)
  287. END;
  288. FOR i := end TO lines -1 DO
  289. FOR j:=1 TO (bitsPerLine-1) DIV 4 + 1 BY 1 DO
  290. writer.Char('F');
  291. END;
  292. writer.Ln;
  293. END;
  294. END WriteTRMFile;
  295. PROCEDURE WriteTRMCodeFile* (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  296. BEGIN
  297. WriteTRMFile (arrangement, writer, arrangement.maxUnitSize,1024);
  298. END WriteTRMCodeFile;
  299. PROCEDURE WriteTRMDataFile* (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  300. BEGIN WriteTRMFile (arrangement, writer, 32,512);
  301. END WriteTRMDataFile;
  302. PROCEDURE WritePEFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer; bitmode, subSystem: INTEGER; isDLL: BOOLEAN);
  303. CONST DOSText = "This program cannot be run in DOS mode.$";
  304. CONST DOSHeaderSize = 64; DOSCodeSize = 14; DOSTextSize = 40; DOSStubSize = ((DOSHeaderSize + DOSCodeSize + DOSTextSize + 15) DIV 16) * 16;
  305. CONST FileAlignment = 200H; SectionAlignment = 1000H; HeaderSize = 24; SectionHeaderSize = 40; DirectoryEntries = 16;
  306. VAR OptionalHeaderSize, CodeSize, AlignedCodeSize, HeadersSize: LONGINT; BaseCodeAddress, BaseAddress: LONGINT; exportInfo: ExportInfo; relocInfo: RelocationInfo;
  307. pos: LONGINT;
  308. PROCEDURE Reserve (size: LONGINT);
  309. BEGIN INC(pos, size); WHILE size # 0 DO writer.Char (0X); DEC (size); END;
  310. END Reserve;
  311. PROCEDURE WriteBYTE (value: LONGINT);
  312. BEGIN writer.Char (CHR (value)); INC(pos);
  313. END WriteBYTE;
  314. PROCEDURE WriteWORD (value: LONGINT);
  315. BEGIN WriteBYTE (value MOD 100H); WriteBYTE (value DIV 100H);
  316. END WriteWORD;
  317. PROCEDURE WriteDWORD (value: LONGINT);
  318. BEGIN WriteWORD (value MOD 10000H); WriteWORD (value DIV 10000H);
  319. END WriteDWORD;
  320. PROCEDURE WritePTR (value: GenericLinker.Address);
  321. BEGIN WriteDWORD (LONGINT(value)); IF bitmode = 64 THEN WriteDWORD (0) END;
  322. END WritePTR;
  323. PROCEDURE WriteString(s: ARRAY OF CHAR);
  324. BEGIN
  325. writer.String(s); INC(pos, Strings.Length(s));
  326. END WriteString;
  327. PROCEDURE WriteString0(s: ARRAY OF CHAR);
  328. BEGIN
  329. WriteString(s); WriteBYTE(0);
  330. END WriteString0;
  331. PROCEDURE AlignTo(alignment: LONGINT);
  332. BEGIN alignment := Align(pos, alignment); Reserve(alignment - pos);
  333. END AlignTo;
  334. PROCEDURE ReserveTo(p: LONGINT);
  335. BEGIN ASSERT(p >= pos); Reserve(p-pos);
  336. END ReserveTo;
  337. PROCEDURE HasExports(): BOOLEAN;
  338. BEGIN
  339. RETURN (exportInfo # NIL) & (exportInfo.exports # 0)
  340. END HasExports;
  341. PROCEDURE ExportTableSize(): LONGINT;
  342. VAR i,offset: LONGINT;
  343. BEGIN
  344. IF ~HasExports() THEN RETURN 0 END;
  345. offset := 40 + Strings.Length(exportInfo.name)+1;
  346. FOR i := 0 TO exportInfo.exports-1 DO
  347. INC(offset, Strings.Length(exportInfo.exportNames[i])+1);
  348. INC(offset, 10);
  349. END;
  350. RETURN offset
  351. END ExportTableSize;
  352. PROCEDURE AlignedExportTableSize(): LONGINT;
  353. BEGIN
  354. RETURN Align(ExportTableSize(), SectionAlignment);
  355. END AlignedExportTableSize;
  356. PROCEDURE HasRelocs(): BOOLEAN;
  357. BEGIN
  358. RETURN (relocInfo # NIL) & (relocInfo.patchBlock # NIL)
  359. END HasRelocs;
  360. PROCEDURE RelocTableSize(): LONGINT;
  361. VAR p: PatchBlock; size: LONGINT;
  362. BEGIN
  363. IF ~HasRelocs() THEN RETURN 0 END;
  364. size := 0;
  365. p := relocInfo.patchBlock;
  366. WHILE p # NIL DO
  367. INC(size, 8 + p.addresses * 2);
  368. IF ODD(p.addresses) THEN INC(size, 2) END;
  369. p := p.next
  370. END;
  371. RETURN size
  372. END RelocTableSize;
  373. PROCEDURE AlignedRelocTableSize(): LONGINT;
  374. BEGIN RETURN Align(RelocTableSize(), SectionAlignment);
  375. END AlignedRelocTableSize;
  376. PROCEDURE SectionHeaderOffset(): LONGINT;
  377. BEGIN RETURN DOSStubSize + HeaderSize + OptionalHeaderSize
  378. END SectionHeaderOffset;
  379. PROCEDURE WriteDOSStub;
  380. BEGIN
  381. WriteWORD (5A4DH); (* e_magic *)
  382. WriteWORD (DOSStubSize); (* e_cblp *)
  383. WriteWORD (1); (* e_cp *)
  384. WriteWORD (0); (* e_crlc *)
  385. WriteWORD (DOSHeaderSize DIV 16); (* e_cparhdr *)
  386. WriteWORD (0); (* e_minalloc *)
  387. WriteWORD (0); (* e_maxalloc *)
  388. WriteWORD (0); (* e_ss *)
  389. WriteWORD (0); (* e_sp *)
  390. WriteWORD (0); (* e_csum *)
  391. WriteWORD (0); (* e_ip *)
  392. WriteWORD (0); (* e_cs *)
  393. WriteWORD (DOSHeaderSize); (* e_lfarlc *)
  394. WriteWORD (0); (* e_ovno *)
  395. Reserve (32); (* e_res *)
  396. WriteDWORD (DOSStubSize); (* e_lfanew *)
  397. WriteBYTE (00EH); WriteBYTE (01FH); WriteBYTE (0BAH); WriteWORD (DOSCodeSize);
  398. WriteBYTE (0B4H); WriteBYTE (009H); WriteBYTE (0CDH); WriteBYTE (021H); WriteBYTE (0B8H);
  399. WriteBYTE (001H); WriteBYTE (04CH); WriteBYTE (0CDH); WriteBYTE (021H); WriteString (DOSText);
  400. Reserve (DOSStubSize - DOSHeaderSize - DOSCodeSize - DOSTextSize);
  401. END WriteDOSStub;
  402. PROCEDURE WriteHeader;
  403. VAR characteristics, sections: LONGINT;
  404. BEGIN
  405. WriteDWORD (000004550H); (* Signature *)
  406. IF bitmode = 64 THEN
  407. WriteWORD (08664H); (* Machine *)
  408. ELSE
  409. WriteWORD (0014CH); (* Machine *)
  410. END;
  411. sections := 1;
  412. IF HasRelocs() THEN INC(sections) END;
  413. IF HasExports()THEN INC(sections) END;
  414. WriteWORD (sections); (* NumberOfSections *)
  415. WriteDWORD (0); (* TimeDateStamp *)
  416. WriteDWORD (0); (* PointerToSymbolTable *)
  417. WriteDWORD (0); (* NumberOfSymbols *)
  418. WriteWORD (OptionalHeaderSize); (* SizeOfOptionalHeader *)
  419. characteristics := 222H;
  420. IF ~HasRelocs() THEN characteristics := characteristics + 1 END;
  421. IF isDLL THEN characteristics := characteristics + 2000H END;
  422. IF bitmode#64 THEN characteristics := characteristics + 100H END;
  423. WriteWORD(characteristics);
  424. END WriteHeader;
  425. PROCEDURE WriteOptionalHeader;
  426. VAR ImageSize: LONGINT;
  427. BEGIN
  428. ImageSize := Align(BaseCodeAddress+AlignedCodeSize+AlignedExportTableSize()+AlignedRelocTableSize(), SectionAlignment);
  429. (* 0 *) IF bitmode = 64 THEN
  430. WriteWORD (0020BH); (* Magic *)
  431. ELSE
  432. WriteWORD (0010BH); (* Magic *)
  433. END;
  434. (* 2 *) WriteBYTE (0); (* MajorLinkerVersion *)
  435. (* 3 *) WriteBYTE (0); (* MinorLinkerVersion *)
  436. (* 4 *) WriteDWORD (CodeSize); (* SizeOfCode *)
  437. (* 8 *) WriteDWORD (0); (* SizeOfInitializedData *)
  438. (* 12 *) WriteDWORD (0); (* SizeOfUninitializedData *)
  439. (* 16 *) WriteDWORD (BaseCodeAddress); (* AddressOfEntryPoint *)
  440. (* 20 *) WriteDWORD (BaseCodeAddress); (* BaseOfCode *)
  441. (* 24 *) IF bitmode # 64 THEN
  442. WriteDWORD (ImageSize); (* BaseOfData *)
  443. END;
  444. (* 28 / 24 *) WritePTR (arrangement.displacement - BaseCodeAddress); (* ImageBase *)
  445. (* 32 *) WriteDWORD (SectionAlignment); (* SectionAlignment *)
  446. (* 36 *)WriteDWORD (FileAlignment); (* FileAlignment *)
  447. (* 40 *)WriteWORD (4); (* MajorOperatingSystemVersion *)
  448. (* 42 *)WriteWORD (0); (* MinorOperatingSystemVersion *)
  449. (* 44 *)WriteWORD (0); (* MajorImageVersion *)
  450. (* 46 *)WriteWORD (0); (* MinorImageVersion *)
  451. (* 48 *)WriteWORD (4); (* MajorSubsystemVersion *)
  452. (* 50 *)WriteWORD (0); (* MinorSubsystemVersion *)
  453. (* 52 *)WriteDWORD (0); (* Win32VersionValue *)
  454. (* 56 *)WriteDWORD (ImageSize); (* SizeOfImage *)
  455. (* 60 *)WriteDWORD (HeadersSize); (* SizeOfHeaders *)
  456. (* 64 *)WriteDWORD (0); (* CheckSum *)
  457. (* 68 *)WriteWORD (subSystem); (* Subsystem *)
  458. (* 70 *)IF isDLL THEN WriteWORD (40H); (* DllCharacteristics *)
  459. ELSE WriteWORD(0)
  460. END;
  461. (* 72 *)WritePTR (0100000H); (* SizeOfStackReserve *)
  462. (* 76 / 80 *)WritePTR (01000H); (* SizeOfStackCommit *)
  463. (* 80 / 88 *)WritePTR (0100000H); (* SizeOfHeapReserve *)
  464. (* 84 / 96 *)WritePTR (01000H); (* SizeOfHeapCommit *)
  465. (* 88 / 104 *)WriteDWORD (0); (* LoaderFlags *)
  466. (* 92 / 108 *)WriteDWORD (DirectoryEntries); (* NumberOfRvaAndSizes *)
  467. IF HasExports() THEN
  468. (* 96 / 112 *) WriteDWORD(BaseCodeAddress + AlignedCodeSize); WriteDWORD(ExportTableSize()); (* location and size of export table *)
  469. ELSE Reserve(8)
  470. END;
  471. (* 104 / 120 *) WriteDWORD (BaseCodeAddress +8) ; WriteDWORD (40); (* location and size of of idata section *)
  472. Reserve (3 * 8);
  473. IF HasRelocs() THEN
  474. WriteDWORD (BaseCodeAddress + AlignedCodeSize+AlignedExportTableSize()) ; WriteDWORD (RelocTableSize()); (* location and size of of reloc section *)
  475. ELSE Reserve(8)
  476. END;
  477. Reserve ((DirectoryEntries - 6) * 8);
  478. END WriteOptionalHeader;
  479. PROCEDURE WriteSections;
  480. VAR ExportNameTableAddress, i, offset: LONGINT; p: PatchBlock;
  481. BEGIN
  482. (* code section header *)
  483. (* 0 *) WriteString (".text"); Reserve (3); (* Name *)
  484. (* 8 *) WriteDWORD (CodeSize); (* VirtualSize *)
  485. (* 12 *) WriteDWORD (BaseCodeAddress); (* VirtualAddress *)
  486. (* 16 *) WriteDWORD (AlignedCodeSize); (* SizeOfRawData *)
  487. (* 20 *) WriteDWORD (BaseCodeAddress); (* PointerToRawData *)
  488. (* 24 *) WriteDWORD (0); (* PointerToRelocations *)
  489. (* 28 *) WriteDWORD (0); (* PointerToLinenumbers *)
  490. (* 32 *) WriteWORD (0); (* NumberOfRelocations *)
  491. (* 34 *) WriteWORD (0); (* NumberOfLinenumbers *)
  492. (* 36 *) WriteDWORD (LONGINT (0E0000020H)); (* Characteristics *)
  493. IF HasExports() THEN
  494. (* export table header *)
  495. (* 0 *) WriteString(".edata"); Reserve(2); (* name *)
  496. (* 8 *) WriteDWORD(ExportTableSize()); (* virtual size *)
  497. (* 12 *) WriteDWORD(BaseCodeAddress + AlignedCodeSize (* address *));
  498. (* 16 *) WriteDWORD(AlignedExportTableSize()); (* raw data size *)
  499. (* 20 *) WriteDWORD(BaseCodeAddress + AlignedCodeSize); (* raw data pointer *)
  500. (* 24 *) WriteDWORD (0); (* PointerToRelocations *)
  501. (* 28 *) WriteDWORD (0); (* PointerToLinenumbers *)
  502. (* 32 *) WriteWORD (0); (* NumberOfRelocations *)
  503. (* 34 *) WriteWORD (0); (* NumberOfLinenumbers *)
  504. (* 36 *) WriteDWORD (LONGINT (040000000H)); (* Characteristics *)
  505. END;
  506. IF HasRelocs() THEN
  507. (* reloc table header *)
  508. (* 0 *) WriteString(".reloc"); Reserve(2); (* name *)
  509. (* 8 *) WriteDWORD(RelocTableSize()); (* virtual size *)
  510. (* 12 *) WriteDWORD(BaseCodeAddress + AlignedCodeSize + AlignedExportTableSize() (* address *));
  511. (* 16 *) WriteDWORD(AlignedRelocTableSize()); (* raw data size *)
  512. (* 20 *) WriteDWORD(BaseCodeAddress + AlignedCodeSize+ AlignedExportTableSize()); (* raw data pointer *)
  513. (* 24 *) WriteDWORD (0); (* PointerToRelocations *)
  514. (* 28 *) WriteDWORD (0); (* PointerToLinenumbers *)
  515. (* 32 *) WriteWORD (0); (* NumberOfRelocations *)
  516. (* 34 *) WriteWORD (0); (* NumberOfLinenumbers *)
  517. (* 36 *) WriteDWORD (LONGINT (040000000H)); (* Characteristics *)
  518. END;
  519. (* 40 / 80 / 120 *) ReserveTo(BaseCodeAddress);
  520. (**** code section *****)
  521. (* BaseCodeAddress *)
  522. WriteBinaryFile (linker, arrangement, writer); INC(pos, arrangement.bits.GetSize () DIV 8);
  523. (* BaseCodeAddress +CodeSize *)
  524. Reserve (AlignedCodeSize-CodeSize);
  525. (* BaseCodeAddress + AlignedCodeSize *)
  526. IF HasExports() THEN
  527. (***** export section *****)
  528. (* BaseCodeAddress + AlignedCodeSize *)
  529. (* 0 *) WriteDWORD(0); (* reserved *)
  530. (* 4 *) WriteDWORD(0); (* time / date *)
  531. (* 6 *) WriteWORD(0); (* major version *)
  532. (* 8 *) WriteWORD(0); (* minor version *)
  533. (* 12 *) WriteDWORD(BaseCodeAddress+AlignedCodeSize + 40 + 10* exportInfo.exports); (* RVA of DLL name *)
  534. (* 16 *) WriteDWORD(1); (* start ordinal number *)
  535. (* 20 *) WriteDWORD(exportInfo.exports); (* number of entries in export table *)
  536. (* 24 *) WriteDWORD(exportInfo.exports); (* number of entries in name pointer table *)
  537. (* 28 *) WriteDWORD(BaseCodeAddress+AlignedCodeSize + 40 ); (* export address table RVA *)
  538. (* 32 *) WriteDWORD(BaseCodeAddress+AlignedCodeSize + 40 + 4* exportInfo.exports); (* name pointer RVA *)
  539. (* 36 *) WriteDWORD(BaseCodeAddress+AlignedCodeSize + 40 + 8* exportInfo.exports); (* ordinal table RVA *)
  540. (* 40 *)
  541. (* export address table *)
  542. FOR i := 0 TO exportInfo.exports-1 DO
  543. ASSERT(exportInfo.exportAddresses[i] # 0);
  544. WriteDWORD(LONGINT(exportInfo.exportAddresses[i]-BaseAddress+BaseCodeAddress)); (* RVA ! *)
  545. END;
  546. (* export name pointer table *)
  547. (* 40 + 4 * Number exports *)
  548. ExportNameTableAddress := BaseCodeAddress + AlignedCodeSize + 40 + 10* exportInfo.exports ;
  549. offset := Strings.Length(exportInfo.name)+1;
  550. FOR i := 0 TO exportInfo.exports-1 DO
  551. WriteDWORD(ExportNameTableAddress + offset);
  552. INC(offset, Strings.Length(exportInfo.exportNames[i])+1);
  553. END;
  554. (* export ordinal table *)
  555. (* 40 + 8* NumberExports *)
  556. FOR i := 0 TO exportInfo.exports-1 DO
  557. WriteWORD(i);
  558. END;
  559. (* 40 + 10* NumberExports *)
  560. (* export name table *)
  561. WriteString0(exportInfo.name);
  562. FOR i := 0 TO exportInfo.exports-1 DO
  563. WriteString0(exportInfo.exportNames[i]); (* 0x terminated *)
  564. END;
  565. Reserve(AlignedExportTableSize() - ExportTableSize());
  566. END;
  567. IF HasRelocs() THEN
  568. p := relocInfo.patchBlock;
  569. WHILE p # NIL DO
  570. WriteDWORD(p.baseAdr -BaseAddress+BaseCodeAddress) (* RVA of block *);
  571. WriteDWORD(8+p.addresses*2+2*(p.addresses MOD 2)); (* number bytes of this block *)
  572. FOR i := 0 TO p.addresses-1 DO
  573. WriteWORD(p.address[i] - p.baseAdr+ 3000H);(* block-relative addresses, highlow *)
  574. END;
  575. AlignTo(4);
  576. p := p.next;
  577. END;
  578. Reserve(AlignedRelocTableSize() - RelocTableSize());
  579. END;
  580. END WriteSections;
  581. BEGIN
  582. pos := 0;
  583. exportInfo := arrangement.exportInfo;
  584. relocInfo := arrangement.relocInfo;
  585. IF HasExports() THEN exportInfo.Sort END;
  586. BaseAddress := LONGINT(arrangement.displacement); (* ASSERT (arrangement.displacement = BaseAddress); *)
  587. OptionalHeaderSize := 96 + DirectoryEntries * 8;
  588. IF bitmode = 64 THEN INC (OptionalHeaderSize, 16); END;
  589. CodeSize := arrangement.bits.GetSize () DIV 8;
  590. AlignedCodeSize := Align(CodeSize, SectionAlignment);
  591. HeadersSize := Align(DOSStubSize + HeaderSize + OptionalHeaderSize + SectionHeaderSize, FileAlignment);
  592. BaseCodeAddress := Align(HeadersSize, SectionAlignment);
  593. WriteDOSStub; WriteHeader; WriteOptionalHeader; WriteSections;
  594. END WritePEFile;
  595. PROCEDURE WriteDLL32File (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  596. BEGIN WritePEFile (linker, arrangement, writer, 32, 2, TRUE);
  597. END WriteDLL32File;
  598. PROCEDURE WriteDLL64File (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  599. BEGIN WritePEFile (linker, arrangement, writer, 64, 2, TRUE);
  600. END WriteDLL64File;
  601. PROCEDURE WritePE32File (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  602. BEGIN WritePEFile (linker, arrangement, writer, 32, 2, FALSE);
  603. END WritePE32File;
  604. PROCEDURE WritePE64File (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  605. BEGIN WritePEFile (linker, arrangement, writer, 64, 2, FALSE);
  606. END WritePE64File;
  607. PROCEDURE WritePE32CUIFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  608. BEGIN WritePEFile (linker, arrangement, writer, 32, 3, FALSE);
  609. END WritePE32CUIFile;
  610. PROCEDURE WritePE64CUIFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  611. BEGIN WritePEFile (linker, arrangement, writer, 64, 3, FALSE);
  612. END WritePE64CUIFile;
  613. PROCEDURE WriteEFI32File (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  614. BEGIN WritePEFile (linker, arrangement, writer, 32, 10, FALSE);
  615. END WriteEFI32File;
  616. PROCEDURE WriteEFI64File (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  617. BEGIN WritePEFile (linker, arrangement, writer, 64, 10, FALSE);
  618. END WriteEFI64File;
  619. PROCEDURE WriteELFFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  620. CONST ELFHeaderSize = 52; ProgramHeaderSize = 32; HeadersSize = ELFHeaderSize + ProgramHeaderSize;
  621. CONST BaseAddress = 08048000H; EntryAddress = BaseAddress + HeadersSize;
  622. PROCEDURE Reserve (size: LONGINT);
  623. BEGIN WHILE size # 0 DO writer.Char (0X); DEC (size); END;
  624. END Reserve;
  625. PROCEDURE WriteByte (value: LONGINT);
  626. BEGIN writer.Char (CHR (value));
  627. END WriteByte;
  628. PROCEDURE WriteHalf (value: LONGINT);
  629. BEGIN WriteByte (value MOD 100H); WriteByte (value DIV 100H);
  630. END WriteHalf;
  631. PROCEDURE WriteWord (value: LONGINT);
  632. BEGIN WriteHalf (value MOD 10000H); WriteHalf (value DIV 10000H);
  633. END WriteWord;
  634. PROCEDURE WriteELFHeader;
  635. BEGIN
  636. WriteByte (7FH); (* e_ident[EI_MAG0] *)
  637. WriteByte (ORD('E')); (* e_ident[EI_MAG1] *)
  638. WriteByte (ORD('L')); (* e_ident[EI_MAG2] *)
  639. WriteByte (ORD('F')); (* e_ident[EI_MAG3] *)
  640. WriteByte (1); (* e_ident[EI_CLASS] *)
  641. WriteByte (1); (* e_ident[EI_DATA] *)
  642. WriteByte (1); (* e_ident[EI_VERSION] *)
  643. WriteByte (0); (* e_ident[EI_PAD] *)
  644. Reserve (8); (* e_ident[EI_NIDENT] *)
  645. WriteHalf (2); (* e_type *)
  646. WriteHalf (3); (* e_machine *)
  647. WriteWord (1); (* e_version *)
  648. WriteWord (EntryAddress); (* e_entry *)
  649. WriteWord (ELFHeaderSize); (* e_phoff *)
  650. WriteWord (0); (* e_phoff *)
  651. WriteWord (0); (* e_flags *)
  652. WriteHalf (ELFHeaderSize); (* e_ehsize *)
  653. WriteHalf (ProgramHeaderSize); (* e_phentsize *)
  654. WriteHalf (1); (* e_phnum *)
  655. WriteHalf (0); (* e_shentsize *)
  656. WriteHalf (0); (* e_shnum *)
  657. WriteHalf (0); (* e_shstrndx *)
  658. END WriteELFHeader;
  659. PROCEDURE WriteProgramHeader;
  660. VAR FileSize: LONGINT;
  661. BEGIN
  662. FileSize := HeadersSize + arrangement.bits.GetSize () DIV 8;
  663. WriteWord (1); (* p_type *)
  664. WriteWord (0); (* p_offset *)
  665. WriteWord (BaseAddress); (* p_vaddr *)
  666. WriteWord (0); (* p_paddr *)
  667. WriteWord (FileSize); (* p_filesz *)
  668. WriteWord (FileSize); (* p_memsz *)
  669. WriteWord (7); (* p_flags *)
  670. WriteWord (1000H); (* p_align *)
  671. END WriteProgramHeader;
  672. BEGIN
  673. ASSERT (arrangement.displacement = BaseAddress);
  674. WriteELFHeader;
  675. WriteProgramHeader;
  676. WriteBinaryFile (linker, arrangement, writer);
  677. END WriteELFFile;
  678. PROCEDURE WriteMachOFile (linker: GenericLinker.Linker; arrangement: Arrangement; writer: Files.Writer);
  679. CONST SegmentName = "__TEXT"; SectionName = "__text";
  680. CONST MachHeaderSize = 28; LoadCommandSize = 124; ThreadCommandSize = 80;
  681. CONST CommandsSize = LoadCommandSize + ThreadCommandSize; Start = MachHeaderSize + CommandsSize;
  682. CONST BaseAddress = 000010E8H;
  683. PROCEDURE Write (value: LONGINT);
  684. BEGIN writer.Char (CHR (value)); writer.Char (CHR (value DIV 100H)); writer.Char (CHR (value DIV 10000H)); writer.Char (CHR (value DIV 1000000H));
  685. END Write;
  686. PROCEDURE WriteName (CONST name: ARRAY OF CHAR);
  687. VAR i: INTEGER;
  688. BEGIN i := 0; WHILE name[i] # 0X DO writer.Char (name[i]); INC (i); END;
  689. WHILE i # 16 DO writer.Char (0X); INC (i); END;
  690. END WriteName;
  691. PROCEDURE WriteMachHeader;
  692. BEGIN
  693. Write (LONGINT (0FEEDFACEH)); (* magic *)
  694. Write (7); (* cputype *)
  695. Write (3); (* cpusubtype *)
  696. Write (2); (* filetype *)
  697. Write (2); (* ncmds *)
  698. Write (CommandsSize); (* sizeofcmds *)
  699. Write (0); (* flags *)
  700. END WriteMachHeader;
  701. PROCEDURE WriteLoadCommand;
  702. VAR FileSize: LONGINT;
  703. BEGIN
  704. FileSize := MachHeaderSize + CommandsSize + arrangement.bits.GetSize () DIV 8;
  705. Write (1); (* cmd *)
  706. Write (LoadCommandSize); (* cmdsize *)
  707. WriteName (SegmentName); (* segname *)
  708. Write (BaseAddress - Start); (* vmaddr *)
  709. Write (FileSize); (* vmsize *)
  710. Write (0); (* fileoff *)
  711. Write (FileSize); (* filesize *)
  712. Write (7); (* maxprot *)
  713. Write (7); (* initprot *)
  714. Write (1); (* nsects *)
  715. Write (0); (* flags *)
  716. WriteName (SectionName); (* sectname *)
  717. WriteName (SegmentName); (* segname *)
  718. Write (BaseAddress); (* addr *)
  719. Write (arrangement.bits.GetSize () DIV 8); (* size *)
  720. Write (Start); (* offset *)
  721. Write (2); (* align *)
  722. Write (0); (* reloff *)
  723. Write (0); (* nreloc *)
  724. Write (0); (* flags *)
  725. Write (0); (* reserved1 *)
  726. Write (0); (* reserved2 *)
  727. END WriteLoadCommand;
  728. PROCEDURE WriteThreadCommand;
  729. BEGIN
  730. Write (5); (* cmd *)
  731. Write (ThreadCommandSize); (* cmdsize *)
  732. Write (1); (* flavor *)
  733. Write (16); (* count *)
  734. Write (0); (* eax *)
  735. Write (0); (* ebx *)
  736. Write (0); (* ecx *)
  737. Write (0); (* edx *)
  738. Write (0); (* edi *)
  739. Write (0); (* esi *)
  740. Write (0); (* ebp *)
  741. Write (0); (* esp *)
  742. Write (0); (* ss *)
  743. Write (0); (* eflags *)
  744. Write (BaseAddress); (* eip *)
  745. Write (0); (* cs *)
  746. Write (0); (* ds *)
  747. Write (0); (* es *)
  748. Write (0); (* fs *)
  749. Write (0); (* gs *)
  750. END WriteThreadCommand;
  751. BEGIN
  752. ASSERT (arrangement.displacement = BaseAddress);
  753. WriteMachHeader;
  754. WriteLoadCommand;
  755. WriteThreadCommand;
  756. WriteBinaryFile (linker, arrangement, writer);
  757. END WriteMachOFile;
  758. PROCEDURE GetFileFormat (options: Options.Options; CONST name: Options.Name; default: FileFormat): FileFormat;
  759. VAR format: ARRAY 10 OF CHAR;
  760. BEGIN
  761. IF ~options.GetString (name, format) THEN RETURN default;
  762. ELSIF format = "TRMCode" THEN RETURN WriteTRMCodeFile;
  763. ELSIF format = "TRMData" THEN RETURN WriteTRMDataFile;
  764. ELSIF format = "PE32" THEN RETURN WritePE32File;
  765. ELSIF format = "PE64" THEN RETURN WritePE64File;
  766. ELSIF format = "PE32CUI" THEN RETURN WritePE32CUIFile;
  767. ELSIF format = "PE64CUI" THEN RETURN WritePE64CUIFile;
  768. ELSIF format = "EFI32" THEN RETURN WriteEFI32File;
  769. ELSIF format = "EFI64" THEN RETURN WriteEFI64File;
  770. ELSIF format = "ELF" THEN RETURN WriteELFFile;
  771. ELSIF format = "MACHO" THEN RETURN WriteMachOFile;
  772. ELSIF format = "DLL32" THEN RETURN WriteDLL32File;
  773. ELSIF format = "DLL64" THEN RETURN WriteDLL64File;
  774. ELSIF format = "UnixRaw" THEN RETURN WriteUnixBinaryFile;
  775. ELSE RETURN default; END;
  776. END GetFileFormat;
  777. PROCEDURE ParseExports(CONST names: ARRAY OF CHAR): ExportInfo;
  778. VAR number: LONGINT; info: ExportInfo; pos: LONGINT; name: ExportName;
  779. PROCEDURE SkipWhitespace;
  780. BEGIN WHILE (names[pos] # 0X) & (names[pos] <= " ") DO INC(pos) END;
  781. END SkipWhitespace;
  782. PROCEDURE ReadName(VAR name: ARRAY OF CHAR): BOOLEAN;
  783. VAR i: LONGINT;
  784. BEGIN
  785. i := 0;
  786. WHILE (names[pos] # 0X) & (names[pos] > " ") & (names[pos] # ",") & (names[pos] # "=") DO name[i] := names[pos]; INC(i); INC(pos) END;
  787. name[i] := 0X;
  788. RETURN i > 0;
  789. END ReadName;
  790. PROCEDURE ParseEntry(VAR symbolName, exportName: ARRAY OF CHAR): BOOLEAN;
  791. BEGIN
  792. SkipWhitespace;
  793. IF ReadName(symbolName) THEN
  794. SkipWhitespace;
  795. IF names[pos] = "=" THEN
  796. INC(pos); SkipWhitespace;
  797. IF ~ReadName(exportName) THEN RETURN FALSE END;
  798. SkipWhitespace;
  799. ELSE COPY(symbolName, exportName);
  800. END;
  801. IF names[pos] = "," THEN INC(pos); SkipWhitespace END;
  802. RETURN TRUE
  803. ELSE RETURN FALSE
  804. END;
  805. END ParseEntry;
  806. BEGIN
  807. pos := 0; number := 0;
  808. WHILE ParseEntry(name, name) DO INC(number) END;
  809. IF (names[pos] # 0X) OR (number = 0) THEN RETURN NIL END;
  810. NEW(info);
  811. NEW(info.symbolNames, number);
  812. NEW(info.exportNames, number);
  813. NEW(info.exportAddresses, number);
  814. info.exports := number;
  815. number := 0; pos := 0;
  816. WHILE (names[pos] # 0X) & ParseEntry(info.symbolNames[number], info.exportNames[number]) DO
  817. INC(number)
  818. END;
  819. RETURN info
  820. END ParseExports;
  821. PROCEDURE CheckExports(info: ExportInfo; error: Streams.Writer): BOOLEAN;
  822. VAR success: BOOLEAN; i: LONGINT;
  823. BEGIN
  824. IF info = NIL THEN RETURN TRUE END;
  825. success := TRUE;
  826. FOR i := 0 TO info.exports-1 DO
  827. IF info.exportAddresses[i] = 0 THEN
  828. error.String("Export symbol not found: "); error.String(info.symbolNames[i]); error.String(" (= ");
  829. error.String(info.exportNames[i]); error.String(")"); error.Ln;
  830. success := FALSE;
  831. END;
  832. END;
  833. RETURN success
  834. END CheckExports;
  835. PROCEDURE Link* (context: Commands.Context);
  836. VAR options: Options.Options;
  837. silent, useAll, strict: BOOLEAN;
  838. codeFileFormat, dataFileFormat: FileFormat;
  839. codeDisplacement, dataDisplacement: LONGINT;
  840. path, extension, codeFileName, dataFileName, moduleName, logFileName, tempName: Files.FileName;
  841. diagnostics: Diagnostics.StreamDiagnostics; code, data: Arrangement; linker: GenericLinker.Linker;
  842. linkRoot: ARRAY 256 OF CHAR; logFile: Files.File; log: Files.Writer;
  843. use: SET;
  844. exportString: ARRAY 1024 OF CHAR;
  845. error: BOOLEAN;
  846. parsed: BOOLEAN;
  847. position: LONGINT;
  848. name: ARRAY 32 OF CHAR;
  849. reader: Streams.Reader;
  850. moduleList: GenericLinker.HashTableSegmentedName;
  851. segmentedName: ObjectFile.SegmentedName;
  852. BEGIN
  853. NEW (options);
  854. options.Add('p',"platform", Options.String);
  855. options.Add (0X, "silent", Options.Flag);
  856. options.Add ('a', "useAll", Options.Flag);
  857. options.Add ('s', "strict", Options.Flag);
  858. options.Add (0X, "path", Options.String); options.Add (0X, "extension", Options.String);
  859. options.Add (0X, "fileName", Options.String); options.Add (0X, "dataFileName", Options.String);
  860. options.Add (0X, "displacement", Options.Integer); options.Add (0X, "dataDisplacement", Options.Integer);
  861. options.Add (0X, "fileFormat", Options.String); options.Add (0X, "dataFileFormat", Options.String);
  862. options.Add (0X, "logFileName", Options.String);
  863. options.Add(0X,"linkRoot", Options.String);
  864. options.Add(0X,"exports", Options.String);
  865. position := context.arg.Pos();
  866. parsed := options.ParseStaged(context.arg, context.error);
  867. IF options.GetString("platform", name) THEN
  868. reader := defaults.Get(name);
  869. IF reader = NIL THEN
  870. context.error.String("Unknown platform"); context.error.Ln
  871. ELSE
  872. parsed := options.ParseStaged(reader, context.error) & parsed;
  873. context.arg.SetPos(position);
  874. context.arg.SetPos(position);
  875. parsed := options.Parse(context.arg, context.error) & parsed; (* reparse overwrites *)
  876. END;
  877. END;
  878. IF ~parsed THEN context.result := Commands.CommandParseError; RETURN; END;
  879. silent := options.GetFlag ("silent");
  880. useAll := options.GetFlag ("useAll");
  881. strict := options.GetFlag ("strict");
  882. IF ~options.GetString ("path", path) THEN path := ""; END;
  883. IF ~options.GetString ("extension", extension) THEN extension := ObjectFile.DefaultExtension; END;
  884. IF ~options.GetString ("fileName", codeFileName) THEN codeFileName := "linker.bin"; END;
  885. IF ~options.GetString ("dataFileName", dataFileName) THEN dataFileName := codeFileName; END;
  886. IF ~options.GetString ("logFileName", logFileName) THEN
  887. COPY(codeFileName, logFileName); Files.SplitExtension(logFileName,logFileName,tempName); Files.JoinExtension(logFileName,"log",logFileName);
  888. END;
  889. IF ~options.GetInteger ("displacement", codeDisplacement) THEN codeDisplacement := 0; END;
  890. IF ~options.GetInteger ("dataDisplacement", codeDisplacement) THEN dataDisplacement := codeDisplacement; END;
  891. codeFileFormat := GetFileFormat (options, "fileFormat", WriteBinaryFile);
  892. dataFileFormat := GetFileFormat (options, "dataFileFormat", codeFileFormat);
  893. NEW (code, codeDisplacement);
  894. IF options.GetString("exports", exportString) THEN
  895. code.exportInfo := ParseExports(exportString);
  896. IF code.exportInfo = NIL THEN
  897. context.error.String("Syntax error in export list or empty export list."); context.error.Ln;
  898. ELSE
  899. COPY(codeFileName, code.exportInfo.name);
  900. END;
  901. END;
  902. IF codeFileName # dataFileName THEN NEW (data, dataDisplacement); ELSE data := code; END;
  903. NEW (diagnostics, context.error);
  904. logFile := Files.New(logFileName);
  905. IF logFile # NIL THEN NEW(log, logFile,0) ELSE log := NIL END;
  906. IF useAll THEN use := GenericLinker.UseAll ELSE use := GenericLinker.UseInitCode END;
  907. NEW (linker, diagnostics, log, use, code, data);
  908. IF options.GetString("linkRoot",linkRoot) THEN linker.SetLinkRoot(linkRoot) END;
  909. NEW(moduleList,32);
  910. segmentedName := "SYSTEM";
  911. moduleList.Put(segmentedName, finished);
  912. segmentedName := "system";
  913. moduleList.Put(segmentedName, finished);
  914. WHILE ~linker.error & context.arg.GetString (moduleName) DO
  915. ReadObjectFile (moduleName, path, extension, linker, moduleList);
  916. IF strict & ~linker.error THEN linker.Resolve END;
  917. END;
  918. (* do linking after having read in all blocks to account for potential constraints *)
  919. IF ~linker.error THEN linker.Link; END;
  920. error := linker.error;
  921. error := error OR ~CheckExports(code.exportInfo, context.error);
  922. IF ~error THEN
  923. IF (code.displacement # 0) & (linker.log # NIL) THEN linker.log.String("code displacement 0"); linker.log.Hex(code.displacement,-8); linker.log.String("H"); linker.log.Ln END;
  924. WriteOutputFile (code, codeFileName, linker, codeFileFormat);
  925. IF data # code THEN
  926. IF (data.displacement # 0) & (linker.log # NIL) THEN linker.log.String("data displacement 0"); linker.log.Hex(data.displacement,-8); linker.log.String("H"); linker.log.Ln END;
  927. WriteOutputFile (data, dataFileName, linker, dataFileFormat);
  928. END;
  929. IF ~silent THEN
  930. context.out.String("Link successful. Written files: ");
  931. context.out.String(codeFileName);
  932. IF data # code THEN context.out.String(", "); context.out.String(dataFileName) END;
  933. IF logFile # NIL THEN context.out.String(", "); context.out.String(logFileName); END;
  934. context.out.Ln
  935. END;
  936. IF log # NIL THEN
  937. log.Update; Files.Register(logFile);
  938. END;
  939. END;
  940. IF error THEN context.result := Commands.CommandError; END;
  941. END Link;
  942. PROCEDURE ShowDefaults*(context: Commands.Context);
  943. BEGIN
  944. defaults.Show(context.out);
  945. END ShowDefaults;
  946. BEGIN
  947. NEW(processing);
  948. NEW(finished);
  949. NEW(defaults);
  950. defaults.Add("Win32CUI","--fileFormat=PE32CUI --fileName=oberon.exe --extension=GofW --displacement=401000H");
  951. defaults.Add("Linux32G","--fileFormat=Raw --fileName=oberon --extension=.GofU --displacement=08048000H");
  952. defaults.Add("Linux64G","--fileFormat=Raw --fileName=oberon --extension=.GofUu --displacement=08048000H");
  953. defaults.Add("RPI","--fileName=kernel.img --extension=.Goa --displacement=8000H -sa ");
  954. defaults.Add("A2G","--fileName=kernel.img --extension=.GofG --displacement=0100000H");
  955. defaults.Add("Solaris32G", "--fileFormat=UnixRaw --fileName=oberon.bin --extension=.GofU --displacement=0" );
  956. defaults.Add("Darwin32G", "--fileFormat=UnixRaw --fileName=oberon.bin --extension=.GofU --displacement=0" );
  957. END StaticLinker.
  958. StaticLinker.Link --fileName=test.exe --fileFormat=PE32 --displacement=401000H Test ~
  959. StaticLinker.Link --fileName=a.out --fileFormat=ELF --displacement=08048000H Test ~
  960. StaticLinker.Link --fileName=a.out --fileFormat=MACHO --displacement=000010E8H Test ~
  961. SystemTools.Free StaticLinker ~