Win64.Machine.Mod 32 KB

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  1. MODULE Machine;
  2. (** AUTHOR "pjm,fof"; PURPOSE "Bootstrapping, configuration and machine interface, adaption to windows fof"; *)
  3. (* red marked parts are WinAos specific *)
  4. IMPORT SYSTEM, Trace, Kernel32;
  5. CONST
  6. Version = "WinAos (32bit) ";
  7. DefaultConfigFile = "aos.ini";
  8. DefaultGenericConfigFile = "aosg.ini";
  9. UserConfigFile = "myaos.ini";
  10. MaxCPU* = 8; (* dummy definition to make GC for both Win32 and I386 work *)
  11. DefaultObjectFileExtension* = ".Obw";
  12. (** bits in features variable *)
  13. MTTR* = 12; MMX* = 23;
  14. debug* = FALSE; (** display more debug output during booting *)
  15. CONST
  16. AddressSize = SIZEOF(ADDRESS);
  17. StaticBlockSize = 32; (* static heap block size *)
  18. BlockHeaderSize = 2 * AddressSize;
  19. (* change this when Heaps.HeapBlock is modified *)
  20. RecordDescSize = 4 * AddressSize; (* needs to be adapted in case Heaps.RecordBlockDesc is changed *)
  21. (** standard lock levels (in order) *) (* also refer to Traps.Show *)
  22. TraceOutput* = 0; (* Trace output *)
  23. Memory* = 1; (* Virtual memory management, stack and page allocation *)
  24. Heaps* = 2; (* Storage allocation and Garbage collection *)
  25. Interrupts* = 3; (* Interrupt handling. *)
  26. Modules* = 4; (* Module list *)
  27. Objects* = 5; (* Ready queue *)
  28. Processors* = 6; (* Interprocessor interrupts *)
  29. KernelLog* = 7; (* Atomic output *)
  30. GC* = 8;
  31. MaxLocks = 9; (* { <= 32 } *)
  32. StrongChecks = FALSE;
  33. HeaderSize = 40H; (* cf. Linker0 *)
  34. EndBlockOfs = 38H; (* cf. Linker0 *)
  35. MemoryBlockOfs = BlockHeaderSize + RecordDescSize + BlockHeaderSize; (* memory block (including header) starts at offset HeaderSize *)
  36. MemBlockSize = 32*1024*1024; (* must be multiple of StaticBlockSize *)
  37. MinMemBlockSize = 4*1024*1024;
  38. NilVal = 0;
  39. Second* = 1000; (* frequency of ticks increments in Hz *)
  40. CONST
  41. (* error codes *)
  42. Ok* = 0;
  43. NilAdr* = -1; (* nil value for addresses (not same as pointer NIL value) *)
  44. IsCooperative* = FALSE;
  45. TYPE
  46. Vendor* = ARRAY 13 OF CHAR;
  47. IDMap* = ARRAY 16 OF SHORTINT;
  48. Range* = RECORD
  49. adr*, size*: LONGINT
  50. END;
  51. MemoryBlock* = POINTER TO MemoryBlockDesc;
  52. MemoryBlockDesc* = RECORD
  53. next- {UNTRACED}: MemoryBlock;
  54. startAdr-: ADDRESS; (* sort key in linked list of memory blocks *)
  55. size-: SIZE;
  56. beginBlockAdr-, endBlockAdr-: ADDRESS
  57. END;
  58. (* dummy definition to make GC work for both I386 and Win32 - copied from I386.Machine.Mod, but not really used *)
  59. Stack* = RECORD (** values are read-only *)
  60. low: ADDRESS; (* lowest virtual address that may be allocated for stack *)
  61. adr*: ADDRESS; (* lowest address on allocated stack *) (* exported for Objects only *)
  62. high*: ADDRESS; (* next virtual address after stack *) (* exported for Objects only *)
  63. END;
  64. VAR
  65. LastAddress: RECORD END;
  66. MMXSupport*: BOOLEAN;
  67. SSESupport*: BOOLEAN;
  68. SSE2Support*: BOOLEAN;
  69. SSE3Support-: BOOLEAN; (* PH 04/11*)
  70. SSSE3Support-: BOOLEAN;
  71. SSE41Support-: BOOLEAN;
  72. SSE42Support-: BOOLEAN;
  73. SSE5Support-: BOOLEAN;
  74. AVXSupport-: BOOLEAN;
  75. version*: ARRAY 64 OF CHAR; (** Aos version *)
  76. features*,features2*: SET; (** processor features *)
  77. fcr*: SET; (** default floating-point control register value (default rounding mode is towards -infinity, for ENTIER) *)
  78. mhz*: HUGEINT; (** clock rate of GetTimer() in MHz, or 0 if not known *)
  79. boottime-: HUGEINT; (** in timer units *)
  80. commandLine-: ARRAY 256 OF CHAR;
  81. hin, hout: Kernel32.HANDLE;
  82. VAR
  83. lock-: ARRAY MaxLocks OF CHAR; (* not implemented as SET because of shared access *)
  84. cs: ARRAY MaxLocks OF Kernel32.CriticalSection;
  85. trace: ARRAY 2 OF CHAR;
  86. defaultConfigFile, userConfigFile, traceName: ARRAY Kernel32.MaxPath OF CHAR;
  87. gcThreshold-: SIZE;
  88. bootHeapAdr: ADDRESS; (* initialized by linker, variable name must not be changed, see Win32.Aos.Link *)
  89. bootHeapSize: SIZE; (* initialized by linker, variable name must not be changed, see Win32.Aos.Link *)
  90. memBlockHead-{UNTRACED}, memBlockTail-{UNTRACED}: MemoryBlock; (* head and tail of sorted list of memory blocks *)
  91. (** Convert a string to an integer. Parameter i specifies where in the string scanning should begin (usually 0 in the first call). Scanning stops at the first non-valid character, and i returns the updated position. Parameter s is the string to be scanned. The value is returned as result, or 0 if not valid. Syntax: number = ["-"] digit {digit} ["H" | "h"] . digit = "0" | ... "9" | "A" .. "F" | "a" .. "f" . If the number contains any hexdecimal letter, or if it ends in "H" or "h", it is interpreted as hexadecimal. *)
  92. PROCEDURE StrToInt*( VAR i: LONGINT; CONST s: ARRAY OF CHAR ): LONGINT;
  93. VAR vd, vh, sgn, d: LONGINT; hex: BOOLEAN;
  94. BEGIN
  95. vd := 0; vh := 0; hex := FALSE;
  96. IF s[i] = "-" THEN sgn := -1; INC( i ) ELSE sgn := 1 END;
  97. LOOP
  98. IF (s[i] >= "0") & (s[i] <= "9") THEN d := ORD( s[i] ) - ORD( "0" )
  99. ELSIF (CAP( s[i] ) >= "A") & (CAP( s[i] ) <= "F") THEN d := ORD( CAP( s[i] ) ) - ORD( "A" ) + 10; hex := TRUE
  100. ELSE EXIT
  101. END;
  102. vd := 10 * vd + d; vh := 16 * vh + d; INC( i )
  103. END;
  104. IF CAP( s[i] ) = "H" THEN hex := TRUE; INC( i ) END; (* optional H *)
  105. IF hex THEN vd := vh END;
  106. RETURN sgn * vd
  107. END StrToInt;
  108. (** -- Atomic operations -- *)
  109. (** Atomic INC(x). *)
  110. PROCEDURE -AtomicInc*(VAR x: LONGINT);
  111. CODE {SYSTEM.AMD64}
  112. POP RAX
  113. LOCK
  114. INC DWORD [RAX]
  115. END AtomicInc;
  116. (** Atomic DEC(x). *)
  117. PROCEDURE -AtomicDec*(VAR x: LONGINT);
  118. CODE {SYSTEM.AMD64}
  119. POP RAX
  120. LOCK
  121. DEC DWORD [RAX]
  122. END AtomicDec;
  123. (** Atomic EXCL. *)
  124. PROCEDURE AtomicExcl* (VAR s: SET; bit: LONGINT);
  125. CODE {SYSTEM.AMD64}
  126. MOV EAX, [RBP + bit]
  127. MOV RBX, [RBP + s]
  128. LOCK
  129. BTR [RBX], EAX
  130. END AtomicExcl;
  131. (** Atomic INC(x, y). *)
  132. PROCEDURE -AtomicAdd*(VAR x: LONGINT; y: LONGINT);
  133. CODE {SYSTEM.AMD64}
  134. POP EBX
  135. POP RAX
  136. LOCK
  137. ADD DWORD [RAX], EBX
  138. END AtomicAdd;
  139. (** Atomic test-and-set. Set x = TRUE and return old value of x. *)
  140. PROCEDURE -AtomicTestSet*(VAR x: BOOLEAN): BOOLEAN;
  141. CODE {SYSTEM.AMD64}
  142. POP RBX
  143. MOV AL, 1
  144. XCHG [RBX], AL
  145. END AtomicTestSet;
  146. (* Atomic compare-and-swap. Set x = new if x = old and return old value of x *)
  147. PROCEDURE -AtomicCAS* (VAR x: LONGINT; old, new: LONGINT): LONGINT;
  148. CODE {SYSTEM.AMD64}
  149. POP EBX ; new
  150. POP EAX ; old
  151. POP RCX ; address of x
  152. LOCK CMPXCHG [RCX], EBX ; atomicly compare x with old and set it to new if equal
  153. END AtomicCAS;
  154. (** -- Miscellaneous -- *)
  155. (* Return current instruction pointer *)
  156. PROCEDURE CurrentPC* (): ADDRESS;
  157. CODE {SYSTEM.AMD64}
  158. MOV RAX, [RBP + 8]
  159. END CurrentPC;
  160. (* Return current frame pointer *)
  161. PROCEDURE -CurrentBP* (): ADDRESS;
  162. CODE {SYSTEM.AMD64}
  163. MOV RAX, RBP
  164. END CurrentBP;
  165. (* Set current frame pointer *)
  166. PROCEDURE -SetBP* (bp: ADDRESS);
  167. CODE {SYSTEM.AMD64}
  168. POP RBP
  169. END SetBP;
  170. (* Return current stack pointer *)
  171. PROCEDURE -CurrentSP* (): ADDRESS;
  172. CODE {SYSTEM.AMD64}
  173. MOV RAX, RSP
  174. END CurrentSP;
  175. (* Set current stack pointer *)
  176. PROCEDURE -SetSP* (sp: ADDRESS);
  177. CODE {SYSTEM.AMD64}
  178. POP RSP
  179. END SetSP;
  180. (** This procedure should be called in all spin loops as a hint to the processor (e.g. Pentium 4). *)
  181. PROCEDURE -SpinHint*;
  182. CODE {SYSTEM.AMD64}
  183. PAUSE
  184. END SpinHint;
  185. (** Fill "size" bytes at "destAdr" with "filler". "size" must be multiple of 4. *)
  186. PROCEDURE Fill32* (destAdr: ADDRESS; size: SIZE; filler: LONGINT);
  187. CODE {SYSTEM.AMD64}
  188. MOV RDI, [RBP + destAdr]
  189. MOV RCX, [RBP + size]
  190. MOV EAX, [RBP + filler]
  191. TEST RCX, 3
  192. JZ ok
  193. PUSH 8 ; ASSERT failure
  194. INT 3
  195. ok:
  196. SHR RCX, 2
  197. CLD
  198. REP STOSD
  199. END Fill32;
  200. (** -- Processor initialization -- *)
  201. PROCEDURE -SetFCR( s: SET );
  202. CODE {SYSTEM.i386, SYSTEM.FPU}
  203. FLDCW [ESP] ; parameter s
  204. POP EAX
  205. END SetFCR;
  206. PROCEDURE -FCR( ): SET;
  207. CODE {SYSTEM.i386, SYSTEM.FPU}
  208. PUSH 0
  209. FNSTCW [ESP]
  210. FWAIT
  211. POP EAX
  212. END FCR;
  213. PROCEDURE -InitFPU;
  214. CODE {SYSTEM.i386, SYSTEM.FPU}
  215. FNINIT
  216. END InitFPU;
  217. (** Setup FPU control word of current processor. *)
  218. PROCEDURE SetupFPU*;
  219. BEGIN
  220. InitFPU; SetFCR( fcr )
  221. END SetupFPU;
  222. (** CPU identification. *)
  223. PROCEDURE CPUID*( VAR vendor: Vendor; VAR version: LONGINT; VAR features1,features2: SET );
  224. CODE {SYSTEM.i386, SYSTEM.Pentium}
  225. MOV EAX, 0
  226. CPUID
  227. CMP EAX, 0
  228. JNE ok
  229. MOV ESI, [EBP+vendor]
  230. MOV [ESI], AL ; AL = 0
  231. MOV ESI, [EBP+version]
  232. MOV [ESI], EAX ; EAX = 0
  233. MOV ESI, [EBP+features1]
  234. MOV [ESI], EAX
  235. MOV ESI, [EBP+features2]
  236. MOV [ESI], EAX
  237. JMP end
  238. ok:
  239. MOV ESI, [EBP+vendor]
  240. MOV [ESI], EBX
  241. MOV [ESI+4], EDX
  242. MOV [ESI+8], ECX
  243. MOV BYTE [ESI+12], 0
  244. MOV EAX, 1
  245. CPUID
  246. MOV ESI, [EBP+version]
  247. MOV [ESI], EAX
  248. MOV ESI, [EBP+features1]
  249. MOV [ESI], EDX
  250. MOV ESI, [EBP+features2]
  251. MOV [ESI], ECX
  252. end:
  253. END CPUID;
  254. PROCEDURE GetConfig*( CONST name: ARRAY OF CHAR; VAR val: ARRAY OF CHAR );
  255. CONST ConfigKey = "Configuration";
  256. BEGIN
  257. COPY ("", val);
  258. TRACE(name,val,userConfigFile,defaultConfigFile);
  259. IF Kernel32.GetPrivateProfileString (ConfigKey, name, "", val, LEN (val), userConfigFile) # 0 THEN
  260. ELSIF Kernel32.GetPrivateProfileString (ConfigKey, name, "", val, LEN (val), defaultConfigFile) # 0 THEN
  261. END;
  262. TRACE(name,val);
  263. IF (name = "ObjectFileExtension") & (val = "") THEN
  264. IF Kernel32.Generic THEN
  265. val := ".GofW";
  266. ELSE
  267. val := ".Obw"
  268. END;
  269. END;
  270. END GetConfig;
  271. PROCEDURE Shutdown*( restart: BOOLEAN );
  272. BEGIN
  273. RemoveTraceFile;
  274. Kernel32.Shutdown( 0 ); (* calls the finalizer of Heaps *)
  275. END Shutdown;
  276. (* Dan: from new Machine *)
  277. PROCEDURE -GetTimer*(): HUGEINT;
  278. CODE {SYSTEM.Pentium}
  279. RDTSC ; set EDX:EAX
  280. END GetTimer;
  281. (* Dan: mono CPU PCs *)
  282. PROCEDURE ID*(): LONGINT;
  283. BEGIN
  284. RETURN 0
  285. END ID;
  286. (**
  287. * Flush Data Cache for the specified virtual address range. If len is negative, flushes the whole cache.
  288. * This is used on some architecture to interact with DMA hardware (e.g. Ethernet and USB. It can be
  289. * left empty on Intel architecture.
  290. *)
  291. PROCEDURE FlushDCacheRange * (adr: ADDRESS; len: LONGINT);
  292. END FlushDCacheRange;
  293. (**
  294. * Invalidate Data Cache for the specified virtual address range. If len is negative, flushes the whole cache.
  295. * This is used on some architecture to interact with DMA hardware (e.g. Ethernet and USB. It can be
  296. * left empty on Intel architecture.
  297. *)
  298. PROCEDURE InvalidateDCacheRange * (adr: ADDRESS; len: LONGINT);
  299. END InvalidateDCacheRange;
  300. (**
  301. * Invalidate Instruction Cache for the specified virtual address range. If len is negative, flushes the whole cache.
  302. * This is used on some architecture to interact with DMA hardware (e.g. Ethernet and USB. It can be
  303. * left empty on Intel architecture.
  304. *)
  305. PROCEDURE InvalidateICacheRange * (adr: ADDRESS; len: LONGINT);
  306. END InvalidateICacheRange;
  307. (* setup MMX, SSE and SSE2..SSE5 and AVX extension *)
  308. PROCEDURE SetupSSE2Ext;
  309. CONST
  310. MMXFlag=23;(*IN features from EBX*)
  311. FXSRFlag = 24;
  312. SSEFlag = 25;
  313. SSE2Flag = 26;
  314. SSE3Flag = 0; (*IN features2 from ECX*) (*PH 04/11*)
  315. SSSE3Flag =9;
  316. SSE41Flag =19;
  317. SSE42Flag =20;
  318. SSE5Flag = 11;
  319. AVXFlag = 28;
  320. BEGIN
  321. MMXSupport := MMXFlag IN features;
  322. SSESupport := SSEFlag IN features;
  323. SSE2Support := SSESupport & (SSE2Flag IN features);
  324. SSE3Support := SSE2Support & (SSE3Flag IN features2);
  325. SSSE3Support := SSE3Support & (SSSE3Flag IN features2); (* PH 04/11*)
  326. SSE41Support := SSE3Support & (SSE41Flag IN features2);
  327. SSE42Support := SSE3Support & (SSE42Flag IN features2);
  328. SSE5Support := SSE3Support & (SSE5Flag IN features2);
  329. AVXSupport := SSE3Support & (AVXFlag IN features2);
  330. IF SSESupport & (FXSRFlag IN features) THEN
  331. (* InitSSE(); *) (*! not privileged mode in Windows not allowed *)
  332. END;
  333. END SetupSSE2Ext;
  334. PROCEDURE ReadCommandLine(VAR commandLine: ARRAY OF CHAR);
  335. VAR adr: ADDRESS; i: LONGINT; ch: CHAR;
  336. BEGIN
  337. adr := Kernel32.GetCommandLine();
  338. SYSTEM.GET(adr,ch);
  339. i := 0;
  340. WHILE (i<LEN(commandLine)-1) & (ch # 0X) DO
  341. commandLine[i] := ch;
  342. INC(adr); INC(i);
  343. SYSTEM.GET(adr,ch);
  344. END;
  345. END ReadCommandLine;
  346. PROCEDURE ParseLine(VAR c: ARRAY OF CHAR; VAR iniFile: ARRAY OF CHAR);
  347. VAR i: LONGINT;
  348. PROCEDURE SkipSpaces;
  349. BEGIN
  350. WHILE (c[i] <= " ") & (c[i] # 0X) DO INC(i) END;
  351. END SkipSpaces;
  352. PROCEDURE SkipName;
  353. BEGIN
  354. WHILE (c[i] > " ") DO INC(i) END;
  355. END SkipName;
  356. PROCEDURE CheckName(CONST name: ARRAY OF CHAR): BOOLEAN;
  357. VAR j: LONGINT;
  358. BEGIN
  359. j := 0;
  360. WHILE (c[i] = name[j]) & (c[i] # 0X) & (name[j] # 0X) DO
  361. INC(i); INC(j);
  362. END;
  363. RETURN (name[j] = 0X);
  364. END CheckName;
  365. PROCEDURE ReadName(VAR name: ARRAY OF CHAR);
  366. VAR j: LONGINT;
  367. BEGIN
  368. SkipSpaces;
  369. j := 0;
  370. WHILE (c[i] > " ") & (j < LEN(name)-1) DO
  371. name[j] := c[i];
  372. INC(i); INC(j);
  373. END;
  374. name[j] := 0X;
  375. END ReadName;
  376. BEGIN
  377. c[LEN(c)-1] := 0X;
  378. i := 0;
  379. SkipSpaces;
  380. SkipName;
  381. SkipSpaces;
  382. IF c[i] = "-" THEN (* option *)
  383. INC(i);
  384. IF CheckName("ini") THEN SkipSpaces; ReadName(iniFile) END;
  385. END;
  386. END ParseLine;
  387. PROCEDURE TraceChar(c: CHAR);
  388. VAR len: LONGINT; b: Kernel32.BOOL;
  389. BEGIN
  390. len := 1;
  391. b := Kernel32.WriteFile(hout,c,len,len,NIL);
  392. END TraceChar;
  393. PROCEDURE SetTraceFile(VAR filename: ARRAY OF CHAR);
  394. BEGIN
  395. Trace.String("trace -> file "); Trace.String(filename); Trace.Ln;
  396. hout := Kernel32.CreateFile(filename, {Kernel32.GenericWrite}, {Kernel32.FileShareRead}, NIL, Kernel32.CreateAlways, {Kernel32.FileAttributeNormal}, Kernel32.NULL);
  397. Kernel32.GetFullPathName(filename, LEN(filename), filename, NIL);
  398. Trace.Char := TraceChar;
  399. END SetTraceFile;
  400. PROCEDURE SetTraceConsole;
  401. VAR res: LONGINT;
  402. BEGIN
  403. Trace.String("trace -> console"); Trace.Ln;
  404. res := Kernel32.AllocConsole ();
  405. hin := Kernel32.GetStdHandle (Kernel32.STDInput);
  406. hout := Kernel32.GetStdHandle (Kernel32.STDOutput);
  407. Trace.Char := TraceChar;
  408. END SetTraceConsole;
  409. PROCEDURE SetupTraceName(VAR traceName: ARRAY OF CHAR);
  410. VAR
  411. ext: ARRAY 256 OF CHAR;
  412. extPos,i,j: LONGINT;
  413. systemTime: Kernel32.SystemTime;
  414. ch: CHAR;
  415. PROCEDURE AppendDecimals(int: LONGINT; from, to: LONGINT);
  416. VAR ten: LONGINT;
  417. BEGIN
  418. WHILE to >= from DO
  419. traceName[i] := CHR(ORD("0")+ int DIV to MOD 10); INC(i);
  420. to := to DIV 10;
  421. END;
  422. END AppendDecimals;
  423. BEGIN
  424. Kernel32.GetLocalTime(systemTime);
  425. extPos := 0;
  426. REPEAT
  427. ch := traceName[i];
  428. IF ch = "." THEN j := 0; extPos := i END;
  429. ext[j] := ch;
  430. INC(j); INC(i);
  431. UNTIL ch = 0X;
  432. IF extPos > 0 THEN i := extPos END;
  433. ext[j] := 0X;
  434. AppendDecimals(systemTime.wYear,1,1000);
  435. AppendDecimals(systemTime.wMonth,1,10);
  436. AppendDecimals(systemTime.wDay,1,10);
  437. traceName[i] := "_"; INC(i);
  438. AppendDecimals(systemTime.wHour,1,10);
  439. AppendDecimals(systemTime.wMinute,1,10);
  440. AppendDecimals(systemTime.wSecond,1,10);
  441. traceName[i] := "_"; INC(i);
  442. AppendDecimals(systemTime.wMilliseconds,10,100);
  443. j := 0;
  444. REPEAT
  445. ch := ext[j];
  446. traceName[i] := ch;
  447. INC(i); INC(j);
  448. UNTIL ch = 0X;
  449. END SetupTraceName;
  450. PROCEDURE RemoveTraceFile;
  451. VAR res: LONGINT;
  452. BEGIN
  453. IF traceName[0] # 0X THEN
  454. Trace.String("removing "); Trace.String(traceName); Trace.Ln;
  455. Trace.Char := LogChar;
  456. res := Kernel32.CloseHandle(hout);
  457. IF res = 0 THEN
  458. res := Kernel32.GetLastError();
  459. Trace.String("could not close "); Trace.String("; res = "); Trace.Int(res,1); Trace.Ln;
  460. END;
  461. res := Kernel32.DeleteFile(traceName);
  462. IF res = 0 THEN
  463. res := Kernel32.GetLastError();
  464. Trace.String("could not delete "); Trace.String(traceName); Trace.String("; res = "); Trace.Int(res,1); Trace.Ln;
  465. END;
  466. END;
  467. END RemoveTraceFile;
  468. PROCEDURE ToExecutablePath(CONST name: ARRAY OF CHAR; VAR fullName: ARRAY OF CHAR);
  469. VAR i,j: LONGINT;
  470. BEGIN
  471. Kernel32.GetModuleFileName(Kernel32.hInstance, fullName, LEN( fullName ) );
  472. j := -1; i := 0;
  473. WHILE fullName[i] # 0X DO
  474. IF fullName[i] = '\' THEN j := i END;
  475. INC( i )
  476. END;
  477. i := 0; INC(j);
  478. WHILE name[i] # 0X DO
  479. fullName[j] := name[i]; INC(i); INC(j);
  480. END;
  481. fullName[j] := 0X;
  482. END ToExecutablePath;
  483. PROCEDURE Append(VAR s: ARRAY OF CHAR; CONST t: ARRAY OF CHAR);
  484. VAR i,j: LONGINT;
  485. BEGIN
  486. i := 0;
  487. WHILE(s[i] # 0X) DO INC(i) END;
  488. j := 0;
  489. WHILE (t[j] # 0X) DO
  490. s[i] := t[j];
  491. INC(i); INC(j);
  492. END;
  493. s[i] := 0X;
  494. END Append;
  495. PROCEDURE Init*;
  496. VAR vendor: Vendor; ver: LONGINT; hfile: Kernel32.HANDLE;
  497. BEGIN
  498. Kernel32.Init;
  499. Trace.String("Machine 1"); Trace.Ln;
  500. (* trace[1] := 0X; Trace.Char := LogChar; Trace.Color := TraceColor; *)
  501. InitLocks();
  502. boottime:=GetTimer();
  503. COPY( Version, version );
  504. Append(version, SYSTEM.Date);
  505. CPUID(vendor, ver, features,features2); SetupSSE2Ext;
  506. fcr := (FCR() - {0,2,3,10,11}) + {0..5,8,9}; (* default FCR RC=00B *)
  507. ReadCommandLine(commandLine);
  508. IF Kernel32.Generic THEN
  509. ToExecutablePath(DefaultGenericConfigFile, defaultConfigFile);
  510. ELSE
  511. ToExecutablePath(DefaultConfigFile, defaultConfigFile);
  512. END;
  513. COPY(UserConfigFile, userConfigFile);
  514. hfile := Kernel32.CreateFile( userConfigFile, {Kernel32.GenericRead}, {Kernel32.FileShareRead}, NIL , Kernel32.OpenExisting, {Kernel32.FileAttributeNormal}, 0 );
  515. IF hfile = Kernel32.InvalidHandleValue THEN
  516. ToExecutablePath(UserConfigFile, userConfigFile);
  517. ELSE
  518. Kernel32.CloseHandle(hfile)
  519. END;
  520. (* ever used ? *)
  521. ParseLine(commandLine, userConfigFile);
  522. userConfigFile[Kernel32.GetFullPathName (userConfigFile, Kernel32.MaxPath, userConfigFile, 0)] := 0X;
  523. Trace.String("config file = "); Trace.String(defaultConfigFile); Trace.Ln;
  524. Trace.String("user config file = "); Trace.String(userConfigFile); Trace.Ln;
  525. traceName[0] := 0X;
  526. GetConfig("Trace",traceName);
  527. Trace.String("traceName "); Trace.String(traceName); Trace.Ln;
  528. IF traceName = "File" THEN
  529. traceName := "SystemTrace.txt";
  530. SetupTraceName(traceName);
  531. Trace.String("trace file to "); Trace.String(traceName); Trace.Ln;
  532. SetTraceFile(traceName);
  533. ELSIF traceName = "Console" THEN SetTraceConsole
  534. (* else trace is on kernel log *)
  535. END;
  536. Trace.String("Machine init done"); Trace.Ln;
  537. END Init;
  538. PROCEDURE {INITIAL, NOPAF} Start;
  539. BEGIN
  540. Init; (* cannot allocate variables in here *)
  541. END Start;
  542. (* Initialize locks. *)
  543. PROCEDURE InitLocks;
  544. VAR i: LONGINT;
  545. BEGIN
  546. i := 0;
  547. WHILE i < MaxLocks DO Kernel32.InitializeCriticalSection( cs[i] ); lock[i] := "N"; INC( i ) END;
  548. END InitLocks;
  549. PROCEDURE CleanupLocks*;
  550. VAR i: LONGINT;
  551. BEGIN
  552. i := 0;
  553. WHILE i < MaxLocks DO Kernel32.DeleteCriticalSection( cs[i] ); INC( i ) END;
  554. END CleanupLocks;
  555. (** Acquire a spin-lock. *)
  556. PROCEDURE Acquire*( level: LONGINT ); (* non reentrant lock (non reentrance "ensured" by ASSERT statement ), CriticalSections are reentrant *)
  557. BEGIN
  558. Kernel32.EnterCriticalSection( cs[level] );
  559. IF StrongChecks THEN
  560. ASSERT ( lock[level] = "N", 1001 );
  561. ELSIF lock[level] # "N" THEN
  562. Trace.String("warning: reentered non-reentrant lock"); Trace.Ln;
  563. END;
  564. lock[level] := "Y";
  565. END Acquire;
  566. (** Release a spin-lock. *)
  567. PROCEDURE Release*( level: LONGINT ); (* release lock *)
  568. BEGIN
  569. IF StrongChecks THEN
  570. ASSERT ( lock[level] ="Y", 1002 );
  571. ELSIF lock[level] # "Y" THEN
  572. Trace.String("warning: reentered non-reentrant lock"); Trace.Ln;
  573. END;
  574. lock[level] := "N";
  575. Kernel32.LeaveCriticalSection( cs[level] )
  576. END Release;
  577. (* added by Alexey *)
  578. PROCEDURE GetMemStatus(VAR stat: Kernel32.MemoryStatusEx): BOOLEAN;
  579. BEGIN
  580. stat.dwLength := 64;
  581. IF Kernel32.GlobalMemoryStatusEx(stat) = 1 THEN
  582. RETURN TRUE;
  583. ELSE
  584. RETURN FALSE;
  585. END;
  586. END GetMemStatus;
  587. (** dummy procedure to make GC work for both I386 and Win32 *)
  588. PROCEDURE GetKernelStacks*(VAR stack: ARRAY OF Stack);
  589. VAR i: LONGINT;
  590. BEGIN
  591. FOR i := 0 TO MaxCPU-1 DO
  592. stack[i].adr := NilVal;
  593. stack[i].high := NilVal
  594. END
  595. END GetKernelStacks;
  596. (* Set machine-dependent parameter gcThreshold *)
  597. PROCEDURE SetGCParams*;
  598. BEGIN
  599. gcThreshold := 10*1024*1024; (* 10 MB *)
  600. END SetGCParams;
  601. (* expand heap by allocating a new memory block - called during GC *)
  602. PROCEDURE InitHeap(VAR memoryBlock: MemoryBlock; VAR beginBlockAdr, endBlockAdr: ADDRESS);
  603. CONST MemBlockHeaderSize = BlockHeaderSize + RecordDescSize + BlockHeaderSize;
  604. TypeDescOffset = -AddressSize; (* see Heaps.Mod *)
  605. HeapBlockOffset = - 2 * AddressSize; (* see Heaps.Mod *)
  606. DataAdrOffset = AddressSize; (* offset of dataAdr field in Heaps.HeapBlockDesc *)
  607. VAR memDescSize, memBlkSize, alignOffset: SIZE; adr, memHeaderAdr, memBlockAdr, memBlockHeadAdr: ADDRESS;
  608. memBlock {UNTRACED}: MemoryBlock; i: LONGINT; ch: CHAR; h: HUGEINT; size: LONGINT;
  609. initVal: LONGINT;
  610. BEGIN
  611. (*
  612. HeapBlockPtr -- bootHeapAdr
  613. 4 Type
  614. 8 Mark
  615. 12 DataAdr
  616. 16 Size
  617. 20 HeapBlockPtr
  618. 24 Type
  619. 28 next -- MemoryBlock
  620. 32 startAdr
  621. 36 size
  622. 40 beginBlockAdr
  623. 44 endBlockAdr
  624. 48 --beginBlockAdr
  625. ....
  626. --endBlockAdr
  627. *)
  628. size := 1;
  629. memDescSize := MemBlockHeaderSize + SIZEOF(MemoryBlockDesc);
  630. INC(memDescSize, (-memDescSize) MOD StaticBlockSize); (* round up to multiple of StaticBlockSize *)
  631. INC(size, (-size) MOD StaticBlockSize); (* round up to multiple of StaticBlockSize *)
  632. memBlkSize := memDescSize + size + StaticBlockSize; (* add StaticBlockSize to account for alignments different from multiples of StaticBlockSize *)
  633. IF memBlkSize < MemBlockSize THEN memBlkSize := MemBlockSize END; (* MemBlockSize implicitly multiple of StaticBlockSize *)
  634. initVal := 8*1024*1024;
  635. adr := Kernel32.VirtualAlloc(initVal, memBlkSize, {Kernel32.MEMCommit, Kernel32.MEMReserve}, {Kernel32.PageExecuteReadWrite});
  636. IF adr = NilVal THEN (* allocation failed *)
  637. adr := Kernel32.VirtualAlloc(NilVal, memBlkSize, {Kernel32.MEMCommit}, {Kernel32.PageExecuteReadWrite});
  638. END;
  639. Trace.String("first heap block intVal "); Trace.Int(initVal,1); Trace.Ln;
  640. Trace.String("first heap block memBlkSize "); Trace.Int(memBlkSize,1); Trace.Ln;
  641. Trace.String("first heap block adr "); Trace.Int(adr,1); Trace.Ln;
  642. ASSERT(adr # 0);
  643. alignOffset := (-adr) MOD StaticBlockSize;
  644. memHeaderAdr := adr + alignOffset; (* force alignment of memory block start *)
  645. memBlockAdr := memHeaderAdr + MemBlockHeaderSize;
  646. memBlock := SYSTEM.VAL(MemoryBlock, memBlockAdr);
  647. beginBlockAdr := memHeaderAdr + memDescSize;
  648. memBlock.next := NIL;
  649. memBlock.startAdr := adr;
  650. memBlock.size := memBlkSize;
  651. beginBlockAdr := memHeaderAdr + memDescSize;
  652. endBlockAdr := adr + memBlkSize - alignOffset;
  653. memBlock.beginBlockAdr := beginBlockAdr;
  654. memBlock.endBlockAdr := endBlockAdr;
  655. (* correct fields *)
  656. SYSTEM.PUT(memBlockAdr + HeapBlockOffset, memHeaderAdr + BlockHeaderSize); (* set reference to header part of memory block correctly *)
  657. SYSTEM.PUT(memBlockAdr + TypeDescOffset, 0); (* set type descriptor field of memory block to default value, memory blocks are not traced by GC *)
  658. SYSTEM.PUT(memHeaderAdr + BlockHeaderSize + DataAdrOffset, memBlockAdr); (* set dataAdr of RecordBlockDesc to correct value *)
  659. SYSTEM.PUT(memHeaderAdr + BlockHeaderSize + 2*AddressSize , memBlkSize);
  660. (* fill first heap block *)
  661. SYSTEM.PUT(beginBlockAdr,0);
  662. SYSTEM.PUT(beginBlockAdr+AddressSize,0);
  663. SYSTEM.PUT(beginBlockAdr+2*AddressSize,0);
  664. (* change this when Heaps.HeapBlock is modified *)
  665. SYSTEM.PUT(beginBlockAdr+3*AddressSize,beginBlockAdr+7*AddressSize);
  666. SYSTEM.PUT(beginBlockAdr+4*AddressSize,endBlockAdr-beginBlockAdr);
  667. SYSTEM.PUT(beginBlockAdr+5*AddressSize,beginBlockAdr+2*AddressSize);
  668. SYSTEM.PUT(beginBlockAdr+6*AddressSize,0);
  669. memoryBlock := memBlock;
  670. END InitHeap;
  671. (** Get first memory block and first free address, the first free address is identical to memBlockHead.endBlockAdr *)
  672. PROCEDURE GetStaticHeap*(VAR beginBlockAdr, endBlockAdr, freeBlockAdr: ADDRESS);
  673. VAR memBlockAdr: ADDRESS;
  674. BEGIN
  675. InitHeap(memBlockHead,beginBlockAdr, endBlockAdr);
  676. memBlockTail := memBlockHead;
  677. (*
  678. SYSTEM.GET(bootHeapAdr + EndBlockOfs, freeBlockAdr);
  679. ASSERT(freeBlockAdr MOD StaticBlockSize = 0);
  680. memBlockAdr := bootHeapAdr + HeaderSize + MemoryBlockOfs;
  681. memBlockHead := SYSTEM.VAL(MemoryBlock, memBlockAdr); (* this block will never be freed since there is a global reference (initBlock in Heaps.Mod) to it *)
  682. memBlockHead.startAdr := bootHeapAdr;
  683. memBlockHead.size := bootHeapSize;
  684. ASSERT(memBlockHead.beginBlockAdr MOD StaticBlockSize = 0);
  685. ASSERT((memBlockHead.endBlockAdr - memBlockHead.beginBlockAdr) MOD StaticBlockSize = 0);
  686. memBlockTail := memBlockHead;
  687. *)
  688. beginBlockAdr := memBlockHead.beginBlockAdr;
  689. endBlockAdr := memBlockHead.endBlockAdr;
  690. freeBlockAdr := beginBlockAdr;
  691. END GetStaticHeap;
  692. (* returns if an address is a currently allocated heap address *)
  693. PROCEDURE ValidHeapAddress*(p: ADDRESS): BOOLEAN;
  694. BEGIN
  695. RETURN (p >= memBlockHead.beginBlockAdr) & (p <= memBlockTail.endBlockAdr)
  696. OR (p>=401000H) & (p<=ADDRESSOF(LastAddress))
  697. END ValidHeapAddress;
  698. PROCEDURE GetFreeK* (VAR total, lowFree, highFree: SIZE);
  699. VAR
  700. stat: Kernel32.MemoryStatusEx;
  701. BEGIN
  702. total := MAX(LONGINT); lowFree := 0; highFree := total;
  703. (*<< added by Alexey *)
  704. IF GetMemStatus(stat) THEN
  705. total := SHORT(stat.ullTotalVirtual DIV 1024);
  706. lowFree := 0;
  707. highFree := SHORT(stat.ullAvailVirtual DIV 1024);
  708. END;
  709. (* added by Alexey >>*)
  710. END GetFreeK;
  711. (* ug *)
  712. PROCEDURE TraceMemBlocks*;
  713. VAR memBlock {UNTRACED}: MemoryBlock; i : LONGINT;
  714. BEGIN
  715. memBlock := memBlockHead;
  716. i := 0;
  717. WHILE memBlock # NIL DO
  718. Trace.String("block "); Trace.Int(i, 0); Trace.String(": startAdr = "); Trace.Hex(memBlock.startAdr, 0);
  719. Trace.String(" size = "); Trace.Hex(memBlock.size, 0);
  720. Trace.String(" beginBlockAdr = "); Trace.Hex(memBlock.beginBlockAdr, 0);
  721. Trace.String(" endBlockAdr = "); Trace.Hex(memBlock.endBlockAdr, 0); Trace.Ln;
  722. memBlock := memBlock.next;
  723. INC(i)
  724. END
  725. END TraceMemBlocks;
  726. (* insert given memory block in sorted list of memory blocks, sort key is startAdr field - called during GC *)
  727. PROCEDURE InsertMemoryBlock(memBlock: MemoryBlock);
  728. VAR cur {UNTRACED}, prev {UNTRACED}: MemoryBlock;
  729. BEGIN
  730. cur := memBlockHead;
  731. prev := NIL;
  732. WHILE (cur # NIL) & (cur.startAdr < memBlock.startAdr) DO
  733. prev := cur;
  734. cur := cur.next
  735. END;
  736. IF prev = NIL THEN (* insert at head of list *)
  737. memBlock.next := memBlockHead;
  738. memBlockHead := memBlock
  739. ELSE (* insert in middle or at end of list *)
  740. memBlock.next := cur;
  741. prev.next := memBlock;
  742. IF cur = NIL THEN
  743. memBlockTail := memBlock
  744. END
  745. END
  746. END InsertMemoryBlock;
  747. (* expand heap by allocating a new memory block - called during GC *)
  748. PROCEDURE ExpandHeap*(dummy: LONGINT; size: SIZE; VAR memoryBlock: MemoryBlock; VAR beginBlockAdr, endBlockAdr: ADDRESS);
  749. CONST MemBlockHeaderSize = BlockHeaderSize + RecordDescSize + BlockHeaderSize;
  750. TypeDescOffset = -AddressSize; (* see Heaps.Mod *)
  751. HeapBlockOffset = - 2 * AddressSize; (* see Heaps.Mod *)
  752. DataAdrOffset = AddressSize; (* offset of dataAdr field in Heaps.HeapBlockDesc *)
  753. VAR memDescSize, memBlkSize, alignOffset: SIZE; adr, memHeaderAdr, memBlockAdr, memBlockHeadAdr: ADDRESS;
  754. memBlock {UNTRACED}: MemoryBlock; i: LONGINT; ch: CHAR; h: HUGEINT; initVal: SIZE;
  755. continue: BOOLEAN;
  756. BEGIN
  757. memDescSize := MemBlockHeaderSize + SIZEOF(MemoryBlockDesc);
  758. INC(memDescSize, (-memDescSize) MOD StaticBlockSize); (* round up to multiple of StaticBlockSize *)
  759. INC(size, (-size) MOD StaticBlockSize); (* round up to multiple of StaticBlockSize *)
  760. memBlkSize := memDescSize + size + StaticBlockSize; (* add StaticBlockSize to account for alignments different from multiples of StaticBlockSize *)
  761. INC(memBlkSize, (-memBlkSize) MOD MemBlockSize);
  762. initVal := memBlockTail.startAdr + memBlockTail.size;
  763. adr := Kernel32.VirtualAlloc(initVal, memBlkSize, {Kernel32.MEMCommit, Kernel32.MEMReserve}, {Kernel32.PageExecuteReadWrite});
  764. IF adr = NilVal THEN (* allocation failed *)
  765. adr := Kernel32.VirtualAlloc(NilVal, memBlkSize, {Kernel32.MEMCommit}, {Kernel32.PageExecuteReadWrite});
  766. END;
  767. continue := adr = initVal;
  768. Trace.String("expand heap block intVal "); Trace.Int(initVal,1); Trace.Ln;
  769. Trace.String("expand heap block memBlkSize "); Trace.Int(memBlkSize,1); Trace.Ln;
  770. Trace.String("expand heap block adr "); Trace.Int(adr,1); Trace.Ln;
  771. ASSERT(adr # 0);
  772. IF adr # 0 THEN
  773. alignOffset := (-adr) MOD StaticBlockSize;
  774. IF continue THEN
  775. memBlock := memBlockTail;
  776. memBlock.size := memBlock.size + memBlkSize;
  777. beginBlockAdr := memBlockTail.endBlockAdr;
  778. endBlockAdr := beginBlockAdr;
  779. INC(endBlockAdr, memBlkSize);
  780. ELSE
  781. memHeaderAdr := adr + alignOffset; (* force alignment of memory block start *)
  782. memBlockAdr := memHeaderAdr + MemBlockHeaderSize;
  783. memBlock := SYSTEM.VAL(MemoryBlock, memBlockAdr);
  784. memBlock.next := NIL;
  785. memBlock.startAdr := adr;
  786. memBlock.size := memBlkSize;
  787. beginBlockAdr := memHeaderAdr + memDescSize;
  788. endBlockAdr := adr + memBlkSize - alignOffset;
  789. memBlock.beginBlockAdr := beginBlockAdr;
  790. memBlock.endBlockAdr := beginBlockAdr;
  791. (* upon memory block insertion memBlock.beginBlockAdr = memBlock.endBlockAdr to denote that the memory block has no valid heap blocks yet
  792. - necessary for real-time GC. Memory block end address is set by caller by using SetMemBlockEndAddress after fitting free block in. *)
  793. (* copy header of memBlockHead to header of memBlock - byte by byte *)
  794. memBlockHeadAdr := SYSTEM.VAL(ADDRESS, memBlockHead);
  795. FOR i := 0 TO MemBlockHeaderSize - 1 DO
  796. SYSTEM.GET(memBlockHeadAdr - MemBlockHeaderSize + i, ch);
  797. SYSTEM.PUT(memBlockAdr - MemBlockHeaderSize + i, ch)
  798. END;
  799. (* correct fields *)
  800. SYSTEM.PUT(memBlockAdr + HeapBlockOffset, memHeaderAdr + BlockHeaderSize); (* set reference to header part of memory block correctly *)
  801. SYSTEM.PUT(memBlockAdr + TypeDescOffset, 0); (* set type descriptor field of memory block to default value, memory blocks are not traced by GC *)
  802. SYSTEM.PUT(memHeaderAdr + BlockHeaderSize + DataAdrOffset, memBlockAdr); (* set dataAdr of RecordBlockDesc to correct value *)
  803. InsertMemoryBlock(memBlock);
  804. END;
  805. memoryBlock := memBlock;
  806. ELSE
  807. beginBlockAdr := 0; endBlockAdr := 0;
  808. END;
  809. END ExpandHeap;
  810. (* Set memory block end address *)
  811. PROCEDURE SetMemoryBlockEndAddress*(memBlock: MemoryBlock; endBlockAdr: ADDRESS);
  812. BEGIN
  813. ASSERT(endBlockAdr >= memBlock.beginBlockAdr);
  814. memBlock.endBlockAdr := endBlockAdr
  815. END SetMemoryBlockEndAddress;
  816. (* Free unused memory block - called during GC *)
  817. PROCEDURE FreeMemBlock*(memBlock: MemoryBlock);
  818. VAR cur {UNTRACED}, prev {UNTRACED}: MemoryBlock;
  819. startAdr: ADDRESS;
  820. BEGIN
  821. cur := memBlockHead;
  822. prev := NIL;
  823. WHILE (cur # NIL) & (cur # memBlock) DO
  824. prev := cur;
  825. cur := cur.next
  826. END;
  827. IF cur = memBlock THEN
  828. IF prev = NIL THEN
  829. memBlockHead := cur.next;
  830. ELSE
  831. prev.next := cur.next;
  832. IF prev.next = NIL THEN
  833. memBlockTail := prev
  834. END
  835. END;
  836. memBlock.next := NIL;
  837. startAdr := memBlock.startAdr; (* this value must be cached for the second call of Kernel32.VirtualFree *)
  838. Kernel32.VirtualFree(SYSTEM.VAL(LONGINT, memBlock.startAdr), memBlock.size, {Kernel32.MEMDecommit});
  839. Kernel32.VirtualFree(SYSTEM.VAL(LONGINT, startAdr ), 0, {Kernel32.MEMRelease});
  840. ELSE
  841. HALT(535) (* error in memory block management *)
  842. END;
  843. END FreeMemBlock;
  844. PROCEDURE PhysicalAdr*(adr: ADDRESS; size: SIZE): ADDRESS;
  845. END PhysicalAdr;
  846. (* function returning the number of processors that are available to Aos *)
  847. PROCEDURE NumberOfProcessors*( ): LONGINT;
  848. VAR info: Kernel32.SystemInfo;
  849. BEGIN
  850. Kernel32.GetSystemInfo( info );
  851. RETURN info.dwNumberOfProcessors
  852. END NumberOfProcessors;
  853. (* function for changing byte order *)
  854. PROCEDURE ChangeByteOrder* (n: LONGINT): LONGINT;
  855. CODE { SYSTEM.Pentium }
  856. MOV EAX, [EBP+n] ; load n in eax
  857. BSWAP EAX ; swap byte order
  858. END ChangeByteOrder;
  859. PROCEDURE TraceColor (c: SHORTINT);
  860. END TraceColor;
  861. PROCEDURE LogChar (c: CHAR);
  862. VAR trace: ARRAY 2 OF CHAR;
  863. BEGIN trace[0] := c; trace[1] := 0X; Kernel32.OutputString (trace);
  864. END LogChar;
  865. PROCEDURE -GetEAX*(): LONGINT;
  866. CODE{SYSTEM.i386}
  867. END GetEAX;
  868. PROCEDURE -GetECX*(): LONGINT;
  869. CODE{SYSTEM.i386}
  870. MOV EAX,ECX
  871. END GetECX;
  872. PROCEDURE -SetEAX*(n: LONGINT);
  873. CODE{SYSTEM.i386} POP EAX
  874. END SetEAX;
  875. PROCEDURE -SetEBX*(n: LONGINT);
  876. CODE{SYSTEM.i386}
  877. POP EBX
  878. END SetEBX;
  879. PROCEDURE -SetECX*(n: LONGINT);
  880. CODE{SYSTEM.i386}
  881. POP ECX
  882. END SetECX;
  883. PROCEDURE -SetEDX*(n: LONGINT);
  884. CODE{SYSTEM.i386}
  885. POP EDX
  886. END SetEDX;
  887. PROCEDURE -SetESI*(n: LONGINT);
  888. CODE{SYSTEM.i386}
  889. POP ESI
  890. END SetESI;
  891. PROCEDURE -SetEDI*(n: LONGINT);
  892. CODE{SYSTEM.i386}
  893. POP EDI
  894. END SetEDI;
  895. PROCEDURE Portin8*(port: LONGINT; VAR val: CHAR);
  896. CODE{SYSTEM.i386}
  897. MOV EDX,[EBP+port]
  898. IN AL, DX
  899. MOV ECX, [EBP+val]
  900. MOV [ECX], AL
  901. END Portin8;
  902. PROCEDURE Portin16*(port: LONGINT; VAR val: INTEGER);
  903. CODE{SYSTEM.i386}
  904. MOV EDX,[EBP+port]
  905. IN AX, DX
  906. MOV ECX, [EBP+val]
  907. MOV [ECX], AX
  908. END Portin16;
  909. PROCEDURE Portin32*(port: LONGINT; VAR val: LONGINT);
  910. CODE{SYSTEM.i386}
  911. MOV EDX,[EBP+port]
  912. IN EAX, DX
  913. MOV ECX, [EBP+val]
  914. MOV [ECX], EAX
  915. END Portin32;
  916. PROCEDURE Portout8*(port: LONGINT; val: CHAR);
  917. CODE{SYSTEM.i386}
  918. MOV AL,[EBP+val]
  919. MOV EDX,[EBP+port]
  920. OUT DX,AL
  921. END Portout8;
  922. PROCEDURE Portout16*(port: LONGINT; val: INTEGER);
  923. CODE{SYSTEM.i386}
  924. MOV AX,[EBP+val]
  925. MOV EDX,[EBP+port]
  926. OUT DX,AX
  927. END Portout16;
  928. PROCEDURE Portout32*(port: LONGINT; val: LONGINT);
  929. CODE{SYSTEM.i386}
  930. MOV EAX,[EBP+val]
  931. MOV EDX,[EBP+port]
  932. OUT DX,EAX
  933. END Portout32;
  934. BEGIN
  935. IF ~Kernel32.Generic THEN
  936. Init
  937. END;
  938. END Machine.