rautils.pas 53 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1998-2002 by Carl Eric Codere and Peter Vreman
  4. This unit implements some support routines for assembler parsing
  5. independent of the processor
  6. This program is free software; you can redistribute it and/or modify
  7. it under the terms of the GNU General Public License as published by
  8. the Free Software Foundation; either version 2 of the License, or
  9. (at your option) any later version.
  10. This program is distributed in the hope that it will be useful,
  11. but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. GNU General Public License for more details.
  14. You should have received a copy of the GNU General Public License
  15. along with this program; if not, write to the Free Software
  16. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  17. **********************************************************************}
  18. Unit RAUtils;
  19. {$i fpcdefs.inc}
  20. Interface
  21. Uses
  22. cutils,cclasses,
  23. globtype,aasmbase,aasmtai,cpubase,cpuinfo,
  24. symconst,symbase,symtype,symdef;
  25. Const
  26. RPNMax = 10; { I think you only need 4, but just to be safe }
  27. OpMax = 25;
  28. {---------------------------------------------------------------------
  29. Local Label Management
  30. ---------------------------------------------------------------------}
  31. Type
  32. { Each local label has this structure associated with it }
  33. TLocalLabel = class(TNamedIndexItem)
  34. Emitted : boolean;
  35. constructor Create(const n:string);
  36. function Gettasmlabel:tasmlabel;
  37. private
  38. lab : tasmlabel;
  39. end;
  40. TLocalLabelList = class(TDictionary)
  41. procedure CheckEmitted;
  42. end;
  43. var
  44. LocalLabelList : TLocalLabelList;
  45. function CreateLocalLabel(const s: string; var hl: tasmlabel; emit:boolean):boolean;
  46. Function SearchLabel(const s: string; var hl: tasmlabel;emit:boolean): boolean;
  47. {---------------------------------------------------------------------
  48. Instruction management
  49. ---------------------------------------------------------------------}
  50. type
  51. TOprType=(OPR_NONE,OPR_CONSTANT,OPR_SYMBOL,
  52. OPR_REFERENCE,OPR_REGISTER,OPR_REGLIST);
  53. TOprRec = record
  54. case typ:TOprType of
  55. OPR_NONE : ();
  56. OPR_CONSTANT : (val:longint);
  57. OPR_SYMBOL : (symbol:tasmsymbol;symofs:longint);
  58. OPR_REFERENCE : (ref:treference);
  59. OPR_REGISTER : (reg:tregister);
  60. {$ifdef m68k}
  61. OPR_REGLIST : (reglist:Tsupregset);
  62. {$else not m68k}
  63. OPR_REGLIST : ();
  64. {$endif m68k}
  65. end;
  66. TOperand = class
  67. size : topsize;
  68. hastype, { if the operand has typecasted variable }
  69. hasvar : boolean; { if the operand is loaded with a variable }
  70. opr : TOprRec;
  71. constructor create;
  72. destructor destroy;override;
  73. Procedure BuildOperand;virtual;
  74. Procedure SetSize(_size:longint;force:boolean);
  75. Procedure SetCorrectSize(opcode:tasmop);virtual;
  76. Function SetupResult:boolean;virtual;
  77. Function SetupSelf:boolean;
  78. Function SetupOldEBP:boolean;
  79. Function SetupVar(const s:string;GetOffset : boolean): Boolean;
  80. Function SetupDirectVar(const hs:string): Boolean;
  81. Procedure InitRef;
  82. end;
  83. TInstruction = class
  84. opcode : tasmop;
  85. opsize : topsize;
  86. condition : tasmcond;
  87. ops : byte;
  88. labeled : boolean;
  89. operands : array[1..max_operands] of toperand;
  90. constructor create;
  91. destructor destroy;override;
  92. Procedure InitOperands;virtual;
  93. Procedure BuildOpcode;virtual;
  94. procedure ConcatInstruction(p:TAAsmoutput);virtual;
  95. Procedure Swapoperands;
  96. end;
  97. {---------------------------------------------------------------------}
  98. { Expression parser types }
  99. {---------------------------------------------------------------------}
  100. TExprOperator = record
  101. ch: char; { operator }
  102. is_prefix: boolean; { was it a prefix, possible prefixes are +,- and not }
  103. end;
  104. String15 = String[15];
  105. {**********************************************************************}
  106. { The following operators are supported: }
  107. { '+' : addition }
  108. { '-' : subtraction }
  109. { '*' : multiplication }
  110. { '/' : modulo division }
  111. { '^' : exclusive or }
  112. { '<' : shift left }
  113. { '>' : shift right }
  114. { '&' : bitwise and }
  115. { '|' : bitwise or }
  116. { '~' : bitwise complement }
  117. { '%' : modulo division }
  118. { nnn: longint numbers }
  119. { ( and ) parenthesis }
  120. {**********************************************************************}
  121. TExprParse = class
  122. public
  123. Constructor create;
  124. Destructor Destroy;override;
  125. Function Evaluate(Expr: String): longint;
  126. Function Priority(_Operator: Char): longint;
  127. private
  128. RPNStack : Array[1..RPNMax] of longint; { Stack For RPN calculator }
  129. RPNTop : longint;
  130. OpStack : Array[1..OpMax] of TExprOperator; { Operator stack For conversion }
  131. OpTop : longint;
  132. Procedure RPNPush(Num: Longint);
  133. Function RPNPop: Longint;
  134. Procedure RPNCalc(token: String15; prefix: boolean);
  135. Procedure OpPush(_Operator: char; prefix: boolean);
  136. { In reality returns TExprOperaotr }
  137. Procedure OpPop(var _Operator:TExprOperator);
  138. end;
  139. { Evaluate an expression string to a longint }
  140. Function CalculateExpression(const expression: string): longint;
  141. {---------------------------------------------------------------------}
  142. { String routines }
  143. {---------------------------------------------------------------------}
  144. Function ValDecimal(const S:String):longint;
  145. Function ValOctal(const S:String):longint;
  146. Function ValBinary(const S:String):longint;
  147. Function ValHexaDecimal(const S:String):longint;
  148. Function PadZero(Var s: String; n: byte): Boolean;
  149. Function EscapeToPascal(const s:string): string;
  150. {---------------------------------------------------------------------
  151. Symbol helper routines
  152. ---------------------------------------------------------------------}
  153. procedure AsmSearchSym(const s:string;var srsym:tsym;var srsymtable:tsymtable);
  154. Function GetRecordOffsetSize(s:string;Var Offset: longint;var Size:longint):boolean;
  155. Function SearchType(const hs:string): Boolean;
  156. Function SearchRecordType(const s:string): boolean;
  157. Function SearchIConstant(const s:string; var l:longint): boolean;
  158. {---------------------------------------------------------------------
  159. Instruction generation routines
  160. ---------------------------------------------------------------------}
  161. Procedure ConcatPasString(p : TAAsmoutput;s:string);
  162. Procedure ConcatDirect(p : TAAsmoutput;s:string);
  163. Procedure ConcatLabel(p: TAAsmoutput;var l : tasmlabel);
  164. Procedure ConcatConstant(p : TAAsmoutput;value: longint; maxvalue: longint);
  165. Procedure ConcatConstSymbol(p : TAAsmoutput;const sym:string;l:longint);
  166. Procedure ConcatRealConstant(p : TAAsmoutput;value: bestreal; real_typ : tfloattype);
  167. Procedure ConcatString(p : TAAsmoutput;s:string);
  168. procedure ConcatAlign(p:TAAsmoutput;l:longint);
  169. Procedure ConcatPublic(p:TAAsmoutput;const s : string);
  170. Procedure ConcatLocal(p:TAAsmoutput;const s : string);
  171. Procedure ConcatGlobalBss(const s : string;size : longint);
  172. Procedure ConcatLocalBss(const s : string;size : longint);
  173. Implementation
  174. uses
  175. {$ifdef delphi}
  176. sysutils,
  177. {$else}
  178. strings,
  179. {$endif}
  180. defutil,systems,verbose,globals,
  181. symsym,symtable,paramgr,
  182. aasmcpu,
  183. cgbase,tgobj;
  184. {*************************************************************************
  185. TExprParse
  186. *************************************************************************}
  187. Constructor TExprParse.create;
  188. Begin
  189. end;
  190. Procedure TExprParse.RPNPush(Num : longint);
  191. { Add an operand to the top of the RPN stack }
  192. begin
  193. if RPNTop < RPNMax then
  194. begin
  195. Inc(RPNTop);
  196. RPNStack[RPNTop]:=Num;
  197. end
  198. else
  199. Message(asmr_e_expr_illegal);
  200. end;
  201. Function TExprParse.RPNPop : longint;
  202. { Get the operand at the top of the RPN stack }
  203. begin
  204. if RPNTop > 0 then
  205. begin
  206. RPNPop:=RPNStack[RPNTop];
  207. Dec(RPNTop);
  208. end
  209. else
  210. Message(asmr_e_expr_illegal);
  211. end;
  212. Procedure TExprParse.RPNCalc(Token : String15; prefix:boolean); { RPN Calculator }
  213. Var
  214. Temp : longint;
  215. n1,n2 : longint;
  216. LocalError : Integer;
  217. begin
  218. { Handle operators }
  219. if (Length(Token) = 1) and (Token[1] in ['+', '-', '*', '/','&','|','%','^','~','<','>']) then
  220. Case Token[1] of
  221. '+' :
  222. Begin
  223. if not prefix then
  224. RPNPush(RPNPop + RPNPop);
  225. end;
  226. '-' :
  227. Begin
  228. if prefix then
  229. RPNPush(-(RPNPop))
  230. else
  231. begin
  232. n1:=RPNPop;
  233. n2:=RPNPop;
  234. RPNPush(n2 - n1);
  235. end;
  236. end;
  237. '*' : RPNPush(RPNPop * RPNPop);
  238. '&' :
  239. begin
  240. n1:=RPNPop;
  241. n2:=RPNPop;
  242. RPNPush(n2 and n1);
  243. end;
  244. '|' :
  245. begin
  246. n1:=RPNPop;
  247. n2:=RPNPop;
  248. RPNPush(n2 or n1);
  249. end;
  250. '~' : RPNPush(NOT RPNPop);
  251. '<' :
  252. begin
  253. n1:=RPNPop;
  254. n2:=RPNPop;
  255. RPNPush(n2 SHL n1);
  256. end;
  257. '>' :
  258. begin
  259. n1:=RPNPop;
  260. n2:=RPNPop;
  261. RPNPush(n2 SHR n1);
  262. end;
  263. '%' :
  264. begin
  265. Temp:=RPNPop;
  266. if Temp <> 0 then
  267. RPNPush(RPNPop mod Temp)
  268. else
  269. begin
  270. Message(asmr_e_expr_zero_divide);
  271. { push 1 for error recovery }
  272. RPNPush(1);
  273. end;
  274. end;
  275. '^' : RPNPush(RPNPop XOR RPNPop);
  276. '/' :
  277. begin
  278. Temp:=RPNPop;
  279. if Temp <> 0 then
  280. RPNPush(RPNPop div Temp)
  281. else
  282. begin
  283. Message(asmr_e_expr_zero_divide);
  284. { push 1 for error recovery }
  285. RPNPush(1);
  286. end;
  287. end;
  288. end
  289. else
  290. begin
  291. { Convert String to number and add to stack }
  292. Val(Token, Temp, LocalError);
  293. if LocalError = 0 then
  294. RPNPush(Temp)
  295. else
  296. begin
  297. Message(asmr_e_expr_illegal);
  298. { push 1 for error recovery }
  299. RPNPush(1);
  300. end;
  301. end;
  302. end;
  303. Procedure TExprParse.OpPush(_Operator : char;prefix: boolean);
  304. { Add an operator onto top of the stack }
  305. begin
  306. if OpTop < OpMax then
  307. begin
  308. Inc(OpTop);
  309. OpStack[OpTop].ch:=_Operator;
  310. OpStack[OpTop].is_prefix:=prefix;
  311. end
  312. else
  313. Message(asmr_e_expr_illegal);
  314. end;
  315. Procedure TExprParse.OpPop(var _Operator:TExprOperator);
  316. { Get operator at the top of the stack }
  317. begin
  318. if OpTop > 0 then
  319. begin
  320. _Operator:=OpStack[OpTop];
  321. Dec(OpTop);
  322. end
  323. else
  324. Message(asmr_e_expr_illegal);
  325. end;
  326. Function TExprParse.Priority(_Operator : Char) : longint;
  327. { Return priority of operator }
  328. { The greater the priority, the higher the precedence }
  329. begin
  330. Case _Operator OF
  331. '(' :
  332. Priority:=0;
  333. '+', '-' :
  334. Priority:=1;
  335. '*', '/','%','<','>' :
  336. Priority:=2;
  337. '|','&','^','~' :
  338. Priority:=0;
  339. else
  340. Message(asmr_e_expr_illegal);
  341. end;
  342. end;
  343. Function TExprParse.Evaluate(Expr : String):longint;
  344. Var
  345. I : LongInt;
  346. Token : String15;
  347. opr : TExprOperator;
  348. begin
  349. Evaluate:=0;
  350. { Reset stacks }
  351. OpTop :=0;
  352. RPNTop:=0;
  353. Token :='';
  354. { nothing to do ? }
  355. if Expr='' then
  356. exit;
  357. For I:=1 to Length(Expr) DO
  358. begin
  359. if Expr[I] in ['0'..'9'] then
  360. begin { Build multi-digit numbers }
  361. Token:=Token + Expr[I];
  362. if I = Length(Expr) then { Send last one to calculator }
  363. RPNCalc(Token,false);
  364. end
  365. else
  366. if Expr[I] in ['+', '-', '*', '/', '(', ')','^','&','|','%','~','<','>'] then
  367. begin
  368. if Token <> '' then
  369. begin { Send last built number to calc. }
  370. RPNCalc(Token,false);
  371. Token:='';
  372. end;
  373. Case Expr[I] OF
  374. '(' : OpPush('(',false);
  375. ')' : begin
  376. While OpStack[OpTop].ch <> '(' DO
  377. Begin
  378. OpPop(opr);
  379. RPNCalc(opr.ch,opr.is_prefix);
  380. end;
  381. OpPop(opr); { Pop off and ignore the '(' }
  382. end;
  383. '+','-','~' : Begin
  384. { workaround for -2147483648 }
  385. if (expr[I]='-') and (expr[i+1] in ['0'..'9']) then
  386. begin
  387. token:='-';
  388. expr[i]:='+';
  389. end;
  390. { if start of expression then surely a prefix }
  391. { or if previous char was also an operator }
  392. if (I = 1) or (not (Expr[I-1] in ['0'..'9','(',')'])) then
  393. OpPush(Expr[I],true)
  394. else
  395. Begin
  396. { Evaluate all higher priority operators }
  397. While (OpTop > 0) AND (Priority(Expr[I]) <= Priority(OpStack[OpTop].ch)) DO
  398. Begin
  399. OpPop(opr);
  400. RPNCalc(opr.ch,opr.is_prefix);
  401. end;
  402. OpPush(Expr[I],false);
  403. End;
  404. end;
  405. '*', '/',
  406. '^','|','&',
  407. '%','<','>' : begin
  408. While (OpTop > 0) and (Priority(Expr[I]) <= Priority(OpStack[OpTop].ch)) DO
  409. Begin
  410. OpPop(opr);
  411. RPNCalc(opr.ch,opr.is_prefix);
  412. end;
  413. OpPush(Expr[I],false);
  414. end;
  415. end; { Case }
  416. end
  417. else
  418. Message(asmr_e_expr_illegal); { Handle bad input error }
  419. end;
  420. { Pop off the remaining operators }
  421. While OpTop > 0 do
  422. Begin
  423. OpPop(opr);
  424. RPNCalc(opr.ch,opr.is_prefix);
  425. end;
  426. { The result is stored on the top of the stack }
  427. Evaluate:=RPNPop;
  428. end;
  429. Destructor TExprParse.Destroy;
  430. Begin
  431. end;
  432. Function CalculateExpression(const expression: string): longint;
  433. var
  434. expr: TExprParse;
  435. Begin
  436. expr:=TExprParse.create;
  437. CalculateExpression:=expr.Evaluate(expression);
  438. expr.Free;
  439. end;
  440. {*************************************************************************}
  441. { String conversions/utils }
  442. {*************************************************************************}
  443. Function EscapeToPascal(const s:string): string;
  444. { converts a C styled string - which contains escape }
  445. { characters to a pascal style string. }
  446. var
  447. i,len : longint;
  448. hs : string;
  449. temp : string;
  450. c : char;
  451. Begin
  452. hs:='';
  453. len:=0;
  454. i:=0;
  455. while (i<length(s)) and (len<255) do
  456. begin
  457. Inc(i);
  458. if (s[i]='\') and (i<length(s)) then
  459. Begin
  460. inc(i);
  461. case s[i] of
  462. '\' :
  463. c:='\';
  464. 'b':
  465. c:=#8;
  466. 'f':
  467. c:=#12;
  468. 'n':
  469. c:=#10;
  470. 'r':
  471. c:=#13;
  472. 't':
  473. c:=#9;
  474. '"':
  475. c:='"';
  476. '0'..'7':
  477. Begin
  478. temp:=s[i];
  479. temp:=temp+s[i+1];
  480. temp:=temp+s[i+2];
  481. inc(i,2);
  482. c:=chr(ValOctal(temp));
  483. end;
  484. 'x':
  485. Begin
  486. temp:=s[i+1];
  487. temp:=temp+s[i+2];
  488. inc(i,2);
  489. c:=chr(ValHexaDecimal(temp));
  490. end;
  491. else
  492. Begin
  493. Message1(asmr_e_escape_seq_ignored,s[i]);
  494. c:=s[i];
  495. end;
  496. end;
  497. end
  498. else
  499. c:=s[i];
  500. inc(len);
  501. hs[len]:=c;
  502. end;
  503. hs[0]:=chr(len);
  504. EscapeToPascal:=hs;
  505. end;
  506. Function ValDecimal(const S:String):longint;
  507. { Converts a decimal string to longint }
  508. var
  509. vs,c : longint;
  510. Begin
  511. vs:=0;
  512. for c:=1 to length(s) do
  513. begin
  514. vs:=vs*10;
  515. if s[c] in ['0'..'9'] then
  516. inc(vs,ord(s[c])-ord('0'))
  517. else
  518. begin
  519. Message1(asmr_e_error_converting_decimal,s);
  520. ValDecimal:=0;
  521. exit;
  522. end;
  523. end;
  524. ValDecimal:=vs;
  525. end;
  526. Function ValOctal(const S:String):longint;
  527. { Converts an octal string to longint }
  528. var
  529. vs,c : longint;
  530. Begin
  531. vs:=0;
  532. for c:=1 to length(s) do
  533. begin
  534. vs:=vs shl 3;
  535. if s[c] in ['0'..'7'] then
  536. inc(vs,ord(s[c])-ord('0'))
  537. else
  538. begin
  539. Message1(asmr_e_error_converting_octal,s);
  540. ValOctal:=0;
  541. exit;
  542. end;
  543. end;
  544. ValOctal:=vs;
  545. end;
  546. Function ValBinary(const S:String):longint;
  547. { Converts a binary string to longint }
  548. var
  549. vs,c : longint;
  550. Begin
  551. vs:=0;
  552. for c:=1 to length(s) do
  553. begin
  554. vs:=vs shl 1;
  555. if s[c] in ['0'..'1'] then
  556. inc(vs,ord(s[c])-ord('0'))
  557. else
  558. begin
  559. Message1(asmr_e_error_converting_binary,s);
  560. ValBinary:=0;
  561. exit;
  562. end;
  563. end;
  564. ValBinary:=vs;
  565. end;
  566. Function ValHexadecimal(const S:String):longint;
  567. { Converts a binary string to longint }
  568. var
  569. vs,c : longint;
  570. Begin
  571. vs:=0;
  572. for c:=1 to length(s) do
  573. begin
  574. vs:=vs shl 4;
  575. case s[c] of
  576. '0'..'9' :
  577. inc(vs,ord(s[c])-ord('0'));
  578. 'A'..'F' :
  579. inc(vs,ord(s[c])-ord('A')+10);
  580. 'a'..'f' :
  581. inc(vs,ord(s[c])-ord('a')+10);
  582. else
  583. begin
  584. Message1(asmr_e_error_converting_hexadecimal,s);
  585. ValHexadecimal:=0;
  586. exit;
  587. end;
  588. end;
  589. end;
  590. ValHexadecimal:=vs;
  591. end;
  592. Function PadZero(Var s: String; n: byte): Boolean;
  593. Begin
  594. PadZero:=TRUE;
  595. { Do some error checking first }
  596. if Length(s) = n then
  597. exit
  598. else
  599. if Length(s) > n then
  600. Begin
  601. PadZero:=FALSE;
  602. delete(s,n+1,length(s));
  603. exit;
  604. end
  605. else
  606. PadZero:=TRUE;
  607. { Fill it up with the specified character }
  608. fillchar(s[length(s)+1],n-1,#0);
  609. s[0]:=chr(n);
  610. end;
  611. {****************************************************************************
  612. TOperand
  613. ****************************************************************************}
  614. constructor TOperand.Create;
  615. begin
  616. size:=S_NO;
  617. hastype:=false;
  618. hasvar:=false;
  619. FillChar(Opr,sizeof(Opr),0);
  620. end;
  621. destructor TOperand.destroy;
  622. begin
  623. end;
  624. Procedure TOperand.SetCorrectSize(opcode:tasmop);
  625. begin
  626. end;
  627. Procedure TOperand.SetSize(_size:longint;force:boolean);
  628. begin
  629. if force or
  630. ((size = S_NO) and (_size<=extended_size)) then
  631. Begin
  632. case _size of
  633. 1 : size:=S_B;
  634. 2 : size:=S_W{ could be S_IS};
  635. 4 : size:=S_L{ could be S_IL or S_FS};
  636. 8 : size:=S_IQ{ could be S_D or S_FL};
  637. else
  638. begin
  639. { extended_size can also be 8, resulting in a
  640. duplicate label }
  641. if _size=extended_size then
  642. size:=S_FX;
  643. end;
  644. end;
  645. end;
  646. end;
  647. Function TOperand.SetupResult:boolean;
  648. Begin
  649. SetupResult:=false;
  650. { replace by correct offset. }
  651. if (not is_void(current_procdef.rettype.def)) then
  652. begin
  653. if (m_tp7 in aktmodeswitches) and
  654. (not paramanager.ret_in_param(current_procdef.rettype.def,current_procdef.proccalloption)) then
  655. begin
  656. Message(asmr_e_cannot_use_RESULT_here);
  657. exit;
  658. end;
  659. opr.ref.offset:=current_procinfo.return_offset;
  660. opr.ref.base:=current_procinfo.framepointer;
  661. opr.ref.options:=ref_parafixup;
  662. { always assume that the result is valid. }
  663. tvarsym(current_procdef.funcretsym).varstate:=vs_assigned;
  664. { increase reference count, this is also used to check
  665. if the result variable is actually used or not }
  666. inc(tvarsym(current_procdef.funcretsym).refcount);
  667. SetupResult:=true;
  668. end
  669. else
  670. Message(asmr_e_void_function);
  671. end;
  672. Function TOperand.SetupSelf:boolean;
  673. Begin
  674. SetupSelf:=false;
  675. if assigned(current_procdef._class) then
  676. SetupSelf:=setupvar('self',false)
  677. else
  678. Message(asmr_e_cannot_use_SELF_outside_a_method);
  679. end;
  680. Function TOperand.SetupOldEBP:boolean;
  681. Begin
  682. SetupOldEBP:=false;
  683. if current_procdef.parast.symtablelevel>normal_function_level then
  684. SetupOldEBP:=setupvar('parentframe',false)
  685. else
  686. Message(asmr_e_cannot_use_OLDEBP_outside_nested_procedure);
  687. end;
  688. Function TOperand.SetupVar(const s:string;GetOffset : boolean): Boolean;
  689. { search and sets up the correct fields in the Instr record }
  690. { for the NON-constant identifier passed to the routine. }
  691. { if not found returns FALSE. }
  692. var
  693. sym : tsym;
  694. srsymtable : tsymtable;
  695. harrdef : tarraydef;
  696. l : longint;
  697. Begin
  698. SetupVar:=false;
  699. asmsearchsym(s,sym,srsymtable);
  700. if sym = nil then
  701. exit;
  702. case sym.typ of
  703. varsym :
  704. begin
  705. { we always assume in asm statements that }
  706. { that the variable is valid. }
  707. tvarsym(sym).varstate:=vs_used;
  708. inc(tvarsym(sym).refs);
  709. case tvarsym(sym).owner.symtabletype of
  710. objectsymtable :
  711. begin
  712. { We return the address of the field, just like Delphi/TP }
  713. opr.typ:=OPR_CONSTANT;
  714. opr.val:=tvarsym(sym).address;
  715. hasvar:=true;
  716. SetupVar:=true;
  717. Exit;
  718. end;
  719. globalsymtable,
  720. staticsymtable :
  721. opr.ref.symbol:=objectlibrary.newasmsymboldata(tvarsym(sym).mangledname);
  722. parasymtable :
  723. begin
  724. { if we only want the offset we don't have to care
  725. the base will be zeroed after ! }
  726. if (tvarsym(sym).owner=current_procdef.parast) or
  727. GetOffset then
  728. begin
  729. opr.ref.base:=current_procinfo.framepointer;
  730. end
  731. else
  732. begin
  733. if (current_procdef.localst.datasize=0) and
  734. assigned(current_procinfo.parent) and
  735. (tvarsym(sym).owner=current_procdef.parast) and
  736. (current_procdef.parast.symtablelevel>normal_function_level) then
  737. opr.ref.base:=current_procinfo.parent.framepointer
  738. else
  739. message1(asmr_e_local_para_unreachable,s);
  740. end;
  741. opr.ref.offset:=tvarsym(sym).address;
  742. if (current_procdef.parast.symtablelevel=tvarsym(sym).owner.symtablelevel) then
  743. begin
  744. opr.ref.offsetfixup:=current_procdef.parast.address_fixup;
  745. opr.ref.options:=ref_parafixup;
  746. end
  747. else
  748. begin
  749. opr.ref.offsetfixup:=0;
  750. opr.ref.options:=ref_none;
  751. end;
  752. if (tvarsym(sym).varspez=vs_var) or
  753. ((tvarsym(sym).varspez=vs_const) and
  754. paramanager.push_addr_param(tvarsym(sym).vartype.def,current_procdef.proccalloption)) then
  755. SetSize(pointer_size,false);
  756. end;
  757. localsymtable :
  758. begin
  759. if (vo_is_external in tvarsym(sym).varoptions) then
  760. opr.ref.symbol:=objectlibrary.newasmsymboldata(tvarsym(sym).mangledname)
  761. else
  762. begin
  763. { if we only want the offset we don't have to care
  764. the base will be zeroed after ! }
  765. if (tvarsym(sym).owner=current_procdef.localst) or
  766. GetOffset then
  767. opr.ref.base:=current_procinfo.framepointer
  768. else
  769. begin
  770. if (current_procdef.localst.datasize=0) and
  771. assigned(current_procinfo.parent) and
  772. (tvarsym(sym).owner=current_procinfo.parent.procdef.localst) and
  773. (current_procdef.parast.symtablelevel>normal_function_level) then
  774. opr.ref.base:=current_procinfo.parent.framepointer
  775. else
  776. message1(asmr_e_local_para_unreachable,s);
  777. end;
  778. opr.ref.offset:=tvarsym(sym).address;
  779. if (current_procdef.localst.symtablelevel=tvarsym(sym).owner.symtablelevel) then
  780. begin
  781. opr.ref.offsetfixup:=current_procdef.localst.address_fixup;
  782. opr.ref.options:=ref_localfixup;
  783. end
  784. else
  785. begin
  786. opr.ref.offsetfixup:=0;
  787. opr.ref.options:=ref_none;
  788. end;
  789. end;
  790. if (tvarsym(sym).varspez in [vs_var,vs_out]) or
  791. ((tvarsym(sym).varspez=vs_const) and
  792. paramanager.push_addr_param(tvarsym(sym).vartype.def,current_procdef.proccalloption)) then
  793. SetSize(pointer_size,false);
  794. end;
  795. end;
  796. case tvarsym(sym).vartype.def.deftype of
  797. orddef,
  798. enumdef,
  799. pointerdef,
  800. floatdef :
  801. SetSize(tvarsym(sym).getsize,false);
  802. arraydef :
  803. begin
  804. { for arrays try to get the element size, take care of
  805. multiple indexes }
  806. harrdef:=tarraydef(tvarsym(sym).vartype.def);
  807. while assigned(harrdef.elementtype.def) and
  808. (harrdef.elementtype.def.deftype=arraydef) do
  809. harrdef:=tarraydef(harrdef.elementtype.def);
  810. SetSize(harrdef.elesize,false);
  811. end;
  812. end;
  813. hasvar:=true;
  814. SetupVar:=true;
  815. Exit;
  816. end;
  817. typedconstsym :
  818. begin
  819. opr.ref.symbol:=objectlibrary.newasmsymboldata(ttypedconstsym(sym).mangledname);
  820. case ttypedconstsym(sym).typedconsttype.def.deftype of
  821. orddef,
  822. enumdef,
  823. pointerdef,
  824. floatdef :
  825. SetSize(ttypedconstsym(sym).getsize,false);
  826. arraydef :
  827. begin
  828. { for arrays try to get the element size, take care of
  829. multiple indexes }
  830. harrdef:=tarraydef(ttypedconstsym(sym).typedconsttype.def);
  831. while assigned(harrdef.elementtype.def) and
  832. (harrdef.elementtype.def.deftype=arraydef) do
  833. harrdef:=tarraydef(harrdef.elementtype.def);
  834. SetSize(harrdef.elesize,false);
  835. end;
  836. end;
  837. hasvar:=true;
  838. SetupVar:=true;
  839. Exit;
  840. end;
  841. constsym :
  842. begin
  843. if tconstsym(sym).consttyp in [constint,constchar,constbool] then
  844. begin
  845. opr.typ:=OPR_CONSTANT;
  846. opr.val:=tconstsym(sym).value.valueord;
  847. SetupVar:=true;
  848. Exit;
  849. end;
  850. end;
  851. typesym :
  852. begin
  853. if ttypesym(sym).restype.def.deftype in [recorddef,objectdef] then
  854. begin
  855. opr.typ:=OPR_CONSTANT;
  856. opr.val:=0;
  857. SetupVar:=TRUE;
  858. Exit;
  859. end;
  860. end;
  861. procsym :
  862. begin
  863. if Tprocsym(sym).procdef_count>1 then
  864. Message(asmr_w_calling_overload_func);
  865. l:=opr.ref.offset;
  866. opr.typ:=OPR_SYMBOL;
  867. opr.symbol:=objectlibrary.newasmsymbol(tprocsym(sym).first_procdef.mangledname);
  868. opr.symofs:=l;
  869. hasvar:=true;
  870. SetupVar:=TRUE;
  871. Exit;
  872. end;
  873. else
  874. begin
  875. Message(asmr_e_unsupported_symbol_type);
  876. exit;
  877. end;
  878. end;
  879. end;
  880. { looks for internal names of variables and routines }
  881. Function TOperand.SetupDirectVar(const hs:string): Boolean;
  882. var
  883. p : tasmsymbol;
  884. begin
  885. SetupDirectVar:=false;
  886. p:=objectlibrary.getasmsymbol(hs);
  887. if assigned(p) then
  888. begin
  889. opr.ref.symbol:=p;
  890. hasvar:=true;
  891. SetupDirectVar:=true;
  892. end;
  893. end;
  894. procedure TOperand.InitRef;
  895. {*********************************************************************}
  896. { Description: This routine first check if the opcode is of }
  897. { type OPR_NONE, or OPR_REFERENCE , if not it gives out an error. }
  898. { If the operandtype = OPR_NONE or <> OPR_REFERENCE then it sets up }
  899. { the operand type to OPR_REFERENCE, as well as setting up the ref }
  900. { to point to the default segment. }
  901. {*********************************************************************}
  902. Begin
  903. case opr.typ of
  904. OPR_REFERENCE:
  905. exit;
  906. OPR_NONE: ;
  907. else
  908. Message(asmr_e_invalid_operand_type);
  909. end;
  910. opr.typ := OPR_REFERENCE;
  911. Fillchar(opr.ref,sizeof(treference),0);
  912. {$ifdef i386}
  913. opr.ref.segment.enum:=R_INTREGISTER;
  914. {$endif}
  915. opr.ref.index.enum:=R_INTREGISTER;
  916. opr.ref.base.enum:=R_INTREGISTER;
  917. end;
  918. procedure TOperand.BuildOperand;
  919. begin
  920. abstract;
  921. end;
  922. {****************************************************************************
  923. TInstruction
  924. ****************************************************************************}
  925. constructor TInstruction.create;
  926. Begin
  927. Opcode:=A_NONE;
  928. Opsize:=S_NO;
  929. Condition:=C_NONE;
  930. Ops:=0;
  931. InitOperands;
  932. Labeled:=false;
  933. end;
  934. destructor TInstruction.destroy;
  935. var
  936. i : longint;
  937. Begin
  938. for i:=1 to 3 do
  939. Operands[i].free;
  940. end;
  941. procedure TInstruction.InitOperands;
  942. var
  943. i : longint;
  944. begin
  945. for i:=1 to 3 do
  946. Operands[i].create;
  947. end;
  948. Procedure TInstruction.Swapoperands;
  949. Var
  950. p : toperand;
  951. Begin
  952. case Ops of
  953. 2 :
  954. begin
  955. p:=Operands[1];
  956. Operands[1]:=Operands[2];
  957. Operands[2]:=p;
  958. end;
  959. 3 :
  960. begin
  961. p:=Operands[1];
  962. Operands[1]:=Operands[3];
  963. Operands[3]:=p;
  964. end;
  965. end;
  966. end;
  967. procedure TInstruction.ConcatInstruction(p:TAAsmOutput);
  968. begin
  969. abstract;
  970. end;
  971. procedure TInstruction.BuildOpcode;
  972. begin
  973. abstract;
  974. end;
  975. {***************************************************************************
  976. TLocalLabel
  977. ***************************************************************************}
  978. constructor TLocalLabel.create(const n:string);
  979. begin
  980. inherited CreateName(n);
  981. lab:=nil;
  982. emitted:=false;
  983. end;
  984. function TLocalLabel.Gettasmlabel:tasmlabel;
  985. begin
  986. if not assigned(lab) then
  987. begin
  988. objectlibrary.getlabel(lab);
  989. { this label is forced to be used so it's always written }
  990. lab.increfs;
  991. end;
  992. Gettasmlabel:=lab;
  993. end;
  994. {***************************************************************************
  995. TLocalLabelList
  996. ***************************************************************************}
  997. procedure LocalLabelEmitted(p:tnamedindexitem;arg:pointer);
  998. begin
  999. if not TLocalLabel(p).emitted then
  1000. Message1(asmr_e_unknown_label_identifier,p.name);
  1001. end;
  1002. procedure TLocalLabelList.CheckEmitted;
  1003. begin
  1004. ForEach_Static({$ifdef FPCPROCVAR}@{$endif}LocalLabelEmitted,nil)
  1005. end;
  1006. function CreateLocalLabel(const s: string; var hl: tasmlabel; emit:boolean):boolean;
  1007. var
  1008. lab : TLocalLabel;
  1009. Begin
  1010. CreateLocalLabel:=true;
  1011. { Check if it already is defined }
  1012. lab:=TLocalLabel(LocalLabellist.Search(s));
  1013. if not assigned(lab) then
  1014. begin
  1015. lab:=TLocalLabel.Create(s);
  1016. LocalLabellist.Insert(lab);
  1017. end;
  1018. { set emitted flag and check for dup syms }
  1019. if emit then
  1020. begin
  1021. if lab.Emitted then
  1022. begin
  1023. Message1(asmr_e_dup_local_sym,lab.Name);
  1024. CreateLocalLabel:=false;
  1025. end;
  1026. lab.Emitted:=true;
  1027. end;
  1028. hl:=lab.Gettasmlabel;
  1029. end;
  1030. {****************************************************************************
  1031. Symbol table helper routines
  1032. ****************************************************************************}
  1033. procedure AsmSearchSym(const s:string;var srsym:tsym;var srsymtable:tsymtable);
  1034. var
  1035. i : integer;
  1036. begin
  1037. i:=pos('.',s);
  1038. { allow unit.identifier }
  1039. if i>0 then
  1040. begin
  1041. searchsym(Copy(s,1,i-1),srsym,srsymtable);
  1042. if assigned(srsym) then
  1043. begin
  1044. if (srsym.typ=unitsym) and
  1045. (srsym.owner.unitid=0) then
  1046. srsym:=searchsymonlyin(tunitsym(srsym).unitsymtable,Copy(s,i+1,255))
  1047. else
  1048. srsym:=nil;
  1049. end;
  1050. end
  1051. else
  1052. searchsym(s,srsym,srsymtable);
  1053. end;
  1054. Function SearchType(const hs:string): Boolean;
  1055. var
  1056. srsym : tsym;
  1057. srsymtable : tsymtable;
  1058. begin
  1059. asmsearchsym(hs,srsym,srsymtable);
  1060. SearchType:=assigned(srsym) and
  1061. (srsym.typ=typesym);
  1062. end;
  1063. Function SearchRecordType(const s:string): boolean;
  1064. var
  1065. srsym : tsym;
  1066. srsymtable : tsymtable;
  1067. Begin
  1068. SearchRecordType:=false;
  1069. { Check the constants in symtable }
  1070. asmsearchsym(s,srsym,srsymtable);
  1071. if srsym <> nil then
  1072. Begin
  1073. case srsym.typ of
  1074. typesym :
  1075. begin
  1076. if ttypesym(srsym).restype.def.deftype in [recorddef,objectdef] then
  1077. begin
  1078. SearchRecordType:=true;
  1079. exit;
  1080. end;
  1081. end;
  1082. end;
  1083. end;
  1084. end;
  1085. Function SearchIConstant(const s:string; var l:longint): boolean;
  1086. {**********************************************************************}
  1087. { Description: Searches for a CONSTANT of name s in either the local }
  1088. { symbol list, then in the global symbol list, and returns the value }
  1089. { of that constant in l. Returns TRUE if successfull, if not found, }
  1090. { or if the constant is not of correct type, then returns FALSE }
  1091. { Remarks: Also handle TRUE and FALSE returning in those cases 1 and 0 }
  1092. { respectively. }
  1093. {**********************************************************************}
  1094. var
  1095. srsym : tsym;
  1096. srsymtable : tsymtable;
  1097. Begin
  1098. SearchIConstant:=false;
  1099. { check for TRUE or FALSE reserved words first }
  1100. if s = 'TRUE' then
  1101. Begin
  1102. SearchIConstant:=TRUE;
  1103. l:=1;
  1104. exit;
  1105. end;
  1106. if s = 'FALSE' then
  1107. Begin
  1108. SearchIConstant:=TRUE;
  1109. l:=0;
  1110. exit;
  1111. end;
  1112. { Check the constants in symtable }
  1113. asmsearchsym(s,srsym,srsymtable);
  1114. if srsym <> nil then
  1115. Begin
  1116. case srsym.typ of
  1117. constsym :
  1118. begin
  1119. if (tconstsym(srsym).consttyp in [constord,constint,constchar,constbool]) then
  1120. Begin
  1121. l:=tconstsym(srsym).value.valueord;
  1122. SearchIConstant:=TRUE;
  1123. exit;
  1124. end;
  1125. end;
  1126. enumsym:
  1127. Begin
  1128. l:=tenumsym(srsym).value;
  1129. SearchIConstant:=TRUE;
  1130. exit;
  1131. end;
  1132. end;
  1133. end;
  1134. end;
  1135. Function GetRecordOffsetSize(s:string;Var Offset: longint;var Size:longint):boolean;
  1136. { search and returns the offset and size of records/objects of the base }
  1137. { with field name setup in field. }
  1138. { returns FALSE if not found. }
  1139. { used when base is a variable or a typed constant name. }
  1140. var
  1141. st : tsymtable;
  1142. harrdef : tarraydef;
  1143. sym : tsym;
  1144. srsymtable : tsymtable;
  1145. i : longint;
  1146. base : string;
  1147. Begin
  1148. GetRecordOffsetSize:=FALSE;
  1149. Offset:=0;
  1150. Size:=0;
  1151. i:=pos('.',s);
  1152. if i=0 then
  1153. i:=255;
  1154. base:=Copy(s,1,i-1);
  1155. delete(s,1,i);
  1156. if base='SELF' then
  1157. st:=current_procdef._class.symtable
  1158. else
  1159. begin
  1160. asmsearchsym(base,sym,srsymtable);
  1161. st:=nil;
  1162. { we can start with a var,type,typedconst }
  1163. case sym.typ of
  1164. varsym :
  1165. begin
  1166. case tvarsym(sym).vartype.def.deftype of
  1167. recorddef :
  1168. st:=trecorddef(tvarsym(sym).vartype.def).symtable;
  1169. objectdef :
  1170. st:=tobjectdef(tvarsym(sym).vartype.def).symtable;
  1171. end;
  1172. end;
  1173. typesym :
  1174. begin
  1175. case ttypesym(sym).restype.def.deftype of
  1176. recorddef :
  1177. st:=trecorddef(ttypesym(sym).restype.def).symtable;
  1178. objectdef :
  1179. st:=tobjectdef(ttypesym(sym).restype.def).symtable;
  1180. end;
  1181. end;
  1182. typedconstsym :
  1183. begin
  1184. case ttypedconstsym(sym).typedconsttype.def.deftype of
  1185. recorddef :
  1186. st:=trecorddef(ttypedconstsym(sym).typedconsttype.def).symtable;
  1187. objectdef :
  1188. st:=tobjectdef(ttypedconstsym(sym).typedconsttype.def).symtable;
  1189. end;
  1190. end;
  1191. end;
  1192. end;
  1193. { now walk all recordsymtables }
  1194. while assigned(st) and (s<>'') do
  1195. begin
  1196. { load next field in base }
  1197. i:=pos('.',s);
  1198. if i=0 then
  1199. i:=255;
  1200. base:=Copy(s,1,i-1);
  1201. delete(s,1,i);
  1202. if st.symtabletype=objectsymtable then
  1203. sym:=search_class_member(tobjectdef(st.defowner),base)
  1204. else
  1205. sym:=tsym(st.search(base));
  1206. if not assigned(sym) then
  1207. begin
  1208. GetRecordOffsetSize:=false;
  1209. exit;
  1210. end;
  1211. st:=nil;
  1212. case sym.typ of
  1213. varsym :
  1214. begin
  1215. inc(Offset,tvarsym(sym).address);
  1216. Size:=tvarsym(sym).getsize;
  1217. case tvarsym(sym).vartype.def.deftype of
  1218. arraydef :
  1219. begin
  1220. { for arrays try to get the element size, take care of
  1221. multiple indexes }
  1222. harrdef:=tarraydef(tvarsym(sym).vartype.def);
  1223. while assigned(harrdef.elementtype.def) and
  1224. (harrdef.elementtype.def.deftype=arraydef) do
  1225. harrdef:=tarraydef(harrdef.elementtype.def);
  1226. size:=harrdef.elesize;
  1227. end;
  1228. recorddef :
  1229. st:=trecorddef(tvarsym(sym).vartype.def).symtable;
  1230. objectdef :
  1231. st:=tobjectdef(tvarsym(sym).vartype.def).symtable;
  1232. end;
  1233. end;
  1234. end;
  1235. end;
  1236. GetRecordOffsetSize:=(s='');
  1237. end;
  1238. Function SearchLabel(const s: string; var hl: tasmlabel;emit:boolean): boolean;
  1239. var
  1240. sym : tsym;
  1241. srsymtable : tsymtable;
  1242. hs : string;
  1243. Begin
  1244. hl:=nil;
  1245. SearchLabel:=false;
  1246. { Check for pascal labels, which are case insensetive }
  1247. hs:=upper(s);
  1248. asmsearchsym(hs,sym,srsymtable);
  1249. if sym=nil then
  1250. exit;
  1251. case sym.typ of
  1252. labelsym :
  1253. begin
  1254. hl:=tlabelsym(sym).lab;
  1255. if emit then
  1256. tlabelsym(sym).defined:=true
  1257. else
  1258. tlabelsym(sym).used:=true;
  1259. SearchLabel:=true;
  1260. exit;
  1261. end;
  1262. end;
  1263. end;
  1264. {*************************************************************************}
  1265. { Instruction Generation Utilities }
  1266. {*************************************************************************}
  1267. Procedure ConcatString(p : TAAsmoutput;s:string);
  1268. {*********************************************************************}
  1269. { PROCEDURE ConcatString(s:string); }
  1270. { Description: This routine adds the character chain pointed to in }
  1271. { s to the instruction linked list. }
  1272. {*********************************************************************}
  1273. Var
  1274. pc: PChar;
  1275. Begin
  1276. getmem(pc,length(s)+1);
  1277. p.concat(Tai_string.Create_length_pchar(strpcopy(pc,s),length(s)));
  1278. end;
  1279. Procedure ConcatPasString(p : TAAsmoutput;s:string);
  1280. {*********************************************************************}
  1281. { PROCEDURE ConcatPasString(s:string); }
  1282. { Description: This routine adds the character chain pointed to in }
  1283. { s to the instruction linked list, contrary to ConcatString it }
  1284. { uses a pascal style string, so it conserves null characters. }
  1285. {*********************************************************************}
  1286. Begin
  1287. p.concat(Tai_string.Create(s));
  1288. end;
  1289. Procedure ConcatDirect(p : TAAsmoutput;s:string);
  1290. {*********************************************************************}
  1291. { PROCEDURE ConcatDirect(s:string) }
  1292. { Description: This routine output the string directly to the asm }
  1293. { output, it is only sed when writing special labels in AT&T mode, }
  1294. { and should not be used without due consideration, since it may }
  1295. { cause problems. }
  1296. {*********************************************************************}
  1297. Var
  1298. pc: PChar;
  1299. Begin
  1300. getmem(pc,length(s)+1);
  1301. p.concat(Tai_direct.Create(strpcopy(pc,s)));
  1302. end;
  1303. Procedure ConcatConstant(p: TAAsmoutput; value: longint; maxvalue: longint);
  1304. {*********************************************************************}
  1305. { PROCEDURE ConcatConstant(value: longint; maxvalue: longint); }
  1306. { Description: This routine adds the value constant to the current }
  1307. { instruction linked list. }
  1308. { maxvalue -> indicates the size of the data to initialize: }
  1309. { $ff -> create a byte node. }
  1310. { $ffff -> create a word node. }
  1311. { $ffffffff -> create a dword node. }
  1312. {*********************************************************************}
  1313. Begin
  1314. if (maxvalue <> longint($ffffffff)) and (value > maxvalue) then
  1315. Begin
  1316. Message(asmr_e_constant_out_of_bounds);
  1317. { assuming a value of maxvalue }
  1318. value:=maxvalue;
  1319. end;
  1320. if maxvalue = $ff then
  1321. p.concat(Tai_const.Create_8bit(byte(value)))
  1322. else
  1323. if maxvalue = $ffff then
  1324. p.concat(Tai_const.Create_16bit(word(value)))
  1325. else
  1326. if maxvalue = longint($ffffffff) then
  1327. p.concat(Tai_const.Create_32bit(longint(value)));
  1328. end;
  1329. Procedure ConcatConstSymbol(p : TAAsmoutput;const sym:string;l:longint);
  1330. begin
  1331. p.concat(Tai_const_symbol.Createname_offset(sym,l));
  1332. end;
  1333. Procedure ConcatRealConstant(p : TAAsmoutput;value: bestreal; real_typ : tfloattype);
  1334. {***********************************************************************}
  1335. { PROCEDURE ConcatRealConstant(value: bestreal; real_typ : tfloattype); }
  1336. { Description: This routine adds the value constant to the current }
  1337. { instruction linked list. }
  1338. { real_typ -> indicates the type of the real data to initialize: }
  1339. { s32real -> create a single node. }
  1340. { s64real -> create a double node. }
  1341. { s80real -> create an extended node. }
  1342. { s64bit -> create a comp node. }
  1343. { f32bit -> create a fixed node. (not used normally) }
  1344. {***********************************************************************}
  1345. Begin
  1346. case real_typ of
  1347. s32real : p.concat(Tai_real_32bit.Create(value));
  1348. s64real : p.concat(Tai_real_64bit.Create(value));
  1349. s80real : p.concat(Tai_real_80bit.Create(value));
  1350. s64comp : p.concat(Tai_comp_64bit.Create(value));
  1351. end;
  1352. end;
  1353. Procedure ConcatLabel(p: TAAsmoutput;var l : tasmlabel);
  1354. {*********************************************************************}
  1355. { PROCEDURE ConcatLabel }
  1356. { Description: This routine either emits a label or a labeled }
  1357. { instruction to the linked list of instructions. }
  1358. {*********************************************************************}
  1359. begin
  1360. p.concat(Tai_label.Create(l));
  1361. end;
  1362. procedure ConcatAlign(p:TAAsmoutput;l:longint);
  1363. {*********************************************************************}
  1364. { PROCEDURE ConcatPublic }
  1365. { Description: This routine emits an global definition to the }
  1366. { linked list of instructions.(used by AT&T styled asm) }
  1367. {*********************************************************************}
  1368. begin
  1369. p.concat(Tai_align.Create(l));
  1370. end;
  1371. procedure ConcatPublic(p:TAAsmoutput;const s : string);
  1372. {*********************************************************************}
  1373. { PROCEDURE ConcatPublic }
  1374. { Description: This routine emits an global definition to the }
  1375. { linked list of instructions.(used by AT&T styled asm) }
  1376. {*********************************************************************}
  1377. begin
  1378. p.concat(Tai_symbol.Createname_global(s,0));
  1379. end;
  1380. procedure ConcatLocal(p:TAAsmoutput;const s : string);
  1381. {*********************************************************************}
  1382. { PROCEDURE ConcatLocal }
  1383. { Description: This routine emits an local definition to the }
  1384. { linked list of instructions. }
  1385. {*********************************************************************}
  1386. begin
  1387. p.concat(Tai_symbol.Createname(s,0));
  1388. end;
  1389. Procedure ConcatGlobalBss(const s : string;size : longint);
  1390. {*********************************************************************}
  1391. { PROCEDURE ConcatGlobalBss }
  1392. { Description: This routine emits an global datablock to the }
  1393. { linked list of instructions. }
  1394. {*********************************************************************}
  1395. begin
  1396. bssSegment.concat(Tai_datablock.Create_global(s,size));
  1397. end;
  1398. Procedure ConcatLocalBss(const s : string;size : longint);
  1399. {*********************************************************************}
  1400. { PROCEDURE ConcatLocalBss }
  1401. { Description: This routine emits a local datablcok to the }
  1402. { linked list of instructions. }
  1403. {*********************************************************************}
  1404. begin
  1405. bssSegment.concat(Tai_datablock.Create(s,size));
  1406. end;
  1407. end.
  1408. {
  1409. $Log$
  1410. Revision 1.60 2003-05-15 18:58:53 peter
  1411. * removed selfpointer_offset, vmtpointer_offset
  1412. * tvarsym.adjusted_address
  1413. * address in localsymtable is now in the real direction
  1414. * removed some obsolete globals
  1415. Revision 1.59 2003/05/12 17:22:00 jonas
  1416. * fixed (last?) remaining -tvarsym(X).address to
  1417. tg.direction*tvarsym(X).address...
  1418. Revision 1.58 2003/04/27 11:21:34 peter
  1419. * aktprocdef renamed to current_procdef
  1420. * procinfo renamed to current_procinfo
  1421. * procinfo will now be stored in current_module so it can be
  1422. cleaned up properly
  1423. * gen_main_procsym changed to create_main_proc and release_main_proc
  1424. to also generate a tprocinfo structure
  1425. * fixed unit implicit initfinal
  1426. Revision 1.57 2003/04/27 07:29:51 peter
  1427. * current_procdef cleanup, current_procdef is now always nil when parsing
  1428. a new procdef declaration
  1429. * aktprocsym removed
  1430. * lexlevel removed, use symtable.symtablelevel instead
  1431. * implicit init/final code uses the normal genentry/genexit
  1432. * funcret state checking updated for new funcret handling
  1433. Revision 1.56 2003/04/25 20:59:34 peter
  1434. * removed funcretn,funcretsym, function result is now in varsym
  1435. and aliases for result and function name are added using absolutesym
  1436. * vs_hidden parameter for funcret passed in parameter
  1437. * vs_hidden fixes
  1438. * writenode changed to printnode and released from extdebug
  1439. * -vp option added to generate a tree.log with the nodetree
  1440. * nicer printnode for statements, callnode
  1441. Revision 1.55 2003/04/06 21:11:23 olle
  1442. * changed newasmsymbol to newasmsymboldata for data symbols
  1443. Revision 1.54 2003/03/28 19:16:57 peter
  1444. * generic constructor working for i386
  1445. * remove fixed self register
  1446. * esi added as address register for i386
  1447. Revision 1.53 2003/02/19 22:00:14 daniel
  1448. * Code generator converted to new register notation
  1449. - Horribily outdated todo.txt removed
  1450. Revision 1.52 2003/01/08 18:43:56 daniel
  1451. * Tregister changed into a record
  1452. Revision 1.51 2002/12/14 15:02:03 carl
  1453. * maxoperands -> max_operands (for portability in rautils.pas)
  1454. * fix some range-check errors with loadconst
  1455. + add ncgadd unit to m68k
  1456. * some bugfix of a_param_reg with LOC_CREFERENCE
  1457. Revision 1.50 2002/11/25 17:43:23 peter
  1458. * splitted defbase in defutil,symutil,defcmp
  1459. * merged isconvertable and is_equal into compare_defs(_ext)
  1460. * made operator search faster by walking the list only once
  1461. Revision 1.49 2002/11/22 22:48:10 carl
  1462. * memory optimization with tconstsym (1.5%)
  1463. Revision 1.48 2002/11/18 17:31:59 peter
  1464. * pass proccalloption to ret_in_xxx and push_xxx functions
  1465. Revision 1.47 2002/11/15 16:29:31 peter
  1466. * made tasmsymbol.refs private (merged)
  1467. Revision 1.46 2002/09/03 16:26:27 daniel
  1468. * Make Tprocdef.defs protected
  1469. Revision 1.45 2002/08/25 19:25:20 peter
  1470. * sym.insert_in_data removed
  1471. * symtable.insertvardata/insertconstdata added
  1472. * removed insert_in_data call from symtable.insert, it needs to be
  1473. called separatly. This allows to deref the address calculation
  1474. * procedures now calculate the parast addresses after the procedure
  1475. directives are parsed. This fixes the cdecl parast problem
  1476. * push_addr_param has an extra argument that specifies if cdecl is used
  1477. or not
  1478. Revision 1.44 2002/08/17 09:23:41 florian
  1479. * first part of procinfo rewrite
  1480. Revision 1.43 2002/08/16 14:24:59 carl
  1481. * issameref() to test if two references are the same (then emit no opcodes)
  1482. + ret_in_reg to replace ret_in_acc
  1483. (fix some register allocation bugs at the same time)
  1484. + save_std_register now has an extra parameter which is the
  1485. usedinproc registers
  1486. Revision 1.42 2002/08/13 18:01:52 carl
  1487. * rename swatoperands to swapoperands
  1488. + m68k first compilable version (still needs a lot of testing):
  1489. assembler generator, system information , inline
  1490. assembler reader.
  1491. Revision 1.41 2002/08/12 15:08:40 carl
  1492. + stab register indexes for powerpc (moved from gdb to cpubase)
  1493. + tprocessor enumeration moved to cpuinfo
  1494. + linker in target_info is now a class
  1495. * many many updates for m68k (will soon start to compile)
  1496. - removed some ifdef or correct them for correct cpu
  1497. Revision 1.40 2002/08/11 14:32:27 peter
  1498. * renamed current_library to objectlibrary
  1499. Revision 1.39 2002/08/11 13:24:13 peter
  1500. * saving of asmsymbols in ppu supported
  1501. * asmsymbollist global is removed and moved into a new class
  1502. tasmlibrarydata that will hold the info of a .a file which
  1503. corresponds with a single module. Added librarydata to tmodule
  1504. to keep the library info stored for the module. In the future the
  1505. objectfiles will also be stored to the tasmlibrarydata class
  1506. * all getlabel/newasmsymbol and friends are moved to the new class
  1507. Revision 1.38 2002/07/20 11:57:57 florian
  1508. * types.pas renamed to defbase.pas because D6 contains a types
  1509. unit so this would conflicts if D6 programms are compiled
  1510. + Willamette/SSE2 instructions to assembler added
  1511. Revision 1.37 2002/07/11 14:41:28 florian
  1512. * start of the new generic parameter handling
  1513. Revision 1.36 2002/07/01 18:46:25 peter
  1514. * internal linker
  1515. * reorganized aasm layer
  1516. Revision 1.35 2002/05/18 13:34:17 peter
  1517. * readded missing revisions
  1518. Revision 1.34 2002/05/16 19:46:44 carl
  1519. + defines.inc -> fpcdefs.inc to avoid conflicts if compiling by hand
  1520. + try to fix temp allocation (still in ifdef)
  1521. + generic constructor calls
  1522. + start of tassembler / tmodulebase class cleanup
  1523. Revision 1.31 2002/05/12 16:53:10 peter
  1524. * moved entry and exitcode to ncgutil and cgobj
  1525. * foreach gets extra argument for passing local data to the
  1526. iterator function
  1527. * -CR checks also class typecasts at runtime by changing them
  1528. into as
  1529. * fixed compiler to cycle with the -CR option
  1530. * fixed stabs with elf writer, finally the global variables can
  1531. be watched
  1532. * removed a lot of routines from cga unit and replaced them by
  1533. calls to cgobj
  1534. * u32bit-s32bit updates for and,or,xor nodes. When one element is
  1535. u32bit then the other is typecasted also to u32bit without giving
  1536. a rangecheck warning/error.
  1537. * fixed pascal calling method with reversing also the high tree in
  1538. the parast, detected by tcalcst3 test
  1539. Revision 1.30 2002/04/20 21:32:24 carl
  1540. + generic FPC_CHECKPOINTER
  1541. + first parameter offset in stack now portable
  1542. * rename some constants
  1543. + move some cpu stuff to other units
  1544. - remove unused constents
  1545. * fix stacksize for some targets
  1546. * fix generic size problems which depend now on EXTEND_SIZE constant
  1547. Revision 1.29 2002/04/15 19:02:35 carl
  1548. + target_info.size_of_pointer -> pointer_Size
  1549. Revision 1.28 2002/04/02 17:11:29 peter
  1550. * tlocation,treference update
  1551. * LOC_CONSTANT added for better constant handling
  1552. * secondadd splitted in multiple routines
  1553. * location_force_reg added for loading a location to a register
  1554. of a specified size
  1555. * secondassignment parses now first the right and then the left node
  1556. (this is compatible with Kylix). This saves a lot of push/pop especially
  1557. with string operations
  1558. * adapted some routines to use the new cg methods
  1559. Revision 1.27 2002/01/29 21:32:03 peter
  1560. * allow accessing locals in other lexlevel when the current assembler
  1561. routine doesn't have locals.
  1562. Revision 1.26 2002/01/24 18:25:50 peter
  1563. * implicit result variable generation for assembler routines
  1564. * removed m_tp modeswitch, use m_tp7 or not(m_fpc) instead
  1565. }