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rautils.pas 44 KB

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  1. {
  2. Copyright (c) 1998-2002 by Carl Eric Codere and Peter Vreman
  3. This unit implements some support routines for assembler parsing
  4. independent of the processor
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. **********************************************************************}
  17. Unit RAUtils;
  18. {$i fpcdefs.inc}
  19. Interface
  20. Uses
  21. cutils,cclasses,
  22. globtype,aasmbase,aasmtai,cpubase,cpuinfo,cgbase,cgutils,
  23. symconst,symbase,symtype,symdef,symsym;
  24. Const
  25. RPNMax = 10; { I think you only need 4, but just to be safe }
  26. OpMax = 25;
  27. {---------------------------------------------------------------------
  28. Local Label Management
  29. ---------------------------------------------------------------------}
  30. Type
  31. { Each local label has this structure associated with it }
  32. TLocalLabel = class(TNamedIndexItem)
  33. Emitted : boolean;
  34. constructor Create(const n:string);
  35. function Gettasmlabel:tasmlabel;
  36. private
  37. lab : tasmlabel;
  38. end;
  39. TLocalLabelList = class(TDictionary)
  40. procedure CheckEmitted;
  41. end;
  42. var
  43. LocalLabelList : TLocalLabelList;
  44. function CreateLocalLabel(const s: string; var hl: tasmlabel; emit:boolean):boolean;
  45. Function SearchLabel(const s: string; var hl: tasmlabel;emit:boolean): boolean;
  46. {---------------------------------------------------------------------
  47. Instruction management
  48. ---------------------------------------------------------------------}
  49. type
  50. TOprType=(OPR_NONE,OPR_CONSTANT,OPR_SYMBOL,OPR_LOCAL,
  51. OPR_REFERENCE,OPR_REGISTER,OPR_REGLIST,OPR_COND,OPR_REGSET,OPR_SHIFTEROP);
  52. TOprRec = record
  53. case typ:TOprType of
  54. OPR_NONE : ();
  55. OPR_CONSTANT : (val:aint);
  56. OPR_SYMBOL : (symbol:tasmsymbol;symofs:aint);
  57. OPR_REFERENCE : (ref:treference);
  58. OPR_LOCAL : (localsym:tabstractnormalvarsym;localsymofs:aint;localindexreg:tregister;localscale:byte;localgetoffset,localforceref:boolean);
  59. OPR_REGISTER : (reg:tregister);
  60. {$ifdef m68k}
  61. OPR_REGLIST : (regset : tcpuregisterset);
  62. {$endif m68k}
  63. {$ifdef powerpc}
  64. OPR_COND : (cond : tasmcond);
  65. {$endif powerpc}
  66. {$ifdef POWERPC64}
  67. OPR_COND : (cond : tasmcond);
  68. {$endif POWERPC64}
  69. {$ifdef arm}
  70. OPR_REGSET : (regset : tcpuregisterset);
  71. OPR_SHIFTEROP : (shifterop : tshifterop);
  72. {$endif arm}
  73. end;
  74. TOperand = class
  75. hastype, { if the operand has typecasted variable }
  76. hasvar : boolean; { if the operand is loaded with a variable }
  77. size : TCGSize;
  78. opr : TOprRec;
  79. constructor create;virtual;
  80. destructor destroy;override;
  81. Procedure SetSize(_size:longint;force:boolean);virtual;
  82. Procedure SetCorrectSize(opcode:tasmop);virtual;
  83. Function SetupResult:boolean;virtual;
  84. Function SetupSelf:boolean;
  85. Function SetupOldEBP:boolean;
  86. Function SetupVar(const s:string;GetOffset : boolean): Boolean;
  87. Procedure InitRef;
  88. end;
  89. TCOperand = class of TOperand;
  90. TInstruction = class
  91. opcode : tasmop;
  92. condition : tasmcond;
  93. ops : byte;
  94. labeled : boolean;
  95. operands : array[1..max_operands] of toperand;
  96. constructor create(optype : tcoperand);virtual;
  97. destructor destroy;override;
  98. { converts the instruction to an instruction how it's used by the assembler writer
  99. and concats it to the passed list, the newly created item is returned }
  100. function ConcatInstruction(p:TAAsmoutput) : tai;virtual;
  101. Procedure Swapoperands;
  102. end;
  103. tstr2opentry = class(Tnamedindexitem)
  104. op: TAsmOp;
  105. end;
  106. {---------------------------------------------------------------------}
  107. { Expression parser types }
  108. {---------------------------------------------------------------------}
  109. TExprOperator = record
  110. ch: char; { operator }
  111. is_prefix: boolean; { was it a prefix, possible prefixes are +,- and not }
  112. end;
  113. {**********************************************************************}
  114. { The following operators are supported: }
  115. { '+' : addition }
  116. { '-' : subtraction }
  117. { '*' : multiplication }
  118. { '/' : modulo division }
  119. { '^' : exclusive or }
  120. { '<' : shift left }
  121. { '>' : shift right }
  122. { '&' : bitwise and }
  123. { '|' : bitwise or }
  124. { '~' : bitwise complement }
  125. { '%' : modulo division }
  126. { nnn: longint numbers }
  127. { ( and ) parenthesis }
  128. {**********************************************************************}
  129. TExprParse = class
  130. public
  131. Constructor create;
  132. Destructor Destroy;override;
  133. Function Evaluate(Expr: String): aint;
  134. Function Priority(_Operator: Char): aint;
  135. private
  136. RPNStack : Array[1..RPNMax] of aint; { Stack For RPN calculator }
  137. RPNTop : aint;
  138. OpStack : Array[1..OpMax] of TExprOperator; { Operator stack For conversion }
  139. OpTop : aint;
  140. Procedure RPNPush(Num: aint);
  141. Function RPNPop: aint;
  142. Procedure RPNCalc(const token: String; prefix: boolean);
  143. Procedure OpPush(_Operator: char; prefix: boolean);
  144. { In reality returns TExprOperaotr }
  145. Procedure OpPop(var _Operator:TExprOperator);
  146. end;
  147. { Evaluate an expression string to a aint }
  148. Function CalculateExpression(const expression: string): aint;
  149. {---------------------------------------------------------------------}
  150. { String routines }
  151. {---------------------------------------------------------------------}
  152. Function ParseVal(const S:String;base:byte):aint;
  153. Function PadZero(Var s: String; n: byte): Boolean;
  154. Function EscapeToPascal(const s:string): string;
  155. {---------------------------------------------------------------------
  156. Symbol helper routines
  157. ---------------------------------------------------------------------}
  158. procedure AsmSearchSym(const s:string;var srsym:tsym;var srsymtable:tsymtable);
  159. Function GetRecordOffsetSize(s:string;Var Offset: aint;var Size:aint):boolean;
  160. Function SearchType(const hs:string;var size:aint): Boolean;
  161. Function SearchRecordType(const s:string): boolean;
  162. Function SearchIConstant(const s:string; var l:aint): boolean;
  163. {---------------------------------------------------------------------
  164. Instruction generation routines
  165. ---------------------------------------------------------------------}
  166. Procedure ConcatPasString(p : TAAsmoutput;s:string);
  167. Procedure ConcatLabel(p: TAAsmoutput;var l : tasmlabel);
  168. Procedure ConcatConstant(p : TAAsmoutput;value: aint; constsize:byte);
  169. Procedure ConcatConstSymbol(p : TAAsmoutput;const sym:string;symtyp:tasmsymtype;l:aint);
  170. Procedure ConcatRealConstant(p : TAAsmoutput;value: bestreal; real_typ : tfloattype);
  171. Procedure ConcatString(p : TAAsmoutput;s:string);
  172. procedure ConcatAlign(p:TAAsmoutput;l:aint);
  173. Procedure ConcatPublic(p:TAAsmoutput;const s : string);
  174. Procedure ConcatLocal(p:TAAsmoutput;const s : string);
  175. Implementation
  176. uses
  177. strings,
  178. defutil,systems,verbose,globals,
  179. symtable,paramgr,
  180. aasmcpu,
  181. procinfo;
  182. {*************************************************************************
  183. TExprParse
  184. *************************************************************************}
  185. Constructor TExprParse.create;
  186. Begin
  187. end;
  188. Procedure TExprParse.RPNPush(Num : aint);
  189. { Add an operand to the top of the RPN stack }
  190. begin
  191. if RPNTop < RPNMax then
  192. begin
  193. Inc(RPNTop);
  194. RPNStack[RPNTop]:=Num;
  195. end
  196. else
  197. Message(asmr_e_expr_illegal);
  198. end;
  199. Function TExprParse.RPNPop : aint;
  200. { Get the operand at the top of the RPN stack }
  201. begin
  202. if RPNTop > 0 then
  203. begin
  204. RPNPop:=RPNStack[RPNTop];
  205. Dec(RPNTop);
  206. end
  207. else
  208. Message(asmr_e_expr_illegal);
  209. end;
  210. Procedure TExprParse.RPNCalc(const Token : String; prefix:boolean); { RPN Calculator }
  211. Var
  212. Temp : aint;
  213. n1,n2 : aint;
  214. LocalError : Integer;
  215. begin
  216. { Handle operators }
  217. if (Length(Token) = 1) and (Token[1] in ['+', '-', '*', '/','&','|','%','^','~','<','>']) then
  218. Case Token[1] of
  219. '+' :
  220. Begin
  221. if not prefix then
  222. RPNPush(RPNPop + RPNPop);
  223. end;
  224. '-' :
  225. Begin
  226. if prefix then
  227. RPNPush(-(RPNPop))
  228. else
  229. begin
  230. n1:=RPNPop;
  231. n2:=RPNPop;
  232. RPNPush(n2 - n1);
  233. end;
  234. end;
  235. '*' : RPNPush(RPNPop * RPNPop);
  236. '&' :
  237. begin
  238. n1:=RPNPop;
  239. n2:=RPNPop;
  240. RPNPush(n2 and n1);
  241. end;
  242. '|' :
  243. begin
  244. n1:=RPNPop;
  245. n2:=RPNPop;
  246. RPNPush(n2 or n1);
  247. end;
  248. '~' : RPNPush(NOT RPNPop);
  249. '<' :
  250. begin
  251. n1:=RPNPop;
  252. n2:=RPNPop;
  253. RPNPush(n2 SHL n1);
  254. end;
  255. '>' :
  256. begin
  257. n1:=RPNPop;
  258. n2:=RPNPop;
  259. RPNPush(n2 SHR n1);
  260. end;
  261. '%' :
  262. begin
  263. Temp:=RPNPop;
  264. if Temp <> 0 then
  265. RPNPush(RPNPop mod Temp)
  266. else
  267. begin
  268. Message(asmr_e_expr_zero_divide);
  269. { push 1 for error recovery }
  270. RPNPush(1);
  271. end;
  272. end;
  273. '^' : RPNPush(RPNPop XOR RPNPop);
  274. '/' :
  275. begin
  276. Temp:=RPNPop;
  277. if Temp <> 0 then
  278. RPNPush(RPNPop div Temp)
  279. else
  280. begin
  281. Message(asmr_e_expr_zero_divide);
  282. { push 1 for error recovery }
  283. RPNPush(1);
  284. end;
  285. end;
  286. end
  287. else
  288. begin
  289. { Convert String to number and add to stack }
  290. Val(Token, Temp, LocalError);
  291. if LocalError = 0 then
  292. RPNPush(Temp)
  293. else
  294. begin
  295. Message(asmr_e_expr_illegal);
  296. { push 1 for error recovery }
  297. RPNPush(1);
  298. end;
  299. end;
  300. end;
  301. Procedure TExprParse.OpPush(_Operator : char;prefix: boolean);
  302. { Add an operator onto top of the stack }
  303. begin
  304. if OpTop < OpMax then
  305. begin
  306. Inc(OpTop);
  307. OpStack[OpTop].ch:=_Operator;
  308. OpStack[OpTop].is_prefix:=prefix;
  309. end
  310. else
  311. Message(asmr_e_expr_illegal);
  312. end;
  313. Procedure TExprParse.OpPop(var _Operator:TExprOperator);
  314. { Get operator at the top of the stack }
  315. begin
  316. if OpTop > 0 then
  317. begin
  318. _Operator:=OpStack[OpTop];
  319. Dec(OpTop);
  320. end
  321. else
  322. Message(asmr_e_expr_illegal);
  323. end;
  324. Function TExprParse.Priority(_Operator : Char) : aint;
  325. { Return priority of operator }
  326. { The greater the priority, the higher the precedence }
  327. begin
  328. Case _Operator OF
  329. '(' :
  330. Priority:=0;
  331. '+', '-' :
  332. Priority:=1;
  333. '*', '/','%','<','>' :
  334. Priority:=2;
  335. '|','&','^','~' :
  336. Priority:=0;
  337. else
  338. Message(asmr_e_expr_illegal);
  339. end;
  340. end;
  341. Function TExprParse.Evaluate(Expr : String):aint;
  342. Var
  343. I : longint;
  344. Token : String;
  345. opr : TExprOperator;
  346. begin
  347. Evaluate:=0;
  348. { Reset stacks }
  349. OpTop :=0;
  350. RPNTop:=0;
  351. Token :='';
  352. { nothing to do ? }
  353. if Expr='' then
  354. exit;
  355. For I:=1 to Length(Expr) DO
  356. begin
  357. if Expr[I] in ['0'..'9'] then
  358. begin { Build multi-digit numbers }
  359. Token:=Token + Expr[I];
  360. if I = Length(Expr) then { Send last one to calculator }
  361. RPNCalc(Token,false);
  362. end
  363. else
  364. if Expr[I] in ['+', '-', '*', '/', '(', ')','^','&','|','%','~','<','>'] then
  365. begin
  366. if Token <> '' then
  367. begin { Send last built number to calc. }
  368. RPNCalc(Token,false);
  369. Token:='';
  370. end;
  371. Case Expr[I] OF
  372. '(' : OpPush('(',false);
  373. ')' : begin
  374. While (OpTop>0) and (OpStack[OpTop].ch <> '(') DO
  375. Begin
  376. OpPop(opr);
  377. RPNCalc(opr.ch,opr.is_prefix);
  378. end;
  379. OpPop(opr); { Pop off and ignore the '(' }
  380. end;
  381. '+','-','~' : Begin
  382. { workaround for -2147483648 }
  383. if (expr[I]='-') and (expr[i+1] in ['0'..'9']) then
  384. begin
  385. token:='-';
  386. expr[i]:='+';
  387. end;
  388. { if start of expression then surely a prefix }
  389. { or if previous char was also an operator }
  390. if (I = 1) or (not (Expr[I-1] in ['0'..'9','(',')'])) then
  391. OpPush(Expr[I],true)
  392. else
  393. Begin
  394. { Evaluate all higher priority operators }
  395. While (OpTop > 0) AND (Priority(Expr[I]) <= Priority(OpStack[OpTop].ch)) DO
  396. Begin
  397. OpPop(opr);
  398. RPNCalc(opr.ch,opr.is_prefix);
  399. end;
  400. OpPush(Expr[I],false);
  401. End;
  402. end;
  403. '*', '/',
  404. '^','|','&',
  405. '%','<','>' : begin
  406. While (OpTop > 0) and (Priority(Expr[I]) <= Priority(OpStack[OpTop].ch)) DO
  407. Begin
  408. OpPop(opr);
  409. RPNCalc(opr.ch,opr.is_prefix);
  410. end;
  411. OpPush(Expr[I],false);
  412. end;
  413. end; { Case }
  414. end
  415. else
  416. Message(asmr_e_expr_illegal); { Handle bad input error }
  417. end;
  418. { Pop off the remaining operators }
  419. While OpTop > 0 do
  420. Begin
  421. OpPop(opr);
  422. RPNCalc(opr.ch,opr.is_prefix);
  423. end;
  424. { The result is stored on the top of the stack }
  425. Evaluate:=RPNPop;
  426. end;
  427. Destructor TExprParse.Destroy;
  428. Begin
  429. end;
  430. Function CalculateExpression(const expression: string): aint;
  431. var
  432. expr: TExprParse;
  433. Begin
  434. expr:=TExprParse.create;
  435. CalculateExpression:=expr.Evaluate(expression);
  436. expr.Free;
  437. end;
  438. {*************************************************************************}
  439. { String conversions/utils }
  440. {*************************************************************************}
  441. Function EscapeToPascal(const s:string): string;
  442. { converts a C styled string - which contains escape }
  443. { characters to a pascal style string. }
  444. var
  445. i,len : aint;
  446. hs : string;
  447. temp : string;
  448. c : char;
  449. Begin
  450. hs:='';
  451. len:=0;
  452. i:=0;
  453. while (i<length(s)) and (len<255) do
  454. begin
  455. Inc(i);
  456. if (s[i]='\') and (i<length(s)) then
  457. Begin
  458. inc(i);
  459. case s[i] of
  460. '\' :
  461. c:='\';
  462. 'b':
  463. c:=#8;
  464. 'f':
  465. c:=#12;
  466. 'n':
  467. c:=#10;
  468. 'r':
  469. c:=#13;
  470. 't':
  471. c:=#9;
  472. '"':
  473. c:='"';
  474. '0'..'7':
  475. Begin
  476. temp:=s[i];
  477. temp:=temp+s[i+1];
  478. temp:=temp+s[i+2];
  479. inc(i,2);
  480. c:=chr(ParseVal(temp,8));
  481. end;
  482. 'x':
  483. Begin
  484. temp:=s[i+1];
  485. temp:=temp+s[i+2];
  486. inc(i,2);
  487. c:=chr(ParseVal(temp,16));
  488. end;
  489. else
  490. Begin
  491. Message1(asmr_e_escape_seq_ignored,s[i]);
  492. c:=s[i];
  493. end;
  494. end;
  495. end
  496. else
  497. c:=s[i];
  498. inc(len);
  499. hs[len]:=c;
  500. end;
  501. hs[0]:=chr(len);
  502. EscapeToPascal:=hs;
  503. end;
  504. Function ParseVal(const S:String;base:byte):aint;
  505. { Converts a decimal string to aint }
  506. var
  507. code : integer;
  508. errmsg : word;
  509. prefix : string[2];
  510. Begin
  511. case base of
  512. 2 :
  513. begin
  514. errmsg:=asmr_e_error_converting_binary;
  515. prefix:='%';
  516. end;
  517. 8 :
  518. begin
  519. errmsg:=asmr_e_error_converting_octal;
  520. prefix:='&';
  521. end;
  522. 10 :
  523. begin
  524. errmsg:=asmr_e_error_converting_decimal;
  525. prefix:='';
  526. end;
  527. 16 :
  528. begin
  529. errmsg:=asmr_e_error_converting_hexadecimal;
  530. prefix:='$';
  531. end;
  532. else
  533. internalerror(200501202);
  534. end;
  535. val(prefix+s,result,code);
  536. if code<>0 then
  537. begin
  538. val(prefix+s,aword(result),code);
  539. if code<>0 then
  540. begin
  541. Message1(errmsg,s);
  542. result:=0;
  543. end;
  544. end;
  545. end;
  546. Function PadZero(Var s: String; n: byte): Boolean;
  547. Begin
  548. PadZero:=TRUE;
  549. { Do some error checking first }
  550. if Length(s) = n then
  551. exit
  552. else
  553. if Length(s) > n then
  554. Begin
  555. PadZero:=FALSE;
  556. delete(s,n+1,length(s));
  557. exit;
  558. end
  559. else
  560. PadZero:=TRUE;
  561. { Fill it up with the specified character }
  562. fillchar(s[length(s)+1],n-1,#0);
  563. s[0]:=chr(n);
  564. end;
  565. {****************************************************************************
  566. TOperand
  567. ****************************************************************************}
  568. constructor TOperand.Create;
  569. begin
  570. size:=OS_NO;
  571. hastype:=false;
  572. hasvar:=false;
  573. FillChar(Opr,sizeof(Opr),0);
  574. end;
  575. destructor TOperand.destroy;
  576. begin
  577. end;
  578. Procedure TOperand.SetSize(_size:longint;force:boolean);
  579. begin
  580. if force or
  581. ((size = OS_NO) and (_size<=16)) then
  582. Begin
  583. case _size of
  584. 1 : size:=OS_8;
  585. 2 : size:=OS_16{ could be S_IS};
  586. 4 : size:=OS_32{ could be S_IL or S_FS};
  587. 8 : size:=OS_64{ could be S_D or S_FL};
  588. 10 : size:=OS_F80;
  589. 16 : size:=OS_128;
  590. end;
  591. end;
  592. end;
  593. Procedure TOperand.SetCorrectSize(opcode:tasmop);
  594. begin
  595. end;
  596. function TOperand.SetupResult:boolean;
  597. begin
  598. SetupResult:=false;
  599. { replace by correct offset. }
  600. with current_procinfo.procdef do
  601. if (not is_void(rettype.def)) then
  602. begin
  603. if (m_tp7 in aktmodeswitches) and
  604. (not paramanager.ret_in_param(rettype.def,proccalloption)) then
  605. begin
  606. message(asmr_e_cannot_use_RESULT_here);
  607. exit;
  608. end;
  609. SetupResult:=setupvar('result',false)
  610. end
  611. else
  612. message(asmr_e_void_function);
  613. end;
  614. Function TOperand.SetupSelf:boolean;
  615. Begin
  616. SetupSelf:=false;
  617. if assigned(current_procinfo.procdef._class) then
  618. SetupSelf:=setupvar('self',false)
  619. else
  620. Message(asmr_e_cannot_use_SELF_outside_a_method);
  621. end;
  622. Function TOperand.SetupOldEBP:boolean;
  623. Begin
  624. SetupOldEBP:=false;
  625. if current_procinfo.procdef.parast.symtablelevel>normal_function_level then
  626. SetupOldEBP:=setupvar('parentframe',false)
  627. else
  628. Message(asmr_e_cannot_use_OLDEBP_outside_nested_procedure);
  629. end;
  630. Function TOperand.SetupVar(const s:string;GetOffset : boolean): Boolean;
  631. function symtable_has_localvarsyms(st:tsymtable):boolean;
  632. var
  633. sym : tsym;
  634. begin
  635. result:=false;
  636. sym:=tsym(st.symindex.first);
  637. while assigned(sym) do
  638. begin
  639. if sym.typ=localvarsym then
  640. begin
  641. result:=true;
  642. exit;
  643. end;
  644. sym:=tsym(sym.indexnext);
  645. end;
  646. end;
  647. procedure setconst(l:aint);
  648. begin
  649. { We return the address of the field, just like Delphi/TP }
  650. case opr.typ of
  651. OPR_NONE :
  652. begin
  653. opr.typ:=OPR_CONSTANT;
  654. opr.val:=l;
  655. end;
  656. OPR_CONSTANT :
  657. inc(opr.val,l);
  658. OPR_REFERENCE :
  659. inc(opr.ref.offset,l);
  660. OPR_LOCAL :
  661. inc(opr.localsymofs,l);
  662. else
  663. Message(asmr_e_invalid_operand_type);
  664. end;
  665. end;
  666. { search and sets up the correct fields in the Instr record }
  667. { for the NON-constant identifier passed to the routine. }
  668. { if not found returns FALSE. }
  669. var
  670. sym : tsym;
  671. srsymtable : tsymtable;
  672. harrdef : tarraydef;
  673. indexreg : tregister;
  674. l : aint;
  675. plist : psymlistitem;
  676. Begin
  677. SetupVar:=false;
  678. asmsearchsym(s,sym,srsymtable);
  679. if sym = nil then
  680. exit;
  681. if sym.typ=absolutevarsym then
  682. begin
  683. if (tabsolutevarsym(sym).abstyp=tovar) then
  684. begin
  685. { Only support simple loads }
  686. plist:=tabsolutevarsym(sym).ref.firstsym;
  687. if assigned(plist) and
  688. (plist^.sltype=sl_load) then
  689. sym:=plist^.sym
  690. else
  691. begin
  692. Message(asmr_e_unsupported_symbol_type);
  693. exit;
  694. end;
  695. end
  696. else
  697. begin
  698. Message(asmr_e_unsupported_symbol_type);
  699. exit;
  700. end;
  701. end;
  702. case sym.typ of
  703. fieldvarsym :
  704. begin
  705. setconst(tfieldvarsym(sym).fieldoffset);
  706. hasvar:=true;
  707. SetupVar:=true;
  708. end;
  709. globalvarsym,
  710. localvarsym,
  711. paravarsym :
  712. begin
  713. { we always assume in asm statements that }
  714. { that the variable is valid. }
  715. tabstractvarsym(sym).varstate:=vs_used;
  716. inc(tabstractvarsym(sym).refs);
  717. { variable can't be placed in a register }
  718. tabstractvarsym(sym).varregable:=vr_none;
  719. case sym.owner.symtabletype of
  720. globalsymtable,
  721. staticsymtable :
  722. begin
  723. initref;
  724. opr.ref.symbol:=objectlibrary.newasmsymbol(tglobalvarsym(sym).mangledname,AB_EXTERNAL,AT_DATA);
  725. end;
  726. parasymtable,
  727. localsymtable :
  728. begin
  729. if opr.typ=OPR_REFERENCE then
  730. begin
  731. indexreg:=opr.ref.base;
  732. if opr.ref.index<>NR_NO then
  733. begin
  734. if indexreg=NR_NO then
  735. indexreg:=opr.ref.index
  736. else
  737. Message(asmr_e_multiple_index);
  738. end;
  739. end
  740. else
  741. indexreg:=NR_NO;
  742. opr.typ:=OPR_LOCAL;
  743. if assigned(current_procinfo.parent) and
  744. not(po_inline in current_procinfo.procdef.procoptions) and
  745. (sym.owner<>current_procinfo.procdef.localst) and
  746. (sym.owner<>current_procinfo.procdef.parast) and
  747. (current_procinfo.procdef.localst.symtablelevel>normal_function_level) and
  748. symtable_has_localvarsyms(current_procinfo.procdef.localst) then
  749. message1(asmr_e_local_para_unreachable,s);
  750. opr.localsym:=tabstractnormalvarsym(sym);
  751. opr.localsymofs:=0;
  752. opr.localindexreg:=indexreg;
  753. opr.localscale:=0;
  754. opr.localgetoffset:=GetOffset;
  755. if paramanager.push_addr_param(tabstractvarsym(sym).varspez,tabstractvarsym(sym).vartype.def,current_procinfo.procdef.proccalloption) then
  756. SetSize(sizeof(aint),false);
  757. end;
  758. end;
  759. case tabstractvarsym(sym).vartype.def.deftype of
  760. orddef,
  761. enumdef,
  762. pointerdef,
  763. arraydef,
  764. floatdef :
  765. SetSize(tabstractvarsym(sym).getsize,false);
  766. (* makes no sense when using sse instructions (FK)
  767. arraydef :
  768. begin
  769. { for arrays try to get the element size, take care of
  770. multiple indexes }
  771. harrdef:=tarraydef(tabstractvarsym(sym).vartype.def);
  772. while assigned(harrdef.elementtype.def) and
  773. (harrdef.elementtype.def.deftype=arraydef) do
  774. harrdef:=tarraydef(harrdef.elementtype.def);
  775. SetSize(harrdef.elesize,false);
  776. end;
  777. *)
  778. end;
  779. hasvar:=true;
  780. SetupVar:=true;
  781. Exit;
  782. end;
  783. typedconstsym :
  784. begin
  785. initref;
  786. opr.ref.symbol:=objectlibrary.newasmsymbol(ttypedconstsym(sym).mangledname,AB_EXTERNAL,AT_DATA);
  787. case ttypedconstsym(sym).typedconsttype.def.deftype of
  788. orddef,
  789. enumdef,
  790. pointerdef,
  791. floatdef :
  792. SetSize(ttypedconstsym(sym).getsize,false);
  793. arraydef :
  794. begin
  795. { for arrays try to get the element size, take care of
  796. multiple indexes }
  797. harrdef:=tarraydef(ttypedconstsym(sym).typedconsttype.def);
  798. while assigned(harrdef.elementtype.def) and
  799. (harrdef.elementtype.def.deftype=arraydef) do
  800. harrdef:=tarraydef(harrdef.elementtype.def);
  801. SetSize(harrdef.elesize,false);
  802. end;
  803. end;
  804. hasvar:=true;
  805. SetupVar:=true;
  806. Exit;
  807. end;
  808. constsym :
  809. begin
  810. if tconstsym(sym).consttyp=constord then
  811. begin
  812. setconst(tconstsym(sym).value.valueord);
  813. SetupVar:=true;
  814. Exit;
  815. end;
  816. end;
  817. typesym :
  818. begin
  819. if ttypesym(sym).restype.def.deftype in [recorddef,objectdef] then
  820. begin
  821. setconst(0);
  822. SetupVar:=TRUE;
  823. Exit;
  824. end;
  825. end;
  826. procsym :
  827. begin
  828. if opr.typ<>OPR_NONE then
  829. Message(asmr_e_invalid_operand_type);
  830. if Tprocsym(sym).procdef_count>1 then
  831. Message(asmr_w_calling_overload_func);
  832. l:=opr.ref.offset;
  833. opr.typ:=OPR_SYMBOL;
  834. opr.symbol:=objectlibrary.newasmsymbol(tprocsym(sym).first_procdef.mangledname,AB_EXTERNAL,AT_FUNCTION);
  835. opr.symofs:=l;
  836. hasvar:=true;
  837. SetupVar:=TRUE;
  838. Exit;
  839. end;
  840. else
  841. begin
  842. Message(asmr_e_unsupported_symbol_type);
  843. exit;
  844. end;
  845. end;
  846. end;
  847. procedure TOperand.InitRef;
  848. {*********************************************************************}
  849. { Description: This routine first check if the opcode is of }
  850. { type OPR_NONE, or OPR_REFERENCE , if not it gives out an error. }
  851. { If the operandtype = OPR_NONE or <> OPR_REFERENCE then it sets up }
  852. { the operand type to OPR_REFERENCE, as well as setting up the ref }
  853. { to point to the default segment. }
  854. {*********************************************************************}
  855. var
  856. l : aint;
  857. hsymofs : aint;
  858. hsymbol : tasmsymbol;
  859. reg : tregister;
  860. Begin
  861. case opr.typ of
  862. OPR_REFERENCE :
  863. exit;
  864. OPR_CONSTANT :
  865. begin
  866. l:=opr.val;
  867. opr.typ:=OPR_REFERENCE;
  868. Fillchar(opr.ref,sizeof(treference),0);
  869. opr.Ref.Offset:=l;
  870. end;
  871. OPR_NONE :
  872. begin
  873. opr.typ:=OPR_REFERENCE;
  874. Fillchar(opr.ref,sizeof(treference),0);
  875. end;
  876. OPR_REGISTER :
  877. begin
  878. reg:=opr.reg;
  879. opr.typ:=OPR_REFERENCE;
  880. Fillchar(opr.ref,sizeof(treference),0);
  881. opr.Ref.base:=reg;
  882. end;
  883. OPR_SYMBOL :
  884. begin
  885. hsymbol:=opr.symbol;
  886. hsymofs:=opr.symofs;
  887. opr.typ:=OPR_REFERENCE;
  888. Fillchar(opr.ref,sizeof(treference),0);
  889. opr.ref.symbol:=hsymbol;
  890. opr.ref.offset:=hsymofs;
  891. end;
  892. else
  893. begin
  894. Message(asmr_e_invalid_operand_type);
  895. { Recover }
  896. opr.typ:=OPR_REFERENCE;
  897. Fillchar(opr.ref,sizeof(treference),0);
  898. end;
  899. end;
  900. end;
  901. {****************************************************************************
  902. TInstruction
  903. ****************************************************************************}
  904. constructor TInstruction.create(optype : tcoperand);
  905. var
  906. i : longint;
  907. Begin
  908. { these field are set to 0 anyways by the constructor helper (FK)
  909. Opcode:=A_NONE;
  910. Condition:=C_NONE;
  911. Ops:=0;
  912. }
  913. for i:=1 to max_operands do
  914. Operands[i]:=optype.create;
  915. Labeled:=false;
  916. end;
  917. destructor TInstruction.destroy;
  918. var
  919. i : longint;
  920. Begin
  921. for i:=1 to max_operands do
  922. Operands[i].free;
  923. end;
  924. Procedure TInstruction.Swapoperands;
  925. Var
  926. p : toperand;
  927. Begin
  928. case Ops of
  929. 2 :
  930. begin
  931. p:=Operands[1];
  932. Operands[1]:=Operands[2];
  933. Operands[2]:=p;
  934. end;
  935. 3 :
  936. begin
  937. p:=Operands[1];
  938. Operands[1]:=Operands[3];
  939. Operands[3]:=p;
  940. end;
  941. end;
  942. end;
  943. function TInstruction.ConcatInstruction(p:TAAsmoutput) : tai;
  944. var
  945. ai : taicpu;
  946. i : longint;
  947. begin
  948. ai:=taicpu.op_none(opcode);
  949. ai.Ops:=Ops;
  950. ai.Allocate_oper(Ops);
  951. for i:=1 to Ops do
  952. with operands[i].opr do
  953. begin
  954. case typ of
  955. OPR_CONSTANT :
  956. ai.loadconst(i-1,val);
  957. OPR_REGISTER:
  958. ai.loadreg(i-1,reg);
  959. OPR_SYMBOL:
  960. ai.loadsymbol(i-1,symbol,symofs);
  961. OPR_LOCAL :
  962. ai.loadlocal(i-1,localsym,localsymofs,localindexreg,
  963. localscale,localgetoffset,localforceref);
  964. OPR_REFERENCE:
  965. ai.loadref(i-1,ref);
  966. {$ifdef ARM}
  967. OPR_REGSET:
  968. ai.loadregset(i-1,regset);
  969. OPR_SHIFTEROP:
  970. ai.loadshifterop(i-1,shifterop);
  971. {$endif ARM}
  972. else
  973. internalerror(200501051);
  974. end;
  975. end;
  976. ai.SetCondition(condition);
  977. { Concat the opcode or give an error }
  978. if assigned(ai) then
  979. p.concat(ai)
  980. else
  981. Message(asmr_e_invalid_opcode_and_operand);
  982. result:=ai;
  983. end;
  984. {***************************************************************************
  985. TLocalLabel
  986. ***************************************************************************}
  987. constructor TLocalLabel.create(const n:string);
  988. begin
  989. inherited CreateName(n);
  990. lab:=nil;
  991. emitted:=false;
  992. end;
  993. function TLocalLabel.Gettasmlabel:tasmlabel;
  994. begin
  995. if not assigned(lab) then
  996. begin
  997. objectlibrary.getjumplabel(lab);
  998. { this label is forced to be used so it's always written }
  999. lab.increfs;
  1000. end;
  1001. Gettasmlabel:=lab;
  1002. end;
  1003. {***************************************************************************
  1004. TLocalLabelList
  1005. ***************************************************************************}
  1006. procedure LocalLabelEmitted(p:tnamedindexitem;arg:pointer);
  1007. begin
  1008. if not TLocalLabel(p).emitted then
  1009. Message1(asmr_e_unknown_label_identifier,p.name);
  1010. end;
  1011. procedure TLocalLabelList.CheckEmitted;
  1012. begin
  1013. ForEach_Static(@LocalLabelEmitted,nil)
  1014. end;
  1015. function CreateLocalLabel(const s: string; var hl: tasmlabel; emit:boolean):boolean;
  1016. var
  1017. lab : TLocalLabel;
  1018. Begin
  1019. CreateLocalLabel:=true;
  1020. { Check if it already is defined }
  1021. lab:=TLocalLabel(LocalLabellist.Search(s));
  1022. if not assigned(lab) then
  1023. begin
  1024. lab:=TLocalLabel.Create(s);
  1025. LocalLabellist.Insert(lab);
  1026. end;
  1027. { set emitted flag and check for dup syms }
  1028. if emit then
  1029. begin
  1030. if lab.Emitted then
  1031. begin
  1032. Message1(asmr_e_dup_local_sym,lab.Name);
  1033. CreateLocalLabel:=false;
  1034. end;
  1035. lab.Emitted:=true;
  1036. end;
  1037. hl:=lab.Gettasmlabel;
  1038. end;
  1039. {****************************************************************************
  1040. Symbol table helper routines
  1041. ****************************************************************************}
  1042. procedure AsmSearchSym(const s:string;var srsym:tsym;var srsymtable:tsymtable);
  1043. var
  1044. i : integer;
  1045. begin
  1046. i:=pos('.',s);
  1047. { allow unit.identifier }
  1048. if i>0 then
  1049. begin
  1050. searchsym(Copy(s,1,i-1),srsym,srsymtable);
  1051. if assigned(srsym) then
  1052. begin
  1053. if (srsym.typ=unitsym) and
  1054. (srsym.owner.symtabletype in [staticsymtable,globalsymtable]) and
  1055. srsym.owner.iscurrentunit then
  1056. srsym:=searchsymonlyin(tunitsym(srsym).unitsymtable,Copy(s,i+1,255))
  1057. else
  1058. srsym:=nil;
  1059. end;
  1060. end
  1061. else
  1062. searchsym(s,srsym,srsymtable);
  1063. end;
  1064. Function SearchType(const hs:string;var size:aint): Boolean;
  1065. var
  1066. srsym : tsym;
  1067. srsymtable : tsymtable;
  1068. begin
  1069. result:=false;
  1070. size:=0;
  1071. asmsearchsym(hs,srsym,srsymtable);
  1072. if assigned(srsym) and
  1073. (srsym.typ=typesym) then
  1074. begin
  1075. size:=ttypesym(srsym).restype.def.size;
  1076. result:=true;
  1077. end;
  1078. end;
  1079. Function SearchRecordType(const s:string): boolean;
  1080. var
  1081. srsym : tsym;
  1082. srsymtable : tsymtable;
  1083. Begin
  1084. SearchRecordType:=false;
  1085. { Check the constants in symtable }
  1086. asmsearchsym(s,srsym,srsymtable);
  1087. if srsym <> nil then
  1088. Begin
  1089. case srsym.typ of
  1090. typesym :
  1091. begin
  1092. if ttypesym(srsym).restype.def.deftype in [recorddef,objectdef] then
  1093. begin
  1094. SearchRecordType:=true;
  1095. exit;
  1096. end;
  1097. end;
  1098. end;
  1099. end;
  1100. end;
  1101. Function SearchIConstant(const s:string; var l:aint): boolean;
  1102. {**********************************************************************}
  1103. { Description: Searches for a CONSTANT of name s in either the local }
  1104. { symbol list, then in the global symbol list, and returns the value }
  1105. { of that constant in l. Returns TRUE if successfull, if not found, }
  1106. { or if the constant is not of correct type, then returns FALSE }
  1107. { Remarks: Also handle TRUE and FALSE returning in those cases 1 and 0 }
  1108. { respectively. }
  1109. {**********************************************************************}
  1110. var
  1111. srsym : tsym;
  1112. srsymtable : tsymtable;
  1113. Begin
  1114. SearchIConstant:=false;
  1115. { check for TRUE or FALSE reserved words first }
  1116. if s = 'TRUE' then
  1117. Begin
  1118. SearchIConstant:=TRUE;
  1119. l:=1;
  1120. exit;
  1121. end;
  1122. if s = 'FALSE' then
  1123. Begin
  1124. SearchIConstant:=TRUE;
  1125. l:=0;
  1126. exit;
  1127. end;
  1128. { Check the constants in symtable }
  1129. asmsearchsym(s,srsym,srsymtable);
  1130. if srsym <> nil then
  1131. Begin
  1132. case srsym.typ of
  1133. constsym :
  1134. begin
  1135. if tconstsym(srsym).consttyp=constord then
  1136. Begin
  1137. l:=tconstsym(srsym).value.valueord;
  1138. SearchIConstant:=TRUE;
  1139. exit;
  1140. end;
  1141. end;
  1142. enumsym:
  1143. Begin
  1144. l:=tenumsym(srsym).value;
  1145. SearchIConstant:=TRUE;
  1146. exit;
  1147. end;
  1148. end;
  1149. end;
  1150. end;
  1151. Function GetRecordOffsetSize(s:string;Var Offset: aint;var Size:aint):boolean;
  1152. { search and returns the offset and size of records/objects of the base }
  1153. { with field name setup in field. }
  1154. { returns FALSE if not found. }
  1155. { used when base is a variable or a typed constant name. }
  1156. var
  1157. st : tsymtable;
  1158. harrdef : tarraydef;
  1159. sym : tsym;
  1160. srsymtable : tsymtable;
  1161. i : longint;
  1162. base : string;
  1163. Begin
  1164. GetRecordOffsetSize:=FALSE;
  1165. Offset:=0;
  1166. Size:=0;
  1167. i:=pos('.',s);
  1168. if i=0 then
  1169. i:=255;
  1170. base:=Copy(s,1,i-1);
  1171. delete(s,1,i);
  1172. if base='SELF' then
  1173. st:=current_procinfo.procdef._class.symtable
  1174. else
  1175. begin
  1176. asmsearchsym(base,sym,srsymtable);
  1177. st:=nil;
  1178. { we can start with a var,type,typedconst }
  1179. if assigned(sym) then
  1180. case sym.typ of
  1181. globalvarsym,
  1182. localvarsym,
  1183. paravarsym :
  1184. st:=Tabstractvarsym(sym).vartype.def.getsymtable(gs_record);
  1185. typesym :
  1186. st:=Ttypesym(sym).restype.def.getsymtable(gs_record);
  1187. typedconstsym :
  1188. st:=Ttypedconstsym(sym).typedconsttype.def.getsymtable(gs_record);
  1189. end
  1190. else
  1191. s:='';
  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. fieldvarsym :
  1214. with Tfieldvarsym(sym) do
  1215. begin
  1216. inc(Offset,fieldoffset);
  1217. size:=getsize;
  1218. with vartype do
  1219. case def.deftype of
  1220. arraydef :
  1221. begin
  1222. { for arrays try to get the element size, take care of
  1223. multiple indexes }
  1224. harrdef:=tarraydef(def);
  1225. while assigned(harrdef.elementtype.def) and
  1226. (harrdef.elementtype.def.deftype=arraydef) do
  1227. harrdef:=tarraydef(harrdef.elementtype.def);
  1228. size:=harrdef.elesize;
  1229. end;
  1230. recorddef :
  1231. st:=trecorddef(def).symtable;
  1232. objectdef :
  1233. st:=tobjectdef(def).symtable;
  1234. end;
  1235. end;
  1236. end;
  1237. end;
  1238. { Support Field.Type as typecasting }
  1239. if (st=nil) and (s<>'') then
  1240. begin
  1241. asmsearchsym(s,sym,srsymtable);
  1242. if assigned(sym) and (sym.typ=typesym) then
  1243. begin
  1244. size:=ttypesym(sym).restype.def.size;
  1245. s:=''
  1246. end;
  1247. end;
  1248. GetRecordOffsetSize:=(s='');
  1249. end;
  1250. Function SearchLabel(const s: string; var hl: tasmlabel;emit:boolean): boolean;
  1251. var
  1252. sym : tsym;
  1253. srsymtable : tsymtable;
  1254. hs : string;
  1255. Begin
  1256. hl:=nil;
  1257. SearchLabel:=false;
  1258. { Check for pascal labels, which are case insensetive }
  1259. hs:=upper(s);
  1260. asmsearchsym(hs,sym,srsymtable);
  1261. if sym=nil then
  1262. exit;
  1263. case sym.typ of
  1264. labelsym :
  1265. begin
  1266. if not(assigned(tlabelsym(sym).asmblocklabel)) then
  1267. objectlibrary.getjumplabel(tlabelsym(sym).asmblocklabel);
  1268. hl:=tlabelsym(sym).asmblocklabel;
  1269. if emit then
  1270. tlabelsym(sym).defined:=true
  1271. else
  1272. tlabelsym(sym).used:=true;
  1273. SearchLabel:=true;
  1274. end;
  1275. end;
  1276. end;
  1277. {*************************************************************************}
  1278. { Instruction Generation Utilities }
  1279. {*************************************************************************}
  1280. Procedure ConcatString(p : TAAsmoutput;s:string);
  1281. {*********************************************************************}
  1282. { PROCEDURE ConcatString(s:string); }
  1283. { Description: This routine adds the character chain pointed to in }
  1284. { s to the instruction linked list. }
  1285. {*********************************************************************}
  1286. Var
  1287. pc: PChar;
  1288. Begin
  1289. getmem(pc,length(s)+1);
  1290. p.concat(Tai_string.Create_pchar(strpcopy(pc,s),length(s)));
  1291. end;
  1292. Procedure ConcatPasString(p : TAAsmoutput;s:string);
  1293. {*********************************************************************}
  1294. { PROCEDURE ConcatPasString(s:string); }
  1295. { Description: This routine adds the character chain pointed to in }
  1296. { s to the instruction linked list, contrary to ConcatString it }
  1297. { uses a pascal style string, so it conserves null characters. }
  1298. {*********************************************************************}
  1299. Begin
  1300. p.concat(Tai_string.Create(s));
  1301. end;
  1302. Procedure ConcatConstant(p: TAAsmoutput; value: aint; constsize:byte);
  1303. {*********************************************************************}
  1304. { PROCEDURE ConcatConstant(value: aint; maxvalue: aint); }
  1305. { Description: This routine adds the value constant to the current }
  1306. { instruction linked list. }
  1307. { maxvalue -> indicates the size of the data to initialize: }
  1308. { $ff -> create a byte node. }
  1309. { $ffff -> create a word node. }
  1310. { $ffffffff -> create a dword node. }
  1311. {*********************************************************************}
  1312. var
  1313. rangelo,rangehi : int64;
  1314. Begin
  1315. case constsize of
  1316. 1 :
  1317. begin
  1318. p.concat(Tai_const.Create_8bit(byte(value)));
  1319. rangelo:=low(shortint);
  1320. rangehi:=high(byte);
  1321. end;
  1322. 2 :
  1323. begin
  1324. p.concat(Tai_const.Create_16bit(word(value)));
  1325. rangelo:=low(smallint);
  1326. rangehi:=high(word);
  1327. end;
  1328. 4 :
  1329. begin
  1330. p.concat(Tai_const.Create_32bit(longint(value)));
  1331. rangelo:=low(longint);
  1332. rangehi:=high(cardinal);
  1333. end;
  1334. 8 :
  1335. begin
  1336. p.concat(Tai_const.Create_64bit(int64(value)));
  1337. rangelo:=0;
  1338. rangehi:=0;
  1339. end;
  1340. else
  1341. internalerror(200405011);
  1342. end;
  1343. { check for out of bounds }
  1344. if (rangelo<>0) and
  1345. ((value>rangehi) or (value<rangelo)) then
  1346. Message(asmr_e_constant_out_of_bounds);
  1347. end;
  1348. Procedure ConcatConstSymbol(p : TAAsmoutput;const sym:string;symtyp:tasmsymtype;l:aint);
  1349. begin
  1350. p.concat(Tai_const.Createname(sym,symtyp,l));
  1351. end;
  1352. Procedure ConcatRealConstant(p : TAAsmoutput;value: bestreal; real_typ : tfloattype);
  1353. {***********************************************************************}
  1354. { PROCEDURE ConcatRealConstant(value: bestreal; real_typ : tfloattype); }
  1355. { Description: This routine adds the value constant to the current }
  1356. { instruction linked list. }
  1357. { real_typ -> indicates the type of the real data to initialize: }
  1358. { s32real -> create a single node. }
  1359. { s64real -> create a double node. }
  1360. { s80real -> create an extended node. }
  1361. { s64bit -> create a comp node. }
  1362. { f32bit -> create a fixed node. (not used normally) }
  1363. {***********************************************************************}
  1364. Begin
  1365. case real_typ of
  1366. s32real : p.concat(Tai_real_32bit.Create(value));
  1367. s64real :
  1368. {$ifdef ARM}
  1369. if aktfputype in [fpu_fpa,fpu_fpa10,fpu_fpa11] then
  1370. p.concat(Tai_real_64bit.Create_hiloswapped(value))
  1371. else
  1372. {$endif ARM}
  1373. p.concat(Tai_real_64bit.Create(value));
  1374. s80real : p.concat(Tai_real_80bit.Create(value));
  1375. s64comp : p.concat(Tai_comp_64bit.Create(trunc(value)));
  1376. end;
  1377. end;
  1378. Procedure ConcatLabel(p: TAAsmoutput;var l : tasmlabel);
  1379. {*********************************************************************}
  1380. { PROCEDURE ConcatLabel }
  1381. { Description: This routine either emits a label or a labeled }
  1382. { instruction to the linked list of instructions. }
  1383. {*********************************************************************}
  1384. begin
  1385. p.concat(Tai_label.Create(l));
  1386. end;
  1387. procedure ConcatAlign(p:TAAsmoutput;l:aint);
  1388. {*********************************************************************}
  1389. { PROCEDURE ConcatPublic }
  1390. { Description: This routine emits an global definition to the }
  1391. { linked list of instructions.(used by AT&T styled asm) }
  1392. {*********************************************************************}
  1393. begin
  1394. p.concat(Tai_align.Create(l));
  1395. end;
  1396. procedure ConcatPublic(p:TAAsmoutput;const s : string);
  1397. {*********************************************************************}
  1398. { PROCEDURE ConcatPublic }
  1399. { Description: This routine emits an global definition to the }
  1400. { linked list of instructions.(used by AT&T styled asm) }
  1401. {*********************************************************************}
  1402. begin
  1403. p.concat(Tai_symbol.Createname_global(s,AT_LABEL,0));
  1404. end;
  1405. procedure ConcatLocal(p:TAAsmoutput;const s : string);
  1406. {*********************************************************************}
  1407. { PROCEDURE ConcatLocal }
  1408. { Description: This routine emits an local definition to the }
  1409. { linked list of instructions. }
  1410. {*********************************************************************}
  1411. begin
  1412. p.concat(Tai_symbol.Createname(s,AT_LABEL,0));
  1413. end;
  1414. end.