rautils.pas 46 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. {$i fpcdefs.inc}
  19. Interface
  20. Uses
  21. cutils,cclasses,
  22. globtype,aasmbase,aasmtai,aasmdata,cpubase,cpuinfo,cgbase,cgutils,
  23. symconst,symbase,symtype,symdef,symsym;
  24. Const
  25. RPNMax = 10; { I think you only need 4, but just to be safe }
  26. OpMax = 25;
  27. {---------------------------------------------------------------------
  28. Local Label Management
  29. ---------------------------------------------------------------------}
  30. Type
  31. { Each local label has this structure associated with it }
  32. TLocalLabel = class(TFPHashObject)
  33. Emitted : boolean;
  34. constructor Create(AList:TFPHashObjectList;const n:string);
  35. function Gettasmlabel:tasmlabel;
  36. private
  37. lab : tasmlabel;
  38. end;
  39. TLocalLabelList = class(TFPHashObjectList)
  40. procedure CheckEmitted;
  41. end;
  42. var
  43. LocalLabelList : TLocalLabelList;
  44. function CreateLocalLabel(const s: string; var hl: tasmlabel; emit:boolean):boolean;
  45. Function SearchLabel(const s: string; var hl: tasmlabel;emit:boolean): boolean;
  46. {---------------------------------------------------------------------
  47. Instruction management
  48. ---------------------------------------------------------------------}
  49. type
  50. TOprType=(OPR_NONE,OPR_CONSTANT,OPR_SYMBOL,OPR_LOCAL,
  51. OPR_REFERENCE,OPR_REGISTER,OPR_REGLIST,OPR_COND,OPR_REGSET,OPR_SHIFTEROP);
  52. TOprRec = record
  53. case typ:TOprType of
  54. OPR_NONE : ();
  55. OPR_CONSTANT : (val:aint);
  56. OPR_SYMBOL : (symbol:tasmsymbol;symofs:aint);
  57. OPR_REFERENCE : (ref:treference);
  58. OPR_LOCAL : (localsym:tabstractnormalvarsym;localsymofs:aint;localindexreg:tregister;localscale:byte;localgetoffset,localforceref:boolean);
  59. OPR_REGISTER : (reg:tregister);
  60. {$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. OPR_COND : (cc : tasmcond);
  73. {$endif arm}
  74. end;
  75. TOperand = class
  76. typesize : aint;
  77. hastype, { if the operand has typecasted variable }
  78. hasvar : boolean; { if the operand is loaded with a variable }
  79. size : TCGSize;
  80. opr : TOprRec;
  81. constructor create;virtual;
  82. destructor destroy;override;
  83. Procedure SetSize(_size:longint;force:boolean);virtual;
  84. Procedure SetCorrectSize(opcode:tasmop);virtual;
  85. Function SetupResult:boolean;virtual;
  86. Function SetupSelf:boolean;
  87. Function SetupOldEBP:boolean;
  88. Function SetupVar(const s:string;GetOffset : boolean): Boolean;
  89. Function CheckOperand: boolean; virtual;
  90. Procedure InitRef;
  91. end;
  92. TCOperand = class of TOperand;
  93. TInstruction = class
  94. opcode : tasmop;
  95. condition : tasmcond;
  96. ops : byte;
  97. labeled : boolean;
  98. operands : array[1..max_operands] of toperand;
  99. constructor create(optype : tcoperand);virtual;
  100. destructor destroy;override;
  101. { converts the instruction to an instruction how it's used by the assembler writer
  102. and concats it to the passed list. The newly created item is returned if the
  103. instruction was valid, otherwise nil is returned }
  104. function ConcatInstruction(p:TAsmList) : tai;virtual;
  105. Procedure Swapoperands;
  106. end;
  107. {---------------------------------------------------------------------}
  108. { Expression parser types }
  109. {---------------------------------------------------------------------}
  110. TExprOperator = record
  111. ch: char; { operator }
  112. is_prefix: boolean; { was it a prefix, possible prefixes are +,- and not }
  113. end;
  114. {**********************************************************************}
  115. { The following operators are supported: }
  116. { '+' : addition }
  117. { '-' : subtraction }
  118. { '*' : multiplication }
  119. { '/' : modulo division }
  120. { '^' : exclusive or }
  121. { '<' : shift left }
  122. { '>' : shift right }
  123. { '&' : bitwise and }
  124. { '|' : bitwise or }
  125. { '~' : bitwise complement }
  126. { '%' : modulo division }
  127. { nnn: longint numbers }
  128. { ( and ) parenthesis }
  129. {**********************************************************************}
  130. TExprParse = class
  131. public
  132. Constructor create;
  133. Destructor Destroy;override;
  134. Function Evaluate(Expr: String): aint;
  135. Function Priority(_Operator: Char): aint;
  136. private
  137. RPNStack : Array[1..RPNMax] of aint; { Stack For RPN calculator }
  138. RPNTop : aint;
  139. OpStack : Array[1..OpMax] of TExprOperator; { Operator stack For conversion }
  140. OpTop : aint;
  141. Procedure RPNPush(Num: aint);
  142. Function RPNPop: aint;
  143. Procedure RPNCalc(const token: String; prefix: boolean);
  144. Procedure OpPush(_Operator: char; prefix: boolean);
  145. { In reality returns TExprOperaotr }
  146. Procedure OpPop(var _Operator:TExprOperator);
  147. end;
  148. { Evaluate an expression string to a aint }
  149. Function CalculateExpression(const expression: string): aint;
  150. {---------------------------------------------------------------------}
  151. { String routines }
  152. {---------------------------------------------------------------------}
  153. Function ParseVal(const S:String;base:byte):aint;
  154. Function PadZero(Var s: String; n: byte): Boolean;
  155. Function EscapeToPascal(const s:string): string;
  156. {---------------------------------------------------------------------
  157. Symbol helper routines
  158. ---------------------------------------------------------------------}
  159. procedure AsmSearchSym(const s:string;var srsym:tsym;var srsymtable:TSymtable);
  160. Function GetRecordOffsetSize(s:string;Var Offset: aint;var Size:aint; var mangledname: string; needvmtofs: boolean):boolean;
  161. Function SearchType(const hs:string;var size:aint): Boolean;
  162. Function SearchRecordType(const s:string): boolean;
  163. Function SearchIConstant(const s:string; var l:aint): boolean;
  164. {---------------------------------------------------------------------
  165. Instruction generation routines
  166. ---------------------------------------------------------------------}
  167. Procedure ConcatPasString(p : TAsmList;s:string);
  168. Procedure ConcatLabel(p: TAsmList;var l : tasmlabel);
  169. Procedure ConcatConstant(p : TAsmList;value: aint; constsize:byte);
  170. Procedure ConcatConstSymbol(p : TAsmList;const sym:string;symtyp:tasmsymtype;l:aint);
  171. Procedure ConcatRealConstant(p : TAsmList;value: bestreal; real_typ : tfloattype);
  172. Procedure ConcatString(p : TAsmList;s:string);
  173. procedure ConcatAlign(p:TAsmList;l:aint);
  174. Procedure ConcatPublic(p:TAsmList;const s : string);
  175. Procedure ConcatLocal(p:TAsmList;const s : string);
  176. Implementation
  177. uses
  178. SysUtils,
  179. defutil,systems,verbose,globals,
  180. symtable,paramgr,
  181. aasmcpu,
  182. procinfo;
  183. {*************************************************************************
  184. TExprParse
  185. *************************************************************************}
  186. Constructor TExprParse.create;
  187. Begin
  188. end;
  189. Procedure TExprParse.RPNPush(Num : aint);
  190. { Add an operand to the top of the RPN stack }
  191. begin
  192. if RPNTop < RPNMax then
  193. begin
  194. Inc(RPNTop);
  195. RPNStack[RPNTop]:=Num;
  196. end
  197. else
  198. Message(asmr_e_expr_illegal);
  199. end;
  200. Function TExprParse.RPNPop : aint;
  201. { Get the operand at the top of the RPN stack }
  202. begin
  203. if RPNTop > 0 then
  204. begin
  205. RPNPop:=RPNStack[RPNTop];
  206. Dec(RPNTop);
  207. end
  208. else
  209. Message(asmr_e_expr_illegal);
  210. end;
  211. Procedure TExprParse.RPNCalc(const Token : String; prefix:boolean); { RPN Calculator }
  212. Var
  213. Temp : aint;
  214. n1,n2 : aint;
  215. LocalError : Integer;
  216. begin
  217. { Handle operators }
  218. if (Length(Token) = 1) and (Token[1] in ['+', '-', '*', '/','&','|','%','^','~','<','>']) then
  219. Case Token[1] of
  220. '+' :
  221. Begin
  222. if not prefix then
  223. RPNPush(RPNPop + RPNPop);
  224. end;
  225. '-' :
  226. Begin
  227. if prefix then
  228. RPNPush(-(RPNPop))
  229. else
  230. begin
  231. n1:=RPNPop;
  232. n2:=RPNPop;
  233. RPNPush(n2 - n1);
  234. end;
  235. end;
  236. '*' : RPNPush(RPNPop * RPNPop);
  237. '&' :
  238. begin
  239. n1:=RPNPop;
  240. n2:=RPNPop;
  241. RPNPush(n2 and n1);
  242. end;
  243. '|' :
  244. begin
  245. n1:=RPNPop;
  246. n2:=RPNPop;
  247. RPNPush(n2 or n1);
  248. end;
  249. '~' : RPNPush(NOT RPNPop);
  250. '<' :
  251. begin
  252. n1:=RPNPop;
  253. n2:=RPNPop;
  254. RPNPush(n2 SHL n1);
  255. end;
  256. '>' :
  257. begin
  258. n1:=RPNPop;
  259. n2:=RPNPop;
  260. RPNPush(n2 SHR n1);
  261. end;
  262. '%' :
  263. begin
  264. Temp:=RPNPop;
  265. if Temp <> 0 then
  266. RPNPush(RPNPop mod Temp)
  267. else
  268. begin
  269. Message(asmr_e_expr_zero_divide);
  270. { push 1 for error recovery }
  271. RPNPush(1);
  272. end;
  273. end;
  274. '^' : RPNPush(RPNPop XOR RPNPop);
  275. '/' :
  276. begin
  277. Temp:=RPNPop;
  278. if Temp <> 0 then
  279. RPNPush(RPNPop div Temp)
  280. else
  281. begin
  282. Message(asmr_e_expr_zero_divide);
  283. { push 1 for error recovery }
  284. RPNPush(1);
  285. end;
  286. end;
  287. end
  288. else
  289. begin
  290. { Convert String to number and add to stack }
  291. Val(Token, Temp, LocalError);
  292. if LocalError = 0 then
  293. RPNPush(Temp)
  294. else
  295. begin
  296. Message(asmr_e_expr_illegal);
  297. { push 1 for error recovery }
  298. RPNPush(1);
  299. end;
  300. end;
  301. end;
  302. Procedure TExprParse.OpPush(_Operator : char;prefix: boolean);
  303. { Add an operator onto top of the stack }
  304. begin
  305. if OpTop < OpMax then
  306. begin
  307. Inc(OpTop);
  308. OpStack[OpTop].ch:=_Operator;
  309. OpStack[OpTop].is_prefix:=prefix;
  310. end
  311. else
  312. Message(asmr_e_expr_illegal);
  313. end;
  314. Procedure TExprParse.OpPop(var _Operator:TExprOperator);
  315. { Get operator at the top of the stack }
  316. begin
  317. if OpTop > 0 then
  318. begin
  319. _Operator:=OpStack[OpTop];
  320. Dec(OpTop);
  321. end
  322. else
  323. Message(asmr_e_expr_illegal);
  324. end;
  325. Function TExprParse.Priority(_Operator : Char) : aint;
  326. { Return priority of operator }
  327. { The greater the priority, the higher the precedence }
  328. begin
  329. Case _Operator OF
  330. '(' :
  331. Priority:=0;
  332. '+', '-' :
  333. Priority:=1;
  334. '*', '/','%','<','>' :
  335. Priority:=2;
  336. '|','&','^','~' :
  337. Priority:=0;
  338. else
  339. Message(asmr_e_expr_illegal);
  340. end;
  341. end;
  342. Function TExprParse.Evaluate(Expr : String):aint;
  343. Var
  344. I : longint;
  345. Token : String;
  346. opr : TExprOperator;
  347. begin
  348. Evaluate:=0;
  349. { Reset stacks }
  350. OpTop :=0;
  351. RPNTop:=0;
  352. Token :='';
  353. { nothing to do ? }
  354. if Expr='' then
  355. exit;
  356. For I:=1 to Length(Expr) DO
  357. begin
  358. if Expr[I] in ['0'..'9'] then
  359. begin { Build multi-digit numbers }
  360. Token:=Token + Expr[I];
  361. if I = Length(Expr) then { Send last one to calculator }
  362. RPNCalc(Token,false);
  363. end
  364. else
  365. if Expr[I] in ['+', '-', '*', '/', '(', ')','^','&','|','%','~','<','>'] then
  366. begin
  367. if Token <> '' then
  368. begin { Send last built number to calc. }
  369. RPNCalc(Token,false);
  370. Token:='';
  371. end;
  372. Case Expr[I] OF
  373. '(' : OpPush('(',false);
  374. ')' : begin
  375. While (OpTop>0) and (OpStack[OpTop].ch <> '(') DO
  376. Begin
  377. OpPop(opr);
  378. RPNCalc(opr.ch,opr.is_prefix);
  379. end;
  380. OpPop(opr); { Pop off and ignore the '(' }
  381. end;
  382. '+','-','~' : Begin
  383. { workaround for -2147483648 }
  384. if (expr[I]='-') and (expr[i+1] in ['0'..'9']) then
  385. begin
  386. token:='-';
  387. expr[i]:='+';
  388. end;
  389. { if start of expression then surely a prefix }
  390. { or if previous char was also an operator }
  391. if (I = 1) or (not (Expr[I-1] in ['0'..'9','(',')'])) then
  392. OpPush(Expr[I],true)
  393. else
  394. Begin
  395. { Evaluate all higher priority operators }
  396. While (OpTop > 0) AND (Priority(Expr[I]) <= Priority(OpStack[OpTop].ch)) DO
  397. Begin
  398. OpPop(opr);
  399. RPNCalc(opr.ch,opr.is_prefix);
  400. end;
  401. OpPush(Expr[I],false);
  402. End;
  403. end;
  404. '*', '/',
  405. '^','|','&',
  406. '%','<','>' : begin
  407. While (OpTop > 0) and (Priority(Expr[I]) <= Priority(OpStack[OpTop].ch)) DO
  408. Begin
  409. OpPop(opr);
  410. RPNCalc(opr.ch,opr.is_prefix);
  411. end;
  412. OpPush(Expr[I],false);
  413. end;
  414. end; { Case }
  415. end
  416. else
  417. Message(asmr_e_expr_illegal); { Handle bad input error }
  418. end;
  419. { Pop off the remaining operators }
  420. While OpTop > 0 do
  421. Begin
  422. OpPop(opr);
  423. RPNCalc(opr.ch,opr.is_prefix);
  424. end;
  425. { The result is stored on the top of the stack }
  426. Evaluate:=RPNPop;
  427. end;
  428. Destructor TExprParse.Destroy;
  429. Begin
  430. end;
  431. Function CalculateExpression(const expression: string): aint;
  432. var
  433. expr: TExprParse;
  434. Begin
  435. expr:=TExprParse.create;
  436. CalculateExpression:=expr.Evaluate(expression);
  437. expr.Free;
  438. end;
  439. {*************************************************************************}
  440. { String conversions/utils }
  441. {*************************************************************************}
  442. Function EscapeToPascal(const s:string): string;
  443. { converts a C styled string - which contains escape }
  444. { characters to a pascal style string. }
  445. var
  446. i,len : aint;
  447. hs : string;
  448. temp : string;
  449. c : char;
  450. Begin
  451. hs:='';
  452. len:=0;
  453. i:=0;
  454. while (i<length(s)) and (len<255) do
  455. begin
  456. Inc(i);
  457. if (s[i]='\') and (i<length(s)) then
  458. Begin
  459. inc(i);
  460. case s[i] of
  461. '\' :
  462. c:='\';
  463. 'b':
  464. c:=#8;
  465. 'f':
  466. c:=#12;
  467. 'n':
  468. c:=#10;
  469. 'r':
  470. c:=#13;
  471. 't':
  472. c:=#9;
  473. '"':
  474. c:='"';
  475. '0'..'7':
  476. Begin
  477. temp:=s[i];
  478. temp:=temp+s[i+1];
  479. temp:=temp+s[i+2];
  480. inc(i,2);
  481. c:=chr(ParseVal(temp,8));
  482. end;
  483. 'x':
  484. Begin
  485. temp:=s[i+1];
  486. temp:=temp+s[i+2];
  487. inc(i,2);
  488. c:=chr(ParseVal(temp,16));
  489. end;
  490. else
  491. Begin
  492. Message1(asmr_e_escape_seq_ignored,s[i]);
  493. c:=s[i];
  494. end;
  495. end;
  496. end
  497. else
  498. c:=s[i];
  499. inc(len);
  500. hs[len]:=c;
  501. end;
  502. hs[0]:=chr(len);
  503. EscapeToPascal:=hs;
  504. end;
  505. Function ParseVal(const S:String;base:byte):aint;
  506. { Converts a decimal string to aint }
  507. var
  508. code : integer;
  509. errmsg : word;
  510. prefix : string[2];
  511. Begin
  512. case base of
  513. 2 :
  514. begin
  515. errmsg:=asmr_e_error_converting_binary;
  516. prefix:='%';
  517. end;
  518. 8 :
  519. begin
  520. errmsg:=asmr_e_error_converting_octal;
  521. prefix:='&';
  522. end;
  523. 10 :
  524. begin
  525. errmsg:=asmr_e_error_converting_decimal;
  526. prefix:='';
  527. end;
  528. 16 :
  529. begin
  530. errmsg:=asmr_e_error_converting_hexadecimal;
  531. prefix:='$';
  532. end;
  533. else
  534. internalerror(200501202);
  535. end;
  536. val(prefix+s,result,code);
  537. if code<>0 then
  538. begin
  539. val(prefix+s,aword(result),code);
  540. if code<>0 then
  541. begin
  542. Message1(errmsg,s);
  543. result:=0;
  544. end;
  545. end;
  546. end;
  547. Function PadZero(Var s: String; n: byte): Boolean;
  548. Begin
  549. PadZero:=TRUE;
  550. { Do some error checking first }
  551. if Length(s) = n then
  552. exit
  553. else
  554. if Length(s) > n then
  555. Begin
  556. PadZero:=FALSE;
  557. delete(s,n+1,length(s));
  558. exit;
  559. end
  560. else
  561. PadZero:=TRUE;
  562. { Fill it up with the specified character }
  563. fillchar(s[length(s)+1],n-1,#0);
  564. s[0]:=chr(n);
  565. end;
  566. {****************************************************************************
  567. TOperand
  568. ****************************************************************************}
  569. constructor TOperand.Create;
  570. begin
  571. size:=OS_NO;
  572. hastype:=false;
  573. hasvar:=false;
  574. FillChar(Opr,sizeof(Opr),0);
  575. end;
  576. destructor TOperand.destroy;
  577. begin
  578. end;
  579. Procedure TOperand.SetSize(_size:longint;force:boolean);
  580. begin
  581. if force or
  582. ((size = OS_NO) and (_size<=16)) then
  583. Begin
  584. case _size of
  585. 1 : size:=OS_8;
  586. 2 : size:=OS_16{ could be S_IS};
  587. 4 : size:=OS_32{ could be S_IL or S_FS};
  588. 8 : size:=OS_64{ could be S_D or S_FL};
  589. 10 : size:=OS_F80;
  590. 16 : size:=OS_128;
  591. end;
  592. end;
  593. end;
  594. Procedure TOperand.SetCorrectSize(opcode:tasmop);
  595. begin
  596. end;
  597. function TOperand.SetupResult:boolean;
  598. begin
  599. SetupResult:=false;
  600. { replace by correct offset. }
  601. with current_procinfo.procdef do
  602. if (not is_void(returndef)) then
  603. begin
  604. if (m_tp7 in current_settings.modeswitches) and
  605. (not paramanager.ret_in_param(returndef,proccalloption)) then
  606. begin
  607. message(asmr_e_cannot_use_RESULT_here);
  608. exit;
  609. end;
  610. SetupResult:=setupvar('result',false)
  611. end
  612. else
  613. message(asmr_e_void_function);
  614. end;
  615. Function TOperand.SetupSelf:boolean;
  616. Begin
  617. SetupSelf:=false;
  618. if assigned(current_objectdef) then
  619. SetupSelf:=setupvar('self',false)
  620. else
  621. Message(asmr_e_cannot_use_SELF_outside_a_method);
  622. end;
  623. Function TOperand.SetupOldEBP:boolean;
  624. Begin
  625. SetupOldEBP:=false;
  626. if current_procinfo.procdef.parast.symtablelevel>normal_function_level then
  627. SetupOldEBP:=setupvar('parentframe',false)
  628. else
  629. Message(asmr_e_cannot_use_OLDEBP_outside_nested_procedure);
  630. end;
  631. Function TOperand.SetupVar(const s:string;GetOffset : boolean): Boolean;
  632. function symtable_has_localvarsyms(st:TSymtable):boolean;
  633. var
  634. sym : tsym;
  635. i : longint;
  636. begin
  637. result:=false;
  638. for i:=0 to st.SymList.Count-1 do
  639. begin
  640. sym:=tsym(st.SymList[i]);
  641. if sym.typ=localvarsym then
  642. begin
  643. result:=true;
  644. exit;
  645. end;
  646. end;
  647. end;
  648. procedure setconst(l:aint);
  649. begin
  650. { We return the address of the field, just like Delphi/TP }
  651. case opr.typ of
  652. OPR_NONE :
  653. begin
  654. opr.typ:=OPR_CONSTANT;
  655. opr.val:=l;
  656. end;
  657. OPR_CONSTANT :
  658. inc(opr.val,l);
  659. OPR_REFERENCE :
  660. inc(opr.ref.offset,l);
  661. OPR_LOCAL :
  662. inc(opr.localsymofs,l);
  663. else
  664. Message(asmr_e_invalid_operand_type);
  665. end;
  666. end;
  667. { search and sets up the correct fields in the Instr record }
  668. { for the NON-constant identifier passed to the routine. }
  669. { if not found returns FALSE. }
  670. var
  671. sym : tsym;
  672. srsymtable : TSymtable;
  673. harrdef : tarraydef;
  674. indexreg : tregister;
  675. l : aint;
  676. plist : ppropaccesslistitem;
  677. Begin
  678. SetupVar:=false;
  679. asmsearchsym(s,sym,srsymtable);
  680. if sym = nil then
  681. exit;
  682. if sym.typ=absolutevarsym then
  683. begin
  684. if (tabsolutevarsym(sym).abstyp=tovar) then
  685. begin
  686. { Only support simple loads }
  687. plist:=tabsolutevarsym(sym).ref.firstsym;
  688. if assigned(plist) and
  689. (plist^.sltype=sl_load) then
  690. sym:=plist^.sym
  691. else
  692. begin
  693. Message(asmr_e_unsupported_symbol_type);
  694. exit;
  695. end;
  696. end
  697. else
  698. begin
  699. Message(asmr_e_unsupported_symbol_type);
  700. exit;
  701. end;
  702. end;
  703. case sym.typ of
  704. fieldvarsym :
  705. begin
  706. if not tabstractrecordsymtable(sym.owner).is_packed then
  707. setconst(tfieldvarsym(sym).fieldoffset)
  708. else if tfieldvarsym(sym).fieldoffset mod 8 = 0 then
  709. setconst(tfieldvarsym(sym).fieldoffset div 8)
  710. else
  711. Message(asmr_e_packed_element);
  712. hasvar:=true;
  713. SetupVar:=true;
  714. end;
  715. staticvarsym,
  716. localvarsym,
  717. paravarsym :
  718. begin
  719. { we always assume in asm statements that }
  720. { that the variable is valid. }
  721. tabstractvarsym(sym).varstate:=vs_readwritten;
  722. inc(tabstractvarsym(sym).refs);
  723. { variable can't be placed in a register }
  724. tabstractvarsym(sym).varregable:=vr_none;
  725. { and anything may happen with its address }
  726. tabstractvarsym(sym).addr_taken:=true;
  727. case sym.typ of
  728. staticvarsym :
  729. begin
  730. initref;
  731. opr.ref.symbol:=current_asmdata.RefAsmSymbol(tstaticvarsym(sym).mangledname);
  732. end;
  733. paravarsym,
  734. localvarsym :
  735. begin
  736. if opr.typ=OPR_REFERENCE then
  737. begin
  738. indexreg:=opr.ref.base;
  739. if opr.ref.index<>NR_NO then
  740. begin
  741. if indexreg=NR_NO then
  742. indexreg:=opr.ref.index
  743. else
  744. Message(asmr_e_multiple_index);
  745. end;
  746. end
  747. else
  748. indexreg:=NR_NO;
  749. opr.typ:=OPR_LOCAL;
  750. if assigned(current_procinfo.parent) and
  751. not(po_inline in current_procinfo.procdef.procoptions) and
  752. (sym.owner<>current_procinfo.procdef.localst) and
  753. (sym.owner<>current_procinfo.procdef.parast) and
  754. (current_procinfo.procdef.localst.symtablelevel>normal_function_level) and
  755. symtable_has_localvarsyms(current_procinfo.procdef.localst) then
  756. message1(asmr_e_local_para_unreachable,s);
  757. opr.localsym:=tabstractnormalvarsym(sym);
  758. opr.localsymofs:=0;
  759. opr.localindexreg:=indexreg;
  760. opr.localscale:=0;
  761. opr.localgetoffset:=GetOffset;
  762. if paramanager.push_addr_param(tabstractvarsym(sym).varspez,tabstractvarsym(sym).vardef,current_procinfo.procdef.proccalloption) then
  763. SetSize(sizeof(pint),false);
  764. end;
  765. end;
  766. case tabstractvarsym(sym).vardef.typ of
  767. orddef,
  768. enumdef,
  769. pointerdef,
  770. floatdef :
  771. SetSize(tabstractvarsym(sym).getsize,false);
  772. arraydef :
  773. begin
  774. { for arrays try to get the element size, take care of
  775. multiple indexes }
  776. harrdef:=tarraydef(tabstractvarsym(sym).vardef);
  777. while assigned(harrdef.elementdef) and
  778. (harrdef.elementdef.typ=arraydef) do
  779. harrdef:=tarraydef(harrdef.elementdef);
  780. if not is_packed_array(harrdef) then
  781. SetSize(harrdef.elesize,false)
  782. else
  783. begin
  784. if (harrdef.elepackedbitsize mod 8) = 0 then
  785. SetSize(harrdef.elepackedbitsize div 8,false)
  786. end;
  787. end;
  788. end;
  789. hasvar:=true;
  790. SetupVar:=true;
  791. Exit;
  792. end;
  793. constsym :
  794. begin
  795. if tconstsym(sym).consttyp=constord then
  796. begin
  797. setconst(tconstsym(sym).value.valueord.svalue);
  798. SetupVar:=true;
  799. Exit;
  800. end;
  801. end;
  802. typesym :
  803. begin
  804. if ttypesym(sym).typedef.typ in [recorddef,objectdef] then
  805. begin
  806. setconst(0);
  807. SetupVar:=TRUE;
  808. Exit;
  809. end;
  810. end;
  811. procsym :
  812. begin
  813. if opr.typ<>OPR_NONE then
  814. Message(asmr_e_invalid_operand_type);
  815. if Tprocsym(sym).ProcdefList.Count>1 then
  816. Message(asmr_w_calling_overload_func);
  817. l:=opr.ref.offset;
  818. opr.typ:=OPR_SYMBOL;
  819. opr.symbol:=current_asmdata.RefAsmSymbol(tprocdef(tprocsym(sym).ProcdefList[0]).mangledname);
  820. opr.symofs:=l;
  821. hasvar:=true;
  822. SetupVar:=TRUE;
  823. Exit;
  824. end;
  825. else
  826. begin
  827. Message(asmr_e_unsupported_symbol_type);
  828. exit;
  829. end;
  830. end;
  831. end;
  832. procedure TOperand.InitRef;
  833. {*********************************************************************}
  834. { Description: This routine first check if the opcode is of }
  835. { type OPR_NONE, or OPR_REFERENCE , if not it gives out an error. }
  836. { If the operandtype = OPR_NONE or <> OPR_REFERENCE then it sets up }
  837. { the operand type to OPR_REFERENCE, as well as setting up the ref }
  838. { to point to the default segment. }
  839. {*********************************************************************}
  840. var
  841. l : aint;
  842. hsymofs : aint;
  843. hsymbol : tasmsymbol;
  844. reg : tregister;
  845. Begin
  846. case opr.typ of
  847. OPR_REFERENCE :
  848. exit;
  849. OPR_CONSTANT :
  850. begin
  851. l:=opr.val;
  852. opr.typ:=OPR_REFERENCE;
  853. Fillchar(opr.ref,sizeof(treference),0);
  854. opr.Ref.Offset:=l;
  855. end;
  856. OPR_NONE :
  857. begin
  858. opr.typ:=OPR_REFERENCE;
  859. Fillchar(opr.ref,sizeof(treference),0);
  860. end;
  861. OPR_REGISTER :
  862. begin
  863. reg:=opr.reg;
  864. opr.typ:=OPR_REFERENCE;
  865. Fillchar(opr.ref,sizeof(treference),0);
  866. opr.Ref.base:=reg;
  867. end;
  868. OPR_SYMBOL :
  869. begin
  870. hsymbol:=opr.symbol;
  871. hsymofs:=opr.symofs;
  872. opr.typ:=OPR_REFERENCE;
  873. Fillchar(opr.ref,sizeof(treference),0);
  874. opr.ref.symbol:=hsymbol;
  875. opr.ref.offset:=hsymofs;
  876. end;
  877. else
  878. begin
  879. Message(asmr_e_invalid_operand_type);
  880. { Recover }
  881. opr.typ:=OPR_REFERENCE;
  882. Fillchar(opr.ref,sizeof(treference),0);
  883. end;
  884. end;
  885. end;
  886. Function TOperand.CheckOperand: boolean;
  887. {*********************************************************************}
  888. { Description: This routine checks if the operand is of }
  889. { valid, and returns false if it isn't. Does nothing by default. }
  890. {*********************************************************************}
  891. begin
  892. result:=true;
  893. end;
  894. {****************************************************************************
  895. TInstruction
  896. ****************************************************************************}
  897. constructor TInstruction.create(optype : tcoperand);
  898. var
  899. i : longint;
  900. Begin
  901. { these field are set to 0 anyways by the constructor helper (FK)
  902. Opcode:=A_NONE;
  903. Condition:=C_NONE;
  904. Ops:=0;
  905. }
  906. for i:=1 to max_operands do
  907. Operands[i]:=optype.create;
  908. Labeled:=false;
  909. end;
  910. destructor TInstruction.destroy;
  911. var
  912. i : longint;
  913. Begin
  914. for i:=1 to max_operands do
  915. Operands[i].free;
  916. end;
  917. Procedure TInstruction.Swapoperands;
  918. Var
  919. p : toperand;
  920. Begin
  921. case Ops of
  922. 2 :
  923. begin
  924. p:=Operands[1];
  925. Operands[1]:=Operands[2];
  926. Operands[2]:=p;
  927. end;
  928. 3 :
  929. begin
  930. p:=Operands[1];
  931. Operands[1]:=Operands[3];
  932. Operands[3]:=p;
  933. end;
  934. end;
  935. end;
  936. function TInstruction.ConcatInstruction(p:TAsmList) : tai;
  937. var
  938. ai : taicpu;
  939. i : longint;
  940. begin
  941. for i:=1 to Ops do
  942. operands[i].CheckOperand;
  943. ai:=taicpu.op_none(opcode);
  944. ai.Ops:=Ops;
  945. ai.Allocate_oper(Ops);
  946. for i:=1 to Ops do
  947. with operands[i].opr do
  948. begin
  949. case typ of
  950. OPR_CONSTANT :
  951. ai.loadconst(i-1,val);
  952. OPR_REGISTER:
  953. ai.loadreg(i-1,reg);
  954. OPR_SYMBOL:
  955. ai.loadsymbol(i-1,symbol,symofs);
  956. OPR_LOCAL :
  957. ai.loadlocal(i-1,localsym,localsymofs,localindexreg,
  958. localscale,localgetoffset,localforceref);
  959. OPR_REFERENCE:
  960. ai.loadref(i-1,ref);
  961. {$ifdef ARM}
  962. OPR_REGSET:
  963. ai.loadregset(i-1,regset);
  964. OPR_SHIFTEROP:
  965. ai.loadshifterop(i-1,shifterop);
  966. OPR_COND:
  967. ai.loadconditioncode(i-1,cc);
  968. {$endif ARM}
  969. { ignore wrong operand }
  970. OPR_NONE:
  971. ;
  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(AList:TFPHashObjectList;const n:string);
  988. begin
  989. inherited Create(AList,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. current_asmdata.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 TLocalLabelList.CheckEmitted;
  1007. var
  1008. i : longint;
  1009. lab : TLocalLabel;
  1010. begin
  1011. for i:=0 to LocalLabelList.Count-1 do
  1012. begin
  1013. lab:=TLocalLabel(LocalLabelList[i]);
  1014. if not lab.emitted then
  1015. Message1(asmr_e_unknown_label_identifier,lab.name);
  1016. end;
  1017. end;
  1018. function CreateLocalLabel(const s: string; var hl: tasmlabel; emit:boolean):boolean;
  1019. var
  1020. lab : TLocalLabel;
  1021. Begin
  1022. CreateLocalLabel:=true;
  1023. { Check if it already is defined }
  1024. lab:=TLocalLabel(LocalLabellist.Find(s));
  1025. if not assigned(lab) then
  1026. lab:=TLocalLabel.Create(LocalLabellist,s);
  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. searchsym_in_module(tunitsym(srsym).module,Copy(s,i+1,255),srsym,srsymtable)
  1057. else
  1058. begin
  1059. srsym:=nil;
  1060. srsymtable:=nil;
  1061. end;
  1062. end;
  1063. end
  1064. else
  1065. searchsym(s,srsym,srsymtable);
  1066. end;
  1067. Function SearchType(const hs:string;var size:aint): Boolean;
  1068. var
  1069. srsym : tsym;
  1070. srsymtable : TSymtable;
  1071. begin
  1072. result:=false;
  1073. size:=0;
  1074. asmsearchsym(hs,srsym,srsymtable);
  1075. if assigned(srsym) and
  1076. (srsym.typ=typesym) then
  1077. begin
  1078. size:=ttypesym(srsym).typedef.size;
  1079. result:=true;
  1080. end;
  1081. end;
  1082. Function SearchRecordType(const s:string): boolean;
  1083. var
  1084. srsym : tsym;
  1085. srsymtable : TSymtable;
  1086. Begin
  1087. SearchRecordType:=false;
  1088. { Check the constants in symtable }
  1089. asmsearchsym(s,srsym,srsymtable);
  1090. if srsym <> nil then
  1091. Begin
  1092. case srsym.typ of
  1093. typesym :
  1094. begin
  1095. if ttypesym(srsym).typedef.typ in [recorddef,objectdef] then
  1096. begin
  1097. SearchRecordType:=true;
  1098. exit;
  1099. end;
  1100. end;
  1101. fieldvarsym :
  1102. begin
  1103. if (tfieldvarsym(srsym).vardef.typ in [recorddef,objectdef]) then
  1104. begin
  1105. SearchRecordType:=true;
  1106. exit;
  1107. end;
  1108. end;
  1109. end;
  1110. end;
  1111. end;
  1112. Function SearchIConstant(const s:string; var l:aint): boolean;
  1113. {**********************************************************************}
  1114. { Description: Searches for a CONSTANT of name s in either the local }
  1115. { symbol list, then in the global symbol list, and returns the value }
  1116. { of that constant in l. Returns TRUE if successfull, if not found, }
  1117. { or if the constant is not of correct type, then returns FALSE }
  1118. { Remarks: Also handle TRUE and FALSE returning in those cases 1 and 0 }
  1119. { respectively. }
  1120. {**********************************************************************}
  1121. var
  1122. srsym : tsym;
  1123. srsymtable : TSymtable;
  1124. Begin
  1125. SearchIConstant:=false;
  1126. { check for TRUE or FALSE reserved words first }
  1127. if s = 'TRUE' then
  1128. Begin
  1129. SearchIConstant:=TRUE;
  1130. l:=1;
  1131. exit;
  1132. end;
  1133. if s = 'FALSE' then
  1134. Begin
  1135. SearchIConstant:=TRUE;
  1136. l:=0;
  1137. exit;
  1138. end;
  1139. { Check the constants in symtable }
  1140. asmsearchsym(s,srsym,srsymtable);
  1141. if srsym <> nil then
  1142. Begin
  1143. case srsym.typ of
  1144. constsym :
  1145. begin
  1146. if tconstsym(srsym).consttyp=constord then
  1147. Begin
  1148. l:=tconstsym(srsym).value.valueord.svalue;
  1149. SearchIConstant:=TRUE;
  1150. exit;
  1151. end;
  1152. end;
  1153. enumsym:
  1154. Begin
  1155. l:=tenumsym(srsym).value;
  1156. SearchIConstant:=TRUE;
  1157. exit;
  1158. end;
  1159. end;
  1160. end;
  1161. end;
  1162. Function GetRecordOffsetSize(s:string;Var Offset: aint;var Size:aint; var mangledname: string; needvmtofs: boolean):boolean;
  1163. { search and returns the offset and size of records/objects of the base }
  1164. { with field name setup in field. }
  1165. { returns FALSE if not found. }
  1166. { used when base is a variable or a typed constant name. }
  1167. var
  1168. st : TSymtable;
  1169. harrdef : tarraydef;
  1170. sym : tsym;
  1171. srsymtable : TSymtable;
  1172. i : longint;
  1173. base : string;
  1174. procdef: tprocdef;
  1175. Begin
  1176. GetRecordOffsetSize:=FALSE;
  1177. Offset:=0;
  1178. Size:=0;
  1179. mangledname:='';
  1180. i:=pos('.',s);
  1181. if i=0 then
  1182. i:=255;
  1183. base:=Copy(s,1,i-1);
  1184. delete(s,1,i);
  1185. if base='SELF' then
  1186. st:=current_objectdef.symtable
  1187. else
  1188. begin
  1189. asmsearchsym(base,sym,srsymtable);
  1190. st:=nil;
  1191. { we can start with a var,type,typedconst }
  1192. if assigned(sym) then
  1193. case sym.typ of
  1194. staticvarsym,
  1195. localvarsym,
  1196. paravarsym :
  1197. st:=Tabstractvarsym(sym).vardef.GetSymtable(gs_record);
  1198. typesym :
  1199. st:=Ttypesym(sym).typedef.GetSymtable(gs_record);
  1200. end
  1201. else
  1202. s:='';
  1203. end;
  1204. { now walk all recordsymtables }
  1205. while assigned(st) and (s<>'') do
  1206. begin
  1207. { load next field in base }
  1208. i:=pos('.',s);
  1209. if i=0 then
  1210. i:=255;
  1211. base:=Copy(s,1,i-1);
  1212. delete(s,1,i);
  1213. if st.symtabletype=ObjectSymtable then
  1214. sym:=search_class_member(tobjectdef(st.defowner),base)
  1215. else
  1216. sym:=tsym(st.Find(base));
  1217. if not assigned(sym) then
  1218. begin
  1219. GetRecordOffsetSize:=false;
  1220. exit;
  1221. end;
  1222. st:=nil;
  1223. case sym.typ of
  1224. fieldvarsym :
  1225. with Tfieldvarsym(sym) do
  1226. begin
  1227. if not tabstractrecordsymtable(sym.owner).is_packed then
  1228. inc(Offset,fieldoffset)
  1229. else if tfieldvarsym(sym).fieldoffset mod 8 = 0 then
  1230. inc(Offset,fieldoffset div 8)
  1231. else
  1232. Message(asmr_e_packed_element);
  1233. size:=getsize;
  1234. case vardef.typ of
  1235. arraydef :
  1236. begin
  1237. { for arrays try to get the element size, take care of
  1238. multiple indexes }
  1239. harrdef:=tarraydef(vardef);
  1240. while assigned(harrdef.elementdef) and
  1241. (harrdef.elementdef.typ=arraydef) do
  1242. harrdef:=tarraydef(harrdef.elementdef);
  1243. if not is_packed_array(harrdef) then
  1244. size:=harrdef.elesize
  1245. else
  1246. begin
  1247. if (harrdef.elepackedbitsize mod 8) <> 0 then
  1248. Message(asmr_e_packed_element);
  1249. size := (harrdef.elepackedbitsize + 7) div 8;
  1250. end;
  1251. end;
  1252. recorddef :
  1253. st:=trecorddef(vardef).symtable;
  1254. objectdef :
  1255. st:=tobjectdef(vardef).symtable;
  1256. end;
  1257. end;
  1258. procsym:
  1259. begin
  1260. st:=nil;
  1261. if Tprocsym(sym).ProcdefList.Count>1 then
  1262. Message(asmr_w_calling_overload_func);
  1263. procdef:=tprocdef(tprocsym(sym).ProcdefList[0]);
  1264. if (not needvmtofs) then
  1265. begin
  1266. mangledname:=procdef.mangledname;
  1267. end
  1268. else
  1269. begin
  1270. { can only get the vmtoffset of virtual methods }
  1271. if not(po_virtualmethod in procdef.procoptions) then
  1272. Message1(asmr_e_no_vmtoffset_possible,FullTypeName(procdef,nil))
  1273. else
  1274. begin
  1275. { size = sizeof(target_system_pointer) }
  1276. size:=sizeof(pint);
  1277. offset:=procdef._class.vmtmethodoffset(procdef.extnumber)
  1278. end;
  1279. end;
  1280. { if something comes after the procsym, it's invalid assembler syntax }
  1281. GetRecordOffsetSize:=(s='');
  1282. exit;
  1283. end;
  1284. end;
  1285. end;
  1286. { Support Field.Type as typecasting }
  1287. if (st=nil) and (s<>'') then
  1288. begin
  1289. asmsearchsym(s,sym,srsymtable);
  1290. if assigned(sym) and (sym.typ=typesym) then
  1291. begin
  1292. size:=ttypesym(sym).typedef.size;
  1293. s:=''
  1294. end;
  1295. end;
  1296. GetRecordOffsetSize:=(s='');
  1297. end;
  1298. Function SearchLabel(const s: string; var hl: tasmlabel;emit:boolean): boolean;
  1299. var
  1300. sym : tsym;
  1301. srsymtable : TSymtable;
  1302. hs : string;
  1303. Begin
  1304. hl:=nil;
  1305. SearchLabel:=false;
  1306. { Check for pascal labels, which are case insensetive }
  1307. hs:=upper(s);
  1308. asmsearchsym(hs,sym,srsymtable);
  1309. if sym=nil then
  1310. exit;
  1311. case sym.typ of
  1312. labelsym :
  1313. begin
  1314. if symtablestack.top.symtablelevel<>srsymtable.symtablelevel then
  1315. begin
  1316. Tlabelsym(sym).nonlocal:=true;
  1317. if emit then
  1318. exclude(current_procinfo.procdef.procoptions,po_inline);
  1319. end;
  1320. if not(assigned(tlabelsym(sym).asmblocklabel)) then
  1321. if Tlabelsym(sym).nonlocal then
  1322. current_asmdata.getglobaljumplabel(tlabelsym(sym).asmblocklabel)
  1323. else
  1324. current_asmdata.getjumplabel(tlabelsym(sym).asmblocklabel);
  1325. hl:=tlabelsym(sym).asmblocklabel;
  1326. if emit then
  1327. tlabelsym(sym).defined:=true
  1328. else
  1329. tlabelsym(sym).used:=true;
  1330. SearchLabel:=true;
  1331. end;
  1332. end;
  1333. end;
  1334. {*************************************************************************}
  1335. { Instruction Generation Utilities }
  1336. {*************************************************************************}
  1337. Procedure ConcatString(p : TAsmList;s:string);
  1338. {*********************************************************************}
  1339. { PROCEDURE ConcatString(s:string); }
  1340. { Description: This routine adds the character chain pointed to in }
  1341. { s to the instruction linked list. }
  1342. {*********************************************************************}
  1343. Var
  1344. pc: PChar;
  1345. Begin
  1346. getmem(pc,length(s)+1);
  1347. p.concat(Tai_string.Create_pchar(strpcopy(pc,s),length(s)));
  1348. end;
  1349. Procedure ConcatPasString(p : TAsmList;s:string);
  1350. {*********************************************************************}
  1351. { PROCEDURE ConcatPasString(s:string); }
  1352. { Description: This routine adds the character chain pointed to in }
  1353. { s to the instruction linked list, contrary to ConcatString it }
  1354. { uses a pascal style string, so it conserves null characters. }
  1355. {*********************************************************************}
  1356. Begin
  1357. p.concat(Tai_string.Create(s));
  1358. end;
  1359. Procedure ConcatConstant(p: TAsmList; value: aint; constsize:byte);
  1360. {*********************************************************************}
  1361. { PROCEDURE ConcatConstant(value: aint; maxvalue: aint); }
  1362. { Description: This routine adds the value constant to the current }
  1363. { instruction linked list. }
  1364. { maxvalue -> indicates the size of the data to initialize: }
  1365. { $ff -> create a byte node. }
  1366. { $ffff -> create a word node. }
  1367. { $ffffffff -> create a dword node. }
  1368. {*********************************************************************}
  1369. var
  1370. rangelo,rangehi : int64;
  1371. Begin
  1372. case constsize of
  1373. 1 :
  1374. begin
  1375. p.concat(Tai_const.Create_8bit(byte(value)));
  1376. rangelo:=low(shortint);
  1377. rangehi:=high(byte);
  1378. end;
  1379. 2 :
  1380. begin
  1381. p.concat(Tai_const.Create_16bit(word(value)));
  1382. rangelo:=low(smallint);
  1383. rangehi:=high(word);
  1384. end;
  1385. 4 :
  1386. begin
  1387. p.concat(Tai_const.Create_32bit(longint(value)));
  1388. rangelo:=low(longint);
  1389. rangehi:=high(cardinal);
  1390. end;
  1391. 8 :
  1392. begin
  1393. p.concat(Tai_const.Create_64bit(int64(value)));
  1394. rangelo:=0;
  1395. rangehi:=0;
  1396. end;
  1397. else
  1398. internalerror(200405011);
  1399. end;
  1400. { check for out of bounds }
  1401. if (rangelo<>0) and
  1402. ((value>rangehi) or (value<rangelo)) then
  1403. Message(asmr_e_constant_out_of_bounds);
  1404. end;
  1405. Procedure ConcatConstSymbol(p : TAsmList;const sym:string;symtyp:tasmsymtype;l:aint);
  1406. begin
  1407. p.concat(Tai_const.Createname(sym,l));
  1408. end;
  1409. Procedure ConcatRealConstant(p : TAsmList;value: bestreal; real_typ : tfloattype);
  1410. {***********************************************************************}
  1411. { PROCEDURE ConcatRealConstant(value: bestreal; real_typ : tfloattype); }
  1412. { Description: This routine adds the value constant to the current }
  1413. { instruction linked list. }
  1414. { real_typ -> indicates the type of the real data to initialize: }
  1415. { s32real -> create a single node. }
  1416. { s64real -> create a double node. }
  1417. { s80real -> create an extended node. }
  1418. { s64bit -> create a comp node. }
  1419. { f32bit -> create a fixed node. (not used normally) }
  1420. {***********************************************************************}
  1421. Begin
  1422. case real_typ of
  1423. s32real : p.concat(Tai_real_32bit.Create(value));
  1424. s64real :
  1425. {$ifdef ARM}
  1426. if is_double_hilo_swapped then
  1427. p.concat(Tai_real_64bit.Create_hiloswapped(value))
  1428. else
  1429. {$endif ARM}
  1430. p.concat(Tai_real_64bit.Create(value));
  1431. s80real : p.concat(Tai_real_80bit.Create(value));
  1432. s64comp : p.concat(Tai_comp_64bit.Create(trunc(value)));
  1433. end;
  1434. end;
  1435. Procedure ConcatLabel(p: TAsmList;var l : tasmlabel);
  1436. {*********************************************************************}
  1437. { PROCEDURE ConcatLabel }
  1438. { Description: This routine either emits a label or a labeled }
  1439. { instruction to the linked list of instructions. }
  1440. {*********************************************************************}
  1441. begin
  1442. p.concat(Tai_label.Create(l));
  1443. end;
  1444. procedure ConcatAlign(p:TAsmList;l:aint);
  1445. {*********************************************************************}
  1446. { PROCEDURE ConcatPublic }
  1447. { Description: This routine emits an global definition to the }
  1448. { linked list of instructions.(used by AT&T styled asm) }
  1449. {*********************************************************************}
  1450. begin
  1451. p.concat(Tai_align.Create(l));
  1452. end;
  1453. procedure ConcatPublic(p:TAsmList;const s : string);
  1454. {*********************************************************************}
  1455. { PROCEDURE ConcatPublic }
  1456. { Description: This routine emits an global definition to the }
  1457. { linked list of instructions.(used by AT&T styled asm) }
  1458. {*********************************************************************}
  1459. begin
  1460. p.concat(Tai_symbol.Createname_global(s,AT_LABEL,0));
  1461. end;
  1462. procedure ConcatLocal(p:TAsmList;const s : string);
  1463. {*********************************************************************}
  1464. { PROCEDURE ConcatLocal }
  1465. { Description: This routine emits an local definition to the }
  1466. { linked list of instructions. }
  1467. {*********************************************************************}
  1468. begin
  1469. p.concat(Tai_symbol.Createname(s,AT_LABEL,0));
  1470. end;
  1471. end.