rax86.pas 22 KB

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  1. {
  2. Copyright (c) 1998-2002 by Carl Eric Codere and Peter Vreman
  3. Handles the common x86 assembler reader routines
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. {
  18. Contains the common x86 (i386 and x86-64) assembler reader routines.
  19. }
  20. unit rax86;
  21. {$i fpcdefs.inc}
  22. interface
  23. uses
  24. aasmbase,aasmtai,aasmdata,aasmcpu,
  25. cpubase,rautils,cclasses;
  26. { Parser helpers }
  27. function is_prefix(t:tasmop):boolean;
  28. function is_override(t:tasmop):boolean;
  29. Function CheckPrefix(prefixop,op:tasmop): Boolean;
  30. Function CheckOverride(overrideop,op:tasmop): Boolean;
  31. Procedure FWaitWarning;
  32. type
  33. Tx86Operand=class(TOperand)
  34. opsize : topsize;
  35. Procedure SetSize(_size:longint;force:boolean);override;
  36. Procedure SetCorrectSize(opcode:tasmop);override;
  37. Function CheckOperand: boolean; override;
  38. end;
  39. Tx86Instruction=class(TInstruction)
  40. OpOrder : TOperandOrder;
  41. opsize : topsize;
  42. constructor Create(optype : tcoperand);override;
  43. { Operand sizes }
  44. procedure AddReferenceSizes;
  45. procedure SetInstructionOpsize;
  46. procedure CheckOperandSizes;
  47. procedure CheckNonCommutativeOpcodes;
  48. procedure SwapOperands;
  49. { opcode adding }
  50. function ConcatInstruction(p : TAsmList) : tai;override;
  51. end;
  52. const
  53. AsmPrefixes = 6;
  54. AsmPrefix : array[0..AsmPrefixes-1] of TasmOP =(
  55. A_LOCK,A_REP,A_REPE,A_REPNE,A_REPNZ,A_REPZ
  56. );
  57. AsmOverrides = 6;
  58. AsmOverride : array[0..AsmOverrides-1] of TasmOP =(
  59. A_SEGCS,A_SEGES,A_SEGDS,A_SEGFS,A_SEGGS,A_SEGSS
  60. );
  61. CondAsmOps=3;
  62. CondAsmOp:array[0..CondAsmOps-1] of TasmOp=(
  63. A_CMOVcc, A_Jcc, A_SETcc
  64. );
  65. CondAsmOpStr:array[0..CondAsmOps-1] of string[4]=(
  66. 'CMOV','J','SET'
  67. );
  68. implementation
  69. uses
  70. globtype,globals,systems,verbose,
  71. procinfo,
  72. cpuinfo,cgbase,cgutils,
  73. itcpugas,cgx86;
  74. {*****************************************************************************
  75. Parser Helpers
  76. *****************************************************************************}
  77. function is_prefix(t:tasmop):boolean;
  78. var
  79. i : longint;
  80. Begin
  81. is_prefix:=false;
  82. for i:=1 to AsmPrefixes do
  83. if t=AsmPrefix[i-1] then
  84. begin
  85. is_prefix:=true;
  86. exit;
  87. end;
  88. end;
  89. function is_override(t:tasmop):boolean;
  90. var
  91. i : longint;
  92. Begin
  93. is_override:=false;
  94. for i:=1 to AsmOverrides do
  95. if t=AsmOverride[i-1] then
  96. begin
  97. is_override:=true;
  98. exit;
  99. end;
  100. end;
  101. Function CheckPrefix(prefixop,op:tasmop): Boolean;
  102. { Checks if the prefix is valid with the following opcode }
  103. { return false if not, otherwise true }
  104. Begin
  105. CheckPrefix := TRUE;
  106. (* Case prefix of
  107. A_REP,A_REPNE,A_REPE:
  108. Case opcode Of
  109. A_SCASB,A_SCASW,A_SCASD,
  110. A_INS,A_OUTS,A_MOVS,A_CMPS,A_LODS,A_STOS:;
  111. Else
  112. Begin
  113. CheckPrefix := FALSE;
  114. exit;
  115. end;
  116. end; { case }
  117. A_LOCK:
  118. Case opcode Of
  119. A_BT,A_BTS,A_BTR,A_BTC,A_XCHG,A_ADD,A_OR,A_ADC,A_SBB,A_AND,A_SUB,
  120. A_XOR,A_NOT,A_NEG,A_INC,A_DEC:;
  121. Else
  122. Begin
  123. CheckPrefix := FALSE;
  124. Exit;
  125. end;
  126. end; { case }
  127. A_NONE: exit; { no prefix here }
  128. else
  129. CheckPrefix := FALSE;
  130. end; { end case } *)
  131. end;
  132. Function CheckOverride(overrideop,op:tasmop): Boolean;
  133. { Check if the override is valid, and if so then }
  134. { update the instr variable accordingly. }
  135. Begin
  136. CheckOverride := true;
  137. { Case instr.getinstruction of
  138. A_MOVS,A_XLAT,A_CMPS:
  139. Begin
  140. CheckOverride := TRUE;
  141. Message(assem_e_segment_override_not_supported);
  142. end
  143. end }
  144. end;
  145. Procedure FWaitWarning;
  146. begin
  147. if (target_info.system=system_i386_GO32V2) and (cs_fp_emulation in current_settings.moduleswitches) then
  148. Message(asmr_w_fwait_emu_prob);
  149. end;
  150. {*****************************************************************************
  151. TX86Operand
  152. *****************************************************************************}
  153. Procedure Tx86Operand.SetSize(_size:longint;force:boolean);
  154. begin
  155. inherited SetSize(_size,force);
  156. { OS_64 will be set to S_L and be fixed later
  157. in SetCorrectSize }
  158. opsize:=TCGSize2Opsize[size];
  159. end;
  160. Procedure Tx86Operand.SetCorrectSize(opcode:tasmop);
  161. begin
  162. if gas_needsuffix[opcode]=attsufFPU then
  163. begin
  164. case size of
  165. OS_32 : opsize:=S_FS;
  166. OS_64 : opsize:=S_FL;
  167. end;
  168. end
  169. else if gas_needsuffix[opcode]=attsufFPUint then
  170. begin
  171. case size of
  172. OS_16 : opsize:=S_IS;
  173. OS_32 : opsize:=S_IL;
  174. OS_64 : opsize:=S_IQ;
  175. end;
  176. end;
  177. end;
  178. Function Tx86Operand.CheckOperand: boolean;
  179. begin
  180. result:=true;
  181. if (opr.typ=OPR_Reference) then
  182. begin
  183. if not hasvar then
  184. begin
  185. if (getsupreg(opr.ref.base)=RS_EBP) and (opr.ref.offset>0) then
  186. begin
  187. if current_procinfo.procdef.proccalloption=pocall_register then
  188. message(asmr_w_no_direct_ebp_for_parameter)
  189. else
  190. message(asmr_w_direct_ebp_for_parameter_regcall);
  191. end
  192. else if (getsupreg(opr.ref.base)=RS_EBP) and (opr.ref.offset<0) then
  193. message(asmr_w_direct_ebp_neg_offset)
  194. else if (getsupreg(opr.ref.base)=RS_ESP) and (opr.ref.offset<0) then
  195. message(asmr_w_direct_esp_neg_offset);
  196. end;
  197. if (cs_create_pic in current_settings.moduleswitches) and
  198. assigned(opr.ref.symbol) and
  199. not assigned(opr.ref.relsymbol) and
  200. (opr.ref.refaddr<>addr_pic) then
  201. begin
  202. if (opr.ref.symbol.name <> '_GLOBAL_OFFSET_TABLE_') then
  203. begin
  204. message(asmr_e_need_pic_ref);
  205. result:=false;
  206. end
  207. else
  208. opr.ref.refaddr:=addr_pic;
  209. end;
  210. end;
  211. end;
  212. {*****************************************************************************
  213. T386Instruction
  214. *****************************************************************************}
  215. constructor Tx86Instruction.Create(optype : tcoperand);
  216. begin
  217. inherited Create(optype);
  218. Opsize:=S_NO;
  219. end;
  220. procedure Tx86Instruction.SwapOperands;
  221. begin
  222. Inherited SwapOperands;
  223. { mark the correct order }
  224. if OpOrder=op_intel then
  225. OpOrder:=op_att
  226. else
  227. OpOrder:=op_intel;
  228. end;
  229. procedure Tx86Instruction.AddReferenceSizes;
  230. { this will add the sizes for references like [esi] which do not
  231. have the size set yet, it will take only the size if the other
  232. operand is a register }
  233. var
  234. operand2,i : longint;
  235. s : tasmsymbol;
  236. so : aint;
  237. begin
  238. for i:=1 to ops do
  239. begin
  240. operands[i].SetCorrectSize(opcode);
  241. if tx86operand(operands[i]).opsize=S_NO then
  242. begin
  243. {$ifdef x86_64}
  244. if (opcode=A_MOVQ) and
  245. (ops=2) and
  246. (operands[1].opr.typ=OPR_CONSTANT) then
  247. opsize:=S_Q
  248. else
  249. {$endif x86_64}
  250. case operands[i].Opr.Typ of
  251. OPR_LOCAL,
  252. OPR_REFERENCE :
  253. begin
  254. if i=2 then
  255. operand2:=1
  256. else
  257. operand2:=2;
  258. if operand2<ops then
  259. begin
  260. { Only allow register as operand to take the size from }
  261. if operands[operand2].opr.typ=OPR_REGISTER then
  262. begin
  263. if ((opcode<>A_MOVD) and
  264. (opcode<>A_CVTSI2SS)) then
  265. tx86operand(operands[i]).opsize:=tx86operand(operands[operand2]).opsize;
  266. end
  267. else
  268. begin
  269. { if no register then take the opsize (which is available with ATT),
  270. if not availble then give an error }
  271. if opsize<>S_NO then
  272. tx86operand(operands[i]).opsize:=opsize
  273. else
  274. begin
  275. if (m_delphi in current_settings.modeswitches) then
  276. Message(asmr_w_unable_to_determine_reference_size_using_dword)
  277. else
  278. Message(asmr_e_unable_to_determine_reference_size);
  279. { recovery }
  280. tx86operand(operands[i]).opsize:=S_L;
  281. end;
  282. end;
  283. end
  284. else
  285. begin
  286. if opsize<>S_NO then
  287. tx86operand(operands[i]).opsize:=opsize
  288. end;
  289. end;
  290. OPR_SYMBOL :
  291. begin
  292. { Fix lea which need a reference }
  293. if opcode=A_LEA then
  294. begin
  295. s:=operands[i].opr.symbol;
  296. so:=operands[i].opr.symofs;
  297. operands[i].opr.typ:=OPR_REFERENCE;
  298. Fillchar(operands[i].opr.ref,sizeof(treference),0);
  299. operands[i].opr.ref.symbol:=s;
  300. operands[i].opr.ref.offset:=so;
  301. end;
  302. {$ifdef x86_64}
  303. tx86operand(operands[i]).opsize:=S_Q;
  304. {$else x86_64}
  305. tx86operand(operands[i]).opsize:=S_L;
  306. {$endif x86_64}
  307. end;
  308. end;
  309. end;
  310. end;
  311. end;
  312. procedure Tx86Instruction.SetInstructionOpsize;
  313. begin
  314. if opsize<>S_NO then
  315. exit;
  316. if (OpOrder=op_intel) then
  317. SwapOperands;
  318. case ops of
  319. 0 : ;
  320. 1 :
  321. begin
  322. { "push es" must be stored as a long PM }
  323. if ((opcode=A_PUSH) or
  324. (opcode=A_POP)) and
  325. (operands[1].opr.typ=OPR_REGISTER) and
  326. is_segment_reg(operands[1].opr.reg) then
  327. opsize:=S_L
  328. else
  329. opsize:=tx86operand(operands[1]).opsize;
  330. end;
  331. 2 :
  332. begin
  333. case opcode of
  334. A_MOVZX,A_MOVSX :
  335. begin
  336. if tx86operand(operands[1]).opsize=S_NO then
  337. begin
  338. tx86operand(operands[1]).opsize:=S_B;
  339. if (m_delphi in current_settings.modeswitches) then
  340. Message(asmr_w_unable_to_determine_reference_size_using_byte)
  341. else
  342. Message(asmr_e_unable_to_determine_reference_size);
  343. end;
  344. case tx86operand(operands[1]).opsize of
  345. S_W :
  346. case tx86operand(operands[2]).opsize of
  347. S_L :
  348. opsize:=S_WL;
  349. end;
  350. S_B :
  351. begin
  352. case tx86operand(operands[2]).opsize of
  353. S_W :
  354. opsize:=S_BW;
  355. S_L :
  356. opsize:=S_BL;
  357. end;
  358. end;
  359. end;
  360. end;
  361. A_MOVD : { movd is a move from a mmx register to a
  362. 32 bit register or memory, so no opsize is correct here PM }
  363. exit;
  364. A_MOVQ :
  365. opsize:=S_IQ;
  366. A_OUT :
  367. opsize:=tx86operand(operands[1]).opsize;
  368. else
  369. opsize:=tx86operand(operands[2]).opsize;
  370. end;
  371. end;
  372. 3 :
  373. opsize:=tx86operand(operands[3]).opsize;
  374. end;
  375. end;
  376. procedure Tx86Instruction.CheckOperandSizes;
  377. var
  378. sizeerr : boolean;
  379. i : longint;
  380. begin
  381. { Check only the most common opcodes here, the others are done in
  382. the assembler pass }
  383. case opcode of
  384. A_PUSH,A_POP,A_DEC,A_INC,A_NOT,A_NEG,
  385. A_CMP,A_MOV,
  386. A_ADD,A_SUB,A_ADC,A_SBB,
  387. A_AND,A_OR,A_TEST,A_XOR: ;
  388. else
  389. exit;
  390. end;
  391. { Handle the BW,BL,WL separatly }
  392. sizeerr:=false;
  393. { special push/pop selector case }
  394. if ((opcode=A_PUSH) or
  395. (opcode=A_POP)) and
  396. (operands[1].opr.typ=OPR_REGISTER) and
  397. is_segment_reg(operands[1].opr.reg) then
  398. exit;
  399. if opsize in [S_BW,S_BL,S_WL] then
  400. begin
  401. if ops<>2 then
  402. sizeerr:=true
  403. else
  404. begin
  405. case opsize of
  406. S_BW :
  407. sizeerr:=(tx86operand(operands[1]).opsize<>S_B) or (tx86operand(operands[2]).opsize<>S_W);
  408. S_BL :
  409. sizeerr:=(tx86operand(operands[1]).opsize<>S_B) or (tx86operand(operands[2]).opsize<>S_L);
  410. S_WL :
  411. sizeerr:=(tx86operand(operands[1]).opsize<>S_W) or (tx86operand(operands[2]).opsize<>S_L);
  412. end;
  413. end;
  414. end
  415. else
  416. begin
  417. for i:=1 to ops do
  418. begin
  419. if (operands[i].opr.typ<>OPR_CONSTANT) and
  420. (tx86operand(operands[i]).opsize in [S_B,S_W,S_L]) and
  421. (tx86operand(operands[i]).opsize<>opsize) then
  422. sizeerr:=true;
  423. end;
  424. end;
  425. if sizeerr then
  426. begin
  427. { if range checks are on then generate an error }
  428. if (cs_compilesystem in current_settings.moduleswitches) or
  429. not (cs_check_range in current_settings.localswitches) then
  430. Message(asmr_w_size_suffix_and_dest_dont_match)
  431. else
  432. Message(asmr_e_size_suffix_and_dest_dont_match);
  433. end;
  434. end;
  435. { This check must be done with the operand in ATT order
  436. i.e.after swapping in the intel reader
  437. but before swapping in the NASM and TASM writers PM }
  438. procedure Tx86Instruction.CheckNonCommutativeOpcodes;
  439. begin
  440. if (OpOrder=op_intel) then
  441. SwapOperands;
  442. if (
  443. (ops=2) and
  444. (operands[1].opr.typ=OPR_REGISTER) and
  445. (operands[2].opr.typ=OPR_REGISTER) and
  446. { if the first is ST and the second is also a register
  447. it is necessarily ST1 .. ST7 }
  448. ((operands[1].opr.reg=NR_ST) or
  449. (operands[1].opr.reg=NR_ST0))
  450. ) or
  451. (ops=0) then
  452. if opcode=A_FSUBR then
  453. opcode:=A_FSUB
  454. else if opcode=A_FSUB then
  455. opcode:=A_FSUBR
  456. else if opcode=A_FDIVR then
  457. opcode:=A_FDIV
  458. else if opcode=A_FDIV then
  459. opcode:=A_FDIVR
  460. else if opcode=A_FSUBRP then
  461. opcode:=A_FSUBP
  462. else if opcode=A_FSUBP then
  463. opcode:=A_FSUBRP
  464. else if opcode=A_FDIVRP then
  465. opcode:=A_FDIVP
  466. else if opcode=A_FDIVP then
  467. opcode:=A_FDIVRP;
  468. if (
  469. (ops=1) and
  470. (operands[1].opr.typ=OPR_REGISTER) and
  471. (getregtype(operands[1].opr.reg)=R_FPUREGISTER) and
  472. (operands[1].opr.reg<>NR_ST) and
  473. (operands[1].opr.reg<>NR_ST0)
  474. ) then
  475. if opcode=A_FSUBRP then
  476. opcode:=A_FSUBP
  477. else if opcode=A_FSUBP then
  478. opcode:=A_FSUBRP
  479. else if opcode=A_FDIVRP then
  480. opcode:=A_FDIVP
  481. else if opcode=A_FDIVP then
  482. opcode:=A_FDIVRP;
  483. end;
  484. {*****************************************************************************
  485. opcode Adding
  486. *****************************************************************************}
  487. function Tx86Instruction.ConcatInstruction(p : TAsmList) : tai;
  488. var
  489. siz : topsize;
  490. i,asize : longint;
  491. ai : taicpu;
  492. begin
  493. if (OpOrder=op_intel) then
  494. SwapOperands;
  495. ai:=nil;
  496. for i:=1 to Ops do
  497. if not operands[i].CheckOperand then
  498. exit;
  499. { Get Opsize }
  500. if (opsize<>S_NO) or (Ops=0) then
  501. siz:=opsize
  502. else
  503. begin
  504. if (Ops=2) and (operands[1].opr.typ=OPR_REGISTER) then
  505. siz:=tx86operand(operands[1]).opsize
  506. else
  507. siz:=tx86operand(operands[Ops]).opsize;
  508. { MOVD should be of size S_LQ or S_QL, but these do not exist PM }
  509. if (ops=2) and
  510. (tx86operand(operands[1]).opsize<>S_NO) and
  511. (tx86operand(operands[2]).opsize<>S_NO) and
  512. (tx86operand(operands[1]).opsize<>tx86operand(operands[2]).opsize) then
  513. siz:=S_NO;
  514. end;
  515. if ((opcode=A_MOVD)or
  516. (opcode=A_CVTSI2SS)) and
  517. ((tx86operand(operands[1]).opsize=S_NO) or
  518. (tx86operand(operands[2]).opsize=S_NO)) then
  519. siz:=S_NO;
  520. { NASM does not support FADD without args
  521. as alias of FADDP
  522. and GNU AS interprets FADD without operand differently
  523. for version 2.9.1 and 2.9.5 !! }
  524. if (ops=0) and
  525. ((opcode=A_FADD) or
  526. (opcode=A_FMUL) or
  527. (opcode=A_FSUB) or
  528. (opcode=A_FSUBR) or
  529. (opcode=A_FDIV) or
  530. (opcode=A_FDIVR)) then
  531. begin
  532. if opcode=A_FADD then
  533. opcode:=A_FADDP
  534. else if opcode=A_FMUL then
  535. opcode:=A_FMULP
  536. else if opcode=A_FSUB then
  537. opcode:=A_FSUBP
  538. else if opcode=A_FSUBR then
  539. opcode:=A_FSUBRP
  540. else if opcode=A_FDIV then
  541. opcode:=A_FDIVP
  542. else if opcode=A_FDIVR then
  543. opcode:=A_FDIVRP;
  544. message1(asmr_w_fadd_to_faddp,std_op2str[opcode]);
  545. end;
  546. {It is valid to specify some instructions without operand size.}
  547. if siz=S_NO then
  548. begin
  549. if (ops=1) and (opcode=A_INT) then
  550. siz:=S_B;
  551. if (ops=1) and (opcode=A_RET) or (opcode=A_RETN) or (opcode=A_RETF) then
  552. siz:=S_W;
  553. if (ops=1) and (opcode=A_PUSH) then
  554. begin
  555. {We are a 32 compiler, assume 32-bit by default. This is Delphi
  556. compatible but bad coding practise.}
  557. siz:=S_L;
  558. message(asmr_w_unable_to_determine_reference_size_using_dword);
  559. end;
  560. if (opcode=A_JMP) or (opcode=A_JCC) or (opcode=A_CALL) then
  561. if ops=1 then
  562. siz:=S_NEAR
  563. else
  564. siz:=S_FAR;
  565. end;
  566. {$ifdef x86_64}
  567. { Convert movq with at least one general registers or constant to a mov instruction }
  568. if (opcode=A_MOVQ) and
  569. (ops=2) and
  570. (
  571. (operands[1].opr.typ=OPR_REGISTER) or
  572. (operands[2].opr.typ=OPR_REGISTER) or
  573. (operands[1].opr.typ=OPR_CONSTANT)
  574. ) then
  575. opcode:=A_MOV;
  576. {$endif x86_64}
  577. { GNU AS interprets FDIV without operand differently
  578. for version 2.9.1 and 2.10
  579. we add explicit args to it !! }
  580. if (ops=0) and
  581. ((opcode=A_FSUBP) or
  582. (opcode=A_FSUBRP) or
  583. (opcode=A_FDIVP) or
  584. (opcode=A_FDIVRP) or
  585. (opcode=A_FSUB) or
  586. (opcode=A_FSUBR) or
  587. (opcode=A_FADD) or
  588. (opcode=A_FADDP) or
  589. (opcode=A_FDIV) or
  590. (opcode=A_FDIVR)) then
  591. begin
  592. message1(asmr_w_adding_explicit_args_fXX,std_op2str[opcode]);
  593. ops:=2;
  594. operands[1].opr.typ:=OPR_REGISTER;
  595. operands[2].opr.typ:=OPR_REGISTER;
  596. operands[1].opr.reg:=NR_ST0;
  597. operands[2].opr.reg:=NR_ST1;
  598. end;
  599. if (ops=1) and
  600. (
  601. (operands[1].opr.typ=OPR_REGISTER) and
  602. (getregtype(operands[1].opr.reg)=R_FPUREGISTER) and
  603. (operands[1].opr.reg<>NR_ST) and
  604. (operands[1].opr.reg<>NR_ST0)
  605. ) and
  606. (
  607. (opcode=A_FSUBP) or
  608. (opcode=A_FSUBRP) or
  609. (opcode=A_FDIVP) or
  610. (opcode=A_FDIVRP) or
  611. (opcode=A_FADDP) or
  612. (opcode=A_FMULP)
  613. ) then
  614. begin
  615. message1(asmr_w_adding_explicit_first_arg_fXX,std_op2str[opcode]);
  616. ops:=2;
  617. operands[2].opr.typ:=OPR_REGISTER;
  618. operands[2].opr.reg:=operands[1].opr.reg;
  619. operands[1].opr.reg:=NR_ST0;
  620. end;
  621. if (ops=1) and
  622. (
  623. (operands[1].opr.typ=OPR_REGISTER) and
  624. (getregtype(operands[1].opr.reg)=R_FPUREGISTER) and
  625. (operands[1].opr.reg<>NR_ST) and
  626. (operands[1].opr.reg<>NR_ST0)
  627. ) and
  628. (
  629. (opcode=A_FSUB) or
  630. (opcode=A_FSUBR) or
  631. (opcode=A_FDIV) or
  632. (opcode=A_FDIVR) or
  633. (opcode=A_FADD) or
  634. (opcode=A_FMUL)
  635. ) then
  636. begin
  637. message1(asmr_w_adding_explicit_second_arg_fXX,std_op2str[opcode]);
  638. ops:=2;
  639. operands[2].opr.typ:=OPR_REGISTER;
  640. operands[2].opr.reg:=NR_ST0;
  641. end;
  642. { I tried to convince Linus Torvalds to add
  643. code to support ENTER instruction
  644. (when raising a stack page fault)
  645. but he replied that ENTER is a bad instruction and
  646. Linux does not need to support it
  647. So I think its at least a good idea to add a warning
  648. if someone uses this in assembler code
  649. FPC itself does not use it at all PM }
  650. if (opcode=A_ENTER) and
  651. (target_info.system in [system_i386_linux,system_i386_FreeBSD]) then
  652. Message(asmr_w_enter_not_supported_by_linux);
  653. ai:=taicpu.op_none(opcode,siz);
  654. ai.SetOperandOrder(OpOrder);
  655. ai.Ops:=Ops;
  656. ai.Allocate_oper(Ops);
  657. for i:=1 to Ops do
  658. case operands[i].opr.typ of
  659. OPR_CONSTANT :
  660. ai.loadconst(i-1,operands[i].opr.val);
  661. OPR_REGISTER:
  662. ai.loadreg(i-1,operands[i].opr.reg);
  663. OPR_SYMBOL:
  664. ai.loadsymbol(i-1,operands[i].opr.symbol,operands[i].opr.symofs);
  665. OPR_LOCAL :
  666. with operands[i].opr do
  667. ai.loadlocal(i-1,localsym,localsymofs,localindexreg,
  668. localscale,localgetoffset,localforceref);
  669. OPR_REFERENCE:
  670. begin
  671. ai.loadref(i-1,operands[i].opr.ref);
  672. if operands[i].size<>OS_NO then
  673. begin
  674. asize:=0;
  675. case operands[i].size of
  676. OS_8,OS_S8 :
  677. asize:=OT_BITS8;
  678. OS_16,OS_S16 :
  679. asize:=OT_BITS16;
  680. OS_32,OS_S32,OS_F32 :
  681. asize:=OT_BITS32;
  682. OS_64,OS_S64:
  683. begin
  684. { Only FPU operations know about 64bit values, for all
  685. integer operations it is seen as 32bit
  686. this applies only to i386, see tw16622}
  687. if gas_needsuffix[opcode] in [attsufFPU,attsufFPUint] then
  688. asize:=OT_BITS64
  689. {$ifdef i386}
  690. else
  691. asize:=OT_BITS32
  692. {$endif i386}
  693. ;
  694. end;
  695. OS_F64,OS_C64 :
  696. asize:=OT_BITS64;
  697. OS_F80 :
  698. asize:=OT_BITS80;
  699. end;
  700. if asize<>0 then
  701. ai.oper[i-1]^.ot:=(ai.oper[i-1]^.ot and not OT_SIZE_MASK) or asize;
  702. end;
  703. end;
  704. end;
  705. { Condition ? }
  706. if condition<>C_None then
  707. ai.SetCondition(condition);
  708. { Set is_jmp, it enables asmwriter to emit short jumps if appropriate }
  709. if (opcode=A_JMP) or (opcode=A_JCC) then
  710. ai.is_jmp := True;
  711. { Concat the opcode or give an error }
  712. if assigned(ai) then
  713. p.concat(ai)
  714. else
  715. Message(asmr_e_invalid_opcode_and_operand);
  716. result:=ai;
  717. end;
  718. end.