ncginl.pas 30 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl and Carl Eric Codere
  3. Generate generic inline nodes
  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. unit ncginl;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. node,ninl;
  22. type
  23. tcginlinenode = class(tinlinenode)
  24. procedure pass_generate_code;override;
  25. procedure second_sizeoftypeof;virtual;
  26. procedure second_length;virtual;
  27. procedure second_predsucc;virtual;
  28. procedure second_incdec;virtual;
  29. procedure second_AndOrXor_assign;virtual;
  30. procedure second_typeinfo;virtual;
  31. procedure second_includeexclude;virtual;
  32. procedure second_pi; virtual;
  33. procedure second_arctan_real; virtual;
  34. procedure second_abs_real; virtual;
  35. procedure second_sqr_real; virtual;
  36. procedure second_sqrt_real; virtual;
  37. procedure second_ln_real; virtual;
  38. procedure second_cos_real; virtual;
  39. procedure second_sin_real; virtual;
  40. procedure second_assigned; virtual;
  41. procedure second_get_frame;virtual;
  42. procedure second_get_caller_frame;virtual;
  43. procedure second_get_caller_addr;virtual;
  44. procedure second_prefetch; virtual;
  45. procedure second_round_real; virtual;
  46. procedure second_trunc_real; virtual;
  47. procedure second_int_real; virtual;
  48. procedure second_abs_long; virtual;
  49. procedure second_rox_sar; virtual;
  50. procedure second_bsfbsr; virtual;
  51. procedure second_new; virtual;
  52. procedure second_setlength; virtual; abstract;
  53. procedure second_box; virtual; abstract;
  54. procedure second_popcnt; virtual;
  55. procedure second_seg; virtual; abstract;
  56. procedure second_fma; virtual;
  57. end;
  58. implementation
  59. uses
  60. globtype,systems,constexp,
  61. cutils,verbose,globals,
  62. symconst,symtype,symdef,defutil,symsym,
  63. aasmbase,aasmtai,aasmdata,aasmcpu,parabase,
  64. cgbase,pass_1,pass_2,
  65. cpuinfo,cpubase,paramgr,procinfo,
  66. nbas,ncon,ncal,ncnv,nld,ncgrtti,
  67. tgobj,ncgutil,
  68. cgutils,cgobj,hlcgobj
  69. {$ifndef cpu64bitalu}
  70. ,cg64f32
  71. {$endif not cpu64bitalu}
  72. ;
  73. {*****************************************************************************
  74. TCGINLINENODE
  75. *****************************************************************************}
  76. procedure tcginlinenode.pass_generate_code;
  77. begin
  78. location_reset(location,LOC_VOID,OS_NO);
  79. case inlinenumber of
  80. in_sizeof_x,
  81. in_typeof_x :
  82. second_SizeofTypeOf;
  83. in_length_x :
  84. second_Length;
  85. in_pred_x,
  86. in_succ_x:
  87. second_PredSucc;
  88. in_dec_x,
  89. in_inc_x :
  90. second_IncDec;
  91. in_typeinfo_x:
  92. second_TypeInfo;
  93. in_include_x_y,
  94. in_exclude_x_y:
  95. second_IncludeExclude;
  96. in_pi_real:
  97. second_pi;
  98. in_sin_real:
  99. second_sin_real;
  100. in_arctan_real:
  101. second_arctan_real;
  102. in_abs_real:
  103. second_abs_real;
  104. in_abs_long:
  105. second_abs_long;
  106. in_round_real:
  107. second_round_real;
  108. in_trunc_real:
  109. second_trunc_real;
  110. in_int_real:
  111. second_int_real;
  112. in_sqr_real:
  113. second_sqr_real;
  114. in_sqrt_real:
  115. second_sqrt_real;
  116. in_ln_real:
  117. second_ln_real;
  118. in_cos_real:
  119. second_cos_real;
  120. in_prefetch_var:
  121. second_prefetch;
  122. in_assigned_x:
  123. second_assigned;
  124. in_get_frame:
  125. second_get_frame;
  126. in_get_caller_frame:
  127. second_get_caller_frame;
  128. in_get_caller_addr:
  129. second_get_caller_addr;
  130. in_unaligned_x:
  131. begin
  132. secondpass(tcallparanode(left).left);
  133. location:=tcallparanode(left).left.location;
  134. if location.loc in [LOC_CREFERENCE,LOC_REFERENCE] then
  135. location.reference.alignment:=1;
  136. end;
  137. in_aligned_x:
  138. begin
  139. secondpass(tcallparanode(left).left);
  140. location:=tcallparanode(left).left.location;
  141. if location.loc in [LOC_CREFERENCE,LOC_REFERENCE] then
  142. location.reference.alignment:=resultdef.alignment;
  143. end;
  144. {$ifdef SUPPORT_MMX}
  145. in_mmx_pcmpeqb..in_mmx_pcmpgtw:
  146. begin
  147. location_reset(location,LOC_MMXREGISTER,OS_NO);
  148. if left.location.loc=LOC_REGISTER then
  149. begin
  150. {!!!!!!!}
  151. end
  152. else if tcallparanode(left).left.location.loc=LOC_REGISTER then
  153. begin
  154. {!!!!!!!}
  155. end
  156. else
  157. begin
  158. {!!!!!!!}
  159. end;
  160. end;
  161. {$endif SUPPORT_MMX}
  162. in_rol_x,
  163. in_rol_x_y,
  164. in_ror_x,
  165. in_ror_x_y,
  166. in_sar_x,
  167. in_sar_x_y:
  168. second_rox_sar;
  169. in_bsf_x,
  170. in_bsr_x:
  171. second_BsfBsr;
  172. in_new_x:
  173. second_new;
  174. in_setlength_x:
  175. second_setlength;
  176. in_box_x:
  177. second_box;
  178. in_popcnt_x:
  179. second_popcnt;
  180. in_seg_x:
  181. second_seg;
  182. in_fma_single,
  183. in_fma_double,
  184. in_fma_extended,
  185. in_fma_float128:
  186. second_fma;
  187. in_and_assign_x_y,
  188. in_or_assign_x_y,
  189. in_xor_assign_x_y:
  190. second_AndOrXor_assign;
  191. else internalerror(9);
  192. end;
  193. end;
  194. {*****************************************************************************
  195. SIZEOF / TYPEOF GENERIC HANDLING
  196. *****************************************************************************}
  197. { second_handle_ the sizeof and typeof routines }
  198. procedure tcginlinenode.second_SizeOfTypeOf;
  199. begin
  200. { handled in pass 1 }
  201. internalerror(2015122701);
  202. end;
  203. {*****************************************************************************
  204. LENGTH GENERIC HANDLING
  205. *****************************************************************************}
  206. procedure tcginlinenode.second_Length;
  207. var
  208. lengthlab : tasmlabel;
  209. hregister : tregister;
  210. lendef : tdef;
  211. href : treference;
  212. begin
  213. secondpass(left);
  214. if is_shortstring(left.resultdef) then
  215. begin
  216. location_copy(location,left.location);
  217. location.size:=OS_8;
  218. end
  219. else
  220. begin
  221. { length in ansi/wide strings and high in dynamic arrays is at offset -sizeof(pint) }
  222. hlcg.location_force_reg(current_asmdata.CurrAsmList,left.location,left.resultdef,left.resultdef,false);
  223. current_asmdata.getjumplabel(lengthlab);
  224. hlcg.a_cmp_const_reg_label(current_asmdata.CurrAsmList,left.resultdef,OC_EQ,0,left.location.register,lengthlab);
  225. { the length of a widestring is a 32 bit unsigned int. Since every
  226. character occupies 2 bytes, on a 32 bit platform you can express
  227. the maximum length using 31 bits. On a 64 bit platform, it may be
  228. 32 bits. This means that regardless of the platform, a location
  229. with size OS_SINT/ossinttype can hold the length without
  230. overflowing (this code returns an ossinttype value) }
  231. if is_widestring(left.resultdef) then
  232. lendef:=u32inttype
  233. else
  234. lendef:=ossinttype;
  235. { volatility of the ansistring/widestring refers to the volatility of the
  236. string pointer, not of the string data }
  237. hlcg.reference_reset_base(href,left.resultdef,left.location.register,-lendef.size,lendef.alignment,[]);
  238. { if the string pointer is nil, the length is 0 -> reuse the register
  239. that originally held the string pointer for the length, so that we
  240. can keep the original nil/0 as length in that case }
  241. hregister:=cg.makeregsize(current_asmdata.CurrAsmList,left.location.register,def_cgsize(resultdef));
  242. hlcg.a_load_ref_reg(current_asmdata.CurrAsmList,lendef,resultdef,href,hregister);
  243. if is_widestring(left.resultdef) then
  244. hlcg.a_op_const_reg(current_asmdata.CurrAsmList,OP_SHR,resultdef,1,hregister);
  245. { Dynamic arrays do not have their length attached but their maximum index }
  246. if is_dynamic_array(left.resultdef) then
  247. hlcg.a_op_const_reg(current_asmdata.CurrAsmList,OP_ADD,resultdef,1,hregister);
  248. cg.a_label(current_asmdata.CurrAsmList,lengthlab);
  249. location_reset(location,LOC_REGISTER,def_cgsize(resultdef));
  250. location.register:=hregister;
  251. end;
  252. end;
  253. {*****************************************************************************
  254. PRED/SUCC GENERIC HANDLING
  255. *****************************************************************************}
  256. procedure tcginlinenode.second_PredSucc;
  257. var
  258. cgop : topcg;
  259. begin
  260. secondpass(left);
  261. if inlinenumber=in_pred_x then
  262. cgop:=OP_SUB
  263. else
  264. cgop:=OP_ADD;
  265. location_reset(location,LOC_REGISTER,def_cgsize(resultdef));
  266. if not(left.location.loc in [LOC_REGISTER,LOC_CREGISTER]) then
  267. hlcg.location_force_reg(current_asmdata.CurrAsmList,left.location,left.resultdef,left.resultdef,false);
  268. {$ifndef cpu64bitalu}
  269. if def_cgsize(resultdef) in [OS_64,OS_S64] then
  270. begin
  271. location.register64.reglo:=cg.getintregister(current_asmdata.CurrAsmList,OS_32);
  272. location.register64.reghi:=cg.getintregister(current_asmdata.CurrAsmList,OS_32);
  273. cg64.a_op64_const_reg_reg(current_asmdata.CurrAsmList,cgop,def_cgsize(resultdef),1,left.location.register64,location.register64);
  274. end
  275. else
  276. {$endif not cpu64bitalu}
  277. begin
  278. location.register:=hlcg.getregisterfordef(current_asmdata.CurrAsmList,resultdef);
  279. hlcg.a_op_const_reg_reg(current_asmdata.CurrAsmList,cgop,resultdef,1,left.location.register,location.register);
  280. end;
  281. end;
  282. {*****************************************************************************
  283. INC/DEC GENERIC HANDLING
  284. *****************************************************************************}
  285. procedure tcginlinenode.second_IncDec;
  286. const
  287. addsubop:array[in_inc_x..in_dec_x] of TOpCG=(OP_ADD,OP_SUB);
  288. var
  289. addvalue : TConstExprInt;
  290. addconstant : boolean;
  291. {$ifndef cpu64bitalu}
  292. hregisterhi,
  293. {$endif not cpu64bitalu}
  294. hregister : tregister;
  295. begin
  296. { set defaults }
  297. addconstant:=true;
  298. hregister:=NR_NO;
  299. {$ifndef cpu64bitalu}
  300. hregisterhi:=NR_NO;
  301. {$endif not cpu64bitalu}
  302. { first secondpass second argument, because if the first arg }
  303. { is used in that expression then SSL may move it to another }
  304. { register }
  305. if assigned(tcallparanode(left).right) then
  306. secondpass(tcallparanode(tcallparanode(left).right).left);
  307. { load first parameter, must be a reference }
  308. secondpass(tcallparanode(left).left);
  309. { get addvalue }
  310. case tcallparanode(left).left.resultdef.typ of
  311. orddef,
  312. enumdef :
  313. addvalue:=1;
  314. pointerdef :
  315. begin
  316. if is_void(tpointerdef(tcallparanode(left).left.resultdef).pointeddef) then
  317. addvalue:=1
  318. else
  319. addvalue:=tpointerdef(tcallparanode(left).left.resultdef).pointeddef.size;
  320. end;
  321. else
  322. internalerror(10081);
  323. end;
  324. { second_ argument specified?, must be a s32bit in register }
  325. if assigned(tcallparanode(left).right) then
  326. begin
  327. { when constant, just multiply the addvalue }
  328. if is_constintnode(tcallparanode(tcallparanode(left).right).left) then
  329. addvalue:=addvalue*get_ordinal_value(tcallparanode(tcallparanode(left).right).left)
  330. else if is_constpointernode(tcallparanode(tcallparanode(left).right).left) then
  331. addvalue:=addvalue*tpointerconstnode(tcallparanode(tcallparanode(left).right).left).value
  332. else
  333. begin
  334. hlcg.location_force_reg(current_asmdata.CurrAsmList,tcallparanode(tcallparanode(left).right).left.location,tcallparanode(tcallparanode(left).right).left.resultdef,left.resultdef,addvalue<=1);
  335. hregister:=tcallparanode(tcallparanode(left).right).left.location.register;
  336. {$ifndef cpu64bitalu}
  337. hregisterhi:=tcallparanode(tcallparanode(left).right).left.location.register64.reghi;
  338. {$endif not cpu64bitalu}
  339. { insert multiply with addvalue if its >1 }
  340. if addvalue>1 then
  341. hlcg.a_op_const_reg(current_asmdata.CurrAsmList,OP_IMUL,left.resultdef,addvalue.svalue,hregister);
  342. addconstant:=false;
  343. end;
  344. end;
  345. { write the add instruction }
  346. if addconstant then
  347. begin
  348. {$ifndef cpu64bitalu}
  349. if def_cgsize(left.resultdef) in [OS_64,OS_S64] then
  350. cg64.a_op64_const_loc(current_asmdata.CurrAsmList,addsubop[inlinenumber],def_cgsize(left.resultdef),addvalue,tcallparanode(left).left.location)
  351. else
  352. {$endif not cpu64bitalu}
  353. hlcg.a_op_const_loc(current_asmdata.CurrAsmList,addsubop[inlinenumber],left.resultdef,
  354. {$ifdef cpu64bitalu}
  355. aint(addvalue.svalue),
  356. {$else cpu64bitalu}
  357. longint(addvalue.svalue), // can't use aint, because it breaks 16-bit and 8-bit CPUs
  358. {$endif cpu64bitalu}
  359. tcallparanode(left).left.location);
  360. end
  361. else
  362. begin
  363. {$ifndef cpu64bitalu}
  364. if def_cgsize(left.resultdef) in [OS_64,OS_S64] then
  365. cg64.a_op64_reg_loc(current_asmdata.CurrAsmList,addsubop[inlinenumber],def_cgsize(left.resultdef),
  366. joinreg64(hregister,hregisterhi),tcallparanode(left).left.location)
  367. else
  368. {$endif not cpu64bitalu}
  369. hlcg.a_op_reg_loc(current_asmdata.CurrAsmList,addsubop[inlinenumber],left.resultdef,
  370. hregister,tcallparanode(left).left.location);
  371. end;
  372. { no overflow checking for pointers (see ninl), and range checking }
  373. { is not applicable for them }
  374. if (tcallparanode(left).left.resultdef.typ <> pointerdef) then
  375. begin
  376. { things which can overflow must NOT pass via here, but have to be }
  377. { handled via a regular add node (conversion in tinlinenode.pass_1) }
  378. { Or someone has to rewrite the above to use a_op_const_reg_reg_ov }
  379. { and friends in case of overflow checking, and ask everyone to }
  380. { implement these methods since they don't exist for all cpus (JM) }
  381. { Similarly, range checking also has to be handled separately, }
  382. { see mantis #14841 (JM) }
  383. if ([cs_check_overflow,cs_check_range] * current_settings.localswitches <> []) then
  384. internalerror(2006111010);
  385. // cg.g_overflowcheck(current_asmdata.CurrAsmList,tcallparanode(left).left.location,tcallparanode(left).resultdef);
  386. // cg.g_rangecheck(current_asmdata.CurrAsmList,tcallparanode(left).left.location,tcallparanode(left).left.resultdef,
  387. // tcallparanode(left).left.resultdef);
  388. end;
  389. end;
  390. {*****************************************************************************
  391. AND/OR/XOR ASSIGN GENERIC HANDLING
  392. *****************************************************************************}
  393. procedure tcginlinenode.second_AndOrXor_assign;
  394. const
  395. andorxorop:array[in_and_assign_x_y..in_xor_assign_x_y] of TOpCG=(OP_AND,OP_OR,OP_XOR);
  396. var
  397. maskvalue : TConstExprInt;
  398. maskconstant : boolean;
  399. {$ifndef cpu64bitalu}
  400. hregisterhi,
  401. {$endif not cpu64bitalu}
  402. hregister : tregister;
  403. begin
  404. { set defaults }
  405. maskconstant:=true;
  406. hregister:=NR_NO;
  407. {$ifndef cpu64bitalu}
  408. hregisterhi:=NR_NO;
  409. {$endif not cpu64bitalu}
  410. { first secondpass first argument, because if the second arg }
  411. { is used in that expression then SSL may move it to another }
  412. { register }
  413. secondpass(tcallparanode(left).left);
  414. { load second parameter, must be a reference }
  415. secondpass(tcallparanode(tcallparanode(left).right).left);
  416. { when constant, just get the maskvalue }
  417. if is_constintnode(tcallparanode(left).left) then
  418. maskvalue:=get_ordinal_value(tcallparanode(left).left)
  419. else
  420. begin
  421. hlcg.location_force_reg(current_asmdata.CurrAsmList,tcallparanode(left).left.location,tcallparanode(left).left.resultdef,tcallparanode(left).right.resultdef,true);
  422. hregister:=tcallparanode(left).left.location.register;
  423. {$ifndef cpu64bitalu}
  424. hregisterhi:=tcallparanode(left).left.location.register64.reghi;
  425. {$endif not cpu64bitalu}
  426. maskconstant:=false;
  427. end;
  428. { write the and/or/xor instruction }
  429. if maskconstant then
  430. begin
  431. {$ifndef cpu64bitalu}
  432. if def_cgsize(left.resultdef) in [OS_64,OS_S64] then
  433. cg64.a_op64_const_loc(current_asmdata.CurrAsmList,andorxorop[inlinenumber],def_cgsize(tcallparanode(left).right.resultdef),maskvalue.svalue,tcallparanode(tcallparanode(left).right).left.location)
  434. else
  435. {$endif not cpu64bitalu}
  436. hlcg.a_op_const_loc(current_asmdata.CurrAsmList,andorxorop[inlinenumber],tcallparanode(left).right.resultdef,
  437. {$ifdef cpu64bitalu}
  438. aint(maskvalue.svalue),
  439. {$else cpu64bitalu}
  440. longint(maskvalue.svalue), // can't use aint, because it breaks 16-bit and 8-bit CPUs
  441. {$endif cpu64bitalu}
  442. tcallparanode(tcallparanode(left).right).left.location);
  443. end
  444. else
  445. begin
  446. {$ifndef cpu64bitalu}
  447. if def_cgsize(tcallparanode(left).right.resultdef) in [OS_64,OS_S64] then
  448. cg64.a_op64_reg_loc(current_asmdata.CurrAsmList,andorxorop[inlinenumber],def_cgsize(tcallparanode(left).right.resultdef),
  449. joinreg64(hregister,hregisterhi),tcallparanode(tcallparanode(left).right).left.location)
  450. else
  451. {$endif not cpu64bitalu}
  452. hlcg.a_op_reg_loc(current_asmdata.CurrAsmList,andorxorop[inlinenumber],tcallparanode(left).right.resultdef,
  453. hregister,tcallparanode(tcallparanode(left).right).left.location);
  454. end;
  455. end;
  456. {*****************************************************************************
  457. TYPEINFO GENERIC HANDLING
  458. *****************************************************************************}
  459. procedure tcginlinenode.second_typeinfo;
  460. begin
  461. internalerror(2013060301);
  462. end;
  463. {*****************************************************************************
  464. INCLUDE/EXCLUDE GENERIC HANDLING
  465. *****************************************************************************}
  466. procedure tcginlinenode.second_IncludeExclude;
  467. var
  468. setpara, elepara: tnode;
  469. begin
  470. { the set }
  471. secondpass(tcallparanode(left).left);
  472. { the element to set }
  473. secondpass(tcallparanode(tcallparanode(left).right).left);
  474. setpara:=tcallparanode(left).left;
  475. elepara:=tcallparanode(tcallparanode(left).right).left;
  476. if elepara.location.loc=LOC_CONSTANT then
  477. begin
  478. hlcg.a_bit_set_const_loc(current_asmdata.CurrAsmList,(inlinenumber=in_include_x_y),
  479. setpara.resultdef,elepara.location.value-tsetdef(setpara.resultdef).setbase,setpara.location);
  480. end
  481. else
  482. begin
  483. hlcg.location_force_reg(current_asmdata.CurrAsmList,elepara.location,elepara.resultdef,u32inttype,true);
  484. register_maybe_adjust_setbase(current_asmdata.CurrAsmList,u32inttype,elepara.location,tsetdef(setpara.resultdef).setbase);
  485. hlcg.a_bit_set_reg_loc(current_asmdata.CurrAsmList,(inlinenumber=in_include_x_y),
  486. u32inttype,setpara.resultdef,elepara.location.register,setpara.location);
  487. end;
  488. end;
  489. {*****************************************************************************
  490. FLOAT GENERIC HANDLING
  491. *****************************************************************************}
  492. {
  493. These routines all call internal RTL routines, so if they are
  494. called here, they give an internal error
  495. }
  496. procedure tcginlinenode.second_pi;
  497. begin
  498. internalerror(20020718);
  499. end;
  500. procedure tcginlinenode.second_arctan_real;
  501. begin
  502. internalerror(20020718);
  503. end;
  504. procedure tcginlinenode.second_abs_real;
  505. begin
  506. internalerror(20020718);
  507. end;
  508. procedure tcginlinenode.second_round_real;
  509. begin
  510. internalerror(20020718);
  511. end;
  512. procedure tcginlinenode.second_trunc_real;
  513. begin
  514. internalerror(20020718);
  515. end;
  516. procedure tcginlinenode.second_int_real;
  517. begin
  518. internalerror(2016112702);
  519. end;
  520. procedure tcginlinenode.second_sqr_real;
  521. begin
  522. internalerror(20020718);
  523. end;
  524. procedure tcginlinenode.second_sqrt_real;
  525. begin
  526. internalerror(20020718);
  527. end;
  528. procedure tcginlinenode.second_ln_real;
  529. begin
  530. internalerror(20020718);
  531. end;
  532. procedure tcginlinenode.second_cos_real;
  533. begin
  534. internalerror(20020718);
  535. end;
  536. procedure tcginlinenode.second_sin_real;
  537. begin
  538. internalerror(20020718);
  539. end;
  540. procedure tcginlinenode.second_prefetch;
  541. begin
  542. end;
  543. procedure tcginlinenode.second_abs_long;
  544. var
  545. tempreg1, tempreg2: tregister;
  546. begin
  547. secondpass(left);
  548. hlcg.location_force_reg(current_asmdata.CurrAsmList,left.location,left.resultdef,left.resultdef,true);
  549. location:=left.location;
  550. location.register:=hlcg.getintregister(current_asmdata.CurrAsmList,left.resultdef);
  551. tempreg1:=hlcg.getintregister(current_asmdata.CurrAsmList,left.resultdef);
  552. tempreg2:=hlcg.getintregister(current_asmdata.CurrAsmList,left.resultdef);
  553. hlcg.a_op_const_reg_reg(current_asmdata.CurrAsmList,OP_SAR,left.resultdef,left.resultdef.size*8-1,left.location.register,tempreg1);
  554. hlcg.a_op_reg_reg_reg(current_asmdata.CurrAsmList,OP_XOR,left.resultdef,left.location.register,tempreg1,tempreg2);
  555. hlcg.a_op_reg_reg_reg(current_asmdata.CurrAsmlist,OP_SUB,left.resultdef,tempreg1,tempreg2,location.register);
  556. end;
  557. {*****************************************************************************
  558. ASSIGNED GENERIC HANDLING
  559. *****************************************************************************}
  560. procedure tcginlinenode.second_assigned;
  561. begin
  562. internalerror(2013091602);
  563. end;
  564. procedure Tcginlinenode.second_get_frame;
  565. begin
  566. {$if defined(x86) or defined(arm)}
  567. if current_procinfo.framepointer=NR_STACK_POINTER_REG then
  568. begin
  569. location_reset(location,LOC_CONSTANT,OS_ADDR);
  570. location.value:=0;
  571. end
  572. else
  573. {$endif defined(x86) or defined(arm)}
  574. begin
  575. location_reset(location,LOC_CREGISTER,OS_ADDR);
  576. location.register:=current_procinfo.framepointer;
  577. end;
  578. end;
  579. procedure Tcginlinenode.second_get_caller_frame;
  580. var
  581. frame_reg:Tregister;
  582. use_frame_pointer:boolean;
  583. begin
  584. frame_reg:=NR_NO;
  585. if left<>nil then
  586. begin
  587. secondpass(left);
  588. if left.location.loc=LOC_CONSTANT then
  589. use_frame_pointer:=true
  590. else
  591. begin
  592. hlcg.location_force_reg(current_asmdata.currasmlist,left.location,left.resultdef,voidpointertype,false);
  593. frame_reg:=left.location.register;
  594. use_frame_pointer:=false;
  595. end
  596. end
  597. else
  598. begin
  599. use_frame_pointer:=current_procinfo.framepointer=NR_STACK_POINTER_REG;
  600. frame_reg:=current_procinfo.framepointer;
  601. end;
  602. if use_frame_pointer then
  603. begin
  604. location_reset(location,LOC_CREGISTER,OS_ADDR);
  605. location.register:=NR_FRAME_POINTER_REG;
  606. end
  607. else
  608. begin
  609. location_reset_ref(location,LOC_REFERENCE,OS_ADDR,sizeof(pint),[]);
  610. location.reference.base:=frame_reg;
  611. end;
  612. end;
  613. procedure Tcginlinenode.second_get_caller_addr;
  614. var
  615. frame_ref:Treference;
  616. begin
  617. if current_procinfo.framepointer=NR_STACK_POINTER_REG then
  618. begin
  619. location_reset(location,LOC_REGISTER,OS_ADDR);
  620. location.register:=cg.getaddressregister(current_asmdata.currasmlist);
  621. reference_reset_base(frame_ref,NR_STACK_POINTER_REG,{current_procinfo.calc_stackframe_size}tg.lasttemp,sizeof(pint),[]);
  622. cg.a_load_ref_reg(current_asmdata.currasmlist,OS_ADDR,OS_ADDR,frame_ref,location.register);
  623. end
  624. else
  625. begin
  626. location_reset(location,LOC_REGISTER,OS_ADDR);
  627. location.register:=cg.getaddressregister(current_asmdata.currasmlist);
  628. reference_reset_base(frame_ref,current_procinfo.framepointer,sizeof(pint),sizeof(pint),[]);
  629. cg.a_load_ref_reg(current_asmdata.currasmlist,OS_ADDR,OS_ADDR,frame_ref,location.register);
  630. end;
  631. end;
  632. procedure tcginlinenode.second_rox_sar;
  633. var
  634. op : topcg;
  635. op1,op2 : tnode;
  636. begin
  637. { one or two parameters? }
  638. if (left.nodetype=callparan) and
  639. assigned(tcallparanode(left).right) then
  640. begin
  641. op1:=tcallparanode(tcallparanode(left).right).left;
  642. op2:=tcallparanode(left).left;
  643. secondpass(op2);
  644. end
  645. else
  646. begin
  647. op1:=left;
  648. op2:=nil;
  649. end;
  650. secondpass(op1);
  651. case inlinenumber of
  652. in_ror_x,
  653. in_ror_x_y:
  654. op:=OP_ROR;
  655. in_rol_x,
  656. in_rol_x_y:
  657. op:=OP_ROL;
  658. in_sar_x,
  659. in_sar_x_y:
  660. op:=OP_SAR;
  661. else
  662. internalerror(2013120110);
  663. end;
  664. hlcg.location_force_reg(current_asmdata.CurrAsmList,op1.location,op1.resultdef,resultdef,true);
  665. location_reset(location,LOC_REGISTER,def_cgsize(resultdef));
  666. location.register:=hlcg.getintregister(current_asmdata.CurrAsmList,resultdef);
  667. if assigned(op2) then
  668. begin
  669. { rotating by a constant directly coded: }
  670. if op2.nodetype=ordconstn then
  671. hlcg.a_op_const_reg_reg(current_asmdata.CurrAsmList,op,resultdef,
  672. tordconstnode(op2).value.uvalue and (resultdef.size*8-1),
  673. op1.location.register, location.register)
  674. else
  675. begin
  676. hlcg.location_force_reg(current_asmdata.CurrAsmList,op2.location,
  677. op2.resultdef,resultdef,true);
  678. hlcg.a_op_reg_reg_reg(current_asmdata.CurrAsmList,op,resultdef,
  679. op2.location.register,op1.location.register,
  680. location.register);
  681. end;
  682. end
  683. else
  684. hlcg.a_op_const_reg_reg(current_asmdata.CurrAsmList,op,resultdef,1,
  685. op1.location.register,location.register);
  686. end;
  687. procedure tcginlinenode.second_BsfBsr;
  688. var
  689. reverse: boolean;
  690. opsize: tcgsize;
  691. begin
  692. reverse:=(inlinenumber = in_bsr_x);
  693. secondpass(left);
  694. opsize:=tcgsize2unsigned[left.location.size];
  695. if not(left.location.loc in [LOC_REGISTER,LOC_CREGISTER]) then
  696. hlcg.location_force_reg(current_asmdata.CurrAsmList,left.location,left.resultdef,cgsize_orddef(opsize),true);
  697. location_reset(location,LOC_REGISTER,def_cgsize(resultdef));
  698. location.register:=cg.getintregister(current_asmdata.CurrAsmList,location.size);
  699. cg.a_bit_scan_reg_reg(current_asmdata.CurrAsmList,reverse,opsize,location.size,left.location.register,location.register);
  700. end;
  701. procedure tcginlinenode.second_new;
  702. begin
  703. internalerror(2011012202);
  704. end;
  705. procedure tcginlinenode.second_popcnt;
  706. begin
  707. internalerror(2012082601);
  708. end;
  709. procedure tcginlinenode.second_fma;
  710. begin
  711. internalerror(2014032701);
  712. end;
  713. begin
  714. cinlinenode:=tcginlinenode;
  715. end. s