cpupara.pas 20 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl and David Zhang
  3. Calling conventions for the MIPSEL
  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. unit cpupara;
  17. {$i fpcdefs.inc}
  18. interface
  19. uses
  20. globtype,
  21. cclasses,
  22. aasmtai,
  23. cpubase,cpuinfo,
  24. symconst,symbase,symsym,symtype,symdef,paramgr,parabase,cgbase,cgutils;
  25. const
  26. { The value below is OK for O32 and N32 calling conventions }
  27. MIPS_MAX_REGISTERS_USED_IN_CALL = 6;
  28. { All ABI seem to start with $4 i.e. $a0 }
  29. MIPS_FIRST_REGISTER_USED_IN_CALL = RS_R4;
  30. { O32 ABI uses $a0 to $a3, i.e R4 to R7 }
  31. MIPS_LAST_REGISTER_USED_IN_CALL_ABI_O32 = RS_R7;
  32. { N32 ABI uses also R8 and R9 }
  33. MIPS_LAST_REGISTER_USED_IN_CALL_ABI_N32 = RS_R9;
  34. { The calculation below is based on the assumption
  35. that all registers used for ABI calls are
  36. ordered and follow each other }
  37. MIPS_NB_REGISTERS_USED_IN_CALL_O32 =
  38. MIPS_LAST_REGISTER_USED_IN_CALL_ABI_O32
  39. - MIPS_FIRST_REGISTER_USED_IN_CALL + 1;
  40. MIPS_NB_REGISTERS_USED_IN_CALL_N32 =
  41. MIPS_LAST_REGISTER_USED_IN_CALL_ABI_N32
  42. - MIPS_FIRST_REGISTER_USED_IN_CALL + 1;
  43. { Set O32 ABI as default }
  44. const
  45. mips_nb_used_registers : longint = MIPS_NB_REGISTERS_USED_IN_CALL_O32;
  46. { Might need to be changed if we support N64 ABI later }
  47. mips_sizeof_register_param : longint = 4;
  48. type
  49. tparasupregs = array[0..MIPS_MAX_REGISTERS_USED_IN_CALL-1] of tsuperregister;
  50. tparasupregsused = array[0..MIPS_MAX_REGISTERS_USED_IN_CALL-1] of boolean;
  51. const
  52. parasupregs : tparasupregs = (RS_R4, RS_R5, RS_R6, RS_R7, RS_R8, RS_R9);
  53. type
  54. tcpuparamanager=class(TParaManager)
  55. function push_addr_param(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;override;
  56. function get_volatile_registers_int(calloption : tproccalloption):TCpuRegisterSet;override;
  57. function get_volatile_registers_fpu(calloption : tproccalloption):TCpuRegisterSet;override;
  58. function get_saved_registers_int(calloption : tproccalloption):TCpuRegisterArray;override;
  59. function create_paraloc_info(p : TAbstractProcDef; side: tcallercallee):longint;override;
  60. function create_varargs_paraloc_info(p : TAbstractProcDef; side: tcallercallee; varargspara:tvarargsparalist):longint;override;
  61. function get_funcretloc(p : tabstractprocdef; side: tcallercallee; forcetempdef: tdef): tcgpara;override;
  62. function param_use_paraloc(const cgpara: tcgpara): boolean; override;
  63. private
  64. intparareg,
  65. intparasize : longint;
  66. can_use_float : boolean;
  67. function is_abi_record(def: tdef): boolean;
  68. procedure create_paraloc_info_intern(p : tabstractprocdef; side: tcallercallee; paras: tparalist);
  69. end;
  70. implementation
  71. uses
  72. cutils,verbose,systems,
  73. defutil, cpupi, procinfo,
  74. cgobj;
  75. function tcpuparamanager.get_volatile_registers_int(calloption : tproccalloption):TCpuRegisterSet;
  76. begin
  77. { O32 ABI values }
  78. result:=[RS_R1..RS_R15,RS_R24..RS_R25,RS_R31];
  79. end;
  80. function tcpuparamanager.get_volatile_registers_fpu(calloption : tproccalloption):TCpuRegisterSet;
  81. begin
  82. { O32 ABI values }
  83. result:=[RS_F0..RS_F19];
  84. end;
  85. function tcpuparamanager.get_saved_registers_int(calloption : tproccalloption):TCpuRegisterArray;
  86. const
  87. saved_regs : {$ifndef VER3_0}tcpuregisterarray{$else}array[0..0] of tsuperregister{$endif} =
  88. (RS_NO);
  89. begin
  90. result:=saved_regs;
  91. end;
  92. { whether "def" must be treated as record when used as function result,
  93. i.e. its address passed in a0 }
  94. function tcpuparamanager.is_abi_record(def: tdef): boolean;
  95. begin
  96. result:=(def.typ=recorddef) or
  97. ((def.typ=procvardef) and not tprocvardef(def).is_addressonly);
  98. end;
  99. function tcpuparamanager.param_use_paraloc(const cgpara: tcgpara): boolean;
  100. var
  101. paraloc: pcgparalocation;
  102. begin
  103. paraloc:=cgpara.location;
  104. if not assigned(paraloc) then
  105. internalerror(200410102);
  106. result:=(paraloc^.loc=LOC_REFERENCE) and (paraloc^.next=nil);
  107. end;
  108. { true if a parameter is too large to copy and only the address is pushed }
  109. function tcpuparamanager.push_addr_param(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;
  110. begin
  111. result:=false;
  112. { var,out,constref always require address }
  113. if varspez in [vs_var,vs_out,vs_constref] then
  114. begin
  115. result:=true;
  116. exit;
  117. end;
  118. case def.typ of
  119. recorddef:
  120. { According to 032 ABI we should have }
  121. result:=false;
  122. arraydef:
  123. result:=true; {(tarraydef(def).highrange>=tarraydef(def).lowrange) or
  124. is_open_array(def) or
  125. is_array_of_const(def) or
  126. is_array_constructor(def);}
  127. variantdef,
  128. formaldef :
  129. result:=true;
  130. objectdef :
  131. result:=is_object(def);
  132. stringdef :
  133. result:=(tstringdef(def).stringtype in [st_shortstring,st_longstring]);
  134. procvardef :
  135. { If we always push records by value, we have to handle methodpointers that way too. }
  136. result:=false; {not tprocvardef(def).is_addressonly;}
  137. setdef :
  138. result:=not(is_smallset(def));
  139. else
  140. ;
  141. end;
  142. end;
  143. function tcpuparamanager.get_funcretloc(p : tabstractprocdef; side: tcallercallee; forcetempdef: tdef): tcgpara;
  144. var
  145. paraloc : pcgparalocation;
  146. retcgsize : tcgsize;
  147. retdef : tdef;
  148. begin
  149. if set_common_funcretloc_info(p,forcetempdef,retcgsize,result) then
  150. begin
  151. { Return is passed as var parameter,
  152. in this case we use the first register R4 for it }
  153. if assigned(forcetempdef) then
  154. retdef:=forcetempdef
  155. else
  156. retdef:=p.returndef;
  157. if ret_in_param(retdef,p) and
  158. is_abi_record(retdef) then
  159. begin
  160. if intparareg=0 then
  161. inc(intparareg);
  162. end;
  163. exit;
  164. end;
  165. paraloc:=result.add_location;
  166. { Return in FPU register? }
  167. if result.def.typ=floatdef then
  168. begin
  169. paraloc^.loc:=LOC_FPUREGISTER;
  170. paraloc^.register:=NR_FPU_RESULT_REG;
  171. if retcgsize=OS_F64 then
  172. setsubreg(paraloc^.register,R_SUBFD);
  173. paraloc^.size:=retcgsize;
  174. paraloc^.def:=result.def;
  175. end
  176. else
  177. { Return in register }
  178. begin
  179. {$ifndef cpu64bitalu}
  180. if retcgsize in [OS_64,OS_S64] then
  181. begin
  182. { low }
  183. paraloc^.loc:=LOC_REGISTER;
  184. if side=callerside then
  185. paraloc^.register:=NR_FUNCTION_RESULT64_LOW_REG
  186. else
  187. paraloc^.register:=NR_FUNCTION_RETURN64_LOW_REG;
  188. paraloc^.size:=OS_32;
  189. paraloc^.def:=u32inttype;
  190. { high }
  191. paraloc:=result.add_location;
  192. paraloc^.loc:=LOC_REGISTER;
  193. if side=callerside then
  194. paraloc^.register:=NR_FUNCTION_RESULT64_HIGH_REG
  195. else
  196. paraloc^.register:=NR_FUNCTION_RETURN64_HIGH_REG;
  197. paraloc^.size:=OS_32;
  198. paraloc^.def:=u32inttype;
  199. end
  200. else
  201. {$endif cpu64bitalu}
  202. begin
  203. paraloc^.loc:=LOC_REGISTER;
  204. paraloc^.size:=retcgsize;
  205. paraloc^.def:=result.def;
  206. if side=callerside then
  207. paraloc^.register:=newreg(R_INTREGISTER,RS_FUNCTION_RESULT_REG,cgsize2subreg(R_INTREGISTER,retcgsize))
  208. else
  209. paraloc^.register:=newreg(R_INTREGISTER,RS_FUNCTION_RETURN_REG,cgsize2subreg(R_INTREGISTER,retcgsize));
  210. end;
  211. end
  212. end;
  213. procedure tcpuparamanager.create_paraloc_info_intern(p : tabstractprocdef; side: tcallercallee;paras:tparalist);
  214. var
  215. paraloc : pcgparalocation;
  216. i,j : integer;
  217. hp : tparavarsym;
  218. paracgsize : tcgsize;
  219. paralen : longint;
  220. locdef : tdef;
  221. paradef : tdef;
  222. fpparareg : integer;
  223. reg : tsuperregister;
  224. alignment : longint;
  225. tmp : longint;
  226. firstparaloc : boolean;
  227. reg_and_stack: boolean;
  228. begin
  229. fpparareg := 0;
  230. for i:=0 to paras.count-1 do
  231. begin
  232. hp:=tparavarsym(paras[i]);
  233. paradef := hp.vardef;
  234. { currently only support C-style array of const }
  235. if (p.proccalloption in cstylearrayofconst) and
  236. is_array_of_const(paradef) then
  237. begin
  238. paraloc:=hp.paraloc[side].add_location;
  239. { hack: the paraloc must be valid, but is not actually used }
  240. paraloc^.loc:=LOC_REGISTER;
  241. paraloc^.register:=NR_R0;
  242. paraloc^.size:=OS_ADDR;
  243. paraloc^.def:=voidpointertype;
  244. break;
  245. end;
  246. if push_addr_param(hp.varspez,paradef,p.proccalloption) then
  247. begin
  248. paracgsize := OS_ADDR;
  249. paralen := tcgsize2size[paracgsize];
  250. paradef := cpointerdef.getreusable_no_free(paradef);
  251. end
  252. else
  253. begin
  254. paracgsize := def_cgsize(paradef);
  255. { for things like formaldef }
  256. if (paracgsize=OS_NO) and (paradef.typ <> recorddef) then
  257. begin
  258. paracgsize:=OS_ADDR;
  259. paradef:=voidpointertype;
  260. end;
  261. if not is_special_array(paradef) then
  262. paralen := paradef.size
  263. else
  264. paralen := tcgsize2size[paracgsize];
  265. end;
  266. if (paracgsize in [OS_64, OS_S64, OS_F64]) or (paradef.alignment = 8) then
  267. alignment := 8
  268. else
  269. alignment := 4;
  270. //writeln('para: ',hp.Name,' typ=',hp.vardef.typ,' paracgsize=',paracgsize,' align=',hp.vardef.alignment);
  271. hp.paraloc[side].reset;
  272. hp.paraloc[side].Alignment:=alignment;
  273. locdef:=paradef;
  274. if (paracgsize=OS_NO) or
  275. { Ordinals on caller side must be promoted to machine word }
  276. ((target_info.endian=endian_big) and // applies to little-endian too?
  277. (paradef.typ<>recorddef) and
  278. (side=callerside) and
  279. (paralen<tcgsize2size[OS_INT]))then
  280. begin
  281. if is_signed(paradef) then
  282. begin
  283. paracgsize:=OS_S32;
  284. locdef:=s32inttype;
  285. end
  286. else
  287. begin
  288. paracgsize:=OS_32;
  289. locdef:=u32inttype;
  290. end;
  291. paralen:=align(paralen,4);
  292. end
  293. else
  294. paralen:=tcgsize2size[paracgsize];
  295. hp.paraloc[side].intsize:=paralen;
  296. hp.paraloc[side].size:=paracgsize;
  297. hp.paraloc[side].def:=paradef;
  298. if (paralen=0) then
  299. if (paradef.typ=recorddef) then
  300. begin
  301. paraloc:=hp.paraloc[side].add_location;
  302. paraloc^.loc:=LOC_VOID;
  303. end
  304. else
  305. internalerror(2013020601);
  306. { check the alignment, mips O32ABI require a nature alignment }
  307. tmp := align(intparasize, alignment) - intparasize;
  308. while tmp > 0 do
  309. begin
  310. inc(intparareg);
  311. inc(intparasize,4);
  312. dec(tmp,4);
  313. end;
  314. { any non-float args will disable the use the floating regs }
  315. { up to two fp args }
  316. if (not(paracgsize in [OS_F32, OS_F64])) or (fpparareg = 2) then
  317. can_use_float := false;
  318. firstparaloc:=true;
  319. { Is parameter split between stack and registers? }
  320. reg_and_stack:=(side=calleeside) and
  321. (paralen+intparasize>16) and (intparasize<16);
  322. while paralen>0 do
  323. begin
  324. paraloc:=hp.paraloc[side].add_location;
  325. { We can allocate at maximum 32 bits per register }
  326. if (paracgsize in [OS_64,OS_S64]) or
  327. ((paracgsize in [OS_F32,OS_F64]) and
  328. not(can_use_float)) then
  329. begin
  330. paraloc^.size:=OS_32;
  331. paraloc^.def:=u32inttype;
  332. end
  333. else
  334. begin
  335. paraloc^.size:=paracgsize;
  336. paraloc^.def:=locdef;
  337. end;
  338. { ret in param? }
  339. if (vo_is_funcret in hp.varoptions) and
  340. is_abi_record(hp.vardef) then
  341. begin
  342. { This should be the first parameter }
  343. //if (intparareg<>1) then
  344. // Comment(V_Warning,'intparareg should be one for funcret in tcpuparamanager.create_paraloc_info_intern');
  345. paraloc^.loc:=LOC_REGISTER;
  346. paraloc^.register:=newreg(R_INTREGISTER,parasupregs[0],R_SUBWHOLE);
  347. inc(intparasize,align(tcgsize2size[paraloc^.size],sizeof(aint)));
  348. end
  349. { "In case of po_delphi_nested_cc, the parent frame pointer
  350. is always passed on the stack". On other targets it is
  351. used to provide caller-side stack cleanup and prevent stackframe
  352. optimization. For MIPS this does not matter. }
  353. else if (intparareg<mips_nb_used_registers) and
  354. (not reg_and_stack) {and
  355. (not(vo_is_parentfp in hp.varoptions) or
  356. not(po_delphi_nested_cc in p.procoptions))} then
  357. begin
  358. if (can_use_float) then
  359. begin
  360. paraloc^.loc:=LOC_FPUREGISTER;
  361. if (fpparareg = 0) then
  362. reg := RS_F12
  363. else
  364. reg := RS_F14;
  365. if (paraloc^.size = OS_F64) then
  366. begin
  367. paraloc^.register:=newreg(R_FPUREGISTER, reg, R_SUBFD);
  368. inc(fpparareg);
  369. inc(intparareg);
  370. inc(intparareg);
  371. inc(intparasize,8);
  372. end
  373. else
  374. begin
  375. paraloc^.register:=newreg(R_FPUREGISTER, reg, R_SUBFS);
  376. inc(fpparareg);
  377. inc(intparareg);
  378. inc(intparasize,sizeof(aint));
  379. end;
  380. end
  381. else { not can use float }
  382. begin
  383. paraloc^.loc:=LOC_REGISTER;
  384. paraloc^.register:=newreg(R_INTREGISTER,parasupregs[intparareg],R_SUBWHOLE);
  385. { big-endian targets require that record data stored in parameter
  386. registers is left-aligned }
  387. if (target_info.endian=endian_big) and
  388. (paradef.typ=recorddef) and
  389. (paralen<tcgsize2size[OS_INT]) then
  390. begin
  391. paraloc^.shiftval := (sizeof(aint)-tcgsize2size[paraloc^.size])*(-8);
  392. paraloc^.size := OS_INT;
  393. paraloc^.def := osuinttype;
  394. end;
  395. inc(intparareg);
  396. inc(intparasize,align(tcgsize2size[paraloc^.size],mips_sizeof_register_param));
  397. end;
  398. end
  399. else
  400. begin
  401. if reg_and_stack then
  402. begin
  403. for j:=intparareg to mips_nb_used_registers-1 do
  404. tcpuprocinfo(current_procinfo).register_used[j]:=true;
  405. { all registers used now }
  406. intparareg:=mips_nb_used_registers;
  407. end;
  408. paraloc^.loc:=LOC_REFERENCE;
  409. if (paradef.typ=floatdef) then
  410. paraloc^.size:=int_float_cgsize(paralen)
  411. else
  412. paraloc^.size:=int_cgsize(paralen);
  413. paraloc^.def:=get_paraloc_def(locdef,paralen,firstparaloc);
  414. if side=callerside then
  415. begin
  416. paraloc^.reference.index := NR_STACK_POINTER_REG;
  417. paraloc^.reference.offset:=intparasize;
  418. end
  419. else
  420. begin
  421. if (po_nostackframe in p.procoptions) then
  422. paraloc^.reference.index := NR_STACK_POINTER_REG
  423. else
  424. begin
  425. paraloc^.reference.index := NR_FRAME_POINTER_REG;
  426. if assigned(current_procinfo) then
  427. include(current_procinfo.flags,pi_needs_stackframe);
  428. end;
  429. paraloc^.reference.offset:=intparasize;
  430. if (target_info.endian=endian_big) and
  431. (paralen<tcgsize2size[OS_INT]) and
  432. (paradef.typ<>recorddef) then
  433. inc(paraloc^.reference.offset,4-paralen);
  434. end;
  435. inc(intparasize,align(paralen,mips_sizeof_register_param));
  436. paralen:=0;
  437. end;
  438. dec(paralen,tcgsize2size[paraloc^.size]);
  439. firstparaloc:=false;
  440. end;
  441. end;
  442. { O32 ABI reqires at least 16 bytes }
  443. if (intparasize < 16) then
  444. intparasize := 16;
  445. end;
  446. function tcpuparamanager.create_varargs_paraloc_info(p : tabstractprocdef; side: tcallercallee; varargspara:tvarargsparalist):longint;
  447. begin
  448. intparareg:=0;
  449. intparasize:=0;
  450. can_use_float := true;
  451. { Create Function result paraloc }
  452. create_funcretloc_info(p,callerside);
  453. { calculate the registers for the normal parameters }
  454. create_paraloc_info_intern(p,side,p.paras);
  455. { append the varargs }
  456. can_use_float := false;
  457. { restore correct intparasize value }
  458. if intparareg < 4 then
  459. intparasize:=intparareg * 4;
  460. if assigned(varargspara) then
  461. begin
  462. if side=callerside then
  463. create_paraloc_info_intern(p,side,varargspara)
  464. else
  465. internalerror(2019021922);
  466. end;
  467. create_funcretloc_info(p,side);
  468. { We need to return the size allocated on the stack }
  469. result:=intparasize;
  470. end;
  471. function tcpuparamanager.create_paraloc_info(p : tabstractprocdef; side: tcallercallee):longint;
  472. begin
  473. intparareg:=0;
  474. intparasize:=0;
  475. can_use_float := true;
  476. { Create Function result paraloc }
  477. create_funcretloc_info(p,side);
  478. create_paraloc_info_intern(p,side,p.paras);
  479. { We need to return the size allocated on the stack }
  480. result:=intparasize;
  481. end;
  482. begin
  483. ParaManager:=tcpuparamanager.create;
  484. end.