llvmdef.pas 32 KB

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  1. {
  2. Copyright (c) 2013 by Jonas Maebe
  3. This unit implements some LLVM type helper 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. {$i fpcdefs.inc}
  18. unit llvmdef;
  19. interface
  20. uses
  21. cclasses,globtype,
  22. aasmbase,
  23. parabase,
  24. symbase,symtype,symdef,
  25. llvmbase;
  26. type
  27. { there are three different circumstances in which procdefs are used:
  28. a) definition of a procdef that's implemented in the current module
  29. b) declaration of an external routine that's called in the current one
  30. c) alias declaration of a procdef implemented in the current module
  31. d) defining a procvar type
  32. The main differences between the contexts are:
  33. a) information about sign extension of result type, proc name, parameter names & sign-extension info & types
  34. b) information about sign extension of result type, proc name, no parameter names, with parameter sign-extension info & types
  35. c) no information about sign extension of result type, proc name, no parameter names, no information about sign extension of parameters, parameter types
  36. d) no information about sign extension of result type, no proc name, no parameter names, no information about sign extension of parameters, parameter types
  37. }
  38. tllvmprocdefdecltype = (lpd_def,lpd_decl,lpd_alias,lpd_procvar);
  39. { returns the identifier to use as typename for a def in llvm (llvm only
  40. allows naming struct types) -- only supported for defs with a typesym, and
  41. only for tabstractrecorddef descendantds and complex procvars }
  42. function llvmtypeidentifier(def: tdef): TSymStr;
  43. { encode a type into the internal format used by LLVM (for a type
  44. declaration) }
  45. function llvmencodetypedecl(def: tdef): TSymStr;
  46. { same as above, but use a type name if possible (for any use) }
  47. function llvmencodetypename(def: tdef): TSymStr;
  48. { encode a procdef/procvardef into the internal format used by LLVM }
  49. function llvmencodeproctype(def: tabstractprocdef; const customname: TSymStr; pddecltype: tllvmprocdefdecltype): TSymStr;
  50. { incremental version of the above }
  51. procedure llvmaddencodedproctype(def: tabstractprocdef; const customname: TSymStr; pddecltype: tllvmprocdefdecltype; var encodedstr: TSymStr);
  52. { function result types may have to be represented differently, e.g. a
  53. record consisting of 4 longints must be returned as a record consisting of
  54. two int64's on x86-64. This function is used to create (and reuse)
  55. temporary recorddefs for such purposes.}
  56. function llvmgettemprecorddef(fieldtypes: tfplist; packrecords, recordalignmin, maxcrecordalign: shortint): trecorddef;
  57. { get the llvm type corresponding to a parameter, e.g. a record containing
  58. two integer int64 for an arbitrary record split over two individual int64
  59. parameters, or an int32 for an int16 parameter on a platform that requires
  60. such parameters to be zero/sign extended. The second parameter can be used
  61. to get the type before zero/sign extension, as e.g. required to generate
  62. function declarations. }
  63. function llvmgetcgparadef(const cgpara: tcgpara; beforevalueext: boolean): tdef;
  64. { can be used to extract the value extension info from acgpara. Pass in
  65. the def of the cgpara as first parameter and a local variable holding
  66. a copy of the def of the location (value extension only makes sense for
  67. ordinal parameters that are smaller than a single location). The routine
  68. will return the def of the location without sign extension (if applicable)
  69. and the kind of sign extension that was originally performed in the
  70. signext parameter }
  71. procedure llvmextractvalueextinfo(paradef: tdef; var paralocdef: tdef; out signext: tllvmvalueextension);
  72. { returns whether a paraloc should be translated into an llvm "byval"
  73. parameter. These are declared as pointers to a particular type, but
  74. usually turned into copies onto the stack. The exact behaviour for
  75. parameters that should be passed in registers is undefined and depends on
  76. the platform, and furthermore this modifier sometimes inhibits
  77. optimizations. As a result,we only use it for aggregate parameters of
  78. which we know that they should be passed on the stack }
  79. function llvmbyvalparaloc(paraloc: pcgparalocation): boolean;
  80. { returns whether a def is representated by an aggregate type in llvm
  81. (struct, array) }
  82. function llvmaggregatetype(def: tdef): boolean;
  83. function llvmconvop(fromsize, tosize: tdef): tllvmop;
  84. { mangle a global identifier so that it's recognised by LLVM as a global
  85. (in the sense of module-global) label and so that it won't mangle the
  86. name further according to platform conventions (we already did that) }
  87. function llvmmangledname(const s: TSymStr): TSymStr;
  88. function llvmasmsymname(const sym: TAsmSymbol): TSymStr;
  89. implementation
  90. uses
  91. cutils,constexp,
  92. verbose,systems,
  93. fmodule,
  94. symtable,symconst,symsym,
  95. llvmsym,hlcgobj,
  96. defutil,cgbase,paramgr;
  97. {******************************************************************
  98. Type encoding
  99. *******************************************************************}
  100. function llvmtypeidentifier(def: tdef): TSymStr;
  101. begin
  102. if not assigned(def.typesym) then
  103. internalerror(2015041901);
  104. result:='%"typ.'+def.fullownerhierarchyname+def.typesym.realname+'"'
  105. end;
  106. function llvmaggregatetype(def: tdef): boolean;
  107. begin
  108. result:=
  109. (def.typ in [recorddef,filedef,variantdef]) or
  110. ((def.typ=arraydef) and
  111. not is_dynamic_array(def)) or
  112. ((def.typ=setdef) and
  113. not is_smallset(def)) or
  114. is_shortstring(def) or
  115. is_object(def) or
  116. ((def.typ=procvardef) and
  117. not tprocvardef(def).is_addressonly)
  118. end;
  119. function llvmconvop(fromsize, tosize: tdef): tllvmop;
  120. var
  121. fromregtyp,
  122. toregtyp: tregistertype;
  123. frombytesize,
  124. tobytesize: asizeint;
  125. begin
  126. fromregtyp:=chlcgobj.def2regtyp(fromsize);
  127. toregtyp:=chlcgobj.def2regtyp(tosize);
  128. { int to pointer or vice versa }
  129. if fromregtyp=R_ADDRESSREGISTER then
  130. begin
  131. case toregtyp of
  132. R_INTREGISTER:
  133. result:=la_ptrtoint;
  134. R_ADDRESSREGISTER:
  135. result:=la_bitcast;
  136. else
  137. result:=la_ptrtoint_to_x;
  138. end;
  139. end
  140. else if toregtyp=R_ADDRESSREGISTER then
  141. begin
  142. case fromregtyp of
  143. R_INTREGISTER:
  144. result:=la_inttoptr;
  145. R_ADDRESSREGISTER:
  146. result:=la_bitcast;
  147. else
  148. result:=la_x_to_inttoptr;
  149. end;
  150. end
  151. else
  152. begin
  153. frombytesize:=fromsize.size;
  154. tobytesize:=tosize.size;
  155. { need zero/sign extension, float truncation or plain bitcast? }
  156. if tobytesize<>frombytesize then
  157. begin
  158. case fromregtyp of
  159. R_FPUREGISTER,
  160. R_MMREGISTER:
  161. begin
  162. { todo: update once we support vectors }
  163. if not(toregtyp in [R_FPUREGISTER,R_MMREGISTER]) then
  164. internalerror(2014062203);
  165. if tobytesize<frombytesize then
  166. result:=la_fptrunc
  167. else
  168. result:=la_fpext
  169. end;
  170. else
  171. begin
  172. if tobytesize<frombytesize then
  173. result:=la_trunc
  174. else if is_signed(fromsize) then
  175. { fromsize is signed -> sign extension }
  176. result:=la_sext
  177. else
  178. result:=la_zext;
  179. end;
  180. end;
  181. end
  182. else if is_pasbool(fromsize) and
  183. not is_pasbool(tosize) then
  184. begin
  185. if is_cbool(tosize) then
  186. result:=la_sext
  187. else
  188. result:=la_zext
  189. end
  190. else if is_pasbool(tosize) and
  191. not is_pasbool(fromsize) then
  192. result:=la_trunc
  193. else
  194. result:=la_bitcast;
  195. end;
  196. end;
  197. function llvmmangledname(const s: TSymStr): TSymStr;
  198. begin
  199. if copy(s,1,length('llvm.'))<>'llvm.' then
  200. result:='@"\01'+s+'"'
  201. else
  202. result:='@'+s
  203. end;
  204. function llvmasmsymname(const sym: TAsmSymbol): TSymStr;
  205. begin
  206. { AT_ADDR and AT_LABEL represent labels in the code, which have
  207. a different type in llvm compared to (global) data labels }
  208. if sym.bind=AB_TEMP then
  209. result:='%'+sym.name
  210. else if not(sym.typ in [AT_LABEL,AT_ADDR]) then
  211. result:=llvmmangledname(sym.name)
  212. else
  213. result:='label %'+sym.name;
  214. end;
  215. function llvmbyvalparaloc(paraloc: pcgparalocation): boolean;
  216. begin
  217. { "byval" is broken for register paras on several platforms in llvm
  218. (search for "byval" in llvm's bug tracker). Additionally, it should only
  219. be used to pass aggregate parameters on the stack, because it reportedly
  220. inhibits llvm's midlevel optimizers.
  221. Exception (for now?): parameters that have special shifting
  222. requirements, because modelling those in llvm is not easy (and clang
  223. nor llvm-gcc seem to do so either) }
  224. result:=
  225. ((paraloc^.loc=LOC_REFERENCE) and
  226. llvmaggregatetype(paraloc^.def)) or
  227. ((paraloc^.loc in [LOC_REGISTER,LOC_CREGISTER]) and
  228. (paraloc^.shiftval<>0))
  229. end;
  230. procedure llvmaddencodedabstractrecordtype(def: tabstractrecorddef; var encodedstr: TSymStr); forward;
  231. type
  232. tllvmencodeflag = (lef_inaggregate, lef_noimplicitderef, lef_typedecl);
  233. tllvmencodeflags = set of tllvmencodeflag;
  234. procedure llvmaddencodedtype_intern(def: tdef; const flags: tllvmencodeflags; var encodedstr: TSymStr);
  235. var
  236. elesize: asizeint;
  237. begin
  238. case def.typ of
  239. stringdef :
  240. begin
  241. case tstringdef(def).stringtype of
  242. st_widestring,
  243. st_unicodestring:
  244. { the variable does not point to the header, but to a
  245. null-terminated string/array with undefined bounds }
  246. encodedstr:=encodedstr+'i16*';
  247. st_ansistring:
  248. encodedstr:=encodedstr+'i8*';
  249. st_shortstring:
  250. { length byte followed by string bytes }
  251. if tstringdef(def).len>0 then
  252. encodedstr:=encodedstr+'['+tostr(tstringdef(def).len+1)+' x i8]'
  253. else
  254. encodedstr:=encodedstr+'[0 x i8]';
  255. else
  256. internalerror(2013100201);
  257. end;
  258. end;
  259. enumdef:
  260. begin
  261. encodedstr:=encodedstr+'i'+tostr(def.size*8);
  262. end;
  263. orddef :
  264. begin
  265. if is_void(def) then
  266. encodedstr:=encodedstr+'void'
  267. { mainly required because comparison operations return i1, and
  268. otherwise we always have to immediatel extend them to i8 for
  269. no good reason; besides, Pascal booleans can only contain 0
  270. or 1 in valid code anyway (famous last words...) }
  271. else if torddef(def).ordtype=pasbool8 then
  272. encodedstr:=encodedstr+'i1'
  273. else
  274. encodedstr:=encodedstr+'i'+tostr(def.size*8);
  275. end;
  276. pointerdef :
  277. begin
  278. if is_voidpointer(def) then
  279. encodedstr:=encodedstr+'i8*'
  280. else
  281. begin
  282. llvmaddencodedtype_intern(tpointerdef(def).pointeddef,[],encodedstr);
  283. encodedstr:=encodedstr+'*';
  284. end;
  285. end;
  286. floatdef :
  287. begin
  288. case tfloatdef(def).floattype of
  289. s32real:
  290. encodedstr:=encodedstr+'float';
  291. s64real:
  292. encodedstr:=encodedstr+'double';
  293. { necessary to be able to force our own size/alignment }
  294. s80real:
  295. { prevent llvm from allocating the standard ABI size for
  296. extended }
  297. if lef_inaggregate in flags then
  298. encodedstr:=encodedstr+'[10 x i8]'
  299. else
  300. encodedstr:=encodedstr+'x86_fp80';
  301. sc80real:
  302. encodedstr:=encodedstr+'x86_fp80';
  303. s64comp,
  304. s64currency:
  305. encodedstr:=encodedstr+'i64';
  306. s128real:
  307. {$if defined(powerpc) or defined(powerpc128)}
  308. encodedstr:=encodedstr+'ppc_fp128';
  309. {$else}
  310. encodedstr:=encodedstr+'fp128';
  311. {$endif}
  312. else
  313. internalerror(2013100202);
  314. end;
  315. end;
  316. filedef :
  317. begin
  318. case tfiledef(def).filetyp of
  319. ft_text :
  320. llvmaddencodedtype_intern(search_system_type('TEXTREC').typedef,[lef_inaggregate]+[lef_typedecl]*flags,encodedstr);
  321. ft_typed,
  322. ft_untyped :
  323. llvmaddencodedtype_intern(search_system_type('FILEREC').typedef,[lef_inaggregate]+[lef_typedecl]*flags,encodedstr);
  324. else
  325. internalerror(2013100203);
  326. end;
  327. end;
  328. recorddef :
  329. begin
  330. { avoid endlessly recursive definitions }
  331. if assigned(def.typesym) and
  332. ((lef_inaggregate in flags) or
  333. not(lef_typedecl in flags)) then
  334. encodedstr:=encodedstr+llvmtypeidentifier(def)
  335. else
  336. llvmaddencodedabstractrecordtype(trecorddef(def),encodedstr);
  337. end;
  338. variantdef :
  339. begin
  340. llvmaddencodedtype_intern(search_system_type('TVARDATA').typedef,[lef_inaggregate]+[lef_typedecl]*flags,encodedstr);
  341. end;
  342. classrefdef :
  343. begin
  344. llvmaddencodedtype_intern(tobjectdef(tclassrefdef(def).pointeddef).vmt_def,flags,encodedstr);
  345. encodedstr:=encodedstr+'*';
  346. end;
  347. setdef :
  348. begin
  349. { just an array as far as llvm is concerned; don't use a "packed
  350. array of i1" or so, this requires special support in backends
  351. and guarantees nothing about the internal format }
  352. if is_smallset(def) then
  353. llvmaddencodedtype_intern(cgsize_orddef(def_cgsize(def)),[lef_inaggregate],encodedstr)
  354. else
  355. encodedstr:=encodedstr+'['+tostr(tsetdef(def).size)+' x i8]';
  356. end;
  357. formaldef :
  358. begin
  359. { var/const/out x (always treated as "pass by reference" -> don't
  360. add extra "*" here) }
  361. encodedstr:=encodedstr+'i8';
  362. end;
  363. arraydef :
  364. begin
  365. if is_array_of_const(def) then
  366. begin
  367. encodedstr:=encodedstr+'[0 x ';
  368. llvmaddencodedtype_intern(search_system_type('TVARREC').typedef,[lef_inaggregate],encodedstr);
  369. encodedstr:=encodedstr+']';
  370. end
  371. else if is_open_array(def) then
  372. begin
  373. encodedstr:=encodedstr+'[0 x ';
  374. llvmaddencodedtype_intern(tarraydef(def).elementdef,[lef_inaggregate],encodedstr);
  375. encodedstr:=encodedstr+']';
  376. end
  377. else if is_dynamic_array(def) then
  378. begin
  379. llvmaddencodedtype_intern(tarraydef(def).elementdef,[],encodedstr);
  380. encodedstr:=encodedstr+'*';
  381. end
  382. else if is_packed_array(def) and
  383. (tarraydef(def).elementdef.typ in [enumdef,orddef]) then
  384. begin
  385. elesize:=packedbitsloadsize(tarraydef(def).elementdef.packedbitsize);
  386. encodedstr:=encodedstr+'['+tostr(tarraydef(def).size div elesize)+' x ';
  387. { encode as an array of integers with the size on which we
  388. perform the packedbits operations }
  389. llvmaddencodedtype_intern(cgsize_orddef(int_cgsize(elesize)),[lef_inaggregate],encodedstr);
  390. encodedstr:=encodedstr+']';
  391. end
  392. else
  393. begin
  394. encodedstr:=encodedstr+'['+tostr(tarraydef(def).elecount)+' x ';
  395. llvmaddencodedtype_intern(tarraydef(def).elementdef,[lef_inaggregate],encodedstr);
  396. encodedstr:=encodedstr+']';
  397. end;
  398. end;
  399. procdef,
  400. procvardef :
  401. begin
  402. if (def.typ=procdef) or
  403. tprocvardef(def).is_addressonly then
  404. begin
  405. llvmaddencodedproctype(tabstractprocdef(def),'',lpd_procvar,encodedstr);
  406. if def.typ=procvardef then
  407. encodedstr:=encodedstr+'*';
  408. end
  409. else if ((lef_inaggregate in flags) or
  410. not(lef_typedecl in flags)) and
  411. assigned(tprocvardef(def).typesym) then
  412. begin
  413. { in case the procvardef recursively references itself, e.g.
  414. via a pointer }
  415. encodedstr:=encodedstr+llvmtypeidentifier(def)
  416. end
  417. else
  418. begin
  419. encodedstr:=encodedstr+'<{';
  420. { code pointer }
  421. llvmaddencodedproctype(tabstractprocdef(def),'',lpd_procvar,encodedstr);
  422. { data pointer (maybe todo: generate actual layout if
  423. available) }
  424. encodedstr:=encodedstr+'*, i8*}>';
  425. end;
  426. end;
  427. objectdef :
  428. case tobjectdef(def).objecttype of
  429. odt_class,
  430. odt_objcclass,
  431. odt_object,
  432. odt_cppclass:
  433. begin
  434. if not(lef_typedecl in flags) and
  435. assigned(def.typesym) then
  436. encodedstr:=encodedstr+llvmtypeidentifier(def)
  437. else
  438. llvmaddencodedabstractrecordtype(tabstractrecorddef(def),encodedstr);
  439. if ([lef_typedecl,lef_noimplicitderef]*flags=[]) and
  440. is_implicit_pointer_object_type(def) then
  441. encodedstr:=encodedstr+'*'
  442. end;
  443. odt_interfacecom,
  444. odt_interfacecorba,
  445. odt_dispinterface:
  446. begin
  447. { type is a pointer to a pointer to the vmt }
  448. llvmaddencodedtype_intern(tobjectdef(def).vmt_def,flags,encodedstr);
  449. if ([lef_typedecl,lef_noimplicitderef]*flags=[]) then
  450. encodedstr:=encodedstr+'**';
  451. end;
  452. odt_interfacecom_function,
  453. odt_interfacecom_property,
  454. odt_objcprotocol:
  455. begin
  456. { opaque for now }
  457. encodedstr:=encodedstr+'i8*'
  458. end;
  459. else
  460. internalerror(2013100601);
  461. end;
  462. undefineddef,
  463. errordef :
  464. internalerror(2013100604);
  465. else
  466. internalerror(2013100603);
  467. end;
  468. end;
  469. function llvmencodetypename(def: tdef): TSymStr;
  470. begin
  471. result:='';
  472. llvmaddencodedtype_intern(def,[],result);
  473. end;
  474. procedure llvmaddencodedtype(def: tdef; inaggregate: boolean; var encodedstr: TSymStr);
  475. var
  476. flags: tllvmencodeflags;
  477. begin
  478. if inaggregate then
  479. flags:=[lef_inaggregate]
  480. else
  481. flags:=[];
  482. llvmaddencodedtype_intern(def,flags,encodedstr);
  483. end;
  484. procedure llvmaddencodedabstractrecordtype(def: tabstractrecorddef; var encodedstr: TSymStr);
  485. var
  486. st: tllvmshadowsymtable;
  487. symdeflist: tfpobjectlist;
  488. i: longint;
  489. nopacked: boolean;
  490. begin
  491. st:=tabstractrecordsymtable(def.symtable).llvmst;
  492. symdeflist:=st.symdeflist;
  493. nopacked:=df_llvm_no_struct_packing in def.defoptions;
  494. if nopacked then
  495. encodedstr:=encodedstr+'{ '
  496. else
  497. encodedstr:=encodedstr+'<{ ';
  498. if symdeflist.count>0 then
  499. begin
  500. i:=0;
  501. if (def.typ=objectdef) and
  502. assigned(tobjectdef(def).childof) and
  503. is_class_or_interface_or_dispinterface(tllvmshadowsymtableentry(symdeflist[0]).def) then
  504. begin
  505. { insert the struct for the class rather than a pointer to the struct }
  506. if (tllvmshadowsymtableentry(symdeflist[0]).def.typ<>objectdef) then
  507. internalerror(2008070601);
  508. llvmaddencodedtype_intern(tllvmshadowsymtableentry(symdeflist[0]).def,[lef_inaggregate,lef_noimplicitderef],encodedstr);
  509. inc(i);
  510. end;
  511. while i<symdeflist.count do
  512. begin
  513. if i<>0 then
  514. encodedstr:=encodedstr+', ';
  515. llvmaddencodedtype_intern(tllvmshadowsymtableentry(symdeflist[i]).def,[lef_inaggregate],encodedstr);
  516. inc(i);
  517. end;
  518. end;
  519. if nopacked then
  520. encodedstr:=encodedstr+' }'
  521. else
  522. encodedstr:=encodedstr+' }>';
  523. end;
  524. procedure llvmextractvalueextinfo(paradef: tdef; var paralocdef: tdef; out signext: tllvmvalueextension);
  525. begin
  526. { implicit zero/sign extension for ABI compliance? (yes, if the size
  527. of a paraloc is larger than the size of the entire parameter) }
  528. if is_ordinal(paradef) and
  529. is_ordinal(paralocdef) and
  530. (paradef.size<paralocdef.size) then
  531. begin
  532. paralocdef:=paradef;
  533. if is_signed(paradef) then
  534. signext:=lve_signext
  535. else
  536. signext:=lve_zeroext
  537. end
  538. else
  539. signext:=lve_none;
  540. end;
  541. procedure llvmaddencodedparaloctype(hp: tparavarsym; proccalloption: tproccalloption; withparaname, withattributes: boolean; var first: boolean; var encodedstr: TSymStr);
  542. var
  543. paraloc: PCGParaLocation;
  544. signext: tllvmvalueextension;
  545. usedef: tdef;
  546. begin
  547. if (proccalloption in cdecl_pocalls) and
  548. is_array_of_const(hp.vardef) then
  549. begin
  550. if not first then
  551. encodedstr:=encodedstr+', '
  552. else
  553. first:=false;
  554. encodedstr:=encodedstr+'...';
  555. exit
  556. end;
  557. if withparaname then
  558. paraloc:=hp.paraloc[calleeside].location
  559. else
  560. paraloc:=hp.paraloc[callerside].location;
  561. repeat
  562. usedef:=paraloc^.def;
  563. llvmextractvalueextinfo(hp.vardef,usedef,signext);
  564. { implicit zero/sign extension for ABI compliance? }
  565. if not first then
  566. encodedstr:=encodedstr+', '
  567. else
  568. first:=false;
  569. llvmaddencodedtype_intern(usedef,[],encodedstr);
  570. { in case signextstr<>'', there should be only one paraloc -> no need
  571. to clear (reason: it means that the paraloc is larger than the
  572. original parameter) }
  573. if withattributes then
  574. encodedstr:=encodedstr+llvmvalueextension2str[signext];
  575. { sret: hidden pointer for structured function result }
  576. if vo_is_funcret in hp.varoptions then
  577. begin
  578. { "sret" is only valid for the firstparameter, while in FPC this
  579. can sometimes be second one (self comes before). In general,
  580. this is not a problem: we can just leave out sret, which means
  581. the result will be a bit less well optimised), but it is for
  582. AArch64: there, the sret parameter must be passed in a different
  583. register (-> paranr_result is smaller than paranr_self for that
  584. platform in symconst) }
  585. {$ifdef aarch64}
  586. if not first then
  587. internalerror(2015101404);
  588. {$endif aarch64}
  589. if withattributes then
  590. if first then
  591. encodedstr:=encodedstr+' sret'
  592. else { we can add some other attributes to optimise things,}
  593. encodedstr:=encodedstr+' noalias nocapture';
  594. end
  595. else if not paramanager.push_addr_param(hp.varspez,hp.vardef,proccalloption) and
  596. llvmbyvalparaloc(paraloc) then
  597. begin
  598. if withattributes then
  599. encodedstr:=encodedstr+'* byval'
  600. else
  601. encodedstr:=encodedstr+'*';
  602. end;
  603. if withparaname then
  604. begin
  605. if paraloc^.llvmloc.loc<>LOC_REFERENCE then
  606. internalerror(2014010803);
  607. encodedstr:=encodedstr+' '+llvmasmsymname(paraloc^.llvmloc.sym);
  608. end;
  609. paraloc:=paraloc^.next;
  610. until not assigned(paraloc);
  611. end;
  612. function llvmencodeproctype(def: tabstractprocdef; const customname: TSymStr; pddecltype: tllvmprocdefdecltype): TSymStr;
  613. begin
  614. result:='';
  615. llvmaddencodedproctype(def,customname,pddecltype,result);
  616. end;
  617. procedure llvmaddencodedproctype(def: tabstractprocdef; const customname: TSymStr; pddecltype: tllvmprocdefdecltype; var encodedstr: TSymStr);
  618. var
  619. usedef: tdef;
  620. paranr: longint;
  621. hp: tparavarsym;
  622. signext: tllvmvalueextension;
  623. useside: tcallercallee;
  624. first: boolean;
  625. begin
  626. { when writing a definition, we have to write the parameter names, and
  627. those are only available on the callee side. In all other cases,
  628. we are at the callerside }
  629. if pddecltype=lpd_def then
  630. useside:=calleeside
  631. else
  632. useside:=callerside;
  633. def.init_paraloc_info(useside);
  634. first:=true;
  635. { function result (return-by-ref is handled explicitly) }
  636. if not paramanager.ret_in_param(def.returndef,def) then
  637. begin
  638. usedef:=llvmgetcgparadef(def.funcretloc[useside],false);
  639. llvmextractvalueextinfo(def.returndef,usedef,signext);
  640. { specifying result sign extention information for an alias causes
  641. an error for some reason }
  642. if pddecltype in [lpd_decl,lpd_def] then
  643. encodedstr:=encodedstr+llvmvalueextension2str[signext];
  644. encodedstr:=encodedstr+' ';
  645. llvmaddencodedtype_intern(usedef,[],encodedstr);
  646. end
  647. else
  648. begin
  649. encodedstr:=encodedstr+' ';
  650. llvmaddencodedtype(voidtype,false,encodedstr);
  651. end;
  652. encodedstr:=encodedstr+' ';
  653. { add procname? }
  654. if (pddecltype in [lpd_decl,lpd_def]) and
  655. (def.typ=procdef) then
  656. if customname='' then
  657. encodedstr:=encodedstr+llvmmangledname(tprocdef(def).mangledname)
  658. else
  659. encodedstr:=encodedstr+llvmmangledname(customname);
  660. encodedstr:=encodedstr+'(';
  661. { parameters }
  662. first:=true;
  663. for paranr:=0 to def.paras.count-1 do
  664. begin
  665. hp:=tparavarsym(def.paras[paranr]);
  666. llvmaddencodedparaloctype(hp,def.proccalloption,pddecltype in [lpd_def],not(pddecltype in [lpd_procvar,lpd_alias]),first,encodedstr);
  667. end;
  668. if po_varargs in def.procoptions then
  669. begin
  670. if not first then
  671. encodedstr:=encodedstr+', ';
  672. encodedstr:=encodedstr+'...';
  673. end;
  674. encodedstr:=encodedstr+')'
  675. end;
  676. function llvmgettemprecorddef(fieldtypes: tfplist; packrecords, recordalignmin, maxcrecordalign: shortint): trecorddef;
  677. var
  678. i: longint;
  679. res: PHashSetItem;
  680. oldsymtablestack: tsymtablestack;
  681. hrecst: trecordsymtable;
  682. hdef: tdef;
  683. hrecdef: trecorddef;
  684. sym: tfieldvarsym;
  685. typename: string;
  686. begin
  687. typename:=internaltypeprefixName[itp_llvmstruct];
  688. for i:=0 to fieldtypes.count-1 do
  689. begin
  690. hdef:=tdef(fieldtypes[i]);
  691. case hdef.typ of
  692. orddef:
  693. case torddef(hdef).ordtype of
  694. s8bit,
  695. u8bit:
  696. typename:=typename+'i8';
  697. s16bit,
  698. u16bit:
  699. typename:=typename+'i16';
  700. s32bit,
  701. u32bit:
  702. typename:=typename+'i32';
  703. s64bit,
  704. u64bit:
  705. typename:=typename+'i64';
  706. else
  707. { other types should not appear currently, add as needed }
  708. internalerror(2014012001);
  709. end;
  710. floatdef:
  711. case tfloatdef(hdef).floattype of
  712. s32real:
  713. typename:=typename+'f32';
  714. s64real:
  715. typename:=typename+'f64';
  716. else
  717. { other types should not appear currently, add as needed }
  718. internalerror(2014012008);
  719. end;
  720. pointerdef:
  721. typename:='p'+tostr(hdef.deflist_index);
  722. else
  723. { other types should not appear currently, add as needed }
  724. internalerror(2014012009);
  725. end;
  726. end;
  727. if not assigned(current_module) then
  728. internalerror(2014012002);
  729. res:=current_module.llvmdefs.FindOrAdd(@typename[1],length(typename));
  730. if not assigned(res^.Data) then
  731. begin
  732. res^.Data:=crecorddef.create_global_internal(typename,packrecords,
  733. recordalignmin,maxcrecordalign);
  734. for i:=0 to fieldtypes.count-1 do
  735. trecorddef(res^.Data).add_field_by_def('F'+tostr(i),tdef(fieldtypes[i]));
  736. end;
  737. trecordsymtable(trecorddef(res^.Data).symtable).addalignmentpadding;
  738. result:=trecorddef(res^.Data);
  739. end;
  740. function llvmgetcgparadef(const cgpara: tcgpara; beforevalueext: boolean): tdef;
  741. var
  742. retdeflist: tfplist;
  743. retloc: pcgparalocation;
  744. usedef: tdef;
  745. valueext: tllvmvalueextension;
  746. begin
  747. { single location }
  748. if not assigned(cgpara.location^.next) then
  749. begin
  750. { def of the location, except in case of zero/sign-extension }
  751. usedef:=cgpara.location^.def;
  752. if beforevalueext then
  753. llvmextractvalueextinfo(cgpara.def,usedef,valueext);
  754. { comp and currency are handled by the x87 in this case. They cannot
  755. be represented directly in llvm, and llvmdef translates them into
  756. i64 (since that's their storage size and internally they also are
  757. int64). Solve this by changing the type to s80real in the
  758. returndef/parameter declaration. }
  759. if (usedef.typ=floatdef) and
  760. (tfloatdef(usedef).floattype in [s64comp,s64currency]) then
  761. usedef:=s80floattype;
  762. result:=usedef;
  763. exit
  764. end;
  765. { multiple locations -> create temp record }
  766. retdeflist:=tfplist.create;
  767. retloc:=cgpara.location;
  768. repeat
  769. retdeflist.add(retloc^.def);
  770. retloc:=retloc^.next;
  771. until not assigned(retloc);
  772. result:=llvmgettemprecorddef(retdeflist,C_alignment,
  773. targetinfos[target_info.system]^.alignment.recordalignmin,
  774. targetinfos[target_info.system]^.alignment.maxCrecordalign);
  775. include(result.defoptions,df_llvm_no_struct_packing);
  776. end;
  777. function llvmencodetypedecl(def: tdef): TSymStr;
  778. begin
  779. result:='';
  780. llvmaddencodedtype_intern(def,[lef_typedecl],result);
  781. end;
  782. end.