hlcgllvm.pas 87 KB

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  1. {
  2. Copyright (c) 2010, 2013 by Jonas Maebe
  3. Member of the Free Pascal development team
  4. This unit implements the LLVM high level code generator
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. ****************************************************************************
  17. }
  18. unit hlcgllvm;
  19. {$i fpcdefs.inc}
  20. interface
  21. uses
  22. globtype,cclasses,
  23. aasmbase,aasmdata,
  24. symbase,symconst,symtype,symdef,symsym,
  25. cpubase, hlcgobj, cgbase, cgutils, parabase, tgobj;
  26. type
  27. { thlcgllvm }
  28. thlcgllvm = class(thlcgobj)
  29. constructor create;
  30. procedure a_load_reg_cgpara(list: TAsmList; size: tdef; r: tregister; const cgpara: TCGPara); override;
  31. procedure a_load_ref_cgpara(list: TAsmList; size: tdef; const r: treference; const cgpara: TCGPara); override;
  32. procedure a_load_const_cgpara(list: TAsmList; tosize: tdef; a: tcgint; const cgpara: TCGPara); override;
  33. protected
  34. procedure a_load_ref_cgpara_init_src(list: TAsmList; const para: tcgpara; const initialref: treference; var refsize: tdef; out newref: treference);
  35. public
  36. procedure getcpuregister(list: TAsmList; r: Tregister); override;
  37. procedure ungetcpuregister(list: TAsmList; r: Tregister); override;
  38. procedure alloccpuregisters(list: TAsmList; rt: Tregistertype; const r: Tcpuregisterset); override;
  39. procedure allocallcpuregisters(list: TAsmList); override;
  40. procedure deallocallcpuregisters(list: TAsmList); override;
  41. procedure a_bit_test_reg_reg_reg(list: TAsmList; bitnumbersize, valuesize, destsize: tdef; bitnumber, value, destreg: tregister); override;
  42. procedure a_bit_set_reg_reg(list: TAsmList; doset: boolean; bitnumbersize, destsize: tdef; bitnumber, dest: tregister); override;
  43. protected
  44. procedure a_call_common(list: TAsmList; pd: tabstractprocdef; const paras: array of pcgpara; const forceresdef: tdef; out res: tregister; out hlretdef: tdef; out llvmretdef: tdef; out callparas: tfplist);
  45. public
  46. function a_call_name(list : TAsmList;pd : tprocdef;const s : TSymStr; const paras: array of pcgpara; forceresdef: tdef; weak: boolean): tcgpara;override;
  47. function a_call_reg(list: TAsmList; pd: tabstractprocdef; reg: tregister; const paras: array of pcgpara): tcgpara; override;
  48. procedure a_load_const_reg(list : TAsmList;tosize : tdef;a : tcgint;register : tregister);override;
  49. procedure a_load_const_ref(list: TAsmList; tosize: tdef; a: tcgint; const ref: treference);override;
  50. procedure a_load_reg_ref(list : TAsmList;fromsize, tosize : tdef;register : tregister;const ref : treference);override;
  51. procedure a_load_reg_reg(list : TAsmList;fromsize, tosize : tdef;reg1,reg2 : tregister);override;
  52. protected
  53. procedure gen_load_refaddrfull_anyreg(list: TAsmList; fromsize, tosize : tdef; const simpleref: treference; register: tregister; shuffle: pmmshuffle);
  54. function handle_agg_load_ref_anyreg(list: TasmList; var fromsize, tosize: tdef; var simpleref: treference; register: tregister; shuffle: pmmshuffle): boolean;
  55. public
  56. procedure a_load_ref_reg(list : TAsmList;fromsize, tosize : tdef;const ref : treference;register : tregister);override;
  57. procedure a_load_ref_ref(list: TAsmList; fromsize, tosize: tdef; const sref: treference; const dref: treference); override;
  58. protected
  59. procedure a_loadaddr_ref_reg_intern(list : TAsmList;fromsize, tosize : tdef;const ref : treference;r : tregister; makefromsizepointer: boolean);
  60. public
  61. procedure a_loadaddr_ref_reg(list : TAsmList;fromsize, tosize : tdef;const ref : treference;r : tregister);override;
  62. procedure a_op_const_reg(list: TAsmList; Op: TOpCG; size: tdef; a: tcgint; reg: TRegister); override;
  63. procedure a_op_const_reg_reg(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister); override;
  64. procedure a_op_reg_reg_reg(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister); override;
  65. procedure a_op_reg_reg(list: TAsmList; Op: TOpCG; size: tdef; reg1, reg2: TRegister); override;
  66. procedure a_op_const_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister;setflags : boolean;var ovloc : tlocation); override;
  67. procedure a_op_reg_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister;setflags : boolean;var ovloc : tlocation); override;
  68. procedure a_cmp_const_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; a: tcgint; reg: tregister; l: tasmlabel); override;
  69. procedure a_cmp_reg_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; reg1, reg2: tregister; l: tasmlabel); override;
  70. procedure a_jmp_always(list : TAsmList;l: tasmlabel); override;
  71. procedure g_unreachable(list: TAsmList); override;
  72. procedure g_concatcopy(list : TAsmList;size: tdef; const source,dest : treference);override;
  73. procedure a_loadfpu_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; reg: tregister); override;
  74. procedure a_loadfpu_reg_ref(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const ref: treference); override;
  75. procedure a_loadfpu_reg_reg(list: TAsmList; fromsize, tosize: tdef; reg1, reg2: tregister); override;
  76. protected
  77. procedure gen_fpconstrained_intrinsic(list: TAsmList; const intrinsic: TIDString; fromsize, tosize: tdef; fromreg, toreg: tregister; roundingmode: boolean);
  78. public
  79. procedure gen_proc_symbol(list: TAsmList); override;
  80. procedure handle_external_proc(list: TAsmList; pd: tprocdef; const importname: TSymStr); override;
  81. procedure g_proc_entry(list : TAsmList;localsize : longint;nostackframe:boolean); override;
  82. procedure g_proc_exit(list : TAsmList;parasize:longint;nostackframe:boolean); override;
  83. protected
  84. procedure gen_load_uninitialized_function_result(list: TAsmList; pd: tprocdef; resdef: tdef; const resloc: tcgpara); override;
  85. public
  86. procedure g_overflowcheck(list: TAsmList; const Loc: tlocation; def: tdef); override;
  87. procedure g_overflowCheck_loc(List:TAsmList;const Loc:TLocation;def:TDef;var ovloc : tlocation); override;
  88. procedure g_ptrtypecast_reg(list: TAsmList; fromdef, todef: tdef; var reg: tregister); override;
  89. procedure g_ptrtypecast_ref(list: TAsmList; fromdef, todef: tdef; var ref: treference); override;
  90. procedure g_set_addr_nonbitpacked_field_ref(list: TAsmList; recdef: tabstractrecorddef; field: tfieldvarsym; var recref: treference); override;
  91. procedure a_loadmm_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; reg: tregister; shuffle: pmmshuffle); override;
  92. procedure a_loadmm_reg_ref(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const ref: treference; shuffle: pmmshuffle); override;
  93. procedure a_loadmm_reg_reg(list: TAsmList; fromsize, tosize: tdef; reg1, reg2: tregister; shuffle: pmmshuffle); override;
  94. procedure a_opmm_reg_reg(list: TAsmList; Op: TOpCG; size: tdef; src, dst: tregister; shuffle: pmmshuffle); override;
  95. procedure a_loadmm_intreg_reg(list: TAsmList; fromsize, tosize: tdef; intreg, mmreg: tregister; shuffle: pmmshuffle); override;
  96. procedure a_loadmm_reg_intreg(list: TAsmList; fromsize, tosize: tdef; mmreg, intreg: tregister; shuffle: pmmshuffle); override;
  97. function get_call_result_cgpara(pd: tabstractprocdef; forceresdef: tdef): tcgpara; override;
  98. protected
  99. procedure gen_load_loc_function_result(list: TAsmList; vardef: tdef; const l: tlocation); override;
  100. public
  101. procedure gen_load_loc_cgpara(list: TAsmList; vardef: tdef; const l: tlocation; const cgpara: tcgpara); override;
  102. procedure gen_load_cgpara_loc(list: TAsmList; vardef: tdef; const para: TCGPara; var destloc: tlocation; reusepara: boolean); override;
  103. {$ifdef cpuflags}
  104. { llvm doesn't have flags, but cpuflags is defined in case the real cpu
  105. has flags and we have to override the abstract methods to prevent
  106. warnings }
  107. procedure a_jmp_flags(list: TAsmList; const f: TResFlags; l: tasmlabel); override;
  108. procedure g_flags2reg(list: TAsmList; size: tdef; const f: tresflags; reg: TRegister); override;
  109. procedure g_flags2ref(list: TAsmList; size: tdef; const f: tresflags; const ref: TReference); override;
  110. {$endif cpuflags}
  111. { unimplemented or unnecessary routines }
  112. procedure a_bit_scan_reg_reg(list: TAsmList; reverse: boolean; srcsize, dstsize: tdef; src, dst: tregister); override;
  113. procedure g_stackpointer_alloc(list: TAsmList; size: longint); override;
  114. procedure g_intf_wrapper(list: TAsmList; procdef: tprocdef; const labelname: string; ioffset: longint); override;
  115. procedure g_adjust_self_value(list: TAsmList; procdef: tprocdef; ioffset: aint); override;
  116. procedure g_local_unwind(list: TAsmList; l: TAsmLabel); override;
  117. procedure gen_stack_check_size_para(list: TAsmList); override;
  118. procedure gen_stack_check_call(list: TAsmList); override;
  119. procedure varsym_set_localloc(list: TAsmList; vs: tabstractnormalvarsym); override;
  120. procedure paravarsym_set_initialloc_to_paraloc(vs: tparavarsym); override;
  121. procedure g_external_wrapper(list: TAsmList; procdef: tprocdef; const wrappername, externalname: string; global: boolean); override;
  122. { def is a pointerdef or implicit pointer type (class, classref, procvar,
  123. dynamic array, ...). }
  124. function make_simple_ref_ptr(list: TAsmList; const ref: treference; ptrdef: tdef): treference;
  125. { def is the type of the data stored in memory pointed to by ref, not
  126. a pointer to this type }
  127. function make_simple_ref(list: TAsmList; const ref: treference; def: tdef): treference;
  128. protected
  129. procedure paraloctoloc(const paraloc: pcgparalocation; out hloc: tlocation);
  130. procedure set_call_function_result(const list: TAsmList; const pd: tabstractprocdef; const llvmretdef, hlretdef: tdef; const resval: tregister; var retpara: tcgpara);
  131. end;
  132. implementation
  133. uses
  134. verbose,cutils,globals,fmodule,constexp,systems,
  135. defutil,llvmdef,llvmsym,
  136. aasmtai,aasmcpu,
  137. aasmllvm,aasmllvmmetadata,llvmbase,llvminfo,tgllvm,
  138. symtable,symllvm,
  139. paramgr,
  140. pass_2,procinfo,llvmpi,cpuinfo,cgobj,cgllvm,cghlcpu,
  141. cgcpu,hlcgcpu;
  142. var
  143. create_hlcodegen_cpu: TProcedure = nil;
  144. const
  145. topcg2llvmop: array[topcg] of tllvmop =
  146. { OP_NONE OP_MOVE OP_ADD OP_AND OP_DIV OP_IDIV OP_IMUL OP_MUL }
  147. (la_none, la_none, la_add, la_and, la_udiv, la_sdiv, la_mul, la_mul,
  148. { OP_NEG OP_NOT OP_OR OP_SAR OP_SHL OP_SHR OP_SUB OP_XOR }
  149. la_none, la_none, la_or, la_ashr, la_shl, la_lshr, la_sub, la_xor,
  150. { OP_ROL OP_ROR }
  151. la_none, la_none);
  152. constructor thlcgllvm.create;
  153. begin
  154. inherited
  155. end;
  156. procedure thlcgllvm.a_load_reg_cgpara(list: TAsmList; size: tdef; r: tregister; const cgpara: TCGPara);
  157. begin
  158. if size<>llvm_metadatatype then
  159. begin
  160. inherited;
  161. exit;
  162. end;
  163. { overwrite with the reference to the metadata (stored in the register's supreg) }
  164. cgpara.location^.register:=r;
  165. end;
  166. procedure thlcgllvm.a_load_ref_cgpara(list: TAsmList; size: tdef; const r: treference; const cgpara: TCGPara);
  167. var
  168. tmpref, initialref, ref: treference;
  169. fielddef,
  170. orgsize: tdef;
  171. location: pcgparalocation;
  172. sizeleft,
  173. totaloffset: asizeint;
  174. paralocidx: longint;
  175. userecord: boolean;
  176. begin
  177. location:=cgpara.location;
  178. sizeleft:=cgpara.intsize;
  179. totaloffset:=0;
  180. orgsize:=size;
  181. a_load_ref_cgpara_init_src(list,cgpara,r,size,initialref);
  182. if initialref.refaddr=addr_full then
  183. begin
  184. cgpara.check_simple_location;
  185. location^.llvmvalueloc:=true;
  186. location^.llvmloc.loc:=LOC_CREFERENCE;
  187. location^.llvmloc.sym:=initialref.symbol;
  188. exit;
  189. end;
  190. userecord:=
  191. (orgsize<>size) and
  192. assigned(cgpara.location^.next);
  193. paralocidx:=0;
  194. fielddef:=nil;
  195. while assigned(location) do
  196. begin
  197. if userecord then
  198. begin
  199. { llvmparadef is a record in this case, with every field
  200. corresponding to a single paraloc (fielddef is unused, because
  201. it will be equivalent to location^.def -- see below) }
  202. g_setup_load_field_by_name(list,trecorddef(size),'F'+tostr(paralocidx),initialref,tmpref,fielddef);
  203. end
  204. else
  205. tmpref:=initialref;
  206. paramanager.allocparaloc(list,location);
  207. case location^.loc of
  208. LOC_REGISTER,LOC_CREGISTER:
  209. begin
  210. { byval parameter -> load the address rather than the value }
  211. if not location^.llvmvalueloc then
  212. a_loadaddr_ref_reg(list,tpointerdef(location^.def).pointeddef,location^.def,tmpref,location^.register)
  213. { if this parameter is split into multiple paralocs via
  214. record fields, load the current paraloc. The type of the
  215. paraloc and of the current record field will match by
  216. construction (the record is build from the paraloc
  217. types) }
  218. else if userecord then
  219. a_load_ref_reg(list,fielddef,location^.def,tmpref,location^.register)
  220. { if the parameter is passed in a single paraloc, the
  221. paraloc's type may be different from the declared type
  222. -> use the original complete parameter size as source so
  223. we can insert a type conversion if necessary }
  224. else
  225. a_load_ref_reg(list,size,location^.def,tmpref,location^.register)
  226. end;
  227. LOC_REFERENCE,LOC_CREFERENCE:
  228. begin
  229. if assigned(location^.next) then
  230. internalerror(2010052906);
  231. reference_reset_base(ref,cpointerdef.getreusable(size),location^.reference.index,location^.reference.offset,ctempposinvalid,newalignment(cgpara.alignment,cgpara.intsize-sizeleft),[]);
  232. if (def_cgsize(size)<>OS_NO) and
  233. (size.size=sizeleft) and
  234. (sizeleft<=sizeof(aint)) then
  235. a_load_ref_ref(list,size,location^.def,tmpref,ref)
  236. else
  237. { use concatcopy, because the parameter can be larger than }
  238. { what the OS_* constants can handle }
  239. g_concatcopy(list,location^.def,tmpref,ref);
  240. end;
  241. LOC_MMREGISTER,LOC_CMMREGISTER:
  242. begin
  243. case location^.size of
  244. OS_F32,
  245. OS_F64,
  246. OS_F128:
  247. a_loadmm_ref_reg(list,location^.def,location^.def,tmpref,location^.register,mms_movescalar);
  248. OS_M8..OS_M128,
  249. OS_MS8..OS_MS128,
  250. OS_32..OS_128,
  251. { OS_NO is for records of non-power-of-two sizes that have to
  252. be passed in MM registers -> never scalar floats }
  253. OS_NO:
  254. a_loadmm_ref_reg(list,location^.def,location^.def,tmpref,location^.register,nil);
  255. else
  256. internalerror(2010053101);
  257. end;
  258. end
  259. else
  260. internalerror(2010053111);
  261. end;
  262. inc(totaloffset,tcgsize2size[location^.size]);
  263. dec(sizeleft,tcgsize2size[location^.size]);
  264. location:=location^.next;
  265. inc(paralocidx);
  266. end;
  267. end;
  268. procedure thlcgllvm.a_load_const_cgpara(list: TAsmList; tosize: tdef; a: tcgint; const cgpara: TCGPara);
  269. begin
  270. if is_ordinal(cgpara.def) then
  271. begin
  272. cgpara.check_simple_location;
  273. paramanager.alloccgpara(list,cgpara);
  274. if cgpara.location^.shiftval<0 then
  275. a:=a shl -cgpara.location^.shiftval;
  276. cgpara.location^.llvmloc.loc:=LOC_CONSTANT;
  277. cgpara.location^.llvmloc.value:=a;
  278. end
  279. else
  280. inherited;
  281. end;
  282. procedure thlcgllvm.a_load_ref_cgpara_init_src(list: TAsmList; const para: tcgpara; const initialref: treference; var refsize: tdef; out newref: treference);
  283. var
  284. newrefsize: tdef;
  285. reg: tregister;
  286. begin
  287. newrefsize:=llvmgetcgparadef(para,true,callerside);
  288. if (refsize<>newrefsize) and
  289. (initialref.refaddr<>addr_full) then
  290. begin
  291. reg:=getaddressregister(list,cpointerdef.getreusable(newrefsize));
  292. a_loadaddr_ref_reg(list,refsize,cpointerdef.getreusable(newrefsize),initialref,reg);
  293. reference_reset_base(newref,cpointerdef.getreusable(newrefsize),reg,0,initialref.temppos,initialref.alignment,initialref.volatility);
  294. refsize:=newrefsize;
  295. end
  296. else
  297. newref:=initialref;
  298. end;
  299. procedure thlcgllvm.getcpuregister(list: TAsmList; r: Tregister);
  300. begin
  301. { don't do anything }
  302. end;
  303. procedure thlcgllvm.ungetcpuregister(list: TAsmList; r: Tregister);
  304. begin
  305. { don't do anything }
  306. end;
  307. procedure thlcgllvm.alloccpuregisters(list: TAsmList; rt: Tregistertype; const r: Tcpuregisterset);
  308. begin
  309. { don't do anything }
  310. end;
  311. procedure thlcgllvm.allocallcpuregisters(list: TAsmList);
  312. begin
  313. { don't do anything }
  314. end;
  315. procedure thlcgllvm.deallocallcpuregisters(list: TAsmList);
  316. begin
  317. { don't do anything }
  318. end;
  319. procedure thlcgllvm.a_bit_test_reg_reg_reg(list: TAsmList; bitnumbersize, valuesize, destsize: tdef; bitnumber, value, destreg: tregister);
  320. var
  321. tmpbitnumberreg: tregister;
  322. begin
  323. { unlike other architectures, llvm requires the bitnumber register to
  324. have the same size as the shifted register }
  325. if bitnumbersize.size<>valuesize.size then
  326. begin
  327. tmpbitnumberreg:=hlcg.getintregister(list,valuesize);
  328. a_load_reg_reg(list,bitnumbersize,valuesize,bitnumber,tmpbitnumberreg);
  329. bitnumbersize:=valuesize;
  330. bitnumber:=tmpbitnumberreg;
  331. end;
  332. inherited;
  333. end;
  334. procedure thlcgllvm.a_bit_set_reg_reg(list: TAsmList; doset: boolean; bitnumbersize, destsize: tdef; bitnumber, dest: tregister);
  335. var
  336. tmpbitnumberreg: tregister;
  337. begin
  338. { unlike other architectures, llvm requires the bitnumber register to
  339. have the same size as the shifted register }
  340. if bitnumbersize.size<>destsize.size then
  341. begin
  342. tmpbitnumberreg:=hlcg.getintregister(list,destsize);
  343. a_load_reg_reg(list,bitnumbersize,destsize,bitnumber,tmpbitnumberreg);
  344. bitnumbersize:=destsize;
  345. bitnumber:=tmpbitnumberreg;
  346. end;
  347. inherited;
  348. end;
  349. function get_call_pd(pd: tabstractprocdef): tdef;
  350. begin
  351. if (pd.typ=procdef) or
  352. not pd.is_addressonly then
  353. { we get a pointerdef rather than a procvardef so that if we have to
  354. insert an external declaration for this procdef in llvmtype, we don't
  355. have to create another procdef from the procvardef we've just created.
  356. With a pointerdef, we can just get the pointeddef again. A pointerdef
  357. is also much cheaper to create, and in llvm a provardef is a "function
  358. pointer", so a pointer to a procdef is the same as a procvar as far
  359. as llvm is concerned }
  360. result:=cpointerdef.getreusable(pd)
  361. else
  362. result:=pd
  363. end;
  364. procedure thlcgllvm.a_call_common(list: TAsmList; pd: tabstractprocdef; const paras: array of pcgpara; const forceresdef: tdef; out res: tregister; out hlretdef: tdef; out llvmretdef: tdef; out callparas: tfplist);
  365. procedure load_ref_anyreg(def: tdef; const ref: treference; reg: tregister);
  366. begin
  367. case getregtype(reg) of
  368. R_INTREGISTER,
  369. R_ADDRESSREGISTER:
  370. begin
  371. a_load_ref_reg(list,def,def,ref,reg);
  372. end;
  373. R_FPUREGISTER:
  374. begin
  375. a_loadfpu_ref_reg(list,def,def,ref,reg);
  376. end;
  377. R_MMREGISTER:
  378. begin
  379. a_loadmm_ref_reg(list,def,def,ref,reg,mms_movescalar);
  380. end;
  381. else
  382. internalerror(2014012213);
  383. end;
  384. end;
  385. var
  386. i: longint;
  387. href: treference;
  388. callpara: pllvmcallpara;
  389. paraloc: pcgparalocation;
  390. firstparaloc: boolean;
  391. begin
  392. callparas:=tfplist.Create;
  393. for i:=0 to high(paras) do
  394. begin
  395. { skip parameters without data }
  396. if paras[i]^.isempty then
  397. continue;
  398. paraloc:=paras[i]^.location;
  399. firstparaloc:=true;
  400. while assigned(paraloc) do
  401. begin
  402. new(callpara);
  403. callpara^.def:=paraloc^.def;
  404. if firstparaloc then
  405. callpara^.alignment:=paras[i]^.Alignment
  406. else
  407. callpara^.alignment:=std_param_align;
  408. { if the paraloc doesn't contain the value itself, it's a byval
  409. parameter }
  410. if paraloc^.retvalloc then
  411. begin
  412. callpara^.sret:=true;
  413. callpara^.byval:=false;
  414. end
  415. else
  416. begin
  417. callpara^.sret:=false;
  418. callpara^.byval:=not paraloc^.llvmvalueloc;
  419. end;
  420. llvmextractvalueextinfo(paras[i]^.def, callpara^.def, callpara^.valueext);
  421. case paraloc^.llvmloc.loc of
  422. LOC_CONSTANT:
  423. begin
  424. callpara^.typ:=top_const;
  425. callpara^.value:=paraloc^.llvmloc.value;
  426. end;
  427. LOC_CREFERENCE:
  428. begin
  429. callpara^.typ:=top_ref;
  430. callpara^.sym:=paraloc^.llvmloc.sym;
  431. end
  432. else
  433. begin
  434. case paraloc^.loc of
  435. LOC_REFERENCE:
  436. begin
  437. if paraloc^.llvmvalueloc then
  438. internalerror(2014012307)
  439. else
  440. begin
  441. callpara^.typ:=top_reg;
  442. reference_reset_base(href, cpointerdef.getreusable(callpara^.def), paraloc^.reference.index, paraloc^.reference.offset, ctempposinvalid, paraloc^.def.alignment, []);
  443. res:=getregisterfordef(list, paraloc^.def);
  444. load_ref_anyreg(callpara^.def, href, res);
  445. end;
  446. callpara^.register:=res
  447. end;
  448. LOC_REGISTER,
  449. LOC_FPUREGISTER,
  450. LOC_MMREGISTER:
  451. begin
  452. callpara^.typ:=top_reg;
  453. { undo explicit value extension }
  454. if callpara^.valueext<>lve_none then
  455. begin
  456. res:=getregisterfordef(list, callpara^.def);
  457. a_load_reg_reg(list, paraloc^.def, callpara^.def, paraloc^.register, res);
  458. paraloc^.register:=res;
  459. end;
  460. callpara^.register:=paraloc^.register
  461. end;
  462. { empty records }
  463. LOC_VOID:
  464. begin
  465. callpara^.typ:=top_undef;
  466. end
  467. else
  468. internalerror(2014010605);
  469. end;
  470. end;
  471. end;
  472. callparas.add(callpara);
  473. paraloc:=paraloc^.next;
  474. firstparaloc:=false;
  475. end;
  476. end;
  477. { the Pascal level may expect a different returndef compared to the
  478. declared one }
  479. if pd.generate_safecall_wrapper then
  480. begin
  481. hlretdef:=ossinttype;
  482. llvmretdef:=ossinttype;
  483. end
  484. else
  485. begin
  486. if not assigned(forceresdef) then
  487. hlretdef:=pd.returndef
  488. else
  489. hlretdef:=forceresdef;
  490. { llvm will always expect the original return def }
  491. if not paramanager.ret_in_param(hlretdef, pd) or
  492. pd.generate_safecall_wrapper then
  493. llvmretdef:=llvmgetcgparadef(pd.funcretloc[callerside], true, callerside)
  494. else
  495. llvmretdef:=voidtype;
  496. end;
  497. if not is_void(llvmretdef) then
  498. res:=getregisterfordef(list, llvmretdef)
  499. else
  500. res:=NR_NO;
  501. { if this is a complex procvar, get the non-tmethod-like equivalent }
  502. if (pd.typ=procvardef) and
  503. not pd.is_addressonly then
  504. pd:=tprocvardef(cprocvardef.getreusableprocaddr(pd));
  505. end;
  506. function thlcgllvm.a_call_name(list: TAsmList; pd: tprocdef; const s: TSymStr; const paras: array of pcgpara; forceresdef: tdef; weak: boolean): tcgpara;
  507. var
  508. callparas: tfplist;
  509. llvmretdef,
  510. hlretdef: tdef;
  511. res: tregister;
  512. nextinslab,
  513. exceptlab: TAsmLabel;
  514. begin
  515. a_call_common(list,pd,paras,forceresdef,res,hlretdef,llvmretdef,callparas);
  516. if not(fc_catching_exceptions in flowcontrol) or
  517. { no invoke for intrinsics }
  518. (copy(s,1,5)='llvm.') then
  519. list.concat(taillvm.call_size_name_paras(get_call_pd(pd),pd.proccalloption,res,llvmretdef,current_asmdata.RefAsmSymbol(s,AT_FUNCTION),callparas))
  520. else
  521. begin
  522. current_asmdata.getjumplabel(nextinslab);
  523. exceptlab:=tllvmprocinfo(current_procinfo).CurrExceptLabel;
  524. list.concat(taillvm.invoke_size_name_paras_retlab_exceptlab(get_call_pd(pd),pd.proccalloption,res,llvmretdef,current_asmdata.RefAsmSymbol(s,AT_FUNCTION),callparas,nextinslab,exceptlab));
  525. a_label(list,nextinslab);
  526. end;
  527. result:=get_call_result_cgpara(pd,forceresdef);
  528. set_call_function_result(list,pd,llvmretdef,hlretdef,res,result);
  529. end;
  530. function thlcgllvm.a_call_reg(list: TAsmList; pd: tabstractprocdef; reg: tregister; const paras: array of pcgpara): tcgpara;
  531. var
  532. callparas: tfplist;
  533. llvmretdef,
  534. hlretdef: tdef;
  535. res: tregister;
  536. nextinslab,
  537. exceptlab: TAsmLabel;
  538. begin
  539. a_call_common(list,pd,paras,nil,res,hlretdef,llvmretdef,callparas);
  540. if not(fc_catching_exceptions in flowcontrol) then
  541. list.concat(taillvm.call_size_reg_paras(get_call_pd(pd),pd.proccalloption,res,llvmretdef,reg,callparas))
  542. else
  543. begin
  544. current_asmdata.getjumplabel(nextinslab);
  545. exceptlab:=tllvmprocinfo(current_procinfo).CurrExceptLabel;
  546. list.concat(taillvm.invoke_size_reg_paras_retlab_exceptlab(get_call_pd(pd),pd.proccalloption,res,llvmretdef,reg,callparas,nextinslab,exceptlab));
  547. a_label(list,nextinslab);
  548. end;
  549. result:=get_call_result_cgpara(pd,nil);
  550. set_call_function_result(list,pd,llvmretdef,hlretdef,res,result);
  551. end;
  552. procedure thlcgllvm.a_load_const_reg(list: TAsmList; tosize: tdef; a: tcgint; register: tregister);
  553. var
  554. fromsize: tdef;
  555. begin
  556. if tosize=llvm_metadatatype then
  557. internalerror(2019122804);
  558. if tosize.size<=ptrsinttype.size then
  559. fromsize:=ptrsinttype
  560. else
  561. fromsize:=tosize;
  562. list.concat(taillvm.op_reg_size_const_size(llvmconvop(fromsize,tosize,false),register,fromsize,a,tosize))
  563. end;
  564. procedure thlcgllvm.a_load_const_ref(list: TAsmList; tosize: tdef; a: tcgint; const ref: treference);
  565. var
  566. sref: treference;
  567. begin
  568. { llvm instructions do not support pointer constants -> only directly
  569. encode for integers; a_load_const_reg() handles pointers properly }
  570. if is_ordinal(tosize) or
  571. is_64bit(tosize) then
  572. begin
  573. sref:=make_simple_ref(list,ref,tosize);
  574. list.concat(taillvm.op_size_const_size_ref(la_store,tosize,a,cpointerdef.getreusable(tosize),sref))
  575. end
  576. else
  577. inherited;
  578. end;
  579. function def2intdef(fromsize, tosize: tdef): tdef;
  580. begin
  581. { we cannot zero-extend from/to anything but ordinal/enum
  582. types }
  583. if not(tosize.typ in [orddef,enumdef]) then
  584. internalerror(2014012305);
  585. { will give an internalerror if def_cgsize() returns OS_NO, which is
  586. what we want }
  587. result:=cgsize_orddef(def_cgsize(fromsize));
  588. end;
  589. procedure thlcgllvm.a_load_reg_ref(list: TAsmList; fromsize, tosize: tdef; register: tregister; const ref: treference);
  590. var
  591. tmpref,
  592. sref: treference;
  593. hreg,
  594. hreg2: tregister;
  595. tmpsize: tdef;
  596. begin
  597. if (fromsize=llvm_metadatatype) or
  598. (tosize=llvm_metadatatype) then
  599. internalerror(2019122802);
  600. sref:=make_simple_ref(list,ref,tosize);
  601. hreg:=register;
  602. (* typecast the pointer to the value instead of the value itself if
  603. they have the same size but are of different kinds, because we can't
  604. e.g. typecast a loaded <{i32, i32}> to an i64 *)
  605. if (llvmaggregatetype(fromsize) or
  606. llvmaggregatetype(tosize)) and
  607. (fromsize<>tosize) then
  608. begin
  609. if fromsize.size>tosize.size then
  610. begin
  611. { if source size is larger than the target size, we have to
  612. truncate it before storing. Unfortunately, we cannot truncate
  613. records (nor bitcast them to integers), so we first have to
  614. store them to memory and then bitcast the pointer to them
  615. We can't truncate an integer to 3/5/6/7 bytes either, so also
  616. pass via a temp in that case
  617. }
  618. if (fromsize.typ in [arraydef,recorddef]) or
  619. (tosize.size in [3,5,6,7]) then
  620. begin
  621. { store struct/array-in-register to memory }
  622. tg.gethltemp(list,fromsize,fromsize.size,tt_normal,tmpref);
  623. a_load_reg_ref(list,fromsize,fromsize,register,tmpref);
  624. { typecast pointer to memory into pointer to integer type }
  625. hreg:=getaddressregister(list,cpointerdef.getreusable(tosize));
  626. a_loadaddr_ref_reg(list,fromsize,cpointerdef.getreusable(tosize),tmpref,hreg);
  627. reference_reset_base(sref,cpointerdef.getreusable(tosize),hreg,0,tmpref.temppos,tmpref.alignment,tmpref.volatility);
  628. { load the integer from the temp into the destination }
  629. a_load_ref_ref(list,tosize,tosize,sref,ref);
  630. tg.ungettemp(list,tmpref);
  631. end
  632. else
  633. begin
  634. tmpsize:=def2intdef(tosize,fromsize);
  635. hreg:=getintregister(list,tmpsize);
  636. { truncate the integer }
  637. a_load_reg_reg(list,fromsize,tmpsize,register,hreg);
  638. { store it to memory (it will now be of the same size as the
  639. struct, and hence another path will be followed in this
  640. method) }
  641. a_load_reg_ref(list,tmpsize,tosize,hreg,sref);
  642. end;
  643. exit;
  644. end
  645. else
  646. begin
  647. hreg2:=getaddressregister(list,cpointerdef.getreusable(fromsize));
  648. a_loadaddr_ref_reg(list,tosize,cpointerdef.getreusable(fromsize),sref,hreg2);
  649. reference_reset_base(sref,cpointerdef.getreusable(fromsize),hreg2,0,sref.temppos,sref.alignment,sref.volatility);
  650. tosize:=fromsize;
  651. end;
  652. end
  653. else if fromsize<>tosize then
  654. begin
  655. hreg:=getregisterfordef(list,tosize);
  656. a_load_reg_reg(list,fromsize,tosize,register,hreg);
  657. end;
  658. list.concat(taillvm.op_size_reg_size_ref(la_store,tosize,hreg,cpointerdef.getreusable(tosize),sref));
  659. end;
  660. procedure thlcgllvm.a_load_reg_reg(list: TAsmList; fromsize, tosize: tdef; reg1, reg2: tregister);
  661. var
  662. op: tllvmop;
  663. tmpreg: tregister;
  664. tmpintdef: tdef;
  665. begin
  666. if (fromsize=llvm_metadatatype) or
  667. (tosize=llvm_metadatatype) then
  668. internalerror(2019122801);
  669. op:=llvmconvop(fromsize,tosize,true);
  670. { converting from pointer to something else and vice versa is only
  671. possible via an intermediate pass to integer. Same for "something else"
  672. to pointer. }
  673. case op of
  674. la_ptrtoint_to_x,
  675. la_x_to_inttoptr:
  676. begin
  677. { convert via an integer with the same size as "x" }
  678. if op=la_ptrtoint_to_x then
  679. begin
  680. tmpintdef:=cgsize_orddef(def_cgsize(tosize));
  681. op:=la_bitcast
  682. end
  683. else
  684. begin
  685. tmpintdef:=cgsize_orddef(def_cgsize(fromsize));
  686. op:=la_inttoptr;
  687. end;
  688. tmpreg:=getintregister(list,tmpintdef);
  689. a_load_reg_reg(list,fromsize,tmpintdef,reg1,tmpreg);
  690. reg1:=tmpreg;
  691. fromsize:=tmpintdef;
  692. end;
  693. else
  694. ;
  695. end;
  696. { reg2 = bitcast fromsize reg1 to tosize }
  697. list.concat(taillvm.op_reg_size_reg_size(op,reg2,fromsize,reg1,tosize));
  698. end;
  699. procedure thlcgllvm.gen_load_refaddrfull_anyreg(list: TAsmList; fromsize, tosize: tdef; const simpleref: treference; register: tregister; shuffle: pmmshuffle);
  700. var
  701. tmpref,
  702. tmpref2: treference;
  703. begin
  704. { can't bitcast records/arrays }
  705. if (llvmaggregatetype(fromsize) or
  706. llvmaggregatetype(tosize)) and
  707. (fromsize<>tosize) then
  708. begin
  709. if fromsize.size>tosize.size then
  710. begin
  711. tg.gethltemp(list,fromsize,fromsize.size,tt_normal,tmpref);
  712. tmpref2:=tmpref;
  713. g_ptrtypecast_ref(list,cpointerdef.getreusable(fromsize),cpointerdef.getreusable(tosize),tmpref2);
  714. end
  715. else
  716. begin
  717. tg.gethltemp(list,tosize,tosize.size,tt_normal,tmpref);
  718. tmpref2:=tmpref;
  719. g_ptrtypecast_ref(list,cpointerdef.getreusable(tosize),cpointerdef.getreusable(fromsize),tmpref);
  720. end;
  721. list.concat(taillvm.op_size_ref_size_ref(la_store,fromsize,simpleref,cpointerdef.getreusable(fromsize),tmpref));
  722. case getregtype(register) of
  723. R_INTREGISTER,
  724. R_ADDRESSREGISTER:
  725. a_load_ref_reg(list,tosize,tosize,tmpref2,register);
  726. R_FPUREGISTER:
  727. a_loadfpu_ref_reg(list,tosize,tosize,tmpref2,register);
  728. R_MMREGISTER:
  729. a_loadmm_ref_reg(list,tosize,tosize,tmpref2,register,shuffle);
  730. else
  731. internalerror(2016061901);
  732. end;
  733. tg.ungettemp(list,tmpref);
  734. end
  735. else
  736. list.concat(taillvm.op_reg_size_ref_size(llvmconvop(fromsize,tosize,false),register,fromsize,simpleref,tosize))
  737. end;
  738. function thlcgllvm.handle_agg_load_ref_anyreg(list: TasmList; var fromsize, tosize: tdef; var simpleref: treference; register: tregister; shuffle: pmmshuffle): boolean;
  739. var
  740. tmpref,
  741. tmpref2: treference;
  742. firstshuffle: pmmshuffle;
  743. begin
  744. if fromsize.size<tosize.size then
  745. begin
  746. { allocate a temp of size tosize, typecast it to the
  747. (smaller) fromsize, load the source in it, and then
  748. load the destination from it. The extra bits will contain
  749. garbage, but they should never be used. }
  750. tg.gethltemp(list,tosize,tosize.size,tt_persistent,tmpref);
  751. tmpref2:=tmpref;
  752. g_ptrtypecast_ref(list,cpointerdef.getreusable(tosize),cpointerdef.getreusable(fromsize),tmpref2);
  753. case getregtype(register) of
  754. R_INTREGISTER,
  755. R_ADDRESSREGISTER:
  756. begin
  757. a_load_ref_ref(list,fromsize,fromsize,simpleref,tmpref2);
  758. a_load_ref_reg(list,tosize,tosize,tmpref,register);
  759. end;
  760. R_FPUREGISTER:
  761. begin
  762. a_loadfpu_ref_ref(list,fromsize,fromsize,simpleref,tmpref2);
  763. a_loadfpu_ref_reg(list,tosize,tosize,tmpref,register);
  764. end;
  765. R_MMREGISTER:
  766. begin
  767. { don't shuffle twice }
  768. if shuffle=mms_movescalar then
  769. firstshuffle:=shuffle
  770. else
  771. firstshuffle:=nil;
  772. a_loadmm_ref_ref(list,fromsize,fromsize,simpleref,tmpref2,firstshuffle);
  773. a_loadmm_ref_reg(list,tosize,tosize,tmpref,register,shuffle);
  774. end;
  775. else
  776. internalerror(2019051040);
  777. end;
  778. tg.ungettemp(list,tmpref);
  779. result:=true;
  780. end
  781. else
  782. begin
  783. (* typecast the pointer to the value instead of the value
  784. itself if tosize<=fromsize but they are of different
  785. kinds, because we can't e.g. bitcast a loaded <{i32, i32}>
  786. to an i64 *)
  787. g_ptrtypecast_ref(list,cpointerdef.getreusable(fromsize),cpointerdef.getreusable(tosize),simpleref);
  788. fromsize:=tosize;
  789. result:=false;
  790. end;
  791. end;
  792. procedure thlcgllvm.a_load_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; register: tregister);
  793. var
  794. sref: treference;
  795. hreg: tregister;
  796. begin
  797. if (fromsize=llvm_metadatatype) or
  798. (tosize=llvm_metadatatype) then
  799. internalerror(2019122803);
  800. sref:=make_simple_ref(list,ref,fromsize);
  801. { "named register"? }
  802. if sref.refaddr=addr_full then
  803. gen_load_refaddrfull_anyreg(list,fromsize,tosize,sref,register,nil)
  804. else
  805. begin
  806. if ((fromsize.typ in [arraydef,recorddef]) or
  807. (tosize.typ in [arraydef,recorddef])) and
  808. (fromsize<>tosize) then
  809. begin
  810. if handle_agg_load_ref_anyreg(list,fromsize,tosize,sref,register,nil) then
  811. exit;
  812. end;
  813. hreg:=register;
  814. if fromsize<>tosize then
  815. hreg:=getregisterfordef(list,fromsize);
  816. list.concat(taillvm.op_reg_size_ref(la_load,hreg,cpointerdef.getreusable(fromsize),sref));
  817. if hreg<>register then
  818. a_load_reg_reg(list,fromsize,tosize,hreg,register);
  819. end;
  820. end;
  821. procedure thlcgllvm.a_load_ref_ref(list: TAsmList; fromsize, tosize: tdef; const sref: treference; const dref: treference);
  822. var
  823. sdref: treference;
  824. begin
  825. if (fromsize=tosize) and
  826. (sref.refaddr=addr_full) then
  827. begin
  828. sdref:=make_simple_ref(list,dref,tosize);
  829. list.concat(taillvm.op_size_ref_size_ref(la_store,fromsize,sref,cpointerdef.getreusable(tosize),sdref));
  830. end
  831. else if (fromsize=tosize) and
  832. not(fromsize.typ in [orddef,floatdef,enumdef]) and
  833. (sref.refaddr<>addr_full) and
  834. (fromsize.size>2*sizeof(aint)) then
  835. g_concatcopy(list,fromsize,sref,dref)
  836. else
  837. inherited
  838. end;
  839. procedure thlcgllvm.a_loadaddr_ref_reg_intern(list: TAsmList; fromsize, tosize: tdef; const ref: treference; r: tregister; makefromsizepointer: boolean);
  840. var
  841. sref: treference;
  842. begin
  843. { can't take the address of a 'named register' }
  844. if ref.refaddr=addr_full then
  845. internalerror(2013102306);
  846. if makefromsizepointer then
  847. fromsize:=cpointerdef.getreusable(fromsize);
  848. sref:=make_simple_ref_ptr(list,ref,fromsize);
  849. list.concat(taillvm.op_reg_size_ref_size(la_bitcast,r,fromsize,sref,tosize));
  850. end;
  851. procedure thlcgllvm.a_loadaddr_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; r: tregister);
  852. begin
  853. a_loadaddr_ref_reg_intern(list,fromsize,tosize,ref,r,true);
  854. end;
  855. procedure thlcgllvm.a_op_const_reg(list: TAsmList; Op: TOpCG; size: tdef; a: tcgint; reg: TRegister);
  856. begin
  857. a_op_const_reg_reg(list,op,size,a,reg,reg);
  858. end;
  859. procedure thlcgllvm.a_op_const_reg_reg(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister);
  860. var
  861. tmpreg: tregister;
  862. begin
  863. if (def2regtyp(size)=R_INTREGISTER) and
  864. (topcg2llvmop[op]<>la_none) then
  865. list.concat(taillvm.op_reg_size_reg_const(topcg2llvmop[op],dst,size,src,a))
  866. else
  867. begin
  868. { default implementation is not SSA-safe }
  869. tmpreg:=getregisterfordef(list,size);
  870. a_load_const_reg(list,size,a,tmpreg);
  871. a_op_reg_reg_reg(list,op,size,tmpreg,src,dst);
  872. end;
  873. end;
  874. procedure thlcgllvm.a_op_reg_reg_reg(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister);
  875. var
  876. orgdst,
  877. tmpreg1,
  878. tmpreg2,
  879. tmpreg3: tregister;
  880. opsize: tdef;
  881. begin
  882. orgdst:=dst;
  883. opsize:=size;
  884. { always perform using integer registers, because math operations on
  885. pointers are not supported (except via getelementptr, possible future
  886. optimization) }
  887. if def2regtyp(size)=R_ADDRESSREGISTER then
  888. begin
  889. opsize:=ptruinttype;
  890. tmpreg1:=getintregister(list,ptruinttype);
  891. a_load_reg_reg(list,size,ptruinttype,src1,tmpreg1);
  892. src1:=tmpreg1;
  893. tmpreg1:=getintregister(list,ptruinttype);
  894. a_load_reg_reg(list,size,ptruinttype,src2,tmpreg1);
  895. src2:=tmpreg1;
  896. dst:=getintregister(list,ptruinttype);
  897. end;
  898. if topcg2llvmop[op]<>la_none then
  899. list.concat(taillvm.op_reg_size_reg_reg(topcg2llvmop[op],dst,opsize,src2,src1))
  900. else
  901. begin
  902. case op of
  903. OP_NEG:
  904. { %dst = sub size 0, %src1 }
  905. list.concat(taillvm.op_reg_size_const_reg(la_sub,dst,opsize,0,src1));
  906. OP_NOT:
  907. { %dst = xor size -1, %src1 }
  908. list.concat(taillvm.op_reg_size_const_reg(la_xor,dst,opsize,-1,src1));
  909. OP_ROL:
  910. begin
  911. tmpreg1:=getintregister(list,opsize);
  912. tmpreg2:=getintregister(list,opsize);
  913. tmpreg3:=getintregister(list,opsize);
  914. { tmpreg1 := (tcgsize2size[size]*8 - (src1 and (tcgsize2size[size]*8-1) }
  915. list.concat(taillvm.op_reg_size_const_reg(la_and,tmpreg1,opsize,opsize.size*8-1,src1));
  916. list.concat(taillvm.op_reg_size_const_reg(la_sub,tmpreg2,opsize,opsize.size*8,tmpreg1));
  917. { tmpreg3 := src2 shr tmpreg2 }
  918. a_op_reg_reg_reg(list,OP_SHR,opsize,tmpreg2,src2,tmpreg3);
  919. { tmpreg2:= src2 shl tmpreg1 }
  920. tmpreg2:=getintregister(list,opsize);
  921. a_op_reg_reg_reg(list,OP_SHL,opsize,tmpreg1,src2,tmpreg2);
  922. { dst := tmpreg2 or tmpreg3 }
  923. a_op_reg_reg_reg(list,OP_OR,opsize,tmpreg2,tmpreg3,dst);
  924. end;
  925. OP_ROR:
  926. begin
  927. tmpreg1:=getintregister(list,size);
  928. tmpreg2:=getintregister(list,size);
  929. tmpreg3:=getintregister(list,size);
  930. { tmpreg1 := (tcgsize2size[size]*8 - (src1 and (tcgsize2size[size]*8-1) }
  931. list.concat(taillvm.op_reg_size_const_reg(la_and,tmpreg1,opsize,opsize.size*8-1,src1));
  932. list.concat(taillvm.op_reg_size_const_reg(la_sub,tmpreg2,opsize,opsize.size*8,tmpreg1));
  933. { tmpreg3 := src2 shl tmpreg2 }
  934. a_op_reg_reg_reg(list,OP_SHL,opsize,tmpreg2,src2,tmpreg3);
  935. { tmpreg2:= src2 shr tmpreg1 }
  936. tmpreg2:=getintregister(list,opsize);
  937. a_op_reg_reg_reg(list,OP_SHR,opsize,tmpreg1,src2,tmpreg2);
  938. { dst := tmpreg2 or tmpreg3 }
  939. a_op_reg_reg_reg(list,OP_OR,opsize,tmpreg2,tmpreg3,dst);
  940. end;
  941. else
  942. internalerror(2010081310);
  943. end;
  944. end;
  945. if dst<>orgdst then
  946. a_load_reg_reg(list,opsize,size,dst,orgdst);
  947. end;
  948. procedure thlcgllvm.a_op_reg_reg(list: TAsmList; Op: TOpCG; size: tdef; reg1, reg2: TRegister);
  949. begin
  950. a_op_reg_reg_reg(list,op,size,reg1,reg2,reg2);
  951. end;
  952. procedure thlcgllvm.a_op_const_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister; setflags: boolean; var ovloc: tlocation);
  953. var
  954. hreg: tregister;
  955. begin
  956. if not setflags then
  957. begin
  958. inherited;
  959. exit;
  960. end;
  961. hreg:=getintregister(list,size);
  962. a_load_const_reg(list,size,a,hreg);
  963. a_op_reg_reg_reg_checkoverflow(list,op,size,hreg,src,dst,setflags,ovloc);
  964. end;
  965. procedure thlcgllvm.a_op_reg_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister; setflags: boolean; var ovloc: tlocation);
  966. var
  967. calcsize: tdef;
  968. tmpsrc1,
  969. tmpsrc2,
  970. tmpdst: tregister;
  971. signed,
  972. docheck: boolean;
  973. begin
  974. docheck:=size.size>=ossinttype.size;
  975. if not setflags or
  976. not docheck then
  977. begin
  978. inherited a_op_reg_reg_reg_checkoverflow(list,op,size,src1,src2,dst,false,ovloc);
  979. exit;
  980. end;
  981. { extend values to twice their original width (one bit extra is enough,
  982. but adding support for 9/17/33/65 bit types just for this is overkill) }
  983. signed:=is_signed(size);
  984. case size.size of
  985. 1:
  986. if signed then
  987. calcsize:=s16inttype
  988. else
  989. calcsize:=u16inttype;
  990. 2:
  991. if signed then
  992. calcsize:=s32inttype
  993. else
  994. calcsize:=u32inttype;
  995. 4:
  996. if signed then
  997. calcsize:=s64inttype
  998. else
  999. calcsize:=u64inttype;
  1000. 8:
  1001. if signed then
  1002. calcsize:=s128inttype
  1003. else
  1004. calcsize:=u128inttype;
  1005. else
  1006. internalerror(2015122503);
  1007. end;
  1008. tmpsrc1:=getintregister(list,calcsize);
  1009. a_load_reg_reg(list,size,calcsize,src1,tmpsrc1);
  1010. tmpsrc2:=getintregister(list,calcsize);
  1011. a_load_reg_reg(list,size,calcsize,src2,tmpsrc2);
  1012. tmpdst:=getintregister(list,calcsize);
  1013. { perform the calculation with twice the width }
  1014. a_op_reg_reg_reg(list,op,calcsize,tmpsrc1,tmpsrc2,tmpdst);
  1015. { signed/unsigned overflow occurs if signed/unsigned truncation of the
  1016. result is different from the actual result -> extend again and compare }
  1017. a_load_reg_reg(list,calcsize,size,tmpdst,dst);
  1018. tmpsrc1:=getintregister(list,calcsize);
  1019. a_load_reg_reg(list,size,calcsize,dst,tmpsrc1);
  1020. location_reset(ovloc,LOC_REGISTER,OS_8);
  1021. ovloc.register:=getintregister(list,llvmbool1type);
  1022. list.concat(taillvm.op_reg_cond_size_reg_reg(la_icmp,ovloc.register,OC_NE,calcsize,tmpsrc1,tmpdst));
  1023. end;
  1024. procedure thlcgllvm.a_cmp_const_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; a: tcgint; reg: tregister; l: tasmlabel);
  1025. var
  1026. tmpreg : tregister;
  1027. invert: boolean;
  1028. fallthroughlab, falselab, tmplab: tasmlabel;
  1029. begin
  1030. tmpreg:=getregisterfordef(list,size);
  1031. a_load_const_reg(list,size,a,tmpreg);
  1032. a_cmp_reg_reg_label(list,size,cmp_op,tmpreg,reg,l);
  1033. end;
  1034. procedure thlcgllvm.a_cmp_reg_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; reg1, reg2: tregister; l: tasmlabel);
  1035. var
  1036. resreg: tregister;
  1037. falselab: tasmlabel;
  1038. begin
  1039. if getregtype(reg1)<>getregtype(reg2) then
  1040. internalerror(2012111105);
  1041. resreg:=getintregister(list,llvmbool1type);
  1042. current_asmdata.getjumplabel(falselab);
  1043. { invert order of registers. In FPC, cmp_reg_reg(reg1,reg2) means that
  1044. e.g. OC_GT is true if "subl %reg1,%reg2" in x86 AT&T is >0. In LLVM,
  1045. OC_GT is true if op1>op2 }
  1046. list.concat(taillvm.op_reg_cond_size_reg_reg(la_icmp,resreg,cmp_op,size,reg2,reg1));
  1047. list.concat(taillvm.op_size_reg_lab_lab(la_br,llvmbool1type,resreg,l,falselab));
  1048. a_label(list,falselab);
  1049. end;
  1050. procedure thlcgllvm.a_jmp_always(list: TAsmList; l: tasmlabel);
  1051. begin
  1052. { implement in tcg because required by the overridden a_label; doesn't use
  1053. any high level stuff anyway }
  1054. cg.a_jmp_always(list,l);
  1055. end;
  1056. procedure thlcgllvm.g_unreachable(list: TAsmList);
  1057. begin
  1058. list.Concat(taillvm.op_none(la_unreachable));
  1059. end;
  1060. procedure thlcgllvm.g_concatcopy(list: TAsmList; size: tdef; const source, dest: treference);
  1061. var
  1062. pd: tprocdef;
  1063. sourcepara, destpara, sizepara, alignpara, volatilepara: tcgpara;
  1064. maxalign: longint;
  1065. indivalign: boolean;
  1066. begin
  1067. { perform small copies directly; not larger ones, because then llvm
  1068. will try to load the entire large datastructure into registers and
  1069. starts spilling like crazy; too small copies must not be done via
  1070. llvm.memcpy either, because then you get crashes in llvm }
  1071. if (size.typ in [orddef,floatdef,enumdef]) or
  1072. (size.size<=2*sizeof(aint)) then
  1073. begin
  1074. a_load_ref_ref(list,size,size,source,dest);
  1075. exit;
  1076. end;
  1077. indivalign:=llvmflag_memcpy_indiv_align in llvmversion_properties[current_settings.llvmversion];
  1078. if indivalign then
  1079. pd:=search_system_proc('llvm_memcpy64_indivalign')
  1080. else
  1081. pd:=search_system_proc('llvm_memcpy64');
  1082. sourcepara.init;
  1083. destpara.init;
  1084. sizepara.init;
  1085. alignpara.init;
  1086. volatilepara.init;
  1087. paramanager.getcgtempparaloc(list,pd,1,destpara);
  1088. paramanager.getcgtempparaloc(list,pd,2,sourcepara);
  1089. paramanager.getcgtempparaloc(list,pd,3,sizepara);
  1090. if indivalign then
  1091. begin
  1092. paramanager.getcgtempparaloc(list,pd,4,volatilepara);
  1093. destpara.Alignment:=-dest.alignment;
  1094. sourcepara.Alignment:=-source.alignment;
  1095. end
  1096. else
  1097. begin
  1098. paramanager.getcgtempparaloc(list,pd,4,alignpara);
  1099. paramanager.getcgtempparaloc(list,pd,5,volatilepara);
  1100. maxalign:=newalignment(max(source.alignment,dest.alignment),min(source.alignment,dest.alignment));
  1101. a_load_const_cgpara(list,u32inttype,maxalign,alignpara);
  1102. end;
  1103. a_loadaddr_ref_cgpara(list,size,dest,destpara);
  1104. a_loadaddr_ref_cgpara(list,size,source,sourcepara);
  1105. a_load_const_cgpara(list,u64inttype,size.size,sizepara);
  1106. a_load_const_cgpara(list,llvmbool1type,ord((vol_read in source.volatility) or (vol_write in dest.volatility)),volatilepara);
  1107. if indivalign then
  1108. g_call_system_proc(list,pd,[@destpara,@sourcepara,@sizepara,@volatilepara],nil).resetiftemp
  1109. else
  1110. g_call_system_proc(list,pd,[@destpara,@sourcepara,@sizepara,@alignpara,@volatilepara],nil).resetiftemp;
  1111. sourcepara.done;
  1112. destpara.done;
  1113. sizepara.done;
  1114. alignpara.done;
  1115. volatilepara.done;
  1116. end;
  1117. procedure thlcgllvm.a_loadfpu_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; reg: tregister);
  1118. var
  1119. tmpreg: tregister;
  1120. href: treference;
  1121. fromcompcurr,
  1122. tocompcurr: boolean;
  1123. begin
  1124. href:=make_simple_ref(list,ref,fromsize);
  1125. { named register -> use generic code }
  1126. if ref.refaddr=addr_full then
  1127. begin
  1128. gen_load_refaddrfull_anyreg(list,fromsize,tosize,href,reg,mms_movescalar);
  1129. exit
  1130. end;
  1131. { comp and currency are handled by the x87 in this case. They cannot
  1132. be represented directly in llvm, and llvmdef translates them into i64
  1133. (since that's their storage size and internally they also are int64).
  1134. Solve this by changing the type to s80real once they are loaded into
  1135. a register. }
  1136. fromcompcurr:=
  1137. (fromsize.typ=floatdef) and
  1138. (tfloatdef(fromsize).floattype in [s64comp,s64currency]);
  1139. tocompcurr:=
  1140. (tosize.typ=floatdef) and
  1141. (tfloatdef(tosize).floattype in [s64comp,s64currency]);
  1142. if tocompcurr then
  1143. tosize:=s80floattype;
  1144. { don't generate different code for loading e.g. extended into cextended,
  1145. but to take care of loading e.g. comp (=int64) into double }
  1146. if (fromsize.size<>tosize.size) then
  1147. tmpreg:=getfpuregister(list,fromsize)
  1148. else
  1149. tmpreg:=reg;
  1150. { handle aggregate loads (happens if a struct needs to be passed in a
  1151. floating point register) }
  1152. if (fromsize.typ in [arraydef,recorddef]) or
  1153. (tosize.typ in [arraydef,recorddef]) then
  1154. begin
  1155. if handle_agg_load_ref_anyreg(list,fromsize,tosize,href,reg,mms_movescalar) then
  1156. exit;
  1157. end;
  1158. { %tmpreg = load size* %ref }
  1159. list.concat(taillvm.op_reg_size_ref(la_load,tmpreg,cpointerdef.getreusable(fromsize),href));
  1160. if tmpreg<>reg then
  1161. if fromcompcurr then
  1162. { treat as extended as long as it's in a register }
  1163. list.concat(taillvm.op_reg_size_reg_size(la_sitofp,reg,fromsize,tmpreg,tosize))
  1164. else
  1165. a_loadfpu_reg_reg(list,fromsize,tosize,tmpreg,reg);
  1166. end;
  1167. procedure thlcgllvm.a_loadfpu_reg_ref(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const ref: treference);
  1168. var
  1169. tmpreg: tregister;
  1170. href: treference;
  1171. fromcompcurr,
  1172. tocompcurr: boolean;
  1173. begin
  1174. { see comment in a_loadfpu_ref_reg }
  1175. fromcompcurr:=
  1176. (fromsize.typ=floatdef) and
  1177. (tfloatdef(fromsize).floattype in [s64comp,s64currency]);
  1178. tocompcurr:=
  1179. (tosize.typ=floatdef) and
  1180. (tfloatdef(tosize).floattype in [s64comp,s64currency]);
  1181. if fromcompcurr then
  1182. fromsize:=s80floattype;
  1183. href:=make_simple_ref(list,ref,tosize);
  1184. { don't generate different code for loading e.g. extended into cextended,
  1185. but to take care of storing e.g. comp (=int64) into double }
  1186. if (fromsize.size<>tosize.size) then
  1187. begin
  1188. tmpreg:=getfpuregister(list,tosize);
  1189. if tocompcurr then
  1190. { store back an int64 rather than an extended }
  1191. list.concat(taillvm.op_reg_size_reg_size(la_fptosi,tmpreg,fromsize,reg,tosize))
  1192. else
  1193. a_loadfpu_reg_reg(list,fromsize,tosize,reg,tmpreg);
  1194. end
  1195. else
  1196. tmpreg:=reg;
  1197. { store tosize tmpreg, tosize* href }
  1198. list.concat(taillvm.op_size_reg_size_ref(la_store,tosize,tmpreg,cpointerdef.getreusable(tosize),href));
  1199. end;
  1200. procedure thlcgllvm.a_loadfpu_reg_reg(list: TAsmList; fromsize, tosize: tdef; reg1, reg2: tregister);
  1201. var
  1202. op: tllvmop;
  1203. intrinsic: TIDString;
  1204. begin
  1205. op:=llvmconvop(fromsize,tosize,true);
  1206. if (cs_opt_fastmath in current_settings.optimizerswitches) or
  1207. not(llvmflag_constrained_fptrunc_fpext in llvmversion_properties[current_settings.llvmversion]) or
  1208. not(op in [la_fptrunc,la_fpext]) then
  1209. list.concat(taillvm.op_reg_size_reg_size(op,reg2,fromsize,reg1,tosize))
  1210. else
  1211. begin
  1212. if op=la_fptrunc then
  1213. intrinsic:='llvm_experimental_constrained_fptrunc'
  1214. else
  1215. intrinsic:='llvm_experimental_constrained_fpext';
  1216. gen_fpconstrained_intrinsic(list,
  1217. intrinsic+llvmfloatintrinsicsuffix(tfloatdef(tosize))+llvmfloatintrinsicsuffix(tfloatdef(fromsize)),
  1218. fromsize,tosize,reg1,reg2,op=la_fptrunc);
  1219. end;
  1220. end;
  1221. procedure thlcgllvm.gen_fpconstrained_intrinsic(list: TAsmList; const intrinsic: TIDString; fromsize, tosize: tdef; fromreg, toreg: tregister; roundingmode: boolean);
  1222. var
  1223. frompara, roundpara, exceptpara, respara: tcgpara;
  1224. tmploc: tlocation;
  1225. pd: tprocdef;
  1226. begin
  1227. frompara.init;
  1228. if roundingmode then
  1229. roundpara.init;
  1230. exceptpara.init;
  1231. pd:=search_system_proc(intrinsic);
  1232. paramanager.getcgtempparaloc(list,pd,1,frompara);
  1233. if roundingmode then
  1234. begin
  1235. paramanager.getcgtempparaloc(list,pd,2,roundpara);
  1236. paramanager.getcgtempparaloc(list,pd,3,exceptpara);
  1237. end
  1238. else
  1239. paramanager.getcgtempparaloc(list,pd,2,exceptpara);
  1240. location_reset(tmploc,frompara.location^.loc,def_cgsize(fromsize));
  1241. tmploc.register:=fromreg;
  1242. gen_load_loc_cgpara(list,fromsize,tmploc,frompara);
  1243. if roundingmode then
  1244. a_load_reg_cgpara(list,llvm_metadatatype,tllvmmetadata.getstringreg('round.dynamic'),roundpara);
  1245. a_load_reg_cgpara(list,llvm_metadatatype,tllvmmetadata.getstringreg('fpexcept.strict'),exceptpara);
  1246. if roundingmode then
  1247. respara:=g_call_system_proc(list,pd,[@frompara,@roundpara,@exceptpara],nil)
  1248. else
  1249. respara:=g_call_system_proc(list,pd,[@frompara,@exceptpara],nil);
  1250. location_reset(tmploc,respara.location^.loc,def_cgsize(tosize));
  1251. tmploc.register:=toreg;
  1252. gen_load_cgpara_loc(list,tosize,respara,tmploc,false);
  1253. frompara.done;
  1254. if roundingmode then
  1255. roundpara.done;
  1256. exceptpara.done;
  1257. respara.resetiftemp;
  1258. end;
  1259. procedure thlcgllvm.gen_proc_symbol(list: TAsmList);
  1260. var
  1261. item: TCmdStrListItem;
  1262. mangledname: TSymStr;
  1263. asmsym: tasmsymbol;
  1264. begin
  1265. if po_external in current_procinfo.procdef.procoptions then
  1266. exit;
  1267. item:=TCmdStrListItem(current_procinfo.procdef.aliasnames.first);
  1268. mangledname:=current_procinfo.procdef.mangledname;
  1269. { predefine the real function name as local/global, so the aliases can
  1270. refer to the symbol and get the binding correct }
  1271. if (cs_profile in current_settings.moduleswitches) or
  1272. (po_global in current_procinfo.procdef.procoptions) then
  1273. asmsym:=current_asmdata.DefineAsmSymbol(mangledname,AB_GLOBAL,AT_FUNCTION,current_procinfo.procdef)
  1274. else
  1275. asmsym:=current_asmdata.DefineAsmSymbol(mangledname,AB_LOCAL,AT_FUNCTION,current_procinfo.procdef);
  1276. while assigned(item) do
  1277. begin
  1278. if mangledname<>item.Str then
  1279. list.concat(taillvmalias.create(asmsym,item.str,current_procinfo.procdef,asmsym.bind));
  1280. item:=TCmdStrListItem(item.next);
  1281. end;
  1282. list.concat(taillvmdecl.createdef(asmsym,current_procinfo.procdef,nil,sec_code,current_procinfo.procdef.alignment));
  1283. end;
  1284. procedure thlcgllvm.handle_external_proc(list: TAsmList; pd: tprocdef; const importname: TSymStr);
  1285. begin
  1286. { don't do anything, because at this point we can't know yet for certain
  1287. whether the aliased routine is internal to the current routine or not.
  1288. If it's internal, we would have to generate an llvm alias, while if it's
  1289. external, we would have to generate a declaration. Additionally, aliases
  1290. cannot refer to declarations, so always creating aliases doesn't work
  1291. either -> handle in llvmtype }
  1292. end;
  1293. procedure thlcgllvm.g_proc_entry(list: TAsmList; localsize: longint; nostackframe: boolean);
  1294. begin
  1295. list.concatlist(ttgllvm(tg).alloclist)
  1296. { rest: todo }
  1297. end;
  1298. procedure thlcgllvm.g_proc_exit(list: TAsmList; parasize: longint; nostackframe: boolean);
  1299. var
  1300. retdef: tdef;
  1301. retreg,
  1302. hreg: tregister;
  1303. retpara: tcgpara;
  1304. begin
  1305. { the function result type is the type of the first location, which can
  1306. differ from the real result type (e.g. int64 for a record consisting of
  1307. two longint fields on x86-64 -- we are responsible for lowering the
  1308. result types like that) }
  1309. retpara:=get_call_result_cgpara(current_procinfo.procdef,nil);
  1310. retpara.check_simple_location;
  1311. retdef:=retpara.location^.def;
  1312. if (is_void(retdef) or
  1313. { don't check retdef here, it is e.g. a pshortstring in case it's
  1314. shortstring that's returned in a parameter }
  1315. paramanager.ret_in_param(current_procinfo.procdef.returndef,current_procinfo.procdef)) and
  1316. not current_procinfo.procdef.generate_safecall_wrapper then
  1317. list.concat(taillvm.op_size(la_ret,voidtype))
  1318. else
  1319. begin
  1320. case retpara.location^.loc of
  1321. LOC_REGISTER,
  1322. LOC_FPUREGISTER,
  1323. LOC_MMREGISTER:
  1324. begin
  1325. { sign/zeroextension of function results is handled implicitly
  1326. via the signext/zeroext modifiers of the result, rather than
  1327. in the code generator -> remove any explicit extensions here }
  1328. retreg:=retpara.location^.register;
  1329. if (current_procinfo.procdef.returndef.typ in [orddef,enumdef]) and
  1330. (retdef.typ in [orddef,enumdef]) and
  1331. not current_procinfo.procdef.generate_safecall_wrapper then
  1332. begin
  1333. if (current_procinfo.procdef.returndef.size<retpara.location^.def.size) then
  1334. begin
  1335. hreg:=getintregister(list,current_procinfo.procdef.returndef);
  1336. a_load_reg_reg(list,retdef,current_procinfo.procdef.returndef,retreg,hreg);
  1337. retreg:=hreg;
  1338. retdef:=current_procinfo.procdef.returndef;
  1339. end;
  1340. end;
  1341. list.concat(taillvm.op_size_reg(la_ret,retdef,retreg))
  1342. end;
  1343. LOC_VOID:
  1344. begin
  1345. { zero-sized records: return an undefined zero-sized record of
  1346. the correct type }
  1347. list.concat(taillvm.op_size_undef(la_ret,retdef));
  1348. end
  1349. else
  1350. { todo: complex returns }
  1351. internalerror(2012111106);
  1352. end;
  1353. end;
  1354. retpara.resetiftemp;
  1355. end;
  1356. procedure thlcgllvm.gen_load_uninitialized_function_result(list: TAsmList; pd: tprocdef; resdef: tdef; const resloc: tcgpara);
  1357. begin
  1358. if not paramanager.ret_in_param(resdef,pd) then
  1359. begin
  1360. case resloc.location^.loc of
  1361. LOC_REGISTER,
  1362. LOC_FPUREGISTER,
  1363. LOC_MMREGISTER:
  1364. begin
  1365. if not llvmaggregatetype(resdef) then
  1366. list.concat(taillvm.op_reg_size_undef(la_bitcast,resloc.location^.register,llvmgetcgparadef(resloc,true,calleeside)))
  1367. else
  1368. { bitcast doesn't work for aggregates -> just load from the
  1369. (uninitialised) function result memory location }
  1370. gen_load_loc_function_result(list,resdef,tabstractnormalvarsym(pd.funcretsym).localloc)
  1371. end;
  1372. { for empty record returns }
  1373. LOC_VOID:
  1374. ;
  1375. else
  1376. internalerror(2015042301);
  1377. end;
  1378. end;
  1379. end;
  1380. procedure thlcgllvm.g_overflowcheck(list: TAsmList; const Loc: tlocation; def: tdef);
  1381. begin
  1382. { not possible, need ovloc }
  1383. internalerror(2012111107);
  1384. end;
  1385. procedure thlcgllvm.g_overflowCheck_loc(List: TAsmList; const Loc: TLocation; def: TDef; var ovloc: tlocation);
  1386. var
  1387. hl: tasmlabel;
  1388. begin
  1389. if not(cs_check_overflow in current_settings.localswitches) then
  1390. exit;
  1391. if ovloc.size<>OS_8 then
  1392. internalerror(2015122504);
  1393. current_asmdata.getjumplabel(hl);
  1394. a_cmp_const_loc_label(list,llvmbool1type,OC_EQ,0,ovloc,hl);
  1395. g_call_system_proc(list,'fpc_overflow',[],nil).resetiftemp;
  1396. a_label(list,hl);
  1397. end;
  1398. procedure thlcgllvm.g_ptrtypecast_reg(list: TAsmList; fromdef, todef: tdef; var reg: tregister);
  1399. var
  1400. hreg: tregister;
  1401. begin
  1402. { will insert a bitcast if necessary }
  1403. if fromdef<>todef then
  1404. begin
  1405. hreg:=getregisterfordef(list,todef);
  1406. a_load_reg_reg(list,fromdef,todef,reg,hreg);
  1407. reg:=hreg;
  1408. end;
  1409. end;
  1410. procedure thlcgllvm.g_ptrtypecast_ref(list: TAsmList; fromdef, todef: tdef; var ref: treference);
  1411. var
  1412. hreg: tregister;
  1413. begin
  1414. hreg:=getaddressregister(list,todef);
  1415. a_loadaddr_ref_reg_intern(list,fromdef,todef,ref,hreg,false);
  1416. reference_reset_base(ref,todef,hreg,0,ref.temppos,ref.alignment,ref.volatility);
  1417. end;
  1418. procedure thlcgllvm.g_set_addr_nonbitpacked_field_ref(list: TAsmList; recdef: tabstractrecorddef; field: tfieldvarsym; var recref: treference);
  1419. var
  1420. parentdef,
  1421. subscriptdef,
  1422. currentstructdef,
  1423. llvmfielddef: tdef;
  1424. llvmfield: tllvmshadowsymtableentry;
  1425. newbase: tregister;
  1426. implicitpointer: boolean;
  1427. begin
  1428. implicitpointer:=is_implicit_pointer_object_type(recdef);
  1429. currentstructdef:=recdef;
  1430. { in case the field is part of a parent of the current object,
  1431. index into the parents until we're at the parent containing the
  1432. field; if it's an implicit pointer type, these embedded parents
  1433. will be of the structure type of the class rather than of the
  1434. class time itself -> one indirection fewer }
  1435. while field.owner<>tabstractrecorddef(currentstructdef).symtable do
  1436. begin
  1437. { only objectdefs have parents and hence the owner of the
  1438. fieldvarsym can be different from the current def's owner }
  1439. parentdef:=tobjectdef(currentstructdef).childof;
  1440. if implicitpointer then
  1441. newbase:=getaddressregister(list,parentdef)
  1442. else
  1443. newbase:=getaddressregister(list,cpointerdef.getreusable(parentdef));
  1444. recref:=make_simple_ref(list,recref,recdef);
  1445. if implicitpointer then
  1446. subscriptdef:=currentstructdef
  1447. else
  1448. subscriptdef:=cpointerdef.getreusable(currentstructdef);
  1449. { recurse into the first field }
  1450. list.concat(taillvm.getelementptr_reg_size_ref_size_const(newbase,subscriptdef,recref,s32inttype,0,true));
  1451. reference_reset_base(recref,subscriptdef,newbase,field.offsetfromllvmfield,recref.temppos,newalignment(recref.alignment,field.fieldoffset),recref.volatility);
  1452. { go to the parent }
  1453. currentstructdef:=parentdef;
  1454. end;
  1455. { get the corresponding field in the llvm shadow symtable }
  1456. llvmfield:=tabstractrecordsymtable(tabstractrecorddef(currentstructdef).symtable).llvmst[field];
  1457. if implicitpointer then
  1458. subscriptdef:=currentstructdef
  1459. else
  1460. subscriptdef:=cpointerdef.getreusable(currentstructdef);
  1461. { load the address of that shadow field }
  1462. newbase:=getaddressregister(list,cpointerdef.getreusable(llvmfield.def));
  1463. recref:=make_simple_ref(list,recref,recdef);
  1464. list.concat(taillvm.getelementptr_reg_size_ref_size_const(newbase,subscriptdef,recref,s32inttype,field.llvmfieldnr,true));
  1465. reference_reset_base(recref,subscriptdef,newbase,field.offsetfromllvmfield,recref.temppos,newalignment(recref.alignment,llvmfield.fieldoffset+field.offsetfromllvmfield),recref.volatility);
  1466. { in case of an 80 bits extended type, typecast from an array of 10
  1467. bytes (used because otherwise llvm will allocate the ABI-defined
  1468. size for extended, which is usually larger) into an extended }
  1469. if (llvmfield.def.typ=floatdef) and
  1470. (tfloatdef(llvmfield.def).floattype=s80real) then
  1471. g_ptrtypecast_ref(list,cpointerdef.getreusable(carraydef.getreusable(u8inttype,10)),cpointerdef.getreusable(s80floattype),recref);
  1472. { if it doesn't match the requested field exactly (variant record),
  1473. adjust the type of the pointer }
  1474. if (field.offsetfromllvmfield<>0) or
  1475. (llvmfield.def<>field.vardef) then
  1476. g_ptrtypecast_ref(list,cpointerdef.getreusable(llvmfield.def),cpointerdef.getreusable(field.vardef),recref);
  1477. end;
  1478. procedure thlcgllvm.a_loadmm_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; reg: tregister; shuffle: pmmshuffle);
  1479. var
  1480. href: treference;
  1481. begin
  1482. if shuffle=mms_movescalar then
  1483. a_loadfpu_ref_reg(list,fromsize,tosize,ref,reg)
  1484. else
  1485. begin
  1486. href:=make_simple_ref(list,ref,fromsize);
  1487. if ref.refaddr=addr_full then
  1488. gen_load_refaddrfull_anyreg(list,fromsize,tosize,href,reg,shuffle)
  1489. else
  1490. begin
  1491. { handle aggregate loads (happens if a struct needs to be passed
  1492. in an mmregister) }
  1493. if (fromsize.typ in [arraydef,recorddef]) or
  1494. (tosize.typ in [arraydef,recorddef]) then
  1495. begin
  1496. if handle_agg_load_ref_anyreg(list,fromsize,tosize,href,reg,mms_movescalar) then
  1497. exit;
  1498. end;
  1499. if fromsize<>tosize then
  1500. g_ptrtypecast_ref(list,cpointerdef.getreusable(fromsize),cpointerdef.getreusable(tosize),href);
  1501. { %reg = load size* %ref }
  1502. list.concat(taillvm.op_reg_size_ref(la_load,reg,cpointerdef.getreusable(tosize),href));
  1503. end;
  1504. end;
  1505. end;
  1506. procedure thlcgllvm.a_loadmm_reg_ref(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const ref: treference; shuffle: pmmshuffle);
  1507. var
  1508. href: treference;
  1509. begin
  1510. if shuffle=mms_movescalar then
  1511. a_loadfpu_reg_ref(list,fromsize,tosize,reg,ref)
  1512. else
  1513. begin
  1514. { todo }
  1515. if fromsize<>tosize then
  1516. internalerror(2013060220);
  1517. href:=make_simple_ref(list,ref,tosize);
  1518. { store tosize reg, tosize* href }
  1519. list.concat(taillvm.op_size_reg_size_ref(la_store,tosize,reg,cpointerdef.getreusable(tosize),href))
  1520. end;
  1521. end;
  1522. procedure thlcgllvm.a_loadmm_reg_reg(list: TAsmList; fromsize, tosize: tdef; reg1, reg2: tregister; shuffle: pmmshuffle);
  1523. begin
  1524. if shuffle=mms_movescalar then
  1525. a_loadfpu_reg_reg(list,fromsize,tosize,reg1,reg2)
  1526. else
  1527. { reg2 = bitcast fromllsize reg1 to tollsize }
  1528. list.concat(taillvm.op_reg_size_reg_size(la_bitcast,reg2,fromsize,reg1,tosize));
  1529. end;
  1530. procedure thlcgllvm.a_opmm_reg_reg(list: TAsmList; Op: TOpCG; size: tdef; src, dst: tregister; shuffle: pmmshuffle);
  1531. begin
  1532. if (op=OP_XOR) and
  1533. (src=dst) then
  1534. a_load_const_reg(list,size,0,dst)
  1535. else
  1536. { todo }
  1537. internalerror(2013060221);
  1538. end;
  1539. procedure thlcgllvm.a_loadmm_intreg_reg(list: TAsmList; fromsize, tosize: tdef; intreg, mmreg: tregister; shuffle: pmmshuffle);
  1540. begin
  1541. internalerror(2013060222);
  1542. end;
  1543. procedure thlcgllvm.a_loadmm_reg_intreg(list: TAsmList; fromsize, tosize: tdef; mmreg, intreg: tregister; shuffle: pmmshuffle);
  1544. begin
  1545. internalerror(2013060223);
  1546. end;
  1547. function thlcgllvm.get_call_result_cgpara(pd: tabstractprocdef; forceresdef: tdef): tcgpara;
  1548. var
  1549. paraloc: pcgparalocation;
  1550. begin
  1551. result:=inherited;
  1552. { we'll change the paraloc, make sure we don't modify the original one }
  1553. if not result.temporary then
  1554. begin
  1555. result:=result.getcopy;
  1556. result.temporary:=true;
  1557. end;
  1558. { get the LLVM representation of the function result (e.g. a
  1559. struct with two i64 fields for a record with 4 i32 fields) }
  1560. result.def:=llvmgetcgparadef(result,true,callerside);
  1561. if assigned(result.location^.next) then
  1562. begin
  1563. { unify the result into a sinlge location; unlike for parameters,
  1564. we are not responsible for splitting up results into multiple
  1565. locations }
  1566. { set the first location to the type of the function result }
  1567. result.location^.def:=result.def;
  1568. result.location^.size:=result.size;
  1569. { free all extra paralocs }
  1570. while assigned(result.location^.next) do
  1571. begin
  1572. paraloc:=result.location^.next^.next;
  1573. freemem(result.location^.next);
  1574. result.location^.next:=paraloc;
  1575. end;
  1576. end;
  1577. paraloc:=result.location;
  1578. paraloc^.def:=result.def;
  1579. case paraloc^.loc of
  1580. LOC_VOID:
  1581. ;
  1582. LOC_REGISTER,
  1583. LOC_FPUREGISTER,
  1584. LOC_MMREGISTER:
  1585. begin
  1586. paraloc^.llvmloc.loc:=paraloc^.loc;
  1587. paraloc^.llvmloc.reg:=paraloc^.register;
  1588. paraloc^.llvmvalueloc:=true;
  1589. end;
  1590. LOC_REFERENCE:
  1591. if not paramanager.ret_in_param(pd.returndef,pd) then
  1592. { TODO, if this can happen at all }
  1593. internalerror(2014011901);
  1594. else
  1595. internalerror(2014011902);
  1596. end;
  1597. end;
  1598. procedure thlcgllvm.gen_load_loc_function_result(list: TAsmList; vardef: tdef; const l: tlocation);
  1599. var
  1600. retlocpara: tcgpara;
  1601. begin
  1602. retlocpara:=get_call_result_cgpara(current_procinfo.procdef,nil);
  1603. gen_load_loc_cgpara(list,vardef,l,retlocpara);
  1604. retlocpara.resetiftemp;
  1605. end;
  1606. procedure thlcgllvm.gen_load_loc_cgpara(list: TAsmList; vardef: tdef; const l: tlocation; const cgpara: tcgpara);
  1607. var
  1608. memloc: tlocation;
  1609. begin
  1610. if not(cgpara.location^.llvmvalueloc) then
  1611. begin
  1612. memloc:=l;
  1613. location_force_mem(list,memloc,vardef);
  1614. a_loadaddr_ref_cgpara(list,vardef,memloc.reference,cgpara);
  1615. end
  1616. else
  1617. inherited;
  1618. end;
  1619. procedure thlcgllvm.gen_load_cgpara_loc(list: TAsmList; vardef: tdef; const para: TCGPara; var destloc: tlocation; reusepara: boolean);
  1620. var
  1621. ploc : pcgparalocation;
  1622. hloc : tlocation;
  1623. href, href2 : treference;
  1624. hreg : tregister;
  1625. fielddef,
  1626. llvmparadef : tdef;
  1627. index : longint;
  1628. offset : pint;
  1629. userecord : boolean;
  1630. begin
  1631. { ignore e.g. empty records }
  1632. if (para.location^.loc=LOC_VOID) then
  1633. exit;
  1634. { If the parameter location is reused we don't need to copy
  1635. anything }
  1636. if (destloc.loc=LOC_REFERENCE) and
  1637. reusepara then
  1638. exit;
  1639. { get the equivalent llvm def used to pass the parameter (e.g. a record
  1640. with two int64 fields for passing a record consisiting of 8 bytes on
  1641. x86-64) }
  1642. llvmparadef:=llvmgetcgparadef(para,true,calleeside);
  1643. userecord:=
  1644. (llvmparadef<>para.def) and
  1645. assigned(para.location^.next);
  1646. if userecord then
  1647. begin
  1648. { llvmparadef is a record in this case, with every field corresponding
  1649. to a single paraloc }
  1650. if destloc.loc<>LOC_REFERENCE then
  1651. tg.gethltemp(list,llvmparadef,llvmparadef.size,tt_normal,href)
  1652. else
  1653. begin
  1654. hreg:=getaddressregister(list,cpointerdef.getreusable(llvmparadef));
  1655. a_loadaddr_ref_reg(list,vardef,cpointerdef.getreusable(llvmparadef),destloc.reference,hreg);
  1656. reference_reset_base(href,cpointerdef.getreusable(llvmparadef),hreg,0,destloc.reference.temppos,destloc.reference.alignment,destloc.reference.volatility);
  1657. end;
  1658. index:=0;
  1659. ploc:=para.location;
  1660. repeat
  1661. paraloctoloc(ploc,hloc);
  1662. g_setup_load_field_by_name(list,trecorddef(llvmparadef),'F'+tostr(index),href,href2,fielddef);
  1663. a_load_loc_ref(list,ploc^.def,fielddef,hloc,href2);
  1664. inc(index);
  1665. ploc:=ploc^.next;
  1666. until not assigned(ploc);
  1667. if destloc.loc<>LOC_REFERENCE then
  1668. tg.ungettemp(list,href);
  1669. end
  1670. else
  1671. begin
  1672. para.check_simple_location;
  1673. paraloctoloc(para.location,hloc);
  1674. case destloc.loc of
  1675. LOC_REFERENCE :
  1676. begin
  1677. case def2regtyp(llvmparadef) of
  1678. R_INTREGISTER,
  1679. R_ADDRESSREGISTER:
  1680. a_load_loc_ref(list,llvmparadef,vardef,hloc,destloc.reference);
  1681. R_FPUREGISTER:
  1682. a_loadfpu_loc_ref(list,llvmparadef,vardef,hloc,destloc.reference);
  1683. R_MMREGISTER:
  1684. a_loadmm_loc_ref(list,llvmparadef,vardef,hloc,destloc.reference,nil);
  1685. else
  1686. internalerror(2014080801);
  1687. end;
  1688. end;
  1689. LOC_REGISTER:
  1690. begin
  1691. a_load_loc_reg(list,llvmparadef,vardef,hloc,destloc.register);
  1692. end;
  1693. LOC_FPUREGISTER:
  1694. begin
  1695. a_loadfpu_loc_reg(list,llvmparadef,vardef,hloc,destloc.register);
  1696. end;
  1697. LOC_MMREGISTER:
  1698. begin
  1699. a_loadmm_loc_reg(list,llvmparadef,vardef,hloc,destloc.register,nil);
  1700. end;
  1701. { TODO other possible locations }
  1702. else
  1703. internalerror(2013102304);
  1704. end;
  1705. end;
  1706. end;
  1707. procedure thlcgllvm.a_jmp_flags(list: TAsmList; const f: TResFlags; l: tasmlabel);
  1708. begin
  1709. internalerror(2013060224);
  1710. end;
  1711. procedure thlcgllvm.g_flags2reg(list: TAsmList; size: tdef; const f: tresflags; reg: TRegister);
  1712. begin
  1713. internalerror(2013060225);
  1714. end;
  1715. procedure thlcgllvm.g_flags2ref(list: TAsmList; size: tdef; const f: tresflags; const ref: TReference);
  1716. begin
  1717. internalerror(2013060226);
  1718. end;
  1719. procedure thlcgllvm.a_bit_scan_reg_reg(list: TAsmList; reverse: boolean; srcsize, dstsize: tdef; src, dst: tregister);
  1720. begin
  1721. internalerror(2012090201);
  1722. end;
  1723. procedure thlcgllvm.g_stackpointer_alloc(list: TAsmList; size: longint);
  1724. begin
  1725. internalerror(2012090203);
  1726. end;
  1727. procedure thlcgllvm.g_intf_wrapper(list: TAsmList; procdef: tprocdef; const labelname: string; ioffset: longint);
  1728. begin
  1729. internalerror(2012090204);
  1730. end;
  1731. procedure thlcgllvm.g_adjust_self_value(list: TAsmList; procdef: tprocdef; ioffset: aint);
  1732. begin
  1733. internalerror(2012090205);
  1734. end;
  1735. procedure thlcgllvm.g_local_unwind(list: TAsmList; l: TAsmLabel);
  1736. begin
  1737. internalerror(2012090206);
  1738. end;
  1739. procedure thlcgllvm.gen_stack_check_size_para(list: TAsmList);
  1740. begin
  1741. { this is implemented in a very hackish way, whereby first the call
  1742. to fpc_stackcheck() is emitted, then the prolog is generated and
  1743. registers are allocated, and finally the code to load the parameter
  1744. is inserted before the call to fpc_stackcheck(). Since parameters are
  1745. explicitly passed to call instructions for llvm, that does not work
  1746. here. It could be solved by patching the call instruction later, but
  1747. that's a lot of engineering for functionality that's only marginally
  1748. useful at best. }
  1749. end;
  1750. procedure thlcgllvm.gen_stack_check_call(list: TAsmList);
  1751. begin
  1752. { see explanation in thlcgllvm.gen_stack_check_size_para() }
  1753. end;
  1754. function thlcgllvm.make_simple_ref(list: TAsmList; const ref: treference; def: tdef): treference;
  1755. begin
  1756. result:=make_simple_ref_ptr(list,ref,cpointerdef.getreusable(def));
  1757. end;
  1758. function thlcgllvm.make_simple_ref_ptr(list: TAsmList; const ref: treference; ptrdef: tdef): treference;
  1759. var
  1760. ptrindex: tcgint;
  1761. hreg1,
  1762. hreg2: tregister;
  1763. tmpref: treference;
  1764. pointedsize: asizeint;
  1765. begin
  1766. if ref.alignment=0 then
  1767. internalerror(2016072203);
  1768. { already simple? }
  1769. if (not assigned(ref.symbol) or
  1770. (ref.base=NR_NO)) and
  1771. (ref.index=NR_NO) and
  1772. (ref.offset=0) then
  1773. begin
  1774. result:=ref;
  1775. exit;
  1776. end;
  1777. case ptrdef.typ of
  1778. pointerdef:
  1779. begin
  1780. pointedsize:=tpointerdef(ptrdef).pointeddef.size;
  1781. { void, formaldef }
  1782. if pointedsize=0 then
  1783. pointedsize:=1;
  1784. end;
  1785. else
  1786. begin
  1787. { pointedsize is only used if the offset <> 0, to see whether we
  1788. can use getelementptr if it's an exact multiple -> set pointedsize
  1789. to a value that will never be a multiple as we can't "index" other
  1790. types }
  1791. pointedsize:=ref.offset+1;
  1792. end;
  1793. end;
  1794. hreg2:=getaddressregister(list,ptrdef);
  1795. { symbol+offset or base+offset with offset a multiple of the size ->
  1796. use getelementptr }
  1797. if (ref.index=NR_NO) and
  1798. (ref.offset mod pointedsize=0) then
  1799. begin
  1800. ptrindex:=ref.offset div pointedsize;
  1801. if assigned(ref.symbol) then
  1802. reference_reset_symbol(tmpref,ref.symbol,0,ref.alignment,ref.volatility)
  1803. else
  1804. reference_reset_base(tmpref,ptrdef,ref.base,0,ref.temppos,ref.alignment,ref.volatility);
  1805. list.concat(taillvm.getelementptr_reg_size_ref_size_const(hreg2,ptrdef,tmpref,ptruinttype,ptrindex,assigned(ref.symbol)));
  1806. reference_reset_base(result,ptrdef,hreg2,0,ref.temppos,ref.alignment,ref.volatility);
  1807. exit;
  1808. end;
  1809. { for now, perform all calculations using plain pointer arithmetic. Later
  1810. we can look into optimizations based on getelementptr for structured
  1811. accesses (if only to prevent running out of virtual registers).
  1812. Assumptions:
  1813. * symbol/base register: always type "ptrdef"
  1814. * index/offset: always type "ptruinttype" (llvm bitcode has no sign information, so sign doesn't matter) }
  1815. hreg1:=getintregister(list,ptruinttype);
  1816. if assigned(ref.symbol) then
  1817. begin
  1818. if ref.base<>NR_NO then
  1819. internalerror(2012111301);
  1820. reference_reset_symbol(tmpref,ref.symbol,0,ref.alignment,ref.volatility);
  1821. list.concat(taillvm.getelementptr_reg_size_ref_size_const(hreg1,ptrdef,tmpref,ptruinttype,0,true));
  1822. end
  1823. else if ref.base<>NR_NO then
  1824. begin
  1825. a_load_reg_reg(list,ptrdef,ptruinttype,ref.base,hreg1);
  1826. end
  1827. else
  1828. { for absolute addresses }
  1829. a_load_const_reg(list,ptruinttype,0,hreg1);
  1830. if ref.index<>NR_NO then
  1831. begin
  1832. { SSA... }
  1833. hreg2:=getintregister(list,ptruinttype);
  1834. a_op_reg_reg_reg(list,OP_ADD,ptruinttype,ref.index,hreg1,hreg2);
  1835. hreg1:=hreg2;
  1836. end;
  1837. if ref.offset<>0 then
  1838. begin
  1839. hreg2:=getintregister(list,ptruinttype);
  1840. a_op_const_reg_reg(list,OP_ADD,ptruinttype,ref.offset,hreg1,hreg2);
  1841. hreg1:=hreg2;
  1842. end;
  1843. hreg2:=getaddressregister(list,ptrdef);
  1844. a_load_reg_reg(list,ptruinttype,ptrdef,hreg1,hreg2);
  1845. reference_reset_base(result,ptrdef,hreg2,0,ref.temppos,ref.alignment,ref.volatility);
  1846. end;
  1847. procedure thlcgllvm.set_call_function_result(const list: TAsmList; const pd: tabstractprocdef; const llvmretdef, hlretdef: tdef; const resval: tregister; var retpara: tcgpara);
  1848. var
  1849. hreg: tregister;
  1850. rettemp: treference;
  1851. begin
  1852. if (not is_void(hlretdef) and
  1853. not paramanager.ret_in_param(hlretdef, pd)) or
  1854. pd.generate_safecall_wrapper then
  1855. begin
  1856. { should already be a copy, because it currently describes the llvm
  1857. return location }
  1858. if not retpara.temporary then
  1859. internalerror(2014020101);
  1860. if llvmaggregatetype(hlretdef) then
  1861. begin
  1862. { to ease the handling of aggregate types here, we just store
  1863. everything to memory rather than potentially dealing with aggregates
  1864. in "registers" }
  1865. tg.gethltemp(list, llvmretdef, llvmretdef.size, tt_normal, rettemp);
  1866. case def2regtyp(llvmretdef) of
  1867. R_INTREGISTER,
  1868. R_ADDRESSREGISTER:
  1869. a_load_reg_ref(list,llvmretdef,llvmretdef,resval,rettemp);
  1870. R_FPUREGISTER:
  1871. a_loadfpu_reg_ref(list,llvmretdef,llvmretdef,resval,rettemp);
  1872. R_MMREGISTER:
  1873. a_loadmm_reg_ref(list,llvmretdef,llvmretdef,resval,rettemp,mms_movescalar);
  1874. else
  1875. ;
  1876. end;
  1877. { the return parameter now contains a value whose type matches the one
  1878. that the high level code generator expects instead of the llvm shim
  1879. }
  1880. retpara.def:=llvmretdef;
  1881. retpara.location^.def:=llvmretdef;
  1882. { for llvm-specific code: }
  1883. retpara.location^.llvmvalueloc:=false;
  1884. retpara.location^.llvmloc.loc:=LOC_REGISTER;
  1885. retpara.location^.llvmloc.reg:=rettemp.base;
  1886. { for the rest (normally not used, but cleaner to set it correclty) }
  1887. retpara.location^.loc:=LOC_REFERENCE;
  1888. retpara.location^.reference.index:=rettemp.base;
  1889. retpara.location^.reference.offset:=0;
  1890. end
  1891. else
  1892. begin
  1893. retpara.def:=llvmretdef;
  1894. retpara.Location^.def:=llvmretdef;
  1895. retpara.location^.llvmloc.reg:=resval;
  1896. retpara.Location^.llvmloc.loc:=retpara.location^.loc;
  1897. retpara.Location^.llvmvalueloc:=true;
  1898. end;
  1899. end
  1900. else
  1901. retpara.location^.llvmloc.loc:=LOC_VOID;
  1902. end;
  1903. procedure thlcgllvm.paraloctoloc(const paraloc: pcgparalocation; out hloc: tlocation);
  1904. begin
  1905. case paraloc^.llvmloc.loc of
  1906. LOC_REFERENCE:
  1907. begin
  1908. location_reset_ref(hloc,LOC_REFERENCE,def_cgsize(paraloc^.def),paraloc^.def.alignment,[]);
  1909. hloc.reference.symbol:=paraloc^.llvmloc.sym;
  1910. if paraloc^.llvmvalueloc then
  1911. hloc.reference.refaddr:=addr_full;
  1912. end;
  1913. LOC_REGISTER:
  1914. begin
  1915. if paraloc^.llvmvalueloc then
  1916. begin
  1917. location_reset(hloc,LOC_REGISTER,def_cgsize(paraloc^.def));
  1918. hloc.register:=paraloc^.llvmloc.reg;
  1919. end
  1920. else
  1921. begin
  1922. if getregtype(paraloc^.llvmloc.reg)<>R_TEMPREGISTER then
  1923. internalerror(2014011903);
  1924. location_reset_ref(hloc,LOC_REFERENCE,def_cgsize(paraloc^.def),paraloc^.def.alignment,[]);
  1925. hloc.reference.base:=paraloc^.llvmloc.reg;
  1926. end;
  1927. end;
  1928. LOC_FPUREGISTER,
  1929. LOC_MMREGISTER:
  1930. begin
  1931. if paraloc^.llvmvalueloc then
  1932. begin
  1933. location_reset(hloc,paraloc^.llvmloc.loc,def_cgsize(paraloc^.def));
  1934. hloc.register:=paraloc^.llvmloc.reg;
  1935. end
  1936. else
  1937. internalerror(2014012401);
  1938. end
  1939. else
  1940. internalerror(2014010706);
  1941. end;
  1942. end;
  1943. procedure thlcgllvm.varsym_set_localloc(list: TAsmList; vs: tabstractnormalvarsym);
  1944. begin
  1945. if cs_asm_source in current_settings.globalswitches then
  1946. begin
  1947. case vs.initialloc.loc of
  1948. LOC_REFERENCE :
  1949. begin
  1950. if assigned(vs.initialloc.reference.symbol) then
  1951. list.concat(Tai_comment.Create(strpnew('Var '+vs.realname+' located at '+
  1952. vs.initialloc.reference.symbol.name)))
  1953. else
  1954. list.concat(Tai_comment.Create(strpnew('Var '+vs.realname+' located at %tmp.'+
  1955. tostr(getsupreg(vs.initialloc.reference.base)))));
  1956. end;
  1957. else
  1958. ;
  1959. end;
  1960. end;
  1961. vs.localloc:=vs.initialloc;
  1962. end;
  1963. procedure thlcgllvm.paravarsym_set_initialloc_to_paraloc(vs: tparavarsym);
  1964. var
  1965. parasym : tasmsymbol;
  1966. begin
  1967. if vs.paraloc[calleeside].location^.llvmloc.loc<>LOC_REFERENCE then
  1968. internalerror(2014010708);
  1969. parasym:=vs.paraloc[calleeside].location^.llvmloc.sym;
  1970. reference_reset_symbol(vs.initialloc.reference,parasym,0,vs.paraloc[calleeside].alignment,[]);
  1971. if vs.paraloc[calleeside].location^.llvmvalueloc then
  1972. vs.initialloc.reference.refaddr:=addr_full;
  1973. end;
  1974. procedure thlcgllvm.g_external_wrapper(list: TAsmList; procdef: tprocdef; const wrappername, externalname: string; global: boolean);
  1975. var
  1976. asmsym: TAsmSymbol;
  1977. begin
  1978. if po_external in procdef.procoptions then
  1979. exit;
  1980. asmsym:=current_asmdata.RefAsmSymbol(externalname,AT_FUNCTION);
  1981. list.concat(taillvmalias.create(asmsym,wrappername,procdef,asmsym.bind));
  1982. end;
  1983. procedure create_hlcodegen_llvm;
  1984. begin
  1985. if not assigned(current_procinfo) or
  1986. not(po_assembler in current_procinfo.procdef.procoptions) then
  1987. begin
  1988. tgobjclass:=ttgllvm;
  1989. hlcg:=thlcgllvm.create;
  1990. cgllvm.create_codegen
  1991. end
  1992. else
  1993. begin
  1994. tgobjclass:=orgtgclass;
  1995. create_hlcodegen_cpu;
  1996. { todo: handle/remove chlcgobj }
  1997. end;
  1998. end;
  1999. begin
  2000. chlcgobj:=thlcgllvm;
  2001. { this unit must initialise after hlcgobj;
  2002. message system has not been initialised yet here }
  2003. if not assigned(create_hlcodegen) then
  2004. begin
  2005. writeln('Internalerror 2018052003');
  2006. halt(1);
  2007. end;
  2008. create_hlcodegen_cpu:=create_hlcodegen;
  2009. create_hlcodegen:=@create_hlcodegen_llvm;
  2010. end.