cpupara.pas 24 KB

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  1. {
  2. Copyright (c) 2013-2014 by Jonas Maebe, Florian Klaempfl and others
  3. AArch64 specific calling conventions
  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. { AArch64 specific calling conventions are handled by this unit
  18. }
  19. unit cpupara;
  20. {$i fpcdefs.inc}
  21. interface
  22. uses
  23. globtype,globals,
  24. aasmtai,aasmdata,
  25. cpuinfo,cpubase,cgbase,cgutils,
  26. symconst,symbase,symtype,symdef,parabase,paramgr;
  27. type
  28. tcpuparamanager = class(tparamanager)
  29. function get_volatile_registers_int(calloption: tproccalloption): tcpuregisterset; override;
  30. function get_volatile_registers_fpu(calloption: tproccalloption): tcpuregisterset; override;
  31. function get_volatile_registers_mm(calloption: tproccalloption): tcpuregisterset; override;
  32. function get_saved_registers_int(calloption: tproccalloption): tcpuregisterarray; override;
  33. function get_saved_registers_mm(calloption: tproccalloption): tcpuregisterarray; override;
  34. function push_addr_param(varspez: tvarspez; def: tdef; calloption: tproccalloption): boolean; override;
  35. function ret_in_param(def: tdef; pd: tabstractprocdef):boolean;override;
  36. function create_paraloc_info(p: tabstractprocdef; side: tcallercallee):longint;override;
  37. function create_varargs_paraloc_info(p: tabstractprocdef; varargspara: tvarargsparalist):longint;override;
  38. function get_funcretloc(p: tabstractprocdef; side: tcallercallee; forcetempdef: tdef): tcgpara;override;
  39. function param_use_paraloc(const cgpara: tcgpara): boolean; override;
  40. private
  41. curintreg,
  42. curmmreg: tsuperregister;
  43. curstackoffset: aword;
  44. procedure init_para_alloc_values;
  45. procedure alloc_para(out result: tcgpara; p: tabstractprocdef; varspez: tvarspez; side: tcallercallee; paradef: tdef; isvariadic, isdelphinestedcc: boolean);
  46. procedure create_paraloc_info_intern(p: tabstractprocdef; side: tcallercallee; paras: tparalist; isvariadic: boolean);
  47. end;
  48. implementation
  49. uses
  50. verbose,systems,cutils,
  51. rgobj,
  52. defutil,symsym,symtable;
  53. const
  54. RS_FIRST_INT_PARAM_SUPREG = RS_X0;
  55. RS_LAST_INT_PARAM_SUPREG = RS_X7;
  56. { Q0/D0/S0/H0/B0 all have the same superregister number }
  57. RS_FIRST_MM_PARAM_SUPREG = RS_D0;
  58. RS_LAST_MM_PARAM_SUPREG = RS_D7;
  59. function tcpuparamanager.get_volatile_registers_int(calloption : tproccalloption):tcpuregisterset;
  60. begin
  61. result:=VOLATILE_INTREGISTERS
  62. end;
  63. function tcpuparamanager.get_volatile_registers_fpu(calloption : tproccalloption):tcpuregisterset;
  64. begin
  65. result:=[];
  66. end;
  67. function tcpuparamanager.get_volatile_registers_mm(calloption: tproccalloption): tcpuregisterset;
  68. begin
  69. result:=VOLATILE_MMREGISTERS;
  70. end;
  71. function tcpuparamanager.get_saved_registers_int(calloption: tproccalloption): tcpuregisterarray;
  72. const
  73. saved_regs : array[0..9] of tsuperregister =
  74. (RS_X19,RS_X20,RS_X21,RS_X22,RS_X23,RS_X24,RS_X25,RS_X26,RS_X27,RS_X28);
  75. begin
  76. result:=saved_regs;
  77. end;
  78. function tcpuparamanager.get_saved_registers_mm(calloption: tproccalloption): tcpuregisterarray;
  79. const
  80. saved_mm_regs : array[0..7] of tsuperregister = (RS_D8,RS_D9,RS_D10,RS_D11,RS_D12,RS_D13,RS_D14,RS_D15);
  81. begin
  82. result:=saved_mm_regs;
  83. end;
  84. function is_hfa_internal(p: tdef; var basedef: tdef; var elecount: longint): boolean;
  85. var
  86. i: longint;
  87. sym: tsym;
  88. tmpelecount: longint;
  89. begin
  90. result:=false;
  91. case p.typ of
  92. arraydef:
  93. begin
  94. if is_special_array(p) then
  95. exit;
  96. { an array of empty records has no influence }
  97. if tarraydef(p).elementdef.size=0 then
  98. begin
  99. result:=true;
  100. exit
  101. end;
  102. tmpelecount:=0;
  103. if not is_hfa_internal(tarraydef(p).elementdef,basedef,tmpelecount) then
  104. exit;
  105. { tmpelecount now contains the number of hfa elements in a
  106. single array element (e.g. 2 if it's an array of a record
  107. containing two singles) -> multiply by number of elements
  108. in the array }
  109. inc(elecount,tarraydef(p).elecount*tmpelecount);
  110. if elecount>4 then
  111. exit;
  112. result:=true;
  113. end;
  114. floatdef:
  115. begin
  116. if not assigned(basedef) then
  117. basedef:=p
  118. else if basedef<>p then
  119. exit;
  120. inc(elecount);
  121. result:=true;
  122. end;
  123. recorddef:
  124. begin
  125. for i:=0 to tabstractrecorddef(p).symtable.symlist.count-1 do
  126. begin
  127. sym:=tsym(tabstractrecorddef(p).symtable.symlist[i]);
  128. if sym.typ<>fieldvarsym then
  129. continue;
  130. if not is_hfa_internal(tfieldvarsym(sym).vardef,basedef,elecount) then
  131. exit
  132. end;
  133. result:=true;
  134. end;
  135. else
  136. exit
  137. end;
  138. end;
  139. { Returns whether a def is a "homogeneous float array" at the machine level.
  140. This means that in the memory layout, the def only consists of maximally
  141. 4 floating point values that appear consecutively in memory }
  142. function is_hfa(p: tdef; out basedef: tdef) : boolean;
  143. var
  144. elecount: longint;
  145. begin
  146. result:=false;
  147. basedef:=nil;
  148. elecount:=0;
  149. result:=is_hfa_internal(p,basedef,elecount);
  150. result:=
  151. result and
  152. (elecount>0) and
  153. (elecount<=4) and
  154. (p.size=basedef.size*elecount)
  155. end;
  156. function getparaloc(calloption: tproccalloption; p: tdef): tcgloc;
  157. var
  158. hfabasedef: tdef;
  159. begin
  160. { Later, the LOC_REFERENCE is in most cases changed into LOC_REGISTER
  161. if push_addr_param for the def is true
  162. }
  163. case p.typ of
  164. orddef:
  165. getparaloc:=LOC_REGISTER;
  166. floatdef:
  167. getparaloc:=LOC_MMREGISTER;
  168. enumdef:
  169. getparaloc:=LOC_REGISTER;
  170. pointerdef:
  171. getparaloc:=LOC_REGISTER;
  172. formaldef:
  173. getparaloc:=LOC_REGISTER;
  174. classrefdef:
  175. getparaloc:=LOC_REGISTER;
  176. recorddef:
  177. if not is_hfa(p,hfabasedef) then
  178. getparaloc:=LOC_REGISTER
  179. else
  180. getparaloc:=LOC_MMREGISTER;
  181. objectdef:
  182. getparaloc:=LOC_REGISTER;
  183. stringdef:
  184. if is_shortstring(p) or is_longstring(p) then
  185. getparaloc:=LOC_REFERENCE
  186. else
  187. getparaloc:=LOC_REGISTER;
  188. procvardef:
  189. getparaloc:=LOC_REGISTER;
  190. filedef:
  191. getparaloc:=LOC_REGISTER;
  192. arraydef:
  193. if not is_hfa(p,hfabasedef) then
  194. getparaloc:=LOC_REGISTER
  195. else
  196. getparaloc:=LOC_MMREGISTER;
  197. setdef:
  198. getparaloc:=LOC_REGISTER;
  199. variantdef:
  200. getparaloc:=LOC_REGISTER;
  201. { avoid problems with errornous definitions }
  202. errordef:
  203. getparaloc:=LOC_REGISTER;
  204. else
  205. internalerror(2002071001);
  206. end;
  207. end;
  208. function tcpuparamanager.push_addr_param(varspez: tvarspez; def :tdef; calloption: tproccalloption): boolean;
  209. var
  210. hfabasedef: tdef;
  211. begin
  212. result:=false;
  213. if varspez in [vs_var,vs_out,vs_constref] then
  214. begin
  215. result:=true;
  216. exit;
  217. end;
  218. case def.typ of
  219. objectdef:
  220. result:=is_object(def);
  221. recorddef:
  222. { ABI: any composite > 16 bytes that not a hfa/hva
  223. Special case: MWPascal, which passes all const parameters by
  224. reference for compatibility reasons
  225. }
  226. result:=
  227. ((varspez=vs_const) and
  228. (calloption=pocall_mwpascal)) or
  229. (not is_hfa(def,hfabasedef) and
  230. (def.size>16));
  231. variantdef,
  232. formaldef:
  233. result:=true;
  234. { arrays are composites and hence treated the same as records by the
  235. ABI (watch out for C, where an array is a pointer)
  236. Also: all other platforms pass const arrays by reference. Do the
  237. same here, because there is too much hacky code out there that
  238. relies on this ("array[0..0] of x" passed as const parameter and
  239. then indexed beyond its bounds) }
  240. arraydef:
  241. result:=
  242. (calloption in cdecl_pocalls) or
  243. is_open_array(def) or
  244. is_array_of_const(def) or
  245. is_array_constructor(def) or
  246. ((tarraydef(def).highrange>=tarraydef(def).lowrange) and
  247. ((varspez=vs_const) or
  248. (not is_hfa(def,hfabasedef) and
  249. (def.size>16))));
  250. setdef :
  251. result:=def.size>16;
  252. stringdef :
  253. result:=tstringdef(def).stringtype in [st_shortstring,st_longstring];
  254. end;
  255. end;
  256. function tcpuparamanager.ret_in_param(def: tdef; pd: tabstractprocdef): boolean;
  257. begin
  258. if handle_common_ret_in_param(def,pd,result) then
  259. exit;
  260. { ABI: if the parameter would be passed in registers, it is returned
  261. in those registers; otherwise, it's returned by reference }
  262. result:=push_addr_param(vs_value,def,pd.proccalloption);
  263. end;
  264. procedure tcpuparamanager.create_paraloc_info_intern(p : tabstractprocdef; side: tcallercallee; paras: tparalist; isvariadic: boolean);
  265. var
  266. hp: tparavarsym;
  267. i: longint;
  268. begin
  269. for i:=0 to paras.count-1 do
  270. begin
  271. hp:=tparavarsym(paras[i]);
  272. { hidden function result parameter is passed in X8 (doesn't have to
  273. be valid on return) according to the ABI
  274. -- don't follow the ABI for managed types, because
  275. a) they are passed in registers as parameters, so we should also
  276. return them in a register to be ABI-compliant (which we can't
  277. because the entire compiler is built around the idea that
  278. they are returned by reference, for ref-counting performance
  279. and Delphi-compatibility reasons)
  280. b) there are hacks in the system unit that expect that you can
  281. call
  282. function f: com_interface;
  283. as
  284. procedure p(out o: obj);
  285. That can only work in case we do not use x8 to return them
  286. from the function, but the regular first parameter register.
  287. As the ABI says this behaviour is ok for C++ classes with a
  288. non-trivial copy constructor or destructor, it seems reasonable
  289. for us to do this for managed types as well.}
  290. if (vo_is_funcret in hp.varoptions) and
  291. not is_managed_type(hp.vardef) then
  292. begin
  293. hp.paraloc[side].reset;
  294. hp.paraloc[side].size:=OS_ADDR;
  295. hp.paraloc[side].alignment:=voidpointertype.alignment;
  296. hp.paraloc[side].intsize:=voidpointertype.size;
  297. hp.paraloc[side].def:=cpointerdef.getreusable_no_free(hp.vardef);
  298. with hp.paraloc[side].add_location^ do
  299. begin
  300. size:=OS_ADDR;
  301. def:=hp.paraloc[side].def;
  302. loc:=LOC_REGISTER;
  303. register:=NR_X8;
  304. end
  305. end
  306. else
  307. alloc_para(hp.paraloc[side],p,hp.varspez,side,hp.vardef,isvariadic,
  308. (vo_is_parentfp in hp.varoptions) and
  309. (po_delphi_nested_cc in p.procoptions));
  310. end;
  311. end;
  312. function tcpuparamanager.get_funcretloc(p : tabstractprocdef; side: tcallercallee; forcetempdef: tdef): tcgpara;
  313. var
  314. retcgsize: tcgsize;
  315. begin
  316. if set_common_funcretloc_info(p,forcetempdef,retcgsize,result) then
  317. exit;
  318. { in this case, it must be returned in registers as if it were passed
  319. as the first parameter }
  320. init_para_alloc_values;
  321. alloc_para(result,p,vs_value,side,result.def,false,false);
  322. { sanity check (LOC_VOID for empty records) }
  323. if not assigned(result.location) or
  324. not(result.location^.loc in [LOC_REGISTER,LOC_MMREGISTER,LOC_VOID]) then
  325. internalerror(2014113001);
  326. end;
  327. function tcpuparamanager.param_use_paraloc(const cgpara: tcgpara): boolean;
  328. begin
  329. { we always set up a stack frame -> we can always access the parameters
  330. this way }
  331. result:=
  332. (cgpara.location^.loc=LOC_REFERENCE) and
  333. not assigned(cgpara.location^.next);
  334. end;
  335. procedure tcpuparamanager.init_para_alloc_values;
  336. begin
  337. curintreg:=RS_FIRST_INT_PARAM_SUPREG;
  338. curmmreg:=RS_FIRST_MM_PARAM_SUPREG;
  339. curstackoffset:=0;
  340. end;
  341. procedure tcpuparamanager.alloc_para(out result: tcgpara; p: tabstractprocdef; varspez: tvarspez; side: tcallercallee; paradef: tdef; isvariadic, isdelphinestedcc: boolean);
  342. var
  343. hfabasedef, locdef: tdef;
  344. paraloc: pcgparalocation;
  345. paralen, stackslotlen: asizeint;
  346. loc: tcgloc;
  347. paracgsize, locsize: tcgsize;
  348. firstparaloc: boolean;
  349. begin
  350. result.reset;
  351. { currently only support C-style array of const,
  352. there should be no location assigned to the vararg array itself }
  353. if (p.proccalloption in cstylearrayofconst) and
  354. is_array_of_const(paradef) then
  355. begin
  356. paraloc:=result.add_location;
  357. { hack: the paraloc must be valid, but is not actually used }
  358. paraloc^.loc:=LOC_REGISTER;
  359. paraloc^.register:=NR_X0;
  360. paraloc^.size:=OS_ADDR;
  361. exit;
  362. end;
  363. if push_addr_param(varspez,paradef,p.proccalloption) then
  364. begin
  365. paradef:=cpointerdef.getreusable_no_free(paradef);
  366. loc:=LOC_REGISTER;
  367. paracgsize:=OS_ADDR;
  368. paralen:=tcgsize2size[OS_ADDR];
  369. end
  370. else
  371. begin
  372. if not is_special_array(paradef) then
  373. paralen:=paradef.size
  374. else
  375. paralen:=tcgsize2size[def_cgsize(paradef)];
  376. loc:=getparaloc(p.proccalloption,paradef);
  377. if (paradef.typ in [objectdef,arraydef,recorddef]) and
  378. not is_special_array(paradef) and
  379. (varspez in [vs_value,vs_const]) then
  380. paracgsize:=int_cgsize(paralen)
  381. else
  382. begin
  383. paracgsize:=def_cgsize(paradef);
  384. { for things like formaldef }
  385. if paracgsize=OS_NO then
  386. begin
  387. paracgsize:=OS_ADDR;
  388. paralen:=tcgsize2size[OS_ADDR];
  389. paradef:=voidpointertype;
  390. end;
  391. end
  392. end;
  393. { get hfa basedef if applicable }
  394. if not is_hfa(paradef,hfabasedef) then
  395. hfabasedef:=nil;
  396. result.size:=paracgsize;
  397. result.alignment:=std_param_align;
  398. result.intsize:=paralen;
  399. result.def:=paradef;
  400. { empty record: skipped (explicitly defined by Apple ABI, undefined
  401. by general ABI; libffi also skips them in all cases) }
  402. if not is_special_array(paradef) and
  403. (paradef.size=0) then
  404. begin
  405. paraloc:=result.add_location;
  406. paraloc^.loc:=LOC_VOID;
  407. paraloc^.def:=paradef;
  408. paraloc^.size:=OS_NO;
  409. exit;
  410. end;
  411. { sufficient registers left? }
  412. case loc of
  413. LOC_REGISTER:
  414. begin
  415. { In case of po_delphi_nested_cc, the parent frame pointer
  416. is always passed on the stack. }
  417. if isdelphinestedcc then
  418. loc:=LOC_REFERENCE
  419. else if curintreg+((paralen-1) shr 3)>RS_LAST_INT_PARAM_SUPREG then
  420. begin
  421. { not enough integer registers left -> no more register
  422. parameters, copy all to stack
  423. }
  424. curintreg:=succ(RS_LAST_INT_PARAM_SUPREG);
  425. loc:=LOC_REFERENCE;
  426. end;
  427. end;
  428. LOC_MMREGISTER:
  429. begin;
  430. { every hfa element must be passed in a separate register }
  431. if (assigned(hfabasedef) and
  432. (curmmreg+((paralen-1) div hfabasedef.size)>RS_LAST_MM_PARAM_SUPREG)) or
  433. (curmmreg+((paralen-1) shr 3)>RS_LAST_MM_PARAM_SUPREG) then
  434. begin
  435. { not enough mm registers left -> no more register
  436. parameters, copy all to stack
  437. }
  438. curmmreg:=succ(RS_LAST_MM_PARAM_SUPREG);
  439. loc:=LOC_REFERENCE;
  440. end;
  441. end;
  442. end;
  443. { allocate registers/stack locations }
  444. firstparaloc:=true;
  445. repeat
  446. paraloc:=result.add_location;
  447. { set paraloc size/def }
  448. if assigned(hfabasedef) then
  449. begin
  450. locsize:=def_cgsize(hfabasedef);
  451. locdef:=hfabasedef;
  452. end
  453. { make sure we don't lose whether or not the type is signed }
  454. else if (loc=LOC_REGISTER) and
  455. (paradef.typ<>orddef) then
  456. begin
  457. locsize:=int_cgsize(paralen);
  458. locdef:=get_paraloc_def(paradef,paralen,firstparaloc);
  459. end
  460. else
  461. begin
  462. locsize:=paracgsize;
  463. locdef:=paradef;
  464. end;
  465. if locsize in [OS_NO,OS_128,OS_S128] then
  466. begin
  467. if paralen>4 then
  468. begin
  469. paraloc^.size:=OS_INT;
  470. paraloc^.def:=u64inttype;
  471. end
  472. else
  473. begin
  474. { for 3-byte records }
  475. paraloc^.size:=OS_32;
  476. paraloc^.def:=u32inttype;
  477. end;
  478. end
  479. else
  480. begin
  481. paraloc^.size:=locsize;
  482. paraloc^.def:=locdef;
  483. end;
  484. { paraloc loc }
  485. paraloc^.loc:=loc;
  486. { assign register/stack address }
  487. case loc of
  488. LOC_REGISTER:
  489. begin
  490. paraloc^.register:=newreg(R_INTREGISTER,curintreg,cgsize2subreg(R_INTREGISTER,paraloc^.size));
  491. inc(curintreg);
  492. dec(paralen,tcgsize2size[paraloc^.size]);
  493. { "The general ABI specifies that it is the callee's
  494. responsibility to sign or zero-extend arguments having fewer
  495. than 32 bits, and that unused bits in a register are
  496. unspecified. In iOS, however, the caller must perform such
  497. extensions, up to 32 bits." }
  498. if (target_info.abi=abi_aarch64_darwin) and
  499. (side=callerside) and
  500. is_ordinal(paradef) and
  501. (paradef.size<4) then
  502. paraloc^.size:=OS_32;
  503. { in case it's a composite, "The argument is passed as though
  504. it had been loaded into the registers from a double-word-
  505. aligned address with an appropriate sequence of LDR
  506. instructions loading consecutive registers from memory" ->
  507. in case of big endian, values in not completely filled
  508. registers must be shifted to the top bits }
  509. if (target_info.endian=endian_big) and
  510. not(paraloc^.size in [OS_64,OS_S64]) and
  511. (paradef.typ in [setdef,recorddef,arraydef,objectdef]) then
  512. paraloc^.shiftval:=-(8-tcgsize2size[paraloc^.size]);
  513. end;
  514. LOC_MMREGISTER:
  515. begin
  516. paraloc^.register:=newreg(R_MMREGISTER,curmmreg,cgsize2subreg(R_MMREGISTER,paraloc^.size));
  517. inc(curmmreg);
  518. dec(paralen,tcgsize2size[paraloc^.size]);
  519. end;
  520. LOC_REFERENCE:
  521. begin
  522. paraloc^.size:=paracgsize;
  523. paraloc^.loc:=LOC_REFERENCE;
  524. { the current stack offset may not be properly aligned in
  525. case we're on Darwin have allocated a non-variadic argument
  526. < 8 bytes previously }
  527. if target_info.abi=abi_aarch64_darwin then
  528. curstackoffset:=align(curstackoffset,paraloc^.def.alignment);
  529. { on Darwin, non-variadic arguments take up their actual size
  530. on the stack; on other platforms, they take up a multiple of
  531. 8 bytes }
  532. if (target_info.abi=abi_aarch64_darwin) and
  533. not isvariadic then
  534. stackslotlen:=paralen
  535. else
  536. stackslotlen:=align(paralen,8);
  537. { from the ABI: if arguments occupy partial stack space, they
  538. have to occupy the lowest significant bits of a register
  539. containing that value which is then stored to memory ->
  540. in case of big endian, skip the alignment bytes (if any) }
  541. if target_info.endian=endian_little then
  542. paraloc^.reference.offset:=curstackoffset
  543. else
  544. paraloc^.reference.offset:=curstackoffset+stackslotlen-paralen;
  545. if side=callerside then
  546. paraloc^.reference.index:=NR_STACK_POINTER_REG
  547. else
  548. begin
  549. paraloc^.reference.index:=NR_FRAME_POINTER_REG;
  550. inc(paraloc^.reference.offset,16);
  551. end;
  552. inc(curstackoffset,stackslotlen);
  553. paralen:=0
  554. end;
  555. else
  556. internalerror(2002071002);
  557. end;
  558. firstparaloc:=false;
  559. { <=0 for sign/zero-extended locations }
  560. until paralen<=0;
  561. end;
  562. function tcpuparamanager.create_paraloc_info(p: tabstractprocdef; side: tcallercallee):longint;
  563. begin
  564. init_para_alloc_values;
  565. create_paraloc_info_intern(p,side,p.paras,false);
  566. result:=curstackoffset;
  567. create_funcretloc_info(p,side);
  568. end;
  569. function tcpuparamanager.create_varargs_paraloc_info(p: tabstractprocdef; varargspara: tvarargsparalist):longint;
  570. begin
  571. init_para_alloc_values;
  572. { non-variadic parameters }
  573. create_paraloc_info_intern(p,callerside,p.paras,false);
  574. if p.proccalloption in cstylearrayofconst then
  575. begin
  576. { on Darwin, we cannot use any registers for variadic parameters }
  577. if target_info.abi=abi_aarch64_darwin then
  578. begin
  579. curintreg:=succ(RS_LAST_INT_PARAM_SUPREG);
  580. curmmreg:=succ(RS_LAST_MM_PARAM_SUPREG);
  581. end;
  582. { continue loading the parameters }
  583. create_paraloc_info_intern(p,callerside,varargspara,true);
  584. result:=curstackoffset;
  585. end
  586. else
  587. internalerror(200410231);
  588. end;
  589. begin
  590. paramanager:=tcpuparamanager.create;
  591. end.