optcse.pas 17 KB

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  1. {
  2. Common subexpression elimination on base blocks
  3. Copyright (c) 2005 by Florian Klaempfl
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. unit optcse;
  18. {$i fpcdefs.inc}
  19. { $define csedebug}
  20. { $define csestats}
  21. interface
  22. uses
  23. node;
  24. {
  25. the function creates non optimal code so far:
  26. - call para nodes are cse barriers because they can be reordered and thus the
  27. temp. creation can be done too late
  28. - cse's in chained expressions are not recognized: the common subexpression
  29. in (a1 and b and c) vs. (a2 and b and c) is not recognized because there is no common
  30. subtree b and c
  31. - the cse knows nothing about register pressure. In case of high register pressure, cse might
  32. have a negative impact
  33. - assignment nodes are currently cse borders: things like a[i,j]:=a[i,j]+1; are not improved
  34. - the list of cseinvariant node types and inline numbers is not complete yet
  35. Further, it could be done probably in a faster way though the complexity can't probably not reduced
  36. }
  37. function do_optcse(var rootnode : tnode) : tnode;
  38. implementation
  39. uses
  40. globtype,
  41. cclasses,
  42. verbose,
  43. nutils,
  44. procinfo,
  45. nbas,nld,ninl,ncal,ncnv,nadd,nmem,
  46. pass_1,
  47. symconst,symtype,symdef,symsym,
  48. defutil,
  49. optbase;
  50. const
  51. cseinvariant : set of tnodetype = [addn,muln,subn,divn,slashn,modn,andn,orn,xorn,notn,vecn,
  52. derefn,equaln,unequaln,ltn,gtn,lten,gten,typeconvn,subscriptn,
  53. inn,symdifn,shrn,shln,ordconstn,realconstn,unaryminusn,pointerconstn,stringconstn,setconstn,
  54. isn,asn,starstarn,nothingn,temprefn,loadparentfpn {,callparan}];
  55. function searchsubdomain(var n:tnode; arg: pointer) : foreachnoderesult;
  56. begin
  57. if (n.nodetype in cseinvariant) or
  58. ((n.nodetype=inlinen) and
  59. (tinlinenode(n).inlinenumber in [in_assigned_x])
  60. ) or
  61. ((n.nodetype=loadn) and
  62. not((tloadnode(n).symtableentry.typ in [staticvarsym,localvarsym,paravarsym]) and
  63. (vo_volatile in tabstractvarsym(tloadnode(n).symtableentry).varoptions))
  64. ) then
  65. result:=fen_true
  66. else
  67. begin
  68. pboolean(arg)^:=false;
  69. result:=fen_norecurse_true;
  70. end;
  71. end;
  72. type
  73. tlists = record
  74. nodelist : tfplist;
  75. locationlist : tfplist;
  76. equalto : tfplist;
  77. refs : tfplist;
  78. avail : TDFASet;
  79. end;
  80. plists = ^tlists;
  81. { collectnodes needs the address of itself to call foreachnodestatic,
  82. so we need a wrapper because @<func> inside <func doesn't work }
  83. function collectnodes(var n:tnode; arg: pointer) : foreachnoderesult;forward;
  84. function collectnodes2(var n:tnode; arg: pointer) : foreachnoderesult;
  85. begin
  86. result:=collectnodes(n,arg);
  87. end;
  88. function collectnodes(var n:tnode; arg: pointer) : foreachnoderesult;
  89. var
  90. i,j : longint;
  91. begin
  92. result:=fen_false;
  93. { don't add the tree below an untyped const parameter: there is
  94. no information available that this kind of tree actually needs
  95. to be addresable, this could be improved }
  96. if ((n.nodetype=callparan) and
  97. (tcallparanode(n).left.resultdef.typ=formaldef) and
  98. (tcallparanode(n).parasym.varspez=vs_const)) then
  99. begin
  100. result:=fen_norecurse_false;
  101. exit;
  102. end;
  103. { so far, we can handle only nodes being read }
  104. if (n.flags*[nf_write,nf_modify]=[]) and
  105. { node possible to add? }
  106. assigned(n.resultdef) and
  107. (
  108. ((tstoreddef(n.resultdef).is_intregable or tstoreddef(n.resultdef).is_fpuregable) and
  109. { is_int/fpuregable allows arrays and records to be in registers, cse cannot handle this }
  110. (not(n.resultdef.typ in [arraydef,recorddef])) and
  111. { same for voiddef }
  112. not(is_void(n.resultdef)) and
  113. { adding tempref nodes is worthless but their complexity is probably <= 1 anyways }
  114. not(n.nodetype in [temprefn]) and
  115. { node worth to add?
  116. We consider almost every node because even loading a variables from
  117. a register instead of memory is more beneficial. This behaviour should
  118. not increase register pressure because if a variable is already
  119. in a register, the reg. allocator can merge the nodes. If a variable
  120. is loaded from memory, loading this variable and spilling another register
  121. should not add a speed penalty.
  122. }
  123. {
  124. load nodes are not considered if they load para or local symbols from the
  125. current stack frame, those are in registers anyways if possible
  126. }
  127. (not(n.nodetype=loadn) or
  128. not(tloadnode(n).symtableentry.typ in [paravarsym,localvarsym]) or
  129. (tloadnode(n).symtable.symtablelevel<>current_procinfo.procdef.parast.symtablelevel)
  130. ) and
  131. {
  132. Const nodes however are only considered if their complexity is >1
  133. This might be the case for the risc architectures if they need
  134. more than one instruction to load this particular value
  135. }
  136. (not(is_constnode(n)) or (node_complexity(n)>1)))
  137. {$ifndef x86}
  138. or
  139. { loading the address of a global symbol takes typically more than
  140. one instruction on every platform except x86
  141. so consider in this case loading the address of the data
  142. }
  143. (((n.resultdef.typ in [arraydef,recorddef]) or is_object(n.resultdef)) and
  144. (n.nodetype=loadn) and
  145. (tloadnode(n).symtableentry.typ=staticvarsym)
  146. )
  147. {$endif x86}
  148. ) then
  149. begin
  150. plists(arg)^.nodelist.Add(n);
  151. plists(arg)^.locationlist.Add(@n);
  152. plists(arg)^.refs.Add(nil);
  153. plists(arg)^.equalto.Add(pointer(-1));
  154. DFASetInclude(plists(arg)^.avail,plists(arg)^.nodelist.count-1);
  155. for i:=0 to plists(arg)^.nodelist.count-2 do
  156. begin
  157. if tnode(plists(arg)^.nodelist[i]).isequal(n) and DFASetIn(plists(arg)^.avail,i) then
  158. begin
  159. { use always the first occurence }
  160. if plists(arg)^.equalto[i]<>pointer(-1) then
  161. plists(arg)^.equalto[plists(arg)^.nodelist.count-1]:=plists(arg)^.equalto[i]
  162. else
  163. plists(arg)^.equalto[plists(arg)^.nodelist.count-1]:=pointer(ptrint(i));
  164. plists(arg)^.refs[i]:=pointer(plists(arg)^.refs[i])+1;
  165. break;
  166. end;
  167. end;
  168. { boolean and/or require a special handling: after evaluating the and/or node,
  169. the expressions of the right side might not be available due to short boolean
  170. evaluation, so after handling the right side, mark those expressions
  171. as unavailable }
  172. if (n.nodetype in [orn,andn]) and is_boolean(taddnode(n).left.resultdef) then
  173. begin
  174. foreachnodestatic(pm_postprocess,taddnode(n).left,@collectnodes2,arg);
  175. j:=plists(arg)^.nodelist.count;
  176. foreachnodestatic(pm_postprocess,taddnode(n).right,@collectnodes2,arg);
  177. for i:=j to plists(arg)^.nodelist.count-1 do
  178. DFASetExclude(plists(arg)^.avail,i);
  179. result:=fen_norecurse_false;
  180. end;
  181. end;
  182. end;
  183. function searchcsedomain(var n: tnode; arg: pointer) : foreachnoderesult;
  184. var
  185. csedomain : boolean;
  186. lists : tlists;
  187. templist : tfplist;
  188. i : longint;
  189. def : tstoreddef;
  190. nodes : tblocknode;
  191. creates,
  192. statements : tstatementnode;
  193. hp : ttempcreatenode;
  194. addrstored : boolean;
  195. hp2 : tnode;
  196. begin
  197. result:=fen_false;
  198. if n.nodetype in cseinvariant then
  199. begin
  200. csedomain:=true;
  201. foreachnodestatic(pm_postprocess,n,@searchsubdomain,@csedomain);
  202. if not(csedomain) then
  203. begin
  204. { try to transform the tree to get better cse domains, consider:
  205. +
  206. / \
  207. + C
  208. / \
  209. A B
  210. if A is not cse'able but B and C are, then the compiler cannot do cse so the tree is transformed into
  211. +
  212. / \
  213. A +
  214. / \
  215. B C
  216. Because A could be another tree of this kind, the whole process is done in a while loop
  217. }
  218. if (n.nodetype in [andn,orn,addn,muln]) then
  219. while n.nodetype=tbinarynode(n).left.nodetype do
  220. begin
  221. csedomain:=true;
  222. foreachnodestatic(pm_postprocess,tbinarynode(n).right,@searchsubdomain,@csedomain);
  223. if csedomain then
  224. begin
  225. csedomain:=true;
  226. foreachnodestatic(pm_postprocess,tbinarynode(tbinarynode(n).left).right,@searchsubdomain,@csedomain);
  227. if csedomain then
  228. begin
  229. hp2:=tbinarynode(tbinarynode(n).left).left;
  230. tbinarynode(tbinarynode(n).left).left:=tbinarynode(tbinarynode(n).left).right;
  231. tbinarynode(tbinarynode(n).left).right:=tbinarynode(n).right;
  232. tbinarynode(n).right:=tbinarynode(n).left;
  233. tbinarynode(n).left:=hp2;
  234. { the transformed tree could result in new possibilities to fold constants
  235. so force a firstpass on the root node }
  236. exclude(tbinarynode(n).right.flags,nf_pass1_done);
  237. do_firstpass(tbinarynode(n).right);
  238. end
  239. else
  240. break;
  241. end
  242. else
  243. break;
  244. end;
  245. end
  246. else
  247. begin
  248. statements:=nil;
  249. result:=fen_norecurse_true;
  250. {$ifdef csedebug}
  251. writeln('============ cse domain ==================');
  252. printnode(output,n);
  253. writeln('Complexity: ',node_complexity(n));
  254. {$endif csedebug}
  255. lists.nodelist:=tfplist.create;
  256. lists.locationlist:=tfplist.create;
  257. lists.equalto:=tfplist.create;
  258. lists.refs:=tfplist.create;
  259. foreachnodestatic(pm_postprocess,n,@collectnodes,@lists);
  260. templist:=tfplist.create;
  261. templist.count:=lists.nodelist.count;
  262. { check all nodes if one is used more than once }
  263. for i:=0 to lists.nodelist.count-1 do
  264. begin
  265. { current node used more than once? }
  266. if assigned(lists.refs[i]) then
  267. begin
  268. if not(assigned(statements)) then
  269. begin
  270. nodes:=internalstatements(statements);
  271. addstatement(statements,internalstatements(creates));
  272. end;
  273. def:=tstoreddef(tnode(lists.nodelist[i]).resultdef);
  274. { we cannot handle register stored records or array in CSE yet
  275. but we can store their reference }
  276. addrstored:=(def.typ in [arraydef,recorddef]) or is_object(def);
  277. if addrstored then
  278. templist[i]:=ctempcreatenode.create_value(getpointerdef(def),voidpointertype.size,tt_persistent,
  279. true,caddrnode.create(tnode(lists.nodelist[i])))
  280. else
  281. templist[i]:=ctempcreatenode.create_value(def,def.size,tt_persistent,
  282. def.is_intregable or def.is_fpuregable,tnode(lists.nodelist[i]));
  283. { make debugging easier and set temp. location to the original location }
  284. tnode(templist[i]).fileinfo:=tnode(lists.nodelist[i]).fileinfo;
  285. addstatement(creates,tnode(templist[i]));
  286. { make debugging easier and set temp. location to the original location }
  287. creates.fileinfo:=tnode(lists.nodelist[i]).fileinfo;
  288. hp:=ttempcreatenode(templist[i]);
  289. do_firstpass(tnode(hp));
  290. templist[i]:=hp;
  291. if addrstored then
  292. pnode(lists.locationlist[i])^:=cderefnode.Create(ctemprefnode.create(ttempcreatenode(templist[i])))
  293. else
  294. pnode(lists.locationlist[i])^:=ctemprefnode.create(ttempcreatenode(templist[i]));
  295. { make debugging easier and set temp. location to the original location }
  296. pnode(lists.locationlist[i])^.fileinfo:=tnode(lists.nodelist[i]).fileinfo;
  297. do_firstpass(pnode(lists.locationlist[i])^);
  298. {$ifdef csedebug}
  299. printnode(output,statements);
  300. {$endif csedebug}
  301. end
  302. { current node reference to another node? }
  303. else if lists.equalto[i]<>pointer(-1) then
  304. begin
  305. def:=tstoreddef(tnode(lists.nodelist[i]).resultdef);
  306. { we cannot handle register stored records or array in CSE yet
  307. but we can store their reference }
  308. addrstored:=(def.typ in [arraydef,recorddef]) or is_object(def);
  309. {$if defined(csedebug) or defined(csestats)}
  310. printnode(output,tnode(lists.nodelist[i]));
  311. writeln(i,' equals ',ptrint(lists.equalto[i]));
  312. printnode(output,tnode(lists.nodelist[ptrint(lists.equalto[i])]));
  313. {$endif defined(csedebug) or defined(csestats)}
  314. templist[i]:=templist[ptrint(lists.equalto[i])];
  315. if addrstored then
  316. pnode(lists.locationlist[i])^:=cderefnode.Create(ctemprefnode.create(ttempcreatenode(templist[ptrint(lists.equalto[i])])))
  317. else
  318. pnode(lists.locationlist[i])^:=ctemprefnode.create(ttempcreatenode(templist[ptrint(lists.equalto[i])]));
  319. { make debugging easier and set temp. location to the original location }
  320. pnode(lists.locationlist[i])^.fileinfo:=tnode(lists.nodelist[i]).fileinfo;
  321. do_firstpass(pnode(lists.locationlist[i])^);
  322. end;
  323. end;
  324. { clean up unused trees }
  325. for i:=0 to lists.nodelist.count-1 do
  326. if lists.equalto[i]<>pointer(-1) then
  327. tnode(lists.nodelist[i]).free;
  328. {$ifdef csedebug}
  329. writeln('nodes: ',lists.nodelist.count);
  330. writeln('==========================================');
  331. {$endif csedebug}
  332. lists.nodelist.free;
  333. lists.locationlist.free;
  334. lists.equalto.free;
  335. lists.refs.free;
  336. templist.free;
  337. if assigned(statements) then
  338. begin
  339. { call para nodes need a special handling because
  340. they can be only children nodes of call nodes
  341. so the initialization code is inserted below the
  342. call para node
  343. }
  344. if n.nodetype=callparan then
  345. begin
  346. addstatement(statements,tcallparanode(n).left);
  347. tcallparanode(n).left:=nodes;
  348. do_firstpass(tcallparanode(n).left);
  349. end
  350. else
  351. begin
  352. addstatement(statements,n);
  353. n:=nodes;
  354. do_firstpass(n);
  355. end;
  356. {$ifdef csedebug}
  357. printnode(output,nodes);
  358. {$endif csedebug}
  359. end;
  360. end
  361. end;
  362. end;
  363. function do_optcse(var rootnode : tnode) : tnode;
  364. begin
  365. foreachnodestatic(pm_postprocess,rootnode,@searchcsedomain,nil);
  366. result:=nil;
  367. end;
  368. end.