optconstprop.pas 11 KB

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  1. {
  2. Constant propagation across statements
  3. Copyright (c) 2005-2012 by Jeppe Johansen and 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 optconstprop;
  18. {$i fpcdefs.inc}
  19. { $define DEBUG_CONSTPROP}
  20. interface
  21. uses
  22. node;
  23. { does constant propagation for rootnode
  24. The approach is simple: It search for constant assignment statements. As soon as such
  25. a statement is found, the following statements are search if they contain
  26. a usage of the assigned variable. If this is a the case, the variable is
  27. replaced by the constant. This does not work across points where the
  28. program flow joins so e.g.
  29. if ... then
  30. ...
  31. a:=1;
  32. ...
  33. else
  34. ...
  35. a:=1;
  36. ...
  37. writeln(a);
  38. will not result in any constant propagation.
  39. }
  40. function do_optconstpropagate(var rootnode : tnode) : tnode;
  41. implementation
  42. uses
  43. fmodule,
  44. pass_1,procinfo,
  45. symsym, symconst,
  46. nutils, nbas, ncnv, nld, nflw, ncal;
  47. function check_written(var n: tnode; arg: pointer): foreachnoderesult;
  48. begin
  49. result:=fen_false;
  50. if n.isequal(tnode(arg)) and
  51. ((n.flags*[nf_write,nf_modify])<>[]) then
  52. begin
  53. result:=fen_norecurse_true;
  54. end;
  55. end;
  56. { propagates the constant assignment passed in arg into n }
  57. function replaceBasicAssign(var n: tnode; arg: tnode; var tree_modified: boolean): boolean;
  58. var
  59. st2, oldnode: tnode;
  60. old: pnode;
  61. changed, tree_modified2,tree_modified3: boolean;
  62. written : Boolean;
  63. begin
  64. result:=true;
  65. if n = nil then
  66. exit;
  67. tree_modified:=false;
  68. tree_modified2:=false;
  69. tree_modified3:=false;
  70. { while it might be usefull, to use foreach to iterate all nodes, it is safer to
  71. iterate manually here so we have full controll how all nodes are processed }
  72. { We cannot analyze beyond those nodes, so we terminate to be on the safe side }
  73. if (n.nodetype in [addrn,derefn,dataconstn,asmn,withn,casen,whilerepeatn,forn,labeln,continuen,breakn,
  74. tryexceptn,raisen,tryfinallyn,onn,loadparentfpn,loadvmtaddrn,guidconstn,rttin,addoptn,asn,goton,
  75. objcselectorn,objcprotocoln]) then
  76. exit(false)
  77. else if n.nodetype=assignn then
  78. begin
  79. tree_modified:=false;
  80. { we can propage the constant in both branches because the evaluation order is not defined }
  81. result:=replaceBasicAssign(tassignmentnode(n).right, arg, tree_modified);
  82. { do not use the intuitive way result:=result and replace... because this would prevent
  83. replaceBasicAssign being called if the result is already false }
  84. result:=replaceBasicAssign(tassignmentnode(n).left, arg, tree_modified2) and result;
  85. tree_modified:=tree_modified or tree_modified2;
  86. { but we have to check if left writes to the currently searched variable ... }
  87. written:=foreachnodestatic(pm_postprocess, tassignmentnode(n).left, @check_written, tassignmentnode(arg).left);
  88. { ... if this is the case, we have to stop searching }
  89. result:=result and not(written);
  90. end
  91. else if n.isequal(tassignmentnode(arg).left) and ((n.flags*[nf_write,nf_modify])=[]) then
  92. begin
  93. n.Free;
  94. n:=tassignmentnode(arg).right.getcopy;
  95. inserttypeconv_internal(n, tassignmentnode(arg).left.resultdef);
  96. tree_modified:=true;
  97. end
  98. else if n.nodetype=statementn then
  99. result:=replaceBasicAssign(tstatementnode(n).left, arg, tree_modified)
  100. else if n.nodetype=blockn then
  101. begin
  102. changed:=false;
  103. st2:=tstatementnode(tblocknode(n).statements);
  104. old:=@tblocknode(n).statements;
  105. while assigned(st2) do
  106. begin
  107. repeat
  108. oldnode:=st2;
  109. tree_modified2:=false;
  110. if not replaceBasicAssign(st2, arg, tree_modified2) then
  111. begin
  112. old^:=st2;
  113. oldnode:=nil;
  114. changed:=changed or tree_modified2;
  115. result:=false;
  116. break;
  117. end
  118. else
  119. old^:=st2;
  120. changed:=changed or tree_modified2;
  121. until oldnode=st2;
  122. if oldnode = nil then
  123. break;
  124. old:=@tstatementnode(st2).next;
  125. st2:=tstatementnode(st2).next;
  126. end;
  127. tree_modified:=changed;
  128. end
  129. else if n.nodetype=ifn then
  130. begin
  131. result:=replaceBasicAssign(tifnode(n).left, arg, tree_modified);
  132. if result then
  133. begin
  134. if assigned(tifnode(n).t1) then
  135. begin
  136. { we can propagate the constant in both branches of an if statement
  137. because even if the the branch writes to it, the else branch gets the
  138. unmodified value }
  139. result:=replaceBasicAssign(tifnode(n).right, arg, tree_modified2);
  140. { do not use the intuitive way result:=result and replace... because this would prevent
  141. replaceBasicAssign being called if the result is already false }
  142. result:=replaceBasicAssign(tifnode(n).t1, arg, tree_modified3) and result;
  143. tree_modified:=tree_modified or tree_modified2 or tree_modified3;
  144. end
  145. else
  146. begin
  147. result:=replaceBasicAssign(tifnode(n).right, arg, tree_modified2);
  148. tree_modified:=tree_modified or tree_modified2;
  149. end;
  150. end;
  151. end
  152. else if n.nodetype in [calln,inlinen] then
  153. begin
  154. if might_have_sideeffects(n) and (n.nodetype=inlinen) then
  155. exit(false);
  156. if n.nodetype=calln then
  157. exit(false);
  158. replaceBasicAssign(tunarynode(n).left, arg, tree_modified);
  159. result:=false;
  160. end
  161. else if n.InheritsFrom(tbinarynode) then
  162. begin
  163. result:=replaceBasicAssign(tbinarynode(n).left, arg, tree_modified);
  164. if result then
  165. result:=replaceBasicAssign(tbinarynode(n).right, arg, tree_modified2);
  166. tree_modified:=tree_modified or tree_modified2;
  167. end
  168. else if n.InheritsFrom(tunarynode) then
  169. begin
  170. result:=replaceBasicAssign(tunarynode(n).left, arg, tree_modified);
  171. end;
  172. if n.nodetype<>callparan then
  173. begin
  174. if tree_modified then
  175. exclude(n.flags,nf_pass1_done);
  176. do_firstpass(n);
  177. end;
  178. end;
  179. function propagate(var n: tnode; arg: pointer): foreachnoderesult;
  180. var
  181. l,
  182. st, st2, oldnode: tnode;
  183. old: pnode;
  184. a: tassignmentnode;
  185. tree_mod, changed: boolean;
  186. begin
  187. result:=fen_true;
  188. changed:=false;
  189. PBoolean(arg)^:=false;
  190. if not assigned(n) then
  191. exit;
  192. if n.nodetype in [calln] then
  193. exit(fen_norecurse_true);
  194. if n.nodetype=blockn then
  195. begin
  196. st:=tblocknode(n).statements;
  197. while assigned(st) and
  198. (st.nodetype=statementn) and
  199. assigned(tstatementnode(st).statement) do
  200. begin
  201. if tstatementnode(st).statement.nodetype=assignn then
  202. begin
  203. a:=tassignmentnode(tstatementnode(st).statement);
  204. l:=a.left;
  205. if (((l.nodetype=loadn) and
  206. (tloadnode(l).symtableentry.typ=localvarsym) and
  207. (tloadnode(l).symtable=current_procinfo.procdef.localst)
  208. ) or
  209. ((l.nodetype=loadn) and
  210. (tloadnode(l).symtableentry.typ=paravarsym) and
  211. (tloadnode(l).symtable=current_procinfo.procdef.parast)
  212. ) or
  213. (l.nodetype = temprefn)) and
  214. (is_constintnode(a.right) or
  215. is_constboolnode(a.right) or
  216. is_constcharnode(a.right) or
  217. is_constenumnode(a.right) or
  218. is_conststringnode(a.right)) then
  219. begin
  220. st2:=tstatementnode(tstatementnode(st).right);
  221. old:=@tstatementnode(st).right;
  222. while assigned(st2) do
  223. begin
  224. repeat
  225. oldnode:=st2;
  226. { Simple assignment of constant found }
  227. tree_mod:=false;
  228. if not replaceBasicAssign(st2, a, tree_mod) then
  229. begin
  230. old^:=st2;
  231. oldnode:=nil;
  232. changed:=changed or tree_mod;
  233. break;
  234. end
  235. else
  236. old^:=st2;
  237. changed:=changed or tree_mod;
  238. until oldnode=st2;
  239. if oldnode = nil then
  240. break;
  241. old:=@tstatementnode(st2).next;
  242. st2:=tstatementnode(st2).next;
  243. end;
  244. end;
  245. end;
  246. st:=tstatementnode(st).next;
  247. end;
  248. end;
  249. PBoolean(arg)^:=changed;
  250. end;
  251. function do_optconstpropagate(var rootnode: tnode): tnode;
  252. var
  253. changed: boolean;
  254. begin
  255. {$ifdef DEBUG_CONSTPROP}
  256. writeln('************************ before constant propagation ***************************');
  257. printnode(rootnode);
  258. {$endif DEBUG_CONSTPROP}
  259. repeat
  260. changed:=false;
  261. foreachnodestatic(pm_postandagain, rootnode, @propagate, @changed);
  262. until changed=false;
  263. {$ifdef DEBUG_CONSTPROP}
  264. writeln('************************ after constant propagation ***************************');
  265. printnode(rootnode);
  266. writeln('*******************************************************************************');
  267. {$endif DEBUG_CONSTPROP}
  268. result:=rootnode;
  269. end;
  270. end.