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aoptbase.pas 11 KB

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  1. {
  2. Copyright (c) 1998-2002 by Jonas Maebe, member of the Free Pascal
  3. Development Team
  4. This unit contains the base of all optimizer related objects
  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 aoptbase;
  19. {$i fpcdefs.inc}
  20. interface
  21. uses
  22. aasmbase,aasmcpu,aasmtai,aasmdata,
  23. cpubase,
  24. cgbase,
  25. cgutils;
  26. Type
  27. { the number of tai objects processed by an optimizer object since the last
  28. time a register was modified }
  29. { size at each dimension depends on the registers of this type }
  30. TInstrSinceLastMod = Array[tregistertype] of pbyte;
  31. { the TAopBase object implements the basic methods that most other }
  32. { assembler optimizer objects require }
  33. Type
  34. TAoptBase = class
  35. { processor independent methods }
  36. constructor create; virtual;
  37. destructor destroy;override;
  38. { returns true if register Reg is used by instruction p1 }
  39. Function RegInInstruction(Reg: TRegister; p1: tai): Boolean;virtual;
  40. { returns true if register Reg occurs in operand op }
  41. Function RegInOp(Reg: TRegister; const op: toper): Boolean;
  42. { returns true if register Reg is used in the reference Ref }
  43. Function RegInRef(Reg: TRegister; Const Ref: TReference): Boolean;
  44. function RegModifiedByInstruction(Reg: TRegister; p1: tai): boolean;virtual;
  45. { returns true if the references are completely equal }
  46. {Function RefsEqual(Const R1, R2: TReference): Boolean;}
  47. { gets the next tai object after current that contains info relevant }
  48. { to the optimizer in p1. If there is none, it returns false and }
  49. { sets p1 to nil }
  50. class Function GetNextInstruction(Current: tai; Var Next: tai): Boolean;
  51. { gets the previous tai object after current that contains info }
  52. { relevant to the optimizer in last. If there is none, it retuns }
  53. { false and sets last to nil }
  54. Function GetLastInstruction(Current: tai; Var Last: tai): Boolean;
  55. function SkipEntryExitMarker(current: tai; var next: tai): boolean;
  56. { processor dependent methods }
  57. { returns the maximum width component of Reg. Only has to be }
  58. { overridden for the 80x86 (afaik) }
  59. Function RegMaxSize(Reg: TRegister): TRegister; Virtual;
  60. { returns true if Reg1 and Reg2 are of the samae width. Only has to }
  61. { overridden for the 80x86 (afaik) }
  62. Function RegsSameSize(Reg1, Reg2: TRegister): Boolean; Virtual;
  63. { returns whether P is a load instruction (load contents from a }
  64. { memory location or (register) variable into a register) }
  65. Function IsLoadMemReg(p: tai): Boolean; Virtual; Abstract;
  66. { returns whether P is a load constant instruction (load a constant }
  67. { into a register) }
  68. Function IsLoadConstReg(p: tai): Boolean; Virtual; Abstract;
  69. { returns whether P is a store instruction (store contents from a
  70. register to a memory location or to a (register) variable) }
  71. Function IsStoreRegMem(p: tai): Boolean; Virtual; Abstract;
  72. { create a paicpu Object that loads the contents of reg1 into reg2 }
  73. Function a_load_reg_reg(reg1, reg2: TRegister): taicpu; Virtual; Abstract;
  74. { returns true if reg is used by any instruction between p1 and p2 }
  75. Function RegUsedBetween(reg: TRegister; p1, p2: tai): Boolean;
  76. { returns true if reg is modified by any instruction between p1 and p2 }
  77. function RegModifiedBetween(reg: TRegister; p1, p2: tai): Boolean;
  78. { returns true if reg is loaded with a new value by hp }
  79. function RegLoadedWithNewValue(reg: tregister; hp: tai): boolean; Virtual;
  80. { returns true if hp loads a value from reg }
  81. function InstructionLoadsFromReg(const reg : TRegister; const hp : tai) : boolean; Virtual;
  82. { compares reg1 and reg2 having the same type and being the same super registers
  83. so the register size is neglected }
  84. function SuperRegistersEqual(reg1,reg2 : TRegister) : Boolean;
  85. end;
  86. function labelCanBeSkipped(p: tai_label): boolean;
  87. implementation
  88. uses
  89. verbose,globals,aoptcpub;
  90. constructor taoptbase.create;
  91. begin
  92. inherited create;
  93. end;
  94. destructor taoptbase.destroy;
  95. begin
  96. inherited destroy;
  97. end;
  98. Function TAOptBase.RegInInstruction(Reg: TRegister; p1: tai): Boolean;
  99. Var
  100. Count: longint;
  101. Begin
  102. result:=false;
  103. if p1.typ<>ait_instruction then
  104. exit;
  105. for Count:=0 to TInstr(p1).ops-1 do
  106. if RegInOp(Reg, TInstr(p1).oper[Count]^) then
  107. exit(true);
  108. result:=false;
  109. End;
  110. Function TAOptBase.RegInOp(Reg: TRegister; const op: toper): Boolean;
  111. Begin
  112. Case op.typ Of
  113. Top_Reg: RegInOp := SuperRegistersEqual(Reg,op.reg);
  114. Top_Ref: RegInOp := RegInRef(Reg, op.ref^);
  115. {$ifdef arm}
  116. Top_Shifterop: RegInOp := op.shifterop^.rs = Reg;
  117. Top_RegSet: RegInOp := getsupreg(Reg) in op.regset^;
  118. {$endif arm}
  119. Else RegInOp := False
  120. End
  121. End;
  122. Function TAOptBase.RegInRef(Reg: TRegister; Const Ref: TReference): Boolean;
  123. Begin
  124. RegInRef := SuperRegistersEqual(Ref.Base,Reg)
  125. {$ifdef cpurefshaveindexreg}
  126. Or SuperRegistersEqual(Ref.Index,Reg)
  127. {$endif cpurefshaveindexreg}
  128. {$ifdef x86}
  129. or (Reg=Ref.segment)
  130. { if Ref.segment isn't set, the cpu uses implicitly ss or ds, depending on the base register }
  131. or ((Ref.segment=NR_NO) and (
  132. ((Reg=NR_SS) and (SuperRegistersEqual(Ref.base,NR_EBP) or SuperRegistersEqual(Ref.base,NR_ESP))) or
  133. ((Reg=NR_DS) and not(SuperRegistersEqual(Ref.base,NR_EBP) or SuperRegistersEqual(Ref.base,NR_ESP)))
  134. ))
  135. {$endif x86}
  136. End;
  137. Function TAOptBase.RegModifiedByInstruction(Reg: TRegister; p1: tai): Boolean;
  138. Begin
  139. Result:=true;
  140. End;
  141. function labelCanBeSkipped(p: tai_label): boolean;
  142. begin
  143. labelCanBeSkipped := not(p.labsym.is_used) or (p.labsym.labeltype<>alt_jump);
  144. end;
  145. class Function TAOptBase.GetNextInstruction(Current: tai; Var Next: tai): Boolean;
  146. Begin
  147. Repeat
  148. Current := tai(Current.Next);
  149. While Assigned(Current) And
  150. ((Current.typ In SkipInstr) or
  151. {$ifdef cpudelayslot}
  152. ((Current.typ=ait_instruction) and
  153. (taicpu(Current).opcode=A_NOP)
  154. ) or
  155. {$endif cpudelayslot}
  156. ((Current.typ = ait_label) And
  157. labelCanBeSkipped(Tai_Label(Current)))) Do
  158. Current := tai(Current.Next);
  159. If Assigned(Current) And
  160. (Current.typ = ait_Marker) And
  161. (Tai_Marker(Current).Kind = mark_NoPropInfoStart) Then
  162. Begin
  163. While Assigned(Current) And
  164. ((Current.typ <> ait_Marker) Or
  165. (Tai_Marker(Current).Kind <> mark_NoPropInfoEnd)) Do
  166. Current := Tai(Current.Next);
  167. End;
  168. Until Not(Assigned(Current)) Or
  169. (Current.typ <> ait_Marker) Or
  170. (Tai_Marker(Current).Kind <> mark_NoPropInfoEnd);
  171. Next := Current;
  172. If Assigned(Current) And
  173. Not((Current.typ In SkipInstr) or
  174. ((Current.typ = ait_label) And
  175. labelCanBeSkipped(Tai_Label(Current))))
  176. Then GetNextInstruction := True
  177. Else
  178. Begin
  179. Next := Nil;
  180. GetNextInstruction := False;
  181. End;
  182. End;
  183. Function TAOptBase.GetLastInstruction(Current: tai; Var Last: tai): Boolean;
  184. Begin
  185. Repeat
  186. Current := Tai(Current.previous);
  187. While Assigned(Current) And
  188. (((Current.typ = ait_Marker) And
  189. Not(Tai_Marker(Current).Kind in [mark_AsmBlockEnd{,mark_NoPropInfoEnd}])) or
  190. (Current.typ In SkipInstr) or
  191. ((Current.typ = ait_label) And
  192. labelCanBeSkipped(Tai_Label(Current)))) Do
  193. Current := Tai(Current.previous);
  194. { If Assigned(Current) And
  195. (Current.typ = ait_Marker) And
  196. (Tai_Marker(Current).Kind = mark_NoPropInfoEnd) Then
  197. Begin
  198. While Assigned(Current) And
  199. ((Current.typ <> ait_Marker) Or
  200. (Tai_Marker(Current).Kind <> mark_NoPropInfoStart)) Do
  201. Current := Tai(Current.previous);
  202. End; }
  203. Until Not(Assigned(Current)) Or
  204. (Current.typ <> ait_Marker) Or
  205. not(tai_Marker(current).Kind in [mark_NoPropInfoStart,mark_NoPropInfoEnd]);
  206. If Not(Assigned(Current)) or
  207. (Current.typ In SkipInstr) or
  208. ((Current.typ = ait_label) And
  209. labelCanBeSkipped(Tai_Label(Current))) or
  210. ((Current.typ = ait_Marker) And
  211. (Tai_Marker(Current).Kind = mark_AsmBlockEnd))
  212. Then
  213. Begin
  214. Last := Nil;
  215. GetLastInstruction := False
  216. End
  217. Else
  218. Begin
  219. Last := Current;
  220. GetLastInstruction := True;
  221. End;
  222. End;
  223. function TAOptBase.SkipEntryExitMarker(current: tai; var next: tai): boolean;
  224. begin
  225. result:=true;
  226. if current.typ<>ait_marker then
  227. exit;
  228. next:=current;
  229. while GetNextInstruction(next,next) do
  230. begin
  231. if (next.typ<>ait_marker) or not(tai_marker(next).Kind in [mark_Position,mark_BlockStart]) then
  232. exit;
  233. end;
  234. result:=false;
  235. end;
  236. Function TAOptBase.RegUsedBetween(reg : TRegister;p1,p2 : tai) : Boolean;
  237. Begin
  238. Result:=false;
  239. while assigned(p1) and assigned(p2) and GetNextInstruction(p1,p1) and (p1<>p2) do
  240. if RegInInstruction(reg,p1) then
  241. begin
  242. Result:=true;
  243. exit;
  244. end;
  245. end;
  246. Function TAOptBase.RegModifiedBetween(reg : TRegister;p1,p2 : tai) : Boolean;
  247. Begin
  248. Result:=false;
  249. while assigned(p1) and assigned(p2) and GetNextInstruction(p1,p1) and (p1<>p2) do
  250. if RegModifiedByInstruction(reg,p1) then
  251. begin
  252. Result:=true;
  253. exit;
  254. end;
  255. end;
  256. function TAoptBase.RegLoadedWithNewValue(reg : tregister; hp : tai) : boolean;
  257. begin
  258. result:=false;
  259. internalerror(2016012401);
  260. end;
  261. function TAoptBase.InstructionLoadsFromReg(const reg : TRegister; const hp : tai) : boolean;
  262. begin
  263. { save approximation }
  264. Result:=true;
  265. end;
  266. function TAOptBase.SuperRegistersEqual(reg1,reg2 : TRegister) : Boolean;
  267. Begin
  268. Result:=(getregtype(reg1) = getregtype(reg2)) and
  269. (getsupreg(reg1) = getsupreg(Reg2));
  270. end;
  271. { ******************* Processor dependent stuff *************************** }
  272. Function TAOptBase.RegMaxSize(Reg: TRegister): TRegister;
  273. Begin
  274. RegMaxSize := Reg
  275. End;
  276. Function TAOptBase.RegsSameSize(Reg1, Reg2: TRegister): Boolean;
  277. Begin
  278. RegsSameSize := True
  279. End;
  280. end.