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https://gitlab.com/freepascal.org/fpc/source.git
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1558 lines
63 KiB
ObjectPascal
1558 lines
63 KiB
ObjectPascal
{
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$Id$
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Copyright (c) 1998-2000 by Florian Klaempfl
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Generate i386 inline nodes
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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****************************************************************************
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}
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unit cg386inl;
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interface
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uses
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tree;
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procedure secondinline(var p : ptree);
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implementation
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uses
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globtype,systems,
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cobjects,verbose,globals,files,
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symconst,symtable,aasm,types,
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hcodegen,temp_gen,pass_1,pass_2,
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cpubase,cpuasm,
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cgai386,tgeni386,cg386cal;
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{*****************************************************************************
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Helpers
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*****************************************************************************}
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{ reverts the parameter list }
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var nb_para : integer;
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function reversparameter(p : ptree) : ptree;
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var
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hp1,hp2 : ptree;
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begin
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hp1:=nil;
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nb_para := 0;
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while assigned(p) do
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begin
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{ pull out }
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hp2:=p;
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p:=p^.right;
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inc(nb_para);
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{ pull in }
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hp2^.right:=hp1;
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hp1:=hp2;
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end;
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reversparameter:=hp1;
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end;
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{*****************************************************************************
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SecondInLine
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*****************************************************************************}
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procedure StoreDirectFuncResult(var dest:ptree);
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var
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hp : ptree;
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hdef : porddef;
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hreg : tregister;
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hregister : tregister;
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oldregisterdef : boolean;
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op : tasmop;
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opsize : topsize;
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begin
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{ Get the accumulator first so it can't be used in the dest }
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if (dest^.resulttype^.deftype=orddef) and
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not(is_64bitint(dest^.resulttype)) then
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hregister:=getexplicitregister32(accumulator);
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{ process dest }
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SecondPass(dest);
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if Codegenerror then
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exit;
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{ store the value }
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Case dest^.resulttype^.deftype of
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floatdef:
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if dest^.location.loc=LOC_CFPUREGISTER then
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begin
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floatstoreops(pfloatdef(dest^.resulttype)^.typ,op,opsize);
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emit_reg(op,opsize,correct_fpuregister(dest^.location.register,fpuvaroffset+1));
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end
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else
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begin
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inc(fpuvaroffset);
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floatstore(PFloatDef(dest^.resulttype)^.typ,dest^.location.reference);
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{ floatstore decrements the fpu var offset }
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{ but in fact we didn't increment it }
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end;
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orddef:
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begin
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if is_64bitint(dest^.resulttype) then
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begin
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emit_movq_reg_loc(R_EDX,R_EAX,dest^.location);
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end
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else
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begin
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Case dest^.resulttype^.size of
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1 : hreg:=regtoreg8(hregister);
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2 : hreg:=regtoreg16(hregister);
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4 : hreg:=hregister;
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End;
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emit_mov_reg_loc(hreg,dest^.location);
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If (cs_check_range in aktlocalswitches) and
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{no need to rangecheck longints or cardinals on 32bit processors}
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not((porddef(dest^.resulttype)^.typ = s32bit) and
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(porddef(dest^.resulttype)^.low = longint($80000000)) and
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(porddef(dest^.resulttype)^.high = $7fffffff)) and
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not((porddef(dest^.resulttype)^.typ = u32bit) and
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(porddef(dest^.resulttype)^.low = 0) and
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(porddef(dest^.resulttype)^.high = longint($ffffffff))) then
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Begin
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{do not register this temporary def}
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OldRegisterDef := RegisterDef;
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RegisterDef := False;
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hdef:=nil;
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Case PordDef(dest^.resulttype)^.typ of
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u8bit,u16bit,u32bit:
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begin
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new(hdef,init(u32bit,0,$ffffffff));
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hreg:=hregister;
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end;
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s8bit,s16bit,s32bit:
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begin
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new(hdef,init(s32bit,$80000000,$7fffffff));
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hreg:=hregister;
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end;
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end;
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{ create a fake node }
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hp := genzeronode(nothingn);
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hp^.location.loc := LOC_REGISTER;
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hp^.location.register := hreg;
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if assigned(hdef) then
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hp^.resulttype:=hdef
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else
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hp^.resulttype:=dest^.resulttype;
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{ emit the range check }
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emitrangecheck(hp,dest^.resulttype);
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hp^.right := nil;
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if assigned(hdef) then
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Dispose(hdef, Done);
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RegisterDef := OldRegisterDef;
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disposetree(hp);
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End;
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ungetregister(hregister);
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end;
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End;
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else
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internalerror(66766766);
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end;
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{ free used registers }
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del_locref(dest^.location);
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end;
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procedure secondinline(var p : ptree);
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const
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{tfloattype = (s32real,s64real,s80real,s64bit,f16bit,f32bit);}
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{ float_name: array[tfloattype] of string[8]=
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('S32REAL','S64REAL','S80REAL','S64BIT','F16BIT','F32BIT'); }
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incdecop:array[in_inc_x..in_dec_x] of tasmop=(A_INC,A_DEC);
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addsubop:array[in_inc_x..in_dec_x] of tasmop=(A_ADD,A_SUB);
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var
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aktfile : treference;
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ft : tfiletyp;
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opsize : topsize;
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op,
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asmop : tasmop;
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pushed : tpushed;
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{inc/dec}
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addconstant : boolean;
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addvalue : longint;
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procedure handlereadwrite(doread,doln : boolean);
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{ produces code for READ(LN) and WRITE(LN) }
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procedure loadstream;
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const
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io:array[boolean] of string[7]=('_OUTPUT','_INPUT');
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var
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r : preference;
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begin
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new(r);
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reset_reference(r^);
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r^.symbol:=newasmsymbol(
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'U_'+upper(target_info.system_unit)+io[doread]);
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{$ifndef noAllocEdi}
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getexplicitregister32(R_EDI);
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{$endif noAllocEdi}
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emit_ref_reg(A_LEA,S_L,r,R_EDI)
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end;
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const
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rdwrprefix:array[boolean] of string[15]=('FPC_WRITE_TEXT_','FPC_READ_TEXT_');
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var
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node,hp : ptree;
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typedtyp,
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pararesult : pdef;
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orgfloattype : tfloattype;
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dummycoll : tparaitem;
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iolabel : pasmlabel;
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npara : longint;
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esireloaded : boolean;
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begin
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{ here we don't use register calling conventions }
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dummycoll.init;
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dummycoll.register:=R_NO;
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{ I/O check }
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if (cs_check_io in aktlocalswitches) and
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not(po_iocheck in aktprocsym^.definition^.procoptions) then
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begin
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getaddrlabel(iolabel);
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emitlab(iolabel);
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end
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else
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iolabel:=nil;
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{ for write of real with the length specified }
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hp:=nil;
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{ reserve temporary pointer to data variable }
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aktfile.symbol:=nil;
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gettempofsizereference(4,aktfile);
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{ first state text data }
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ft:=ft_text;
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{ and state a parameter ? }
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if p^.left=nil then
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begin
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{ the following instructions are for "writeln;" }
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loadstream;
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{ save @aktfile in temporary variable }
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emit_reg_ref(A_MOV,S_L,R_EDI,newreference(aktfile));
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{$ifndef noAllocEdi}
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ungetregister32(R_EDI);
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{$endif noAllocEdi}
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end
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else
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begin
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{ revers paramters }
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node:=reversparameter(p^.left);
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p^.left := node;
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npara := nb_para;
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{ calculate data variable }
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{ is first parameter a file type ? }
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if node^.left^.resulttype^.deftype=filedef then
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begin
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ft:=pfiledef(node^.left^.resulttype)^.filetyp;
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if ft=ft_typed then
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typedtyp:=pfiledef(node^.left^.resulttype)^.typedfiletype.def;
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secondpass(node^.left);
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if codegenerror then
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exit;
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{ save reference in temporary variables }
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if node^.left^.location.loc<>LOC_REFERENCE then
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begin
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CGMessage(cg_e_illegal_expression);
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exit;
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end;
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{$ifndef noAllocEdi}
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getexplicitregister32(R_EDI);
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{$endif noAllocEdi}
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emit_ref_reg(A_LEA,S_L,newreference(node^.left^.location.reference),R_EDI);
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del_reference(node^.left^.location.reference);
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{ skip to the next parameter }
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node:=node^.right;
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end
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else
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begin
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{ load stdin/stdout stream }
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loadstream;
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end;
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{ save @aktfile in temporary variable }
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emit_reg_ref(A_MOV,S_L,R_EDI,newreference(aktfile));
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{$ifndef noAllocEdi}
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ungetregister32(R_EDI);
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{$endif noAllocEdi}
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if doread then
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{ parameter by READ gives call by reference }
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dummycoll.paratyp:=vs_var
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{ an WRITE Call by "Const" }
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else
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dummycoll.paratyp:=vs_const;
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{ because of secondcallparan, which otherwise attaches }
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if ft=ft_typed then
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{ this is to avoid copy of simple const parameters }
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{dummycoll.data:=new(pformaldef,init)}
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dummycoll.paratype.setdef(cformaldef)
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else
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{ I think, this isn't a good solution (FK) }
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dummycoll.paratype.reset;
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while assigned(node) do
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begin
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esireloaded:=false;
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pushusedregisters(pushed,$ff);
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hp:=node;
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node:=node^.right;
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hp^.right:=nil;
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if hp^.is_colon_para then
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CGMessage(parser_e_illegal_colon_qualifier);
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{ when float is written then we need bestreal to be pushed
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convert here else we loose the old float type }
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if (not doread) and
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(ft<>ft_typed) and
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(hp^.left^.resulttype^.deftype=floatdef) then
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begin
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orgfloattype:=pfloatdef(hp^.left^.resulttype)^.typ;
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hp^.left:=gentypeconvnode(hp^.left,bestrealdef^);
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firstpass(hp^.left);
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end;
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{ when read ord,floats are functions, so they need this
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parameter as their destination instead of being pushed }
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if doread and
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(ft<>ft_typed) and
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(hp^.resulttype^.deftype in [orddef,floatdef]) then
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begin
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end
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else
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begin
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if ft=ft_typed then
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never_copy_const_param:=true;
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{ reset data type }
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dummycoll.paratype.reset;
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{ create temporary defs for high tree generation }
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if doread and (is_shortstring(hp^.resulttype)) then
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dummycoll.paratype.setdef(openshortstringdef)
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else
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if (is_chararray(hp^.resulttype)) then
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dummycoll.paratype.setdef(openchararraydef);
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secondcallparan(hp,@dummycoll,false,false,false,0,0);
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if ft=ft_typed then
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never_copy_const_param:=false;
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end;
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hp^.right:=node;
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if codegenerror then
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exit;
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emit_push_mem(aktfile);
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if (ft=ft_typed) then
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begin
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{ OK let's try this }
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{ first we must only allow the right type }
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{ we have to call blockread or blockwrite }
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{ but the real problem is that }
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{ reset and rewrite should have set }
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{ the type size }
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{ as recordsize for that file !!!! }
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{ how can we make that }
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{ I think that is only possible by adding }
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{ reset and rewrite to the inline list a call }
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{ allways read only one record by element }
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push_int(typedtyp^.size);
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if doread then
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emitcall('FPC_TYPED_READ')
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else
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emitcall('FPC_TYPED_WRITE');
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end
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else
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begin
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{ save current position }
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pararesult:=hp^.left^.resulttype;
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{ handle possible field width }
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{ of course only for write(ln) }
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if not doread then
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begin
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{ handle total width parameter }
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if assigned(node) and node^.is_colon_para then
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begin
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hp:=node;
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node:=node^.right;
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hp^.right:=nil;
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dummycoll.paratype.setdef(hp^.resulttype);
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dummycoll.paratyp:=vs_value;
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secondcallparan(hp,@dummycoll,false,false,false,0,0);
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hp^.right:=node;
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if codegenerror then
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exit;
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end
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else
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if pararesult^.deftype<>floatdef then
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push_int(0)
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else
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push_int(-32767);
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{ a second colon para for a float ? }
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if assigned(node) and node^.is_colon_para then
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begin
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hp:=node;
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node:=node^.right;
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hp^.right:=nil;
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dummycoll.paratype.setdef(hp^.resulttype);
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dummycoll.paratyp:=vs_value;
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secondcallparan(hp,@dummycoll,false,false,false,0,0);
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hp^.right:=node;
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if pararesult^.deftype<>floatdef then
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CGMessage(parser_e_illegal_colon_qualifier);
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if codegenerror then
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exit;
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end
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else
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begin
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if pararesult^.deftype=floatdef then
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push_int(-1);
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end;
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{ push also the real type for floats }
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if pararesult^.deftype=floatdef then
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push_int(ord(orgfloattype));
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end;
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case pararesult^.deftype of
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stringdef :
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begin
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emitcall(rdwrprefix[doread]+pstringdef(pararesult)^.stringtypname);
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end;
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pointerdef :
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begin
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if is_pchar(pararesult) then
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emitcall(rdwrprefix[doread]+'PCHAR_AS_POINTER')
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end;
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arraydef :
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begin
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if is_chararray(pararesult) then
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emitcall(rdwrprefix[doread]+'PCHAR_AS_ARRAY')
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end;
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floatdef :
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begin
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emitcall(rdwrprefix[doread]+'FLOAT');
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{
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if pfloatdef(p^.resulttype)^.typ<>f32bit then
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dec(fpuvaroffset);
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}
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if doread then
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begin
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maybe_loadesi;
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esireloaded:=true;
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StoreDirectFuncResult(hp^.left);
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end;
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end;
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orddef :
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begin
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case porddef(pararesult)^.typ of
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s8bit,s16bit,s32bit :
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emitcall(rdwrprefix[doread]+'SINT');
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u8bit,u16bit,u32bit :
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emitcall(rdwrprefix[doread]+'UINT');
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uchar :
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emitcall(rdwrprefix[doread]+'CHAR');
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s64bit :
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emitcall(rdwrprefix[doread]+'INT64');
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u64bit :
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emitcall(rdwrprefix[doread]+'QWORD');
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bool8bit,
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bool16bit,
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bool32bit :
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emitcall(rdwrprefix[doread]+'BOOLEAN');
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end;
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if doread then
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begin
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maybe_loadesi;
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esireloaded:=true;
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StoreDirectFuncResult(hp^.left);
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end;
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end;
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end;
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end;
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{ load ESI in methods again }
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popusedregisters(pushed);
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if not(esireloaded) then
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maybe_loadesi;
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end;
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end;
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{ Insert end of writing for textfiles }
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if ft=ft_text then
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begin
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pushusedregisters(pushed,$ff);
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emit_push_mem(aktfile);
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if doread then
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begin
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if doln then
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emitcall('FPC_READLN_END')
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else
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emitcall('FPC_READ_END');
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end
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else
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begin
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if doln then
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emitcall('FPC_WRITELN_END')
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else
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emitcall('FPC_WRITE_END');
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end;
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popusedregisters(pushed);
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maybe_loadesi;
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end;
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{ Insert IOCheck if set }
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if assigned(iolabel) then
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begin
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{ registers are saved in the procedure }
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emit_sym(A_PUSH,S_L,iolabel);
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emitcall('FPC_IOCHECK');
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end;
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{ Freeup all used temps }
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ungetiftemp(aktfile);
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if assigned(p^.left) then
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begin
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p^.left:=reversparameter(p^.left);
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if npara<>nb_para then
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CGMessage(cg_f_internal_error_in_secondinline);
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hp:=p^.left;
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while assigned(hp) do
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begin
|
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if assigned(hp^.left) then
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if (hp^.left^.location.loc in [LOC_MEM,LOC_REFERENCE]) then
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ungetiftemp(hp^.left^.location.reference);
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hp:=hp^.right;
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end;
|
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end;
|
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end;
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|
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procedure handle_str;
|
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|
|
var
|
|
hp,node : ptree;
|
|
dummycoll : tparaitem;
|
|
is_real : boolean;
|
|
realtype : tfloattype;
|
|
procedureprefix : string;
|
|
|
|
begin
|
|
dummycoll.init;
|
|
dummycoll.register:=R_NO;
|
|
pushusedregisters(pushed,$ff);
|
|
node:=p^.left;
|
|
is_real:=false;
|
|
while assigned(node^.right) do node:=node^.right;
|
|
{ if a real parameter somewhere then call REALSTR }
|
|
if (node^.left^.resulttype^.deftype=floatdef) then
|
|
begin
|
|
is_real:=true;
|
|
realtype:=pfloatdef(node^.left^.resulttype)^.typ;
|
|
end;
|
|
|
|
node:=p^.left;
|
|
{ we have at least two args }
|
|
{ with at max 2 colon_para in between }
|
|
|
|
{ string arg }
|
|
hp:=node;
|
|
node:=node^.right;
|
|
hp^.right:=nil;
|
|
dummycoll.paratyp:=vs_var;
|
|
if is_shortstring(hp^.resulttype) then
|
|
dummycoll.paratype.setdef(openshortstringdef)
|
|
else
|
|
dummycoll.paratype.setdef(hp^.resulttype);
|
|
procedureprefix:='FPC_'+pstringdef(hp^.resulttype)^.stringtypname+'_';
|
|
secondcallparan(hp,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
|
|
dummycoll.paratyp:=vs_const;
|
|
disposetree(p^.left);
|
|
p^.left:=nil;
|
|
{ second arg }
|
|
hp:=node;
|
|
node:=node^.right;
|
|
hp^.right:=nil;
|
|
|
|
{ if real push real type }
|
|
if is_real then
|
|
push_int(ord(realtype));
|
|
|
|
{ frac para }
|
|
if hp^.is_colon_para and assigned(node) and
|
|
node^.is_colon_para then
|
|
begin
|
|
dummycoll.paratype.setdef(hp^.resulttype);
|
|
dummycoll.paratyp:=vs_value;
|
|
secondcallparan(hp,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
disposetree(hp);
|
|
hp:=node;
|
|
node:=node^.right;
|
|
hp^.right:=nil;
|
|
end
|
|
else
|
|
if is_real then
|
|
push_int(-1);
|
|
|
|
{ third arg, length only if is_real }
|
|
if hp^.is_colon_para then
|
|
begin
|
|
dummycoll.paratype.setdef(hp^.resulttype);
|
|
dummycoll.paratyp:=vs_value;
|
|
secondcallparan(hp,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
disposetree(hp);
|
|
hp:=node;
|
|
node:=node^.right;
|
|
hp^.right:=nil;
|
|
end
|
|
else
|
|
if is_real then
|
|
push_int(-32767)
|
|
else
|
|
push_int(-1);
|
|
|
|
{ Convert float to bestreal }
|
|
if is_real then
|
|
begin
|
|
hp^.left:=gentypeconvnode(hp^.left,bestrealdef^);
|
|
firstpass(hp^.left);
|
|
end;
|
|
|
|
{ last arg longint or real }
|
|
dummycoll.paratype.setdef(hp^.resulttype);
|
|
dummycoll.paratyp:=vs_value;
|
|
secondcallparan(hp,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
|
|
if is_real then
|
|
emitcall(procedureprefix+'FLOAT')
|
|
else
|
|
case porddef(hp^.resulttype)^.typ of
|
|
u32bit:
|
|
emitcall(procedureprefix+'CARDINAL');
|
|
|
|
u64bit:
|
|
emitcall(procedureprefix+'QWORD');
|
|
|
|
s64bit:
|
|
emitcall(procedureprefix+'INT64');
|
|
|
|
else
|
|
emitcall(procedureprefix+'LONGINT');
|
|
end;
|
|
disposetree(hp);
|
|
|
|
popusedregisters(pushed);
|
|
end;
|
|
|
|
|
|
Procedure Handle_Val;
|
|
var
|
|
hp,node, code_para, dest_para : ptree;
|
|
hreg,hreg2: TRegister;
|
|
hdef: POrdDef;
|
|
procedureprefix : string;
|
|
hr, hr2: TReference;
|
|
dummycoll : tparaitem;
|
|
has_code, has_32bit_code, oldregisterdef: boolean;
|
|
r : preference;
|
|
|
|
begin
|
|
dummycoll.init;
|
|
dummycoll.register:=R_NO;
|
|
node:=p^.left;
|
|
hp:=node;
|
|
node:=node^.right;
|
|
hp^.right:=nil;
|
|
{if we have 3 parameters, we have a code parameter}
|
|
has_code := Assigned(node^.right);
|
|
has_32bit_code := false;
|
|
reset_reference(hr);
|
|
hreg := R_NO;
|
|
|
|
If has_code then
|
|
Begin
|
|
{code is an orddef, that's checked in tcinl}
|
|
code_para := hp;
|
|
hp := node;
|
|
node := node^.right;
|
|
hp^.right := nil;
|
|
has_32bit_code := (porddef(code_para^.left^.resulttype)^.typ in [u32bit,s32bit]);
|
|
End;
|
|
|
|
{hp = destination now, save for later use}
|
|
dest_para := hp;
|
|
|
|
{if EAX is already in use, it's a register variable. Since we don't
|
|
need another register besides EAX, release the one we got}
|
|
If hreg <> R_EAX Then ungetregister32(hreg);
|
|
|
|
{load and push the address of the destination}
|
|
dummycoll.paratyp:=vs_var;
|
|
dummycoll.paratype.setdef(dest_para^.resulttype);
|
|
secondcallparan(dest_para,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
|
|
{save the regvars}
|
|
pushusedregisters(pushed,$ff);
|
|
|
|
{now that we've already pushed the addres of dest_para^.left on the
|
|
stack, we can put the real parameters on the stack}
|
|
|
|
If has_32bit_code Then
|
|
Begin
|
|
dummycoll.paratyp:=vs_var;
|
|
dummycoll.paratype.setdef(code_para^.resulttype);
|
|
secondcallparan(code_para,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
Disposetree(code_para);
|
|
End
|
|
Else
|
|
Begin
|
|
{only 32bit code parameter is supported, so fake one}
|
|
GetTempOfSizeReference(4,hr);
|
|
emitpushreferenceaddr(hr);
|
|
End;
|
|
|
|
{node = first parameter = string}
|
|
dummycoll.paratyp:=vs_const;
|
|
dummycoll.paratype.setdef(node^.resulttype);
|
|
secondcallparan(node,@dummycoll,false,false,false,0,0);
|
|
if codegenerror then
|
|
exit;
|
|
|
|
Case dest_para^.resulttype^.deftype of
|
|
floatdef:
|
|
begin
|
|
procedureprefix := 'FPC_VAL_REAL_';
|
|
if pfloatdef(p^.resulttype)^.typ<>f32bit then
|
|
inc(fpuvaroffset);
|
|
end;
|
|
orddef:
|
|
if is_64bitint(dest_para^.resulttype) then
|
|
begin
|
|
if is_signed(dest_para^.resulttype) then
|
|
procedureprefix := 'FPC_VAL_INT64_'
|
|
else
|
|
procedureprefix := 'FPC_VAL_QWORD_';
|
|
end
|
|
else
|
|
begin
|
|
if is_signed(dest_para^.resulttype) then
|
|
begin
|
|
{if we are converting to a signed number, we have to include the
|
|
size of the destination, so the Val function can extend the sign
|
|
of the result to allow proper range checking}
|
|
emit_const(A_PUSH,S_L,dest_para^.resulttype^.size);
|
|
procedureprefix := 'FPC_VAL_SINT_'
|
|
end
|
|
else
|
|
procedureprefix := 'FPC_VAL_UINT_';
|
|
end;
|
|
End;
|
|
emitcall(procedureprefix+pstringdef(node^.resulttype)^.stringtypname);
|
|
{ before disposing node we need to ungettemp !! PM }
|
|
if node^.left^.location.loc in [LOC_REFERENCE,LOC_MEM] then
|
|
ungetiftemp(node^.left^.location.reference);
|
|
disposetree(node);
|
|
p^.left := nil;
|
|
|
|
{reload esi in case the dest_para/code_para is a class variable or so}
|
|
maybe_loadesi;
|
|
|
|
If (dest_para^.resulttype^.deftype = orddef) Then
|
|
Begin
|
|
{store the result in a safe place, because EAX may be used by a
|
|
register variable}
|
|
hreg := getexplicitregister32(R_EAX);
|
|
emit_reg_reg(A_MOV,S_L,R_EAX,hreg);
|
|
if is_64bitint(dest_para^.resulttype) then
|
|
begin
|
|
hreg2:=getexplicitregister32(R_EDX);
|
|
emit_reg_reg(A_MOV,S_L,R_EDX,hreg2);
|
|
end;
|
|
{as of now, hreg now holds the location of the result, if it was
|
|
integer}
|
|
End;
|
|
|
|
{ restore the register vars}
|
|
|
|
popusedregisters(pushed);
|
|
|
|
If has_code and Not(has_32bit_code) Then
|
|
{only 16bit code is possible}
|
|
Begin
|
|
{load the address of the code parameter}
|
|
secondpass(code_para^.left);
|
|
{move the code to its destination}
|
|
{$ifndef noAllocEdi}
|
|
getexplicitregister32(R_EDI);
|
|
{$endif noAllocEdi}
|
|
emit_ref_reg(A_MOV,S_L,NewReference(hr),R_EDI);
|
|
emit_mov_reg_loc(R_DI,code_para^.left^.location);
|
|
{$ifndef noAllocEdi}
|
|
ungetregister32(R_EDI);
|
|
{$endif noAllocEdi}
|
|
Disposetree(code_para);
|
|
End;
|
|
|
|
{restore the address of the result}
|
|
{$ifndef noAllocEdi}
|
|
getexplicitregister32(R_EDI);
|
|
{$endif noAllocEdi}
|
|
emit_reg(A_POP,S_L,R_EDI);
|
|
|
|
{set up hr2 to a refernce with EDI as base register}
|
|
reset_reference(hr2);
|
|
hr2.base := R_EDI;
|
|
|
|
{save the function result in the destination variable}
|
|
Case dest_para^.left^.resulttype^.deftype of
|
|
floatdef:
|
|
floatstore(PFloatDef(dest_para^.left^.resulttype)^.typ, hr2);
|
|
orddef:
|
|
Case PordDef(dest_para^.left^.resulttype)^.typ of
|
|
u8bit,s8bit:
|
|
emit_reg_ref(A_MOV, S_B,
|
|
RegToReg8(hreg),newreference(hr2));
|
|
u16bit,s16bit:
|
|
emit_reg_ref(A_MOV, S_W,
|
|
RegToReg16(hreg),newreference(hr2));
|
|
u32bit,s32bit:
|
|
emit_reg_ref(A_MOV, S_L,
|
|
hreg,newreference(hr2));
|
|
u64bit,s64bit:
|
|
begin
|
|
emit_reg_ref(A_MOV, S_L,
|
|
hreg,newreference(hr2));
|
|
r:=newreference(hr2);
|
|
inc(r^.offset,4);
|
|
emit_reg_ref(A_MOV, S_L,
|
|
hreg2,r);
|
|
end;
|
|
End;
|
|
End;
|
|
{$ifndef noAllocEdi}
|
|
ungetregister32(R_EDI);
|
|
{$endif noAllocEdi}
|
|
If (cs_check_range in aktlocalswitches) and
|
|
(dest_para^.left^.resulttype^.deftype = orddef) and
|
|
(not(is_64bitint(dest_para^.left^.resulttype))) and
|
|
{the following has to be changed to 64bit checking, once Val
|
|
returns 64 bit values (unless a special Val function is created
|
|
for that)}
|
|
{no need to rangecheck longints or cardinals on 32bit processors}
|
|
not((porddef(dest_para^.left^.resulttype)^.typ = s32bit) and
|
|
(porddef(dest_para^.left^.resulttype)^.low = longint($80000000)) and
|
|
(porddef(dest_para^.left^.resulttype)^.high = $7fffffff)) and
|
|
not((porddef(dest_para^.left^.resulttype)^.typ = u32bit) and
|
|
(porddef(dest_para^.left^.resulttype)^.low = 0) and
|
|
(porddef(dest_para^.left^.resulttype)^.high = longint($ffffffff))) then
|
|
Begin
|
|
hp := getcopy(dest_para^.left);
|
|
hp^.location.loc := LOC_REGISTER;
|
|
hp^.location.register := hreg;
|
|
{do not register this temporary def}
|
|
OldRegisterDef := RegisterDef;
|
|
RegisterDef := False;
|
|
Case PordDef(dest_para^.left^.resulttype)^.typ of
|
|
u8bit,u16bit,u32bit: new(hdef,init(u32bit,0,$ffffffff));
|
|
s8bit,s16bit,s32bit: new(hdef,init(s32bit,$80000000,$7fffffff));
|
|
end;
|
|
hp^.resulttype := hdef;
|
|
emitrangecheck(hp,dest_para^.left^.resulttype);
|
|
hp^.right := nil;
|
|
Dispose(hp^.resulttype, Done);
|
|
RegisterDef := OldRegisterDef;
|
|
disposetree(hp);
|
|
End;
|
|
{dest_para^.right is already nil}
|
|
disposetree(dest_para);
|
|
UnGetIfTemp(hr);
|
|
end;
|
|
|
|
var
|
|
r : preference;
|
|
hp : ptree;
|
|
l : longint;
|
|
ispushed : boolean;
|
|
hregister : tregister;
|
|
otlabel,oflabel{,l1} : pasmlabel;
|
|
oldpushedparasize : longint;
|
|
|
|
begin
|
|
{ save & reset pushedparasize }
|
|
oldpushedparasize:=pushedparasize;
|
|
pushedparasize:=0;
|
|
case p^.inlinenumber of
|
|
in_assert_x_y:
|
|
begin
|
|
{ the node should be removed in the firstpass }
|
|
if not (cs_do_assertion in aktlocalswitches) then
|
|
internalerror(7123458);
|
|
otlabel:=truelabel;
|
|
oflabel:=falselabel;
|
|
getlabel(truelabel);
|
|
getlabel(falselabel);
|
|
secondpass(p^.left^.left);
|
|
maketojumpbool(p^.left^.left);
|
|
emitlab(falselabel);
|
|
{ erroraddr }
|
|
emit_reg(A_PUSH,S_L,R_EBP);
|
|
{ lineno }
|
|
emit_const(A_PUSH,S_L,aktfilepos.line);
|
|
{ filename string }
|
|
hp:=genstringconstnode(current_module^.sourcefiles^.get_file_name(aktfilepos.fileindex),st_shortstring);
|
|
secondpass(hp);
|
|
if codegenerror then
|
|
exit;
|
|
emitpushreferenceaddr(hp^.location.reference);
|
|
disposetree(hp);
|
|
{ push msg }
|
|
secondpass(p^.left^.right^.left);
|
|
emitpushreferenceaddr(p^.left^.right^.left^.location.reference);
|
|
{ call }
|
|
emitcall('FPC_ASSERT');
|
|
emitlab(truelabel);
|
|
truelabel:=otlabel;
|
|
falselabel:=oflabel;
|
|
end;
|
|
in_lo_word,
|
|
in_hi_word :
|
|
begin
|
|
secondpass(p^.left);
|
|
p^.location.loc:=LOC_REGISTER;
|
|
if p^.left^.location.loc<>LOC_REGISTER then
|
|
begin
|
|
if p^.left^.location.loc=LOC_CREGISTER then
|
|
begin
|
|
p^.location.register:=reg32toreg16(getregister32);
|
|
emit_reg_reg(A_MOV,S_W,p^.left^.location.register,
|
|
p^.location.register);
|
|
end
|
|
else
|
|
begin
|
|
del_reference(p^.left^.location.reference);
|
|
p^.location.register:=reg32toreg16(getregister32);
|
|
emit_ref_reg(A_MOV,S_W,newreference(p^.left^.location.reference),
|
|
p^.location.register);
|
|
end;
|
|
end
|
|
else p^.location.register:=p^.left^.location.register;
|
|
if p^.inlinenumber=in_hi_word then
|
|
emit_const_reg(A_SHR,S_W,8,p^.location.register);
|
|
p^.location.register:=reg16toreg8(p^.location.register);
|
|
end;
|
|
in_sizeof_x,
|
|
in_typeof_x :
|
|
begin
|
|
{ for both cases load vmt }
|
|
if p^.left^.treetype=typen then
|
|
begin
|
|
p^.location.register:=getregister32;
|
|
emit_sym_ofs_reg(A_MOV,
|
|
S_L,newasmsymbol(pobjectdef(p^.left^.resulttype)^.vmt_mangledname),0,
|
|
p^.location.register);
|
|
end
|
|
else
|
|
begin
|
|
secondpass(p^.left);
|
|
del_reference(p^.left^.location.reference);
|
|
p^.location.loc:=LOC_REGISTER;
|
|
p^.location.register:=getregister32;
|
|
{ load VMT pointer }
|
|
inc(p^.left^.location.reference.offset,
|
|
pobjectdef(p^.left^.resulttype)^.vmt_offset);
|
|
emit_ref_reg(A_MOV,S_L,
|
|
newreference(p^.left^.location.reference),
|
|
p^.location.register);
|
|
end;
|
|
{ in sizeof load size }
|
|
if p^.inlinenumber=in_sizeof_x then
|
|
begin
|
|
new(r);
|
|
reset_reference(r^);
|
|
r^.base:=p^.location.register;
|
|
emit_ref_reg(A_MOV,S_L,r,
|
|
p^.location.register);
|
|
end;
|
|
end;
|
|
in_lo_long,
|
|
in_hi_long :
|
|
begin
|
|
secondpass(p^.left);
|
|
p^.location.loc:=LOC_REGISTER;
|
|
if p^.left^.location.loc<>LOC_REGISTER then
|
|
begin
|
|
if p^.left^.location.loc=LOC_CREGISTER then
|
|
begin
|
|
p^.location.register:=getregister32;
|
|
emit_reg_reg(A_MOV,S_L,p^.left^.location.register,
|
|
p^.location.register);
|
|
end
|
|
else
|
|
begin
|
|
del_reference(p^.left^.location.reference);
|
|
p^.location.register:=getregister32;
|
|
emit_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
|
|
p^.location.register);
|
|
end;
|
|
end
|
|
else p^.location.register:=p^.left^.location.register;
|
|
if p^.inlinenumber=in_hi_long then
|
|
emit_const_reg(A_SHR,S_L,16,p^.location.register);
|
|
p^.location.register:=reg32toreg16(p^.location.register);
|
|
end;
|
|
in_lo_qword,
|
|
in_hi_qword:
|
|
begin
|
|
secondpass(p^.left);
|
|
p^.location.loc:=LOC_REGISTER;
|
|
case p^.left^.location.loc of
|
|
LOC_CREGISTER:
|
|
begin
|
|
p^.location.register:=getregister32;
|
|
if p^.inlinenumber=in_hi_qword then
|
|
emit_reg_reg(A_MOV,S_L,p^.left^.location.registerhigh,
|
|
p^.location.register)
|
|
else
|
|
emit_reg_reg(A_MOV,S_L,p^.left^.location.registerlow,
|
|
p^.location.register)
|
|
end;
|
|
LOC_MEM,LOC_REFERENCE:
|
|
begin
|
|
del_reference(p^.left^.location.reference);
|
|
p^.location.register:=getregister32;
|
|
r:=newreference(p^.left^.location.reference);
|
|
if p^.inlinenumber=in_hi_qword then
|
|
inc(r^.offset,4);
|
|
emit_ref_reg(A_MOV,S_L,
|
|
r,p^.location.register);
|
|
end;
|
|
LOC_REGISTER:
|
|
begin
|
|
if p^.inlinenumber=in_hi_qword then
|
|
begin
|
|
p^.location.register:=p^.left^.location.registerhigh;
|
|
ungetregister32(p^.left^.location.registerlow);
|
|
end
|
|
else
|
|
begin
|
|
p^.location.register:=p^.left^.location.registerlow;
|
|
ungetregister32(p^.left^.location.registerhigh);
|
|
end;
|
|
end;
|
|
end;
|
|
end;
|
|
in_length_string :
|
|
begin
|
|
secondpass(p^.left);
|
|
set_location(p^.location,p^.left^.location);
|
|
{ length in ansi strings is at offset -8 }
|
|
if is_ansistring(p^.left^.resulttype) then
|
|
dec(p^.location.reference.offset,8)
|
|
{ char is always 1, so make it a constant value }
|
|
else if is_char(p^.left^.resulttype) then
|
|
begin
|
|
clear_location(p^.location);
|
|
p^.location.loc:=LOC_MEM;
|
|
p^.location.reference.is_immediate:=true;
|
|
p^.location.reference.offset:=1;
|
|
end;
|
|
end;
|
|
in_pred_x,
|
|
in_succ_x:
|
|
begin
|
|
secondpass(p^.left);
|
|
if not (cs_check_overflow in aktlocalswitches) then
|
|
if p^.inlinenumber=in_pred_x then
|
|
asmop:=A_DEC
|
|
else
|
|
asmop:=A_INC
|
|
else
|
|
if p^.inlinenumber=in_pred_x then
|
|
asmop:=A_SUB
|
|
else
|
|
asmop:=A_ADD;
|
|
case p^.resulttype^.size of
|
|
8 : opsize:=S_L;
|
|
4 : opsize:=S_L;
|
|
2 : opsize:=S_W;
|
|
1 : opsize:=S_B;
|
|
else
|
|
internalerror(10080);
|
|
end;
|
|
p^.location.loc:=LOC_REGISTER;
|
|
if p^.resulttype^.size=8 then
|
|
begin
|
|
if p^.left^.location.loc<>LOC_REGISTER then
|
|
begin
|
|
if p^.left^.location.loc=LOC_CREGISTER then
|
|
begin
|
|
p^.location.registerlow:=getregister32;
|
|
p^.location.registerhigh:=getregister32;
|
|
emit_reg_reg(A_MOV,opsize,p^.left^.location.registerlow,
|
|
p^.location.registerlow);
|
|
emit_reg_reg(A_MOV,opsize,p^.left^.location.registerhigh,
|
|
p^.location.registerhigh);
|
|
end
|
|
else
|
|
begin
|
|
del_reference(p^.left^.location.reference);
|
|
p^.location.registerlow:=getregister32;
|
|
p^.location.registerhigh:=getregister32;
|
|
emit_ref_reg(A_MOV,opsize,newreference(p^.left^.location.reference),
|
|
p^.location.registerlow);
|
|
r:=newreference(p^.left^.location.reference);
|
|
inc(r^.offset,4);
|
|
emit_ref_reg(A_MOV,opsize,r,
|
|
p^.location.registerhigh);
|
|
end;
|
|
end
|
|
else
|
|
begin
|
|
p^.location.registerhigh:=p^.left^.location.registerhigh;
|
|
p^.location.registerlow:=p^.left^.location.registerlow;
|
|
end;
|
|
if p^.inlinenumber=in_succ_x then
|
|
begin
|
|
emit_const_reg(A_ADD,opsize,1,
|
|
p^.location.registerlow);
|
|
emit_const_reg(A_ADC,opsize,0,
|
|
p^.location.registerhigh);
|
|
end
|
|
else
|
|
begin
|
|
emit_const_reg(A_SUB,opsize,1,
|
|
p^.location.registerlow);
|
|
emit_const_reg(A_SBB,opsize,0,
|
|
p^.location.registerhigh);
|
|
end;
|
|
end
|
|
else
|
|
begin
|
|
if p^.left^.location.loc<>LOC_REGISTER then
|
|
begin
|
|
{ first, we've to release the source location ... }
|
|
if p^.left^.location.loc in [LOC_MEM,LOC_REFERENCE] then
|
|
del_reference(p^.left^.location.reference);
|
|
|
|
p^.location.register:=getregister32;
|
|
if (p^.resulttype^.size=2) then
|
|
p^.location.register:=reg32toreg16(p^.location.register);
|
|
if (p^.resulttype^.size=1) then
|
|
p^.location.register:=reg32toreg8(p^.location.register);
|
|
if p^.left^.location.loc=LOC_CREGISTER then
|
|
emit_reg_reg(A_MOV,opsize,p^.left^.location.register,
|
|
p^.location.register)
|
|
else
|
|
if p^.left^.location.loc=LOC_FLAGS then
|
|
emit_flag2reg(p^.left^.location.resflags,p^.location.register)
|
|
else
|
|
emit_ref_reg(A_MOV,opsize,newreference(p^.left^.location.reference),
|
|
p^.location.register);
|
|
end
|
|
else p^.location.register:=p^.left^.location.register;
|
|
if not (cs_check_overflow in aktlocalswitches) then
|
|
emit_reg(asmop,opsize,
|
|
p^.location.register)
|
|
else
|
|
emit_const_reg(asmop,opsize,1,
|
|
p^.location.register);
|
|
end;
|
|
emitoverflowcheck(p);
|
|
emitrangecheck(p,p^.resulttype);
|
|
end;
|
|
in_dec_x,
|
|
in_inc_x :
|
|
begin
|
|
{ set defaults }
|
|
addvalue:=1;
|
|
addconstant:=true;
|
|
{ load first parameter, must be a reference }
|
|
secondpass(p^.left^.left);
|
|
case p^.left^.left^.resulttype^.deftype of
|
|
orddef,
|
|
enumdef : begin
|
|
case p^.left^.left^.resulttype^.size of
|
|
1 : opsize:=S_B;
|
|
2 : opsize:=S_W;
|
|
4 : opsize:=S_L;
|
|
8 : opsize:=S_L;
|
|
end;
|
|
end;
|
|
pointerdef : begin
|
|
opsize:=S_L;
|
|
if porddef(ppointerdef(p^.left^.left^.resulttype)^.pointertype.def)=voiddef then
|
|
addvalue:=1
|
|
else
|
|
addvalue:=ppointerdef(p^.left^.left^.resulttype)^.pointertype.def^.size;
|
|
end;
|
|
else
|
|
internalerror(10081);
|
|
end;
|
|
{ second argument specified?, must be a s32bit in register }
|
|
if assigned(p^.left^.right) then
|
|
begin
|
|
ispushed:=maybe_push(p^.left^.right^.left^.registers32,p^.left^.left,false);
|
|
secondpass(p^.left^.right^.left);
|
|
if ispushed then
|
|
restore(p^.left^.left,false);
|
|
{ when constant, just multiply the addvalue }
|
|
if is_constintnode(p^.left^.right^.left) then
|
|
addvalue:=addvalue*get_ordinal_value(p^.left^.right^.left)
|
|
else
|
|
begin
|
|
case p^.left^.right^.left^.location.loc of
|
|
LOC_REGISTER,
|
|
LOC_CREGISTER : hregister:=p^.left^.right^.left^.location.register;
|
|
LOC_MEM,
|
|
LOC_REFERENCE : begin
|
|
del_reference(p^.left^.right^.left^.location.reference);
|
|
hregister:=getregister32;
|
|
emit_ref_reg(A_MOV,S_L,
|
|
newreference(p^.left^.right^.left^.location.reference),hregister);
|
|
end;
|
|
else
|
|
internalerror(10082);
|
|
end;
|
|
{ insert multiply with addvalue if its >1 }
|
|
if addvalue>1 then
|
|
emit_const_reg(A_IMUL,opsize,
|
|
addvalue,hregister);
|
|
addconstant:=false;
|
|
end;
|
|
end;
|
|
{ write the add instruction }
|
|
if addconstant then
|
|
begin
|
|
if (addvalue=1) and not(cs_check_overflow in aktlocalswitches) then
|
|
begin
|
|
if p^.left^.left^.location.loc=LOC_CREGISTER then
|
|
emit_reg(incdecop[p^.inlinenumber],opsize,
|
|
p^.left^.left^.location.register)
|
|
else
|
|
emit_ref(incdecop[p^.inlinenumber],opsize,
|
|
newreference(p^.left^.left^.location.reference))
|
|
end
|
|
else
|
|
begin
|
|
if p^.left^.left^.location.loc=LOC_CREGISTER then
|
|
emit_const_reg(addsubop[p^.inlinenumber],opsize,
|
|
addvalue,p^.left^.left^.location.register)
|
|
else
|
|
emit_const_ref(addsubop[p^.inlinenumber],opsize,
|
|
addvalue,newreference(p^.left^.left^.location.reference));
|
|
end
|
|
end
|
|
else
|
|
begin
|
|
{ BUG HERE : detected with nasm :
|
|
hregister is allways 32 bit
|
|
it should be converted to 16 or 8 bit depending on op_size PM }
|
|
{ still not perfect :
|
|
if hregister is already a 16 bit reg ?? PM }
|
|
{ makeregXX is the solution (FK) }
|
|
case opsize of
|
|
S_B : hregister:=makereg8(hregister);
|
|
S_W : hregister:=makereg16(hregister);
|
|
end;
|
|
if p^.left^.left^.location.loc=LOC_CREGISTER then
|
|
emit_reg_reg(addsubop[p^.inlinenumber],opsize,
|
|
hregister,p^.left^.left^.location.register)
|
|
else
|
|
emit_reg_ref(addsubop[p^.inlinenumber],opsize,
|
|
hregister,newreference(p^.left^.left^.location.reference));
|
|
case opsize of
|
|
S_B : hregister:=reg8toreg32(hregister);
|
|
S_W : hregister:=reg16toreg32(hregister);
|
|
end;
|
|
ungetregister32(hregister);
|
|
end;
|
|
emitoverflowcheck(p^.left^.left);
|
|
emitrangecheck(p^.left^.left,p^.left^.left^.resulttype);
|
|
end;
|
|
in_typeinfo_x:
|
|
begin
|
|
p^.left^.left^.typenodetype^.generate_rtti;
|
|
p^.location.register:=getregister32;
|
|
new(r);
|
|
reset_reference(r^);
|
|
r^.symbol:=p^.left^.left^.typenodetype^.rtti_label;
|
|
emit_ref_reg(A_MOV,S_L,r,p^.location.register);
|
|
end;
|
|
in_assigned_x :
|
|
begin
|
|
secondpass(p^.left^.left);
|
|
p^.location.loc:=LOC_FLAGS;
|
|
if (p^.left^.left^.location.loc in [LOC_REGISTER,LOC_CREGISTER]) then
|
|
begin
|
|
emit_reg_reg(A_OR,S_L,
|
|
p^.left^.left^.location.register,
|
|
p^.left^.left^.location.register);
|
|
ungetregister32(p^.left^.left^.location.register);
|
|
end
|
|
else
|
|
begin
|
|
emit_const_ref(A_CMP,S_L,0,
|
|
newreference(p^.left^.left^.location.reference));
|
|
del_reference(p^.left^.left^.location.reference);
|
|
end;
|
|
p^.location.resflags:=F_NE;
|
|
end;
|
|
in_reset_typedfile,in_rewrite_typedfile :
|
|
begin
|
|
pushusedregisters(pushed,$ff);
|
|
emit_const(A_PUSH,S_L,pfiledef(p^.left^.resulttype)^.typedfiletype.def^.size);
|
|
secondpass(p^.left);
|
|
emitpushreferenceaddr(p^.left^.location.reference);
|
|
if p^.inlinenumber=in_reset_typedfile then
|
|
emitcall('FPC_RESET_TYPED')
|
|
else
|
|
emitcall('FPC_REWRITE_TYPED');
|
|
popusedregisters(pushed);
|
|
end;
|
|
in_write_x :
|
|
handlereadwrite(false,false);
|
|
in_writeln_x :
|
|
handlereadwrite(false,true);
|
|
in_read_x :
|
|
handlereadwrite(true,false);
|
|
in_readln_x :
|
|
handlereadwrite(true,true);
|
|
in_str_x_string :
|
|
begin
|
|
handle_str;
|
|
maybe_loadesi;
|
|
end;
|
|
in_val_x :
|
|
Begin
|
|
handle_val;
|
|
End;
|
|
in_include_x_y,
|
|
in_exclude_x_y:
|
|
begin
|
|
secondpass(p^.left^.left);
|
|
if p^.left^.right^.left^.treetype=ordconstn then
|
|
begin
|
|
{ calculate bit position }
|
|
l:=1 shl (p^.left^.right^.left^.value mod 32);
|
|
|
|
{ determine operator }
|
|
if p^.inlinenumber=in_include_x_y then
|
|
asmop:=A_OR
|
|
else
|
|
begin
|
|
asmop:=A_AND;
|
|
l:=not(l);
|
|
end;
|
|
if (p^.left^.left^.location.loc=LOC_REFERENCE) then
|
|
begin
|
|
inc(p^.left^.left^.location.reference.offset,(p^.left^.right^.left^.value div 32)*4);
|
|
emit_const_ref(asmop,S_L,
|
|
l,newreference(p^.left^.left^.location.reference));
|
|
del_reference(p^.left^.left^.location.reference);
|
|
end
|
|
else
|
|
{ LOC_CREGISTER }
|
|
emit_const_reg(asmop,S_L,
|
|
l,p^.left^.left^.location.register);
|
|
end
|
|
else
|
|
begin
|
|
{ generate code for the element to set }
|
|
ispushed:=maybe_push(p^.left^.right^.left^.registers32,p^.left^.left,false);
|
|
secondpass(p^.left^.right^.left);
|
|
if ispushed then
|
|
restore(p^.left^.left,false);
|
|
{ determine asm operator }
|
|
if p^.inlinenumber=in_include_x_y then
|
|
asmop:=A_BTS
|
|
else
|
|
asmop:=A_BTR;
|
|
if psetdef(p^.left^.resulttype)^.settype=smallset then
|
|
begin
|
|
if p^.left^.right^.left^.location.loc in [LOC_CREGISTER,LOC_REGISTER] then
|
|
{ we don't need a mod 32 because this is done automatically }
|
|
{ by the bts instruction. For proper checking we would }
|
|
{ need a cmp and jmp, but this should be done by the }
|
|
{ type cast code which does range checking if necessary (FK) }
|
|
hregister:=makereg32(p^.left^.right^.left^.location.register)
|
|
else
|
|
begin
|
|
{$ifndef noAllocEdi}
|
|
getexplicitregister32(R_EDI);
|
|
{$endif noAllocEdi}
|
|
hregister:=R_EDI;
|
|
opsize:=def2def_opsize(p^.left^.right^.left^.resulttype,u32bitdef);
|
|
if opsize in [S_B,S_W,S_L] then
|
|
op:=A_MOV
|
|
else
|
|
op:=A_MOVZX;
|
|
emit_ref_reg(op,opsize,
|
|
newreference(p^.left^.right^.left^.location.reference),R_EDI);
|
|
end;
|
|
if (p^.left^.left^.location.loc=LOC_REFERENCE) then
|
|
emit_reg_ref(asmop,S_L,hregister,
|
|
newreference(p^.left^.left^.location.reference))
|
|
else
|
|
emit_reg_reg(asmop,S_L,hregister,
|
|
p^.left^.left^.location.register);
|
|
{$ifndef noAllocEdi}
|
|
if hregister = R_EDI then
|
|
ungetregister32(R_EDI);
|
|
{$endif noAllocEdi}
|
|
end
|
|
else
|
|
begin
|
|
pushsetelement(p^.left^.right^.left);
|
|
{ normset is allways a ref }
|
|
emitpushreferenceaddr(p^.left^.left^.location.reference);
|
|
if p^.inlinenumber=in_include_x_y then
|
|
emitcall('FPC_SET_SET_BYTE')
|
|
else
|
|
emitcall('FPC_SET_UNSET_BYTE');
|
|
{CGMessage(cg_e_include_not_implemented);}
|
|
end;
|
|
end;
|
|
end;
|
|
in_pi:
|
|
begin
|
|
emit_none(A_FLDPI,S_NO);
|
|
inc(fpuvaroffset);
|
|
end;
|
|
in_sin_extended,
|
|
in_arctan_extended,
|
|
in_abs_extended,
|
|
in_sqr_extended,
|
|
in_sqrt_extended,
|
|
in_ln_extended,
|
|
in_cos_extended:
|
|
begin
|
|
secondpass(p^.left);
|
|
case p^.left^.location.loc of
|
|
LOC_FPU:
|
|
;
|
|
LOC_CFPUREGISTER:
|
|
begin
|
|
emit_reg(A_FLD,S_NO,
|
|
correct_fpuregister(p^.left^.location.register,fpuvaroffset));
|
|
inc(fpuvaroffset);
|
|
end;
|
|
LOC_REFERENCE,LOC_MEM:
|
|
begin
|
|
floatload(pfloatdef(p^.left^.resulttype)^.typ,p^.left^.location.reference);
|
|
del_reference(p^.left^.location.reference);
|
|
end
|
|
else
|
|
internalerror(309991);
|
|
end;
|
|
case p^.inlinenumber of
|
|
in_sin_extended,
|
|
in_cos_extended:
|
|
begin
|
|
if p^.inlinenumber=in_sin_extended then
|
|
emit_none(A_FSIN,S_NO)
|
|
else
|
|
emit_none(A_FCOS,S_NO);
|
|
{
|
|
getlabel(l1);
|
|
emit_reg(A_FNSTSW,S_NO,R_AX);
|
|
emit_none(A_SAHF,S_NO);
|
|
emitjmp(C_NP,l1);
|
|
emit_reg(A_FSTP,S_NO,R_ST0);
|
|
emit_none(A_FLDZ,S_NO);
|
|
emitlab(l1);
|
|
}
|
|
end;
|
|
in_arctan_extended:
|
|
begin
|
|
emit_none(A_FLD1,S_NO);
|
|
emit_none(A_FPATAN,S_NO);
|
|
end;
|
|
in_abs_extended:
|
|
emit_none(A_FABS,S_NO);
|
|
in_sqr_extended:
|
|
begin
|
|
(* emit_reg(A_FLD,S_NO,R_ST0);
|
|
{ emit_none(A_FMULP,S_NO); nasm does not accept this PM }
|
|
emit_reg_reg(A_FMULP,S_NO,R_ST0,R_ST1);
|
|
can be shorten to *)
|
|
emit_reg_reg(A_FMUL,S_NO,R_ST0,R_ST0);
|
|
end;
|
|
in_sqrt_extended:
|
|
emit_none(A_FSQRT,S_NO);
|
|
in_ln_extended:
|
|
begin
|
|
emit_none(A_FLDLN2,S_NO);
|
|
emit_none(A_FXCH,S_NO);
|
|
emit_none(A_FYL2X,S_NO);
|
|
end;
|
|
end;
|
|
end;
|
|
{$ifdef SUPPORT_MMX}
|
|
in_mmx_pcmpeqb..in_mmx_pcmpgtw:
|
|
begin
|
|
if p^.left^.location.loc=LOC_REGISTER then
|
|
begin
|
|
{!!!!!!!}
|
|
end
|
|
else if p^.left^.left^.location.loc=LOC_REGISTER then
|
|
begin
|
|
{!!!!!!!}
|
|
end
|
|
else
|
|
begin
|
|
{!!!!!!!}
|
|
end;
|
|
end;
|
|
{$endif SUPPORT_MMX}
|
|
else internalerror(9);
|
|
end;
|
|
{ reset pushedparasize }
|
|
pushedparasize:=oldpushedparasize;
|
|
end;
|
|
|
|
end.
|
|
{
|
|
$Log$
|
|
Revision 1.6 2000-08-16 13:06:06 florian
|
|
+ support of 64 bit integer constants
|
|
|
|
Revision 1.5 2000/08/04 22:00:50 peter
|
|
* merges from fixes
|
|
|
|
Revision 1.4 2000/07/29 18:27:53 sg
|
|
* Applied patch by Markus Kaemmerer which removes a tiny memory leak
|
|
for the generation of code for in_[sin|cos]_extended code
|
|
(a label has been created but never used afterwards)
|
|
|
|
Revision 1.3 2000/07/21 15:14:02 jonas
|
|
+ added is_addr field for labels, if they are only used for getting the address
|
|
(e.g. for io checks) and corresponding getaddrlabel() procedure
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Revision 1.2 2000/07/13 11:32:34 michael
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+ removed logs
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} |