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It appears that a function which is present in interface part and aliased to another function using "external name 'foo'" directive cannot be placed immediately before the function to which it is aliased. The body of first function consists of a single jump which fails to be correctly relocated. git-svn-id: trunk@20053 -
336 lines
11 KiB
PHP
336 lines
11 KiB
PHP
{
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This file is part of the Free Pascal run time library.
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Copyright (c) 2000 by Florian Klaempfl
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member of the Free Pascal development team.
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This file implements the helper routines for dyn. Arrays in FPC
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See the file COPYING.FPC, included in this distribution,
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for details about the copyright.
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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.
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**********************************************************************
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}
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type
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{ don't add new fields, the size is used }
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{ to calculate memory requirements }
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pdynarray = ^tdynarray;
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tdynarray = packed record
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refcount : ptrint;
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high : tdynarrayindex;
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end;
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procedure fpc_dynarray_rangecheck(p : pointer;i : tdynarrayindex);[Public,Alias:'FPC_DYNARRAY_RANGECHECK']; compilerproc;
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begin
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if not(assigned(p)) or (i<0) or (i>pdynarray(p-sizeof(tdynarray))^.high) then
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HandleErrorFrame(201,get_frame);
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end;
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function fpc_dynarray_length(p : pointer) : tdynarrayindex;[Public,Alias:'FPC_DYNARRAY_LENGTH']; compilerproc;
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begin
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if assigned(p) then
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fpc_dynarray_length:=pdynarray(p-sizeof(tdynarray))^.high+1
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else
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fpc_dynarray_length:=0;
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end;
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function fpc_dynarray_high(p : pointer) : tdynarrayindex;[Public,Alias:'FPC_DYNARRAY_HIGH']; compilerproc;
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begin
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if assigned(p) then
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fpc_dynarray_high:=pdynarray(p-sizeof(tdynarray))^.high
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else
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fpc_dynarray_high:=-1;
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end;
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{ releases and finalizes the data of a dyn. array and sets p to nil }
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procedure fpc_dynarray_clear_internal(p : pointer;ti : pointer);
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var
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eletype : pdynarraytypeinfo;
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begin
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if p=nil then
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exit;
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{ skip kind and name }
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inc(pointer(ti),ord(pdynarraytypeinfo(ti)^.namelen)+2);
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ti:=aligntoptr(ti);
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eletype:=pdynarraytypeinfo(pointer(pdynarraytypeinfo(pointer(ti)+sizeof(sizeint)))^);
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{ finalize all data }
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int_finalizearray(p+sizeof(tdynarray),eletype,pdynarray(p)^.high+1);
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{ release the data }
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freemem(p);
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end;
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procedure fpc_dynarray_clear(var p : pointer;ti : pointer); [Public,Alias:'FPC_DYNARRAY_CLEAR']; compilerproc;
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var
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realp : pdynarray;
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begin
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if (P=Nil) then
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exit;
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realp:=pdynarray(p-sizeof(tdynarray));
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if declocked(realp^.refcount) then
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fpc_dynarray_clear_internal(p-sizeof(tdynarray),ti);
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p:=nil;
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end;
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{ alias for internal use }
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Procedure fpc_dynarray_clear (var p : pointer;ti : pointer);[external name 'FPC_DYNARRAY_CLEAR'];
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procedure fpc_dynarray_decr_ref(var p : pointer;ti : pointer); [Public,Alias:'FPC_DYNARRAY_DECR_REF']; compilerproc;
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var
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realp : pdynarray;
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begin
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if p=nil then
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exit;
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realp:=pdynarray(p-sizeof(tdynarray));
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if realp^.refcount=0 then
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HandleErrorFrame(204,get_frame);
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{ decr. ref. count }
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{ should we remove the array? }
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if declocked(realp^.refcount) then
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begin
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fpc_dynarray_clear_internal(realp,pdynarraytypeinfo(ti));
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p := nil;
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end;
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end;
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{ provide local access to dynarr_decr_ref for dynarr_setlength }
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procedure fpc_dynarray_decr_ref(var p : pointer;ti : pointer); [external name 'FPC_DYNARRAY_DECR_REF'];
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procedure fpc_dynarray_incr_ref(p : pointer);[Public,Alias:'FPC_DYNARRAY_INCR_REF']; compilerproc;
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var
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realp : pdynarray;
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begin
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if p=nil then
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exit;
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realp:=pdynarray(p-sizeof(tdynarray));
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if realp^.refcount=0 then
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HandleErrorFrame(204,get_frame);
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inclocked(realp^.refcount);
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end;
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{ provide local access to dynarr_decr_ref for dynarr_setlength }
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procedure fpc_dynarray_incr_ref(p : pointer); [external name 'FPC_DYNARRAY_INCR_REF'];
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{ provide local access to dynarr_setlength }
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procedure int_dynarray_setlength(var p : pointer;pti : pointer;
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dimcount : sizeint;dims : pdynarrayindex);[external name 'FPC_DYNARR_SETLENGTH'];
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procedure fpc_dynarray_setlength(var p : pointer;pti : pointer;
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dimcount : sizeint;dims : pdynarrayindex);[Public,Alias:'FPC_DYNARR_SETLENGTH']; compilerproc;
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var
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i : tdynarrayindex;
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movelen,
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size : sizeint;
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{ contains the "fixed" pointers where the refcount }
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{ and high are at positive offsets }
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realp,newp : pdynarray;
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ti : pdynarraytypeinfo;
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updatep: boolean;
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elesize : sizeint;
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eletype : pdynarraytypeinfo;
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begin
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ti:=pdynarraytypeinfo(pti);
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{ skip kind and name }
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inc(pointer(ti),ord(pdynarraytypeinfo(ti)^.namelen)+2);
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ti:=aligntoptr(ti);
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elesize:=psizeint(ti)^;
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eletype:=pdynarraytypeinfo(pointer(pdynarraytypeinfo(pointer(ti)+sizeof(sizeint)))^);
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{ determine new memory size }
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size:=elesize*dims[0]+sizeof(tdynarray);
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updatep := false;
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{ not assigned yet? }
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if not(assigned(p)) then
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begin
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if dims[0]<0 then
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HandleErrorFrame(201,get_frame);
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{ do we have to allocate memory? }
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if dims[0] = 0 then
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exit;
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getmem(newp,size);
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fillchar(newp^,size,0);
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updatep := true;
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end
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else
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begin
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realp:=pdynarray(p-sizeof(tdynarray));
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newp := realp;
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{ if the new dimension is 0, we've to release all data }
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if dims[0]<=0 then
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begin
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if dims[0]<0 then
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HandleErrorFrame(201,get_frame);
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if declocked(realp^.refcount) then
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fpc_dynarray_clear_internal(realp,pdynarraytypeinfo(pti));
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p:=nil;
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exit;
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end;
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if realp^.refcount<>1 then
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begin
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updatep := true;
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{ make an unique copy }
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getmem(newp,size);
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fillchar(newp^,size,0);
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if realp^.high < dims[0] then
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movelen := realp^.high+1
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else
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movelen := dims[0];
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move(p^,(pointer(newp)+sizeof(tdynarray))^,elesize*movelen);
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{ increment ref. count of members }
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for i:= 0 to movelen-1 do
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int_addref(pointer(newp)+sizeof(tdynarray)+elesize*i,eletype);
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{ a declock(ref. count) isn't enough here }
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{ it could be that the in MT environments }
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{ in the mean time the refcount was }
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{ decremented }
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{ it is, because it doesn't really matter }
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{ if the array is now removed }
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{ fpc_dynarray_decr_ref(p,ti); }
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if declocked(realp^.refcount) then
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fpc_dynarray_clear_internal(realp,pdynarraytypeinfo(ti));
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end
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else if dims[0]<>realp^.high+1 then
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begin
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{ range checking is quite difficult ... }
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{ if size overflows then it is less than }
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{ the values it was calculated from }
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if (size<sizeof(tdynarray)) or
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((elesize>0) and (size<elesize)) then
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HandleErrorFrame(201,get_frame);
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{ resize? }
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{ here, realp^.refcount has to be one, otherwise the previous }
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{ if-statement would have been taken. Or is this also for MT }
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{ code? (JM) }
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if realp^.refcount=1 then
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begin
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{ shrink the array? }
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if dims[0]<realp^.high+1 then
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begin
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int_finalizearray(pointer(realp)+sizeof(tdynarray)+
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elesize*dims[0],
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eletype,realp^.high-dims[0]+1);
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reallocmem(realp,size);
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end
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else if dims[0]>realp^.high+1 then
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begin
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reallocmem(realp,size);
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fillchar((pointer(realp)+sizeof(tdynarray)+elesize*(realp^.high+1))^,
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(dims[0]-realp^.high-1)*elesize,0);
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end;
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newp := realp;
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updatep := true;
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end;
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end;
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end;
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{ handle nested arrays }
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if dimcount>1 then
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begin
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for i:=0 to dims[0]-1 do
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int_dynarray_setlength(pointer((pointer(newp)+sizeof(tdynarray)+i*elesize)^),
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eletype,dimcount-1,@dims[1]);
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end;
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if updatep then
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begin
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p:=pointer(newp)+sizeof(tdynarray);
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newp^.refcount:=1;
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newp^.high:=dims[0]-1;
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end;
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end;
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{ provide local access to dynarr_copy }
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function int_dynarray_copy(psrc : pointer;ti : pointer;
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lowidx,count:tdynarrayindex) : pointer;[external name 'FPC_DYNARR_COPY'];
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function fpc_dynarray_copy(psrc : pointer;ti : pointer;
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lowidx,count:tdynarrayindex) : pointer;[Public,Alias:'FPC_DYNARR_COPY'];compilerproc;
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var
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realpdest,
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realpsrc : pdynarray;
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cnt,
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i,size : longint;
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highidx : tdynarrayindex;
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elesize : sizeint;
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eletype : pdynarraytypeinfo;
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pdest : pointer;
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begin
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highidx:=lowidx+count-1;
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pdest:=nil;
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result:=pdest;
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if psrc=nil then
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exit;
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realpsrc:=pdynarray(psrc-sizeof(tdynarray));
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{ skip kind and name }
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inc(pointer(ti),ord(pdynarraytypeinfo(ti)^.namelen)+2);
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ti:=aligntoptr(ti);
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elesize:=psizeint(ti)^;
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eletype:=pdynarraytypeinfo(pointer(pdynarraytypeinfo(pointer(ti)+sizeof(sizeint)))^);
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{ -1, -1 (highidx=lowidx-1-1=-3) is used to copy the whole array like a:=copy(b);, so
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update the lowidx and highidx with the values from psrc }
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if (lowidx=-1) and (highidx=-3) then
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begin
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lowidx:=0;
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highidx:=realpsrc^.high;
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end;
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{ get number of elements and check for invalid values }
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if (lowidx<0) or (highidx<0) or (lowidx > realpsrc^.high) then
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HandleErrorFrame(201,get_frame);
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cnt:=highidx-lowidx+1;
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if (cnt > realpsrc^.high - lowidx + 1) then
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cnt := realpsrc^.high - lowidx + 1;
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{ create new array }
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size:=elesize*cnt;
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getmem(realpdest,size+sizeof(tdynarray));
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pdest:=pointer(realpdest)+sizeof(tdynarray);
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{ copy data }
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move(pointer(psrc+elesize*lowidx)^,pdest^,size);
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{ fill new refcount }
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realpdest^.refcount:=1;
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realpdest^.high:=cnt-1;
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{ increment ref. count of members? }
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if PByte(eletype)^ in tkManagedTypes then
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for i:= 0 to cnt-1 do
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int_addref(pointer(pdest+elesize*i),eletype);
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result:=pdest;
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end;
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procedure DynArraySetLength(var a: Pointer; typeInfo: Pointer; dimCnt: SizeInt; lengthVec: PSizeInt);
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external name 'FPC_DYNARR_SETLENGTH';
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