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and 4080. The compatibility differences are: a) writing a chararray which is zero-based but not zero- terminated does not cause a buffer overflow b) non-zero-based chararrays can also be read The difference was that previously, all chararrays were treated as pchars. In TP/Delphi (and now also in FPC), this is only done for zero-based chararrays. For non-zero-based ones, the entire contents of the array should always be used (including #0's). The default parameters in the system unit for the chararray helpers are to avoid having to use a define for bootstrapping. git-svn-id: trunk@2152 -
798 lines
20 KiB
PHP
798 lines
20 KiB
PHP
{
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This file is part of the Free Pascal run time library.
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Copyright (c) 1999-2000 by Michael Van Canneyt,
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member of the Free Pascal development team.
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This file implements AnsiStrings for 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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{ This will release some functions for special shortstring support }
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{ define EXTRAANSISHORT}
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{
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This file contains the implementation of the AnsiString type,
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and all things that are needed for it.
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AnsiString is defined as a 'silent' pchar :
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a pchar that points to :
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@-8 : SizeInt for reference count;
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@-4 : SizeInt for size;
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@ : String + Terminating #0;
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Pchar(Ansistring) is a valid typecast.
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So AS[i] is converted to the address @AS+i-1.
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Constants should be assigned a reference count of -1
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Meaning that they can't be disposed of.
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}
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Type
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PAnsiRec = ^TAnsiRec;
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TAnsiRec = Packed Record
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Ref,
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Len : SizeInt;
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First : Char;
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end;
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Const
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AnsiRecLen = SizeOf(TAnsiRec);
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FirstOff = SizeOf(TAnsiRec)-1;
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{****************************************************************************
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Internal functions, not in interface.
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****************************************************************************}
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Function NewAnsiString(Len : SizeInt) : Pointer;
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{
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Allocate a new AnsiString on the heap.
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initialize it to zero length and reference count 1.
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}
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Var
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P : Pointer;
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begin
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{ request a multiple of 16 because the heap manager alloctes anyways chunks of 16 bytes }
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GetMem(P,Len+AnsiRecLen);
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If P<>Nil then
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begin
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PAnsiRec(P)^.Ref:=1; { Set reference count }
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PAnsiRec(P)^.Len:=0; { Initial length }
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PAnsiRec(P)^.First:=#0; { Terminating #0 }
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inc(p,firstoff); { Points to string now }
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end;
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NewAnsiString:=P;
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end;
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Procedure DisposeAnsiString(Var S : Pointer); {$IFNDEF VER2_0} Inline; {$ENDIF}
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{
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Deallocates a AnsiString From the heap.
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}
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begin
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If S=Nil then
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exit;
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Dec (S,FirstOff);
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FreeMem (S);
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S:=Nil;
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end;
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{$ifndef FPC_SYSTEM_HAS_ANSISTR_DECR_REF}
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Procedure fpc_ansistr_decr_ref (Var S : Pointer); [Public,Alias:'FPC_ANSISTR_DECR_REF']; compilerproc;
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{
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Decreases the ReferenceCount of a non constant ansistring;
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If the reference count is zero, deallocate the string;
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}
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Type
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pSizeInt = ^SizeInt;
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Var
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l : pSizeInt;
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Begin
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{ Zero string }
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If S=Nil then exit;
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{ check for constant strings ...}
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l:=@PAnsiRec(S-FirstOff)^.Ref;
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If l^<0 then exit;
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{ declocked does a MT safe dec and returns true, if the counter is 0 }
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If declocked(l^) then
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{ Ref count dropped to zero }
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DisposeAnsiString (S); { Remove...}
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end;
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{$endif FPC_SYSTEM_HAS_ANSISTR_DECR_REF}
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{ also define alias for internal use in the system unit }
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Procedure fpc_ansistr_decr_ref (Var S : Pointer); [external name 'FPC_ANSISTR_DECR_REF'];
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Procedure fpc_AnsiStr_Incr_Ref (S : Pointer); [Public,Alias:'FPC_ANSISTR_INCR_REF']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
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Begin
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If S=Nil then
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exit;
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{ Let's be paranoid : Constant string ??}
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If PAnsiRec(S-FirstOff)^.Ref<0 then exit;
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inclocked(PAnsiRec(S-FirstOff)^.Ref);
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end;
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{ also define alias which can be used inside the system unit }
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Procedure fpc_AnsiStr_Incr_Ref (S : Pointer); [external name 'FPC_ANSISTR_INCR_REF'];
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Procedure fpc_AnsiStr_Assign (Var S1 : Pointer;S2 : Pointer);[Public,Alias:'FPC_ANSISTR_ASSIGN']; compilerproc;
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{
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Assigns S2 to S1 (S1:=S2), taking in account reference counts.
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}
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begin
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If S2<>nil then
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If PAnsiRec(S2-FirstOff)^.Ref>0 then
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inclocked(PAnsiRec(S2-FirstOff)^.ref);
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{ Decrease the reference count on the old S1 }
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fpc_ansistr_decr_ref (S1);
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{ And finally, have S1 pointing to S2 (or its copy) }
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S1:=S2;
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end;
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{ alias for internal use }
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Procedure fpc_AnsiStr_Assign (Var S1 : Pointer;S2 : Pointer);[external name 'FPC_ANSISTR_ASSIGN'];
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function fpc_AnsiStr_Concat (const S1,S2 : AnsiString): ansistring; compilerproc;
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var
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S3: ansistring absolute result;
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{
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Concatenates 2 AnsiStrings : S1+S2.
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Result Goes to S3;
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}
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Var
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Size,Location : SizeInt;
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begin
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{ only assign if s1 or s2 is empty }
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if (S1='') then
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s3 := s2
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else if (S2='') then
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s3 := s1
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else
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begin
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Size:=length(S2);
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Location:=Length(S1);
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SetLength (S3,Size+Location);
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{ the cast to a pointer avoids the unique call }
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{ and we don't need an unique call }
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{ because of the SetLength S3 is unique }
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Move (S1[1],pointer(S3)^,Location);
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Move (S2[1],pointer(pointer(S3)+location)^,Size+1);
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end;
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end;
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{$ifdef EXTRAANSISHORT}
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Procedure AnsiStr_ShortStr_Concat (Var S1: AnsiString; Var S2 : ShortString);
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{
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Concatenates a Ansi with a short string; : S2 + S2
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}
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Var
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Size,Location : SizeInt;
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begin
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Size:=Length(S2);
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Location:=Length(S1);
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If Size=0 then
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exit;
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{ Setlength takes case of uniqueness
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and alllocated memory. We need to use length,
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to take into account possibility of S1=Nil }
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SetLength (S1,Size+Length(S1));
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Move (S2[1],Pointer(Pointer(S1)+Location)^,Size);
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PByte( Pointer(S1)+length(S1) )^:=0; { Terminating Zero }
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end;
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{$endif EXTRAANSISHORT}
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{ the following declaration has exactly the same effect as }
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{ procedure fpc_AnsiStr_To_ShortStr (Var S1 : ShortString;S2 : Pointer); }
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{ which is what the old helper was, so we don't need an extra implementation }
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{ of the old helper (JM) }
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function fpc_AnsiStr_To_ShortStr (high_of_res: SizeInt;const S2 : Ansistring): shortstring;[Public, alias: 'FPC_ANSISTR_TO_SHORTSTR']; compilerproc;
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{
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Converts a AnsiString to a ShortString;
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}
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Var
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Size : SizeInt;
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begin
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if S2='' then
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fpc_AnsiStr_To_ShortStr:=''
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else
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begin
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Size:=Length(S2);
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If Size>high_of_res then
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Size:=high_of_res;
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Move (S2[1],fpc_AnsiStr_To_ShortStr[1],Size);
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byte(fpc_AnsiStr_To_ShortStr[0]):=byte(Size);
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end;
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end;
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Function fpc_ShortStr_To_AnsiStr (Const S2 : ShortString): ansistring; compilerproc;
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{
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Converts a ShortString to a AnsiString;
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}
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Var
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Size : SizeInt;
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begin
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Size:=Length(S2);
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Setlength (fpc_ShortStr_To_AnsiStr,Size);
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if Size>0 then
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Move(S2[1],Pointer(fpc_ShortStr_To_AnsiStr)^,Size);
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end;
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Function fpc_Char_To_AnsiStr(const c : Char): AnsiString; compilerproc;
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{
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Converts a Char to a AnsiString;
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}
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begin
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Setlength (fpc_Char_To_AnsiStr,1);
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PByte(Pointer(fpc_Char_To_AnsiStr))^:=byte(c);
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{ Terminating Zero }
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PByte(Pointer(fpc_Char_To_AnsiStr)+1)^:=0;
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end;
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Function fpc_PChar_To_AnsiStr(const p : pchar): ansistring; compilerproc;
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Var
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L : SizeInt;
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begin
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if (not assigned(p)) or (p[0]=#0) Then
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{ result is automatically set to '' }
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exit;
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l:=IndexChar(p^,-1,#0);
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SetLength(fpc_PChar_To_AnsiStr,L);
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Move (P[0],Pointer(fpc_PChar_To_AnsiStr)^,L)
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end;
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Function fpc_CharArray_To_AnsiStr(const arr: array of char; zerobased: boolean = true): ansistring; compilerproc;
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var
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i : SizeInt;
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begin
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if (zerobased) then
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begin
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if (arr[0]=#0) Then
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{ result is automatically set to '' }
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exit;
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i:=IndexChar(arr,high(arr)+1,#0);
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if i = -1 then
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i := high(arr)+1;
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end
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else
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i := high(arr)+1;
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SetLength(fpc_CharArray_To_AnsiStr,i);
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Move (arr[0],Pointer(fpc_CharArray_To_AnsiStr)^,i);
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end;
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{ note: inside the compiler, the resulttype is modified to be the length }
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{ of the actual chararray to which we convert (JM) }
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function fpc_ansistr_to_chararray(arraysize: SizeInt; const src: ansistring): fpc_big_chararray; [public, alias: 'FPC_ANSISTR_TO_CHARARRAY']; compilerproc;
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var
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len: SizeInt;
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begin
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len := length(src);
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if len > arraysize then
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len := arraysize;
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{ make sure we don't try to access element 1 of the ansistring if it's nil }
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if len > 0 then
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move(src[1],fpc_ansistr_to_chararray[0],len);
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fillchar(fpc_ansistr_to_chararray[len],arraysize-len,0);
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end;
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Function fpc_AnsiStr_Compare(const S1,S2 : AnsiString): SizeInt;[Public,Alias : 'FPC_ANSISTR_COMPARE']; compilerproc;
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{
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Compares 2 AnsiStrings;
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The result is
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<0 if S1<S2
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0 if S1=S2
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>0 if S1>S2
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}
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Var
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MaxI,Temp : SizeInt;
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begin
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if pointer(S1)=pointer(S2) then
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begin
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result:=0;
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exit;
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end;
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Maxi:=Length(S1);
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temp:=Length(S2);
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If MaxI>Temp then
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MaxI:=Temp;
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if MaxI>0 then
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begin
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result:=CompareByte(S1[1],S2[1],MaxI);
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if result=0 then
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result:=Length(S1)-Length(S2);
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end
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else
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result:=Length(S1)-Length(S2);
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end;
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Procedure fpc_AnsiStr_CheckZero(p : pointer);[Public,Alias : 'FPC_ANSISTR_CHECKZERO']; compilerproc;
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begin
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if p=nil then
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HandleErrorFrame(201,get_frame);
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end;
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Procedure fpc_AnsiStr_CheckRange(len,index : SizeInt);[Public,Alias : 'FPC_ANSISTR_RANGECHECK']; compilerproc;
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begin
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if (index>len) or (Index<1) then
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HandleErrorFrame(201,get_frame);
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end;
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Procedure fpc_AnsiStr_SetLength (Var S : AnsiString; l : SizeInt);[Public,Alias : 'FPC_ANSISTR_SETLENGTH']; compilerproc;
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{
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Sets The length of string S to L.
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Makes sure S is unique, and contains enough room.
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}
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Var
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Temp : Pointer;
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movelen : SizeInt;
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begin
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if (l>0) then
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begin
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if Pointer(S)=nil then
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begin
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{ Need a complete new string...}
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Pointer(s):=NewAnsiString(l);
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end
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else if (PAnsiRec(Pointer(S)-FirstOff)^.Ref = 1) then
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begin
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Dec(Pointer(S),FirstOff);
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if AnsiRecLen+L>MemSize(Pointer(s)) then
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reallocmem(pointer(S),AnsiRecLen+L);
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Inc(Pointer(S),FirstOff);
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end
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else
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begin
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{ Reallocation is needed... }
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Temp:=Pointer(NewAnsiString(L));
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if Length(S)>0 then
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begin
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if l < succ(length(s)) then
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movelen := l
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{ also move terminating null }
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else movelen := succ(length(s));
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Move(Pointer(S)^,Temp^,movelen);
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end;
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fpc_ansistr_decr_ref(Pointer(S));
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Pointer(S):=Temp;
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end;
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{ Force nil termination in case it gets shorter }
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PByte(Pointer(S)+l)^:=0;
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PAnsiRec(Pointer(S)-FirstOff)^.Len:=l;
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end
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else
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begin
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{ Length=0 }
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if Pointer(S)<>nil then
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fpc_ansistr_decr_ref (Pointer(S));
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Pointer(S):=Nil;
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end;
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end;
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{$ifdef EXTRAANSISHORT}
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Function fpc_AnsiStr_ShortStr_Compare (Var S1 : Pointer; Var S2 : ShortString): SizeInt; compilerproc;
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{
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Compares a AnsiString with a ShortString;
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The result is
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<0 if S1<S2
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0 if S1=S2
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>0 if S1>S2
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}
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Var
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i,MaxI,Temp : SizeInt;
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begin
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Temp:=0;
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i:=0;
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MaxI:=Length(AnsiString(S1));
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if MaxI>byte(S2[0]) then
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MaxI:=Byte(S2[0]);
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While (i<MaxI) and (Temp=0) do
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begin
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Temp:= PByte(S1+I)^ - Byte(S2[i+1]);
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inc(i);
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end;
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AnsiStr_ShortStr_Compare:=Temp;
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end;
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{$endif EXTRAANSISHORT}
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{*****************************************************************************
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Public functions, In interface.
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*****************************************************************************}
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function fpc_truely_ansistr_unique(Var S : Pointer): Pointer;
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Var
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SNew : Pointer;
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L : SizeInt;
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begin
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L:=PAnsiRec(Pointer(S)-FirstOff)^.len;
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SNew:=NewAnsiString (L);
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Move (Pointer(S)^,SNew^,L+1);
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PAnsiRec(SNew-FirstOff)^.len:=L;
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fpc_ansistr_decr_ref (Pointer(S)); { Thread safe }
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pointer(S):=SNew;
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pointer(result):=SNew;
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end;
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{$ifndef FPC_SYSTEM_HAS_ANSISTR_UNIQUE}
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// MV: inline the basic checks for case that S is already unique.
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// Rest is too complex to inline, so factor that out as a call.
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Function fpc_ansistr_Unique(Var S : Pointer): Pointer; [Public,Alias : 'FPC_ANSISTR_UNIQUE']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
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{
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Make sure reference count of S is 1,
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using copy-on-write semantics.
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}
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begin
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pointer(result) := pointer(s);
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If Pointer(S)=Nil then
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exit;
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if PAnsiRec(Pointer(S)-Firstoff)^.Ref<>1 then
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result:=fpc_truely_ansistr_unique(s);
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end;
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{$endif FPC_SYSTEM_HAS_ANSISTR_UNIQUE}
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Procedure fpc_ansistr_append_char(Var S : AnsiString;c : char); [Public,Alias : 'FPC_ANSISTR_APPEND_CHAR']; compilerproc;
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begin
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SetLength(S,length(S)+1);
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// avoid unique call
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PChar(Pointer(S)+length(S)-1)^:=c;
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PByte(Pointer(S)+length(S))^:=0; { Terminating Zero }
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end;
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Procedure fpc_ansistr_append_shortstring(Var S : AnsiString;const Str : ShortString); [Public,Alias : 'FPC_ANSISTR_APPEND_SHORTSTRING']; compilerproc;
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var
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ofs : SizeInt;
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begin
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if Str='' then
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exit;
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ofs:=Length(S);
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SetLength(S,ofs+length(Str));
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{ the pbyte cast avoids an unique call which isn't necessary because SetLength was just called }
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move(Str[1],(pointer(S)+ofs)^,length(Str));
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PByte(Pointer(S)+length(S))^:=0; { Terminating Zero }
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end;
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Procedure fpc_ansistr_append_ansistring(Var S : AnsiString;const Str : AnsiString); [Public,Alias : 'FPC_ANSISTR_APPEND_ANSISTRING']; compilerproc;
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var
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ofs, strlength : SizeInt;
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begin
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if Str='' then
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exit;
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{ needed in case s and str are the same string }
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strlength := length(str);
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ofs:=Length(S);
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SetLength(S,ofs+length(Str));
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{ the pbyte cast avoids an unique call which isn't necessary because SetLength was just called }
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move(Str[1],(pointer(S)+ofs)^,strlength+1);
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end;
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Function Fpc_Ansistr_Copy (Const S : AnsiString; Index,Size : SizeInt) : AnsiString;compilerproc;
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var
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ResultAddress : Pointer;
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begin
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ResultAddress:=Nil;
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dec(index);
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if Index < 0 then
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Index := 0;
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{ Check Size. Accounts for Zero-length S, the double check is needed because
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Size can be maxint and will get <0 when adding index }
|
|
if (Size>Length(S)) or
|
|
(Index+Size>Length(S)) then
|
|
Size:=Length(S)-Index;
|
|
If Size>0 then
|
|
begin
|
|
If Index<0 Then
|
|
Index:=0;
|
|
ResultAddress:=Pointer(NewAnsiString (Size));
|
|
if ResultAddress<>Nil then
|
|
begin
|
|
Move (Pointer(Pointer(S)+index)^,ResultAddress^,Size);
|
|
PAnsiRec(ResultAddress-FirstOff)^.Len:=Size;
|
|
PByte(ResultAddress+Size)^:=0;
|
|
end;
|
|
end;
|
|
Pointer(fpc_ansistr_Copy):=ResultAddress;
|
|
end;
|
|
|
|
Function Pos (Const Substr : ShortString; Const Source : AnsiString) : SizeInt;
|
|
|
|
var
|
|
i,MaxLen : SizeInt;
|
|
pc : pchar;
|
|
begin
|
|
Pos:=0;
|
|
if Length(SubStr)>0 then
|
|
begin
|
|
MaxLen:=Length(source)-Length(SubStr);
|
|
i:=0;
|
|
pc:=@source[1];
|
|
while (i<=MaxLen) do
|
|
begin
|
|
inc(i);
|
|
if (SubStr[1]=pc^) and
|
|
(CompareByte(Substr[1],pc^,Length(SubStr))=0) then
|
|
begin
|
|
Pos:=i;
|
|
exit;
|
|
end;
|
|
inc(pc);
|
|
end;
|
|
end;
|
|
end;
|
|
|
|
|
|
Function Pos (Const Substr : AnsiString; Const Source : AnsiString) : SizeInt;
|
|
var
|
|
i,MaxLen : SizeInt;
|
|
pc : pchar;
|
|
begin
|
|
Pos:=0;
|
|
if Length(SubStr)>0 then
|
|
begin
|
|
MaxLen:=Length(source)-Length(SubStr);
|
|
i:=0;
|
|
pc:=@source[1];
|
|
while (i<=MaxLen) do
|
|
begin
|
|
inc(i);
|
|
if (SubStr[1]=pc^) and
|
|
(CompareByte(Substr[1],pc^,Length(SubStr))=0) then
|
|
begin
|
|
Pos:=i;
|
|
exit;
|
|
end;
|
|
inc(pc);
|
|
end;
|
|
end;
|
|
end;
|
|
|
|
|
|
{ Faster version for a char alone. Must be implemented because }
|
|
{ pos(c: char; const s: shortstring) also exists, so otherwise }
|
|
{ using pos(char,pchar) will always call the shortstring version }
|
|
{ (exact match for first argument), also with $h+ (JM) }
|
|
Function Pos (c : Char; Const s : AnsiString) : SizeInt;
|
|
var
|
|
i: SizeInt;
|
|
pc : pchar;
|
|
begin
|
|
pc:=@s[1];
|
|
for i:=1 to length(s) do
|
|
begin
|
|
if pc^=c then
|
|
begin
|
|
pos:=i;
|
|
exit;
|
|
end;
|
|
inc(pc);
|
|
end;
|
|
pos:=0;
|
|
end;
|
|
|
|
|
|
Function fpc_Val_Real_AnsiStr(Const S : AnsiString; out Code : ValSInt): ValReal; [public, alias:'FPC_VAL_REAL_ANSISTR']; compilerproc;
|
|
Var
|
|
SS : String;
|
|
begin
|
|
fpc_Val_Real_AnsiStr := 0;
|
|
if length(S) > 255 then
|
|
code := 256
|
|
else
|
|
begin
|
|
SS := S;
|
|
Val(SS,fpc_Val_Real_AnsiStr,code);
|
|
end;
|
|
end;
|
|
|
|
|
|
Function fpc_Val_UInt_AnsiStr (Const S : AnsiString; out Code : ValSInt): ValUInt; [public, alias:'FPC_VAL_UINT_ANSISTR']; compilerproc;
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
fpc_Val_UInt_AnsiStr := 0;
|
|
if length(S) > 255 then
|
|
code := 256
|
|
else
|
|
begin
|
|
SS := S;
|
|
Val(SS,fpc_Val_UInt_AnsiStr,code);
|
|
end;
|
|
end;
|
|
|
|
|
|
Function fpc_Val_SInt_AnsiStr (DestSize: SizeInt; Const S : AnsiString; out Code : ValSInt): ValSInt; [public, alias:'FPC_VAL_SINT_ANSISTR']; compilerproc;
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
fpc_Val_SInt_AnsiStr:=0;
|
|
if length(S)>255 then
|
|
code:=256
|
|
else
|
|
begin
|
|
SS := S;
|
|
fpc_Val_SInt_AnsiStr := int_Val_SInt_ShortStr(DestSize,SS,Code);
|
|
end;
|
|
end;
|
|
|
|
|
|
{$ifndef CPU64}
|
|
|
|
Function fpc_Val_qword_AnsiStr (Const S : AnsiString; out Code : ValSInt): qword; [public, alias:'FPC_VAL_QWORD_ANSISTR']; compilerproc;
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
fpc_Val_qword_AnsiStr:=0;
|
|
if length(S)>255 then
|
|
code:=256
|
|
else
|
|
begin
|
|
SS := S;
|
|
Val(SS,fpc_Val_qword_AnsiStr,Code);
|
|
end;
|
|
end;
|
|
|
|
|
|
Function fpc_Val_int64_AnsiStr (Const S : AnsiString; out Code : ValSInt): Int64; [public, alias:'FPC_VAL_INT64_ANSISTR']; compilerproc;
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
fpc_Val_int64_AnsiStr:=0;
|
|
if length(S)>255 then
|
|
code:=256
|
|
else
|
|
begin
|
|
SS := s;
|
|
Val(SS,fpc_Val_int64_AnsiStr,Code);
|
|
end;
|
|
end;
|
|
|
|
{$endif CPU64}
|
|
|
|
|
|
procedure fpc_AnsiStr_Float(d : ValReal;len,fr,rt : SizeInt;out s : ansistring);[public,alias:'FPC_ANSISTR_FLOAT']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
|
|
var
|
|
ss: ShortString;
|
|
begin
|
|
str_real(len,fr,d,treal_type(rt),ss);
|
|
s:=ss;
|
|
end;
|
|
|
|
|
|
Procedure fpc_AnsiStr_UInt(v : ValUInt;Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_VALUINT']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
str(v:Len,SS);
|
|
S:=SS;
|
|
end;
|
|
|
|
|
|
|
|
Procedure fpc_AnsiStr_SInt(v : ValSInt;Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_VALSINT']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
str (v:Len,SS);
|
|
S:=SS;
|
|
end;
|
|
|
|
|
|
{$ifndef CPU64}
|
|
|
|
Procedure fpc_AnsiStr_QWord(v : QWord;Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_QWORD']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
str(v:Len,SS);
|
|
S:=SS;
|
|
end;
|
|
|
|
Procedure fpc_AnsiStr_Int64(v : Int64; Len : SizeInt; out S : AnsiString);[Public,Alias : 'FPC_ANSISTR_INT64']; compilerproc; {$IFNDEF VER2_0} Inline; {$ENDIF}
|
|
Var
|
|
SS : ShortString;
|
|
begin
|
|
str (v:Len,SS);
|
|
S:=SS;
|
|
end;
|
|
|
|
{$endif CPU64}
|
|
|
|
Procedure Delete (Var S : AnsiString; Index,Size: SizeInt);
|
|
Var
|
|
LS : SizeInt;
|
|
begin
|
|
ls:=Length(S);
|
|
If (Index>LS) or (Index<=0) or (Size<=0) then
|
|
exit;
|
|
UniqueString (S);
|
|
If (Size>LS-Index) then // Size+Index gives overflow ??
|
|
Size:=LS-Index+1;
|
|
If (Size<=LS-Index) then
|
|
begin
|
|
Dec(Index);
|
|
Move(PByte(Pointer(S))[Index+Size],PByte(Pointer(S))[Index],LS-Index-Size+1);
|
|
end;
|
|
Setlength(S,LS-Size);
|
|
end;
|
|
|
|
|
|
Procedure Insert (Const Source : AnsiString; Var S : AnsiString; Index : SizeInt);
|
|
var
|
|
Temp : AnsiString;
|
|
LS : SizeInt;
|
|
begin
|
|
If Length(Source)=0 then
|
|
exit;
|
|
if index <= 0 then
|
|
index := 1;
|
|
Ls:=Length(S);
|
|
if index > LS then
|
|
index := LS+1;
|
|
Dec(Index);
|
|
Pointer(Temp) := NewAnsiString(Length(Source)+LS);
|
|
SetLength(Temp,Length(Source)+LS);
|
|
If Index>0 then
|
|
move (Pointer(S)^,Pointer(Temp)^,Index);
|
|
Move (Pointer(Source)^,PByte(Temp)[Index],Length(Source));
|
|
If (LS-Index)>0 then
|
|
Move(PByte(Pointer(S))[Index],PByte(temp)[Length(Source)+index],LS-Index);
|
|
S:=Temp;
|
|
end;
|
|
|
|
|
|
Function StringOfChar(c : char;l : SizeInt) : AnsiString;
|
|
begin
|
|
SetLength(StringOfChar,l);
|
|
FillChar(Pointer(StringOfChar)^,Length(StringOfChar),c);
|
|
end;
|
|
|
|
Procedure SetString (Out S : AnsiString; Buf : PChar; Len : SizeInt); {$IFNDEF VER2_0} Inline; {$ENDIF}
|
|
begin
|
|
SetLength(S,Len);
|
|
If (Buf<>Nil) then
|
|
begin
|
|
Move (Buf[0],S[1],Len);
|
|
end;
|
|
end;
|
|
|
|
|
|
function upcase(const s : ansistring) : ansistring;
|
|
var
|
|
i : SizeInt;
|
|
begin
|
|
Setlength(result,length(s));
|
|
for i := 1 to length (s) do
|
|
result[i] := upcase(s[i]);
|
|
end;
|
|
|
|
|
|
function lowercase(const s : ansistring) : ansistring;
|
|
var
|
|
i : SizeInt;
|
|
begin
|
|
Setlength(result,length(s));
|
|
for i := 1 to length (s) do
|
|
result[i] := lowercase(s[i]);
|
|
end;
|