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576 lines
15 KiB
576 lines
15 KiB
Unit iminfcodes;
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{ infcodes.c -- process literals and length/distance pairs
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Copyright (C) 1995-1998 Mark Adler
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Pascal tranlastion
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Copyright (C) 1998 by Jacques Nomssi Nzali
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For conditions of distribution and use, see copyright notice in readme.txt
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}
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interface
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{$I imzconf.inc}
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uses
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{$IFDEF DEBUG}
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SysUtils, strutils,
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{$ENDIF}
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imzutil, impaszlib;
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function inflate_codes_new (bl : uInt;
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bd : uInt;
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tl : pInflate_huft;
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td : pInflate_huft;
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var z : z_stream): pInflate_codes_state;
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function inflate_codes(var s : inflate_blocks_state;
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var z : z_stream;
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r : int) : int;
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procedure inflate_codes_free(c : pInflate_codes_state;
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var z : z_stream);
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implementation
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uses
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iminfutil, iminffast;
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function inflate_codes_new (bl : uInt;
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bd : uInt;
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tl : pInflate_huft;
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td : pInflate_huft;
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var z : z_stream): pInflate_codes_state;
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var
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c : pInflate_codes_state;
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begin
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c := pInflate_codes_state( ZALLOC(z,1,sizeof(inflate_codes_state)) );
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if (c <> Z_NULL) then
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begin
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c^.mode := START;
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c^.lbits := Byte(bl);
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c^.dbits := Byte(bd);
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c^.ltree := tl;
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c^.dtree := td;
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{$IFDEF DEBUG}
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Tracev('inflate: codes new');
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{$ENDIF}
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end;
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inflate_codes_new := c;
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end;
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function inflate_codes(var s : inflate_blocks_state;
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var z : z_stream;
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r : int) : int;
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var
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j : uInt; { temporary storage }
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t : pInflate_huft; { temporary pointer }
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e : uInt; { extra bits or operation }
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b : uLong; { bit buffer }
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k : uInt; { bits in bit buffer }
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p : pBytef; { input data pointer }
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n : uInt; { bytes available there }
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q : pBytef; { output window write pointer }
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m : uInt; { bytes to end of window or read pointer }
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f : pBytef; { pointer to copy strings from }
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var
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c : pInflate_codes_state;
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begin
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c := s.sub.decode.codes; { codes state }
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{ copy input/output information to locals }
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p := z.next_in;
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n := z.avail_in;
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b := s.bitb;
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k := s.bitk;
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q := s.write;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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{ process input and output based on current state }
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while True do
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case (c^.mode) of
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{ waiting for "i:"=input, "o:"=output, "x:"=nothing }
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START: { x: set up for LEN }
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begin
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{$ifndef SLOW}
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if (m >= 258) and (n >= 10) then
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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r := inflate_fast(c^.lbits, c^.dbits, c^.ltree, c^.dtree, s, z);
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{LOAD}
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p := z.next_in;
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n := z.avail_in;
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b := s.bitb;
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k := s.bitk;
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q := s.write;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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if (r <> Z_OK) then
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begin
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if (r = Z_STREAM_END) then
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c^.mode := WASH
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else
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c^.mode := BADCODE;
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continue; { break for switch-statement in C }
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end;
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end;
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{$endif} { not SLOW }
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c^.sub.code.need := c^.lbits;
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c^.sub.code.tree := c^.ltree;
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c^.mode := LEN; { falltrough }
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end;
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LEN: { i: get length/literal/eob next }
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begin
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j := c^.sub.code.need;
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{NEEDBITS(j);}
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while (k < j) do
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begin
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{NEEDBYTE;}
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if (n <> 0) then
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r :=Z_OK
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else
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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Dec(n);
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b := b or (uLong(p^) shl k);
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Inc(p);
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Inc(k, 8);
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end;
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t := c^.sub.code.tree;
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Inc(t, uInt(b) and inflate_mask[j]);
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{DUMPBITS(t^.bits);}
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b := b shr t^.bits;
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Dec(k, t^.bits);
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e := uInt(t^.exop);
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if (e = 0) then { literal }
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begin
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c^.sub.lit := t^.base;
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{$IFDEF DEBUG}
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if (t^.base >= $20) and (t^.base < $7f) then
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Tracevv('inflate: literal '+AnsiChar(t^.base))
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else
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Tracevv('inflate: literal '+IntToStr(t^.base));
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{$ENDIF}
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c^.mode := LIT;
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continue; { break switch statement }
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end;
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if (e and 16 <> 0) then { length }
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begin
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c^.sub.copy.get := e and 15;
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c^.len := t^.base;
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c^.mode := LENEXT;
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continue; { break C-switch statement }
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end;
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if (e and 64 = 0) then { next table }
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begin
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c^.sub.code.need := e;
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c^.sub.code.tree := @huft_ptr(t)^[t^.base];
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continue; { break C-switch statement }
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end;
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if (e and 32 <> 0) then { end of block }
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begin
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{$IFDEF DEBUG}
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Tracevv('inflate: end of block');
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{$ENDIF}
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c^.mode := WASH;
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continue; { break C-switch statement }
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end;
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c^.mode := BADCODE; { invalid code }
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z.msg := 'invalid literal/length code';
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r := Z_DATA_ERROR;
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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LENEXT: { i: getting length extra (have base) }
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begin
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j := c^.sub.copy.get;
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{NEEDBITS(j);}
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while (k < j) do
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begin
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{NEEDBYTE;}
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if (n <> 0) then
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r :=Z_OK
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else
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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Dec(n);
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b := b or (uLong(p^) shl k);
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Inc(p);
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Inc(k, 8);
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end;
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Inc(c^.len, uInt(b and inflate_mask[j]));
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{DUMPBITS(j);}
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b := b shr j;
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Dec(k, j);
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c^.sub.code.need := c^.dbits;
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c^.sub.code.tree := c^.dtree;
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{$IFDEF DEBUG}
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Tracevv('inflate: length '+IntToStr(c^.len));
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{$ENDIF}
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c^.mode := DIST;
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{ falltrough }
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end;
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DIST: { i: get distance next }
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begin
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j := c^.sub.code.need;
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{NEEDBITS(j);}
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while (k < j) do
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begin
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{NEEDBYTE;}
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if (n <> 0) then
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r :=Z_OK
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else
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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Dec(n);
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b := b or (uLong(p^) shl k);
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Inc(p);
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Inc(k, 8);
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end;
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t := @huft_ptr(c^.sub.code.tree)^[uInt(b) and inflate_mask[j]];
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{DUMPBITS(t^.bits);}
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b := b shr t^.bits;
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Dec(k, t^.bits);
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e := uInt(t^.exop);
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if (e and 16 <> 0) then { distance }
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begin
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c^.sub.copy.get := e and 15;
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c^.sub.copy.dist := t^.base;
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c^.mode := DISTEXT;
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continue; { break C-switch statement }
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end;
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if (e and 64 = 0) then { next table }
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begin
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c^.sub.code.need := e;
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c^.sub.code.tree := @huft_ptr(t)^[t^.base];
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continue; { break C-switch statement }
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end;
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c^.mode := BADCODE; { invalid code }
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z.msg := 'invalid distance code';
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r := Z_DATA_ERROR;
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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DISTEXT: { i: getting distance extra }
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begin
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j := c^.sub.copy.get;
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{NEEDBITS(j);}
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while (k < j) do
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begin
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{NEEDBYTE;}
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if (n <> 0) then
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r :=Z_OK
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else
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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Dec(n);
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b := b or (uLong(p^) shl k);
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Inc(p);
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Inc(k, 8);
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end;
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Inc(c^.sub.copy.dist, uInt(b) and inflate_mask[j]);
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{DUMPBITS(j);}
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b := b shr j;
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Dec(k, j);
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{$IFDEF DEBUG}
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Tracevv('inflate: distance '+ IntToStr(c^.sub.copy.dist));
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{$ENDIF}
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c^.mode := COPY;
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{ falltrough }
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end;
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COPY: { o: copying bytes in window, waiting for space }
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begin
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f := q;
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Dec(f, c^.sub.copy.dist);
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if (uInt(ptr2int(q) - ptr2int(s.window)) < c^.sub.copy.dist) then
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begin
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f := s.zend;
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Dec(f, c^.sub.copy.dist - uInt(ptr2int(q) - ptr2int(s.window)));
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end;
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while (c^.len <> 0) do
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begin
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{NEEDOUT}
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if (m = 0) then
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begin
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{WRAP}
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if (q = s.zend) and (s.read <> s.window) then
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begin
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q := s.window;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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end;
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if (m = 0) then
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begin
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{FLUSH}
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s.write := q;
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r := inflate_flush(s,z,r);
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q := s.write;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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{WRAP}
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if (q = s.zend) and (s.read <> s.window) then
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begin
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q := s.window;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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end;
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if (m = 0) then
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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end;
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end;
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r := Z_OK;
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{OUTBYTE( *f++)}
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q^ := f^;
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Inc(q);
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Inc(f);
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Dec(m);
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if (f = s.zend) then
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f := s.window;
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Dec(c^.len);
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end;
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c^.mode := START;
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{ C-switch break; not needed }
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end;
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LIT: { o: got literal, waiting for output space }
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begin
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{NEEDOUT}
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if (m = 0) then
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begin
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{WRAP}
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if (q = s.zend) and (s.read <> s.window) then
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begin
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q := s.window;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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end;
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if (m = 0) then
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begin
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{FLUSH}
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s.write := q;
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r := inflate_flush(s,z,r);
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q := s.write;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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{WRAP}
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if (q = s.zend) and (s.read <> s.window) then
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begin
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q := s.window;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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end;
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if (m = 0) then
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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end;
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end;
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r := Z_OK;
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{OUTBYTE(c^.sub.lit);}
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q^ := c^.sub.lit;
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Inc(q);
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Dec(m);
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c^.mode := START;
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{break;}
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end;
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WASH: { o: got eob, possibly more output }
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begin
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{$ifdef patch112}
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if (k > 7) then { return unused byte, if any }
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begin
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{$IFDEF DEBUG}
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Assert(k < 16, 'inflate_codes grabbed too many bytes');
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{$ENDIF}
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Dec(k, 8);
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Inc(n);
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Dec(p); { can always return one }
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end;
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{$endif}
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{FLUSH}
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s.write := q;
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r := inflate_flush(s,z,r);
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q := s.write;
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if ptr2int(q) < ptr2int(s.read) then
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m := uInt(ptr2int(s.read)-ptr2int(q)-1)
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else
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m := uInt(ptr2int(s.zend)-ptr2int(q));
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if (s.read <> s.write) then
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begin
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
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z.next_in := p;
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s.write := q;
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inflate_codes := inflate_flush(s,z,r);
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exit;
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end;
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c^.mode := ZEND;
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{ falltrough }
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end;
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ZEND:
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begin
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r := Z_STREAM_END;
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{UPDATE}
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s.bitb := b;
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s.bitk := k;
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z.avail_in := n;
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Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
|
|
z.next_in := p;
|
|
s.write := q;
|
|
inflate_codes := inflate_flush(s,z,r);
|
|
exit;
|
|
end;
|
|
BADCODE: { x: got error }
|
|
begin
|
|
r := Z_DATA_ERROR;
|
|
{UPDATE}
|
|
s.bitb := b;
|
|
s.bitk := k;
|
|
z.avail_in := n;
|
|
Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
|
|
z.next_in := p;
|
|
s.write := q;
|
|
inflate_codes := inflate_flush(s,z,r);
|
|
exit;
|
|
end;
|
|
else
|
|
begin
|
|
r := Z_STREAM_ERROR;
|
|
{UPDATE}
|
|
s.bitb := b;
|
|
s.bitk := k;
|
|
z.avail_in := n;
|
|
Inc(z.total_in, ptr2int(p)-ptr2int(z.next_in));
|
|
z.next_in := p;
|
|
s.write := q;
|
|
inflate_codes := inflate_flush(s,z,r);
|
|
exit;
|
|
end;
|
|
end;
|
|
{NEED_DUMMY_RETURN - Delphi2+ dumb compilers complain without this }
|
|
inflate_codes := Z_STREAM_ERROR;
|
|
end;
|
|
|
|
|
|
procedure inflate_codes_free(c : pInflate_codes_state;
|
|
var z : z_stream);
|
|
begin
|
|
ZFREE(z, c);
|
|
{$IFDEF DEBUG}
|
|
Tracev('inflate: codes free');
|
|
{$ENDIF}
|
|
end;
|
|
|
|
end.
|