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	While looking to upgrade to zlib-1.2.5, the current mondo merge of multiple files into a single was making things way more difficult than it should have been. Hard to pick out what has been changed to port it to U-Boot, been removed as useless, and bug fixes added after the fact. So split the single file up into the original file names, and merge non-essential changes back from the original tree (for some reason, style in code in a bunch of places was changed to U-Boot style even though this isn't "U-Boot" code). The original build style is retained -- we have a single zlib.c that includes all the other files, and that is the only file we compile. Signed-off-by: Mike Frysinger <vapier@gentoo.org>
		
			
				
	
	
		
			957 lines
		
	
	
		
			34 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			957 lines
		
	
	
		
			34 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /* inflate.c -- zlib decompression
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|  * Copyright (C) 1995-2005 Mark Adler
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|  * For conditions of distribution and use, see copyright notice in zlib.h
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|  */
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| local void fixedtables OF((struct inflate_state FAR *state));
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| local int updatewindow OF((z_streamp strm, unsigned out));
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| 
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| int ZEXPORT inflateReset(strm)
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| z_streamp strm;
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| {
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|     struct inflate_state FAR *state;
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| 
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|     if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
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|     state = (struct inflate_state FAR *)strm->state;
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|     strm->total_in = strm->total_out = state->total = 0;
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|     strm->msg = Z_NULL;
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|     strm->adler = 1;        /* to support ill-conceived Java test suite */
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|     state->mode = HEAD;
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|     state->last = 0;
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|     state->havedict = 0;
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|     state->dmax = 32768U;
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|     state->head = Z_NULL;
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|     state->wsize = 0;
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|     state->whave = 0;
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|     state->write = 0;
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|     state->hold = 0;
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|     state->bits = 0;
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|     state->lencode = state->distcode = state->next = state->codes;
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|     WATCHDOG_RESET();
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|     Tracev((stderr, "inflate: reset\n"));
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|     return Z_OK;
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| }
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| 
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| int ZEXPORT inflateInit2_(strm, windowBits, version, stream_size)
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| z_streamp strm;
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| int windowBits;
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| const char *version;
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| int stream_size;
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| {
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|     struct inflate_state FAR *state;
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| 
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|     if (version == Z_NULL || version[0] != ZLIB_VERSION[0] ||
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|         stream_size != (int)(sizeof(z_stream)))
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|         return Z_VERSION_ERROR;
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|     if (strm == Z_NULL) return Z_STREAM_ERROR;
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|     strm->msg = Z_NULL;                 /* in case we return an error */
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|     if (strm->zalloc == (alloc_func)0) {
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|         strm->zalloc = zcalloc;
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|         strm->opaque = (voidpf)0;
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|     }
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|     if (strm->zfree == (free_func)0) strm->zfree = zcfree;
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|     state = (struct inflate_state FAR *)
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|             ZALLOC(strm, 1, sizeof(struct inflate_state));
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|     if (state == Z_NULL) return Z_MEM_ERROR;
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|     Tracev((stderr, "inflate: allocated\n"));
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|     strm->state = (struct internal_state FAR *)state;
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|     if (windowBits < 0) {
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|         state->wrap = 0;
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|         windowBits = -windowBits;
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|     }
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|     else {
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|         state->wrap = (windowBits >> 4) + 1;
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| #ifdef GUNZIP
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|         if (windowBits < 48) windowBits &= 15;
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| #endif
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|     }
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|     if (windowBits < 8 || windowBits > 15) {
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|         ZFREE(strm, state);
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|         strm->state = Z_NULL;
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|         return Z_STREAM_ERROR;
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|     }
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|     state->wbits = (unsigned)windowBits;
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|     state->window = Z_NULL;
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|     return inflateReset(strm);
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| }
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| 
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| int ZEXPORT inflateInit_(strm, version, stream_size)
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| z_streamp strm;
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| const char *version;
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| int stream_size;
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| {
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|     return inflateInit2_(strm, DEF_WBITS, version, stream_size);
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| }
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| 
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| local void fixedtables(state)
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| struct inflate_state FAR *state;
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| {
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|     state->lencode = lenfix;
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|     state->lenbits = 9;
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|     state->distcode = distfix;
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|     state->distbits = 5;
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| }
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| 
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| /*
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|    Update the window with the last wsize (normally 32K) bytes written before
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|    returning.  If window does not exist yet, create it.  This is only called
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|    when a window is already in use, or when output has been written during this
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|    inflate call, but the end of the deflate stream has not been reached yet.
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|    It is also called to create a window for dictionary data when a dictionary
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|    is loaded.
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| 
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|    Providing output buffers larger than 32K to inflate() should provide a speed
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|    advantage, since only the last 32K of output is copied to the sliding window
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|    upon return from inflate(), and since all distances after the first 32K of
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|    output will fall in the output data, making match copies simpler and faster.
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|    The advantage may be dependent on the size of the processor's data caches.
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|  */
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| local int updatewindow(strm, out)
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| z_streamp strm;
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| unsigned out;
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| {
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|     struct inflate_state FAR *state;
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|     unsigned copy, dist;
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| 
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|     state = (struct inflate_state FAR *)strm->state;
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| 
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|     /* if it hasn't been done already, allocate space for the window */
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|     if (state->window == Z_NULL) {
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|         state->window = (unsigned char FAR *)
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|                         ZALLOC(strm, 1U << state->wbits,
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|                                sizeof(unsigned char));
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|         if (state->window == Z_NULL) return 1;
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|     }
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| 
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|     /* if window not in use yet, initialize */
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|     if (state->wsize == 0) {
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|         state->wsize = 1U << state->wbits;
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|         state->write = 0;
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|         state->whave = 0;
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|     }
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| 
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|     /* copy state->wsize or less output bytes into the circular window */
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|     copy = out - strm->avail_out;
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|     if (copy >= state->wsize) {
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|         zmemcpy(state->window, strm->next_out - state->wsize, state->wsize);
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|         state->write = 0;
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|         state->whave = state->wsize;
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|     }
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|     else {
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|         dist = state->wsize - state->write;
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|         if (dist > copy) dist = copy;
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|         zmemcpy(state->window + state->write, strm->next_out - copy, dist);
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|         copy -= dist;
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|         if (copy) {
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|             zmemcpy(state->window, strm->next_out - copy, copy);
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|             state->write = copy;
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|             state->whave = state->wsize;
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|         }
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|         else {
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|             state->write += dist;
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|             if (state->write == state->wsize) state->write = 0;
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|             if (state->whave < state->wsize) state->whave += dist;
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|         }
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|     }
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|     return 0;
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| }
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| 
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| /* Macros for inflate(): */
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| 
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| /* check function to use adler32() for zlib or crc32() for gzip */
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| #ifdef GUNZIP
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| #  define UPDATE(check, buf, len) \
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|     (state->flags ? crc32(check, buf, len) : adler32(check, buf, len))
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| #else
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| #  define UPDATE(check, buf, len) adler32(check, buf, len)
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| #endif
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| 
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| /* check macros for header crc */
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| #ifdef GUNZIP
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| #  define CRC2(check, word) \
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|     do { \
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|         hbuf[0] = (unsigned char)(word); \
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|         hbuf[1] = (unsigned char)((word) >> 8); \
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|         check = crc32(check, hbuf, 2); \
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|     } while (0)
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| 
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| #  define CRC4(check, word) \
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|     do { \
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|         hbuf[0] = (unsigned char)(word); \
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|         hbuf[1] = (unsigned char)((word) >> 8); \
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|         hbuf[2] = (unsigned char)((word) >> 16); \
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|         hbuf[3] = (unsigned char)((word) >> 24); \
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|         check = crc32(check, hbuf, 4); \
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|     } while (0)
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| #endif
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| 
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| /* Load registers with state in inflate() for speed */
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| #define LOAD() \
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|     do { \
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|         put = strm->next_out; \
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|         left = strm->avail_out; \
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|         next = strm->next_in; \
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|         have = strm->avail_in; \
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|         hold = state->hold; \
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|         bits = state->bits; \
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|     } while (0)
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| 
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| /* Restore state from registers in inflate() */
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| #define RESTORE() \
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|     do { \
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|         strm->next_out = put; \
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|         strm->avail_out = left; \
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|         strm->next_in = next; \
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|         strm->avail_in = have; \
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|         state->hold = hold; \
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|         state->bits = bits; \
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|     } while (0)
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| 
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| /* Clear the input bit accumulator */
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| #define INITBITS() \
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|     do { \
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|         hold = 0; \
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|         bits = 0; \
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|     } while (0)
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| 
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| /* Get a byte of input into the bit accumulator, or return from inflate()
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|    if there is no input available. */
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| #define PULLBYTE() \
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|     do { \
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|         if (have == 0) goto inf_leave; \
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|         have--; \
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|         hold += (unsigned long)(*next++) << bits; \
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|         bits += 8; \
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|     } while (0)
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| 
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| /* Assure that there are at least n bits in the bit accumulator.  If there is
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|    not enough available input to do that, then return from inflate(). */
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| #define NEEDBITS(n) \
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|     do { \
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|         while (bits < (unsigned)(n)) \
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|             PULLBYTE(); \
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|     } while (0)
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| 
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| /* Return the low n bits of the bit accumulator (n < 16) */
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| #define BITS(n) \
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|     ((unsigned)hold & ((1U << (n)) - 1))
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| 
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| /* Remove n bits from the bit accumulator */
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| #define DROPBITS(n) \
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|     do { \
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|         hold >>= (n); \
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|         bits -= (unsigned)(n); \
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|     } while (0)
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| 
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| /* Remove zero to seven bits as needed to go to a byte boundary */
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| #define BYTEBITS() \
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|     do { \
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|         hold >>= bits & 7; \
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|         bits -= bits & 7; \
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|     } while (0)
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| 
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| /* Reverse the bytes in a 32-bit value */
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| #define REVERSE(q) \
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|     ((((q) >> 24) & 0xff) + (((q) >> 8) & 0xff00) + \
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|      (((q) & 0xff00) << 8) + (((q) & 0xff) << 24))
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| 
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| /*
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|    inflate() uses a state machine to process as much input data and generate as
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|    much output data as possible before returning.  The state machine is
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|    structured roughly as follows:
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| 
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|     for (;;) switch (state) {
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|     ...
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|     case STATEn:
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|         if (not enough input data or output space to make progress)
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|             return;
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|         ... make progress ...
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|         state = STATEm;
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|         break;
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|     ...
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|     }
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| 
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|    so when inflate() is called again, the same case is attempted again, and
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|    if the appropriate resources are provided, the machine proceeds to the
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|    next state.  The NEEDBITS() macro is usually the way the state evaluates
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|    whether it can proceed or should return.  NEEDBITS() does the return if
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|    the requested bits are not available.  The typical use of the BITS macros
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|    is:
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| 
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|         NEEDBITS(n);
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|         ... do something with BITS(n) ...
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|         DROPBITS(n);
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| 
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|    where NEEDBITS(n) either returns from inflate() if there isn't enough
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|    input left to load n bits into the accumulator, or it continues.  BITS(n)
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|    gives the low n bits in the accumulator.  When done, DROPBITS(n) drops
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|    the low n bits off the accumulator.  INITBITS() clears the accumulator
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|    and sets the number of available bits to zero.  BYTEBITS() discards just
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|    enough bits to put the accumulator on a byte boundary.  After BYTEBITS()
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|    and a NEEDBITS(8), then BITS(8) would return the next byte in the stream.
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| 
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|    NEEDBITS(n) uses PULLBYTE() to get an available byte of input, or to return
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|    if there is no input available.  The decoding of variable length codes uses
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|    PULLBYTE() directly in order to pull just enough bytes to decode the next
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|    code, and no more.
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| 
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|    Some states loop until they get enough input, making sure that enough
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|    state information is maintained to continue the loop where it left off
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|    if NEEDBITS() returns in the loop.  For example, want, need, and keep
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|    would all have to actually be part of the saved state in case NEEDBITS()
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|    returns:
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| 
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|     case STATEw:
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|         while (want < need) {
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|             NEEDBITS(n);
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|             keep[want++] = BITS(n);
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|             DROPBITS(n);
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|         }
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|         state = STATEx;
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|     case STATEx:
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| 
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|    As shown above, if the next state is also the next case, then the break
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|    is omitted.
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| 
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|    A state may also return if there is not enough output space available to
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|    complete that state.  Those states are copying stored data, writing a
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|    literal byte, and copying a matching string.
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| 
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|    When returning, a "goto inf_leave" is used to update the total counters,
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|    update the check value, and determine whether any progress has been made
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|    during that inflate() call in order to return the proper return code.
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|    Progress is defined as a change in either strm->avail_in or strm->avail_out.
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|    When there is a window, goto inf_leave will update the window with the last
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|    output written.  If a goto inf_leave occurs in the middle of decompression
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|    and there is no window currently, goto inf_leave will create one and copy
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|    output to the window for the next call of inflate().
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| 
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|    In this implementation, the flush parameter of inflate() only affects the
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|    return code (per zlib.h).  inflate() always writes as much as possible to
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|    strm->next_out, given the space available and the provided input--the effect
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|    documented in zlib.h of Z_SYNC_FLUSH.  Furthermore, inflate() always defers
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|    the allocation of and copying into a sliding window until necessary, which
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|    provides the effect documented in zlib.h for Z_FINISH when the entire input
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|    stream available.  So the only thing the flush parameter actually does is:
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|    when flush is set to Z_FINISH, inflate() cannot return Z_OK.  Instead it
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|    will return Z_BUF_ERROR if it has not reached the end of the stream.
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|  */
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| int ZEXPORT inflate(strm, flush)
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| z_streamp strm;
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| int flush;
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| {
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|     struct inflate_state FAR *state;
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|     unsigned char FAR *next;    /* next input */
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|     unsigned char FAR *put;     /* next output */
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|     unsigned have, left;        /* available input and output */
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|     unsigned long hold;         /* bit buffer */
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|     unsigned bits;              /* bits in bit buffer */
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|     unsigned in, out;           /* save starting available input and output */
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|     unsigned copy;              /* number of stored or match bytes to copy */
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|     unsigned char FAR *from;    /* where to copy match bytes from */
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|     code this;                  /* current decoding table entry */
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|     code last;                  /* parent table entry */
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|     unsigned len;               /* length to copy for repeats, bits to drop */
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|     int ret;                    /* return code */
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| #ifdef GUNZIP
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|     unsigned char hbuf[4];      /* buffer for gzip header crc calculation */
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| #endif
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|     static const unsigned short order[19] = /* permutation of code lengths */
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|         {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15};
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| 
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|     if (strm == Z_NULL || strm->state == Z_NULL ||
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|         (strm->next_in == Z_NULL && strm->avail_in != 0))
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|         return Z_STREAM_ERROR;
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| 
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|     state = (struct inflate_state FAR *)strm->state;
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|     if (state->mode == TYPE) state->mode = TYPEDO;      /* skip check */
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|     LOAD();
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|     in = have;
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|     out = left;
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|     ret = Z_OK;
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|     for (;;)
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|         switch (state->mode) {
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|         case HEAD:
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|             if (state->wrap == 0) {
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|                 state->mode = TYPEDO;
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|                 break;
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|             }
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|             NEEDBITS(16);
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| #ifdef GUNZIP
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|             if ((state->wrap & 2) && hold == 0x8b1f) {  /* gzip header */
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|                 state->check = crc32(0L, Z_NULL, 0);
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|                 CRC2(state->check, hold);
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|                 INITBITS();
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|                 state->mode = FLAGS;
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|                 break;
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|             }
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|             state->flags = 0;           /* expect zlib header */
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|             if (state->head != Z_NULL)
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|                 state->head->done = -1;
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|             if (!(state->wrap & 1) ||   /* check if zlib header allowed */
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| #else
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|             if (
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| #endif
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|                 ((BITS(8) << 8) + (hold >> 8)) % 31) {
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|                 strm->msg = (char *)"incorrect header check";
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|                 state->mode = BAD;
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|                 break;
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|             }
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|             if (BITS(4) != Z_DEFLATED) {
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|                 strm->msg = (char *)"unknown compression method";
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|                 state->mode = BAD;
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|                 break;
 | |
|             }
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|             DROPBITS(4);
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|             len = BITS(4) + 8;
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|             if (len > state->wbits) {
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|                 strm->msg = (char *)"invalid window size";
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|                 state->mode = BAD;
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|                 break;
 | |
|             }
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|             state->dmax = 1U << len;
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|             Tracev((stderr, "inflate:   zlib header ok\n"));
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|             strm->adler = state->check = adler32(0L, Z_NULL, 0);
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|             state->mode = hold & 0x200 ? DICTID : TYPE;
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|             INITBITS();
 | |
|             break;
 | |
| #ifdef GUNZIP
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|         case FLAGS:
 | |
|             NEEDBITS(16);
 | |
|             state->flags = (int)(hold);
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|             if ((state->flags & 0xff) != Z_DEFLATED) {
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|                 strm->msg = (char *)"unknown compression method";
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|                 state->mode = BAD;
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|                 break;
 | |
|             }
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|             if (state->flags & 0xe000) {
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|                 strm->msg = (char *)"unknown header flags set";
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|                 state->mode = BAD;
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|                 break;
 | |
|             }
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|             if (state->head != Z_NULL)
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|                 state->head->text = (int)((hold >> 8) & 1);
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|             if (state->flags & 0x0200) CRC2(state->check, hold);
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|             INITBITS();
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|             state->mode = TIME;
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|         case TIME:
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|             NEEDBITS(32);
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|             if (state->head != Z_NULL)
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|                 state->head->time = hold;
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|             if (state->flags & 0x0200) CRC4(state->check, hold);
 | |
|             INITBITS();
 | |
|             state->mode = OS;
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|         case OS:
 | |
|             NEEDBITS(16);
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|             if (state->head != Z_NULL) {
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|                 state->head->xflags = (int)(hold & 0xff);
 | |
|                 state->head->os = (int)(hold >> 8);
 | |
|             }
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|             if (state->flags & 0x0200) CRC2(state->check, hold);
 | |
|             INITBITS();
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|             state->mode = EXLEN;
 | |
|         case EXLEN:
 | |
|             if (state->flags & 0x0400) {
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|                 NEEDBITS(16);
 | |
|                 state->length = (unsigned)(hold);
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|                 if (state->head != Z_NULL)
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|                     state->head->extra_len = (unsigned)hold;
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|                 if (state->flags & 0x0200) CRC2(state->check, hold);
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|                 INITBITS();
 | |
|             }
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|             else if (state->head != Z_NULL)
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|                 state->head->extra = Z_NULL;
 | |
|             state->mode = EXTRA;
 | |
|         case EXTRA:
 | |
|             if (state->flags & 0x0400) {
 | |
|                 copy = state->length;
 | |
|                 if (copy > have) copy = have;
 | |
|                 if (copy) {
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|                     if (state->head != Z_NULL &&
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|                         state->head->extra != Z_NULL) {
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|                         len = state->head->extra_len - state->length;
 | |
|                         zmemcpy(state->head->extra + len, next,
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|                                 len + copy > state->head->extra_max ?
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|                                 state->head->extra_max - len : copy);
 | |
|                     }
 | |
|                     if (state->flags & 0x0200)
 | |
|                         state->check = crc32(state->check, next, copy);
 | |
|                     have -= copy;
 | |
|                     next += copy;
 | |
|                     state->length -= copy;
 | |
|                 }
 | |
|                 if (state->length) goto inf_leave;
 | |
|             }
 | |
|             state->length = 0;
 | |
|             state->mode = NAME;
 | |
|         case NAME:
 | |
|             if (state->flags & 0x0800) {
 | |
|                 if (have == 0) goto inf_leave;
 | |
|                 copy = 0;
 | |
|                 do {
 | |
|                     len = (unsigned)(next[copy++]);
 | |
|                     if (state->head != Z_NULL &&
 | |
|                             state->head->name != Z_NULL &&
 | |
|                             state->length < state->head->name_max)
 | |
|                         state->head->name[state->length++] = len;
 | |
|                 } while (len && copy < have);
 | |
|                 if (state->flags & 0x0200)
 | |
|                     state->check = crc32(state->check, next, copy);
 | |
|                 have -= copy;
 | |
|                 next += copy;
 | |
|                 if (len) goto inf_leave;
 | |
|             }
 | |
|             else if (state->head != Z_NULL)
 | |
|                 state->head->name = Z_NULL;
 | |
|             state->length = 0;
 | |
|             state->mode = COMMENT;
 | |
|         case COMMENT:
 | |
|             if (state->flags & 0x1000) {
 | |
|                 if (have == 0) goto inf_leave;
 | |
|                 copy = 0;
 | |
|                 do {
 | |
|                     len = (unsigned)(next[copy++]);
 | |
|                     if (state->head != Z_NULL &&
 | |
|                             state->head->comment != Z_NULL &&
 | |
|                             state->length < state->head->comm_max)
 | |
|                         state->head->comment[state->length++] = len;
 | |
|                 } while (len && copy < have);
 | |
|                 if (state->flags & 0x0200)
 | |
|                     state->check = crc32(state->check, next, copy);
 | |
|                 have -= copy;
 | |
|                 next += copy;
 | |
|                 if (len) goto inf_leave;
 | |
|             }
 | |
|             else if (state->head != Z_NULL)
 | |
|                 state->head->comment = Z_NULL;
 | |
|             state->mode = HCRC;
 | |
|         case HCRC:
 | |
|             if (state->flags & 0x0200) {
 | |
|                 NEEDBITS(16);
 | |
|                 if (hold != (state->check & 0xffff)) {
 | |
|                     strm->msg = (char *)"header crc mismatch";
 | |
|                     state->mode = BAD;
 | |
|                     break;
 | |
|                 }
 | |
|                 INITBITS();
 | |
|             }
 | |
|             if (state->head != Z_NULL) {
 | |
|                 state->head->hcrc = (int)((state->flags >> 9) & 1);
 | |
|                 state->head->done = 1;
 | |
|             }
 | |
|             strm->adler = state->check = crc32(0L, Z_NULL, 0);
 | |
|             state->mode = TYPE;
 | |
|             break;
 | |
| #endif
 | |
|         case DICTID:
 | |
|             NEEDBITS(32);
 | |
|             strm->adler = state->check = REVERSE(hold);
 | |
|             INITBITS();
 | |
|             state->mode = DICT;
 | |
|         case DICT:
 | |
|             if (state->havedict == 0) {
 | |
|                 RESTORE();
 | |
|                 return Z_NEED_DICT;
 | |
|             }
 | |
|             strm->adler = state->check = adler32(0L, Z_NULL, 0);
 | |
|             state->mode = TYPE;
 | |
|         case TYPE:
 | |
| 	    WATCHDOG_RESET();
 | |
|             if (flush == Z_BLOCK) goto inf_leave;
 | |
|         case TYPEDO:
 | |
|             if (state->last) {
 | |
|                 BYTEBITS();
 | |
|                 state->mode = CHECK;
 | |
|                 break;
 | |
|             }
 | |
|             NEEDBITS(3);
 | |
|             state->last = BITS(1);
 | |
|             DROPBITS(1);
 | |
|             switch (BITS(2)) {
 | |
|             case 0:                             /* stored block */
 | |
|                 Tracev((stderr, "inflate:     stored block%s\n",
 | |
|                         state->last ? " (last)" : ""));
 | |
|                 state->mode = STORED;
 | |
|                 break;
 | |
|             case 1:                             /* fixed block */
 | |
|                 fixedtables(state);
 | |
|                 Tracev((stderr, "inflate:     fixed codes block%s\n",
 | |
|                         state->last ? " (last)" : ""));
 | |
|                 state->mode = LEN;              /* decode codes */
 | |
|                 break;
 | |
|             case 2:                             /* dynamic block */
 | |
|                 Tracev((stderr, "inflate:     dynamic codes block%s\n",
 | |
|                         state->last ? " (last)" : ""));
 | |
|                 state->mode = TABLE;
 | |
|                 break;
 | |
|             case 3:
 | |
|                 strm->msg = (char *)"invalid block type";
 | |
|                 state->mode = BAD;
 | |
|             }
 | |
|             DROPBITS(2);
 | |
|             break;
 | |
|         case STORED:
 | |
|             BYTEBITS();                         /* go to byte boundary */
 | |
|             NEEDBITS(32);
 | |
|             if ((hold & 0xffff) != ((hold >> 16) ^ 0xffff)) {
 | |
|                 strm->msg = (char *)"invalid stored block lengths";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             state->length = (unsigned)hold & 0xffff;
 | |
|             Tracev((stderr, "inflate:       stored length %u\n",
 | |
|                     state->length));
 | |
|             INITBITS();
 | |
|             state->mode = COPY;
 | |
|         case COPY:
 | |
|             copy = state->length;
 | |
|             if (copy) {
 | |
|                 if (copy > have) copy = have;
 | |
|                 if (copy > left) copy = left;
 | |
|                 if (copy == 0) goto inf_leave;
 | |
|                 zmemcpy(put, next, copy);
 | |
|                 have -= copy;
 | |
|                 next += copy;
 | |
|                 left -= copy;
 | |
|                 put += copy;
 | |
|                 state->length -= copy;
 | |
|                 break;
 | |
|             }
 | |
|             Tracev((stderr, "inflate:       stored end\n"));
 | |
|             state->mode = TYPE;
 | |
|             break;
 | |
|         case TABLE:
 | |
|             NEEDBITS(14);
 | |
|             state->nlen = BITS(5) + 257;
 | |
|             DROPBITS(5);
 | |
|             state->ndist = BITS(5) + 1;
 | |
|             DROPBITS(5);
 | |
|             state->ncode = BITS(4) + 4;
 | |
|             DROPBITS(4);
 | |
| #ifndef PKZIP_BUG_WORKAROUND
 | |
|             if (state->nlen > 286 || state->ndist > 30) {
 | |
|                 strm->msg = (char *)"too many length or distance symbols";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
| #endif
 | |
|             Tracev((stderr, "inflate:       table sizes ok\n"));
 | |
|             state->have = 0;
 | |
|             state->mode = LENLENS;
 | |
|         case LENLENS:
 | |
|             while (state->have < state->ncode) {
 | |
|                 NEEDBITS(3);
 | |
|                 state->lens[order[state->have++]] = (unsigned short)BITS(3);
 | |
|                 DROPBITS(3);
 | |
|             }
 | |
|             while (state->have < 19)
 | |
|                 state->lens[order[state->have++]] = 0;
 | |
|             state->next = state->codes;
 | |
|             state->lencode = (code const FAR *)(state->next);
 | |
|             state->lenbits = 7;
 | |
|             ret = inflate_table(CODES, state->lens, 19, &(state->next),
 | |
|                                 &(state->lenbits), state->work);
 | |
|             if (ret) {
 | |
|                 strm->msg = (char *)"invalid code lengths set";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             Tracev((stderr, "inflate:       code lengths ok\n"));
 | |
|             state->have = 0;
 | |
|             state->mode = CODELENS;
 | |
|         case CODELENS:
 | |
|             while (state->have < state->nlen + state->ndist) {
 | |
|                 for (;;) {
 | |
|                     this = state->lencode[BITS(state->lenbits)];
 | |
|                     if ((unsigned)(this.bits) <= bits) break;
 | |
|                     PULLBYTE();
 | |
|                 }
 | |
|                 if (this.val < 16) {
 | |
|                     NEEDBITS(this.bits);
 | |
|                     DROPBITS(this.bits);
 | |
|                     state->lens[state->have++] = this.val;
 | |
|                 }
 | |
|                 else {
 | |
|                     if (this.val == 16) {
 | |
|                         NEEDBITS(this.bits + 2);
 | |
|                         DROPBITS(this.bits);
 | |
|                         if (state->have == 0) {
 | |
|                             strm->msg = (char *)"invalid bit length repeat";
 | |
|                             state->mode = BAD;
 | |
|                             break;
 | |
|                         }
 | |
|                         len = state->lens[state->have - 1];
 | |
|                         copy = 3 + BITS(2);
 | |
|                         DROPBITS(2);
 | |
|                     }
 | |
|                     else if (this.val == 17) {
 | |
|                         NEEDBITS(this.bits + 3);
 | |
|                         DROPBITS(this.bits);
 | |
|                         len = 0;
 | |
|                         copy = 3 + BITS(3);
 | |
|                         DROPBITS(3);
 | |
|                     }
 | |
|                     else {
 | |
|                         NEEDBITS(this.bits + 7);
 | |
|                         DROPBITS(this.bits);
 | |
|                         len = 0;
 | |
|                         copy = 11 + BITS(7);
 | |
|                         DROPBITS(7);
 | |
|                     }
 | |
|                     if (state->have + copy > state->nlen + state->ndist) {
 | |
|                         strm->msg = (char *)"invalid bit length repeat";
 | |
|                         state->mode = BAD;
 | |
|                         break;
 | |
|                     }
 | |
|                     while (copy--)
 | |
|                         state->lens[state->have++] = (unsigned short)len;
 | |
|                 }
 | |
|             }
 | |
| 
 | |
|             /* handle error breaks in while */
 | |
|             if (state->mode == BAD) break;
 | |
| 
 | |
|             /* build code tables */
 | |
|             state->next = state->codes;
 | |
|             state->lencode = (code const FAR *)(state->next);
 | |
|             state->lenbits = 9;
 | |
|             ret = inflate_table(LENS, state->lens, state->nlen, &(state->next),
 | |
|                                 &(state->lenbits), state->work);
 | |
|             if (ret) {
 | |
|                 strm->msg = (char *)"invalid literal/lengths set";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             state->distcode = (code const FAR *)(state->next);
 | |
|             state->distbits = 6;
 | |
|             ret = inflate_table(DISTS, state->lens + state->nlen, state->ndist,
 | |
|                             &(state->next), &(state->distbits), state->work);
 | |
|             if (ret) {
 | |
|                 strm->msg = (char *)"invalid distances set";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             Tracev((stderr, "inflate:       codes ok\n"));
 | |
|             state->mode = LEN;
 | |
|         case LEN:
 | |
| 	    WATCHDOG_RESET();
 | |
|             if (have >= 6 && left >= 258) {
 | |
|                 RESTORE();
 | |
|                 inflate_fast(strm, out);
 | |
|                 LOAD();
 | |
|                 break;
 | |
|             }
 | |
|             for (;;) {
 | |
|                 this = state->lencode[BITS(state->lenbits)];
 | |
|                 if ((unsigned)(this.bits) <= bits) break;
 | |
|                 PULLBYTE();
 | |
|             }
 | |
|             if (this.op && (this.op & 0xf0) == 0) {
 | |
|                 last = this;
 | |
|                 for (;;) {
 | |
|                     this = state->lencode[last.val +
 | |
|                             (BITS(last.bits + last.op) >> last.bits)];
 | |
|                     if ((unsigned)(last.bits + this.bits) <= bits) break;
 | |
|                     PULLBYTE();
 | |
|                 }
 | |
|                 DROPBITS(last.bits);
 | |
|             }
 | |
|             DROPBITS(this.bits);
 | |
|             state->length = (unsigned)this.val;
 | |
|             if ((int)(this.op) == 0) {
 | |
|                 Tracevv((stderr, this.val >= 0x20 && this.val < 0x7f ?
 | |
|                         "inflate:         literal '%c'\n" :
 | |
|                         "inflate:         literal 0x%02x\n", this.val));
 | |
|                 state->mode = LIT;
 | |
|                 break;
 | |
|             }
 | |
|             if (this.op & 32) {
 | |
|                 Tracevv((stderr, "inflate:         end of block\n"));
 | |
|                 state->mode = TYPE;
 | |
|                 break;
 | |
|             }
 | |
|             if (this.op & 64) {
 | |
|                 strm->msg = (char *)"invalid literal/length code";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             state->extra = (unsigned)(this.op) & 15;
 | |
|             state->mode = LENEXT;
 | |
|         case LENEXT:
 | |
|             if (state->extra) {
 | |
|                 NEEDBITS(state->extra);
 | |
|                 state->length += BITS(state->extra);
 | |
|                 DROPBITS(state->extra);
 | |
|             }
 | |
|             Tracevv((stderr, "inflate:         length %u\n", state->length));
 | |
|             state->mode = DIST;
 | |
|         case DIST:
 | |
|             for (;;) {
 | |
|                 this = state->distcode[BITS(state->distbits)];
 | |
|                 if ((unsigned)(this.bits) <= bits) break;
 | |
|                 PULLBYTE();
 | |
|             }
 | |
|             if ((this.op & 0xf0) == 0) {
 | |
|                 last = this;
 | |
|                 for (;;) {
 | |
|                     this = state->distcode[last.val +
 | |
|                             (BITS(last.bits + last.op) >> last.bits)];
 | |
|                     if ((unsigned)(last.bits + this.bits) <= bits) break;
 | |
|                     PULLBYTE();
 | |
|                 }
 | |
|                 DROPBITS(last.bits);
 | |
|             }
 | |
|             DROPBITS(this.bits);
 | |
|             if (this.op & 64) {
 | |
|                 strm->msg = (char *)"invalid distance code";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             state->offset = (unsigned)this.val;
 | |
|             state->extra = (unsigned)(this.op) & 15;
 | |
|             state->mode = DISTEXT;
 | |
|         case DISTEXT:
 | |
|             if (state->extra) {
 | |
|                 NEEDBITS(state->extra);
 | |
|                 state->offset += BITS(state->extra);
 | |
|                 DROPBITS(state->extra);
 | |
|             }
 | |
| #ifdef INFLATE_STRICT
 | |
|             if (state->offset > state->dmax) {
 | |
|                 strm->msg = (char *)"invalid distance too far back";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
| #endif
 | |
|             if (state->offset > state->whave + out - left) {
 | |
|                 strm->msg = (char *)"invalid distance too far back";
 | |
|                 state->mode = BAD;
 | |
|                 break;
 | |
|             }
 | |
|             Tracevv((stderr, "inflate:         distance %u\n", state->offset));
 | |
|             state->mode = MATCH;
 | |
|         case MATCH:
 | |
|             if (left == 0) goto inf_leave;
 | |
|             copy = out - left;
 | |
|             if (state->offset > copy) {         /* copy from window */
 | |
|                 copy = state->offset - copy;
 | |
|                 if (copy > state->write) {
 | |
|                     copy -= state->write;
 | |
|                     from = state->window + (state->wsize - copy);
 | |
|                 }
 | |
|                 else
 | |
|                     from = state->window + (state->write - copy);
 | |
|                 if (copy > state->length) copy = state->length;
 | |
|             }
 | |
|             else {                              /* copy from output */
 | |
|                 from = put - state->offset;
 | |
|                 copy = state->length;
 | |
|             }
 | |
|             if (copy > left) copy = left;
 | |
|             left -= copy;
 | |
|             state->length -= copy;
 | |
|             do {
 | |
|                 *put++ = *from++;
 | |
|             } while (--copy);
 | |
|             if (state->length == 0) state->mode = LEN;
 | |
|             break;
 | |
|         case LIT:
 | |
|             if (left == 0) goto inf_leave;
 | |
|             *put++ = (unsigned char)(state->length);
 | |
|             left--;
 | |
|             state->mode = LEN;
 | |
|             break;
 | |
|         case CHECK:
 | |
|             if (state->wrap) {
 | |
|                 NEEDBITS(32);
 | |
|                 out -= left;
 | |
|                 strm->total_out += out;
 | |
|                 state->total += out;
 | |
|                 if (out)
 | |
|                     strm->adler = state->check =
 | |
|                         UPDATE(state->check, put - out, out);
 | |
|                 out = left;
 | |
|                 if ((
 | |
| #ifdef GUNZIP
 | |
|                      state->flags ? hold :
 | |
| #endif
 | |
|                      REVERSE(hold)) != state->check) {
 | |
|                     strm->msg = (char *)"incorrect data check";
 | |
|                     state->mode = BAD;
 | |
|                     break;
 | |
|                 }
 | |
|                 INITBITS();
 | |
|                 Tracev((stderr, "inflate:   check matches trailer\n"));
 | |
|             }
 | |
| #ifdef GUNZIP
 | |
|             state->mode = LENGTH;
 | |
|         case LENGTH:
 | |
|             if (state->wrap && state->flags) {
 | |
|                 NEEDBITS(32);
 | |
|                 if (hold != (state->total & 0xffffffffUL)) {
 | |
|                     strm->msg = (char *)"incorrect length check";
 | |
|                     state->mode = BAD;
 | |
|                     break;
 | |
|                 }
 | |
|                 INITBITS();
 | |
|                 Tracev((stderr, "inflate:   length matches trailer\n"));
 | |
|             }
 | |
| #endif
 | |
|             state->mode = DONE;
 | |
|         case DONE:
 | |
|             ret = Z_STREAM_END;
 | |
|             goto inf_leave;
 | |
|         case BAD:
 | |
|             ret = Z_DATA_ERROR;
 | |
|             goto inf_leave;
 | |
|         case MEM:
 | |
|             return Z_MEM_ERROR;
 | |
|         case SYNC:
 | |
|         default:
 | |
|             return Z_STREAM_ERROR;
 | |
|         }
 | |
| 
 | |
|     /*
 | |
|        Return from inflate(), updating the total counts and the check value.
 | |
|        If there was no progress during the inflate() call, return a buffer
 | |
|        error.  Call updatewindow() to create and/or update the window state.
 | |
|        Note: a memory error from inflate() is non-recoverable.
 | |
|      */
 | |
|   inf_leave:
 | |
|     RESTORE();
 | |
|     if (state->wsize || (state->mode < CHECK && out != strm->avail_out))
 | |
|         if (updatewindow(strm, out)) {
 | |
|             state->mode = MEM;
 | |
|             return Z_MEM_ERROR;
 | |
|         }
 | |
|     in -= strm->avail_in;
 | |
|     out -= strm->avail_out;
 | |
|     strm->total_in += in;
 | |
|     strm->total_out += out;
 | |
|     state->total += out;
 | |
|     if (state->wrap && out)
 | |
|         strm->adler = state->check =
 | |
|             UPDATE(state->check, strm->next_out - out, out);
 | |
|     strm->data_type = state->bits + (state->last ? 64 : 0) +
 | |
|                       (state->mode == TYPE ? 128 : 0);
 | |
|     if (((in == 0 && out == 0) || flush == Z_FINISH) && ret == Z_OK)
 | |
|         ret = Z_BUF_ERROR;
 | |
|     return ret;
 | |
| }
 | |
| 
 | |
| int ZEXPORT inflateEnd(strm)
 | |
| z_streamp strm;
 | |
| {
 | |
|     struct inflate_state FAR *state;
 | |
|     if (strm == Z_NULL || strm->state == Z_NULL || strm->zfree == (free_func)0)
 | |
|         return Z_STREAM_ERROR;
 | |
|     state = (struct inflate_state FAR *)strm->state;
 | |
|     if (state->window != Z_NULL) {
 | |
| 	WATCHDOG_RESET();
 | |
| 	ZFREE(strm, state->window);
 | |
|     }
 | |
|     ZFREE(strm, strm->state);
 | |
|     strm->state = Z_NULL;
 | |
|     Tracev((stderr, "inflate: end\n"));
 | |
|     return Z_OK;
 | |
| }
 |