1*4a5d661aSToomas Soome /* infcover.c -- test zlib's inflate routines with full code coverage
2*4a5d661aSToomas Soome * Copyright (C) 2011 Mark Adler
3*4a5d661aSToomas Soome * For conditions of distribution and use, see copyright notice in zlib.h
4*4a5d661aSToomas Soome */
5*4a5d661aSToomas Soome
6*4a5d661aSToomas Soome /* to use, do: ./configure --cover && make cover */
7*4a5d661aSToomas Soome
8*4a5d661aSToomas Soome #include <stdio.h>
9*4a5d661aSToomas Soome #include <stdlib.h>
10*4a5d661aSToomas Soome #include <string.h>
11*4a5d661aSToomas Soome #include <assert.h>
12*4a5d661aSToomas Soome #include "zlib.h"
13*4a5d661aSToomas Soome
14*4a5d661aSToomas Soome /* get definition of internal structure so we can mess with it (see pull()),
15*4a5d661aSToomas Soome and so we can call inflate_trees() (see cover5()) */
16*4a5d661aSToomas Soome #define ZLIB_INTERNAL
17*4a5d661aSToomas Soome #include "inftrees.h"
18*4a5d661aSToomas Soome #include "inflate.h"
19*4a5d661aSToomas Soome
20*4a5d661aSToomas Soome #define local static
21*4a5d661aSToomas Soome
22*4a5d661aSToomas Soome /* -- memory tracking routines -- */
23*4a5d661aSToomas Soome
24*4a5d661aSToomas Soome /*
25*4a5d661aSToomas Soome These memory tracking routines are provided to zlib and track all of zlib's
26*4a5d661aSToomas Soome allocations and deallocations, check for LIFO operations, keep a current
27*4a5d661aSToomas Soome and high water mark of total bytes requested, optionally set a limit on the
28*4a5d661aSToomas Soome total memory that can be allocated, and when done check for memory leaks.
29*4a5d661aSToomas Soome
30*4a5d661aSToomas Soome They are used as follows:
31*4a5d661aSToomas Soome
32*4a5d661aSToomas Soome z_stream strm;
33*4a5d661aSToomas Soome mem_setup(&strm) initializes the memory tracking and sets the
34*4a5d661aSToomas Soome zalloc, zfree, and opaque members of strm to use
35*4a5d661aSToomas Soome memory tracking for all zlib operations on strm
36*4a5d661aSToomas Soome mem_limit(&strm, limit) sets a limit on the total bytes requested -- a
37*4a5d661aSToomas Soome request that exceeds this limit will result in an
38*4a5d661aSToomas Soome allocation failure (returns NULL) -- setting the
39*4a5d661aSToomas Soome limit to zero means no limit, which is the default
40*4a5d661aSToomas Soome after mem_setup()
41*4a5d661aSToomas Soome mem_used(&strm, "msg") prints to stderr "msg" and the total bytes used
42*4a5d661aSToomas Soome mem_high(&strm, "msg") prints to stderr "msg" and the high water mark
43*4a5d661aSToomas Soome mem_done(&strm, "msg") ends memory tracking, releases all allocations
44*4a5d661aSToomas Soome for the tracking as well as leaked zlib blocks, if
45*4a5d661aSToomas Soome any. If there was anything unusual, such as leaked
46*4a5d661aSToomas Soome blocks, non-FIFO frees, or frees of addresses not
47*4a5d661aSToomas Soome allocated, then "msg" and information about the
48*4a5d661aSToomas Soome problem is printed to stderr. If everything is
49*4a5d661aSToomas Soome normal, nothing is printed. mem_done resets the
50*4a5d661aSToomas Soome strm members to Z_NULL to use the default memory
51*4a5d661aSToomas Soome allocation routines on the next zlib initialization
52*4a5d661aSToomas Soome using strm.
53*4a5d661aSToomas Soome */
54*4a5d661aSToomas Soome
55*4a5d661aSToomas Soome /* these items are strung together in a linked list, one for each allocation */
56*4a5d661aSToomas Soome struct mem_item {
57*4a5d661aSToomas Soome void *ptr; /* pointer to allocated memory */
58*4a5d661aSToomas Soome size_t size; /* requested size of allocation */
59*4a5d661aSToomas Soome struct mem_item *next; /* pointer to next item in list, or NULL */
60*4a5d661aSToomas Soome };
61*4a5d661aSToomas Soome
62*4a5d661aSToomas Soome /* this structure is at the root of the linked list, and tracks statistics */
63*4a5d661aSToomas Soome struct mem_zone {
64*4a5d661aSToomas Soome struct mem_item *first; /* pointer to first item in list, or NULL */
65*4a5d661aSToomas Soome size_t total, highwater; /* total allocations, and largest total */
66*4a5d661aSToomas Soome size_t limit; /* memory allocation limit, or 0 if no limit */
67*4a5d661aSToomas Soome int notlifo, rogue; /* counts of non-LIFO frees and rogue frees */
68*4a5d661aSToomas Soome };
69*4a5d661aSToomas Soome
70*4a5d661aSToomas Soome /* memory allocation routine to pass to zlib */
mem_alloc(void * mem,unsigned count,unsigned size)71*4a5d661aSToomas Soome local void *mem_alloc(void *mem, unsigned count, unsigned size)
72*4a5d661aSToomas Soome {
73*4a5d661aSToomas Soome void *ptr;
74*4a5d661aSToomas Soome struct mem_item *item;
75*4a5d661aSToomas Soome struct mem_zone *zone = mem;
76*4a5d661aSToomas Soome size_t len = count * (size_t)size;
77*4a5d661aSToomas Soome
78*4a5d661aSToomas Soome /* induced allocation failure */
79*4a5d661aSToomas Soome if (zone == NULL || (zone->limit && zone->total + len > zone->limit))
80*4a5d661aSToomas Soome return NULL;
81*4a5d661aSToomas Soome
82*4a5d661aSToomas Soome /* perform allocation using the standard library, fill memory with a
83*4a5d661aSToomas Soome non-zero value to make sure that the code isn't depending on zeros */
84*4a5d661aSToomas Soome ptr = malloc(len);
85*4a5d661aSToomas Soome if (ptr == NULL)
86*4a5d661aSToomas Soome return NULL;
87*4a5d661aSToomas Soome memset(ptr, 0xa5, len);
88*4a5d661aSToomas Soome
89*4a5d661aSToomas Soome /* create a new item for the list */
90*4a5d661aSToomas Soome item = malloc(sizeof(struct mem_item));
91*4a5d661aSToomas Soome if (item == NULL) {
92*4a5d661aSToomas Soome free(ptr);
93*4a5d661aSToomas Soome return NULL;
94*4a5d661aSToomas Soome }
95*4a5d661aSToomas Soome item->ptr = ptr;
96*4a5d661aSToomas Soome item->size = len;
97*4a5d661aSToomas Soome
98*4a5d661aSToomas Soome /* insert item at the beginning of the list */
99*4a5d661aSToomas Soome item->next = zone->first;
100*4a5d661aSToomas Soome zone->first = item;
101*4a5d661aSToomas Soome
102*4a5d661aSToomas Soome /* update the statistics */
103*4a5d661aSToomas Soome zone->total += item->size;
104*4a5d661aSToomas Soome if (zone->total > zone->highwater)
105*4a5d661aSToomas Soome zone->highwater = zone->total;
106*4a5d661aSToomas Soome
107*4a5d661aSToomas Soome /* return the allocated memory */
108*4a5d661aSToomas Soome return ptr;
109*4a5d661aSToomas Soome }
110*4a5d661aSToomas Soome
111*4a5d661aSToomas Soome /* memory free routine to pass to zlib */
mem_free(void * mem,void * ptr)112*4a5d661aSToomas Soome local void mem_free(void *mem, void *ptr)
113*4a5d661aSToomas Soome {
114*4a5d661aSToomas Soome struct mem_item *item, *next;
115*4a5d661aSToomas Soome struct mem_zone *zone = mem;
116*4a5d661aSToomas Soome
117*4a5d661aSToomas Soome /* if no zone, just do a free */
118*4a5d661aSToomas Soome if (zone == NULL) {
119*4a5d661aSToomas Soome free(ptr);
120*4a5d661aSToomas Soome return;
121*4a5d661aSToomas Soome }
122*4a5d661aSToomas Soome
123*4a5d661aSToomas Soome /* point next to the item that matches ptr, or NULL if not found -- remove
124*4a5d661aSToomas Soome the item from the linked list if found */
125*4a5d661aSToomas Soome next = zone->first;
126*4a5d661aSToomas Soome if (next) {
127*4a5d661aSToomas Soome if (next->ptr == ptr)
128*4a5d661aSToomas Soome zone->first = next->next; /* first one is it, remove from list */
129*4a5d661aSToomas Soome else {
130*4a5d661aSToomas Soome do { /* search the linked list */
131*4a5d661aSToomas Soome item = next;
132*4a5d661aSToomas Soome next = item->next;
133*4a5d661aSToomas Soome } while (next != NULL && next->ptr != ptr);
134*4a5d661aSToomas Soome if (next) { /* if found, remove from linked list */
135*4a5d661aSToomas Soome item->next = next->next;
136*4a5d661aSToomas Soome zone->notlifo++; /* not a LIFO free */
137*4a5d661aSToomas Soome }
138*4a5d661aSToomas Soome
139*4a5d661aSToomas Soome }
140*4a5d661aSToomas Soome }
141*4a5d661aSToomas Soome
142*4a5d661aSToomas Soome /* if found, update the statistics and free the item */
143*4a5d661aSToomas Soome if (next) {
144*4a5d661aSToomas Soome zone->total -= next->size;
145*4a5d661aSToomas Soome free(next);
146*4a5d661aSToomas Soome }
147*4a5d661aSToomas Soome
148*4a5d661aSToomas Soome /* if not found, update the rogue count */
149*4a5d661aSToomas Soome else
150*4a5d661aSToomas Soome zone->rogue++;
151*4a5d661aSToomas Soome
152*4a5d661aSToomas Soome /* in any case, do the requested free with the standard library function */
153*4a5d661aSToomas Soome free(ptr);
154*4a5d661aSToomas Soome }
155*4a5d661aSToomas Soome
156*4a5d661aSToomas Soome /* set up a controlled memory allocation space for monitoring, set the stream
157*4a5d661aSToomas Soome parameters to the controlled routines, with opaque pointing to the space */
mem_setup(z_stream * strm)158*4a5d661aSToomas Soome local void mem_setup(z_stream *strm)
159*4a5d661aSToomas Soome {
160*4a5d661aSToomas Soome struct mem_zone *zone;
161*4a5d661aSToomas Soome
162*4a5d661aSToomas Soome zone = malloc(sizeof(struct mem_zone));
163*4a5d661aSToomas Soome assert(zone != NULL);
164*4a5d661aSToomas Soome zone->first = NULL;
165*4a5d661aSToomas Soome zone->total = 0;
166*4a5d661aSToomas Soome zone->highwater = 0;
167*4a5d661aSToomas Soome zone->limit = 0;
168*4a5d661aSToomas Soome zone->notlifo = 0;
169*4a5d661aSToomas Soome zone->rogue = 0;
170*4a5d661aSToomas Soome strm->opaque = zone;
171*4a5d661aSToomas Soome strm->zalloc = mem_alloc;
172*4a5d661aSToomas Soome strm->zfree = mem_free;
173*4a5d661aSToomas Soome }
174*4a5d661aSToomas Soome
175*4a5d661aSToomas Soome /* set a limit on the total memory allocation, or 0 to remove the limit */
mem_limit(z_stream * strm,size_t limit)176*4a5d661aSToomas Soome local void mem_limit(z_stream *strm, size_t limit)
177*4a5d661aSToomas Soome {
178*4a5d661aSToomas Soome struct mem_zone *zone = strm->opaque;
179*4a5d661aSToomas Soome
180*4a5d661aSToomas Soome zone->limit = limit;
181*4a5d661aSToomas Soome }
182*4a5d661aSToomas Soome
183*4a5d661aSToomas Soome /* show the current total requested allocations in bytes */
mem_used(z_stream * strm,char * prefix)184*4a5d661aSToomas Soome local void mem_used(z_stream *strm, char *prefix)
185*4a5d661aSToomas Soome {
186*4a5d661aSToomas Soome struct mem_zone *zone = strm->opaque;
187*4a5d661aSToomas Soome
188*4a5d661aSToomas Soome fprintf(stderr, "%s: %lu allocated\n", prefix, zone->total);
189*4a5d661aSToomas Soome }
190*4a5d661aSToomas Soome
191*4a5d661aSToomas Soome /* show the high water allocation in bytes */
mem_high(z_stream * strm,char * prefix)192*4a5d661aSToomas Soome local void mem_high(z_stream *strm, char *prefix)
193*4a5d661aSToomas Soome {
194*4a5d661aSToomas Soome struct mem_zone *zone = strm->opaque;
195*4a5d661aSToomas Soome
196*4a5d661aSToomas Soome fprintf(stderr, "%s: %lu high water mark\n", prefix, zone->highwater);
197*4a5d661aSToomas Soome }
198*4a5d661aSToomas Soome
199*4a5d661aSToomas Soome /* release the memory allocation zone -- if there are any surprises, notify */
mem_done(z_stream * strm,char * prefix)200*4a5d661aSToomas Soome local void mem_done(z_stream *strm, char *prefix)
201*4a5d661aSToomas Soome {
202*4a5d661aSToomas Soome int count = 0;
203*4a5d661aSToomas Soome struct mem_item *item, *next;
204*4a5d661aSToomas Soome struct mem_zone *zone = strm->opaque;
205*4a5d661aSToomas Soome
206*4a5d661aSToomas Soome /* show high water mark */
207*4a5d661aSToomas Soome mem_high(strm, prefix);
208*4a5d661aSToomas Soome
209*4a5d661aSToomas Soome /* free leftover allocations and item structures, if any */
210*4a5d661aSToomas Soome item = zone->first;
211*4a5d661aSToomas Soome while (item != NULL) {
212*4a5d661aSToomas Soome free(item->ptr);
213*4a5d661aSToomas Soome next = item->next;
214*4a5d661aSToomas Soome free(item);
215*4a5d661aSToomas Soome item = next;
216*4a5d661aSToomas Soome count++;
217*4a5d661aSToomas Soome }
218*4a5d661aSToomas Soome
219*4a5d661aSToomas Soome /* issue alerts about anything unexpected */
220*4a5d661aSToomas Soome if (count || zone->total)
221*4a5d661aSToomas Soome fprintf(stderr, "** %s: %lu bytes in %d blocks not freed\n",
222*4a5d661aSToomas Soome prefix, zone->total, count);
223*4a5d661aSToomas Soome if (zone->notlifo)
224*4a5d661aSToomas Soome fprintf(stderr, "** %s: %d frees not LIFO\n", prefix, zone->notlifo);
225*4a5d661aSToomas Soome if (zone->rogue)
226*4a5d661aSToomas Soome fprintf(stderr, "** %s: %d frees not recognized\n",
227*4a5d661aSToomas Soome prefix, zone->rogue);
228*4a5d661aSToomas Soome
229*4a5d661aSToomas Soome /* free the zone and delete from the stream */
230*4a5d661aSToomas Soome free(zone);
231*4a5d661aSToomas Soome strm->opaque = Z_NULL;
232*4a5d661aSToomas Soome strm->zalloc = Z_NULL;
233*4a5d661aSToomas Soome strm->zfree = Z_NULL;
234*4a5d661aSToomas Soome }
235*4a5d661aSToomas Soome
236*4a5d661aSToomas Soome /* -- inflate test routines -- */
237*4a5d661aSToomas Soome
238*4a5d661aSToomas Soome /* Decode a hexadecimal string, set *len to length, in[] to the bytes. This
239*4a5d661aSToomas Soome decodes liberally, in that hex digits can be adjacent, in which case two in
240*4a5d661aSToomas Soome a row writes a byte. Or they can delimited by any non-hex character, where
241*4a5d661aSToomas Soome the delimiters are ignored except when a single hex digit is followed by a
242*4a5d661aSToomas Soome delimiter in which case that single digit writes a byte. The returned
243*4a5d661aSToomas Soome data is allocated and must eventually be freed. NULL is returned if out of
244*4a5d661aSToomas Soome memory. If the length is not needed, then len can be NULL. */
h2b(const char * hex,unsigned * len)245*4a5d661aSToomas Soome local unsigned char *h2b(const char *hex, unsigned *len)
246*4a5d661aSToomas Soome {
247*4a5d661aSToomas Soome unsigned char *in;
248*4a5d661aSToomas Soome unsigned next, val;
249*4a5d661aSToomas Soome
250*4a5d661aSToomas Soome in = malloc((strlen(hex) + 1) >> 1);
251*4a5d661aSToomas Soome if (in == NULL)
252*4a5d661aSToomas Soome return NULL;
253*4a5d661aSToomas Soome next = 0;
254*4a5d661aSToomas Soome val = 1;
255*4a5d661aSToomas Soome do {
256*4a5d661aSToomas Soome if (*hex >= '0' && *hex <= '9')
257*4a5d661aSToomas Soome val = (val << 4) + *hex - '0';
258*4a5d661aSToomas Soome else if (*hex >= 'A' && *hex <= 'F')
259*4a5d661aSToomas Soome val = (val << 4) + *hex - 'A' + 10;
260*4a5d661aSToomas Soome else if (*hex >= 'a' && *hex <= 'f')
261*4a5d661aSToomas Soome val = (val << 4) + *hex - 'a' + 10;
262*4a5d661aSToomas Soome else if (val != 1 && val < 32) /* one digit followed by delimiter */
263*4a5d661aSToomas Soome val += 240; /* make it look like two digits */
264*4a5d661aSToomas Soome if (val > 255) { /* have two digits */
265*4a5d661aSToomas Soome in[next++] = val & 0xff; /* save the decoded byte */
266*4a5d661aSToomas Soome val = 1; /* start over */
267*4a5d661aSToomas Soome }
268*4a5d661aSToomas Soome } while (*hex++); /* go through the loop with the terminating null */
269*4a5d661aSToomas Soome if (len != NULL)
270*4a5d661aSToomas Soome *len = next;
271*4a5d661aSToomas Soome in = reallocf(in, next);
272*4a5d661aSToomas Soome return in;
273*4a5d661aSToomas Soome }
274*4a5d661aSToomas Soome
275*4a5d661aSToomas Soome /* generic inflate() run, where hex is the hexadecimal input data, what is the
276*4a5d661aSToomas Soome text to include in an error message, step is how much input data to feed
277*4a5d661aSToomas Soome inflate() on each call, or zero to feed it all, win is the window bits
278*4a5d661aSToomas Soome parameter to inflateInit2(), len is the size of the output buffer, and err
279*4a5d661aSToomas Soome is the error code expected from the first inflate() call (the second
280*4a5d661aSToomas Soome inflate() call is expected to return Z_STREAM_END). If win is 47, then
281*4a5d661aSToomas Soome header information is collected with inflateGetHeader(). If a zlib stream
282*4a5d661aSToomas Soome is looking for a dictionary, then an empty dictionary is provided.
283*4a5d661aSToomas Soome inflate() is run until all of the input data is consumed. */
inf(char * hex,char * what,unsigned step,int win,unsigned len,int err)284*4a5d661aSToomas Soome local void inf(char *hex, char *what, unsigned step, int win, unsigned len,
285*4a5d661aSToomas Soome int err)
286*4a5d661aSToomas Soome {
287*4a5d661aSToomas Soome int ret;
288*4a5d661aSToomas Soome unsigned have;
289*4a5d661aSToomas Soome unsigned char *in, *out;
290*4a5d661aSToomas Soome z_stream strm, copy;
291*4a5d661aSToomas Soome gz_header head;
292*4a5d661aSToomas Soome
293*4a5d661aSToomas Soome mem_setup(&strm);
294*4a5d661aSToomas Soome strm.avail_in = 0;
295*4a5d661aSToomas Soome strm.next_in = Z_NULL;
296*4a5d661aSToomas Soome ret = inflateInit2(&strm, win);
297*4a5d661aSToomas Soome if (ret != Z_OK) {
298*4a5d661aSToomas Soome mem_done(&strm, what);
299*4a5d661aSToomas Soome return;
300*4a5d661aSToomas Soome }
301*4a5d661aSToomas Soome out = malloc(len); assert(out != NULL);
302*4a5d661aSToomas Soome if (win == 47) {
303*4a5d661aSToomas Soome head.extra = out;
304*4a5d661aSToomas Soome head.extra_max = len;
305*4a5d661aSToomas Soome head.name = out;
306*4a5d661aSToomas Soome head.name_max = len;
307*4a5d661aSToomas Soome head.comment = out;
308*4a5d661aSToomas Soome head.comm_max = len;
309*4a5d661aSToomas Soome ret = inflateGetHeader(&strm, &head); assert(ret == Z_OK);
310*4a5d661aSToomas Soome }
311*4a5d661aSToomas Soome in = h2b(hex, &have); assert(in != NULL);
312*4a5d661aSToomas Soome if (step == 0 || step > have)
313*4a5d661aSToomas Soome step = have;
314*4a5d661aSToomas Soome strm.avail_in = step;
315*4a5d661aSToomas Soome have -= step;
316*4a5d661aSToomas Soome strm.next_in = in;
317*4a5d661aSToomas Soome do {
318*4a5d661aSToomas Soome strm.avail_out = len;
319*4a5d661aSToomas Soome strm.next_out = out;
320*4a5d661aSToomas Soome ret = inflate(&strm, Z_NO_FLUSH); assert(err == 9 || ret == err);
321*4a5d661aSToomas Soome if (ret != Z_OK && ret != Z_BUF_ERROR && ret != Z_NEED_DICT)
322*4a5d661aSToomas Soome break;
323*4a5d661aSToomas Soome if (ret == Z_NEED_DICT) {
324*4a5d661aSToomas Soome ret = inflateSetDictionary(&strm, in, 1);
325*4a5d661aSToomas Soome assert(ret == Z_DATA_ERROR);
326*4a5d661aSToomas Soome mem_limit(&strm, 1);
327*4a5d661aSToomas Soome ret = inflateSetDictionary(&strm, out, 0);
328*4a5d661aSToomas Soome assert(ret == Z_MEM_ERROR);
329*4a5d661aSToomas Soome mem_limit(&strm, 0);
330*4a5d661aSToomas Soome ((struct inflate_state *)strm.state)->mode = DICT;
331*4a5d661aSToomas Soome ret = inflateSetDictionary(&strm, out, 0);
332*4a5d661aSToomas Soome assert(ret == Z_OK);
333*4a5d661aSToomas Soome ret = inflate(&strm, Z_NO_FLUSH); assert(ret == Z_BUF_ERROR);
334*4a5d661aSToomas Soome }
335*4a5d661aSToomas Soome ret = inflateCopy(©, &strm); assert(ret == Z_OK);
336*4a5d661aSToomas Soome ret = inflateEnd(©); assert(ret == Z_OK);
337*4a5d661aSToomas Soome err = 9; /* don't care next time around */
338*4a5d661aSToomas Soome have += strm.avail_in;
339*4a5d661aSToomas Soome strm.avail_in = step > have ? have : step;
340*4a5d661aSToomas Soome have -= strm.avail_in;
341*4a5d661aSToomas Soome } while (strm.avail_in);
342*4a5d661aSToomas Soome free(in);
343*4a5d661aSToomas Soome free(out);
344*4a5d661aSToomas Soome ret = inflateReset2(&strm, -8); assert(ret == Z_OK);
345*4a5d661aSToomas Soome ret = inflateEnd(&strm); assert(ret == Z_OK);
346*4a5d661aSToomas Soome mem_done(&strm, what);
347*4a5d661aSToomas Soome }
348*4a5d661aSToomas Soome
349*4a5d661aSToomas Soome /* cover all of the lines in inflate.c up to inflate() */
cover_support(void)350*4a5d661aSToomas Soome local void cover_support(void)
351*4a5d661aSToomas Soome {
352*4a5d661aSToomas Soome int ret;
353*4a5d661aSToomas Soome z_stream strm;
354*4a5d661aSToomas Soome
355*4a5d661aSToomas Soome mem_setup(&strm);
356*4a5d661aSToomas Soome strm.avail_in = 0;
357*4a5d661aSToomas Soome strm.next_in = Z_NULL;
358*4a5d661aSToomas Soome ret = inflateInit(&strm); assert(ret == Z_OK);
359*4a5d661aSToomas Soome mem_used(&strm, "inflate init");
360*4a5d661aSToomas Soome ret = inflatePrime(&strm, 5, 31); assert(ret == Z_OK);
361*4a5d661aSToomas Soome ret = inflatePrime(&strm, -1, 0); assert(ret == Z_OK);
362*4a5d661aSToomas Soome ret = inflateSetDictionary(&strm, Z_NULL, 0);
363*4a5d661aSToomas Soome assert(ret == Z_STREAM_ERROR);
364*4a5d661aSToomas Soome ret = inflateEnd(&strm); assert(ret == Z_OK);
365*4a5d661aSToomas Soome mem_done(&strm, "prime");
366*4a5d661aSToomas Soome
367*4a5d661aSToomas Soome inf("63 0", "force window allocation", 0, -15, 1, Z_OK);
368*4a5d661aSToomas Soome inf("63 18 5", "force window replacement", 0, -8, 259, Z_OK);
369*4a5d661aSToomas Soome inf("63 18 68 30 d0 0 0", "force split window update", 4, -8, 259, Z_OK);
370*4a5d661aSToomas Soome inf("3 0", "use fixed blocks", 0, -15, 1, Z_STREAM_END);
371*4a5d661aSToomas Soome inf("", "bad window size", 0, 1, 0, Z_STREAM_ERROR);
372*4a5d661aSToomas Soome
373*4a5d661aSToomas Soome mem_setup(&strm);
374*4a5d661aSToomas Soome strm.avail_in = 0;
375*4a5d661aSToomas Soome strm.next_in = Z_NULL;
376*4a5d661aSToomas Soome ret = inflateInit_(&strm, ZLIB_VERSION - 1, (int)sizeof(z_stream));
377*4a5d661aSToomas Soome assert(ret == Z_VERSION_ERROR);
378*4a5d661aSToomas Soome mem_done(&strm, "wrong version");
379*4a5d661aSToomas Soome
380*4a5d661aSToomas Soome strm.avail_in = 0;
381*4a5d661aSToomas Soome strm.next_in = Z_NULL;
382*4a5d661aSToomas Soome ret = inflateInit(&strm); assert(ret == Z_OK);
383*4a5d661aSToomas Soome ret = inflateEnd(&strm); assert(ret == Z_OK);
384*4a5d661aSToomas Soome fputs("inflate built-in memory routines\n", stderr);
385*4a5d661aSToomas Soome }
386*4a5d661aSToomas Soome
387*4a5d661aSToomas Soome /* cover all inflate() header and trailer cases and code after inflate() */
cover_wrap(void)388*4a5d661aSToomas Soome local void cover_wrap(void)
389*4a5d661aSToomas Soome {
390*4a5d661aSToomas Soome int ret;
391*4a5d661aSToomas Soome z_stream strm, copy;
392*4a5d661aSToomas Soome unsigned char dict[257];
393*4a5d661aSToomas Soome
394*4a5d661aSToomas Soome ret = inflate(Z_NULL, 0); assert(ret == Z_STREAM_ERROR);
395*4a5d661aSToomas Soome ret = inflateEnd(Z_NULL); assert(ret == Z_STREAM_ERROR);
396*4a5d661aSToomas Soome ret = inflateCopy(Z_NULL, Z_NULL); assert(ret == Z_STREAM_ERROR);
397*4a5d661aSToomas Soome fputs("inflate bad parameters\n", stderr);
398*4a5d661aSToomas Soome
399*4a5d661aSToomas Soome inf("1f 8b 0 0", "bad gzip method", 0, 31, 0, Z_DATA_ERROR);
400*4a5d661aSToomas Soome inf("1f 8b 8 80", "bad gzip flags", 0, 31, 0, Z_DATA_ERROR);
401*4a5d661aSToomas Soome inf("77 85", "bad zlib method", 0, 15, 0, Z_DATA_ERROR);
402*4a5d661aSToomas Soome inf("8 99", "set window size from header", 0, 0, 0, Z_OK);
403*4a5d661aSToomas Soome inf("78 9c", "bad zlib window size", 0, 8, 0, Z_DATA_ERROR);
404*4a5d661aSToomas Soome inf("78 9c 63 0 0 0 1 0 1", "check adler32", 0, 15, 1, Z_STREAM_END);
405*4a5d661aSToomas Soome inf("1f 8b 8 1e 0 0 0 0 0 0 1 0 0 0 0 0 0", "bad header crc", 0, 47, 1,
406*4a5d661aSToomas Soome Z_DATA_ERROR);
407*4a5d661aSToomas Soome inf("1f 8b 8 2 0 0 0 0 0 0 1d 26 3 0 0 0 0 0 0 0 0 0", "check gzip length",
408*4a5d661aSToomas Soome 0, 47, 0, Z_STREAM_END);
409*4a5d661aSToomas Soome inf("78 90", "bad zlib header check", 0, 47, 0, Z_DATA_ERROR);
410*4a5d661aSToomas Soome inf("8 b8 0 0 0 1", "need dictionary", 0, 8, 0, Z_NEED_DICT);
411*4a5d661aSToomas Soome inf("78 9c 63 0", "compute adler32", 0, 15, 1, Z_OK);
412*4a5d661aSToomas Soome
413*4a5d661aSToomas Soome mem_setup(&strm);
414*4a5d661aSToomas Soome strm.avail_in = 0;
415*4a5d661aSToomas Soome strm.next_in = Z_NULL;
416*4a5d661aSToomas Soome ret = inflateInit2(&strm, -8);
417*4a5d661aSToomas Soome strm.avail_in = 2;
418*4a5d661aSToomas Soome strm.next_in = (void *)"\x63";
419*4a5d661aSToomas Soome strm.avail_out = 1;
420*4a5d661aSToomas Soome strm.next_out = (void *)&ret;
421*4a5d661aSToomas Soome mem_limit(&strm, 1);
422*4a5d661aSToomas Soome ret = inflate(&strm, Z_NO_FLUSH); assert(ret == Z_MEM_ERROR);
423*4a5d661aSToomas Soome ret = inflate(&strm, Z_NO_FLUSH); assert(ret == Z_MEM_ERROR);
424*4a5d661aSToomas Soome mem_limit(&strm, 0);
425*4a5d661aSToomas Soome memset(dict, 0, 257);
426*4a5d661aSToomas Soome ret = inflateSetDictionary(&strm, dict, 257);
427*4a5d661aSToomas Soome assert(ret == Z_OK);
428*4a5d661aSToomas Soome mem_limit(&strm, (sizeof(struct inflate_state) << 1) + 256);
429*4a5d661aSToomas Soome ret = inflatePrime(&strm, 16, 0); assert(ret == Z_OK);
430*4a5d661aSToomas Soome strm.avail_in = 2;
431*4a5d661aSToomas Soome strm.next_in = (void *)"\x80";
432*4a5d661aSToomas Soome ret = inflateSync(&strm); assert(ret == Z_DATA_ERROR);
433*4a5d661aSToomas Soome ret = inflate(&strm, Z_NO_FLUSH); assert(ret == Z_STREAM_ERROR);
434*4a5d661aSToomas Soome strm.avail_in = 4;
435*4a5d661aSToomas Soome strm.next_in = (void *)"\0\0\xff\xff";
436*4a5d661aSToomas Soome ret = inflateSync(&strm); assert(ret == Z_OK);
437*4a5d661aSToomas Soome (void)inflateSyncPoint(&strm);
438*4a5d661aSToomas Soome ret = inflateCopy(©, &strm); assert(ret == Z_MEM_ERROR);
439*4a5d661aSToomas Soome mem_limit(&strm, 0);
440*4a5d661aSToomas Soome ret = inflateUndermine(&strm, 1); assert(ret == Z_DATA_ERROR);
441*4a5d661aSToomas Soome (void)inflateMark(&strm);
442*4a5d661aSToomas Soome ret = inflateEnd(&strm); assert(ret == Z_OK);
443*4a5d661aSToomas Soome mem_done(&strm, "miscellaneous, force memory errors");
444*4a5d661aSToomas Soome }
445*4a5d661aSToomas Soome
446*4a5d661aSToomas Soome /* input and output functions for inflateBack() */
pull(void * desc,unsigned char ** buf)447*4a5d661aSToomas Soome local unsigned pull(void *desc, unsigned char **buf)
448*4a5d661aSToomas Soome {
449*4a5d661aSToomas Soome static unsigned int next = 0;
450*4a5d661aSToomas Soome static unsigned char dat[] = {0x63, 0, 2, 0};
451*4a5d661aSToomas Soome struct inflate_state *state;
452*4a5d661aSToomas Soome
453*4a5d661aSToomas Soome if (desc == Z_NULL) {
454*4a5d661aSToomas Soome next = 0;
455*4a5d661aSToomas Soome return 0; /* no input (already provided at next_in) */
456*4a5d661aSToomas Soome }
457*4a5d661aSToomas Soome state = (void *)((z_stream *)desc)->state;
458*4a5d661aSToomas Soome if (state != Z_NULL)
459*4a5d661aSToomas Soome state->mode = SYNC; /* force an otherwise impossible situation */
460*4a5d661aSToomas Soome return next < sizeof(dat) ? (*buf = dat + next++, 1) : 0;
461*4a5d661aSToomas Soome }
462*4a5d661aSToomas Soome
push(void * desc,unsigned char * buf,unsigned len)463*4a5d661aSToomas Soome local int push(void *desc, unsigned char *buf, unsigned len)
464*4a5d661aSToomas Soome {
465*4a5d661aSToomas Soome buf += len;
466*4a5d661aSToomas Soome return desc != Z_NULL; /* force error if desc not null */
467*4a5d661aSToomas Soome }
468*4a5d661aSToomas Soome
469*4a5d661aSToomas Soome /* cover inflateBack() up to common deflate data cases and after those */
cover_back(void)470*4a5d661aSToomas Soome local void cover_back(void)
471*4a5d661aSToomas Soome {
472*4a5d661aSToomas Soome int ret;
473*4a5d661aSToomas Soome z_stream strm;
474*4a5d661aSToomas Soome unsigned char win[32768];
475*4a5d661aSToomas Soome
476*4a5d661aSToomas Soome ret = inflateBackInit_(Z_NULL, 0, win, 0, 0);
477*4a5d661aSToomas Soome assert(ret == Z_VERSION_ERROR);
478*4a5d661aSToomas Soome ret = inflateBackInit(Z_NULL, 0, win); assert(ret == Z_STREAM_ERROR);
479*4a5d661aSToomas Soome ret = inflateBack(Z_NULL, Z_NULL, Z_NULL, Z_NULL, Z_NULL);
480*4a5d661aSToomas Soome assert(ret == Z_STREAM_ERROR);
481*4a5d661aSToomas Soome ret = inflateBackEnd(Z_NULL); assert(ret == Z_STREAM_ERROR);
482*4a5d661aSToomas Soome fputs("inflateBack bad parameters\n", stderr);
483*4a5d661aSToomas Soome
484*4a5d661aSToomas Soome mem_setup(&strm);
485*4a5d661aSToomas Soome ret = inflateBackInit(&strm, 15, win); assert(ret == Z_OK);
486*4a5d661aSToomas Soome strm.avail_in = 2;
487*4a5d661aSToomas Soome strm.next_in = (void *)"\x03";
488*4a5d661aSToomas Soome ret = inflateBack(&strm, pull, Z_NULL, push, Z_NULL);
489*4a5d661aSToomas Soome assert(ret == Z_STREAM_END);
490*4a5d661aSToomas Soome /* force output error */
491*4a5d661aSToomas Soome strm.avail_in = 3;
492*4a5d661aSToomas Soome strm.next_in = (void *)"\x63\x00";
493*4a5d661aSToomas Soome ret = inflateBack(&strm, pull, Z_NULL, push, &strm);
494*4a5d661aSToomas Soome assert(ret == Z_BUF_ERROR);
495*4a5d661aSToomas Soome /* force mode error by mucking with state */
496*4a5d661aSToomas Soome ret = inflateBack(&strm, pull, &strm, push, Z_NULL);
497*4a5d661aSToomas Soome assert(ret == Z_STREAM_ERROR);
498*4a5d661aSToomas Soome ret = inflateBackEnd(&strm); assert(ret == Z_OK);
499*4a5d661aSToomas Soome mem_done(&strm, "inflateBack bad state");
500*4a5d661aSToomas Soome
501*4a5d661aSToomas Soome ret = inflateBackInit(&strm, 15, win); assert(ret == Z_OK);
502*4a5d661aSToomas Soome ret = inflateBackEnd(&strm); assert(ret == Z_OK);
503*4a5d661aSToomas Soome fputs("inflateBack built-in memory routines\n", stderr);
504*4a5d661aSToomas Soome }
505*4a5d661aSToomas Soome
506*4a5d661aSToomas Soome /* do a raw inflate of data in hexadecimal with both inflate and inflateBack */
try(char * hex,char * id,int err)507*4a5d661aSToomas Soome local int try(char *hex, char *id, int err)
508*4a5d661aSToomas Soome {
509*4a5d661aSToomas Soome int ret;
510*4a5d661aSToomas Soome unsigned len, size;
511*4a5d661aSToomas Soome unsigned char *in, *out, *win;
512*4a5d661aSToomas Soome char *prefix;
513*4a5d661aSToomas Soome z_stream strm;
514*4a5d661aSToomas Soome
515*4a5d661aSToomas Soome /* convert to hex */
516*4a5d661aSToomas Soome in = h2b(hex, &len);
517*4a5d661aSToomas Soome assert(in != NULL);
518*4a5d661aSToomas Soome
519*4a5d661aSToomas Soome /* allocate work areas */
520*4a5d661aSToomas Soome size = len << 3;
521*4a5d661aSToomas Soome out = malloc(size);
522*4a5d661aSToomas Soome assert(out != NULL);
523*4a5d661aSToomas Soome win = malloc(32768);
524*4a5d661aSToomas Soome assert(win != NULL);
525*4a5d661aSToomas Soome prefix = malloc(strlen(id) + 6);
526*4a5d661aSToomas Soome assert(prefix != NULL);
527*4a5d661aSToomas Soome
528*4a5d661aSToomas Soome /* first with inflate */
529*4a5d661aSToomas Soome strcpy(prefix, id);
530*4a5d661aSToomas Soome strcat(prefix, "-late");
531*4a5d661aSToomas Soome mem_setup(&strm);
532*4a5d661aSToomas Soome strm.avail_in = 0;
533*4a5d661aSToomas Soome strm.next_in = Z_NULL;
534*4a5d661aSToomas Soome ret = inflateInit2(&strm, err < 0 ? 47 : -15);
535*4a5d661aSToomas Soome assert(ret == Z_OK);
536*4a5d661aSToomas Soome strm.avail_in = len;
537*4a5d661aSToomas Soome strm.next_in = in;
538*4a5d661aSToomas Soome do {
539*4a5d661aSToomas Soome strm.avail_out = size;
540*4a5d661aSToomas Soome strm.next_out = out;
541*4a5d661aSToomas Soome ret = inflate(&strm, Z_TREES);
542*4a5d661aSToomas Soome assert(ret != Z_STREAM_ERROR && ret != Z_MEM_ERROR);
543*4a5d661aSToomas Soome if (ret == Z_DATA_ERROR || ret == Z_NEED_DICT)
544*4a5d661aSToomas Soome break;
545*4a5d661aSToomas Soome } while (strm.avail_in || strm.avail_out == 0);
546*4a5d661aSToomas Soome if (err) {
547*4a5d661aSToomas Soome assert(ret == Z_DATA_ERROR);
548*4a5d661aSToomas Soome assert(strcmp(id, strm.msg) == 0);
549*4a5d661aSToomas Soome }
550*4a5d661aSToomas Soome inflateEnd(&strm);
551*4a5d661aSToomas Soome mem_done(&strm, prefix);
552*4a5d661aSToomas Soome
553*4a5d661aSToomas Soome /* then with inflateBack */
554*4a5d661aSToomas Soome if (err >= 0) {
555*4a5d661aSToomas Soome strcpy(prefix, id);
556*4a5d661aSToomas Soome strcat(prefix, "-back");
557*4a5d661aSToomas Soome mem_setup(&strm);
558*4a5d661aSToomas Soome ret = inflateBackInit(&strm, 15, win);
559*4a5d661aSToomas Soome assert(ret == Z_OK);
560*4a5d661aSToomas Soome strm.avail_in = len;
561*4a5d661aSToomas Soome strm.next_in = in;
562*4a5d661aSToomas Soome ret = inflateBack(&strm, pull, Z_NULL, push, Z_NULL);
563*4a5d661aSToomas Soome assert(ret != Z_STREAM_ERROR);
564*4a5d661aSToomas Soome if (err) {
565*4a5d661aSToomas Soome assert(ret == Z_DATA_ERROR);
566*4a5d661aSToomas Soome assert(strcmp(id, strm.msg) == 0);
567*4a5d661aSToomas Soome }
568*4a5d661aSToomas Soome inflateBackEnd(&strm);
569*4a5d661aSToomas Soome mem_done(&strm, prefix);
570*4a5d661aSToomas Soome }
571*4a5d661aSToomas Soome
572*4a5d661aSToomas Soome /* clean up */
573*4a5d661aSToomas Soome free(prefix);
574*4a5d661aSToomas Soome free(win);
575*4a5d661aSToomas Soome free(out);
576*4a5d661aSToomas Soome free(in);
577*4a5d661aSToomas Soome return ret;
578*4a5d661aSToomas Soome }
579*4a5d661aSToomas Soome
580*4a5d661aSToomas Soome /* cover deflate data cases in both inflate() and inflateBack() */
cover_inflate(void)581*4a5d661aSToomas Soome local void cover_inflate(void)
582*4a5d661aSToomas Soome {
583*4a5d661aSToomas Soome try("0 0 0 0 0", "invalid stored block lengths", 1);
584*4a5d661aSToomas Soome try("3 0", "fixed", 0);
585*4a5d661aSToomas Soome try("6", "invalid block type", 1);
586*4a5d661aSToomas Soome try("1 1 0 fe ff 0", "stored", 0);
587*4a5d661aSToomas Soome try("fc 0 0", "too many length or distance symbols", 1);
588*4a5d661aSToomas Soome try("4 0 fe ff", "invalid code lengths set", 1);
589*4a5d661aSToomas Soome try("4 0 24 49 0", "invalid bit length repeat", 1);
590*4a5d661aSToomas Soome try("4 0 24 e9 ff ff", "invalid bit length repeat", 1);
591*4a5d661aSToomas Soome try("4 0 24 e9 ff 6d", "invalid code -- missing end-of-block", 1);
592*4a5d661aSToomas Soome try("4 80 49 92 24 49 92 24 71 ff ff 93 11 0",
593*4a5d661aSToomas Soome "invalid literal/lengths set", 1);
594*4a5d661aSToomas Soome try("4 80 49 92 24 49 92 24 f b4 ff ff c3 84", "invalid distances set", 1);
595*4a5d661aSToomas Soome try("4 c0 81 8 0 0 0 0 20 7f eb b 0 0", "invalid literal/length code", 1);
596*4a5d661aSToomas Soome try("2 7e ff ff", "invalid distance code", 1);
597*4a5d661aSToomas Soome try("c c0 81 0 0 0 0 0 90 ff 6b 4 0", "invalid distance too far back", 1);
598*4a5d661aSToomas Soome
599*4a5d661aSToomas Soome /* also trailer mismatch just in inflate() */
600*4a5d661aSToomas Soome try("1f 8b 8 0 0 0 0 0 0 0 3 0 0 0 0 1", "incorrect data check", -1);
601*4a5d661aSToomas Soome try("1f 8b 8 0 0 0 0 0 0 0 3 0 0 0 0 0 0 0 0 1",
602*4a5d661aSToomas Soome "incorrect length check", -1);
603*4a5d661aSToomas Soome try("5 c0 21 d 0 0 0 80 b0 fe 6d 2f 91 6c", "pull 17", 0);
604*4a5d661aSToomas Soome try("5 e0 81 91 24 cb b2 2c 49 e2 f 2e 8b 9a 47 56 9f fb fe ec d2 ff 1f",
605*4a5d661aSToomas Soome "long code", 0);
606*4a5d661aSToomas Soome try("ed c0 1 1 0 0 0 40 20 ff 57 1b 42 2c 4f", "length extra", 0);
607*4a5d661aSToomas Soome try("ed cf c1 b1 2c 47 10 c4 30 fa 6f 35 1d 1 82 59 3d fb be 2e 2a fc f c",
608*4a5d661aSToomas Soome "long distance and extra", 0);
609*4a5d661aSToomas Soome try("ed c0 81 0 0 0 0 80 a0 fd a9 17 a9 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 "
610*4a5d661aSToomas Soome "0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 6", "window end", 0);
611*4a5d661aSToomas Soome inf("2 8 20 80 0 3 0", "inflate_fast TYPE return", 0, -15, 258,
612*4a5d661aSToomas Soome Z_STREAM_END);
613*4a5d661aSToomas Soome inf("63 18 5 40 c 0", "window wrap", 3, -8, 300, Z_OK);
614*4a5d661aSToomas Soome }
615*4a5d661aSToomas Soome
616*4a5d661aSToomas Soome /* cover remaining lines in inftrees.c */
cover_trees(void)617*4a5d661aSToomas Soome local void cover_trees(void)
618*4a5d661aSToomas Soome {
619*4a5d661aSToomas Soome int ret;
620*4a5d661aSToomas Soome unsigned bits;
621*4a5d661aSToomas Soome unsigned short lens[16], work[16];
622*4a5d661aSToomas Soome code *next, table[ENOUGH_DISTS];
623*4a5d661aSToomas Soome
624*4a5d661aSToomas Soome /* we need to call inflate_table() directly in order to manifest not-
625*4a5d661aSToomas Soome enough errors, since zlib insures that enough is always enough */
626*4a5d661aSToomas Soome for (bits = 0; bits < 15; bits++)
627*4a5d661aSToomas Soome lens[bits] = (unsigned short)(bits + 1);
628*4a5d661aSToomas Soome lens[15] = 15;
629*4a5d661aSToomas Soome next = table;
630*4a5d661aSToomas Soome bits = 15;
631*4a5d661aSToomas Soome ret = inflate_table(DISTS, lens, 16, &next, &bits, work);
632*4a5d661aSToomas Soome assert(ret == 1);
633*4a5d661aSToomas Soome next = table;
634*4a5d661aSToomas Soome bits = 1;
635*4a5d661aSToomas Soome ret = inflate_table(DISTS, lens, 16, &next, &bits, work);
636*4a5d661aSToomas Soome assert(ret == 1);
637*4a5d661aSToomas Soome fputs("inflate_table not enough errors\n", stderr);
638*4a5d661aSToomas Soome }
639*4a5d661aSToomas Soome
640*4a5d661aSToomas Soome /* cover remaining inffast.c decoding and window copying */
cover_fast(void)641*4a5d661aSToomas Soome local void cover_fast(void)
642*4a5d661aSToomas Soome {
643*4a5d661aSToomas Soome inf("e5 e0 81 ad 6d cb b2 2c c9 01 1e 59 63 ae 7d ee fb 4d fd b5 35 41 68"
644*4a5d661aSToomas Soome " ff 7f 0f 0 0 0", "fast length extra bits", 0, -8, 258, Z_DATA_ERROR);
645*4a5d661aSToomas Soome inf("25 fd 81 b5 6d 59 b6 6a 49 ea af 35 6 34 eb 8c b9 f6 b9 1e ef 67 49"
646*4a5d661aSToomas Soome " 50 fe ff ff 3f 0 0", "fast distance extra bits", 0, -8, 258,
647*4a5d661aSToomas Soome Z_DATA_ERROR);
648*4a5d661aSToomas Soome inf("3 7e 0 0 0 0 0", "fast invalid distance code", 0, -8, 258,
649*4a5d661aSToomas Soome Z_DATA_ERROR);
650*4a5d661aSToomas Soome inf("1b 7 0 0 0 0 0", "fast invalid literal/length code", 0, -8, 258,
651*4a5d661aSToomas Soome Z_DATA_ERROR);
652*4a5d661aSToomas Soome inf("d c7 1 ae eb 38 c 4 41 a0 87 72 de df fb 1f b8 36 b1 38 5d ff ff 0",
653*4a5d661aSToomas Soome "fast 2nd level codes and too far back", 0, -8, 258, Z_DATA_ERROR);
654*4a5d661aSToomas Soome inf("63 18 5 8c 10 8 0 0 0 0", "very common case", 0, -8, 259, Z_OK);
655*4a5d661aSToomas Soome inf("63 60 60 18 c9 0 8 18 18 18 26 c0 28 0 29 0 0 0",
656*4a5d661aSToomas Soome "contiguous and wrap around window", 6, -8, 259, Z_OK);
657*4a5d661aSToomas Soome inf("63 0 3 0 0 0 0 0", "copy direct from output", 0, -8, 259,
658*4a5d661aSToomas Soome Z_STREAM_END);
659*4a5d661aSToomas Soome }
660*4a5d661aSToomas Soome
main(void)661*4a5d661aSToomas Soome int main(void)
662*4a5d661aSToomas Soome {
663*4a5d661aSToomas Soome fprintf(stderr, "%s\n", zlibVersion());
664*4a5d661aSToomas Soome cover_support();
665*4a5d661aSToomas Soome cover_wrap();
666*4a5d661aSToomas Soome cover_back();
667*4a5d661aSToomas Soome cover_inflate();
668*4a5d661aSToomas Soome cover_trees();
669*4a5d661aSToomas Soome cover_fast();
670*4a5d661aSToomas Soome return 0;
671*4a5d661aSToomas Soome }
672