vndcompress.c revision 1.24 1 1.24 riastrad /* $NetBSD: vndcompress.c,v 1.24 2014/01/25 15:31:06 riastradh Exp $ */
2 1.1 hubertf
3 1.8 riastrad /*-
4 1.8 riastrad * Copyright (c) 2013 The NetBSD Foundation, Inc.
5 1.1 hubertf * All rights reserved.
6 1.1 hubertf *
7 1.8 riastrad * This code is derived from software contributed to The NetBSD Foundation
8 1.8 riastrad * by Taylor R. Campbell.
9 1.8 riastrad *
10 1.1 hubertf * Redistribution and use in source and binary forms, with or without
11 1.1 hubertf * modification, are permitted provided that the following conditions
12 1.1 hubertf * are met:
13 1.1 hubertf * 1. Redistributions of source code must retain the above copyright
14 1.1 hubertf * notice, this list of conditions and the following disclaimer.
15 1.1 hubertf * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 hubertf * notice, this list of conditions and the following disclaimer in the
17 1.1 hubertf * documentation and/or other materials provided with the distribution.
18 1.1 hubertf *
19 1.8 riastrad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.8 riastrad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 hubertf * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 hubertf * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 hubertf * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 hubertf * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 hubertf * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 hubertf * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 hubertf * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 hubertf * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 hubertf * POSSIBILITY OF SUCH DAMAGE.
30 1.1 hubertf */
31 1.8 riastrad
32 1.8 riastrad #include <sys/cdefs.h>
33 1.24 riastrad __RCSID("$NetBSD: vndcompress.c,v 1.24 2014/01/25 15:31:06 riastradh Exp $");
34 1.8 riastrad
35 1.8 riastrad #include <sys/endian.h>
36 1.8 riastrad
37 1.8 riastrad #include <assert.h>
38 1.1 hubertf #include <err.h>
39 1.8 riastrad #include <errno.h>
40 1.1 hubertf #include <fcntl.h>
41 1.5 lukem #include <inttypes.h>
42 1.8 riastrad #include <limits.h>
43 1.8 riastrad #include <signal.h>
44 1.8 riastrad #include <stdbool.h>
45 1.8 riastrad #include <stdint.h>
46 1.1 hubertf #include <stdio.h>
47 1.1 hubertf #include <stdlib.h>
48 1.1 hubertf #include <string.h>
49 1.1 hubertf #include <unistd.h>
50 1.1 hubertf #include <zlib.h>
51 1.1 hubertf
52 1.8 riastrad #include "common.h"
53 1.15 riastrad #include "offtab.h"
54 1.14 riastrad #include "utils.h"
55 1.8 riastrad
56 1.8 riastrad /*
57 1.8 riastrad * XXX Switch to control bug-for-bug byte-for-byte compatibility with
58 1.8 riastrad * NetBSD's vndcompress.
59 1.8 riastrad */
60 1.8 riastrad #define VNDCOMPRESS_COMPAT 0
61 1.8 riastrad
62 1.8 riastrad __CTASSERT(sizeof(struct cloop2_header) == CLOOP2_OFFSET_TABLE_OFFSET);
63 1.8 riastrad
64 1.8 riastrad struct compress_state {
65 1.8 riastrad uint64_t size; /* uncompressed size */
66 1.8 riastrad uint64_t offset; /* output byte offset */
67 1.8 riastrad uint32_t blocksize; /* bytes per block */
68 1.8 riastrad uint32_t blkno; /* input block number */
69 1.8 riastrad uint32_t n_full_blocks; /* floor(size/blocksize) */
70 1.8 riastrad uint32_t n_blocks; /* ceiling(size/blocksize) */
71 1.8 riastrad uint32_t n_offsets; /* n_blocks + 1 */
72 1.8 riastrad uint32_t end_block; /* last block to transfer */
73 1.8 riastrad uint32_t checkpoint_blocks; /* blocks before checkpoint */
74 1.8 riastrad int image_fd;
75 1.8 riastrad int cloop2_fd;
76 1.15 riastrad struct offtab offtab;
77 1.8 riastrad uint32_t n_checkpointed_blocks;
78 1.8 riastrad volatile sig_atomic_t
79 1.8 riastrad initialized; /* everything above initialized? */
80 1.8 riastrad };
81 1.8 riastrad
82 1.8 riastrad /* Global compression state for SIGINFO handler. */
83 1.8 riastrad static struct compress_state global_state;
84 1.8 riastrad
85 1.8 riastrad struct sigdesc {
86 1.8 riastrad int sd_signo;
87 1.8 riastrad const char *sd_name;
88 1.8 riastrad };
89 1.1 hubertf
90 1.8 riastrad static const struct sigdesc info_signals[] = {
91 1.8 riastrad { SIGINFO, "SIGINFO" },
92 1.8 riastrad { SIGUSR1, "SIGUSR1" },
93 1.1 hubertf };
94 1.1 hubertf
95 1.8 riastrad static const struct sigdesc checkpoint_signals[] = {
96 1.8 riastrad { SIGUSR2, "SIGUSR2" },
97 1.8 riastrad };
98 1.8 riastrad
99 1.8 riastrad static void init_signals(void);
100 1.8 riastrad static void init_signal_handler(int, const struct sigdesc *, size_t,
101 1.8 riastrad void (*)(int));
102 1.8 riastrad static void info_signal_handler(int);
103 1.8 riastrad static void checkpoint_signal_handler(int);
104 1.8 riastrad static void compress_progress(struct compress_state *);
105 1.8 riastrad static void compress_init(int, char **, const struct options *,
106 1.8 riastrad struct compress_state *);
107 1.8 riastrad static bool compress_restart(struct compress_state *);
108 1.8 riastrad static uint32_t compress_block(int, int, uint32_t, uint32_t, uint32_t, void *,
109 1.8 riastrad void *);
110 1.8 riastrad static void compress_maybe_checkpoint(struct compress_state *);
111 1.8 riastrad static void compress_checkpoint(struct compress_state *);
112 1.8 riastrad static void compress_exit(struct compress_state *);
113 1.8 riastrad
114 1.1 hubertf /*
115 1.8 riastrad * Compression entry point.
116 1.1 hubertf */
117 1.8 riastrad int
118 1.8 riastrad vndcompress(int argc, char **argv, const struct options *O)
119 1.8 riastrad {
120 1.8 riastrad struct compress_state *const S = &global_state;
121 1.8 riastrad
122 1.8 riastrad /* Paranoia. The other fields either have no sentinel or use zero. */
123 1.8 riastrad S->image_fd = -1;
124 1.8 riastrad S->cloop2_fd = -1;
125 1.8 riastrad
126 1.8 riastrad /* Set up signal handlers so we can handle SIGINFO ASAP. */
127 1.8 riastrad init_signals();
128 1.8 riastrad
129 1.8 riastrad /*
130 1.8 riastrad * Parse the arguments to initialize our state.
131 1.8 riastrad */
132 1.8 riastrad compress_init(argc, argv, O, S);
133 1.8 riastrad assert(MIN_BLOCKSIZE <= S->blocksize);
134 1.8 riastrad assert(S->blocksize <= MAX_BLOCKSIZE);
135 1.8 riastrad
136 1.8 riastrad /*
137 1.8 riastrad * Allocate compression buffers.
138 1.8 riastrad *
139 1.8 riastrad * Compression may actually expand. From an overabundance of
140 1.8 riastrad * caution, assume it can expand by at most double.
141 1.8 riastrad *
142 1.8 riastrad * XXX Check and consider tightening this assumption.
143 1.8 riastrad */
144 1.8 riastrad __CTASSERT(MAX_BLOCKSIZE <= SIZE_MAX);
145 1.8 riastrad void *const uncompbuf = malloc(S->blocksize);
146 1.8 riastrad if (uncompbuf == NULL)
147 1.8 riastrad err(1, "malloc uncompressed buffer");
148 1.8 riastrad
149 1.8 riastrad /* XXX compression ratio bound */
150 1.8 riastrad __CTASSERT(MAX_BLOCKSIZE <= (SIZE_MAX / 2));
151 1.8 riastrad void *const compbuf = malloc(2 * (size_t)S->blocksize);
152 1.8 riastrad if (compbuf == NULL)
153 1.8 riastrad err(1, "malloc compressed buffer");
154 1.8 riastrad
155 1.8 riastrad /*
156 1.8 riastrad * Compress the blocks. S->blkno specifies the input block
157 1.8 riastrad * we're about to transfer. S->offset is the current output
158 1.8 riastrad * offset.
159 1.8 riastrad */
160 1.8 riastrad while (S->blkno < S->n_blocks) {
161 1.8 riastrad /* Report any progress. */
162 1.8 riastrad compress_progress(S);
163 1.8 riastrad
164 1.8 riastrad /* Stop if we've done the requested partial transfer. */
165 1.8 riastrad if ((0 < S->end_block) && (S->end_block <= S->blkno))
166 1.8 riastrad goto out;
167 1.8 riastrad
168 1.8 riastrad /* Checkpoint if appropriate. */
169 1.8 riastrad compress_maybe_checkpoint(S);
170 1.15 riastrad offtab_prepare_put(&S->offtab, (S->blkno + 1));
171 1.8 riastrad
172 1.8 riastrad /* Choose read size: partial if last block, full if not. */
173 1.8 riastrad const uint32_t readsize = (S->blkno == S->n_full_blocks?
174 1.8 riastrad (S->size % S->blocksize) : S->blocksize);
175 1.8 riastrad assert(readsize > 0);
176 1.8 riastrad assert(readsize <= S->blocksize);
177 1.8 riastrad
178 1.8 riastrad /* Fail noisily if we might be about to overflow. */
179 1.8 riastrad /* XXX compression ratio bound */
180 1.8 riastrad __CTASSERT(MAX_BLOCKSIZE <= (UINTMAX_MAX / 2));
181 1.8 riastrad assert(S->offset <= MIN(UINT64_MAX, OFF_MAX));
182 1.8 riastrad if ((2 * (uintmax_t)readsize) >
183 1.8 riastrad (MIN(UINT64_MAX, OFF_MAX) - S->offset))
184 1.8 riastrad errx(1, "blkno %"PRIu32" may overflow: %ju + 2*%ju",
185 1.8 riastrad S->blkno, (uintmax_t)S->offset,
186 1.8 riastrad (uintmax_t)readsize);
187 1.8 riastrad
188 1.8 riastrad /* Process the block. */
189 1.8 riastrad const uint32_t complen =
190 1.8 riastrad compress_block(S->image_fd, S->cloop2_fd, S->blkno,
191 1.8 riastrad S->blocksize, readsize, uncompbuf, compbuf);
192 1.8 riastrad
193 1.8 riastrad /*
194 1.8 riastrad * Signal-atomically update the state to reflect
195 1.8 riastrad * (a) what block number we are now at,
196 1.8 riastrad * (b) how far we are now in the output file, and
197 1.8 riastrad * (c) where the last block ended.
198 1.8 riastrad */
199 1.8 riastrad assert(S->blkno <= (UINT32_MAX - 1));
200 1.8 riastrad assert(complen <= (MIN(UINT64_MAX, OFF_MAX) - S->offset));
201 1.8 riastrad assert((S->blkno + 1) < S->n_offsets);
202 1.8 riastrad {
203 1.8 riastrad sigset_t old_sigmask;
204 1.8 riastrad block_signals(&old_sigmask);
205 1.8 riastrad S->blkno += 1; /* (a) */
206 1.8 riastrad S->offset += complen; /* (b) */
207 1.15 riastrad offtab_put(&S->offtab, S->blkno, S->offset); /* (c) */
208 1.8 riastrad restore_sigmask(&old_sigmask);
209 1.8 riastrad }
210 1.8 riastrad }
211 1.8 riastrad
212 1.8 riastrad /* Make sure we're all done. */
213 1.8 riastrad assert(S->blkno == S->n_blocks);
214 1.8 riastrad assert((S->blkno + 1) == S->n_offsets);
215 1.8 riastrad
216 1.8 riastrad /* Pad to the disk block size. */
217 1.8 riastrad const uint32_t n_extra = (S->offset % DEV_BSIZE);
218 1.8 riastrad if (n_extra != 0) {
219 1.8 riastrad const uint32_t n_padding = (DEV_BSIZE - n_extra);
220 1.8 riastrad /* Reuse compbuf -- guaranteed to be large enough. */
221 1.8 riastrad (void)memset(compbuf, 0, n_padding);
222 1.8 riastrad const ssize_t n_written = write(S->cloop2_fd, compbuf,
223 1.8 riastrad n_padding);
224 1.8 riastrad if (n_written == -1)
225 1.8 riastrad err(1, "write final padding failed");
226 1.8 riastrad assert(n_written >= 0);
227 1.8 riastrad if ((size_t)n_written != n_padding)
228 1.8 riastrad errx(1, "partial write of final padding bytes"
229 1.13 riastrad ": %zu != %"PRIu32,
230 1.13 riastrad (size_t)n_written, n_padding);
231 1.8 riastrad
232 1.8 riastrad /* Account for the extra bytes in the output file. */
233 1.8 riastrad assert(n_padding <= (MIN(UINT64_MAX, OFF_MAX) - S->offset));
234 1.8 riastrad {
235 1.8 riastrad sigset_t old_sigmask;
236 1.8 riastrad block_signals(&old_sigmask);
237 1.8 riastrad S->offset += n_padding;
238 1.8 riastrad restore_sigmask(&old_sigmask);
239 1.8 riastrad }
240 1.8 riastrad }
241 1.8 riastrad
242 1.8 riastrad out:
243 1.15 riastrad /* One last checkpoint to commit the offset table. */
244 1.8 riastrad assert(S->offset <= OFF_MAX);
245 1.8 riastrad assert((off_t)S->offset == lseek(S->cloop2_fd, 0, SEEK_CUR));
246 1.8 riastrad compress_checkpoint(S);
247 1.8 riastrad
248 1.8 riastrad /*
249 1.8 riastrad * Free the compression buffers and finalize the compression.
250 1.8 riastrad */
251 1.8 riastrad free(compbuf);
252 1.8 riastrad free(uncompbuf);
253 1.8 riastrad compress_exit(S);
254 1.1 hubertf
255 1.8 riastrad return 0;
256 1.8 riastrad }
257 1.1 hubertf
258 1.1 hubertf /*
259 1.8 riastrad * Signal cruft.
260 1.1 hubertf */
261 1.8 riastrad
262 1.8 riastrad static void
263 1.8 riastrad init_signals(void)
264 1.8 riastrad {
265 1.8 riastrad
266 1.8 riastrad init_signal_handler(SA_RESTART, info_signals,
267 1.8 riastrad __arraycount(info_signals), &info_signal_handler);
268 1.8 riastrad init_signal_handler(SA_RESTART, checkpoint_signals,
269 1.8 riastrad __arraycount(checkpoint_signals), &checkpoint_signal_handler);
270 1.8 riastrad }
271 1.8 riastrad
272 1.8 riastrad static void
273 1.8 riastrad init_signal_handler(int flags, const struct sigdesc *signals, size_t n,
274 1.8 riastrad void (*handler)(int))
275 1.1 hubertf {
276 1.8 riastrad static const struct sigaction zero_sa;
277 1.8 riastrad struct sigaction sa = zero_sa;
278 1.8 riastrad size_t i;
279 1.8 riastrad
280 1.8 riastrad (void)sigemptyset(&sa.sa_mask);
281 1.8 riastrad for (i = 0; i < n; i++)
282 1.8 riastrad (void)sigaddset(&sa.sa_mask, signals[i].sd_signo);
283 1.8 riastrad sa.sa_flags = flags;
284 1.8 riastrad sa.sa_handler = handler;
285 1.8 riastrad for (i = 0; i < n; i++)
286 1.8 riastrad if (sigaction(signals[i].sd_signo, &sa, NULL) == -1)
287 1.8 riastrad err(1, "sigaction(%s)", signals[i].sd_name);
288 1.8 riastrad }
289 1.8 riastrad
290 1.8 riastrad static void
291 1.8 riastrad info_signal_handler(int signo __unused)
292 1.8 riastrad {
293 1.8 riastrad /* Save errno. */
294 1.8 riastrad const int error = errno;
295 1.8 riastrad struct compress_state *const S = &global_state;
296 1.8 riastrad char buf[128];
297 1.8 riastrad
298 1.8 riastrad /* Bail if the state is not yet initialized. */
299 1.8 riastrad if (!S->initialized) {
300 1.8 riastrad warnx_ss("initializing");
301 1.8 riastrad goto out;
302 1.8 riastrad }
303 1.8 riastrad
304 1.8 riastrad /* Carefully calculate our I/O position. */
305 1.8 riastrad assert(S->blocksize > 0);
306 1.8 riastrad __CTASSERT(MAX_N_BLOCKS <= (UINT64_MAX / MAX_BLOCKSIZE));
307 1.8 riastrad const uint64_t nread = ((uint64_t)S->blkno * (uint64_t)S->blocksize);
308 1.8 riastrad
309 1.8 riastrad assert(S->n_blocks > 0);
310 1.24 riastrad __CTASSERT(CLOOP2_OFFSET_TABLE_OFFSET <=
311 1.24 riastrad (UINT64_MAX / sizeof(uint64_t)));
312 1.8 riastrad __CTASSERT(MAX_N_BLOCKS <= ((UINT64_MAX / sizeof(uint64_t)) -
313 1.8 riastrad CLOOP2_OFFSET_TABLE_OFFSET));
314 1.8 riastrad const uint64_t nwritten = (S->offset <= (CLOOP2_OFFSET_TABLE_OFFSET +
315 1.24 riastrad ((uint64_t)S->n_blocks * sizeof(uint64_t)))?
316 1.8 riastrad 0 : S->offset);
317 1.8 riastrad
318 1.8 riastrad /* snprintf_ss can't do floating-point, so do fixed-point instead. */
319 1.8 riastrad const uint64_t ratio_percent =
320 1.8 riastrad (nread > 0?
321 1.8 riastrad ((nwritten >= (UINT64_MAX / 100)) ?
322 1.8 riastrad ((nwritten / nread) * 100) : ((nwritten * 100) / nread))
323 1.8 riastrad : 0);
324 1.8 riastrad
325 1.8 riastrad /* Format the status. */
326 1.8 riastrad assert(S->n_checkpointed_blocks <= (UINT64_MAX / S->blocksize));
327 1.8 riastrad const int n = snprintf_ss(buf, sizeof(buf),
328 1.8 riastrad "vndcompress: read %"PRIu64" bytes, wrote %"PRIu64" bytes, "
329 1.8 riastrad "compression ratio %"PRIu64"%% (checkpointed %"PRIu64" bytes)\n",
330 1.8 riastrad nread, nwritten, ratio_percent,
331 1.8 riastrad ((uint64_t)S->n_checkpointed_blocks * (uint64_t)S->blocksize));
332 1.8 riastrad if (n < 0) {
333 1.8 riastrad const char msg[] = "vndcompress: can't format info\n";
334 1.8 riastrad (void)write(STDERR_FILENO, msg, __arraycount(msg));
335 1.1 hubertf } else {
336 1.8 riastrad __CTASSERT(INT_MAX <= SIZE_MAX);
337 1.8 riastrad (void)write(STDERR_FILENO, buf, (size_t)n);
338 1.8 riastrad }
339 1.8 riastrad
340 1.8 riastrad out:
341 1.8 riastrad /* Restore errno. */
342 1.8 riastrad errno = error;
343 1.8 riastrad }
344 1.8 riastrad
345 1.8 riastrad static void
346 1.8 riastrad checkpoint_signal_handler(int signo __unused)
347 1.8 riastrad {
348 1.8 riastrad /* Save errno. */
349 1.8 riastrad const int error = errno;
350 1.8 riastrad struct compress_state *const S = &global_state;
351 1.8 riastrad
352 1.8 riastrad /* Bail if the state is not yet initialized. */
353 1.8 riastrad if (!S->initialized) {
354 1.8 riastrad warnx_ss("nothing to checkpoint yet");
355 1.8 riastrad goto out;
356 1.1 hubertf }
357 1.8 riastrad
358 1.8 riastrad assert(S->image_fd >= 0);
359 1.8 riastrad assert(S->cloop2_fd >= 0);
360 1.8 riastrad
361 1.8 riastrad /* Take a checkpoint. */
362 1.8 riastrad assert(S->blocksize > 0);
363 1.8 riastrad assert(S->blkno <= (UINT64_MAX / S->blocksize));
364 1.8 riastrad warnx_ss("checkpointing %"PRIu64" bytes",
365 1.8 riastrad ((uint64_t)S->blkno * (uint64_t)S->blocksize));
366 1.8 riastrad compress_checkpoint(S);
367 1.8 riastrad
368 1.8 riastrad out:
369 1.8 riastrad /* Restore errno. */
370 1.8 riastrad errno = error;
371 1.8 riastrad }
372 1.8 riastrad
373 1.8 riastrad /*
374 1.8 riastrad * Report progress.
375 1.8 riastrad *
376 1.8 riastrad * XXX Should do a progress bar here.
377 1.8 riastrad */
378 1.8 riastrad static void
379 1.8 riastrad compress_progress(struct compress_state *S __unused)
380 1.8 riastrad {
381 1.1 hubertf }
382 1.1 hubertf
383 1.1 hubertf /*
384 1.8 riastrad * Parse arguments, open the files, and initialize the state.
385 1.1 hubertf */
386 1.7 joerg static void
387 1.8 riastrad compress_init(int argc, char **argv, const struct options *O,
388 1.8 riastrad struct compress_state *S)
389 1.8 riastrad {
390 1.8 riastrad
391 1.8 riastrad if (!((argc == 2) || (argc == 3)))
392 1.8 riastrad usage();
393 1.8 riastrad
394 1.8 riastrad const char *const image_pathname = argv[0];
395 1.8 riastrad const char *const cloop2_pathname = argv[1];
396 1.8 riastrad
397 1.21 riastrad /* Grab the block size either from `-b' or from the last argument. */
398 1.8 riastrad __CTASSERT(0 < DEV_BSIZE);
399 1.8 riastrad __CTASSERT((MIN_BLOCKSIZE % DEV_BSIZE) == 0);
400 1.8 riastrad __CTASSERT(MIN_BLOCKSIZE <= DEF_BLOCKSIZE);
401 1.8 riastrad __CTASSERT((DEF_BLOCKSIZE % DEV_BSIZE) == 0);
402 1.8 riastrad __CTASSERT(DEF_BLOCKSIZE <= MAX_BLOCKSIZE);
403 1.8 riastrad __CTASSERT((MAX_BLOCKSIZE % DEV_BSIZE) == 0);
404 1.21 riastrad if (ISSET(O->flags, FLAG_b)) {
405 1.8 riastrad if (argc == 3) {
406 1.21 riastrad warnx("use -b or the extra argument, not both");
407 1.8 riastrad usage();
408 1.8 riastrad }
409 1.8 riastrad S->blocksize = O->blocksize;
410 1.8 riastrad } else {
411 1.8 riastrad S->blocksize = (argc == 2? DEF_BLOCKSIZE :
412 1.8 riastrad strsuftoll("block size", argv[2], MIN_BLOCKSIZE,
413 1.8 riastrad MAX_BLOCKSIZE));
414 1.8 riastrad }
415 1.8 riastrad
416 1.8 riastrad /* Sanity-check the blocksize. (strsuftoll guarantees bounds.) */
417 1.8 riastrad __CTASSERT(DEV_BSIZE <= UINT32_MAX);
418 1.8 riastrad if ((S->blocksize % DEV_BSIZE) != 0)
419 1.8 riastrad errx(1, "bad blocksize: %"PRIu32
420 1.8 riastrad " (not a multiple of %"PRIu32")",
421 1.8 riastrad S->blocksize, (uint32_t)DEV_BSIZE);
422 1.8 riastrad assert(MIN_BLOCKSIZE <= S->blocksize);
423 1.8 riastrad assert((S->blocksize % DEV_BSIZE) == 0);
424 1.8 riastrad assert(S->blocksize <= MAX_BLOCKSIZE);
425 1.8 riastrad
426 1.8 riastrad /* Grab the end block number if we have one. */
427 1.8 riastrad S->end_block = (ISSET(O->flags, FLAG_p)? O->end_block : 0);
428 1.8 riastrad
429 1.8 riastrad /* Grab the checkpoint block count, if we have one. */
430 1.8 riastrad S->checkpoint_blocks =
431 1.8 riastrad (ISSET(O->flags, FLAG_k)? O->checkpoint_blocks : 0);
432 1.8 riastrad
433 1.8 riastrad /* Open the input image file and the output cloop2 file. */
434 1.8 riastrad S->image_fd = open(image_pathname, O_RDONLY);
435 1.8 riastrad if (S->image_fd == -1)
436 1.8 riastrad err(1, "open(%s)", image_pathname);
437 1.8 riastrad
438 1.8 riastrad int oflags;
439 1.8 riastrad if (!ISSET(O->flags, FLAG_r))
440 1.8 riastrad oflags = (O_WRONLY | O_TRUNC | O_CREAT); /* XXX O_EXCL? */
441 1.8 riastrad else if (!ISSET(O->flags, FLAG_R))
442 1.8 riastrad oflags = (O_RDWR | O_CREAT);
443 1.8 riastrad else
444 1.8 riastrad oflags = O_RDWR;
445 1.8 riastrad S->cloop2_fd = open(cloop2_pathname, oflags, 0777);
446 1.8 riastrad if (S->cloop2_fd == -1)
447 1.8 riastrad err(1, "open(%s)", cloop2_pathname);
448 1.8 riastrad
449 1.8 riastrad /* Find the size of the input image. */
450 1.8 riastrad if (ISSET(O->flags, FLAG_l)) {
451 1.8 riastrad S->size = O->length;
452 1.8 riastrad } else {
453 1.8 riastrad static const struct stat zero_st;
454 1.8 riastrad struct stat st = zero_st;
455 1.8 riastrad if (fstat(S->image_fd, &st) == -1)
456 1.8 riastrad err(1, "stat(%s)", image_pathname);
457 1.8 riastrad if (st.st_size <= 0)
458 1.8 riastrad errx(1, "unknown image size");
459 1.8 riastrad assert(st.st_size >= 0);
460 1.8 riastrad __CTASSERT(OFF_MAX <= UINT64_MAX);
461 1.8 riastrad assert(__type_fit(uint64_t, st.st_size));
462 1.8 riastrad S->size = st.st_size;
463 1.8 riastrad }
464 1.8 riastrad assert(S->size <= OFF_MAX);
465 1.8 riastrad
466 1.8 riastrad /* Find number of full blocks and whether there's a partial block. */
467 1.8 riastrad S->n_full_blocks = (S->size / S->blocksize);
468 1.8 riastrad assert(S->n_full_blocks <=
469 1.8 riastrad (UINT32_MAX - ((S->size % S->blocksize) > 0)));
470 1.8 riastrad S->n_blocks = (S->n_full_blocks + ((S->size % S->blocksize) > 0));
471 1.8 riastrad assert(S->n_full_blocks <= S->n_blocks);
472 1.8 riastrad
473 1.8 riastrad if (S->n_blocks > MAX_N_BLOCKS)
474 1.8 riastrad errx(1, "image too large for block size %"PRIu32": %"PRIu64,
475 1.8 riastrad S->blocksize, S->size);
476 1.8 riastrad assert(S->n_blocks <= MAX_N_BLOCKS);
477 1.8 riastrad
478 1.22 riastrad /* Choose a window size. */
479 1.22 riastrad const uint32_t window_size = (ISSET(O->flags, FLAG_w)? O->window_size :
480 1.22 riastrad DEF_WINDOW_SIZE);
481 1.22 riastrad
482 1.15 riastrad /* Create an offset table for the blocks; one extra for the end. */
483 1.8 riastrad __CTASSERT(MAX_N_BLOCKS <= (UINT32_MAX - 1));
484 1.8 riastrad S->n_offsets = (S->n_blocks + 1);
485 1.8 riastrad __CTASSERT(MAX_N_OFFSETS == (MAX_N_BLOCKS + 1));
486 1.8 riastrad __CTASSERT(MAX_N_OFFSETS <= (SIZE_MAX / sizeof(uint64_t)));
487 1.22 riastrad offtab_init(&S->offtab, S->n_offsets, window_size, S->cloop2_fd,
488 1.15 riastrad CLOOP2_OFFSET_TABLE_OFFSET);
489 1.8 riastrad
490 1.8 riastrad /* Attempt to restart a partial transfer if requested. */
491 1.8 riastrad if (ISSET(O->flags, FLAG_r)) {
492 1.8 riastrad if (compress_restart(S)) {
493 1.8 riastrad /*
494 1.8 riastrad * Restart succeeded. Truncate the output
495 1.8 riastrad * here, in case any garbage got appended. We
496 1.8 riastrad * are committed to making progress at this
497 1.8 riastrad * point. If the ftruncate fails, we don't
498 1.8 riastrad * lose anything valuable -- this is the last
499 1.8 riastrad * point at which we can restart anyway.
500 1.8 riastrad */
501 1.8 riastrad if (ftruncate(S->cloop2_fd, S->offset) == -1)
502 1.8 riastrad err(1, "ftruncate failed");
503 1.8 riastrad
504 1.8 riastrad /* All set! No more initialization to do. */
505 1.8 riastrad return;
506 1.8 riastrad } else {
507 1.8 riastrad /* Restart failed. Barf now if requested. */
508 1.8 riastrad if (ISSET(O->flags, FLAG_R))
509 1.8 riastrad errx(1, "restart failed, aborting");
510 1.8 riastrad
511 1.8 riastrad /* Otherwise, truncate and start at the top. */
512 1.8 riastrad if (ftruncate(S->cloop2_fd, 0) == -1)
513 1.8 riastrad err(1, "truncate failed");
514 1.8 riastrad if (lseek(S->cloop2_fd, 0, SEEK_SET) == -1)
515 1.8 riastrad err(1, "lseek to cloop2 beginning failed");
516 1.8 riastrad if (lseek(S->image_fd, 0, SEEK_SET) == -1)
517 1.8 riastrad err(1, "lseek to image beginning failed");
518 1.8 riastrad }
519 1.8 riastrad }
520 1.8 riastrad
521 1.8 riastrad /* Write a bogus (zero) header for now, until we checkpoint. */
522 1.8 riastrad static const struct cloop2_header zero_header;
523 1.8 riastrad const ssize_t h_written = write(S->cloop2_fd, &zero_header,
524 1.8 riastrad sizeof(zero_header));
525 1.8 riastrad if (h_written == -1)
526 1.8 riastrad err(1, "write header");
527 1.8 riastrad assert(h_written >= 0);
528 1.8 riastrad if ((size_t)h_written != sizeof(zero_header))
529 1.13 riastrad errx(1, "partial write of header: %zu != %zu",
530 1.13 riastrad (size_t)h_written, sizeof(zero_header));
531 1.8 riastrad
532 1.15 riastrad /* Reset the offset table to be empty and write it. */
533 1.15 riastrad offtab_reset_write(&S->offtab);
534 1.8 riastrad
535 1.8 riastrad /* Start at the beginning of the image. */
536 1.8 riastrad S->blkno = 0;
537 1.8 riastrad S->offset = (sizeof(struct cloop2_header) +
538 1.24 riastrad ((uint64_t)S->n_offsets * sizeof(uint64_t)));
539 1.8 riastrad S->n_checkpointed_blocks = 0;
540 1.8 riastrad
541 1.8 riastrad /* Good to go and ready for interruption by a signal. */
542 1.8 riastrad S->initialized = 1;
543 1.8 riastrad }
544 1.8 riastrad
545 1.8 riastrad /*
546 1.8 riastrad * Try to recover state from an existing output file.
547 1.8 riastrad *
548 1.15 riastrad * On success, fill the offset table with what's in the file, set
549 1.8 riastrad * S->blkno and S->offset to reflect our position, and seek to the
550 1.8 riastrad * respective positions in the input and output files.
551 1.8 riastrad *
552 1.15 riastrad * On failure, return false. May clobber the offset table, S->blkno,
553 1.8 riastrad * S->offset, and the file pointers.
554 1.8 riastrad */
555 1.8 riastrad static bool
556 1.8 riastrad compress_restart(struct compress_state *S)
557 1.8 riastrad {
558 1.8 riastrad
559 1.8 riastrad /* Read in the header. */
560 1.8 riastrad static const struct cloop2_header zero_header;
561 1.8 riastrad struct cloop2_header header = zero_header;
562 1.8 riastrad
563 1.8 riastrad const ssize_t h_read = read_block(S->cloop2_fd, &header,
564 1.8 riastrad sizeof(header));
565 1.8 riastrad if (h_read == -1) {
566 1.8 riastrad warn("failed to read header");
567 1.8 riastrad return false;
568 1.8 riastrad }
569 1.8 riastrad assert(h_read >= 0);
570 1.8 riastrad if ((size_t)h_read != sizeof(header)) {
571 1.8 riastrad warnx("partial read of header");
572 1.8 riastrad return false;
573 1.8 riastrad }
574 1.8 riastrad
575 1.8 riastrad /* Check that the header looks like a header. */
576 1.8 riastrad __CTASSERT(sizeof(cloop2_magic) <= sizeof(header.cl2h_magic));
577 1.8 riastrad if (memcmp(header.cl2h_magic, cloop2_magic, sizeof(cloop2_magic))
578 1.8 riastrad != 0) {
579 1.8 riastrad warnx("bad cloop2 shell script magic");
580 1.8 riastrad return false;
581 1.8 riastrad }
582 1.8 riastrad
583 1.8 riastrad /* Check the header parameters. */
584 1.8 riastrad if (be32toh(header.cl2h_blocksize) != S->blocksize) {
585 1.8 riastrad warnx("mismatched block size: %"PRIu32
586 1.8 riastrad " (expected %"PRIu32")",
587 1.8 riastrad be32toh(header.cl2h_blocksize), S->blocksize);
588 1.8 riastrad return false;
589 1.8 riastrad }
590 1.8 riastrad if (be32toh(header.cl2h_n_blocks) != S->n_blocks) {
591 1.8 riastrad warnx("mismatched number of blocks: %"PRIu32
592 1.8 riastrad " (expected %"PRIu32")",
593 1.8 riastrad be32toh(header.cl2h_n_blocks), S->n_blocks);
594 1.8 riastrad return false;
595 1.8 riastrad }
596 1.8 riastrad
597 1.8 riastrad /* Read in the partial offset table. */
598 1.15 riastrad if (!offtab_reset_read(&S->offtab, &warn, &warnx))
599 1.8 riastrad return false;
600 1.15 riastrad if (!offtab_prepare_get(&S->offtab, 0))
601 1.8 riastrad return false;
602 1.15 riastrad const uint64_t first_offset = offtab_get(&S->offtab, 0);
603 1.23 christos const uint64_t expected = sizeof(struct cloop2_header) +
604 1.23 christos ((uint64_t)S->n_offsets * sizeof(uint64_t));
605 1.23 christos if (first_offset != expected) {
606 1.17 riastrad warnx("first offset is not 0x%"PRIx64": 0x%"PRIx64,
607 1.23 christos expected, first_offset);
608 1.8 riastrad return false;
609 1.8 riastrad }
610 1.8 riastrad
611 1.8 riastrad /* Find where we left off. */
612 1.8 riastrad __CTASSERT(MAX_N_OFFSETS <= UINT32_MAX);
613 1.8 riastrad uint32_t blkno = 0;
614 1.15 riastrad uint64_t last_offset = first_offset;
615 1.8 riastrad for (blkno = 0; blkno < S->n_blocks; blkno++) {
616 1.15 riastrad if (!offtab_prepare_get(&S->offtab, blkno))
617 1.15 riastrad return false;
618 1.15 riastrad const uint64_t offset = offtab_get(&S->offtab, blkno);
619 1.15 riastrad if (offset == ~(uint64_t)0)
620 1.8 riastrad break;
621 1.15 riastrad
622 1.8 riastrad if (0 < blkno) {
623 1.15 riastrad const uint64_t start = last_offset;
624 1.15 riastrad const uint64_t end = offset;
625 1.8 riastrad if (end <= start) {
626 1.8 riastrad warnx("bad offset table: 0x%"PRIx64
627 1.8 riastrad ", 0x%"PRIx64, start, end);
628 1.8 riastrad return false;
629 1.8 riastrad }
630 1.8 riastrad /* XXX compression ratio bound */
631 1.8 riastrad __CTASSERT(MAX_BLOCKSIZE <= (SIZE_MAX / 2));
632 1.8 riastrad if ((2 * (size_t)S->blocksize) <= (end - start)) {
633 1.8 riastrad warnx("block %"PRIu32" too large:"
634 1.17 riastrad " %"PRIu64" bytes"
635 1.17 riastrad " from 0x%"PRIx64" to 0x%"PRIx64,
636 1.17 riastrad blkno, (end - start), start, end);
637 1.8 riastrad return false;
638 1.8 riastrad }
639 1.8 riastrad }
640 1.15 riastrad
641 1.15 riastrad last_offset = offset;
642 1.8 riastrad }
643 1.8 riastrad
644 1.8 riastrad if (blkno == 0) {
645 1.8 riastrad warnx("no blocks were written; nothing to restart");
646 1.8 riastrad return false;
647 1.8 riastrad }
648 1.8 riastrad
649 1.8 riastrad /* Make sure the rest of the offset table is all ones. */
650 1.8 riastrad if (blkno < S->n_blocks) {
651 1.8 riastrad uint32_t nblkno;
652 1.8 riastrad
653 1.8 riastrad for (nblkno = blkno; nblkno < S->n_blocks; nblkno++) {
654 1.15 riastrad if (!offtab_prepare_get(&S->offtab, nblkno))
655 1.15 riastrad return false;
656 1.15 riastrad const uint64_t offset = offtab_get(&S->offtab, nblkno);
657 1.15 riastrad if (offset != ~(uint64_t)0) {
658 1.8 riastrad warnx("bad partial offset table entry"
659 1.17 riastrad " at %"PRIu32": 0x%"PRIx64,
660 1.15 riastrad nblkno, offset);
661 1.8 riastrad return false;
662 1.8 riastrad }
663 1.8 riastrad }
664 1.1 hubertf }
665 1.8 riastrad
666 1.1 hubertf /*
667 1.8 riastrad * XXX Consider decompressing some number of blocks to make
668 1.8 riastrad * sure they match.
669 1.1 hubertf */
670 1.8 riastrad
671 1.8 riastrad /* Back up by one. */
672 1.8 riastrad assert(1 <= blkno);
673 1.8 riastrad blkno -= 1;
674 1.8 riastrad
675 1.8 riastrad /* Seek to the input position. */
676 1.8 riastrad assert(S->size <= OFF_MAX);
677 1.8 riastrad assert(blkno <= (S->size / S->blocksize));
678 1.8 riastrad const off_t restart_position = ((off_t)blkno * (off_t)S->blocksize);
679 1.8 riastrad assert(0 <= restart_position);
680 1.8 riastrad assert(restart_position <= (off_t)S->size);
681 1.8 riastrad if (lseek(S->image_fd, restart_position, SEEK_SET) == -1) {
682 1.8 riastrad if (errno != ESPIPE) {
683 1.8 riastrad warn("lseek input image failed");
684 1.8 riastrad return false;
685 1.8 riastrad }
686 1.8 riastrad
687 1.8 riastrad /* Try read instead of lseek for a pipe/socket/fifo. */
688 1.8 riastrad void *const buffer = malloc(0x10000);
689 1.8 riastrad if (buffer == NULL)
690 1.8 riastrad err(1, "malloc temporary buffer");
691 1.8 riastrad off_t left = restart_position;
692 1.8 riastrad while (left > 0) {
693 1.8 riastrad const size_t size = MIN(0x10000, left);
694 1.8 riastrad const ssize_t n_read = read_block(S->image_fd, buffer,
695 1.8 riastrad size);
696 1.8 riastrad if (n_read == -1) {
697 1.8 riastrad free(buffer);
698 1.8 riastrad warn("read of input image failed");
699 1.8 riastrad return false;
700 1.8 riastrad }
701 1.8 riastrad assert(n_read >= 0);
702 1.8 riastrad if ((size_t)n_read != size) {
703 1.8 riastrad free(buffer);
704 1.8 riastrad warnx("partial read of input image");
705 1.8 riastrad return false;
706 1.1 hubertf }
707 1.8 riastrad assert((off_t)size <= left);
708 1.8 riastrad left -= size;
709 1.1 hubertf }
710 1.8 riastrad free(buffer);
711 1.8 riastrad }
712 1.8 riastrad
713 1.8 riastrad /* Seek to the output position. */
714 1.15 riastrad assert(last_offset <= OFF_MAX);
715 1.15 riastrad if (lseek(S->cloop2_fd, last_offset, SEEK_SET) == -1) {
716 1.15 riastrad warn("lseek output cloop2 to %"PRIx64" failed", last_offset);
717 1.8 riastrad return false;
718 1.1 hubertf }
719 1.8 riastrad
720 1.15 riastrad /* Switch from reading to writing the offset table. */
721 1.18 riastrad if (!offtab_transmogrify_read_to_write(&S->offtab, blkno))
722 1.18 riastrad return false;
723 1.15 riastrad
724 1.8 riastrad /* Start where we left off. */
725 1.8 riastrad S->blkno = blkno;
726 1.15 riastrad S->offset = last_offset;
727 1.8 riastrad S->n_checkpointed_blocks = blkno;
728 1.8 riastrad
729 1.8 riastrad /* Good to go and ready for interruption by a signal. */
730 1.8 riastrad S->initialized = 1;
731 1.8 riastrad
732 1.8 riastrad /* Success! */
733 1.8 riastrad return true;
734 1.8 riastrad }
735 1.8 riastrad
736 1.8 riastrad /*
737 1.8 riastrad * Read a single block, compress it, and write the compressed block.
738 1.8 riastrad * Return the size of the compressed block.
739 1.8 riastrad */
740 1.8 riastrad static uint32_t
741 1.8 riastrad compress_block(int in_fd, int out_fd, uint32_t blkno, uint32_t blocksize,
742 1.8 riastrad uint32_t readsize, void *uncompbuf, void *compbuf)
743 1.8 riastrad {
744 1.8 riastrad
745 1.8 riastrad assert(readsize <= blocksize);
746 1.8 riastrad assert(blocksize <= MAX_BLOCKSIZE);
747 1.8 riastrad
748 1.8 riastrad /* Read the uncompressed block. */
749 1.8 riastrad const ssize_t n_read = read_block(in_fd, uncompbuf, readsize);
750 1.8 riastrad if (n_read == -1)
751 1.8 riastrad err(1, "read block %"PRIu32, blkno);
752 1.8 riastrad assert(n_read >= 0);
753 1.13 riastrad if ((size_t)n_read != readsize)
754 1.13 riastrad errx(1, "partial read of block %"PRIu32": %zu != %"PRIu32,
755 1.13 riastrad blkno, (size_t)n_read, readsize);
756 1.8 riastrad
757 1.8 riastrad /* Compress the block. */
758 1.8 riastrad /* XXX compression ratio bound */
759 1.8 riastrad __CTASSERT(MAX_BLOCKSIZE <= (ULONG_MAX / 2));
760 1.8 riastrad const unsigned long uncomplen =
761 1.8 riastrad (VNDCOMPRESS_COMPAT? blocksize : readsize); /* XXX */
762 1.8 riastrad unsigned long complen = (uncomplen * 2);
763 1.8 riastrad const int zerror = compress2(compbuf, &complen, uncompbuf, uncomplen,
764 1.8 riastrad Z_BEST_COMPRESSION);
765 1.8 riastrad if (zerror != Z_OK)
766 1.8 riastrad errx(1, "compressed failed at block %"PRIu32" (%d): %s", blkno,
767 1.8 riastrad zerror, zError(zerror));
768 1.8 riastrad assert(complen <= (uncomplen * 2));
769 1.8 riastrad
770 1.8 riastrad /* Write the compressed block. */
771 1.8 riastrad const ssize_t n_written = write(out_fd, compbuf, complen);
772 1.8 riastrad if (n_written == -1)
773 1.8 riastrad err(1, "write block %"PRIu32, blkno);
774 1.8 riastrad assert(n_written >= 0);
775 1.13 riastrad if ((size_t)n_written != complen)
776 1.13 riastrad errx(1, "partial write of block %"PRIu32": %zu != %lu",
777 1.13 riastrad blkno, (size_t)n_written, complen);
778 1.8 riastrad
779 1.13 riastrad return (size_t)n_written;
780 1.1 hubertf }
781 1.1 hubertf
782 1.1 hubertf /*
783 1.8 riastrad * Checkpoint if appropriate.
784 1.1 hubertf */
785 1.8 riastrad static void
786 1.8 riastrad compress_maybe_checkpoint(struct compress_state *S)
787 1.1 hubertf {
788 1.1 hubertf
789 1.8 riastrad if ((0 < S->checkpoint_blocks) && (0 < S->blkno) &&
790 1.8 riastrad ((S->blkno % S->checkpoint_blocks) == 0)) {
791 1.8 riastrad assert(S->offset <= OFF_MAX);
792 1.8 riastrad assert((off_t)S->offset == lseek(S->cloop2_fd, 0, SEEK_CUR));
793 1.8 riastrad compress_checkpoint(S);
794 1.1 hubertf }
795 1.1 hubertf }
796 1.1 hubertf
797 1.1 hubertf /*
798 1.8 riastrad * Write the prefix of the offset table that we have filled so far.
799 1.8 riastrad *
800 1.8 riastrad * We fsync the data blocks we have written, and then write the offset
801 1.8 riastrad * table, and then fsync the offset table and file metadata. This
802 1.8 riastrad * should help to avoid offset tables that point at garbage data.
803 1.8 riastrad *
804 1.8 riastrad * This may be called from a signal handler, so it must not use stdio,
805 1.8 riastrad * malloc, &c. -- it may only (a) handle signal-safe state in S, and
806 1.8 riastrad * (b) do file descriptor I/O / fsync.
807 1.8 riastrad *
808 1.8 riastrad * XXX This requires further thought and heavy testing to be sure.
809 1.8 riastrad *
810 1.8 riastrad * XXX Should have an option to suppress fsync.
811 1.8 riastrad *
812 1.8 riastrad * XXX Should have an option to fail on fsync failures.
813 1.8 riastrad *
814 1.8 riastrad * XXX Would be nice if we could just do a barrier rather than an
815 1.8 riastrad * fsync.
816 1.8 riastrad *
817 1.8 riastrad * XXX How might we automatically test the fsyncs?
818 1.1 hubertf */
819 1.7 joerg static void
820 1.8 riastrad compress_checkpoint(struct compress_state *S)
821 1.1 hubertf {
822 1.8 riastrad
823 1.8 riastrad assert(S->blkno < S->n_offsets);
824 1.8 riastrad const uint32_t n_offsets = (S->blkno + 1);
825 1.8 riastrad assert(n_offsets <= S->n_offsets);
826 1.8 riastrad
827 1.8 riastrad assert(S->offset <= OFF_MAX);
828 1.8 riastrad assert((off_t)S->offset <= lseek(S->cloop2_fd, 0, SEEK_CUR));
829 1.8 riastrad
830 1.8 riastrad /* Make sure the data hits the disk before we say it's ready. */
831 1.8 riastrad if (fsync_range(S->cloop2_fd, (FFILESYNC | FDISKSYNC), 0, S->offset)
832 1.8 riastrad == -1)
833 1.8 riastrad warn_ss("fsync of output failed");
834 1.8 riastrad
835 1.8 riastrad /* Say the data blocks are ready. */
836 1.15 riastrad offtab_checkpoint(&S->offtab, n_offsets,
837 1.15 riastrad (S->n_checkpointed_blocks == 0? OFFTAB_CHECKPOINT_SYNC : 0));
838 1.8 riastrad
839 1.1 hubertf /*
840 1.8 riastrad * If this is the first checkpoint, initialize the header.
841 1.8 riastrad * Signal handler can race with main code here, but it is
842 1.8 riastrad * harmless -- just an extra fsync and write of the header,
843 1.8 riastrad * which are both idempotent.
844 1.15 riastrad *
845 1.15 riastrad * Once we have synchronously checkpointed the offset table,
846 1.15 riastrad * subsequent writes will preserve a valid state.
847 1.1 hubertf */
848 1.8 riastrad if (S->n_checkpointed_blocks == 0) {
849 1.8 riastrad static const struct cloop2_header zero_header;
850 1.8 riastrad struct cloop2_header header = zero_header;
851 1.8 riastrad
852 1.8 riastrad /* Format the header. */
853 1.8 riastrad __CTASSERT(sizeof(cloop2_magic) <= sizeof(header.cl2h_magic));
854 1.8 riastrad (void)memcpy(header.cl2h_magic, cloop2_magic,
855 1.8 riastrad sizeof(cloop2_magic));
856 1.8 riastrad header.cl2h_blocksize = htobe32(S->blocksize);
857 1.8 riastrad header.cl2h_n_blocks = htobe32(S->n_blocks);
858 1.8 riastrad
859 1.8 riastrad /* Write the header. */
860 1.8 riastrad const ssize_t h_written = pwrite(S->cloop2_fd, &header,
861 1.8 riastrad sizeof(header), 0);
862 1.8 riastrad if (h_written == -1)
863 1.8 riastrad err_ss(1, "write header");
864 1.8 riastrad assert(h_written >= 0);
865 1.8 riastrad if ((size_t)h_written != sizeof(header))
866 1.13 riastrad errx_ss(1, "partial write of header: %zu != %zu",
867 1.13 riastrad (size_t)h_written, sizeof(header));
868 1.8 riastrad }
869 1.8 riastrad
870 1.8 riastrad /* Record how many blocks we've checkpointed. */
871 1.8 riastrad {
872 1.8 riastrad sigset_t old_sigmask;
873 1.8 riastrad block_signals(&old_sigmask);
874 1.8 riastrad S->n_checkpointed_blocks = S->blkno;
875 1.8 riastrad restore_sigmask(&old_sigmask);
876 1.8 riastrad }
877 1.8 riastrad }
878 1.8 riastrad
879 1.8 riastrad /*
880 1.8 riastrad * Release everything we allocated in compress_init.
881 1.8 riastrad */
882 1.8 riastrad static void
883 1.8 riastrad compress_exit(struct compress_state *S)
884 1.8 riastrad {
885 1.8 riastrad
886 1.15 riastrad /* Done with the offset table. Destroy it. */
887 1.15 riastrad offtab_destroy(&S->offtab);
888 1.8 riastrad
889 1.8 riastrad /* Done with the files. Close them. */
890 1.8 riastrad if (close(S->cloop2_fd) == -1)
891 1.8 riastrad warn("close(cloop2 fd)");
892 1.8 riastrad if (close(S->image_fd) == -1)
893 1.8 riastrad warn("close(image fd)");
894 1.1 hubertf }
895