Tag
Hash :
a9bd296d
Author :
Date :
2022-02-08T10:48:04
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/*
* Copyright (c) 2019 Stefan Sperling <stsp@openbsd.org>
*
* Permission to use, copy, modify, and distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice appear in all copies.
*
* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
#include <sys/queue.h>
#include <errno.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sha1.h>
#include <zlib.h>
#include <time.h>
#include "got_error.h"
#include "got_object.h"
#include "got_path.h"
#include "got_lib_deflate.h"
#ifndef MIN
#define MIN(_a,_b) ((_a) < (_b) ? (_a) : (_b))
#endif
const struct got_error *
got_deflate_init(struct got_deflate_buf *zb, uint8_t *outbuf, size_t bufsize)
{
const struct got_error *err = NULL;
int zerr;
memset(&zb->z, 0, sizeof(zb->z));
zb->z.zalloc = Z_NULL;
zb->z.zfree = Z_NULL;
zerr = deflateInit(&zb->z, Z_DEFAULT_COMPRESSION);
if (zerr != Z_OK) {
if (zerr == Z_ERRNO)
return got_error_from_errno("deflateInit");
if (zerr == Z_MEM_ERROR) {
errno = ENOMEM;
return got_error_from_errno("deflateInit");
}
return got_error(GOT_ERR_COMPRESSION);
}
zb->inlen = zb->outlen = bufsize;
zb->inbuf = calloc(1, zb->inlen);
if (zb->inbuf == NULL) {
err = got_error_from_errno("calloc");
goto done;
}
zb->flags = 0;
if (outbuf == NULL) {
zb->outbuf = calloc(1, zb->outlen);
if (zb->outbuf == NULL) {
err = got_error_from_errno("calloc");
goto done;
}
zb->flags |= GOT_DEFLATE_F_OWN_OUTBUF;
} else
zb->outbuf = outbuf;
done:
if (err)
got_deflate_end(zb);
return err;
}
static void
csum_output(struct got_deflate_checksum *csum, const uint8_t *buf, size_t len)
{
if (csum->output_crc)
*csum->output_crc = crc32(*csum->output_crc, buf, len);
if (csum->output_sha1)
SHA1Update(csum->output_sha1, buf, len);
}
const struct got_error *
got_deflate_read(struct got_deflate_buf *zb, FILE *f, off_t len,
size_t *outlenp, off_t *consumed)
{
size_t last_total_out = zb->z.total_out;
z_stream *z = &zb->z;
int ret = Z_ERRNO;
z->next_out = zb->outbuf;
z->avail_out = zb->outlen;
*outlenp = 0;
*consumed = 0;
do {
size_t last_total_in = z->total_in;
if (z->avail_in == 0) {
size_t n = 0;
if (*consumed < len) {
n = fread(zb->inbuf, 1,
MIN(zb->inlen, len - *consumed), f);
}
if (n == 0) {
if (ferror(f))
return got_ferror(f, GOT_ERR_IO);
/* EOF */
ret = deflate(z, Z_FINISH);
break;
}
z->next_in = zb->inbuf;
z->avail_in = n;
}
ret = deflate(z, Z_NO_FLUSH);
*consumed += z->total_in - last_total_in;
} while (ret == Z_OK && z->avail_out > 0);
if (ret == Z_OK) {
zb->flags |= GOT_DEFLATE_F_HAVE_MORE;
} else {
if (ret != Z_STREAM_END)
return got_error(GOT_ERR_COMPRESSION);
zb->flags &= ~GOT_DEFLATE_F_HAVE_MORE;
}
*outlenp = z->total_out - last_total_out;
return NULL;
}
const struct got_error *
got_deflate_read_mmap(struct got_deflate_buf *zb, uint8_t *map, size_t offset,
size_t len, size_t *outlenp, size_t *consumed)
{
z_stream *z = &zb->z;
size_t last_total_out = z->total_out;
int ret = Z_ERRNO;
z->next_out = zb->outbuf;
z->avail_out = zb->outlen;
*outlenp = 0;
*consumed = 0;
do {
size_t last_total_in = z->total_in;
if (z->avail_in == 0) {
z->next_in = map + offset + *consumed;
if (len - *consumed > UINT_MAX)
z->avail_in = UINT_MAX;
else
z->avail_in = len - *consumed;
if (z->avail_in == 0) {
/* EOF */
ret = deflate(z, Z_FINISH);
break;
}
}
ret = deflate(z, Z_NO_FLUSH);
*consumed += z->total_in - last_total_in;
} while (ret == Z_OK && z->avail_out > 0);
if (ret == Z_OK) {
zb->flags |= GOT_DEFLATE_F_HAVE_MORE;
} else {
if (ret != Z_STREAM_END)
return got_error(GOT_ERR_COMPRESSION);
zb->flags &= ~GOT_DEFLATE_F_HAVE_MORE;
}
*outlenp = z->total_out - last_total_out;
return NULL;
}
void
got_deflate_end(struct got_deflate_buf *zb)
{
free(zb->inbuf);
if (zb->flags & GOT_DEFLATE_F_OWN_OUTBUF)
free(zb->outbuf);
deflateEnd(&zb->z);
}
const struct got_error *
got_deflate_to_file(off_t *outlen, FILE *infile, off_t len,
FILE *outfile, struct got_deflate_checksum *csum)
{
const struct got_error *err;
size_t avail;
off_t consumed;
struct got_deflate_buf zb;
err = got_deflate_init(&zb, NULL, GOT_DEFLATE_BUFSIZE);
if (err)
goto done;
*outlen = 0;
do {
err = got_deflate_read(&zb, infile, len, &avail, &consumed);
if (err)
goto done;
len -= consumed;
if (avail > 0) {
size_t n;
n = fwrite(zb.outbuf, avail, 1, outfile);
if (n != 1) {
err = got_ferror(outfile, GOT_ERR_IO);
goto done;
}
if (csum)
csum_output(csum, zb.outbuf, avail);
*outlen += avail;
}
} while (zb.flags & GOT_DEFLATE_F_HAVE_MORE);
done:
got_deflate_end(&zb);
return err;
}
const struct got_error *
got_deflate_to_file_mmap(off_t *outlen, uint8_t *map, size_t offset,
size_t len, FILE *outfile, struct got_deflate_checksum *csum)
{
const struct got_error *err;
size_t avail, consumed;
struct got_deflate_buf zb;
err = got_deflate_init(&zb, NULL, GOT_DEFLATE_BUFSIZE);
if (err)
goto done;
*outlen = 0;
do {
err = got_deflate_read_mmap(&zb, map, offset, len, &avail,
&consumed);
if (err)
goto done;
offset += consumed;
len -= consumed;
if (avail > 0) {
size_t n;
n = fwrite(zb.outbuf, avail, 1, outfile);
if (n != 1) {
err = got_ferror(outfile, GOT_ERR_IO);
goto done;
}
if (csum)
csum_output(csum, zb.outbuf, avail);
*outlen += avail;
}
} while (zb.flags & GOT_DEFLATE_F_HAVE_MORE);
done:
got_deflate_end(&zb);
return err;
}