crc32
strm->adler = crc32(0L, Z_NULL, 0);
strm->adler = crc32(0L, Z_NULL, 0);
strm->adler = crc32(strm->adler, buf, len);
s->wrap == 2 ? crc32(0L, Z_NULL, 0) :
me->crc = crc32(me->crc, buf, len);
outd.crc = crc32(0L, Z_NULL, 0);
crc = crc32(0L, Z_NULL, 0);
crc = crc32(crc, window + have, DSIZE - have - strm->avail_out);
if (len) strm->adler = crc32(strm->adler, in, (unsigned)len);
*crc = crc32(0L, Z_NULL, 0);
log->tcrc = crc32(log->tcrc, data, put);
(state->flags ? crc32(check, buf, len) : adler32(check, buf, len))
check = crc32(check, hbuf, 2); \
check = crc32(check, hbuf, 4); \
state->check = crc32(0L, Z_NULL, 0);
state->check = crc32(state->check, next, copy);
state->check = crc32(state->check, next, copy);
state->check = crc32(state->check, next, copy);
strm->adler = state->check = crc32(0L, Z_NULL, 0);
ZEXTERN uLong ZEXPORT crc32(uLong crc, const Bytef *buf, uInt len);
if (crc32(&hdr, sizeof(hdr))) {
|| crc32(0, (void *)hdr, gptp->hdr_size) != gptp->hdr_crc_self) {
if (crc32(hdr, le32toh(hdr->hdr_size)) != crc) {
if (crc32(p, tblsz) != le32toh(hdr->hdr_crc_table)) {
hdr->hdr_crc_table = htole32(crc32(tbl->map_data,
hdr->hdr_crc_self = htole32(crc32(hdr, le32toh(hdr->hdr_size)));
uint32_t crc32(const void *, size_t);
hdr->hdr_crc_self = htole32(crc32(hdr, le32toh(hdr->hdr_size)));
htole32(crc32(gpt->gpt->map_data, GPT_HDR_SIZE));
hdr->hdr_crc_table = htole32(crc32((char *)secbuf + gpt->secsz, len));
hdr->hdr_crc_self = htole32(crc32(hdr, GPT_HDR_SIZE));
hdr->hdr_crc_self = htole32(crc32(hdr, GPT_HDR_SIZE));
if ( crc32(idrom,28) != *(u_long *)(idrom+28) )
crc32(idrom,28), *(u_long *)(idrom+28));
s->crc = crc32(s->crc, start, (unsigned int)
s->crc = crc32(0L, Z_NULL, 0);
s->crc = crc32(s->crc, start,
s->crc = crc32(s->crc, start, (unsigned int)
s->crc = crc32(s->crc, start,
_crc = crc32(_crc, start,(unsigned int)
_crc = crc32(0L, Z_NULL, 0);
_crc = crc32(_crc, start,(unsigned int)(_stream->next_out - start));
uLong crc32(uLong crc, const Bytef *buf, uInt len);
gpth.hdr_crc_self = crc32(0, (const void *)&gpth, GPT_HDR_SIZE);
crc = crc32(0, NULL, 0);
crc = crc32(crc, (const void *)d->buf, size);
rv = le32toh(crc) == crc32(0, (void *)hdr, le32toh(hdr->hdr_size));
if (crc32(0, bp->b_data, entries * entsz) != gpe_crc) {
uint32_t crc32; /* CRC from flag_version to end of file */
uint32_t crc32(uint32_t, const uint8_t *, size_t);
s->crc = crc32(s->crc, start, (unsigned int)
s->crc = crc32(0L, Z_NULL, 0);
s->crc = crc32(s->crc, start,
ZEXTERN uLong ZEXPORT crc32(uLong, const Bytef *, uInt);
crc = crc32(0, data, size);
crc = crc32(0, NULL, 0); /* get initial crc value */
crc = crc32(crc, buf[j].out, MIN(count, buf[j].size));
name_crc = crc32(0, fd->name, name_len);
fdnode->node_crc = htole32(crc32(0, (uint8_t *)fdnode,
crc = crc32(0, (uint8_t *)nhdr, CHFS_NODE_HDR_SIZE - 4);
crc = crc32(0, (uint8_t *)fvnode, sizeof(struct chfs_flash_vnode) - 4);
crc = crc32(0, (uint8_t *)fdirent, sizeof(struct chfs_flash_dirent_node) - 4);
crc = crc32(0, fdirent->name, fdirent->nsize);
crc = crc32(0, (uint8_t *)fdata, sizeof(struct chfs_flash_data_node) - 4);
crc = crc32(0, (uint8_t *)dnode, CHFS_NODE_HDR_SIZE - 4);
crc = crc32(0, (uint8_t *)dnode, sizeof(*dnode) - 4);
crc = crc32(0, (uint8_t *)dnode->data, dnode->data_length);
crc = crc32(0, (uint8_t *)buf, len);
crc = crc32(0, (uint8_t *)dnode, CHFS_NODE_HDR_SIZE - 4);
crc = crc32(0, (uint8_t *)dnode, sizeof(*dnode) - 4);
crc = crc32(0, (uint8_t *)vnode,
crc = crc32(0, (uint8_t *)dirent, sizeof(*dirent) - 4);
crc = crc32(0, fd->name, dirent->nsize);
crc = crc32(0, (uint8_t *)dnode, sizeof(struct chfs_flash_data_node) - 4);
crc = crc32(0, (uint8_t *)nhdr, CHFS_NODE_HDR_SIZE - 4);
padnode->hdr_crc = htole32(crc32(0, (uint8_t *)padnode,
fdirent->hdr_crc = htole32(crc32(0, (uint8_t *)fdirent,
fdirent->name_crc = crc32(0, (uint8_t *)&(fd->name), fd->nsize);
fdirent->node_crc = crc32(0, (uint8_t *)fdirent, sizeof(*fdirent) - 4);
dnode->hdr_crc = htole32(crc32(0, (uint8_t *)dnode,
dnode->data_crc = htole32(crc32(0, (uint8_t *)bp->b_data, len));
dnode->node_crc = htole32(crc32(0, (uint8_t *)dnode,
fvnode->hdr_crc = htole32(crc32(0, (uint8_t *)fvnode,
fvnode->node_crc = htole32(crc32(0, (uint8_t *)fvnode, size - 4));
crc = crc32(0, (uint8_t *)&ebhdr->u.nor_hdr + 4,
crc = crc32(0, (uint8_t *)&ebhdr->u.nand_hdr + 4,
crc = crc32(0, (uint8_t *) &ebhdr->ec_hdr + 8, 4);
crc = crc32(0, (uint8_t *) &ebhdr->u.nor_hdr + 4,
crc = crc32(0, (uint8_t *) &ebhdr->ec_hdr + 8, 4);
crc = crc32(0, (uint8_t *) &ebhdr->u.nand_hdr + 4,
crc = crc32(0, (uint8_t *) &ebhdr->ec_hdr + 8, 4);
uint32_t crc32;
crc32 = ext2fs_crc32c(~0, fs->e2fs.e2fs_uuid,
crc32 = ext2fs_crc32c(crc32, &cg_bswapped, sizeof(cg_bswapped));
crc32 = ext2fs_crc32c(crc32, gd, off);
crc32 = ext2fs_crc32c(crc32, dummy, 2);
crc32 = ext2fs_crc32c(crc32, gd + off + 2, cgsize - (off + 2));
return h2fs16(crc32 & 0xffff);
crc = crc32(crc, (const Bytef *)outbufp, (unsigned)wr);
crc = crc32(0L, Z_NULL, 0);
crc = crc32(crc, (const Bytef *)inbufp, (unsigned)in_size);
crc = crc32(0L, Z_NULL, 0);
uint32_t crc32(const void *, size_t);
crc = crc32(p, st.st_size);
crc = crc32((void *)hdr, sizeof(*hdr));
ebhdr.ec_hdr.crc_ec = htole32(crc32(0,
ebhdr.u.nand_hdr.crc = htole32(crc32(0,
ebhdr.u.nor_hdr.crc = htole32(crc32(0,
fvnode.hdr_crc = htole32(crc32(0, (uint8_t *)&fvnode,
fvnode.node_crc = htole32(crc32(0, (uint8_t *)&fvnode,
fdirent.hdr_crc = htole32(crc32(0, (uint8_t *)&fdirent,
fdirent.name_crc = htole32(crc32(0, (uint8_t *)name, fdirent.nsize));
fdirent.node_crc = htole32(crc32(0, (uint8_t *)&fdirent,
fdata.hdr_crc = htole32(crc32(0, (uint8_t *)&fdata,
fdata.data_crc = htole32(crc32(0, (uint8_t *)buf, len));
fdata.node_crc = htole32(crc32(0,