mirror of
https://github.com/samba-team/samba.git
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9d4a7a448e
All the existing calls are right before returns, so they don't really matter. But you never know when the code will change, and any compiler will wipe the NULL assignment. Signed-off-by: Volker Lendecke <vl@samba.org> Reviewed-by: Noel Power <noel.power@suse.com>
443 lines
13 KiB
C
443 lines
13 KiB
C
/*
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Unix SMB/CIFS implementation.
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routines for marshalling/unmarshalling cab structures
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Copyright (C) Guenther Deschner 2016
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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#include "librpc/gen_ndr/ndr_cab.h"
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#include "librpc/ndr/ndr_compression.h"
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#define OFFSET_OF_FOLDER_COFFCABSTART(folder) (36 /* cfheader size */ + (size_t)(folder)*8)
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_PUBLIC_ void ndr_print_cf_time(struct ndr_print *ndr, const char *name, const struct cf_time *r)
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{
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uint8_t hour = 0, minute = 0, seconds = 0;
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char *s;
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if (r == NULL) { ndr_print_null(ndr); return; }
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hour = r->time >> 11;
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minute = (r->time >> 5) & 0x3f;
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seconds = (r->time << 1) & 0x3e;
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s = talloc_asprintf(ndr, "%02d:%02d:%02d", hour, minute, seconds);
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if (s == NULL) { return; }
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ndr_print_string(ndr, "time", s);
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TALLOC_FREE(s);
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}
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_PUBLIC_ void ndr_print_cf_date(struct ndr_print *ndr, const char *name, const struct cf_date *r)
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{
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uint16_t year = 0;
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uint8_t month = 0, day = 0;
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char *s;
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if (r == NULL) { ndr_print_null(ndr); return; }
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year = (r->date >> 9);
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year += 1980;
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month = (r->date >> 5 & 0xf);
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day = (r->date & 0x1f);
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s = talloc_asprintf(ndr, "%02"PRIu8"/%02"PRIu8"/%04"PRIu16, day, month, year);
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if (s == NULL) { return; }
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ndr_print_string(ndr, "date", s);
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TALLOC_FREE(s);
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}
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uint32_t ndr_count_cfdata(const struct cab_file *r)
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{
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uint32_t count = 0, i;
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for (i = 0; i < r->cfheader.cFolders; i++) {
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if (count + r->cffolders[i].cCFData < count) {
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/* Integer wrap. */
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return 0;
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}
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count += r->cffolders[i].cCFData;
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}
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return count;
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}
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static uint32_t ndr_cab_compute_checksum(uint8_t *data, uint32_t length, uint32_t seed)
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{
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int num_ulong;
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uint32_t checksum;
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uint8_t *pb;
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uint32_t ul;
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num_ulong = length / 4;
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checksum = seed;
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pb = data;
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while (num_ulong-- > 0) {
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ul = (uint32_t)(*pb++);
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ul |= (((uint32_t)(*pb++)) << 8);
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ul |= (((uint32_t)(*pb++)) << 16);
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ul |= (((uint32_t)(*pb++)) << 24);
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checksum ^= ul;
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}
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ul = 0;
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switch (length % 4) {
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case 3:
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ul |= (((uint32_t)(*pb++)) << 16);
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FALL_THROUGH;
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case 2:
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ul |= (((uint32_t)(*pb++)) << 8);
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FALL_THROUGH;
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case 1:
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ul |= (uint32_t)(*pb++);
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FALL_THROUGH;
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default:
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break;
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}
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checksum ^= ul;
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return checksum;
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}
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/* Push all CFDATA of a folder.
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*
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* This works on a folder level because compression type is set per
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* folder, and a compression state can be shared between CFDATA of the
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* same folder.
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*
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* This is not a regular NDR func as we pass the compression type and
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* the number of CFDATA as extra arguments
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*/
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static enum ndr_err_code ndr_push_folder_cfdata(struct ndr_push *ndr,
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const struct CFDATA *r,
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enum cf_compress_type cab_ctype,
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size_t num_cfdata)
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{
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size_t i;
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enum ndr_compression_alg ndr_ctype = 0;
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ndr_set_flags(&ndr->flags, LIBNDR_PRINT_ARRAY_HEX|LIBNDR_FLAG_LITTLE_ENDIAN|LIBNDR_FLAG_NOALIGN);
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if (cab_ctype == CF_COMPRESS_MSZIP) {
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ndr_ctype = NDR_COMPRESSION_MSZIP_CAB;
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NDR_CHECK(ndr_push_compression_state_init(ndr, ndr_ctype));
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}
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for (i = 0; i < num_cfdata; i++, r++) {
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uint32_t compressed_length = 0;
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uint32_t csum, csumPartial;
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size_t compressed_offset, csum_offset, data_offset;
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if (!r->ab.data) {
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return ndr_push_error(ndr, NDR_ERR_LENGTH,
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"NULL uncompressed data blob");
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}
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if (r->ab.length != r->cbUncomp) {
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return ndr_push_error(ndr, NDR_ERR_LENGTH,
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"Uncompressed data blob size != uncompressed data size field");
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}
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/*
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* checksum is a function of the size fields
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* and the potentially compressed data bytes,
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* which haven't been compressed yet so
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* remember offset, write zeroes, fill out
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* later
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*/
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csum_offset = ndr->offset;
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NDR_CHECK(ndr_push_uint32(ndr, NDR_SCALARS, 0));
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/*
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* similarly, we don't know the compressed
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* size yet, remember offset, write zeros,
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* fill out later
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*/
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compressed_offset = ndr->offset;
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NDR_CHECK(ndr_push_uint16(ndr, NDR_SCALARS, 0));
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NDR_CHECK(ndr_push_uint16(ndr, NDR_SCALARS, r->cbUncomp));
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data_offset = ndr->offset;
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switch (cab_ctype) {
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case CF_COMPRESS_NONE:
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/* just copy the data */
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NDR_PUSH_NEED_BYTES(ndr, r->ab.length);
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NDR_CHECK(ndr_push_bytes(ndr, r->ab.data, r->ab.length));
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compressed_length = r->ab.length;
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break;
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case CF_COMPRESS_LZX:
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/*
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* we have not yet worked out the details of LZX
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* compression
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*/
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return NDR_ERR_COMPRESSION;
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case CF_COMPRESS_MSZIP: {
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struct ndr_push *push_sub, *push_compress;
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/* compress via subcontext */
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NDR_CHECK(ndr_push_subcontext_start(ndr, &push_sub, 0, -1));
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/*
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* This assignment replaces a call to
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* ndr_push_compression_state_init(push_sub, ndr_ctype))
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* here. This is instead done outside the loop.
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*/
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push_sub->cstate = ndr->cstate;
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NDR_CHECK(ndr_push_compression_start(push_sub, &push_compress));
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ndr_set_flags(&push_compress->flags, LIBNDR_FLAG_REMAINING);
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NDR_CHECK(ndr_push_DATA_BLOB(push_compress, NDR_SCALARS, r->ab));
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NDR_CHECK(ndr_push_compression_end(push_sub, push_compress));
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NDR_CHECK(ndr_push_subcontext_end(ndr, push_sub, 0, -1));
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compressed_length = push_sub->offset;
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break;
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}
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default:
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return NDR_ERR_BAD_SWITCH;
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}
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/* we can now write the compressed size and the checksum */
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SSVAL(ndr->data, compressed_offset, compressed_length);
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/*
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* Create checksum over compressed data.
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*
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* The 8 bytes are the header size.
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*
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* We have already have written the checksum and set it to zero,
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* earlier. So we know that after the checksum end the value
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* for the compressed length comes the blob data.
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*
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* NDR already did all the checks for integer wraps.
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*/
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csumPartial = ndr_cab_compute_checksum(&ndr->data[data_offset],
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compressed_length, 0);
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/*
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* Checksum over header (compressed and uncompressed length).
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*
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* The first 4 bytes are the checksum size.
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* The second 4 bytes are the size of the compressed and
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* uncompressed length fields.
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*
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* NDR already did all the checks for integer wraps.
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*/
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csum = ndr_cab_compute_checksum(&ndr->data[compressed_offset],
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data_offset - compressed_offset,
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csumPartial);
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SIVAL(ndr->data, csum_offset, csum);
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}
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TALLOC_FREE(ndr->cstate);
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return NDR_ERR_SUCCESS;
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}
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_PUBLIC_ enum ndr_err_code ndr_push_cab_file(struct ndr_push *ndr, ndr_flags_type ndr_flags, const struct cab_file *r)
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{
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uint32_t cntr_cffolders_0;
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uint32_t cntr_cffiles_0;
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size_t processed_cfdata = 0;
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{
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libndr_flags _flags_save_STRUCT = ndr->flags;
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ndr_set_flags(&ndr->flags, LIBNDR_PRINT_ARRAY_HEX|LIBNDR_FLAG_LITTLE_ENDIAN|LIBNDR_FLAG_NOALIGN);
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NDR_PUSH_CHECK_FLAGS(ndr, ndr_flags);
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if (ndr_flags & NDR_SCALARS) {
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uint32_t i;
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NDR_CHECK(ndr_push_align(ndr, 4));
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NDR_CHECK(ndr_push_CFHEADER(ndr, NDR_SCALARS, &r->cfheader));
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for (cntr_cffolders_0 = 0; cntr_cffolders_0 < (r->cfheader.cFolders); cntr_cffolders_0++) {
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NDR_CHECK(ndr_push_CFFOLDER(ndr, NDR_SCALARS, &r->cffolders[cntr_cffolders_0]));
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}
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for (cntr_cffiles_0 = 0; cntr_cffiles_0 < (r->cfheader.cFiles); cntr_cffiles_0++) {
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NDR_CHECK(ndr_push_CFFILE(ndr, NDR_SCALARS, &r->cffiles[cntr_cffiles_0]));
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}
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#if 0
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NDR_CHECK(ndr_push_uint32(ndr, NDR_SCALARS, ndr_count_cfdata(r)));
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#endif
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/* write in the folder header the offset of its first data block */
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for (i = 0; i < r->cfheader.cFolders; i++) {
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size_t off = OFFSET_OF_FOLDER_COFFCABSTART(i);
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/* check that the offset we want to
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* write to is always inside our
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* current push buffer
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*/
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if (off >= ndr->offset) {
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return ndr_push_error(ndr, NDR_ERR_OFFSET,
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"trying to write past current push buffer size");
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}
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SIVAL(ndr->data, off, ndr->offset);
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NDR_CHECK(ndr_push_folder_cfdata(ndr, r->cfdata + processed_cfdata, r->cffolders[i].typeCompress, r->cffolders[i].cCFData));
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processed_cfdata += r->cffolders[i].cCFData;
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}
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NDR_CHECK(ndr_push_trailer_align(ndr, 4));
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}
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if (ndr_flags & NDR_BUFFERS) {
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}
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ndr->flags = _flags_save_STRUCT;
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}
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/* write total file size in header */
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SIVAL(ndr->data, 8, ndr->offset);
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return NDR_ERR_SUCCESS;
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}
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/* Pull all CFDATA of a folder.
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*
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* This works on a folder level because compression type is set per
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* folder, and a compression state can be shared between CFDATA of the
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* same folder.
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*
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* This is not a regular NDR func as we pass the compression type and
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* the number of CFDATA as extra arguments
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*/
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static enum ndr_err_code ndr_pull_folder_cfdata(struct ndr_pull *ndr,
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struct CFDATA *r,
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enum cf_compress_type cab_ctype,
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size_t num_cfdata)
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{
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size_t i;
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enum ndr_compression_alg ndr_ctype = 0;
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if (cab_ctype == CF_COMPRESS_MSZIP) {
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ndr_ctype = NDR_COMPRESSION_MSZIP_CAB;
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NDR_CHECK(ndr_pull_compression_state_init(ndr, NDR_COMPRESSION_MSZIP_CAB, &ndr->cstate));
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}
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for (i = 0; i < num_cfdata; i++, r++) {
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NDR_CHECK(ndr_pull_uint32(ndr, NDR_SCALARS, &r->csum));
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NDR_CHECK(ndr_pull_uint16(ndr, NDR_SCALARS, &r->cbData));
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NDR_CHECK(ndr_pull_uint16(ndr, NDR_SCALARS, &r->cbUncomp));
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switch (cab_ctype) {
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case CF_COMPRESS_NONE:
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/* just copy the data */
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NDR_PULL_NEED_BYTES(ndr, r->cbUncomp);
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r->ab = data_blob_talloc(ndr->current_mem_ctx,
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ndr->data+ndr->offset,
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r->cbUncomp);
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if (r->ab.data == NULL) {
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return ndr_pull_error(ndr, NDR_ERR_ALLOC,
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"failed to allocate buffer for uncompressed CFDATA block");
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}
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ndr->offset += r->cbUncomp;
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break;
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case CF_COMPRESS_LZX:
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/* just copy the data (LZX decompression not implemented yet) */
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NDR_PULL_NEED_BYTES(ndr, r->cbData);
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r->ab = data_blob_talloc(ndr->current_mem_ctx,
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ndr->data+ndr->offset,
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r->cbData);
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if (r->ab.data == NULL) {
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return ndr_pull_error(ndr, NDR_ERR_ALLOC,
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"failed to allocate buffer for LZX-compressed CFDATA block");
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}
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ndr->offset += r->cbData;
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break;
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case CF_COMPRESS_MSZIP: {
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struct ndr_pull *pull_sub, *pull_compress;
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NDR_PULL_NEED_BYTES(ndr, r->cbData);
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/* decompress via subcontext */
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NDR_CHECK(ndr_pull_subcontext_start(ndr, &pull_sub, 0, r->cbData));
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pull_sub->cstate = ndr->cstate;
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NDR_CHECK(ndr_pull_compression_start(pull_sub, &pull_compress,
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ndr_ctype, r->cbUncomp, r->cbData));
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ndr_set_flags(&pull_compress->flags, LIBNDR_FLAG_REMAINING);
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NDR_CHECK(ndr_pull_DATA_BLOB(pull_compress, NDR_SCALARS, &r->ab));
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NDR_CHECK(ndr_pull_compression_end(pull_sub, pull_compress, ndr_ctype, r->cbUncomp));
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NDR_CHECK(ndr_pull_subcontext_end(ndr, pull_sub, 0, r->cbData));
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break;
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}
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default:
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return NDR_ERR_BAD_SWITCH;
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}
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}
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TALLOC_FREE(ndr->cstate);
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return NDR_ERR_SUCCESS;
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}
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_PUBLIC_ enum ndr_err_code ndr_pull_cab_file(struct ndr_pull *ndr, ndr_flags_type ndr_flags, struct cab_file *r)
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{
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uint32_t size_cffolders_0 = 0;
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uint32_t cntr_cffolders_0;
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TALLOC_CTX *_mem_save_cffolders_0 = NULL;
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uint32_t size_cffiles_0 = 0;
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uint32_t cntr_cffiles_0;
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TALLOC_CTX *_mem_save_cffiles_0 = NULL;
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uint32_t size_cfdata_0 = 0;
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size_t processed_cfdata = 0;
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TALLOC_CTX *_mem_save_cfdata_0 = NULL;
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{
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libndr_flags _flags_save_STRUCT = ndr->flags;
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ndr_set_flags(&ndr->flags, LIBNDR_PRINT_ARRAY_HEX|LIBNDR_FLAG_LITTLE_ENDIAN|LIBNDR_FLAG_NOALIGN);
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NDR_PULL_CHECK_FLAGS(ndr, ndr_flags);
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if (ndr_flags & NDR_SCALARS) {
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NDR_CHECK(ndr_pull_align(ndr, 4));
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NDR_CHECK(ndr_pull_CFHEADER(ndr, NDR_SCALARS, &r->cfheader));
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size_cffolders_0 = r->cfheader.cFolders;
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NDR_PULL_ALLOC_N(ndr, r->cffolders, size_cffolders_0);
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_mem_save_cffolders_0 = NDR_PULL_GET_MEM_CTX(ndr);
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NDR_PULL_SET_MEM_CTX(ndr, r->cffolders, 0);
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for (cntr_cffolders_0 = 0; cntr_cffolders_0 < (size_cffolders_0); cntr_cffolders_0++) {
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NDR_CHECK(ndr_pull_CFFOLDER(ndr, NDR_SCALARS, &r->cffolders[cntr_cffolders_0]));
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}
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NDR_PULL_SET_MEM_CTX(ndr, _mem_save_cffolders_0, 0);
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size_cffiles_0 = r->cfheader.cFiles;
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NDR_PULL_ALLOC_N(ndr, r->cffiles, size_cffiles_0);
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_mem_save_cffiles_0 = NDR_PULL_GET_MEM_CTX(ndr);
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NDR_PULL_SET_MEM_CTX(ndr, r->cffiles, 0);
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for (cntr_cffiles_0 = 0; cntr_cffiles_0 < (size_cffiles_0); cntr_cffiles_0++) {
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NDR_CHECK(ndr_pull_CFFILE(ndr, NDR_SCALARS, &r->cffiles[cntr_cffiles_0]));
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}
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NDR_PULL_SET_MEM_CTX(ndr, _mem_save_cffiles_0, 0);
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#if 0
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NDR_CHECK(ndr_pull_uint32(ndr, NDR_SCALARS, &r->cfdata_count));
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#else
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r->cfdata_count = ndr_count_cfdata(r);
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#endif
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size_cfdata_0 = r->cfdata_count;
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NDR_PULL_ALLOC_N(ndr, r->cfdata, size_cfdata_0);
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_mem_save_cfdata_0 = NDR_PULL_GET_MEM_CTX(ndr);
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NDR_PULL_SET_MEM_CTX(ndr, r->cfdata, 0);
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for (cntr_cffolders_0 = 0; cntr_cffolders_0 < (size_cffolders_0); cntr_cffolders_0++) {
|
|
NDR_CHECK(ndr_pull_folder_cfdata(ndr,
|
|
r->cfdata + processed_cfdata,
|
|
r->cffolders[cntr_cffolders_0].typeCompress,
|
|
r->cffolders[cntr_cffolders_0].cCFData));
|
|
processed_cfdata += r->cffolders[cntr_cffolders_0].cCFData;
|
|
}
|
|
NDR_PULL_SET_MEM_CTX(ndr, _mem_save_cfdata_0, 0);
|
|
NDR_CHECK(ndr_pull_trailer_align(ndr, 4));
|
|
}
|
|
if (ndr_flags & NDR_BUFFERS) {
|
|
}
|
|
ndr->flags = _flags_save_STRUCT;
|
|
}
|
|
return NDR_ERR_SUCCESS;
|
|
}
|