#include "config.h"
-#ifdef WITH_NTFS_3G
+
#include <ntfs-3g/endians.h>
#include <ntfs-3g/types.h>
-#endif
#include "wimlib_internal.h"
-
-
-#ifdef WITH_NTFS_3G
#include "dentry.h"
#include "lookup_table.h"
#include "io.h"
#include <stdlib.h>
#include <unistd.h>
-struct ntfs_apply_args {
- ntfs_volume *vol;
- int extract_flags;
- WIMStruct *w;
-};
-
/*
* Extracts a WIM resource to a NTFS attribute.
*/
while (bytes_remaining) {
u64 to_read = min(bytes_remaining, WIM_CHUNK_SIZE);
- ret = read_wim_resource(lte, buf, to_read, offset, false);
+ ret = read_wim_resource(lte, buf, to_read, offset, 0);
if (ret != 0)
break;
sha1_update(&ctx, buf, to_read);
*
* @ni: The NTFS inode for the file.
* @inode: The WIM dentry that has an inode containing the streams.
- * @w: The WIMStruct for the WIM containing the image we are applying.
*
* Returns 0 on success, nonzero on failure.
*/
static int write_ntfs_data_streams(ntfs_inode *ni, const struct dentry *dentry,
- WIMStruct *w)
+ struct apply_args *args)
{
int ret = 0;
unsigned stream_idx = 0;
struct lookup_table_entry *lte;
ntfs_attr *na;
- lte = inode_stream_lte(inode, stream_idx, w->lookup_table);
+ lte = inode_stream_lte_resolved(inode, stream_idx);
if (stream_name_len) {
/* Create an empty named stream. */
ret = extract_wim_resource_to_ntfs_attr(lte, na);
if (ret != 0)
break;
+ args->progress.extract.completed_bytes += wim_resource_size(lte);
ntfs_attr_close(na);
}
if (stream_idx == inode->num_ads)
}
static int apply_reparse_data(ntfs_inode *ni, const struct dentry *dentry,
- const WIMStruct *w)
+ struct apply_args *args)
{
struct lookup_table_entry *lte;
int ret = 0;
- wimlib_assert(dentry->d_inode->attributes & FILE_ATTRIBUTE_REPARSE_POINT);
-
- lte = inode_unnamed_lte(dentry->d_inode, w->lookup_table);
+ lte = inode_unnamed_lte_resolved(dentry->d_inode);
DEBUG("Applying reparse data to `%s'", dentry->full_path_utf8);
}
if (wim_resource_size(lte) >= 0xffff) {
- ERROR("Reparse data of `%s' is too long (%lu bytes)",
+ ERROR("Reparse data of `%s' is too long (%"PRIu64" bytes)",
dentry->full_path_utf8, wim_resource_size(lte));
return WIMLIB_ERR_INVALID_DENTRY;
}
p = put_u16(p, wim_resource_size(lte)); /* ReparseDataLength */
p = put_u16(p, 0); /* Reserved */
- ret = read_full_wim_resource(lte, p);
+ ret = read_full_wim_resource(lte, p, 0);
if (ret != 0)
return ret;
dentry->full_path_utf8);
return WIMLIB_ERR_NTFS_3G;
}
+ args->progress.extract.completed_bytes += wim_resource_size(lte);
return 0;
}
static int do_wim_apply_dentry_ntfs(struct dentry *dentry, ntfs_inode *dir_ni,
- WIMStruct *w);
+ struct apply_args *args);
/*
* If @dentry is part of a hard link group, search for hard-linked dentries in
*/
static int preapply_dentry_with_dos_name(struct dentry *dentry,
ntfs_inode **dir_ni_p,
- WIMStruct *w)
+ struct apply_args *args)
{
struct dentry *other;
struct dentry *dentry_with_dos_name;
}
}
/* If there's a dentry with a DOS name, extract it first */
- if (dentry_with_dos_name && !dentry_is_extracted(dentry)) {
+ if (dentry_with_dos_name && !dentry_with_dos_name->is_extracted) {
char *p;
const char *dir_name;
char orig;
DEBUG("pre-applying DOS name `%s'",
dentry_with_dos_name->full_path_utf8);
ret = do_wim_apply_dentry_ntfs(dentry_with_dos_name,
- *dir_ni_p, w);
+ *dir_ni_p, args);
if (ret != 0)
return ret;
p = dentry->full_path_utf8 + dentry->full_path_utf8_len;
*
* @dentry: The WIM dentry to apply
* @dir_ni: The NTFS inode for the parent directory
- * @w: The WIMStruct for the WIM containing the image we are applying.
*
* @return: 0 on success; nonzero on failure.
*/
static int do_wim_apply_dentry_ntfs(struct dentry *dentry, ntfs_inode *dir_ni,
- WIMStruct *w)
+ struct apply_args *args)
{
int ret = 0;
mode_t type;
* (if there is one) before this dentry */
if (dentry->short_name_len == 0) {
ret = preapply_dentry_with_dos_name(dentry,
- &dir_ni, w);
+ &dir_ni, args);
if (ret != 0)
return ret;
}
* */
if (!(inode->attributes & (FILE_ATTRIBUTE_REPARSE_POINT |
FILE_ATTRIBUTE_DIRECTORY))) {
- ret = write_ntfs_data_streams(ni, dentry, w);
+ ret = write_ntfs_data_streams(ni, dentry, args);
if (ret != 0)
goto out_close_dir_ni;
}
- ret = apply_file_attributes_and_security_data(ni, dir_ni, dentry, w);
+ ret = apply_file_attributes_and_security_data(ni, dir_ni,
+ dentry, args->w);
if (ret != 0)
goto out_close_dir_ni;
if (inode->attributes & FILE_ATTR_REPARSE_POINT) {
- ret = apply_reparse_data(ni, dentry, w);
+ ret = apply_reparse_data(ni, dentry, args);
if (ret != 0)
goto out_close_dir_ni;
}
}
/* Applies a WIM dentry to the NTFS volume */
-static int wim_apply_dentry_ntfs(struct dentry *dentry, void *arg)
+int wim_apply_dentry_ntfs(struct dentry *dentry, void *arg)
{
- struct ntfs_apply_args *args = arg;
+ struct apply_args *args = arg;
ntfs_volume *vol = args->vol;
int extract_flags = args->extract_flags;
WIMStruct *w = args->w;
char orig;
const char *dir_name;
- if (dentry_is_extracted(dentry))
+ if (dentry->is_extracted)
return 0;
- wimlib_assert(dentry->full_path_utf8);
+ if (extract_flags & WIMLIB_EXTRACT_FLAG_NO_STREAMS)
+ if (inode_unnamed_lte_resolved(dentry->d_inode))
+ return 0;
DEBUG("Applying dentry `%s' to NTFS", dentry->full_path_utf8);
dir_name);
return WIMLIB_ERR_NTFS_3G;
}
- return do_wim_apply_dentry_ntfs(dentry, dir_ni, w);
+ return do_wim_apply_dentry_ntfs(dentry, dir_ni, arg);
}
-static int wim_apply_dentry_timestamps(struct dentry *dentry, void *arg)
+int wim_apply_dentry_timestamps(struct dentry *dentry, void *arg)
{
- struct ntfs_apply_args *args = arg;
- ntfs_volume *vol = args->vol;
+ struct apply_args *args = arg;
+ ntfs_volume *vol = args->vol;
u8 *p;
u8 buf[24];
ntfs_inode *ni;
int ret = 0;
-
DEBUG("Setting timestamps on `%s'", dentry->full_path_utf8);
ni = ntfs_pathname_to_inode(vol, NULL, dentry->full_path_utf8);
}
return ret;
}
-
-static int dentry_set_unextracted(struct dentry *dentry, void *ignore)
-{
- dentry->is_extracted = false;
- return 0;
-}
-
-static int do_wim_apply_image_ntfs(WIMStruct *w, const char *device, int extract_flags)
-{
- ntfs_volume *vol;
- int ret;
- struct dentry *root;
- struct ntfs_apply_args args;
-
- DEBUG("Mounting NTFS volume `%s'", device);
- vol = ntfs_mount(device, 0);
- if (!vol) {
- ERROR_WITH_ERRNO("Failed to mount NTFS volume `%s'", device);
- return WIMLIB_ERR_NTFS_3G;
- }
- args.vol = vol;
- args.extract_flags = extract_flags;
- args.w = w;
- root = wim_root_dentry(w);
-
- for_dentry_in_tree(root, dentry_set_unextracted, NULL);
- ret = for_dentry_in_tree(root, wim_apply_dentry_ntfs, &args);
- if (ret != 0)
- goto out;
-
- if (extract_flags & WIMLIB_EXTRACT_FLAG_VERBOSE)
- printf("Setting timestamps of extracted files on NTFS "
- "volume `%s'\n", device);
- ret = for_dentry_in_tree_depth(root, wim_apply_dentry_timestamps,
- &args);
-
- if (ret == 0 && (extract_flags & WIMLIB_EXTRACT_FLAG_VERBOSE))
- printf("Finished applying image %d of %s to NTFS "
- "volume `%s'\n",
- w->current_image,
- w->filename ? w->filename : "WIM",
- device);
-out:
- DEBUG("Unmounting NTFS volume `%s'", device);
- if (ntfs_umount(vol, FALSE) != 0) {
- ERROR_WITH_ERRNO("Failed to unmount NTFS volume `%s'", device);
- if (ret == 0)
- ret = WIMLIB_ERR_NTFS_3G;
- }
- return ret;
-}
-
-
-/*
- * API entry point for applying a WIM image to a NTFS volume.
- *
- * Please note that this is a NTFS *volume* and not a directory. The intention
- * is that the volume contain an empty filesystem, and the WIM image contain a
- * full filesystem to be applied to the volume.
- */
-WIMLIBAPI int wimlib_apply_image_to_ntfs_volume(WIMStruct *w, int image,
- const char *device, int flags,
- WIMStruct **additional_swms,
- unsigned num_additional_swms)
-{
- struct lookup_table *joined_tab, *w_tab_save;
- int ret;
-
- DEBUG("w->filename = %s, image = %d, device = %s, flags = 0x%x, "
- "num_additional_swms = %u",
- w->filename, image, device, flags, num_additional_swms);
-
- if (!w || !device)
- return WIMLIB_ERR_INVALID_PARAM;
- if (image == WIM_ALL_IMAGES) {
- ERROR("Can only apply a single image when applying "
- "directly to a NTFS volume");
- return WIMLIB_ERR_INVALID_PARAM;
- }
- if (flags & (WIMLIB_EXTRACT_FLAG_SYMLINK | WIMLIB_EXTRACT_FLAG_HARDLINK)) {
- ERROR("Cannot specify symlink or hardlink flags when applying ");
- ERROR("directly to a NTFS volume");
- return WIMLIB_ERR_INVALID_PARAM;
- }
-
- ret = verify_swm_set(w, additional_swms, num_additional_swms);
- if (ret != 0)
- return ret;
-
- if (num_additional_swms) {
- ret = new_joined_lookup_table(w, additional_swms,
- num_additional_swms, &joined_tab);
- if (ret != 0)
- return ret;
- w_tab_save = w->lookup_table;
- w->lookup_table = joined_tab;
- }
-
- ret = select_wim_image(w, image);
- if (ret != 0)
- goto out;
-
- ret = do_wim_apply_image_ntfs(w, device, flags);
-
-out:
- if (num_additional_swms) {
- free_lookup_table(w->lookup_table);
- w->lookup_table = w_tab_save;
- }
- return ret;
-}
-
-#else /* WITH_NTFS_3G */
-WIMLIBAPI int wimlib_apply_image_to_ntfs_volume(WIMStruct *w, int image,
- const char *device, int flags,
- WIMStruct **additional_swms,
- unsigned num_additional_swms)
-{
- ERROR("wimlib was compiled without support for NTFS-3g, so");
- ERROR("we cannot apply a WIM image directly to a NTFS volume");
- return WIMLIB_ERR_UNSUPPORTED;
-}
-#endif /* WITH_NTFS_3G */