implement fdatasync

Change-Id: I2aefc1acebce93a2c53a6d3be5eef3b9e69480ec
Reviewed-on: https://review.haiku-os.org/c/haiku/+/8507
Tested-by: Commit checker robot <[email protected]>
Reviewed-by: nephele nephele <[email protected]>
Reviewed-by: Jérôme Duval <[email protected]>
This commit is contained in:
Pascal Abresch
2025-07-07 15:20:18 +00:00
committed by waddlesplash
parent 258fce50e0
commit 8e086795b2
29 changed files with 51 additions and 43 deletions
+1 -1
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@@ -62,7 +62,7 @@ extern int _kern_open_dir_entry_ref(dev_t device, ino_t inode,
extern int _kern_open_dir(int fd, const char *path); extern int _kern_open_dir(int fd, const char *path);
extern int _kern_open_parent_dir(int fd, char *name, extern int _kern_open_parent_dir(int fd, char *name,
size_t nameLength); size_t nameLength);
extern status_t _kern_fsync(int fd); extern status_t _kern_fsync(int fd, bool dataOnly);
extern off_t _kern_seek(int fd, off_t pos, int seekType); extern off_t _kern_seek(int fd, off_t pos, int seekType);
extern status_t _kern_create_dir_entry_ref(dev_t device, ino_t inode, extern status_t _kern_create_dir_entry_ref(dev_t device, ino_t inode,
const char *name, int perms); const char *name, int perms);
+1 -1
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@@ -150,7 +150,7 @@ struct fs_vnode_ops {
uint8 event, selectsync* sync); uint8 event, selectsync* sync);
status_t (*deselect)(fs_volume* volume, fs_vnode* vnode, void* cookie, status_t (*deselect)(fs_volume* volume, fs_vnode* vnode, void* cookie,
uint8 event, selectsync* sync); uint8 event, selectsync* sync);
status_t (*fsync)(fs_volume* volume, fs_vnode* vnode); status_t (*fsync)(fs_volume* volume, fs_vnode* vnode, bool dataOnly);
status_t (*read_symlink)(fs_volume* volume, fs_vnode* link, char* buffer, status_t (*read_symlink)(fs_volume* volume, fs_vnode* link, char* buffer,
size_t* _bufferSize); size_t* _bufferSize);
+2 -1
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@@ -72,7 +72,7 @@
#define _POSIX_SPAWN (200809L) #define _POSIX_SPAWN (200809L)
#define _POSIX_SPIN_LOCKS (-1) #define _POSIX_SPIN_LOCKS (-1)
#define _POSIX_SPORADIC_SERVER (-1) #define _POSIX_SPORADIC_SERVER (-1)
#define _POSIX_SYNCHRONIZED_IO (-1) /* missing fdatasync() */ #define _POSIX_SYNCHRONIZED_IO (200809L)
#define _POSIX_THREAD_ATTR_STACKADDR (200809L) #define _POSIX_THREAD_ATTR_STACKADDR (200809L)
#define _POSIX_THREAD_ATTR_STACKSIZE (200809L) #define _POSIX_THREAD_ATTR_STACKSIZE (200809L)
#define _POSIX_THREAD_CPUTIME (200809L) #define _POSIX_THREAD_CPUTIME (200809L)
@@ -401,6 +401,7 @@ extern off_t lseek(int fd, off_t offset, int whence);
extern void sync(void); extern void sync(void);
extern int fsync(int fd); extern int fsync(int fd);
extern int fdatasync(int fd);
extern int chown(const char *path, uid_t owner, gid_t group); extern int chown(const char *path, uid_t owner, gid_t group);
extern int fchown(int fd, uid_t owner, gid_t group); extern int fchown(int fd, uid_t owner, gid_t group);
+1 -1
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@@ -165,7 +165,7 @@ struct fssh_fs_vnode_ops {
fssh_fs_cookie cookie, uint8_t event, fssh_selectsync *sync); fssh_fs_cookie cookie, uint8_t event, fssh_selectsync *sync);
fssh_status_t (*deselect)(fssh_fs_volume *volume, fssh_fs_vnode *vnode, fssh_status_t (*deselect)(fssh_fs_volume *volume, fssh_fs_vnode *vnode,
fssh_fs_cookie cookie, uint8_t event, fssh_selectsync *sync); fssh_fs_cookie cookie, uint8_t event, fssh_selectsync *sync);
fssh_status_t (*fsync)(fssh_fs_volume *volume, fssh_fs_vnode *vnode); fssh_status_t (*fsync)(fssh_fs_volume *volume, fssh_fs_vnode *vnode, bool dataOnly);
fssh_status_t (*read_symlink)(fssh_fs_volume *volume, fssh_fs_vnode *link, fssh_status_t (*read_symlink)(fssh_fs_volume *volume, fssh_fs_vnode *link,
char *buffer, fssh_size_t *_bufferSize); char *buffer, fssh_size_t *_bufferSize);
+1 -1
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@@ -185,7 +185,7 @@ int _user_open_dir_entry_ref(dev_t device, ino_t inode,
int _user_open_dir(int fd, const char *path); int _user_open_dir(int fd, const char *path);
int _user_open_parent_dir(int fd, char *name, size_t nameLength); int _user_open_parent_dir(int fd, char *name, size_t nameLength);
status_t _user_fcntl(int fd, int op, size_t argument); status_t _user_fcntl(int fd, int op, size_t argument);
status_t _user_fsync(int fd); status_t _user_fsync(int fd, bool dataOnly);
status_t _user_flock(int fd, int op); status_t _user_flock(int fd, int op);
status_t _user_read_stat(int fd, const char *path, bool traverseLink, status_t _user_read_stat(int fd, const char *path, bool traverseLink,
struct stat *stat, size_t statSize); struct stat *stat, size_t statSize);
+1 -1
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@@ -278,7 +278,7 @@ extern int _kern_open_dir(int fd, const char *path);
extern int _kern_open_parent_dir(int fd, char *name, extern int _kern_open_parent_dir(int fd, char *name,
size_t nameLength); size_t nameLength);
extern status_t _kern_fcntl(int fd, int op, size_t argument); extern status_t _kern_fcntl(int fd, int op, size_t argument);
extern status_t _kern_fsync(int fd); extern status_t _kern_fsync(int fd, bool dataOnly);
extern status_t _kern_flock(int fd, int op); extern status_t _kern_flock(int fd, int op);
extern off_t _kern_seek(int fd, off_t pos, int seekType); extern off_t _kern_seek(int fd, off_t pos, int seekType);
extern status_t _kern_create_dir_entry_ref(dev_t device, ino_t inode, extern status_t _kern_create_dir_entry_ref(dev_t device, ino_t inode,
@@ -849,7 +849,7 @@ bfs_set_flags(fs_volume* _volume, fs_vnode* _node, void* _cookie, int flags)
static status_t static status_t
bfs_fsync(fs_volume* _volume, fs_vnode* _node) bfs_fsync(fs_volume* _volume, fs_vnode* _node, bool dataOnly)
{ {
FUNCTION(); FUNCTION();
@@ -422,7 +422,7 @@ bindfs_deselect(fs_volume* fsVolume, fs_vnode* fsNode, void* cookie,
static status_t static status_t
bindfs_fsync(fs_volume* fsVolume, fs_vnode* fsNode) bindfs_fsync(fs_volume* fsVolume, fs_vnode* fsNode, bool dataOnly)
{ {
Volume* volume = (Volume*)fsVolume->private_volume; Volume* volume = (Volume*)fsVolume->private_volume;
Node* node = (Node*)fsNode->private_node; Node* node = (Node*)fsNode->private_node;
@@ -432,7 +432,7 @@ bindfs_fsync(fs_volume* fsVolume, fs_vnode* fsNode)
FETCH_SOURCE_VOLUME_AND_NODE(volume, node->ID()); FETCH_SOURCE_VOLUME_AND_NODE(volume, node->ID());
return sourceNode->ops->fsync(sourceVolume, sourceNode); return sourceNode->ops->fsync(sourceVolume, sourceNode, dataOnly);
} }
@@ -1675,7 +1675,7 @@ cdda_free_cookie(fs_volume* _volume, fs_vnode* _node, void* _cookie)
static status_t static status_t
cdda_fsync(fs_volume* _volume, fs_vnode* _node) cdda_fsync(fs_volume* _volume, fs_vnode* _node, bool dataOnly)
{ {
return B_OK; return B_OK;
} }
@@ -576,7 +576,7 @@ ext2_set_flags(fs_volume* _volume, fs_vnode* _node, void* _cookie, int flags)
static status_t static status_t
ext2_fsync(fs_volume* _volume, fs_vnode* _node) ext2_fsync(fs_volume* _volume, fs_vnode* _node, bool dataOnly)
{ {
Inode* inode = (Inode*)_node->private_node; Inode* inode = (Inode*)_node->private_node;
return inode->Sync(); return inode->Sync();
@@ -1175,7 +1175,7 @@ dosfs_get_file_map(fs_volume* volume, fs_vnode* vnode, off_t position, size_t le
static status_t static status_t
dosfs_fsync(fs_volume* volume, fs_vnode* vnode) dosfs_fsync(fs_volume* volume, fs_vnode* vnode, bool dataOnly)
{ {
struct vnode* bsdNode = reinterpret_cast<struct vnode*>(vnode->private_node); struct vnode* bsdNode = reinterpret_cast<struct vnode*>(vnode->private_node);
@@ -1262,13 +1262,13 @@ overlay_deselect(fs_volume *volume, fs_vnode *vnode, void *cookie, uint8 event,
static status_t static status_t
overlay_fsync(fs_volume *volume, fs_vnode *vnode) overlay_fsync(fs_volume *volume, fs_vnode *vnode, bool dataOnly)
{ {
OverlayInode *node = (OverlayInode *)vnode->private_node; OverlayInode *node = (OverlayInode *)vnode->private_node;
fs_vnode *superVnode = node->SuperVnode(); fs_vnode *superVnode = node->SuperVnode();
if (superVnode->ops->fsync != NULL) if (superVnode->ops->fsync != NULL)
return superVnode->ops->fsync(volume->super_volume, superVnode); return superVnode->ops->fsync(volume->super_volume, superVnode, dataOnly);
return B_OK; return B_OK;
} }
@@ -255,14 +255,14 @@ overlay_deselect(fs_volume *volume, fs_vnode *vnode, void *cookie, uint8 event,
static status_t static status_t
overlay_fsync(fs_volume *volume, fs_vnode *vnode) overlay_fsync(fs_volume *volume, fs_vnode *vnode, bool dataOnly)
{ {
DO_LOG("%s\n", "fsync"); DO_LOG("%s\n", "fsync");
status_t result = B_UNSUPPORTED; status_t result = B_UNSUPPORTED;
fs_vnode *superVnode = (fs_vnode *)vnode->private_node; fs_vnode *superVnode = (fs_vnode *)vnode->private_node;
if (superVnode->ops->fsync != NULL) if (superVnode->ops->fsync != NULL)
result = superVnode->ops->fsync(volume->super_volume, superVnode); result = superVnode->ops->fsync(volume->super_volume, superVnode, dataOnly);
DO_LOG("fsync result: %#" B_PRIx32 "\n", result); DO_LOG("fsync result: %#" B_PRIx32 "\n", result);
return result; return result;
@@ -1770,7 +1770,7 @@ overlay_deselect(fs_volume *volume, fs_vnode *vnode, void *cookie, uint8 event,
static status_t static status_t
overlay_fsync(fs_volume *volume, fs_vnode *vnode) overlay_fsync(fs_volume *volume, fs_vnode *vnode, bool dataOnly)
{ {
return B_OK; return B_OK;
} }
@@ -492,7 +492,7 @@ nfs4_set_flags(fs_volume* volume, fs_vnode* vnode, void* _cookie, int flags)
static status_t static status_t
nfs4_fsync(fs_volume* volume, fs_vnode* vnode) nfs4_fsync(fs_volume* volume, fs_vnode* vnode, bool dataOnly)
{ {
VnodeToInode* vti = reinterpret_cast<VnodeToInode*>(vnode->private_node); VnodeToInode* vti = reinterpret_cast<VnodeToInode*>(vnode->private_node);
TRACE("volume = %p, vnode = %" B_PRIi64 "\n", volume, vti->ID()); TRACE("volume = %p, vnode = %" B_PRIi64 "\n", volume, vti->ID());
@@ -942,7 +942,7 @@ fs_write(fs_volume* _volume, fs_vnode* _node, void* _cookie, off_t pos,
static status_t static status_t
fs_fsync(fs_volume* _volume, fs_vnode* _node) fs_fsync(fs_volume* _volume, fs_vnode* _node, bool dataOnly)
{ {
CALLED(); CALLED();
vnode* node = (vnode*)_node->private_node; vnode* node = (vnode*)_node->private_node;
@@ -351,7 +351,7 @@ ramfs_set_flags(fs_volume* /*fs*/, fs_vnode* /*node*/, void* /*cookie*/,
static status_t static status_t
ramfs_fsync(fs_volume* /*fs*/, fs_vnode* /*node*/) ramfs_fsync(fs_volume* /*fs*/, fs_vnode* /*node*/, bool dataOnly)
{ {
FUNCTION_START(); FUNCTION_START();
return B_OK; return B_OK;
@@ -344,7 +344,7 @@ userlandfs_deselect(fs_volume* fsVolume, fs_vnode* fsNode, void* cookie,
// userlandfs_fsync // userlandfs_fsync
static status_t static status_t
userlandfs_fsync(fs_volume* fsVolume, fs_vnode* fsNode) userlandfs_fsync(fs_volume* fsVolume, fs_vnode* fsNode, bool dataOnly)
{ {
Volume* volume = (Volume*)fsVolume->private_volume; Volume* volume = (Volume*)fsVolume->private_volume;
PRINT(("userlandfs_fsync(%p, %p)\n", volume, fsNode->private_node)); PRINT(("userlandfs_fsync(%p, %p)\n", volume, fsNode->private_node));
@@ -552,7 +552,7 @@ HaikuKernelVolume::FSync(void* _node)
if (!node->ops->fsync) if (!node->ops->fsync)
return B_BAD_VALUE; return B_BAD_VALUE;
return node->ops->fsync(&fVolume, node); return node->ops->fsync(&fVolume, node, false);
} }
// ReadSymlink // ReadSymlink
+1 -1
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@@ -229,7 +229,7 @@ BNode::Unlock()
status_t status_t
BNode::Sync() BNode::Sync()
{ {
return (fCStatus != B_OK) ? B_FILE_ERROR : _kern_fsync(fFd); return (fCStatus != B_OK) ? B_FILE_ERROR : _kern_fsync(fFd, false);
} }
+1 -1
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@@ -823,7 +823,7 @@ _kern_dup(int fd)
// _kern_fsync // _kern_fsync
status_t status_t
_kern_fsync(int fd) _kern_fsync(int fd, bool dataOnly)
{ {
// get the descriptor // get the descriptor
FileDescriptor *descriptor FileDescriptor *descriptor
+1 -1
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@@ -239,7 +239,7 @@ BNode::Unlock()
status_t status_t
BNode::Sync() BNode::Sync()
{ {
return (fCStatus != B_OK) ? B_FILE_ERROR : _kern_fsync(fFd); return (fCStatus != B_OK) ? B_FILE_ERROR : _kern_fsync(fFd, false);
} }
+1 -1
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@@ -1189,7 +1189,7 @@ devfs_free_cookie(fs_volume* _volume, fs_vnode* _vnode, void* _cookie)
static status_t static status_t
devfs_fsync(fs_volume* _volume, fs_vnode* _v) devfs_fsync(fs_volume* _volume, fs_vnode* _v, bool dataOnly)
{ {
return B_OK; return B_OK;
} }
+1 -1
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@@ -1113,7 +1113,7 @@ fifo_free_cookie(fs_volume* _volume, fs_vnode* _node, void* _cookie)
static status_t static status_t
fifo_fsync(fs_volume* _volume, fs_vnode* _node) fifo_fsync(fs_volume* _volume, fs_vnode* _node, bool dataOnly)
{ {
return B_BAD_VALUE; return B_BAD_VALUE;
} }
+1 -1
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@@ -631,7 +631,7 @@ rootfs_free_cookie(fs_volume* _volume, fs_vnode* _v, void* _cookie)
static status_t static status_t
rootfs_fsync(fs_volume* _volume, fs_vnode* _v) rootfs_fsync(fs_volume* _volume, fs_vnode* _v, bool dataOnly)
{ {
return B_OK; return B_OK;
} }
+8 -8
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@@ -988,7 +988,7 @@ free_vnode(struct vnode* vnode, bool reenter)
// will be discarded // will be discarded
if (!vnode->IsRemoved() && HAS_FS_CALL(vnode, fsync)) if (!vnode->IsRemoved() && HAS_FS_CALL(vnode, fsync))
FS_CALL_NO_PARAMS(vnode, fsync); FS_CALL(vnode, fsync, false);
// Note: If this vnode has a cache attached, there will still be two // Note: If this vnode has a cache attached, there will still be two
// references to that cache at this point. The last one belongs to the vnode // references to that cache at this point. The last one belongs to the vnode
@@ -6416,9 +6416,9 @@ common_fcntl(int fd, int op, size_t argument, bool kernel)
static status_t static status_t
common_sync(int fd, bool kernel) common_sync(int fd, bool dataOnly, bool kernel)
{ {
FUNCTION(("common_fsync: entry. fd %d kernel %d\n", fd, kernel)); FUNCTION(("common_sync: entry. fd %d kernel %d, data only %d\n", fd, kernel, dataOnly));
struct vnode* vnode; struct vnode* vnode;
FileDescriptorPutter descriptor(get_fd_and_vnode(fd, &vnode, kernel)); FileDescriptorPutter descriptor(get_fd_and_vnode(fd, &vnode, kernel));
@@ -6427,7 +6427,7 @@ common_sync(int fd, bool kernel)
status_t status; status_t status;
if (HAS_FS_CALL(vnode, fsync)) if (HAS_FS_CALL(vnode, fsync))
status = FS_CALL_NO_PARAMS(vnode, fsync); status = FS_CALL(vnode, fsync, dataOnly);
else else
status = B_UNSUPPORTED; status = B_UNSUPPORTED;
@@ -8439,9 +8439,9 @@ _kern_fcntl(int fd, int op, size_t argument)
status_t status_t
_kern_fsync(int fd) _kern_fsync(int fd, bool dataOnly)
{ {
return common_sync(fd, true); return common_sync(fd, dataOnly, true);
} }
@@ -9272,9 +9272,9 @@ _user_fcntl(int fd, int op, size_t argument)
status_t status_t
_user_fsync(int fd) _user_fsync(int fd, bool dataOnly)
{ {
return common_sync(fd, false); return common_sync(fd, dataOnly, false);
} }
+8 -1
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@@ -18,7 +18,14 @@
int int
fsync(int fd) fsync(int fd)
{ {
RETURN_AND_SET_ERRNO_TEST_CANCEL(_kern_fsync(fd)); RETURN_AND_SET_ERRNO_TEST_CANCEL(_kern_fsync(fd, false));
}
int
fdatasync(int fd)
{
RETURN_AND_SET_ERRNO_TEST_CANCEL(_kern_fsync(fd, true));
} }
+1 -1
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@@ -35,7 +35,7 @@ int _kern_open_dir_entry_ref(fssh_dev_t device, fssh_ino_t inode,
const char *name); const char *name);
int _kern_open_dir(int fd, const char *path); int _kern_open_dir(int fd, const char *path);
fssh_status_t _kern_fcntl(int fd, int op, uint32_t argument); fssh_status_t _kern_fcntl(int fd, int op, uint32_t argument);
fssh_status_t _kern_fsync(int fd); fssh_status_t _kern_fsync(int fd, bool dataOnly);
fssh_status_t _kern_lock_node(int fd); fssh_status_t _kern_lock_node(int fd);
fssh_status_t _kern_unlock_node(int fd); fssh_status_t _kern_unlock_node(int fd);
fssh_status_t _kern_create_dir_entry_ref(fssh_dev_t device, fssh_ino_t inode, fssh_status_t _kern_create_dir_entry_ref(fssh_dev_t device, fssh_ino_t inode,
+5 -5
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@@ -638,7 +638,7 @@ free_vnode(struct vnode *vnode, bool reenter)
// will be discarded // will be discarded
if (!vnode->remove && HAS_FS_CALL(vnode, fsync)) if (!vnode->remove && HAS_FS_CALL(vnode, fsync))
FS_CALL_NO_PARAMS(vnode, fsync); FS_CALL(vnode, fsync, false);
if (!vnode->unpublished) { if (!vnode->unpublished) {
if (vnode->remove) if (vnode->remove)
@@ -3619,7 +3619,7 @@ common_fcntl(int fd, int op, uint32_t argument, bool kernel)
static fssh_status_t static fssh_status_t
common_sync(int fd, bool kernel) common_sync(int fd, bool dataOnly, bool kernel)
{ {
struct file_descriptor *descriptor; struct file_descriptor *descriptor;
struct vnode *vnode; struct vnode *vnode;
@@ -3632,7 +3632,7 @@ common_sync(int fd, bool kernel)
return FSSH_B_FILE_ERROR; return FSSH_B_FILE_ERROR;
if (HAS_FS_CALL(vnode, fsync)) if (HAS_FS_CALL(vnode, fsync))
status = FS_CALL_NO_PARAMS(vnode, fsync); status = FS_CALL(vnode, fsync, dataOnly);
else else
status = FSSH_EOPNOTSUPP; status = FSSH_EOPNOTSUPP;
@@ -4904,7 +4904,7 @@ fs_sync(fssh_dev_t device)
put_vnode(previousVnode); put_vnode(previousVnode);
if (HAS_FS_CALL(vnode, fsync)) if (HAS_FS_CALL(vnode, fsync))
FS_CALL_NO_PARAMS(vnode, fsync); FS_CALL(vnode, fsync, false);
// the next vnode might change until we lock the vnode list again, // the next vnode might change until we lock the vnode list again,
// but this vnode won't go away since we keep a reference to it. // but this vnode won't go away since we keep a reference to it.
@@ -5245,7 +5245,7 @@ _kern_fcntl(int fd, int op, uint32_t argument)
fssh_status_t fssh_status_t
_kern_fsync(int fd) _kern_fsync(int fd)
{ {
return common_sync(fd, true); return common_sync(fd, false, true);
} }