The coroutine files are currently referenced by the block-obj-y variable. The coroutine functionality though is already used by more than just the block code. eg migration code uses coroutine yield. In the future the I/O channel code will also use the coroutine yield functionality. Since the coroutine code is nicely self-contained it can be easily built as part of the libqemuutil.a library, making it widely available. The headers are also moved into include/qemu, instead of the include/block directory, since they are now part of the util codebase, and the impl was never in the block/ directory either. Signed-off-by: Daniel P. Berrange <berrange@redhat.com>
		
			
				
	
	
		
			365 lines
		
	
	
		
			8.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			365 lines
		
	
	
		
			8.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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/*
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 * Virtio 9p backend
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 *
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 * Copyright IBM, Corp. 2011
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 *
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 * Authors:
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 *  Aneesh Kumar K.V <aneesh.kumar@linux.vnet.ibm.com>
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 *
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 * This work is licensed under the terms of the GNU GPL, version 2.  See
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 * the COPYING file in the top-level directory.
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 *
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 */
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#include "fsdev/qemu-fsdev.h"
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#include "qemu/thread.h"
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#include "qemu/coroutine.h"
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#include "virtio-9p-coth.h"
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static ssize_t __readlink(V9fsState *s, V9fsPath *path, V9fsString *buf)
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{
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    ssize_t len, maxlen = PATH_MAX;
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    buf->data = g_malloc(PATH_MAX);
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    for(;;) {
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        len = s->ops->readlink(&s->ctx, path, buf->data, maxlen);
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        if (len < 0) {
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            g_free(buf->data);
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            buf->data = NULL;
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            buf->size = 0;
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            break;
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        } else if (len == maxlen) {
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            /*
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             * We dodn't have space to put the NULL or we have more
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             * to read. Increase the size and try again
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             */
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            maxlen *= 2;
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            g_free(buf->data);
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            buf->data = g_malloc(maxlen);
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            continue;
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        }
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        /*
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         * Null terminate the readlink output
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         */
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        buf->data[len] = '\0';
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        buf->size = len;
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        break;
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    }
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    return len;
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}
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int v9fs_co_readlink(V9fsPDU *pdu, V9fsPath *path, V9fsString *buf)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = __readlink(s, path, buf);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_statfs(V9fsPDU *pdu, V9fsPath *path, struct statfs *stbuf)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->statfs(&s->ctx, path, stbuf);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_chmod(V9fsPDU *pdu, V9fsPath *path, mode_t mode)
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{
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    int err;
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    FsCred cred;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    cred_init(&cred);
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    cred.fc_mode = mode;
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->chmod(&s->ctx, path, &cred);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_utimensat(V9fsPDU *pdu, V9fsPath *path,
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                      struct timespec times[2])
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->utimensat(&s->ctx, path, times);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_chown(V9fsPDU *pdu, V9fsPath *path, uid_t uid, gid_t gid)
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{
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    int err;
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    FsCred cred;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    cred_init(&cred);
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    cred.fc_uid = uid;
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    cred.fc_gid = gid;
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->chown(&s->ctx, path, &cred);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_truncate(V9fsPDU *pdu, V9fsPath *path, off_t size)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->truncate(&s->ctx, path, size);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_mknod(V9fsPDU *pdu, V9fsFidState *fidp, V9fsString *name, uid_t uid,
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                  gid_t gid, dev_t dev, mode_t mode, struct stat *stbuf)
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{
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    int err;
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    V9fsPath path;
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    FsCred cred;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    cred_init(&cred);
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    cred.fc_uid  = uid;
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    cred.fc_gid  = gid;
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    cred.fc_mode = mode;
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    cred.fc_rdev = dev;
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->mknod(&s->ctx, &fidp->path, name->data, &cred);
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            if (err < 0) {
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                err = -errno;
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            } else {
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                v9fs_path_init(&path);
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                err = v9fs_name_to_path(s, &fidp->path, name->data, &path);
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                if (!err) {
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                    err = s->ops->lstat(&s->ctx, &path, stbuf);
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                    if (err < 0) {
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                        err = -errno;
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                    }
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                }
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                v9fs_path_free(&path);
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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/* Only works with path name based fid */
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int v9fs_co_remove(V9fsPDU *pdu, V9fsPath *path)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->remove(&s->ctx, path->data);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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int v9fs_co_unlinkat(V9fsPDU *pdu, V9fsPath *path, V9fsString *name, int flags)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->unlinkat(&s->ctx, path, name->data, flags);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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/* Only work with path name based fid */
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int v9fs_co_rename(V9fsPDU *pdu, V9fsPath *oldpath, V9fsPath *newpath)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->rename(&s->ctx, oldpath->data, newpath->data);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    return err;
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}
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int v9fs_co_renameat(V9fsPDU *pdu, V9fsPath *olddirpath, V9fsString *oldname,
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                     V9fsPath *newdirpath, V9fsString *newname)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->renameat(&s->ctx, olddirpath, oldname->data,
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                                   newdirpath, newname->data);
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            if (err < 0) {
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                err = -errno;
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            }
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        });
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    return err;
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}
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int v9fs_co_symlink(V9fsPDU *pdu, V9fsFidState *dfidp, V9fsString *name,
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                    const char *oldpath, gid_t gid, struct stat *stbuf)
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{
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    int err;
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    FsCred cred;
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    V9fsPath path;
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    V9fsState *s = pdu->s;
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    if (v9fs_request_cancelled(pdu)) {
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        return -EINTR;
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    }
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    cred_init(&cred);
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    cred.fc_uid = dfidp->uid;
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    cred.fc_gid = gid;
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    cred.fc_mode = 0777;
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    v9fs_path_read_lock(s);
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    v9fs_co_run_in_worker(
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        {
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            err = s->ops->symlink(&s->ctx, oldpath, &dfidp->path,
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                                  name->data, &cred);
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            if (err < 0) {
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                err = -errno;
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            } else {
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                v9fs_path_init(&path);
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                err = v9fs_name_to_path(s, &dfidp->path, name->data, &path);
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                if (!err) {
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                    err = s->ops->lstat(&s->ctx, &path, stbuf);
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                    if (err < 0) {
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                        err = -errno;
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                    }
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                }
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                v9fs_path_free(&path);
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            }
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        });
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    v9fs_path_unlock(s);
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    return err;
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}
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/*
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 * For path name based fid we don't block. So we can
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 * directly call the fs driver ops.
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 */
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int v9fs_co_name_to_path(V9fsPDU *pdu, V9fsPath *dirpath,
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                         const char *name, V9fsPath *path)
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{
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    int err;
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    V9fsState *s = pdu->s;
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    if (s->ctx.export_flags & V9FS_PATHNAME_FSCONTEXT) {
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        err = s->ops->name_to_path(&s->ctx, dirpath, name, path);
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        if (err < 0) {
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            err = -errno;
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        }
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    } else {
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        if (v9fs_request_cancelled(pdu)) {
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            return -EINTR;
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        }
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        v9fs_co_run_in_worker(
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            {
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                err = s->ops->name_to_path(&s->ctx, dirpath, name, path);
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                if (err < 0) {
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                    err = -errno;
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                }
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            });
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    }
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    return err;
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}
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