rt-thread/components/dfs/dfs_v1/filesystems/nfs/dfs_nfs.c

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/*
2021-03-08 18:19:04 +08:00
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
*/
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#include <stdio.h>
#include <rtthread.h>
#include <dfs_fs.h>
#include <dfs.h>
#include <dfs_file.h>
#include <rpc/rpc.h>
#include "mount.h"
#include "nfs.h"
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#define NAME_MAX 64
#define DFS_NFS_MAX_MTU 1024
#ifdef _WIN32
#define strtok_r strtok_s
#endif
struct nfs_file
{
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nfs_fh3 handle; /* handle */
size_t offset; /* current offset */
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size_t size; /* total size */
bool_t eof; /* end of file */
};
struct nfs_dir
{
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nfs_fh3 handle;
cookie3 cookie;
cookieverf3 cookieverf;
entry3 *entry;
bool_t eof;
READDIR3res res;
};
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#define HOST_LENGTH 32
#define EXPORT_PATH_LENGTH 32
struct nfs_filesystem
{
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nfs_fh3 root_handle;
nfs_fh3 current_handle;
CLIENT *nfs_client;
CLIENT *mount_client;
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char host[HOST_LENGTH];
char export[EXPORT_PATH_LENGTH];
void *data; /* nfs_file or nfs_dir */
};
typedef struct nfs_filesystem nfs_filesystem;
typedef struct nfs_file nfs_file;
typedef struct nfs_dir nfs_dir;
nfs_dir *nfs_opendir(nfs_filesystem *nfs, const char *path);
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static int nfs_parse_host_export(const char *host_export,
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char *host,
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size_t host_len,
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char *export,
size_t export_len)
{
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int index;
for (index = 0; index < host_len; index ++)
{
/* it's end of string, failed */
if (host_export[index] == 0)
return -1;
/* copy to host buffer */
if (host_export[index] != ':')
host[index] = host_export[index];
else
break;
}
/* host buffer is not enough, failed */
if (index == host_len)
return -1;
/* make NULL */
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host_len = index;
host[host_len] = '\0';
host_len ++;
/* copy export path */
for (index = host_len; index < host_len + export_len; index ++)
{
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if (host_export[index] == 0)
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{
export[index - host_len] = '\0';
return 0;
}
export[index - host_len] = host_export[index];
}
return -1;
}
static void copy_handle(nfs_fh3 *dest, const nfs_fh3 *source)
{
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dest->data.data_len = source->data.data_len;
dest->data.data_val = rt_malloc(dest->data.data_len);
if (dest->data.data_val == NULL)
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{
dest->data.data_len = 0;
return;
}
memcpy(dest->data.data_val, source->data.data_val, dest->data.data_len);
}
static nfs_fh3 *get_handle(nfs_filesystem *nfs, const char *name)
{
nfs_fh3 *handle = NULL;
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char *file;
char *path;
char *init;
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init = path = rt_malloc(strlen(name) + 1);
if (init == NULL)
return NULL;
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memcpy(init, name, strlen(name) + 1);
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handle = rt_malloc(sizeof(nfs_fh3));
if (handle == NULL)
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{
rt_free(init);
return NULL;
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}
if (path[0] == '/')
{
path ++;
copy_handle(handle, &nfs->root_handle);
}
else
{
copy_handle(handle, &nfs->current_handle);
}
while ((file = strtok_r(NULL, "/", &path)) != NULL)
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{
LOOKUP3args args;
LOOKUP3res res;
memset(&res, 0, sizeof(res));
copy_handle(&args.what.dir, handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
args.what.name = file;
if (nfsproc3_lookup_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Lookup failed\n");
rt_free(init);
rt_free(handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&args.what.dir);
return NULL;
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}
else if (res.status != NFS3_OK)
{
rt_kprintf("Lookup failed: %d\n", res.status);
rt_free(init);
rt_free(handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&args.what.dir);
xdr_free((xdrproc_t)xdr_LOOKUP3res, (char *)&res);
return NULL;
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}
copy_handle(handle, &res.LOOKUP3res_u.resok.object);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&args.what.dir);
xdr_free((xdrproc_t)xdr_LOOKUP3res, (char *)&res);
}
rt_free(init);
return handle;
}
static nfs_fh3 *get_dir_handle(nfs_filesystem *nfs, const char *name)
{
nfs_fh3 *handle = NULL;
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char *file;
char *path;
char *init;
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init = path = rt_malloc(strlen(name) + 1);
if (init == NULL)
return NULL;
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memcpy(init, name, strlen(name) + 1);
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handle = rt_malloc(sizeof(nfs_fh3));
if (handle == NULL)
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{
rt_free(init);
return NULL;
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}
if (path[0] == '/')
{
path ++;
copy_handle(handle, &nfs->root_handle);
}
else
{
copy_handle(handle, &nfs->current_handle);
}
while ((file = strtok_r(NULL, "/", &path)) != NULL && path && path[0] != 0)
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{
LOOKUP3args args;
LOOKUP3res res;
memset(&res, 0, sizeof(res));
copy_handle(&args.what.dir, handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
args.what.name = file;
if (nfsproc3_lookup_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Lookup failed\n");
rt_free(init);
rt_free(handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&args.what.dir);
return NULL;
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}
else if (res.status != NFS3_OK)
{
rt_kprintf("Lookup failed: %d\n", res.status);
rt_free(init);
rt_free(handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&args.what.dir);
xdr_free((xdrproc_t)xdr_LOOKUP3res, (char *)&res);
return NULL;
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}
copy_handle(handle, &res.LOOKUP3res_u.resok.object);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&args.what.dir);
xdr_free((xdrproc_t)xdr_LOOKUP3res, (char *)&res);
}
rt_free(init);
return handle;
}
static size_t nfs_get_filesize(nfs_filesystem *nfs, nfs_fh3 *handle)
{
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GETATTR3args args;
GETATTR3res res;
fattr3 *info;
size_t size;
args.object = *handle;
memset(&res, '\0', sizeof(res));
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if ((nfsproc3_getattr_3(args, &res, nfs->nfs_client) != RPC_SUCCESS) ||
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res.status != NFS3_OK)
{
rt_kprintf("GetAttr failed: %d\n", res.status);
return 0;
}
info = &res.GETATTR3res_u.resok.obj_attributes;
size = info->size;
xdr_free((xdrproc_t)xdr_GETATTR3res, (char *)&res);
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return size;
}
rt_bool_t nfs_is_directory(nfs_filesystem *nfs, const char *name)
{
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GETATTR3args args;
GETATTR3res res;
fattr3 *info;
nfs_fh3 *handle;
rt_bool_t result;
result = RT_FALSE;
handle = get_handle(nfs, name);
if (handle == NULL)
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return RT_FALSE;
args.object = *handle;
memset(&res, '\0', sizeof(res));
if (nfsproc3_getattr_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("GetAttr failed\n");
return RT_FALSE;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Getattr failed: %d\n", res.status);
return RT_FALSE;
}
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info = &res.GETATTR3res_u.resok.obj_attributes;
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if (info->type == NFS3DIR)
result = RT_TRUE;
xdr_free((xdrproc_t)xdr_GETATTR3res, (char *)&res);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
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return result;
}
int nfs_create(nfs_filesystem *nfs, const char *name, mode_t mode)
{
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CREATE3args args;
CREATE3res res;
int ret = 0;
nfs_fh3 *handle;
if (nfs->nfs_client == NULL)
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{
return -1;
}
handle = get_dir_handle(nfs, name);
if (handle == NULL)
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{
return -1;
}
args.where.dir = *handle;
args.where.name = strrchr(name, '/') + 1;
if (args.where.name == NULL)
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{
args.where.name = (char *)name;
}
args.how.mode = GUARDED;
args.how.createhow3_u.obj_attributes.mode.set_it = TRUE;
args.how.createhow3_u.obj_attributes.mode.set_mode3_u.mode = mode;
args.how.createhow3_u.obj_attributes.uid.set_it = FALSE;
args.how.createhow3_u.obj_attributes.gid.set_it = FALSE;
args.how.createhow3_u.obj_attributes.size.set_it = FALSE;
args.how.createhow3_u.obj_attributes.atime.set_it = DONT_CHANGE;
args.how.createhow3_u.obj_attributes.mtime.set_it = DONT_CHANGE;
memset(&res, 0, sizeof(res));
if (nfsproc3_create_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Create failed\n");
ret = -1;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Create failed: %d\n", res.status);
ret = -1;
}
xdr_free((xdrproc_t)xdr_CREATE3res, (char *)&res);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
return ret;
}
int nfs_mkdir(nfs_filesystem *nfs, const char *name, mode_t mode)
{
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MKDIR3args args;
MKDIR3res res;
int ret = 0;
nfs_fh3 *handle;
if (nfs->nfs_client == NULL)
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return -1;
handle = get_dir_handle(nfs, name);
if (handle == NULL)
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return -1;
args.where.dir = *handle;
args.where.name = strrchr(name, '/') + 1;
if (args.where.name == NULL)
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{
args.where.name = (char *)name;
}
args.attributes.mode.set_it = TRUE;
args.attributes.mode.set_mode3_u.mode = mode;
args.attributes.uid.set_it = FALSE;
args.attributes.gid.set_it = FALSE;
args.attributes.size.set_it = FALSE;
args.attributes.atime.set_it = DONT_CHANGE;
args.attributes.mtime.set_it = DONT_CHANGE;
memset(&res, 0, sizeof(res));
if (nfsproc3_mkdir_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Mkdir failed\n");
ret = -1;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Mkdir failed: %d\n", res.status);
ret = -1;
}
xdr_free((xdrproc_t)xdr_MKDIR3res, (char *)&res);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
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return ret;
}
/* mount(NULL, "/mnt", "nfs", 0, "192.168.1.1:/export") */
int nfs_mount(struct dfs_filesystem *fs, unsigned long rwflag, const void *data)
{
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mountres3 res;
nfs_filesystem *nfs;
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nfs = (nfs_filesystem *)rt_malloc(sizeof(nfs_filesystem));
memset(nfs, 0, sizeof(nfs_filesystem));
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if (nfs_parse_host_export((const char *)data, nfs->host, HOST_LENGTH,
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nfs->export, EXPORT_PATH_LENGTH) < 0)
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{
rt_kprintf("host or export path error\n");
goto __return;
}
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nfs->mount_client = clnt_create((char *)nfs->host, MOUNT_PROGRAM, MOUNT_V3, "udp");
if (nfs->mount_client == NULL)
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{
rt_kprintf("create mount client failed\n");
goto __return;
}
memset(&res, '\0', sizeof(mountres3));
if (mountproc3_mnt_3((char *)nfs->export, &res, nfs->mount_client) != RPC_SUCCESS)
{
rt_kprintf("nfs mount failed\n");
goto __return;
}
else if (res.fhs_status != MNT3_OK)
{
rt_kprintf("nfs mount failed\n");
goto __return;
}
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nfs->nfs_client = clnt_create((char *)nfs->host, NFS_PROGRAM, NFS_V3, "udp");
if (nfs->nfs_client == NULL)
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{
rt_kprintf("creat nfs client failed\n");
goto __return;
}
copy_handle(&nfs->root_handle, (nfs_fh3 *)&res.mountres3_u.mountinfo.fhandle);
copy_handle(&nfs->current_handle, &nfs->root_handle);
nfs->nfs_client->cl_auth = authnone_create();
fs->data = nfs;
return 0;
__return:
if (nfs != NULL)
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{
if (nfs->mount_client != NULL)
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{
clnt_destroy(nfs->mount_client);
}
if (nfs->nfs_client != NULL)
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{
if (nfs->nfs_client->cl_auth != NULL)
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{
auth_destroy(nfs->nfs_client->cl_auth);
}
clnt_destroy(nfs->nfs_client);
}
rt_free(nfs);
}
return -1;
}
int nfs_unmount(struct dfs_filesystem *fs)
{
nfs_filesystem *nfs;
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RT_ASSERT(fs != NULL);
RT_ASSERT(fs->data != NULL);
nfs = (nfs_filesystem *)fs->data;
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if (nfs->mount_client != NULL &&
mountproc3_umnt_3((char *)nfs->export, NULL, nfs->mount_client) != RPC_SUCCESS)
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{
rt_kprintf("unmount failed\n");
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return -1;
}
/* destroy nfs client */
if (nfs->nfs_client != NULL)
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{
if (nfs->nfs_client->cl_auth != NULL)
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{
auth_destroy(nfs->nfs_client->cl_auth);
nfs->nfs_client->cl_auth = NULL;
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}
clnt_destroy(nfs->nfs_client);
nfs->nfs_client = NULL;
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}
/* destroy mount client */
if (nfs->mount_client != NULL)
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{
if (nfs->mount_client->cl_auth != NULL)
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{
auth_destroy(nfs->mount_client->cl_auth);
nfs->mount_client->cl_auth = NULL;
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}
clnt_destroy(nfs->mount_client);
nfs->mount_client = NULL;
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}
rt_free(nfs);
fs->data = NULL;
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return 0;
}
int nfs_ioctl(struct dfs_file *file, int cmd, void *args)
{
return -ENOSYS;
}
int nfs_read(struct dfs_file *file, void *buf, size_t count)
{
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READ3args args;
READ3res res;
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ssize_t bytes, total = 0;
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nfs_file *fd;
nfs_filesystem *nfs;
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if (file->vnode->type == FT_DIRECTORY)
return -EISDIR;
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RT_ASSERT(file->vnode->fs != NULL);
struct dfs_filesystem *dfs_nfs = ((struct dfs_filesystem *)(file->vnode->fs));
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nfs = (struct nfs_filesystem *)(dfs_nfs->data);
fd = (nfs_file *)(nfs->data);
RT_ASSERT(fd != NULL);
if (nfs->nfs_client == NULL)
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return -1;
/* end of file */
if (fd->eof == TRUE)
return 0;
args.file = fd->handle;
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do
{
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args.offset = fd->offset;
args.count = count > DFS_NFS_MAX_MTU ? DFS_NFS_MAX_MTU : count;
count -= args.count;
memset(&res, 0, sizeof(res));
if (nfsproc3_read_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Read failed\n");
total = 0;
break;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Read failed: %d\n", res.status);
total = 0;
break;
}
else
{
bytes = res.READ3res_u.resok.count;
total += bytes;
fd->offset += bytes;
/* update current position */
file->pos = fd->offset;
memcpy(buf, res.READ3res_u.resok.data.data_val, bytes);
buf = (void *)((char *)buf + args.count);
if (res.READ3res_u.resok.eof)
{
/* something should probably be here */
fd->eof = TRUE;
break;
}
}
xdr_free((xdrproc_t)xdr_READ3res, (char *)&res);
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}
while (count > 0);
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xdr_free((xdrproc_t)xdr_READ3res, (char *)&res);
return total;
}
int nfs_write(struct dfs_file *file, const void *buf, size_t count)
{
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WRITE3args args;
WRITE3res res;
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ssize_t bytes, total = 0;
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nfs_file *fd;
nfs_filesystem *nfs;
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if (file->vnode->type == FT_DIRECTORY)
return -EISDIR;
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RT_ASSERT(file->vnode->fs != NULL);
struct dfs_filesystem *dfs_nfs = ((struct dfs_filesystem *)(file->vnode->fs));
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nfs = (struct nfs_filesystem *)(dfs_nfs->data);
fd = (nfs_file *)(nfs->data);
RT_ASSERT(fd != NULL);
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if (nfs->nfs_client == NULL)
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return -1;
args.file = fd->handle;
args.stable = FILE_SYNC;
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do
{
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args.offset = fd->offset;
memset(&res, 0, sizeof(res));
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args.data.data_val = (void *)buf;
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args.count = count > DFS_NFS_MAX_MTU ? DFS_NFS_MAX_MTU : count;
args.data.data_len = args.count;
count -= args.count;
buf = (const void *)((char *)buf + args.count);
if (nfsproc3_write_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Write failed\n");
total = 0;
break;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Write failed: %d\n", res.status);
total = 0;
break;
}
else
{
bytes = res.WRITE3res_u.resok.count;
fd->offset += bytes;
total += bytes;
/* update current position */
file->pos = fd->offset;
/* update file size */
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if (fd->size < fd->offset) fd->size = fd->offset;
file->vnode->size = fd->size;
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}
xdr_free((xdrproc_t)xdr_WRITE3res, (char *)&res);
} while (count > 0);
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xdr_free((xdrproc_t)xdr_WRITE3res, (char *)&res);
return total;
}
int nfs_lseek(struct dfs_file *file, off_t offset)
{
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nfs_file *fd;
nfs_filesystem *nfs;
if (file->vnode->type == FT_DIRECTORY)
return -EISDIR;
RT_ASSERT(file->vnode->fs != NULL);
struct dfs_filesystem *dfs_nfs = ((struct dfs_filesystem *)(file->vnode->fs));
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nfs = (struct nfs_filesystem *)(dfs_nfs->data);
fd = (nfs_file *)(nfs->data);
RT_ASSERT(fd != NULL);
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if (offset <= fd->size)
{
fd->offset = offset;
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return offset;
}
return -EIO;
}
int nfs_close(struct dfs_file *file)
{
nfs_filesystem *nfs;
RT_ASSERT(file->vnode->fs != NULL);
struct dfs_filesystem *dfs_nfs = ((struct dfs_filesystem *)(file->vnode->fs));
RT_ASSERT(file->vnode->ref_count > 0);
if (file->vnode->ref_count > 1)
{
return 0;
}
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nfs = (struct nfs_filesystem *)(dfs_nfs->data);
if (file->vnode->type == FT_DIRECTORY)
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{
struct nfs_dir *dir;
dir = (struct nfs_dir *)nfs->data;
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xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&dir->handle);
xdr_free((xdrproc_t)xdr_READDIR3res, (char *)&dir->res);
rt_free(dir);
}
else if (file->vnode->type == FT_REGULAR)
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{
struct nfs_file *fd;
fd = (struct nfs_file *)nfs->data;
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xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)&fd->handle);
rt_free(fd);
}
nfs->data = NULL;
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return 0;
}
int nfs_open(struct dfs_file *file)
{
nfs_filesystem *nfs;
RT_ASSERT(file->vnode->fs != NULL);
struct dfs_filesystem *dfs_nfs = file->vnode->fs;
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nfs = (struct nfs_filesystem *)(dfs_nfs->data);
RT_ASSERT(nfs != NULL);
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RT_ASSERT(file->vnode->ref_count > 0);
if (file->vnode->ref_count > 1)
{
if (file->vnode->type == FT_DIRECTORY
&& !(file->flags & O_DIRECTORY))
{
return -ENOENT;
}
file->pos = 0;
return 0;
}
if (file->flags & O_DIRECTORY)
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{
nfs_dir *dir;
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if (file->flags & O_CREAT)
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{
if (nfs_mkdir(nfs, file->vnode->path, 0755) < 0)
{
return -EAGAIN;
}
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}
/* open directory */
dir = nfs_opendir(nfs, file->vnode->path);
if (dir == NULL)
{
return -ENOENT;
}
file->vnode->type = FT_DIRECTORY;
nfs->data = dir;
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}
else
{
nfs_file *fp;
nfs_fh3 *handle;
/* create file */
if (file->flags & O_CREAT)
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{
if (nfs_create(nfs, file->vnode->path, 0664) < 0)
{
return -EAGAIN;
}
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}
/* open file (get file handle ) */
fp = rt_malloc(sizeof(nfs_file));
if (fp == NULL)
return -ENOMEM;
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handle = get_handle(nfs, file->vnode->path);
if (handle == NULL)
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{
rt_free(fp);
return -ENOENT;
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}
/* get size of file */
fp->size = nfs_get_filesize(nfs, handle);
fp->offset = 0;
fp->eof = FALSE;
copy_handle(&fp->handle, handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
if (file->flags & O_APPEND)
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{
fp->offset = fp->size;
}
/* set private file */
nfs->data = fp;
file->vnode->size = fp->size;
file->vnode->type = FT_REGULAR;
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}
return 0;
}
int nfs_stat(struct dfs_filesystem *fs, const char *path, struct stat *st)
{
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GETATTR3args args;
GETATTR3res res;
fattr3 *info;
nfs_fh3 *handle;
nfs_filesystem *nfs;
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RT_ASSERT(fs != NULL);
RT_ASSERT(fs->data != NULL);
nfs = (nfs_filesystem *)fs->data;
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handle = get_handle(nfs, path);
if (handle == NULL)
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return -1;
args.object = *handle;
memset(&res, '\0', sizeof(res));
if (nfsproc3_getattr_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("GetAttr failed\n");
return -1;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Getattr failed: %d\n", res.status);
return -1;
}
info = &res.GETATTR3res_u.resok.obj_attributes;
st->st_dev = 0;
st->st_mode = S_IFREG | S_IRUSR | S_IRGRP | S_IROTH | S_IWUSR | S_IWGRP | S_IWOTH;
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if (info->type == NFS3DIR)
{
st->st_mode &= ~S_IFREG;
st->st_mode |= S_IFDIR | S_IXUSR | S_IXGRP | S_IXOTH;
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}
st->st_size = info->size;
st->st_mtime = info->mtime.seconds;
xdr_free((xdrproc_t)xdr_GETATTR3res, (char *)&res);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
return 0;
}
nfs_dir *nfs_opendir(nfs_filesystem *nfs, const char *path)
{
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nfs_dir *dir;
nfs_fh3 *handle;
dir = rt_malloc(sizeof(nfs_dir));
if (dir == NULL)
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{
return NULL;
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}
handle = get_handle(nfs, path);
if (handle == NULL)
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{
rt_free(dir);
return NULL;
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}
copy_handle(&dir->handle, handle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
dir->cookie = 0;
memset(&dir->cookieverf, '\0', sizeof(cookieverf3));
dir->entry = NULL;
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dir->eof = FALSE;
memset(&dir->res, '\0', sizeof(dir->res));
return dir;
}
char *nfs_readdir(nfs_filesystem *nfs, nfs_dir *dir)
{
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static char name[NAME_MAX];
if (nfs->nfs_client == NULL || dir == NULL)
return NULL;
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if (dir->entry == NULL)
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{
READDIR3args args;
xdr_free((xdrproc_t)xdr_READDIR3res, (char *)&dir->res);
memset(&dir->res, '\0', sizeof(dir->res));
args.dir = dir->handle;
args.cookie = dir->cookie;
memcpy(&args.cookieverf, &dir->cookieverf, sizeof(cookieverf3));
args.count = 1024;
if (nfsproc3_readdir_3(args, &dir->res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Readdir failed\n");
return NULL;
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}
else if (dir->res.status != NFS3_OK)
{
rt_kprintf("Readdir failed: %d\n", dir->res.status);
return NULL;
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}
memcpy(&dir->cookieverf, &dir->res.READDIR3res_u.resok.cookieverf, sizeof(cookieverf3));
dir->eof = dir->res.READDIR3res_u.resok.reply.eof;
dir->entry = dir->res.READDIR3res_u.resok.reply.entries;
}
if (dir->eof == TRUE && dir->entry == NULL)
return NULL;
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dir->cookie = dir->entry->cookie;
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strncpy(name, dir->entry->name, NAME_MAX - 1);
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dir->entry = dir->entry->nextentry;
name[NAME_MAX - 1] = '\0';
return name;
}
int nfs_unlink(struct dfs_filesystem *fs, const char *path)
{
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int ret = 0;
nfs_filesystem *nfs;
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RT_ASSERT(fs != NULL);
RT_ASSERT(fs->data != NULL);
nfs = (nfs_filesystem *)fs->data;
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if (nfs_is_directory(nfs, path) == RT_FALSE)
{
/* remove file */
REMOVE3args args;
REMOVE3res res;
nfs_fh3 *handle;
handle = get_dir_handle(nfs, path);
if (handle == NULL)
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return -1;
args.object.dir = *handle;
args.object.name = strrchr(path, '/') + 1;
if (args.object.name == NULL)
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{
args.object.name = (char *)path;
}
memset(&res, 0, sizeof(res));
if (nfsproc3_remove_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Remove failed\n");
ret = -1;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Remove failed: %d\n", res.status);
ret = -1;
}
xdr_free((xdrproc_t)xdr_REMOVE3res, (char *)&res);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
rt_free(handle);
}
else
{
/* remove directory */
RMDIR3args args;
RMDIR3res res;
nfs_fh3 *handle;
handle = get_dir_handle(nfs, path);
if (handle == NULL)
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return -1;
args.object.dir = *handle;
args.object.name = strrchr(path, '/') + 1;
if (args.object.name == NULL)
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{
args.object.name = (char *)path;
}
memset(&res, 0, sizeof(res));
if (nfsproc3_rmdir_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Rmdir failed\n");
ret = -1;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Rmdir failed: %d\n", res.status);
ret = -1;
}
xdr_free((xdrproc_t)xdr_RMDIR3res, (char *)&res);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)handle);
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rt_free(handle);
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}
return ret;
}
int nfs_rename(struct dfs_filesystem *fs, const char *src, const char *dest)
{
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RENAME3args args;
RENAME3res res;
nfs_fh3 *sHandle;
nfs_fh3 *dHandle;
int ret = 0;
nfs_filesystem *nfs;
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RT_ASSERT(fs != NULL);
RT_ASSERT(fs->data != NULL);
nfs = (nfs_filesystem *)fs->data;
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if (nfs->nfs_client == NULL)
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return -1;
sHandle = get_dir_handle(nfs, src);
if (sHandle == NULL)
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return -1;
dHandle = get_dir_handle(nfs, dest);
if (dHandle == NULL)
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return -1;
args.from.dir = *sHandle;
args.from.name = strrchr(src, '/') + 1;
if (args.from.name == NULL)
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args.from.name = (char *)src;
args.to.dir = *dHandle;
args.to.name = strrchr(src, '/') + 1;
if (args.to.name == NULL)
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args.to.name = (char *)dest;
memset(&res, '\0', sizeof(res));
if (nfsproc3_rename_3(args, &res, nfs->nfs_client) != RPC_SUCCESS)
{
rt_kprintf("Rename failed\n");
ret = -1;
}
else if (res.status != NFS3_OK)
{
rt_kprintf("Rename failed: %d\n", res.status);
ret = -1;
}
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)sHandle);
xdr_free((xdrproc_t)xdr_nfs_fh3, (char *)dHandle);
xdr_free((xdrproc_t)xdr_RENAME3res, (char *)&res);
return ret;
}
int nfs_getdents(struct dfs_file *file, struct dirent *dirp, uint32_t count)
{
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nfs_dir *dir;
rt_uint32_t index;
struct dirent *d;
nfs_filesystem *nfs;
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char *name;
RT_ASSERT(file->vnode->fs != NULL);
struct dfs_filesystem *dfs_nfs = ((struct dfs_filesystem *)(file->vnode->fs));
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nfs = (struct nfs_filesystem *)(dfs_nfs->data);
dir = (nfs_dir *)(nfs->data);
RT_ASSERT(dir != NULL);
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/* make integer count */
count = (count / sizeof(struct dirent)) * sizeof(struct dirent);
if (count == 0)
return -EINVAL;
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index = 0;
while (1)
{
d = dirp + index;
name = nfs_readdir(nfs, dir);
if (name == NULL)
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break;
if (rt_strcmp(name, ".") == 0)
{
continue;
}
else if (rt_strcmp(name, "..") == 0)
{
continue;
}
d->d_type = DT_REG;
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d->d_namlen = rt_strlen(name);
d->d_reclen = (rt_uint16_t)sizeof(struct dirent);
2023-11-28 17:16:21 +08:00
rt_strncpy(d->d_name, name, DIRENT_NAME_MAX);
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index ++;
if (index * sizeof(struct dirent) >= count)
break;
}
return index * sizeof(struct dirent);
}
static const struct dfs_file_ops nfs_fops =
{
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nfs_open,
nfs_close,
nfs_ioctl,
nfs_read,
nfs_write,
NULL, /* flush */
nfs_lseek,
nfs_getdents,
NULL, /* poll */
};
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static const struct dfs_filesystem_ops _nfs =
{
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"nfs",
DFS_FS_FLAG_DEFAULT,
&nfs_fops,
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nfs_mount,
nfs_unmount,
NULL, /* mkfs */
NULL, /* statfs */
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nfs_unlink,
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nfs_stat,
nfs_rename,
};
int nfs_init(void)
{
/* register nfs file system */
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dfs_register(&_nfs);
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return RT_EOK;
}
INIT_COMPONENT_EXPORT(nfs_init);