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363 lines
7.9 KiB
363 lines
7.9 KiB
/*
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FUSE: Filesystem in Userspace
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Copyright (C) 2001-2007 Miklos Szeredi <miklos@szeredi.hu>
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Implementation of the multi-threaded FUSE session loop.
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This program can be distributed under the terms of the GNU LGPLv2.
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See the file COPYING.LIB.
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*/
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#include "config.h"
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#include "fuse_lowlevel.h"
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#include "fuse_misc.h"
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#include "fuse_kernel.h"
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#include "fuse_i.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <signal.h>
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#include <semaphore.h>
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#include <errno.h>
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#include <sys/time.h>
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#include <sys/ioctl.h>
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#include <assert.h>
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/* Environment var controlling the thread stack size */
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#define ENVNAME_THREAD_STACK "FUSE_THREAD_STACK"
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struct fuse_worker {
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struct fuse_worker *prev;
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struct fuse_worker *next;
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pthread_t thread_id;
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size_t bufsize;
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// We need to include fuse_buf so that we can properly free
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// it when a thread is terminated by pthread_cancel().
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struct fuse_buf fbuf;
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struct fuse_chan *ch;
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struct fuse_mt *mt;
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};
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struct fuse_mt {
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pthread_mutex_t lock;
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int numworker;
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int numavail;
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struct fuse_session *se;
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struct fuse_worker main;
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sem_t finish;
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int exit;
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int error;
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int clone_fd;
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int max_idle;
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};
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static struct fuse_chan *fuse_chan_new(int fd)
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{
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struct fuse_chan *ch = (struct fuse_chan *) malloc(sizeof(*ch));
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if (ch == NULL) {
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fuse_log(FUSE_LOG_ERR, "fuse: failed to allocate channel\n");
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return NULL;
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}
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memset(ch, 0, sizeof(*ch));
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ch->fd = fd;
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ch->ctr = 1;
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fuse_mutex_init(&ch->lock);
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return ch;
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}
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struct fuse_chan *fuse_chan_get(struct fuse_chan *ch)
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{
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assert(ch->ctr > 0);
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pthread_mutex_lock(&ch->lock);
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ch->ctr++;
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pthread_mutex_unlock(&ch->lock);
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return ch;
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}
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void fuse_chan_put(struct fuse_chan *ch)
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{
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if (ch == NULL)
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return;
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pthread_mutex_lock(&ch->lock);
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ch->ctr--;
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if (!ch->ctr) {
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pthread_mutex_unlock(&ch->lock);
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close(ch->fd);
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pthread_mutex_destroy(&ch->lock);
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free(ch);
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} else
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pthread_mutex_unlock(&ch->lock);
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}
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static void list_add_worker(struct fuse_worker *w, struct fuse_worker *next)
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{
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struct fuse_worker *prev = next->prev;
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w->next = next;
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w->prev = prev;
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prev->next = w;
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next->prev = w;
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}
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static void list_del_worker(struct fuse_worker *w)
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{
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struct fuse_worker *prev = w->prev;
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struct fuse_worker *next = w->next;
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prev->next = next;
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next->prev = prev;
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}
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static int fuse_loop_start_thread(struct fuse_mt *mt);
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static void *fuse_do_work(void *data)
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{
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struct fuse_worker *w = (struct fuse_worker *) data;
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struct fuse_mt *mt = w->mt;
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while (!fuse_session_exited(mt->se)) {
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int isforget = 0;
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int res;
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pthread_setcancelstate(PTHREAD_CANCEL_ENABLE, NULL);
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res = fuse_session_receive_buf_int(mt->se, &w->fbuf, w->ch);
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pthread_setcancelstate(PTHREAD_CANCEL_DISABLE, NULL);
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if (res == -EINTR)
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continue;
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if (res <= 0) {
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if (res < 0) {
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fuse_session_exit(mt->se);
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mt->error = res;
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}
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break;
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}
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pthread_mutex_lock(&mt->lock);
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if (mt->exit) {
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pthread_mutex_unlock(&mt->lock);
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return NULL;
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}
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/*
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* This disgusting hack is needed so that zillions of threads
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* are not created on a burst of FORGET messages
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*/
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if (!(w->fbuf.flags & FUSE_BUF_IS_FD)) {
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struct fuse_in_header *in = w->fbuf.mem;
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if (in->opcode == FUSE_FORGET ||
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in->opcode == FUSE_BATCH_FORGET)
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isforget = 1;
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}
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if (!isforget)
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mt->numavail--;
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if (mt->numavail == 0)
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fuse_loop_start_thread(mt);
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pthread_mutex_unlock(&mt->lock);
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fuse_session_process_buf_int(mt->se, &w->fbuf, w->ch);
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pthread_mutex_lock(&mt->lock);
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if (!isforget)
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mt->numavail++;
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if (mt->numavail > mt->max_idle) {
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if (mt->exit) {
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pthread_mutex_unlock(&mt->lock);
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return NULL;
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}
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list_del_worker(w);
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mt->numavail--;
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mt->numworker--;
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pthread_mutex_unlock(&mt->lock);
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pthread_detach(w->thread_id);
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free(w->fbuf.mem);
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fuse_chan_put(w->ch);
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free(w);
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return NULL;
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}
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pthread_mutex_unlock(&mt->lock);
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}
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sem_post(&mt->finish);
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return NULL;
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}
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int fuse_start_thread(pthread_t *thread_id, void *(*func)(void *), void *arg)
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{
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sigset_t oldset;
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sigset_t newset;
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int res;
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pthread_attr_t attr;
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char *stack_size;
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/* Override default stack size */
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pthread_attr_init(&attr);
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stack_size = getenv(ENVNAME_THREAD_STACK);
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if (stack_size && pthread_attr_setstacksize(&attr, atoi(stack_size)))
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fuse_log(FUSE_LOG_ERR, "fuse: invalid stack size: %s\n", stack_size);
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/* Disallow signal reception in worker threads */
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sigemptyset(&newset);
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sigaddset(&newset, SIGTERM);
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sigaddset(&newset, SIGINT);
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sigaddset(&newset, SIGHUP);
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sigaddset(&newset, SIGQUIT);
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pthread_sigmask(SIG_BLOCK, &newset, &oldset);
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res = pthread_create(thread_id, &attr, func, arg);
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pthread_sigmask(SIG_SETMASK, &oldset, NULL);
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pthread_attr_destroy(&attr);
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if (res != 0) {
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fuse_log(FUSE_LOG_ERR, "fuse: error creating thread: %s\n",
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strerror(res));
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return -1;
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}
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return 0;
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}
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static struct fuse_chan *fuse_clone_chan(struct fuse_mt *mt)
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{
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int res;
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int clonefd;
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uint32_t masterfd;
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struct fuse_chan *newch;
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const char *devname = "/dev/fuse";
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#ifndef O_CLOEXEC
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#define O_CLOEXEC 0
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#endif
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clonefd = open(devname, O_RDWR | O_CLOEXEC);
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if (clonefd == -1) {
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fuse_log(FUSE_LOG_ERR, "fuse: failed to open %s: %s\n", devname,
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strerror(errno));
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return NULL;
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}
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fcntl(clonefd, F_SETFD, FD_CLOEXEC);
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masterfd = mt->se->fd;
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res = ioctl(clonefd, FUSE_DEV_IOC_CLONE, &masterfd);
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if (res == -1) {
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fuse_log(FUSE_LOG_ERR, "fuse: failed to clone device fd: %s\n",
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strerror(errno));
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close(clonefd);
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return NULL;
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}
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newch = fuse_chan_new(clonefd);
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if (newch == NULL)
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close(clonefd);
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return newch;
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}
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static int fuse_loop_start_thread(struct fuse_mt *mt)
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{
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int res;
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struct fuse_worker *w = malloc(sizeof(struct fuse_worker));
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if (!w) {
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fuse_log(FUSE_LOG_ERR, "fuse: failed to allocate worker structure\n");
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return -1;
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}
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memset(w, 0, sizeof(struct fuse_worker));
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w->fbuf.mem = NULL;
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w->mt = mt;
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w->ch = NULL;
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if (mt->clone_fd) {
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w->ch = fuse_clone_chan(mt);
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if(!w->ch) {
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/* Don't attempt this again */
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fuse_log(FUSE_LOG_ERR, "fuse: trying to continue "
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"without -o clone_fd.\n");
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mt->clone_fd = 0;
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}
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}
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res = fuse_start_thread(&w->thread_id, fuse_do_work, w);
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if (res == -1) {
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fuse_chan_put(w->ch);
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free(w);
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return -1;
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}
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list_add_worker(w, &mt->main);
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mt->numavail ++;
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mt->numworker ++;
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return 0;
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}
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static void fuse_join_worker(struct fuse_mt *mt, struct fuse_worker *w)
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{
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pthread_join(w->thread_id, NULL);
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pthread_mutex_lock(&mt->lock);
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list_del_worker(w);
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pthread_mutex_unlock(&mt->lock);
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free(w->fbuf.mem);
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fuse_chan_put(w->ch);
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free(w);
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}
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FUSE_SYMVER(".symver fuse_session_loop_mt_32,fuse_session_loop_mt@@FUSE_3.2");
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int fuse_session_loop_mt_32(struct fuse_session *se, struct fuse_loop_config *config)
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{
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int err;
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struct fuse_mt mt;
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struct fuse_worker *w;
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memset(&mt, 0, sizeof(struct fuse_mt));
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mt.se = se;
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mt.clone_fd = config->clone_fd;
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mt.error = 0;
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mt.numworker = 0;
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mt.numavail = 0;
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mt.max_idle = config->max_idle_threads;
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mt.main.thread_id = pthread_self();
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mt.main.prev = mt.main.next = &mt.main;
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sem_init(&mt.finish, 0, 0);
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fuse_mutex_init(&mt.lock);
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pthread_mutex_lock(&mt.lock);
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err = fuse_loop_start_thread(&mt);
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pthread_mutex_unlock(&mt.lock);
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if (!err) {
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/* sem_wait() is interruptible */
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while (!fuse_session_exited(se))
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sem_wait(&mt.finish);
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pthread_mutex_lock(&mt.lock);
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for (w = mt.main.next; w != &mt.main; w = w->next)
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pthread_cancel(w->thread_id);
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mt.exit = 1;
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pthread_mutex_unlock(&mt.lock);
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while (mt.main.next != &mt.main)
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fuse_join_worker(&mt, mt.main.next);
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err = mt.error;
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}
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pthread_mutex_destroy(&mt.lock);
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sem_destroy(&mt.finish);
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if(se->error != 0)
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err = se->error;
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fuse_session_reset(se);
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return err;
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}
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int fuse_session_loop_mt_31(struct fuse_session *se, int clone_fd);
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FUSE_SYMVER(".symver fuse_session_loop_mt_31,fuse_session_loop_mt@FUSE_3.0");
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int fuse_session_loop_mt_31(struct fuse_session *se, int clone_fd)
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{
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struct fuse_loop_config config;
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config.clone_fd = clone_fd;
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config.max_idle_threads = 10;
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return fuse_session_loop_mt_32(se, &config);
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}
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