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fs/fcntl.c
17 KB
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/* * linux/fs/fcntl.c * * Copyright (C) 1991, 1992 Linus Torvalds */ #include <linux/syscalls.h> #include <linux/init.h> #include <linux/mm.h> #include <linux/fs.h> #include <linux/file.h> |
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#include <linux/fdtable.h> |
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#include <linux/capability.h> |
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#include <linux/dnotify.h> |
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#include <linux/slab.h> #include <linux/module.h> |
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#include <linux/pipe_fs_i.h> |
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#include <linux/security.h> #include <linux/ptrace.h> |
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#include <linux/signal.h> |
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#include <linux/rcupdate.h> |
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#include <linux/pid_namespace.h> |
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#include <asm/poll.h> #include <asm/siginfo.h> #include <asm/uaccess.h> |
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void set_close_on_exec(unsigned int fd, int flag) |
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{ struct files_struct *files = current->files; |
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struct fdtable *fdt; |
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spin_lock(&files->file_lock); |
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fdt = files_fdtable(files); |
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if (flag) |
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FD_SET(fd, fdt->close_on_exec); |
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else |
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FD_CLR(fd, fdt->close_on_exec); |
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spin_unlock(&files->file_lock); } |
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static int get_close_on_exec(unsigned int fd) |
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{ struct files_struct *files = current->files; |
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struct fdtable *fdt; |
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int res; |
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rcu_read_lock(); |
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fdt = files_fdtable(files); res = FD_ISSET(fd, fdt->close_on_exec); |
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rcu_read_unlock(); |
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return res; } |
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SYSCALL_DEFINE3(dup3, unsigned int, oldfd, unsigned int, newfd, int, flags) |
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{ int err = -EBADF; struct file * file, *tofree; struct files_struct * files = current->files; |
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struct fdtable *fdt; |
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|
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if ((flags & ~O_CLOEXEC) != 0) return -EINVAL; |
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if (unlikely(oldfd == newfd)) return -EINVAL; |
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spin_lock(&files->file_lock); |
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err = expand_files(files, newfd); |
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file = fcheck(oldfd); if (unlikely(!file)) goto Ebadf; |
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if (unlikely(err < 0)) { if (err == -EMFILE) |
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goto Ebadf; goto out_unlock; |
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} |
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/* * We need to detect attempts to do dup2() over allocated but still * not finished descriptor. NB: OpenBSD avoids that at the price of * extra work in their equivalent of fget() - they insert struct * file immediately after grabbing descriptor, mark it larval if * more work (e.g. actual opening) is needed and make sure that * fget() treats larval files as absent. Potentially interesting, * but while extra work in fget() is trivial, locking implications * and amount of surgery on open()-related paths in VFS are not. * FreeBSD fails with -EBADF in the same situation, NetBSD "solution" * deadlocks in rather amusing ways, AFAICS. All of that is out of * scope of POSIX or SUS, since neither considers shared descriptor * tables and this condition does not arise without those. */ |
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err = -EBUSY; |
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fdt = files_fdtable(files); tofree = fdt->fd[newfd]; if (!tofree && FD_ISSET(newfd, fdt->open_fds)) |
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goto out_unlock; get_file(file); |
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rcu_assign_pointer(fdt->fd[newfd], file); |
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FD_SET(newfd, fdt->open_fds); |
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if (flags & O_CLOEXEC) FD_SET(newfd, fdt->close_on_exec); else FD_CLR(newfd, fdt->close_on_exec); |
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spin_unlock(&files->file_lock); if (tofree) filp_close(tofree, files); |
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|
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return newfd; Ebadf: err = -EBADF; out_unlock: |
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spin_unlock(&files->file_lock); |
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return err; |
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} |
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|
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SYSCALL_DEFINE2(dup2, unsigned int, oldfd, unsigned int, newfd) |
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{ |
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if (unlikely(newfd == oldfd)) { /* corner case */ struct files_struct *files = current->files; |
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int retval = oldfd; |
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rcu_read_lock(); if (!fcheck_files(files, oldfd)) |
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retval = -EBADF; |
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rcu_read_unlock(); |
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return retval; |
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} |
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return sys_dup3(oldfd, newfd, 0); } |
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|
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SYSCALL_DEFINE1(dup, unsigned int, fildes) |
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{ int ret = -EBADF; |
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struct file *file = fget(fildes); if (file) { ret = get_unused_fd(); if (ret >= 0) fd_install(ret, file); else fput(file); } |
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return ret; } |
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#define SETFL_MASK (O_APPEND | O_NONBLOCK | O_NDELAY | O_DIRECT | O_NOATIME) |
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static int setfl(int fd, struct file * filp, unsigned long arg) { |
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struct inode * inode = filp->f_path.dentry->d_inode; |
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int error = 0; |
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/* * O_APPEND cannot be cleared if the file is marked as append-only * and the file is open for write. */ if (((arg ^ filp->f_flags) & O_APPEND) && IS_APPEND(inode)) |
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return -EPERM; /* O_NOATIME can only be set by the owner or superuser */ if ((arg & O_NOATIME) && !(filp->f_flags & O_NOATIME)) |
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if (!is_owner_or_cap(inode)) |
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return -EPERM; /* required for strict SunOS emulation */ if (O_NONBLOCK != O_NDELAY) if (arg & O_NDELAY) arg |= O_NONBLOCK; if (arg & O_DIRECT) { if (!filp->f_mapping || !filp->f_mapping->a_ops || !filp->f_mapping->a_ops->direct_IO) return -EINVAL; } if (filp->f_op && filp->f_op->check_flags) error = filp->f_op->check_flags(arg); if (error) return error; |
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/* |
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* ->fasync() is responsible for setting the FASYNC bit. |
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*/ |
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if (((arg ^ filp->f_flags) & FASYNC) && filp->f_op && filp->f_op->fasync) { error = filp->f_op->fasync(fd, filp, (arg & FASYNC) != 0); if (error < 0) goto out; |
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if (error > 0) error = 0; |
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} |
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spin_lock(&filp->f_lock); |
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filp->f_flags = (arg & SETFL_MASK) | (filp->f_flags & ~SETFL_MASK); |
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spin_unlock(&filp->f_lock); |
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|
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out: |
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return error; } |
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static void f_modown(struct file *filp, struct pid *pid, enum pid_type type, |
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int force) |
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{ |
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write_lock_irq(&filp->f_owner.lock); |
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if (force || !filp->f_owner.pid) { |
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put_pid(filp->f_owner.pid); filp->f_owner.pid = get_pid(pid); filp->f_owner.pid_type = type; |
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if (pid) { const struct cred *cred = current_cred(); filp->f_owner.uid = cred->uid; filp->f_owner.euid = cred->euid; } |
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} |
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write_unlock_irq(&filp->f_owner.lock); |
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} |
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int __f_setown(struct file *filp, struct pid *pid, enum pid_type type, int force) |
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{ int err; |
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|
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err = security_file_set_fowner(filp); if (err) return err; |
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f_modown(filp, pid, type, force); |
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return 0; } |
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EXPORT_SYMBOL(__f_setown); |
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|
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int f_setown(struct file *filp, unsigned long arg, int force) { enum pid_type type; struct pid *pid; int who = arg; int result; type = PIDTYPE_PID; if (who < 0) { type = PIDTYPE_PGID; who = -who; } rcu_read_lock(); |
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pid = find_vpid(who); |
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result = __f_setown(filp, pid, type, force); rcu_read_unlock(); return result; } |
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EXPORT_SYMBOL(f_setown); void f_delown(struct file *filp) { |
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f_modown(filp, NULL, PIDTYPE_PID, 1); |
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} pid_t f_getown(struct file *filp) { pid_t pid; |
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read_lock(&filp->f_owner.lock); |
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pid = pid_vnr(filp->f_owner.pid); |
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if (filp->f_owner.pid_type == PIDTYPE_PGID) pid = -pid; |
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read_unlock(&filp->f_owner.lock); |
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return pid; |
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} |
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static int f_setown_ex(struct file *filp, unsigned long arg) { struct f_owner_ex * __user owner_p = (void * __user)arg; struct f_owner_ex owner; struct pid *pid; int type; int ret; ret = copy_from_user(&owner, owner_p, sizeof(owner)); if (ret) |
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return -EFAULT; |
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switch (owner.type) { case F_OWNER_TID: type = PIDTYPE_MAX; break; case F_OWNER_PID: type = PIDTYPE_PID; break; |
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case F_OWNER_PGRP: |
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type = PIDTYPE_PGID; break; default: return -EINVAL; } rcu_read_lock(); pid = find_vpid(owner.pid); if (owner.pid && !pid) ret = -ESRCH; else ret = __f_setown(filp, pid, type, 1); rcu_read_unlock(); return ret; } static int f_getown_ex(struct file *filp, unsigned long arg) { struct f_owner_ex * __user owner_p = (void * __user)arg; struct f_owner_ex owner; int ret = 0; read_lock(&filp->f_owner.lock); owner.pid = pid_vnr(filp->f_owner.pid); switch (filp->f_owner.pid_type) { case PIDTYPE_MAX: owner.type = F_OWNER_TID; break; case PIDTYPE_PID: owner.type = F_OWNER_PID; break; case PIDTYPE_PGID: |
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owner.type = F_OWNER_PGRP; |
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break; default: WARN_ON(1); ret = -EINVAL; break; } read_unlock(&filp->f_owner.lock); |
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if (!ret) { |
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ret = copy_to_user(owner_p, &owner, sizeof(owner)); |
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if (ret) ret = -EFAULT; } |
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return ret; } |
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static long do_fcntl(int fd, unsigned int cmd, unsigned long arg, struct file *filp) { long err = -EINVAL; switch (cmd) { case F_DUPFD: |
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case F_DUPFD_CLOEXEC: |
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if (arg >= rlimit(RLIMIT_NOFILE)) |
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break; |
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err = alloc_fd(arg, cmd == F_DUPFD_CLOEXEC ? O_CLOEXEC : 0); if (err >= 0) { get_file(filp); fd_install(err, filp); } |
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break; case F_GETFD: err = get_close_on_exec(fd) ? FD_CLOEXEC : 0; break; case F_SETFD: err = 0; set_close_on_exec(fd, arg & FD_CLOEXEC); break; case F_GETFL: err = filp->f_flags; break; case F_SETFL: err = setfl(fd, filp, arg); break; case F_GETLK: err = fcntl_getlk(filp, (struct flock __user *) arg); break; case F_SETLK: case F_SETLKW: |
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err = fcntl_setlk(fd, filp, cmd, (struct flock __user *) arg); |
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break; case F_GETOWN: /* * XXX If f_owner is a process group, the * negative return value will get converted * into an error. Oops. If we keep the * current syscall conventions, the only way * to fix this will be in libc. */ |
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err = f_getown(filp); |
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force_successful_syscall_return(); break; case F_SETOWN: err = f_setown(filp, arg, 1); break; |
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case F_GETOWN_EX: err = f_getown_ex(filp, arg); break; case F_SETOWN_EX: err = f_setown_ex(filp, arg); break; |
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case F_GETSIG: err = filp->f_owner.signum; break; case F_SETSIG: /* arg == 0 restores default behaviour. */ |
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if (!valid_signal(arg)) { |
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break; } err = 0; filp->f_owner.signum = arg; break; case F_GETLEASE: err = fcntl_getlease(filp); break; case F_SETLEASE: err = fcntl_setlease(fd, filp, arg); break; case F_NOTIFY: err = fcntl_dirnotify(fd, filp, arg); break; |
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case F_SETPIPE_SZ: case F_GETPIPE_SZ: err = pipe_fcntl(filp, cmd, arg); break; |
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default: break; } return err; } |
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SYSCALL_DEFINE3(fcntl, unsigned int, fd, unsigned int, cmd, unsigned long, arg) |
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{ struct file *filp; long err = -EBADF; filp = fget(fd); if (!filp) goto out; err = security_file_fcntl(filp, cmd, arg); if (err) { fput(filp); return err; } err = do_fcntl(fd, cmd, arg, filp); fput(filp); out: return err; } #if BITS_PER_LONG == 32 |
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SYSCALL_DEFINE3(fcntl64, unsigned int, fd, unsigned int, cmd, unsigned long, arg) |
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{ struct file * filp; long err; err = -EBADF; filp = fget(fd); if (!filp) goto out; err = security_file_fcntl(filp, cmd, arg); if (err) { fput(filp); return err; } err = -EBADF; switch (cmd) { case F_GETLK64: err = fcntl_getlk64(filp, (struct flock64 __user *) arg); break; case F_SETLK64: case F_SETLKW64: |
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err = fcntl_setlk64(fd, filp, cmd, (struct flock64 __user *) arg); |
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break; default: err = do_fcntl(fd, cmd, arg, filp); break; } fput(filp); out: return err; } #endif /* Table to convert sigio signal codes into poll band bitmaps */ |
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static const long band_table[NSIGPOLL] = { |
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POLLIN | POLLRDNORM, /* POLL_IN */ POLLOUT | POLLWRNORM | POLLWRBAND, /* POLL_OUT */ POLLIN | POLLRDNORM | POLLMSG, /* POLL_MSG */ POLLERR, /* POLL_ERR */ POLLPRI | POLLRDBAND, /* POLL_PRI */ POLLHUP | POLLERR /* POLL_HUP */ }; static inline int sigio_perm(struct task_struct *p, struct fown_struct *fown, int sig) { |
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const struct cred *cred; int ret; rcu_read_lock(); cred = __task_cred(p); ret = ((fown->euid == 0 || fown->euid == cred->suid || fown->euid == cred->uid || fown->uid == cred->suid || fown->uid == cred->uid) && !security_file_send_sigiotask(p, fown, sig)); rcu_read_unlock(); return ret; |
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} static void send_sigio_to_task(struct task_struct *p, |
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struct fown_struct *fown, |
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int fd, int reason, int group) |
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{ |
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/* * F_SETSIG can change ->signum lockless in parallel, make * sure we read it once and use the same value throughout. */ int signum = ACCESS_ONCE(fown->signum); if (!sigio_perm(p, fown, signum)) |
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509 |
return; |
8eeee4e2f send_sigio_to_tas... |
510 |
switch (signum) { |
1da177e4c Linux-2.6.12-rc2 |
511 512 513 514 515 516 517 518 |
siginfo_t si; default: /* Queue a rt signal with the appropriate fd as its value. We use SI_SIGIO as the source, not SI_KERNEL, since kernel signals always get delivered even if we can't queue. Failure to queue in this case _should_ be reported; we fall back to SIGIO in that case. --sct */ |
8eeee4e2f send_sigio_to_tas... |
519 |
si.si_signo = signum; |
1da177e4c Linux-2.6.12-rc2 |
520 521 522 523 524 |
si.si_errno = 0; si.si_code = reason; /* Make sure we are called with one of the POLL_* reasons, otherwise we could leak kernel stack into userspace. */ |
f6298aab2 BUG_ON() Conversi... |
525 |
BUG_ON((reason & __SI_MASK) != __SI_POLL); |
1da177e4c Linux-2.6.12-rc2 |
526 527 528 529 530 |
if (reason - POLL_IN >= NSIGPOLL) si.si_band = ~0L; else si.si_band = band_table[reason - POLL_IN]; si.si_fd = fd; |
ba0a6c9f6 fcntl: add F_[SG]... |
531 |
if (!do_send_sig_info(signum, &si, p, group)) |
1da177e4c Linux-2.6.12-rc2 |
532 533 534 |
break; /* fall-through: fall back on the old plain SIGIO signal */ case 0: |
ba0a6c9f6 fcntl: add F_[SG]... |
535 |
do_send_sig_info(SIGIO, SEND_SIG_PRIV, p, group); |
1da177e4c Linux-2.6.12-rc2 |
536 537 538 539 540 541 |
} } void send_sigio(struct fown_struct *fown, int fd, int band) { struct task_struct *p; |
609d7fa95 [PATCH] file: mod... |
542 543 |
enum pid_type type; struct pid *pid; |
ba0a6c9f6 fcntl: add F_[SG]... |
544 |
int group = 1; |
1da177e4c Linux-2.6.12-rc2 |
545 546 |
read_lock(&fown->lock); |
ba0a6c9f6 fcntl: add F_[SG]... |
547 |
|
609d7fa95 [PATCH] file: mod... |
548 |
type = fown->pid_type; |
ba0a6c9f6 fcntl: add F_[SG]... |
549 550 551 552 |
if (type == PIDTYPE_MAX) { group = 0; type = PIDTYPE_PID; } |
1da177e4c Linux-2.6.12-rc2 |
553 554 555 556 557 |
pid = fown->pid; if (!pid) goto out_unlock_fown; read_lock(&tasklist_lock); |
609d7fa95 [PATCH] file: mod... |
558 |
do_each_pid_task(pid, type, p) { |
ba0a6c9f6 fcntl: add F_[SG]... |
559 |
send_sigio_to_task(p, fown, fd, band, group); |
609d7fa95 [PATCH] file: mod... |
560 |
} while_each_pid_task(pid, type, p); |
1da177e4c Linux-2.6.12-rc2 |
561 562 563 564 565 566 |
read_unlock(&tasklist_lock); out_unlock_fown: read_unlock(&fown->lock); } static void send_sigurg_to_task(struct task_struct *p, |
ba0a6c9f6 fcntl: add F_[SG]... |
567 |
struct fown_struct *fown, int group) |
1da177e4c Linux-2.6.12-rc2 |
568 569 |
{ if (sigio_perm(p, fown, SIGURG)) |
ba0a6c9f6 fcntl: add F_[SG]... |
570 |
do_send_sig_info(SIGURG, SEND_SIG_PRIV, p, group); |
1da177e4c Linux-2.6.12-rc2 |
571 572 573 574 575 |
} int send_sigurg(struct fown_struct *fown) { struct task_struct *p; |
609d7fa95 [PATCH] file: mod... |
576 577 |
enum pid_type type; struct pid *pid; |
ba0a6c9f6 fcntl: add F_[SG]... |
578 |
int group = 1; |
609d7fa95 [PATCH] file: mod... |
579 |
int ret = 0; |
1da177e4c Linux-2.6.12-rc2 |
580 581 |
read_lock(&fown->lock); |
ba0a6c9f6 fcntl: add F_[SG]... |
582 |
|
609d7fa95 [PATCH] file: mod... |
583 |
type = fown->pid_type; |
ba0a6c9f6 fcntl: add F_[SG]... |
584 585 586 587 |
if (type == PIDTYPE_MAX) { group = 0; type = PIDTYPE_PID; } |
1da177e4c Linux-2.6.12-rc2 |
588 589 590 591 592 593 594 |
pid = fown->pid; if (!pid) goto out_unlock_fown; ret = 1; read_lock(&tasklist_lock); |
609d7fa95 [PATCH] file: mod... |
595 |
do_each_pid_task(pid, type, p) { |
ba0a6c9f6 fcntl: add F_[SG]... |
596 |
send_sigurg_to_task(p, fown, group); |
609d7fa95 [PATCH] file: mod... |
597 |
} while_each_pid_task(pid, type, p); |
1da177e4c Linux-2.6.12-rc2 |
598 599 600 601 602 |
read_unlock(&tasklist_lock); out_unlock_fown: read_unlock(&fown->lock); return ret; } |
989a29792 fasync: RCU and f... |
603 |
static DEFINE_SPINLOCK(fasync_lock); |
e18b890bb [PATCH] slab: rem... |
604 |
static struct kmem_cache *fasync_cache __read_mostly; |
1da177e4c Linux-2.6.12-rc2 |
605 |
|
989a29792 fasync: RCU and f... |
606 607 608 609 610 |
static void fasync_free_rcu(struct rcu_head *head) { kmem_cache_free(fasync_cache, container_of(head, struct fasync_struct, fa_rcu)); } |
1da177e4c Linux-2.6.12-rc2 |
611 |
/* |
53281b6d3 fasync: split 'fa... |
612 613 614 615 616 617 618 |
* Remove a fasync entry. If successfully removed, return * positive and clear the FASYNC flag. If no entry exists, * do nothing and return 0. * * NOTE! It is very important that the FASYNC flag always * match the state "is the filp on a fasync list". * |
1da177e4c Linux-2.6.12-rc2 |
619 |
*/ |
53281b6d3 fasync: split 'fa... |
620 |
static int fasync_remove_entry(struct file *filp, struct fasync_struct **fapp) |
1da177e4c Linux-2.6.12-rc2 |
621 622 |
{ struct fasync_struct *fa, **fp; |
1da177e4c Linux-2.6.12-rc2 |
623 |
int result = 0; |
53281b6d3 fasync: split 'fa... |
624 |
spin_lock(&filp->f_lock); |
989a29792 fasync: RCU and f... |
625 |
spin_lock(&fasync_lock); |
53281b6d3 fasync: split 'fa... |
626 627 628 |
for (fp = fapp; (fa = *fp) != NULL; fp = &fa->fa_next) { if (fa->fa_file != filp) continue; |
989a29792 fasync: RCU and f... |
629 630 631 632 |
spin_lock_irq(&fa->fa_lock); fa->fa_file = NULL; spin_unlock_irq(&fa->fa_lock); |
53281b6d3 fasync: split 'fa... |
633 |
*fp = fa->fa_next; |
989a29792 fasync: RCU and f... |
634 |
call_rcu(&fa->fa_rcu, fasync_free_rcu); |
53281b6d3 fasync: split 'fa... |
635 636 637 |
filp->f_flags &= ~FASYNC; result = 1; break; |
1da177e4c Linux-2.6.12-rc2 |
638 |
} |
989a29792 fasync: RCU and f... |
639 |
spin_unlock(&fasync_lock); |
53281b6d3 fasync: split 'fa... |
640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 |
spin_unlock(&filp->f_lock); return result; } /* * Add a fasync entry. Return negative on error, positive if * added, and zero if did nothing but change an existing one. * * NOTE! It is very important that the FASYNC flag always * match the state "is the filp on a fasync list". */ static int fasync_add_entry(int fd, struct file *filp, struct fasync_struct **fapp) { struct fasync_struct *new, *fa, **fp; int result = 0; new = kmem_cache_alloc(fasync_cache, GFP_KERNEL); if (!new) return -ENOMEM; |
4a6a44996 Fix a lockdep war... |
659 |
|
4a6a44996 Fix a lockdep war... |
660 |
spin_lock(&filp->f_lock); |
989a29792 fasync: RCU and f... |
661 |
spin_lock(&fasync_lock); |
1da177e4c Linux-2.6.12-rc2 |
662 |
for (fp = fapp; (fa = *fp) != NULL; fp = &fa->fa_next) { |
53281b6d3 fasync: split 'fa... |
663 664 |
if (fa->fa_file != filp) continue; |
989a29792 fasync: RCU and f... |
665 666 |
spin_lock_irq(&fa->fa_lock); |
53281b6d3 fasync: split 'fa... |
667 |
fa->fa_fd = fd; |
989a29792 fasync: RCU and f... |
668 |
spin_unlock_irq(&fa->fa_lock); |
53281b6d3 fasync: split 'fa... |
669 670 |
kmem_cache_free(fasync_cache, new); goto out; |
1da177e4c Linux-2.6.12-rc2 |
671 |
} |
989a29792 fasync: RCU and f... |
672 |
spin_lock_init(&new->fa_lock); |
53281b6d3 fasync: split 'fa... |
673 674 675 676 |
new->magic = FASYNC_MAGIC; new->fa_file = filp; new->fa_fd = fd; new->fa_next = *fapp; |
989a29792 fasync: RCU and f... |
677 |
rcu_assign_pointer(*fapp, new); |
53281b6d3 fasync: split 'fa... |
678 679 |
result = 1; filp->f_flags |= FASYNC; |
1da177e4c Linux-2.6.12-rc2 |
680 |
out: |
989a29792 fasync: RCU and f... |
681 |
spin_unlock(&fasync_lock); |
4a6a44996 Fix a lockdep war... |
682 |
spin_unlock(&filp->f_lock); |
1da177e4c Linux-2.6.12-rc2 |
683 684 |
return result; } |
53281b6d3 fasync: split 'fa... |
685 686 687 688 689 690 691 692 693 694 695 696 |
/* * fasync_helper() is used by almost all character device drivers * to set up the fasync queue, and for regular files by the file * lease code. It returns negative on error, 0 if it did no changes * and positive if it added/deleted the entry. */ int fasync_helper(int fd, struct file * filp, int on, struct fasync_struct **fapp) { if (!on) return fasync_remove_entry(filp, fapp); return fasync_add_entry(fd, filp, fapp); } |
1da177e4c Linux-2.6.12-rc2 |
697 |
EXPORT_SYMBOL(fasync_helper); |
989a29792 fasync: RCU and f... |
698 699 700 701 |
/* * rcu_read_lock() is held */ static void kill_fasync_rcu(struct fasync_struct *fa, int sig, int band) |
1da177e4c Linux-2.6.12-rc2 |
702 703 |
{ while (fa) { |
989a29792 fasync: RCU and f... |
704 |
struct fown_struct *fown; |
f4985dc71 fs/fcntl.c:kill_f... |
705 |
unsigned long flags; |
1da177e4c Linux-2.6.12-rc2 |
706 707 708 709 710 711 |
if (fa->magic != FASYNC_MAGIC) { printk(KERN_ERR "kill_fasync: bad magic number in " "fasync_struct! "); return; } |
f4985dc71 fs/fcntl.c:kill_f... |
712 |
spin_lock_irqsave(&fa->fa_lock, flags); |
989a29792 fasync: RCU and f... |
713 714 715 716 717 718 719 720 |
if (fa->fa_file) { fown = &fa->fa_file->f_owner; /* Don't send SIGURG to processes which have not set a queued signum: SIGURG has its own default signalling mechanism. */ if (!(sig == SIGURG && fown->signum == 0)) send_sigio(fown, fa->fa_fd, band); } |
f4985dc71 fs/fcntl.c:kill_f... |
721 |
spin_unlock_irqrestore(&fa->fa_lock, flags); |
989a29792 fasync: RCU and f... |
722 |
fa = rcu_dereference(fa->fa_next); |
1da177e4c Linux-2.6.12-rc2 |
723 724 |
} } |
1da177e4c Linux-2.6.12-rc2 |
725 726 727 728 729 730 |
void kill_fasync(struct fasync_struct **fp, int sig, int band) { /* First a quick test without locking: usually * the list is empty. */ if (*fp) { |
989a29792 fasync: RCU and f... |
731 732 733 |
rcu_read_lock(); kill_fasync_rcu(rcu_dereference(*fp), sig, band); rcu_read_unlock(); |
1da177e4c Linux-2.6.12-rc2 |
734 735 736 737 738 739 740 |
} } EXPORT_SYMBOL(kill_fasync); static int __init fasync_init(void) { fasync_cache = kmem_cache_create("fasync_cache", |
20c2df83d mm: Remove slab d... |
741 |
sizeof(struct fasync_struct), 0, SLAB_PANIC, NULL); |
1da177e4c Linux-2.6.12-rc2 |
742 743 744 745 |
return 0; } module_init(fasync_init) |