Doesn't do anything ATM, but already provides the required system interface (VFS, caches, POSIX functions). git-svn-id: file:///srv/svn/repos/haiku/haiku/trunk@20859 a95241bf-73f2-0310-859d-f6bbb57e9c96
737 lines
16 KiB
C++
737 lines
16 KiB
C++
/* Operations on file descriptors
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*
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* Copyright 2002-2007, Axel Dörfler, [email protected].
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* Distributed under the terms of the MIT License.
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*/
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#include "fd.h"
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#include <stdlib.h>
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#include "fssh_fcntl.h"
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#include "fssh_kernel_export.h"
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#include "fssh_kernel_priv.h"
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#include "fssh_string.h"
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#include "fssh_uio.h"
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//#define TRACE_FD
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#ifdef TRACE_FD
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# define TRACE(x) dprintf x
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#else
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# define TRACE(x)
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#endif
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namespace FSShell {
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io_context gKernelIOContext;
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/*** General fd routines ***/
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#ifdef DEBUG
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void dump_fd(int fd, struct file_descriptor *descriptor);
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void
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dump_fd(int fd,struct file_descriptor *descriptor)
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{
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dprintf("fd[%d] = %p: type = %ld, ref_count = %ld, ops = %p, u.vnode = %p, u.mount = %p, cookie = %p, open_mode = %lx, pos = %Ld\n",
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fd, descriptor, descriptor->type, descriptor->ref_count, descriptor->ops,
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descriptor->u.vnode, descriptor->u.mount, descriptor->cookie, descriptor->open_mode, descriptor->pos);
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}
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#endif
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/** Allocates and initializes a new file_descriptor */
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struct file_descriptor *
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alloc_fd(void)
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{
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struct file_descriptor *descriptor;
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descriptor = (file_descriptor*)malloc(sizeof(struct file_descriptor));
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if (descriptor == NULL)
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return NULL;
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descriptor->u.vnode = NULL;
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descriptor->cookie = NULL;
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descriptor->ref_count = 1;
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descriptor->open_count = 0;
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descriptor->open_mode = 0;
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descriptor->pos = 0;
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return descriptor;
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}
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bool
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fd_close_on_exec(struct io_context *context, int fd)
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{
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return CHECK_BIT(context->fds_close_on_exec[fd / 8], fd & 7) ? true : false;
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}
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void
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fd_set_close_on_exec(struct io_context *context, int fd, bool closeFD)
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{
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if (closeFD)
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context->fds_close_on_exec[fd / 8] |= (1 << (fd & 7));
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else
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context->fds_close_on_exec[fd / 8] &= ~(1 << (fd & 7));
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}
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/** Searches a free slot in the FD table of the provided I/O context, and inserts
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* the specified descriptor into it.
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*/
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int
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new_fd_etc(struct io_context *context, struct file_descriptor *descriptor,
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int firstIndex)
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{
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int fd = -1;
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uint32_t i;
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mutex_lock(&context->io_mutex);
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for (i = firstIndex; i < context->table_size; i++) {
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if (!context->fds[i]) {
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fd = i;
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break;
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}
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}
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if (fd < 0) {
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fd = FSSH_B_NO_MORE_FDS;
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goto err;
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}
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context->fds[fd] = descriptor;
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context->num_used_fds++;
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fssh_atomic_add(&descriptor->open_count, 1);
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err:
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mutex_unlock(&context->io_mutex);
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return fd;
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}
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int
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new_fd(struct io_context *context, struct file_descriptor *descriptor)
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{
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return new_fd_etc(context, descriptor, 0);
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}
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/** Reduces the descriptor's reference counter, and frees all resources
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* when it's no longer used.
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*/
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void
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put_fd(struct file_descriptor *descriptor)
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{
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int32_t previous = fssh_atomic_add(&descriptor->ref_count, -1);
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TRACE(("put_fd(descriptor = %p [ref = %ld, cookie = %p])\n",
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descriptor, descriptor->ref_count, descriptor->cookie));
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// free the descriptor if we don't need it anymore
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if (previous == 1) {
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// free the underlying object
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if (descriptor->ops != NULL && descriptor->ops->fd_free != NULL)
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descriptor->ops->fd_free(descriptor);
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free(descriptor);
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} else if ((descriptor->open_mode & FSSH_O_DISCONNECTED) != 0
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&& previous - 1 == descriptor->open_count
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&& descriptor->ops != NULL) {
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// the descriptor has been disconnected - it cannot
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// be accessed anymore, let's close it (no one is
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// currently accessing this descriptor)
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if (descriptor->ops->fd_close)
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descriptor->ops->fd_close(descriptor);
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if (descriptor->ops->fd_free)
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descriptor->ops->fd_free(descriptor);
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// prevent this descriptor from being closed/freed again
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descriptor->open_count = -1;
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descriptor->ref_count = -1;
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descriptor->ops = NULL;
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descriptor->u.vnode = NULL;
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// the file descriptor is kept intact, so that it's not
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// reused until someone explicetly closes it
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}
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}
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/** Decrements the open counter of the file descriptor and invokes
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* its close hook when appropriate.
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*/
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void
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close_fd(struct file_descriptor *descriptor)
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{
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if (fssh_atomic_add(&descriptor->open_count, -1) == 1) {
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vfs_unlock_vnode_if_locked(descriptor);
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if (descriptor->ops != NULL && descriptor->ops->fd_close != NULL)
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descriptor->ops->fd_close(descriptor);
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}
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}
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/** This descriptor's underlying object will be closed and freed
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* as soon as possible (in one of the next calls to put_fd() -
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* get_fd() will no longer succeed on this descriptor).
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* This is useful if the underlying object is gone, for instance
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* when a (mounted) volume got removed unexpectedly.
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*/
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void
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disconnect_fd(struct file_descriptor *descriptor)
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{
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descriptor->open_mode |= FSSH_O_DISCONNECTED;
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}
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void
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inc_fd_ref_count(struct file_descriptor *descriptor)
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{
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fssh_atomic_add(&descriptor->ref_count, 1);
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}
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struct file_descriptor *
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get_fd(struct io_context *context, int fd)
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{
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struct file_descriptor *descriptor = NULL;
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if (fd < 0)
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return NULL;
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mutex_lock(&context->io_mutex);
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if ((uint32_t)fd < context->table_size)
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descriptor = context->fds[fd];
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if (descriptor != NULL) {
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// Disconnected descriptors cannot be accessed anymore
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if (descriptor->open_mode & FSSH_O_DISCONNECTED)
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descriptor = NULL;
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else
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inc_fd_ref_count(descriptor);
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}
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mutex_unlock(&context->io_mutex);
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return descriptor;
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}
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/** Removes the file descriptor from the specified slot.
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*/
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static struct file_descriptor *
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remove_fd(struct io_context *context, int fd)
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{
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struct file_descriptor *descriptor = NULL;
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if (fd < 0)
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return NULL;
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mutex_lock(&context->io_mutex);
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if ((uint32_t)fd < context->table_size)
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descriptor = context->fds[fd];
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if (descriptor) {
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// fd is valid
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context->fds[fd] = NULL;
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fd_set_close_on_exec(context, fd, false);
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context->num_used_fds--;
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if (descriptor->open_mode & FSSH_O_DISCONNECTED)
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descriptor = NULL;
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}
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mutex_unlock(&context->io_mutex);
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return descriptor;
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}
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static int
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dup_fd(int fd, bool kernel)
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{
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struct io_context *context = get_current_io_context(kernel);
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struct file_descriptor *descriptor;
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int status;
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TRACE(("dup_fd: fd = %d\n", fd));
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// Try to get the fd structure
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descriptor = get_fd(context, fd);
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if (descriptor == NULL)
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return FSSH_B_FILE_ERROR;
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// now put the fd in place
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status = new_fd(context, descriptor);
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if (status < 0)
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put_fd(descriptor);
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else {
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mutex_lock(&context->io_mutex);
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fd_set_close_on_exec(context, status, false);
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mutex_unlock(&context->io_mutex);
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}
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return status;
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}
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/** POSIX says this should be the same as:
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* close(newfd);
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* fcntl(oldfd, F_DUPFD, newfd);
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*
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* We do dup2() directly to be thread-safe.
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*/
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static int
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dup2_fd(int oldfd, int newfd, bool kernel)
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{
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struct file_descriptor *evicted = NULL;
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struct io_context *context;
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TRACE(("dup2_fd: ofd = %d, nfd = %d\n", oldfd, newfd));
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// quick check
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if (oldfd < 0 || newfd < 0)
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return FSSH_B_FILE_ERROR;
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// Get current I/O context and lock it
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context = get_current_io_context(kernel);
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mutex_lock(&context->io_mutex);
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// Check if the fds are valid (mutex must be locked because
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// the table size could be changed)
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if ((uint32_t)oldfd >= context->table_size
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|| (uint32_t)newfd >= context->table_size
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|| context->fds[oldfd] == NULL) {
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mutex_unlock(&context->io_mutex);
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return FSSH_B_FILE_ERROR;
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}
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// Check for identity, note that it cannot be made above
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// because we always want to return an error on invalid
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// handles
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if (oldfd != newfd) {
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// Now do the work
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evicted = context->fds[newfd];
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fssh_atomic_add(&context->fds[oldfd]->ref_count, 1);
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fssh_atomic_add(&context->fds[oldfd]->open_count, 1);
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context->fds[newfd] = context->fds[oldfd];
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if (evicted == NULL)
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context->num_used_fds++;
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}
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fd_set_close_on_exec(context, newfd, false);
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mutex_unlock(&context->io_mutex);
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// Say bye bye to the evicted fd
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if (evicted) {
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close_fd(evicted);
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put_fd(evicted);
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}
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return newfd;
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}
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fssh_status_t
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select_fd(int fd, uint8_t event, uint32_t ref, struct select_sync *sync, bool kernel)
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{
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// struct file_descriptor *descriptor;
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// fssh_status_t status;
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//
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// TRACE(("select_fd(fd = %d, event = %u, ref = %lu, selectsync = %p)\n", fd, event, ref, sync));
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//
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// descriptor = get_fd(get_current_io_context(kernel), fd);
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// if (descriptor == NULL)
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// return FSSH_B_FILE_ERROR;
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//
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// if (descriptor->ops->fd_select) {
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// status = descriptor->ops->fd_select(descriptor, event, ref, sync);
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// } else {
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// // if the I/O subsystem doesn't support select(), we will
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// // immediately notify the select call
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// status = notify_select_event((void *)sync, ref, event);
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// }
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//
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// put_fd(descriptor);
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// return status;
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return FSSH_B_BAD_VALUE;
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}
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fssh_status_t
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deselect_fd(int fd, uint8_t event, struct select_sync *sync, bool kernel)
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{
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// struct file_descriptor *descriptor;
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// fssh_status_t status;
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//
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// TRACE(("deselect_fd(fd = %d, event = %u, selectsync = %p)\n", fd, event, sync));
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//
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// descriptor = get_fd(get_current_io_context(kernel), fd);
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// if (descriptor == NULL)
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// return FSSH_B_FILE_ERROR;
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//
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// if (descriptor->ops->fd_deselect)
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// status = descriptor->ops->fd_deselect(descriptor, event, sync);
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// else
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// status = FSSH_B_OK;
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//
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// put_fd(descriptor);
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// return status;
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return FSSH_B_BAD_VALUE;
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}
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/** This function checks if the specified fd is valid in the current
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* context. It can be used for a quick check; the fd is not locked
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* so it could become invalid immediately after this check.
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*/
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bool
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fd_is_valid(int fd, bool kernel)
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{
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struct file_descriptor *descriptor = get_fd(get_current_io_context(kernel), fd);
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if (descriptor == NULL)
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return false;
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put_fd(descriptor);
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return true;
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}
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struct vnode *
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fd_vnode(struct file_descriptor *descriptor)
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{
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switch (descriptor->type) {
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case FDTYPE_FILE:
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case FDTYPE_DIR:
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case FDTYPE_ATTR_DIR:
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case FDTYPE_ATTR:
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return descriptor->u.vnode;
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}
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return NULL;
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}
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static fssh_status_t
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common_close(int fd, bool kernel)
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{
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struct io_context *io = get_current_io_context(kernel);
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struct file_descriptor *descriptor = remove_fd(io, fd);
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if (descriptor == NULL)
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return FSSH_B_FILE_ERROR;
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#ifdef TRACE_FD
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if (!kernel)
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TRACE(("_user_close(descriptor = %p)\n", descriptor));
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#endif
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close_fd(descriptor);
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put_fd(descriptor);
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// the reference associated with the slot
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return FSSH_B_OK;
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}
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} // namespace FSShell
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// #pragma mark -
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// Kernel calls
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using namespace FSShell;
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fssh_ssize_t
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_kern_read(int fd, fssh_off_t pos, void *buffer, fssh_size_t length)
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{
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struct file_descriptor *descriptor;
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fssh_ssize_t bytesRead;
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descriptor = get_fd(get_current_io_context(true), fd);
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if (!descriptor)
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return FSSH_B_FILE_ERROR;
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if ((descriptor->open_mode & FSSH_O_RWMASK) == FSSH_O_WRONLY) {
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put_fd(descriptor);
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return FSSH_B_FILE_ERROR;
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}
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if (pos == -1)
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pos = descriptor->pos;
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if (descriptor->ops->fd_read) {
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bytesRead = descriptor->ops->fd_read(descriptor, pos, buffer, &length);
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if (bytesRead >= FSSH_B_OK) {
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if (length > SSIZE_MAX)
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bytesRead = SSIZE_MAX;
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else
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bytesRead = (fssh_ssize_t)length;
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descriptor->pos = pos + length;
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}
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} else
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bytesRead = FSSH_B_BAD_VALUE;
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put_fd(descriptor);
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return bytesRead;
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}
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fssh_ssize_t
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_kern_readv(int fd, fssh_off_t pos, const fssh_iovec *vecs, fssh_size_t count)
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{
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struct file_descriptor *descriptor;
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fssh_ssize_t bytesRead = 0;
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fssh_status_t status;
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uint32_t i;
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descriptor = get_fd(get_current_io_context(true), fd);
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if (!descriptor)
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return FSSH_B_FILE_ERROR;
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if ((descriptor->open_mode & FSSH_O_RWMASK) == FSSH_O_WRONLY) {
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put_fd(descriptor);
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return FSSH_B_FILE_ERROR;
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}
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if (pos == -1)
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pos = descriptor->pos;
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if (descriptor->ops->fd_read) {
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for (i = 0; i < count; i++) {
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fssh_size_t length = vecs[i].iov_len;
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status = descriptor->ops->fd_read(descriptor, pos, vecs[i].iov_base, &length);
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if (status < FSSH_B_OK) {
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bytesRead = status;
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break;
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}
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if ((uint32_t)bytesRead + length > SSIZE_MAX)
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bytesRead = SSIZE_MAX;
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else
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bytesRead += (fssh_ssize_t)length;
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pos += vecs[i].iov_len;
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}
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} else
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bytesRead = FSSH_B_BAD_VALUE;
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descriptor->pos = pos;
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put_fd(descriptor);
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return bytesRead;
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}
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fssh_ssize_t
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_kern_write(int fd, fssh_off_t pos, const void *buffer, fssh_size_t length)
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{
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struct file_descriptor *descriptor;
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fssh_ssize_t bytesWritten;
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descriptor = get_fd(get_current_io_context(true), fd);
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if (descriptor == NULL)
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return FSSH_B_FILE_ERROR;
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if ((descriptor->open_mode & FSSH_O_RWMASK) == FSSH_O_RDONLY) {
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put_fd(descriptor);
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return FSSH_B_FILE_ERROR;
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}
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if (pos == -1)
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pos = descriptor->pos;
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if (descriptor->ops->fd_write) {
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bytesWritten = descriptor->ops->fd_write(descriptor, pos, buffer, &length);
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if (bytesWritten >= FSSH_B_OK) {
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if (length > SSIZE_MAX)
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bytesWritten = SSIZE_MAX;
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else
|
|
bytesWritten = (fssh_ssize_t)length;
|
|
|
|
descriptor->pos = pos + length;
|
|
}
|
|
} else
|
|
bytesWritten = FSSH_B_BAD_VALUE;
|
|
|
|
put_fd(descriptor);
|
|
return bytesWritten;
|
|
}
|
|
|
|
|
|
fssh_ssize_t
|
|
_kern_writev(int fd, fssh_off_t pos, const fssh_iovec *vecs, fssh_size_t count)
|
|
{
|
|
struct file_descriptor *descriptor;
|
|
fssh_ssize_t bytesWritten = 0;
|
|
fssh_status_t status;
|
|
uint32_t i;
|
|
|
|
descriptor = get_fd(get_current_io_context(true), fd);
|
|
if (!descriptor)
|
|
return FSSH_B_FILE_ERROR;
|
|
if ((descriptor->open_mode & FSSH_O_RWMASK) == FSSH_O_RDONLY) {
|
|
put_fd(descriptor);
|
|
return FSSH_B_FILE_ERROR;
|
|
}
|
|
|
|
if (pos == -1)
|
|
pos = descriptor->pos;
|
|
|
|
if (descriptor->ops->fd_write) {
|
|
for (i = 0; i < count; i++) {
|
|
fssh_size_t length = vecs[i].iov_len;
|
|
status = descriptor->ops->fd_write(descriptor, pos, vecs[i].iov_base, &length);
|
|
if (status < FSSH_B_OK) {
|
|
bytesWritten = status;
|
|
break;
|
|
}
|
|
|
|
if ((uint32_t)bytesWritten + length > SSIZE_MAX)
|
|
bytesWritten = SSIZE_MAX;
|
|
else
|
|
bytesWritten += (fssh_ssize_t)length;
|
|
|
|
pos += vecs[i].iov_len;
|
|
}
|
|
} else
|
|
bytesWritten = FSSH_B_BAD_VALUE;
|
|
|
|
descriptor->pos = pos;
|
|
put_fd(descriptor);
|
|
return bytesWritten;
|
|
}
|
|
|
|
|
|
fssh_off_t
|
|
_kern_seek(int fd, fssh_off_t pos, int seekType)
|
|
{
|
|
struct file_descriptor *descriptor;
|
|
|
|
descriptor = get_fd(get_current_io_context(true), fd);
|
|
if (!descriptor)
|
|
return FSSH_B_FILE_ERROR;
|
|
|
|
if (descriptor->ops->fd_seek)
|
|
pos = descriptor->ops->fd_seek(descriptor, pos, seekType);
|
|
else
|
|
pos = FSSH_ESPIPE;
|
|
|
|
put_fd(descriptor);
|
|
return pos;
|
|
}
|
|
|
|
|
|
fssh_status_t
|
|
_kern_ioctl(int fd, uint32_t op, void *buffer, fssh_size_t length)
|
|
{
|
|
struct file_descriptor *descriptor;
|
|
int status;
|
|
|
|
TRACE(("sys_ioctl: fd %d\n", fd));
|
|
|
|
descriptor = get_fd(get_current_io_context(true), fd);
|
|
if (descriptor == NULL)
|
|
return FSSH_B_FILE_ERROR;
|
|
|
|
if (descriptor->ops->fd_ioctl)
|
|
status = descriptor->ops->fd_ioctl(descriptor, op, buffer, length);
|
|
else
|
|
status = FSSH_EOPNOTSUPP;
|
|
|
|
put_fd(descriptor);
|
|
return status;
|
|
}
|
|
|
|
|
|
fssh_ssize_t
|
|
_kern_read_dir(int fd, struct fssh_dirent *buffer, fssh_size_t bufferSize, uint32_t maxCount)
|
|
{
|
|
struct file_descriptor *descriptor;
|
|
fssh_ssize_t retval;
|
|
|
|
TRACE(("sys_read_dir(fd = %d, buffer = %p, bufferSize = %ld, count = %lu)\n",fd, buffer, bufferSize, maxCount));
|
|
|
|
descriptor = get_fd(get_current_io_context(true), fd);
|
|
if (descriptor == NULL)
|
|
return FSSH_B_FILE_ERROR;
|
|
|
|
if (descriptor->ops->fd_read_dir) {
|
|
uint32_t count = maxCount;
|
|
retval = descriptor->ops->fd_read_dir(descriptor, buffer, bufferSize, &count);
|
|
if (retval >= 0)
|
|
retval = count;
|
|
} else
|
|
retval = FSSH_EOPNOTSUPP;
|
|
|
|
put_fd(descriptor);
|
|
return retval;
|
|
}
|
|
|
|
|
|
fssh_status_t
|
|
_kern_rewind_dir(int fd)
|
|
{
|
|
struct file_descriptor *descriptor;
|
|
fssh_status_t status;
|
|
|
|
TRACE(("sys_rewind_dir(fd = %d)\n",fd));
|
|
|
|
descriptor = get_fd(get_current_io_context(true), fd);
|
|
if (descriptor == NULL)
|
|
return FSSH_B_FILE_ERROR;
|
|
|
|
if (descriptor->ops->fd_rewind_dir)
|
|
status = descriptor->ops->fd_rewind_dir(descriptor);
|
|
else
|
|
status = FSSH_EOPNOTSUPP;
|
|
|
|
put_fd(descriptor);
|
|
return status;
|
|
}
|
|
|
|
|
|
fssh_status_t
|
|
_kern_close(int fd)
|
|
{
|
|
return common_close(fd, true);
|
|
}
|
|
|
|
|
|
int
|
|
_kern_dup(int fd)
|
|
{
|
|
return dup_fd(fd, true);
|
|
}
|
|
|
|
|
|
int
|
|
_kern_dup2(int ofd, int nfd)
|
|
{
|
|
return dup2_fd(ofd, nfd, true);
|
|
}
|
|
|