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Bluetooth: hci_uart: fix UAFs and race conditions in close and init paths
commitc1bb9336aeupstream. Vulnerabilities leading to Use-After-Free (UAF) and Null Pointer Dereference (NPD) conditions were observed in the lifecycle management of hci_uart. The primary issue arises because the workqueues (init_ready and write_work) are only flushed/cancelled if the HCI_UART_PROTO_READY flag is set during TTY close. If a hangup occurs before setup completes, hci_uart_tty_close() skips the teardown of these workqueues and proceeds to free the `hu` struct. When the scheduled work executes later, it blindly dereferences the freed `hu` struct. Furthermore, several data races and UAFs were identified in the teardown sequence: 1. Calling hci_uart_flush() from hci_uart_close() without effectively disabling write_work causes a race condition where both can concurrently double-free hu->tx_skb. This happens because protocol timers can concurrently invoke hci_uart_tx_wakeup() and requeue write_work. 2. Calling hci_free_dev(hdev) before hu->proto->close(hu) causes a UAF when vendor specific protocol close callbacks dereference hu->hdev. 3. In the initialization error paths, failing to take the proto_lock write lock before clearing PROTO_READY leads to races with active readers. Additionally, hci_uart_tty_receive() accesses hu->hdev outside the read lock, leading to UAFs if the initialization error path frees hdev concurrently. Fix these synchronization and lifecycle issues by: 1. Re-ordering hci_uart_tty_close() to clear HCI_UART_PROTO_READY first, followed immediately by a cancel_work_sync(&hu->write_work). Clearing the flag locks out concurrent protocol timers from successfully invoking hci_uart_tx_wakeup(), effectively rendering the cancellation permanent and preventing the tx_skb double-free. 2. Note: Clearing PROTO_READY early causes hci_uart_close() to skip hu->proto->flush(). This is perfectly safe in the tty_close path because hu->proto->close() executes shortly after, which intrinsically purges all protocol SKB queues and tears down the state. 3. Relocating hu->proto->close(hu) strictly prior to hci_free_dev(hdev) across all close and error paths to prevent vendor-level UAFs. 4. Moving the hdev->stat.byte_rx increment in hci_uart_tty_receive() inside the proto_lock read-side critical section to safely synchronize with device unregistration. 5. Adding cancel_work_sync(&hu->write_work) to hci_uart_close() to safely flush the workqueue before hci_uart_flush() is invoked via the HCI core. 6. Utilizing cancel_work_sync() instead of disable_work_sync() across all paths to prevent permanently breaking user-space retry capabilities. Fixes:3b799254cf("Bluetooth: hci_uart: Cancel init work before unregistering") Cc: stable@vger.kernel.org Signed-off-by: Mingyu Wang <25181214217@stu.xidian.edu.cn> Signed-off-by: Luiz Augusto von Dentz <luiz.von.dentz@intel.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
committed by
Greg Kroah-Hartman
parent
fe69f634b0
commit
9d20d48be2
@@ -194,7 +194,15 @@ void hci_uart_init_work(struct work_struct *work)
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err = hci_register_dev(hu->hdev);
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if (err < 0) {
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BT_ERR("Can't register HCI device");
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percpu_down_write(&hu->proto_lock);
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clear_bit(HCI_UART_PROTO_READY, &hu->flags);
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percpu_up_write(&hu->proto_lock);
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/* Safely cancel work after clearing flags */
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cancel_work_sync(&hu->write_work);
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/* Close protocol before freeing hdev */
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hu->proto->close(hu);
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hdev = hu->hdev;
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hu->hdev = NULL;
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@@ -263,8 +271,12 @@ static int hci_uart_open(struct hci_dev *hdev)
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/* Close device */
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static int hci_uart_close(struct hci_dev *hdev)
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{
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struct hci_uart *hu = hci_get_drvdata(hdev);
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BT_DBG("hdev %p", hdev);
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cancel_work_sync(&hu->write_work);
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hci_uart_flush(hdev);
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hdev->flush = NULL;
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return 0;
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@@ -528,6 +540,7 @@ static void hci_uart_tty_close(struct tty_struct *tty)
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{
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struct hci_uart *hu = tty->disc_data;
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struct hci_dev *hdev;
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bool proto_ready;
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BT_DBG("tty %p", tty);
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@@ -537,24 +550,38 @@ static void hci_uart_tty_close(struct tty_struct *tty)
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if (!hu)
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return;
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hdev = hu->hdev;
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if (hdev)
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hci_uart_close(hdev);
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/* Wait for init_ready to finish to prevent registration races */
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cancel_work_sync(&hu->init_ready);
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if (test_bit(HCI_UART_PROTO_READY, &hu->flags)) {
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proto_ready = test_bit(HCI_UART_PROTO_READY, &hu->flags);
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if (proto_ready) {
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percpu_down_write(&hu->proto_lock);
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clear_bit(HCI_UART_PROTO_READY, &hu->flags);
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percpu_up_write(&hu->proto_lock);
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}
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cancel_work_sync(&hu->init_ready);
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cancel_work_sync(&hu->write_work);
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/*
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* Unconditionally cancel write_work AFTER clearing PROTO_READY.
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* This ensures that concurrent protocol timers cannot requeue
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* write_work via hci_uart_tx_wakeup(), permanently preventing
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* double-free races and UAFs.
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*/
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cancel_work_sync(&hu->write_work);
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hdev = hu->hdev;
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if (hdev)
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hci_uart_close(hdev); /* proto->flush is safely skipped */
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if (proto_ready) {
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if (hdev) {
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if (test_bit(HCI_UART_REGISTERED, &hu->flags))
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hci_unregister_dev(hdev);
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hci_free_dev(hdev);
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}
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/* Close protocol before freeing hdev (intrinsically purges queues) */
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hu->proto->close(hu);
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if (hdev)
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hci_free_dev(hdev);
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}
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clear_bit(HCI_UART_PROTO_SET, &hu->flags);
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@@ -622,11 +649,12 @@ static void hci_uart_tty_receive(struct tty_struct *tty, const u8 *data,
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* tty caller
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*/
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hu->proto->recv(hu, data, count);
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percpu_up_read(&hu->proto_lock);
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if (hu->hdev)
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hu->hdev->stat.byte_rx += count;
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percpu_up_read(&hu->proto_lock);
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tty_unthrottle(tty);
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}
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@@ -692,6 +720,10 @@ static int hci_uart_register_dev(struct hci_uart *hu)
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percpu_down_write(&hu->proto_lock);
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clear_bit(HCI_UART_PROTO_INIT, &hu->flags);
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percpu_up_write(&hu->proto_lock);
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/* Cancel work after clearing flags */
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cancel_work_sync(&hu->write_work);
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/* Close protocol before freeing hdev */
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hu->proto->close(hu);
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hu->hdev = NULL;
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hci_free_dev(hdev);
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