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Merge pull request #3817 from hathach/claude/usbd-setup-queue-leak
usbd: fix queued-setup counter leak when the event queue is full
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@ -642,6 +642,8 @@ static void configuration_reset(uint8_t rhport) {
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static void usbd_reset(uint8_t rhport) {
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configuration_reset(rhport);
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// discard any pre-reset SETUP still counted: a stale count skips post-reset SETUPs
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_usbd_queued_setup = 0;
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}
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bool tud_task_event_ready(void) {
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@ -1473,8 +1475,18 @@ TU_ATTR_FAST_FUNC void dcd_event_handler(dcd_event_t const* event, bool in_isr)
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break;
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}
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if (send) {
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queue_event(event, in_isr);
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if (send && !queue_event(event, in_isr)) {
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// event dropped by a full queue: undo state that would otherwise wedge permanently
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if (event->event_id == DCD_EVENT_SETUP_RECEIVED) {
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// undo the increment, else every later SETUP is skipped as "other SETUP in queue"
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// and EP0 is deaf until re-init
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_usbd_queued_setup--;
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} else if (event->event_id == DCD_EVENT_XFER_COMPLETE) {
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// clear busy + claimed, else the endpoint can never be claimed or re-armed again
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uint8_t const epnum = tu_edpt_number(event->xfer_complete.ep_addr);
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uint8_t const ep_dir = tu_edpt_dir(event->xfer_complete.ep_addr);
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_usbd_dev.ep_status[epnum][ep_dir] &= (uint8_t) ~(TU_EDPT_STATE_BUSY | TU_EDPT_STATE_CLAIMED);
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}
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}
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}
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@ -29,6 +29,7 @@
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#include "tusb_fifo.h"
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#include "tusb.h"
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#include "usbd.h"
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#include "device/usbd_pvt.h"
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TEST_SOURCE_FILE("usbd.c")
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// Mock File
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@ -270,6 +271,90 @@ void test_usbd_control_in_zlp(void)
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tud_task();
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}
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//--------------------------------------------------------------------+
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// SETUP dropped by full event queue
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//--------------------------------------------------------------------+
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// When the event queue is full, queue_event() drops the SETUP event. The queued-setup
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// counter must not keep the dropped SETUP's increment: a leaked count makes the handler
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// skip every later SETUP ("other SETUP in queue") forever, leaving EP0 permanently deaf.
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void test_usbd_setup_dropped_by_full_queue_recovers(void)
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{
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// fillers drain through usbd_reset -> class reset
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mscd_reset_Ignore();
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// fill the queue to the brim, then post one more SETUP: queue_event() drops it
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for (unsigned i = 0; i < CFG_TUD_TASK_QUEUE_SZ; i++) {
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dcd_event_bus_signal(rhport, DCD_EVENT_UNPLUGGED, false);
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}
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dcd_event_setup_received(rhport, (uint8_t*) &req_get_desc_device, false);
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// drain all fillers (each tud_task pass handles at most CFG_TUD_TASK_EVENTS_PER_RUN
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// events); the dropped SETUP never arrives
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for (unsigned i = 0; i < (CFG_TUD_TASK_QUEUE_SZ / CFG_TUD_TASK_EVENTS_PER_RUN) + 1; i++) {
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tud_task();
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}
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// the next SETUP must still be answered
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desc_device = (uint8_t const*) &data_desc_device;
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dcd_event_setup_received(rhport, (uint8_t*) &req_get_desc_device, false);
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dcd_edpt_xfer_ExpectWithArrayAndReturn(rhport, 0x80, (uint8_t*) &data_desc_device, sizeof(tusb_desc_device_t), sizeof(tusb_desc_device_t), false, true);
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dcd_event_xfer_complete(rhport, EDPT_CTRL_IN, sizeof(tusb_desc_device_t), 0, false);
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dcd_edpt_xfer_ExpectAndReturn(rhport, EDPT_CTRL_OUT, NULL, 0, false, true);
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dcd_event_xfer_complete(rhport, EDPT_CTRL_OUT, 0, 0, false);
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dcd_edpt0_status_complete_ExpectWithArray(rhport, &req_get_desc_device, 1);
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tud_task();
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}
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//--------------------------------------------------------------------+
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// Transfer completion dropped by full event queue
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//--------------------------------------------------------------------+
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// When the event queue is full, queue_event() drops the XFER_COMPLETE event. The endpoint's
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// busy/claimed state must not survive the dropped completion: a leaked BUSY makes every later
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// usbd_edpt_claim()/usbd_edpt_xfer() on that endpoint fail, so the class never re-arms it.
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void test_usbd_xfer_complete_dropped_by_full_queue_recovers(void)
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{
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// fillers drain through usbd_reset -> class reset
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mscd_reset_Ignore();
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// open + claim + arm a bulk OUT endpoint the way a class driver would
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tusb_desc_endpoint_t desc_ep = {
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.bLength = sizeof(tusb_desc_endpoint_t),
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.bDescriptorType = TUSB_DESC_ENDPOINT,
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.bEndpointAddress = 0x01,
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.bmAttributes = { .xfer = TUSB_XFER_BULK },
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.wMaxPacketSize = 64,
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.bInterval = 0
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};
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static uint8_t xfer_buf[64];
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dcd_edpt_open_ExpectAndReturn(rhport, &desc_ep, true);
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TEST_ASSERT_TRUE(usbd_edpt_open(rhport, &desc_ep));
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TEST_ASSERT_TRUE(usbd_edpt_claim(rhport, 0x01));
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dcd_edpt_xfer_ExpectAndReturn(rhport, 0x01, xfer_buf, 64, false, true);
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TEST_ASSERT_TRUE(usbd_edpt_xfer(rhport, 0x01, xfer_buf, 64, false));
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// fill the queue to the brim, then complete the transfer: queue_event() drops it
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for (unsigned i = 0; i < CFG_TUD_TASK_QUEUE_SZ; i++) {
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dcd_event_bus_signal(rhport, DCD_EVENT_UNPLUGGED, false);
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}
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dcd_event_xfer_complete(rhport, 0x01, 64, XFER_RESULT_SUCCESS, false);
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// the endpoint must be re-armable: the dropped completion must not leak busy/claimed
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TEST_ASSERT_TRUE(usbd_edpt_claim(rhport, 0x01));
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dcd_edpt_xfer_ExpectAndReturn(rhport, 0x01, xfer_buf, 64, false, true);
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TEST_ASSERT_TRUE(usbd_edpt_xfer(rhport, 0x01, xfer_buf, 64, false));
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// drain the fillers so later tests start from an empty queue
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for (unsigned i = 0; i < (CFG_TUD_TASK_QUEUE_SZ / CFG_TUD_TASK_EVENTS_PER_RUN) + 1; i++) {
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tud_task();
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}
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}
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//--------------------------------------------------------------------+
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// Control OUT data stage host overrun
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//--------------------------------------------------------------------+
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