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V4L/DVB (9804): cx18: Avoid making firmware API calls with the queue lock held
cx18: Avoid making firmware API calls with the queue lock held. The source of MPEG strem corruption when not holding the queue lock was found to be that the MPEG buffer could be retrieved by the user app before it was sync'ed for the host cpu. Incoming buffers are now sync'ed before being put on q_full and releasing the queue lock. We can thus avoid the sometimes lengthy call to the firmware for CPU_DE_SET_MDL while holding the queue lock, so we can get better performance. Signed-off-by: Andy Walls <awalls@radix.net> Signed-off-by: Mauro Carvalho Chehab <mchehab@redhat.com>
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@ -163,7 +163,7 @@ static void epu_dma_done(struct cx18 *cx, struct cx18_epu_work_order *order)
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* it's filled in).
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*
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* cx18_queue_get buf() will detect the lost buffers
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* and put them back in rotation eventually.
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* and send them back to q_free for fw rotation eventually.
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*/
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if ((order->flags & CX18_F_EWO_MB_STALE_UPON_RECEIPT) &&
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!(id >= s->mdl_offset &&
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@ -174,24 +174,27 @@ static void epu_dma_done(struct cx18 *cx, struct cx18_epu_work_order *order)
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break;
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}
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buf = cx18_queue_get_buf(s, id, mdl_ack->data_used);
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CX18_DEBUG_HI_DMA("DMA DONE for %s (buffer %d)\n", s->name, id);
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if (buf == NULL) {
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CX18_WARN("Could not find buf %d for stream %s\n",
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id, s->name);
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/* Put as many buffers as possible back into fw use */
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cx18_stream_load_fw_queue(s);
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continue;
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}
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cx18_buf_sync_for_cpu(s, buf);
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if (s->type == CX18_ENC_STREAM_TYPE_TS && s->dvb.enabled) {
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CX18_DEBUG_HI_DMA("TS recv bytesused = %d\n",
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buf->bytesused);
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dvb_dmx_swfilter(&s->dvb.demux, buf->buf,
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buf->bytesused);
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}
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/* Put as many buffers as possible back into fw use */
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cx18_stream_load_fw_queue(s);
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/* Put back TS buffer, since it was removed from all queues */
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if (s->type == CX18_ENC_STREAM_TYPE_TS)
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cx18_stream_put_buf_fw(s, buf);
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} else
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set_bit(CX18_F_B_NEED_BUF_SWAP, &buf->b_flags);
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}
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wake_up(&cx->dma_waitq);
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if (s->id != -1)
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@ -117,16 +117,18 @@ struct cx18_buffer *cx18_queue_get_buf(struct cx18_stream *s, u32 id,
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}
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buf->bytesused = bytesused;
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/* Sync the buffer before we release the qlock */
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cx18_buf_sync_for_cpu(s, buf);
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if (s->type == CX18_ENC_STREAM_TYPE_TS) {
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/*
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* TS doesn't use q_full, but for sweeping up lost
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* buffers, we want the TS to requeue the buffer just
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* before sending the MDL back to the firmware, so we
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* pull it off the list here.
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* TS doesn't use q_full. As we pull the buffer off of
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* the queue here, the caller will have to put it back.
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*/
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list_del_init(&buf->list);
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} else {
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/* Move buffer from q_busy to q_full */
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list_move_tail(&buf->list, &s->q_full.list);
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set_bit(CX18_F_B_NEED_BUF_SWAP, &buf->b_flags);
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s->q_full.bytesused += buf->bytesused;
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atomic_inc(&s->q_full.buffers);
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}
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@ -135,9 +137,6 @@ struct cx18_buffer *cx18_queue_get_buf(struct cx18_stream *s, u32 id,
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ret = buf;
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break;
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}
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/* Put more buffers into the transfer rotation from q_free, if we can */
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cx18_stream_load_fw_queue_nolock(s);
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mutex_unlock(&s->qlock);
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return ret;
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}
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@ -419,31 +419,22 @@ struct cx18_queue *cx18_stream_put_buf_fw(struct cx18_stream *s,
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return q;
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}
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/* Must hold s->qlock when calling */
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void cx18_stream_load_fw_queue_nolock(struct cx18_stream *s)
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void cx18_stream_load_fw_queue(struct cx18_stream *s)
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{
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struct cx18_queue *q;
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struct cx18_buffer *buf;
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struct cx18 *cx = s->cx;
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/* Move from q_free to q_busy notifying the firmware: 63 buf limit */
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while (s->handle != CX18_INVALID_TASK_HANDLE &&
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test_bit(CX18_F_S_STREAMING, &s->s_flags) &&
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atomic_read(&s->q_busy.buffers) < 63 &&
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!list_empty(&s->q_free.list)) {
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if (atomic_read(&s->q_free.buffers) == 0 ||
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atomic_read(&s->q_busy.buffers) >= 63)
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return;
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/* Move from q_free to q_busy */
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buf = list_entry(s->q_free.list.next, struct cx18_buffer, list);
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list_move_tail(&buf->list, &s->q_busy.list);
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buf->bytesused = buf->readpos = buf->b_flags = buf->skipped = 0;
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atomic_dec(&s->q_free.buffers);
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atomic_inc(&s->q_busy.buffers);
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/* Notify firmware */
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cx18_buf_sync_for_device(s, buf);
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cx18_vapi(cx, CX18_CPU_DE_SET_MDL, 5, s->handle,
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(void __iomem *) &cx->scb->cpu_mdl[buf->id] - cx->enc_mem,
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1, buf->id, s->buf_size);
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}
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/* Move from q_free to q_busy notifying the firmware, until the limit */
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do {
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buf = cx18_dequeue(s, &s->q_free);
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if (buf == NULL)
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break;
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q = cx18_stream_put_buf_fw(s, buf);
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} while (atomic_read(&s->q_busy.buffers) < 63 && q == &s->q_busy);
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}
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int cx18_start_v4l2_encode_stream(struct cx18_stream *s)
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@ -543,8 +534,8 @@ int cx18_start_v4l2_encode_stream(struct cx18_stream *s)
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&cx->scb->cpu_mdl[buf->id].paddr);
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cx18_writel(cx, s->buf_size, &cx->scb->cpu_mdl[buf->id].length);
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}
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cx18_stream_load_fw_queue_nolock(s);
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mutex_unlock(&s->qlock);
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cx18_stream_load_fw_queue(s);
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/* begin_capture */
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if (cx18_vapi(cx, CX18_CPU_CAPTURE_START, 1, s->handle)) {
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@ -29,7 +29,7 @@ int cx18_streams_register(struct cx18 *cx);
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void cx18_streams_cleanup(struct cx18 *cx, int unregister);
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/* Capture related */
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void cx18_stream_load_fw_queue_nolock(struct cx18_stream *s);
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void cx18_stream_load_fw_queue(struct cx18_stream *s);
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struct cx18_queue *cx18_stream_put_buf_fw(struct cx18_stream *s,
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struct cx18_buffer *buf);
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int cx18_start_v4l2_encode_stream(struct cx18_stream *s);
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