ARM: OMAP2+: UART: Make the RX_TIMEOUT for DMA configurable for each UART
When using DMA there are two timeouts defined. The first timeout, rx_timeout, is really a polling rate in which software polls the DMA status to see if the DMA has finished. This is necessary for the RX side because we do not know how much data we will receive. The secound timeout, RX_TIMEOUT, is a timeout after which the DMA will be stopped if no more data is received. To make this clearer, rename rx_timeout as rx_poll_rate and rename the function serial_omap_rx_timeout() to serial_omap_rxdma_poll(). The OMAP-Serial driver defines an RX_TIMEOUT of 3 seconds that is used to indicate when the DMA for UART can be stopped if no more data is received. The value is a global definition that is applied to all instances of the UART. Each UART may be used for a different purpose and so the timeout required may differ. Make this value configurable for each UART so that this value can be optimised for power savings. Signed-off-by: Jon Hunter <jon-hunter@ti.com> Signed-off-by: Govindraj.R <govindraj.raja@ti.com> Acked-by: Greg Kroah-Hartman <gregkh@suse.de> (for drivers/tty changes) Signed-off-by: Kevin Hilman <khilman@ti.com>
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c86845db77
Коммит
a9e210e0b7
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@ -64,13 +64,15 @@ struct omap_uart_state {
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static LIST_HEAD(uart_list);
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static u8 num_uarts;
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#define DEFAULT_RXDMA_TIMEOUT 1 /* RX DMA polling rate (us) */
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#define DEFAULT_RXDMA_POLLRATE 1 /* RX DMA polling rate (us) */
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#define DEFAULT_RXDMA_BUFSIZE 4096 /* RX DMA buffer size */
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#define DEFAULT_RXDMA_TIMEOUT (3 * HZ)/* RX DMA timeout (jiffies) */
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static struct omap_uart_port_info omap_serial_default_info[] __initdata = {
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{
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.dma_enabled = false,
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.dma_rx_buf_size = DEFAULT_RXDMA_BUFSIZE,
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.dma_rx_poll_rate = DEFAULT_RXDMA_POLLRATE,
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.dma_rx_timeout = DEFAULT_RXDMA_TIMEOUT,
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.autosuspend_timeout = DEFAULT_AUTOSUSPEND_DELAY,
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},
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@ -351,6 +353,7 @@ void __init omap_serial_init_port(struct omap_board_data *bdata,
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omap_up.enable_wakeup = omap_uart_enable_wakeup;
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omap_up.dma_rx_buf_size = info->dma_rx_buf_size;
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omap_up.dma_rx_timeout = info->dma_rx_timeout;
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omap_up.dma_rx_poll_rate = info->dma_rx_poll_rate;
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omap_up.autosuspend_timeout = info->autosuspend_timeout;
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/* Enable the MDR1 Errata i202 for OMAP2430/3xxx/44xx */
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@ -53,7 +53,6 @@
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#define OMAP_UART_DMA_CH_FREE -1
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#define RX_TIMEOUT (3 * HZ)
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#define OMAP_MAX_HSUART_PORTS 4
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#define MSR_SAVE_FLAGS UART_MSR_ANY_DELTA
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@ -69,6 +68,7 @@ struct omap_uart_port_info {
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unsigned int dma_rx_buf_size;
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unsigned int dma_rx_timeout;
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unsigned int autosuspend_timeout;
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unsigned int dma_rx_poll_rate;
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int (*get_context_loss_count)(struct device *);
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void (*set_forceidle)(struct platform_device *);
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@ -98,6 +98,7 @@ struct uart_omap_dma {
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/* timer to poll activity on rx dma */
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struct timer_list rx_timer;
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unsigned int rx_buf_size;
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unsigned int rx_poll_rate;
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unsigned int rx_timeout;
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};
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@ -47,7 +47,7 @@ static struct uart_omap_port *ui[OMAP_MAX_HSUART_PORTS];
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/* Forward declaration of functions */
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static void uart_tx_dma_callback(int lch, u16 ch_status, void *data);
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static void serial_omap_rx_timeout(unsigned long uart_no);
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static void serial_omap_rxdma_poll(unsigned long uart_no);
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static int serial_omap_start_rxdma(struct uart_omap_port *up);
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static void serial_omap_mdr1_errataset(struct uart_omap_port *up, u8 mdr1);
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@ -542,7 +542,7 @@ static int serial_omap_startup(struct uart_port *port)
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(dma_addr_t *)&(up->uart_dma.tx_buf_dma_phys),
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0);
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init_timer(&(up->uart_dma.rx_timer));
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up->uart_dma.rx_timer.function = serial_omap_rx_timeout;
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up->uart_dma.rx_timer.function = serial_omap_rxdma_poll;
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up->uart_dma.rx_timer.data = up->pdev->id;
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/* Currently the buffer size is 4KB. Can increase it */
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up->uart_dma.rx_buf = dma_alloc_coherent(NULL,
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@ -1160,7 +1160,7 @@ static int serial_omap_resume(struct device *dev)
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}
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#endif
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static void serial_omap_rx_timeout(unsigned long uart_no)
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static void serial_omap_rxdma_poll(unsigned long uart_no)
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{
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struct uart_omap_port *up = ui[uart_no];
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unsigned int curr_dma_pos, curr_transmitted_size;
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@ -1170,9 +1170,9 @@ static void serial_omap_rx_timeout(unsigned long uart_no)
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if ((curr_dma_pos == up->uart_dma.prev_rx_dma_pos) ||
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(curr_dma_pos == 0)) {
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if (jiffies_to_msecs(jiffies - up->port_activity) <
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RX_TIMEOUT) {
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up->uart_dma.rx_timeout) {
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mod_timer(&up->uart_dma.rx_timer, jiffies +
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usecs_to_jiffies(up->uart_dma.rx_timeout));
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usecs_to_jiffies(up->uart_dma.rx_poll_rate));
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} else {
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serial_omap_stop_rxdma(up);
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up->ier |= (UART_IER_RDI | UART_IER_RLSI);
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@ -1201,7 +1201,7 @@ static void serial_omap_rx_timeout(unsigned long uart_no)
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}
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} else {
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mod_timer(&up->uart_dma.rx_timer, jiffies +
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usecs_to_jiffies(up->uart_dma.rx_timeout));
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usecs_to_jiffies(up->uart_dma.rx_poll_rate));
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}
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up->port_activity = jiffies;
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}
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@ -1240,7 +1240,7 @@ static int serial_omap_start_rxdma(struct uart_omap_port *up)
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/* FIXME: Cache maintenance needed here? */
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omap_start_dma(up->uart_dma.rx_dma_channel);
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mod_timer(&up->uart_dma.rx_timer, jiffies +
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usecs_to_jiffies(up->uart_dma.rx_timeout));
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usecs_to_jiffies(up->uart_dma.rx_poll_rate));
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up->uart_dma.rx_dma_used = true;
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return ret;
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}
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@ -1376,6 +1376,7 @@ static int serial_omap_probe(struct platform_device *pdev)
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up->use_dma = 1;
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up->uart_dma.rx_buf_size = omap_up_info->dma_rx_buf_size;
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up->uart_dma.rx_timeout = omap_up_info->dma_rx_timeout;
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up->uart_dma.rx_poll_rate = omap_up_info->dma_rx_poll_rate;
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spin_lock_init(&(up->uart_dma.tx_lock));
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spin_lock_init(&(up->uart_dma.rx_lock));
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up->uart_dma.tx_dma_channel = OMAP_UART_DMA_CH_FREE;
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