diff options
author | Linus Torvalds <torvalds@linux-foundation.org> | 2012-03-21 10:32:00 -0700 |
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committer | Linus Torvalds <torvalds@linux-foundation.org> | 2012-03-21 10:32:00 -0700 |
commit | 5f0e685f316a1de6d3af8b23eaf46651faca32ab (patch) | |
tree | af1ed231b7fcfc65b146be59a0aee699aa9f6353 /drivers/spi/spi-topcliff-pch.c | |
parent | f8974cb71310a05632aada76be6a27576d61e609 (diff) | |
parent | 87bf5ab82884c829366914aaa813cc8b07b9fe58 (diff) |
Merge tag 'spi-for-linus' of git://git.secretlab.ca/git/linux-2.6
Pull SPI changes for v3.4 from Grant Likely:
"Mostly a bunch of new drivers and driver bug fixes; but this also
includes a few patches that create a core message queue infrastructure
for the spi subsystem instead of making each driver open code it."
* tag 'spi-for-linus' of git://git.secretlab.ca/git/linux-2.6: (34 commits)
spi/fsl-espi: Make sure pm is within 2..32
spi/fsl-espi: make the clock computation easier to read
spi: sh-hspi: modify write/read method
spi: sh-hspi: control spi clock more correctly
spi: sh-hspi: convert to using core message queue
spi: s3c64xx: Fix build
spi: s3c64xx: remove unnecessary callback msg->complete
spi: remove redundant variable assignment
spi: release lock on error path in spi_pump_messages()
spi: Compatibility with direction which is used in samsung DMA operation
spi-topcliff-pch: add recovery processing in case wait-event timeout
spi-topcliff-pch: supports a spi mode setup and bit order setup by IO control
spi-topcliff-pch: Fix issue for transmitting over 4KByte
spi-topcliff-pch: Modify pci-bus number dynamically to get DMA device info
spi/imx: simplify error handling to free gpios
spi: Convert to DEFINE_PCI_DEVICE_TABLE
spi: add Broadcom BCM63xx SPI controller driver
SPI: add CSR SiRFprimaII SPI controller driver
spi-topcliff-pch: fix -Wuninitialized warning
spi: Mark spi_register_board_info() __devinit
...
Diffstat (limited to 'drivers/spi/spi-topcliff-pch.c')
-rw-r--r-- | drivers/spi/spi-topcliff-pch.c | 113 |
1 files changed, 84 insertions, 29 deletions
diff --git a/drivers/spi/spi-topcliff-pch.c b/drivers/spi/spi-topcliff-pch.c index 10182eb5006..5c6fa5ed336 100644 --- a/drivers/spi/spi-topcliff-pch.c +++ b/drivers/spi/spi-topcliff-pch.c @@ -196,6 +196,7 @@ struct pch_spi_data { struct pch_spi_dma_ctrl dma; int use_dma; u8 irq_reg_sts; + int save_total_len; }; /** @@ -216,7 +217,7 @@ struct pch_pd_dev_save { struct pch_spi_board_data *board_dat; }; -static struct pci_device_id pch_spi_pcidev_id[] = { +static DEFINE_PCI_DEVICE_TABLE(pch_spi_pcidev_id) = { { PCI_VDEVICE(INTEL, PCI_DEVICE_ID_GE_SPI), 1, }, { PCI_VDEVICE(ROHM, PCI_DEVICE_ID_ML7213_SPI), 2, }, { PCI_VDEVICE(ROHM, PCI_DEVICE_ID_ML7223_SPI), 1, }, @@ -318,22 +319,23 @@ static void pch_spi_handler_sub(struct pch_spi_data *data, u32 reg_spsr_val, data->tx_index = tx_index; data->rx_index = rx_index; - } - - /* if transfer complete interrupt */ - if (reg_spsr_val & SPSR_FI_BIT) { - if ((tx_index == bpw_len) && (rx_index == tx_index)) { - /* disable interrupts */ - pch_spi_setclr_reg(data->master, PCH_SPCR, 0, PCH_ALL); - - /* transfer is completed; - inform pch_spi_process_messages */ - data->transfer_complete = true; - data->transfer_active = false; - wake_up(&data->wait); - } else { - dev_err(&data->master->dev, - "%s : Transfer is not completed", __func__); + /* if transfer complete interrupt */ + if (reg_spsr_val & SPSR_FI_BIT) { + if ((tx_index == bpw_len) && (rx_index == tx_index)) { + /* disable interrupts */ + pch_spi_setclr_reg(data->master, PCH_SPCR, 0, + PCH_ALL); + + /* transfer is completed; + inform pch_spi_process_messages */ + data->transfer_complete = true; + data->transfer_active = false; + wake_up(&data->wait); + } else { + dev_err(&data->master->dev, + "%s : Transfer is not completed", + __func__); + } } } } @@ -822,11 +824,13 @@ static void pch_spi_copy_rx_data_for_dma(struct pch_spi_data *data, int bpw) rx_dma_buf = data->dma.rx_buf_virt; for (j = 0; j < data->bpw_len; j++) *rx_buf++ = *rx_dma_buf++ & 0xFF; + data->cur_trans->rx_buf = rx_buf; } else { rx_sbuf = data->cur_trans->rx_buf; rx_dma_sbuf = data->dma.rx_buf_virt; for (j = 0; j < data->bpw_len; j++) *rx_sbuf++ = *rx_dma_sbuf++; + data->cur_trans->rx_buf = rx_sbuf; } } @@ -852,6 +856,9 @@ static int pch_spi_start_transfer(struct pch_spi_data *data) rtn = wait_event_interruptible_timeout(data->wait, data->transfer_complete, msecs_to_jiffies(2 * HZ)); + if (!rtn) + dev_err(&data->master->dev, + "%s wait-event timeout\n", __func__); dma_sync_sg_for_cpu(&data->master->dev, dma->sg_rx_p, dma->nent, DMA_FROM_DEVICE); @@ -923,7 +930,8 @@ static void pch_spi_request_dma(struct pch_spi_data *data, int bpw) dma_cap_set(DMA_SLAVE, mask); /* Get DMA's dev information */ - dma_dev = pci_get_bus_and_slot(2, PCI_DEVFN(12, 0)); + dma_dev = pci_get_bus_and_slot(data->board_dat->pdev->bus->number, + PCI_DEVFN(12, 0)); /* Set Tx DMA */ param = &dma->param_tx; @@ -987,6 +995,7 @@ static void pch_spi_handle_dma(struct pch_spi_data *data, int *bpw) int i; int size; int rem; + int head; unsigned long flags; struct pch_spi_dma_ctrl *dma; @@ -1015,6 +1024,11 @@ static void pch_spi_handle_dma(struct pch_spi_data *data, int *bpw) } data->bpw_len = data->cur_trans->len / (*bpw / 8); + if (data->bpw_len > PCH_BUF_SIZE) { + data->bpw_len = PCH_BUF_SIZE; + data->cur_trans->len -= PCH_BUF_SIZE; + } + /* copy Tx Data */ if (data->cur_trans->tx_buf != NULL) { if (*bpw == 8) { @@ -1029,10 +1043,17 @@ static void pch_spi_handle_dma(struct pch_spi_data *data, int *bpw) *tx_dma_sbuf++ = *tx_sbuf++; } } + + /* Calculate Rx parameter for DMA transmitting */ if (data->bpw_len > PCH_DMA_TRANS_SIZE) { - num = data->bpw_len / PCH_DMA_TRANS_SIZE + 1; + if (data->bpw_len % PCH_DMA_TRANS_SIZE) { + num = data->bpw_len / PCH_DMA_TRANS_SIZE + 1; + rem = data->bpw_len % PCH_DMA_TRANS_SIZE; + } else { + num = data->bpw_len / PCH_DMA_TRANS_SIZE; + rem = PCH_DMA_TRANS_SIZE; + } size = PCH_DMA_TRANS_SIZE; - rem = data->bpw_len % PCH_DMA_TRANS_SIZE; } else { num = 1; size = data->bpw_len; @@ -1092,15 +1113,23 @@ static void pch_spi_handle_dma(struct pch_spi_data *data, int *bpw) dma->nent = num; dma->desc_rx = desc_rx; - /* TX */ - if (data->bpw_len > PCH_DMA_TRANS_SIZE) { - num = data->bpw_len / PCH_DMA_TRANS_SIZE; + /* Calculate Tx parameter for DMA transmitting */ + if (data->bpw_len > PCH_MAX_FIFO_DEPTH) { + head = PCH_MAX_FIFO_DEPTH - PCH_DMA_TRANS_SIZE; + if (data->bpw_len % PCH_DMA_TRANS_SIZE > 4) { + num = data->bpw_len / PCH_DMA_TRANS_SIZE + 1; + rem = data->bpw_len % PCH_DMA_TRANS_SIZE - head; + } else { + num = data->bpw_len / PCH_DMA_TRANS_SIZE; + rem = data->bpw_len % PCH_DMA_TRANS_SIZE + + PCH_DMA_TRANS_SIZE - head; + } size = PCH_DMA_TRANS_SIZE; - rem = 16; } else { num = 1; size = data->bpw_len; rem = data->bpw_len; + head = 0; } dma->sg_tx_p = kzalloc(sizeof(struct scatterlist)*num, GFP_ATOMIC); @@ -1110,11 +1139,17 @@ static void pch_spi_handle_dma(struct pch_spi_data *data, int *bpw) for (i = 0; i < num; i++, sg++) { if (i == 0) { sg->offset = 0; + sg_set_page(sg, virt_to_page(dma->tx_buf_virt), size + head, + sg->offset); + sg_dma_len(sg) = size + head; + } else if (i == (num - 1)) { + sg->offset = head + size * i; + sg->offset = sg->offset * (*bpw / 8); sg_set_page(sg, virt_to_page(dma->tx_buf_virt), rem, sg->offset); sg_dma_len(sg) = rem; } else { - sg->offset = rem + size * (i - 1); + sg->offset = head + size * i; sg->offset = sg->offset * (*bpw / 8); sg_set_page(sg, virt_to_page(dma->tx_buf_virt), size, sg->offset); @@ -1202,6 +1237,7 @@ static void pch_spi_process_messages(struct work_struct *pwork) data->current_msg->spi->bits_per_word); pch_spi_writereg(data->master, PCH_SSNXCR, SSN_NO_CONTROL); do { + int cnt; /* If we are already processing a message get the next transfer structure from the message otherwise retrieve the 1st transfer request from the message. */ @@ -1221,11 +1257,28 @@ static void pch_spi_process_messages(struct work_struct *pwork) } spin_unlock(&data->lock); + if (!data->cur_trans->len) + goto out; + cnt = (data->cur_trans->len - 1) / PCH_BUF_SIZE + 1; + data->save_total_len = data->cur_trans->len; if (data->use_dma) { - pch_spi_handle_dma(data, &bpw); - if (!pch_spi_start_transfer(data)) - goto out; - pch_spi_copy_rx_data_for_dma(data, bpw); + int i; + char *save_rx_buf = data->cur_trans->rx_buf; + for (i = 0; i < cnt; i ++) { + pch_spi_handle_dma(data, &bpw); + if (!pch_spi_start_transfer(data)) { + data->transfer_complete = true; + data->current_msg->status = -EIO; + data->current_msg->complete + (data->current_msg->context); + data->bcurrent_msg_processing = false; + data->current_msg = NULL; + data->cur_trans = NULL; + goto out; + } + pch_spi_copy_rx_data_for_dma(data, bpw); + } + data->cur_trans->rx_buf = save_rx_buf; } else { pch_spi_set_tx(data, &bpw); pch_spi_set_ir(data); @@ -1236,6 +1289,7 @@ static void pch_spi_process_messages(struct work_struct *pwork) data->pkt_tx_buff = NULL; } /* increment message count */ + data->cur_trans->len = data->save_total_len; data->current_msg->actual_length += data->cur_trans->len; dev_dbg(&data->master->dev, @@ -1388,6 +1442,7 @@ static int __devinit pch_spi_pd_probe(struct platform_device *plat_dev) master->num_chipselect = PCH_MAX_CS; master->setup = pch_spi_setup; master->transfer = pch_spi_transfer; + master->mode_bits = SPI_CPOL | SPI_CPHA | SPI_LSB_FIRST; data->board_dat = board_dat; data->plat_dev = plat_dev; |