i2c: tegra: Remove "dma" variable from tegra_i2c_xfer_msg()
The "dma" variable of tegra_i2c_xfer_msg() function doesn't bring much in regards to readability and generation of the code. Besides readability, it's also not very nice that the is_curr_dma_xfer is initialized in tegra_i2c_xfer_msg() and then could be overridden by tegra_i2c_config_fifo_trig(). In a result, the "dma" variable creates slight confusion since it's not instantly obvious why it's set after tegra_i2c_config_fifo_trig(). Hence should be better to have the variable removed. This makes code more consistent. Reviewed-by: Andy Shevchenko <andy.shevchenko@gmail.com> Acked-by: Thierry Reding <treding@nvidia.com> Tested-by: Thierry Reding <treding@nvidia.com> Signed-off-by: Dmitry Osipenko <digetx@gmail.com> Signed-off-by: Wolfram Sang <wsa@kernel.org>
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@ -1120,7 +1120,6 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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size_t xfer_size;
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u32 *buffer = NULL;
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int err = 0;
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bool dma;
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u16 xfer_time = 100;
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err = tegra_i2c_flush_fifos(i2c_dev);
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@ -1143,7 +1142,7 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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i2c_dev->dma_buf &&
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!i2c_dev->is_curr_atomic_xfer;
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tegra_i2c_config_fifo_trig(i2c_dev, xfer_size);
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dma = i2c_dev->is_curr_dma_xfer;
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/*
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* Transfer time in mSec = Total bits / transfer rate
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* Total bits = 9 bits per byte (including ACK bit) + Start & stop bits
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@ -1153,7 +1152,7 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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int_mask = I2C_INT_NO_ACK | I2C_INT_ARBITRATION_LOST;
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tegra_i2c_unmask_irq(i2c_dev, int_mask);
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if (dma) {
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if (i2c_dev->is_curr_dma_xfer) {
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if (i2c_dev->msg_read) {
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dma_sync_single_for_device(i2c_dev->dev,
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i2c_dev->dma_phys,
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@ -1181,13 +1180,13 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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PACKET_HEADER0_PROTOCOL_I2C) |
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FIELD_PREP(PACKET_HEADER0_CONT_ID, i2c_dev->cont_id) |
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FIELD_PREP(PACKET_HEADER0_PACKET_ID, 1);
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if (dma && !i2c_dev->msg_read)
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if (i2c_dev->is_curr_dma_xfer && !i2c_dev->msg_read)
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*buffer++ = packet_header;
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else
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i2c_writel(i2c_dev, packet_header, I2C_TX_FIFO);
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packet_header = msg->len - 1;
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if (dma && !i2c_dev->msg_read)
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if (i2c_dev->is_curr_dma_xfer && !i2c_dev->msg_read)
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*buffer++ = packet_header;
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else
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i2c_writel(i2c_dev, packet_header, I2C_TX_FIFO);
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@ -1207,13 +1206,13 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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packet_header |= I2C_HEADER_CONT_ON_NAK;
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if (msg->flags & I2C_M_RD)
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packet_header |= I2C_HEADER_READ;
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if (dma && !i2c_dev->msg_read)
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if (i2c_dev->is_curr_dma_xfer && !i2c_dev->msg_read)
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*buffer++ = packet_header;
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else
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i2c_writel(i2c_dev, packet_header, I2C_TX_FIFO);
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if (!i2c_dev->msg_read) {
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if (dma) {
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if (i2c_dev->is_curr_dma_xfer) {
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memcpy(buffer, msg->buf, msg->len);
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dma_sync_single_for_device(i2c_dev->dev,
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i2c_dev->dma_phys,
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@ -1233,7 +1232,7 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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if (i2c_dev->hw->has_per_pkt_xfer_complete_irq)
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int_mask |= I2C_INT_PACKET_XFER_COMPLETE;
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if (!dma) {
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if (!i2c_dev->is_curr_dma_xfer) {
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if (msg->flags & I2C_M_RD)
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int_mask |= I2C_INT_RX_FIFO_DATA_REQ;
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else if (i2c_dev->msg_buf_remaining)
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@ -1244,7 +1243,7 @@ static int tegra_i2c_xfer_msg(struct tegra_i2c_dev *i2c_dev,
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dev_dbg(i2c_dev->dev, "unmasked irq: %02x\n",
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i2c_readl(i2c_dev, I2C_INT_MASK));
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if (dma) {
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if (i2c_dev->is_curr_dma_xfer) {
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time_left = tegra_i2c_wait_completion_timeout(
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i2c_dev, &i2c_dev->dma_complete, xfer_time);
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