i2c: mv_i2c.c: cosmetic: Coding style cleanups
Some mostly indentation coding style cleanups. Also, move this driver to use debug() for debug output. Signed-off-by: Stefan Roese <sr@denx.de> Cc: Nadav Haklai <nadavh@marvell.com> Cc: Kostya Porotchkin <kostap@marvell.com> Cc: Wilson Ding <dingwei@marvell.com> Cc: Victor Gu <xigu@marvell.com> Cc: Hua Jing <jinghua@marvell.com> Cc: Terry Zhou <bjzhou@marvell.com> Cc: Hanna Hawa <hannah@marvell.com> Cc: Haim Boot <hayim@marvell.com> Cc: Heiko Schocher <hs@denx.de>
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@ -24,12 +24,6 @@
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#include <i2c.h>
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#include "mv_i2c.h"
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#ifdef DEBUG_I2C
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#define PRINTD(x) printf x
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#else
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#define PRINTD(x)
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#endif
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/* All transfers are described by this data structure */
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struct mv_i2c_msg {
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u8 condition;
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@ -234,33 +228,39 @@ int i2c_transfer(struct mv_i2c_msg *msg)
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return 0;
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transfer_error_msg_empty:
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PRINTD(("i2c_transfer: error: 'msg' is empty\n"));
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ret = -1; goto i2c_transfer_finish;
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debug("i2c_transfer: error: 'msg' is empty\n");
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ret = -1;
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goto i2c_transfer_finish;
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transfer_error_transmit_timeout:
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PRINTD(("i2c_transfer: error: transmit timeout\n"));
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ret = -2; goto i2c_transfer_finish;
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debug("i2c_transfer: error: transmit timeout\n");
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ret = -2;
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goto i2c_transfer_finish;
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transfer_error_ack_missing:
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PRINTD(("i2c_transfer: error: ACK missing\n"));
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ret = -3; goto i2c_transfer_finish;
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debug("i2c_transfer: error: ACK missing\n");
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ret = -3;
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goto i2c_transfer_finish;
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transfer_error_receive_timeout:
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PRINTD(("i2c_transfer: error: receive timeout\n"));
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ret = -4; goto i2c_transfer_finish;
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debug("i2c_transfer: error: receive timeout\n");
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ret = -4;
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goto i2c_transfer_finish;
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transfer_error_illegal_param:
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PRINTD(("i2c_transfer: error: illegal parameters\n"));
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ret = -5; goto i2c_transfer_finish;
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debug("i2c_transfer: error: illegal parameters\n");
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ret = -5;
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goto i2c_transfer_finish;
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transfer_error_bus_busy:
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PRINTD(("i2c_transfer: error: bus is busy\n"));
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ret = -6; goto i2c_transfer_finish;
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debug("i2c_transfer: error: bus is busy\n");
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ret = -6;
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goto i2c_transfer_finish;
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i2c_transfer_finish:
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PRINTD(("i2c_transfer: ISR: 0x%04x\n", readl(&base->isr)));
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i2c_reset();
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return ret;
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debug("i2c_transfer: ISR: 0x%04x\n", readl(&base->isr));
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i2c_reset();
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return ret;
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}
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/* ------------------------------------------------------------------------ */
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@ -325,13 +325,13 @@ int i2c_read(uchar chip, uint addr, int alen, uchar *buffer, int len)
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struct mv_i2c_msg msg;
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u8 addr_bytes[3]; /* lowest...highest byte of data address */
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PRINTD(("i2c_read(chip=0x%02x, addr=0x%02x, alen=0x%02x, "
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"len=0x%02x)\n", chip, addr, alen, len));
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debug("i2c_read(chip=0x%02x, addr=0x%02x, alen=0x%02x, "
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"len=0x%02x)\n", chip, addr, alen, len);
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i2c_reset();
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/* dummy chip address write */
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PRINTD(("i2c_read: dummy chip address write\n"));
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debug("i2c_read: dummy chip address write\n");
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msg.condition = I2C_COND_START;
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msg.acknack = I2C_ACKNAK_WAITACK;
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msg.direction = I2C_WRITE;
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@ -350,7 +350,7 @@ int i2c_read(uchar chip, uint addr, int alen, uchar *buffer, int len)
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addr_bytes[2] = (u8)((addr >> 16) & 0x000000FF);
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while (--alen >= 0) {
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PRINTD(("i2c_read: send memory word address byte %1d\n", alen));
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debug("i2c_read: send memory word address byte %1d\n", alen);
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msg.condition = I2C_COND_NORMAL;
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msg.acknack = I2C_ACKNAK_WAITACK;
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msg.direction = I2C_WRITE;
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@ -360,7 +360,7 @@ int i2c_read(uchar chip, uint addr, int alen, uchar *buffer, int len)
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}
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/* start read sequence */
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PRINTD(("i2c_read: start read sequence\n"));
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debug("i2c_read: start read sequence\n");
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msg.condition = I2C_COND_START;
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msg.acknack = I2C_ACKNAK_WAITACK;
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msg.direction = I2C_WRITE;
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@ -385,8 +385,8 @@ int i2c_read(uchar chip, uint addr, int alen, uchar *buffer, int len)
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return -1;
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*buffer = msg.data;
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PRINTD(("i2c_read: reading byte (0x%08x)=0x%02x\n",
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(unsigned int)buffer, *buffer));
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debug("i2c_read: reading byte (0x%08x)=0x%02x\n",
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(unsigned int)buffer, *buffer);
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buffer++;
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}
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@ -413,13 +413,13 @@ int i2c_write(uchar chip, uint addr, int alen, uchar *buffer, int len)
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struct mv_i2c_msg msg;
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u8 addr_bytes[3]; /* lowest...highest byte of data address */
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PRINTD(("i2c_write(chip=0x%02x, addr=0x%02x, alen=0x%02x, "
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"len=0x%02x)\n", chip, addr, alen, len));
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debug("i2c_write(chip=0x%02x, addr=0x%02x, alen=0x%02x, "
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"len=0x%02x)\n", chip, addr, alen, len);
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i2c_reset();
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/* chip address write */
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PRINTD(("i2c_write: chip address write\n"));
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debug("i2c_write: chip address write\n");
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msg.condition = I2C_COND_START;
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msg.acknack = I2C_ACKNAK_WAITACK;
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msg.direction = I2C_WRITE;
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@ -437,7 +437,7 @@ int i2c_write(uchar chip, uint addr, int alen, uchar *buffer, int len)
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addr_bytes[2] = (u8)((addr >> 16) & 0x000000FF);
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while (--alen >= 0) {
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PRINTD(("i2c_write: send memory word address\n"));
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debug("i2c_write: send memory word address\n");
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msg.condition = I2C_COND_NORMAL;
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msg.acknack = I2C_ACKNAK_WAITACK;
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msg.direction = I2C_WRITE;
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@ -448,8 +448,8 @@ int i2c_write(uchar chip, uint addr, int alen, uchar *buffer, int len)
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/* write bytes; send NACK at last byte */
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while (len--) {
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PRINTD(("i2c_write: writing byte (0x%08x)=0x%02x\n",
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(unsigned int)buffer, *buffer));
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debug("i2c_write: writing byte (0x%08x)=0x%02x\n",
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(unsigned int)buffer, *buffer);
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if (len == 0)
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msg.condition = I2C_COND_STOP;
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