I2C: JZ4780: Add support for the X1000.

Add support for probing i2c driver on the X1000 Soc from Ingenic.
call the corresponding fifo parameter according to the device
model obtained from the devicetree.

Signed-off-by: 周琰杰 (Zhou Yanjie) <zhouyanjie@wanyeetech.com>
Acked-by: Paul Cercueil <paul@crapouillou.net>
Signed-off-by: Wolfram Sang <wsa@the-dreams.de>
This commit is contained in:
周琰杰 (Zhou Yanjie) 2019-12-17 16:14:10 +08:00 коммит произвёл Wolfram Sang
Родитель f4b5af78cb
Коммит 21575a7a8d
1 изменённых файлов: 116 добавлений и 40 удалений

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@ -4,6 +4,7 @@
* *
* Copyright (C) 2006 - 2009 Ingenic Semiconductor Inc. * Copyright (C) 2006 - 2009 Ingenic Semiconductor Inc.
* Copyright (C) 2015 Imagination Technologies * Copyright (C) 2015 Imagination Technologies
* Copyright (C) 2019 (Zhou Yanjie) <zhouyanjie@wanyeetech.com>
*/ */
#include <linux/bitops.h> #include <linux/bitops.h>
@ -17,6 +18,7 @@
#include <linux/io.h> #include <linux/io.h>
#include <linux/kernel.h> #include <linux/kernel.h>
#include <linux/module.h> #include <linux/module.h>
#include <linux/of_device.h>
#include <linux/platform_device.h> #include <linux/platform_device.h>
#include <linux/sched.h> #include <linux/sched.h>
#include <linux/slab.h> #include <linux/slab.h>
@ -55,6 +57,7 @@
#define JZ4780_I2C_ACKGC 0x98 #define JZ4780_I2C_ACKGC 0x98
#define JZ4780_I2C_ENSTA 0x9C #define JZ4780_I2C_ENSTA 0x9C
#define JZ4780_I2C_SDAHD 0xD0 #define JZ4780_I2C_SDAHD 0xD0
#define X1000_I2C_SDAHD 0x7C
#define JZ4780_I2C_CTRL_STPHLD BIT(7) #define JZ4780_I2C_CTRL_STPHLD BIT(7)
#define JZ4780_I2C_CTRL_SLVDIS BIT(6) #define JZ4780_I2C_CTRL_SLVDIS BIT(6)
@ -73,6 +76,8 @@
#define JZ4780_I2C_STA_TFNF BIT(1) #define JZ4780_I2C_STA_TFNF BIT(1)
#define JZ4780_I2C_STA_ACT BIT(0) #define JZ4780_I2C_STA_ACT BIT(0)
#define X1000_I2C_DC_STOP BIT(9)
static const char * const jz4780_i2c_abrt_src[] = { static const char * const jz4780_i2c_abrt_src[] = {
"ABRT_7B_ADDR_NOACK", "ABRT_7B_ADDR_NOACK",
"ABRT_10ADDR1_NOACK", "ABRT_10ADDR1_NOACK",
@ -130,18 +135,33 @@ static const char * const jz4780_i2c_abrt_src[] = {
#define JZ4780_I2CFLCNT_ADJUST(n) (((n) - 1) < 8 ? 8 : ((n) - 1)) #define JZ4780_I2CFLCNT_ADJUST(n) (((n) - 1) < 8 ? 8 : ((n) - 1))
#define JZ4780_I2C_FIFO_LEN 16 #define JZ4780_I2C_FIFO_LEN 16
#define TX_LEVEL 3
#define RX_LEVEL (JZ4780_I2C_FIFO_LEN - TX_LEVEL - 1) #define X1000_I2C_FIFO_LEN 64
#define JZ4780_I2C_TIMEOUT 300 #define JZ4780_I2C_TIMEOUT 300
#define BUFSIZE 200 #define BUFSIZE 200
enum ingenic_i2c_version {
ID_JZ4780,
ID_X1000,
};
/* ingenic_i2c_config: SoC specific config data. */
struct ingenic_i2c_config {
enum ingenic_i2c_version version;
int fifosize;
int tx_level;
int rx_level;
};
struct jz4780_i2c { struct jz4780_i2c {
void __iomem *iomem; void __iomem *iomem;
int irq; int irq;
struct clk *clk; struct clk *clk;
struct i2c_adapter adap; struct i2c_adapter adap;
const struct ingenic_i2c_config *cdata;
/* lock to protect rbuf and wbuf between xfer_rd/wr and irq handler */ /* lock to protect rbuf and wbuf between xfer_rd/wr and irq handler */
spinlock_t lock; spinlock_t lock;
@ -340,10 +360,17 @@ static int jz4780_i2c_set_speed(struct jz4780_i2c *i2c)
if (hold_time >= 0) { if (hold_time >= 0) {
/*i2c hold time enable */ /*i2c hold time enable */
if (i2c->cdata->version >= ID_X1000) {
jz4780_i2c_writew(i2c, X1000_I2C_SDAHD, hold_time);
} else {
hold_time |= JZ4780_I2C_SDAHD_HDENB; hold_time |= JZ4780_I2C_SDAHD_HDENB;
jz4780_i2c_writew(i2c, JZ4780_I2C_SDAHD, hold_time); jz4780_i2c_writew(i2c, JZ4780_I2C_SDAHD, hold_time);
}
} else { } else {
/* disable hold time */ /* disable hold time */
if (i2c->cdata->version >= ID_X1000)
jz4780_i2c_writew(i2c, X1000_I2C_SDAHD, 0);
else
jz4780_i2c_writew(i2c, JZ4780_I2C_SDAHD, 0); jz4780_i2c_writew(i2c, JZ4780_I2C_SDAHD, 0);
} }
@ -359,9 +386,11 @@ static int jz4780_i2c_cleanup(struct jz4780_i2c *i2c)
spin_lock_irqsave(&i2c->lock, flags); spin_lock_irqsave(&i2c->lock, flags);
/* can send stop now if need */ /* can send stop now if need */
if (i2c->cdata->version < ID_X1000) {
tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL); tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL);
tmp &= ~JZ4780_I2C_CTRL_STPHLD; tmp &= ~JZ4780_I2C_CTRL_STPHLD;
jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp); jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp);
}
/* disable all interrupts first */ /* disable all interrupts first */
jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, 0); jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, 0);
@ -399,11 +428,19 @@ static int jz4780_i2c_prepare(struct jz4780_i2c *i2c)
return jz4780_i2c_enable(i2c); return jz4780_i2c_enable(i2c);
} }
static void jz4780_i2c_send_rcmd(struct jz4780_i2c *i2c, int cmd_count) static void jz4780_i2c_send_rcmd(struct jz4780_i2c *i2c,
int cmd_count,
int cmd_left)
{ {
int i; int i;
for (i = 0; i < cmd_count; i++) for (i = 0; i < cmd_count - 1; i++)
jz4780_i2c_writew(i2c, JZ4780_I2C_DC, JZ4780_I2C_DC_READ);
if ((cmd_left == 0) && (i2c->cdata->version >= ID_X1000))
jz4780_i2c_writew(i2c, JZ4780_I2C_DC,
JZ4780_I2C_DC_READ | X1000_I2C_DC_STOP);
else
jz4780_i2c_writew(i2c, JZ4780_I2C_DC, JZ4780_I2C_DC_READ); jz4780_i2c_writew(i2c, JZ4780_I2C_DC, JZ4780_I2C_DC_READ);
} }
@ -458,37 +495,44 @@ static irqreturn_t jz4780_i2c_irq(int irqno, void *dev_id)
rd_left = i2c->rd_total_len - i2c->rd_data_xfered; rd_left = i2c->rd_total_len - i2c->rd_data_xfered;
if (rd_left <= JZ4780_I2C_FIFO_LEN) if (rd_left <= i2c->cdata->fifosize)
jz4780_i2c_writew(i2c, JZ4780_I2C_RXTL, rd_left - 1); jz4780_i2c_writew(i2c, JZ4780_I2C_RXTL, rd_left - 1);
} }
if (intst & JZ4780_I2C_INTST_TXEMP) { if (intst & JZ4780_I2C_INTST_TXEMP) {
if (i2c->is_write == 0) { if (i2c->is_write == 0) {
int cmd_left = i2c->rd_total_len - i2c->rd_cmd_xfered; int cmd_left = i2c->rd_total_len - i2c->rd_cmd_xfered;
int max_send = (JZ4780_I2C_FIFO_LEN - 1) int max_send = (i2c->cdata->fifosize - 1)
- (i2c->rd_cmd_xfered - (i2c->rd_cmd_xfered
- i2c->rd_data_xfered); - i2c->rd_data_xfered);
int cmd_to_send = min(cmd_left, max_send); int cmd_to_send = min(cmd_left, max_send);
if (i2c->rd_cmd_xfered != 0) if (i2c->rd_cmd_xfered != 0)
cmd_to_send = min(cmd_to_send, cmd_to_send = min(cmd_to_send,
JZ4780_I2C_FIFO_LEN i2c->cdata->fifosize
- TX_LEVEL - 1); - i2c->cdata->tx_level - 1);
if (cmd_to_send) { if (cmd_to_send) {
jz4780_i2c_send_rcmd(i2c, cmd_to_send);
i2c->rd_cmd_xfered += cmd_to_send; i2c->rd_cmd_xfered += cmd_to_send;
cmd_left = i2c->rd_total_len -
i2c->rd_cmd_xfered;
jz4780_i2c_send_rcmd(i2c,
cmd_to_send, cmd_left);
} }
cmd_left = i2c->rd_total_len - i2c->rd_cmd_xfered;
if (cmd_left == 0) { if (cmd_left == 0) {
intmsk = jz4780_i2c_readw(i2c, JZ4780_I2C_INTM); intmsk = jz4780_i2c_readw(i2c, JZ4780_I2C_INTM);
intmsk &= ~JZ4780_I2C_INTM_MTXEMP; intmsk &= ~JZ4780_I2C_INTM_MTXEMP;
jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, intmsk); jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, intmsk);
tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL); if (i2c->cdata->version < ID_X1000) {
tmp = jz4780_i2c_readw(i2c,
JZ4780_I2C_CTRL);
tmp &= ~JZ4780_I2C_CTRL_STPHLD; tmp &= ~JZ4780_I2C_CTRL_STPHLD;
jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp); jz4780_i2c_writew(i2c,
JZ4780_I2C_CTRL, tmp);
}
} }
} else { } else {
unsigned short data; unsigned short data;
@ -501,19 +545,22 @@ static irqreturn_t jz4780_i2c_irq(int irqno, void *dev_id)
i2c_sta = jz4780_i2c_readw(i2c, JZ4780_I2C_STA); i2c_sta = jz4780_i2c_readw(i2c, JZ4780_I2C_STA);
data = *i2c->wbuf; data = *i2c->wbuf;
data &= ~JZ4780_I2C_DC_READ; data &= ~JZ4780_I2C_DC_READ;
jz4780_i2c_writew(i2c, JZ4780_I2C_DC, if ((!i2c->stop_hold) && (i2c->cdata->version >=
data); ID_X1000))
data |= X1000_I2C_DC_STOP;
jz4780_i2c_writew(i2c, JZ4780_I2C_DC, data);
i2c->wbuf++; i2c->wbuf++;
i2c->wt_len--; i2c->wt_len--;
} }
if (i2c->wt_len == 0) { if (i2c->wt_len == 0) {
if (!i2c->stop_hold) { if ((!i2c->stop_hold) && (i2c->cdata->version <
ID_X1000)) {
tmp = jz4780_i2c_readw(i2c, tmp = jz4780_i2c_readw(i2c,
JZ4780_I2C_CTRL); JZ4780_I2C_CTRL);
tmp &= ~JZ4780_I2C_CTRL_STPHLD; tmp &= ~JZ4780_I2C_CTRL_STPHLD;
jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, jz4780_i2c_writew(i2c,
tmp); JZ4780_I2C_CTRL, tmp);
} }
jz4780_i2c_trans_done(i2c); jz4780_i2c_trans_done(i2c);
@ -567,20 +614,22 @@ static inline int jz4780_i2c_xfer_read(struct jz4780_i2c *i2c,
i2c->rd_data_xfered = 0; i2c->rd_data_xfered = 0;
i2c->rd_cmd_xfered = 0; i2c->rd_cmd_xfered = 0;
if (len <= JZ4780_I2C_FIFO_LEN) if (len <= i2c->cdata->fifosize)
jz4780_i2c_writew(i2c, JZ4780_I2C_RXTL, len - 1); jz4780_i2c_writew(i2c, JZ4780_I2C_RXTL, len - 1);
else else
jz4780_i2c_writew(i2c, JZ4780_I2C_RXTL, RX_LEVEL); jz4780_i2c_writew(i2c, JZ4780_I2C_RXTL, i2c->cdata->rx_level);
jz4780_i2c_writew(i2c, JZ4780_I2C_TXTL, TX_LEVEL); jz4780_i2c_writew(i2c, JZ4780_I2C_TXTL, i2c->cdata->tx_level);
jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, jz4780_i2c_writew(i2c, JZ4780_I2C_INTM,
JZ4780_I2C_INTM_MRXFL | JZ4780_I2C_INTM_MTXEMP JZ4780_I2C_INTM_MRXFL | JZ4780_I2C_INTM_MTXEMP
| JZ4780_I2C_INTM_MTXABT | JZ4780_I2C_INTM_MRXOF); | JZ4780_I2C_INTM_MTXABT | JZ4780_I2C_INTM_MRXOF);
if (i2c->cdata->version < ID_X1000) {
tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL); tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL);
tmp |= JZ4780_I2C_CTRL_STPHLD; tmp |= JZ4780_I2C_CTRL_STPHLD;
jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp); jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp);
}
spin_unlock_irqrestore(&i2c->lock, flags); spin_unlock_irqrestore(&i2c->lock, flags);
@ -626,14 +675,16 @@ static inline int jz4780_i2c_xfer_write(struct jz4780_i2c *i2c,
i2c->wbuf = buf; i2c->wbuf = buf;
i2c->wt_len = len; i2c->wt_len = len;
jz4780_i2c_writew(i2c, JZ4780_I2C_TXTL, TX_LEVEL); jz4780_i2c_writew(i2c, JZ4780_I2C_TXTL, i2c->cdata->tx_level);
jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, JZ4780_I2C_INTM_MTXEMP jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, JZ4780_I2C_INTM_MTXEMP
| JZ4780_I2C_INTM_MTXABT); | JZ4780_I2C_INTM_MTXABT);
if (i2c->cdata->version < ID_X1000) {
tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL); tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL);
tmp |= JZ4780_I2C_CTRL_STPHLD; tmp |= JZ4780_I2C_CTRL_STPHLD;
jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp); jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp);
}
spin_unlock_irqrestore(&i2c->lock, flags); spin_unlock_irqrestore(&i2c->lock, flags);
@ -716,8 +767,25 @@ static const struct i2c_algorithm jz4780_i2c_algorithm = {
.functionality = jz4780_i2c_functionality, .functionality = jz4780_i2c_functionality,
}; };
static const struct ingenic_i2c_config jz4780_i2c_config = {
.version = ID_JZ4780,
.fifosize = JZ4780_I2C_FIFO_LEN,
.tx_level = JZ4780_I2C_FIFO_LEN / 2,
.rx_level = JZ4780_I2C_FIFO_LEN / 2 - 1,
};
static const struct ingenic_i2c_config x1000_i2c_config = {
.version = ID_X1000,
.fifosize = X1000_I2C_FIFO_LEN,
.tx_level = X1000_I2C_FIFO_LEN / 2,
.rx_level = X1000_I2C_FIFO_LEN / 2 - 1,
};
static const struct of_device_id jz4780_i2c_of_matches[] = { static const struct of_device_id jz4780_i2c_of_matches[] = {
{ .compatible = "ingenic,jz4780-i2c", }, { .compatible = "ingenic,jz4780-i2c", .data = &jz4780_i2c_config },
{ .compatible = "ingenic,x1000-i2c", .data = &x1000_i2c_config },
{ /* sentinel */ } { /* sentinel */ }
}; };
MODULE_DEVICE_TABLE(of, jz4780_i2c_of_matches); MODULE_DEVICE_TABLE(of, jz4780_i2c_of_matches);
@ -734,6 +802,12 @@ static int jz4780_i2c_probe(struct platform_device *pdev)
if (!i2c) if (!i2c)
return -ENOMEM; return -ENOMEM;
i2c->cdata = device_get_match_data(&pdev->dev);
if (!i2c->cdata) {
dev_err(&pdev->dev, "Error: No device match found\n");
return -ENODEV;
}
i2c->adap.owner = THIS_MODULE; i2c->adap.owner = THIS_MODULE;
i2c->adap.algo = &jz4780_i2c_algorithm; i2c->adap.algo = &jz4780_i2c_algorithm;
i2c->adap.algo_data = i2c; i2c->adap.algo_data = i2c;
@ -777,9 +851,11 @@ static int jz4780_i2c_probe(struct platform_device *pdev)
dev_info(&pdev->dev, "Bus frequency is %d KHz\n", i2c->speed); dev_info(&pdev->dev, "Bus frequency is %d KHz\n", i2c->speed);
if (i2c->cdata->version < ID_X1000) {
tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL); tmp = jz4780_i2c_readw(i2c, JZ4780_I2C_CTRL);
tmp &= ~JZ4780_I2C_CTRL_STPHLD; tmp &= ~JZ4780_I2C_CTRL_STPHLD;
jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp); jz4780_i2c_writew(i2c, JZ4780_I2C_CTRL, tmp);
}
jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, 0x0); jz4780_i2c_writew(i2c, JZ4780_I2C_INTM, 0x0);