V4L/DVB (8068): cx18: Add I2C slave reset via GPIO upon initialization
cx18: Add I2C slave reset via GPIO upon initialization. One user, Michael <msd4824@yahoo.com>, has reported this allows his HVR-1600 EEPROM to be consistently recognized when using (long,) 100 msec delays. The delays in this commit are nominal (10 & 40 msec) and need testing/tuning on boards with I2C problems to find the right values. Signed-off-by: Andy Walls <awalls@radix.net> Signed-off-by: Mauro Carvalho Chehab <mchehab@infradead.org>
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@ -82,6 +82,11 @@ static const struct cx18_card cx18_card_hvr1600_esmt = {
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},
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.gpio_init.initial_value = 0x3001,
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.gpio_init.direction = 0x3001,
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.gpio_i2c_slave_reset = {
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.active_lo_mask = 0x3001,
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.msecs_asserted = 10,
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.msecs_recovery = 40,
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},
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.i2c = &cx18_i2c_std,
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};
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@ -122,6 +127,11 @@ static const struct cx18_card cx18_card_hvr1600_samsung = {
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},
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.gpio_init.initial_value = 0x3001,
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.gpio_init.direction = 0x3001,
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.gpio_i2c_slave_reset = {
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.active_lo_mask = 0x3001,
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.msecs_asserted = 10,
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.msecs_recovery = 40,
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},
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.i2c = &cx18_i2c_std,
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};
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@ -78,6 +78,13 @@ struct cx18_gpio_init { /* set initial GPIO DIR and OUT values */
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u32 initial_value;
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};
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struct cx18_gpio_i2c_slave_reset {
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u32 active_lo_mask; /* GPIO outputs that reset i2c chips when low */
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u32 active_hi_mask; /* GPIO outputs that reset i2c chips when high */
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int msecs_asserted; /* time period reset must remain asserted */
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int msecs_recovery; /* time after deassert for chips to be ready */
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};
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struct cx18_card_tuner {
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v4l2_std_id std; /* standard for which the tuner is suitable */
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int tuner; /* tuner ID (from tuner.h) */
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@ -114,7 +121,8 @@ struct cx18_card {
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/* GPIO card-specific settings */
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u8 xceive_pin; /* XCeive tuner GPIO reset pin */
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struct cx18_gpio_init gpio_init;
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struct cx18_gpio_init gpio_init;
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struct cx18_gpio_i2c_slave_reset gpio_i2c_slave_reset;
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struct cx18_card_tuner tuners[CX18_CARD_MAX_TUNERS];
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struct cx18_card_tuner_i2c *i2c;
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@ -53,10 +53,34 @@ static void gpio_write(struct cx18 *cx)
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write_reg(((dir & 0xffff) << 16) | (val & 0xffff),
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CX18_REG_GPIO_OUT1);
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write_reg(dir & 0xffff0000, CX18_REG_GPIO_DIR2);
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write_reg((dir & 0xffff0000) | ((val & 0xffff0000) >> 16),
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write_reg_sync((dir & 0xffff0000) | ((val & 0xffff0000) >> 16),
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CX18_REG_GPIO_OUT2);
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}
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void cx18_reset_i2c_slaves_gpio(struct cx18 *cx)
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{
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const struct cx18_gpio_i2c_slave_reset *p;
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p = &cx->card->gpio_i2c_slave_reset;
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if ((p->active_lo_mask | p->active_hi_mask) == 0)
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return;
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/* Assuming that the masks are a subset of the bits in gpio_dir */
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/* Assert */
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cx->gpio_val =
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(cx->gpio_val | p->active_hi_mask) & ~(p->active_lo_mask);
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gpio_write(cx);
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schedule_timeout_uninterruptible(msecs_to_jiffies(p->msecs_asserted));
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/* Deassert */
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cx->gpio_val =
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(cx->gpio_val | p->active_lo_mask) & ~(p->active_hi_mask);
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gpio_write(cx);
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schedule_timeout_uninterruptible(msecs_to_jiffies(p->msecs_recovery));
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}
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void cx18_gpio_init(struct cx18 *cx)
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{
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cx->gpio_dir = cx->card->gpio_init.direction;
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@ -21,4 +21,5 @@
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*/
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void cx18_gpio_init(struct cx18 *cx);
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void cx18_reset_i2c_slaves_gpio(struct cx18 *cx);
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int cx18_reset_tuner_gpio(void *dev, int cmd, int value);
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@ -405,6 +405,8 @@ int init_cx18_i2c(struct cx18 *cx)
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cx18_setscl(&cx->i2c_algo_cb_data[1], 1);
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cx18_setsda(&cx->i2c_algo_cb_data[1], 1);
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cx18_reset_i2c_slaves_gpio(cx);
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return i2c_bit_add_bus(&cx->i2c_adap[0]) ||
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i2c_bit_add_bus(&cx->i2c_adap[1]);
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}
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