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i2c: rk3x: fix bug that cause measured high_ns doesn't meet I2C specification
The number of clock cycles to be written into the CLKDIV register that determines the I2C clk high phase includes the rise time. So to meet the timing requirements defined in the I2C specification which defines the minimal time SCL has to be high, the rise time has to taken into account. The same applies to the low phase with falling time. In my test on RK3288-Pink2 board, which is not an upstream board yet, if external pull-up resistor is 4.7K, rise_ns is about 700ns. So the measured high_ns is about 3900ns, which is less than 4000ns (the minimum high_ns in I2C specification for Standard-mode). To fix this bug min_low_ns should include fall time and min_high_ns should include rise time. This patch merged the patch from chromium project which can get the rise and fall times for signals from the device tree. This allows us to more accurately calculate timings. see: https://chromium-review.googlesource.com/#/c/232774/ Signed-off-by: Addy Ke <addy.ke@rock-chips.com> Reviewed-by: Doug Anderson <dianders@chromium.org> Tested-by: Doug Anderson <dianders@chromium.org> [wsa: fixed a typo in the docs] Signed-off-by: Wolfram Sang <wsa@the-dreams.de>
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@ -21,6 +21,14 @@ Required on RK3066, RK3188 :
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Optional properties :
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- clock-frequency : SCL frequency to use (in Hz). If omitted, 100kHz is used.
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- i2c-scl-rising-time-ns : Number of nanoseconds the signal takes to rise
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(t(r) in I2C specification). If not specified this is assumed to be
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the maximum the specification allows(1000 ns for Standard-mode,
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300 ns for Fast-mode) which might cause slightly slower communication.
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- i2c-scl-falling-time-ns : Number of nanoseconds the signal takes to fall
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(t(f) in the I2C specification). If not specified this is assumed to
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be the maximum the specification allows (300 ns) which might cause
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slightly slower communication.
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Example:
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@ -39,4 +47,7 @@ i2c0: i2c@2002d000 {
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clock-names = "i2c";
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clocks = <&cru PCLK_I2C0>;
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i2c-scl-rising-time-ns = <800>;
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i2c-scl-falling-time-ns = <100>;
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};
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@ -102,6 +102,8 @@ struct rk3x_i2c {
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/* Settings */
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unsigned int scl_frequency;
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unsigned int rise_ns;
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unsigned int fall_ns;
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/* Synchronization & notification */
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spinlock_t lock;
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@ -435,6 +437,8 @@ out:
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*
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* @clk_rate: I2C input clock rate
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* @scl_rate: Desired SCL rate
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* @rise_ns: How many ns it takes for signals to rise.
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* @fall_ns: How many ns it takes for signals to fall.
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* @div_low: Divider output for low
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* @div_high: Divider output for high
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*
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@ -443,11 +447,14 @@ out:
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* too high, we silently use the highest possible rate.
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*/
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static int rk3x_i2c_calc_divs(unsigned long clk_rate, unsigned long scl_rate,
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unsigned long rise_ns, unsigned long fall_ns,
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unsigned long *div_low, unsigned long *div_high)
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{
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unsigned long min_low_ns, min_high_ns;
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unsigned long max_data_hold_ns;
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unsigned long spec_min_low_ns, spec_min_high_ns;
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unsigned long spec_max_data_hold_ns;
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unsigned long data_hold_buffer_ns;
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unsigned long min_low_ns, min_high_ns;
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unsigned long max_low_ns, min_total_ns;
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unsigned long clk_rate_khz, scl_rate_khz;
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@ -469,29 +476,33 @@ static int rk3x_i2c_calc_divs(unsigned long clk_rate, unsigned long scl_rate,
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scl_rate = 1000;
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/*
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* min_low_ns: The minimum number of ns we need to hold low
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* to meet i2c spec
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* min_high_ns: The minimum number of ns we need to hold high
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* to meet i2c spec
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* max_low_ns: The maximum number of ns we can hold low
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* to meet i2c spec
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* min_low_ns: The minimum number of ns we need to hold low to
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* meet I2C specification, should include fall time.
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* min_high_ns: The minimum number of ns we need to hold high to
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* meet I2C specification, should include rise time.
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* max_low_ns: The maximum number of ns we can hold low to meet
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* I2C specification.
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*
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* Note: max_low_ns should be (max data hold time * 2 - buffer)
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* Note: max_low_ns should be (maximum data hold time * 2 - buffer)
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* This is because the i2c host on Rockchip holds the data line
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* for half the low time.
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*/
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if (scl_rate <= 100000) {
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min_low_ns = 4700;
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min_high_ns = 4000;
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max_data_hold_ns = 3450;
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/* Standard-mode */
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spec_min_low_ns = 4700;
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spec_min_high_ns = 4000;
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spec_max_data_hold_ns = 3450;
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data_hold_buffer_ns = 50;
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} else {
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min_low_ns = 1300;
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min_high_ns = 600;
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max_data_hold_ns = 900;
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/* Fast-mode */
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spec_min_low_ns = 1300;
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spec_min_high_ns = 600;
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spec_max_data_hold_ns = 900;
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data_hold_buffer_ns = 50;
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}
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max_low_ns = max_data_hold_ns * 2 - data_hold_buffer_ns;
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min_low_ns = spec_min_low_ns + fall_ns;
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min_high_ns = spec_min_high_ns + rise_ns;
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max_low_ns = spec_max_data_hold_ns * 2 - data_hold_buffer_ns;
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min_total_ns = min_low_ns + min_high_ns;
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/* Adjust to avoid overflow */
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@ -510,8 +521,8 @@ static int rk3x_i2c_calc_divs(unsigned long clk_rate, unsigned long scl_rate,
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min_div_for_hold = (min_low_div + min_high_div);
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/*
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* This is the maximum divider so we don't go over the max.
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* We don't round up here (we round down) since this is a max.
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* This is the maximum divider so we don't go over the maximum.
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* We don't round up here (we round down) since this is a maximum.
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*/
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max_low_div = clk_rate_khz * max_low_ns / (8 * 1000000);
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@ -544,7 +555,7 @@ static int rk3x_i2c_calc_divs(unsigned long clk_rate, unsigned long scl_rate,
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ideal_low_div = DIV_ROUND_UP(clk_rate_khz * min_low_ns,
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scl_rate_khz * 8 * min_total_ns);
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/* Don't allow it to go over the max */
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/* Don't allow it to go over the maximum */
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if (ideal_low_div > max_low_div)
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ideal_low_div = max_low_div;
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@ -588,8 +599,8 @@ static void rk3x_i2c_adapt_div(struct rk3x_i2c *i2c, unsigned long clk_rate)
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u64 t_low_ns, t_high_ns;
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int ret;
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ret = rk3x_i2c_calc_divs(clk_rate, i2c->scl_frequency, &div_low,
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&div_high);
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ret = rk3x_i2c_calc_divs(clk_rate, i2c->scl_frequency, i2c->rise_ns,
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i2c->fall_ns, &div_low, &div_high);
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WARN_ONCE(ret != 0, "Could not reach SCL freq %u", i2c->scl_frequency);
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@ -633,9 +644,9 @@ static int rk3x_i2c_clk_notifier_cb(struct notifier_block *nb, unsigned long
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switch (event) {
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case PRE_RATE_CHANGE:
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if (rk3x_i2c_calc_divs(ndata->new_rate, i2c->scl_frequency,
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&div_low, &div_high) != 0) {
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i2c->rise_ns, i2c->fall_ns, &div_low,
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&div_high) != 0)
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return NOTIFY_STOP;
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}
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/* scale up */
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if (ndata->new_rate > ndata->old_rate)
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@ -859,6 +870,21 @@ static int rk3x_i2c_probe(struct platform_device *pdev)
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i2c->scl_frequency = DEFAULT_SCL_RATE;
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}
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/*
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* Read rise and fall time from device tree. If not available use
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* the default maximum timing from the specification.
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*/
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if (of_property_read_u32(pdev->dev.of_node, "i2c-scl-rising-time-ns",
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&i2c->rise_ns)) {
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if (i2c->scl_frequency <= 100000)
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i2c->rise_ns = 1000;
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else
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i2c->rise_ns = 300;
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}
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if (of_property_read_u32(pdev->dev.of_node, "i2c-scl-falling-time-ns",
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&i2c->fall_ns))
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i2c->fall_ns = 300;
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strlcpy(i2c->adap.name, "rk3x-i2c", sizeof(i2c->adap.name));
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i2c->adap.owner = THIS_MODULE;
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i2c->adap.algo = &rk3x_i2c_algorithm;
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