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i2c: refactor parsing of timings
When I wanted to print the chosen values to debug output, I concluded that a helper function to parse one timing would be helpful. Signed-off-by: Wolfram Sang <wsa+renesas@sang-engineering.com> Signed-off-by: Wolfram Sang <wsa@the-dreams.de>
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@ -1588,6 +1588,18 @@ void i2c_del_adapter(struct i2c_adapter *adap)
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}
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EXPORT_SYMBOL(i2c_del_adapter);
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static void i2c_parse_timing(struct device *dev, char *prop_name, u32 *cur_val_p,
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u32 def_val, bool use_def)
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{
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int ret;
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ret = device_property_read_u32(dev, prop_name, cur_val_p);
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if (ret && use_def)
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*cur_val_p = def_val;
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dev_dbg(dev, "%s: %u\n", prop_name, *cur_val_p);
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}
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/**
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* i2c_parse_fw_timings - get I2C related timing parameters from firmware
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* @dev: The device to scan for I2C timing properties
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@ -1606,49 +1618,28 @@ EXPORT_SYMBOL(i2c_del_adapter);
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*/
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void i2c_parse_fw_timings(struct device *dev, struct i2c_timings *t, bool use_defaults)
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{
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int ret;
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bool u = use_defaults;
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u32 d;
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ret = device_property_read_u32(dev, "clock-frequency", &t->bus_freq_hz);
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if (ret && use_defaults)
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t->bus_freq_hz = I2C_MAX_STANDARD_MODE_FREQ;
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i2c_parse_timing(dev, "clock-frequency", &t->bus_freq_hz,
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I2C_MAX_STANDARD_MODE_FREQ, u);
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ret = device_property_read_u32(dev, "i2c-scl-rising-time-ns", &t->scl_rise_ns);
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if (ret && use_defaults) {
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if (t->bus_freq_hz <= I2C_MAX_STANDARD_MODE_FREQ)
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t->scl_rise_ns = 1000;
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else if (t->bus_freq_hz <= I2C_MAX_FAST_MODE_FREQ)
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t->scl_rise_ns = 300;
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else
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t->scl_rise_ns = 120;
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}
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d = t->bus_freq_hz <= I2C_MAX_STANDARD_MODE_FREQ ? 1000 :
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t->bus_freq_hz <= I2C_MAX_FAST_MODE_FREQ ? 300 : 120;
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i2c_parse_timing(dev, "i2c-scl-rising-time-ns", &t->scl_rise_ns, d, u);
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ret = device_property_read_u32(dev, "i2c-scl-falling-time-ns", &t->scl_fall_ns);
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if (ret && use_defaults) {
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if (t->bus_freq_hz <= I2C_MAX_FAST_MODE_FREQ)
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t->scl_fall_ns = 300;
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else
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t->scl_fall_ns = 120;
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}
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d = t->bus_freq_hz <= I2C_MAX_FAST_MODE_FREQ ? 300 : 120;
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i2c_parse_timing(dev, "i2c-scl-falling-time-ns", &t->scl_fall_ns, d, u);
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ret = device_property_read_u32(dev, "i2c-scl-internal-delay-ns", &t->scl_int_delay_ns);
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if (ret && use_defaults)
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t->scl_int_delay_ns = 0;
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ret = device_property_read_u32(dev, "i2c-sda-falling-time-ns", &t->sda_fall_ns);
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if (ret && use_defaults)
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t->sda_fall_ns = t->scl_fall_ns;
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ret = device_property_read_u32(dev, "i2c-sda-hold-time-ns", &t->sda_hold_ns);
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if (ret && use_defaults)
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t->sda_hold_ns = 0;
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ret = device_property_read_u32(dev, "i2c-digital-filter-width-ns", &t->digital_filter_width_ns);
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if (ret && use_defaults)
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t->digital_filter_width_ns = 0;
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ret = device_property_read_u32(dev, "i2c-analog-filter-cutoff-frequency", &t->analog_filter_cutoff_freq_hz);
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if (ret && use_defaults)
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t->analog_filter_cutoff_freq_hz = 0;
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i2c_parse_timing(dev, "i2c-scl-internal-delay-ns",
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&t->scl_int_delay_ns, 0, u);
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i2c_parse_timing(dev, "i2c-sda-falling-time-ns", &t->sda_fall_ns,
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t->scl_fall_ns, u);
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i2c_parse_timing(dev, "i2c-sda-hold-time-ns", &t->sda_hold_ns, 0, u);
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i2c_parse_timing(dev, "i2c-digital-filter-width-ns",
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&t->digital_filter_width_ns, 0, u);
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i2c_parse_timing(dev, "i2c-analog-filter-cutoff-frequency",
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&t->analog_filter_cutoff_freq_hz, 0, u);
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}
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EXPORT_SYMBOL_GPL(i2c_parse_fw_timings);
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