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thermal: mediatek: add support for MT8183
MT8183 has two built-in thermal controllers with total six thermal sensors. And it doesn't have bank, so doesn't need to select bank. This patch adds support for mt8183. Signed-off-by: Michael Kao <michael.kao@mediatek.com> Signed-off-by: Eduardo Valentin <edubezval@gmail.com>
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@ -71,6 +71,15 @@
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#define TEMP_SPARE0 0x0f0
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#define TEMP_ADCPNP0_1 0x148
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#define TEMP_ADCPNP1_1 0x14c
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#define TEMP_ADCPNP2_1 0x150
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#define TEMP_MSR0_1 0x190
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#define TEMP_MSR1_1 0x194
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#define TEMP_MSR2_1 0x198
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#define TEMP_ADCPNP3_1 0x1b4
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#define TEMP_MSR3_1 0x1B8
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#define PTPCORESEL 0x400
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#define TEMP_MONCTL1_PERIOD_UNIT(x) ((x) & 0x3ff)
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@ -113,7 +122,8 @@
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/*
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* Layout of the fuses providing the calibration data
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* These macros could be used for MT8173, MT2701, and MT2712.
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* These macros could be used for MT8183, MT8173, MT2701, and MT2712.
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* MT8183 has 6 sensors and needs 6 VTS calibration data.
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* MT8173 has 5 sensors and needs 5 VTS calibration data.
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* MT2701 has 3 sensors and needs 3 VTS calibration data.
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* MT2712 has 4 sensors and needs 4 VTS calibration data.
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@ -124,6 +134,7 @@
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#define CALIB_BUF0_VTS_TS2(x) (((x) >> 8) & 0x1ff)
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#define CALIB_BUF1_VTS_TS3(x) (((x) >> 0) & 0x1ff)
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#define CALIB_BUF2_VTS_TS4(x) (((x) >> 23) & 0x1ff)
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#define CALIB_BUF2_VTS_TS5(x) (((x) >> 5) & 0x1ff)
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#define CALIB_BUF2_VTS_TSABB(x) (((x) >> 14) & 0x1ff)
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#define CALIB_BUF0_DEGC_CALI(x) (((x) >> 1) & 0x3f)
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#define CALIB_BUF0_O_SLOPE(x) (((x) >> 26) & 0x3f)
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@ -135,6 +146,7 @@ enum {
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VTS2,
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VTS3,
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VTS4,
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VTS5,
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VTSABB,
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MAX_NUM_VTS,
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};
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@ -190,6 +202,29 @@ enum {
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/* The calibration coefficient of sensor */
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#define MT7622_CALIBRATION 165
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/* MT8183 thermal sensors */
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#define MT8183_TS1 0
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#define MT8183_TS2 1
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#define MT8183_TS3 2
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#define MT8183_TS4 3
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#define MT8183_TS5 4
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#define MT8183_TSABB 5
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/* AUXADC channel is used for the temperature sensors */
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#define MT8183_TEMP_AUXADC_CHANNEL 11
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/* The total number of temperature sensors in the MT8183 */
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#define MT8183_NUM_SENSORS 6
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/* The number of sensing points per bank */
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#define MT8183_NUM_SENSORS_PER_ZONE 6
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/* The number of controller in the MT8183 */
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#define MT8183_NUM_CONTROLLER 2
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/* The calibration coefficient of sensor */
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#define MT8183_CALIBRATION 153
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struct mtk_thermal;
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struct thermal_bank_cfg {
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@ -236,6 +271,27 @@ struct mtk_thermal {
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struct mtk_thermal_bank banks[];
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};
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/* MT8183 thermal sensor data */
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static const int mt8183_bank_data[MT8183_NUM_SENSORS] = {
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MT8183_TS1, MT8183_TS2, MT8183_TS3, MT8183_TS4, MT8183_TS5, MT8183_TSABB
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};
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static const int mt8183_msr[MT8183_NUM_SENSORS_PER_ZONE] = {
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TEMP_MSR0_1, TEMP_MSR1_1, TEMP_MSR2_1, TEMP_MSR1, TEMP_MSR0, TEMP_MSR3_1
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};
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static const int mt8183_adcpnp[MT8183_NUM_SENSORS_PER_ZONE] = {
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TEMP_ADCPNP0_1, TEMP_ADCPNP1_1, TEMP_ADCPNP2_1,
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TEMP_ADCPNP1, TEMP_ADCPNP0, TEMP_ADCPNP3_1
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};
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static const int mt8183_mux_values[MT8183_NUM_SENSORS] = { 0, 1, 2, 3, 4, 0 };
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static const int mt8183_tc_offset[MT8183_NUM_CONTROLLER] = {0x0, 0x100};
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static const int mt8183_vts_index[MT8183_NUM_SENSORS] = {
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VTS1, VTS2, VTS3, VTS4, VTS5, VTSABB
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};
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/* MT8173 thermal sensor data */
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static const int mt8173_bank_data[MT8173_NUM_ZONES][3] = {
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{ MT8173_TS2, MT8173_TS3 },
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@ -433,6 +489,39 @@ static const struct mtk_thermal_data mt7622_thermal_data = {
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.sensor_mux_values = mt7622_mux_values,
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};
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/**
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* The MT8183 thermal controller has one bank for the current SW framework.
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* The MT8183 has a total of 6 temperature sensors.
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* There are two thermal controller to control the six sensor.
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* The first one bind 2 sensor, and the other bind 4 sensors.
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* The thermal core only gets the maximum temperature of all sensor, so
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* the bank concept wouldn't be necessary here. However, the SVS (Smart
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* Voltage Scaling) unit makes its decisions based on the same bank
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* data, and this indeed needs the temperatures of the individual banks
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* for making better decisions.
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*/
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static const struct mtk_thermal_data mt8183_thermal_data = {
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.auxadc_channel = MT8183_TEMP_AUXADC_CHANNEL,
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.num_banks = MT8183_NUM_SENSORS_PER_ZONE,
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.num_sensors = MT8183_NUM_SENSORS,
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.vts_index = mt8183_vts_index,
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.cali_val = MT8183_CALIBRATION,
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.num_controller = MT8183_NUM_CONTROLLER,
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.controller_offset = mt8183_tc_offset,
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.need_switch_bank = false,
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.bank_data = {
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{
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.num_sensors = 6,
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.sensors = mt8183_bank_data,
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},
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},
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.msr = mt8183_msr,
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.adcpnp = mt8183_adcpnp,
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.sensor_mux_values = mt8183_mux_values,
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};
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/**
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* raw_to_mcelsius - convert a raw ADC value to mcelsius
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* @mt: The thermal controller
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@ -726,6 +815,9 @@ static int mtk_thermal_get_calibration_data(struct device *dev,
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case VTS4:
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mt->vts[VTS4] = CALIB_BUF2_VTS_TS4(buf[2]);
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break;
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case VTS5:
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mt->vts[VTS5] = CALIB_BUF2_VTS_TS5(buf[2]);
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break;
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case VTSABB:
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mt->vts[VTSABB] = CALIB_BUF2_VTS_TSABB(buf[2]);
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break;
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@ -766,6 +858,10 @@ static const struct of_device_id mtk_thermal_of_match[] = {
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{
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.compatible = "mediatek,mt7622-thermal",
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.data = (void *)&mt7622_thermal_data,
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},
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{
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.compatible = "mediatek,mt8183-thermal",
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.data = (void *)&mt8183_thermal_data,
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}, {
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},
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};
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@ -898,6 +994,7 @@ static struct platform_driver mtk_thermal_driver = {
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module_platform_driver(mtk_thermal_driver);
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MODULE_AUTHOR("Michael Kao <michael.kao@mediatek.com>");
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MODULE_AUTHOR("Louis Yu <louis.yu@mediatek.com>");
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MODULE_AUTHOR("Dawei Chien <dawei.chien@mediatek.com>");
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MODULE_AUTHOR("Sascha Hauer <s.hauer@pengutronix.de>");
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