Re: [PATCH v4 3/3] thermal: qcom: add support for PMIC5 Gen3 ADC thermal monitoring
Daniel Lezcano <[email protected]>
| Newsgroups | org.kernel.vger.linux-pm,org.kernel.vger.linux-arm-msm,org.kernel.vger.linux-iio,org.kernel.vger.linux-kernel |
|---|---|
| Message-ID | <[email protected]> |
Hi, Andy ? Are fine with these changes ? On 7/22/26 13:26, Jishnu Prakash wrote: > Add support for ADC_TM part of PMIC5 Gen3 in an auxiliary driver > under the Gen3 ADC driver. Its functionality is similar to that of > PMIC5 Gen2 ADC_TM, which implements the threshold setting and > interrupt generating functions, used to support thermal trip points. > > In Gen3 ADC, the register interface is implemented on one or more SDAM > (Shared Direct Access Memory) peripherals instead of dedicated ADC > peripherals. Each ADC SDAM has eight channels which can be configured > for either immediate reads (main ADC driver's functionality) or ADC_TM > reads. By convention, the first channel of the first ADC SDAM is reserved > for all immediate reads and remaining channels across all SDAMs are used > for ADC_TM functionality. > > On the first SDAM, the interrupt line and configuration registers are > shared between the main ADC and auxiliary ADC_TM drivers. Access to the > registers is protected through a mutex shared between the drivers. The > ADC_TM driver accesses this mutex and some other functions shared from > the main driver (like adc5_gen3_get_scaled_reading() for immediate channel > reads in the .get_temp() callback) through APIs exported into a shared > namespace. > > Signed-off-by: Jishnu Prakash <[email protected]> > --- > drivers/thermal/qcom/Kconfig | 9 + > drivers/thermal/qcom/Makefile | 1 + > drivers/thermal/qcom/qcom-spmi-adc-tm5-gen3.c | 434 ++++++++++++++++++++++++++ > 3 files changed, 444 insertions(+) > > diff --git a/drivers/thermal/qcom/Kconfig b/drivers/thermal/qcom/Kconfig > index a6bb01082ec6..1acb11e4ac80 100644 > --- a/drivers/thermal/qcom/Kconfig > +++ b/drivers/thermal/qcom/Kconfig > @@ -21,6 +21,15 @@ config QCOM_SPMI_ADC_TM5 > Thermal client sets threshold temperature for both warm and cool and > gets updated when a threshold is reached. > > +config QCOM_SPMI_ADC_TM5_GEN3 > + tristate "Qualcomm SPMI PMIC Thermal Monitor ADC5 Gen3" > + depends on QCOM_SPMI_ADC5_GEN3 > + help > + This enables the auxiliary thermal driver for the ADC5 Gen3 thermal > + monitoring device. It shows up as a thermal zone with multiple trip points. > + Thermal client sets threshold temperature for both warm and cool and > + gets updated when a threshold is reached. > + > config QCOM_SPMI_TEMP_ALARM > tristate "Qualcomm SPMI PMIC Temperature Alarm" > depends on OF && SPMI && IIO > diff --git a/drivers/thermal/qcom/Makefile b/drivers/thermal/qcom/Makefile > index 0fa2512042e7..828d9e7bc797 100644 > --- a/drivers/thermal/qcom/Makefile > +++ b/drivers/thermal/qcom/Makefile > @@ -4,5 +4,6 @@ obj-$(CONFIG_QCOM_TSENS) += qcom_tsens.o > qcom_tsens-y += tsens.o tsens-v2.o tsens-v1.o tsens-v0_1.o \ > tsens-8960.o > obj-$(CONFIG_QCOM_SPMI_ADC_TM5) += qcom-spmi-adc-tm5.o > +obj-$(CONFIG_QCOM_SPMI_ADC_TM5_GEN3) += qcom-spmi-adc-tm5-gen3.o > obj-$(CONFIG_QCOM_SPMI_TEMP_ALARM) += qcom-spmi-temp-alarm.o > obj-$(CONFIG_QCOM_LMH) += lmh.o > diff --git a/drivers/thermal/qcom/qcom-spmi-adc-tm5-gen3.c b/drivers/thermal/qcom/qcom-spmi-adc-tm5-gen3.c > new file mode 100644 > index 000000000000..9cf552d36868 > --- /dev/null > +++ b/drivers/thermal/qcom/qcom-spmi-adc-tm5-gen3.c > @@ -0,0 +1,434 @@ > +// SPDX-License-Identifier: GPL-2.0-only > +/* > + * Copyright (c) Qualcomm Technologies, Inc. and/or its subsidiaries. > + */ > + > +#include <linux/auxiliary_bus.h> > +#include <linux/bitfield.h> > +#include <linux/bits.h> > +#include <linux/cleanup.h> > +#include <linux/container_of.h> > +#include <linux/device/devres.h> > +#include <linux/dev_printk.h> > +#include <linux/err.h> > +#include <linux/iio/adc/qcom-adc5-gen3-common.h> > +#include <linux/interrupt.h> > +#include <linux/module.h> > +#include <linux/thermal.h> > +#include <linux/types.h> > +#include <linux/unaligned.h> > + > +#include "../thermal_hwmon.h" > + > +#define ADC_TM5_GEN3_CONFIG_REGS 12 > + > +struct device; > +struct adc_tm5_gen3_chip; > + > +/** > + * struct adc_tm5_gen3_channel_props - ADC_TM channel structure > + * @common_props: structure with common ADC channel properties. > + * @chip: ADC TM device. > + * @tzd: pointer to thermal device corresponding to TM channel. > + * @sdam_index: SDAM on which this TM channel lies. > + * @timer: time period of recurring TM measurement. > + * @tm_chan_index: TM channel number used. > + * @high_thr_en: TM high threshold crossing detection enabled. > + * @low_thr_en: TM low threshold crossing detection enabled. > + */ > +struct adc_tm5_gen3_channel_props { > + struct adc5_channel_common_prop common_props; > + struct adc_tm5_gen3_chip *chip; > + struct thermal_zone_device *tzd; > + unsigned int sdam_index; > + unsigned int timer; > + unsigned int tm_chan_index; > + bool high_thr_en; > + bool low_thr_en; > +}; > + > +/** > + * struct adc_tm5_gen3_chip - ADC Thermal Monitoring device structure > + * @dev_data: Top-level ADC device data. > + * @chan_props: Array of ADC_TM channel structures. > + * @dev: SPMI ADC5 Gen3 device. > + * @nchannels: number of TM channels allocated > + */ > +struct adc_tm5_gen3_chip { > + struct adc5_device_data *dev_data; > + struct adc_tm5_gen3_channel_props *chan_props; > + struct device *dev; > + unsigned int nchannels; > +}; > + > +DEFINE_GUARD(adc5_gen3, struct adc_tm5_gen3_chip *, > + adc5_gen3_mutex_lock(_T->dev), adc5_gen3_mutex_unlock(_T->dev)) > + > +static int get_sdam_from_irq(struct adc_tm5_gen3_chip *adc_tm5, int irq) > +{ > + for (int i = 0; i < adc_tm5->dev_data->num_sdams; i++) { > + if (adc_tm5->dev_data->base[i].irq == irq) > + return i; > + } > + return -ENOENT; > +} > + > +static irqreturn_t adctm5_gen3_isr(int irq, void *dev_id) > +{ > + struct adc_tm5_gen3_chip *adc_tm5 = dev_id; > + int ret, sdam_num; > + u8 tm_status[2]; > + u8 status, val; > + > + sdam_num = get_sdam_from_irq(adc_tm5, irq); > + if (sdam_num < 0) > + return IRQ_NONE; > + > + ret = adc5_gen3_read(adc_tm5->dev_data, sdam_num, ADC5_GEN3_STATUS1, > + &status, sizeof(status)); > + if (ret) > + return IRQ_NONE; > + > + if (status & ADC5_GEN3_STATUS1_CONV_FAULT) { > + val = ADC5_GEN3_CONV_ERR_CLR_REQ; > + adc5_gen3_status_clear(adc_tm5->dev_data, sdam_num, > + ADC5_GEN3_CONV_ERR_CLR, &val, 1); > + return IRQ_HANDLED; > + } > + > + ret = adc5_gen3_read(adc_tm5->dev_data, sdam_num, ADC5_GEN3_TM_HIGH_STS, > + tm_status, sizeof(tm_status)); > + if (ret) > + return IRQ_NONE; > + > + if (tm_status[0] || tm_status[1]) > + return IRQ_WAKE_THREAD; > + > + return IRQ_NONE; > +} > + > +static irqreturn_t adctm5_gen3_isr_thread(int irq, void *dev_id) > +{ > + struct adc_tm5_gen3_chip *adc_tm5 = dev_id; > + u8 tm_status[2]; > + int sdam_index; > + > + sdam_index = get_sdam_from_irq(adc_tm5, irq); > + if (sdam_index < 0) > + return IRQ_NONE; > + > + scoped_guard(adc5_gen3, adc_tm5) { > + int ret; > + > + ret = adc5_gen3_read(adc_tm5->dev_data, sdam_index, ADC5_GEN3_TM_HIGH_STS, > + tm_status, sizeof(tm_status)); > + if (ret) > + return IRQ_NONE; > + > + ret = adc5_gen3_status_clear(adc_tm5->dev_data, sdam_index, > + ADC5_GEN3_TM_HIGH_STS_CLR, tm_status, > + sizeof(tm_status)); > + if (ret) > + return IRQ_NONE; > + } > + > + for (int i = 0; i < adc_tm5->nchannels; i++) { > + struct adc_tm5_gen3_channel_props *chan_prop = &adc_tm5->chan_props[i]; > + int offset = chan_prop->tm_chan_index; > + bool upper_set, lower_set; > + > + if (chan_prop->sdam_index != sdam_index) > + continue; > + > + upper_set = ((tm_status[0] & BIT(offset)) && chan_prop->high_thr_en); > + lower_set = ((tm_status[1] & BIT(offset)) && chan_prop->low_thr_en); > + > + if (!(upper_set || lower_set)) > + continue; > + > + thermal_zone_device_update(chan_prop->tzd, THERMAL_TRIP_VIOLATED); > + } > + > + return IRQ_HANDLED; > +} > + > +static int adc_tm5_gen3_get_temp(struct thermal_zone_device *tz, int *temp) > +{ > + struct adc_tm5_gen3_channel_props *prop = thermal_zone_device_priv(tz); > + struct adc_tm5_gen3_chip *adc_tm5; > + > + if (!prop || !prop->chip) > + return -EINVAL; > + > + adc_tm5 = prop->chip; > + > + return adc5_gen3_get_scaled_reading(adc_tm5->dev, &prop->common_props, temp); > +} > + > +static int adc_tm5_gen3_disable_channel(struct adc_tm5_gen3_channel_props *prop) > +{ > + struct adc_tm5_gen3_chip *adc_tm5 = prop->chip; > + int ret; > + u8 val; > + > + prop->high_thr_en = false; > + prop->low_thr_en = false; > + > + ret = adc5_gen3_poll_wait_hs(adc_tm5->dev_data, prop->sdam_index); > + if (ret) > + return ret; > + > + val = BIT(prop->tm_chan_index); > + ret = adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_TM_HIGH_STS_CLR, &val, sizeof(val)); > + if (ret) > + return ret; > + > + ret = adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_TM_LOW_STS_CLR, &val, sizeof(val)); > + if (ret) > + return ret; > + > + val = MEAS_INT_DISABLE; > + ret = adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_TIMER_SEL, &val, sizeof(val)); > + if (ret) > + return ret; > + > + /* To indicate there is an actual conversion request */ > + val = ADC5_GEN3_CHAN_CONV_REQ | prop->tm_chan_index; > + ret = adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_PERPH_CH, &val, sizeof(val)); > + if (ret) > + return ret; > + > + val = ADC5_GEN3_CONV_REQ_REQ; > + return adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_CONV_REQ, &val, sizeof(val)); > +} > + > +static int adc_tm5_gen3_configure(struct adc_tm5_gen3_channel_props *prop, > + int low_temp, int high_temp) > +{ > + struct adc_tm5_gen3_chip *adc_tm5 = prop->chip; > + u8 buf[ADC_TM5_GEN3_CONFIG_REGS]; > + u8 conv_req; > + u16 adc_code; > + int ret; > + > + ret = adc5_gen3_poll_wait_hs(adc_tm5->dev_data, prop->sdam_index); > + if (ret < 0) > + return ret; > + > + ret = adc5_gen3_read(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_SID, buf, sizeof(buf)); > + if (ret < 0) > + return ret; > + > + /* Write SID */ > + buf[0] = FIELD_PREP(ADC5_GEN3_SID_MASK, prop->common_props.sid); > + > + /* Select TM channel and indicate there is an actual conversion request */ > + buf[1] = ADC5_GEN3_CHAN_CONV_REQ | prop->tm_chan_index; > + > + buf[2] = prop->timer; > + > + /* Digital param selection */ > + adc5_gen3_update_dig_param(&prop->common_props, &buf[3]); > + > + /* Update fast average sample value */ > + buf[4] = FIELD_PREP(ADC5_GEN3_FAST_AVG_CTL_SAMPLES_MASK, > + prop->common_props.avg_samples) | ADC5_GEN3_FAST_AVG_CTL_EN; > + > + /* Select ADC channel */ > + buf[5] = prop->common_props.channel; > + > + /* Select HW settle delay for channel */ > + buf[6] = FIELD_PREP(ADC5_GEN3_HW_SETTLE_DELAY_MASK, > + prop->common_props.hw_settle_time_us); > + > + buf[7] = 0; > + > + /* High temperature corresponds to low voltage threshold */ > + prop->low_thr_en = (high_temp != INT_MAX); > + if (prop->low_thr_en) { > + adc_code = qcom_adc_tm5_gen2_temp_res_scale(high_temp); > + put_unaligned_le16(adc_code, &buf[8]); > + buf[7] |= ADC5_GEN3_LOW_THR_INT_EN; > + } > + > + /* Low temperature corresponds to high voltage threshold */ > + prop->high_thr_en = (low_temp != -INT_MAX); > + if (prop->high_thr_en) { > + adc_code = qcom_adc_tm5_gen2_temp_res_scale(low_temp); > + put_unaligned_le16(adc_code, &buf[10]); > + buf[7] |= ADC5_GEN3_HIGH_THR_INT_EN; > + } > + > + ret = adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, ADC5_GEN3_SID, > + buf, sizeof(buf)); > + if (ret < 0) > + return ret; > + > + conv_req = ADC5_GEN3_CONV_REQ_REQ; > + return adc5_gen3_write(adc_tm5->dev_data, prop->sdam_index, > + ADC5_GEN3_CONV_REQ, &conv_req, sizeof(conv_req)); > +} > + > +static int adc_tm5_gen3_set_trip_temp(struct thermal_zone_device *tz, > + int low_temp, int high_temp) > +{ > + struct adc_tm5_gen3_channel_props *prop = thermal_zone_device_priv(tz); > + struct adc_tm5_gen3_chip *adc_tm5; > + > + if (!prop || !prop->chip) > + return -EINVAL; > + > + adc_tm5 = prop->chip; > + > + dev_dbg(adc_tm5->dev, "channel:%s, low_temp(mdegC):%d, high_temp(mdegC):%d\n", > + prop->common_props.label, low_temp, high_temp); > + > + guard(adc5_gen3)(adc_tm5); > + > + return adc_tm5_gen3_configure(prop, low_temp, high_temp); > +} > + > +static const struct thermal_zone_device_ops adc_tm_ops = { > + .get_temp = adc_tm5_gen3_get_temp, > + .set_trips = adc_tm5_gen3_set_trip_temp, > +}; > + > +static int adc_tm5_register_tzd(struct adc_tm5_gen3_chip *adc_tm5) > +{ > + struct thermal_zone_device *tzd; > + unsigned int channel; > + int ret; > + > + for (int i = 0; i < adc_tm5->nchannels; i++) { > + channel = ADC5_GEN3_V_CHAN(adc_tm5->chan_props[i].common_props); > + tzd = devm_thermal_of_zone_register(adc_tm5->dev, channel, > + &adc_tm5->chan_props[i], > + &adc_tm_ops); > + if (IS_ERR(tzd)) { > + if (PTR_ERR(tzd) == -ENODEV) { > + dev_dbg(adc_tm5->dev, > + "thermal sensor on channel %d is not used\n", > + channel); > + continue; > + } > + return PTR_ERR(tzd); > + } > + adc_tm5->chan_props[i].tzd = tzd; > + ret = devm_thermal_add_hwmon_sysfs(adc_tm5->dev, tzd); > + if (ret) > + return ret; > + } > + > + return 0; > +} > + > +static void adc5_gen3_disable(void *data) > +{ > + struct adc_tm5_gen3_chip *adc_tm5 = data; > + > + guard(adc5_gen3)(adc_tm5); > + > + /* Disable all available TM channels */ > + for (int i = 0; i < adc_tm5->nchannels; i++) > + adc_tm5_gen3_disable_channel(&adc_tm5->chan_props[i]); > +} > + > +static int adc_tm5_probe(struct auxiliary_device *aux_dev, > + const struct auxiliary_device_id *id) > +{ > + struct adc_tm5_gen3_chip *adc_tm5; > + struct tm5_aux_dev_wrapper *aux_dev_wrapper; > + struct device *dev = &aux_dev->dev; > + int ret; > + > + adc_tm5 = devm_kzalloc(dev, sizeof(*adc_tm5), GFP_KERNEL); > + if (!adc_tm5) > + return -ENOMEM; > + > + aux_dev_wrapper = container_of(aux_dev, struct tm5_aux_dev_wrapper, aux_dev); > + > + adc_tm5->dev = dev; > + adc_tm5->dev_data = aux_dev_wrapper->dev_data; > + adc_tm5->nchannels = aux_dev_wrapper->n_tm_channels; > + adc_tm5->chan_props = devm_kcalloc(dev, aux_dev_wrapper->n_tm_channels, > + sizeof(*adc_tm5->chan_props), GFP_KERNEL); > + if (!adc_tm5->chan_props) > + return -ENOMEM; > + > + for (int i = 0; i < adc_tm5->nchannels; i++) { > + /* > + * Since the first channel of the first SDAM is reserved for > + * immediate ADC conversions, TM channel count must start from > + * the channel just after it. The variable tm_count is used to > + * calculate SDAM and TM channel index on that SDAM correctly > + * for each TM channel. > + */ > + int tm_count = i + 1; > + > + adc_tm5->chan_props[i].common_props = aux_dev_wrapper->tm_props[i]; > + adc_tm5->chan_props[i].timer = MEAS_INT_1S; > + adc_tm5->chan_props[i].sdam_index = tm_count / 8; > + adc_tm5->chan_props[i].tm_chan_index = tm_count % 8; > + adc_tm5->chan_props[i].chip = adc_tm5; > + } > + > + /* > + * ADC_TM channels are enabled in the loop in adc_tm5_register_tzd() as > + * part of the set_trips calls during thermal zone registration. This > + * action is to disable them all in case of probe failure. > + */ > + ret = devm_add_action(dev, adc5_gen3_disable, adc_tm5); > + if (ret) > + return ret; > + > + ret = adc_tm5_register_tzd(adc_tm5); > + if (ret) > + return ret; > + > + for (int i = 0; i < adc_tm5->dev_data->num_sdams; i++) { > + u32 irq_flags = IRQF_ONESHOT; > + > + /* > + * First SDAM's interrupt is shared between main ADC driver and > + * auxiliary TM driver, so its flags must include IRQF_SHARED. > + * This is not needed for other SDAMs as they will be used only > + * for TM functionality. > + */ > + if (i == 0) > + irq_flags |= IRQF_SHARED; > + > + ret = devm_request_threaded_irq(dev, > + adc_tm5->dev_data->base[i].irq, > + adctm5_gen3_isr, > + adctm5_gen3_isr_thread, > + irq_flags, > + adc_tm5->dev_data->base[i].irq_name, > + adc_tm5); > + if (ret < 0) > + return ret; > + } > + > + return 0; > +} > + > +static const struct auxiliary_device_id adctm5_auxiliary_id_table[] = { > + { .name = "qcom_spmi_adc5_gen3.adc5_tm_gen3" }, > + { } > +}; > +MODULE_DEVICE_TABLE(auxiliary, adctm5_auxiliary_id_table); > + > +static struct auxiliary_driver adctm5gen3_auxiliary_driver = { > + .id_table = adctm5_auxiliary_id_table, > + .probe = adc_tm5_probe, > +}; > +module_auxiliary_driver(adctm5gen3_auxiliary_driver); > + > +MODULE_DESCRIPTION("SPMI PMIC Thermal Monitor ADC driver"); > +MODULE_LICENSE("GPL"); > +MODULE_IMPORT_NS("QCOM_SPMI_ADC5_GEN3"); >