forked from Minki/linux
iio: adc: stm32-adc: Add check on overrun interrupt
Enable overrun interrupt on STM32 ADC. In case data register hasn't been read (by CPU or DMA), overrun condition is detected when there's new conversion data available. Stop grabbing data and log an error message. Use a threaded irq to avoid printing the error message from hard irq context. Signed-off-by: Fabrice Gasnier <fabrice.gasnier@st.com> Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
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@ -280,21 +280,21 @@ out:
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static const struct stm32_adc_common_regs stm32f4_adc_common_regs = {
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.csr = STM32F4_ADC_CSR,
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.ccr = STM32F4_ADC_CCR,
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.eoc1_msk = STM32F4_EOC1,
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.eoc2_msk = STM32F4_EOC2,
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.eoc3_msk = STM32F4_EOC3,
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.eoc1_msk = STM32F4_EOC1 | STM32F4_OVR1,
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.eoc2_msk = STM32F4_EOC2 | STM32F4_OVR2,
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.eoc3_msk = STM32F4_EOC3 | STM32F4_OVR3,
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.ier = STM32F4_ADC_CR1,
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.eocie_msk = STM32F4_EOCIE,
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.eocie_msk = STM32F4_EOCIE | STM32F4_OVRIE,
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};
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/* STM32H7 common registers definitions */
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static const struct stm32_adc_common_regs stm32h7_adc_common_regs = {
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.csr = STM32H7_ADC_CSR,
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.ccr = STM32H7_ADC_CCR,
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.eoc1_msk = STM32H7_EOC_MST,
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.eoc2_msk = STM32H7_EOC_SLV,
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.eoc1_msk = STM32H7_EOC_MST | STM32H7_OVR_MST,
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.eoc2_msk = STM32H7_EOC_SLV | STM32H7_OVR_SLV,
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.ier = STM32H7_ADC_IER,
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.eocie_msk = STM32H7_EOCIE,
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.eocie_msk = STM32H7_EOCIE | STM32H7_OVRIE,
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};
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static const unsigned int stm32_adc_offset[STM32_ADC_MAX_ADCS] = {
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@ -51,10 +51,12 @@
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#define STM32F4_ADC_CCR (STM32_ADCX_COMN_OFFSET + 0x04)
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/* STM32F4_ADC_SR - bit fields */
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#define STM32F4_OVR BIT(5)
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#define STM32F4_STRT BIT(4)
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#define STM32F4_EOC BIT(1)
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/* STM32F4_ADC_CR1 - bit fields */
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#define STM32F4_OVRIE BIT(26)
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#define STM32F4_RES_SHIFT 24
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#define STM32F4_RES_MASK GENMASK(25, 24)
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#define STM32F4_SCAN BIT(8)
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@ -72,8 +74,11 @@
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#define STM32F4_ADON BIT(0)
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/* STM32F4_ADC_CSR - bit fields */
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#define STM32F4_OVR3 BIT(21)
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#define STM32F4_EOC3 BIT(17)
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#define STM32F4_OVR2 BIT(13)
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#define STM32F4_EOC2 BIT(9)
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#define STM32F4_OVR1 BIT(5)
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#define STM32F4_EOC1 BIT(1)
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/* STM32F4_ADC_CCR - bit fields */
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@ -103,10 +108,12 @@
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/* STM32H7_ADC_ISR - bit fields */
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#define STM32MP1_VREGREADY BIT(12)
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#define STM32H7_OVR BIT(4)
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#define STM32H7_EOC BIT(2)
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#define STM32H7_ADRDY BIT(0)
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/* STM32H7_ADC_IER - bit fields */
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#define STM32H7_OVRIE STM32H7_OVR
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#define STM32H7_EOCIE STM32H7_EOC
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/* STM32H7_ADC_CR - bit fields */
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@ -155,7 +162,9 @@ enum stm32h7_adc_dmngt {
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#define STM32H7_LINCALFACT_MASK GENMASK(29, 0)
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/* STM32H7_ADC_CSR - bit fields */
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#define STM32H7_OVR_SLV BIT(20)
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#define STM32H7_EOC_SLV BIT(18)
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#define STM32H7_OVR_MST BIT(4)
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#define STM32H7_EOC_MST BIT(2)
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/* STM32H7_ADC_CCR - bit fields */
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@ -117,7 +117,9 @@ struct stm32_adc_regs {
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* struct stm32_adc_regspec - stm32 registers definition
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* @dr: data register offset
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* @ier_eoc: interrupt enable register & eocie bitfield
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* @ier_ovr: interrupt enable register & overrun bitfield
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* @isr_eoc: interrupt status register & eoc bitfield
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* @isr_ovr: interrupt status register & overrun bitfield
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* @sqr: reference to sequence registers array
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* @exten: trigger control register & bitfield
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* @extsel: trigger selection register & bitfield
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@ -128,7 +130,9 @@ struct stm32_adc_regs {
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struct stm32_adc_regspec {
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const u32 dr;
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const struct stm32_adc_regs ier_eoc;
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const struct stm32_adc_regs ier_ovr;
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const struct stm32_adc_regs isr_eoc;
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const struct stm32_adc_regs isr_ovr;
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const struct stm32_adc_regs *sqr;
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const struct stm32_adc_regs exten;
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const struct stm32_adc_regs extsel;
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@ -337,7 +341,9 @@ static const unsigned int stm32f4_adc_smp_cycles[STM32_ADC_MAX_SMP + 1] = {
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static const struct stm32_adc_regspec stm32f4_adc_regspec = {
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.dr = STM32F4_ADC_DR,
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.ier_eoc = { STM32F4_ADC_CR1, STM32F4_EOCIE },
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.ier_ovr = { STM32F4_ADC_CR1, STM32F4_OVRIE },
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.isr_eoc = { STM32F4_ADC_SR, STM32F4_EOC },
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.isr_ovr = { STM32F4_ADC_SR, STM32F4_OVR },
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.sqr = stm32f4_sq,
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.exten = { STM32F4_ADC_CR2, STM32F4_EXTEN_MASK, STM32F4_EXTEN_SHIFT },
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.extsel = { STM32F4_ADC_CR2, STM32F4_EXTSEL_MASK,
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@ -429,7 +435,9 @@ static const unsigned int stm32h7_adc_smp_cycles[STM32_ADC_MAX_SMP + 1] = {
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static const struct stm32_adc_regspec stm32h7_adc_regspec = {
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.dr = STM32H7_ADC_DR,
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.ier_eoc = { STM32H7_ADC_IER, STM32H7_EOCIE },
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.ier_ovr = { STM32H7_ADC_IER, STM32H7_OVRIE },
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.isr_eoc = { STM32H7_ADC_ISR, STM32H7_EOC },
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.isr_ovr = { STM32H7_ADC_ISR, STM32H7_OVR },
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.sqr = stm32h7_sq,
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.exten = { STM32H7_ADC_CFGR, STM32H7_EXTEN_MASK, STM32H7_EXTEN_SHIFT },
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.extsel = { STM32H7_ADC_CFGR, STM32H7_EXTSEL_MASK,
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@ -506,6 +514,18 @@ static void stm32_adc_conv_irq_disable(struct stm32_adc *adc)
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adc->cfg->regs->ier_eoc.mask);
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}
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static void stm32_adc_ovr_irq_enable(struct stm32_adc *adc)
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{
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stm32_adc_set_bits(adc, adc->cfg->regs->ier_ovr.reg,
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adc->cfg->regs->ier_ovr.mask);
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}
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static void stm32_adc_ovr_irq_disable(struct stm32_adc *adc)
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{
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stm32_adc_clr_bits(adc, adc->cfg->regs->ier_ovr.reg,
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adc->cfg->regs->ier_ovr.mask);
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}
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static void stm32_adc_set_res(struct stm32_adc *adc)
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{
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const struct stm32_adc_regs *res = &adc->cfg->regs->res;
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@ -1205,6 +1225,19 @@ static int stm32_adc_read_raw(struct iio_dev *indio_dev,
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}
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}
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static irqreturn_t stm32_adc_threaded_isr(int irq, void *data)
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{
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struct stm32_adc *adc = data;
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struct iio_dev *indio_dev = iio_priv_to_dev(adc);
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const struct stm32_adc_regspec *regs = adc->cfg->regs;
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u32 status = stm32_adc_readl(adc, regs->isr_eoc.reg);
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if (status & regs->isr_ovr.mask)
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dev_err(&indio_dev->dev, "Overrun, stopping: restart needed\n");
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return IRQ_HANDLED;
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}
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static irqreturn_t stm32_adc_isr(int irq, void *data)
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{
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struct stm32_adc *adc = data;
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@ -1212,6 +1245,19 @@ static irqreturn_t stm32_adc_isr(int irq, void *data)
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const struct stm32_adc_regspec *regs = adc->cfg->regs;
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u32 status = stm32_adc_readl(adc, regs->isr_eoc.reg);
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if (status & regs->isr_ovr.mask) {
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/*
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* Overrun occurred on regular conversions: data for wrong
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* channel may be read. Unconditionally disable interrupts
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* to stop processing data and print error message.
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* Restarting the capture can be done by disabling, then
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* re-enabling it (e.g. write 0, then 1 to buffer/enable).
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*/
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stm32_adc_ovr_irq_disable(adc);
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stm32_adc_conv_irq_disable(adc);
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return IRQ_WAKE_THREAD;
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}
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if (status & regs->isr_eoc.mask) {
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/* Reading DR also clears EOC status flag */
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adc->buffer[adc->bufi] = stm32_adc_readw(adc, regs->dr);
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@ -1441,6 +1487,8 @@ static int __stm32_adc_buffer_postenable(struct iio_dev *indio_dev)
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/* Reset adc buffer index */
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adc->bufi = 0;
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stm32_adc_ovr_irq_enable(adc);
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if (!adc->dma_chan)
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stm32_adc_conv_irq_enable(adc);
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@ -1481,6 +1529,8 @@ static void __stm32_adc_buffer_predisable(struct iio_dev *indio_dev)
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if (!adc->dma_chan)
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stm32_adc_conv_irq_disable(adc);
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stm32_adc_ovr_irq_disable(adc);
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if (adc->dma_chan)
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dmaengine_terminate_sync(adc->dma_chan);
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@ -1818,8 +1868,9 @@ static int stm32_adc_probe(struct platform_device *pdev)
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if (adc->irq < 0)
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return adc->irq;
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ret = devm_request_irq(&pdev->dev, adc->irq, stm32_adc_isr,
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0, pdev->name, adc);
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ret = devm_request_threaded_irq(&pdev->dev, adc->irq, stm32_adc_isr,
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stm32_adc_threaded_isr,
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0, pdev->name, adc);
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if (ret) {
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dev_err(&pdev->dev, "failed to request IRQ\n");
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return ret;
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