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168 lines
4.3 KiB
168 lines
4.3 KiB
/*
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* Copyright (c) 2017-2018, ARM Limited and Contributors. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <assert.h>
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#include <errno.h>
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#include <common/debug.h>
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#include <drivers/delay_timer.h>
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#include <lib/mmio.h>
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#include <hi3660.h>
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#include "hikey960_private.h"
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#define ADC_ADCIN0 0
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#define ADC_ADCIN1 1
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#define ADC_ADCIN2 2
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#define HKADC_DATA_GRADE0 0
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#define HKADC_DATA_GRADE1 100
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#define HKADC_DATA_GRADE2 300
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#define HKADC_DATA_GRADE3 500
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#define HKADC_DATA_GRADE4 700
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#define HKADC_DATA_GRADE5 900
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#define HKADC_DATA_GRADE6 1100
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#define HKADC_DATA_GRADE7 1300
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#define HKADC_DATA_GRADE8 1500
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#define HKADC_DATA_GRADE9 1700
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#define HKADC_DATA_GRADE10 1800
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#define BOARDID_VALUE0 0
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#define BOARDID_VALUE1 1
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#define BOARDID_VALUE2 2
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#define BOARDID_VALUE3 3
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#define BOARDID_VALUE4 4
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#define BOARDID_VALUE5 5
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#define BOARDID_VALUE6 6
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#define BOARDID_VALUE7 7
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#define BOARDID_VALUE8 8
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#define BOARDID_VALUE9 9
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#define BOARDID_UNKNOWN 0xF
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#define BOARDID3_BASE 5
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static void init_adc(void)
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{
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/* reset hkadc */
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mmio_write_32(CRG_PERRSTEN2_REG, PERRSTEN2_HKADCSSI);
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/* wait a few clock cycles */
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udelay(2);
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mmio_write_32(CRG_PERRSTDIS2_REG, PERRSTEN2_HKADCSSI);
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udelay(2);
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/* enable hkadc clock */
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mmio_write_32(CRG_PERDIS2_REG, PEREN2_HKADCSSI);
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udelay(2);
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mmio_write_32(CRG_PEREN2_REG, PEREN2_HKADCSSI);
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udelay(2);
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}
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static int get_adc(unsigned int channel, unsigned int *value)
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{
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unsigned int data, value1, value0;
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if (channel > HKADC_CHANNEL_MAX) {
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WARN("invalid channel:%d\n", channel);
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return -EFAULT;
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}
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/* configure the read/write operation for external HKADC */
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mmio_write_32(HKADC_WR01_DATA_REG, HKADC_WR01_VALUE | channel);
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mmio_write_32(HKADC_WR23_DATA_REG, HKADC_WR23_VALUE);
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mmio_write_32(HKADC_WR45_DATA_REG, HKADC_WR45_VALUE);
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/* configure the number of accessing registers */
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mmio_write_32(HKADC_WR_NUM_REG, HKADC_WR_NUM_VALUE);
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/* configure delay of accessing registers */
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mmio_write_32(HKADC_DELAY01_REG, HKADC_CHANNEL0_DELAY01_VALUE);
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mmio_write_32(HKADC_DELAY23_REG, HKADC_DELAY23_VALUE);
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/* start HKADC */
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mmio_write_32(HKADC_DSP_START_REG, 1);
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do {
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data = mmio_read_32(HKADC_DSP_START_REG);
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} while (data & 1);
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/* convert AD result */
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value1 = mmio_read_32(HKADC_DSP_RD2_DATA_REG) & 0xffff;
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value0 = mmio_read_32(HKADC_DSP_RD3_DATA_REG) & 0xffff;
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data = ((value1 << 4) & HKADC_VALUE_HIGH) |
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((value0 >> 4) & HKADC_VALUE_LOW);
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*value = data;
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return 0;
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}
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static int get_value(unsigned int channel, unsigned int *value)
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{
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int ret;
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ret = get_adc(channel, value);
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if (ret)
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return ret;
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/* convert ADC value to micro-volt */
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ret = ((*value & HKADC_VALID_VALUE) * HKADC_VREF_1V8) / HKADC_ACCURACY;
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*value = ret;
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return 0;
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}
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static int adcin_data_remap(unsigned int adcin_value)
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{
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int ret;
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if (adcin_value < HKADC_DATA_GRADE1)
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ret = BOARDID_VALUE0;
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else if (adcin_value < HKADC_DATA_GRADE2)
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ret = BOARDID_VALUE1;
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else if (adcin_value < HKADC_DATA_GRADE3)
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ret = BOARDID_VALUE2;
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else if (adcin_value < HKADC_DATA_GRADE4)
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ret = BOARDID_VALUE3;
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else if (adcin_value < HKADC_DATA_GRADE5)
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ret = BOARDID_VALUE4;
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else if (adcin_value < HKADC_DATA_GRADE6)
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ret = BOARDID_VALUE5;
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else if (adcin_value < HKADC_DATA_GRADE7)
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ret = BOARDID_VALUE6;
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else if (adcin_value < HKADC_DATA_GRADE8)
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ret = BOARDID_VALUE7;
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else if (adcin_value < HKADC_DATA_GRADE9)
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ret = BOARDID_VALUE8;
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else if (adcin_value < HKADC_DATA_GRADE10)
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ret = BOARDID_VALUE9;
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else
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ret = BOARDID_UNKNOWN;
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return ret;
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}
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int hikey960_read_boardid(unsigned int *id)
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{
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unsigned int adcin0, adcin1, adcin2;
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unsigned int adcin0_remap, adcin1_remap, adcin2_remap;
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assert(id != NULL);
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init_adc();
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/* read ADC channel0 data */
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get_value(ADC_ADCIN0, &adcin0);
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adcin0_remap = adcin_data_remap(adcin0);
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if (adcin0_remap == BOARDID_UNKNOWN)
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return -EINVAL;
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/* read ADC channel1 data */
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get_value(ADC_ADCIN1, &adcin1);
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adcin1_remap = adcin_data_remap(adcin1);
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if (adcin1_remap == BOARDID_UNKNOWN)
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return -EINVAL;
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/* read ADC channel2 data */
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get_value(ADC_ADCIN2, &adcin2);
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adcin2_remap = adcin_data_remap(adcin2);
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if (adcin2_remap == BOARDID_UNKNOWN)
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return -EINVAL;
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*id = BOARDID3_BASE * 1000 + (adcin2_remap * 100) +
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(adcin1_remap * 10) + adcin0_remap;
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return 0;
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}
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