/* Copyright (c) 2013 The Chromium OS Authors. All rights reserved. * Use of this source code is governed by a BSD-style license that can be * found in the LICENSE file. */ /* EC for Peppy board configuration */ #include "adc.h" #include "adc_chip.h" #include "backlight.h" #include "chipset.h" #include "common.h" #include "driver/temp_sensor/g781.h" #include "extpower.h" #include "fan.h" #include "gpio.h" #include "host_command.h" #include "i2c.h" #include "jtag.h" #include "keyboard_scan.h" #include "lid_switch.h" #include "peci.h" #include "power.h" #include "power_button.h" #include "registers.h" #include "switch.h" #include "temp_sensor.h" #include "temp_sensor_chip.h" #include "thermal.h" #include "timer.h" #include "uart.h" #include "util.h" /* GPIO signal list. Must match order from enum gpio_signal. */ const struct gpio_info gpio_list[] = { /* Inputs with interrupt handlers are first for efficiency */ {"POWER_BUTTON_L", LM4_GPIO_A, (1<<2), GPIO_INT_BOTH_DSLEEP, power_button_interrupt}, {"LID_OPEN", LM4_GPIO_A, (1<<3), GPIO_INT_BOTH_DSLEEP, lid_interrupt}, {"AC_PRESENT", LM4_GPIO_H, (1<<3), GPIO_INT_BOTH_DSLEEP, extpower_interrupt}, {"PCH_BKLTEN", LM4_GPIO_M, (1<<3), GPIO_INT_BOTH, backlight_interrupt}, {"PCH_SLP_S0_L", LM4_GPIO_G, (1<<6), GPIO_INT_BOTH, power_signal_interrupt}, {"PCH_SLP_S3_L", LM4_GPIO_G, (1<<7), GPIO_INT_BOTH_DSLEEP, power_signal_interrupt}, {"PCH_SLP_S5_L", LM4_GPIO_H, (1<<1), GPIO_INT_BOTH_DSLEEP, power_signal_interrupt}, {"PCH_SLP_SUS_L", LM4_GPIO_G, (1<<3), GPIO_INT_BOTH, power_signal_interrupt}, {"PP1050_PGOOD", LM4_GPIO_H, (1<<4), GPIO_INT_BOTH, power_signal_interrupt}, {"PP1350_PGOOD", LM4_GPIO_H, (1<<6), GPIO_INT_BOTH, power_signal_interrupt}, {"PP5000_PGOOD", LM4_GPIO_N, (1<<0), GPIO_INT_BOTH, power_signal_interrupt}, {"VCORE_PGOOD", LM4_GPIO_C, (1<<6), GPIO_INT_BOTH, power_signal_interrupt}, {"PCH_EDP_VDD_EN", LM4_GPIO_J, (1<<1), GPIO_INT_BOTH, power_interrupt}, {"RECOVERY_L", LM4_GPIO_A, (1<<5), GPIO_PULL_UP|GPIO_INT_BOTH, switch_interrupt}, {"WP_L", LM4_GPIO_A, (1<<4), GPIO_INT_BOTH, switch_interrupt}, {"JTAG_TCK", LM4_GPIO_C, (1<<0), GPIO_DEFAULT, jtag_interrupt}, {"UART0_RX", LM4_GPIO_A, (1<<0), GPIO_PULL_UP| GPIO_INT_BOTH_DSLEEP, uart_deepsleep_interrupt}, /* Other inputs */ {"FAN_ALERT_L", LM4_GPIO_B, (1<<0), GPIO_INPUT, NULL}, {"PCH_SUSWARN_L", LM4_GPIO_G, (1<<2), GPIO_INT_BOTH, NULL}, {"USB1_OC_L", LM4_GPIO_E, (1<<7), GPIO_INPUT, NULL}, {"USB2_OC_L", LM4_GPIO_E, (1<<0), GPIO_INPUT, NULL}, {"BOARD_VERSION1", LM4_GPIO_Q, (1<<5), GPIO_INPUT, NULL}, {"BOARD_VERSION2", LM4_GPIO_Q, (1<<6), GPIO_INPUT, NULL}, {"BOARD_VERSION3", LM4_GPIO_Q, (1<<7), GPIO_INPUT, NULL}, {"CPU_PGOOD", LM4_GPIO_C, (1<<4), GPIO_INPUT, NULL}, {"BAT_DETECT_L", LM4_GPIO_B, (1<<4), GPIO_INPUT, NULL}, /* Outputs; all unasserted by default except for reset signals */ {"CPU_PROCHOT", LM4_GPIO_B, (1<<1), GPIO_OUT_LOW, NULL}, {"PP1350_EN", LM4_GPIO_H, (1<<5), GPIO_OUT_LOW, NULL}, {"PP3300_DX_EN", LM4_GPIO_J, (1<<2), GPIO_OUT_LOW, NULL}, {"PP3300_LTE_EN", LM4_GPIO_D, (1<<2), GPIO_OUT_LOW, NULL}, {"PP3300_WLAN_EN", LM4_GPIO_J, (1<<0), GPIO_OUT_LOW, NULL}, {"SUSP_VR_EN", LM4_GPIO_C, (1<<7), GPIO_OUT_LOW, NULL}, {"VCORE_EN", LM4_GPIO_C, (1<<5), GPIO_OUT_LOW, NULL}, {"PP5000_EN", LM4_GPIO_H, (1<<7), GPIO_OUT_LOW, NULL}, {"PP5000_FAN_EN", LM4_GPIO_J, (1<<3), GPIO_OUT_LOW, NULL}, {"SYS_PWROK", LM4_GPIO_H, (1<<2), GPIO_OUT_LOW, NULL}, {"WLAN_OFF_L", LM4_GPIO_J, (1<<4), GPIO_OUT_LOW, NULL}, {"CHARGE_L", LM4_GPIO_E, (1<<6), GPIO_OUT_LOW, NULL}, {"ENABLE_BACKLIGHT", LM4_GPIO_M, (1<<7), GPIO_OUT_LOW, NULL}, {"ENABLE_TOUCHPAD", LM4_GPIO_N, (1<<1), GPIO_OUT_LOW, NULL}, {"ENTERING_RW", LM4_GPIO_D, (1<<3), GPIO_OUT_LOW, NULL}, {"PCH_DPWROK", LM4_GPIO_G, (1<<0), GPIO_OUT_LOW, NULL}, /* * HDA_SDO is technically an output, but we need to leave it as an * input until we drive it high. So can't use open-drain (HI_Z). */ {"PCH_HDA_SDO", LM4_GPIO_G, (1<<1), GPIO_INPUT, NULL}, {"PCH_WAKE_L", LM4_GPIO_F, (1<<0), GPIO_OUT_HIGH, NULL}, {"PCH_NMI_L", LM4_GPIO_F, (1<<2), GPIO_OUT_HIGH, NULL}, {"PCH_PWRBTN_L", LM4_GPIO_H, (1<<0), GPIO_OUT_HIGH, NULL}, {"PCH_PWROK", LM4_GPIO_F, (1<<5), GPIO_OUT_LOW, NULL}, /* * PL6 is one of 4 pins on the EC which can't be used in open-drain * mode. To work around this PCH_RCIN_L is set to an input. It will * only be set to an output when it needs to be driven to 0. */ {"PCH_RCIN_L", LM4_GPIO_L, (1<<6), GPIO_INPUT, NULL}, {"PCH_RSMRST_L", LM4_GPIO_F, (1<<1), GPIO_OUT_LOW, NULL}, {"PCH_SMI_L", LM4_GPIO_F, (1<<4), GPIO_ODR_HIGH, NULL}, {"TOUCHSCREEN_RESET_L", LM4_GPIO_N, (1<<7), GPIO_OUT_LOW, NULL}, {"EC_EDP_VDD_EN", LM4_GPIO_J, (1<<5), GPIO_OUT_LOW, NULL}, {"LPC_CLKRUN_L", LM4_GPIO_M, (1<<2), GPIO_ODR_HIGH, NULL}, {"USB1_ENABLE", LM4_GPIO_E, (1<<4), GPIO_OUT_LOW, NULL}, {"USB2_ENABLE", LM4_GPIO_D, (1<<5), GPIO_OUT_LOW, NULL}, {"PCH_SUSACK_L", LM4_GPIO_F, (1<<3), GPIO_OUT_HIGH, NULL}, {"PCH_RTCRST_L", LM4_GPIO_F, (1<<6), GPIO_ODR_HIGH, NULL}, {"PCH_SRTCRST_L", LM4_GPIO_F, (1<<7), GPIO_ODR_HIGH, NULL}, {"BAT_LED0_L", LM4_GPIO_D, (1<<0), GPIO_ODR_HIGH, NULL}, {"BAT_LED1_L", LM4_GPIO_N, (1<<4), GPIO_ODR_HIGH, NULL}, {"PWR_LED0_L", LM4_GPIO_D, (1<<1), GPIO_ODR_HIGH, NULL}, {"PWR_LED1_L", LM4_GPIO_N, (1<<6), GPIO_ODR_HIGH, NULL}, }; BUILD_ASSERT(ARRAY_SIZE(gpio_list) == GPIO_COUNT); /* Pins with alternate functions */ const struct gpio_alt_func gpio_alt_funcs[] = { {GPIO_A, 0x03, 1, MODULE_UART, GPIO_PULL_UP}, /* UART0 */ {GPIO_B, 0x04, 3, MODULE_I2C}, /* I2C0 SCL */ {GPIO_B, 0x08, 3, MODULE_I2C, GPIO_OPEN_DRAIN}, /* I2C0 SDA */ {GPIO_B, 0x40, 3, MODULE_I2C}, /* I2C5 SCL */ {GPIO_B, 0x80, 3, MODULE_I2C, GPIO_OPEN_DRAIN}, /* I2C5 SDA */ {GPIO_G, 0x30, 1, MODULE_UART}, /* UART2 */ {GPIO_J, 0x40, 1, MODULE_PECI}, /* PECI Tx */ {GPIO_J, 0x80, 0, MODULE_PECI, GPIO_ANALOG}, /* PECI Rx */ {GPIO_L, 0x3f, 15, MODULE_LPC}, /* LPC */ {GPIO_M, 0x33, 15, MODULE_LPC}, /* LPC */ {GPIO_N, 0x0c, 1, MODULE_PWM_FAN}, /* FAN0PWM2 */ }; const int gpio_alt_funcs_count = ARRAY_SIZE(gpio_alt_funcs); /* power signal list. Must match order of enum power_signal. */ const struct power_signal_info power_signal_list[] = { {GPIO_PP5000_PGOOD, 1, "PGOOD_PP5000"}, {GPIO_PP1350_PGOOD, 1, "PGOOD_PP1350"}, {GPIO_PP1050_PGOOD, 1, "PGOOD_PP1050"}, {GPIO_VCORE_PGOOD, 1, "PGOOD_VCORE"}, {GPIO_PCH_SLP_S0_L, 1, "SLP_S0#_DEASSERTED"}, {GPIO_PCH_SLP_S3_L, 1, "SLP_S3#_DEASSERTED"}, {GPIO_PCH_SLP_S5_L, 1, "SLP_S5#_DEASSERTED"}, {GPIO_PCH_SLP_SUS_L, 1, "SLP_SUS#_DEASSERTED"}, }; BUILD_ASSERT(ARRAY_SIZE(power_signal_list) == POWER_SIGNAL_COUNT); /* ADC channels. Must be in the exactly same order as in enum adc_channel. */ const struct adc_t adc_channels[] = { /* EC internal temperature is calculated by * 273 + (295 - 450 * ADC_VALUE / ADC_READ_MAX) / 2 * = -225 * ADC_VALUE / ADC_READ_MAX + 420.5 */ {"ECTemp", LM4_ADC_SEQ0, -225, ADC_READ_MAX, 420, LM4_AIN_NONE, 0x0e /* TS0 | IE0 | END0 */, 0, 0}, /* IOUT == ICMNT is on PE3/AIN0 */ /* We have 0.01-ohm resistors, and IOUT is 20X the differential * voltage, so 1000mA ==> 200mV. * ADC returns 0x000-0xFFF, which maps to 0.0-3.3V (as configured). * mA = 1000 * ADC_VALUE / ADC_READ_MAX * 3300 / 200 */ {"ChargerCurrent", LM4_ADC_SEQ1, 33000, ADC_READ_MAX * 2, 0, LM4_AIN(0), 0x06 /* IE0 | END0 */, LM4_GPIO_E, (1<<3)}, }; BUILD_ASSERT(ARRAY_SIZE(adc_channels) == ADC_CH_COUNT); /* Physical fans. These are logically separate from pwm_channels. */ const struct fan_t fans[] = { {.flags = FAN_USE_RPM_MODE, .rpm_min = 1000, .rpm_max = 5050, .ch = 2, .pgood_gpio = GPIO_PP5000_PGOOD, .enable_gpio = GPIO_PP5000_FAN_EN, }, }; BUILD_ASSERT(ARRAY_SIZE(fans) == CONFIG_FANS); /* I2C ports */ const struct i2c_port_t i2c_ports[] = { {"batt_chg", 0, 100}, {"thermal", 5, 100}, }; const unsigned int i2c_ports_used = ARRAY_SIZE(i2c_ports); /* Temperature sensors data; must be in same order as enum temp_sensor_id. */ const struct temp_sensor_t temp_sensors[] = { {"PECI", TEMP_SENSOR_TYPE_CPU, peci_temp_sensor_get_val, 0, 2}, {"ECInternal", TEMP_SENSOR_TYPE_BOARD, chip_temp_sensor_get_val, 0, 4}, {"G781Internal", TEMP_SENSOR_TYPE_BOARD, g781_get_val, G781_IDX_INTERNAL, 4}, {"G781External", TEMP_SENSOR_TYPE_BOARD, g781_get_val, G781_IDX_EXTERNAL, 4}, }; BUILD_ASSERT(ARRAY_SIZE(temp_sensors) == TEMP_SENSOR_COUNT); /* Thermal limits for each temp sensor. All temps are in degrees K. Must be in * same order as enum temp_sensor_id. To always ignore any temp, use 0. */ struct ec_thermal_config thermal_params[] = { /* Only the AP affects the thermal limits and fan speed. */ {{C_TO_K(95), C_TO_K(97), C_TO_K(99)}, C_TO_K(55), C_TO_K(85)}, {{0, 0, 0}, 0, 0}, {{0, 0, 0}, 0, 0}, {{0, 0, 0}, 0, 0}, }; BUILD_ASSERT(ARRAY_SIZE(thermal_params) == TEMP_SENSOR_COUNT); struct keyboard_scan_config keyscan_config = { .output_settle_us = 40, .debounce_down_us = 6 * MSEC, .debounce_up_us = 30 * MSEC, .scan_period_us = 1500, .min_post_scan_delay_us = 1000, .poll_timeout_us = SECOND, .actual_key_mask = { 0x14, 0xff, 0xff, 0xff, 0xff, 0xf5, 0xff, 0xa4, 0xff, 0xf6, 0x55, 0xfa, 0xca /* full set */ }, }; /** * Discharge battery when on AC power for factory test. */ int board_discharge_on_ac(int enable) { if (enable) gpio_set_level(GPIO_CHARGE_L, 1); else gpio_set_level(GPIO_CHARGE_L, 0); return EC_SUCCESS; }