363 lines
9.6 KiB
C
363 lines
9.6 KiB
C
/* Copyright 2019 The Chromium OS Authors. All rights reserved.
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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/* Hatch family-specific configuration */
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#include "atomic.h"
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#include "battery_fuel_gauge.h"
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#include "charge_manager.h"
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#include "charge_state_v2.h"
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#include "chipset.h"
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#include "console.h"
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#include "cros_board_info.h"
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#include "driver/ppc/sn5s330.h"
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#include "driver/tcpm/anx7447.h"
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#include "driver/tcpm/ps8xxx.h"
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#include "driver/tcpm/tcpci.h"
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#include "driver/tcpm/tcpm.h"
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#include "espi.h"
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#include "gpio.h"
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#include "hooks.h"
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#include "i2c.h"
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#include "keyboard_scan.h"
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#include "power.h"
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#include "stdbool.h"
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#include "tcpci.h"
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#include "timer.h"
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#include "usbc_ppc.h"
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#include "util.h"
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#define CPRINTS(format, args...) cprints(CC_SYSTEM, format, ## args)
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#define CPRINTF(format, args...) cprintf(CC_SYSTEM, format, ## args)
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#define CPRINTSUSB(format, args...) cprints(CC_USBCHARGE, format, ## args)
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#define CPRINTFUSB(format, args...) cprintf(CC_USBCHARGE, format, ## args)
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/******************************************************************************/
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/* Wake up pins */
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const enum gpio_signal hibernate_wake_pins[] = {
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GPIO_LID_OPEN,
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GPIO_ACOK_OD,
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GPIO_POWER_BUTTON_L,
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/* EC_RST_ODL needs to wake device while in PSL hibernate. */
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GPIO_SYS_RESET_L,
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};
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const int hibernate_wake_pins_used = ARRAY_SIZE(hibernate_wake_pins);
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/******************************************************************************/
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/* Keyboard scan setting */
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struct keyboard_scan_config keyscan_config = {
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/*
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* F3 key scan cycle completed but scan input is not
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* charging to logic high when EC start scan next
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* column for "T" key, so we set .output_settle_us
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* to 80us from 50us.
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*/
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.output_settle_us = 80,
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.debounce_down_us = 9 * MSEC,
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.debounce_up_us = 30 * MSEC,
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.scan_period_us = 3 * MSEC,
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.min_post_scan_delay_us = 1000,
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.poll_timeout_us = 100 * MSEC,
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.actual_key_mask = {
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0x14, 0xff, 0xff, 0xff, 0xff, 0xf5, 0xff,
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0xa4, 0xff, 0xfe, 0x55, 0xfa, 0xca /* full set */
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},
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};
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/******************************************************************************/
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/* I2C port map configuration */
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const struct i2c_port_t i2c_ports[] = {
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{"sensor", I2C_PORT_SENSOR, 100, GPIO_I2C0_SCL, GPIO_I2C0_SDA},
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{"ppc0", I2C_PORT_PPC0, 100, GPIO_I2C1_SCL, GPIO_I2C1_SDA},
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{"tcpc1", I2C_PORT_TCPC1, 100, GPIO_I2C2_SCL, GPIO_I2C2_SDA},
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{"tcpc0", I2C_PORT_TCPC0, 100, GPIO_I2C3_SCL, GPIO_I2C3_SDA},
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{"power", I2C_PORT_POWER, 100, GPIO_I2C5_SCL, GPIO_I2C5_SDA},
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{"eeprom", I2C_PORT_EEPROM, 100, GPIO_I2C7_SCL, GPIO_I2C7_SDA},
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};
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const unsigned int i2c_ports_used = ARRAY_SIZE(i2c_ports);
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/******************************************************************************/
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/* Chipset callbacks/hooks */
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__attribute__((weak)) bool board_has_kb_backlight(void)
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{
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/* Default enable keyboard backlight */
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return true;
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}
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/* Called on AP S5 -> S3 transition */
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static void baseboard_chipset_startup(void)
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{
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/* TODD(b/122266850): Need to fill out this hook */
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}
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DECLARE_HOOK(HOOK_CHIPSET_STARTUP, baseboard_chipset_startup,
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HOOK_PRIO_DEFAULT);
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/* Called on AP S0iX -> S0 transition */
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static void baseboard_chipset_resume(void)
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{
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if (board_has_kb_backlight())
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gpio_set_level(GPIO_EC_KB_BL_EN, 1);
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}
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DECLARE_HOOK(HOOK_CHIPSET_RESUME, baseboard_chipset_resume, HOOK_PRIO_DEFAULT);
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/* Called on AP S0 -> S0iX transition */
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static void baseboard_chipset_suspend(void)
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{
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if (board_has_kb_backlight())
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gpio_set_level(GPIO_EC_KB_BL_EN, 0);
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}
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DECLARE_HOOK(HOOK_CHIPSET_SUSPEND, baseboard_chipset_suspend,
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HOOK_PRIO_DEFAULT);
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/* Called on AP S3 -> S5 transition */
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static void baseboard_chipset_shutdown(void)
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{
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}
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DECLARE_HOOK(HOOK_CHIPSET_SHUTDOWN, baseboard_chipset_shutdown,
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HOOK_PRIO_DEFAULT);
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void board_hibernate(void)
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{
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int port;
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/*
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* To support hibernate from ectool, keyboard, and console,
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* ensure that the AP is fully shutdown before hibernating.
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*/
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#ifdef HAS_TASK_CHIPSET
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chipset_force_shutdown(CHIPSET_SHUTDOWN_BOARD_CUSTOM);
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#endif
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/*
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* If VBUS is not being provided by any of the PD ports,
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* then enable the SNK FET to allow AC to pass through
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* if it is later connected to ensure that AC_PRESENT
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* will wake up the EC from this state
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*/
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for (port = 0; port < CONFIG_USB_PD_PORT_COUNT; ++port)
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ppc_vbus_sink_enable(port, 1);
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/*
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* This seems like a hack, but the AP chipset state machine
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* needs time to work through the transitions. Also, it
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* works.
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*/
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msleep(300);
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}
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/******************************************************************************/
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/* USB-C PPC Configuration */
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struct ppc_config_t ppc_chips[CONFIG_USB_PD_PORT_COUNT] = {
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[USB_PD_PORT_TCPC_0] = {
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.i2c_port = I2C_PORT_PPC0,
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.i2c_addr_flags = SN5S330_ADDR0_FLAGS,
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.drv = &sn5s330_drv
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},
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[USB_PD_PORT_TCPC_1] = {
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.i2c_port = I2C_PORT_TCPC1,
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.i2c_addr_flags = SN5S330_ADDR0_FLAGS,
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.drv = &sn5s330_drv
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},
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};
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unsigned int ppc_cnt = ARRAY_SIZE(ppc_chips);
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/* Power Delivery and charging functions */
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void baseboard_tcpc_init(void)
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{
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/* Enable PPC interrupts. */
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gpio_enable_interrupt(GPIO_USB_C0_PPC_INT_ODL);
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gpio_enable_interrupt(GPIO_USB_C1_PPC_INT_ODL);
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/* Enable TCPC interrupts. */
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gpio_enable_interrupt(GPIO_USB_C0_TCPC_INT_ODL);
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gpio_enable_interrupt(GPIO_USB_C1_TCPC_INT_ODL);
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/* Enable BC 1.2 interrupts */
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gpio_enable_interrupt(GPIO_USB_C0_BC12_INT_ODL);
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gpio_enable_interrupt(GPIO_USB_C1_BC12_INT_ODL);
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}
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DECLARE_HOOK(HOOK_INIT, baseboard_tcpc_init, HOOK_PRIO_INIT_I2C + 1);
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uint16_t tcpc_get_alert_status(void)
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{
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uint16_t status = 0;
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int level;
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/*
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* Check which port has the ALERT line set and ignore if that TCPC has
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* its reset line active.
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*/
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if (!gpio_get_level(GPIO_USB_C0_TCPC_INT_ODL)) {
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level = !!(tcpc_config[USB_PD_PORT_TCPC_0].flags &
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TCPC_FLAGS_RESET_ACTIVE_HIGH);
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if (gpio_get_level(GPIO_USB_C0_TCPC_RST) != level)
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status |= PD_STATUS_TCPC_ALERT_0;
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}
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if (!gpio_get_level(GPIO_USB_C1_TCPC_INT_ODL)) {
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level = !!(tcpc_config[USB_PD_PORT_TCPC_1].flags &
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TCPC_FLAGS_RESET_ACTIVE_HIGH);
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if (gpio_get_level(GPIO_USB_C1_TCPC_RST) != level)
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status |= PD_STATUS_TCPC_ALERT_1;
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}
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return status;
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}
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static void reset_pd_port(int port, enum gpio_signal reset_gpio,
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int hold_delay, int finish_delay)
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{
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int level = !!(tcpc_config[port].flags & TCPC_FLAGS_RESET_ACTIVE_HIGH);
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gpio_set_level(reset_gpio, level);
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msleep(hold_delay);
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gpio_set_level(reset_gpio, !level);
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if (finish_delay)
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msleep(finish_delay);
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}
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void board_reset_pd_mcu(void)
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{
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/*
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* TODO(b/130194590): This should be replaced with a common function
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* once the gpio signal and delays are added to tcpc_config struct.
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*/
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/* Assert reset to TCPC for required delay only if we have a battery. */
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if (battery_is_present() != BP_YES)
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return;
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/* Reset TCPC0 */
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reset_pd_port(USB_PD_PORT_TCPC_0, GPIO_USB_C0_TCPC_RST,
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BOARD_TCPC_C0_RESET_HOLD_DELAY,
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BOARD_TCPC_C0_RESET_POST_DELAY);
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/* Reset TCPC1 */
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reset_pd_port(USB_PD_PORT_TCPC_1, GPIO_USB_C1_TCPC_RST,
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BOARD_TCPC_C1_RESET_HOLD_DELAY,
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BOARD_TCPC_C1_RESET_POST_DELAY);
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}
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int board_set_active_charge_port(int port)
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{
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int is_valid_port = (port >= 0 &&
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port < CONFIG_USB_PD_PORT_COUNT);
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int i;
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if (!is_valid_port && port != CHARGE_PORT_NONE)
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return EC_ERROR_INVAL;
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if (port == CHARGE_PORT_NONE) {
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CPRINTSUSB("Disabling all charger ports");
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/* Disable all ports. */
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for (i = 0; i < ppc_cnt; i++) {
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/*
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* Do not return early if one fails otherwise we can
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* get into a boot loop assertion failure.
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*/
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if (ppc_vbus_sink_enable(i, 0))
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CPRINTSUSB("Disabling C%d as sink failed.", i);
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}
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return EC_SUCCESS;
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}
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/* Check if the port is sourcing VBUS. */
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if (ppc_is_sourcing_vbus(port)) {
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CPRINTFUSB("Skip enable C%d", port);
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return EC_ERROR_INVAL;
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}
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CPRINTSUSB("New charge port: C%d", port);
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/*
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* Turn off the other ports' sink path FETs, before enabling the
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* requested charge port.
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*/
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for (i = 0; i < ppc_cnt; i++) {
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if (i == port)
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continue;
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if (ppc_vbus_sink_enable(i, 0))
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CPRINTSUSB("C%d: sink path disable failed.", i);
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}
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/* Enable requested charge port. */
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if (ppc_vbus_sink_enable(port, 1)) {
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CPRINTSUSB("C%d: sink path enable failed.", port);
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return EC_ERROR_UNKNOWN;
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}
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return EC_SUCCESS;
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}
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int ppc_get_alert_status(int port)
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{
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if (port == USB_PD_PORT_TCPC_0)
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return gpio_get_level(GPIO_USB_C0_PPC_INT_ODL) == 0;
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else
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return gpio_get_level(GPIO_USB_C1_PPC_INT_ODL) == 0;
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}
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void board_set_charge_limit(int port, int supplier, int charge_ma,
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int max_ma, int charge_mv)
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{
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charge_set_input_current_limit(MAX(charge_ma,
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CONFIG_CHARGER_INPUT_CURRENT),
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charge_mv);
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}
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#ifdef USB_PD_PORT_TCPC_MST
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void baseboard_mst_enable_control(enum mst_source src, int level)
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{
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static uint32_t mst_input_levels;
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if (level)
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atomic_or(&mst_input_levels, 1 << src);
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else
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atomic_clear(&mst_input_levels, 1 << src);
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gpio_set_level(GPIO_EN_MST, mst_input_levels ? 1 : 0);
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}
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#endif
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/* Enable or disable input devices, based on chipset state */
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#ifndef TEST_BUILD
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void lid_angle_peripheral_enable(int enable)
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{
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/* TODO(b/125936966): Need to add SKU dependency for convertibles */
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if (chipset_in_state(CHIPSET_STATE_ANY_OFF))
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enable = 0;
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keyboard_scan_enable(enable, KB_SCAN_DISABLE_LID_ANGLE);
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}
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#endif
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static uint8_t sku_id;
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uint8_t get_board_sku(void)
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{
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return sku_id;
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}
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/* Read CBI from i2c eeprom and initialize variables for board variants */
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static void cbi_init(void)
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{
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uint32_t val;
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if (cbi_get_sku_id(&val) != EC_SUCCESS || val > UINT8_MAX) {
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CPRINTS("Read SKU Error value :%d", val);
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return;
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}
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sku_id = val;
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CPRINTS("SKU: %d", sku_id);
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}
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DECLARE_HOOK(HOOK_INIT, cbi_init, HOOK_PRIO_INIT_I2C + 1);
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