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/* Copyright 2017 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.
 *
 * Battery pack vendor provided charging profile
 */

#include "battery.h"
#include "battery_smart.h"
#include "common.h"
#include "ec_commands.h"
#include "extpower.h"

/* Shutdown mode parameter to write to manufacturer access register */
#define SB_SHUTDOWN_DATA	0x0010

/* Battery info for proto */
static const struct battery_info info = {
#ifdef BOARD_ZOOMBINI
	.voltage_max		= 13200,
	.voltage_normal		= 11250,
	.voltage_min		= 9000,
	.precharge_current	= 189,
	.start_charging_min_c	= 0,
	.start_charging_max_c	= 60,
	.charging_min_c		= 0,
	.charging_max_c		= 60,
	.discharging_min_c	= -20,
	.discharging_max_c	= 60,
#else /* !defined(BOARD_ZOOMBINI) */
	/* Meowth battery info. */
#if 0 /* planned pack settings */
	.voltage_max		= 8780,
	.voltage_normal		= 7700,
	.voltage_min		= 6000,
	.precharge_current	= 160,
	.start_charging_min_c	= 0,
	.start_charging_max_c	= 45,
	.charging_min_c		= 0,
	.charging_max_c		= 45,
	.discharging_min_c	= -20,
	.discharging_max_c	= 60,
#endif /* 0 */
	/* Borrowed eve batteries for the time being. */
	.voltage_max		= TARGET_WITH_MARGIN(8800, 5), /* mV */
	.voltage_normal		= 7700,
	.voltage_min		= 6100, /* Add 100mV for charger accuracy */
	.precharge_current	= 256,	/* mA */
	.start_charging_min_c	= 0,
	.start_charging_max_c	= 46,
	.charging_min_c		= 10,
	.charging_max_c		= 50,
	.discharging_min_c	= 0,
	.discharging_max_c	= 60,
#endif /* defined(BOARD_ZOOMBINI) */
};

int board_cut_off_battery(void)
{
	int rv;

	/* Ship mode command must be sent twice to take effect */
	rv = sb_write(SB_MANUFACTURER_ACCESS, SB_SHUTDOWN_DATA);
	if (rv != EC_SUCCESS)
		return EC_RES_ERROR;

	rv = sb_write(SB_MANUFACTURER_ACCESS, SB_SHUTDOWN_DATA);
	return rv ? EC_RES_ERROR : EC_RES_SUCCESS;
}

const struct battery_info *battery_get_info(void)
{
	return &info;
}

enum battery_disconnect_state battery_get_disconnect_state(void)
{
	uint8_t data[6];
	int rv;

	/*
	 * Take note if we find that the battery isn't in disconnect state,
	 * and always return NOT_DISCONNECTED without probing the battery.
	 * This assumes the battery will not go to disconnect state during
	 * runtime.
	 */
	static int not_disconnected;

	if (not_disconnected)
		return BATTERY_NOT_DISCONNECTED;

	if (extpower_is_present()) {
		/* Check if battery charging + discharging is disabled. */
		rv = sb_read_mfgacc(PARAM_OPERATION_STATUS,
				SB_ALT_MANUFACTURER_ACCESS, data, sizeof(data));
		if (rv)
			return BATTERY_DISCONNECT_ERROR;
		if (~data[3] & (BATTERY_DISCHARGING_DISABLED |
				BATTERY_CHARGING_DISABLED)) {
			not_disconnected = 1;
			return BATTERY_NOT_DISCONNECTED;
		}

		/*
		 * Battery is neither charging nor discharging. Verify that
		 * we didn't enter this state due to a safety fault.
		 */
		rv = sb_read_mfgacc(PARAM_SAFETY_STATUS,
				SB_ALT_MANUFACTURER_ACCESS, data, sizeof(data));
		if (rv || data[2] || data[3] || data[4] || data[5])
			return BATTERY_DISCONNECT_ERROR;

		/* No safety fault, battery is disconnected */
		return BATTERY_DISCONNECTED;
	}
	not_disconnected = 1;
	return BATTERY_NOT_DISCONNECTED;
}