212 lines
5.2 KiB
C
212 lines
5.2 KiB
C
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/* Copyright 2013 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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* Common functions for battery charging.
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*/
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#include "battery_smart.h"
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#include "charge_state_v2.h"
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#include "charger.h"
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#include "common.h"
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#include "console.h"
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#include "dptf.h"
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#include "host_command.h"
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#include "printf.h"
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#include "util.h"
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#include "hooks.h"
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/* Console output macros */
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#define CPUTS(outstr) cputs(CC_CHARGER, outstr)
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#define CPRINTS(format, args...) cprints(CC_CHARGER, format, ## args)
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/* DPTF current limit, -1 = none */
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static int dptf_limit_ma = -1;
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void dptf_set_charging_current_limit(int ma)
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{
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dptf_limit_ma = ma >= 0 ? ma : -1;
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}
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int dptf_get_charging_current_limit(void)
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{
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return dptf_limit_ma;
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}
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static void dptf_disable_hook(void)
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{
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/* Before get to Sx, EC should take control of charger from DPTF */
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dptf_limit_ma = -1;
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}
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DECLARE_HOOK(HOOK_CHIPSET_SUSPEND, dptf_disable_hook, HOOK_PRIO_DEFAULT);
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DECLARE_HOOK(HOOK_CHIPSET_SHUTDOWN, dptf_disable_hook, HOOK_PRIO_DEFAULT);
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int charger_closest_voltage(int voltage)
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{
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const struct charger_info *info = charger_get_info();
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/*
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* If the requested voltage is non-zero but below our minimum,
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* return the minimum. See crosbug.com/p/8662.
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*/
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if (voltage > 0 && voltage < info->voltage_min)
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return info->voltage_min;
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/* Clip to max */
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if (voltage > info->voltage_max)
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return info->voltage_max;
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/* Otherwise round down to nearest voltage step */
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return voltage - (voltage % info->voltage_step);
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}
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int charger_closest_current(int current)
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{
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const struct charger_info * const info = charger_get_info();
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/* Apply DPTF limit if necessary */
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if (dptf_limit_ma >= 0 && current > dptf_limit_ma)
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current = dptf_limit_ma;
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/*
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* If the requested current is non-zero but below our minimum,
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* return the minimum. See crosbug.com/p/8662.
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*/
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if (current > 0 && current < info->current_min)
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return info->current_min;
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/* Clip to max */
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if (current > info->current_max)
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return info->current_max;
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/* Otherwise round down to nearest current step */
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return current - (current % info->current_step);
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}
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void charger_get_params(struct charger_params *chg)
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{
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memset(chg, 0, sizeof(*chg));
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if (charger_get_current(&chg->current))
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chg->flags |= CHG_FLAG_BAD_CURRENT;
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if (charger_get_voltage(&chg->voltage))
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chg->flags |= CHG_FLAG_BAD_VOLTAGE;
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if (charger_get_input_current(&chg->input_current))
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chg->flags |= CHG_FLAG_BAD_INPUT_CURRENT;
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if (charger_get_status(&chg->status))
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chg->flags |= CHG_FLAG_BAD_STATUS;
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if (charger_get_option(&chg->option))
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chg->flags |= CHG_FLAG_BAD_OPTION;
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}
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static void print_item_name(const char *name)
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{
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ccprintf(" %-8s", name);
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}
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static int check_print_error(int rv)
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{
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if (rv == EC_SUCCESS)
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return 1;
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ccputs(rv == EC_ERROR_UNIMPLEMENTED ? "(unsupported)\n" : "(error)\n");
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return 0;
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}
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void print_charger_debug(void)
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{
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int d;
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const struct charger_info *info = charger_get_info();
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/* info */
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print_item_name("Name:");
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ccprintf("%s\n", info->name);
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/* option */
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print_item_name("Option:");
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if (check_print_error(charger_get_option(&d)))
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ccprintf("%016b (0x%04x)\n", d, d);
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/* manufacturer id */
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print_item_name("Man id:");
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if (check_print_error(charger_manufacturer_id(&d)))
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ccprintf("0x%04x\n", d);
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/* device id */
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print_item_name("Dev id:");
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if (check_print_error(charger_device_id(&d)))
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ccprintf("0x%04x\n", d);
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/* charge voltage limit */
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print_item_name("V_batt:");
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if (check_print_error(charger_get_voltage(&d)))
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ccprintf("%5d (%4d - %5d, %3d)\n", d,
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info->voltage_min, info->voltage_max,
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info->voltage_step);
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/* charge current limit */
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print_item_name("I_batt:");
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if (check_print_error(charger_get_current(&d)))
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ccprintf("%5d (%4d - %5d, %3d)\n", d,
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info->current_min, info->current_max,
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info->current_step);
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/* input current limit */
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print_item_name("I_in:");
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if (check_print_error(charger_get_input_current(&d)))
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ccprintf("%5d (%4d - %5d, %3d)\n", d,
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info->input_current_min, info->input_current_max,
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info->input_current_step);
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/* dptf current limit */
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print_item_name("I_dptf:");
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if (dptf_limit_ma >= 0)
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ccprintf("%5d\n", dptf_limit_ma);
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else
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ccputs("disabled\n");
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}
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static int command_charger(int argc, char **argv)
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{
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int d;
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char *e;
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if (argc != 3) {
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print_charger_debug();
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return EC_SUCCESS;
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}
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if (strcasecmp(argv[1], "input") == 0) {
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d = strtoi(argv[2], &e, 0);
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if (*e)
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return EC_ERROR_PARAM2;
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return charger_set_input_current(d);
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} else if (strcasecmp(argv[1], "current") == 0) {
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d = strtoi(argv[2], &e, 0);
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if (*e)
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return EC_ERROR_PARAM2;
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chgstate_set_manual_current(d);
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return charger_set_current(d);
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} else if (strcasecmp(argv[1], "voltage") == 0) {
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d = strtoi(argv[2], &e, 0);
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if (*e)
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return EC_ERROR_PARAM2;
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chgstate_set_manual_voltage(d);
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return charger_set_voltage(d);
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} else if (strcasecmp(argv[1], "dptf") == 0) {
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d = strtoi(argv[2], &e, 0);
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if (*e)
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return EC_ERROR_PARAM2;
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dptf_limit_ma = d;
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return EC_SUCCESS;
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} else
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return EC_ERROR_PARAM1;
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}
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DECLARE_CONSOLE_COMMAND(charger, command_charger,
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"[input | current | voltage | dptf] [newval]",
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"Get or set charger param(s)");
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