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https://github.com/Telecominfraproject/OpenCellular.git
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gpio_config_module() and gpio_config_pins() had very similar code. This commit moves the functionality of gpio_config_module into gpio_config_pins. That is, gpio_config_pins() can now configure an entire module. This is accomplished by passing in GPIO_CONFIG_ALL_PORTS as the port parameter. BUG=chromium:533539 BRANCH=None TEST=Build and flash on samus. Verify that lightbar, charging, power button, sensors, all functional. TEST=make -j buildall tests Change-Id: I7c9122ebf7b0e2716af2d55b842c4806d8099a63 Signed-off-by: Aseda Aboagye <aaboagye@google.com> Reviewed-on: https://chromium-review.googlesource.com/302479 Commit-Ready: Aseda Aboagye <aaboagye@chromium.org> Tested-by: Aseda Aboagye <aaboagye@chromium.org> Reviewed-by: Gwendal Grignou <gwendal@chromium.org> Reviewed-by: Shawn N <shawnn@chromium.org>
277 lines
6.3 KiB
C
277 lines
6.3 KiB
C
/* Copyright (c) 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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/* GPIO common functionality for Chrome EC */
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#include "common.h"
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#include "console.h"
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#include "gpio.h"
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#include "host_command.h"
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#include "system.h"
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#include "util.h"
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static uint8_t last_val[(GPIO_COUNT + 7) / 8];
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/**
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* Find a GPIO signal by name.
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*
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* @param name Signal name to find
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*
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* @return the signal index, or GPIO_COUNT if no match.
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*/
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static enum gpio_signal find_signal_by_name(const char *name)
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{
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const struct gpio_info *g = gpio_list;
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int i;
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if (!name || !*name)
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return GPIO_COUNT;
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for (i = 0; i < GPIO_COUNT; i++, g++) {
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if (g->mask && !strcasecmp(name, g->name))
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return i;
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}
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return GPIO_COUNT;
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}
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/**
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* Update last_val
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*
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* @param i Index of last_val[] to update
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* @param v New value for last_val[i]
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*
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* @return 1 if last_val[i] was updated, 0 if last_val[i]==v.
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*/
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static int last_val_changed(int i, int v)
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{
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if (v && !(last_val[i / 8] & (1 << (i % 8)))) {
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last_val[i / 8] |= 1 << (i % 8);
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return 1;
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} else if (!v && last_val[i / 8] & (1 << (i % 8))) {
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last_val[i / 8] &= ~(1 << (i % 8));
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return 1;
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} else {
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return 0;
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}
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}
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/*****************************************************************************/
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/* GPIO API */
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void gpio_config_module(enum module_id id, int enable)
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{
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/* Set all the alternate functions for this module. */
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gpio_config_pins(id, GPIO_CONFIG_ALL_PORTS, 0, enable);
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}
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int gpio_config_pins(enum module_id id,
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uint32_t port, uint32_t pin_mask, int enable)
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{
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const struct gpio_alt_func *af;
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int rv = EC_ERROR_INVAL;
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/* Find pins and set to alternate functions */
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for (af = gpio_alt_funcs; af < gpio_alt_funcs + gpio_alt_funcs_count;
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af++) {
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if (af->module_id != id)
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continue; /* Pins for some other module */
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/* Check to see if the requested port matches. */
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if ((port != GPIO_CONFIG_ALL_PORTS) && (port != af->port))
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continue;
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/* If we don't care which port, enable all applicable pins. */
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if (port == GPIO_CONFIG_ALL_PORTS)
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pin_mask = af->mask;
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if ((af->mask & pin_mask) == pin_mask) {
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if (!(af->flags & GPIO_DEFAULT))
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gpio_set_flags_by_mask(
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af->port,
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(af->mask & pin_mask),
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enable ? af->flags : GPIO_INPUT);
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gpio_set_alternate_function(
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af->port,
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(af->mask & pin_mask),
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enable ? af->func : -1);
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rv = EC_SUCCESS;
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/* We're done here if we were just setting one port. */
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if (port != GPIO_CONFIG_ALL_PORTS)
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break;
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}
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}
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return rv;
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}
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void gpio_set_flags(enum gpio_signal signal, int flags)
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{
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const struct gpio_info *g = gpio_list + signal;
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gpio_set_flags_by_mask(g->port, g->mask, flags);
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}
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const char *gpio_get_name(enum gpio_signal signal)
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{
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return gpio_list[signal].name;
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}
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/*****************************************************************************/
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/* Console commands */
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static int command_gpio_get(int argc, char **argv)
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{
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const struct gpio_info *g = gpio_list;
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int changed, v, i;
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/* If a signal is specified, print only that one */
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if (argc == 2) {
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i = find_signal_by_name(argv[1]);
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if (i == GPIO_COUNT)
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return EC_ERROR_PARAM1;
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g = gpio_list + i;
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v = gpio_get_level(i);
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changed = last_val_changed(i, v);
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ccprintf(" %d%c %s\n", v, (changed ? '*' : ' '), g->name);
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return EC_SUCCESS;
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}
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/* Otherwise print them all */
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for (i = 0; i < GPIO_COUNT; i++, g++) {
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if (!g->mask)
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continue; /* Skip unsupported signals */
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v = gpio_get_level(i);
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changed = last_val_changed(i, v);
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ccprintf(" %d%c %s\n", v, (changed ? '*' : ' '), g->name);
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/* Flush console to avoid truncating output */
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cflush();
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}
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return EC_SUCCESS;
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}
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DECLARE_CONSOLE_COMMAND(gpioget, command_gpio_get,
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"[name]",
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"Read GPIO value(s)",
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NULL);
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static int command_gpio_set(int argc, char **argv)
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{
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const struct gpio_info *g;
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char *e;
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int v, i;
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if (argc < 3)
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return EC_ERROR_PARAM_COUNT;
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i = find_signal_by_name(argv[1]);
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if (i == GPIO_COUNT)
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return EC_ERROR_PARAM1;
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g = gpio_list + i;
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if (!g->mask)
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return EC_ERROR_PARAM1;
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if (!(g->flags & GPIO_OUTPUT))
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return EC_ERROR_PARAM1;
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v = strtoi(argv[2], &e, 0);
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if (*e)
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return EC_ERROR_PARAM2;
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gpio_set_level(i, v);
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return EC_SUCCESS;
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}
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DECLARE_CONSOLE_COMMAND(gpioset, command_gpio_set,
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"name <0 | 1>",
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"Set a GPIO",
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NULL);
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/*****************************************************************************/
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/* Host commands */
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static int gpio_command_get(struct host_cmd_handler_args *args)
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{
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const struct gpio_info *g = gpio_list;
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const struct ec_params_gpio_get_v1 *p_v1 = args->params;
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struct ec_response_gpio_get_v1 *r_v1 = args->response;
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int i, len;
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if (args->version == 0) {
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const struct ec_params_gpio_get *p = args->params;
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struct ec_response_gpio_get *r = args->response;
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i = find_signal_by_name(p->name);
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if (i == GPIO_COUNT)
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return EC_RES_ERROR;
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r->val = gpio_get_level(i);
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args->response_size = sizeof(struct ec_response_gpio_get);
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return EC_RES_SUCCESS;
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}
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switch (p_v1->subcmd) {
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case EC_GPIO_GET_BY_NAME:
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i = find_signal_by_name(p_v1->get_value_by_name.name);
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if (i == GPIO_COUNT)
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return EC_RES_ERROR;
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r_v1->get_value_by_name.val = gpio_get_level(i);
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args->response_size = sizeof(r_v1->get_value_by_name);
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break;
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case EC_GPIO_GET_COUNT:
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r_v1->get_count.val = GPIO_COUNT;
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args->response_size = sizeof(r_v1->get_count);
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break;
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case EC_GPIO_GET_INFO:
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if (p_v1->get_info.index >= GPIO_COUNT)
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return EC_RES_ERROR;
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i = p_v1->get_info.index;
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len = strlen(g[i].name);
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memcpy(r_v1->get_info.name, g[i].name, len+1);
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r_v1->get_info.val = gpio_get_level(i);
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r_v1->get_info.flags = g[i].flags;
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args->response_size = sizeof(r_v1->get_info);
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break;
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default:
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return EC_RES_INVALID_PARAM;
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}
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return EC_RES_SUCCESS;
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}
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DECLARE_HOST_COMMAND(EC_CMD_GPIO_GET, gpio_command_get,
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EC_VER_MASK(0) | EC_VER_MASK(1));
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static int gpio_command_set(struct host_cmd_handler_args *args)
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{
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const struct ec_params_gpio_set *p = args->params;
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const struct gpio_info *g;
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int i;
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if (system_is_locked())
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return EC_RES_ACCESS_DENIED;
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i = find_signal_by_name(p->name);
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if (i == GPIO_COUNT)
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return EC_RES_ERROR;
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g = gpio_list + i;
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if (!g->mask)
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return EC_RES_ERROR;
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if (!(g->flags & GPIO_OUTPUT))
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return EC_RES_ERROR;
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gpio_set_level(i, p->val);
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return EC_RES_SUCCESS;
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}
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DECLARE_HOST_COMMAND(EC_CMD_GPIO_SET, gpio_command_set, EC_VER_MASK(0));
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