602 lines
16 KiB
C
602 lines
16 KiB
C
/* Copyright (c) 2012 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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#include <stdio.h>
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#include <string.h>
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#include <stddef.h>
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#include <stdlib.h>
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#ifndef HAVE_MACOS
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#include <linux/fs.h>
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#endif
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <sys/param.h>
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#include <sys/ioctl.h>
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#include <sys/wait.h>
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#include <fcntl.h>
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#include <unistd.h>
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#include <netinet/in.h>
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#include "vboot_common.h"
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#include "vboot_nvstorage.h"
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#include "host_common.h"
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#include "crossystem.h"
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#include "crossystem_arch.h"
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#define MOSYS_PATH "/usr/sbin/mosys"
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/* Base name for firmware FDT files */
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#define FDT_BASE_PATH "/proc/device-tree/firmware/chromeos"
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/* Path to compatible FDT entry */
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#define FDT_COMPATIBLE_PATH "/proc/device-tree/compatible"
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/* Path to the chromeos_arm platform device */
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#define PLATFORM_DEV_PATH "/sys/devices/platform/chromeos_arm"
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/* Device for NVCTX write */
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#define NVCTX_PATH "/dev/mmcblk%d"
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/* Base name for GPIO files */
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#define GPIO_BASE_PATH "/sys/class/gpio"
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#define GPIO_EXPORT_PATH GPIO_BASE_PATH "/export"
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/* Name of NvStorage type property */
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#define FDT_NVSTORAGE_TYPE_PROP "nonvolatile-context-storage"
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/* Errors */
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#define E_FAIL -1
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#define E_FILEOP -2
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#define E_MEM -3
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/* Common constants */
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#define FNAME_SIZE 80
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#define SECTOR_SIZE 512
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#define MAX_NMMCBLK 9
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typedef struct PlatformFamily {
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const char* compatible_string; /* Last string in FDT compatible entry */
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const char* platform_string; /* String to return */
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} PlatformFamily;
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/* Array of platform family names, terminated with a NULL entry */
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const PlatformFamily platform_family_array[] = {
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{"nvidia,tegra124", "Tegra5"},
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{"nvidia,tegra250", "Tegra2"},
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{"nvidia,tegra20", "Tegra2"},
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{"ti,omap4", "OMAP4"},
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{"ti,omap3", "OMAP3"},
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{"samsung,exynos4210", "EXYNOS4"},
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{"samsung,exynos5250", "EXYNOS5"},
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{"samsung,exynos5420", "EXYNOS5"},
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{"qcom,ipq8064", "IPQ8064"},
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/* Terminate with NULL entry */
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{NULL, NULL}
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};
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static int FindEmmcDev(void) {
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int mmcblk;
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unsigned value;
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char filename[FNAME_SIZE];
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for (mmcblk = 0; mmcblk < MAX_NMMCBLK; mmcblk++) {
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/* Get first non-removable mmc block device */
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snprintf(filename, sizeof(filename), "/sys/block/mmcblk%d/removable",
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mmcblk);
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if (ReadFileInt(filename, &value) < 0)
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continue;
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if (value == 0)
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return mmcblk;
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}
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/* eMMC not found */
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return E_FAIL;
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}
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static int ReadFdtValue(const char *property, int *value) {
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char filename[FNAME_SIZE];
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FILE *file;
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int data = 0;
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snprintf(filename, sizeof(filename), FDT_BASE_PATH "/%s", property);
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file = fopen(filename, "rb");
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if (!file) {
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fprintf(stderr, "Unable to open FDT property %s\n", property);
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return E_FILEOP;
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}
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if (fread(&data, 1, sizeof(data), file) != sizeof(data)) {
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fprintf(stderr, "Unable to read FDT property %s\n", property);
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return E_FILEOP;
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}
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fclose(file);
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if (value)
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*value = ntohl(data); /* FDT is network byte order */
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return 0;
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}
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static int ReadFdtInt(const char *property) {
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int value = 0;
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if (ReadFdtValue(property, &value))
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return E_FAIL;
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return value;
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}
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static void GetFdtPropertyPath(const char *property, char *path, size_t size) {
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if (property[0] == '/')
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StrCopy(path, property, size);
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else
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snprintf(path, size, FDT_BASE_PATH "/%s", property);
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}
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static int FdtPropertyExist(const char *property) {
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char filename[FNAME_SIZE];
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struct stat file_status;
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GetFdtPropertyPath(property, filename, sizeof(filename));
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if (!stat(filename, &file_status))
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return 1; // It exists!
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else
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return 0; // It does not exist or some error happened.
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}
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static int ReadFdtBlock(const char *property, void **block, size_t *size) {
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char filename[FNAME_SIZE];
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FILE *file;
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size_t property_size;
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char *data;
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if (!block)
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return E_FAIL;
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GetFdtPropertyPath(property, filename, sizeof(filename));
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file = fopen(filename, "rb");
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if (!file) {
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fprintf(stderr, "Unable to open FDT property %s\n", property);
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return E_FILEOP;
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}
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fseek(file, 0, SEEK_END);
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property_size = ftell(file);
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rewind(file);
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data = malloc(property_size +1);
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if (!data) {
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fclose(file);
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return E_MEM;
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}
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data[property_size] = 0;
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if (1 != fread(data, property_size, 1, file)) {
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fprintf(stderr, "Unable to read from property %s\n", property);
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fclose(file);
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free(data);
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return E_FILEOP;
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}
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fclose(file);
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*block = data;
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if (size)
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*size = property_size;
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return 0;
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}
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static char * ReadFdtString(const char *property) {
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void *str = NULL;
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/* Do not need property size */
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ReadFdtBlock(property, &str, 0);
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return (char *)str;
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}
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static char * ReadFdtPlatformFamily(void) {
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char *compat = NULL;
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char *s;
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const PlatformFamily* p;
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size_t size = 0;
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int slen;
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if(ReadFdtBlock(FDT_COMPATIBLE_PATH, (void **)&compat, &size))
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return NULL;
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if (size > 0)
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compat[size-1] = 0;
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/* Check each null separated string in compatible against the family array */
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s = compat;
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while ((s-compat) < size) {
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slen = strlen(s);
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for (p = platform_family_array; p->compatible_string; p++) {
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if (!strcmp(s, p->compatible_string)) {
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free(compat);
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return strdup(p->platform_string);
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}
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}
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s += slen + 1;
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}
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/* No recognized 'compatible' entry found */
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free(compat);
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return NULL;
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}
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static int VbGetPlatformGpioStatus(const char* name) {
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char gpio_name[FNAME_SIZE];
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unsigned value;
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snprintf(gpio_name, sizeof(gpio_name), "%s/%s/value",
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PLATFORM_DEV_PATH, name);
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if (ReadFileInt(gpio_name, &value) < 0)
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return -1;
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return (int)value;
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}
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static int VbGetGpioStatus(unsigned gpio_number) {
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char gpio_name[FNAME_SIZE];
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unsigned value;
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snprintf(gpio_name, sizeof(gpio_name), "%s/gpio%d/value",
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GPIO_BASE_PATH, gpio_number);
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if (ReadFileInt(gpio_name, &value) < 0) {
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/* Try exporting the GPIO */
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FILE* f = fopen(GPIO_EXPORT_PATH, "wt");
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if (!f)
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return -1;
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fprintf(f, "%d", gpio_number);
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fclose(f);
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/* Try re-reading the GPIO value */
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if (ReadFileInt(gpio_name, &value) < 0)
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return -1;
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}
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return (int)value;
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}
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static int VbGetVarGpio(const char* name) {
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int gpio_num;
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void *pp = NULL;
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int *prop;
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size_t proplen = 0;
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int ret = 0;
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/* TODO: This should at some point in the future use the phandle
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* to find the gpio chip and thus the base number. Assume 0 now,
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* which isn't 100% future-proof (i.e. if one of the switches gets
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* moved to an offchip gpio controller.
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*/
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ret = ReadFdtBlock(name, &pp, &proplen);
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if (ret || !pp || proplen != 12) {
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ret = 2;
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goto out;
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}
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prop = pp;
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gpio_num = ntohl(prop[1]);
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/*
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* TODO(chrome-os-partner:11296): Use gpio_num == 0 to denote non-exist
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* GPIO for now, at the risk that one day we might actually want to read
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* from a GPIO port 0. We should figure out how to represent "non-exist"
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* properly.
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*/
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if (gpio_num)
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ret = VbGetGpioStatus(gpio_num);
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else
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ret = -1;
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out:
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if (pp)
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free(pp);
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return ret;
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}
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static int ExecuteMosys(char * const argv[], char *buf, size_t bufsize) {
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int status, mosys_to_crossystem[2];
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pid_t pid;
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ssize_t n;
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if (pipe(mosys_to_crossystem) < 0) {
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VBDEBUG(("pipe() error\n"));
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return -1;
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}
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if ((pid = fork()) < 0) {
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VBDEBUG(("fork() error\n"));
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close(mosys_to_crossystem[0]);
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close(mosys_to_crossystem[1]);
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return -1;
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} else if (!pid) { /* Child */
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close(mosys_to_crossystem[0]);
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/* Redirect pipe's write-end to mosys' stdout */
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if (STDOUT_FILENO != mosys_to_crossystem[1]) {
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if (dup2(mosys_to_crossystem[1], STDOUT_FILENO) != STDOUT_FILENO) {
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VBDEBUG(("stdout dup2() failed (mosys)\n"));
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close(mosys_to_crossystem[1]);
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exit(1);
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}
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}
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/* Execute mosys */
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execv(MOSYS_PATH, argv);
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/* We shouldn't be here; exit now! */
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VBDEBUG(("execv() of mosys failed\n"));
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close(mosys_to_crossystem[1]);
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exit(1);
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} else { /* Parent */
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close(mosys_to_crossystem[1]);
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if (bufsize) {
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bufsize--; /* Reserve 1 byte for '\0' */
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while ((n = read(mosys_to_crossystem[0], buf, bufsize)) > 0) {
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buf += n;
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bufsize -= n;
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}
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*buf = '\0';
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} else {
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n = 0;
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}
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close(mosys_to_crossystem[0]);
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if (n < 0)
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VBDEBUG(("read() error while reading output from mosys\n"));
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if (waitpid(pid, &status, 0) < 0 || status) {
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VBDEBUG(("waitpid() or mosys error\n"));
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fprintf(stderr, "waitpid() or mosys error\n");
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return -1;
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}
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if (n < 0)
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return -1;
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}
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return 0;
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}
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static int VbReadNvStorage_mosys(VbNvContext* vnc) {
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char hexstring[VBNV_BLOCK_SIZE * 2 + 32]; /* Reserve extra 32 bytes */
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char * const argv[] = {
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MOSYS_PATH, "nvram", "vboot", "read", NULL
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};
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char hexdigit[3];
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int i;
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if (ExecuteMosys(argv, hexstring, sizeof(hexstring)))
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return -1;
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hexdigit[2] = '\0';
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for (i = 0; i < VBNV_BLOCK_SIZE; i++) {
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hexdigit[0] = hexstring[i * 2];
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hexdigit[1] = hexstring[i * 2 + 1];
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vnc->raw[i] = strtol(hexdigit, NULL, 16);
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}
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return 0;
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}
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static int VbWriteNvStorage_mosys(VbNvContext* vnc) {
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char hexstring[VBNV_BLOCK_SIZE * 2 + 1];
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char * const argv[] = {
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MOSYS_PATH, "nvram", "vboot", "write", hexstring, NULL
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};
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int i;
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for (i = 0; i < VBNV_BLOCK_SIZE; i++)
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snprintf(hexstring + i * 2, 3, "%02x", vnc->raw[i]);
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hexstring[sizeof(hexstring) - 1] = '\0';
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if (ExecuteMosys(argv, NULL, 0))
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return -1;
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return 0;
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}
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static int VbReadNvStorage_disk(VbNvContext* vnc) {
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int nvctx_fd = -1;
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uint8_t sector[SECTOR_SIZE];
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int rv = -1;
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char nvctx_path[FNAME_SIZE];
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int emmc_dev;
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int lba = ReadFdtInt("nonvolatile-context-lba");
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int offset = ReadFdtInt("nonvolatile-context-offset");
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int size = ReadFdtInt("nonvolatile-context-size");
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emmc_dev = FindEmmcDev();
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if (emmc_dev < 0)
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return E_FAIL;
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snprintf(nvctx_path, sizeof(nvctx_path), NVCTX_PATH, emmc_dev);
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if (size != sizeof(vnc->raw) || (size + offset > SECTOR_SIZE))
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return E_FAIL;
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nvctx_fd = open(nvctx_path, O_RDONLY);
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if (nvctx_fd == -1) {
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fprintf(stderr, "%s: failed to open %s\n", __FUNCTION__, nvctx_path);
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goto out;
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}
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lseek(nvctx_fd, lba * SECTOR_SIZE, SEEK_SET);
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rv = read(nvctx_fd, sector, SECTOR_SIZE);
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if (size <= 0) {
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fprintf(stderr, "%s: failed to read nvctx from device %s\n",
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__FUNCTION__, nvctx_path);
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goto out;
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}
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Memcpy(vnc->raw, sector+offset, size);
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rv = 0;
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out:
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if (nvctx_fd > 0)
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close(nvctx_fd);
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return rv;
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}
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static int VbWriteNvStorage_disk(VbNvContext* vnc) {
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int nvctx_fd = -1;
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uint8_t sector[SECTOR_SIZE];
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int rv = -1;
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char nvctx_path[FNAME_SIZE];
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int emmc_dev;
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int lba = ReadFdtInt("nonvolatile-context-lba");
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int offset = ReadFdtInt("nonvolatile-context-offset");
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int size = ReadFdtInt("nonvolatile-context-size");
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emmc_dev = FindEmmcDev();
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if (emmc_dev < 0)
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return E_FAIL;
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snprintf(nvctx_path, sizeof(nvctx_path), NVCTX_PATH, emmc_dev);
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if (size != sizeof(vnc->raw) || (size + offset > SECTOR_SIZE))
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return E_FAIL;
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do {
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nvctx_fd = open(nvctx_path, O_RDWR);
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if (nvctx_fd == -1) {
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fprintf(stderr, "%s: failed to open %s\n", __FUNCTION__, nvctx_path);
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break;
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}
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lseek(nvctx_fd, lba * SECTOR_SIZE, SEEK_SET);
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rv = read(nvctx_fd, sector, SECTOR_SIZE);
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if (rv <= 0) {
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fprintf(stderr, "%s: failed to read nvctx from device %s\n",
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__FUNCTION__, nvctx_path);
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break;
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}
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Memcpy(sector+offset, vnc->raw, size);
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lseek(nvctx_fd, lba * SECTOR_SIZE, SEEK_SET);
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rv = write(nvctx_fd, sector, SECTOR_SIZE);
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if (rv <= 0) {
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fprintf(stderr, "%s: failed to write nvctx to device %s\n",
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__FUNCTION__, nvctx_path);
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break;
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}
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#ifndef HAVE_MACOS
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/* Must flush buffer cache here to make sure it goes to disk */
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rv = ioctl(nvctx_fd, BLKFLSBUF, 0);
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if (rv < 0) {
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fprintf(stderr, "%s: failed to flush nvctx to device %s\n",
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__FUNCTION__, nvctx_path);
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break;
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}
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#endif
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rv = 0;
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} while (0);
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if (nvctx_fd > 0)
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close(nvctx_fd);
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return rv;
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}
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int VbReadNvStorage(VbNvContext* vnc) {
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/* Default to disk for older firmware which does not provide storage type */
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char *media;
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if (!FdtPropertyExist(FDT_NVSTORAGE_TYPE_PROP))
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return VbReadNvStorage_disk(vnc);
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media = ReadFdtString(FDT_NVSTORAGE_TYPE_PROP);
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if (!strcmp(media, "disk"))
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return VbReadNvStorage_disk(vnc);
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if (!strcmp(media, "mkbp") || !strcmp(media, "flash"))
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return VbReadNvStorage_mosys(vnc);
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return -1;
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}
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int VbWriteNvStorage(VbNvContext* vnc) {
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/* Default to disk for older firmware which does not provide storage type */
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char *media;
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if (!FdtPropertyExist(FDT_NVSTORAGE_TYPE_PROP))
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return VbWriteNvStorage_disk(vnc);
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media = ReadFdtString(FDT_NVSTORAGE_TYPE_PROP);
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if (!strcmp(media, "disk"))
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return VbWriteNvStorage_disk(vnc);
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if (!strcmp(media, "mkbp") || !strcmp(media, "flash"))
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return VbWriteNvStorage_mosys(vnc);
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return -1;
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}
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VbSharedDataHeader *VbSharedDataRead(void) {
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void *block = NULL;
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size_t size = 0;
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if (ReadFdtBlock("vboot-shared-data", &block, &size))
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return NULL;
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VbSharedDataHeader *p = (VbSharedDataHeader *)block;
|
|
if (p->magic != VB_SHARED_DATA_MAGIC) {
|
|
fprintf(stderr, "%s: failed to validate magic in "
|
|
"VbSharedDataHeader (%x != %x)\n",
|
|
__FUNCTION__, p->magic, VB_SHARED_DATA_MAGIC);
|
|
return NULL;
|
|
}
|
|
return (VbSharedDataHeader *)block;
|
|
}
|
|
|
|
int VbGetArchPropertyInt(const char* name) {
|
|
if (!strcasecmp(name, "fmap_base")) {
|
|
return ReadFdtInt("fmap-offset");
|
|
} else if (!strcasecmp(name, "devsw_cur")) {
|
|
/* Systems with virtual developer switches return at-boot value */
|
|
int flags = VbGetSystemPropertyInt("vdat_flags");
|
|
if ((flags != -1) && (flags & VBSD_HONOR_VIRT_DEV_SWITCH))
|
|
return VbGetSystemPropertyInt("devsw_boot");
|
|
|
|
return VbGetVarGpio("developer-switch");
|
|
} else if (!strcasecmp(name, "recoverysw_cur")) {
|
|
int value;
|
|
value = VbGetPlatformGpioStatus("recovery");
|
|
if (value != -1)
|
|
return value;
|
|
|
|
return VbGetVarGpio("recovery-switch");
|
|
} else if (!strcasecmp(name, "wpsw_cur")) {
|
|
int value;
|
|
/* Try finding the GPIO through the chromeos_arm platform device first. */
|
|
value = VbGetPlatformGpioStatus("write-protect");
|
|
if (value != -1)
|
|
return value;
|
|
return VbGetVarGpio("write-protect-switch");
|
|
} else if (!strcasecmp(name, "recoverysw_ec_boot"))
|
|
/* TODO: read correct value using ectool */
|
|
return 0;
|
|
else
|
|
return -1;
|
|
}
|
|
|
|
const char* VbGetArchPropertyString(const char* name, char* dest,
|
|
size_t size) {
|
|
char *str = NULL;
|
|
char *rv = NULL;
|
|
char *prop = NULL;
|
|
|
|
if (!strcasecmp(name,"arch"))
|
|
return StrCopy(dest, "arm", size);
|
|
|
|
/* Properties from fdt */
|
|
if (!strcasecmp(name, "ro_fwid"))
|
|
prop = "readonly-firmware-version";
|
|
else if (!strcasecmp(name, "hwid"))
|
|
prop = "hardware-id";
|
|
else if (!strcasecmp(name, "fwid"))
|
|
prop = "firmware-version";
|
|
else if (!strcasecmp(name, "mainfw_type"))
|
|
prop = "firmware-type";
|
|
else if (!strcasecmp(name, "ecfw_act"))
|
|
prop = "active-ec-firmware";
|
|
else if (!strcasecmp(name, "ddr_type"))
|
|
prop = "ddr-type";
|
|
|
|
if (prop)
|
|
str = ReadFdtString(prop);
|
|
|
|
if (!strcasecmp(name, "platform_family"))
|
|
str = ReadFdtPlatformFamily();
|
|
|
|
if (str) {
|
|
rv = StrCopy(dest, str, size);
|
|
free(str);
|
|
return rv;
|
|
}
|
|
return NULL;
|
|
}
|
|
|
|
int VbSetArchPropertyInt(const char* name, int value) {
|
|
/* All is handled in arch independent fashion */
|
|
return -1;
|
|
}
|
|
|
|
int VbSetArchPropertyString(const char* name, const char* value) {
|
|
/* All is handled in arch independent fashion */
|
|
return -1;
|
|
}
|
|
|
|
int VbArchInit(void)
|
|
{
|
|
return 0;
|
|
}
|