mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-11 07:34:31 +00:00
71f634b822
The existing ChromiumOS bootmeth only supports reading a single kernel partition, either 2 or 4. In fact there are normally two options available. Use the GUID to detect kernel partitions, with the BOOTMETHF_ANY_PART flag, so that bootstd does not require a valid filesystem before calling the bootmeth. Tidy up and improve the logging while we are here. Signed-off-by: Simon Glass <sjg@chromium.org> Suggested-by: Alper Nebi Yasak <alpernebiyasak@gmail.com> [trini: Add missing select of PARTITION_TYPE_GUID] Signed-off-by: Tom Rini <trini@konsulko.com>
477 lines
12 KiB
C
477 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Bootmethod for ChromiumOS
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*
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* Copyright 2023 Google LLC
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* Written by Simon Glass <sjg@chromium.org>
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*/
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#define LOG_CATEGORY UCLASS_BOOTSTD
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#include <common.h>
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#include <blk.h>
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#include <bootdev.h>
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#include <bootflow.h>
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#include <bootm.h>
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#include <bootmeth.h>
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#include <display_options.h>
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#include <dm.h>
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#include <efi.h>
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#include <malloc.h>
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#include <mapmem.h>
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#include <part.h>
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#include <linux/sizes.h>
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#include "bootmeth_cros.h"
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static const efi_guid_t cros_kern_type = PARTITION_CROS_KERNEL;
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/*
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* Layout of the ChromeOS kernel
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*
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* Partitions 2 and 4 contain kernels with type GUID_CROS_KERNEL
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*
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* Contents are:
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*
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* Offset Contents
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* 0 struct vb2_keyblock
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* m struct vb2_kernel_preamble
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* m + n kernel buffer
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*
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* m is keyblock->keyblock_size
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* n is preamble->preamble_size
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*
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* The kernel buffer itself consists of various parts:
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*
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* Offset Contents
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* m + n kernel image (Flat vmlinux binary or FIT)
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* b - 8KB Command line text
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* b - 4KB X86 setup block (struct boot_params, extends for about 16KB)
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* b X86 bootloader (continuation of setup block)
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* b + 16KB X86 setup block (copy, used for hold data pointed to)
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*
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* b is m + n + preamble->bootloader_address - preamble->body_load_address
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*
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* Useful metadata extends from b - 8KB through to b + 32 KB
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*/
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enum {
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PROBE_SIZE = SZ_4K, /* initial bytes read from partition */
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X86_SETUP_OFFSET = -0x1000, /* setup offset relative to base */
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CMDLINE_OFFSET = -0x2000, /* cmdline offset relative to base */
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X86_KERNEL_OFFSET = 0x4000, /* kernel offset relative to base */
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};
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/**
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* struct cros_priv - Private data
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*
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* This is read from the disk and recorded for use when the full kernel must
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* be loaded and booted
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*
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* @body_offset: Offset of kernel body from start of partition (in bytes)
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* @body_size: Size of kernel body in bytes
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* @part_start: Block offset of selected partition from the start of the disk
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* @body_load_address: Nominal load address for kernel body
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* @bootloader_address: Address of bootloader, after body is loaded at
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* body_load_address
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* @bootloader_size: Size of bootloader in bytes
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* @info_buf: Buffer containing ChromiumOS info
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*/
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struct cros_priv {
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ulong body_offset;
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ulong body_size;
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lbaint_t part_start;
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ulong body_load_address;
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ulong bootloader_address;
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ulong bootloader_size;
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void *info_buf;
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};
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static int cros_check(struct udevice *dev, struct bootflow_iter *iter)
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{
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/* This only works on block and network devices */
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if (bootflow_iter_check_blk(iter))
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return log_msg_ret("blk", -ENOTSUPP);
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return 0;
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}
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static int copy_cmdline(const char *from, const char *uuid, char **bufp)
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{
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const int maxlen = 2048;
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char buf[maxlen];
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char *cmd, *to, *end;
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int len;
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/* Allow space for cmdline + UUID */
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len = strnlen(from, sizeof(buf));
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if (len >= maxlen)
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return -E2BIG;
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log_debug("uuid %d %s\n", uuid ? (int)strlen(uuid) : 0, uuid);
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for (to = buf, end = buf + maxlen - UUID_STR_LEN - 1; *from; from++) {
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if (to >= end)
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return -E2BIG;
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if (from[0] == '%' && from[1] == 'U' && uuid &&
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strlen(uuid) == UUID_STR_LEN) {
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strcpy(to, uuid);
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to += UUID_STR_LEN;
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from++;
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} else {
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*to++ = *from;
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}
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}
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*to = '\0';
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len = to - buf;
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cmd = strdup(buf);
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if (!cmd)
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return -ENOMEM;
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free(*bufp);
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*bufp = cmd;
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return 0;
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}
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/**
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* scan_part() - Scan a kernel partition to see if has a ChromeOS header
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*
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* This reads the first PROBE_SIZE of a partition, loookng for
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* VB2_KEYBLOCK_MAGIC
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*
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* @blk: Block device to scan
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* @partnum: Partition number to scan
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* @info: Please to put partition info
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* @hdrp: Return allocated keyblock header on success
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*/
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static int scan_part(struct udevice *blk, int partnum,
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struct disk_partition *info, struct vb2_keyblock **hdrp)
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{
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struct blk_desc *desc = dev_get_uclass_plat(blk);
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struct vb2_keyblock *hdr;
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struct uuid type;
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ulong num_blks;
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int ret;
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if (!partnum)
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return log_msg_ret("efi", -ENOENT);
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ret = part_get_info(desc, partnum, info);
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if (ret)
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return log_msg_ret("part", ret);
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/* Check for kernel partition type */
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log_debug("part %x: type=%s\n", partnum, info->type_guid);
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if (uuid_str_to_bin(info->type_guid, (u8 *)&type, UUID_STR_FORMAT_GUID))
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return log_msg_ret("typ", -EINVAL);
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if (memcmp(&cros_kern_type, &type, sizeof(type)))
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return log_msg_ret("typ", -ENOEXEC);
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/* Make a buffer for the header information */
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num_blks = PROBE_SIZE >> desc->log2blksz;
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log_debug("Reading header, blk=%s, start=%lx, blocks=%lx\n",
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blk->name, (ulong)info->start, num_blks);
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hdr = memalign(SZ_1K, PROBE_SIZE);
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if (!hdr)
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return log_msg_ret("hdr", -ENOMEM);
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ret = blk_read(blk, info->start, num_blks, hdr);
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if (ret != num_blks) {
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free(hdr);
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return log_msg_ret("inf", -EIO);
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}
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if (memcmp(VB2_KEYBLOCK_MAGIC, hdr->magic, VB2_KEYBLOCK_MAGIC_SIZE)) {
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free(hdr);
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log_debug("no magic\n");
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return -ENOENT;
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}
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*hdrp = hdr;
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return 0;
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}
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/**
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* cros_read_buf() - Read information into a buf and parse it
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*
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* @bflow: Bootflow to update
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* @buf: Buffer to use
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* @size: Size of buffer and number of bytes to read thereinto
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* @start: Start offset to read from on disk
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* @before_base: Number of bytes to read before the bootloader base
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* @uuid: UUID string if supported, else NULL
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* Return: 0 if OK, -ENOMEM if out of memory, -EIO on read failure
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*/
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static int cros_read_buf(struct bootflow *bflow, void *buf, ulong size,
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loff_t start, ulong before_base, const char *uuid)
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{
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struct blk_desc *desc = dev_get_uclass_plat(bflow->blk);
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ulong base, setup, cmdline, kern_base;
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ulong num_blks;
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int ret;
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num_blks = size >> desc->log2blksz;
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log_debug("Reading info to %lx, blk=%s, size=%lx, blocks=%lx\n",
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(ulong)map_to_sysmem(buf), bflow->blk->name, size, num_blks);
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ret = blk_read(bflow->blk, start, num_blks, buf);
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if (ret != num_blks)
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return log_msg_ret("inf", -EIO);
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base = map_to_sysmem(buf) + before_base;
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setup = base + X86_SETUP_OFFSET;
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cmdline = base + CMDLINE_OFFSET;
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kern_base = base + X86_KERNEL_OFFSET;
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log_debug("base %lx setup %lx cmdline %lx kern_base %lx\n", base,
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setup, cmdline, kern_base);
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#ifdef CONFIG_X86
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const char *version;
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version = zimage_get_kernel_version(map_sysmem(setup, 0),
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map_sysmem(kern_base, 0));
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log_debug("version %s\n", version);
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if (version)
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bflow->name = strdup(version);
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#endif
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if (!bflow->name)
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bflow->name = strdup("ChromeOS");
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if (!bflow->name)
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return log_msg_ret("nam", -ENOMEM);
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bflow->os_name = strdup("ChromeOS");
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if (!bflow->os_name)
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return log_msg_ret("os", -ENOMEM);
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ret = copy_cmdline(map_sysmem(cmdline, 0), uuid, &bflow->cmdline);
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if (ret)
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return log_msg_ret("cmd", ret);
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bflow->x86_setup = map_sysmem(setup, 0);
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return 0;
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}
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/**
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* cros_read_info() - Read information and fill out the bootflow
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*
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* @bflow: Bootflow to update
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* @uuid: UUID string if supported, else NULL
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* @preamble: Kernel preamble information
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* Return: 0 if OK, -ENOMEM if out of memory, -EIO on read failure
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*/
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static int cros_read_info(struct bootflow *bflow, const char *uuid,
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const struct vb2_kernel_preamble *preamble)
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{
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struct cros_priv *priv = bflow->bootmeth_priv;
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struct udevice *blk = bflow->blk;
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struct blk_desc *desc = dev_get_uclass_plat(blk);
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ulong offset, size, before_base;
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void *buf;
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int ret;
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log_debug("Kernel preamble at %lx, version major %x, minor %x\n",
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(ulong)map_to_sysmem(preamble),
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preamble->header_version_major,
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preamble->header_version_minor);
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log_debug(" - load_address %lx, bl_addr %lx, bl_size %lx\n",
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(ulong)preamble->body_load_address,
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(ulong)preamble->bootloader_address,
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(ulong)preamble->bootloader_size);
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priv->body_size = preamble->body_signature.data_size;
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priv->body_load_address = preamble->body_load_address;
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priv->bootloader_address = preamble->bootloader_address;
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priv->bootloader_size = preamble->bootloader_size;
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log_debug("Kernel body at %lx size %lx\n", priv->body_offset,
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priv->body_size);
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/* Work out how many bytes to read before the bootloader base */
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before_base = -CMDLINE_OFFSET;
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/* Read the cmdline through to the end of the bootloader */
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size = priv->bootloader_size + before_base;
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offset = priv->body_offset +
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(priv->bootloader_address - priv->body_load_address) +
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CMDLINE_OFFSET;
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buf = malloc(size);
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if (!buf)
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return log_msg_ret("buf", -ENOMEM);
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ret = cros_read_buf(bflow, buf, size,
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priv->part_start + (offset >> desc->log2blksz),
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before_base, uuid);
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if (ret) {
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/* Clear this since the buffer is invalid */
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bflow->x86_setup = NULL;
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free(buf);
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return log_msg_ret("pro", ret);
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}
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priv->info_buf = buf;
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return 0;
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}
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static int cros_read_kernel(struct bootflow *bflow)
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{
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struct blk_desc *desc = dev_get_uclass_plat(bflow->blk);
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struct cros_priv *priv = bflow->bootmeth_priv;
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ulong base, setup;
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ulong num_blks;
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void *buf;
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int ret;
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bflow->size = priv->body_size;
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buf = memalign(SZ_1K, priv->body_size);
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if (!buf)
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return log_msg_ret("buf", -ENOMEM);
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/* Check that the header is not smaller than permitted */
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if (priv->body_offset < PROBE_SIZE)
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return log_msg_ret("san", EFAULT);
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/* Read kernel body */
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num_blks = priv->body_size >> desc->log2blksz;
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log_debug("Reading body to %lx, blk=%s, size=%lx, blocks=%lx\n",
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(ulong)map_to_sysmem(buf), bflow->blk->name, priv->body_size,
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num_blks);
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ret = blk_read(bflow->blk,
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priv->part_start + (priv->body_offset >> desc->log2blksz),
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num_blks, buf);
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if (ret != num_blks)
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return log_msg_ret("inf", -EIO);
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base = map_to_sysmem(buf) + priv->bootloader_address -
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priv->body_load_address;
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setup = base + X86_SETUP_OFFSET;
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bflow->buf = buf;
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bflow->x86_setup = map_sysmem(setup, 0);
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return 0;
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}
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static int cros_read_bootflow(struct udevice *dev, struct bootflow *bflow)
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{
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const struct vb2_kernel_preamble *preamble;
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struct disk_partition info;
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struct vb2_keyblock *hdr;
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const char *uuid = NULL;
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struct cros_priv *priv;
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int ret;
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log_debug("starting, part=%x\n", bflow->part);
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/* Check for kernel partitions */
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ret = scan_part(bflow->blk, bflow->part, &info, &hdr);
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if (ret) {
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log_debug("- scan failed: err=%d\n", ret);
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return log_msg_ret("scan", ret);
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}
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priv = malloc(sizeof(struct cros_priv));
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if (!priv) {
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free(hdr);
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return log_msg_ret("buf", -ENOMEM);
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}
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bflow->bootmeth_priv = priv;
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log_debug("Selected partition %d, header at %lx\n", bflow->part,
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(ulong)map_to_sysmem(hdr));
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/* Grab a few things from the preamble */
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preamble = (void *)hdr + hdr->keyblock_size;
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priv->body_offset = hdr->keyblock_size + preamble->preamble_size;
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priv->part_start = info.start;
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/* Now read everything we can learn about kernel */
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#if CONFIG_IS_ENABLED(PARTITION_UUIDS)
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uuid = info.uuid;
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#endif
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ret = cros_read_info(bflow, uuid, preamble);
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preamble = NULL;
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free(hdr);
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if (ret) {
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free(priv->info_buf);
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free(priv);
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return log_msg_ret("inf", ret);
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}
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bflow->size = priv->body_size;
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bflow->state = BOOTFLOWST_READY;
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return 0;
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}
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static int cros_read_file(struct udevice *dev, struct bootflow *bflow,
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const char *file_path, ulong addr, ulong *sizep)
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{
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return -ENOSYS;
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}
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#if CONFIG_IS_ENABLED(BOOSTD_FULL)
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static int cros_read_all(struct udevice *dev, struct bootflow *bflow)
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{
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int ret;
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if (bflow->buf)
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return log_msg_ret("ld", -EALREADY);
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ret = cros_read_kernel(bflow);
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if (ret)
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return log_msg_ret("rd", ret);
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return 0;
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}
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#endif /* BOOSTD_FULL */
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static int cros_boot(struct udevice *dev, struct bootflow *bflow)
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{
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int ret;
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if (!bflow->buf) {
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ret = cros_read_kernel(bflow);
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if (ret)
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return log_msg_ret("rd", ret);
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}
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if (IS_ENABLED(CONFIG_X86)) {
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ret = zboot_start(map_to_sysmem(bflow->buf), bflow->size, 0, 0,
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map_to_sysmem(bflow->x86_setup),
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bflow->cmdline);
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} else {
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ret = bootm_boot_start(map_to_sysmem(bflow->buf),
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bflow->cmdline);
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}
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return log_msg_ret("go", ret);
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}
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static int cros_bootmeth_bind(struct udevice *dev)
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{
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struct bootmeth_uc_plat *plat = dev_get_uclass_plat(dev);
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plat->desc = "ChromiumOS boot";
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plat->flags = BOOTMETHF_ANY_PART;
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return 0;
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}
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static struct bootmeth_ops cros_bootmeth_ops = {
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.check = cros_check,
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.read_bootflow = cros_read_bootflow,
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.read_file = cros_read_file,
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.boot = cros_boot,
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#if CONFIG_IS_ENABLED(BOOSTD_FULL)
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.read_all = cros_read_all,
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#endif /* BOOSTD_FULL */
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};
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static const struct udevice_id cros_bootmeth_ids[] = {
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{ .compatible = "u-boot,cros" },
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{ }
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};
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U_BOOT_DRIVER(bootmeth_cros) = {
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.name = "bootmeth_cros",
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.id = UCLASS_BOOTMETH,
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.of_match = cros_bootmeth_ids,
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.ops = &cros_bootmeth_ops,
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.bind = cros_bootmeth_bind,
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};
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