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Finish off the implementation so it is possible to boot an EFI app over a network. Signed-off-by: Simon Glass <sjg@chromium.org>
333 lines
8 KiB
C
333 lines
8 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Bootmethod for distro boot via EFI
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*
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* Copyright 2021 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 <bootdev.h>
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#include <bootflow.h>
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#include <bootmeth.h>
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#include <command.h>
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#include <dm.h>
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#include <efi.h>
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#include <efi_loader.h>
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#include <fs.h>
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#include <malloc.h>
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#include <mapmem.h>
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#include <mmc.h>
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#include <net.h>
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#include <pxe_utils.h>
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#include <linux/sizes.h>
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#define EFI_DIRNAME "/EFI/BOOT/"
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static int get_efi_pxe_vci(char *str, int max_len)
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{
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int ret;
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ret = efi_get_pxe_arch();
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if (ret < 0)
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return ret;
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snprintf(str, max_len, "PXEClient:Arch:%05x:UNDI:003000", ret);
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return 0;
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}
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/**
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* bootmeth_uses_network() - check if the media device is Ethernet
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*
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* @bflow: Bootflow to check
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* Returns: true if the media device is Ethernet, else false
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*/
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static bool bootmeth_uses_network(struct bootflow *bflow)
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{
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const struct udevice *media = dev_get_parent(bflow->dev);
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return IS_ENABLED(CONFIG_CMD_DHCP) &&
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device_get_uclass_id(media) == UCLASS_ETH;
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}
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static int efiload_read_file(struct bootflow *bflow, ulong addr)
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{
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struct blk_desc *desc = NULL;
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ulong size;
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int ret;
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if (bflow->blk)
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desc = dev_get_uclass_plat(bflow->blk);
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size = SZ_1G;
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ret = bootmeth_common_read_file(bflow->method, bflow, bflow->fname,
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addr, BFI_EFI, &size);
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if (ret)
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return log_msg_ret("rdf", ret);
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bflow->buf = map_sysmem(addr, bflow->size);
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return 0;
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}
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static int distro_efi_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) && bootflow_iter_check_net(iter))
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return log_msg_ret("blk", -ENOTSUPP);
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/* This works on block devices and network devices */
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if (iter->method_flags & BOOTFLOW_METHF_PXE_ONLY)
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return log_msg_ret("pxe", -ENOTSUPP);
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return 0;
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}
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/*
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* distro_efi_try_bootflow_files() - Check that files are present
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*
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* This reads any FDT file and checks whether the bootflow file is present, for
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* later reading. We avoid reading the bootflow now, since it is likely large,
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* it may take a long time and we want to avoid needing to allocate memory for
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* it
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*
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* @dev: bootmeth device to use
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* @bflow: bootflow to update
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*/
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static int distro_efi_try_bootflow_files(struct udevice *dev,
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struct bootflow *bflow)
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{
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struct blk_desc *desc = NULL;
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ulong fdt_addr, size;
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char fname[256];
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int ret, seq;
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/* We require a partition table */
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if (!bflow->part) {
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log_debug("no partitions\n");
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return -ENOENT;
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}
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strcpy(fname, EFI_DIRNAME);
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strcat(fname, efi_get_basename());
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if (bflow->blk)
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desc = dev_get_uclass_plat(bflow->blk);
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ret = bootmeth_try_file(bflow, desc, NULL, fname);
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if (ret) {
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log_debug("File '%s' not found\n", fname);
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return log_msg_ret("try", ret);
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}
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/* Since we can access the file, let's call it ready */
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bflow->state = BOOTFLOWST_READY;
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fdt_addr = env_get_hex("fdt_addr_r", 0);
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/* try the various available names */
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ret = -ENOENT;
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*fname = '\0';
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for (seq = 0; ret == -ENOENT; seq++) {
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ret = efi_get_distro_fdt_name(fname, sizeof(fname), seq);
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if (ret == -EALREADY)
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bflow->flags = BOOTFLOWF_USE_PRIOR_FDT;
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if (!ret) {
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/* Limit FDT files to 4MB */
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size = SZ_4M;
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ret = bootmeth_common_read_file(dev, bflow, fname,
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fdt_addr, (enum bootflow_img_t)IH_TYPE_FLATDT,
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&size);
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}
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}
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if (*fname) {
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bflow->fdt_fname = strdup(fname);
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if (!bflow->fdt_fname)
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return log_msg_ret("fil", -ENOMEM);
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}
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if (!ret) {
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bflow->fdt_size = size;
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bflow->fdt_addr = fdt_addr;
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/*
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* TODO: Apply extension overlay
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*
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* Here we need to load and apply the extension overlay. This is
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* not implemented. See do_extension_apply(). The extension
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* stuff needs an implementation in boot/extension.c so it is
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* separate from the command code. Really the extension stuff
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* should use the device tree and a uclass / driver interface
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* rather than implementing its own list
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*/
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} else {
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log_debug("No device tree available\n");
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bflow->flags |= BOOTFLOWF_USE_BUILTIN_FDT;
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}
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return 0;
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}
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static int distro_efi_read_bootflow_net(struct bootflow *bflow)
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{
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char file_addr[17], fname[256];
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char *tftp_argv[] = {"tftp", file_addr, fname, NULL};
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struct cmd_tbl cmdtp = {}; /* dummy */
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const char *addr_str, *fdt_addr_str, *bootfile_name;
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int ret, arch, size;
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ulong addr, fdt_addr;
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char str[36];
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ret = get_efi_pxe_vci(str, sizeof(str));
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if (ret)
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return log_msg_ret("vci", ret);
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ret = efi_get_pxe_arch();
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if (ret < 0)
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return log_msg_ret("arc", ret);
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arch = ret;
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ret = env_set("bootp_vci", str);
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if (ret)
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return log_msg_ret("vcs", ret);
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ret = env_set_hex("bootp_arch", arch);
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if (ret)
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return log_msg_ret("ars", ret);
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/* figure out the load address */
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addr_str = env_get("kernel_addr_r");
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addr = addr_str ? hextoul(addr_str, NULL) : image_load_addr;
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/* clear any previous bootfile */
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env_set("bootfile", NULL);
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/* read the kernel */
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ret = dhcp_run(addr, NULL, true);
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if (ret)
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return log_msg_ret("dhc", ret);
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size = env_get_hex("filesize", -1);
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if (size <= 0)
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return log_msg_ret("sz", -EINVAL);
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bflow->size = size;
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bflow->buf = map_sysmem(addr, size);
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/* bootfile should be setup by dhcp */
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bootfile_name = env_get("bootfile");
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if (!bootfile_name)
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return log_msg_ret("bootfile_name", ret);
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bflow->fname = strdup(bootfile_name);
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if (!bflow->fname)
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return log_msg_ret("fi0", -ENOMEM);
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/* read the DT file also */
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fdt_addr_str = env_get("fdt_addr_r");
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if (!fdt_addr_str)
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return log_msg_ret("fdt", -EINVAL);
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fdt_addr = hextoul(fdt_addr_str, NULL);
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sprintf(file_addr, "%lx", fdt_addr);
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/* We only allow the first prefix with PXE */
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ret = efi_get_distro_fdt_name(fname, sizeof(fname), 0);
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if (ret)
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return log_msg_ret("nam", ret);
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bflow->fdt_fname = strdup(fname);
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if (!bflow->fdt_fname)
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return log_msg_ret("fil", -ENOMEM);
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if (!do_tftpb(&cmdtp, 0, 3, tftp_argv)) {
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bflow->fdt_size = env_get_hex("filesize", 0);
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bflow->fdt_addr = fdt_addr;
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} else {
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log_debug("No device tree available\n");
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bflow->flags |= BOOTFLOWF_USE_BUILTIN_FDT;
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}
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bflow->state = BOOTFLOWST_READY;
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return 0;
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}
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static int distro_efi_read_bootflow(struct udevice *dev, struct bootflow *bflow)
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{
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int ret;
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log_debug("dev='%s', part=%d\n", bflow->dev->name, bflow->part);
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/*
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* bootmeth_efi doesn't allocate any buffer neither for blk nor net device
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* set flag to avoid freeing static buffer.
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*/
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bflow->flags |= BOOTFLOWF_STATIC_BUF;
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if (bootmeth_uses_network(bflow)) {
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/* we only support reading from one device, so ignore 'dev' */
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ret = distro_efi_read_bootflow_net(bflow);
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if (ret)
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return log_msg_ret("net", ret);
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} else {
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ret = distro_efi_try_bootflow_files(dev, bflow);
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if (ret)
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return log_msg_ret("blk", ret);
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}
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return 0;
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}
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static int distro_efi_boot(struct udevice *dev, struct bootflow *bflow)
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{
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ulong kernel, fdt;
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int ret;
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log_debug("distro EFI boot\n");
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kernel = env_get_hex("kernel_addr_r", 0);
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if (!bootmeth_uses_network(bflow)) {
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ret = efiload_read_file(bflow, kernel);
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if (ret)
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return log_msg_ret("read", ret);
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/*
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* use the provided device tree if not using the built-in fdt
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*/
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if (bflow->flags & ~BOOTFLOWF_USE_BUILTIN_FDT)
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fdt = bflow->fdt_addr;
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}
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if (efi_bootflow_run(bflow))
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return log_msg_ret("run", -EINVAL);
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return 0;
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}
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static int distro_bootmeth_efi_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 = IS_ENABLED(CONFIG_BOOTSTD_FULL) ?
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"EFI boot from an .efi file" : "EFI";
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return 0;
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}
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static struct bootmeth_ops distro_efi_bootmeth_ops = {
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.check = distro_efi_check,
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.read_bootflow = distro_efi_read_bootflow,
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.read_file = bootmeth_common_read_file,
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.boot = distro_efi_boot,
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};
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static const struct udevice_id distro_efi_bootmeth_ids[] = {
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{ .compatible = "u-boot,distro-efi" },
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{ }
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};
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/* Put a number before 'efi' to provide a default ordering */
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U_BOOT_DRIVER(bootmeth_4efi) = {
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.name = "bootmeth_efi",
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.id = UCLASS_BOOTMETH,
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.of_match = distro_efi_bootmeth_ids,
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.ops = &distro_efi_bootmeth_ops,
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.bind = distro_bootmeth_efi_bind,
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};
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