mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-08 22:24:32 +00:00
2b2a771b40
Android 10 adds support for dynamic partitions and in order to support this userspace fastboot must be used[1]. New tool fastbootd is included into recovery. Userspace fastboot works from recovery and is launched if: 1) - Dynamic partitioning is enabled 2) - Boot control block has 'boot-fastboot' value into command field The bootloader is expected to load and boot into the recovery image upon seeing boot-fastboot in the BCB command. Recovery then parses the BCB message and switches to fastbootd mode[2]. Please note that boot script is expected to handle 'boot-fastboot' command in BCB and load into recovery mode. Bootloader must support 'reboot fastboot' command which should reboot device into userspace fastboot to accomodate those changes[3]. Another command that bootloader must support[3] is 'reboot recovery'. This command should simply reboot device into recovery mode. [1] - https://source.android.com/devices/bootloader/fastbootd [2] - https://source.android.com/devices/bootloader/fastbootd#unified_fastboot_and_recovery [3] - https://source.android.com/devices/bootloader/fastbootd#modifications_to_the_bootloader Signed-off-by: Roman Kovalivskyi <roman.kovalivskyi@globallogic.com> Signed-off-by: Roman Stratiienko <r.stratiienko@gmail.com> Change-Id: I9d2bdc9a6f6f31ea98572fe155e1cc8341e9af76
322 lines
8.2 KiB
C
322 lines
8.2 KiB
C
// SPDX-License-Identifier: BSD-2-Clause
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/*
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* Copyright (C) 2016 The Android Open Source Project
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*/
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#include <common.h>
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#include <command.h>
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#include <fastboot.h>
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#include <net.h>
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#include <net/fastboot.h>
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/* Fastboot port # defined in spec */
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#define WELL_KNOWN_PORT 5554
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enum {
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FASTBOOT_ERROR = 0,
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FASTBOOT_QUERY = 1,
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FASTBOOT_INIT = 2,
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FASTBOOT_FASTBOOT = 3,
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};
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struct __packed fastboot_header {
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uchar id;
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uchar flags;
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unsigned short seq;
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};
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#define PACKET_SIZE 1024
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#define DATA_SIZE (PACKET_SIZE - sizeof(struct fastboot_header))
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/* Sequence number sent for every packet */
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static unsigned short sequence_number = 1;
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static const unsigned short packet_size = PACKET_SIZE;
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static const unsigned short udp_version = 1;
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/* Keep track of last packet for resubmission */
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static uchar last_packet[PACKET_SIZE];
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static unsigned int last_packet_len;
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static struct in_addr fastboot_remote_ip;
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/* The UDP port at their end */
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static int fastboot_remote_port;
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/* The UDP port at our end */
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static int fastboot_our_port;
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static void boot_downloaded_image(void);
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#if CONFIG_IS_ENABLED(FASTBOOT_FLASH)
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/**
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* fastboot_udp_send_info() - Send an INFO packet during long commands.
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*
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* @msg: String describing the reason for waiting
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*/
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static void fastboot_udp_send_info(const char *msg)
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{
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uchar *packet;
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uchar *packet_base;
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int len = 0;
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char response[FASTBOOT_RESPONSE_LEN] = {0};
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struct fastboot_header response_header = {
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.id = FASTBOOT_FASTBOOT,
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.flags = 0,
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.seq = htons(sequence_number)
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};
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++sequence_number;
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packet = net_tx_packet + net_eth_hdr_size() + IP_UDP_HDR_SIZE;
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packet_base = packet;
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/* Write headers */
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memcpy(packet, &response_header, sizeof(response_header));
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packet += sizeof(response_header);
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/* Write response */
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fastboot_response("INFO", response, "%s", msg);
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memcpy(packet, response, strlen(response));
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packet += strlen(response);
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len = packet - packet_base;
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/* Save packet for retransmitting */
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last_packet_len = len;
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memcpy(last_packet, packet_base, last_packet_len);
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net_send_udp_packet(net_server_ethaddr, fastboot_remote_ip,
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fastboot_remote_port, fastboot_our_port, len);
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}
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/**
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* fastboot_timed_send_info() - Send INFO packet every 30 seconds
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*
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* @msg: String describing the reason for waiting
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*
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* Send an INFO packet during long commands based on timer. An INFO packet
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* is sent if the time is 30 seconds after start. Else, noop.
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*/
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static void fastboot_timed_send_info(const char *msg)
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{
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static ulong start;
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/* Initialize timer */
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if (start == 0)
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start = get_timer(0);
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ulong time = get_timer(start);
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/* Send INFO packet to host every 30 seconds */
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if (time >= 30000) {
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start = get_timer(0);
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fastboot_udp_send_info(msg);
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}
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}
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#endif
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/**
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* fastboot_send() - Sends a packet in response to received fastboot packet
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*
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* @header: Header for response packet
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* @fastboot_data: Pointer to received fastboot data
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* @fastboot_data_len: Length of received fastboot data
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* @retransmit: Nonzero if sending last sent packet
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*/
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static void fastboot_send(struct fastboot_header header, char *fastboot_data,
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unsigned int fastboot_data_len, uchar retransmit)
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{
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uchar *packet;
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uchar *packet_base;
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int len = 0;
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const char *error_msg = "An error occurred.";
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short tmp;
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struct fastboot_header response_header = header;
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static char command[FASTBOOT_COMMAND_LEN];
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static int cmd = -1;
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static bool pending_command;
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char response[FASTBOOT_RESPONSE_LEN] = {0};
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/*
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* We will always be sending some sort of packet, so
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* cobble together the packet headers now.
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*/
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packet = net_tx_packet + net_eth_hdr_size() + IP_UDP_HDR_SIZE;
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packet_base = packet;
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/* Resend last packet */
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if (retransmit) {
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memcpy(packet, last_packet, last_packet_len);
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net_send_udp_packet(net_server_ethaddr, fastboot_remote_ip,
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fastboot_remote_port, fastboot_our_port,
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last_packet_len);
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return;
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}
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response_header.seq = htons(response_header.seq);
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memcpy(packet, &response_header, sizeof(response_header));
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packet += sizeof(response_header);
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switch (header.id) {
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case FASTBOOT_QUERY:
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tmp = htons(sequence_number);
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memcpy(packet, &tmp, sizeof(tmp));
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packet += sizeof(tmp);
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break;
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case FASTBOOT_INIT:
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tmp = htons(udp_version);
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memcpy(packet, &tmp, sizeof(tmp));
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packet += sizeof(tmp);
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tmp = htons(packet_size);
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memcpy(packet, &tmp, sizeof(tmp));
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packet += sizeof(tmp);
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break;
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case FASTBOOT_ERROR:
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memcpy(packet, error_msg, strlen(error_msg));
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packet += strlen(error_msg);
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break;
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case FASTBOOT_FASTBOOT:
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if (cmd == FASTBOOT_COMMAND_DOWNLOAD) {
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if (!fastboot_data_len && !fastboot_data_remaining()) {
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fastboot_data_complete(response);
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} else {
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fastboot_data_download(fastboot_data,
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fastboot_data_len,
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response);
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}
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} else if (!pending_command) {
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strlcpy(command, fastboot_data,
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min((size_t)fastboot_data_len + 1,
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sizeof(command)));
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pending_command = true;
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} else {
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cmd = fastboot_handle_command(command, response);
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pending_command = false;
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}
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/*
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* Sent some INFO packets, need to update sequence number in
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* header
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*/
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if (header.seq != sequence_number) {
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response_header.seq = htons(sequence_number);
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memcpy(packet_base, &response_header,
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sizeof(response_header));
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}
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/* Write response to packet */
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memcpy(packet, response, strlen(response));
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packet += strlen(response);
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break;
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default:
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pr_err("ID %d not implemented.\n", header.id);
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return;
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}
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len = packet - packet_base;
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/* Save packet for retransmitting */
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last_packet_len = len;
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memcpy(last_packet, packet_base, last_packet_len);
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net_send_udp_packet(net_server_ethaddr, fastboot_remote_ip,
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fastboot_remote_port, fastboot_our_port, len);
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/* Continue boot process after sending response */
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if (!strncmp("OKAY", response, 4)) {
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switch (cmd) {
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case FASTBOOT_COMMAND_BOOT:
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boot_downloaded_image();
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break;
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case FASTBOOT_COMMAND_CONTINUE:
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net_set_state(NETLOOP_SUCCESS);
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break;
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case FASTBOOT_COMMAND_REBOOT:
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case FASTBOOT_COMMAND_REBOOT_BOOTLOADER:
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case FASTBOOT_COMMAND_REBOOT_FASTBOOTD:
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case FASTBOOT_COMMAND_REBOOT_RECOVERY:
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do_reset(NULL, 0, 0, NULL);
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break;
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}
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}
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if (!strncmp("OKAY", response, 4) || !strncmp("FAIL", response, 4))
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cmd = -1;
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}
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/**
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* boot_downloaded_image() - Boots into downloaded image.
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*/
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static void boot_downloaded_image(void)
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{
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fastboot_boot();
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net_set_state(NETLOOP_SUCCESS);
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}
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/**
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* fastboot_handler() - Incoming UDP packet handler.
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*
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* @packet: Pointer to incoming UDP packet
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* @dport: Destination UDP port
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* @sip: Source IP address
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* @sport: Source UDP port
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* @len: Packet length
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*/
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static void fastboot_handler(uchar *packet, unsigned int dport,
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struct in_addr sip, unsigned int sport,
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unsigned int len)
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{
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struct fastboot_header header;
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char fastboot_data[DATA_SIZE] = {0};
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unsigned int fastboot_data_len = 0;
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if (dport != fastboot_our_port)
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return;
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fastboot_remote_ip = sip;
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fastboot_remote_port = sport;
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if (len < sizeof(struct fastboot_header) || len > PACKET_SIZE)
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return;
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memcpy(&header, packet, sizeof(header));
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header.flags = 0;
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header.seq = ntohs(header.seq);
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packet += sizeof(header);
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len -= sizeof(header);
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switch (header.id) {
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case FASTBOOT_QUERY:
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fastboot_send(header, fastboot_data, 0, 0);
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break;
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case FASTBOOT_INIT:
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case FASTBOOT_FASTBOOT:
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fastboot_data_len = len;
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if (len > 0)
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memcpy(fastboot_data, packet, len);
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if (header.seq == sequence_number) {
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fastboot_send(header, fastboot_data,
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fastboot_data_len, 0);
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sequence_number++;
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} else if (header.seq == sequence_number - 1) {
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/* Retransmit last sent packet */
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fastboot_send(header, fastboot_data,
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fastboot_data_len, 1);
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}
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break;
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default:
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pr_err("ID %d not implemented.\n", header.id);
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header.id = FASTBOOT_ERROR;
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fastboot_send(header, fastboot_data, 0, 0);
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break;
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}
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}
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void fastboot_start_server(void)
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{
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printf("Using %s device\n", eth_get_name());
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printf("Listening for fastboot command on %pI4\n", &net_ip);
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fastboot_our_port = WELL_KNOWN_PORT;
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#if CONFIG_IS_ENABLED(FASTBOOT_FLASH)
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fastboot_set_progress_callback(fastboot_timed_send_info);
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#endif
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net_set_udp_handler(fastboot_handler);
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/* zero out server ether in case the server ip has changed */
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memset(net_server_ethaddr, 0, 6);
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}
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