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526 lines
15 KiB
526 lines
15 KiB
/*
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* Copyright (C) 2014 Andrew Duggan
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* Copyright (C) 2014 Synaptics Inc
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <alloca.h>
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#include <time.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <unistd.h>
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#include <string.h>
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#include <stdlib.h>
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#include <errno.h>
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#include "rmi4update.h"
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#define RMI_F34_QUERY_SIZE 7
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#define RMI_F34_HAS_NEW_REG_MAP (1 << 0)
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#define RMI_F34_IS_UNLOCKED (1 << 1)
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#define RMI_F34_HAS_CONFIG_ID (1 << 2)
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#define RMI_F34_BLOCK_SIZE_OFFSET 1
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#define RMI_F34_FW_BLOCKS_OFFSET 3
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#define RMI_F34_CONFIG_BLOCKS_OFFSET 5
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#define RMI_F34_BLOCK_SIZE_V1_OFFSET 0
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#define RMI_F34_FW_BLOCKS_V1_OFFSET 0
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#define RMI_F34_CONFIG_BLOCKS_V1_OFFSET 2
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#define RMI_F34_BLOCK_DATA_OFFSET 2
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#define RMI_F34_BLOCK_DATA_V1_OFFSET 1
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#define RMI_F34_COMMAND_MASK 0x0F
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#define RMI_F34_STATUS_MASK 0x07
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#define RMI_F34_STATUS_SHIFT 4
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#define RMI_F34_ENABLED_MASK 0x80
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#define RMI_F34_COMMAND_V1_MASK 0x3F
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#define RMI_F34_STATUS_V1_MASK 0x3F
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#define RMI_F34_ENABLED_V1_MASK 0x80
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#define RMI_F34_WRITE_FW_BLOCK 0x02
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#define RMI_F34_ERASE_ALL 0x03
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#define RMI_F34_WRITE_LOCKDOWN_BLOCK 0x04
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#define RMI_F34_WRITE_CONFIG_BLOCK 0x06
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#define RMI_F34_ENABLE_FLASH_PROG 0x0f
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#define RMI_F34_ENABLE_WAIT_MS 300
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#define RMI_F34_ERASE_WAIT_MS (5 * 1000)
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#define RMI_F34_IDLE_WAIT_MS 500
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/* Most recent device status event */
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#define RMI_F01_STATUS_CODE(status) ((status) & 0x0f)
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/* Indicates that flash programming is enabled (bootloader mode). */
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#define RMI_F01_STATUS_BOOTLOADER(status) (!!((status) & 0x40))
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/* The device has lost its configuration for some reason. */
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#define RMI_F01_STATUS_UNCONFIGURED(status) (!!((status) & 0x80))
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/*
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* Sleep mode controls power management on the device and affects all
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* functions of the device.
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*/
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#define RMI_F01_CTRL0_SLEEP_MODE_MASK 0x03
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#define RMI_SLEEP_MODE_NORMAL 0x00
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#define RMI_SLEEP_MODE_SENSOR_SLEEP 0x01
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#define RMI_SLEEP_MODE_RESERVED0 0x02
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#define RMI_SLEEP_MODE_RESERVED1 0x03
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/*
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* This bit disables whatever sleep mode may be selected by the sleep_mode
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* field and forces the device to run at full power without sleeping.
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*/
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#define RMI_F01_CRTL0_NOSLEEP_BIT (1 << 2)
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int RMI4Update::UpdateFirmware(bool force, bool performLockdown)
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{
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struct timespec start;
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struct timespec end;
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long long int duration_us = 0;
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int rc;
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const unsigned char eraseAll = RMI_F34_ERASE_ALL;
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rc = FindUpdateFunctions();
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if (rc != UPDATE_SUCCESS)
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return rc;
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rc = m_device.QueryBasicProperties();
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if (rc < 0)
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return UPDATE_FAIL_QUERY_BASIC_PROPERTIES;
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if (!force && m_firmwareImage.HasIO()) {
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if (m_firmwareImage.GetFirmwareID() <= m_device.GetFirmwareID()) {
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fprintf(stderr, "Firmware image (%ld) is not newer then the firmware on the device (%ld)\n",
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m_firmwareImage.GetFirmwareID(), m_device.GetFirmwareID());
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rc = UPDATE_FAIL_FIRMWARE_IMAGE_IS_OLDER;
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return rc;
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}
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}
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fprintf(stdout, "Device Properties:\n");
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m_device.PrintProperties();
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rc = DisableNonessentialInterupts();
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if (rc != UPDATE_SUCCESS)
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return rc;
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rc = ReadF34Queries();
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if (rc != UPDATE_SUCCESS)
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return rc;
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rc = m_firmwareImage.VerifyImageMatchesDevice(GetFirmwareSize(), GetConfigSize());
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if (rc != UPDATE_SUCCESS)
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return rc;
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rc = EnterFlashProgramming();
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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if (performLockdown && m_unlocked) {
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if (m_firmwareImage.GetLockdownData()) {
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fprintf(stdout, "Writing lockdown...\n");
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clock_gettime(CLOCK_MONOTONIC, &start);
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rc = WriteBlocks(m_firmwareImage.GetLockdownData(),
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m_firmwareImage.GetLockdownSize() / 0x10,
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RMI_F34_WRITE_LOCKDOWN_BLOCK);
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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clock_gettime(CLOCK_MONOTONIC, &end);
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duration_us = diff_time(&start, &end);
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fprintf(stdout, "Done writing lockdown, time: %lld us.\n", duration_us);
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}
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rc = EnterFlashProgramming();
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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}
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rc = WriteBootloaderID();
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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fprintf(stdout, "Erasing FW...\n");
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clock_gettime(CLOCK_MONOTONIC, &start);
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rc = m_device.Write(m_f34StatusAddr, &eraseAll, 1);
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if (rc != 1) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(UPDATE_FAIL_ERASE_ALL));
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rc = UPDATE_FAIL_ERASE_ALL;
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goto reset;
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}
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rc = WaitForIdle(RMI_F34_ERASE_WAIT_MS);
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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clock_gettime(CLOCK_MONOTONIC, &end);
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duration_us = diff_time(&start, &end);
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fprintf(stdout, "Erase complete, time: %lld us.\n", duration_us);
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if (m_firmwareImage.GetFirmwareData()) {
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fprintf(stdout, "Writing firmware...\n");
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clock_gettime(CLOCK_MONOTONIC, &start);
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rc = WriteBlocks(m_firmwareImage.GetFirmwareData(), m_fwBlockCount,
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RMI_F34_WRITE_FW_BLOCK);
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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clock_gettime(CLOCK_MONOTONIC, &end);
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duration_us = diff_time(&start, &end);
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fprintf(stdout, "Done writing FW, time: %lld us.\n", duration_us);
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}
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if (m_firmwareImage.GetConfigData()) {
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fprintf(stdout, "Writing configuration...\n");
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clock_gettime(CLOCK_MONOTONIC, &start);
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rc = WriteBlocks(m_firmwareImage.GetConfigData(), m_configBlockCount,
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RMI_F34_WRITE_CONFIG_BLOCK);
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if (rc != UPDATE_SUCCESS) {
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fprintf(stderr, "%s: %s\n", __func__, update_err_to_string(rc));
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goto reset;
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}
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clock_gettime(CLOCK_MONOTONIC, &end);
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duration_us = diff_time(&start, &end);
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fprintf(stdout, "Done writing config, time: %lld us.\n", duration_us);
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}
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reset:
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m_device.Reset();
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m_device.RebindDriver();
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return rc;
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}
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int RMI4Update::DisableNonessentialInterupts()
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{
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int rc;
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unsigned char interruptEnabeMask = m_f34.GetInterruptMask() | m_f01.GetInterruptMask();
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rc = m_device.Write(m_f01.GetControlBase() + 1, &interruptEnabeMask, 1);
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if (rc != 1)
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return rc;
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return UPDATE_SUCCESS;
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}
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int RMI4Update::FindUpdateFunctions()
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{
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if (0 > m_device.ScanPDT())
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return UPDATE_FAIL_SCAN_PDT;
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if (!m_device.GetFunction(m_f01, 0x01))
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return UPDATE_FAIL_NO_FUNCTION_01;
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if (!m_device.GetFunction(m_f34, 0x34))
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return UPDATE_FAIL_NO_FUNCTION_34;
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return UPDATE_SUCCESS;
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}
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int RMI4Update::ReadF34Queries()
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{
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int rc;
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unsigned char idStr[3];
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unsigned char buf[8];
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unsigned short queryAddr = m_f34.GetQueryBase();
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unsigned short f34Version = m_f34.GetFunctionVersion();
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unsigned short querySize;
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if (f34Version == 0x1)
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querySize = 8;
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else
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querySize = 2;
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rc = m_device.Read(queryAddr, m_bootloaderID, RMI_BOOTLOADER_ID_SIZE);
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if (rc != RMI_BOOTLOADER_ID_SIZE)
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return UPDATE_FAIL_READ_BOOTLOADER_ID;
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if (f34Version == 0x1)
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++queryAddr;
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else
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queryAddr += querySize;
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if (f34Version == 0x1) {
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rc = m_device.Read(queryAddr, buf, 1);
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if (rc != 1)
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return UPDATE_FAIL_READ_F34_QUERIES;
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m_hasNewRegmap = buf[0] & RMI_F34_HAS_NEW_REG_MAP;
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m_unlocked = buf[0] & RMI_F34_IS_UNLOCKED;;
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m_hasConfigID = buf[0] & RMI_F34_HAS_CONFIG_ID;
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++queryAddr;
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rc = m_device.Read(queryAddr, buf, 2);
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if (rc != 2)
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return UPDATE_FAIL_READ_F34_QUERIES;
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m_blockSize = extract_short(buf + RMI_F34_BLOCK_SIZE_V1_OFFSET);
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++queryAddr;
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rc = m_device.Read(queryAddr, buf, 8);
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if (rc != 8)
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return UPDATE_FAIL_READ_F34_QUERIES;
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m_fwBlockCount = extract_short(buf + RMI_F34_FW_BLOCKS_V1_OFFSET);
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m_configBlockCount = extract_short(buf + RMI_F34_CONFIG_BLOCKS_V1_OFFSET);
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} else {
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rc = m_device.Read(queryAddr, buf, RMI_F34_QUERY_SIZE);
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if (rc != RMI_F34_QUERY_SIZE)
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return UPDATE_FAIL_READ_F34_QUERIES;
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m_hasNewRegmap = buf[0] & RMI_F34_HAS_NEW_REG_MAP;
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m_unlocked = buf[0] & RMI_F34_IS_UNLOCKED;;
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m_hasConfigID = buf[0] & RMI_F34_HAS_CONFIG_ID;
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m_blockSize = extract_short(buf + RMI_F34_BLOCK_SIZE_OFFSET);
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m_fwBlockCount = extract_short(buf + RMI_F34_FW_BLOCKS_OFFSET);
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m_configBlockCount = extract_short(buf + RMI_F34_CONFIG_BLOCKS_OFFSET);
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}
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idStr[0] = m_bootloaderID[0];
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idStr[1] = m_bootloaderID[1];
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idStr[2] = 0;
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fprintf(stdout, "F34 bootloader id: %s (%#04x %#04x)\n", idStr, m_bootloaderID[0],
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m_bootloaderID[1]);
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fprintf(stdout, "F34 has config id: %d\n", m_hasConfigID);
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fprintf(stdout, "F34 unlocked: %d\n", m_unlocked);
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fprintf(stdout, "F34 new reg map: %d\n", m_hasNewRegmap);
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fprintf(stdout, "F34 block size: %d\n", m_blockSize);
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fprintf(stdout, "F34 fw blocks: %d\n", m_fwBlockCount);
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fprintf(stdout, "F34 config blocks: %d\n", m_configBlockCount);
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fprintf(stdout, "\n");
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if (f34Version == 0x1)
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m_f34StatusAddr = m_f34.GetDataBase() + 2;
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else
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m_f34StatusAddr = m_f34.GetDataBase() + RMI_F34_BLOCK_DATA_OFFSET + m_blockSize;
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return UPDATE_SUCCESS;
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}
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int RMI4Update::ReadF34Controls()
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{
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int rc;
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unsigned char buf[2];
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if (m_f34.GetFunctionVersion() == 0x1) {
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rc = m_device.Read(m_f34StatusAddr, buf, 2);
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if (rc != 2)
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return UPDATE_FAIL_READ_F34_CONTROLS;
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m_f34Command = buf[0] & RMI_F34_COMMAND_V1_MASK;
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m_f34Status = buf[1] & RMI_F34_STATUS_V1_MASK;
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m_programEnabled = !!(buf[1] & RMI_F34_ENABLED_MASK);
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} else {
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rc = m_device.Read(m_f34StatusAddr, buf, 1);
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if (rc != 1)
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return UPDATE_FAIL_READ_F34_CONTROLS;
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m_f34Command = buf[0] & RMI_F34_COMMAND_MASK;
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m_f34Status = (buf[0] >> RMI_F34_STATUS_SHIFT) & RMI_F34_STATUS_MASK;
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m_programEnabled = !!(buf[0] & RMI_F34_ENABLED_MASK);
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}
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return UPDATE_SUCCESS;
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}
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int RMI4Update::WriteBootloaderID()
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{
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int rc;
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int blockDataOffset = RMI_F34_BLOCK_DATA_OFFSET;
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if (m_f34.GetFunctionVersion() == 0x1)
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blockDataOffset = RMI_F34_BLOCK_DATA_V1_OFFSET;
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rc = m_device.Write(m_f34.GetDataBase() + blockDataOffset,
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m_bootloaderID, RMI_BOOTLOADER_ID_SIZE);
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if (rc != RMI_BOOTLOADER_ID_SIZE)
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return UPDATE_FAIL_WRITE_BOOTLOADER_ID;
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return UPDATE_SUCCESS;
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}
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int RMI4Update::EnterFlashProgramming()
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{
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int rc;
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unsigned char f01Control_0;
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const unsigned char enableProg = RMI_F34_ENABLE_FLASH_PROG;
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rc = WriteBootloaderID();
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if (rc != UPDATE_SUCCESS)
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return rc;
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fprintf(stdout, "Enabling flash programming.\n");
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rc = m_device.Write(m_f34StatusAddr, &enableProg, 1);
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if (rc != 1)
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return UPDATE_FAIL_ENABLE_FLASH_PROGRAMMING;
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Sleep(RMI_F34_ENABLE_WAIT_MS);
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m_device.RebindDriver();
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rc = WaitForIdle(0);
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if (rc != UPDATE_SUCCESS)
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return UPDATE_FAIL_NOT_IN_IDLE_STATE;
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if (!m_programEnabled)
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return UPDATE_FAIL_PROGRAMMING_NOT_ENABLED;
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fprintf(stdout, "Programming is enabled.\n");
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rc = FindUpdateFunctions();
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if (rc != UPDATE_SUCCESS)
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return rc;
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rc = m_device.Read(m_f01.GetDataBase(), &m_deviceStatus, 1);
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if (rc != 1)
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return UPDATE_FAIL_READ_DEVICE_STATUS;
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if (!RMI_F01_STATUS_BOOTLOADER(m_deviceStatus))
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return UPDATE_FAIL_DEVICE_NOT_IN_BOOTLOADER;
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rc = ReadF34Queries();
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if (rc != UPDATE_SUCCESS)
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return rc;
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rc = m_device.Read(m_f01.GetControlBase(), &f01Control_0, 1);
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if (rc != 1)
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return UPDATE_FAIL_READ_F01_CONTROL_0;
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f01Control_0 |= RMI_F01_CRTL0_NOSLEEP_BIT;
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f01Control_0 = (f01Control_0 & ~RMI_F01_CTRL0_SLEEP_MODE_MASK) | RMI_SLEEP_MODE_NORMAL;
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rc = m_device.Write(m_f01.GetControlBase(), &f01Control_0, 1);
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if (rc != 1)
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return UPDATE_FAIL_WRITE_F01_CONTROL_0;
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return UPDATE_SUCCESS;
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}
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int RMI4Update::WriteBlocks(unsigned char *block, unsigned short count, unsigned char cmd)
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{
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int blockNum;
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unsigned char zeros[] = { 0, 0 };
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int rc;
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unsigned short addr;
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unsigned char *blockWithCmd = (unsigned char *)alloca(m_blockSize + 1);
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if (m_f34.GetFunctionVersion() == 0x1)
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addr = m_f34.GetDataBase() + RMI_F34_BLOCK_DATA_V1_OFFSET;
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else
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addr = m_f34.GetDataBase() + RMI_F34_BLOCK_DATA_OFFSET;
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rc = m_device.Write(m_f34.GetDataBase(), zeros, 2);
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if (rc != 2)
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return UPDATE_FAIL_WRITE_INITIAL_ZEROS;
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for (blockNum = 0; blockNum < count; ++blockNum) {
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if (m_writeBlockWithCmd) {
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memcpy(blockWithCmd, block, m_blockSize);
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blockWithCmd[m_blockSize] = cmd;
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rc = m_device.Write(addr, blockWithCmd, m_blockSize + 1);
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if (rc != m_blockSize + 1) {
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fprintf(stderr, "failed to write block %d\n", blockNum);
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return UPDATE_FAIL_WRITE_BLOCK;
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}
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} else {
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rc = m_device.Write(addr, block, m_blockSize);
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if (rc != m_blockSize) {
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fprintf(stderr, "failed to write block %d\n", blockNum);
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return UPDATE_FAIL_WRITE_BLOCK;
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}
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rc = m_device.Write(m_f34StatusAddr, &cmd, 1);
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if (rc != 1) {
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fprintf(stderr, "failed to write command for block %d\n", blockNum);
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return UPDATE_FAIL_WRITE_FLASH_COMMAND;
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}
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}
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rc = WaitForIdle(RMI_F34_IDLE_WAIT_MS, !m_writeBlockWithCmd);
|
|
if (rc != UPDATE_SUCCESS) {
|
|
fprintf(stderr, "failed to go into idle after writing block %d\n", blockNum);
|
|
return UPDATE_FAIL_NOT_IN_IDLE_STATE;
|
|
}
|
|
|
|
block += m_blockSize;
|
|
}
|
|
|
|
return UPDATE_SUCCESS;
|
|
}
|
|
|
|
/*
|
|
* This is a limited implementation of WaitForIdle which assumes WaitForAttention is supported
|
|
* this will be true for HID, but other protocols will need to revert polling. Polling
|
|
* is not implemented yet.
|
|
*/
|
|
int RMI4Update::WaitForIdle(int timeout_ms, bool readF34OnSucess)
|
|
{
|
|
int rc = 0;
|
|
struct timeval tv;
|
|
|
|
if (timeout_ms > 0) {
|
|
tv.tv_sec = timeout_ms / 1000;
|
|
tv.tv_usec = (timeout_ms % 1000) * 1000;
|
|
|
|
rc = m_device.WaitForAttention(&tv, m_f34.GetInterruptMask());
|
|
if (rc == -ETIMEDOUT)
|
|
/*
|
|
* If for some reason we are not getting attention reports for HID devices
|
|
* then we can still continue after the timeout and read F34 status
|
|
* but if we have to wait for the timeout to ellapse everytime then this
|
|
* will be slow. If this message shows up a lot then something is wrong
|
|
* with receiving attention reports and that should be fixed.
|
|
*/
|
|
fprintf(stderr, "Timed out waiting for attn report\n");
|
|
}
|
|
|
|
if (rc <= 0 || readF34OnSucess) {
|
|
rc = ReadF34Controls();
|
|
if (rc != UPDATE_SUCCESS)
|
|
return rc;
|
|
|
|
if (!m_f34Status && !m_f34Command) {
|
|
if (!m_programEnabled) {
|
|
fprintf(stderr, "Bootloader is idle but program_enabled bit isn't set.\n");
|
|
return UPDATE_FAIL_PROGRAMMING_NOT_ENABLED;
|
|
} else {
|
|
return UPDATE_SUCCESS;
|
|
}
|
|
}
|
|
|
|
fprintf(stderr, "ERROR: Waiting for idle status.\n");
|
|
fprintf(stderr, "Command: %#04x\n", m_f34Command);
|
|
fprintf(stderr, "Status: %#04x\n", m_f34Status);
|
|
fprintf(stderr, "Enabled: %d\n", m_programEnabled);
|
|
fprintf(stderr, "Idle: %d\n", !m_f34Command && !m_f34Status);
|
|
|
|
return UPDATE_FAIL_NOT_IN_IDLE_STATE;
|
|
}
|
|
|
|
return UPDATE_SUCCESS;
|
|
}
|