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We don't support any hardware that actually uses this proposed standard, and nowadays there is much better public-key encryption people can easily use.
159 lines
3.8 KiB
C
159 lines
3.8 KiB
C
/*
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* Copyright (C) 2015 Richard Hughes <richard@hughsie.com>
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*
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* SPDX-License-Identifier: LGPL-2.1+
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*/
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/**
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* SECTION:dfu-common
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* @short_description: Common functions for DFU
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*
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* These helper objects allow converting from enum values to strings.
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*/
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#include "config.h"
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#include <string.h>
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#include "dfu-common.h"
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/**
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* dfu_state_to_string:
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* @state: a #DfuState, e.g. %DFU_STATE_DFU_MANIFEST
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*
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* Converts an enumerated value to a string.
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*
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* Return value: a string
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**/
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const gchar *
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dfu_state_to_string (DfuState state)
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{
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if (state == DFU_STATE_APP_IDLE)
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return "appIDLE";
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if (state == DFU_STATE_APP_DETACH)
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return "appDETACH";
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if (state == DFU_STATE_DFU_IDLE)
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return "dfuIDLE";
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if (state == DFU_STATE_DFU_DNLOAD_SYNC)
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return "dfuDNLOAD-SYNC";
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if (state == DFU_STATE_DFU_DNBUSY)
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return "dfuDNBUSY";
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if (state == DFU_STATE_DFU_DNLOAD_IDLE)
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return "dfuDNLOAD-IDLE";
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if (state == DFU_STATE_DFU_MANIFEST_SYNC)
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return "dfuMANIFEST-SYNC";
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if (state == DFU_STATE_DFU_MANIFEST)
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return "dfuMANIFEST";
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if (state == DFU_STATE_DFU_MANIFEST_WAIT_RESET)
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return "dfuMANIFEST-WAIT-RESET";
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if (state == DFU_STATE_DFU_UPLOAD_IDLE)
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return "dfuUPLOAD-IDLE";
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if (state == DFU_STATE_DFU_ERROR)
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return "dfuERROR";
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return NULL;
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}
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/**
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* dfu_status_to_string:
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* @status: a #DfuStatus, e.g. %DFU_STATUS_ERR_ERASE
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*
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* Converts an enumerated value to a string.
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*
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* Return value: a string
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**/
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const gchar *
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dfu_status_to_string (DfuStatus status)
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{
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if (status == DFU_STATUS_OK)
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return "OK";
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if (status == DFU_STATUS_ERR_TARGET)
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return "errTARGET";
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if (status == DFU_STATUS_ERR_FILE)
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return "errFILE";
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if (status == DFU_STATUS_ERR_WRITE)
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return "errwrite";
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if (status == DFU_STATUS_ERR_ERASE)
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return "errERASE";
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if (status == DFU_STATUS_ERR_CHECK_ERASED)
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return "errCHECK_ERASED";
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if (status == DFU_STATUS_ERR_PROG)
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return "errPROG";
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if (status == DFU_STATUS_ERR_VERIFY)
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return "errVERIFY";
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if (status == DFU_STATUS_ERR_ADDRESS)
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return "errADDRESS";
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if (status == DFU_STATUS_ERR_NOTDONE)
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return "errNOTDONE";
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if (status == DFU_STATUS_ERR_FIRMWARE)
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return "errFIRMWARE";
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if (status == DFU_STATUS_ERR_VENDOR)
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return "errVENDOR";
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if (status == DFU_STATUS_ERR_USBR)
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return "errUSBR";
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if (status == DFU_STATUS_ERR_POR)
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return "errPOR";
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if (status == DFU_STATUS_ERR_UNKNOWN)
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return "errUNKNOWN";
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if (status == DFU_STATUS_ERR_STALLDPKT)
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return "errSTALLDPKT";
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return NULL;
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}
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/**
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* dfu_version_to_string:
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* @version: a #DfuVersion, e.g. %DFU_VERSION_DFU_1_1
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*
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* Converts an enumerated value to a string.
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*
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* Return value: a string
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**/
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const gchar *
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dfu_version_to_string (DfuVersion version)
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{
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if (version == DFU_VERSION_DFU_1_0)
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return "1.0";
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if (version == DFU_VERSION_DFU_1_1)
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return "1.1";
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if (version == DFU_VERSION_DFUSE)
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return "DfuSe";
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if (version == DFU_VERSION_ATMEL_AVR)
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return "AtmelAVR";
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return NULL;
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}
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/**
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* dfu_utils_bytes_join_array:
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* @chunks: (element-kind GBytes): bytes
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*
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* Creates a monolithic block of memory from an array of #GBytes.
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*
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* Return value: (transfer full): a new GBytes
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**/
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GBytes *
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dfu_utils_bytes_join_array (GPtrArray *chunks)
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{
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gsize total_size = 0;
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guint32 offset = 0;
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guint8 *buffer;
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/* get the size of all the chunks */
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for (guint i = 0; i < chunks->len; i++) {
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GBytes *chunk_tmp = g_ptr_array_index (chunks, i);
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total_size += g_bytes_get_size (chunk_tmp);
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}
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/* copy them into a buffer */
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buffer = g_malloc0 (total_size);
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for (guint i = 0; i < chunks->len; i++) {
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const guint8 *chunk_data;
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gsize chunk_size = 0;
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GBytes *chunk_tmp = g_ptr_array_index (chunks, i);
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chunk_data = g_bytes_get_data (chunk_tmp, &chunk_size);
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if (chunk_size == 0)
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continue;
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memcpy (buffer + offset, chunk_data, chunk_size);
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offset += chunk_size;
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}
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return g_bytes_new_take (buffer, total_size);
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}
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