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If we do need these for managed languages, we can of course create boxed types when requried.
215 lines
5.2 KiB
C
215 lines
5.2 KiB
C
/*
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* Copyright (C) 2017-2018 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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#define G_LOG_DOMAIN "FuChunk"
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#include "config.h"
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#include <string.h>
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#include "fu-chunk.h"
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/**
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* SECTION:fu-chunk
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* @short_description: A packet of chunked data
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*
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* An object that represents a packet of data.
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*
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*/
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/**
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* fu_chunk_new: (skip):
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* @idx: the packet number
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* @page: the hardware memory page
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* @address: the address *within* the page
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* @data: the data
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* @data_sz: size of @data_sz
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*
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* Creates a new packet of chunked data.
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*
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* Return value: (transfer full): a #FuChunk
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*
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* Since: 1.1.2
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**/
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FuChunk *
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fu_chunk_new (guint32 idx,
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guint32 page,
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guint32 address,
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const guint8 *data,
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guint32 data_sz)
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{
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FuChunk *item = g_new0 (FuChunk, 1);
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item->idx = idx;
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item->page = page;
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item->address = address;
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item->data = data;
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item->data_sz = data_sz;
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return item;
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}
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/**
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* fu_chunk_to_string:
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* @item: a #FuChunk
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*
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* Converts the chunked packet to a string representation.
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*
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* Return value: (transfer full): A string
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*
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* Since: 1.1.2
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**/
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gchar *
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fu_chunk_to_string (FuChunk *item)
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{
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g_autoptr(GString) str = g_string_new (NULL);
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if (item->data != NULL) {
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for (guint32 i = 0; i < item->data_sz; i++) {
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gchar tmp = (gchar) item->data[i];
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if (tmp == 0x00)
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break;
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g_string_append_c (str, g_ascii_isalnum (tmp) ? tmp : '?');
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}
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}
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return g_strdup_printf ("#%02" G_GUINT32_FORMAT ": page:%02x "
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"addr:%04x len:%02" G_GUINT32_FORMAT " %s",
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item->idx,
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(guint) item->page,
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(guint) item->address,
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item->data_sz,
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str->str);
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}
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/**
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* fu_chunk_array_to_string:
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* @chunks: (element-type FuChunk): array of packets
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*
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* Converts all the chunked packets in an array to a string representation.
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*
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* Return value: (transfer full): A string
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*
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* Since: 1.0.1
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**/
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gchar *
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fu_chunk_array_to_string (GPtrArray *chunks)
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{
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GString *str = g_string_new (NULL);
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for (guint i = 0; i < chunks->len; i++) {
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FuChunk *item = g_ptr_array_index (chunks, i);
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g_autofree gchar *tmp = fu_chunk_to_string (item);
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g_string_append_printf (str, "%s\n", tmp);
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}
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return g_string_free (str, FALSE);
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}
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/**
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* fu_chunk_array_new: (skip):
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* @data: a linear blob of memory, or %NULL
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* @data_sz: size of @data_sz
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* @addr_start: the hardware address offset, or 0
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* @page_sz: the hardware page size, or 0
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* @packet_sz: the transfer size, or 0
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*
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* Chunks a linear blob of memory into packets, ensuring each packet does not
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* cross a package boundary and is less that a specific transfer size.
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*
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* Return value: (transfer container) (element-type FuChunk): array of packets
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*
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* Since: 1.1.2
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**/
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GPtrArray *
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fu_chunk_array_new (const guint8 *data,
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guint32 data_sz,
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guint32 addr_start,
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guint32 page_sz,
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guint32 packet_sz)
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{
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GPtrArray *segments = NULL;
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guint32 page_old = G_MAXUINT32;
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guint32 idx;
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guint32 last_flush = 0;
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g_return_val_if_fail (data_sz > 0, NULL);
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segments = g_ptr_array_new_with_free_func (g_free);
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for (idx = 1; idx < data_sz; idx++) {
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guint32 page = 0;
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if (page_sz > 0)
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page = (addr_start + idx) / page_sz;
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if (page_old == G_MAXUINT32) {
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page_old = page;
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} else if (page != page_old) {
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const guint8 *data_offset = data != NULL ? data + last_flush : 0x0;
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guint32 address_offset = addr_start + last_flush;
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if (page_sz > 0)
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address_offset %= page_sz;
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g_ptr_array_add (segments,
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fu_chunk_new (segments->len,
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page_old,
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address_offset,
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data_offset,
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idx - last_flush));
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last_flush = idx;
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page_old = page;
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continue;
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}
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if (packet_sz > 0 && idx - last_flush >= packet_sz) {
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const guint8 *data_offset = data != NULL ? data + last_flush : 0x0;
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guint32 address_offset = addr_start + last_flush;
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if (page_sz > 0)
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address_offset %= page_sz;
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g_ptr_array_add (segments,
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fu_chunk_new (segments->len,
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page,
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address_offset,
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data_offset,
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idx - last_flush));
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last_flush = idx;
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continue;
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}
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}
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if (last_flush != idx) {
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const guint8 *data_offset = data != NULL ? data + last_flush : 0x0;
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guint32 address_offset = addr_start + last_flush;
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guint32 page = 0;
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if (page_sz > 0) {
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address_offset %= page_sz;
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page = (addr_start + (idx - 1)) / page_sz;
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}
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g_ptr_array_add (segments,
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fu_chunk_new (segments->len,
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page,
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address_offset,
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data_offset,
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data_sz - last_flush));
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}
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return segments;
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}
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/**
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* fu_chunk_array_new_from_bytes: (skip):
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* @blob: a #GBytes
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* @addr_start: the hardware address offset, or 0
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* @page_sz: the hardware page size, or 0
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* @packet_sz: the transfer size, or 0
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*
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* Chunks a linear blob of memory into packets, ensuring each packet does not
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* cross a package boundary and is less that a specific transfer size.
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*
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* Return value: (transfer container) (element-type FuChunk): array of packets
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*
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* Since: 1.1.2
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**/
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GPtrArray *
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fu_chunk_array_new_from_bytes (GBytes *blob,
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guint32 addr_start,
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guint32 page_sz,
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guint32 packet_sz)
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{
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gsize sz;
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const guint8 *data = g_bytes_get_data (blob, &sz);
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return fu_chunk_array_new (data, (guint32) sz,
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addr_start, page_sz, packet_sz);
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}
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