mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-12-26 13:03:40 +00:00
17873341af
An assignment (of a value to itself) was left over (after removing and addition from the line) from moving the common padding code into rkcommon_vrec_header. This change removes this to avoid a spurious warning in static code analysis (i.e. Coverity). Signed-off-by: Philipp Tomsich <philipp.tomsich@theobroma-systems.com> Reported-by: Coverity (CID: 161418) Reviewed-by: Tom Rini <trini@konsulko.com>
230 lines
5.8 KiB
C
230 lines
5.8 KiB
C
/*
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* (C) Copyright 2015 Google, Inc
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* Written by Simon Glass <sjg@chromium.org>
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*
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* SPDX-License-Identifier: GPL-2.0+
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*
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* Helper functions for Rockchip images
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*/
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#include "imagetool.h"
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#include <image.h>
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#include <rc4.h>
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#include "mkimage.h"
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#include "rkcommon.h"
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enum {
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RK_SIGNATURE = 0x0ff0aa55,
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};
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/**
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* struct header0_info - header block for boot ROM
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*
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* This is stored at SD card block 64 (where each block is 512 bytes, or at
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* the start of SPI flash. It is encoded with RC4.
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*
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* @signature: Signature (must be RKSD_SIGNATURE)
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* @disable_rc4: 0 to use rc4 for boot image, 1 to use plain binary
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* @init_offset: Offset in blocks of the SPL code from this header
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* block. E.g. 4 means 2KB after the start of this header.
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* Other fields are not used by U-Boot
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*/
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struct header0_info {
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uint32_t signature;
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uint8_t reserved[4];
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uint32_t disable_rc4;
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uint16_t init_offset;
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uint8_t reserved1[492];
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uint16_t init_size;
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uint16_t init_boot_size;
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uint8_t reserved2[2];
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};
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/**
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* struct header1_info
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*/
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struct header1_info {
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uint32_t magic;
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};
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/**
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* struct spl_info - spl info for each chip
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*
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* @imagename: Image name(passed by "mkimage -n")
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* @spl_hdr: Boot ROM requires a 4-bytes spl header
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* @spl_size: Spl size(include extra 4-bytes spl header)
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* @spl_rc4: RC4 encode the SPL binary (same key as header)
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* @spl_boot0: A new-style (ARM_SOC_BOOT0_HOOK) image that should
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* have the boot magic (e.g. 'RK33') written to its first
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* word.
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*/
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struct spl_info {
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const char *imagename;
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const char *spl_hdr;
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const uint32_t spl_size;
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const bool spl_rc4;
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const bool spl_boot0;
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};
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static struct spl_info spl_infos[] = {
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{ "rk3036", "RK30", 0x1000, false, false },
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{ "rk3188", "RK31", 0x8000 - 0x800, true, false },
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{ "rk3288", "RK32", 0x8000, false, false },
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{ "rk3399", "RK33", 0x20000, false, true },
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};
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static unsigned char rc4_key[16] = {
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124, 78, 3, 4, 85, 5, 9, 7,
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45, 44, 123, 56, 23, 13, 23, 17
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};
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static struct spl_info *rkcommon_get_spl_info(char *imagename)
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{
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int i;
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for (i = 0; i < ARRAY_SIZE(spl_infos); i++)
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if (!strncmp(imagename, spl_infos[i].imagename, 6))
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return spl_infos + i;
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return NULL;
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}
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int rkcommon_check_params(struct image_tool_params *params)
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{
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int i;
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if (rkcommon_get_spl_info(params->imagename) != NULL)
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return 0;
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fprintf(stderr, "ERROR: imagename (%s) is not supported!\n",
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strlen(params->imagename) > 0 ? params->imagename : "NULL");
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fprintf(stderr, "Available imagename:");
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for (i = 0; i < ARRAY_SIZE(spl_infos); i++)
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fprintf(stderr, "\t%s", spl_infos[i].imagename);
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fprintf(stderr, "\n");
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return -1;
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}
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const char *rkcommon_get_spl_hdr(struct image_tool_params *params)
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{
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struct spl_info *info = rkcommon_get_spl_info(params->imagename);
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/*
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* info would not be NULL, because of we checked params before.
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*/
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return info->spl_hdr;
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}
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int rkcommon_get_spl_size(struct image_tool_params *params)
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{
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struct spl_info *info = rkcommon_get_spl_info(params->imagename);
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/*
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* info would not be NULL, because of we checked params before.
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*/
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return info->spl_size;
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}
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bool rkcommon_need_rc4_spl(struct image_tool_params *params)
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{
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struct spl_info *info = rkcommon_get_spl_info(params->imagename);
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/*
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* info would not be NULL, because of we checked params before.
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*/
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return info->spl_rc4;
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}
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bool rkcommon_spl_is_boot0(struct image_tool_params *params)
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{
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struct spl_info *info = rkcommon_get_spl_info(params->imagename);
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/*
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* info would not be NULL, because of we checked params before.
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*/
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return info->spl_boot0;
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}
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static void rkcommon_set_header0(void *buf, uint file_size,
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struct image_tool_params *params)
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{
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struct header0_info *hdr = buf;
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memset(buf, '\0', RK_INIT_OFFSET * RK_BLK_SIZE);
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hdr->signature = RK_SIGNATURE;
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hdr->disable_rc4 = !rkcommon_need_rc4_spl(params);
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hdr->init_offset = RK_INIT_OFFSET;
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hdr->init_size = (file_size + RK_BLK_SIZE - 1) / RK_BLK_SIZE;
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hdr->init_size = (hdr->init_size + 3) & ~3;
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hdr->init_boot_size = hdr->init_size + RK_MAX_BOOT_SIZE / RK_BLK_SIZE;
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rc4_encode(buf, RK_BLK_SIZE, rc4_key);
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}
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int rkcommon_set_header(void *buf, uint file_size,
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struct image_tool_params *params)
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{
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struct header1_info *hdr = buf + RK_SPL_HDR_START;
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if (file_size > rkcommon_get_spl_size(params))
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return -ENOSPC;
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rkcommon_set_header0(buf, file_size, params);
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/* Set up the SPL name and add the AArch64 'nop' padding, if needed */
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memcpy(&hdr->magic, rkcommon_get_spl_hdr(params), RK_SPL_HDR_SIZE);
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if (rkcommon_need_rc4_spl(params))
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rkcommon_rc4_encode_spl(buf, RK_SPL_HDR_START,
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params->file_size - RK_SPL_HDR_START);
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return 0;
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}
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void rkcommon_rc4_encode_spl(void *buf, unsigned int offset, unsigned int size)
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{
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unsigned int remaining = size;
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while (remaining > 0) {
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int step = (remaining > RK_BLK_SIZE) ? RK_BLK_SIZE : remaining;
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rc4_encode(buf + offset, step, rc4_key);
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offset += RK_BLK_SIZE;
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remaining -= step;
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}
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}
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void rkcommon_vrec_header(struct image_tool_params *params,
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struct image_type_params *tparams)
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{
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/*
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* The SPL image looks as follows:
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*
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* 0x0 header0 (see rkcommon.c)
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* 0x800 spl_name ('RK30', ..., 'RK33')
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* 0x804 first instruction to be executed
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* (image start for AArch32, 'nop' for AArch64))
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* 0x808 second instruction to be executed
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* (image start for AArch64)
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*
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* For AArch64 (ARMv8) payloads, we receive an input file that
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* needs to start on an 8-byte boundary (natural alignment), so
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* we need to put a NOP at 0x804.
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*
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* Depending on this, the header is either 0x804 or 0x808 bytes
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* in length.
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*/
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if (rkcommon_spl_is_boot0(params))
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tparams->header_size = RK_SPL_HDR_START;
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else
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tparams->header_size = RK_SPL_HDR_START + 4;
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/* Allocate, clear and install the header */
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tparams->hdr = malloc(tparams->header_size);
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memset(tparams->hdr, 0, tparams->header_size);
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}
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