We will add support for ZynqMP bif input files later, so let's move all structure definitions into a header file that can be used by that one as well. Signed-off-by: Alexander Graf <agraf@suse.de> Signed-off-by: Michal Simek <michal.simek@xilinx.com>lime2-spi
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/*
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* Copyright (C) 2016 Michal Simek <michals@xilinx.com> |
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* Copyright (C) 2015 Nathan Rossi <nathan@nathanrossi.com> |
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* |
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* SPDX-License-Identifier: GPL-2.0+ |
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* |
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* The following Boot Header format/structures and values are defined in the |
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* following documents: |
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* * ug1085 ZynqMP TRM doc v1.4 (Chapter 11, Table 11-4) |
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* * ug1137 ZynqMP Software Developer Guide v6.0 (Chapter 16) |
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*/ |
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#ifndef _ZYNQMPIMAGE_H_ |
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#define _ZYNQMPIMAGE_H_ |
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#include <stdint.h> |
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#define HEADER_INTERRUPT_DEFAULT (cpu_to_le32(0xeafffffe)) |
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#define HEADER_REGINIT_NULL (cpu_to_le32(0xffffffff)) |
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#define HEADER_WIDTHDETECTION (cpu_to_le32(0xaa995566)) |
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#define HEADER_IMAGEIDENTIFIER (cpu_to_le32(0x584c4e58)) |
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#define HEADER_CPU_SELECT_A53_64BIT (0x2 << 10) |
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enum { |
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ENCRYPTION_EFUSE = 0xa5c3c5a3, |
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ENCRYPTION_OEFUSE = 0xa5c3c5a7, |
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ENCRYPTION_BBRAM = 0x3a5c3c5a, |
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ENCRYPTION_OBBRAM = 0xa35c7ca5, |
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ENCRYPTION_NONE = 0x0, |
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}; |
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struct zynqmp_reginit { |
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uint32_t address; |
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uint32_t data; |
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}; |
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#define HEADER_INTERRUPT_VECTORS 8 |
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#define HEADER_REGINITS 256 |
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struct image_header_table { |
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uint32_t version; /* 0x00 */ |
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uint32_t nr_parts; /* 0x04 */ |
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uint32_t partition_header_offset; /* 0x08, divided by 4 */ |
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uint32_t image_header_offset; /* 0x0c, divided by 4 */ |
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uint32_t auth_certificate_offset; /* 0x10 */ |
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uint32_t boot_device; /* 0x14 */ |
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uint32_t __reserved1[9]; /* 0x18 - 0x38 */ |
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uint32_t checksum; /* 0x3c */ |
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}; |
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#define PART_ATTR_VEC_LOCATION 0x800000 |
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#define PART_ATTR_BS_BLOCK_SIZE_MASK 0x700000 |
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#define PART_ATTR_BS_BLOCK_SIZE_DEFAULT 0x000000 |
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#define PART_ATTR_BS_BLOCK_SIZE_8MB 0x400000 |
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#define PART_ATTR_BIG_ENDIAN 0x040000 |
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#define PART_ATTR_PART_OWNER_MASK 0x030000 |
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#define PART_ATTR_PART_OWNER_FSBL 0x000000 |
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#define PART_ATTR_PART_OWNER_UBOOT 0x010000 |
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#define PART_ATTR_RSA_SIG 0x008000 |
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#define PART_ATTR_CHECKSUM_MASK 0x007000 |
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#define PART_ATTR_CHECKSUM_NONE 0x000000 |
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#define PART_ATTR_CHECKSUM_MD5 0x001000 |
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#define PART_ATTR_CHECKSUM_SHA2 0x002000 |
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#define PART_ATTR_CHECKSUM_SHA3 0x003000 |
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#define PART_ATTR_DEST_CPU_SHIFT 8 |
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#define PART_ATTR_DEST_CPU_MASK 0x000f00 |
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#define PART_ATTR_DEST_CPU_NONE 0x000000 |
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#define PART_ATTR_DEST_CPU_A53_0 0x000100 |
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#define PART_ATTR_DEST_CPU_A53_1 0x000200 |
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#define PART_ATTR_DEST_CPU_A53_2 0x000300 |
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#define PART_ATTR_DEST_CPU_A53_3 0x000400 |
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#define PART_ATTR_DEST_CPU_R5_0 0x000500 |
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#define PART_ATTR_DEST_CPU_R5_1 0x000600 |
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#define PART_ATTR_DEST_CPU_R5_L 0x000700 |
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#define PART_ATTR_DEST_CPU_PMU 0x000800 |
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#define PART_ATTR_ENCRYPTED 0x000080 |
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#define PART_ATTR_DEST_DEVICE_SHIFT 4 |
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#define PART_ATTR_DEST_DEVICE_MASK 0x000070 |
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#define PART_ATTR_DEST_DEVICE_NONE 0x000000 |
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#define PART_ATTR_DEST_DEVICE_PS 0x000010 |
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#define PART_ATTR_DEST_DEVICE_PL 0x000020 |
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#define PART_ATTR_DEST_DEVICE_PMU 0x000030 |
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#define PART_ATTR_DEST_DEVICE_XIP 0x000040 |
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#define PART_ATTR_A53_EXEC_AARCH32 0x000008 |
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#define PART_ATTR_TARGET_EL_SHIFT 1 |
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#define PART_ATTR_TARGET_EL_MASK 0x000006 |
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#define PART_ATTR_TZ_SECURE 0x000001 |
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static const char *dest_cpus[0x10] = { |
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"none", "a5x-0", "a5x-1", "a5x-2", "a5x-3", "r5-0", "r5-1", |
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"r5-lockstep", "pmu", "unknown", "unknown", "unknown", "unknown", |
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"unknown", "unknown", "unknown" |
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}; |
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struct partition_header { |
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uint32_t len_enc; /* 0x00, divided by 4 */ |
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uint32_t len_unenc; /* 0x04, divided by 4 */ |
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uint32_t len; /* 0x08, divided by 4 */ |
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uint32_t next_partition_offset; /* 0x0c */ |
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uint64_t entry_point; /* 0x10 */ |
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uint64_t load_address; /* 0x18 */ |
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uint32_t offset; /* 0x20, divided by 4 */ |
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uint32_t attributes; /* 0x24 */ |
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uint32_t __reserved1; /* 0x28 */ |
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uint32_t checksum_offset; /* 0x2c, divided by 4 */ |
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uint32_t __reserved2; /* 0x30 */ |
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uint32_t auth_certificate_offset; /* 0x34 */ |
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uint32_t __reserved3; /* 0x38 */ |
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uint32_t checksum; /* 0x3c */ |
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}; |
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struct zynqmp_header { |
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uint32_t interrupt_vectors[HEADER_INTERRUPT_VECTORS]; /* 0x0 */ |
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uint32_t width_detection; /* 0x20 */ |
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uint32_t image_identifier; /* 0x24 */ |
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uint32_t encryption; /* 0x28 */ |
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uint32_t image_load; /* 0x2c */ |
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uint32_t image_offset; /* 0x30 */ |
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uint32_t pfw_image_length; /* 0x34 */ |
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uint32_t total_pfw_image_length; /* 0x38 */ |
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uint32_t image_size; /* 0x3c */ |
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uint32_t image_stored_size; /* 0x40 */ |
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uint32_t image_attributes; /* 0x44 */ |
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uint32_t checksum; /* 0x48 */ |
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uint32_t __reserved1[19]; /* 0x4c */ |
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uint32_t image_header_table_offset; /* 0x98 */ |
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uint32_t __reserved2[7]; /* 0x9c */ |
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struct zynqmp_reginit register_init[HEADER_REGINITS]; /* 0xb8 */ |
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uint32_t __reserved4[66]; /* 0x9c0 */ |
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}; |
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#endif /* _ZYNQMPIMAGE_H_ */ |
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