util/mtkheader: Port gen-bl-img.py to python3
BUG=chromium:1023662 TEST=1. Use python2 script 2. Run `emerge-asurada coreboot` twice, so we get bootblock.bin.1 and bootblock.bin.2 3. Run `xxd` on these two bootblock so we get bootblock.bin.1.hex and bootblock.bin.2.hex 4. `diff bootblock.bin.1.hex bootblock.bin.2.hex` and record the difference. (at least, the time info changes) 5. Migrate to python3 6. Similar steps, we get bootblock.bin.py3.hex 7. `diff bootblock.bin.1.hex bootblock.bin.py3.hex`, the difference is similar. Signed-off-by: Yilin Yang <kerker@google.com> Change-Id: I788e7c9b09257142728a0f76df8c2ccc72bf6b3b Reviewed-on: https://review.coreboot.org/c/coreboot/+/45440 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Hung-Te Lin <hungte@chromium.org> Reviewed-by: Yu-Ping Wu <yupingso@google.com>
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@ -65,7 +65,7 @@ embedded controller and insert them to the firmware image. `C`
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partial deblobbing of Intel ME/TXE firmware images `Python`
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* __mma__ - Memory Margin Analysis automation tests `Bash`
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* __msrtool__ - Dumps chipset-specific MSR registers. `C`
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* __mtkheader__ - Generate MediaTek bootload header. `Python2`
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* __mtkheader__ - Generate MediaTek bootload header. `Python3`
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* __nvidia__ - nvidia blob parsers
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* __nvramtool__ - Reads and writes coreboot parameters and displaying
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information from the coreboot table in CMOS/NVRAM. `C`
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@ -1 +1 @@
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Generate MediaTek bootload header. `Python2`
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Generate MediaTek bootload header. `Python3`
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@ -1,4 +1,4 @@
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#!/usr/bin/env python2
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#!/usr/bin/env python3
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#
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# SPDX-License-Identifier: GPL-2.0-only
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@ -14,10 +14,10 @@ def write(path, data):
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with open(path, 'wb') as f:
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f.write(data)
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def padding(data, size, pattern='\0'):
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def padding(data, size, pattern=b'\0'):
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return data + pattern * (size - len(data))
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def align(data, size, pattern='\0'):
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def align(data, size, pattern=b'\0'):
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return padding(data, (len(data) + (size - 1)) & ~(size - 1), pattern)
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def gen_gfh_info(chip, data):
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@ -47,19 +47,19 @@ def gen_gfh_info(chip, data):
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return gfh
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def gen_emmc_header(data):
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header = (padding(struct.pack('<12sII', 'EMMC_BOOT', 1, 512), 512, '\xff') +
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padding(struct.pack('<8sIIIIIIII', 'BRLYT', 1, 2048, 2048 + len(data),
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0x42424242, 0x00010005, 2048, 2048 + len(data), 1) + '\0' * 140, 512,
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'\xff') +
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'\0' * 1024)
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header = (padding(struct.pack('<12sII', b'EMMC_BOOT', 1, 512), 512, b'\xff') +
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padding(struct.pack('<8sIIIIIIII', b'BRLYT', 1, 2048, 2048 + len(data),
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0x42424242, 0x00010005, 2048, 2048 + len(data), 1) + b'\0' * 140, 512,
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b'\xff') +
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b'\0' * 1024)
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return header
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def gen_sf_header(data):
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header = (padding(struct.pack('<12sII', 'SF_BOOT', 1, 512), 512, '\xff') +
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padding(struct.pack('<8sIIIIIIII', 'BRLYT', 1, 2048, 2048 + len(data),
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0x42424242, 0x00010007, 2048, 2048 + len(data), 1) + '\0' * 140, 512,
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'\xff') +
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'\0' * 1024)
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header = (padding(struct.pack('<12sII', b'SF_BOOT', 1, 512), 512, b'\xff') +
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padding(struct.pack('<8sIIIIIIII', b'BRLYT', 1, 2048, 2048 + len(data),
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0x42424242, 0x00010007, 2048, 2048 + len(data), 1) + b'\0' * 140, 512,
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b'\xff') +
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b'\0' * 1024)
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return header
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gen_dev_header = {
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@ -71,15 +71,15 @@ def gen_preloader(chip_ver, flash_type, data):
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gfh_info = gen_gfh_info(chip_ver, data)
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gfh_hash = hashlib.sha256(gfh_info + data).digest()
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data = align(gfh_info + data + gfh_hash, 512, '\xff')
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data = align(gfh_info + data + gfh_hash, 512, b'\xff')
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header = gen_dev_header[flash_type](data)
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return header + data
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def main(argv):
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if len(argv) != 5:
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print 'Usage: %s <chip> <flash_type> <input_file> <output_file>' % argv[0]
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print '\t flash_type: emmc|sf'
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print '\t chip : mt8173|mt8183'
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print('Usage: %s <chip> <flash_type> <input_file> <output_file>' % argv[0])
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print('\t flash_type: emmc|sf')
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print('\t chip : mt8173|mt8183')
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exit(1)
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write(argv[4], gen_preloader(argv[1], argv[2], read(argv[3])))
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