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synced 2024-10-05 20:47:46 -04:00
partition_table: Pad generated table to 0xC00 length, for easier signing
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7402a1b973
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@ -9,6 +9,8 @@ import struct
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import argparse
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import sys
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MAX_PARTITION_LENGTH = 0xC00 # 3K for partition data (96 entries) leaves 1K in a 4K sector for signature
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__version__ = '1.0'
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quiet = False
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@ -92,7 +94,11 @@ class PartitionTable(list):
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return result
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def to_binary(self):
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return "".join(e.to_binary() for e in self)
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result = "".join(e.to_binary() for e in self)
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if len(result )>= MAX_PARTITION_LENGTH:
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raise InputError("Binary partition table length (%d) longer than max" % len(result))
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result += "\xFF" * (MAX_PARTITION_LENGTH - len(result)) # pad the sector, for signing
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return result
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def to_csv(self, simple_formatting=False):
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rows = [ "# Espressif ESP32 Partition Table",
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@ -37,6 +37,10 @@ LONGER_BINARY_TABLE += "\xAA\x50\x10\x00" + \
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"second" + ("\0"*10) + \
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"\x00\x00\x00\x00"
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def _strip_trailing_ffs(binary_table):
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while binary_table.endswith("\xFF"):
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binary_table = binary_table[0:len(binary_table)-1]
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return binary_table
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class CSVParserTests(unittest.TestCase):
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@ -156,7 +160,7 @@ class BinaryOutputTests(unittest.TestCase):
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first, 0x30, 0xEE, 0x100400, 0x300000
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"""
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t = PartitionTable.from_csv(csv)
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tb = t.to_binary()
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tb = _strip_trailing_ffs(t.to_binary())
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self.assertEqual(len(tb), 32)
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self.assertEqual('\xAA\x50', tb[0:2]) # magic
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self.assertEqual('\x30\xee', tb[2:4]) # type, subtype
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@ -170,7 +174,7 @@ first, 0x30, 0xEE, 0x100400, 0x300000
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second,0x31, 0xEF, , 0x100000
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"""
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t = PartitionTable.from_csv(csv)
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tb = t.to_binary()
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tb = _strip_trailing_ffs(t.to_binary())
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self.assertEqual(len(tb), 64)
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self.assertEqual('\xAA\x50', tb[0:2])
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self.assertEqual('\xAA\x50', tb[32:34])
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@ -215,7 +219,7 @@ class BinaryParserTests(unittest.TestCase):
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self.assertEqual(t[2].type, 0x10)
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self.assertEqual(t[2].name, "second")
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round_trip = t.to_binary()
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round_trip = _strip_trailing_ffs(t.to_binary())
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self.assertEqual(round_trip, LONGER_BINARY_TABLE)
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def test_bad_magic(self):
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@ -267,7 +271,7 @@ class CSVOutputTests(unittest.TestCase):
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self.assertEqual(row[0], "factory")
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self.assertEqual(row[1], "app")
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self.assertEqual(row[2], "2")
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self.assertEqual(row[3], "64K")
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self.assertEqual(row[3], "0x10000")
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self.assertEqual(row[4], "1M")
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# round trip back to a PartitionTable and check is identical
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@ -291,7 +295,7 @@ class CommandLineTests(unittest.TestCase):
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# reopen the CSV and check the generated binary is identical
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with open(csvpath, 'r') as f:
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from_csv = PartitionTable.from_csv(f.read())
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self.assertEqual(from_csv.to_binary(), LONGER_BINARY_TABLE)
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self.assertEqual(_strip_trailing_ffs(from_csv.to_binary()), LONGER_BINARY_TABLE)
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# run gen_esp32part.py to conver the CSV to binary again
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subprocess.check_call([sys.executable, "../gen_esp32part.py",
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@ -299,6 +303,7 @@ class CommandLineTests(unittest.TestCase):
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# assert that file reads back as identical
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with open(binpath, 'rb') as f:
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binary_readback = f.read()
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binary_readback = _strip_trailing_ffs(binary_readback)
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self.assertEqual(binary_readback, LONGER_BINARY_TABLE)
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finally:
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@ -6,6 +6,8 @@ Overview
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A single ESP32's flash can contain multiple apps, as well as many different kinds of data (calibration data, filesystems, parameter storage, etc). For this reason a partition table is flashed to offset 0x4000 in the flash.
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Partition table length is 0xC00 bytes (maximum 95 partition table entries). If the partition table is signed due to `secure boot`, the signature is appended after the table data.
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Each entry in the partition table has a name (label), type (app, data, or something else), subtype and the offset in flash where the partition is loaded.
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The simplest way to use the partition table is to `make menuconfig` and choose one of the simple predefined partition tables:
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@ -130,3 +132,6 @@ Flashing the partition table
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* ``make flash``: Will flash everything including the partition table.
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A manual flashing command is also printed as part of ``make partition_table``.
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.. _secure boot: security/secure-boot.rst
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