gen_esp32part_tests.py 23 KB

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  1. #!/usr/bin/env python
  2. # SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
  3. # SPDX-License-Identifier: Apache-2.0
  4. from __future__ import division, print_function
  5. import csv
  6. import io
  7. import os
  8. import struct
  9. import subprocess
  10. import sys
  11. import tempfile
  12. import unittest
  13. from test_utils import Py23TestCase
  14. try:
  15. import gen_esp32part
  16. except ImportError:
  17. sys.path.append('..')
  18. import gen_esp32part
  19. SIMPLE_CSV = """
  20. # Name,Type,SubType,Offset,Size,Flags
  21. factory,0,2,65536,1048576,
  22. """
  23. LONGER_BINARY_TABLE = b''
  24. # type 0x00, subtype 0x00,
  25. # offset 64KB, size 1MB
  26. LONGER_BINARY_TABLE += b'\xAA\x50\x00\x00' + \
  27. b'\x00\x00\x01\x00' + \
  28. b'\x00\x00\x10\x00' + \
  29. b'factory\0' + (b'\0' * 8) + \
  30. b'\x00\x00\x00\x00'
  31. # type 0x01, subtype 0x20,
  32. # offset 0x110000, size 128KB
  33. LONGER_BINARY_TABLE += b'\xAA\x50\x01\x20' + \
  34. b'\x00\x00\x11\x00' + \
  35. b'\x00\x02\x00\x00' + \
  36. b'data' + (b'\0' * 12) + \
  37. b'\x00\x00\x00\x00'
  38. # type 0x10, subtype 0x00,
  39. # offset 0x150000, size 1MB
  40. LONGER_BINARY_TABLE += b'\xAA\x50\x10\x00' + \
  41. b'\x00\x00\x15\x00' + \
  42. b'\x00\x10\x00\x00' + \
  43. b'second' + (b'\0' * 10) + \
  44. b'\x00\x00\x00\x00'
  45. # MD5 checksum
  46. LONGER_BINARY_TABLE += b'\xEB\xEB' + b'\xFF' * 14
  47. LONGER_BINARY_TABLE += b'\xf9\xbd\x06\x1b\x45\x68\x6f\x86\x57\x1a\x2c\xd5\x2a\x1d\xa6\x5b'
  48. # empty partition
  49. LONGER_BINARY_TABLE += b'\xFF' * 32
  50. def _strip_trailing_ffs(binary_table):
  51. """
  52. Strip all FFs down to the last 32 bytes (terminating entry)
  53. """
  54. while binary_table.endswith(b'\xFF' * 64):
  55. binary_table = binary_table[0:len(binary_table) - 32]
  56. return binary_table
  57. class CSVParserTests(Py23TestCase):
  58. def test_simple_partition(self):
  59. table = gen_esp32part.PartitionTable.from_csv(SIMPLE_CSV)
  60. self.assertEqual(len(table), 1)
  61. self.assertEqual(table[0].name, 'factory')
  62. self.assertEqual(table[0].type, 0)
  63. self.assertEqual(table[0].subtype, 2)
  64. self.assertEqual(table[0].offset, 65536)
  65. self.assertEqual(table[0].size, 1048576)
  66. def test_require_type(self):
  67. csv = """
  68. # Name,Type, SubType,Offset,Size
  69. ihavenotype,
  70. """
  71. with self.assertRaisesRegex(gen_esp32part.InputError, 'type'):
  72. gen_esp32part.PartitionTable.from_csv(csv)
  73. def test_type_subtype_names(self):
  74. csv_magicnumbers = """
  75. # Name, Type, SubType, Offset, Size
  76. myapp, 0, 0,, 0x100000
  77. myota_0, 0, 0x10,, 0x100000
  78. myota_1, 0, 0x11,, 0x100000
  79. myota_15, 0, 0x1f,, 0x100000
  80. mytest, 0, 0x20,, 0x100000
  81. myota_status, 1, 0,, 0x2000
  82. """
  83. csv_nomagicnumbers = """
  84. # Name, Type, SubType, Offset, Size
  85. myapp, app, factory,, 0x100000
  86. myota_0, app, ota_0,, 0x100000
  87. myota_1, app, ota_1,, 0x100000
  88. myota_15, app, ota_15,, 0x100000
  89. mytest, app, test,, 0x100000
  90. myota_status, data, ota,, 0x2000
  91. """
  92. # make two equivalent partition tables, one using
  93. # magic numbers and one using shortcuts. Ensure they match
  94. magic = gen_esp32part.PartitionTable.from_csv(csv_magicnumbers)
  95. magic.verify()
  96. nomagic = gen_esp32part.PartitionTable.from_csv(csv_nomagicnumbers)
  97. nomagic.verify()
  98. self.assertEqual(nomagic['myapp'].type, 0)
  99. self.assertEqual(nomagic['myapp'].subtype, 0)
  100. self.assertEqual(nomagic['myapp'], magic['myapp'])
  101. self.assertEqual(nomagic['myota_0'].type, 0)
  102. self.assertEqual(nomagic['myota_0'].subtype, 0x10)
  103. self.assertEqual(nomagic['myota_0'], magic['myota_0'])
  104. self.assertEqual(nomagic['myota_15'], magic['myota_15'])
  105. self.assertEqual(nomagic['mytest'], magic['mytest'])
  106. self.assertEqual(nomagic['myota_status'], magic['myota_status'])
  107. # self.assertEqual(nomagic.to_binary(), magic.to_binary())
  108. def test_unit_suffixes(self):
  109. csv = """
  110. # Name, Type, Subtype, Offset, Size
  111. one_megabyte, app, factory, 64k, 1M
  112. """
  113. t = gen_esp32part.PartitionTable.from_csv(csv)
  114. t.verify()
  115. self.assertEqual(t[0].offset, 64 * 1024)
  116. self.assertEqual(t[0].size, 1 * 1024 * 1024)
  117. def test_default_offsets(self):
  118. csv = """
  119. # Name, Type, Subtype, Offset, Size
  120. first, app, factory,, 1M
  121. second, data, 0x15,, 1M
  122. minidata, data, 0x40,, 32K
  123. otherapp, app, factory,, 1M
  124. """
  125. t = gen_esp32part.PartitionTable.from_csv(csv)
  126. # 'first'
  127. self.assertEqual(t[0].offset, 0x010000) # 64KB boundary as it's an app image
  128. self.assertEqual(t[0].size, 0x100000) # Size specified in CSV
  129. # 'second'
  130. self.assertEqual(t[1].offset, 0x110000) # prev offset+size
  131. self.assertEqual(t[1].size, 0x100000) # Size specified in CSV
  132. # 'minidata'
  133. self.assertEqual(t[2].offset, 0x210000)
  134. # 'otherapp'
  135. self.assertEqual(t[3].offset, 0x220000) # 64KB boundary as it's an app image
  136. def test_negative_size_to_offset(self):
  137. csv = """
  138. # Name, Type, Subtype, Offset, Size
  139. first, app, factory, 0x10000, -2M
  140. second, data, 0x15, , 1M
  141. """
  142. t = gen_esp32part.PartitionTable.from_csv(csv)
  143. t.verify()
  144. # 'first'
  145. self.assertEqual(t[0].offset, 0x10000) # in CSV
  146. self.assertEqual(t[0].size, 0x200000 - t[0].offset) # Up to 2M
  147. # 'second'
  148. self.assertEqual(t[1].offset, 0x200000) # prev offset+size
  149. def test_overlapping_offsets_fail(self):
  150. csv = """
  151. first, app, factory, 0x100000, 2M
  152. second, app, ota_0, 0x200000, 1M
  153. """
  154. with self.assertRaisesRegex(gen_esp32part.InputError, 'overlap'):
  155. t = gen_esp32part.PartitionTable.from_csv(csv)
  156. t.verify()
  157. def test_unique_name_fail(self):
  158. csv = """
  159. first, app, factory, 0x100000, 1M
  160. first, app, ota_0, 0x200000, 1M
  161. """
  162. with self.assertRaisesRegex(gen_esp32part.InputError, 'Partition names must be unique'):
  163. t = gen_esp32part.PartitionTable.from_csv(csv)
  164. t.verify()
  165. class BinaryOutputTests(Py23TestCase):
  166. def test_binary_entry(self):
  167. csv = """
  168. first, 0x30, 0xEE, 0x100400, 0x300000
  169. """
  170. t = gen_esp32part.PartitionTable.from_csv(csv)
  171. tb = _strip_trailing_ffs(t.to_binary())
  172. self.assertEqual(len(tb), 64 + 32)
  173. self.assertEqual(b'\xAA\x50', tb[0:2]) # magic
  174. self.assertEqual(b'\x30\xee', tb[2:4]) # type, subtype
  175. eo, es = struct.unpack('<LL', tb[4:12])
  176. self.assertEqual(eo, 0x100400) # offset
  177. self.assertEqual(es, 0x300000) # size
  178. self.assertEqual(b'\xEB\xEB' + b'\xFF' * 14, tb[32:48])
  179. self.assertEqual(b'\x43\x03\x3f\x33\x40\x87\x57\x51\x69\x83\x9b\x40\x61\xb1\x27\x26', tb[48:64])
  180. def test_multiple_entries(self):
  181. csv = """
  182. first, 0x30, 0xEE, 0x100400, 0x300000
  183. second,0x31, 0xEF, , 0x100000
  184. """
  185. t = gen_esp32part.PartitionTable.from_csv(csv)
  186. tb = _strip_trailing_ffs(t.to_binary())
  187. self.assertEqual(len(tb), 96 + 32)
  188. self.assertEqual(b'\xAA\x50', tb[0:2])
  189. self.assertEqual(b'\xAA\x50', tb[32:34])
  190. def test_encrypted_flag(self):
  191. csv = """
  192. # Name, Type, Subtype, Offset, Size, Flags
  193. first, app, factory,, 1M, encrypted
  194. """
  195. t = gen_esp32part.PartitionTable.from_csv(csv)
  196. self.assertTrue(t[0].encrypted)
  197. tb = _strip_trailing_ffs(t.to_binary())
  198. tr = gen_esp32part.PartitionTable.from_binary(tb)
  199. self.assertTrue(tr[0].encrypted)
  200. def test_only_empty_subtype_is_not_0(self):
  201. csv_txt = """
  202. # Name,Type, SubType,Offset,Size
  203. nvs, data, nvs, , 0x4000,
  204. otadata, data, ota, , 0x2000,
  205. phy_init, data, phy, , 0x1000,
  206. factory, app, factory, , 1M
  207. ota_0, 0, ota_0, , 1M,
  208. ota_1, 0, ota_1, , 1M,
  209. storage, data, , , 512k,
  210. storage2, data, undefined, , 12k,
  211. """
  212. t = gen_esp32part.PartitionTable.from_csv(csv_txt)
  213. t.verify()
  214. self.assertEqual(t[1].name, 'otadata')
  215. self.assertEqual(t[1].type, 1)
  216. self.assertEqual(t[1].subtype, 0)
  217. self.assertEqual(t[6].name, 'storage')
  218. self.assertEqual(t[6].type, 1)
  219. self.assertEqual(t[6].subtype, 0x06)
  220. self.assertEqual(t[7].name, 'storage2')
  221. self.assertEqual(t[7].type, 1)
  222. self.assertEqual(t[7].subtype, 0x06)
  223. class BinaryParserTests(Py23TestCase):
  224. def test_parse_one_entry(self):
  225. # type 0x30, subtype 0xee,
  226. # offset 1MB, size 2MB
  227. entry = b'\xAA\x50\x30\xee' + \
  228. b'\x00\x00\x10\x00' + \
  229. b'\x00\x00\x20\x00' + \
  230. b'0123456789abc\0\0\0' + \
  231. b'\x00\x00\x00\x00' + \
  232. b'\xFF' * 32
  233. # verify that parsing 32 bytes as a table
  234. # or as a single Definition are the same thing
  235. t = gen_esp32part.PartitionTable.from_binary(entry)
  236. self.assertEqual(len(t), 1)
  237. t[0].verify()
  238. e = gen_esp32part.PartitionDefinition.from_binary(entry[:32])
  239. self.assertEqual(t[0], e)
  240. e.verify()
  241. self.assertEqual(e.type, 0x30)
  242. self.assertEqual(e.subtype, 0xEE)
  243. self.assertEqual(e.offset, 0x100000)
  244. self.assertEqual(e.size, 0x200000)
  245. self.assertEqual(e.name, '0123456789abc')
  246. def test_multiple_entries(self):
  247. t = gen_esp32part.PartitionTable.from_binary(LONGER_BINARY_TABLE)
  248. t.verify()
  249. self.assertEqual(3, len(t))
  250. self.assertEqual(t[0].type, gen_esp32part.APP_TYPE)
  251. self.assertEqual(t[0].name, 'factory')
  252. self.assertEqual(t[1].type, gen_esp32part.DATA_TYPE)
  253. self.assertEqual(t[1].name, 'data')
  254. self.assertEqual(t[2].type, 0x10)
  255. self.assertEqual(t[2].name, 'second')
  256. round_trip = _strip_trailing_ffs(t.to_binary())
  257. self.assertEqual(round_trip, LONGER_BINARY_TABLE)
  258. def test_bad_magic(self):
  259. bad_magic = b'OHAI' + \
  260. b'\x00\x00\x10\x00' + \
  261. b'\x00\x00\x20\x00' + \
  262. b'0123456789abc\0\0\0' + \
  263. b'\x00\x00\x00\x00'
  264. with self.assertRaisesRegex(gen_esp32part.InputError, 'Invalid magic bytes'):
  265. gen_esp32part.PartitionTable.from_binary(bad_magic)
  266. def test_bad_length(self):
  267. bad_length = b'OHAI' + \
  268. b'\x00\x00\x10\x00' + \
  269. b'\x00\x00\x20\x00' + \
  270. b'0123456789'
  271. with self.assertRaisesRegex(gen_esp32part.InputError, '32 bytes'):
  272. gen_esp32part.PartitionTable.from_binary(bad_length)
  273. class CSVOutputTests(Py23TestCase):
  274. def _readcsv(self, source_str):
  275. return list(csv.reader(source_str.split('\n')))
  276. def test_output_simple_formatting(self):
  277. table = gen_esp32part.PartitionTable.from_csv(SIMPLE_CSV)
  278. as_csv = table.to_csv(True)
  279. c = self._readcsv(as_csv)
  280. # first two lines should start with comments
  281. self.assertEqual(c[0][0][0], '#')
  282. self.assertEqual(c[1][0][0], '#')
  283. row = c[2]
  284. self.assertEqual(row[0], 'factory')
  285. self.assertEqual(row[1], '0')
  286. self.assertEqual(row[2], '2')
  287. self.assertEqual(row[3], '0x10000') # reformatted as hex
  288. self.assertEqual(row[4], '0x100000') # also hex
  289. # round trip back to a PartitionTable and check is identical
  290. roundtrip = gen_esp32part.PartitionTable.from_csv(as_csv)
  291. self.assertEqual(roundtrip, table)
  292. def test_output_smart_formatting(self):
  293. table = gen_esp32part.PartitionTable.from_csv(SIMPLE_CSV)
  294. as_csv = table.to_csv(False)
  295. c = self._readcsv(as_csv)
  296. # first two lines should start with comments
  297. self.assertEqual(c[0][0][0], '#')
  298. self.assertEqual(c[1][0][0], '#')
  299. row = c[2]
  300. self.assertEqual(row[0], 'factory')
  301. self.assertEqual(row[1], 'app')
  302. self.assertEqual(row[2], '2')
  303. self.assertEqual(row[3], '0x10000')
  304. self.assertEqual(row[4], '1M')
  305. # round trip back to a PartitionTable and check is identical
  306. roundtrip = gen_esp32part.PartitionTable.from_csv(as_csv)
  307. self.assertEqual(roundtrip, table)
  308. class CommandLineTests(Py23TestCase):
  309. def test_basic_cmdline(self):
  310. try:
  311. binpath = tempfile.mktemp()
  312. csvpath = tempfile.mktemp()
  313. # copy binary contents to temp file
  314. with open(binpath, 'wb') as f:
  315. f.write(LONGER_BINARY_TABLE)
  316. # run gen_esp32part.py to convert binary file to CSV
  317. output = subprocess.check_output([sys.executable, '../gen_esp32part.py',
  318. binpath, csvpath], stderr=subprocess.STDOUT)
  319. # reopen the CSV and check the generated binary is identical
  320. self.assertNotIn(b'WARNING', output)
  321. with open(csvpath, 'r') as f:
  322. from_csv = gen_esp32part.PartitionTable.from_csv(f.read())
  323. self.assertEqual(_strip_trailing_ffs(from_csv.to_binary()), LONGER_BINARY_TABLE)
  324. # run gen_esp32part.py to conver the CSV to binary again
  325. output = subprocess.check_output([sys.executable, '../gen_esp32part.py',
  326. csvpath, binpath], stderr=subprocess.STDOUT)
  327. self.assertNotIn(b'WARNING', output)
  328. # assert that file reads back as identical
  329. with open(binpath, 'rb') as f:
  330. binary_readback = f.read()
  331. binary_readback = _strip_trailing_ffs(binary_readback)
  332. self.assertEqual(binary_readback, LONGER_BINARY_TABLE)
  333. finally:
  334. for path in binpath, csvpath:
  335. try:
  336. os.remove(path)
  337. except OSError:
  338. pass
  339. class VerificationTests(Py23TestCase):
  340. def _run_genesp32(self, csvcontents, args):
  341. csvpath = tempfile.mktemp()
  342. with open(csvpath, 'w') as f:
  343. f.write(csvcontents)
  344. try:
  345. output = subprocess.check_output([sys.executable, '../gen_esp32part.py', csvpath] + args, stderr=subprocess.STDOUT)
  346. return output.strip()
  347. except subprocess.CalledProcessError as e:
  348. return e.output.strip()
  349. finally:
  350. os.remove(csvpath)
  351. def test_check_secure_app_size(self):
  352. sample_csv = """
  353. ota_0, app, ota_0, , 0x101000
  354. ota_1, app, ota_1, , 0x100800
  355. """
  356. def rge(args):
  357. return self._run_genesp32(sample_csv, args)
  358. # Valid test that would pass with the above partition table
  359. partfile = tempfile.mktemp()
  360. self.assertEqual(rge([partfile]), b'Parsing CSV input...\nVerifying table...')
  361. os.remove(partfile)
  362. # Failure case 1, incorrect ota_0 partition size
  363. self.assertEqual(rge(['-q', '--secure', 'v1']),
  364. b'Partition ota_0 invalid: Size 0x101000 is not aligned to 0x10000')
  365. # Failure case 2, incorrect ota_1 partition size
  366. self.assertEqual(rge(['-q', '--secure', 'v2']),
  367. b'Partition ota_1 invalid: Size 0x100800 is not aligned to 0x1000')
  368. def test_bad_alignment(self):
  369. csv = """
  370. # Name,Type, SubType,Offset,Size
  371. app,app, factory, 32K, 1M
  372. """
  373. with self.assertRaisesRegex(gen_esp32part.ValidationError, r'Offset.+not aligned'):
  374. t = gen_esp32part.PartitionTable.from_csv(csv)
  375. t.verify()
  376. csv = """
  377. # Name, Type, SubType, Offset, Size, Flags
  378. nvs, data, nvs, 0x9420, 0x6000,
  379. phy_init, data, phy, , 0x1000,
  380. factory, app, factory, , 1M,
  381. """
  382. with self.assertRaisesRegex(gen_esp32part.ValidationError, r'Offset.+not aligned'):
  383. t = gen_esp32part.PartitionTable.from_csv(csv)
  384. t.verify()
  385. def test_overlap_part_table(self):
  386. csv = """
  387. # Name,Type, SubType,Offset,Size
  388. nvs, data, nvs, 0x0000, 0x6000,
  389. phy_init, data, phy, , 0x1000,
  390. factory, app, factory, , 1M,
  391. """
  392. with self.assertRaisesRegex(gen_esp32part.InputError, r'CSV Error at line 3: Partitions overlap. Partition sets offset 0x0'):
  393. gen_esp32part.PartitionTable.from_csv(csv)
  394. def test_only_one_otadata(self):
  395. csv_txt = """
  396. # Name,Type, SubType,Offset,Size
  397. nvs, data, nvs, , 0x4000,
  398. otadata, data, ota, , 0x2000,
  399. otadata2, data, ota, , 0x2000,
  400. factory, app, factory, , 1M
  401. ota_0, 0, ota_0, , 1M,
  402. ota_1, 0, ota_1, , 1M,
  403. """
  404. with self.assertRaisesRegex(gen_esp32part.InputError, r'Found multiple otadata partitions'):
  405. t = gen_esp32part.PartitionTable.from_csv(csv_txt)
  406. t.verify()
  407. def test_otadata_must_have_fixed_size(self):
  408. csv_txt = """
  409. # Name,Type, SubType,Offset,Size
  410. nvs, data, nvs, , 0x4000,
  411. otadata, data, ota, , 0x3000,
  412. factory, app, factory, , 1M
  413. ota_0, 0, ota_0, , 1M,
  414. ota_1, 0, ota_1, , 1M,
  415. """
  416. with self.assertRaisesRegex(gen_esp32part.InputError, r'otadata partition must have size = 0x2000'):
  417. t = gen_esp32part.PartitionTable.from_csv(csv_txt)
  418. t.verify()
  419. def test_app_cannot_have_empty_subtype(self):
  420. csv_txt = """
  421. # Name,Type, SubType,Offset,Size
  422. nvs, data, nvs, , 0x4000,
  423. otadata, data, ota, , 0x2000,
  424. factory, app, , , 1M
  425. ota_0, 0, ota_0, , 1M,
  426. ota_1, 0, ota_1, , 1M,
  427. """
  428. with self.assertRaisesRegex(gen_esp32part.InputError, r'App partition cannot have an empty subtype'):
  429. t = gen_esp32part.PartitionTable.from_csv(csv_txt)
  430. t.verify()
  431. def test_warnings(self):
  432. try:
  433. sys.stderr = io.StringIO() # capture stderr
  434. csv_1 = 'app, 1, 2, 32K, 1M\n'
  435. gen_esp32part.PartitionTable.from_csv(csv_1).verify()
  436. self.assertIn('WARNING', sys.stderr.getvalue())
  437. self.assertIn('partition type', sys.stderr.getvalue())
  438. sys.stderr = io.StringIO()
  439. csv_2 = 'ota_0, app, ota_1, , 1M\n'
  440. gen_esp32part.PartitionTable.from_csv(csv_2).verify()
  441. self.assertIn('WARNING', sys.stderr.getvalue())
  442. self.assertIn('partition subtype', sys.stderr.getvalue())
  443. finally:
  444. sys.stderr = sys.__stderr__
  445. def test_size_error(self):
  446. csv_txt = """
  447. factory, app, factory, 0x10000, 20M
  448. """
  449. with self.assertRaisesRegex(gen_esp32part.InputError, r'does not fit'):
  450. t = gen_esp32part.PartitionTable.from_csv(csv_txt)
  451. t.verify_size_fits(16 * 1024 * 1024)
  452. class PartToolTests(Py23TestCase):
  453. def _run_parttool(self, csvcontents, args):
  454. csvpath = tempfile.mktemp()
  455. with open(csvpath, 'w') as f:
  456. f.write(csvcontents)
  457. try:
  458. output = subprocess.check_output([sys.executable, '../parttool.py', '-q', '--partition-table-file',
  459. csvpath, 'get_partition_info'] + args,
  460. stderr=subprocess.STDOUT)
  461. self.assertNotIn(b'WARNING', output)
  462. return output.strip()
  463. finally:
  464. os.remove(csvpath)
  465. def test_find_basic(self):
  466. csv = """
  467. nvs, data, nvs, 0x9000, 0x4000
  468. otadata, data, ota, 0xd000, 0x2000
  469. phy_init, data, phy, 0xf000, 0x1000
  470. factory, app, factory, 0x10000, 1M
  471. nvs1_user, data, nvs, 0x110000, 0x4000
  472. nvs2_user, data, nvs, 0x114000, 0x4000
  473. nvs_key1, data, nvs_keys, 0x118000, 0x1000, encrypted
  474. nvs_key2, data, nvs_keys, 0x119000, 0x1000, encrypted
  475. """
  476. def rpt(args):
  477. return self._run_parttool(csv, args)
  478. self.assertEqual(
  479. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs', '--info', 'offset']), b'0x9000')
  480. self.assertEqual(
  481. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs', '--info', 'size']), b'0x4000')
  482. self.assertEqual(
  483. rpt(['--partition-name', 'otadata', '--info', 'offset']), b'0xd000')
  484. self.assertEqual(
  485. rpt(['--partition-boot-default', '--info', 'offset']), b'0x10000')
  486. self.assertEqual(
  487. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs', '--info', 'name', 'offset', 'size', 'encrypted']),
  488. b'nvs 0x9000 0x4000 False')
  489. self.assertEqual(
  490. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs', '--info', 'name', 'offset', 'size', 'encrypted', '--part_list']),
  491. b'nvs 0x9000 0x4000 False nvs1_user 0x110000 0x4000 False nvs2_user 0x114000 0x4000 False')
  492. self.assertEqual(
  493. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs', '--info', 'name', '--part_list']),
  494. b'nvs nvs1_user nvs2_user')
  495. self.assertEqual(
  496. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs_keys', '--info', 'name', '--part_list']),
  497. b'nvs_key1 nvs_key2')
  498. self.assertEqual(
  499. rpt(['--partition-name', 'nvs', '--info', 'encrypted']), b'False')
  500. self.assertEqual(
  501. rpt(['--partition-name', 'nvs1_user', '--info', 'encrypted']), b'False')
  502. self.assertEqual(
  503. rpt(['--partition-name', 'nvs2_user', '--info', 'encrypted']), b'False')
  504. self.assertEqual(
  505. rpt(['--partition-name', 'nvs_key1', '--info', 'encrypted']), b'True')
  506. self.assertEqual(
  507. rpt(['--partition-name', 'nvs_key2', '--info', 'encrypted']), b'True')
  508. self.assertEqual(
  509. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs_keys', '--info', 'name', 'encrypted', '--part_list']),
  510. b'nvs_key1 True nvs_key2 True')
  511. self.assertEqual(
  512. rpt(['--partition-type', 'data', '--partition-subtype', 'nvs', '--info', 'name', 'encrypted', '--part_list']),
  513. b'nvs False nvs1_user False nvs2_user False')
  514. def test_fallback(self):
  515. csv = """
  516. nvs, data, nvs, 0x9000, 0x4000
  517. otadata, data, ota, 0xd000, 0x2000
  518. phy_init, data, phy, 0xf000, 0x1000
  519. ota_0, app, ota_0, 0x30000, 1M
  520. ota_1, app, ota_1, , 1M
  521. """
  522. def rpt(args):
  523. return self._run_parttool(csv, args)
  524. self.assertEqual(
  525. rpt(['--partition-type', 'app', '--partition-subtype', 'ota_1', '--info', 'offset']), b'0x130000')
  526. self.assertEqual(
  527. rpt(['--partition-boot-default', '--info', 'offset']), b'0x30000') # ota_0
  528. csv_mod = csv.replace('ota_0', 'ota_2')
  529. self.assertEqual(
  530. self._run_parttool(csv_mod, ['--partition-boot-default', '--info', 'offset']),
  531. b'0x130000') # now default is ota_1
  532. if __name__ == '__main__':
  533. unittest.main()