basic.rb 43 KB

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  1. #!/usr/bin/ruby
  2. require 'google/protobuf'
  3. require 'json'
  4. require 'test/unit'
  5. # ------------- generated code --------------
  6. module BasicTest
  7. pool = Google::Protobuf::DescriptorPool.new
  8. pool.build do
  9. add_message "Foo" do
  10. optional :bar, :message, 1, "Bar"
  11. repeated :baz, :message, 2, "Baz"
  12. end
  13. add_message "Bar" do
  14. optional :msg, :string, 1
  15. end
  16. add_message "Baz" do
  17. optional :msg, :string, 1
  18. end
  19. add_message "TestMessage" do
  20. optional :optional_int32, :int32, 1
  21. optional :optional_int64, :int64, 2
  22. optional :optional_uint32, :uint32, 3
  23. optional :optional_uint64, :uint64, 4
  24. optional :optional_bool, :bool, 5
  25. optional :optional_float, :float, 6
  26. optional :optional_double, :double, 7
  27. optional :optional_string, :string, 8
  28. optional :optional_bytes, :bytes, 9
  29. optional :optional_msg, :message, 10, "TestMessage2"
  30. optional :optional_enum, :enum, 11, "TestEnum"
  31. repeated :repeated_int32, :int32, 12
  32. repeated :repeated_int64, :int64, 13
  33. repeated :repeated_uint32, :uint32, 14
  34. repeated :repeated_uint64, :uint64, 15
  35. repeated :repeated_bool, :bool, 16
  36. repeated :repeated_float, :float, 17
  37. repeated :repeated_double, :double, 18
  38. repeated :repeated_string, :string, 19
  39. repeated :repeated_bytes, :bytes, 20
  40. repeated :repeated_msg, :message, 21, "TestMessage2"
  41. repeated :repeated_enum, :enum, 22, "TestEnum"
  42. end
  43. add_message "TestMessage2" do
  44. optional :foo, :int32, 1
  45. end
  46. add_message "TestEmbeddedMessageParent" do
  47. optional :child_msg, :message, 1, "TestEmbeddedMessageChild"
  48. optional :number, :int32, 2
  49. repeated :repeated_msg, :message, 3, "TestEmbeddedMessageChild"
  50. repeated :repeated_number, :int32, 4
  51. end
  52. add_message "TestEmbeddedMessageChild" do
  53. optional :sub_child, :message, 1, "TestMessage"
  54. end
  55. add_message "Recursive1" do
  56. optional :foo, :message, 1, "Recursive2"
  57. end
  58. add_message "Recursive2" do
  59. optional :foo, :message, 1, "Recursive1"
  60. end
  61. add_enum "TestEnum" do
  62. value :Default, 0
  63. value :A, 1
  64. value :B, 2
  65. value :C, 3
  66. end
  67. add_message "BadFieldNames" do
  68. optional :dup, :int32, 1
  69. optional :class, :int32, 2
  70. optional :"a.b", :int32, 3
  71. end
  72. add_message "MapMessage" do
  73. map :map_string_int32, :string, :int32, 1
  74. map :map_string_msg, :string, :message, 2, "TestMessage2"
  75. end
  76. add_message "MapMessageWireEquiv" do
  77. repeated :map_string_int32, :message, 1, "MapMessageWireEquiv_entry1"
  78. repeated :map_string_msg, :message, 2, "MapMessageWireEquiv_entry2"
  79. end
  80. add_message "MapMessageWireEquiv_entry1" do
  81. optional :key, :string, 1
  82. optional :value, :int32, 2
  83. end
  84. add_message "MapMessageWireEquiv_entry2" do
  85. optional :key, :string, 1
  86. optional :value, :message, 2, "TestMessage2"
  87. end
  88. add_message "OneofMessage" do
  89. oneof :my_oneof do
  90. optional :a, :string, 1
  91. optional :b, :int32, 2
  92. optional :c, :message, 3, "TestMessage2"
  93. optional :d, :enum, 4, "TestEnum"
  94. end
  95. end
  96. add_message "repro.Outer" do
  97. map :items, :int32, :message, 1, "repro.Inner"
  98. end
  99. add_message "repro.Inner" do
  100. end
  101. end
  102. Outer = pool.lookup("repro.Outer").msgclass
  103. Inner = pool.lookup("repro.Inner").msgclass
  104. Foo = pool.lookup("Foo").msgclass
  105. Bar = pool.lookup("Bar").msgclass
  106. Baz = pool.lookup("Baz").msgclass
  107. TestMessage = pool.lookup("TestMessage").msgclass
  108. TestMessage2 = pool.lookup("TestMessage2").msgclass
  109. TestEmbeddedMessageParent = pool.lookup("TestEmbeddedMessageParent").msgclass
  110. TestEmbeddedMessageChild = pool.lookup("TestEmbeddedMessageChild").msgclass
  111. Recursive1 = pool.lookup("Recursive1").msgclass
  112. Recursive2 = pool.lookup("Recursive2").msgclass
  113. TestEnum = pool.lookup("TestEnum").enummodule
  114. BadFieldNames = pool.lookup("BadFieldNames").msgclass
  115. MapMessage = pool.lookup("MapMessage").msgclass
  116. MapMessageWireEquiv = pool.lookup("MapMessageWireEquiv").msgclass
  117. MapMessageWireEquiv_entry1 =
  118. pool.lookup("MapMessageWireEquiv_entry1").msgclass
  119. MapMessageWireEquiv_entry2 =
  120. pool.lookup("MapMessageWireEquiv_entry2").msgclass
  121. OneofMessage = pool.lookup("OneofMessage").msgclass
  122. # ------------ test cases ---------------
  123. class MessageContainerTest < Test::Unit::TestCase
  124. def test_defaults
  125. m = TestMessage.new
  126. assert m.optional_int32 == 0
  127. assert m.optional_int64 == 0
  128. assert m.optional_uint32 == 0
  129. assert m.optional_uint64 == 0
  130. assert m.optional_bool == false
  131. assert m.optional_float == 0.0
  132. assert m.optional_double == 0.0
  133. assert m.optional_string == ""
  134. assert m.optional_bytes == ""
  135. assert m.optional_msg == nil
  136. assert m.optional_enum == :Default
  137. end
  138. def test_setters
  139. m = TestMessage.new
  140. m.optional_int32 = -42
  141. assert m.optional_int32 == -42
  142. m.optional_int64 = -0x1_0000_0000
  143. assert m.optional_int64 == -0x1_0000_0000
  144. m.optional_uint32 = 0x9000_0000
  145. assert m.optional_uint32 == 0x9000_0000
  146. m.optional_uint64 = 0x9000_0000_0000_0000
  147. assert m.optional_uint64 == 0x9000_0000_0000_0000
  148. m.optional_bool = true
  149. assert m.optional_bool == true
  150. m.optional_float = 0.5
  151. assert m.optional_float == 0.5
  152. m.optional_double = 0.5
  153. m.optional_string = "hello"
  154. assert m.optional_string == "hello"
  155. m.optional_string = :hello
  156. assert m.optional_string == "hello"
  157. m.optional_bytes = "world".encode!('ASCII-8BIT')
  158. assert m.optional_bytes == "world"
  159. m.optional_msg = TestMessage2.new(:foo => 42)
  160. assert m.optional_msg == TestMessage2.new(:foo => 42)
  161. m.optional_msg = nil
  162. assert m.optional_msg == nil
  163. m.optional_enum = :C
  164. assert m.optional_enum == :C
  165. m.optional_enum = 'C'
  166. assert m.optional_enum == :C
  167. end
  168. def test_ctor_args
  169. m = TestMessage.new(:optional_int32 => -42,
  170. :optional_msg => TestMessage2.new,
  171. :optional_enum => :C,
  172. :repeated_string => ["hello", "there", "world"])
  173. assert m.optional_int32 == -42
  174. assert m.optional_msg.class == TestMessage2
  175. assert m.repeated_string.length == 3
  176. assert m.optional_enum == :C
  177. assert m.repeated_string[0] == "hello"
  178. assert m.repeated_string[1] == "there"
  179. assert m.repeated_string[2] == "world"
  180. end
  181. def test_ctor_string_symbol_args
  182. m = TestMessage.new(:optional_enum => 'C', :repeated_enum => ['A', 'B'])
  183. assert_equal :C, m.optional_enum
  184. assert_equal [:A, :B], m.repeated_enum
  185. m = TestMessage.new(:optional_string => :foo, :repeated_string => [:foo, :bar])
  186. assert_equal 'foo', m.optional_string
  187. assert_equal ['foo', 'bar'], m.repeated_string
  188. end
  189. def test_embeddedmsg_hash_init
  190. m = TestEmbeddedMessageParent.new(:child_msg => {sub_child: {optional_int32: 1}},
  191. :number => 2,
  192. :repeated_msg => [{sub_child: {optional_int32: 3}}],
  193. :repeated_number => [10, 20, 30])
  194. assert_equal 2, m.number
  195. assert_equal [10, 20, 30], m.repeated_number
  196. assert_not_nil m.child_msg
  197. assert_not_nil m.child_msg.sub_child
  198. assert_equal m.child_msg.sub_child.optional_int32, 1
  199. assert_not_nil m.repeated_msg
  200. assert_equal 1, m.repeated_msg.length
  201. assert_equal 3, m.repeated_msg.first.sub_child.optional_int32
  202. end
  203. def test_inspect
  204. m = TestMessage.new(:optional_int32 => -42,
  205. :optional_enum => :A,
  206. :optional_msg => TestMessage2.new,
  207. :repeated_string => ["hello", "there", "world"])
  208. expected = '<BasicTest::TestMessage: optional_int32: -42, optional_int64: 0, optional_uint32: 0, optional_uint64: 0, optional_bool: false, optional_float: 0.0, optional_double: 0.0, optional_string: "", optional_bytes: "", optional_msg: <BasicTest::TestMessage2: foo: 0>, optional_enum: :A, repeated_int32: [], repeated_int64: [], repeated_uint32: [], repeated_uint64: [], repeated_bool: [], repeated_float: [], repeated_double: [], repeated_string: ["hello", "there", "world"], repeated_bytes: [], repeated_msg: [], repeated_enum: []>'
  209. assert_equal expected, m.inspect
  210. end
  211. def test_hash
  212. m1 = TestMessage.new(:optional_int32 => 42)
  213. m2 = TestMessage.new(:optional_int32 => 102, repeated_string: ['please', 'work', 'ok?'])
  214. m3 = TestMessage.new(:optional_int32 => 102, repeated_string: ['please', 'work', 'ok?'])
  215. assert m1.hash != 0
  216. assert m2.hash != 0
  217. assert m3.hash != 0
  218. # relying on the randomness here -- if hash function changes and we are
  219. # unlucky enough to get a collision, then change the values above.
  220. assert m1.hash != m2.hash
  221. assert_equal m2.hash, m3.hash
  222. end
  223. def test_unknown_field_errors
  224. e = assert_raise NoMethodError do
  225. TestMessage.new.hello
  226. end
  227. assert_match(/hello/, e.message)
  228. e = assert_raise NoMethodError do
  229. TestMessage.new.hello = "world"
  230. end
  231. assert_match(/hello/, e.message)
  232. end
  233. def test_initialization_map_errors
  234. e = assert_raise ArgumentError do
  235. TestMessage.new(:hello => "world")
  236. end
  237. assert_match(/hello/, e.message)
  238. e = assert_raise ArgumentError do
  239. MapMessage.new(:map_string_int32 => "hello")
  240. end
  241. assert_equal e.message, "Expected Hash object as initializer value for map field 'map_string_int32'."
  242. e = assert_raise ArgumentError do
  243. TestMessage.new(:repeated_uint32 => "hello")
  244. end
  245. assert_equal e.message, "Expected array as initializer value for repeated field 'repeated_uint32'."
  246. end
  247. def test_type_errors
  248. m = TestMessage.new
  249. assert_raise TypeError do
  250. m.optional_int32 = "hello"
  251. end
  252. assert_raise TypeError do
  253. m.optional_string = 42
  254. end
  255. assert_raise TypeError do
  256. m.optional_string = nil
  257. end
  258. assert_raise TypeError do
  259. m.optional_bool = 42
  260. end
  261. assert_raise TypeError do
  262. m.optional_msg = TestMessage.new # expects TestMessage2
  263. end
  264. assert_raise TypeError do
  265. m.repeated_int32 = [] # needs RepeatedField
  266. end
  267. assert_raise TypeError do
  268. m.repeated_int32.push "hello"
  269. end
  270. assert_raise TypeError do
  271. m.repeated_msg.push TestMessage.new
  272. end
  273. end
  274. def test_string_encoding
  275. m = TestMessage.new
  276. # Assigning a normal (ASCII or UTF8) string to a bytes field, or
  277. # ASCII-8BIT to a string field will convert to the proper encoding.
  278. m.optional_bytes = "Test string ASCII".encode!('ASCII')
  279. assert m.optional_bytes.frozen?
  280. assert_equal Encoding::ASCII_8BIT, m.optional_bytes.encoding
  281. assert_equal "Test string ASCII", m.optional_bytes
  282. assert_raise Encoding::UndefinedConversionError do
  283. m.optional_bytes = "Test string UTF-8 \u0100".encode!('UTF-8')
  284. end
  285. assert_raise Encoding::UndefinedConversionError do
  286. m.optional_string = ["FFFF"].pack('H*')
  287. end
  288. # "Ordinary" use case.
  289. m.optional_bytes = ["FFFF"].pack('H*')
  290. m.optional_string = "\u0100"
  291. # strings are immutable so we can't do this, but serialize should catch it.
  292. m.optional_string = "asdf".encode!('UTF-8')
  293. # Ruby 2.5 changed to raise FrozenError. However, assert_raise don't
  294. # accept subclass. Don't specify type here.
  295. assert_raise do
  296. m.optional_string.encode!('ASCII-8BIT')
  297. end
  298. end
  299. def test_rptfield_int32
  300. l = Google::Protobuf::RepeatedField.new(:int32)
  301. assert l.count == 0
  302. l = Google::Protobuf::RepeatedField.new(:int32, [1, 2, 3])
  303. assert l.count == 3
  304. assert_equal [1, 2, 3], l
  305. assert_equal l, [1, 2, 3]
  306. l.push 4
  307. assert l == [1, 2, 3, 4]
  308. dst_list = []
  309. l.each { |val| dst_list.push val }
  310. assert dst_list == [1, 2, 3, 4]
  311. assert l.to_a == [1, 2, 3, 4]
  312. assert l[0] == 1
  313. assert l[3] == 4
  314. l[0] = 5
  315. assert l == [5, 2, 3, 4]
  316. l2 = l.dup
  317. assert l == l2
  318. assert l.object_id != l2.object_id
  319. l2.push 6
  320. assert l.count == 4
  321. assert l2.count == 5
  322. assert l.inspect == '[5, 2, 3, 4]'
  323. l.concat([7, 8, 9])
  324. assert l == [5, 2, 3, 4, 7, 8, 9]
  325. assert l.pop == 9
  326. assert l == [5, 2, 3, 4, 7, 8]
  327. assert_raise TypeError do
  328. m = TestMessage.new
  329. l.push m
  330. end
  331. m = TestMessage.new
  332. m.repeated_int32 = l
  333. assert m.repeated_int32 == [5, 2, 3, 4, 7, 8]
  334. assert m.repeated_int32.object_id == l.object_id
  335. l.push 42
  336. assert m.repeated_int32.pop == 42
  337. l3 = l + l.dup
  338. assert l3.count == l.count * 2
  339. l.count.times do |i|
  340. assert l3[i] == l[i]
  341. assert l3[l.count + i] == l[i]
  342. end
  343. l.clear
  344. assert l.count == 0
  345. l += [1, 2, 3, 4]
  346. l.replace([5, 6, 7, 8])
  347. assert l == [5, 6, 7, 8]
  348. l4 = Google::Protobuf::RepeatedField.new(:int32)
  349. l4[5] = 42
  350. assert l4 == [0, 0, 0, 0, 0, 42]
  351. l4 << 100
  352. assert l4 == [0, 0, 0, 0, 0, 42, 100]
  353. l4 << 101 << 102
  354. assert l4 == [0, 0, 0, 0, 0, 42, 100, 101, 102]
  355. end
  356. def test_parent_rptfield
  357. #make sure we set the RepeatedField and can add to it
  358. m = TestMessage.new
  359. assert m.repeated_string == []
  360. m.repeated_string << 'ok'
  361. m.repeated_string.push('ok2')
  362. assert m.repeated_string == ['ok', 'ok2']
  363. m.repeated_string += ['ok3']
  364. assert m.repeated_string == ['ok', 'ok2', 'ok3']
  365. end
  366. def test_rptfield_msg
  367. l = Google::Protobuf::RepeatedField.new(:message, TestMessage)
  368. l.push TestMessage.new
  369. assert l.count == 1
  370. assert_raise TypeError do
  371. l.push TestMessage2.new
  372. end
  373. assert_raise TypeError do
  374. l.push 42
  375. end
  376. l2 = l.dup
  377. assert l2[0] == l[0]
  378. assert l2[0].object_id == l[0].object_id
  379. l2 = Google::Protobuf.deep_copy(l)
  380. assert l2[0] == l[0]
  381. assert l2[0].object_id != l[0].object_id
  382. l3 = l + l2
  383. assert l3.count == 2
  384. assert l3[0] == l[0]
  385. assert l3[1] == l2[0]
  386. l3[0].optional_int32 = 1000
  387. assert l[0].optional_int32 == 1000
  388. new_msg = TestMessage.new(:optional_int32 => 200)
  389. l4 = l + [new_msg]
  390. assert l4.count == 2
  391. new_msg.optional_int32 = 1000
  392. assert l4[1].optional_int32 == 1000
  393. end
  394. def test_rptfield_enum
  395. l = Google::Protobuf::RepeatedField.new(:enum, TestEnum)
  396. l.push :A
  397. l.push :B
  398. l.push :C
  399. assert l.count == 3
  400. assert_raise RangeError do
  401. l.push :D
  402. end
  403. assert l[0] == :A
  404. l.push 4
  405. assert l[3] == 4
  406. end
  407. def test_rptfield_initialize
  408. assert_raise ArgumentError do
  409. l = Google::Protobuf::RepeatedField.new
  410. end
  411. assert_raise ArgumentError do
  412. l = Google::Protobuf::RepeatedField.new(:message)
  413. end
  414. assert_raise ArgumentError do
  415. l = Google::Protobuf::RepeatedField.new([1, 2, 3])
  416. end
  417. assert_raise ArgumentError do
  418. l = Google::Protobuf::RepeatedField.new(:message, [TestMessage2.new])
  419. end
  420. end
  421. def test_rptfield_array_ducktyping
  422. l = Google::Protobuf::RepeatedField.new(:int32)
  423. length_methods = %w(count length size)
  424. length_methods.each do |lm|
  425. assert l.send(lm) == 0
  426. end
  427. # out of bounds returns a nil
  428. assert l[0] == nil
  429. assert l[1] == nil
  430. assert l[-1] == nil
  431. l.push 4
  432. length_methods.each do |lm|
  433. assert l.send(lm) == 1
  434. end
  435. assert l[0] == 4
  436. assert l[1] == nil
  437. assert l[-1] == 4
  438. assert l[-2] == nil
  439. l.push 2
  440. length_methods.each do |lm|
  441. assert l.send(lm) == 2
  442. end
  443. assert l[0] == 4
  444. assert l[1] == 2
  445. assert l[2] == nil
  446. assert l[-1] == 2
  447. assert l[-2] == 4
  448. assert l[-3] == nil
  449. #adding out of scope will backfill with empty objects
  450. end
  451. def test_map_basic
  452. # allowed key types:
  453. # :int32, :int64, :uint32, :uint64, :bool, :string, :bytes.
  454. m = Google::Protobuf::Map.new(:string, :int32)
  455. m["asdf"] = 1
  456. assert m["asdf"] == 1
  457. m["jkl;"] = 42
  458. assert m == { "jkl;" => 42, "asdf" => 1 }
  459. assert m.has_key?("asdf")
  460. assert !m.has_key?("qwerty")
  461. assert m.length == 2
  462. m2 = m.dup
  463. assert_equal m, m2
  464. assert m.hash != 0
  465. assert_equal m.hash, m2.hash
  466. collected = {}
  467. m.each { |k,v| collected[v] = k }
  468. assert collected == { 42 => "jkl;", 1 => "asdf" }
  469. assert m.delete("asdf") == 1
  470. assert !m.has_key?("asdf")
  471. assert m["asdf"] == nil
  472. assert !m.has_key?("asdf")
  473. # We only assert on inspect value when there is one map entry because the
  474. # order in which elements appear is unspecified (depends on the internal
  475. # hash function). We don't want a brittle test.
  476. assert m.inspect == "{\"jkl;\"=>42}"
  477. assert m.keys == ["jkl;"]
  478. assert m.values == [42]
  479. m.clear
  480. assert m.length == 0
  481. assert m == {}
  482. assert_raise TypeError do
  483. m[1] = 1
  484. end
  485. assert_raise RangeError do
  486. m["asdf"] = 0x1_0000_0000
  487. end
  488. end
  489. def test_map_ctor
  490. m = Google::Protobuf::Map.new(:string, :int32,
  491. {"a" => 1, "b" => 2, "c" => 3})
  492. assert m == {"a" => 1, "c" => 3, "b" => 2}
  493. end
  494. def test_map_keytypes
  495. m = Google::Protobuf::Map.new(:int32, :int32)
  496. m[1] = 42
  497. m[-1] = 42
  498. assert_raise RangeError do
  499. m[0x8000_0000] = 1
  500. end
  501. assert_raise TypeError do
  502. m["asdf"] = 1
  503. end
  504. m = Google::Protobuf::Map.new(:int64, :int32)
  505. m[0x1000_0000_0000_0000] = 1
  506. assert_raise RangeError do
  507. m[0x1_0000_0000_0000_0000] = 1
  508. end
  509. assert_raise TypeError do
  510. m["asdf"] = 1
  511. end
  512. m = Google::Protobuf::Map.new(:uint32, :int32)
  513. m[0x8000_0000] = 1
  514. assert_raise RangeError do
  515. m[0x1_0000_0000] = 1
  516. end
  517. assert_raise RangeError do
  518. m[-1] = 1
  519. end
  520. m = Google::Protobuf::Map.new(:uint64, :int32)
  521. m[0x8000_0000_0000_0000] = 1
  522. assert_raise RangeError do
  523. m[0x1_0000_0000_0000_0000] = 1
  524. end
  525. assert_raise RangeError do
  526. m[-1] = 1
  527. end
  528. m = Google::Protobuf::Map.new(:bool, :int32)
  529. m[true] = 1
  530. m[false] = 2
  531. assert_raise TypeError do
  532. m[1] = 1
  533. end
  534. assert_raise TypeError do
  535. m["asdf"] = 1
  536. end
  537. m = Google::Protobuf::Map.new(:string, :int32)
  538. m["asdf"] = 1
  539. assert_raise TypeError do
  540. m[1] = 1
  541. end
  542. assert_raise Encoding::UndefinedConversionError do
  543. bytestring = ["FFFF"].pack("H*")
  544. m[bytestring] = 1
  545. end
  546. m = Google::Protobuf::Map.new(:bytes, :int32)
  547. bytestring = ["FFFF"].pack("H*")
  548. m[bytestring] = 1
  549. # Allowed -- we will automatically convert to ASCII-8BIT.
  550. m["asdf"] = 1
  551. assert_raise TypeError do
  552. m[1] = 1
  553. end
  554. end
  555. def test_map_msg_enum_valuetypes
  556. m = Google::Protobuf::Map.new(:string, :message, TestMessage)
  557. m["asdf"] = TestMessage.new
  558. assert_raise TypeError do
  559. m["jkl;"] = TestMessage2.new
  560. end
  561. m = Google::Protobuf::Map.new(
  562. :string, :message, TestMessage,
  563. { "a" => TestMessage.new(:optional_int32 => 42),
  564. "b" => TestMessage.new(:optional_int32 => 84) })
  565. assert m.length == 2
  566. assert m.values.map{|msg| msg.optional_int32}.sort == [42, 84]
  567. m = Google::Protobuf::Map.new(:string, :enum, TestEnum,
  568. { "x" => :A, "y" => :B, "z" => :C })
  569. assert m.length == 3
  570. assert m["z"] == :C
  571. m["z"] = 2
  572. assert m["z"] == :B
  573. m["z"] = 4
  574. assert m["z"] == 4
  575. assert_raise RangeError do
  576. m["z"] = :Z
  577. end
  578. assert_raise RangeError do
  579. m["z"] = "z"
  580. end
  581. end
  582. def test_map_dup_deep_copy
  583. m = Google::Protobuf::Map.new(
  584. :string, :message, TestMessage,
  585. { "a" => TestMessage.new(:optional_int32 => 42),
  586. "b" => TestMessage.new(:optional_int32 => 84) })
  587. m2 = m.dup
  588. assert m == m2
  589. assert m.object_id != m2.object_id
  590. assert m["a"].object_id == m2["a"].object_id
  591. assert m["b"].object_id == m2["b"].object_id
  592. m2 = Google::Protobuf.deep_copy(m)
  593. assert m == m2
  594. assert m.object_id != m2.object_id
  595. assert m["a"].object_id != m2["a"].object_id
  596. assert m["b"].object_id != m2["b"].object_id
  597. end
  598. def test_map_field
  599. m = MapMessage.new
  600. assert m.map_string_int32 == {}
  601. assert m.map_string_msg == {}
  602. m = MapMessage.new(
  603. :map_string_int32 => {"a" => 1, "b" => 2},
  604. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  605. "b" => TestMessage2.new(:foo => 2)})
  606. assert m.map_string_int32.keys.sort == ["a", "b"]
  607. assert m.map_string_int32["a"] == 1
  608. assert m.map_string_msg["b"].foo == 2
  609. m.map_string_int32["c"] = 3
  610. assert m.map_string_int32["c"] == 3
  611. m.map_string_msg["c"] = TestMessage2.new(:foo => 3)
  612. assert m.map_string_msg["c"] == TestMessage2.new(:foo => 3)
  613. m.map_string_msg.delete("b")
  614. m.map_string_msg.delete("c")
  615. assert m.map_string_msg == { "a" => TestMessage2.new(:foo => 1) }
  616. assert_raise TypeError do
  617. m.map_string_msg["e"] = TestMessage.new # wrong value type
  618. end
  619. # ensure nothing was added by the above
  620. assert m.map_string_msg == { "a" => TestMessage2.new(:foo => 1) }
  621. m.map_string_int32 = Google::Protobuf::Map.new(:string, :int32)
  622. assert_raise TypeError do
  623. m.map_string_int32 = Google::Protobuf::Map.new(:string, :int64)
  624. end
  625. assert_raise TypeError do
  626. m.map_string_int32 = {}
  627. end
  628. assert_raise TypeError do
  629. m = MapMessage.new(:map_string_int32 => { 1 => "I am not a number" })
  630. end
  631. end
  632. def test_map_corruption
  633. # This pattern led to a crash in a previous version of upb/protobuf.
  634. m = MapMessage.new(map_string_int32: { "aaa" => 1 })
  635. m.map_string_int32['podid'] = 2
  636. m.map_string_int32['aaa'] = 3
  637. end
  638. def test_concurrent_decoding
  639. o = Outer.new
  640. o.items[0] = Inner.new
  641. raw = Outer.encode(o)
  642. thds = 2.times.map do
  643. Thread.new do
  644. 100000.times do
  645. assert_equal o, Outer.decode(raw)
  646. end
  647. end
  648. end
  649. thds.map(&:join)
  650. end
  651. def test_map_encode_decode
  652. m = MapMessage.new(
  653. :map_string_int32 => {"a" => 1, "b" => 2},
  654. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  655. "b" => TestMessage2.new(:foo => 2)})
  656. m2 = MapMessage.decode(MapMessage.encode(m))
  657. assert m == m2
  658. m3 = MapMessageWireEquiv.decode(MapMessage.encode(m))
  659. assert m3.map_string_int32.length == 2
  660. kv = {}
  661. m3.map_string_int32.map { |msg| kv[msg.key] = msg.value }
  662. assert kv == {"a" => 1, "b" => 2}
  663. kv = {}
  664. m3.map_string_msg.map { |msg| kv[msg.key] = msg.value }
  665. assert kv == {"a" => TestMessage2.new(:foo => 1),
  666. "b" => TestMessage2.new(:foo => 2)}
  667. end
  668. def test_oneof_descriptors
  669. d = OneofMessage.descriptor
  670. o = d.lookup_oneof("my_oneof")
  671. assert o != nil
  672. assert o.class == Google::Protobuf::OneofDescriptor
  673. assert o.name == "my_oneof"
  674. oneof_count = 0
  675. d.each_oneof{ |oneof|
  676. oneof_count += 1
  677. assert oneof == o
  678. }
  679. assert oneof_count == 1
  680. assert o.count == 4
  681. field_names = o.map{|f| f.name}.sort
  682. assert field_names == ["a", "b", "c", "d"]
  683. end
  684. def test_oneof
  685. d = OneofMessage.new
  686. assert d.a == ""
  687. assert d.b == 0
  688. assert d.c == nil
  689. assert d.d == :Default
  690. assert d.my_oneof == nil
  691. d.a = "hi"
  692. assert d.a == "hi"
  693. assert d.b == 0
  694. assert d.c == nil
  695. assert d.d == :Default
  696. assert d.my_oneof == :a
  697. d.b = 42
  698. assert d.a == ""
  699. assert d.b == 42
  700. assert d.c == nil
  701. assert d.d == :Default
  702. assert d.my_oneof == :b
  703. d.c = TestMessage2.new(:foo => 100)
  704. assert d.a == ""
  705. assert d.b == 0
  706. assert d.c.foo == 100
  707. assert d.d == :Default
  708. assert d.my_oneof == :c
  709. d.d = :C
  710. assert d.a == ""
  711. assert d.b == 0
  712. assert d.c == nil
  713. assert d.d == :C
  714. assert d.my_oneof == :d
  715. d2 = OneofMessage.decode(OneofMessage.encode(d))
  716. assert d2 == d
  717. encoded_field_a = OneofMessage.encode(OneofMessage.new(:a => "string"))
  718. encoded_field_b = OneofMessage.encode(OneofMessage.new(:b => 1000))
  719. encoded_field_c = OneofMessage.encode(
  720. OneofMessage.new(:c => TestMessage2.new(:foo => 1)))
  721. encoded_field_d = OneofMessage.encode(OneofMessage.new(:d => :B))
  722. d3 = OneofMessage.decode(
  723. encoded_field_c + encoded_field_a + encoded_field_d)
  724. assert d3.a == ""
  725. assert d3.b == 0
  726. assert d3.c == nil
  727. assert d3.d == :B
  728. d4 = OneofMessage.decode(
  729. encoded_field_c + encoded_field_a + encoded_field_d +
  730. encoded_field_c)
  731. assert d4.a == ""
  732. assert d4.b == 0
  733. assert d4.c.foo == 1
  734. assert d4.d == :Default
  735. d5 = OneofMessage.new(:a => "hello")
  736. assert d5.a == "hello"
  737. d5.a = nil
  738. assert d5.a == ""
  739. assert OneofMessage.encode(d5) == ''
  740. assert d5.my_oneof == nil
  741. end
  742. def test_enum_field
  743. m = TestMessage.new
  744. assert m.optional_enum == :Default
  745. m.optional_enum = :A
  746. assert m.optional_enum == :A
  747. assert_raise RangeError do
  748. m.optional_enum = :ASDF
  749. end
  750. m.optional_enum = 1
  751. assert m.optional_enum == :A
  752. m.optional_enum = 100
  753. assert m.optional_enum == 100
  754. end
  755. def test_dup
  756. m = TestMessage.new
  757. m.optional_string = "hello"
  758. m.optional_int32 = 42
  759. tm1 = TestMessage2.new(:foo => 100)
  760. tm2 = TestMessage2.new(:foo => 200)
  761. m.repeated_msg.push tm1
  762. assert m.repeated_msg[-1] == tm1
  763. m.repeated_msg.push tm2
  764. assert m.repeated_msg[-1] == tm2
  765. m2 = m.dup
  766. assert m == m2
  767. m.optional_int32 += 1
  768. assert m != m2
  769. assert m.repeated_msg[0] == m2.repeated_msg[0]
  770. assert m.repeated_msg[0].object_id == m2.repeated_msg[0].object_id
  771. end
  772. def test_deep_copy
  773. m = TestMessage.new(:optional_int32 => 42,
  774. :repeated_msg => [TestMessage2.new(:foo => 100)])
  775. m2 = Google::Protobuf.deep_copy(m)
  776. assert m == m2
  777. assert m.repeated_msg == m2.repeated_msg
  778. assert m.repeated_msg.object_id != m2.repeated_msg.object_id
  779. assert m.repeated_msg[0].object_id != m2.repeated_msg[0].object_id
  780. end
  781. def test_eq
  782. m = TestMessage.new(:optional_int32 => 42,
  783. :repeated_int32 => [1, 2, 3])
  784. m2 = TestMessage.new(:optional_int32 => 43,
  785. :repeated_int32 => [1, 2, 3])
  786. assert m != m2
  787. end
  788. def test_enum_lookup
  789. assert TestEnum::A == 1
  790. assert TestEnum::B == 2
  791. assert TestEnum::C == 3
  792. assert TestEnum::lookup(1) == :A
  793. assert TestEnum::lookup(2) == :B
  794. assert TestEnum::lookup(3) == :C
  795. assert TestEnum::resolve(:A) == 1
  796. assert TestEnum::resolve(:B) == 2
  797. assert TestEnum::resolve(:C) == 3
  798. end
  799. def test_parse_serialize
  800. m = TestMessage.new(:optional_int32 => 42,
  801. :optional_string => "hello world",
  802. :optional_enum => :B,
  803. :repeated_string => ["a", "b", "c"],
  804. :repeated_int32 => [42, 43, 44],
  805. :repeated_enum => [:A, :B, :C, 100],
  806. :repeated_msg => [TestMessage2.new(:foo => 1),
  807. TestMessage2.new(:foo => 2)])
  808. data = TestMessage.encode m
  809. m2 = TestMessage.decode data
  810. assert m == m2
  811. data = Google::Protobuf.encode m
  812. m2 = Google::Protobuf.decode(TestMessage, data)
  813. assert m == m2
  814. end
  815. def test_encode_decode_helpers
  816. m = TestMessage.new(:optional_string => 'foo', :repeated_string => ['bar1', 'bar2'])
  817. assert_equal 'foo', m.optional_string
  818. assert_equal ['bar1', 'bar2'], m.repeated_string
  819. json = m.to_json
  820. m2 = TestMessage.decode_json(json)
  821. assert_equal 'foo', m2.optional_string
  822. assert_equal ['bar1', 'bar2'], m2.repeated_string
  823. if RUBY_PLATFORM != "java"
  824. assert m2.optional_string.frozen?
  825. assert m2.repeated_string[0].frozen?
  826. end
  827. proto = m.to_proto
  828. m2 = TestMessage.decode(proto)
  829. assert_equal 'foo', m2.optional_string
  830. assert_equal ['bar1', 'bar2'], m2.repeated_string
  831. end
  832. def test_protobuf_encode_decode_helpers
  833. m = TestMessage.new(:optional_string => 'foo', :repeated_string => ['bar1', 'bar2'])
  834. encoded_msg = Google::Protobuf.encode(m)
  835. assert_equal m.to_proto, encoded_msg
  836. decoded_msg = Google::Protobuf.decode(TestMessage, encoded_msg)
  837. assert_equal TestMessage.decode(m.to_proto), decoded_msg
  838. end
  839. def test_protobuf_encode_decode_json_helpers
  840. m = TestMessage.new(:optional_string => 'foo', :repeated_string => ['bar1', 'bar2'])
  841. encoded_msg = Google::Protobuf.encode_json(m)
  842. assert_equal m.to_json, encoded_msg
  843. decoded_msg = Google::Protobuf.decode_json(TestMessage, encoded_msg)
  844. assert_equal TestMessage.decode_json(m.to_json), decoded_msg
  845. end
  846. def test_to_h
  847. m = TestMessage.new(:optional_bool => true, :optional_double => -10.100001, :optional_string => 'foo', :repeated_string => ['bar1', 'bar2'], :repeated_msg => [TestMessage2.new(:foo => 100)])
  848. expected_result = {
  849. :optional_bool=>true,
  850. :optional_bytes=>"",
  851. :optional_double=>-10.100001,
  852. :optional_enum=>:Default,
  853. :optional_float=>0.0,
  854. :optional_int32=>0,
  855. :optional_int64=>0,
  856. :optional_msg=>nil,
  857. :optional_string=>"foo",
  858. :optional_uint32=>0,
  859. :optional_uint64=>0,
  860. :repeated_bool=>[],
  861. :repeated_bytes=>[],
  862. :repeated_double=>[],
  863. :repeated_enum=>[],
  864. :repeated_float=>[],
  865. :repeated_int32=>[],
  866. :repeated_int64=>[],
  867. :repeated_msg=>[{:foo => 100}],
  868. :repeated_string=>["bar1", "bar2"],
  869. :repeated_uint32=>[],
  870. :repeated_uint64=>[]
  871. }
  872. assert_equal expected_result, m.to_h
  873. m = MapMessage.new(
  874. :map_string_int32 => {"a" => 1, "b" => 2},
  875. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  876. "b" => TestMessage2.new(:foo => 2)})
  877. expected_result = {
  878. :map_string_int32 => {"a" => 1, "b" => 2},
  879. :map_string_msg => {"a" => {:foo => 1}, "b" => {:foo => 2}}
  880. }
  881. assert_equal expected_result, m.to_h
  882. end
  883. def test_def_errors
  884. s = Google::Protobuf::DescriptorPool.new
  885. assert_raise TypeError do
  886. s.build do
  887. # enum with no default (integer value 0)
  888. add_enum "MyEnum" do
  889. value :A, 1
  890. end
  891. end
  892. end
  893. assert_raise TypeError do
  894. s.build do
  895. # message with required field (unsupported in proto3)
  896. add_message "MyMessage" do
  897. required :foo, :int32, 1
  898. end
  899. end
  900. end
  901. end
  902. def test_corecursive
  903. # just be sure that we can instantiate types with corecursive field-type
  904. # references.
  905. m = Recursive1.new(:foo => Recursive2.new(:foo => Recursive1.new))
  906. assert Recursive1.descriptor.lookup("foo").subtype ==
  907. Recursive2.descriptor
  908. assert Recursive2.descriptor.lookup("foo").subtype ==
  909. Recursive1.descriptor
  910. serialized = Recursive1.encode(m)
  911. m2 = Recursive1.decode(serialized)
  912. assert m == m2
  913. end
  914. def test_serialize_cycle
  915. m = Recursive1.new(:foo => Recursive2.new)
  916. m.foo.foo = m
  917. assert_raise RuntimeError do
  918. serialized = Recursive1.encode(m)
  919. end
  920. end
  921. def test_bad_field_names
  922. m = BadFieldNames.new(:dup => 1, :class => 2)
  923. m2 = m.dup
  924. assert m == m2
  925. assert m['dup'] == 1
  926. assert m['class'] == 2
  927. m['dup'] = 3
  928. assert m['dup'] == 3
  929. m['a.b'] = 4
  930. assert m['a.b'] == 4
  931. end
  932. def test_int_ranges
  933. m = TestMessage.new
  934. m.optional_int32 = 0
  935. m.optional_int32 = -0x8000_0000
  936. m.optional_int32 = +0x7fff_ffff
  937. m.optional_int32 = 1.0
  938. m.optional_int32 = -1.0
  939. m.optional_int32 = 2e9
  940. assert_raise RangeError do
  941. m.optional_int32 = -0x8000_0001
  942. end
  943. assert_raise RangeError do
  944. m.optional_int32 = +0x8000_0000
  945. end
  946. assert_raise RangeError do
  947. m.optional_int32 = +0x1000_0000_0000_0000_0000_0000 # force Bignum
  948. end
  949. assert_raise RangeError do
  950. m.optional_int32 = 1e12
  951. end
  952. assert_raise RangeError do
  953. m.optional_int32 = 1.5
  954. end
  955. m.optional_uint32 = 0
  956. m.optional_uint32 = +0xffff_ffff
  957. m.optional_uint32 = 1.0
  958. m.optional_uint32 = 4e9
  959. assert_raise RangeError do
  960. m.optional_uint32 = -1
  961. end
  962. assert_raise RangeError do
  963. m.optional_uint32 = -1.5
  964. end
  965. assert_raise RangeError do
  966. m.optional_uint32 = -1.5e12
  967. end
  968. assert_raise RangeError do
  969. m.optional_uint32 = -0x1000_0000_0000_0000
  970. end
  971. assert_raise RangeError do
  972. m.optional_uint32 = +0x1_0000_0000
  973. end
  974. assert_raise RangeError do
  975. m.optional_uint32 = +0x1000_0000_0000_0000_0000_0000 # force Bignum
  976. end
  977. assert_raise RangeError do
  978. m.optional_uint32 = 1e12
  979. end
  980. assert_raise RangeError do
  981. m.optional_uint32 = 1.5
  982. end
  983. m.optional_int64 = 0
  984. m.optional_int64 = -0x8000_0000_0000_0000
  985. m.optional_int64 = +0x7fff_ffff_ffff_ffff
  986. m.optional_int64 = 1.0
  987. m.optional_int64 = -1.0
  988. m.optional_int64 = 8e18
  989. m.optional_int64 = -8e18
  990. assert_raise RangeError do
  991. m.optional_int64 = -0x8000_0000_0000_0001
  992. end
  993. assert_raise RangeError do
  994. m.optional_int64 = +0x8000_0000_0000_0000
  995. end
  996. assert_raise RangeError do
  997. m.optional_int64 = +0x1000_0000_0000_0000_0000_0000 # force Bignum
  998. end
  999. assert_raise RangeError do
  1000. m.optional_int64 = 1e50
  1001. end
  1002. assert_raise RangeError do
  1003. m.optional_int64 = 1.5
  1004. end
  1005. m.optional_uint64 = 0
  1006. m.optional_uint64 = +0xffff_ffff_ffff_ffff
  1007. m.optional_uint64 = 1.0
  1008. m.optional_uint64 = 16e18
  1009. assert_raise RangeError do
  1010. m.optional_uint64 = -1
  1011. end
  1012. assert_raise RangeError do
  1013. m.optional_uint64 = -1.5
  1014. end
  1015. assert_raise RangeError do
  1016. m.optional_uint64 = -1.5e12
  1017. end
  1018. assert_raise RangeError do
  1019. m.optional_uint64 = -0x1_0000_0000_0000_0000
  1020. end
  1021. assert_raise RangeError do
  1022. m.optional_uint64 = +0x1_0000_0000_0000_0000
  1023. end
  1024. assert_raise RangeError do
  1025. m.optional_uint64 = +0x1000_0000_0000_0000_0000_0000 # force Bignum
  1026. end
  1027. assert_raise RangeError do
  1028. m.optional_uint64 = 1e50
  1029. end
  1030. assert_raise RangeError do
  1031. m.optional_uint64 = 1.5
  1032. end
  1033. end
  1034. def test_stress_test
  1035. m = TestMessage.new
  1036. m.optional_int32 = 42
  1037. m.optional_int64 = 0x100000000
  1038. m.optional_string = "hello world"
  1039. 10.times do m.repeated_msg.push TestMessage2.new(:foo => 42) end
  1040. 10.times do m.repeated_string.push "hello world" end
  1041. data = TestMessage.encode(m)
  1042. l = 0
  1043. 10_000.times do
  1044. m = TestMessage.decode(data)
  1045. data_new = TestMessage.encode(m)
  1046. assert data_new == data
  1047. data = data_new
  1048. end
  1049. end
  1050. def test_reflection
  1051. m = TestMessage.new(:optional_int32 => 1234)
  1052. msgdef = m.class.descriptor
  1053. assert msgdef.class == Google::Protobuf::Descriptor
  1054. assert msgdef.any? {|field| field.name == "optional_int32"}
  1055. optional_int32 = msgdef.lookup "optional_int32"
  1056. assert optional_int32.class == Google::Protobuf::FieldDescriptor
  1057. assert optional_int32 != nil
  1058. assert optional_int32.name == "optional_int32"
  1059. assert optional_int32.type == :int32
  1060. optional_int32.set(m, 5678)
  1061. assert m.optional_int32 == 5678
  1062. m.optional_int32 = 1000
  1063. assert optional_int32.get(m) == 1000
  1064. optional_msg = msgdef.lookup "optional_msg"
  1065. assert optional_msg.subtype == TestMessage2.descriptor
  1066. optional_msg.set(m, optional_msg.subtype.msgclass.new)
  1067. assert msgdef.msgclass == TestMessage
  1068. optional_enum = msgdef.lookup "optional_enum"
  1069. assert optional_enum.subtype == TestEnum.descriptor
  1070. assert optional_enum.subtype.class == Google::Protobuf::EnumDescriptor
  1071. optional_enum.subtype.each do |k, v|
  1072. # set with integer, check resolution to symbolic name
  1073. optional_enum.set(m, v)
  1074. assert optional_enum.get(m) == k
  1075. end
  1076. end
  1077. def test_json
  1078. # TODO: Fix JSON in JRuby version.
  1079. return if RUBY_PLATFORM == "java"
  1080. m = TestMessage.new(:optional_int32 => 1234,
  1081. :optional_int64 => -0x1_0000_0000,
  1082. :optional_uint32 => 0x8000_0000,
  1083. :optional_uint64 => 0xffff_ffff_ffff_ffff,
  1084. :optional_bool => true,
  1085. :optional_float => 1.0,
  1086. :optional_double => -1e100,
  1087. :optional_string => "Test string",
  1088. :optional_bytes => ["FFFFFFFF"].pack('H*'),
  1089. :optional_msg => TestMessage2.new(:foo => 42),
  1090. :repeated_int32 => [1, 2, 3, 4],
  1091. :repeated_string => ["a", "b", "c"],
  1092. :repeated_bool => [true, false, true, false],
  1093. :repeated_msg => [TestMessage2.new(:foo => 1),
  1094. TestMessage2.new(:foo => 2)])
  1095. json_text = TestMessage.encode_json(m)
  1096. m2 = TestMessage.decode_json(json_text)
  1097. puts m.inspect
  1098. puts m2.inspect
  1099. assert m == m2
  1100. # Crash case from GitHub issue 283.
  1101. bar = Bar.new(msg: "bar")
  1102. baz1 = Baz.new(msg: "baz")
  1103. baz2 = Baz.new(msg: "quux")
  1104. Foo.encode_json(Foo.new)
  1105. Foo.encode_json(Foo.new(bar: bar))
  1106. Foo.encode_json(Foo.new(bar: bar, baz: [baz1, baz2]))
  1107. end
  1108. def test_json_emit_defaults
  1109. # TODO: Fix JSON in JRuby version.
  1110. return if RUBY_PLATFORM == "java"
  1111. m = TestMessage.new
  1112. expected = {
  1113. optionalInt32: 0,
  1114. optionalInt64: 0,
  1115. optionalUint32: 0,
  1116. optionalUint64: 0,
  1117. optionalBool: false,
  1118. optionalFloat: 0,
  1119. optionalDouble: 0,
  1120. optionalString: "",
  1121. optionalBytes: "",
  1122. optionalEnum: "Default",
  1123. repeatedInt32: [],
  1124. repeatedInt64: [],
  1125. repeatedUint32: [],
  1126. repeatedUint64: [],
  1127. repeatedBool: [],
  1128. repeatedFloat: [],
  1129. repeatedDouble: [],
  1130. repeatedString: [],
  1131. repeatedBytes: [],
  1132. repeatedMsg: [],
  1133. repeatedEnum: []
  1134. }
  1135. actual = TestMessage.encode_json(m, :emit_defaults => true)
  1136. assert JSON.parse(actual, :symbolize_names => true) == expected
  1137. end
  1138. def test_json_emit_defaults_submsg
  1139. # TODO: Fix JSON in JRuby version.
  1140. return if RUBY_PLATFORM == "java"
  1141. m = TestMessage.new(optional_msg: TestMessage2.new)
  1142. expected = {
  1143. optionalInt32: 0,
  1144. optionalInt64: 0,
  1145. optionalUint32: 0,
  1146. optionalUint64: 0,
  1147. optionalBool: false,
  1148. optionalFloat: 0,
  1149. optionalDouble: 0,
  1150. optionalString: "",
  1151. optionalBytes: "",
  1152. optionalMsg: {foo: 0},
  1153. optionalEnum: "Default",
  1154. repeatedInt32: [],
  1155. repeatedInt64: [],
  1156. repeatedUint32: [],
  1157. repeatedUint64: [],
  1158. repeatedBool: [],
  1159. repeatedFloat: [],
  1160. repeatedDouble: [],
  1161. repeatedString: [],
  1162. repeatedBytes: [],
  1163. repeatedMsg: [],
  1164. repeatedEnum: []
  1165. }
  1166. actual = TestMessage.encode_json(m, :emit_defaults => true)
  1167. assert JSON.parse(actual, :symbolize_names => true) == expected
  1168. end
  1169. def test_json_emit_defaults_repeated_submsg
  1170. # TODO: Fix JSON in JRuby version.
  1171. return if RUBY_PLATFORM == "java"
  1172. m = TestMessage.new(repeated_msg: [TestMessage2.new])
  1173. expected = {
  1174. optionalInt32: 0,
  1175. optionalInt64: 0,
  1176. optionalUint32: 0,
  1177. optionalUint64: 0,
  1178. optionalBool: false,
  1179. optionalFloat: 0,
  1180. optionalDouble: 0,
  1181. optionalString: "",
  1182. optionalBytes: "",
  1183. optionalEnum: "Default",
  1184. repeatedInt32: [],
  1185. repeatedInt64: [],
  1186. repeatedUint32: [],
  1187. repeatedUint64: [],
  1188. repeatedBool: [],
  1189. repeatedFloat: [],
  1190. repeatedDouble: [],
  1191. repeatedString: [],
  1192. repeatedBytes: [],
  1193. repeatedMsg: [{foo: 0}],
  1194. repeatedEnum: []
  1195. }
  1196. actual = TestMessage.encode_json(m, :emit_defaults => true)
  1197. assert JSON.parse(actual, :symbolize_names => true) == expected
  1198. end
  1199. def test_json_maps
  1200. # TODO: Fix JSON in JRuby version.
  1201. return if RUBY_PLATFORM == "java"
  1202. m = MapMessage.new(:map_string_int32 => {"a" => 1})
  1203. expected = {mapStringInt32: {a: 1}, mapStringMsg: {}}
  1204. expected_preserve = {map_string_int32: {a: 1}, map_string_msg: {}}
  1205. assert JSON.parse(MapMessage.encode_json(m), :symbolize_names => true) == expected
  1206. json = MapMessage.encode_json(m, :preserve_proto_fieldnames => true)
  1207. assert JSON.parse(json, :symbolize_names => true) == expected_preserve
  1208. m2 = MapMessage.decode_json(MapMessage.encode_json(m))
  1209. assert m == m2
  1210. end
  1211. def test_json_maps_emit_defaults_submsg
  1212. # TODO: Fix JSON in JRuby version.
  1213. return if RUBY_PLATFORM == "java"
  1214. m = MapMessage.new(:map_string_msg => {"a" => TestMessage2.new})
  1215. expected = {mapStringInt32: {}, mapStringMsg: {a: {foo: 0}}}
  1216. actual = MapMessage.encode_json(m, :emit_defaults => true)
  1217. assert JSON.parse(actual, :symbolize_names => true) == expected
  1218. end
  1219. def test_comparison_with_arbitrary_object
  1220. assert MapMessage.new != nil
  1221. end
  1222. def test_respond_to
  1223. # This test fails with JRuby 1.7.23, likely because of an old JRuby bug.
  1224. return if RUBY_PLATFORM == "java"
  1225. msg = MapMessage.new
  1226. assert msg.respond_to?(:map_string_int32)
  1227. assert !msg.respond_to?(:bacon)
  1228. end
  1229. end
  1230. end