basic.rb 19 KB

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  1. #!/usr/bin/ruby
  2. # basic_test_pb.rb is in the same directory as this test.
  3. $LOAD_PATH.unshift(File.expand_path(File.dirname(__FILE__)))
  4. require 'basic_test_pb'
  5. require 'common_tests'
  6. require 'google/protobuf'
  7. require 'json'
  8. require 'test/unit'
  9. # ------------- generated code --------------
  10. module BasicTest
  11. pool = Google::Protobuf::DescriptorPool.new
  12. pool.build do
  13. add_message "BadFieldNames" do
  14. optional :dup, :int32, 1
  15. optional :class, :int32, 2
  16. end
  17. end
  18. BadFieldNames = pool.lookup("BadFieldNames").msgclass
  19. # ------------ test cases ---------------
  20. class MessageContainerTest < Test::Unit::TestCase
  21. # Required by CommonTests module to resolve proto3 proto classes used in tests.
  22. def proto_module
  23. ::BasicTest
  24. end
  25. include CommonTests
  26. def test_has_field
  27. m = TestSingularFields.new
  28. assert !m.has_singular_msg?
  29. m.singular_msg = TestMessage2.new
  30. assert m.has_singular_msg?
  31. assert TestSingularFields.descriptor.lookup('singular_msg').has?(m)
  32. m = OneofMessage.new
  33. assert !m.has_my_oneof?
  34. m.a = "foo"
  35. assert m.has_my_oneof?
  36. assert_raise NoMethodError do
  37. m.has_a?
  38. end
  39. assert_true OneofMessage.descriptor.lookup('a').has?(m)
  40. m = TestSingularFields.new
  41. assert_raise NoMethodError do
  42. m.has_singular_int32?
  43. end
  44. assert_raise ArgumentError do
  45. TestSingularFields.descriptor.lookup('singular_int32').has?(m)
  46. end
  47. assert_raise NoMethodError do
  48. m.has_singular_string?
  49. end
  50. assert_raise ArgumentError do
  51. TestSingularFields.descriptor.lookup('singular_string').has?(m)
  52. end
  53. assert_raise NoMethodError do
  54. m.has_singular_bool?
  55. end
  56. assert_raise ArgumentError do
  57. TestSingularFields.descriptor.lookup('singular_bool').has?(m)
  58. end
  59. m = TestMessage.new
  60. assert_raise NoMethodError do
  61. m.has_repeated_msg?
  62. end
  63. assert_raise ArgumentError do
  64. TestMessage.descriptor.lookup('repeated_msg').has?(m)
  65. end
  66. end
  67. def test_no_presence
  68. m = TestSingularFields.new
  69. # Explicitly setting to zero does not cause anything to be serialized.
  70. m.singular_int32 = 0
  71. assert_equal "", TestSingularFields.encode(m)
  72. # Explicitly setting to a non-zero value *does* cause serialization.
  73. m.singular_int32 = 1
  74. assert_not_equal "", TestSingularFields.encode(m)
  75. m.singular_int32 = 0
  76. assert_equal "", TestSingularFields.encode(m)
  77. end
  78. def test_set_clear_defaults
  79. m = TestSingularFields.new
  80. m.singular_int32 = -42
  81. assert_equal -42, m.singular_int32
  82. m.clear_singular_int32
  83. assert_equal 0, m.singular_int32
  84. m.singular_int32 = 50
  85. assert_equal 50, m.singular_int32
  86. TestSingularFields.descriptor.lookup('singular_int32').clear(m)
  87. assert_equal 0, m.singular_int32
  88. m.singular_string = "foo bar"
  89. assert_equal "foo bar", m.singular_string
  90. m.clear_singular_string
  91. assert_equal "", m.singular_string
  92. m.singular_string = "foo"
  93. assert_equal "foo", m.singular_string
  94. TestSingularFields.descriptor.lookup('singular_string').clear(m)
  95. assert_equal "", m.singular_string
  96. m.singular_msg = TestMessage2.new(:foo => 42)
  97. assert_equal TestMessage2.new(:foo => 42), m.singular_msg
  98. assert m.has_singular_msg?
  99. m.clear_singular_msg
  100. assert_equal nil, m.singular_msg
  101. assert !m.has_singular_msg?
  102. m.singular_msg = TestMessage2.new(:foo => 42)
  103. assert_equal TestMessage2.new(:foo => 42), m.singular_msg
  104. TestSingularFields.descriptor.lookup('singular_msg').clear(m)
  105. assert_equal nil, m.singular_msg
  106. end
  107. def test_clear_repeated_fields
  108. m = TestMessage.new
  109. m.repeated_int32.push(1)
  110. assert_equal [1], m.repeated_int32
  111. m.clear_repeated_int32
  112. assert_equal [], m.repeated_int32
  113. m.repeated_int32.push(1)
  114. assert_equal [1], m.repeated_int32
  115. TestMessage.descriptor.lookup('repeated_int32').clear(m)
  116. assert_equal [], m.repeated_int32
  117. m = OneofMessage.new
  118. m.a = "foo"
  119. assert_equal "foo", m.a
  120. assert m.has_my_oneof?
  121. assert_equal :a, m.my_oneof
  122. m.clear_a
  123. assert !m.has_my_oneof?
  124. m.a = "foobar"
  125. assert m.has_my_oneof?
  126. m.clear_my_oneof
  127. assert !m.has_my_oneof?
  128. m.a = "bar"
  129. assert_equal "bar", m.a
  130. assert m.has_my_oneof?
  131. OneofMessage.descriptor.lookup('a').clear(m)
  132. assert !m.has_my_oneof?
  133. end
  134. def test_initialization_map_errors
  135. e = assert_raise ArgumentError do
  136. TestMessage.new(:hello => "world")
  137. end
  138. assert_match(/hello/, e.message)
  139. e = assert_raise ArgumentError do
  140. MapMessage.new(:map_string_int32 => "hello")
  141. end
  142. assert_equal e.message, "Expected Hash object as initializer value for map field 'map_string_int32' (given String)."
  143. e = assert_raise ArgumentError do
  144. TestMessage.new(:repeated_uint32 => "hello")
  145. end
  146. assert_equal e.message, "Expected array as initializer value for repeated field 'repeated_uint32' (given String)."
  147. end
  148. def test_map_field
  149. m = MapMessage.new
  150. assert m.map_string_int32 == {}
  151. assert m.map_string_msg == {}
  152. m = MapMessage.new(
  153. :map_string_int32 => {"a" => 1, "b" => 2},
  154. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  155. "b" => TestMessage2.new(:foo => 2)},
  156. :map_string_enum => {"a" => :A, "b" => :B})
  157. assert m.map_string_int32.keys.sort == ["a", "b"]
  158. assert m.map_string_int32["a"] == 1
  159. assert m.map_string_msg["b"].foo == 2
  160. assert m.map_string_enum["a"] == :A
  161. m.map_string_int32["c"] = 3
  162. assert m.map_string_int32["c"] == 3
  163. m.map_string_msg["c"] = TestMessage2.new(:foo => 3)
  164. assert m.map_string_msg["c"] == TestMessage2.new(:foo => 3)
  165. m.map_string_msg.delete("b")
  166. m.map_string_msg.delete("c")
  167. assert m.map_string_msg == { "a" => TestMessage2.new(:foo => 1) }
  168. assert_raise Google::Protobuf::TypeError do
  169. m.map_string_msg["e"] = TestMessage.new # wrong value type
  170. end
  171. # ensure nothing was added by the above
  172. assert m.map_string_msg == { "a" => TestMessage2.new(:foo => 1) }
  173. m.map_string_int32 = Google::Protobuf::Map.new(:string, :int32)
  174. assert_raise Google::Protobuf::TypeError do
  175. m.map_string_int32 = Google::Protobuf::Map.new(:string, :int64)
  176. end
  177. assert_raise Google::Protobuf::TypeError do
  178. m.map_string_int32 = {}
  179. end
  180. assert_raise TypeError do
  181. m = MapMessage.new(:map_string_int32 => { 1 => "I am not a number" })
  182. end
  183. end
  184. def test_map_field_with_symbol
  185. m = MapMessage.new
  186. assert m.map_string_int32 == {}
  187. assert m.map_string_msg == {}
  188. m = MapMessage.new(
  189. :map_string_int32 => {a: 1, "b" => 2},
  190. :map_string_msg => {a: TestMessage2.new(:foo => 1),
  191. b: TestMessage2.new(:foo => 10)})
  192. assert_equal 1, m.map_string_int32[:a]
  193. assert_equal 2, m.map_string_int32[:b]
  194. assert_equal 10, m.map_string_msg[:b].foo
  195. end
  196. def test_map_inspect
  197. m = MapMessage.new(
  198. :map_string_int32 => {"a" => 1, "b" => 2},
  199. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  200. "b" => TestMessage2.new(:foo => 2)},
  201. :map_string_enum => {"a" => :A, "b" => :B})
  202. expected = "<BasicTest::MapMessage: map_string_int32: {\"b\"=>2, \"a\"=>1}, map_string_msg: {\"b\"=><BasicTest::TestMessage2: foo: 2>, \"a\"=><BasicTest::TestMessage2: foo: 1>}, map_string_enum: {\"b\"=>:B, \"a\"=>:A}>"
  203. assert_equal expected, m.inspect
  204. end
  205. def test_map_corruption
  206. # This pattern led to a crash in a previous version of upb/protobuf.
  207. m = MapMessage.new(map_string_int32: { "aaa" => 1 })
  208. m.map_string_int32['podid'] = 2
  209. m.map_string_int32['aaa'] = 3
  210. end
  211. def test_map_wrappers
  212. run_asserts = ->(m) {
  213. assert_equal 2.0, m.map_double[0].value
  214. assert_equal 4.0, m.map_float[0].value
  215. assert_equal 3, m.map_int32[0].value
  216. assert_equal 4, m.map_int64[0].value
  217. assert_equal 5, m.map_uint32[0].value
  218. assert_equal 6, m.map_uint64[0].value
  219. assert_equal true, m.map_bool[0].value
  220. assert_equal 'str', m.map_string[0].value
  221. assert_equal 'fun', m.map_bytes[0].value
  222. }
  223. m = proto_module::Wrapper.new(
  224. map_double: {0 => Google::Protobuf::DoubleValue.new(value: 2.0)},
  225. map_float: {0 => Google::Protobuf::FloatValue.new(value: 4.0)},
  226. map_int32: {0 => Google::Protobuf::Int32Value.new(value: 3)},
  227. map_int64: {0 => Google::Protobuf::Int64Value.new(value: 4)},
  228. map_uint32: {0 => Google::Protobuf::UInt32Value.new(value: 5)},
  229. map_uint64: {0 => Google::Protobuf::UInt64Value.new(value: 6)},
  230. map_bool: {0 => Google::Protobuf::BoolValue.new(value: true)},
  231. map_string: {0 => Google::Protobuf::StringValue.new(value: 'str')},
  232. map_bytes: {0 => Google::Protobuf::BytesValue.new(value: 'fun')},
  233. )
  234. run_asserts.call(m)
  235. serialized = proto_module::Wrapper::encode(m)
  236. m2 = proto_module::Wrapper::decode(serialized)
  237. run_asserts.call(m2)
  238. # Test the case where we are serializing directly from the parsed form
  239. # (before anything lazy is materialized).
  240. m3 = proto_module::Wrapper::decode(serialized)
  241. serialized2 = proto_module::Wrapper::encode(m3)
  242. m4 = proto_module::Wrapper::decode(serialized2)
  243. run_asserts.call(m4)
  244. # Test that the lazy form compares equal to the expanded form.
  245. m5 = proto_module::Wrapper::decode(serialized2)
  246. assert_equal m5, m
  247. end
  248. def test_map_wrappers_with_default_values
  249. run_asserts = ->(m) {
  250. assert_equal 0.0, m.map_double[0].value
  251. assert_equal 0.0, m.map_float[0].value
  252. assert_equal 0, m.map_int32[0].value
  253. assert_equal 0, m.map_int64[0].value
  254. assert_equal 0, m.map_uint32[0].value
  255. assert_equal 0, m.map_uint64[0].value
  256. assert_equal false, m.map_bool[0].value
  257. assert_equal '', m.map_string[0].value
  258. assert_equal '', m.map_bytes[0].value
  259. }
  260. m = proto_module::Wrapper.new(
  261. map_double: {0 => Google::Protobuf::DoubleValue.new(value: 0.0)},
  262. map_float: {0 => Google::Protobuf::FloatValue.new(value: 0.0)},
  263. map_int32: {0 => Google::Protobuf::Int32Value.new(value: 0)},
  264. map_int64: {0 => Google::Protobuf::Int64Value.new(value: 0)},
  265. map_uint32: {0 => Google::Protobuf::UInt32Value.new(value: 0)},
  266. map_uint64: {0 => Google::Protobuf::UInt64Value.new(value: 0)},
  267. map_bool: {0 => Google::Protobuf::BoolValue.new(value: false)},
  268. map_string: {0 => Google::Protobuf::StringValue.new(value: '')},
  269. map_bytes: {0 => Google::Protobuf::BytesValue.new(value: '')},
  270. )
  271. run_asserts.call(m)
  272. serialized = proto_module::Wrapper::encode(m)
  273. m2 = proto_module::Wrapper::decode(serialized)
  274. run_asserts.call(m2)
  275. # Test the case where we are serializing directly from the parsed form
  276. # (before anything lazy is materialized).
  277. m3 = proto_module::Wrapper::decode(serialized)
  278. serialized2 = proto_module::Wrapper::encode(m3)
  279. m4 = proto_module::Wrapper::decode(serialized2)
  280. run_asserts.call(m4)
  281. # Test that the lazy form compares equal to the expanded form.
  282. m5 = proto_module::Wrapper::decode(serialized2)
  283. assert_equal m5, m
  284. end
  285. def test_map_wrappers_with_no_value
  286. run_asserts = ->(m) {
  287. assert_equal 0.0, m.map_double[0].value
  288. assert_equal 0.0, m.map_float[0].value
  289. assert_equal 0, m.map_int32[0].value
  290. assert_equal 0, m.map_int64[0].value
  291. assert_equal 0, m.map_uint32[0].value
  292. assert_equal 0, m.map_uint64[0].value
  293. assert_equal false, m.map_bool[0].value
  294. assert_equal '', m.map_string[0].value
  295. assert_equal '', m.map_bytes[0].value
  296. }
  297. m = proto_module::Wrapper.new(
  298. map_double: {0 => Google::Protobuf::DoubleValue.new()},
  299. map_float: {0 => Google::Protobuf::FloatValue.new()},
  300. map_int32: {0 => Google::Protobuf::Int32Value.new()},
  301. map_int64: {0 => Google::Protobuf::Int64Value.new()},
  302. map_uint32: {0 => Google::Protobuf::UInt32Value.new()},
  303. map_uint64: {0 => Google::Protobuf::UInt64Value.new()},
  304. map_bool: {0 => Google::Protobuf::BoolValue.new()},
  305. map_string: {0 => Google::Protobuf::StringValue.new()},
  306. map_bytes: {0 => Google::Protobuf::BytesValue.new()},
  307. )
  308. run_asserts.call(m)
  309. serialized = proto_module::Wrapper::encode(m)
  310. m2 = proto_module::Wrapper::decode(serialized)
  311. run_asserts.call(m2)
  312. # Test the case where we are serializing directly from the parsed form
  313. # (before anything lazy is materialized).
  314. m3 = proto_module::Wrapper::decode(serialized)
  315. serialized2 = proto_module::Wrapper::encode(m3)
  316. m4 = proto_module::Wrapper::decode(serialized2)
  317. run_asserts.call(m4)
  318. end
  319. def test_concurrent_decoding
  320. o = Outer.new
  321. o.items[0] = Inner.new
  322. raw = Outer.encode(o)
  323. thds = 2.times.map do
  324. Thread.new do
  325. 100000.times do
  326. assert_equal o, Outer.decode(raw)
  327. end
  328. end
  329. end
  330. thds.map(&:join)
  331. end
  332. def test_map_encode_decode
  333. m = MapMessage.new(
  334. :map_string_int32 => {"a" => 1, "b" => 2},
  335. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  336. "b" => TestMessage2.new(:foo => 2)},
  337. :map_string_enum => {"a" => :A, "b" => :B})
  338. m2 = MapMessage.decode(MapMessage.encode(m))
  339. assert m == m2
  340. m3 = MapMessageWireEquiv.decode(MapMessage.encode(m))
  341. assert m3.map_string_int32.length == 2
  342. kv = {}
  343. m3.map_string_int32.map { |msg| kv[msg.key] = msg.value }
  344. assert kv == {"a" => 1, "b" => 2}
  345. kv = {}
  346. m3.map_string_msg.map { |msg| kv[msg.key] = msg.value }
  347. assert kv == {"a" => TestMessage2.new(:foo => 1),
  348. "b" => TestMessage2.new(:foo => 2)}
  349. end
  350. def test_protobuf_decode_json_ignore_unknown_fields
  351. m = TestMessage.decode_json({
  352. optional_string: "foo",
  353. not_in_message: "some_value"
  354. }.to_json, { ignore_unknown_fields: true })
  355. assert_equal m.optional_string, "foo"
  356. e = assert_raise Google::Protobuf::ParseError do
  357. TestMessage.decode_json({ not_in_message: "some_value" }.to_json)
  358. end
  359. assert_match(/No such field: not_in_message/, e.message)
  360. end
  361. #def test_json_quoted_string
  362. # m = TestMessage.decode_json(%q(
  363. # "optionalInt64": "1",,
  364. # }))
  365. # puts(m)
  366. # assert_equal 1, m.optional_int32
  367. #end
  368. def test_to_h
  369. m = TestMessage.new(:optional_bool => true, :optional_double => -10.100001, :optional_string => 'foo', :repeated_string => ['bar1', 'bar2'], :repeated_msg => [TestMessage2.new(:foo => 100)])
  370. expected_result = {
  371. :optional_bool=>true,
  372. :optional_bytes=>"",
  373. :optional_double=>-10.100001,
  374. :optional_enum=>:Default,
  375. :optional_float=>0.0,
  376. :optional_int32=>0,
  377. :optional_int64=>0,
  378. :optional_msg=>nil,
  379. :optional_string=>"foo",
  380. :optional_uint32=>0,
  381. :optional_uint64=>0,
  382. :repeated_bool=>[],
  383. :repeated_bytes=>[],
  384. :repeated_double=>[],
  385. :repeated_enum=>[],
  386. :repeated_float=>[],
  387. :repeated_int32=>[],
  388. :repeated_int64=>[],
  389. :repeated_msg=>[{:foo => 100}],
  390. :repeated_string=>["bar1", "bar2"],
  391. :repeated_uint32=>[],
  392. :repeated_uint64=>[]
  393. }
  394. assert_equal expected_result, m.to_h
  395. m = MapMessage.new(
  396. :map_string_int32 => {"a" => 1, "b" => 2},
  397. :map_string_msg => {"a" => TestMessage2.new(:foo => 1),
  398. "b" => TestMessage2.new(:foo => 2)},
  399. :map_string_enum => {"a" => :A, "b" => :B})
  400. expected_result = {
  401. :map_string_int32 => {"a" => 1, "b" => 2},
  402. :map_string_msg => {"a" => {:foo => 1}, "b" => {:foo => 2}},
  403. :map_string_enum => {"a" => :A, "b" => :B}
  404. }
  405. assert_equal expected_result, m.to_h
  406. end
  407. def test_json_maps
  408. # TODO: Fix JSON in JRuby version.
  409. return if RUBY_PLATFORM == "java"
  410. m = MapMessage.new(:map_string_int32 => {"a" => 1})
  411. expected = {mapStringInt32: {a: 1}, mapStringMsg: {}, mapStringEnum: {}}
  412. expected_preserve = {map_string_int32: {a: 1}, map_string_msg: {}, map_string_enum: {}}
  413. assert_equal JSON.parse(MapMessage.encode_json(m), :symbolize_names => true), expected
  414. json = MapMessage.encode_json(m, :preserve_proto_fieldnames => true)
  415. assert_equal JSON.parse(json, :symbolize_names => true), expected_preserve
  416. m2 = MapMessage.decode_json(MapMessage.encode_json(m))
  417. assert_equal m, m2
  418. end
  419. def test_json_maps_emit_defaults_submsg
  420. # TODO: Fix JSON in JRuby version.
  421. return if RUBY_PLATFORM == "java"
  422. m = MapMessage.new(:map_string_msg => {"a" => TestMessage2.new})
  423. expected = {mapStringInt32: {}, mapStringMsg: {a: {foo: 0}}, mapStringEnum: {}}
  424. actual = MapMessage.encode_json(m, :emit_defaults => true)
  425. assert_equal JSON.parse(actual, :symbolize_names => true), expected
  426. end
  427. def test_respond_to
  428. # This test fails with JRuby 1.7.23, likely because of an old JRuby bug.
  429. return if RUBY_PLATFORM == "java"
  430. msg = MapMessage.new
  431. assert msg.respond_to?(:map_string_int32)
  432. assert !msg.respond_to?(:bacon)
  433. end
  434. def test_file_descriptor
  435. file_descriptor = TestMessage.descriptor.file_descriptor
  436. assert nil != file_descriptor
  437. assert_equal "tests/basic_test.proto", file_descriptor.name
  438. assert_equal :proto3, file_descriptor.syntax
  439. file_descriptor = TestEnum.descriptor.file_descriptor
  440. assert nil != file_descriptor
  441. assert_equal "tests/basic_test.proto", file_descriptor.name
  442. assert_equal :proto3, file_descriptor.syntax
  443. end
  444. # Ruby 2.5 changed to raise FrozenError instead of RuntimeError
  445. FrozenErrorType = Gem::Version.new(RUBY_VERSION) < Gem::Version.new('2.5') ? RuntimeError : FrozenError
  446. def test_map_freeze
  447. m = proto_module::MapMessage.new
  448. m.map_string_int32['a'] = 5
  449. m.map_string_msg['b'] = proto_module::TestMessage2.new
  450. m.map_string_int32.freeze
  451. m.map_string_msg.freeze
  452. assert m.map_string_int32.frozen?
  453. assert m.map_string_msg.frozen?
  454. assert_raise(FrozenErrorType) { m.map_string_int32['foo'] = 1 }
  455. assert_raise(FrozenErrorType) { m.map_string_msg['bar'] = proto_module::TestMessage2.new }
  456. assert_raise(FrozenErrorType) { m.map_string_int32.delete('a') }
  457. assert_raise(FrozenErrorType) { m.map_string_int32.clear }
  458. end
  459. end
  460. end