-- Code generated by protoc-gen-tarantool. DO NOT EDIT. -- source: conformance.proto -- syntax: proto3 -- package: conformance local pb = require("pb") local wire = pb.wire local string_byte = string.byte local utf8_len = require('utf8').len local band = bit.band local rshift = bit.rshift local M = {} M.options = {go_package = "tarantoolpb_synthetic/conformance", java_package = "com.google.protobuf.conformance", objc_class_prefix = "Conformance"} -- Enum: conformance.WireFormat M.WireFormat_descriptor = pb.enum("conformance.WireFormat", { UNSPECIFIED = 0, PROTOBUF = 1, JSON = 2, JSPB = 3, TEXT_FORMAT = 4, }) M.WireFormat = M.WireFormat_descriptor.by_name -- Enum: conformance.TestCategory M.TestCategory_descriptor = pb.enum("conformance.TestCategory", { UNSPECIFIED_TEST = 0, BINARY_TEST = 1, JSON_TEST = 2, -- Similar to JSON_TEST. However, during parsing json, testee should ignore -- unknown fields. This feature is optional. Each implementation can decide -- whether to support it. See -- https://developers.google.com/protocol-buffers/docs/proto3#json_options -- for more detail. JSON_IGNORE_UNKNOWN_PARSING_TEST = 3, -- Test jspb wire format. Only used inside Google. Opensource testees just -- skip it. JSPB_TEST = 4, -- Test text format. For cpp, java and python, testees can already deal with -- this type. Testees of other languages can simply skip it. TEXT_FORMAT_TEST = 5, }) M.TestCategory = M.TestCategory_descriptor.by_name -- Pre-declare message descriptors so cross-references resolve. M.TestStatus_descriptor = {name = "conformance.TestStatus"} M.FailureSet_descriptor = {name = "conformance.FailureSet"} M.ConformanceRequest_descriptor = {name = "conformance.ConformanceRequest"} M.ConformanceResponse_descriptor = {name = "conformance.ConformanceResponse"} M.JspbEncodingConfig_descriptor = {name = "conformance.JspbEncodingConfig"} -- Message: conformance.TestStatus M.TestStatus_descriptor.fields = { {name="name", id=1, kind='scalar', proto_type="string"}, {name="failure_message", id=2, kind='scalar', proto_type="string"}, {name="matched_name", id=3, kind='scalar', proto_type="string"}, } pb.finalize_message(M.TestStatus_descriptor) M.TestStatus_fields = pb.field_names({ name = "name", failure_message = "failure_message", matched_name = "matched_name", }) -- Message: conformance.FailureSet M.FailureSet_descriptor.fields = { {name="test", id=2, kind='message', message=M.TestStatus_descriptor, repeated=true}, } pb.finalize_message(M.FailureSet_descriptor) M.FailureSet_fields = pb.field_names({ test = "test", }) -- Message: conformance.ConformanceRequest M.ConformanceRequest_descriptor.fields = { {name="protobuf_payload", id=1, kind='scalar', proto_type="bytes", oneof="payload"}, {name="json_payload", id=2, kind='scalar', proto_type="string", oneof="payload"}, {name="jspb_payload", id=7, kind='scalar', proto_type="string", oneof="payload"}, {name="text_payload", id=8, kind='scalar', proto_type="string", oneof="payload"}, {name="requested_output_format", id=3, kind='enum', enum=M.WireFormat_descriptor}, {name="message_type", id=4, kind='scalar', proto_type="string"}, {name="test_category", id=5, kind='enum', enum=M.TestCategory_descriptor}, {name="jspb_encoding_options", id=6, kind='message', message=M.JspbEncodingConfig_descriptor}, {name="print_unknown_fields", id=9, kind='scalar', proto_type="bool"}, } M.ConformanceRequest_descriptor.oneofs = { payload = {"protobuf_payload", "json_payload", "jspb_payload", "text_payload"}, } pb.finalize_message(M.ConformanceRequest_descriptor) M.ConformanceRequest_fields = pb.field_names({ protobuf_payload = "protobuf_payload", json_payload = "json_payload", jspb_payload = "jspb_payload", text_payload = "text_payload", requested_output_format = "requested_output_format", message_type = "message_type", test_category = "test_category", jspb_encoding_options = "jspb_encoding_options", print_unknown_fields = "print_unknown_fields", }) M.ConformanceRequest_oneofs = pb.field_names({ payload = "payload", }) -- Message: conformance.ConformanceResponse M.ConformanceResponse_descriptor.fields = { {name="parse_error", id=1, kind='scalar', proto_type="string", oneof="result"}, {name="serialize_error", id=6, kind='scalar', proto_type="string", oneof="result"}, {name="timeout_error", id=9, kind='scalar', proto_type="string", oneof="result"}, {name="runtime_error", id=2, kind='scalar', proto_type="string", oneof="result"}, {name="protobuf_payload", id=3, kind='scalar', proto_type="bytes", oneof="result"}, {name="json_payload", id=4, kind='scalar', proto_type="string", oneof="result"}, {name="skipped", id=5, kind='scalar', proto_type="string", oneof="result"}, {name="jspb_payload", id=7, kind='scalar', proto_type="string", oneof="result"}, {name="text_payload", id=8, kind='scalar', proto_type="string", oneof="result"}, } M.ConformanceResponse_descriptor.oneofs = { result = {"parse_error", "serialize_error", "timeout_error", "runtime_error", "protobuf_payload", "json_payload", "skipped", "jspb_payload", "text_payload"}, } pb.finalize_message(M.ConformanceResponse_descriptor) M.ConformanceResponse_fields = pb.field_names({ parse_error = "parse_error", serialize_error = "serialize_error", timeout_error = "timeout_error", runtime_error = "runtime_error", protobuf_payload = "protobuf_payload", json_payload = "json_payload", skipped = "skipped", jspb_payload = "jspb_payload", text_payload = "text_payload", }) M.ConformanceResponse_oneofs = pb.field_names({ result = "result", }) -- Message: conformance.JspbEncodingConfig M.JspbEncodingConfig_descriptor.fields = { {name="use_jspb_array_any_format", id=1, kind='scalar', proto_type="bool"}, } pb.finalize_message(M.JspbEncodingConfig_descriptor) M.JspbEncodingConfig_fields = pb.field_names({ use_jspb_array_any_format = "use_jspb_array_any_format", }) -- EmmyLua / lua-language-server type annotations. -- These are comments — no runtime effect. They give editors -- autocomplete and type-checking for the generated wrappers. ---@alias conformance.WireFormat integer ---@alias conformance.TestCategory integer --- Meant to encapsulate all types of tests: successes, skips, failures, etc. --- Therefore, this may or may not have a failure message. Failure messages --- may be truncated for our failure lists. ---@class conformance.TestStatus ---@field name string ---@field failure_message string ---@field matched_name string @ What an actual test name matched to in a failure list. Can be wildcarded or an exact match without wildcards. --- The conformance runner will request a list of failures as the first request. --- This will be known by message_type == "conformance.FailureSet", a conformance --- test should return a serialized FailureSet in protobuf_payload. ---@class conformance.FailureSet ---@field test conformance.TestStatus[] --- Represents a single test case's input. The testee should: --- --- 1. parse this proto (which should always succeed) --- 2. parse the protobuf or JSON payload in "payload" (which may fail) --- 3. if the parse succeeded, serialize the message in the requested format. ---@class conformance.ConformanceRequest ---@field protobuf_payload? string ---@field json_payload? string ---@field jspb_payload? string @ Only used inside Google. Opensource testees just skip it. ---@field text_payload? string ---@field requested_output_format conformance.WireFormat @ Which format should the testee serialize its message to? ---@field message_type string @ The full name for the test message to use; for the moment, either: protobuf_test_messages.proto3.TestAllTypesProto3 or protobuf_test_messages.proto2.TestAllTypesProto2 or protobuf_test_messages.editions.proto2.TestAllTypesProto2 or protobuf_test_messages.editions.proto3.TestAllTypesProto3 or protobuf_test_messages.editions.TestAllTypesEdition2023 or protobuf_test_messages.edition_unstable.TestAllTypesEditionUnstable. ---@field test_category conformance.TestCategory @ Each test is given a specific test category. Some category may need specific support in testee programs. Refer to the definition of TestCategory for more information. ---@field jspb_encoding_options conformance.JspbEncodingConfig @ Specify details for how to encode jspb. ---@field print_unknown_fields boolean @ This can be used in json and text format. If true, testee should print unknown fields instead of ignore. This feature is optional. --- Represents a single test case's output. ---@class conformance.ConformanceResponse ---@field parse_error? string @ This string should be set to indicate parsing failed. The string can provide more information about the parse error if it is available. Setting this string does not necessarily mean the testee failed the test. Some of the test cases are intentionally invalid input. ---@field serialize_error? string @ If the input was successfully parsed but errors occurred when serializing it to the requested output format, set the error message in this field. ---@field timeout_error? string @ This should be set if the test program timed out. The string should provide more information about what the child process was doing when it was killed. ---@field runtime_error? string @ This should be set if some other error occurred. This will always indicate that the test failed. The string can provide more information about the failure. ---@field protobuf_payload? string @ If the input was successfully parsed and the requested output was protobuf, serialize it to protobuf and set it in this field. ---@field json_payload? string @ If the input was successfully parsed and the requested output was JSON, serialize to JSON and set it in this field. ---@field skipped? string @ For when the testee skipped the test, likely because a certain feature wasn't supported, like JSON input/output. ---@field jspb_payload? string @ If the input was successfully parsed and the requested output was JSPB, serialize to JSPB and set it in this field. JSPB is only used inside Google. Opensource testees can just skip it. ---@field text_payload? string @ If the input was successfully parsed and the requested output was TEXT_FORMAT, serialize to TEXT_FORMAT and set it in this field. --- Encoding options for jspb format. ---@class conformance.JspbEncodingConfig ---@field use_jspb_array_any_format boolean @ Encode the value field of Any as jspb array if true, otherwise binary. ---@param t? conformance.TestStatus ---@return conformance.TestStatus function M.TestStatus_new(t) return t or {} end ---@param t conformance.TestStatus ---@return string function M.TestStatus_encode(t) local encode_varint = wire.encode_varint local _d = M.TestStatus_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.encode(_p, t) end if type(t) ~= 'table' then error("expected table for conformance.TestStatus, got " .. type(t), 0) end local out, n = {}, 0 local v -- field 1: name v = t.name if v ~= nil and v ~= '' then n = n + 1; out[n] = "\x0a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 2: failure_message v = t.failure_message if v ~= nil and v ~= '' then n = n + 1; out[n] = "\x12" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 3: matched_name v = t.matched_name if v ~= nil and v ~= '' then n = n + 1; out[n] = "\x1a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end local _exts = t._extensions if _exts ~= nil then local _elist = M.TestStatus_descriptor.extensions_list if _elist ~= nil then for _i = 1, #_elist do local _ext = _elist[_i] local _ev = _exts[_ext.full_name] if _ev ~= nil then pb.codec.encode_field(_ext, _ev, out, true) end end n = #out end end local _uf = t._unknown_fields if _uf ~= nil and _uf ~= '' then n = n + 1; out[n] = _uf end return table.concat(out) end ---@param b string ---@return conformance.TestStatus function M.TestStatus_decode(buf) local decode_string = wire.decode_string local _d = M.TestStatus_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.decode(_p, buf) end if type(buf) ~= 'string' then error("expected string for conformance.TestStatus decode, got " .. type(buf), 0) end local result = {} local pos, len = 1, #buf local _uf while pos <= len do local _tag_start = pos local id, wt local _b = string_byte(buf, pos) if _b ~= nil and _b < 0x80 then wt = band(_b, 7) if wt >= 6 then error("illegal wire type " .. wt, 0) end id = rshift(_b, 3) if id == 0 then error("illegal field number 0", 0) end pos = pos + 1 else id, wt, pos = wire.decode_tag(buf, pos) end if id == 1 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.name = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.name = val end elseif id == 2 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.failure_message = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.failure_message = val end elseif id == 3 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.matched_name = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.matched_name = val end else local _ebid = M.TestStatus_descriptor.extensions_by_id local _ext = _ebid and _ebid[id] or nil if _ext ~= nil then pos = pb.codec.decode_extension(_ext, buf, pos, wt, result) else pos = wire.skip_field(buf, pos, wt, id) if _uf == nil then _uf = {} end _uf[#_uf + 1] = buf:sub(_tag_start, pos - 1) end end end if _uf ~= nil then result._unknown_fields = table.concat(_uf) end return result end ---@param b string ---@return pb.MessageView function M.TestStatus_decode_lazy(b) return pb.decode_lazy(M.TestStatus_descriptor, b) end ---@param t conformance.TestStatus ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.TestStatus_text(t, opts) return pb.text.encode(M.TestStatus_descriptor, t, opts) end ---@param t? conformance.FailureSet ---@return conformance.FailureSet function M.FailureSet_new(t) return t or {} end ---@param t conformance.FailureSet ---@return string function M.FailureSet_encode(t) local _d = M.FailureSet_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.encode(_p, t) end if type(t) ~= 'table' then error("expected table for conformance.FailureSet, got " .. type(t), 0) end local out, n = {}, 0 local v -- field 2: test v = t.test if v ~= nil and #v > 0 then local _tag = "\x12" for _i = 1, #v do local _b = M.TestStatus_encode(v[_i]) n = n + 1; out[n] = _tag local _len = #_b if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = wire.encode_varint(_len) end n = n + 1; out[n] = _b end end local _exts = t._extensions if _exts ~= nil then local _elist = M.FailureSet_descriptor.extensions_list if _elist ~= nil then for _i = 1, #_elist do local _ext = _elist[_i] local _ev = _exts[_ext.full_name] if _ev ~= nil then pb.codec.encode_field(_ext, _ev, out, true) end end n = #out end end local _uf = t._unknown_fields if _uf ~= nil and _uf ~= '' then n = n + 1; out[n] = _uf end return table.concat(out) end ---@param b string ---@return conformance.FailureSet function M.FailureSet_decode(buf) local _d = M.FailureSet_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.decode(_p, buf) end if type(buf) ~= 'string' then error("expected string for conformance.FailureSet decode, got " .. type(buf), 0) end local result = {} local pos, len = 1, #buf local _uf local _n_test = 0 while pos <= len do local _tag_start = pos local id, wt local _b = string_byte(buf, pos) if _b ~= nil and _b < 0x80 then wt = band(_b, 7) if wt >= 6 then error("illegal wire type " .. wt, 0) end id = rshift(_b, 3) if id == 0 then error("illegal field number 0", 0) end pos = pos + 1 else id, wt, pos = wire.decode_tag(buf, pos) end if id == 2 then local list = result.test if list == nil then list = {}; result.test = list end local payload payload, pos = wire.decode_len(buf, pos) _n_test = _n_test + 1; list[_n_test] = M.TestStatus_decode(payload) else local _ebid = M.FailureSet_descriptor.extensions_by_id local _ext = _ebid and _ebid[id] or nil if _ext ~= nil then pos = pb.codec.decode_extension(_ext, buf, pos, wt, result) else pos = wire.skip_field(buf, pos, wt, id) if _uf == nil then _uf = {} end _uf[#_uf + 1] = buf:sub(_tag_start, pos - 1) end end end if _uf ~= nil then result._unknown_fields = table.concat(_uf) end return result end ---@param b string ---@return pb.MessageView function M.FailureSet_decode_lazy(b) return pb.decode_lazy(M.FailureSet_descriptor, b) end ---@param t conformance.FailureSet ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.FailureSet_text(t, opts) return pb.text.encode(M.FailureSet_descriptor, t, opts) end ---@param t? conformance.ConformanceRequest ---@return conformance.ConformanceRequest function M.ConformanceRequest_new(t) return t or {} end ---@param t conformance.ConformanceRequest ---@return string function M.ConformanceRequest_encode(t) local encode_int32 = wire.encode_int32 local encode_varint = wire.encode_varint local _d = M.ConformanceRequest_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.encode(_p, t) end if type(t) ~= 'table' then error("expected table for conformance.ConformanceRequest, got " .. type(t), 0) end local out, n = {}, 0 local v local _of_payload if t.protobuf_payload ~= nil then _of_payload = "protobuf_payload" end if t.json_payload ~= nil then _of_payload = "json_payload" end if t.jspb_payload ~= nil then _of_payload = "jspb_payload" end if t.text_payload ~= nil then _of_payload = "text_payload" end -- field 1: protobuf_payload v = t.protobuf_payload if _of_payload == "protobuf_payload" then n = n + 1; out[n] = "\x0a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 2: json_payload v = t.json_payload if _of_payload == "json_payload" then n = n + 1; out[n] = "\x12" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 7: jspb_payload v = t.jspb_payload if _of_payload == "jspb_payload" then n = n + 1; out[n] = "\x3a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 8: text_payload v = t.text_payload if _of_payload == "text_payload" then n = n + 1; out[n] = "\x42" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 3: requested_output_format v = t.requested_output_format if v ~= nil then local nv = v if type(v) == 'string' then nv = M.WireFormat[v] if nv == nil then error("unknown enum value '" .. v .. "' for conformance.WireFormat", 0) end end if nv ~= 0 then n = n + 1; out[n] = "\x18" n = n + 1; out[n] = encode_int32(nv) end end -- field 4: message_type v = t.message_type if v ~= nil and v ~= '' then n = n + 1; out[n] = "\x22" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 5: test_category v = t.test_category if v ~= nil then local nv = v if type(v) == 'string' then nv = M.TestCategory[v] if nv == nil then error("unknown enum value '" .. v .. "' for conformance.TestCategory", 0) end end if nv ~= 0 then n = n + 1; out[n] = "\x28" n = n + 1; out[n] = encode_int32(nv) end end -- field 6: jspb_encoding_options v = t.jspb_encoding_options if v ~= nil or type(v) == 'cdata' then local _b = M.JspbEncodingConfig_encode(v) n = n + 1; out[n] = "\x32" local _len = #_b if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = _b end -- field 9: print_unknown_fields v = t.print_unknown_fields if v ~= nil and v ~= false then n = n + 1; out[n] = "\x48" n = n + 1; out[n] = wire.encode_bool(v) end local _exts = t._extensions if _exts ~= nil then local _elist = M.ConformanceRequest_descriptor.extensions_list if _elist ~= nil then for _i = 1, #_elist do local _ext = _elist[_i] local _ev = _exts[_ext.full_name] if _ev ~= nil then pb.codec.encode_field(_ext, _ev, out, true) end end n = #out end end local _uf = t._unknown_fields if _uf ~= nil and _uf ~= '' then n = n + 1; out[n] = _uf end return table.concat(out) end ---@param b string ---@return conformance.ConformanceRequest function M.ConformanceRequest_decode(buf) local decode_string = wire.decode_string local decode_varint = wire.decode_varint local varint_to_int32 = wire.varint_to_int32 local _d = M.ConformanceRequest_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.decode(_p, buf) end if type(buf) ~= 'string' then error("expected string for conformance.ConformanceRequest decode, got " .. type(buf), 0) end local result = {} local pos, len = 1, #buf local _uf while pos <= len do local _tag_start = pos local id, wt local _b = string_byte(buf, pos) if _b ~= nil and _b < 0x80 then wt = band(_b, 7) if wt >= 6 then error("illegal wire type " .. wt, 0) end id = rshift(_b, 3) if id == 0 then error("illegal field number 0", 0) end pos = pos + 1 else id, wt, pos = wire.decode_tag(buf, pos) end if id == 1 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) result.protobuf_payload = _s pos = _epos else local val val, pos = wire.decode_bytes(buf, pos) result.protobuf_payload = val end result.json_payload = nil result.jspb_payload = nil result.text_payload = nil elseif id == 2 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.json_payload = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.json_payload = val end result.protobuf_payload = nil result.jspb_payload = nil result.text_payload = nil elseif id == 7 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.jspb_payload = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.jspb_payload = val end result.protobuf_payload = nil result.json_payload = nil result.text_payload = nil elseif id == 8 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.text_payload = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.text_payload = val end result.protobuf_payload = nil result.json_payload = nil result.jspb_payload = nil elseif id == 3 then local u u, pos = decode_varint(buf, pos) result.requested_output_format = varint_to_int32(u) elseif id == 4 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.message_type = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.message_type = val end elseif id == 5 then local u u, pos = decode_varint(buf, pos) result.test_category = varint_to_int32(u) elseif id == 6 then local payload payload, pos = wire.decode_len(buf, pos) local prev = result.jspb_encoding_options if prev == nil then result.jspb_encoding_options = M.JspbEncodingConfig_decode(payload) else pb.codec.merge_message(M.JspbEncodingConfig_descriptor, prev, M.JspbEncodingConfig_decode(payload)) end elseif id == 9 then local val val, pos = wire.decode_bool(buf, pos) result.print_unknown_fields = val else local _ebid = M.ConformanceRequest_descriptor.extensions_by_id local _ext = _ebid and _ebid[id] or nil if _ext ~= nil then pos = pb.codec.decode_extension(_ext, buf, pos, wt, result) else pos = wire.skip_field(buf, pos, wt, id) if _uf == nil then _uf = {} end _uf[#_uf + 1] = buf:sub(_tag_start, pos - 1) end end end if _uf ~= nil then result._unknown_fields = table.concat(_uf) end return result end ---@param b string ---@return pb.MessageView function M.ConformanceRequest_decode_lazy(b) return pb.decode_lazy(M.ConformanceRequest_descriptor, b) end ---@param t conformance.ConformanceRequest ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.ConformanceRequest_text(t, opts) return pb.text.encode(M.ConformanceRequest_descriptor, t, opts) end ---@param t? conformance.ConformanceResponse ---@return conformance.ConformanceResponse function M.ConformanceResponse_new(t) return t or {} end ---@param t conformance.ConformanceResponse ---@return string function M.ConformanceResponse_encode(t) local encode_varint = wire.encode_varint local _d = M.ConformanceResponse_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.encode(_p, t) end if type(t) ~= 'table' then error("expected table for conformance.ConformanceResponse, got " .. type(t), 0) end local out, n = {}, 0 local v local _of_result if t.parse_error ~= nil then _of_result = "parse_error" end if t.serialize_error ~= nil then _of_result = "serialize_error" end if t.timeout_error ~= nil then _of_result = "timeout_error" end if t.runtime_error ~= nil then _of_result = "runtime_error" end if t.protobuf_payload ~= nil then _of_result = "protobuf_payload" end if t.json_payload ~= nil then _of_result = "json_payload" end if t.skipped ~= nil then _of_result = "skipped" end if t.jspb_payload ~= nil then _of_result = "jspb_payload" end if t.text_payload ~= nil then _of_result = "text_payload" end -- field 1: parse_error v = t.parse_error if _of_result == "parse_error" then n = n + 1; out[n] = "\x0a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 6: serialize_error v = t.serialize_error if _of_result == "serialize_error" then n = n + 1; out[n] = "\x32" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 9: timeout_error v = t.timeout_error if _of_result == "timeout_error" then n = n + 1; out[n] = "\x4a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 2: runtime_error v = t.runtime_error if _of_result == "runtime_error" then n = n + 1; out[n] = "\x12" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 3: protobuf_payload v = t.protobuf_payload if _of_result == "protobuf_payload" then n = n + 1; out[n] = "\x1a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 4: json_payload v = t.json_payload if _of_result == "json_payload" then n = n + 1; out[n] = "\x22" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 5: skipped v = t.skipped if _of_result == "skipped" then n = n + 1; out[n] = "\x2a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 7: jspb_payload v = t.jspb_payload if _of_result == "jspb_payload" then n = n + 1; out[n] = "\x3a" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end -- field 8: text_payload v = t.text_payload if _of_result == "text_payload" then n = n + 1; out[n] = "\x42" local _len = #v if _len < 128 then n = n + 1; out[n] = string.char(_len) else n = n + 1; out[n] = encode_varint(_len) end n = n + 1; out[n] = v end local _exts = t._extensions if _exts ~= nil then local _elist = M.ConformanceResponse_descriptor.extensions_list if _elist ~= nil then for _i = 1, #_elist do local _ext = _elist[_i] local _ev = _exts[_ext.full_name] if _ev ~= nil then pb.codec.encode_field(_ext, _ev, out, true) end end n = #out end end local _uf = t._unknown_fields if _uf ~= nil and _uf ~= '' then n = n + 1; out[n] = _uf end return table.concat(out) end ---@param b string ---@return conformance.ConformanceResponse function M.ConformanceResponse_decode(buf) local decode_string = wire.decode_string local _d = M.ConformanceResponse_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.decode(_p, buf) end if type(buf) ~= 'string' then error("expected string for conformance.ConformanceResponse decode, got " .. type(buf), 0) end local result = {} local pos, len = 1, #buf local _uf while pos <= len do local _tag_start = pos local id, wt local _b = string_byte(buf, pos) if _b ~= nil and _b < 0x80 then wt = band(_b, 7) if wt >= 6 then error("illegal wire type " .. wt, 0) end id = rshift(_b, 3) if id == 0 then error("illegal field number 0", 0) end pos = pos + 1 else id, wt, pos = wire.decode_tag(buf, pos) end if id == 1 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.parse_error = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.parse_error = val end result.serialize_error = nil result.timeout_error = nil result.runtime_error = nil result.protobuf_payload = nil result.json_payload = nil result.skipped = nil result.jspb_payload = nil result.text_payload = nil elseif id == 6 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.serialize_error = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.serialize_error = val end result.parse_error = nil result.timeout_error = nil result.runtime_error = nil result.protobuf_payload = nil result.json_payload = nil result.skipped = nil result.jspb_payload = nil result.text_payload = nil elseif id == 9 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.timeout_error = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.timeout_error = val end result.parse_error = nil result.serialize_error = nil result.runtime_error = nil result.protobuf_payload = nil result.json_payload = nil result.skipped = nil result.jspb_payload = nil result.text_payload = nil elseif id == 2 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.runtime_error = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.runtime_error = val end result.parse_error = nil result.serialize_error = nil result.timeout_error = nil result.protobuf_payload = nil result.json_payload = nil result.skipped = nil result.jspb_payload = nil result.text_payload = nil elseif id == 3 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) result.protobuf_payload = _s pos = _epos else local val val, pos = wire.decode_bytes(buf, pos) result.protobuf_payload = val end result.parse_error = nil result.serialize_error = nil result.timeout_error = nil result.runtime_error = nil result.json_payload = nil result.skipped = nil result.jspb_payload = nil result.text_payload = nil elseif id == 4 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.json_payload = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.json_payload = val end result.parse_error = nil result.serialize_error = nil result.timeout_error = nil result.runtime_error = nil result.protobuf_payload = nil result.skipped = nil result.jspb_payload = nil result.text_payload = nil elseif id == 5 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.skipped = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.skipped = val end result.parse_error = nil result.serialize_error = nil result.timeout_error = nil result.runtime_error = nil result.protobuf_payload = nil result.json_payload = nil result.jspb_payload = nil result.text_payload = nil elseif id == 7 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.jspb_payload = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.jspb_payload = val end result.parse_error = nil result.serialize_error = nil result.timeout_error = nil result.runtime_error = nil result.protobuf_payload = nil result.json_payload = nil result.skipped = nil result.text_payload = nil elseif id == 8 then local _lb = string_byte(buf, pos) if _lb ~= nil and _lb < 0x80 then local _np = pos + 1 local _epos = _np + _lb if _epos - 1 > len then error("truncated LEN at offset " .. pos, 0) end local _s = buf:sub(_np, _epos - 1) if utf8_len(_s) == nil then error("invalid UTF-8 in string field at offset " .. pos, 0) end result.text_payload = _s pos = _epos else local val val, pos = decode_string(buf, pos) result.text_payload = val end result.parse_error = nil result.serialize_error = nil result.timeout_error = nil result.runtime_error = nil result.protobuf_payload = nil result.json_payload = nil result.skipped = nil result.jspb_payload = nil else local _ebid = M.ConformanceResponse_descriptor.extensions_by_id local _ext = _ebid and _ebid[id] or nil if _ext ~= nil then pos = pb.codec.decode_extension(_ext, buf, pos, wt, result) else pos = wire.skip_field(buf, pos, wt, id) if _uf == nil then _uf = {} end _uf[#_uf + 1] = buf:sub(_tag_start, pos - 1) end end end if _uf ~= nil then result._unknown_fields = table.concat(_uf) end return result end ---@param b string ---@return pb.MessageView function M.ConformanceResponse_decode_lazy(b) return pb.decode_lazy(M.ConformanceResponse_descriptor, b) end ---@param t conformance.ConformanceResponse ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.ConformanceResponse_text(t, opts) return pb.text.encode(M.ConformanceResponse_descriptor, t, opts) end ---@param t? conformance.JspbEncodingConfig ---@return conformance.JspbEncodingConfig function M.JspbEncodingConfig_new(t) return t or {} end ---@param t conformance.JspbEncodingConfig ---@return string function M.JspbEncodingConfig_encode(t) local _d = M.JspbEncodingConfig_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.encode(_p, t) end if type(t) ~= 'table' then error("expected table for conformance.JspbEncodingConfig, got " .. type(t), 0) end local out, n = {}, 0 local v -- field 1: use_jspb_array_any_format v = t.use_jspb_array_any_format if v ~= nil and v ~= false then n = n + 1; out[n] = "\x08" n = n + 1; out[n] = wire.encode_bool(v) end local _exts = t._extensions if _exts ~= nil then local _elist = M.JspbEncodingConfig_descriptor.extensions_list if _elist ~= nil then for _i = 1, #_elist do local _ext = _elist[_i] local _ev = _exts[_ext.full_name] if _ev ~= nil then pb.codec.encode_field(_ext, _ev, out, true) end end n = #out end end local _uf = t._unknown_fields if _uf ~= nil and _uf ~= '' then n = n + 1; out[n] = _uf end return table.concat(out) end ---@param b string ---@return conformance.JspbEncodingConfig function M.JspbEncodingConfig_decode(buf) local _d = M.JspbEncodingConfig_descriptor if pb.c_runtime ~= nil then local _p = _d.c_plan or pb.c_runtime.compile_plan(_d) return pb.c_runtime.decode(_p, buf) end if type(buf) ~= 'string' then error("expected string for conformance.JspbEncodingConfig decode, got " .. type(buf), 0) end local result = {} local pos, len = 1, #buf local _uf while pos <= len do local _tag_start = pos local id, wt local _b = string_byte(buf, pos) if _b ~= nil and _b < 0x80 then wt = band(_b, 7) if wt >= 6 then error("illegal wire type " .. wt, 0) end id = rshift(_b, 3) if id == 0 then error("illegal field number 0", 0) end pos = pos + 1 else id, wt, pos = wire.decode_tag(buf, pos) end if id == 1 then local val val, pos = wire.decode_bool(buf, pos) result.use_jspb_array_any_format = val else local _ebid = M.JspbEncodingConfig_descriptor.extensions_by_id local _ext = _ebid and _ebid[id] or nil if _ext ~= nil then pos = pb.codec.decode_extension(_ext, buf, pos, wt, result) else pos = wire.skip_field(buf, pos, wt, id) if _uf == nil then _uf = {} end _uf[#_uf + 1] = buf:sub(_tag_start, pos - 1) end end end if _uf ~= nil then result._unknown_fields = table.concat(_uf) end return result end ---@param b string ---@return pb.MessageView function M.JspbEncodingConfig_decode_lazy(b) return pb.decode_lazy(M.JspbEncodingConfig_descriptor, b) end ---@param t conformance.JspbEncodingConfig ---@param opts? {single_line: boolean?, indent: string?} ---@return string function M.JspbEncodingConfig_text(t, opts) return pb.text.encode(M.JspbEncodingConfig_descriptor, t, opts) end return M