Files
orion_greptime_proto/c++/greptime/v1/row.pb.cc
T
JeremyHi d9167cab47 feat: row-based insert (#72)
* feat: row-based insert

* feat: null value

* roback: null value

* feat: delete by row

* feat: rename Value to Field
2023-08-14 12:15:44 +08:00

1832 lines
61 KiB
C++

// Generated by the protocol buffer compiler. DO NOT EDIT!
// source: greptime/v1/row.proto
#include "greptime/v1/row.pb.h"
#include <algorithm>
#include <google/protobuf/io/coded_stream.h>
#include <google/protobuf/extension_set.h>
#include <google/protobuf/wire_format_lite.h>
#include <google/protobuf/descriptor.h>
#include <google/protobuf/generated_message_reflection.h>
#include <google/protobuf/reflection_ops.h>
#include <google/protobuf/wire_format.h>
// @@protoc_insertion_point(includes)
#include <google/protobuf/port_def.inc>
PROTOBUF_PRAGMA_INIT_SEG
namespace _pb = ::PROTOBUF_NAMESPACE_ID;
namespace _pbi = _pb::internal;
namespace greptime {
namespace v1 {
PROTOBUF_CONSTEXPR Rows::Rows(
::_pbi::ConstantInitialized): _impl_{
/*decltype(_impl_.schema_)*/{}
, /*decltype(_impl_.rows_)*/{}
, /*decltype(_impl_._cached_size_)*/{}} {}
struct RowsDefaultTypeInternal {
PROTOBUF_CONSTEXPR RowsDefaultTypeInternal()
: _instance(::_pbi::ConstantInitialized{}) {}
~RowsDefaultTypeInternal() {}
union {
Rows _instance;
};
};
PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 RowsDefaultTypeInternal _Rows_default_instance_;
PROTOBUF_CONSTEXPR ColumnSchema::ColumnSchema(
::_pbi::ConstantInitialized): _impl_{
/*decltype(_impl_.column_name_)*/{&::_pbi::fixed_address_empty_string, ::_pbi::ConstantInitialized{}}
, /*decltype(_impl_.datatype_)*/0
, /*decltype(_impl_.semantic_type_)*/0
, /*decltype(_impl_._cached_size_)*/{}} {}
struct ColumnSchemaDefaultTypeInternal {
PROTOBUF_CONSTEXPR ColumnSchemaDefaultTypeInternal()
: _instance(::_pbi::ConstantInitialized{}) {}
~ColumnSchemaDefaultTypeInternal() {}
union {
ColumnSchema _instance;
};
};
PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 ColumnSchemaDefaultTypeInternal _ColumnSchema_default_instance_;
PROTOBUF_CONSTEXPR Row::Row(
::_pbi::ConstantInitialized): _impl_{
/*decltype(_impl_.values_)*/{}
, /*decltype(_impl_._cached_size_)*/{}} {}
struct RowDefaultTypeInternal {
PROTOBUF_CONSTEXPR RowDefaultTypeInternal()
: _instance(::_pbi::ConstantInitialized{}) {}
~RowDefaultTypeInternal() {}
union {
Row _instance;
};
};
PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 RowDefaultTypeInternal _Row_default_instance_;
PROTOBUF_CONSTEXPR Value::Value(
::_pbi::ConstantInitialized): _impl_{
/*decltype(_impl_.value_data_)*/{}
, /*decltype(_impl_._cached_size_)*/{}
, /*decltype(_impl_._oneof_case_)*/{}} {}
struct ValueDefaultTypeInternal {
PROTOBUF_CONSTEXPR ValueDefaultTypeInternal()
: _instance(::_pbi::ConstantInitialized{}) {}
~ValueDefaultTypeInternal() {}
union {
Value _instance;
};
};
PROTOBUF_ATTRIBUTE_NO_DESTROY PROTOBUF_CONSTINIT PROTOBUF_ATTRIBUTE_INIT_PRIORITY1 ValueDefaultTypeInternal _Value_default_instance_;
} // namespace v1
} // namespace greptime
static ::_pb::Metadata file_level_metadata_greptime_2fv1_2frow_2eproto[4];
static constexpr ::_pb::EnumDescriptor const** file_level_enum_descriptors_greptime_2fv1_2frow_2eproto = nullptr;
static constexpr ::_pb::ServiceDescriptor const** file_level_service_descriptors_greptime_2fv1_2frow_2eproto = nullptr;
const uint32_t TableStruct_greptime_2fv1_2frow_2eproto::offsets[] PROTOBUF_SECTION_VARIABLE(protodesc_cold) = {
~0u, // no _has_bits_
PROTOBUF_FIELD_OFFSET(::greptime::v1::Rows, _internal_metadata_),
~0u, // no _extensions_
~0u, // no _oneof_case_
~0u, // no _weak_field_map_
~0u, // no _inlined_string_donated_
PROTOBUF_FIELD_OFFSET(::greptime::v1::Rows, _impl_.schema_),
PROTOBUF_FIELD_OFFSET(::greptime::v1::Rows, _impl_.rows_),
~0u, // no _has_bits_
PROTOBUF_FIELD_OFFSET(::greptime::v1::ColumnSchema, _internal_metadata_),
~0u, // no _extensions_
~0u, // no _oneof_case_
~0u, // no _weak_field_map_
~0u, // no _inlined_string_donated_
PROTOBUF_FIELD_OFFSET(::greptime::v1::ColumnSchema, _impl_.column_name_),
PROTOBUF_FIELD_OFFSET(::greptime::v1::ColumnSchema, _impl_.datatype_),
PROTOBUF_FIELD_OFFSET(::greptime::v1::ColumnSchema, _impl_.semantic_type_),
~0u, // no _has_bits_
PROTOBUF_FIELD_OFFSET(::greptime::v1::Row, _internal_metadata_),
~0u, // no _extensions_
~0u, // no _oneof_case_
~0u, // no _weak_field_map_
~0u, // no _inlined_string_donated_
PROTOBUF_FIELD_OFFSET(::greptime::v1::Row, _impl_.values_),
~0u, // no _has_bits_
PROTOBUF_FIELD_OFFSET(::greptime::v1::Value, _internal_metadata_),
~0u, // no _extensions_
PROTOBUF_FIELD_OFFSET(::greptime::v1::Value, _impl_._oneof_case_[0]),
~0u, // no _weak_field_map_
~0u, // no _inlined_string_donated_
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
::_pbi::kInvalidFieldOffsetTag,
PROTOBUF_FIELD_OFFSET(::greptime::v1::Value, _impl_.value_data_),
};
static const ::_pbi::MigrationSchema schemas[] PROTOBUF_SECTION_VARIABLE(protodesc_cold) = {
{ 0, -1, -1, sizeof(::greptime::v1::Rows)},
{ 8, -1, -1, sizeof(::greptime::v1::ColumnSchema)},
{ 17, -1, -1, sizeof(::greptime::v1::Row)},
{ 24, -1, -1, sizeof(::greptime::v1::Value)},
};
static const ::_pb::Message* const file_default_instances[] = {
&::greptime::v1::_Rows_default_instance_._instance,
&::greptime::v1::_ColumnSchema_default_instance_._instance,
&::greptime::v1::_Row_default_instance_._instance,
&::greptime::v1::_Value_default_instance_._instance,
};
const char descriptor_table_protodef_greptime_2fv1_2frow_2eproto[] PROTOBUF_SECTION_VARIABLE(protodesc_cold) =
"\n\025greptime/v1/row.proto\022\013greptime.v1\032\030gr"
"eptime/v1/common.proto\"Q\n\004Rows\022)\n\006schema"
"\030\001 \003(\0132\031.greptime.v1.ColumnSchema\022\036\n\004row"
"s\030\002 \003(\0132\020.greptime.v1.Row\"\204\001\n\014ColumnSche"
"ma\022\023\n\013column_name\030\001 \001(\t\022-\n\010datatype\030\002 \001("
"\0162\033.greptime.v1.ColumnDataType\0220\n\rsemant"
"ic_type\030\003 \001(\0162\031.greptime.v1.SemanticType"
"\")\n\003Row\022\"\n\006values\030\001 \003(\0132\022.greptime.v1.Va"
"lue\"\327\004\n\005Value\022\022\n\010i8_value\030\001 \001(\005H\000\022\023\n\ti16"
"_value\030\002 \001(\005H\000\022\023\n\ti32_value\030\003 \001(\005H\000\022\023\n\ti"
"64_value\030\004 \001(\003H\000\022\022\n\010u8_value\030\005 \001(\rH\000\022\023\n\t"
"u16_value\030\006 \001(\rH\000\022\023\n\tu32_value\030\007 \001(\rH\000\022\023"
"\n\tu64_value\030\010 \001(\004H\000\022\023\n\tf32_value\030\t \001(\002H\000"
"\022\023\n\tf64_value\030\n \001(\001H\000\022\024\n\nbool_value\030\013 \001("
"\010H\000\022\026\n\014binary_value\030\014 \001(\014H\000\022\026\n\014string_va"
"lue\030\r \001(\tH\000\022\024\n\ndate_value\030\016 \001(\005H\000\022\030\n\016dat"
"etime_value\030\017 \001(\003H\000\022\031\n\017ts_second_value\030\020"
" \001(\003H\000\022\036\n\024ts_millisecond_value\030\021 \001(\003H\000\022\036"
"\n\024ts_microsecond_value\030\022 \001(\003H\000\022\035\n\023ts_nan"
"osecond_value\030\023 \001(\003H\000\022\033\n\021time_second_val"
"ue\030\024 \001(\003H\000\022 \n\026time_millisecond_value\030\025 \001"
"(\003H\000\022 \n\026time_microsecond_value\030\026 \001(\003H\000\022\037"
"\n\025time_nanosecond_value\030\027 \001(\003H\000B\014\n\nvalue"
"_dataBP\n\016io.greptime.v1B\007RowDataZ5github"
".com/GreptimeTeam/greptime-proto/go/grep"
"time/v1b\006proto3"
;
static const ::_pbi::DescriptorTable* const descriptor_table_greptime_2fv1_2frow_2eproto_deps[1] = {
&::descriptor_table_greptime_2fv1_2fcommon_2eproto,
};
static ::_pbi::once_flag descriptor_table_greptime_2fv1_2frow_2eproto_once;
const ::_pbi::DescriptorTable descriptor_table_greptime_2fv1_2frow_2eproto = {
false, false, 1015, descriptor_table_protodef_greptime_2fv1_2frow_2eproto,
"greptime/v1/row.proto",
&descriptor_table_greptime_2fv1_2frow_2eproto_once, descriptor_table_greptime_2fv1_2frow_2eproto_deps, 1, 4,
schemas, file_default_instances, TableStruct_greptime_2fv1_2frow_2eproto::offsets,
file_level_metadata_greptime_2fv1_2frow_2eproto, file_level_enum_descriptors_greptime_2fv1_2frow_2eproto,
file_level_service_descriptors_greptime_2fv1_2frow_2eproto,
};
PROTOBUF_ATTRIBUTE_WEAK const ::_pbi::DescriptorTable* descriptor_table_greptime_2fv1_2frow_2eproto_getter() {
return &descriptor_table_greptime_2fv1_2frow_2eproto;
}
// Force running AddDescriptors() at dynamic initialization time.
PROTOBUF_ATTRIBUTE_INIT_PRIORITY2 static ::_pbi::AddDescriptorsRunner dynamic_init_dummy_greptime_2fv1_2frow_2eproto(&descriptor_table_greptime_2fv1_2frow_2eproto);
namespace greptime {
namespace v1 {
// ===================================================================
class Rows::_Internal {
public:
};
Rows::Rows(::PROTOBUF_NAMESPACE_ID::Arena* arena,
bool is_message_owned)
: ::PROTOBUF_NAMESPACE_ID::Message(arena, is_message_owned) {
SharedCtor(arena, is_message_owned);
// @@protoc_insertion_point(arena_constructor:greptime.v1.Rows)
}
Rows::Rows(const Rows& from)
: ::PROTOBUF_NAMESPACE_ID::Message() {
Rows* const _this = this; (void)_this;
new (&_impl_) Impl_{
decltype(_impl_.schema_){from._impl_.schema_}
, decltype(_impl_.rows_){from._impl_.rows_}
, /*decltype(_impl_._cached_size_)*/{}};
_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
// @@protoc_insertion_point(copy_constructor:greptime.v1.Rows)
}
inline void Rows::SharedCtor(
::_pb::Arena* arena, bool is_message_owned) {
(void)arena;
(void)is_message_owned;
new (&_impl_) Impl_{
decltype(_impl_.schema_){arena}
, decltype(_impl_.rows_){arena}
, /*decltype(_impl_._cached_size_)*/{}
};
}
Rows::~Rows() {
// @@protoc_insertion_point(destructor:greptime.v1.Rows)
if (auto *arena = _internal_metadata_.DeleteReturnArena<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>()) {
(void)arena;
return;
}
SharedDtor();
}
inline void Rows::SharedDtor() {
GOOGLE_DCHECK(GetArenaForAllocation() == nullptr);
_impl_.schema_.~RepeatedPtrField();
_impl_.rows_.~RepeatedPtrField();
}
void Rows::SetCachedSize(int size) const {
_impl_._cached_size_.Set(size);
}
void Rows::Clear() {
// @@protoc_insertion_point(message_clear_start:greptime.v1.Rows)
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
_impl_.schema_.Clear();
_impl_.rows_.Clear();
_internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
}
const char* Rows::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
while (!ctx->Done(&ptr)) {
uint32_t tag;
ptr = ::_pbi::ReadTag(ptr, &tag);
switch (tag >> 3) {
// repeated .greptime.v1.ColumnSchema schema = 1;
case 1:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 10)) {
ptr -= 1;
do {
ptr += 1;
ptr = ctx->ParseMessage(_internal_add_schema(), ptr);
CHK_(ptr);
if (!ctx->DataAvailable(ptr)) break;
} while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr));
} else
goto handle_unusual;
continue;
// repeated .greptime.v1.Row rows = 2;
case 2:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 18)) {
ptr -= 1;
do {
ptr += 1;
ptr = ctx->ParseMessage(_internal_add_rows(), ptr);
CHK_(ptr);
if (!ctx->DataAvailable(ptr)) break;
} while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<18>(ptr));
} else
goto handle_unusual;
continue;
default:
goto handle_unusual;
} // switch
handle_unusual:
if ((tag == 0) || ((tag & 7) == 4)) {
CHK_(ptr);
ctx->SetLastTag(tag);
goto message_done;
}
ptr = UnknownFieldParse(
tag,
_internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
ptr, ctx);
CHK_(ptr != nullptr);
} // while
message_done:
return ptr;
failure:
ptr = nullptr;
goto message_done;
#undef CHK_
}
uint8_t* Rows::_InternalSerialize(
uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
// @@protoc_insertion_point(serialize_to_array_start:greptime.v1.Rows)
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
// repeated .greptime.v1.ColumnSchema schema = 1;
for (unsigned i = 0,
n = static_cast<unsigned>(this->_internal_schema_size()); i < n; i++) {
const auto& repfield = this->_internal_schema(i);
target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
InternalWriteMessage(1, repfield, repfield.GetCachedSize(), target, stream);
}
// repeated .greptime.v1.Row rows = 2;
for (unsigned i = 0,
n = static_cast<unsigned>(this->_internal_rows_size()); i < n; i++) {
const auto& repfield = this->_internal_rows(i);
target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
InternalWriteMessage(2, repfield, repfield.GetCachedSize(), target, stream);
}
if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
target = ::_pbi::WireFormat::InternalSerializeUnknownFieldsToArray(
_internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
}
// @@protoc_insertion_point(serialize_to_array_end:greptime.v1.Rows)
return target;
}
size_t Rows::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:greptime.v1.Rows)
size_t total_size = 0;
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
// repeated .greptime.v1.ColumnSchema schema = 1;
total_size += 1UL * this->_internal_schema_size();
for (const auto& msg : this->_impl_.schema_) {
total_size +=
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
}
// repeated .greptime.v1.Row rows = 2;
total_size += 1UL * this->_internal_rows_size();
for (const auto& msg : this->_impl_.rows_) {
total_size +=
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
}
return MaybeComputeUnknownFieldsSize(total_size, &_impl_._cached_size_);
}
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData Rows::_class_data_ = {
::PROTOBUF_NAMESPACE_ID::Message::CopyWithSourceCheck,
Rows::MergeImpl
};
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData*Rows::GetClassData() const { return &_class_data_; }
void Rows::MergeImpl(::PROTOBUF_NAMESPACE_ID::Message& to_msg, const ::PROTOBUF_NAMESPACE_ID::Message& from_msg) {
auto* const _this = static_cast<Rows*>(&to_msg);
auto& from = static_cast<const Rows&>(from_msg);
// @@protoc_insertion_point(class_specific_merge_from_start:greptime.v1.Rows)
GOOGLE_DCHECK_NE(&from, _this);
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
_this->_impl_.schema_.MergeFrom(from._impl_.schema_);
_this->_impl_.rows_.MergeFrom(from._impl_.rows_);
_this->_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
}
void Rows::CopyFrom(const Rows& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:greptime.v1.Rows)
if (&from == this) return;
Clear();
MergeFrom(from);
}
bool Rows::IsInitialized() const {
return true;
}
void Rows::InternalSwap(Rows* other) {
using std::swap;
_internal_metadata_.InternalSwap(&other->_internal_metadata_);
_impl_.schema_.InternalSwap(&other->_impl_.schema_);
_impl_.rows_.InternalSwap(&other->_impl_.rows_);
}
::PROTOBUF_NAMESPACE_ID::Metadata Rows::GetMetadata() const {
return ::_pbi::AssignDescriptors(
&descriptor_table_greptime_2fv1_2frow_2eproto_getter, &descriptor_table_greptime_2fv1_2frow_2eproto_once,
file_level_metadata_greptime_2fv1_2frow_2eproto[0]);
}
// ===================================================================
class ColumnSchema::_Internal {
public:
};
ColumnSchema::ColumnSchema(::PROTOBUF_NAMESPACE_ID::Arena* arena,
bool is_message_owned)
: ::PROTOBUF_NAMESPACE_ID::Message(arena, is_message_owned) {
SharedCtor(arena, is_message_owned);
// @@protoc_insertion_point(arena_constructor:greptime.v1.ColumnSchema)
}
ColumnSchema::ColumnSchema(const ColumnSchema& from)
: ::PROTOBUF_NAMESPACE_ID::Message() {
ColumnSchema* const _this = this; (void)_this;
new (&_impl_) Impl_{
decltype(_impl_.column_name_){}
, decltype(_impl_.datatype_){}
, decltype(_impl_.semantic_type_){}
, /*decltype(_impl_._cached_size_)*/{}};
_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
_impl_.column_name_.InitDefault();
#ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING
_impl_.column_name_.Set("", GetArenaForAllocation());
#endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING
if (!from._internal_column_name().empty()) {
_this->_impl_.column_name_.Set(from._internal_column_name(),
_this->GetArenaForAllocation());
}
::memcpy(&_impl_.datatype_, &from._impl_.datatype_,
static_cast<size_t>(reinterpret_cast<char*>(&_impl_.semantic_type_) -
reinterpret_cast<char*>(&_impl_.datatype_)) + sizeof(_impl_.semantic_type_));
// @@protoc_insertion_point(copy_constructor:greptime.v1.ColumnSchema)
}
inline void ColumnSchema::SharedCtor(
::_pb::Arena* arena, bool is_message_owned) {
(void)arena;
(void)is_message_owned;
new (&_impl_) Impl_{
decltype(_impl_.column_name_){}
, decltype(_impl_.datatype_){0}
, decltype(_impl_.semantic_type_){0}
, /*decltype(_impl_._cached_size_)*/{}
};
_impl_.column_name_.InitDefault();
#ifdef PROTOBUF_FORCE_COPY_DEFAULT_STRING
_impl_.column_name_.Set("", GetArenaForAllocation());
#endif // PROTOBUF_FORCE_COPY_DEFAULT_STRING
}
ColumnSchema::~ColumnSchema() {
// @@protoc_insertion_point(destructor:greptime.v1.ColumnSchema)
if (auto *arena = _internal_metadata_.DeleteReturnArena<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>()) {
(void)arena;
return;
}
SharedDtor();
}
inline void ColumnSchema::SharedDtor() {
GOOGLE_DCHECK(GetArenaForAllocation() == nullptr);
_impl_.column_name_.Destroy();
}
void ColumnSchema::SetCachedSize(int size) const {
_impl_._cached_size_.Set(size);
}
void ColumnSchema::Clear() {
// @@protoc_insertion_point(message_clear_start:greptime.v1.ColumnSchema)
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
_impl_.column_name_.ClearToEmpty();
::memset(&_impl_.datatype_, 0, static_cast<size_t>(
reinterpret_cast<char*>(&_impl_.semantic_type_) -
reinterpret_cast<char*>(&_impl_.datatype_)) + sizeof(_impl_.semantic_type_));
_internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
}
const char* ColumnSchema::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
while (!ctx->Done(&ptr)) {
uint32_t tag;
ptr = ::_pbi::ReadTag(ptr, &tag);
switch (tag >> 3) {
// string column_name = 1;
case 1:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 10)) {
auto str = _internal_mutable_column_name();
ptr = ::_pbi::InlineGreedyStringParser(str, ptr, ctx);
CHK_(ptr);
CHK_(::_pbi::VerifyUTF8(str, "greptime.v1.ColumnSchema.column_name"));
} else
goto handle_unusual;
continue;
// .greptime.v1.ColumnDataType datatype = 2;
case 2:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 16)) {
uint64_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
CHK_(ptr);
_internal_set_datatype(static_cast<::greptime::v1::ColumnDataType>(val));
} else
goto handle_unusual;
continue;
// .greptime.v1.SemanticType semantic_type = 3;
case 3:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 24)) {
uint64_t val = ::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr);
CHK_(ptr);
_internal_set_semantic_type(static_cast<::greptime::v1::SemanticType>(val));
} else
goto handle_unusual;
continue;
default:
goto handle_unusual;
} // switch
handle_unusual:
if ((tag == 0) || ((tag & 7) == 4)) {
CHK_(ptr);
ctx->SetLastTag(tag);
goto message_done;
}
ptr = UnknownFieldParse(
tag,
_internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
ptr, ctx);
CHK_(ptr != nullptr);
} // while
message_done:
return ptr;
failure:
ptr = nullptr;
goto message_done;
#undef CHK_
}
uint8_t* ColumnSchema::_InternalSerialize(
uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
// @@protoc_insertion_point(serialize_to_array_start:greptime.v1.ColumnSchema)
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
// string column_name = 1;
if (!this->_internal_column_name().empty()) {
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::VerifyUtf8String(
this->_internal_column_name().data(), static_cast<int>(this->_internal_column_name().length()),
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::SERIALIZE,
"greptime.v1.ColumnSchema.column_name");
target = stream->WriteStringMaybeAliased(
1, this->_internal_column_name(), target);
}
// .greptime.v1.ColumnDataType datatype = 2;
if (this->_internal_datatype() != 0) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteEnumToArray(
2, this->_internal_datatype(), target);
}
// .greptime.v1.SemanticType semantic_type = 3;
if (this->_internal_semantic_type() != 0) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteEnumToArray(
3, this->_internal_semantic_type(), target);
}
if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
target = ::_pbi::WireFormat::InternalSerializeUnknownFieldsToArray(
_internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
}
// @@protoc_insertion_point(serialize_to_array_end:greptime.v1.ColumnSchema)
return target;
}
size_t ColumnSchema::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:greptime.v1.ColumnSchema)
size_t total_size = 0;
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
// string column_name = 1;
if (!this->_internal_column_name().empty()) {
total_size += 1 +
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
this->_internal_column_name());
}
// .greptime.v1.ColumnDataType datatype = 2;
if (this->_internal_datatype() != 0) {
total_size += 1 +
::_pbi::WireFormatLite::EnumSize(this->_internal_datatype());
}
// .greptime.v1.SemanticType semantic_type = 3;
if (this->_internal_semantic_type() != 0) {
total_size += 1 +
::_pbi::WireFormatLite::EnumSize(this->_internal_semantic_type());
}
return MaybeComputeUnknownFieldsSize(total_size, &_impl_._cached_size_);
}
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData ColumnSchema::_class_data_ = {
::PROTOBUF_NAMESPACE_ID::Message::CopyWithSourceCheck,
ColumnSchema::MergeImpl
};
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData*ColumnSchema::GetClassData() const { return &_class_data_; }
void ColumnSchema::MergeImpl(::PROTOBUF_NAMESPACE_ID::Message& to_msg, const ::PROTOBUF_NAMESPACE_ID::Message& from_msg) {
auto* const _this = static_cast<ColumnSchema*>(&to_msg);
auto& from = static_cast<const ColumnSchema&>(from_msg);
// @@protoc_insertion_point(class_specific_merge_from_start:greptime.v1.ColumnSchema)
GOOGLE_DCHECK_NE(&from, _this);
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
if (!from._internal_column_name().empty()) {
_this->_internal_set_column_name(from._internal_column_name());
}
if (from._internal_datatype() != 0) {
_this->_internal_set_datatype(from._internal_datatype());
}
if (from._internal_semantic_type() != 0) {
_this->_internal_set_semantic_type(from._internal_semantic_type());
}
_this->_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
}
void ColumnSchema::CopyFrom(const ColumnSchema& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:greptime.v1.ColumnSchema)
if (&from == this) return;
Clear();
MergeFrom(from);
}
bool ColumnSchema::IsInitialized() const {
return true;
}
void ColumnSchema::InternalSwap(ColumnSchema* other) {
using std::swap;
auto* lhs_arena = GetArenaForAllocation();
auto* rhs_arena = other->GetArenaForAllocation();
_internal_metadata_.InternalSwap(&other->_internal_metadata_);
::PROTOBUF_NAMESPACE_ID::internal::ArenaStringPtr::InternalSwap(
&_impl_.column_name_, lhs_arena,
&other->_impl_.column_name_, rhs_arena
);
::PROTOBUF_NAMESPACE_ID::internal::memswap<
PROTOBUF_FIELD_OFFSET(ColumnSchema, _impl_.semantic_type_)
+ sizeof(ColumnSchema::_impl_.semantic_type_)
- PROTOBUF_FIELD_OFFSET(ColumnSchema, _impl_.datatype_)>(
reinterpret_cast<char*>(&_impl_.datatype_),
reinterpret_cast<char*>(&other->_impl_.datatype_));
}
::PROTOBUF_NAMESPACE_ID::Metadata ColumnSchema::GetMetadata() const {
return ::_pbi::AssignDescriptors(
&descriptor_table_greptime_2fv1_2frow_2eproto_getter, &descriptor_table_greptime_2fv1_2frow_2eproto_once,
file_level_metadata_greptime_2fv1_2frow_2eproto[1]);
}
// ===================================================================
class Row::_Internal {
public:
};
Row::Row(::PROTOBUF_NAMESPACE_ID::Arena* arena,
bool is_message_owned)
: ::PROTOBUF_NAMESPACE_ID::Message(arena, is_message_owned) {
SharedCtor(arena, is_message_owned);
// @@protoc_insertion_point(arena_constructor:greptime.v1.Row)
}
Row::Row(const Row& from)
: ::PROTOBUF_NAMESPACE_ID::Message() {
Row* const _this = this; (void)_this;
new (&_impl_) Impl_{
decltype(_impl_.values_){from._impl_.values_}
, /*decltype(_impl_._cached_size_)*/{}};
_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
// @@protoc_insertion_point(copy_constructor:greptime.v1.Row)
}
inline void Row::SharedCtor(
::_pb::Arena* arena, bool is_message_owned) {
(void)arena;
(void)is_message_owned;
new (&_impl_) Impl_{
decltype(_impl_.values_){arena}
, /*decltype(_impl_._cached_size_)*/{}
};
}
Row::~Row() {
// @@protoc_insertion_point(destructor:greptime.v1.Row)
if (auto *arena = _internal_metadata_.DeleteReturnArena<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>()) {
(void)arena;
return;
}
SharedDtor();
}
inline void Row::SharedDtor() {
GOOGLE_DCHECK(GetArenaForAllocation() == nullptr);
_impl_.values_.~RepeatedPtrField();
}
void Row::SetCachedSize(int size) const {
_impl_._cached_size_.Set(size);
}
void Row::Clear() {
// @@protoc_insertion_point(message_clear_start:greptime.v1.Row)
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
_impl_.values_.Clear();
_internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
}
const char* Row::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
while (!ctx->Done(&ptr)) {
uint32_t tag;
ptr = ::_pbi::ReadTag(ptr, &tag);
switch (tag >> 3) {
// repeated .greptime.v1.Value values = 1;
case 1:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 10)) {
ptr -= 1;
do {
ptr += 1;
ptr = ctx->ParseMessage(_internal_add_values(), ptr);
CHK_(ptr);
if (!ctx->DataAvailable(ptr)) break;
} while (::PROTOBUF_NAMESPACE_ID::internal::ExpectTag<10>(ptr));
} else
goto handle_unusual;
continue;
default:
goto handle_unusual;
} // switch
handle_unusual:
if ((tag == 0) || ((tag & 7) == 4)) {
CHK_(ptr);
ctx->SetLastTag(tag);
goto message_done;
}
ptr = UnknownFieldParse(
tag,
_internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
ptr, ctx);
CHK_(ptr != nullptr);
} // while
message_done:
return ptr;
failure:
ptr = nullptr;
goto message_done;
#undef CHK_
}
uint8_t* Row::_InternalSerialize(
uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
// @@protoc_insertion_point(serialize_to_array_start:greptime.v1.Row)
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
// repeated .greptime.v1.Value values = 1;
for (unsigned i = 0,
n = static_cast<unsigned>(this->_internal_values_size()); i < n; i++) {
const auto& repfield = this->_internal_values(i);
target = ::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::
InternalWriteMessage(1, repfield, repfield.GetCachedSize(), target, stream);
}
if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
target = ::_pbi::WireFormat::InternalSerializeUnknownFieldsToArray(
_internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
}
// @@protoc_insertion_point(serialize_to_array_end:greptime.v1.Row)
return target;
}
size_t Row::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:greptime.v1.Row)
size_t total_size = 0;
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
// repeated .greptime.v1.Value values = 1;
total_size += 1UL * this->_internal_values_size();
for (const auto& msg : this->_impl_.values_) {
total_size +=
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::MessageSize(msg);
}
return MaybeComputeUnknownFieldsSize(total_size, &_impl_._cached_size_);
}
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData Row::_class_data_ = {
::PROTOBUF_NAMESPACE_ID::Message::CopyWithSourceCheck,
Row::MergeImpl
};
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData*Row::GetClassData() const { return &_class_data_; }
void Row::MergeImpl(::PROTOBUF_NAMESPACE_ID::Message& to_msg, const ::PROTOBUF_NAMESPACE_ID::Message& from_msg) {
auto* const _this = static_cast<Row*>(&to_msg);
auto& from = static_cast<const Row&>(from_msg);
// @@protoc_insertion_point(class_specific_merge_from_start:greptime.v1.Row)
GOOGLE_DCHECK_NE(&from, _this);
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
_this->_impl_.values_.MergeFrom(from._impl_.values_);
_this->_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
}
void Row::CopyFrom(const Row& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:greptime.v1.Row)
if (&from == this) return;
Clear();
MergeFrom(from);
}
bool Row::IsInitialized() const {
return true;
}
void Row::InternalSwap(Row* other) {
using std::swap;
_internal_metadata_.InternalSwap(&other->_internal_metadata_);
_impl_.values_.InternalSwap(&other->_impl_.values_);
}
::PROTOBUF_NAMESPACE_ID::Metadata Row::GetMetadata() const {
return ::_pbi::AssignDescriptors(
&descriptor_table_greptime_2fv1_2frow_2eproto_getter, &descriptor_table_greptime_2fv1_2frow_2eproto_once,
file_level_metadata_greptime_2fv1_2frow_2eproto[2]);
}
// ===================================================================
class Value::_Internal {
public:
};
Value::Value(::PROTOBUF_NAMESPACE_ID::Arena* arena,
bool is_message_owned)
: ::PROTOBUF_NAMESPACE_ID::Message(arena, is_message_owned) {
SharedCtor(arena, is_message_owned);
// @@protoc_insertion_point(arena_constructor:greptime.v1.Value)
}
Value::Value(const Value& from)
: ::PROTOBUF_NAMESPACE_ID::Message() {
Value* const _this = this; (void)_this;
new (&_impl_) Impl_{
decltype(_impl_.value_data_){}
, /*decltype(_impl_._cached_size_)*/{}
, /*decltype(_impl_._oneof_case_)*/{}};
_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
clear_has_value_data();
switch (from.value_data_case()) {
case kI8Value: {
_this->_internal_set_i8_value(from._internal_i8_value());
break;
}
case kI16Value: {
_this->_internal_set_i16_value(from._internal_i16_value());
break;
}
case kI32Value: {
_this->_internal_set_i32_value(from._internal_i32_value());
break;
}
case kI64Value: {
_this->_internal_set_i64_value(from._internal_i64_value());
break;
}
case kU8Value: {
_this->_internal_set_u8_value(from._internal_u8_value());
break;
}
case kU16Value: {
_this->_internal_set_u16_value(from._internal_u16_value());
break;
}
case kU32Value: {
_this->_internal_set_u32_value(from._internal_u32_value());
break;
}
case kU64Value: {
_this->_internal_set_u64_value(from._internal_u64_value());
break;
}
case kF32Value: {
_this->_internal_set_f32_value(from._internal_f32_value());
break;
}
case kF64Value: {
_this->_internal_set_f64_value(from._internal_f64_value());
break;
}
case kBoolValue: {
_this->_internal_set_bool_value(from._internal_bool_value());
break;
}
case kBinaryValue: {
_this->_internal_set_binary_value(from._internal_binary_value());
break;
}
case kStringValue: {
_this->_internal_set_string_value(from._internal_string_value());
break;
}
case kDateValue: {
_this->_internal_set_date_value(from._internal_date_value());
break;
}
case kDatetimeValue: {
_this->_internal_set_datetime_value(from._internal_datetime_value());
break;
}
case kTsSecondValue: {
_this->_internal_set_ts_second_value(from._internal_ts_second_value());
break;
}
case kTsMillisecondValue: {
_this->_internal_set_ts_millisecond_value(from._internal_ts_millisecond_value());
break;
}
case kTsMicrosecondValue: {
_this->_internal_set_ts_microsecond_value(from._internal_ts_microsecond_value());
break;
}
case kTsNanosecondValue: {
_this->_internal_set_ts_nanosecond_value(from._internal_ts_nanosecond_value());
break;
}
case kTimeSecondValue: {
_this->_internal_set_time_second_value(from._internal_time_second_value());
break;
}
case kTimeMillisecondValue: {
_this->_internal_set_time_millisecond_value(from._internal_time_millisecond_value());
break;
}
case kTimeMicrosecondValue: {
_this->_internal_set_time_microsecond_value(from._internal_time_microsecond_value());
break;
}
case kTimeNanosecondValue: {
_this->_internal_set_time_nanosecond_value(from._internal_time_nanosecond_value());
break;
}
case VALUE_DATA_NOT_SET: {
break;
}
}
// @@protoc_insertion_point(copy_constructor:greptime.v1.Value)
}
inline void Value::SharedCtor(
::_pb::Arena* arena, bool is_message_owned) {
(void)arena;
(void)is_message_owned;
new (&_impl_) Impl_{
decltype(_impl_.value_data_){}
, /*decltype(_impl_._cached_size_)*/{}
, /*decltype(_impl_._oneof_case_)*/{}
};
clear_has_value_data();
}
Value::~Value() {
// @@protoc_insertion_point(destructor:greptime.v1.Value)
if (auto *arena = _internal_metadata_.DeleteReturnArena<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>()) {
(void)arena;
return;
}
SharedDtor();
}
inline void Value::SharedDtor() {
GOOGLE_DCHECK(GetArenaForAllocation() == nullptr);
if (has_value_data()) {
clear_value_data();
}
}
void Value::SetCachedSize(int size) const {
_impl_._cached_size_.Set(size);
}
void Value::clear_value_data() {
// @@protoc_insertion_point(one_of_clear_start:greptime.v1.Value)
switch (value_data_case()) {
case kI8Value: {
// No need to clear
break;
}
case kI16Value: {
// No need to clear
break;
}
case kI32Value: {
// No need to clear
break;
}
case kI64Value: {
// No need to clear
break;
}
case kU8Value: {
// No need to clear
break;
}
case kU16Value: {
// No need to clear
break;
}
case kU32Value: {
// No need to clear
break;
}
case kU64Value: {
// No need to clear
break;
}
case kF32Value: {
// No need to clear
break;
}
case kF64Value: {
// No need to clear
break;
}
case kBoolValue: {
// No need to clear
break;
}
case kBinaryValue: {
_impl_.value_data_.binary_value_.Destroy();
break;
}
case kStringValue: {
_impl_.value_data_.string_value_.Destroy();
break;
}
case kDateValue: {
// No need to clear
break;
}
case kDatetimeValue: {
// No need to clear
break;
}
case kTsSecondValue: {
// No need to clear
break;
}
case kTsMillisecondValue: {
// No need to clear
break;
}
case kTsMicrosecondValue: {
// No need to clear
break;
}
case kTsNanosecondValue: {
// No need to clear
break;
}
case kTimeSecondValue: {
// No need to clear
break;
}
case kTimeMillisecondValue: {
// No need to clear
break;
}
case kTimeMicrosecondValue: {
// No need to clear
break;
}
case kTimeNanosecondValue: {
// No need to clear
break;
}
case VALUE_DATA_NOT_SET: {
break;
}
}
_impl_._oneof_case_[0] = VALUE_DATA_NOT_SET;
}
void Value::Clear() {
// @@protoc_insertion_point(message_clear_start:greptime.v1.Value)
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
clear_value_data();
_internal_metadata_.Clear<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>();
}
const char* Value::_InternalParse(const char* ptr, ::_pbi::ParseContext* ctx) {
#define CHK_(x) if (PROTOBUF_PREDICT_FALSE(!(x))) goto failure
while (!ctx->Done(&ptr)) {
uint32_t tag;
ptr = ::_pbi::ReadTag(ptr, &tag);
switch (tag >> 3) {
// int32 i8_value = 1;
case 1:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 8)) {
_internal_set_i8_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int32 i16_value = 2;
case 2:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 16)) {
_internal_set_i16_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int32 i32_value = 3;
case 3:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 24)) {
_internal_set_i32_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 i64_value = 4;
case 4:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 32)) {
_internal_set_i64_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// uint32 u8_value = 5;
case 5:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 40)) {
_internal_set_u8_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// uint32 u16_value = 6;
case 6:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 48)) {
_internal_set_u16_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// uint32 u32_value = 7;
case 7:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 56)) {
_internal_set_u32_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// uint64 u64_value = 8;
case 8:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 64)) {
_internal_set_u64_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// float f32_value = 9;
case 9:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 77)) {
_internal_set_f32_value(::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<float>(ptr));
ptr += sizeof(float);
} else
goto handle_unusual;
continue;
// double f64_value = 10;
case 10:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 81)) {
_internal_set_f64_value(::PROTOBUF_NAMESPACE_ID::internal::UnalignedLoad<double>(ptr));
ptr += sizeof(double);
} else
goto handle_unusual;
continue;
// bool bool_value = 11;
case 11:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 88)) {
_internal_set_bool_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// bytes binary_value = 12;
case 12:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 98)) {
auto str = _internal_mutable_binary_value();
ptr = ::_pbi::InlineGreedyStringParser(str, ptr, ctx);
CHK_(ptr);
} else
goto handle_unusual;
continue;
// string string_value = 13;
case 13:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 106)) {
auto str = _internal_mutable_string_value();
ptr = ::_pbi::InlineGreedyStringParser(str, ptr, ctx);
CHK_(ptr);
CHK_(::_pbi::VerifyUTF8(str, "greptime.v1.Value.string_value"));
} else
goto handle_unusual;
continue;
// int32 date_value = 14;
case 14:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 112)) {
_internal_set_date_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint32(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 datetime_value = 15;
case 15:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 120)) {
_internal_set_datetime_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 ts_second_value = 16;
case 16:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 128)) {
_internal_set_ts_second_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 ts_millisecond_value = 17;
case 17:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 136)) {
_internal_set_ts_millisecond_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 ts_microsecond_value = 18;
case 18:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 144)) {
_internal_set_ts_microsecond_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 ts_nanosecond_value = 19;
case 19:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 152)) {
_internal_set_ts_nanosecond_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 time_second_value = 20;
case 20:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 160)) {
_internal_set_time_second_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 time_millisecond_value = 21;
case 21:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 168)) {
_internal_set_time_millisecond_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 time_microsecond_value = 22;
case 22:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 176)) {
_internal_set_time_microsecond_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
// int64 time_nanosecond_value = 23;
case 23:
if (PROTOBUF_PREDICT_TRUE(static_cast<uint8_t>(tag) == 184)) {
_internal_set_time_nanosecond_value(::PROTOBUF_NAMESPACE_ID::internal::ReadVarint64(&ptr));
CHK_(ptr);
} else
goto handle_unusual;
continue;
default:
goto handle_unusual;
} // switch
handle_unusual:
if ((tag == 0) || ((tag & 7) == 4)) {
CHK_(ptr);
ctx->SetLastTag(tag);
goto message_done;
}
ptr = UnknownFieldParse(
tag,
_internal_metadata_.mutable_unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(),
ptr, ctx);
CHK_(ptr != nullptr);
} // while
message_done:
return ptr;
failure:
ptr = nullptr;
goto message_done;
#undef CHK_
}
uint8_t* Value::_InternalSerialize(
uint8_t* target, ::PROTOBUF_NAMESPACE_ID::io::EpsCopyOutputStream* stream) const {
// @@protoc_insertion_point(serialize_to_array_start:greptime.v1.Value)
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
// int32 i8_value = 1;
if (_internal_has_i8_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt32ToArray(1, this->_internal_i8_value(), target);
}
// int32 i16_value = 2;
if (_internal_has_i16_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt32ToArray(2, this->_internal_i16_value(), target);
}
// int32 i32_value = 3;
if (_internal_has_i32_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt32ToArray(3, this->_internal_i32_value(), target);
}
// int64 i64_value = 4;
if (_internal_has_i64_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(4, this->_internal_i64_value(), target);
}
// uint32 u8_value = 5;
if (_internal_has_u8_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteUInt32ToArray(5, this->_internal_u8_value(), target);
}
// uint32 u16_value = 6;
if (_internal_has_u16_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteUInt32ToArray(6, this->_internal_u16_value(), target);
}
// uint32 u32_value = 7;
if (_internal_has_u32_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteUInt32ToArray(7, this->_internal_u32_value(), target);
}
// uint64 u64_value = 8;
if (_internal_has_u64_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteUInt64ToArray(8, this->_internal_u64_value(), target);
}
// float f32_value = 9;
if (_internal_has_f32_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteFloatToArray(9, this->_internal_f32_value(), target);
}
// double f64_value = 10;
if (_internal_has_f64_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteDoubleToArray(10, this->_internal_f64_value(), target);
}
// bool bool_value = 11;
if (_internal_has_bool_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteBoolToArray(11, this->_internal_bool_value(), target);
}
// bytes binary_value = 12;
if (_internal_has_binary_value()) {
target = stream->WriteBytesMaybeAliased(
12, this->_internal_binary_value(), target);
}
// string string_value = 13;
if (_internal_has_string_value()) {
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::VerifyUtf8String(
this->_internal_string_value().data(), static_cast<int>(this->_internal_string_value().length()),
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::SERIALIZE,
"greptime.v1.Value.string_value");
target = stream->WriteStringMaybeAliased(
13, this->_internal_string_value(), target);
}
// int32 date_value = 14;
if (_internal_has_date_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt32ToArray(14, this->_internal_date_value(), target);
}
// int64 datetime_value = 15;
if (_internal_has_datetime_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(15, this->_internal_datetime_value(), target);
}
// int64 ts_second_value = 16;
if (_internal_has_ts_second_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(16, this->_internal_ts_second_value(), target);
}
// int64 ts_millisecond_value = 17;
if (_internal_has_ts_millisecond_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(17, this->_internal_ts_millisecond_value(), target);
}
// int64 ts_microsecond_value = 18;
if (_internal_has_ts_microsecond_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(18, this->_internal_ts_microsecond_value(), target);
}
// int64 ts_nanosecond_value = 19;
if (_internal_has_ts_nanosecond_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(19, this->_internal_ts_nanosecond_value(), target);
}
// int64 time_second_value = 20;
if (_internal_has_time_second_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(20, this->_internal_time_second_value(), target);
}
// int64 time_millisecond_value = 21;
if (_internal_has_time_millisecond_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(21, this->_internal_time_millisecond_value(), target);
}
// int64 time_microsecond_value = 22;
if (_internal_has_time_microsecond_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(22, this->_internal_time_microsecond_value(), target);
}
// int64 time_nanosecond_value = 23;
if (_internal_has_time_nanosecond_value()) {
target = stream->EnsureSpace(target);
target = ::_pbi::WireFormatLite::WriteInt64ToArray(23, this->_internal_time_nanosecond_value(), target);
}
if (PROTOBUF_PREDICT_FALSE(_internal_metadata_.have_unknown_fields())) {
target = ::_pbi::WireFormat::InternalSerializeUnknownFieldsToArray(
_internal_metadata_.unknown_fields<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(::PROTOBUF_NAMESPACE_ID::UnknownFieldSet::default_instance), target, stream);
}
// @@protoc_insertion_point(serialize_to_array_end:greptime.v1.Value)
return target;
}
size_t Value::ByteSizeLong() const {
// @@protoc_insertion_point(message_byte_size_start:greptime.v1.Value)
size_t total_size = 0;
uint32_t cached_has_bits = 0;
// Prevent compiler warnings about cached_has_bits being unused
(void) cached_has_bits;
switch (value_data_case()) {
// int32 i8_value = 1;
case kI8Value: {
total_size += ::_pbi::WireFormatLite::Int32SizePlusOne(this->_internal_i8_value());
break;
}
// int32 i16_value = 2;
case kI16Value: {
total_size += ::_pbi::WireFormatLite::Int32SizePlusOne(this->_internal_i16_value());
break;
}
// int32 i32_value = 3;
case kI32Value: {
total_size += ::_pbi::WireFormatLite::Int32SizePlusOne(this->_internal_i32_value());
break;
}
// int64 i64_value = 4;
case kI64Value: {
total_size += ::_pbi::WireFormatLite::Int64SizePlusOne(this->_internal_i64_value());
break;
}
// uint32 u8_value = 5;
case kU8Value: {
total_size += ::_pbi::WireFormatLite::UInt32SizePlusOne(this->_internal_u8_value());
break;
}
// uint32 u16_value = 6;
case kU16Value: {
total_size += ::_pbi::WireFormatLite::UInt32SizePlusOne(this->_internal_u16_value());
break;
}
// uint32 u32_value = 7;
case kU32Value: {
total_size += ::_pbi::WireFormatLite::UInt32SizePlusOne(this->_internal_u32_value());
break;
}
// uint64 u64_value = 8;
case kU64Value: {
total_size += ::_pbi::WireFormatLite::UInt64SizePlusOne(this->_internal_u64_value());
break;
}
// float f32_value = 9;
case kF32Value: {
total_size += 1 + 4;
break;
}
// double f64_value = 10;
case kF64Value: {
total_size += 1 + 8;
break;
}
// bool bool_value = 11;
case kBoolValue: {
total_size += 1 + 1;
break;
}
// bytes binary_value = 12;
case kBinaryValue: {
total_size += 1 +
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::BytesSize(
this->_internal_binary_value());
break;
}
// string string_value = 13;
case kStringValue: {
total_size += 1 +
::PROTOBUF_NAMESPACE_ID::internal::WireFormatLite::StringSize(
this->_internal_string_value());
break;
}
// int32 date_value = 14;
case kDateValue: {
total_size += ::_pbi::WireFormatLite::Int32SizePlusOne(this->_internal_date_value());
break;
}
// int64 datetime_value = 15;
case kDatetimeValue: {
total_size += ::_pbi::WireFormatLite::Int64SizePlusOne(this->_internal_datetime_value());
break;
}
// int64 ts_second_value = 16;
case kTsSecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_ts_second_value());
break;
}
// int64 ts_millisecond_value = 17;
case kTsMillisecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_ts_millisecond_value());
break;
}
// int64 ts_microsecond_value = 18;
case kTsMicrosecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_ts_microsecond_value());
break;
}
// int64 ts_nanosecond_value = 19;
case kTsNanosecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_ts_nanosecond_value());
break;
}
// int64 time_second_value = 20;
case kTimeSecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_time_second_value());
break;
}
// int64 time_millisecond_value = 21;
case kTimeMillisecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_time_millisecond_value());
break;
}
// int64 time_microsecond_value = 22;
case kTimeMicrosecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_time_microsecond_value());
break;
}
// int64 time_nanosecond_value = 23;
case kTimeNanosecondValue: {
total_size += 2 +
::_pbi::WireFormatLite::Int64Size(
this->_internal_time_nanosecond_value());
break;
}
case VALUE_DATA_NOT_SET: {
break;
}
}
return MaybeComputeUnknownFieldsSize(total_size, &_impl_._cached_size_);
}
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData Value::_class_data_ = {
::PROTOBUF_NAMESPACE_ID::Message::CopyWithSourceCheck,
Value::MergeImpl
};
const ::PROTOBUF_NAMESPACE_ID::Message::ClassData*Value::GetClassData() const { return &_class_data_; }
void Value::MergeImpl(::PROTOBUF_NAMESPACE_ID::Message& to_msg, const ::PROTOBUF_NAMESPACE_ID::Message& from_msg) {
auto* const _this = static_cast<Value*>(&to_msg);
auto& from = static_cast<const Value&>(from_msg);
// @@protoc_insertion_point(class_specific_merge_from_start:greptime.v1.Value)
GOOGLE_DCHECK_NE(&from, _this);
uint32_t cached_has_bits = 0;
(void) cached_has_bits;
switch (from.value_data_case()) {
case kI8Value: {
_this->_internal_set_i8_value(from._internal_i8_value());
break;
}
case kI16Value: {
_this->_internal_set_i16_value(from._internal_i16_value());
break;
}
case kI32Value: {
_this->_internal_set_i32_value(from._internal_i32_value());
break;
}
case kI64Value: {
_this->_internal_set_i64_value(from._internal_i64_value());
break;
}
case kU8Value: {
_this->_internal_set_u8_value(from._internal_u8_value());
break;
}
case kU16Value: {
_this->_internal_set_u16_value(from._internal_u16_value());
break;
}
case kU32Value: {
_this->_internal_set_u32_value(from._internal_u32_value());
break;
}
case kU64Value: {
_this->_internal_set_u64_value(from._internal_u64_value());
break;
}
case kF32Value: {
_this->_internal_set_f32_value(from._internal_f32_value());
break;
}
case kF64Value: {
_this->_internal_set_f64_value(from._internal_f64_value());
break;
}
case kBoolValue: {
_this->_internal_set_bool_value(from._internal_bool_value());
break;
}
case kBinaryValue: {
_this->_internal_set_binary_value(from._internal_binary_value());
break;
}
case kStringValue: {
_this->_internal_set_string_value(from._internal_string_value());
break;
}
case kDateValue: {
_this->_internal_set_date_value(from._internal_date_value());
break;
}
case kDatetimeValue: {
_this->_internal_set_datetime_value(from._internal_datetime_value());
break;
}
case kTsSecondValue: {
_this->_internal_set_ts_second_value(from._internal_ts_second_value());
break;
}
case kTsMillisecondValue: {
_this->_internal_set_ts_millisecond_value(from._internal_ts_millisecond_value());
break;
}
case kTsMicrosecondValue: {
_this->_internal_set_ts_microsecond_value(from._internal_ts_microsecond_value());
break;
}
case kTsNanosecondValue: {
_this->_internal_set_ts_nanosecond_value(from._internal_ts_nanosecond_value());
break;
}
case kTimeSecondValue: {
_this->_internal_set_time_second_value(from._internal_time_second_value());
break;
}
case kTimeMillisecondValue: {
_this->_internal_set_time_millisecond_value(from._internal_time_millisecond_value());
break;
}
case kTimeMicrosecondValue: {
_this->_internal_set_time_microsecond_value(from._internal_time_microsecond_value());
break;
}
case kTimeNanosecondValue: {
_this->_internal_set_time_nanosecond_value(from._internal_time_nanosecond_value());
break;
}
case VALUE_DATA_NOT_SET: {
break;
}
}
_this->_internal_metadata_.MergeFrom<::PROTOBUF_NAMESPACE_ID::UnknownFieldSet>(from._internal_metadata_);
}
void Value::CopyFrom(const Value& from) {
// @@protoc_insertion_point(class_specific_copy_from_start:greptime.v1.Value)
if (&from == this) return;
Clear();
MergeFrom(from);
}
bool Value::IsInitialized() const {
return true;
}
void Value::InternalSwap(Value* other) {
using std::swap;
_internal_metadata_.InternalSwap(&other->_internal_metadata_);
swap(_impl_.value_data_, other->_impl_.value_data_);
swap(_impl_._oneof_case_[0], other->_impl_._oneof_case_[0]);
}
::PROTOBUF_NAMESPACE_ID::Metadata Value::GetMetadata() const {
return ::_pbi::AssignDescriptors(
&descriptor_table_greptime_2fv1_2frow_2eproto_getter, &descriptor_table_greptime_2fv1_2frow_2eproto_once,
file_level_metadata_greptime_2fv1_2frow_2eproto[3]);
}
// @@protoc_insertion_point(namespace_scope)
} // namespace v1
} // namespace greptime
PROTOBUF_NAMESPACE_OPEN
template<> PROTOBUF_NOINLINE ::greptime::v1::Rows*
Arena::CreateMaybeMessage< ::greptime::v1::Rows >(Arena* arena) {
return Arena::CreateMessageInternal< ::greptime::v1::Rows >(arena);
}
template<> PROTOBUF_NOINLINE ::greptime::v1::ColumnSchema*
Arena::CreateMaybeMessage< ::greptime::v1::ColumnSchema >(Arena* arena) {
return Arena::CreateMessageInternal< ::greptime::v1::ColumnSchema >(arena);
}
template<> PROTOBUF_NOINLINE ::greptime::v1::Row*
Arena::CreateMaybeMessage< ::greptime::v1::Row >(Arena* arena) {
return Arena::CreateMessageInternal< ::greptime::v1::Row >(arena);
}
template<> PROTOBUF_NOINLINE ::greptime::v1::Value*
Arena::CreateMaybeMessage< ::greptime::v1::Value >(Arena* arena) {
return Arena::CreateMessageInternal< ::greptime::v1::Value >(arena);
}
PROTOBUF_NAMESPACE_CLOSE
// @@protoc_insertion_point(global_scope)
#include <google/protobuf/port_undef.inc>