ClickHouse/src/Interpreters/InterpreterDescribeQuery.cpp
2022-03-17 18:26:18 +01:00

179 lines
5.9 KiB
C++

#include <Storages/IStorage.h>
#include <Processors/Sources/SourceFromSingleChunk.h>
#include <QueryPipeline/BlockIO.h>
#include <DataTypes/DataTypeString.h>
#include <Parsers/queryToString.h>
#include <Common/typeid_cast.h>
#include <TableFunctions/ITableFunction.h>
#include <TableFunctions/TableFunctionFactory.h>
#include <Interpreters/InterpreterSelectWithUnionQuery.h>
#include <Interpreters/Context.h>
#include <Interpreters/InterpreterDescribeQuery.h>
#include <Interpreters/IdentifierSemantic.h>
#include <Access/Common/AccessFlags.h>
#include <Parsers/ASTIdentifier.h>
#include <Parsers/ASTFunction.h>
#include <Parsers/ASTTablesInSelectQuery.h>
#include <Parsers/TablePropertiesQueriesASTs.h>
#include <DataTypes/NestedUtils.h>
namespace DB
{
Block InterpreterDescribeQuery::getSampleBlock(bool include_subcolumns)
{
Block block;
ColumnWithTypeAndName col;
col.name = "name";
col.type = std::make_shared<DataTypeString>();
col.column = col.type->createColumn();
block.insert(col);
col.name = "type";
block.insert(col);
col.name = "default_type";
block.insert(col);
col.name = "default_expression";
block.insert(col);
col.name = "comment";
block.insert(col);
col.name = "codec_expression";
block.insert(col);
col.name = "ttl_expression";
block.insert(col);
if (include_subcolumns)
{
col.name = "is_subcolumn";
col.type = std::make_shared<DataTypeUInt8>();
col.column = col.type->createColumn();
block.insert(col);
}
return block;
}
BlockIO InterpreterDescribeQuery::execute()
{
ColumnsDescription columns;
StorageSnapshotPtr storage_snapshot;
const auto & ast = query_ptr->as<ASTDescribeQuery &>();
const auto & table_expression = ast.table_expression->as<ASTTableExpression &>();
const auto & settings = getContext()->getSettingsRef();
if (table_expression.subquery)
{
auto names_and_types = InterpreterSelectWithUnionQuery::getSampleBlock(
table_expression.subquery->children.at(0), getContext()).getNamesAndTypesList();
columns = ColumnsDescription(std::move(names_and_types));
}
else if (table_expression.table_function)
{
TableFunctionPtr table_function_ptr = TableFunctionFactory::instance().get(table_expression.table_function, getContext());
columns = table_function_ptr->getActualTableStructure(getContext());
}
else
{
auto table_id = getContext()->resolveStorageID(table_expression.database_and_table_name);
getContext()->checkAccess(AccessType::SHOW_COLUMNS, table_id);
auto table = DatabaseCatalog::instance().getTable(table_id, getContext());
auto table_lock = table->lockForShare(getContext()->getInitialQueryId(), settings.lock_acquire_timeout);
auto metadata_snapshot = table->getInMemoryMetadataPtr();
storage_snapshot = table->getStorageSnapshot(metadata_snapshot, getContext());
columns = metadata_snapshot->getColumns();
}
bool extend_object_types = settings.describe_extend_object_types && storage_snapshot;
bool include_subcolumns = settings.describe_include_subcolumns;
Block sample_block = getSampleBlock(include_subcolumns);
MutableColumns res_columns = sample_block.cloneEmptyColumns();
for (const auto & column : columns)
{
res_columns[0]->insert(column.name);
if (extend_object_types)
res_columns[1]->insert(storage_snapshot->getConcreteType(column.name)->getName());
else
res_columns[1]->insert(column.type->getName());
if (column.default_desc.expression)
{
res_columns[2]->insert(toString(column.default_desc.kind));
res_columns[3]->insert(queryToString(column.default_desc.expression));
}
else
{
res_columns[2]->insertDefault();
res_columns[3]->insertDefault();
}
res_columns[4]->insert(column.comment);
if (column.codec)
res_columns[5]->insert(queryToString(column.codec->as<ASTFunction>()->arguments));
else
res_columns[5]->insertDefault();
if (column.ttl)
res_columns[6]->insert(queryToString(column.ttl));
else
res_columns[6]->insertDefault();
if (include_subcolumns)
res_columns[7]->insertDefault();
}
if (include_subcolumns)
{
for (const auto & column : columns)
{
auto type = extend_object_types ? storage_snapshot->getConcreteType(column.name) : column.type;
IDataType::forEachSubcolumn([&](const auto & path, const auto & name, const auto & data)
{
res_columns[0]->insert(Nested::concatenateName(column.name, name));
res_columns[1]->insert(data.type->getName());
/// It's not trivial to calculate default expression for subcolumn.
/// So, leave it empty.
res_columns[2]->insertDefault();
res_columns[3]->insertDefault();
res_columns[4]->insert(column.comment);
if (column.codec && ISerialization::isSpecialCompressionAllowed(path))
res_columns[5]->insert(queryToString(column.codec->as<ASTFunction>()->arguments));
else
res_columns[5]->insertDefault();
if (column.ttl)
res_columns[6]->insert(queryToString(column.ttl));
else
res_columns[6]->insertDefault();
res_columns[7]->insert(1u);
}, { type->getDefaultSerialization(), type, nullptr, nullptr });
}
}
BlockIO res;
size_t num_rows = res_columns[0]->size();
auto source = std::make_shared<SourceFromSingleChunk>(sample_block, Chunk(std::move(res_columns), num_rows));
res.pipeline = QueryPipeline(std::move(source));
return res;
}
}