ExpressionAnalyzer.cpp 109.6 KB
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#include <Poco/Util/Application.h>
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#include <Poco/String.h>
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#include <DataTypes/FieldToDataType.h>
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#include <Parsers/ASTFunction.h>
#include <Parsers/ASTIdentifier.h>
#include <Parsers/ASTLiteral.h>
#include <Parsers/ASTAsterisk.h>
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#include <Parsers/ASTQualifiedAsterisk.h>
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#include <Parsers/ASTExpressionList.h>
#include <Parsers/ASTSelectQuery.h>
#include <Parsers/ASTSubquery.h>
#include <Parsers/ASTOrderByElement.h>
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#include <Parsers/formatAST.h>
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#include <DataTypes/DataTypeSet.h>
#include <DataTypes/DataTypeArray.h>
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#include <DataTypes/DataTypeNullable.h>
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#include <DataTypes/DataTypeTuple.h>
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#include <DataTypes/NestedUtils.h>
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#include <DataTypes/DataTypesNumber.h>
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#include <Columns/ColumnSet.h>
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#include <Columns/ColumnConst.h>
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#include <Interpreters/InterpreterSelectQuery.h>
#include <Interpreters/ExpressionAnalyzer.h>
#include <Interpreters/ExpressionActions.h>
#include <Interpreters/InJoinSubqueriesPreprocessor.h>
#include <Interpreters/LogicalExpressionsOptimizer.h>
#include <Interpreters/ExternalDictionaries.h>
#include <Interpreters/Set.h>
#include <Interpreters/Join.h>
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#include <AggregateFunctions/AggregateFunctionFactory.h>
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#include <AggregateFunctions/parseAggregateFunctionParameters.h>
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#include <Storages/StorageDistributed.h>
#include <Storages/StorageMemory.h>
#include <Storages/StorageSet.h>
#include <Storages/StorageJoin.h>
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#include <DataStreams/LazyBlockInputStream.h>
#include <DataStreams/copyData.h>
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#include <Dictionaries/IDictionary.h>
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#include <Common/typeid_cast.h>
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#include <Common/StringUtils/StringUtils.h>
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#include <Parsers/formatAST.h>
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#include <Functions/FunctionFactory.h>
#include <Functions/IFunction.h>
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#include <ext/range.h>
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#include <DataTypes/DataTypeFactory.h>
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#include <DataTypes/DataTypeFunction.h>
#include <Functions/FunctionsMiscellaneous.h>
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namespace DB
{

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namespace ErrorCodes
{
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    extern const int MULTIPLE_EXPRESSIONS_FOR_ALIAS;
    extern const int UNKNOWN_IDENTIFIER;
    extern const int CYCLIC_ALIASES;
    extern const int INCORRECT_RESULT_OF_SCALAR_SUBQUERY;
    extern const int TOO_MUCH_ROWS;
    extern const int NOT_FOUND_COLUMN_IN_BLOCK;
    extern const int INCORRECT_ELEMENT_OF_SET;
    extern const int ALIAS_REQUIRED;
    extern const int EMPTY_NESTED_TABLE;
    extern const int NOT_AN_AGGREGATE;
    extern const int UNEXPECTED_EXPRESSION;
    extern const int DUPLICATE_COLUMN;
    extern const int FUNCTION_CANNOT_HAVE_PARAMETERS;
    extern const int ILLEGAL_AGGREGATION;
    extern const int SUPPORT_IS_DISABLED;
    extern const int TOO_DEEP_AST;
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    extern const int NUMBER_OF_ARGUMENTS_DOESNT_MATCH;
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}

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/** Calls to these functions in the GROUP BY statement would be
  * replaced by their immediate argument.
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  */
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const std::unordered_set<String> injective_function_names
{
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    "negate",
    "bitNot",
    "reverse",
    "reverseUTF8",
    "toString",
    "toFixedString",
    "IPv4NumToString",
    "IPv4StringToNum",
    "hex",
    "unhex",
    "bitmaskToList",
    "bitmaskToArray",
    "tuple",
    "regionToName",
    "concatAssumeInjective",
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};

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const std::unordered_set<String> possibly_injective_function_names
{
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    "dictGetString",
    "dictGetUInt8",
    "dictGetUInt16",
    "dictGetUInt32",
    "dictGetUInt64",
    "dictGetInt8",
    "dictGetInt16",
    "dictGetInt32",
    "dictGetInt64",
    "dictGetFloat32",
    "dictGetFloat64",
    "dictGetDate",
    "dictGetDateTime"
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};

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namespace
{

bool functionIsInOperator(const String & name)
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{
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    return name == "in" || name == "notIn";
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}

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bool functionIsInOrGlobalInOperator(const String & name)
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{
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    return name == "in" || name == "notIn" || name == "globalIn" || name == "globalNotIn";
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}

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void removeDuplicateColumns(NamesAndTypesList & columns)
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{
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    std::set<String> names;
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    for (auto it = columns.begin(); it != columns.end();)
    {
        if (names.emplace(it->name).second)
            ++it;
        else
            columns.erase(it++);
    }
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}

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}
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ExpressionAnalyzer::ExpressionAnalyzer(
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    const ASTPtr & ast_,
    const Context & context_,
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    const StoragePtr & storage_,
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    const NamesAndTypesList & columns_,
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    size_t subquery_depth_,
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    bool do_global_,
    const SubqueriesForSets & subqueries_for_set_)
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    : ast(ast_), context(context_), settings(context.getSettings()),
    subquery_depth(subquery_depth_), columns(columns_),
    storage(storage_ ? storage_ : getTable()),
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    do_global(do_global_), subqueries_for_sets(subqueries_for_set_)
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{
    init();
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}


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void ExpressionAnalyzer::init()
{
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    removeDuplicateColumns(columns);
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    select_query = typeid_cast<ASTSelectQuery *>(ast.get());
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    translateQualifiedNames();

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    /// Depending on the user's profile, check for the execution rights
    /// distributed subqueries inside the IN or JOIN sections and process these subqueries.
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    InJoinSubqueriesPreprocessor(context).process(select_query);
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    /// Optimizes logical expressions.
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    LogicalExpressionsOptimizer(select_query, settings).perform();
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    /// Creates a dictionary `aliases`: alias -> ASTPtr
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    addASTAliases(ast);
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    /// Common subexpression elimination. Rewrite rules.
    normalizeTree();
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    /// ALIAS columns should not be substituted for ASTAsterisk, we will add them now, after normalizeTree.
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    addAliasColumns();
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    /// Executing scalar subqueries - replacing them with constant values.
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    executeScalarSubqueries();
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    /// Optimize if with constant condition after constants was substituted instead of sclalar subqueries.
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    optimizeIfWithConstantCondition();
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    /// GROUP BY injective function elimination.
    optimizeGroupBy();
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    /// Remove duplicate items from ORDER BY.
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    optimizeOrderBy();
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    // Remove duplicated elements from LIMIT BY clause.
    optimizeLimitBy();
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    /// array_join_alias_to_name, array_join_result_to_source.
    getArrayJoinedColumns();
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    /// Delete the unnecessary from `columns` list. Create `unknown_required_columns`. Form `columns_added_by_join`.
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    collectUsedColumns();
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    /// external_tables, subqueries_for_sets for global subqueries.
    /// Replaces global subqueries with the generated names of temporary tables that will be sent to remote servers.
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    initGlobalSubqueriesAndExternalTables();
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    /// has_aggregation, aggregation_keys, aggregate_descriptions, aggregated_columns.
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    /// This analysis should be performed after processing global subqueries, because otherwise,
    /// if the aggregate function contains a global subquery, then `analyzeAggregation` method will save
    /// in `aggregate_descriptions` the information about the parameters of this aggregate function, among which
    /// global subquery. Then, when you call `initGlobalSubqueriesAndExternalTables` method, this
    /// the global subquery will be replaced with a temporary table, resulting in aggregate_descriptions
    /// will contain out-of-date information, which will lead to an error when the query is executed.
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    analyzeAggregation();
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}

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void ExpressionAnalyzer::translateQualifiedNames()
{
    String database_name;
    String table_name;
    String alias;

    if (!select_query || !select_query->tables || select_query->tables->children.empty())
        return;

    ASTTablesInSelectQueryElement & element = static_cast<ASTTablesInSelectQueryElement &>(*select_query->tables->children[0]);

    if (!element.table_expression)        /// This is ARRAY JOIN without a table at the left side.
        return;

    ASTTableExpression & table_expression = static_cast<ASTTableExpression &>(*element.table_expression);

    if (table_expression.database_and_table_name)
    {
        const ASTIdentifier & identifier = static_cast<const ASTIdentifier &>(*table_expression.database_and_table_name);

        alias = identifier.tryGetAlias();

        if (table_expression.database_and_table_name->children.empty())
        {
            database_name = context.getCurrentDatabase();
            table_name = identifier.name;
        }
        else
        {
            if (table_expression.database_and_table_name->children.size() != 2)
                throw Exception("Logical error: number of components in table expression not equal to two", ErrorCodes::LOGICAL_ERROR);

            database_name = static_cast<const ASTIdentifier &>(*identifier.children[0]).name;
            table_name = static_cast<const ASTIdentifier &>(*identifier.children[1]).name;
        }
    }
    else if (table_expression.table_function)
    {
        alias = table_expression.table_function->tryGetAlias();
    }
    else if (table_expression.subquery)
    {
        alias = table_expression.subquery->tryGetAlias();
    }
    else
        throw Exception("Logical error: no known elements in ASTTableExpression", ErrorCodes::LOGICAL_ERROR);

    translateQualifiedNamesImpl(ast, database_name, table_name, alias);
}


void ExpressionAnalyzer::translateQualifiedNamesImpl(ASTPtr & ast, const String & database_name, const String & table_name, const String & alias)
{
    if (ASTIdentifier * ident = typeid_cast<ASTIdentifier *>(ast.get()))
    {
        if (ident->kind == ASTIdentifier::Column)
        {
            /// It is compound identifier
            if (!ast->children.empty())
            {
                size_t num_components = ast->children.size();
                size_t num_qualifiers_to_strip = 0;

                /// database.table.column
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                if (num_components >= 3
                    && !database_name.empty()
                    && static_cast<const ASTIdentifier &>(*ast->children[0]).name == database_name
                    && static_cast<const ASTIdentifier &>(*ast->children[1]).name == table_name)
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                {
                    num_qualifiers_to_strip = 2;
                }
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                /// table.column or alias.column. If num_components > 2, it is like table.nested.column.
                if (num_components >= 2
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                    && ((!table_name.empty() && static_cast<const ASTIdentifier &>(*ast->children[0]).name == table_name)
                        || (!alias.empty() && static_cast<const ASTIdentifier &>(*ast->children[0]).name == alias)))
                {
                    num_qualifiers_to_strip = 1;
                }

                if (num_qualifiers_to_strip)
                {
                    /// plain column
                    if (num_components - num_qualifiers_to_strip == 1)
                    {
                        String node_alias = ast->tryGetAlias();
                        ast = ast->children.back();
                        if (!node_alias.empty())
                            ast->setAlias(node_alias);
                    }
                    else
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                    /// nested column
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                    {
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                        ident->children.erase(ident->children.begin(), ident->children.begin() + num_qualifiers_to_strip);
                        String new_name;
                        for (const auto & child : ident->children)
                        {
                            if (!new_name.empty())
                                new_name += '.';
                            new_name += static_cast<const ASTIdentifier &>(*child.get()).name;
                        }
                        ident->name = new_name;
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                    }
                }
            }
        }
    }
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    else if (typeid_cast<ASTQualifiedAsterisk *>(ast.get()))
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    {
        if (ast->children.size() != 1)
            throw Exception("Logical error: qualified asterisk must have exactly one child", ErrorCodes::LOGICAL_ERROR);

        ASTIdentifier * ident = typeid_cast<ASTIdentifier *>(ast->children[0].get());
        if (!ident)
            throw Exception("Logical error: qualified asterisk must have identifier as its child", ErrorCodes::LOGICAL_ERROR);

        size_t num_components = ident->children.size();
        if (num_components > 2)
            throw Exception("Qualified asterisk cannot have more than two qualifiers", ErrorCodes::UNKNOWN_ELEMENT_IN_AST);

        /// database.table.*, table.* or alias.*
        if (   (num_components == 2
                && !database_name.empty()
                && static_cast<const ASTIdentifier &>(*ident->children[0]).name == database_name
                && static_cast<const ASTIdentifier &>(*ident->children[1]).name == table_name)
            || (num_components == 0
                && ((!table_name.empty() && ident->name == table_name)
                    || (!alias.empty() && ident->name == alias))))
        {
            /// Replace to plain asterisk.
            ast = std::make_shared<ASTAsterisk>(ast->range);
        }
    }
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    else
    {
        for (auto & child : ast->children)
        {
            /// Do not go to FROM, JOIN, UNION.
            if (!typeid_cast<const ASTTableExpression *>(child.get())
                && child.get() != select_query->next_union_all.get())
            {
                translateQualifiedNamesImpl(child, database_name, table_name, alias);
            }
        }
    }
}


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void ExpressionAnalyzer::optimizeIfWithConstantCondition()
{
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    optimizeIfWithConstantConditionImpl(ast, aliases);
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}

bool ExpressionAnalyzer::tryExtractConstValueFromCondition(const ASTPtr & condition, bool & value) const
{
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    /// numeric constant in condition
    if (const ASTLiteral * literal = typeid_cast<ASTLiteral *>(condition.get()))
    {
        if (literal->value.getType() == Field::Types::Int64 ||
            literal->value.getType() == Field::Types::UInt64)
        {
            value = literal->value.get<Int64>();
            return true;
        }
    }

    /// cast of numeric constant in condition to UInt8
    if (const ASTFunction * function = typeid_cast<ASTFunction * >(condition.get()))
    {
        if (function->name == "CAST")
        {
            if (ASTExpressionList * expr_list = typeid_cast<ASTExpressionList *>(function->arguments.get()))
            {
                const ASTPtr & type_ast = expr_list->children.at(1);
                if (const ASTLiteral * type_literal = typeid_cast<ASTLiteral *>(type_ast.get()))
                {
                    if (type_literal->value.getType() == Field::Types::String &&
                        type_literal->value.get<std::string>() == "UInt8")
                        return tryExtractConstValueFromCondition(expr_list->children.at(0), value);
                }
            }
        }
    }

    return false;
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}

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void ExpressionAnalyzer::optimizeIfWithConstantConditionImpl(ASTPtr & current_ast, ExpressionAnalyzer::Aliases & aliases) const
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{
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    if (!current_ast)
        return;

    for (ASTPtr & child : current_ast->children)
    {
        ASTFunction * function_node = typeid_cast<ASTFunction *>(child.get());
        if (!function_node || function_node->name != "if")
        {
            optimizeIfWithConstantConditionImpl(child, aliases);
            continue;
        }

        optimizeIfWithConstantConditionImpl(function_node->arguments, aliases);
        ASTExpressionList * args = typeid_cast<ASTExpressionList *>(function_node->arguments.get());

        ASTPtr condition_expr = args->children.at(0);
        ASTPtr then_expr = args->children.at(1);
        ASTPtr else_expr = args->children.at(2);


        bool condition;
        if (tryExtractConstValueFromCondition(condition_expr, condition))
        {
            ASTPtr replace_ast = condition ? then_expr : else_expr;
            ASTPtr child_copy = child;
            String replace_alias = replace_ast->tryGetAlias();
            String if_alias = child->tryGetAlias();

            if (replace_alias.empty())
            {
                replace_ast->setAlias(if_alias);
                child = replace_ast;
            }
            else
            {
                /// Only copy of one node is required here.
                /// But IAST has only method for deep copy of subtree.
                /// This can be a reason of performance degradation in case of deep queries.
                ASTPtr replace_ast_deep_copy = replace_ast->clone();
                replace_ast_deep_copy->setAlias(if_alias);
                child = replace_ast_deep_copy;
            }

            if (!if_alias.empty())
            {
                auto alias_it = aliases.find(if_alias);
                if (alias_it != aliases.end() && alias_it->second.get() == child_copy.get())
                    alias_it->second = child;
            }
        }
    }
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}
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void ExpressionAnalyzer::analyzeAggregation()
{
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    /** Find aggregation keys (aggregation_keys), information about aggregate functions (aggregate_descriptions),
     *  as well as a set of columns obtained after the aggregation, if any,
     *  or after all the actions that are usually performed before aggregation (aggregated_columns).
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     *
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     * Everything below (compiling temporary ExpressionActions) - only for the purpose of query analysis (type output).
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     */

    if (select_query && (select_query->group_expression_list || select_query->having_expression))
        has_aggregation = true;

    ExpressionActionsPtr temp_actions = std::make_shared<ExpressionActions>(columns, settings);

    if (select_query && select_query->array_join_expression_list())
    {
        getRootActions(select_query->array_join_expression_list(), true, false, temp_actions);
        addMultipleArrayJoinAction(temp_actions);
    }

    if (select_query)
    {
        const ASTTablesInSelectQueryElement * join = select_query->join();
        if (join)
        {
            if (static_cast<const ASTTableJoin &>(*join->table_join).using_expression_list)
                getRootActions(static_cast<const ASTTableJoin &>(*join->table_join).using_expression_list, true, false, temp_actions);

            addJoinAction(temp_actions, true);
        }
    }

    getAggregates(ast, temp_actions);

    if (has_aggregation)
    {
        assertSelect();

        /// Find out aggregation keys.
        if (select_query->group_expression_list)
        {
            NameSet unique_keys;
            ASTs & group_asts = select_query->group_expression_list->children;
            for (ssize_t i = 0; i < ssize_t(group_asts.size()); ++i)
            {
                ssize_t size = group_asts.size();
                getRootActions(group_asts[i], true, false, temp_actions);

                const auto & column_name = group_asts[i]->getColumnName();
                const auto & block = temp_actions->getSampleBlock();

                if (!block.has(column_name))
                    throw Exception("Unknown identifier (in GROUP BY): " + column_name, ErrorCodes::UNKNOWN_IDENTIFIER);

                const auto & col = block.getByName(column_name);

                /// Constant expressions have non-null column pointer at this stage.
                if (const auto is_constexpr = col.column)
                {
                    /// But don't remove last key column if no aggregate functions, otherwise aggregation will not work.
                    if (!aggregate_descriptions.empty() || size > 1)
                    {
                        if (i + 1 < static_cast<ssize_t>(size))
                            group_asts[i] = std::move(group_asts.back());

                        group_asts.pop_back();

                        --i;
                        continue;
                    }
                }

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                NameAndTypePair key{column_name, col.type};
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                /// Aggregation keys are uniqued.
                if (!unique_keys.count(key.name))
                {
                    unique_keys.insert(key.name);
                    aggregation_keys.push_back(key);

                    /// Key is no longer needed, therefore we can save a little by moving it.
                    aggregated_columns.push_back(std::move(key));
                }
            }

            if (group_asts.empty())
            {
                select_query->group_expression_list = nullptr;
                has_aggregation = select_query->having_expression || aggregate_descriptions.size();
            }
        }

        for (size_t i = 0; i < aggregate_descriptions.size(); ++i)
        {
            AggregateDescription & desc = aggregate_descriptions[i];
            aggregated_columns.emplace_back(desc.column_name, desc.function->getReturnType());
        }
    }
    else
    {
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        aggregated_columns = temp_actions->getSampleBlock().getNamesAndTypesList();
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    }
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}


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void ExpressionAnalyzer::initGlobalSubqueriesAndExternalTables()
{
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    /// Adds existing external tables (not subqueries) to the external_tables dictionary.
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    findExternalTables(ast);
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    /// Converts GLOBAL subqueries to external tables; Puts them into the external_tables dictionary: name -> StoragePtr.
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    initGlobalSubqueries(ast);
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}


void ExpressionAnalyzer::initGlobalSubqueries(ASTPtr & ast)
{
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    /// Recursive calls. We do not go into subqueries.
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    for (auto & child : ast->children)
        if (!typeid_cast<ASTSelectQuery *>(child.get()))
            initGlobalSubqueries(child);

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    /// Bottom-up actions.
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    if (ASTFunction * node = typeid_cast<ASTFunction *>(ast.get()))
    {
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        /// For GLOBAL IN.
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        if (do_global && (node->name == "globalIn" || node->name == "globalNotIn"))
            addExternalStorage(node->arguments->children.at(1));
    }
    else if (ASTTablesInSelectQueryElement * node = typeid_cast<ASTTablesInSelectQueryElement *>(ast.get()))
    {
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        /// For GLOBAL JOIN.
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        if (do_global && node->table_join
            && static_cast<const ASTTableJoin &>(*node->table_join).locality == ASTTableJoin::Locality::Global)
            addExternalStorage(node->table_expression);
    }
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}


void ExpressionAnalyzer::findExternalTables(ASTPtr & ast)
{
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    /// Traverse from the bottom. Intentionally go into subqueries.
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    for (auto & child : ast->children)
        findExternalTables(child);
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    /// If table type identifier
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    StoragePtr external_storage;
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    if (ASTIdentifier * node = typeid_cast<ASTIdentifier *>(ast.get()))
        if (node->kind == ASTIdentifier::Table)
            if ((external_storage = context.tryGetExternalTable(node->name)))
                external_tables[node->name] = external_storage;
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}


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static std::pair<String, String> getDatabaseAndTableNameFromIdentifier(const ASTIdentifier & identifier)
{
    std::pair<String, String> res;
    res.second = identifier.name;
    if (!identifier.children.empty())
    {
        if (identifier.children.size() != 2)
            throw Exception("Qualified table name could have only two components", ErrorCodes::LOGICAL_ERROR);

        res.first = typeid_cast<const ASTIdentifier &>(*identifier.children[0]).name;
        res.second = typeid_cast<const ASTIdentifier &>(*identifier.children[1]).name;
    }
    return res;
}


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static std::shared_ptr<InterpreterSelectQuery> interpretSubquery(
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    const ASTPtr & subquery_or_table_name, const Context & context, size_t subquery_depth, const Names & required_columns)
{
    /// Subquery or table name. The name of the table is similar to the subquery `SELECT * FROM t`.
    const ASTSubquery * subquery = typeid_cast<const ASTSubquery *>(subquery_or_table_name.get());
    const ASTIdentifier * table = typeid_cast<const ASTIdentifier *>(subquery_or_table_name.get());

    if (!subquery && !table)
        throw Exception("IN/JOIN supports only SELECT subqueries.", ErrorCodes::BAD_ARGUMENTS);

    /** The subquery in the IN / JOIN section does not have any restrictions on the maximum size of the result.
      * Because the result of this query is not the result of the entire query.
      * Constraints work instead
      *  max_rows_in_set, max_bytes_in_set, set_overflow_mode,
      *  max_rows_in_join, max_bytes_in_join, join_overflow_mode,
      *  which are checked separately (in the Set, Join objects).
      */
    Context subquery_context = context;
    Settings subquery_settings = context.getSettings();
    subquery_settings.limits.max_result_rows = 0;
    subquery_settings.limits.max_result_bytes = 0;
    /// The calculation of `extremes` does not make sense and is not necessary (if you do it, then the `extremes` of the subquery can be taken instead of the whole query).
    subquery_settings.extremes = 0;
    subquery_context.setSettings(subquery_settings);

    ASTPtr query;
    if (table)
    {
        /// create ASTSelectQuery for "SELECT * FROM table" as if written by hand
        const auto select_query = std::make_shared<ASTSelectQuery>();
        query = select_query;

        const auto select_expression_list = std::make_shared<ASTExpressionList>();
        select_query->select_expression_list = select_expression_list;
        select_query->children.emplace_back(select_query->select_expression_list);

        /// get columns list for target table
        auto database_table = getDatabaseAndTableNameFromIdentifier(*table);
        const auto & storage = context.getTable(database_table.first, database_table.second);
        const auto & columns = storage->getColumnsListNonMaterialized();
        select_expression_list->children.reserve(columns.size());

        /// manually substitute column names in place of asterisk
        for (const auto & column : columns)
            select_expression_list->children.emplace_back(std::make_shared<ASTIdentifier>(
                StringRange{}, column.name));

        select_query->replaceDatabaseAndTable(database_table.first, database_table.second);
    }
    else
    {
        query = subquery->children.at(0);

        /** Columns with the same name can be specified in a subquery. For example, SELECT x, x FROM t
          * This is bad, because the result of such a query can not be saved to the table, because the table can not have the same name columns.
          * Saving to the table is required for GLOBAL subqueries.
          *
          * To avoid this situation, we will rename the same columns.
          */

        std::set<std::string> all_column_names;
        std::set<std::string> assigned_column_names;

        if (ASTSelectQuery * select = typeid_cast<ASTSelectQuery *>(query.get()))
        {
            for (auto & expr : select->select_expression_list->children)
                all_column_names.insert(expr->getAliasOrColumnName());

            for (auto & expr : select->select_expression_list->children)
            {
                auto name = expr->getAliasOrColumnName();

                if (!assigned_column_names.insert(name).second)
                {
                    size_t i = 1;
                    while (all_column_names.end() != all_column_names.find(name + "_" + toString(i)))
                        ++i;

                    name = name + "_" + toString(i);
                    expr = expr->clone();   /// Cancels fuse of the same expressions in the tree.
                    expr->setAlias(name);

                    all_column_names.insert(name);
                    assigned_column_names.insert(name);
                }
            }
        }
    }

    if (required_columns.empty())
        return std::make_shared<InterpreterSelectQuery>(
            query, subquery_context, QueryProcessingStage::Complete, subquery_depth + 1);
    else
        return std::make_shared<InterpreterSelectQuery>(
            query, subquery_context, required_columns, QueryProcessingStage::Complete, subquery_depth + 1);
}
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745
void ExpressionAnalyzer::addExternalStorage(ASTPtr & subquery_or_table_name_or_table_expression)
746
{
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    /// With nondistributed queries, creating temporary tables does not make sense.
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    if (!(storage && storage->isRemote()))
        return;

    ASTPtr subquery;
    ASTPtr table_name;
    ASTPtr subquery_or_table_name;

    if (typeid_cast<const ASTIdentifier *>(subquery_or_table_name_or_table_expression.get()))
    {
        table_name = subquery_or_table_name_or_table_expression;
        subquery_or_table_name = table_name;
    }
    else if (auto ast_table_expr = typeid_cast<const ASTTableExpression *>(subquery_or_table_name_or_table_expression.get()))
    {
        if (ast_table_expr->database_and_table_name)
        {
            table_name = ast_table_expr->database_and_table_name;
            subquery_or_table_name = table_name;
        }
        else if (ast_table_expr->subquery)
        {
            subquery = ast_table_expr->subquery;
            subquery_or_table_name = subquery;
        }
    }
    else if (typeid_cast<const ASTSubquery *>(subquery_or_table_name_or_table_expression.get()))
    {
        subquery = subquery_or_table_name_or_table_expression;
        subquery_or_table_name = subquery;
    }

    if (!subquery_or_table_name)
        throw Exception("Logical error: unknown AST element passed to ExpressionAnalyzer::addExternalStorage method", ErrorCodes::LOGICAL_ERROR);

    if (table_name)
    {
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        /// If this is already an external table, you do not need to add anything. Just remember its presence.
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        if (external_tables.end() != external_tables.find(static_cast<const ASTIdentifier &>(*table_name).name))
            return;
    }

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    /// Generate the name for the external table.
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    String external_table_name = "_data" + toString(external_table_id);
    while (external_tables.count(external_table_name))
    {
        ++external_table_id;
        external_table_name = "_data" + toString(external_table_id);
    }

    auto interpreter = interpretSubquery(subquery_or_table_name, context, subquery_depth, {});

    Block sample = interpreter->getSampleBlock();
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    NamesAndTypesList columns = sample.getNamesAndTypesList();
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802
    StoragePtr external_storage = StorageMemory::create(external_table_name, columns, NamesAndTypesList{}, NamesAndTypesList{}, ColumnDefaults{});
803
    external_storage->startup();
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    /** We replace the subquery with the name of the temporary table.
        * It is in this form, the request will go to the remote server.
        * This temporary table will go to the remote server, and on its side,
        *  instead of doing a subquery, you just need to read it.
        */
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    auto database_and_table_name = std::make_shared<ASTIdentifier>(StringRange(), external_table_name, ASTIdentifier::Table);
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813
    if (auto ast_table_expr = typeid_cast<ASTTableExpression *>(subquery_or_table_name_or_table_expression.get()))
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    {
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        ast_table_expr->subquery.reset();
        ast_table_expr->database_and_table_name = database_and_table_name;
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        ast_table_expr->children.clear();
        ast_table_expr->children.emplace_back(database_and_table_name);
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    }
    else
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        subquery_or_table_name_or_table_expression = database_and_table_name;
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    external_tables[external_table_name] = external_storage;
    subqueries_for_sets[external_table_name].source = interpreter->execute().in;
    subqueries_for_sets[external_table_name].table = external_storage;

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    /** NOTE If it was written IN tmp_table - the existing temporary (but not external) table,
      *  then a new temporary table will be created (for example, _data1),
      *  and the data will then be copied to it.
      * Maybe this can be avoided.
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      */
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}


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NamesAndTypesList::iterator ExpressionAnalyzer::findColumn(const String & name, NamesAndTypesList & cols)
837
{
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    return std::find_if(cols.begin(), cols.end(),
839
        [&](const NamesAndTypesList::value_type & val) { return val.name == name; });
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}


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/// ignore_levels - aliases in how many upper levels of the subtree should be ignored.
/// For example, with ignore_levels=1 ast can not be put in the dictionary, but its children can.
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void ExpressionAnalyzer::addASTAliases(ASTPtr & ast, int ignore_levels)
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{
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    /// Bottom-up traversal. We do not go into subqueries.
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    for (auto & child : ast->children)
    {
        int new_ignore_levels = std::max(0, ignore_levels - 1);

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        /// The top-level aliases in the ARRAY JOIN section have a special meaning, we will not add them
        ///  (skip the expression list itself and its children).
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        if (typeid_cast<ASTArrayJoin *>(ast.get()))
            new_ignore_levels = 3;

        /// Don't descent into UNION ALL, table functions and subqueries.
        if (!typeid_cast<ASTTableExpression *>(child.get())
            && !typeid_cast<ASTSelectQuery *>(child.get()))
            addASTAliases(child, new_ignore_levels);
    }

    if (ignore_levels > 0)
        return;

    String alias = ast->tryGetAlias();
    if (!alias.empty())
    {
        if (aliases.count(alias) && ast->getTreeHash() != aliases[alias]->getTreeHash())
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        {
            std::stringstream message;
            message << "Different expressions with the same alias " << backQuoteIfNeed(alias) << ":\n";
            formatAST(*ast, message, false, true);
            message << "\nand\n";
            formatAST(*aliases[alias], message, false, true);
            message << "\n";

            throw Exception(message.str(), ErrorCodes::MULTIPLE_EXPRESSIONS_FOR_ALIAS);
        }
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        aliases[alias] = ast;
    }
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    else if (auto subquery = typeid_cast<ASTSubquery *>(ast.get()))
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    {
        /// Set unique aliases for all subqueries. This is needed, because content of subqueries could change after recursive analysis,
        ///  and auto-generated column names could become incorrect.

        size_t subquery_index = 1;
        while (true)
        {
            alias = "_subquery" + toString(subquery_index);
            if (!aliases.count("_subquery" + toString(subquery_index)))
                break;
            ++subquery_index;
        }

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        subquery->setAlias(alias);
        subquery->prefer_alias_to_column_name = true;
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        aliases[alias] = ast;
    }
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}


StoragePtr ExpressionAnalyzer::getTable()
{
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    if (const ASTSelectQuery * select = typeid_cast<const ASTSelectQuery *>(ast.get()))
    {
        auto select_database = select->database();
        auto select_table = select->table();

        if (select_table
            && !typeid_cast<const ASTSelectQuery *>(select_table.get())
            && !typeid_cast<const ASTFunction *>(select_table.get()))
        {
            String database = select_database
                ? typeid_cast<const ASTIdentifier &>(*select_database).name
                : "";
            const String & table = typeid_cast<const ASTIdentifier &>(*select_table).name;
            return context.tryGetTable(database, table);
        }
    }

    return StoragePtr();
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}


void ExpressionAnalyzer::normalizeTree()
{
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    SetOfASTs tmp_set;
    MapOfASTs tmp_map;
    normalizeTreeImpl(ast, tmp_map, tmp_set, "", 0);
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}


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/// finished_asts - already processed vertices (and by what they replaced)
/// current_asts - vertices in the current call stack of this method
/// current_alias - the alias referencing to the ancestor of ast (the deepest ancestor with aliases)
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void ExpressionAnalyzer::normalizeTreeImpl(
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    ASTPtr & ast, MapOfASTs & finished_asts, SetOfASTs & current_asts, std::string current_alias, size_t level)
{
    if (level > settings.limits.max_ast_depth)
        throw Exception("Normalized AST is too deep. Maximum: " + settings.limits.max_ast_depth.toString(), ErrorCodes::TOO_DEEP_AST);

    if (finished_asts.count(ast))
    {
        ast = finished_asts[ast];
        return;
    }

    ASTPtr initial_ast = ast;
    current_asts.insert(initial_ast.get());

    String my_alias = ast->tryGetAlias();
    if (!my_alias.empty())
        current_alias = my_alias;

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    /// rewrite rules that act when you go from top to bottom.
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    bool replaced = false;

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    ASTIdentifier * identifier_node = nullptr;
    ASTFunction * func_node = nullptr;

    if ((func_node = typeid_cast<ASTFunction *>(ast.get())))
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    {
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        /// `IN t` can be specified, where t is a table, which is equivalent to `IN (SELECT * FROM t)`.
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        if (functionIsInOrGlobalInOperator(func_node->name))
            if (ASTIdentifier * right = typeid_cast<ASTIdentifier *>(func_node->arguments->children.at(1).get()))
                right->kind = ASTIdentifier::Table;

        /// Special cases for count function.
        String func_name_lowercase = Poco::toLower(func_node->name);
        if (startsWith(func_name_lowercase, "count"))
        {
            /// Select implementation of countDistinct based on settings.
            /// Important that it is done as query rewrite. It means rewritten query
            ///  will be sent to remote servers during distributed query execution,
            ///  and on all remote servers, function implementation will be same.
            if (endsWith(func_node->name, "Distinct") && func_name_lowercase == "countdistinct")
                func_node->name = settings.count_distinct_implementation;

            /// As special case, treat count(*) as count(), not as count(list of all columns).
            if (func_name_lowercase == "count" && func_node->arguments->children.size() == 1
                && typeid_cast<const ASTAsterisk *>(func_node->arguments->children[0].get()))
            {
                func_node->arguments->children.clear();
            }
        }
    }
989
    else if ((identifier_node = typeid_cast<ASTIdentifier *>(ast.get())))
990
    {
991
        if (identifier_node->kind == ASTIdentifier::Column)
992
        {
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            /// If it is an alias, but not a parent alias (for constructs like "SELECT column + 1 AS column").
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            auto it_alias = aliases.find(identifier_node->name);
            if (it_alias != aliases.end() && current_alias != identifier_node->name)
996
            {
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                /// Let's replace it with the corresponding tree node.
998
                if (current_asts.count(it_alias->second.get()))
999
                    throw Exception("Cyclic aliases", ErrorCodes::CYCLIC_ALIASES);
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                if (!my_alias.empty() && my_alias != it_alias->second->getAliasOrColumnName())
1002
                {
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                    /// Avoid infinite recursion here
                    auto replace_to_identifier = typeid_cast<ASTIdentifier *>(it_alias->second.get());
                    bool is_cycle = replace_to_identifier &&
                        replace_to_identifier->kind == ASTIdentifier::Column &&
                        replace_to_identifier->name == identifier_node->name;

                    if (!is_cycle)
                    {
                        /// In a construct like "a AS b", where a is an alias, you must set alias b to the result of substituting alias a.
                        ast = it_alias->second->clone();
                        ast->setAlias(my_alias);
                        replaced = true;
                    }
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                }
                else
                {
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                    ast = it_alias->second;
                    replaced = true;
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                }
            }
        }
    }
    else if (ASTExpressionList * node = typeid_cast<ASTExpressionList *>(ast.get()))
    {
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        /// Replace * with a list of columns.
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        ASTs & asts = node->children;
        for (int i = static_cast<int>(asts.size()) - 1; i >= 0; --i)
        {
            if (ASTAsterisk * asterisk = typeid_cast<ASTAsterisk *>(asts[i].get()))
            {
                ASTs all_columns;
                for (const auto & column_name_type : columns)
                    all_columns.emplace_back(std::make_shared<ASTIdentifier>(asterisk->range, column_name_type.name));

                asts.erase(asts.begin() + i);
                asts.insert(asts.begin() + i, all_columns.begin(), all_columns.end());
            }
        }
    }
    else if (ASTTablesInSelectQueryElement * node = typeid_cast<ASTTablesInSelectQueryElement *>(ast.get()))
    {
        if (node->table_expression)
        {
            auto & database_and_table_name = static_cast<ASTTableExpression &>(*node->table_expression).database_and_table_name;
            if (database_and_table_name)
            {
                if (ASTIdentifier * right = typeid_cast<ASTIdentifier *>(database_and_table_name.get()))
                {
                    right->kind = ASTIdentifier::Table;
                }
            }
        }
    }

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    /// If we replace the root of the subtree, we will be called again for the new root, in case the alias is replaced by an alias.
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    if (replaced)
    {
        normalizeTreeImpl(ast, finished_asts, current_asts, current_alias, level + 1);
        current_asts.erase(initial_ast.get());
        current_asts.erase(ast.get());
        finished_asts[initial_ast] = ast;
        return;
    }

1067
    /// Recurring calls. Don't go into subqueries. Don't go into components of compound identifiers.
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f1yegor 已提交
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    /// We also do not go to the left argument of lambda expressions, so as not to replace the formal parameters
    ///  on aliases in expressions of the form 123 AS x, arrayMap(x -> 1, [2]).
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    if (func_node && func_node->name == "lambda")
    {
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        /// We skip the first argument. We also assume that the lambda function can not have parameters.
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        for (size_t i = 1, size = func_node->arguments->children.size(); i < size; ++i)
        {
            auto & child = func_node->arguments->children[i];

            if (typeid_cast<const ASTSelectQuery *>(child.get())
                || typeid_cast<const ASTTableExpression *>(child.get()))
                continue;

            normalizeTreeImpl(child, finished_asts, current_asts, current_alias, level + 1);
        }
    }
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    else if (identifier_node)
    {
    }
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    else
    {
        for (auto & child : ast->children)
        {
            if (typeid_cast<const ASTSelectQuery *>(child.get())
                || typeid_cast<const ASTTableExpression *>(child.get()))
                continue;

            normalizeTreeImpl(child, finished_asts, current_asts, current_alias, level + 1);
        }
    }

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f1yegor 已提交
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    /// If the WHERE clause or HAVING consists of a single alias, the reference must be replaced not only in children, but also in where_expression and having_expression.
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    if (ASTSelectQuery * select = typeid_cast<ASTSelectQuery *>(ast.get()))
    {
        if (select->prewhere_expression)
            normalizeTreeImpl(select->prewhere_expression, finished_asts, current_asts, current_alias, level + 1);
        if (select->where_expression)
            normalizeTreeImpl(select->where_expression, finished_asts, current_asts, current_alias, level + 1);
        if (select->having_expression)
            normalizeTreeImpl(select->having_expression, finished_asts, current_asts, current_alias, level + 1);
    }

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    /// Actions to be performed from the bottom up.
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    if (ASTFunction * node = typeid_cast<ASTFunction *>(ast.get()))
    {
        if (node->kind == ASTFunction::TABLE_FUNCTION)
        {
        }
        else if (node->name == "lambda")
        {
            node->kind = ASTFunction::LAMBDA_EXPRESSION;
        }
1122
        else if (AggregateFunctionFactory::instance().isAggregateFunctionName(node->name))
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        {
            node->kind = ASTFunction::AGGREGATE_FUNCTION;
        }
        else if (node->name == "arrayJoin")
        {
            node->kind = ASTFunction::ARRAY_JOIN;
        }
        else
        {
            node->kind = ASTFunction::FUNCTION;
        }

        if (node->parameters && node->kind != ASTFunction::AGGREGATE_FUNCTION)
            throw Exception("The only parametric functions (functions with two separate parenthesis pairs) are aggregate functions"
                ", and '" + node->name + "' is not an aggregate function.", ErrorCodes::FUNCTION_CANNOT_HAVE_PARAMETERS);
    }

    current_asts.erase(initial_ast.get());
    current_asts.erase(ast.get());
    finished_asts[initial_ast] = ast;
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}

1145

1146 1147
void ExpressionAnalyzer::addAliasColumns()
{
1148 1149
    if (!select_query)
        return;
1150

1151 1152
    if (!storage)
        return;
1153

1154
    columns.insert(std::end(columns), std::begin(storage->alias_columns), std::end(storage->alias_columns));
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}


1158 1159
void ExpressionAnalyzer::executeScalarSubqueries()
{
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    if (!select_query)
        executeScalarSubqueriesImpl(ast);
    else
    {
        for (auto & child : ast->children)
        {
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            /// Do not go to FROM, JOIN, UNION.
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            if (!typeid_cast<const ASTTableExpression *>(child.get())
                && child.get() != select_query->next_union_all.get())
            {
                executeScalarSubqueriesImpl(child);
            }
        }
    }
1174 1175
}

1176

1177
static ASTPtr addTypeConversion(std::unique_ptr<ASTLiteral> && ast, const String & type_name)
1178
{
1179 1180 1181
    auto func = std::make_shared<ASTFunction>(ast->range);
    ASTPtr res = func;
    func->alias = ast->alias;
1182
    func->prefer_alias_to_column_name = ast->prefer_alias_to_column_name;
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    ast->alias.clear();
    func->kind = ASTFunction::FUNCTION;
    func->name = "CAST";
    auto exp_list = std::make_shared<ASTExpressionList>(ast->range);
    func->arguments = exp_list;
    func->children.push_back(func->arguments);
    exp_list->children.emplace_back(ast.release());
    exp_list->children.emplace_back(std::make_shared<ASTLiteral>(StringRange(), type_name));
    return res;
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}


1195 1196
void ExpressionAnalyzer::executeScalarSubqueriesImpl(ASTPtr & ast)
{
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    /** Replace subqueries that return exactly one row
      * ("scalar" subqueries) to the corresponding constants.
1199
      *
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      * If the subquery returns more than one column, it is replaced by a tuple of constants.
1201
      *
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      * Features
1203
      *
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      * A replacement occurs during query analysis, and not during the main runtime.
      * This means that the progress indicator will not work during the execution of these requests,
      *  and also such queries can not be aborted.
1207
      *
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      * But the query result can be used for the index in the table.
1209
      *
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      * Scalar subqueries are executed on the request-initializer server.
      * The request is sent to remote servers with already substituted constants.
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      */

    if (ASTSubquery * subquery = typeid_cast<ASTSubquery *>(ast.get()))
    {
        Context subquery_context = context;
        Settings subquery_settings = context.getSettings();
        subquery_settings.limits.max_result_rows = 1;
        subquery_settings.extremes = 0;
        subquery_context.setSettings(subquery_settings);

        ASTPtr query = subquery->children.at(0);
        BlockIO res = InterpreterSelectQuery(query, subquery_context, QueryProcessingStage::Complete, subquery_depth + 1).execute();

        Block block;
        try
        {
            block = res.in->read();

            if (!block)
            {
                /// Interpret subquery with empty result as Null literal
1233 1234 1235
                auto ast_new = std::make_unique<ASTLiteral>(ast->range, Null());
                ast_new->setAlias(ast->tryGetAlias());
                ast = std::move(ast_new);
1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254
                return;
            }

            if (block.rows() != 1 || res.in->read())
                throw Exception("Scalar subquery returned more than one row", ErrorCodes::INCORRECT_RESULT_OF_SCALAR_SUBQUERY);
        }
        catch (const Exception & e)
        {
            if (e.code() == ErrorCodes::TOO_MUCH_ROWS)
                throw Exception("Scalar subquery returned more than one row", ErrorCodes::INCORRECT_RESULT_OF_SCALAR_SUBQUERY);
            else
                throw;
        }

        size_t columns = block.columns();
        if (columns == 1)
        {
            auto lit = std::make_unique<ASTLiteral>(ast->range, (*block.safeGetByPosition(0).column)[0]);
            lit->alias = subquery->alias;
1255
            lit->prefer_alias_to_column_name = subquery->prefer_alias_to_column_name;
1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306
            ast = addTypeConversion(std::move(lit), block.safeGetByPosition(0).type->getName());
        }
        else
        {
            auto tuple = std::make_shared<ASTFunction>(ast->range);
            tuple->alias = subquery->alias;
            ast = tuple;
            tuple->kind = ASTFunction::FUNCTION;
            tuple->name = "tuple";
            auto exp_list = std::make_shared<ASTExpressionList>(ast->range);
            tuple->arguments = exp_list;
            tuple->children.push_back(tuple->arguments);

            exp_list->children.resize(columns);
            for (size_t i = 0; i < columns; ++i)
            {
                exp_list->children[i] = addTypeConversion(
                    std::make_unique<ASTLiteral>(ast->range, (*block.safeGetByPosition(i).column)[0]),
                    block.safeGetByPosition(i).type->getName());
            }
        }
    }
    else
    {
        /** Don't descend into subqueries in FROM section.
          */
        if (!typeid_cast<ASTTableExpression *>(ast.get()))
        {
            /** Don't descend into subqueries in arguments of IN operator.
              * But if an argument is not subquery, than deeper may be scalar subqueries and we need to descend in them.
              */
            ASTFunction * func = typeid_cast<ASTFunction *>(ast.get());

            if (func && func->kind == ASTFunction::FUNCTION
                && functionIsInOrGlobalInOperator(func->name))
            {
                for (auto & child : ast->children)
                {
                    if (child != func->arguments)
                        executeScalarSubqueriesImpl(child);
                    else
                        for (size_t i = 0, size = func->arguments->children.size(); i < size; ++i)
                            if (i != 1 || !typeid_cast<ASTSubquery *>(func->arguments->children[i].get()))
                                executeScalarSubqueriesImpl(func->arguments->children[i]);
                }
            }
            else
                for (auto & child : ast->children)
                    executeScalarSubqueriesImpl(child);
        }
    }
1307 1308 1309
}


1310
void ExpressionAnalyzer::optimizeGroupBy()
1311
{
1312 1313 1314
    if (!(select_query && select_query->group_expression_list))
        return;

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    const auto is_literal = [] (const ASTPtr & ast)
    {
        return typeid_cast<const ASTLiteral *>(ast.get());
1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392
    };

    auto & group_exprs = select_query->group_expression_list->children;

    /// removes expression at index idx by making it last one and calling .pop_back()
    const auto remove_expr_at_index = [&group_exprs] (const size_t idx)
    {
        if (idx < group_exprs.size() - 1)
            std::swap(group_exprs[idx], group_exprs.back());

        group_exprs.pop_back();
    };

    /// iterate over each GROUP BY expression, eliminate injective function calls and literals
    for (size_t i = 0; i < group_exprs.size();)
    {
        if (const auto function = typeid_cast<ASTFunction *>(group_exprs[i].get()))
        {
            /// assert function is injective
            if (possibly_injective_function_names.count(function->name))
            {
                /// do not handle semantic errors here
                if (function->arguments->children.size() < 2)
                {
                    ++i;
                    continue;
                }

                const auto & dict_name = typeid_cast<const ASTLiteral &>(*function->arguments->children[0])
                    .value.safeGet<String>();

                const auto & dict_ptr = context.getExternalDictionaries().getDictionary(dict_name);

                const auto & attr_name = typeid_cast<const ASTLiteral &>(*function->arguments->children[1])
                    .value.safeGet<String>();

                if (!dict_ptr->isInjective(attr_name))
                {
                    ++i;
                    continue;
                }
            }
            else if (!injective_function_names.count(function->name))
            {
                ++i;
                continue;
            }

            /// copy shared pointer to args in order to ensure lifetime
            auto args_ast = function->arguments;

            /** remove function call and take a step back to ensure
              * next iteration does not skip not yet processed data
              */
            remove_expr_at_index(i);

            /// copy non-literal arguments
            std::remove_copy_if(
                std::begin(args_ast->children), std::end(args_ast->children),
                std::back_inserter(group_exprs), is_literal
            );
        }
        else if (is_literal(group_exprs[i]))
        {
            remove_expr_at_index(i);
        }
        else
        {
            /// if neither a function nor literal - advance to next expression
            ++i;
        }
    }

    if (group_exprs.empty())
    {
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        /** You can not completely remove GROUP BY. Because if there were no aggregate functions, then it turns out that there will be no aggregation.
          * Instead, leave `GROUP BY const`.
          * Next, see deleting the constants in the analyzeAggregation method.
1396 1397
          */

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        /// You must insert a constant that is not the name of the column in the table. Such a case is rare, but it happens.
1399 1400 1401 1402
        UInt64 unused_column = 0;
        String unused_column_name = toString(unused_column);

        while (columns.end() != std::find_if(columns.begin(), columns.end(),
1403
            [&unused_column_name](const NameAndTypePair & name_type) { return name_type.name == unused_column_name; }))
1404 1405 1406 1407 1408 1409 1410 1411
        {
            ++unused_column;
            unused_column_name = toString(unused_column);
        }

        select_query->group_expression_list = std::make_shared<ASTExpressionList>();
        select_query->group_expression_list->children.emplace_back(std::make_shared<ASTLiteral>(StringRange(), UInt64(unused_column)));
    }
1412 1413 1414
}


1415 1416
void ExpressionAnalyzer::optimizeOrderBy()
{
1417 1418
    if (!(select_query && select_query->order_expression_list))
        return;
1419

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1420
    /// Make unique sorting conditions.
1421 1422
    using NameAndLocale = std::pair<String, String>;
    std::set<NameAndLocale> elems_set;
1423

1424 1425 1426
    ASTs & elems = select_query->order_expression_list->children;
    ASTs unique_elems;
    unique_elems.reserve(elems.size());
1427

1428 1429 1430 1431
    for (const auto & elem : elems)
    {
        String name = elem->children.front()->getColumnName();
        const ASTOrderByElement & order_by_elem = typeid_cast<const ASTOrderByElement &>(*elem);
1432

1433 1434 1435
        if (elems_set.emplace(name, order_by_elem.collation ? order_by_elem.collation->getColumnName() : "").second)
            unique_elems.emplace_back(elem);
    }
1436

1437 1438
    if (unique_elems.size() < elems.size())
        elems = unique_elems;
1439 1440 1441
}


1442 1443
void ExpressionAnalyzer::optimizeLimitBy()
{
1444 1445
    if (!(select_query && select_query->limit_by_expression_list))
        return;
1446

1447
    std::set<String> elems_set;
1448

1449 1450 1451
    ASTs & elems = select_query->limit_by_expression_list->children;
    ASTs unique_elems;
    unique_elems.reserve(elems.size());
1452

1453 1454 1455 1456 1457
    for (const auto & elem : elems)
    {
        if (elems_set.emplace(elem->getColumnName()).second)
            unique_elems.emplace_back(elem);
    }
1458

1459 1460
    if (unique_elems.size() < elems.size())
        elems = unique_elems;
1461 1462 1463
}


1464
void ExpressionAnalyzer::makeSetsForIndex()
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{
1466 1467
    if (storage && ast && storage->supportsIndexForIn())
        makeSetsForIndexImpl(ast, storage->getSampleBlock());
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}

1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487

void ExpressionAnalyzer::tryMakeSetFromSubquery(const ASTPtr & subquery_or_table_name)
{
    BlockIO res = interpretSubquery(subquery_or_table_name, context, subquery_depth + 1, {})->execute();

    SetPtr set = std::make_shared<Set>(settings.limits);

    while (Block block = res.in->read())
    {
        /// If the limits have been exceeded, give up and let the default subquery processing actions take place.
        if (!set->insertFromBlock(block, true))
            return;
    }

    prepared_sets[subquery_or_table_name.get()] = std::move(set);
}


1488
void ExpressionAnalyzer::makeSetsForIndexImpl(const ASTPtr & node, const Block & sample_block)
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Pavel Kartavyy 已提交
1489
{
1490
    for (auto & child : node->children)
1491 1492 1493 1494 1495
    {
        /// Process expression only in current subquery
        if (!typeid_cast<ASTSubquery *>(child.get()))
            makeSetsForIndexImpl(child, sample_block);
    }
1496

1497
    const ASTFunction * func = typeid_cast<const ASTFunction *>(node.get());
1498 1499
    if (func && func->kind == ASTFunction::FUNCTION && functionIsInOperator(func->name))
    {
1500 1501
        const IAST & args = *func->arguments;
        const ASTPtr & arg = args.children.at(1);
1502

1503
        if (!prepared_sets.count(arg.get())) /// Not already prepared.
1504
        {
1505
            if (typeid_cast<ASTSubquery *>(arg.get()) || typeid_cast<ASTIdentifier *>(arg.get()))
1506
            {
1507
                if (settings.use_index_for_in_with_subqueries && storage->mayBenefitFromIndexForIn(args.children.at(0)))
1508
                    tryMakeSetFromSubquery(arg);
1509
            }
1510
            else
1511
            {
1512 1513
                try
                {
1514 1515 1516
                    ExpressionActionsPtr temp_actions = std::make_shared<ExpressionActions>(columns, settings);
                    getRootActions(func->arguments->children.at(0), true, false, temp_actions);
                    makeExplicitSet(func, temp_actions->getSampleBlock(), true);
1517 1518 1519
                }
                catch (const Exception & e)
                {
1520 1521
                    /// in `sample_block` there are no columns that are added by `getActions`
                    if (e.code() != ErrorCodes::NOT_FOUND_COLUMN_IN_BLOCK && e.code() != ErrorCodes::UNKNOWN_IDENTIFIER)
1522
                        throw;
1523 1524 1525

                    /// TODO: Delete the catch in the next release
                    tryLogCurrentException(&Poco::Logger::get("ExpressionAnalyzer"));
1526
                }
1527 1528 1529
            }
        }
    }
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1530
}
1531

1532

1533
void ExpressionAnalyzer::makeSet(const ASTFunction * node, const Block & sample_block)
1534
{
F
f1yegor 已提交
1535 1536 1537
    /** You need to convert the right argument to a set.
      * This can be a table name, a value, a value enumeration, or a subquery.
      * The enumeration of values is parsed as a function `tuple`.
1538
      */
1539 1540
    const IAST & args = *node->arguments;
    const ASTPtr & arg = args.children.at(1);
1541

F
f1yegor 已提交
1542
    /// Already converted.
1543
    if (prepared_sets.count(arg.get()))
1544 1545
        return;

F
f1yegor 已提交
1546
    /// If the subquery or table name for SELECT.
1547 1548
    const ASTIdentifier * identifier = typeid_cast<const ASTIdentifier *>(arg.get());
    if (typeid_cast<const ASTSubquery *>(arg.get()) || identifier)
1549
    {
F
f1yegor 已提交
1550
        /// We get the stream of blocks for the subquery. Create Set and put it in place of the subquery.
1551 1552
        String set_id = arg->getColumnName();

1553 1554
        /// A special case is if the name of the table is specified on the right side of the IN statement,
        ///  and the table has the type Set (a previously prepared set).
1555 1556
        if (identifier)
        {
1557 1558
            auto database_table = getDatabaseAndTableNameFromIdentifier(*identifier);
            StoragePtr table = context.tryGetTable(database_table.first, database_table.second);
1559 1560 1561

            if (table)
            {
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Alexey Milovidov 已提交
1562
                StorageSet * storage_set = dynamic_cast<StorageSet *>(table.get());
1563 1564 1565

                if (storage_set)
                {
1566
                    prepared_sets[arg.get()] = storage_set->getSet();
1567 1568 1569 1570 1571 1572 1573
                    return;
                }
            }
        }

        SubqueryForSet & subquery_for_set = subqueries_for_sets[set_id];

F
f1yegor 已提交
1574
        /// If you already created a Set with the same subquery / table.
1575 1576
        if (subquery_for_set.set)
        {
1577
            prepared_sets[arg.get()] = subquery_for_set.set;
1578 1579 1580
            return;
        }

1581
        SetPtr set = std::make_shared<Set>(settings.limits);
1582

F
f1yegor 已提交
1583 1584 1585 1586
        /** The following happens for GLOBAL INs:
          * - in the addExternalStorage function, the IN (SELECT ...) subquery is replaced with IN _data1,
          *   in the subquery_for_set object, this subquery is set as source and the temporary table _data1 as the table.
          * - this function shows the expression IN_data1.
1587 1588 1589 1590 1591
          */
        if (!subquery_for_set.source)
        {
            auto interpreter = interpretSubquery(arg, context, subquery_depth, {});
            subquery_for_set.source = std::make_shared<LazyBlockInputStream>(
1592
                interpreter->getSampleBlock(), [interpreter]() mutable { return interpreter->execute().in; });
1593

F
f1yegor 已提交
1594
            /** Why is LazyBlockInputStream used?
1595
              *
A
Alexey Milovidov 已提交
1596
              * The fact is that when processing a query of the form
1597
              *  SELECT ... FROM remote_test WHERE column GLOBAL IN (subquery),
F
f1yegor 已提交
1598
              *  if the distributed remote_test table contains localhost as one of the servers,
A
Alexey Milovidov 已提交
1599
              *  the query will be interpreted locally again (and not sent over TCP, as in the case of a remote server).
1600
              *
F
f1yegor 已提交
1601
              * The query execution pipeline will be:
1602
              * CreatingSets
F
f1yegor 已提交
1603
              *  subquery execution, filling the temporary table with _data1 (1)
1604
              *  CreatingSets
F
f1yegor 已提交
1605 1606
              *   reading from the table _data1, creating the set (2)
              *   read from the table subordinate to remote_test.
1607
              *
A
Alexey Milovidov 已提交
1608
              * (The second part of the pipeline under CreateSets is a reinterpretation of the query inside StorageDistributed,
F
f1yegor 已提交
1609
              *  the query differs in that the database name and tables are replaced with subordinates, and the subquery is replaced with _data1.)
1610
              *
F
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1611 1612 1613
              * But when creating the pipeline, when creating the source (2), it will be found that the _data1 table is empty
              *  (because the query has not started yet), and empty source will be returned as the source.
              * And then, when the query is executed, an empty set will be created in step (2).
1614
              *
F
f1yegor 已提交
1615 1616
              * Therefore, we make the initialization of step (2) lazy
              *  - so that it does not occur until step (1) is completed, on which the table will be populated.
1617
              *
F
f1yegor 已提交
1618
              * Note: this solution is not very good, you need to think better.
1619 1620 1621
              */
        }

1622 1623
        subquery_for_set.set = set;
        prepared_sets[arg.get()] = set;
1624 1625 1626
    }
    else
    {
F
f1yegor 已提交
1627
        /// An explicit enumeration of values in parentheses.
1628 1629
        makeExplicitSet(node, sample_block, false);
    }
P
Pavel Kartavyy 已提交
1630 1631
}

F
f1yegor 已提交
1632
/// The case of an explicit enumeration of values.
1633
void ExpressionAnalyzer::makeExplicitSet(const ASTFunction * node, const Block & sample_block, bool create_ordered_set)
P
Pavel Kartavyy 已提交
1634
{
1635
    const IAST & args = *node->arguments;
1636 1637 1638 1639

    if (args.children.size() != 2)
        throw Exception("Wrong number of arguments passed to function in", ErrorCodes::NUMBER_OF_ARGUMENTS_DOESNT_MATCH);

1640
    const ASTPtr & arg = args.children.at(1);
1641 1642

    DataTypes set_element_types;
1643
    const ASTPtr & left_arg = args.children.at(0);
1644

1645
    const ASTFunction * left_arg_tuple = typeid_cast<const ASTFunction *>(left_arg.get());
1646 1647 1648

    /** NOTE If tuple in left hand side specified non-explicitly
      * Example: identity((a, b)) IN ((1, 2), (3, 4))
1649
      *  instead of       (a, b)) IN ((1, 2), (3, 4))
1650
      * then set creation doesn't work correctly.
1651 1652 1653 1654 1655 1656 1657
      */
    if (left_arg_tuple && left_arg_tuple->name == "tuple")
    {
        for (const auto & arg : left_arg_tuple->arguments->children)
        {
            const auto & data_type = sample_block.getByName(arg->getColumnName()).type;

1658
            /// NOTE prevent crash in query: SELECT (1, [1]) in (1, 1)
1659 1660 1661 1662 1663 1664 1665 1666 1667
            if (const auto array = typeid_cast<const DataTypeArray * >(data_type.get()))
                throw Exception("Incorrect element of tuple: " + array->getName(), ErrorCodes::INCORRECT_ELEMENT_OF_SET);

            set_element_types.push_back(data_type);
        }
    }
    else
    {
        DataTypePtr left_type = sample_block.getByName(left_arg->getColumnName()).type;
1668
        if (const DataTypeArray * array_type = typeid_cast<const DataTypeArray *>(left_type.get()))
1669 1670 1671 1672 1673
            set_element_types.push_back(array_type->getNestedType());
        else
            set_element_types.push_back(left_type);
    }

F
f1yegor 已提交
1674
    /// The case `x in (1, 2)` distinguishes from the case `x in 1` (also `x in (1)`).
1675 1676 1677 1678 1679 1680 1681 1682 1683
    bool single_value = false;
    ASTPtr elements_ast = arg;

    if (ASTFunction * set_func = typeid_cast<ASTFunction *>(arg.get()))
    {
        if (set_func->name == "tuple")
        {
            if (set_func->arguments->children.empty())
            {
F
f1yegor 已提交
1684
                /// Empty set.
1685 1686 1687 1688
                elements_ast = set_func->arguments;
            }
            else
            {
F
f1yegor 已提交
1689
                /// Distinguish the case `(x, y) in ((1, 2), (3, 4))` from the case `(x, y) in (1, 2)`.
1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723
                ASTFunction * any_element = typeid_cast<ASTFunction *>(set_func->arguments->children.at(0).get());
                if (set_element_types.size() >= 2 && (!any_element || any_element->name != "tuple"))
                    single_value = true;
                else
                    elements_ast = set_func->arguments;
            }
        }
        else
        {
            if (set_element_types.size() >= 2)
                throw Exception("Incorrect type of 2nd argument for function " + node->name
                    + ". Must be subquery or set of " + toString(set_element_types.size()) + "-element tuples.",
                    ErrorCodes::ILLEGAL_TYPE_OF_ARGUMENT);

            single_value = true;
        }
    }
    else if (typeid_cast<ASTLiteral *>(arg.get()))
    {
        single_value = true;
    }
    else
    {
        throw Exception("Incorrect type of 2nd argument for function " + node->name + ". Must be subquery or set of values.",
                        ErrorCodes::ILLEGAL_TYPE_OF_ARGUMENT);
    }

    if (single_value)
    {
        ASTPtr exp_list = std::make_shared<ASTExpressionList>();
        exp_list->children.push_back(elements_ast);
        elements_ast = exp_list;
    }

1724 1725 1726
    SetPtr set = std::make_shared<Set>(settings.limits);
    set->createFromAST(set_element_types, elements_ast, context, create_ordered_set);
    prepared_sets[arg.get()] = std::move(set);
1727 1728 1729
}


1730
static String getUniqueName(const Block & block, const String & prefix)
1731
{
1732 1733 1734 1735
    int i = 1;
    while (block.has(prefix + toString(i)))
        ++i;
    return prefix + toString(i);
1736 1737 1738
}


F
f1yegor 已提交
1739 1740 1741 1742 1743
/** For getActionsImpl.
  * A stack of ExpressionActions corresponding to nested lambda expressions.
  * The new action should be added to the highest possible level.
  * For example, in the expression "select arrayMap(x -> x + column1 * column2, array1)"
  *  calculation of the product must be done outside the lambda expression (it does not depend on x), and the calculation of the sum is inside (depends on x).
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Alexey Milovidov 已提交
1744 1745 1746
  */
struct ExpressionAnalyzer::ScopeStack
{
1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768
    struct Level
    {
        ExpressionActionsPtr actions;
        NameSet new_columns;
    };

    using Levels = std::vector<Level>;

    Levels stack;
    Settings settings;

    ScopeStack(const ExpressionActionsPtr & actions, const Settings & settings_)
        : settings(settings_)
    {
        stack.emplace_back();
        stack.back().actions = actions;

        const Block & sample_block = actions->getSampleBlock();
        for (size_t i = 0, size = sample_block.columns(); i < size; ++i)
            stack.back().new_columns.insert(sample_block.getByPosition(i).name);
    }

1769
    void pushLevel(const NamesAndTypesList & input_columns)
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    {
        stack.emplace_back();
        Level & prev = stack[stack.size() - 2];

        ColumnsWithTypeAndName all_columns;
        NameSet new_names;

1777
        for (NamesAndTypesList::const_iterator it = input_columns.begin(); it != input_columns.end(); ++it)
1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803
        {
            all_columns.emplace_back(nullptr, it->type, it->name);
            new_names.insert(it->name);
            stack.back().new_columns.insert(it->name);
        }

        const Block & prev_sample_block = prev.actions->getSampleBlock();
        for (size_t i = 0, size = prev_sample_block.columns(); i < size; ++i)
        {
            const ColumnWithTypeAndName & col = prev_sample_block.getByPosition(i);
            if (!new_names.count(col.name))
                all_columns.push_back(col);
        }

        stack.back().actions = std::make_shared<ExpressionActions>(all_columns, settings);
    }

    size_t getColumnLevel(const std::string & name)
    {
        for (int i = static_cast<int>(stack.size()) - 1; i >= 0; --i)
            if (stack[i].new_columns.count(name))
                return i;

        throw Exception("Unknown identifier: " + name, ErrorCodes::UNKNOWN_IDENTIFIER);
    }

1804
    void addAction(const ExpressionAction & action)
1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834
    {
        size_t level = 0;
        Names required = action.getNeededColumns();
        for (size_t i = 0; i < required.size(); ++i)
            level = std::max(level, getColumnLevel(required[i]));

        Names added;
        stack[level].actions->add(action, added);

        stack[level].new_columns.insert(added.begin(), added.end());

        for (size_t i = 0; i < added.size(); ++i)
        {
            const ColumnWithTypeAndName & col = stack[level].actions->getSampleBlock().getByName(added[i]);
            for (size_t j = level + 1; j < stack.size(); ++j)
                stack[j].actions->addInput(col);
        }
    }

    ExpressionActionsPtr popLevel()
    {
        ExpressionActionsPtr res = stack.back().actions;
        stack.pop_back();
        return res;
    }

    const Block & getSampleBlock() const
    {
        return stack.back().actions->getSampleBlock();
    }
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};


1838
void ExpressionAnalyzer::getRootActions(const ASTPtr & ast, bool no_subqueries, bool only_consts, ExpressionActionsPtr & actions)
1839
{
1840 1841 1842
    ScopeStack scopes(actions, settings);
    getActionsImpl(ast, no_subqueries, only_consts, scopes);
    actions = scopes.popLevel();
1843 1844 1845
}


1846 1847
void ExpressionAnalyzer::getArrayJoinedColumns()
{
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    if (select_query && select_query->array_join_expression_list())
    {
        ASTs & array_join_asts = select_query->array_join_expression_list()->children;
        for (const auto & ast : array_join_asts)
        {
            const String nested_table_name = ast->getColumnName();
            const String nested_table_alias = ast->getAliasOrColumnName();

            if (nested_table_alias == nested_table_name && !typeid_cast<const ASTIdentifier *>(ast.get()))
                throw Exception("No alias for non-trivial value in ARRAY JOIN: " + nested_table_name, ErrorCodes::ALIAS_REQUIRED);

            if (array_join_alias_to_name.count(nested_table_alias) || aliases.count(nested_table_alias))
                throw Exception("Duplicate alias in ARRAY JOIN: " + nested_table_alias, ErrorCodes::MULTIPLE_EXPRESSIONS_FOR_ALIAS);

            array_join_alias_to_name[nested_table_alias] = nested_table_name;
            array_join_name_to_alias[nested_table_name] = nested_table_alias;
        }

        getArrayJoinedColumnsImpl(ast);

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        /// If the result of ARRAY JOIN is not used, it is necessary to ARRAY-JOIN any column,
        /// to get the correct number of rows.
1870 1871 1872 1873 1874 1875
        if (array_join_result_to_source.empty())
        {
            ASTPtr expr = select_query->array_join_expression_list()->children.at(0);
            String source_name = expr->getColumnName();
            String result_name = expr->getAliasOrColumnName();

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            /// This is an array.
1877 1878 1879 1880
            if (!typeid_cast<ASTIdentifier *>(expr.get()) || findColumn(source_name, columns) != columns.end())
            {
                array_join_result_to_source[result_name] = source_name;
            }
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            else /// This is a nested table.
1882 1883 1884 1885
            {
                bool found = false;
                for (const auto & column_name_type : columns)
                {
1886 1887
                    auto splitted = Nested::splitName(column_name_type.name);
                    if (splitted.first == source_name && !splitted.second.empty())
1888
                    {
1889
                        array_join_result_to_source[Nested::concatenateName(result_name, splitted.second)] = column_name_type.name;
1890 1891 1892 1893 1894 1895 1896 1897 1898
                        found = true;
                        break;
                    }
                }
                if (!found)
                    throw Exception("No columns in nested table " + source_name, ErrorCodes::EMPTY_NESTED_TABLE);
            }
        }
    }
1899 1900 1901
}


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/// Fills the array_join_result_to_source: on which columns-arrays to replicate, and how to call them after that.
1903
void ExpressionAnalyzer::getArrayJoinedColumnsImpl(const ASTPtr & ast)
1904
{
1905 1906 1907 1908 1909 1910 1911
    if (typeid_cast<ASTTablesInSelectQuery *>(ast.get()))
        return;

    if (ASTIdentifier * node = typeid_cast<ASTIdentifier *>(ast.get()))
    {
        if (node->kind == ASTIdentifier::Column)
        {
1912
            auto splitted = Nested::splitName(node->name);  /// ParsedParams, Key1
1913 1914 1915

            if (array_join_alias_to_name.count(node->name))
            {
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                /// ARRAY JOIN was written with an array column. Example: SELECT K1 FROM ... ARRAY JOIN ParsedParams.Key1 AS K1
1917 1918
                array_join_result_to_source[node->name] = array_join_alias_to_name[node->name];    /// K1 -> ParsedParams.Key1
            }
1919
            else if (array_join_alias_to_name.count(splitted.first) && !splitted.second.empty())
1920
            {
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                /// ARRAY JOIN was written with a nested table. Example: SELECT PP.KEY1 FROM ... ARRAY JOIN ParsedParams AS PP
1922
                array_join_result_to_source[node->name]    /// PP.Key1 -> ParsedParams.Key1
1923
                    = Nested::concatenateName(array_join_alias_to_name[splitted.first], splitted.second);
1924
            }
1925
            else if (array_join_name_to_alias.count(node->name))
1926
            {
1927
                /** Example: SELECT ParsedParams.Key1 FROM ... ARRAY JOIN ParsedParams.Key1 AS PP.Key1.
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                  * That is, the query uses the original array, replicated by itself.
1929 1930
                  */
                array_join_result_to_source[    /// PP.Key1 -> ParsedParams.Key1
1931 1932
                    array_join_name_to_alias[node->name]] = node->name;
            }
1933
            else if (array_join_name_to_alias.count(splitted.first) && !splitted.second.empty())
1934 1935 1936 1937
            {
                /** Example: SELECT ParsedParams.Key1 FROM ... ARRAY JOIN ParsedParams AS PP.
                 */
                array_join_result_to_source[    /// PP.Key1 -> ParsedParams.Key1
1938
                Nested::concatenateName(array_join_name_to_alias[splitted.first], splitted.second)] = node->name;
1939 1940 1941 1942 1943 1944 1945 1946 1947 1948
            }
        }
    }
    else
    {
        for (auto & child : ast->children)
            if (!typeid_cast<const ASTSubquery *>(child.get())
                && !typeid_cast<const ASTSelectQuery *>(child.get()))
                getArrayJoinedColumnsImpl(child);
    }
1949 1950 1951
}


1952
void ExpressionAnalyzer::getActionsImpl(const ASTPtr & ast, bool no_subqueries, bool only_consts, ScopeStack & actions_stack)
1953
{
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    /// If the result of the calculation already exists in the block.
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    if ((typeid_cast<ASTFunction *>(ast.get()) || typeid_cast<ASTLiteral *>(ast.get()))
        && actions_stack.getSampleBlock().has(ast->getColumnName()))
        return;

    if (ASTIdentifier * node = typeid_cast<ASTIdentifier *>(ast.get()))
    {
        std::string name = node->getColumnName();
        if (!only_consts && !actions_stack.getSampleBlock().has(name))
        {
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            /// The requested column is not in the block.
            /// If such a column exists in the table, then the user probably forgot to surround it with an aggregate function or add it to GROUP BY.
1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981

            bool found = false;
            for (const auto & column_name_type : columns)
                if (column_name_type.name == name)
                    found = true;

            if (found)
                throw Exception("Column " + name + " is not under aggregate function and not in GROUP BY.",
                    ErrorCodes::NOT_AN_AGGREGATE);
        }
    }
    else if (ASTFunction * node = typeid_cast<ASTFunction *>(ast.get()))
    {
        if (node->kind == ASTFunction::LAMBDA_EXPRESSION)
            throw Exception("Unexpected lambda expression", ErrorCodes::UNEXPECTED_EXPRESSION);

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        /// Function arrayJoin.
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        if (node->kind == ASTFunction::ARRAY_JOIN)
        {
            if (node->arguments->children.size() != 1)
                throw Exception("arrayJoin requires exactly 1 argument", ErrorCodes::TYPE_MISMATCH);

            ASTPtr arg = node->arguments->children.at(0);
            getActionsImpl(arg, no_subqueries, only_consts, actions_stack);
            if (!only_consts)
            {
                String result_name = node->getColumnName();
                actions_stack.addAction(ExpressionAction::copyColumn(arg->getColumnName(), result_name));
                NameSet joined_columns;
                joined_columns.insert(result_name);
                actions_stack.addAction(ExpressionAction::arrayJoin(joined_columns, false, context));
            }

            return;
        }

        if (node->kind == ASTFunction::FUNCTION)
        {
            if (functionIsInOrGlobalInOperator(node->name))
            {
                if (!no_subqueries)
                {
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                    /// Let's find the type of the first argument (then getActionsImpl will be called again and will not affect anything).
2009 2010
                    getActionsImpl(node->arguments->children.at(0), no_subqueries, only_consts, actions_stack);

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                    /// Transform tuple or subquery into a set.
2012 2013 2014 2015 2016 2017
                    makeSet(node, actions_stack.getSampleBlock());
                }
                else
                {
                    if (!only_consts)
                    {
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                        /// We are in the part of the tree that we are not going to compute. You just need to define types.
                        /// Do not subquery and create sets. We insert an arbitrary column of the correct type.
2020 2021 2022 2023 2024 2025 2026 2027 2028 2029
                        ColumnWithTypeAndName fake_column;
                        fake_column.name = node->getColumnName();
                        fake_column.type = std::make_shared<DataTypeUInt8>();
                        actions_stack.addAction(ExpressionAction::addColumn(fake_column));
                        getActionsImpl(node->arguments->children.at(0), no_subqueries, only_consts, actions_stack);
                    }
                    return;
                }
            }

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            /// A special function `indexHint`. Everything that is inside it is not calculated
            /// (and is used only for index analysis, see PKCondition).
2032 2033 2034
            if (node->name == "indexHint")
            {
                actions_stack.addAction(ExpressionAction::addColumn(ColumnWithTypeAndName(
2035
                    ColumnConst::create(ColumnUInt8::create(1, 1), 1), std::make_shared<DataTypeUInt8>(), node->getColumnName())));
2036 2037 2038
                return;
            }

2039
            const FunctionBuilderPtr & function_builder = FunctionFactory::instance().get(node->name, context);
2040 2041 2042 2043 2044

            Names argument_names;
            DataTypes argument_types;
            bool arguments_present = true;

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            /// If the function has an argument-lambda expression, you need to determine its type before the recursive call.
2046 2047 2048 2049 2050 2051 2052
            bool has_lambda_arguments = false;

            for (auto & child : node->arguments->children)
            {
                ASTFunction * lambda = typeid_cast<ASTFunction *>(child.get());
                if (lambda && lambda->name == "lambda")
                {
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                    /// If the argument is a lambda expression, just remember its approximate type.
2054 2055 2056 2057 2058 2059 2060 2061 2062
                    if (lambda->arguments->children.size() != 2)
                        throw Exception("lambda requires two arguments", ErrorCodes::NUMBER_OF_ARGUMENTS_DOESNT_MATCH);

                    ASTFunction * lambda_args_tuple = typeid_cast<ASTFunction *>(lambda->arguments->children.at(0).get());

                    if (!lambda_args_tuple || lambda_args_tuple->name != "tuple")
                        throw Exception("First argument of lambda must be a tuple", ErrorCodes::TYPE_MISMATCH);

                    has_lambda_arguments = true;
2063
                    argument_types.emplace_back(std::make_shared<DataTypeFunction>(DataTypes(lambda_args_tuple->arguments->children.size())));
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                    /// Select the name in the next cycle.
2065 2066
                    argument_names.emplace_back();
                }
2067
                else if (prepared_sets.count(child.get()))
2068 2069 2070 2071
                {
                    ColumnWithTypeAndName column;
                    column.type = std::make_shared<DataTypeSet>();

2072 2073 2074
                    const SetPtr & set = prepared_sets[child.get()];

                    /// If the argument is a set given by an enumeration of values (so, the set was already built), give it a unique name,
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                    ///  so that sets with the same record do not fuse together (they can have different types).
2076
                    if (!set->empty())
2077 2078
                        column.name = getUniqueName(actions_stack.getSampleBlock(), "__set");
                    else
2079
                        column.name = child->getColumnName();
2080 2081 2082

                    if (!actions_stack.getSampleBlock().has(column.name))
                    {
2083
                        column.column = ColumnSet::create(1, set);
2084 2085 2086 2087 2088 2089 2090 2091 2092

                        actions_stack.addAction(ExpressionAction::addColumn(column));
                    }

                    argument_types.push_back(column.type);
                    argument_names.push_back(column.name);
                }
                else
                {
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                    /// If the argument is not a lambda expression, call it recursively and find out its type.
2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119
                    getActionsImpl(child, no_subqueries, only_consts, actions_stack);
                    std::string name = child->getColumnName();
                    if (actions_stack.getSampleBlock().has(name))
                    {
                        argument_types.push_back(actions_stack.getSampleBlock().getByName(name).type);
                        argument_names.push_back(name);
                    }
                    else
                    {
                        if (only_consts)
                        {
                            arguments_present = false;
                        }
                        else
                        {
                            throw Exception("Unknown identifier: " + name, ErrorCodes::UNKNOWN_IDENTIFIER);
                        }
                    }
                }
            }

            if (only_consts && !arguments_present)
                return;

            if (has_lambda_arguments && !only_consts)
            {
2120
                function_builder->getLambdaArgumentTypes(argument_types);
2121

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                /// Call recursively for lambda expressions.
2123 2124 2125 2126 2127 2128 2129
                for (size_t i = 0; i < node->arguments->children.size(); ++i)
                {
                    ASTPtr child = node->arguments->children[i];

                    ASTFunction * lambda = typeid_cast<ASTFunction *>(child.get());
                    if (lambda && lambda->name == "lambda")
                    {
2130
                        const DataTypeFunction * lambda_type = typeid_cast<const DataTypeFunction *>(argument_types[i].get());
2131 2132
                        ASTFunction * lambda_args_tuple = typeid_cast<ASTFunction *>(lambda->arguments->children.at(0).get());
                        ASTs lambda_arg_asts = lambda_args_tuple->arguments->children;
2133
                        NamesAndTypesList lambda_arguments;
2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153

                        for (size_t j = 0; j < lambda_arg_asts.size(); ++j)
                        {
                            ASTIdentifier * identifier = typeid_cast<ASTIdentifier *>(lambda_arg_asts[j].get());
                            if (!identifier)
                                throw Exception("lambda argument declarations must be identifiers", ErrorCodes::TYPE_MISMATCH);

                            String arg_name = identifier->name;

                            lambda_arguments.emplace_back(arg_name, lambda_type->getArgumentTypes()[j]);
                        }

                        actions_stack.pushLevel(lambda_arguments);
                        getActionsImpl(lambda->arguments->children.at(1), no_subqueries, only_consts, actions_stack);
                        ExpressionActionsPtr lambda_actions = actions_stack.popLevel();

                        String result_name = lambda->arguments->children.at(1)->getColumnName();
                        lambda_actions->finalize(Names(1, result_name));
                        DataTypePtr result_type = lambda_actions->getSampleBlock().getByName(result_name).type;

2154 2155 2156 2157 2158
                        Names captured;
                        Names required = lambda_actions->getRequiredColumns();
                        for (size_t j = 0; j < required.size(); ++j)
                            if (findColumn(required[j], lambda_arguments) == lambda_arguments.end())
                                captured.push_back(required[j]);
2159

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f1yegor 已提交
2160 2161
                        /// We can not name `getColumnName()`,
                        ///  because it does not uniquely define the expression (the types of arguments can be different).
2162 2163 2164 2165 2166
                        String lambda_name = getUniqueName(actions_stack.getSampleBlock(), "__lambda");

                        auto function_capture = std::make_shared<FunctionCapture>(
                                lambda_actions, captured, lambda_arguments, result_type, result_name);
                        actions_stack.addAction(ExpressionAction::applyFunction(function_capture, captured, lambda_name));
2167

2168 2169
                        argument_types[i] = std::make_shared<DataTypeFunction>(lambda_type->getArgumentTypes(), result_type);
                        argument_names[i] = lambda_name;
2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186
                    }
                }
            }

            if (only_consts)
            {
                for (size_t i = 0; i < argument_names.size(); ++i)
                {
                    if (!actions_stack.getSampleBlock().has(argument_names[i]))
                    {
                        arguments_present = false;
                        break;
                    }
                }
            }

            if (arguments_present)
2187
                actions_stack.addAction(ExpressionAction::applyFunction(function_builder, argument_names, node->getColumnName()));
2188 2189 2190 2191 2192 2193 2194
        }
    }
    else if (ASTLiteral * node = typeid_cast<ASTLiteral *>(ast.get()))
    {
        DataTypePtr type = applyVisitor(FieldToDataType(), node->value);

        ColumnWithTypeAndName column;
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        column.column = type->createColumnConst(1, node->value);
2196 2197 2198 2199 2200 2201 2202 2203 2204 2205
        column.type = type;
        column.name = node->getColumnName();

        actions_stack.addAction(ExpressionAction::addColumn(column));
    }
    else
    {
        for (auto & child : ast->children)
            getActionsImpl(child, no_subqueries, only_consts, actions_stack);
    }
2206 2207 2208
}


2209
void ExpressionAnalyzer::getAggregates(const ASTPtr & ast, ExpressionActionsPtr & actions)
2210
{
F
f1yegor 已提交
2211
    /// There can not be aggregate functions inside the WHERE and PREWHERE.
2212 2213 2214 2215 2216 2217
    if (select_query && (ast.get() == select_query->where_expression.get() || ast.get() == select_query->prewhere_expression.get()))
    {
        assertNoAggregates(ast, "in WHERE or PREWHERE");
        return;
    }

F
f1yegor 已提交
2218
    /// If we are not analyzing a SELECT query, but a separate expression, then there can not be aggregate functions in it.
2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231
    if (!select_query)
    {
        assertNoAggregates(ast, "in wrong place");
        return;
    }

    const ASTFunction * node = typeid_cast<const ASTFunction *>(ast.get());
    if (node && node->kind == ASTFunction::AGGREGATE_FUNCTION)
    {
        has_aggregation = true;
        AggregateDescription aggregate;
        aggregate.column_name = node->getColumnName();

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2232
        /// Make unique aggregate functions.
2233 2234 2235 2236 2237 2238 2239 2240 2241 2242
        for (size_t i = 0; i < aggregate_descriptions.size(); ++i)
            if (aggregate_descriptions[i].column_name == aggregate.column_name)
                return;

        const ASTs & arguments = node->arguments->children;
        aggregate.argument_names.resize(arguments.size());
        DataTypes types(arguments.size());

        for (size_t i = 0; i < arguments.size(); ++i)
        {
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2243
            /// There can not be other aggregate functions within the aggregate functions.
2244 2245 2246 2247 2248 2249 2250 2251
            assertNoAggregates(arguments[i], "inside another aggregate function");

            getRootActions(arguments[i], true, false, actions);
            const std::string & name = arguments[i]->getColumnName();
            types[i] = actions->getSampleBlock().getByName(name).type;
            aggregate.argument_names[i] = name;
        }

2252 2253
        aggregate.parameters = (node->parameters) ? getAggregateFunctionParametersArray(node->parameters) : Array();
        aggregate.function = AggregateFunctionFactory::instance().get(node->name, types, aggregate.parameters);
2254 2255 2256 2257 2258 2259 2260 2261 2262 2263

        aggregate_descriptions.push_back(aggregate);
    }
    else
    {
        for (const auto & child : ast->children)
            if (!typeid_cast<const ASTSubquery *>(child.get())
                && !typeid_cast<const ASTSelectQuery *>(child.get()))
                getAggregates(child, actions);
    }
2264 2265
}

2266 2267 2268

void ExpressionAnalyzer::assertNoAggregates(const ASTPtr & ast, const char * description)
{
2269
    const ASTFunction * node = typeid_cast<const ASTFunction *>(ast.get());
2270

2271 2272 2273
    if (node && node->kind == ASTFunction::AGGREGATE_FUNCTION)
        throw Exception("Aggregate function " + node->getColumnName()
            + " is found " + String(description) + " in query", ErrorCodes::ILLEGAL_AGGREGATION);
2274

2275 2276 2277 2278
    for (const auto & child : ast->children)
        if (!typeid_cast<const ASTSubquery *>(child.get())
            && !typeid_cast<const ASTSelectQuery *>(child.get()))
            assertNoAggregates(child, description);
2279 2280 2281
}


2282
void ExpressionAnalyzer::assertSelect() const
2283
{
2284 2285
    if (!select_query)
        throw Exception("Not a select query", ErrorCodes::LOGICAL_ERROR);
2286
}
2287

2288
void ExpressionAnalyzer::assertAggregation() const
2289
{
2290 2291
    if (!has_aggregation)
        throw Exception("No aggregation", ErrorCodes::LOGICAL_ERROR);
2292
}
2293

2294
void ExpressionAnalyzer::initChain(ExpressionActionsChain & chain, const NamesAndTypesList & columns) const
2295
{
2296 2297 2298 2299 2300
    if (chain.steps.empty())
    {
        chain.settings = settings;
        chain.steps.emplace_back(std::make_shared<ExpressionActions>(columns, settings));
    }
2301
}
2302

2303
/// "Big" ARRAY JOIN.
2304
void ExpressionAnalyzer::addMultipleArrayJoinAction(ExpressionActionsPtr & actions) const
2305
{
2306 2307 2308 2309 2310 2311
    NameSet result_columns;
    for (const auto & result_source : array_join_result_to_source)
    {
        /// Assign new names to columns, if needed.
        if (result_source.first != result_source.second)
            actions->add(ExpressionAction::copyColumn(result_source.second, result_source.first));
2312

F
f1yegor 已提交
2313
        /// Make ARRAY JOIN (replace arrays with their insides) for the columns in these new names.
2314 2315
        result_columns.insert(result_source.first);
    }
2316

2317
    actions->add(ExpressionAction::arrayJoin(result_columns, select_query->array_join_is_left(), context));
2318 2319
}

2320
bool ExpressionAnalyzer::appendArrayJoin(ExpressionActionsChain & chain, bool only_types)
2321
{
2322
    assertSelect();
2323

2324 2325
    if (!select_query->array_join_expression_list())
        return false;
2326

2327 2328
    initChain(chain, columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2329

2330
    getRootActions(select_query->array_join_expression_list(), only_types, false, step.actions);
2331

2332
    addMultipleArrayJoinAction(step.actions);
2333

2334
    return true;
2335 2336
}

2337
void ExpressionAnalyzer::addJoinAction(ExpressionActionsPtr & actions, bool only_types) const
2338
{
2339 2340 2341 2342 2343 2344
    if (only_types)
        actions->add(ExpressionAction::ordinaryJoin(nullptr, columns_added_by_join));
    else
        for (auto & subquery_for_set : subqueries_for_sets)
            if (subquery_for_set.second.join)
                actions->add(ExpressionAction::ordinaryJoin(subquery_for_set.second.join, columns_added_by_join));
2345 2346 2347 2348
}

bool ExpressionAnalyzer::appendJoin(ExpressionActionsChain & chain, bool only_types)
{
2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363
    assertSelect();

    if (!select_query->join())
        return false;

    initChain(chain, columns);
    ExpressionActionsChain::Step & step = chain.steps.back();

    const ASTTablesInSelectQueryElement & join_element = static_cast<const ASTTablesInSelectQueryElement &>(*select_query->join());
    const ASTTableJoin & join_params = static_cast<const ASTTableJoin &>(*join_element.table_join);
    const ASTTableExpression & table_to_join = static_cast<const ASTTableExpression &>(*join_element.table_expression);

    if (join_params.using_expression_list)
        getRootActions(join_params.using_expression_list, only_types, false, step.actions);

F
f1yegor 已提交
2364
    /// Two JOINs are not supported with the same subquery, but different USINGs.
A
Alexey Milovidov 已提交
2365
    auto join_hash = join_element.getTreeHash();
2366

A
Alexey Milovidov 已提交
2367
    SubqueryForSet & subquery_for_set = subqueries_for_sets[toString(join_hash.first) + "_" + toString(join_hash.second)];
2368

F
f1yegor 已提交
2369 2370
    /// Special case - if table name is specified on the right of JOIN, then the table has the type Join (the previously prepared mapping).
    /// TODO This syntax does not support specifying a database name.
2371 2372
    if (table_to_join.database_and_table_name)
    {
2373 2374
        auto database_table = getDatabaseAndTableNameFromIdentifier(static_cast<const ASTIdentifier &>(*table_to_join.database_and_table_name));
        StoragePtr table = context.tryGetTable(database_table.first, database_table.second);
2375 2376 2377

        if (table)
        {
A
Alexey Milovidov 已提交
2378
            StorageJoin * storage_join = dynamic_cast<StorageJoin *>(table.get());
2379 2380 2381 2382

            if (storage_join)
            {
                storage_join->assertCompatible(join_params.kind, join_params.strictness);
F
f1yegor 已提交
2383
                /// TODO Check the set of keys.
2384 2385 2386 2387 2388 2389 2390 2391 2392 2393

                JoinPtr & join = storage_join->getJoin();
                subquery_for_set.join = join;
            }
        }
    }

    if (!subquery_for_set.join)
    {
        JoinPtr join = std::make_shared<Join>(
2394 2395
            join_key_names_left, join_key_names_right,
            settings.join_use_nulls, settings.limits,
2396 2397 2398 2399 2400 2401
            join_params.kind, join_params.strictness);

        Names required_joined_columns(join_key_names_right.begin(), join_key_names_right.end());
        for (const auto & name_type : columns_added_by_join)
            required_joined_columns.push_back(name_type.name);

F
f1yegor 已提交
2402 2403 2404 2405
        /** For GLOBAL JOINs (in the case, for example, of the push method for executing GLOBAL subqueries), the following occurs
          * - in the addExternalStorage function, the JOIN (SELECT ...) subquery is replaced with JOIN _data1,
          *   in the subquery_for_set object this subquery is exposed as source and the temporary table _data1 as the `table`.
          * - this function shows the expression JOIN _data1.
2406 2407 2408 2409 2410 2411 2412 2413 2414 2415
          */
        if (!subquery_for_set.source)
        {
            ASTPtr table;
            if (table_to_join.database_and_table_name)
                table = table_to_join.database_and_table_name;
            else
                table = table_to_join.subquery;

            auto interpreter = interpretSubquery(table, context, subquery_depth, required_joined_columns);
2416 2417 2418
            subquery_for_set.source = std::make_shared<LazyBlockInputStream>(
                interpreter->getSampleBlock(),
                [interpreter]() mutable { return interpreter->execute().in; });
2419 2420
        }

F
f1yegor 已提交
2421
        /// TODO You do not need to set this up when JOIN is only needed on remote servers.
2422
        subquery_for_set.join = join;
2423
        subquery_for_set.join->setSampleBlock(subquery_for_set.source->getHeader());
2424 2425 2426 2427 2428
    }

    addJoinAction(step.actions, false);

    return true;
2429 2430
}

2431

2432
bool ExpressionAnalyzer::appendWhere(ExpressionActionsChain & chain, bool only_types)
2433
{
2434
    assertSelect();
2435

2436 2437
    if (!select_query->where_expression)
        return false;
2438

2439 2440
    initChain(chain, columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2441

2442 2443
    step.required_output.push_back(select_query->where_expression->getColumnName());
    getRootActions(select_query->where_expression, only_types, false, step.actions);
2444

2445
    return true;
2446 2447
}

2448
bool ExpressionAnalyzer::appendGroupBy(ExpressionActionsChain & chain, bool only_types)
2449
{
2450
    assertAggregation();
2451

2452 2453
    if (!select_query->group_expression_list)
        return false;
2454

2455 2456
    initChain(chain, columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2457

2458 2459 2460 2461 2462 2463
    ASTs asts = select_query->group_expression_list->children;
    for (size_t i = 0; i < asts.size(); ++i)
    {
        step.required_output.push_back(asts[i]->getColumnName());
        getRootActions(asts[i], only_types, false, step.actions);
    }
2464

2465
    return true;
2466 2467
}

2468
void ExpressionAnalyzer::appendAggregateFunctionsArguments(ExpressionActionsChain & chain, bool only_types)
2469
{
2470
    assertAggregation();
2471

2472 2473
    initChain(chain, columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2474

2475 2476 2477 2478 2479 2480 2481
    for (size_t i = 0; i < aggregate_descriptions.size(); ++i)
    {
        for (size_t j = 0; j < aggregate_descriptions[i].argument_names.size(); ++j)
        {
            step.required_output.push_back(aggregate_descriptions[i].argument_names[j]);
        }
    }
2482

2483
    getActionsBeforeAggregation(select_query->select_expression_list, step.actions, only_types);
2484

2485 2486
    if (select_query->having_expression)
        getActionsBeforeAggregation(select_query->having_expression, step.actions, only_types);
2487

2488 2489
    if (select_query->order_expression_list)
        getActionsBeforeAggregation(select_query->order_expression_list, step.actions, only_types);
2490 2491
}

2492
bool ExpressionAnalyzer::appendHaving(ExpressionActionsChain & chain, bool only_types)
2493
{
2494
    assertAggregation();
2495

2496 2497
    if (!select_query->having_expression)
        return false;
2498

2499 2500
    initChain(chain, aggregated_columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2501

2502 2503
    step.required_output.push_back(select_query->having_expression->getColumnName());
    getRootActions(select_query->having_expression, only_types, false, step.actions);
2504

2505
    return true;
2506 2507
}

2508
void ExpressionAnalyzer::appendSelect(ExpressionActionsChain & chain, bool only_types)
2509
{
2510
    assertSelect();
2511

2512 2513
    initChain(chain, aggregated_columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2514

2515
    getRootActions(select_query->select_expression_list, only_types, false, step.actions);
2516

2517 2518 2519 2520 2521
    ASTs asts = select_query->select_expression_list->children;
    for (size_t i = 0; i < asts.size(); ++i)
    {
        step.required_output.push_back(asts[i]->getColumnName());
    }
2522
}
2523

2524
bool ExpressionAnalyzer::appendOrderBy(ExpressionActionsChain & chain, bool only_types)
2525
{
2526
    assertSelect();
2527

2528 2529
    if (!select_query->order_expression_list)
        return false;
2530

2531 2532
    initChain(chain, aggregated_columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2533

2534
    getRootActions(select_query->order_expression_list, only_types, false, step.actions);
2535

2536 2537 2538 2539 2540 2541 2542 2543 2544
    ASTs asts = select_query->order_expression_list->children;
    for (size_t i = 0; i < asts.size(); ++i)
    {
        ASTOrderByElement * ast = typeid_cast<ASTOrderByElement *>(asts[i].get());
        if (!ast || ast->children.size() < 1)
            throw Exception("Bad order expression AST", ErrorCodes::UNKNOWN_TYPE_OF_AST_NODE);
        ASTPtr order_expression = ast->children.at(0);
        step.required_output.push_back(order_expression->getColumnName());
    }
2545

2546
    return true;
2547 2548
}

A
Alexey Milovidov 已提交
2549
void ExpressionAnalyzer::appendProjectResult(ExpressionActionsChain & chain) const
2550
{
2551
    assertSelect();
2552

2553 2554
    initChain(chain, aggregated_columns);
    ExpressionActionsChain::Step & step = chain.steps.back();
2555

2556
    NamesWithAliases result_columns;
2557

2558 2559 2560 2561 2562 2563
    ASTs asts = select_query->select_expression_list->children;
    for (size_t i = 0; i < asts.size(); ++i)
    {
        result_columns.emplace_back(asts[i]->getColumnName(), asts[i]->getAliasOrColumnName());
        step.required_output.push_back(result_columns.back().second);
    }
2564

2565
    step.actions->add(ExpressionAction::project(result_columns));
2566 2567 2568
}


2569
void ExpressionAnalyzer::getActionsBeforeAggregation(const ASTPtr & ast, ExpressionActionsPtr & actions, bool no_subqueries)
2570
{
2571
    ASTFunction * node = typeid_cast<ASTFunction *>(ast.get());
2572

2573 2574 2575 2576 2577 2578
    if (node && node->kind == ASTFunction::AGGREGATE_FUNCTION)
        for (auto & argument : node->arguments->children)
            getRootActions(argument, no_subqueries, false, actions);
    else
        for (auto & child : ast->children)
            getActionsBeforeAggregation(child, actions, no_subqueries);
2579 2580 2581
}


M
Merge  
Michael Kolupaev 已提交
2582
ExpressionActionsPtr ExpressionAnalyzer::getActions(bool project_result)
2583
{
2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613
    ExpressionActionsPtr actions = std::make_shared<ExpressionActions>(columns, settings);
    NamesWithAliases result_columns;
    Names result_names;

    ASTs asts;

    if (auto node = typeid_cast<const ASTExpressionList *>(ast.get()))
        asts = node->children;
    else
        asts = ASTs(1, ast);

    for (size_t i = 0; i < asts.size(); ++i)
    {
        std::string name = asts[i]->getColumnName();
        std::string alias;
        if (project_result)
            alias = asts[i]->getAliasOrColumnName();
        else
            alias = name;
        result_columns.emplace_back(name, alias);
        result_names.push_back(alias);
        getRootActions(asts[i], false, false, actions);
    }

    if (project_result)
    {
        actions->add(ExpressionAction::project(result_columns));
    }
    else
    {
F
f1yegor 已提交
2614
        /// We will not delete the original columns.
2615 2616 2617 2618 2619 2620 2621
        for (const auto & column_name_type : columns)
            result_names.push_back(column_name_type.name);
    }

    actions->finalize(result_names);

    return actions;
2622 2623 2624 2625 2626
}


ExpressionActionsPtr ExpressionAnalyzer::getConstActions()
{
2627
    ExpressionActionsPtr actions = std::make_shared<ExpressionActions>(NamesAndTypesList(), settings);
2628

2629
    getRootActions(ast, true, true, actions);
2630

2631
    return actions;
2632 2633
}

2634
void ExpressionAnalyzer::getAggregateInfo(Names & key_names, AggregateDescriptions & aggregates) const
2635
{
2636 2637
    for (const auto & name_and_type : aggregation_keys)
        key_names.emplace_back(name_and_type.name);
2638

2639
    aggregates = aggregate_descriptions;
2640 2641
}

2642
void ExpressionAnalyzer::collectUsedColumns()
2643
{
F
f1yegor 已提交
2644 2645 2646
    /** Calculate which columns are required to execute the expression.
      * Then, delete all other columns from the list of available columns.
      * After execution, columns will only contain the list of columns needed to read from the table.
2647 2648 2649 2650 2651
      */

    NameSet required;
    NameSet ignored;

2652 2653 2654 2655
    NameSet available_columns;
    for (const auto & column : columns)
        available_columns.insert(column.name);

2656 2657 2658 2659 2660
    if (select_query && select_query->array_join_expression_list())
    {
        ASTs & expressions = select_query->array_join_expression_list()->children;
        for (size_t i = 0; i < expressions.size(); ++i)
        {
F
f1yegor 已提交
2661 2662
            /// Ignore the top-level identifiers from the ARRAY JOIN section.
            /// Then add them separately.
2663 2664 2665 2666 2667 2668
            if (typeid_cast<ASTIdentifier *>(expressions[i].get()))
            {
                ignored.insert(expressions[i]->getColumnName());
            }
            else
            {
F
f1yegor 已提交
2669
                /// Nothing needs to be ignored for expressions in ARRAY JOIN.
2670
                NameSet empty;
2671
                getRequiredColumnsImpl(expressions[i], available_columns, required, empty, empty, empty);
2672 2673 2674 2675 2676 2677
            }

            ignored.insert(expressions[i]->getAliasOrColumnName());
        }
    }

F
f1yegor 已提交
2678 2679
    /** You also need to ignore the identifiers of the columns that are obtained by JOIN.
      * (Do not assume that they are required for reading from the "left" table).
2680 2681 2682 2683 2684
      */
    NameSet available_joined_columns;
    collectJoinedColumns(available_joined_columns, columns_added_by_join);

    NameSet required_joined_columns;
2685
    getRequiredColumnsImpl(ast, available_columns, required, ignored, available_joined_columns, required_joined_columns);
2686

2687
    for (NamesAndTypesList::iterator it = columns_added_by_join.begin(); it != columns_added_by_join.end();)
2688 2689 2690 2691 2692 2693
    {
        if (required_joined_columns.count(it->name))
            ++it;
        else
            columns_added_by_join.erase(it++);
    }
2694

F
f1yegor 已提交
2695
    /// Insert the columns required for the ARRAY JOIN calculation into the required columns list.
2696 2697 2698 2699 2700 2701 2702 2703
    NameSet array_join_sources;
    for (const auto & result_source : array_join_result_to_source)
        array_join_sources.insert(result_source.second);

    for (const auto & column_name_type : columns)
        if (array_join_sources.count(column_name_type.name))
            required.insert(column_name_type.name);

F
f1yegor 已提交
2704
    /// You need to read at least one column to find the number of rows.
2705 2706 2707 2708 2709
    if (required.empty())
        required.insert(ExpressionActions::getSmallestColumn(columns));

    unknown_required_columns = required;

2710
    for (NamesAndTypesList::iterator it = columns.begin(); it != columns.end();)
2711
    {
2712 2713 2714 2715 2716 2717
        unknown_required_columns.erase(it->name);

        if (!required.count(it->name))
            columns.erase(it++);
        else
            ++it;
2718 2719
    }

F
f1yegor 已提交
2720 2721
    /// Perhaps, there are virtual columns among the unknown columns. Remove them from the list of unknown and add
    /// in columns list, so that when further processing the request they are perceived as real.
2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734
    if (storage)
    {
        for (auto it = unknown_required_columns.begin(); it != unknown_required_columns.end();)
        {
            if (storage->hasColumn(*it))
            {
                columns.push_back(storage->getColumn(*it));
                unknown_required_columns.erase(it++);
            }
            else
                ++it;
        }
    }
2735 2736
}

2737
void ExpressionAnalyzer::collectJoinedColumns(NameSet & joined_columns, NamesAndTypesList & joined_columns_name_type)
2738
{
2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752
    if (!select_query)
        return;

    const ASTTablesInSelectQueryElement * node = select_query->join();

    if (!node)
        return;

    const ASTTableJoin & table_join = static_cast<const ASTTableJoin &>(*node->table_join);
    const ASTTableExpression & table_expression = static_cast<const ASTTableExpression &>(*node->table_expression);

    Block nested_result_sample;
    if (table_expression.database_and_table_name)
    {
2753 2754
        auto database_table = getDatabaseAndTableNameFromIdentifier(static_cast<const ASTIdentifier &>(*table_expression.database_and_table_name));
        const auto & table = context.getTable(database_table.first, database_table.second);
2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783
        nested_result_sample = table->getSampleBlockNonMaterialized();
    }
    else if (table_expression.subquery)
    {
        const auto & subquery = table_expression.subquery->children.at(0);
        nested_result_sample = InterpreterSelectQuery::getSampleBlock(subquery, context);
    }

    if (table_join.using_expression_list)
    {
        auto & keys = typeid_cast<ASTExpressionList &>(*table_join.using_expression_list);
        for (const auto & key : keys.children)
        {
            if (join_key_names_left.end() == std::find(join_key_names_left.begin(), join_key_names_left.end(), key->getColumnName()))
                join_key_names_left.push_back(key->getColumnName());
            else
                throw Exception("Duplicate column " + key->getColumnName() + " in USING list", ErrorCodes::DUPLICATE_COLUMN);

            if (join_key_names_right.end() == std::find(join_key_names_right.begin(), join_key_names_right.end(), key->getAliasOrColumnName()))
                join_key_names_right.push_back(key->getAliasOrColumnName());
            else
                throw Exception("Duplicate column " + key->getAliasOrColumnName() + " in USING list", ErrorCodes::DUPLICATE_COLUMN);
        }
    }

    for (const auto i : ext::range(0, nested_result_sample.columns()))
    {
        const auto & col = nested_result_sample.safeGetByPosition(i);
        if (join_key_names_right.end() == std::find(join_key_names_right.begin(), join_key_names_right.end(), col.name)
F
f1yegor 已提交
2784
            && !joined_columns.count(col.name)) /// Duplicate columns in the subquery for JOIN do not make sense.
2785 2786
        {
            joined_columns.insert(col.name);
2787 2788 2789

            bool make_nullable = settings.join_use_nulls && (table_join.kind == ASTTableJoin::Kind::Left || table_join.kind == ASTTableJoin::Kind::Full);
            joined_columns_name_type.emplace_back(col.name, make_nullable ? makeNullable(col.type) : col.type);
2790 2791
        }
    }
2792 2793
}

2794

P
proller 已提交
2795
Names ExpressionAnalyzer::getRequiredColumns() const
2796
{
2797 2798
    if (!unknown_required_columns.empty())
        throw Exception("Unknown identifier: " + *unknown_required_columns.begin(), ErrorCodes::UNKNOWN_IDENTIFIER);
2799

2800 2801 2802
    Names res;
    for (const auto & column_name_type : columns)
        res.push_back(column_name_type.name);
A
Alexey Milovidov 已提交
2803

2804
    return res;
2805 2806
}

2807

2808
void ExpressionAnalyzer::getRequiredColumnsImpl(const ASTPtr & ast,
2809
    const NameSet & available_columns, NameSet & required_columns, NameSet & ignored_names,
2810 2811
    const NameSet & available_joined_columns, NameSet & required_joined_columns)
{
F
f1yegor 已提交
2812 2813 2814 2815 2816 2817 2818
    /** Find all the identifiers in the query.
      * We will look for them recursively, bypassing by depth AST.
      * In this case
      * - for lambda functions we will not take formal parameters;
      * - do not go into subqueries (there are their identifiers);
      * - is some exception for the ARRAY JOIN section (it has a slightly different identifier);
      * - identifiers available from JOIN, we put in required_joined_columns.
2819 2820 2821 2822 2823 2824
      */

    if (ASTIdentifier * node = typeid_cast<ASTIdentifier *>(ast.get()))
    {
        if (node->kind == ASTIdentifier::Column
            && !ignored_names.count(node->name)
2825
            && !ignored_names.count(Nested::extractTableName(node->name)))
2826
        {
2827 2828
            if (!available_joined_columns.count(node->name)
                || available_columns.count(node->name)) /// Read column from left table if has.
2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848
                required_columns.insert(node->name);
            else
                required_joined_columns.insert(node->name);
        }

        return;
    }

    if (ASTFunction * node = typeid_cast<ASTFunction *>(ast.get()))
    {
        if (node->kind == ASTFunction::LAMBDA_EXPRESSION)
        {
            if (node->arguments->children.size() != 2)
                throw Exception("lambda requires two arguments", ErrorCodes::NUMBER_OF_ARGUMENTS_DOESNT_MATCH);

            ASTFunction * lambda_args_tuple = typeid_cast<ASTFunction *>(node->arguments->children.at(0).get());

            if (!lambda_args_tuple || lambda_args_tuple->name != "tuple")
                throw Exception("First argument of lambda must be a tuple", ErrorCodes::TYPE_MISMATCH);

F
f1yegor 已提交
2849
            /// You do not need to add formal parameters of the lambda expression in required_columns.
2850 2851 2852 2853 2854 2855 2856 2857 2858 2859 2860 2861 2862 2863 2864 2865
            Names added_ignored;
            for (auto & child : lambda_args_tuple->arguments->children)
            {
                ASTIdentifier * identifier = typeid_cast<ASTIdentifier *>(child.get());
                if (!identifier)
                    throw Exception("lambda argument declarations must be identifiers", ErrorCodes::TYPE_MISMATCH);

                String & name = identifier->name;
                if (!ignored_names.count(name))
                {
                    ignored_names.insert(name);
                    added_ignored.push_back(name);
                }
            }

            getRequiredColumnsImpl(node->arguments->children.at(1),
2866
                available_columns, required_columns, ignored_names,
2867 2868 2869 2870 2871 2872 2873 2874
                available_joined_columns, required_joined_columns);

            for (size_t i = 0; i < added_ignored.size(); ++i)
                ignored_names.erase(added_ignored[i]);

            return;
        }

F
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        /// A special function `indexHint`. Everything that is inside it is not calculated
        /// (and is used only for index analysis, see PKCondition).
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        if (node->name == "indexHint")
            return;
    }

F
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    /// Recursively traverses an expression.
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    for (auto & child : ast->children)
    {
F
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        /** We will not go to the ARRAY JOIN section, because we need to look at the names of non-ARRAY-JOIN columns.
          * There, `collectUsedColumns` will send us separately.
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          */
        if (!typeid_cast<ASTSelectQuery *>(child.get())
            && !typeid_cast<ASTArrayJoin *>(child.get()))
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            getRequiredColumnsImpl(child, available_columns, required_columns,
                                   ignored_names, available_joined_columns, required_joined_columns);
2891
    }
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}

2894
}