Adding a function declaration to expression.hh causes many recompilations. Reduce that by: - moving some restrictions-related definitions to the existing expr/restrictions.hh - moving evaluation related names to a new header expr/evaluate.hh - move utilities to a new header expr/expr-utilities.hh expression.hh contains only expression definitions and the most basic and common helpers, like printing.
255 lines
11 KiB
C++
255 lines
11 KiB
C++
/*
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* Copyright (C) 2015-present ScyllaDB
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*/
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/*
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* SPDX-License-Identifier: AGPL-3.0-or-later
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*/
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#include "selectable.hh"
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#include "selectable_with_field_selection.hh"
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#include "field_selector.hh"
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#include "writetime_or_ttl.hh"
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#include "selector_factories.hh"
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#include "simple_selector.hh"
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#include "cql3/query_options.hh"
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#include "cql3/functions/functions.hh"
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#include "cql3/functions/castas_fcts.hh"
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#include "cql3/functions/aggregate_fcts.hh"
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#include "cql3/expr/expression.hh"
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#include "cql3/expr/expr-utils.hh"
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#include "abstract_function_selector.hh"
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#include "writetime_or_ttl_selector.hh"
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namespace cql3 {
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namespace selection {
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seastar::logger slogger("cql3_selection");
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class selectable_column : public selectable {
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column_identifier _ci;
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public:
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explicit selectable_column(column_identifier ci) : _ci(std::move(ci)) {}
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virtual ::shared_ptr<selector::factory> new_selector_factory(data_dictionary::database db, schema_ptr schema,
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std::vector<const column_definition*>& defs) override;
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virtual sstring to_string() const override {
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return _ci.to_string();
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}
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};
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::shared_ptr<selector::factory>
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selectable_column::new_selector_factory(data_dictionary::database db, schema_ptr schema, std::vector<const column_definition*>& defs) {
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auto def = get_column_definition(*schema, _ci);
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if (!def) {
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throw exceptions::invalid_request_exception(format("Undefined name {} in selection clause", _ci.text()));
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}
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// Do not allow explicitly selecting hidden columns. We also skip them on
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// "SELECT *" (see selection::wildcard()).
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if (def->is_hidden_from_cql()) {
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throw exceptions::invalid_request_exception(format("Undefined name {} in selection clause", _ci.text()));
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}
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return simple_selector::new_factory(def->name_as_text(), add_and_get_index(*def, defs), def->type);
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}
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shared_ptr<selector::factory>
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selectable::writetime_or_ttl::new_selector_factory(data_dictionary::database db, schema_ptr s, std::vector<const column_definition*>& defs) {
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auto&& def = s->get_column_definition(_id->name());
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if (!def || def->is_hidden_from_cql()) {
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throw exceptions::invalid_request_exception(format("Undefined name {} in selection clause", _id));
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}
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if (def->is_primary_key()) {
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throw exceptions::invalid_request_exception(
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format("Cannot use selection function {} on PRIMARY KEY part {}",
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_is_writetime ? "writeTime" : "ttl",
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def->name_as_text()));
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}
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if (def->type->is_multi_cell()) {
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throw exceptions::invalid_request_exception(format("Cannot use selection function {} on non-frozen collections",
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_is_writetime ? "writeTime" : "ttl"));
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}
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return writetime_or_ttl_selector::new_factory(def->name_as_text(), add_and_get_index(*def, defs), _is_writetime);
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}
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sstring
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selectable::writetime_or_ttl::to_string() const {
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return format("{}({})", _is_writetime ? "writetime" : "ttl", _id->to_string());
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}
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expr::expression
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make_count_rows_function_expression() {
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return expr::function_call{
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cql3::functions::function_name::native_function(cql3::functions::aggregate_fcts::COUNT_ROWS_FUNCTION_NAME),
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std::vector<cql3::expr::expression>()};
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}
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shared_ptr<selector::factory>
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selectable::with_anonymous_function::new_selector_factory(data_dictionary::database db, schema_ptr s, std::vector<const column_definition*>& defs) {
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auto&& factories = selector_factories::create_factories_and_collect_column_definitions(_args, db, s, defs);
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return abstract_function_selector::new_factory(_function, std::move(factories));
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}
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sstring
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selectable::with_anonymous_function::to_string() const {
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return format("{}({})", _function->name().name, fmt::join(_args, ", "));
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}
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shared_ptr<selector::factory>
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selectable::with_field_selection::new_selector_factory(data_dictionary::database db, schema_ptr s, std::vector<const column_definition*>& defs) {
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auto&& factory = _selected->new_selector_factory(db, s, defs);
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auto&& type = factory->new_instance()->get_type();
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if (!type->underlying_type()->is_user_type()) {
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throw exceptions::invalid_request_exception(
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format("Invalid field selection: {} of type {} is not a user type", _selected->to_string(), type->as_cql3_type()));
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}
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auto ut = static_pointer_cast<const user_type_impl>(type->underlying_type());
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return field_selector::new_factory(std::move(ut), _field_idx, std::move(factory));
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}
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sstring
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selectable::with_field_selection::to_string() const {
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return format("{}.{}", _selected->to_string(), _field->to_string());
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}
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static
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shared_ptr<selectable>
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do_prepare_selectable(const schema& s, const expr::expression& selectable_expr) {
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return expr::visit(overloaded_functor{
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[&] (const expr::constant&) -> shared_ptr<selectable> {
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on_internal_error(slogger, "no way to express SELECT constant in the grammar yet");
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},
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[&] (const expr::conjunction& conj) -> shared_ptr<selectable> {
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on_internal_error(slogger, "no way to express 'SELECT a AND b' in the grammar yet");
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},
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[&] (const expr::binary_operator& conj) -> shared_ptr<selectable> {
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on_internal_error(slogger, "no way to express 'SELECT a binop b' in the grammar yet");
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},
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[&] (const expr::column_value& column) -> shared_ptr<selectable> {
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return ::make_shared<selectable_column>(column_identifier(column.col->name(), column.col->name_as_text()));
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},
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[&] (const expr::subscript& sub) -> shared_ptr<selectable> {
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on_internal_error(slogger, "no way to express 'SELECT a[b]' in the grammar yet");
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},
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[&] (const expr::unresolved_identifier& ui) -> shared_ptr<selectable> {
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on_internal_error(slogger, "prepare_selectable() on an unresolved_identifier");
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},
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[&] (const expr::column_mutation_attribute& cma) -> shared_ptr<selectable> {
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auto column = expr::as<expr::column_value>(cma.column);
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bool is_writetime = cma.kind == expr::column_mutation_attribute::attribute_kind::writetime;
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return make_shared<selectable::writetime_or_ttl>(make_shared<column_identifier>(column.col->name(), column.col->name_as_text()), is_writetime);
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},
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[&] (const expr::function_call& fc) -> shared_ptr<selectable> {
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std::vector<shared_ptr<selectable>> prepared_args;
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prepared_args.reserve(fc.args.size());
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for (auto&& arg : fc.args) {
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prepared_args.push_back(do_prepare_selectable(s, arg));
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}
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return std::visit(overloaded_functor{
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[&] (const functions::function_name& named) -> shared_ptr<selectable> {
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on_internal_error(slogger, "function name should have been resolved by prepare");
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},
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[&] (const shared_ptr<functions::function>& anon) -> shared_ptr<selectable> {
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return ::make_shared<selectable::with_anonymous_function>(anon, std::move(prepared_args));
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},
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}, fc.func);
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},
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[&] (const expr::cast& c) -> shared_ptr<selectable> {
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on_internal_error(slogger, "cast should have been converted to a function call");
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},
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[&] (const expr::field_selection& fs) -> shared_ptr<selectable> {
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// static_pointer_cast<> needed due to lack of covariant return type
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// support with smart pointers
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return make_shared<selectable::with_field_selection>(do_prepare_selectable(s, fs.structure),
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fs.field->prepare(s),
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fs.field_idx);
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},
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[&] (const expr::bind_variable&) -> shared_ptr<selectable> {
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on_internal_error(slogger, "bind_variable found its way to selector context");
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},
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[&] (const expr::untyped_constant&) -> shared_ptr<selectable> {
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on_internal_error(slogger, "untyped_constant found its way to selector context");
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},
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[&] (const expr::tuple_constructor&) -> shared_ptr<selectable> {
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on_internal_error(slogger, "tuple_constructor found its way to selector context");
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},
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[&] (const expr::collection_constructor&) -> shared_ptr<selectable> {
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on_internal_error(slogger, "collection_constructor found its way to selector context");
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},
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[&] (const expr::usertype_constructor&) -> shared_ptr<selectable> {
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on_internal_error(slogger, "usertype_constructor found its way to selector context");
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},
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}, selectable_expr);
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}
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shared_ptr<selectable>
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prepare_selectable(const schema& s, const expr::expression& raw_selectable, data_dictionary::database db, const sstring& keyspace) {
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// do_prepare_selectable() calls itself recursively, so the prepare_expression step
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// has to be done outside.
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auto prepared = expr::prepare_expression(raw_selectable, db, keyspace, &s, nullptr);
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return do_prepare_selectable(s, prepared);
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}
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bool
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selectable_processes_selection(const expr::expression& raw_selectable) {
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return expr::visit(overloaded_functor{
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[&] (const expr::constant&) -> bool {
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on_internal_error(slogger, "no way to express SELECT constant in the grammar yet");
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},
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[&] (const expr::conjunction& conj) -> bool {
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on_internal_error(slogger, "no way to express 'SELECT a AND b' in the grammar yet");
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},
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[&] (const expr::binary_operator& conj) -> bool {
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on_internal_error(slogger, "no way to express 'SELECT a binop b' in the grammar yet");
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},
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[] (const expr::subscript&) -> bool {
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on_internal_error(slogger, "no way to express 'SELECT a[b]' in the grammar yet");
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},
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[&] (const expr::column_value& column) -> bool {
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// There is no path that reaches here, but expr::column_value and column_identifier are logically the same,
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// so bridge them.
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return false;
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},
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[&] (const expr::unresolved_identifier& ui) -> bool {
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return ui.ident->processes_selection();
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},
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[&] (const expr::column_mutation_attribute& cma) -> bool {
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return true;
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},
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[&] (const expr::function_call& fc) -> bool {
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return true;
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},
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[&] (const expr::cast& c) -> bool {
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return true;
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},
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[&] (const expr::field_selection& fs) -> bool {
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return true;
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},
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[&] (const expr::bind_variable&) -> bool {
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on_internal_error(slogger, "bind_variable found its way to selector context");
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},
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[&] (const expr::untyped_constant&) -> bool {
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on_internal_error(slogger, "untyped_constant found its way to selector context");
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},
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[&] (const expr::tuple_constructor&) -> bool {
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on_internal_error(slogger, "tuple_constructor found its way to selector context");
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},
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[&] (const expr::collection_constructor&) -> bool {
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on_internal_error(slogger, "collection_constructor found its way to selector context");
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},
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[&] (const expr::usertype_constructor&) -> bool {
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on_internal_error(slogger, "collection_constructor found its way to selector context");
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},
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}, raw_selectable);
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};
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std::ostream & operator<<(std::ostream &os, const selectable& s) {
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return os << s.to_string();
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}
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}
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}
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