Coverage Report

Created: 2026-07-30 15:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exprs/vtopn_pred.h
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#pragma once
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#include <gen_cpp/types.pb.h>
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#include <utility>
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#include "core/block/column_numbers.h"
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#include "core/data_type/data_type.h"
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#include "exec/common/util.hpp"
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#include "exprs/function/simple_function_factory.h"
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#include "exprs/vectorized_fn_call.h"
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#include "exprs/vexpr.h"
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#include "exprs/vslot_ref.h"
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#include "runtime/query_context.h"
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#include "runtime/runtime_predicate.h"
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#include "runtime/runtime_state.h"
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namespace doris {
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// only used for dynamic topn filter
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class VTopNPred : public VExpr {
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    ENABLE_FACTORY_CREATOR(VTopNPred);
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public:
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    VTopNPred(const TExprNode& node, int source_node_id, VExprContextSPtr target_ctx)
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            : VExpr(node),
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              _source_node_id(source_node_id),
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              _expr_name(fmt::format("VTopNPred(source_node_id={})", _source_node_id)),
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              _target_ctx(std::move(target_ctx)) {}
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2
    bool is_topn_filter() const override { return true; }
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0
    static Status create_vtopn_pred(const TExpr& target_expr, int source_node_id, VExprSPtr& expr) {
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0
        VExprContextSPtr target_ctx;
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0
        RETURN_IF_ERROR(VExpr::create_expr_tree(target_expr, target_ctx));
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        TExprNode node;
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        node.__set_node_type(TExprNodeType::FUNCTION_CALL);
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        node.__set_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
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        node.__set_is_nullable(target_ctx->root()->is_nullable());
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        expr = VTopNPred::create_shared(node, source_node_id, target_ctx);
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        DCHECK(target_ctx->root() != nullptr);
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        expr->add_child(target_ctx->root());
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        return Status::OK();
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    }
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    int source_node_id() const { return _source_node_id; }
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    Status clone_node(VExprSPtr* cloned_expr) const override {
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        DORIS_CHECK(cloned_expr != nullptr);
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        *cloned_expr = VTopNPred::create_shared(clone_texpr_node(), _source_node_id, nullptr);
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        return Status::OK();
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    }
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    Status prepare(RuntimeState* state, const RowDescriptor& desc, VExprContext* context) override {
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        _predicate = &state->get_query_ctx()->get_runtime_predicate(_source_node_id);
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        RETURN_IF_ERROR_OR_PREPARED(VExpr::prepare(state, desc, context));
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        ColumnsWithTypeAndName argument_template;
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        argument_template.emplace_back(nullptr, _children[0]->data_type(),
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                                       _children[0]->expr_name());
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        argument_template.emplace_back(nullptr, _children[0]->data_type(), "topn value");
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        _function = SimpleFunctionFactory::instance().get_function(
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                _predicate->is_asc() ? "le" : "ge", argument_template, _data_type, {},
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                state->be_exec_version());
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        if (!_function) {
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            return Status::InternalError("get function failed");
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0
        }
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        return Status::OK();
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    }
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    Status execute_column_impl(VExprContext* context, const Block* block, const Selector* selector,
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                               size_t count, ColumnPtr& result_column) const override {
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        if (!_predicate->has_value()) {
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            result_column = create_always_true_column(count, _data_type->is_nullable());
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            return Status::OK();
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        }
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        Block temp_block;
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        // slot
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        ColumnPtr slot_column;
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        RETURN_IF_ERROR(_children[0]->execute_column(context, block, selector, count, slot_column));
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        auto slot_type = _children[0]->execute_type(block);
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        temp_block.insert({slot_column, slot_type, _children[0]->expr_name()});
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        int slot_id = 0;
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        // topn value
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        Field field = _predicate->get_value();
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        auto column_ptr = _children[0]->data_type()->create_column_const(1, field);
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        int topn_value_id = VExpr::insert_param(&temp_block,
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                                                {column_ptr, _children[0]->data_type(), _expr_name},
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                                                std::max(count, column_ptr->size()));
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        // if error(slot_id == -1), will return.
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        ColumnNumbers arguments = {static_cast<uint32_t>(slot_id),
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                                   static_cast<uint32_t>(topn_value_id)};
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        uint32_t num_columns_without_result = temp_block.columns();
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        // prepare a column to save result
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        temp_block.insert({nullptr, _data_type, _expr_name});
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        RETURN_IF_ERROR(_function->execute(nullptr, temp_block, arguments,
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                                           num_columns_without_result, temp_block.rows()));
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        result_column = std::move(temp_block.get_by_position(num_columns_without_result).column);
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        if (auto mutable_result = IColumn::mutate(std::move(result_column));
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            auto* nullable = check_and_get_column<ColumnNullable>(*mutable_result)) {
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            auto& values = assert_cast<ColumnUInt8&>(*nullable->get_nested_column_ptr()).get_data();
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            const auto& null_map = nullable->get_null_map_data();
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            // Master validates execute_type() against the physical result column. Collapse SQL
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            // NULL to the filter decision here: NULLS FIRST keeps it, while NULLS LAST rejects it.
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            for (size_t row = 0; row < values.size(); ++row) {
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                values[row] = null_map[row] ? _predicate->nulls_first() : values[row];
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            }
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            result_column = nullable->get_nested_column_ptr();
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        } else {
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            result_column = std::move(mutable_result);
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        }
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        DCHECK_EQ(result_column->size(), count);
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        return Status::OK();
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    }
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    // Returns true only for a direct slot binding whose logical fixed-width type exactly matches
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    // `data_type`. Eligibility does not depend on whether the dynamic TopN bound has arrived: a
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    // reader may cache this answer during initialization and observe the bound in a later batch.
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    bool can_execute_on_raw_fixed_values(const DataTypePtr& data_type,
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                                         int column_id) const override;
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    // Compares the contiguous non-NULL physical values with one snapshot of the current TopN bound
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    // and ANDs the result into `matches`. `value_width` must equal the logical Doris value width.
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    // When no bound is available yet, this is deliberately an all-pass operation.
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    Status execute_on_raw_fixed_values(const uint8_t* values, size_t num_values, size_t value_width,
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                                       const DataTypePtr& data_type, int column_id,
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                                       uint8_t* matches) const override;
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    // Returns true for a directly bound STRING-like or VARBINARY slot. As with the fixed-width
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    // capability, a not-yet-published bound does not force the scanner onto a materializing path.
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    bool can_execute_on_raw_binary_values(const DataTypePtr& data_type,
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                                          int column_id) const override;
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    // Compares decoder-owned immutable byte slices with the current TopN bound and ANDs each
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    // decision into `matches`; it never copies the slices into a ColumnString/ColumnVarbinary.
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    Status execute_on_raw_binary_values(const StringRef* values, size_t num_values,
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                                        const DataTypePtr& data_type, int column_id,
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                                        uint8_t* matches) const override;
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    bool raw_predicate_result_for_null() const override {
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        // execute_column() is all-pass until publication; afterwards NULLS FIRST keeps NULL while
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        // NULLS LAST rejects it. Sample this state per fragment just like the mutable bound.
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        return _predicate != nullptr && (!_predicate->has_value() || _predicate->nulls_first());
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    }
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    // Dictionary capability is restricted to a direct slot and NULLS-LAST semantics. It stays
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    // enabled before the first bound so row-group setup can cache an all-pass bitmap; the scan
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    // scheduler retains a per-batch residual and defers dictionary-id filtering while NULL still
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    // matches, then safely resumes it after bound publication.
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    bool can_evaluate_dictionary_filter() const override;
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    // Evaluates every non-NULL entry in the bound slot dictionary against one current-bound
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    // snapshot. kNoMatch proves that no entry can pass; kMayMatch includes both a matching entry and
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    // a not-yet-published bound; kUnsupported reports an absent or incompatible dictionary slot.
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    ZoneMapFilterResult evaluate_dictionary_filter(const DictionaryEvalContext& ctx) const override;
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    const std::string& expr_name() const override { return _expr_name; }
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    // only used in external table (for min-max filter). get `slot > xxx`, not `function(slot) > xxx`.
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    bool get_binary_expr(VExprSPtr& new_root) const {
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        if (!get_child(0)->is_slot_ref()) {
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            // top rf maybe is `xxx order by abs(column) limit xxx`.
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            return false;
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        }
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        if (!_predicate->has_value()) {
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            return false;
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        }
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        auto* slot_ref = assert_cast<VSlotRef*>(get_child(0).get());
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        auto slot_data_type = remove_nullable(slot_ref->data_type());
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        {
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            TFunction fn;
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            TFunctionName fn_name;
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            fn_name.__set_db_name("");
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            fn_name.__set_function_name(_predicate->is_asc() ? "le" : "ge");
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            fn.__set_name(fn_name);
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            fn.__set_binary_type(TFunctionBinaryType::BUILTIN);
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            std::vector<TTypeDesc> arg_types;
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            arg_types.push_back(create_type_desc(slot_data_type->get_primitive_type(),
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                                                 slot_data_type->get_precision(),
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                                                 slot_data_type->get_scale()));
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            arg_types.push_back(create_type_desc(slot_data_type->get_primitive_type(),
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                                                 slot_data_type->get_precision(),
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                                                 slot_data_type->get_scale()));
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            fn.__set_arg_types(arg_types);
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            fn.__set_ret_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
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            fn.__set_has_var_args(false);
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            TExprNode texpr_node;
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            texpr_node.__set_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
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            texpr_node.__set_node_type(TExprNodeType::BINARY_PRED);
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            texpr_node.__set_opcode(_predicate->is_asc() ? TExprOpcode::LE : TExprOpcode::GE);
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            texpr_node.__set_fn(fn);
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            texpr_node.__set_num_children(2);
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            texpr_node.__set_is_nullable(is_nullable());
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            new_root = VectorizedFnCall::create_shared(texpr_node);
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        }
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        {
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            // add slot
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            new_root->add_child(children().at(0));
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        }
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        // add Literal
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        {
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            Field field = _predicate->get_value();
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            TExprNode node = create_texpr_node_from(field, slot_data_type->get_primitive_type(),
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                                                    slot_data_type->get_precision(),
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                                                    slot_data_type->get_scale());
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            new_root->add_child(VLiteral::create_shared(node));
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        }
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        // Since the normal greater than or less than relationship does not consider the relationship of null values, the generated `col >=/<= xxx OR col is null.`
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        if (_predicate->nulls_first()) {
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            VExprSPtr col_is_null_node;
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            {
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                TFunction fn;
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                TFunctionName fn_name;
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                fn_name.__set_db_name("");
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                fn_name.__set_function_name("is_null_pred");
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                fn.__set_name(fn_name);
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                fn.__set_binary_type(TFunctionBinaryType::BUILTIN);
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                std::vector<TTypeDesc> arg_types;
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                arg_types.push_back(create_type_desc(slot_data_type->get_primitive_type(),
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                                                     slot_data_type->get_precision(),
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                                                     slot_data_type->get_scale()));
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                fn.__set_arg_types(arg_types);
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                fn.__set_ret_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
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                fn.__set_has_var_args(false);
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                TExprNode texpr_node;
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                texpr_node.__set_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
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                texpr_node.__set_node_type(TExprNodeType::FUNCTION_CALL);
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                texpr_node.__set_fn(fn);
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                texpr_node.__set_num_children(1);
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                col_is_null_node = VectorizedFnCall::create_shared(texpr_node);
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                // add slot.
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                col_is_null_node->add_child(children().at(0));
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            }
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            VExprSPtr or_node;
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            {
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                TExprNode texpr_node;
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                texpr_node.__set_type(create_type_desc(PrimitiveType::TYPE_BOOLEAN));
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                texpr_node.__set_node_type(TExprNodeType::COMPOUND_PRED);
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                texpr_node.__set_opcode(TExprOpcode::COMPOUND_OR);
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                texpr_node.__set_num_children(2);
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                or_node = VectorizedFnCall::create_shared(texpr_node);
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            }
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            or_node->add_child(col_is_null_node);
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            or_node->add_child(new_root);
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            new_root = or_node;
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0
        }
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        return true;
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    }
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private:
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    int _source_node_id;
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    std::string _expr_name;
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    RuntimePredicate* _predicate = nullptr;
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    FunctionBasePtr _function;
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    VExprContextSPtr _target_ctx;
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};
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} // namespace doris