Co-authored-by: yinyj17 <yinyijun92@gmail.com> Co-authored-by: xianyu-w <707512433@qq.com> Co-authored-by: jingtaoye35 <1255153887@qq.com>
300 lines
9.9 KiB
C++
300 lines
9.9 KiB
C++
/**
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* Copyright (c) 2021 OceanBase
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* OceanBase CE is licensed under Mulan PubL v2.
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* You can use this software according to the terms and conditions of the Mulan PubL v2.
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* You may obtain a copy of Mulan PubL v2 at:
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* http://license.coscl.org.cn/MulanPubL-2.0
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* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND,
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* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT,
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* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE.
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* See the Mulan PubL v2 for more details.
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*/
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#define USING_LOG_PREFIX SQL_ENG
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#include "ob_expr_sqrt.h"
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#include <cmath>
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#include <type_traits>
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#include "share/object/ob_obj_cast.h"
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#include "objit/common/ob_item_type.h"
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//#include "sql/engine/expr/ob_expr_promotion_util.h"
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#include "sql/session/ob_sql_session_info.h"
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using namespace oceanbase::common;
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using namespace oceanbase::sql;
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namespace oceanbase
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{
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namespace sql
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{
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ObExprSqrt::ObExprSqrt(ObIAllocator &alloc)
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: ObFuncExprOperator(alloc, T_FUN_SYS_SQRT, N_SQRT, 1, VALID_FOR_GENERATED_COL, NOT_ROW_DIMENSION)
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{
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}
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ObExprSqrt::~ObExprSqrt()
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{
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}
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int ObExprSqrt::calc_result_type1(ObExprResType &type,
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ObExprResType &type1,
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common::ObExprTypeCtx &type_ctx) const
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{
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UNUSED(type_ctx);
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int ret = OB_SUCCESS;
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if (NOT_ROW_DIMENSION != row_dimension_ || ObMaxType == type1.get_type()) {
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ret = OB_ERR_INVALID_TYPE_FOR_OP;
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} else if (!lib::is_oracle_mode()) {
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type.set_double();
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} else {
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if (ob_is_real_type(type1.get_type())) {
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type.set_type(type1.get_type());
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} else {
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type.set_number();
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}
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type.set_scale(ObAccuracy::DDL_DEFAULT_ACCURACY2[ORACLE_MODE][type.get_type()].get_scale());
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type.set_precision(ObAccuracy::DDL_DEFAULT_ACCURACY2[ORACLE_MODE][type.get_type()].get_precision());
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}
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type1.set_calc_type(type.get_type());
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ObExprOperator::calc_result_flag1(type, type1);
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return ret;
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}
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int calc_sqrt_expr_mysql(const ObExpr &expr, ObEvalCtx &ctx,
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ObDatum &res_datum)
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{
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int ret = OB_SUCCESS;
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ObDatum *arg = NULL;
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if (OB_FAIL(expr.args_[0]->eval(ctx, arg))) {
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LOG_WARN("eval arg failed", K(ret), K(expr));
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} else if (arg->is_null()) {
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res_datum.set_null();
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} else {
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double val = arg->get_double();
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if (val < 0) {
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res_datum.set_null();
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} else {
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res_datum.set_double(std::sqrt(val));
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}
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}
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return ret;
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}
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int calc_sqrt_expr_mysql_in_batch(const ObExpr &expr,
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ObEvalCtx &ctx,
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const ObBitVector &skip,
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const int64_t batch_size)
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{
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int ret = OB_SUCCESS;
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if (OB_FAIL(expr.args_[0]->eval_batch(ctx, skip, batch_size))) {
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LOG_WARN("vectorized evaluate failed", K(ret), K(expr));
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} else {
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ObBitVector &eval_flag = expr.get_evaluated_flags(ctx);
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ObDatumVector arg_datums = expr.args_[0]->locate_expr_datumvector(ctx);
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ObDatum *res_datums = expr.locate_batch_datums(ctx);
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for (int64_t i = 0; i < batch_size; ++i) {
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if (!eval_flag.contain(i) && !skip.contain(i)) {
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if (arg_datums.at(i)->is_null() || arg_datums.at(i)->get_double() < 0) {
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res_datums[i].set_null();
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} else {
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res_datums[i].set_double(std::sqrt(arg_datums.at(i)->get_double()));
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}
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}
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}
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}
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return ret;
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}
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int calc_sqrt_expr_oracle_double(const ObExpr &expr, ObEvalCtx &ctx,
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ObDatum &res_datum)
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{
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int ret = OB_SUCCESS;
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ObDatum *arg = NULL;
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if (OB_FAIL(expr.args_[0]->eval(ctx, arg))) {
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LOG_WARN("eval arg failed", K(ret), K(expr));
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} else if (arg->is_null()) {
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res_datum.set_null();
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} else {
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ObObjType arg_type = expr.args_[0]->datum_meta_.type_;
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if (ObDoubleType == arg_type) {
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double val = arg->get_double();
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if (val < 0) {
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res_datum.set_double(NAN);
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} else {
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res_datum.set_double(std::sqrt(val));
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}
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} else if (ObFloatType == arg_type) {
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float val = arg->get_float();
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if (val < 0) {
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res_datum.set_float(NAN);
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} else {
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res_datum.set_float(sqrtf(val));
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}
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} else {
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ret = OB_ERR_UNEXPECTED;
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LOG_WARN("unexpected arg type", K(ret), K(arg_type));
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}
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}
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return ret;
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}
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template <typename T>
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int calc_sqrt_expr_oracle_double_in_batch_impl(const ObExpr &expr,
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ObEvalCtx &ctx,
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const ObBitVector &skip,
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const int64_t batch_size)
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{
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ObBitVector &eval_flag = expr.get_evaluated_flags(ctx);
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ObDatumVector arg_datums = expr.args_[0]->locate_expr_datumvector(ctx);
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ObDatum *res_datums = expr.locate_batch_datums(ctx);
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int ret = OB_SUCCESS;
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if (std::is_same<T, float>::value) {
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for (int64_t i = 0; i < batch_size && OB_SUCC(ret); ++i) {
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if (!eval_flag.contain(i) && !skip.contain(i)) {
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ObDatum *arg = arg_datums.at(i);
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if (arg->is_null()) {
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res_datums[i].set_null();
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} else if (arg->get_float() < 0) {
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res_datums[i].set_float(NAN);
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} else {
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res_datums[i].set_float(std::sqrt(arg->get_float()));
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}
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}
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}
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} else if (std::is_same<T, double>::value) {
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for (int64_t i = 0; i < batch_size && OB_SUCC(ret); ++i) {
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if (!eval_flag.contain(i) && !skip.contain(i)) {
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ObDatum *arg = arg_datums.at(i);
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if (arg->is_null()) {
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res_datums[i].set_null();
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} else if (arg->get_double() < 0) {
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res_datums[i].set_double(NAN);
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} else {
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res_datums[i].set_double(std::sqrt(arg->get_double()));
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}
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}
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}
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}
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return ret;
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}
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int calc_sqrt_expr_oracle_double_in_batch(const ObExpr &expr,
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ObEvalCtx &ctx,
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const ObBitVector &skip,
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const int64_t batch_size)
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{
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int ret = OB_SUCCESS;
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if (OB_FAIL(expr.args_[0]->eval_batch(ctx, skip, batch_size))) {
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LOG_WARN("vectorized evaluate failed", K(ret), K(expr));
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} else {
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ObObjType arg_type = expr.args_[0]->datum_meta_.type_;
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switch (arg_type) {
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case ObDoubleType:
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ret = calc_sqrt_expr_oracle_double_in_batch_impl<double>(expr, ctx, skip, batch_size);
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break;
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case ObFloatType:
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ret = calc_sqrt_expr_oracle_double_in_batch_impl<float>(expr, ctx, skip, batch_size);
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break;
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default:
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ret = OB_ERR_UNEXPECTED;
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LOG_WARN("unexpected arg type", K(ret), K(arg_type));
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break;
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}
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}
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return ret;
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}
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int calc_sqrt_expr_oracle_number(const ObExpr &expr, ObEvalCtx &ctx,
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ObDatum &res_datum)
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{
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int ret = OB_SUCCESS;
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ObDatum *arg = NULL;
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if (OB_FAIL(expr.args_[0]->eval(ctx, arg))) {
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LOG_WARN("eval arg failed", K(ret), K(expr));
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} else if (arg->is_null()) {
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res_datum.set_null();
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} else {
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const number::ObNumber arg_nmb(arg->get_number());
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number::ObNumber res_nmb;
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ObEvalCtx::TempAllocGuard alloc_guard(ctx);
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if (OB_FAIL(arg_nmb.sqrt(res_nmb, alloc_guard.get_allocator()))) {
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LOG_WARN("calc sqrt failed", K(ret), K(arg_nmb), K(res_nmb));
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} else {
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res_datum.set_number(res_nmb);
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}
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}
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return ret;
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}
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int calc_sqrt_expr_oracle_number_in_batch(const ObExpr &expr,
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ObEvalCtx &ctx,
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const ObBitVector &skip,
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const int64_t batch_size)
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{
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int ret = OB_SUCCESS;
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if (OB_FAIL(expr.args_[0]->eval_batch(ctx, skip, batch_size))) {
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LOG_WARN("vectorized evaluate failed", K(ret), K(expr));
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} else {
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ObBitVector &eval_flag = expr.get_evaluated_flags(ctx);
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ObDatumVector arg_datums = expr.args_[0]->locate_expr_datumvector(ctx);
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ObDatum *res_datums = expr.locate_batch_datums(ctx);
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number::ObNumber res_nmb;
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number::ObNumber arg_nmb;
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char temp_buf_alloc[number::ObNumber::MAX_CALC_BYTE_LEN];
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ObDataBuffer temp_allocator(temp_buf_alloc, number::ObNumber::MAX_CALC_BYTE_LEN);
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for (int64_t i = 0; i < batch_size && OB_SUCC(ret); ++i) {
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if (!eval_flag.contain(i) && !skip.contain(i)) {
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if (arg_datums.at(i)->is_null()) {
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res_datums[i].set_null();
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} else {
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arg_nmb = arg_datums.at(i)->get_number();
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if (OB_FAIL(arg_nmb.sqrt(res_nmb, temp_allocator))) {
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LOG_WARN("calc sqrt failed", K(ret), K(arg_nmb), K(res_nmb));
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} else {
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res_datums[i].set_number(res_nmb);
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}
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temp_allocator.free();
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}
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}
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}
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}
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return ret;
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}
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int ObExprSqrt::cg_expr(ObExprCGCtx &expr_cg_ctx, const ObRawExpr &raw_expr,
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ObExpr &rt_expr) const
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{
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int ret = OB_SUCCESS;
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UNUSED(expr_cg_ctx);
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UNUSED(raw_expr);
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if (OB_UNLIKELY(1 != rt_expr.arg_cnt_)) {
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ret = OB_ERR_UNEXPECTED;
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LOG_WARN("invalid arg_cnt_ of expr", K(ret), K(rt_expr));
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} else {
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ObObjType arg_res_type = rt_expr.args_[0]->datum_meta_.type_;
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if (lib::is_oracle_mode()) {
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if (ObDoubleType == arg_res_type || ObFloatType == arg_res_type) {
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rt_expr.eval_func_ = calc_sqrt_expr_oracle_double;
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rt_expr.eval_batch_func_ = calc_sqrt_expr_oracle_double_in_batch;
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} else if (ObNumberType == arg_res_type) {
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rt_expr.eval_func_ = calc_sqrt_expr_oracle_number;
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rt_expr.eval_batch_func_ = calc_sqrt_expr_oracle_number_in_batch;
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} else {
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ret = OB_ERR_UNEXPECTED;
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LOG_WARN("arg type must be double or number in oracle mode", K(ret),
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K(arg_res_type), K(rt_expr));
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}
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} else {
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if (ObDoubleType == arg_res_type) {
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rt_expr.eval_func_ = calc_sqrt_expr_mysql;
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rt_expr.eval_batch_func_ = calc_sqrt_expr_mysql_in_batch;
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} else {
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ret = OB_ERR_UNEXPECTED;
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LOG_WARN("arg_res_type must be double in mysql mode", K(ret), K(arg_res_type));
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}
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}
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}
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return ret;
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}
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} //namespace sql
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} //namespace oceanbase
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