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/******************************************************************************
* Copyright (c) 2025 AISS Group at Harbin Institute of Technology. All Rights Reserved.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*****************************************************************************/
#include "asnumpy/array/basic.hpp"
#include <aclnnop/aclnn_fill_scalar.h>
#include <aclnnop/aclnn_ones.h>
#include <aclnnop/aclnn_zero.h>
#include <aclnnop/aclnn_eye.h>
#include <aclnnop/aclnn_arange.h>
#include <fmt/core.h>
#include <fmt/format.h>
NPUArray Empty(const std::vector<int64_t>& shape, py::dtype dtype) {
try {
return NPUArray(shape, dtype);
} catch (const std::exception& e) {
throw std::runtime_error(fmt::format("[creation.cpp](empty) NPUArray construction error = {}", e.what()));
}
}
NPUArray EmptyLike(const NPUArray& prototype, py::dtype dtype) {
try {
// 若未指定dtype,使用原型数组的dtype
py::dtype target_dtype = dtype.is_none() ? prototype.dtype() : dtype;
// 基于原型的形状和目标dtype创建空数组
return NPUArray(prototype.shape, target_dtype);
} catch (const std::exception& e) {
throw std::runtime_error(fmt::format("[creation.cpp](empty_like) NPUArray construction error = {}", e.what()));
}
}
NPUArray Zeros(const std::vector<int64_t>& shape, py::dtype dtype) {
auto array = NPUArray(shape, dtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnInplaceZeroGetWorkspaceSize(array.tensorPtr, &workspaceSize, &executor);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclnnInplaceZeroGetWorkspaceSize error = {}",error));
// 检查workspaceSize是否有效
if(workspaceSize < 0) throw std::runtime_error(fmt::format("[creation.cpp](zeros) Invalid workspaceSize: {}", workspaceSize));
// 申请工作空间
void *workspaceAddr = nullptr;
if(workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclrtMalloc error = {}",error));
}
error = aclnnInplaceZero(workspaceAddr, workspaceSize, executor, nullptr);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclnnInplaceZero error = {}",error));
error = aclrtSynchronizeDevice();
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclrtSynchronizeDevice error = {}",error));
// 执行结束后释放工作空间
if(workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
return array;
}
NPUArray Zeros_like(const NPUArray& other, py::dtype dtype) {
auto array = NPUArray(other.shape, dtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnInplaceZeroGetWorkspaceSize(array.tensorPtr, &workspaceSize, &executor);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclnnInplaceZeroGetWorkspaceSize error = {}",error));
// 检查workspaceSize是否有效
if(workspaceSize < 0) throw std::runtime_error(fmt::format("[creation.cpp](zeros) Invalid workspaceSize: {}", workspaceSize));
// 申请工作空间
void *workspaceAddr = nullptr;
if(workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclrtMalloc error = {}",error));
}
error = aclnnInplaceZero(workspaceAddr, workspaceSize, executor, nullptr);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclnnInplaceZero error = {}",error));
error = aclrtSynchronizeDevice();
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](zeros) aclrtSynchronizeDevice error = {}",error));
// 执行结束后释放工作空间
if(workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
return array;
}
NPUArray Full(const std::vector<int64_t>& shape, const py::object& value, py::dtype dtype) {
auto array = NPUArray(shape, dtype);
double valueDouble = 0;
if (value.is_none()) {
throw std::runtime_error("[creation.cpp](full) Input is None");
}
try {
valueDouble = py::cast<double>(value);
} catch (const py::cast_error& e) {
throw std::runtime_error("[creation.cpp](full) Conversion error: " + std::string(e.what()));
}
aclScalar* scalar = CreateScalar(valueDouble, array.aclDtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnInplaceFillScalarGetWorkspaceSize(array.tensorPtr, scalar, &workspaceSize, &executor);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclnnInplaceFillScalarGetWorkspaceSize error = {}",error));
// 检查workspaceSize是否有效
if(workspaceSize < 0) throw std::runtime_error(fmt::format("[creation.cpp](full) Invalid workspaceSize: {}", workspaceSize));
// 3. 申请工作空间
void *workspaceAddr = nullptr;
if(workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclrtMalloc error = {}",error));
}
error = aclnnInplaceFillScalar(workspaceAddr, workspaceSize, executor, nullptr);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclnnInplaceFillScalar error = {}", error));
error = aclrtSynchronizeDevice();
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclrtSynchronizeDevice error = {}",error));
// 6. 释放
if(workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
aclDestroyScalar(scalar);
return array;
}
NPUArray Full_like(const NPUArray& other, const py::object& value, py::dtype dtype) {
auto array = NPUArray(other.shape, dtype);
double valueDouble = 0;
if (value.is_none()) {
throw std::runtime_error("[creation.cpp](full) Input is None");
}
try {
valueDouble = py::cast<double>(value);
} catch (const py::cast_error& e) {
throw std::runtime_error("[creation.cpp](full) Conversion error: " + std::string(e.what()));
}
aclScalar* scalar = CreateScalar(valueDouble, array.aclDtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnInplaceFillScalarGetWorkspaceSize(array.tensorPtr, scalar, &workspaceSize, &executor);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclnnInplaceFillScalarGetWorkspaceSize error = {}",error));
// 检查workspaceSize是否有效
if(workspaceSize < 0) throw std::runtime_error(fmt::format("[creation.cpp](full) Invalid workspaceSize: {}", workspaceSize));
// 3. 申请工作空间
void *workspaceAddr = nullptr;
if(workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclrtMalloc error = {}",error));
}
error = aclnnInplaceFillScalar(workspaceAddr, workspaceSize, executor, nullptr);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclnnInplaceFillScalar error = {}", error));
error = aclrtSynchronizeDevice();
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](full) aclrtSynchronizeDevice error = {}",error));
// 6. 释放
if(workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
aclDestroyScalar(scalar);
return array;
}
NPUArray Eye(int64_t n, py::dtype dtype) {
auto array = NPUArray({n, n}, dtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnEyeGetWorkspaceSize(n, n, array.tensorPtr, &workspaceSize, &executor);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](eye) aclnnEyeGetWorkspaceSize error = {}",error));
// 检查workspaceSize是否有效
if(workspaceSize < 0) throw std::runtime_error(fmt::format("[creation.cpp](eye) Invalid workspaceSize: {}", workspaceSize));
// 申请工作空间
void *workspaceAddr = nullptr;
if(workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](eye) aclrtMalloc error = {}",error));
}
error = aclnnEye(workspaceAddr, workspaceSize, executor, nullptr);
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](eye) aclnnEye error = {}",error));
error = aclrtSynchronizeDevice();
if(error != ACL_SUCCESS) throw std::runtime_error(fmt::format("[creation.cpp](eye) aclrtSynchronizeDevice error = {}",error));
// 执行结束后释放工作空间
if(workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
return array;
}
NPUArray Ones(const std::vector<int64_t>& shape, py::dtype dtype) {
auto array = NPUArray(shape, dtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnInplaceOneGetWorkspaceSize(array.tensorPtr, &workspaceSize, &executor);
if(error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones) aclnnInplaceOneGetWorkspaceSize error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
// 检查workspaceSize是否有效
if(workspaceSize < 0) throw std::runtime_error(fmt::format("[basic.cpp](ones) Invalid workspaceSize: {}", workspaceSize));
// 申请工作空间
void *workspaceAddr = nullptr;
if(workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if(error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones) aclrtMalloc error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
}
error = aclnnInplaceOne(workspaceAddr, workspaceSize, executor, nullptr);
if(error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones) aclnnInplaceOne error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
error = aclrtSynchronizeDevice();
if(error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones) aclrtSynchronizeDevice error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
// 执行结束后释放工作空间
if(workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
return array;
}
NPUArray Identity(int64_t n, py::dtype dtype) {
auto array = NPUArray({n, n}, dtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnEyeGetWorkspaceSize(n, n, // 行, 列, 对角线偏移(k=0)
array.tensorPtr,
&workspaceSize,
&executor);
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](identity) aclnnEyeGetWorkspaceSize error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
if (workspaceSize < 0) {
throw std::runtime_error(fmt::format("[basic.cpp](identity) Invalid workspaceSize: {}", workspaceSize));
}
void* workspaceAddr = nullptr;
if (workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](identity) aclrtMalloc error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
}
error = aclnnEye(workspaceAddr, workspaceSize, executor, nullptr);
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](identity) aclnnEye error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
error = aclrtSynchronizeDevice();
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](identity) aclrtSynchronizeDevice error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg != nullptr && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
if (workspaceAddr != nullptr) {
aclrtFree(workspaceAddr);
}
return array;
}
NPUArray ones_like(const NPUArray& other, py::dtype dtype) {
auto array = NPUArray(other.shape, dtype);
uint64_t workspaceSize = 0;
aclOpExecutor *executor;
auto error = aclnnInplaceOneGetWorkspaceSize(array.tensorPtr, &workspaceSize, &executor);
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones_like) aclnnInplaceOneGetWorkspaceSize error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
if (workspaceSize < 0) {
throw std::runtime_error(fmt::format("[basic.cpp](ones_like) Invalid workspaceSize: {}", workspaceSize));
}
void* workspaceAddr = nullptr;
if (workspaceSize > 0) {
error = aclrtMalloc(&workspaceAddr, workspaceSize, ACL_MEM_MALLOC_HUGE_FIRST);
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones_like) aclrtMalloc error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
}
error = aclnnInplaceOne(workspaceAddr, workspaceSize, executor, nullptr);
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones_like) aclnnInplaceOne error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
error = aclrtSynchronizeDevice();
if (error != ACL_SUCCESS) {
std::string error_msg = fmt::format("[basic.cpp](ones_like) aclrtSynchronizeDevice error = {}", error);
const char* detailed_msg = aclGetRecentErrMsg();
if (detailed_msg && strlen(detailed_msg) > 0) {
error_msg += std::string(" - ") + detailed_msg;
}
throw std::runtime_error(error_msg);
}
if (workspaceAddr) {
aclrtFree(workspaceAddr);
}
return array;
}