eager.cc 47.8 KB
Newer Older
1 2 3 4 5 6 7 8 9 10 11
/* Copyright (c) 2021 PaddlePaddle Authors. 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. */
// disable numpy compile error
12 13
#include "paddle/fluid/pybind/eager.h"

14
#include <Python.h>
15 16 17 18
// Avoid a problem with copysign defined in pyconfig.h on Windows.
#ifdef copysign
#undef copysign
#endif
19 20 21 22

#include <string>
#include <vector>

23
#include "paddle/fluid/eager/accumulation/accumulation_node.h"
24 25 26
#include "paddle/fluid/eager/api/all.h"
#include "paddle/fluid/eager/autograd_meta.h"
#include "paddle/fluid/eager/utils.h"
27
#include "paddle/fluid/framework/convert_utils.h"
28 29 30 31
#include "paddle/fluid/memory/allocation/allocator.h"
#include "paddle/fluid/memory/memcpy.h"
#include "paddle/fluid/platform/enforce.h"
#include "paddle/fluid/pybind/eager_utils.h"
32 33 34
#include "paddle/phi/common/data_type.h"
#include "paddle/phi/core/compat/convert_utils.h"
#include "paddle/phi/core/dense_tensor.h"
35
#include "pybind11/detail/internals.h"
36 37
#include "pybind11/numpy.h"
#include "pybind11/pybind11.h"
38
#pragma GCC diagnostic ignored "-Wmissing-field-initializers"
39
#include "paddle/fluid/framework/phi_utils.h"
40
#include "paddle/fluid/framework/python_headers.h"
41
#include "paddle/fluid/pybind/exception.h"
42
#include "paddle/fluid/pybind/tensor_py.h"
J
Jack Zhou 已提交
43
#include "paddle/phi/core/string_tensor.h"
44 45 46 47 48
namespace paddle {
namespace pybind {

namespace py = ::pybind11;

49 50
extern PyTypeObject* p_tensor_type;
extern PyTypeObject* p_string_tensor_type;  // For StringTensor
51
extern PyTypeObject* g_vartype_pytype;
52
extern PyTypeObject* g_framework_tensor_pytype;
53

54
PyObject* TensorNew(PyTypeObject* type, PyObject* args, PyObject* kwargs) {
55 56
  PyObject* obj = type->tp_alloc(type, 0);
  if (obj) {
57
    auto v = reinterpret_cast<TensorObject*>(obj);
58
    new (&(v->tensor)) paddle::Tensor();
59 60 61 62
  }
  return obj;
}

63
// TODO(jiabin): Overload this once we need more constructor in Python
64 65
void EmptyTensorInitializer(TensorObject* self,
                            const std::string& name,
66
                            const paddle::platform::Place& place,
67 68
                            bool persistable = false,
                            int stop_gradient = -1,
69 70
                            framework::proto::VarType::Type dtype =
                                paddle::framework::proto::VarType::FP32,
71
                            const std::vector<int>& dims = {0},
72 73
                            framework::proto::VarType::Type var_type =
                                paddle::framework::proto::VarType::LOD_TENSOR) {
74
  auto ddims = phi::make_ddim(dims);
75 76
  self->tensor.set_name(name);
  auto autograd_meta = egr::EagerUtils::autograd_meta(&(self->tensor));
77
  autograd_meta->SetPersistable(persistable);
78 79 80
  if (stop_gradient != -1) {
    autograd_meta->SetStopGradient(static_cast<bool>(stop_gradient));
  }
81 82
  if (var_type == paddle::framework::proto::VarType::LOD_TENSOR) {
    // TODO(jiabin): Maybe support LOD later
83
    std::shared_ptr<phi::DenseTensor> dense_tensor = nullptr;
84
    if (dims.size() == 1 && dims[0] == 0) {
85 86 87 88 89 90 91 92
      std::shared_ptr<phi::Allocation> allocation_ptr = nullptr;
      dense_tensor = std::make_shared<phi::DenseTensor>(
          allocation_ptr,
          phi::DenseTensorMeta(paddle::framework::TransToPhiDataType(dtype),
                               ddims));
    } else {
      // TODO(dev): we need enhance check for ddims.
      dense_tensor = std::make_shared<phi::DenseTensor>(
Z
zyfncg 已提交
93
          std::make_shared<phi::Allocation>(),
94 95 96
          phi::DenseTensorMeta(paddle::framework::TransToPhiDataType(dtype),
                               ddims));
    }
97
    self->tensor.set_impl(dense_tensor);
98 99 100 101
  } else if (var_type == paddle::framework::proto::VarType::SELECTED_ROWS) {
    std::shared_ptr<phi::SelectedRows> tensor =
        std::make_shared<phi::SelectedRows>();
    self->tensor.set_impl(tensor);
102 103 104
  }

  if (!autograd_meta->GetMutableGradNode()) {
105 106
    autograd_meta->SetGradNode(
        std::make_shared<egr::GradNodeAccumulation>(autograd_meta));
107 108 109
    VLOG(3) << "Tensor(" << name
            << ") have not GradNode, add GradNodeAccumulation"
            << autograd_meta->GradNode() << " for it.";
110 111 112
  }
}

113 114
void EmptyStringTensorInitializer(TensorObject* self,
                                  const std::string& name,
J
Jack Zhou 已提交
115 116 117 118 119 120 121
                                  const paddle::platform::Place& place,
                                  const std::vector<int>& dims = {}) {
  auto ddims = phi::make_ddim(dims);
  self->tensor.set_name(name);
  // Note(zhoushunjie): Only support CPUPlace when create StringTensor
  auto actual_place = platform::CPUPlace();
  // Allocate memory
122
  paddle::experimental::DefaultAllocator string_allocator(actual_place);
J
Jack Zhou 已提交
123
  std::shared_ptr<phi::StringTensor> string_tensor =
124 125
      std::make_shared<phi::StringTensor>(&string_allocator,
                                          phi::StringTensorMeta{ddims});
J
Jack Zhou 已提交
126 127 128 129 130 131
  if (phi::product(ddims) > 0) {
    string_tensor->mutable_data(actual_place);
  }
  self->tensor.set_impl(string_tensor);
}

132 133
void InitTensorWithNumpyValue(TensorObject* self,
                              const py::object& array,
134
                              const paddle::platform::Place& place,
135
                              bool zero_copy = false) {
136
  PADDLE_ENFORCE_EQ(
137 138
      self->tensor.defined(),
      true,
139
      paddle::platform::errors::Fatal(
140 141
          "Calling InitTensorWithNumpyValue of Eager Tensor without "
          "EmptyTensorInitializer is "
142 143
          "forbidden. Please check your code and make sure you new a "
          "eager tensor before init it with NumPy."));
144 145
  phi::DenseTensor* impl_ptr =
      static_cast<phi::DenseTensor*>(self->tensor.impl().get());
146
  if (platform::is_cpu_place(place)) {
147
    SetTensorFromPyArray<platform::CPUPlace>(impl_ptr, array, place, zero_copy);
148
  } else if (platform::is_xpu_place(place)) {
149
    SetTensorFromPyArray<platform::XPUPlace>(impl_ptr, array, place, zero_copy);
150
  } else if (platform::is_gpu_place(place)) {
151 152
    SetTensorFromPyArray<platform::CUDAPlace>(
        impl_ptr, array, place, zero_copy);
153
  } else if (platform::is_cuda_pinned_place(place)) {
154 155
    SetTensorFromPyArray<platform::CUDAPinnedPlace>(
        impl_ptr, array, place, zero_copy);
156
  } else if (platform::is_custom_place(place)) {
157 158
    SetTensorFromPyArray<platform::CustomPlace>(
        impl_ptr, array, place, zero_copy);
159 160 161
  } else {
    PADDLE_THROW(platform::errors::InvalidArgument(
        "Place should be one of "
张春乔 已提交
162
        "CPUPlace/XPUPlace/CUDAPlace/CUDAPinnedPlace/CustomPlace"));
163 164 165
  }
}

J
Jack Zhou 已提交
166 167
void InitStringTensorWithNumpyValue(TensorObject* self, const py::object& obj) {
  PADDLE_ENFORCE_EQ(
168 169
      self->tensor.defined(),
      true,
J
Jack Zhou 已提交
170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188
      paddle::platform::errors::Fatal(
          "Calling InitStringTensorWithNumpyValue of Eager StringTensor "
          "without "
          "EmptyStringTensorInitializer is "
          "forbidden. Please check your code and make sure you new a "
          "eager tensor before init it with NumPy."));
  phi::StringTensor* impl_ptr =
      static_cast<phi::StringTensor*>(self->tensor.impl().get());
  paddle::platform::Place place = impl_ptr->place();
  auto array = obj.cast<py::array>();
  if (platform::is_cpu_place(place)) {
    SetStringTensorFromPyArray<platform::CPUPlace>(impl_ptr, array, place);
  } else {
    PADDLE_THROW(platform::errors::InvalidArgument(
        "StringTensor only support CPUPlace now, but receive %s",
        place.DebugString()));
  }
}

189
void InitTensorWithTensor(TensorObject* self,
190
                          const paddle::Tensor& src,
191 192
                          const paddle::platform::Place& place,
                          const std::string& name) {
193
  self->tensor.set_name(name);
C
Chen Weihang 已提交
194
  if (place == src.place()) {
195
    self->tensor.set_impl(src.impl());
196 197
    VLOG(4) << "Same place, do ShareDataWith";
  } else {
198
    self->tensor.set_impl(src.copy_to(place, true).impl());
199 200 201
    VLOG(4) << "Different place, do TensorCopy";
  }
  if (src.get_autograd_meta()) {
202
    egr::EagerUtils::autograd_meta(&(self->tensor))
203 204 205
        ->SetPersistable(
            egr::EagerUtils::unsafe_autograd_meta(src)->Persistable());
  } else {
206
    egr::EagerUtils::autograd_meta(&(self->tensor))->SetPersistable(false);
207 208 209
  }
}

210
void InitTensorWithFrameworkTensor(TensorObject* self,
211
                                   const phi::DenseTensor& src,
212 213
                                   const paddle::platform::Place& place,
                                   const std::string& name) {
214
  self->tensor.set_name(name);
215
  if (place == src.place()) {
216
    self->tensor.set_impl(std::make_shared<phi::DenseTensor>(src));
217 218
    VLOG(4) << "Same place, do ShareDataWith";
  } else {
219
    auto temp = paddle::Tensor(std::make_shared<phi::DenseTensor>(src));
220
    self->tensor.set_impl(temp.copy_to(place, true).impl());
221 222
    VLOG(4) << "Different place, do TensorCopy";
  }
223
  egr::EagerUtils::autograd_meta(&(self->tensor))->SetPersistable(false);
224
}
225

J
Jack Zhou 已提交
226
void InitStringTensorWithStringTensor(TensorObject* self,
227
                                      const paddle::Tensor& src,
J
Jack Zhou 已提交
228 229 230 231 232 233 234 235 236
                                      const paddle::platform::Place& place,
                                      const std::string& name) {
  self->tensor.set_name(name);
  auto impl = std::static_pointer_cast<phi::StringTensor>(src.impl());
  self->tensor.set_impl(impl);
  VLOG(4)
      << "Do ShareDataWith when using StringTensor to initialize StringTensor";
}

237 238
py::object ParsePyArray(
    std::unordered_map<std::string, PyObject*> kws_map,
239 240 241 242
    std::unordered_map<std::string, Py_ssize_t> kw_order_map,
    PyObject* args,
    bool flag_kwargs,
    Py_ssize_t args_num) {
243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264
  py::object numpy_value = py::object();

  if (kw_order_map["value"] <= args_num) {
    numpy_value = py::object(
        py::handle(PyTuple_GET_ITEM(args, kw_order_map["value"] - 1)), true);
  } else {
    if (flag_kwargs && kws_map["value"] != NULL) {
      numpy_value = py::object(py::handle(kws_map["value"]), true);
    } else {
      PADDLE_THROW(platform::errors::InvalidArgument(
          "The first expected arguments is {value: PyArray}, "
          "but could not parse the first argument {value: PyArray} "
          "successfully. "
          "Please check your input first and make sure you are on the right "
          "way."));
    }
  }
  return numpy_value;
}

paddle::platform::Place ParsePlace(
    std::unordered_map<std::string, PyObject*> kws_map,
265 266 267 268
    std::unordered_map<std::string, Py_ssize_t> kw_order_map,
    PyObject* args,
    bool flag_kwargs,
    Py_ssize_t args_num) {
269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286
  paddle::platform::Place place =
      egr::Controller::Instance().GetExpectedPlace();

  if (kw_order_map["place"] <= args_num) {
    place = CastPyArg2Place(PyTuple_GET_ITEM(args, kw_order_map["place"] - 1),
                            kw_order_map["place"] - 1);
  } else {
    if (flag_kwargs && kws_map["place"] != NULL) {
      place = CastPyArg2Place(kws_map["place"], 0);
    } else {
      // default
      return place;
    }
  }
  return place;
}

// boolean arguments: zero_copy, stop_gradient, persistable
287 288 289
int ParseBooleanArgs(std::string key,
                     std::unordered_map<std::string, PyObject*> kws_map,
                     std::unordered_map<std::string, Py_ssize_t> kw_order_map,
290 291 292
                     PyObject* args,
                     bool flag_kwargs,
                     Py_ssize_t args_num) {
293
  int res = -1;
294 295

  if (kw_order_map[key] <= args_num) {
296 297
    res = static_cast<int>(CastPyArg2AttrBoolean(
        PyTuple_GET_ITEM(args, kw_order_map[key] - 1), kw_order_map[key] - 1));
298 299
  } else {
    if (flag_kwargs && kws_map[key] != NULL) {
300
      res = static_cast<int>(CastPyArg2AttrBoolean(kws_map[key], 0));
301 302 303 304 305 306 307
    }
  }
  return res;
}

std::string ParseName(std::unordered_map<std::string, PyObject*> kws_map,
                      std::unordered_map<std::string, Py_ssize_t> kw_order_map,
308 309 310
                      PyObject* args,
                      bool flag_kwargs,
                      Py_ssize_t args_num,
J
Jack Zhou 已提交
311
                      std::string unique_name_prefix = "generated_tensor") {
312 313 314 315 316
  std::string act_name = "";
  if (kw_order_map["name"] <= args_num) {
    PyObject* name_obj = PyTuple_GET_ITEM(args, kw_order_map["name"] - 1);
    if (name_obj == Py_None) {
      act_name =
J
Jack Zhou 已提交
317
          egr::Controller::Instance().GenerateUniqueName(unique_name_prefix);
318 319 320 321 322
    } else {
      act_name = CastPyArg2AttrString(name_obj, kw_order_map["name"] - 1);
    }
  } else {
    if (flag_kwargs) {
J
Jiabin Yang 已提交
323
      if ((kws_map["name"] == NULL) || (kws_map["name"] == Py_None)) {
324
        act_name =
J
Jack Zhou 已提交
325
            egr::Controller::Instance().GenerateUniqueName(unique_name_prefix);
326 327 328 329 330
      } else {
        act_name = CastPyArg2AttrString(kws_map["name"], 0);
      }
    } else {
      act_name =
J
Jack Zhou 已提交
331
          egr::Controller::Instance().GenerateUniqueName(unique_name_prefix);
332 333 334 335 336
    }
  }
  return act_name;
}

337
// initialize Tensor by PyArray(first argument is PyArray,
338
// mix args and kwargs) automatically.
339 340
void AutoInitTensorByPyArray(TensorObject* py_tensor_ptr,
                             std::unordered_map<std::string, PyObject*> kws_map,
341 342
                             PyObject* args,
                             bool flag_kwargs,
343 344 345
                             Py_ssize_t args_num) {
  // The first argument of the Tensor constructor is PyArray,
  // there are 6 arguments to construct the new Tensor,
346 347 348 349 350
  // kw_order_map's key is every arguments of the constructor,
  // kw_order_map's value is the position of the arguments respectively.
  // If u want to update this constructor with new arguments,
  // need to update this map and to add or change related code.
  std::unordered_map<std::string, Py_ssize_t> kw_order_map{
351 352 353 354 355 356
      {"value", 1},
      {"place", 2},
      {"persistable", 3},
      {"zero_copy", 4},
      {"name", 5},
      {"stop_gradient", 6}};
357 358 359 360 361 362 363

  py::object numpy_value = py::object();
  paddle::platform::Place place =
      egr::Controller::Instance().GetExpectedPlace();
  bool persistable = false;
  bool zero_copy = false;
  std::string act_name = "";
364
  int stop_gradient = -1;
365 366 367 368

  numpy_value =
      ParsePyArray(kws_map, kw_order_map, args, flag_kwargs, args_num);
  place = ParsePlace(kws_map, kw_order_map, args, flag_kwargs, args_num);
369 370 371 372 373 374 375 376
  persistable =
      (1 ==
       ParseBooleanArgs(
           "persistable", kws_map, kw_order_map, args, flag_kwargs, args_num));
  zero_copy =
      (1 ==
       ParseBooleanArgs(
           "zero_copy", kws_map, kw_order_map, args, flag_kwargs, args_num));
377
  act_name = ParseName(kws_map, kw_order_map, args, flag_kwargs, args_num);
378 379
  stop_gradient = ParseBooleanArgs(
      "stop_gradient", kws_map, kw_order_map, args, flag_kwargs, args_num);
380

381 382
  EmptyTensorInitializer(
      py_tensor_ptr, act_name, place, persistable, stop_gradient);
383
  InitTensorWithNumpyValue(py_tensor_ptr, numpy_value, place, zero_copy);
384 385
}

386
// initialize Tensor by Tensor or phi::DenseTensor (mix args and
387
// kwargs) automatically.
388 389
void AutoInitTensorByTensor(TensorObject* py_tensor_ptr,
                            std::unordered_map<std::string, PyObject*> kws_map,
390 391
                            PyObject* args,
                            bool flag_kwargs,
392 393 394
                            Py_ssize_t args_num,
                            bool init_by_egr_tensor = true) {
  // The first argument of the Tensor constructor is Tensor or
395
  // framework Tensor,
396
  // there are 3 arguments to construct the new Tensor,
397 398 399 400 401 402 403 404 405 406 407 408 409 410 411
  // kw_order_map's key is every arguments of the constructor,
  // kw_order_map's value is the position of the arguments respectively.
  // If u want to update this constructor with new arguments,
  // need to update this map and to add or change related code.
  std::unordered_map<std::string, Py_ssize_t> kw_order_map{
      {"value", 1}, {"place", 2}, {"name", 3}};

  paddle::platform::Place place =
      egr::Controller::Instance().GetExpectedPlace();
  std::string act_name = "";

  place = ParsePlace(kws_map, kw_order_map, args, flag_kwargs, args_num);
  act_name = ParseName(kws_map, kw_order_map, args, flag_kwargs, args_num);

  if (init_by_egr_tensor) {
412
    paddle::Tensor src_tensor;
413
    if (kw_order_map["value"] <= args_num) {
414 415 416
      src_tensor =
          CastPyArg2Tensor(PyTuple_GET_ITEM(args, kw_order_map["value"] - 1),
                           kw_order_map["value"] - 1);
417 418
    } else {
      if (flag_kwargs && kws_map["value"] != NULL) {
419
        src_tensor = CastPyArg2Tensor(kws_map["value"], 0);
420 421
      } else {
        PADDLE_THROW(platform::errors::InvalidArgument(
422 423
            "The first expected kwargs is {value: Tensor}, "
            "but could not parse the first argument {value: Tensor} "
424 425 426 427 428
            "successfully. "
            "Please check your input first and make sure you are on the right "
            "way."));
      }
    }
429
    InitTensorWithTensor(py_tensor_ptr, src_tensor, place, act_name);
430 431
  } else {
    // init by framework tensor
432
    phi::DenseTensor src_tensor;
433 434 435 436 437 438 439 440 441
    if (kw_order_map["value"] <= args_num) {
      src_tensor = CastPyArg2FrameworkTensor(
          PyTuple_GET_ITEM(args, kw_order_map["value"] - 1),
          kw_order_map["value"] - 1);
    } else {
      if (flag_kwargs && kws_map["value"] != NULL) {
        src_tensor = CastPyArg2FrameworkTensor(kws_map["value"], 0);
      } else {
        PADDLE_THROW(platform::errors::InvalidArgument(
442 443
            "The first expected arguments is {value: phi::DenseTensor}, "
            "but could not parse the first argument {value: phi::DenseTensor} "
444 445 446 447 448
            "successfully. "
            "Please check your input first and make sure you are on the right "
            "way."));
      }
    }
449
    InitTensorWithFrameworkTensor(py_tensor_ptr, src_tensor, place, act_name);
450 451 452
  }
}

J
Jack Zhou 已提交
453 454
void AutoInitStringTensorByPyArray(
    TensorObject* py_tensor_ptr,
455 456 457 458
    std::unordered_map<std::string, PyObject*> kws_map,
    PyObject* args,
    bool flag_kwargs,
    Py_ssize_t args_num) {
J
Jack Zhou 已提交
459 460 461 462 463 464 465 466 467 468 469 470 471 472 473
  // The first argument of the StringTensor constructor is PyArray,
  // there are 4 arguments to construct the new StringTensor,
  // kw_order_map's key is every arguments of the constructor,
  // kw_order_map's value is the position of the arguments respectively.
  // If u want to update this constructor with new arguments,
  // need to update this map and to add or change related code.
  std::unordered_map<std::string, Py_ssize_t> kw_order_map{{"value", 1},
                                                           {"name", 2}};
  py::object numpy_value = py::object();
  paddle::platform::Place place =
      egr::Controller::Instance().GetExpectedPlace();
  std::string act_name = "";

  numpy_value =
      ParsePyArray(kws_map, kw_order_map, args, flag_kwargs, args_num);
474 475 476 477 478
  act_name = ParseName(kws_map,
                       kw_order_map,
                       args,
                       flag_kwargs,
                       args_num,
J
Jack Zhou 已提交
479 480 481 482 483 484 485
                       "generated_string_tensor");
  EmptyStringTensorInitializer(py_tensor_ptr, act_name, place);
  InitStringTensorWithNumpyValue(py_tensor_ptr, numpy_value);
}

void AutoInitStringTensorByStringTensor(
    TensorObject* py_tensor_ptr,
486 487 488 489
    std::unordered_map<std::string, PyObject*> kws_map,
    PyObject* args,
    bool flag_kwargs,
    Py_ssize_t args_num) {
J
Jack Zhou 已提交
490 491 492 493 494 495 496 497 498 499 500 501 502
  // The first argument of the Tensor constructor is StringTensor,
  // there are 3 arguments to construct the new StringTensor,
  // kw_order_map's key is every arguments of the constructor,
  // kw_order_map's value is the position of the arguments respectively.
  // If u want to update this constructor with new arguments,
  // need to update this map and to add or change related code.
  std::unordered_map<std::string, Py_ssize_t> kw_order_map{{"value", 1},
                                                           {"name", 2}};

  paddle::platform::Place place =
      egr::Controller::Instance().GetExpectedPlace();
  std::string act_name = "";

503 504 505 506 507
  act_name = ParseName(kws_map,
                       kw_order_map,
                       args,
                       flag_kwargs,
                       args_num,
J
Jack Zhou 已提交
508
                       "generated_string_tensor");
509
  paddle::Tensor src_tensor;
J
Jack Zhou 已提交
510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528
  if (kw_order_map["value"] <= args_num) {
    src_tensor =
        CastPyArg2Tensor(PyTuple_GET_ITEM(args, kw_order_map["value"] - 1),
                         kw_order_map["value"] - 1);
  } else {
    if (flag_kwargs && kws_map["value"] != NULL) {
      src_tensor = CastPyArg2Tensor(kws_map["value"], 0);
    } else {
      PADDLE_THROW(platform::errors::InvalidArgument(
          "The first expected kwargs is {value: Tensor}, "
          "but could not parse the first argument {value: Tensor} "
          "successfully. "
          "Please check your input first and make sure you are on the right "
          "way."));
    }
  }
  InitStringTensorWithStringTensor(py_tensor_ptr, src_tensor, place, act_name);
}

529
/** We should have init function with signature:
530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568
 * 1.
 * def __init__ ()
 * 2.
 * def __init__ (
 * ** dtype: paddle::framework::proto::VarType::Type,
 * ** dims: vector<int>,
 * ** name: std::string,
 * ** type: paddle::framework::proto::VarType::LodTensor,
 * ** persistable: bool)
 * 3. (multi-place)
 * (should have at least one parameter, one parameter equals to case 4, zero
 * parameter equals to case 1)
 * def __init__ (
 * ** value: ndarray,
 * ** place: paddle::platform::Place,
 * ** persistable: bool,
 * ** zero_copy: bool,
 * ** name: std::string,
 * ** stop_gradient: bool)
 * 4.
 * def __init__ (
 * ** value: ndarray)
 * 5.
 * def __init__ (
 * ** tensor: Tensor)
 * 6. (multi-place)
 * (should have at least one parameter, one parameter equals to case 5, zero
 * parameter equals to case 1.)
 * def __init__ (
 * ** tensor: Tensor,
 * ** place: paddle::platform::Place,
 * ** name: std::string)
 * 7. (multi-place) (should have at least one parameter, one parameter similar
 * to case 5, zero parameter equals to case 1.)
 * def __init__ (
 * ** tensor: FrameworkTensor,
 * ** place: paddle::platform::Place,
 * ** name: std::string)
 *  **/
569
int TensorInit(PyObject* self, PyObject* args, PyObject* kwargs) {
0
0x45f 已提交
570
  EAGER_TRY
571 572 573 574 575 576 577 578 579
  // set a flag to record use kwargs or not
  bool flag_kwargs = false;
  if (kwargs) flag_kwargs = true;

  // all kwargs
  PyObject* kw_zero_copy = NULL;
  PyObject* kw_persistable = NULL;
  PyObject* kw_stop_gradient = NULL;

580
  PyObject* kw_value = NULL;  // receive PyArray or Tensor
581 582 583 584 585 586 587
  PyObject* kw_place = NULL;
  PyObject* kw_name = NULL;
  PyObject* kw_dims = NULL;
  PyObject* kw_dtype = NULL;
  PyObject* kw_type = NULL;

  // the keywords argument
588 589 590 591 592 593 594 595 596 597
  static char* kwlist[] = {const_cast<char*>("value"),
                           const_cast<char*>("place"),
                           const_cast<char*>("persistable"),
                           const_cast<char*>("zero_copy"),
                           const_cast<char*>("name"),
                           const_cast<char*>("stop_gradient"),
                           const_cast<char*>("dims"),
                           const_cast<char*>("dtype"),
                           const_cast<char*>("type"),
                           NULL};
598 599 600 601 602 603 604

  // 'O' Store a Python object (without any conversion) in a C object pointer,
  // '|' Indicates that the remaining arguments in the Python argument list are
  // optional.
  // PyArg_ParseTupleAndKeywords can Parse the parameters of a function that
  // takes both positional and keyword parameters into local variables,
  // which enhance case2, case3, case4, case5, case6, case7.
605 606 607 608 609 610 611 612 613 614 615 616 617
  bool flag_ = PyArg_ParseTupleAndKeywords(args,
                                           kwargs,
                                           "|OOOOOOOOO",
                                           kwlist,
                                           &kw_value,
                                           &kw_place,
                                           &kw_persistable,
                                           &kw_zero_copy,
                                           &kw_name,
                                           &kw_stop_gradient,
                                           &kw_dims,
                                           &kw_dtype,
                                           &kw_type);
618 619 620 621 622 623 624 625 626 627 628 629 630

  // helper map
  std::unordered_map<std::string, PyObject*> kws_map{
      {"value", kw_value},
      {"place", kw_place},
      {"persistable", kw_persistable},
      {"zero_copy", kw_zero_copy},
      {"name", kw_name},
      {"stop_gradient", kw_stop_gradient},
      {"dims", kw_dims},
      {"dtype", kw_dtype},
      {"type", kw_type}};

631 632
  PADDLE_ENFORCE_EQ(flag_,
                    true,
633 634 635 636 637 638 639 640
                    paddle::platform::errors::PreconditionNotMet(
                        "Could not parse args and kwargs successfully, "
                        "please check your input first and make"
                        "sure you are on the right way. "
                        "The expected arguments as follow: ("
                        "value, place, persistable, zero_copy, "
                        "name, stop_gradient, dims, dtype, type)"));

641
  PADDLE_ENFORCE_NOT_NULL(
642 643 644 645 646
      self,
      paddle::platform::errors::Fatal(
          "Calling __init__ of Eager Tensor without __new__ is "
          "forbidden. Please check your code and make sure you new a "
          "eager tensor before init it."));
647

648
  auto py_tensor_ptr = reinterpret_cast<TensorObject*>(self);
649 650

  Py_ssize_t args_num = PyTuple_Size(args);
651 652 653 654 655
  VLOG(6) << " args_num: " << args_num;

  // args_num = 0, means that there is no position arguments.
  if (args_num == (Py_ssize_t)0) {
    if (!flag_kwargs) {
656 657
      // case 1
      VLOG(6) << "Calling case1's initializer.";
658
      EmptyTensorInitializer(
659 660 661 662
          py_tensor_ptr,
          egr::Controller::Instance().GenerateUniqueName("generated_tensor"),
          egr::Controller::Instance().GetExpectedPlace());
      return 0;
663 664 665 666
    } else {  // no position args, all arguments are kwargs
      if (kw_value != NULL) {
        if (pybind11::detail::npy_api::get().PyArray_Check_(kw_value)) {
          VLOG(6) << "Calling case3's or case4's initializer";
667 668
          AutoInitTensorByPyArray(
              py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
669
          return 0;
670
        } else if (PyObject_TypeCheck(kw_value, p_tensor_type)) {
671
          VLOG(6) << "Calling case5's or case6's initializer";
672 673
          AutoInitTensorByTensor(
              py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
674
          return 0;
675
        } else if (PyObject_TypeCheck(kw_value, g_framework_tensor_pytype)) {
676
          VLOG(6) << "Calling case7's initializer.";
677 678 679 680
          AutoInitTensorByTensor(py_tensor_ptr,
                                 kws_map,
                                 args,
                                 flag_kwargs,
681 682
                                 args_num,
                                 /* false means not init by egr tensor*/ false);
683
          return 0;
684
        } else {
685 686 687
          PADDLE_THROW(platform::errors::InvalidArgument(
              "Could not parse the first keyword argument successfully, "
              "the first keyword argument is value, but it should be PyArray "
688
              "or Tensor or phi::DenseTensor. "
689 690
              "Please check your input first and make sure you are on the "
              "right way."));
691
        }
692
      } else if (kw_dtype != NULL &&
693
                 PyObject_TypeCheck(kw_dtype, g_vartype_pytype)) {
694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727
        VLOG(6) << "Calling case2's initializer";

        PADDLE_ENFORCE_NOT_NULL(
            kw_dims,
            paddle::platform::errors::InvalidArgument(
                "Calling __init__ of Eager Tensor with NULL dims is "
                "forbidden. Please check your code and make sure you new a "
                "dims before calling this constructor."));

        PADDLE_ENFORCE_NOT_NULL(
            kw_name,
            paddle::platform::errors::InvalidArgument(
                "Calling __init__ of Eager Tensor with NULL name is "
                "forbidden. Please check your code and make sure you new a "
                "name before calling this constructor."));

        PADDLE_ENFORCE_NOT_NULL(
            kw_dtype,
            paddle::platform::errors::InvalidArgument(
                "Calling __init__ of Eager Tensor with NULL dtype is "
                "forbidden. Please check your code and make sure you new a "
                "dtype before calling this constructor."));

        PADDLE_ENFORCE_NOT_NULL(
            kw_persistable,
            paddle::platform::errors::InvalidArgument(
                "Calling __init__ of Eager Tensor with NULL persistable is "
                "forbidden. Please check your code and make sure you new a "
                "persistable before calling this constructor."));

        paddle::framework::proto::VarType::Type dtype =
            CastPyArg2ProtoType(kw_dtype, 0);
        std::vector<int> dims = CastPyArg2VectorOfInt(kw_dims, 0);

728
        std::string act_name = "";
729
        if (kw_name == Py_None) {
730 731 732
          act_name = egr::Controller::Instance().GenerateUniqueName(
              "generated_tensor");
        } else {
733
          act_name = CastPyArg2AttrString(kw_name, 0);
734
        }
735 736 737 738 739

        paddle::framework::proto::VarType::Type var_type =
            CastPyArg2ProtoType(kw_type, 0);
        bool persistable = CastPyArg2AttrBoolean(kw_persistable, 0);

740 741
        EmptyTensorInitializer(py_tensor_ptr,
                               act_name,
742 743
                               egr::Controller::Instance().GetExpectedPlace(),
                               persistable,
744 745 746 747
                               /* stop_gradient */ -1,
                               dtype,
                               dims,
                               var_type);
748

749
        return 0;
750 751
      } else {
        PADDLE_THROW(platform::errors::InvalidArgument(
752
            "We not only support construct Tensor from numpy value "
753
            "or tensor(Tensor or phi::DenseTensor) "
754
            "with python kwargs by this initializer, "
755
            "but also even support dtype to init a empty Tensor. "
756 757
            "Please check your input first and make sure you call the existed "
            "constructor."));
758
      }
759 760 761
    }
  } else if (args_num == (Py_ssize_t)1 || args_num == (Py_ssize_t)2 ||
             args_num == (Py_ssize_t)3) {
C
co63oc 已提交
762
    // 1 to 3 position args, remaining arguments are kwargs
763 764 765
    PyObject* arg0_ptr = PyTuple_GET_ITEM(args, 0);
    if (pybind11::detail::npy_api::get().PyArray_Check_(arg0_ptr)) {
      VLOG(6) << "Calling case3's or case4's initializer.";
766 767
      AutoInitTensorByPyArray(
          py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
768
      return 0;
769
    } else if (PyObject_TypeCheck(arg0_ptr, p_tensor_type)) {
770
      VLOG(6) << "Calling case5's or case6's initializer.";
771 772
      AutoInitTensorByTensor(
          py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
773
      return 0;
774
    } else if (PyObject_TypeCheck(arg0_ptr, g_framework_tensor_pytype)) {
775
      VLOG(6) << "Calling case7's initializer.";
776 777 778 779
      AutoInitTensorByTensor(py_tensor_ptr,
                             kws_map,
                             args,
                             flag_kwargs,
780 781
                             args_num,
                             /* false means not init by egr tensor*/ false);
782 783 784
      return 0;
    } else {
      PADDLE_THROW(platform::errors::InvalidArgument(
785
          "We support construct Tensor from numpy value "
786
          "or tensor(Tensor or phi::DenseTensor) "
787
          "with python args and kwargs by this initializer, "
788
          "but the first argument should be PyArray or Tensor or "
789
          "phi::DenseTensor. "
790 791
          "Please check your input first and make sure you call the existed "
          "constructor."));
792
    }
793
  } else if (args_num == (Py_ssize_t)4) {
C
co63oc 已提交
794
    // 4 position args, remaining arguments are kwargs
795 796 797
    PyObject* arg0_ptr = PyTuple_GET_ITEM(args, 0);
    if (pybind11::detail::npy_api::get().PyArray_Check_(arg0_ptr)) {
      VLOG(6) << "Calling case3's or case4's initializer.";
798 799
      AutoInitTensorByPyArray(
          py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
800
      return 0;
801 802 803
    } else {
      PADDLE_THROW(platform::errors::InvalidArgument(
          "Incompatible constructor arguments, "
C
co63oc 已提交
804
          "there are 4 position args and remaining arguments arg kwargs,"
805 806 807
          "but the first position args should be PyArray. "
          "Please check your code and make sure the first position args is "
          "PyArray."));
808
    }
809 810
  } else if (args_num == (Py_ssize_t)5) {
    if (!flag_kwargs) {
811
      PyObject* arg0_ptr = PyTuple_GET_ITEM(args, 0);
812
      if (PyObject_TypeCheck(arg0_ptr, g_vartype_pytype)) {
813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828
        VLOG(6) << "Calling case2's initializer.";
        paddle::framework::proto::VarType::Type dtype =
            CastPyArg2ProtoType(PyTuple_GET_ITEM(args, 0), 0);
        std::vector<int> dims =
            CastPyArg2VectorOfInt(PyTuple_GET_ITEM(args, 1), 1);
        std::string act_name = "";
        PyObject* name_obj = PyTuple_GET_ITEM(args, 2);
        if (name_obj == Py_None) {
          act_name = egr::Controller::Instance().GenerateUniqueName(
              "generated_tensor");
        } else {
          act_name = CastPyArg2AttrString(PyTuple_GET_ITEM(args, 2), 2);
        }
        paddle::framework::proto::VarType::Type var_type =
            CastPyArg2ProtoType(PyTuple_GET_ITEM(args, 3), 3);
        bool persistable = CastPyArg2AttrBoolean(PyTuple_GET_ITEM(args, 4), 4);
829 830
        EmptyTensorInitializer(py_tensor_ptr,
                               act_name,
831
                               egr::Controller::Instance().GetExpectedPlace(),
832 833 834 835 836
                               persistable,
                               -1,
                               dtype,
                               dims,
                               var_type);
837
        return 0;
838 839
      } else if (pybind11::detail::npy_api::get().PyArray_Check_(arg0_ptr)) {
        VLOG(6) << "Calling case3's initializer.";
840 841
        AutoInitTensorByPyArray(
            py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
842 843 844
        return 0;
      } else {
        PADDLE_THROW(platform::errors::InvalidArgument(
845 846 847 848 849
            "Incompatible constructor arguments, "
            "there are only 5 position args,"
            "but the first position args should be PyArray or dtype. "
            "Please check your code and make sure you call the existed "
            "constructor."));
850
      }
C
co63oc 已提交
851
    } else {  // five position args, remaining arguments are kwargs
852
      PyObject* arg0_ptr = PyTuple_GET_ITEM(args, 0);
853 854
      if (pybind11::detail::npy_api::get().PyArray_Check_(arg0_ptr)) {
        VLOG(6) << "Calling case3's or case4's initializer";
855 856
        AutoInitTensorByPyArray(
            py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
857
        return 0;
858
      } else {
859 860
        PADDLE_THROW(platform::errors::InvalidArgument(
            "Incompatible constructor arguments, "
C
co63oc 已提交
861
            "there are 5 position args and remaining arguments are kwargs,"
862 863 864
            "but the first position args should be PyArray. "
            "Please check your code and make sure the first position args is "
            "PyArray."));
865 866
      }
    }
867 868 869 870
  } else if (args_num == (Py_ssize_t)6) {
    if (!flag_kwargs) {
      // case 3
      VLOG(6) << "Calling case3's initializer.";
871 872
      AutoInitTensorByPyArray(
          py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
873
      return 0;
C
co63oc 已提交
874
    } else {  // six position args, remaining arguments are kwargs, but this
875 876 877
              // is not a right way
      PADDLE_THROW(platform::errors::InvalidArgument(
          "Incompatible constructor arguments, "
C
co63oc 已提交
878
          "there are 6 position args and the remaining arguments are kwargs. "
879 880
          "Please check your code and make sure the first position args is "
          "PyArray."));
881
    }
882 883 884 885
  } else {
    PADDLE_THROW(platform::errors::Fatal(
        "Can't not find expected num of args, please check your call, and "
        "make sure u call the existed constructor."));
886
  }
887

0
0x45f 已提交
888 889
  return -1;
  EAGER_CATCH_AND_THROW_RETURN_NEG
890 891
}

J
Jack Zhou 已提交
892
/** We should have init function with signature:
893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923
 * 1.
 * def __init__ ()
 *
 * 2.
 * def __init__ (
 * ** dims: vector<int>,
 * ** name: std::string)
 *
 * 3.
 * (should have at least one parameter, one parameter equals to case 4, zero
 * parameter equals to case 1)
 * def __init__ (
 * ** value: ndarray,
 * ** zero_copy: bool,
 * ** name: std::string)
 *
 * 4.
 * def __init__ (
 * ** value: ndarray)
 *
 * 5.
 * def __init__ (
 * ** tensor: Tensor)
 *
 * 6.
 * (should have at least one parameter, one parameter equals to case 5, zero
 * parameter equals to case 1.)
 * def __init__ (
 * ** tensor: Tensor,
 * ** name: std::string)
 * **/
J
Jack Zhou 已提交
924 925 926 927 928 929 930 931 932 933 934 935 936
int StringTensorInit(PyObject* self, PyObject* args, PyObject* kwargs) {
  // set a flag to record use kwargs or not
  bool flag_kwargs = false;
  if (kwargs) flag_kwargs = true;

  // all kwargs
  PyObject* kw_zero_copy = NULL;

  PyObject* kw_value = NULL;  // receive PyArray or Tensor
  PyObject* kw_name = NULL;
  PyObject* kw_dims = NULL;

  // the keywords argument
937 938 939 940 941
  static char* kwlist[] = {const_cast<char*>("value"),
                           const_cast<char*>("zero_copy"),
                           const_cast<char*>("name"),
                           const_cast<char*>("dims"),
                           NULL};
J
Jack Zhou 已提交
942 943 944 945 946 947
  // 'O' Store a Python object (without any conversion) in a C object pointer,
  // '|' Indicates that the remaining arguments in the Python argument list are
  // optional.
  // PyArg_ParseTupleAndKeywords can Parse the parameters of a function that
  // takes both positional and keyword parameters into local variables,
  // which enhance case1, case2, case3, case4, case 5, case 6.
948 949 950 951 952 953 954 955
  bool flag_ = PyArg_ParseTupleAndKeywords(args,
                                           kwargs,
                                           "|OOOO",
                                           kwlist,
                                           &kw_value,
                                           &kw_zero_copy,
                                           &kw_name,
                                           &kw_dims);
J
Jack Zhou 已提交
956 957 958 959 960 961 962 963

  // helper map
  std::unordered_map<std::string, PyObject*> kws_map{
      {"value", kw_value},
      {"zero_copy", kw_zero_copy},
      {"name", kw_name},
      {"dims", kw_dims}};

964 965
  PADDLE_ENFORCE_EQ(flag_,
                    true,
J
Jack Zhou 已提交
966 967 968 969 970 971 972 973
                    paddle::platform::errors::PreconditionNotMet(
                        "Could not parse args and kwargs successfully, "
                        "please check your input first and make"
                        "sure you are on the right way. "
                        "The expected arguments as follow: ("
                        "value, zero_copy, name, dims)"));

  PADDLE_ENFORCE_NOT_NULL(
974 975 976 977 978
      self,
      paddle::platform::errors::Fatal(
          "Calling __init__ of Eager Tensor without __new__ is "
          "forbidden. Please check your code and make sure you new a "
          "eager tensor before init it."));
J
Jack Zhou 已提交
979 980 981 982 983 984 985 986 987 988 989

  auto py_tensor_ptr = reinterpret_cast<TensorObject*>(self);

  Py_ssize_t args_num = PyTuple_Size(args);
  VLOG(6) << " args_num: " << args_num;
  // args_num = 0, means that there is no position arguments.
  if (args_num == (Py_ssize_t)0) {
    if (!flag_kwargs) {
      // case 1
      VLOG(6) << "Calling case1's string initializer.";
      EmptyStringTensorInitializer(
990 991 992
          py_tensor_ptr,
          egr::Controller::Instance().GenerateUniqueName(
              "generated_string_tensor"),
J
Jack Zhou 已提交
993 994 995 996 997 998
          egr::Controller::Instance().GetExpectedPlace());
      return 0;
    } else {
      if (kw_value != NULL) {
        if (pybind11::detail::npy_api::get().PyArray_Check_(kw_value)) {
          VLOG(6) << "Calling case3's or case4's string initializer";
999 1000
          AutoInitStringTensorByPyArray(
              py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
J
Jack Zhou 已提交
1001
          return 0;
1002
        } else if (PyObject_TypeCheck(kw_value, p_string_tensor_type)) {
J
Jack Zhou 已提交
1003
          VLOG(6) << "Calling case5's or case6's string initializer";
1004 1005
          AutoInitStringTensorByStringTensor(
              py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
J
Jack Zhou 已提交
1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020
          return 0;
        } else {
          PADDLE_THROW(platform::errors::InvalidArgument(
              "Could not parse the first keyword argument successfully, "
              "the first keyword argument is value, but it should be PyArray "
              "or StringTensor."
              "Please check your input first and make sure you are on the "
              "right way."));
        }
      } else if (kw_dims != NULL) {
        VLOG(6) << "Calling case2's string initializer.";
        std::unordered_map<std::string, Py_ssize_t> kw_order_map{{"dims", 1},
                                                                 {"name", 2}};

        std::vector<int> dims = CastPyArg2VectorOfInt(kw_dims, 0);
1021 1022 1023 1024 1025 1026
        std::string act_name = ParseName(kws_map,
                                         kw_order_map,
                                         args,
                                         flag_kwargs,
                                         args_num,
                                         "generated_string_tensor");
J
Jack Zhou 已提交
1027
        EmptyStringTensorInitializer(
1028 1029 1030 1031
            py_tensor_ptr,
            act_name,
            egr::Controller::Instance().GetExpectedPlace(),
            dims);
J
Jack Zhou 已提交
1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042
        return 0;
      } else {
        PADDLE_THROW(platform::errors::InvalidArgument(
            "We not only support construct Tensor from numpy value "
            "or StringTensor with python kwargs by this initializer, "
            "but also even support dtype to init a empty StringTensor. "
            "Please check your input first and make sure you call the existed "
            "constructor."));
      }
    }
  } else if (args_num == (Py_ssize_t)1) {  // case 3 ~ 6
C
co63oc 已提交
1043
    // 1 position args, remaining arguments are kwargs
J
Jack Zhou 已提交
1044 1045 1046
    PyObject* arg0_ptr = PyTuple_GET_ITEM(args, 0);
    if (pybind11::detail::npy_api::get().PyArray_Check_(arg0_ptr)) {
      VLOG(6) << "Calling case3's or case4's string initializer.";
1047 1048
      AutoInitStringTensorByPyArray(
          py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
J
Jack Zhou 已提交
1049
      return 0;
1050
    } else if (PyObject_TypeCheck(arg0_ptr, p_string_tensor_type)) {
J
Jack Zhou 已提交
1051
      VLOG(6) << "Calling case5's or case6's string initializer.";
1052 1053
      AutoInitStringTensorByStringTensor(
          py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
J
Jack Zhou 已提交
1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066
      return 0;
    } else {
      PADDLE_THROW(platform::errors::InvalidArgument(
          "Could not parse the first keyword argument successfully, "
          "the first keyword argument is value, but it should be PyArray "
          "or StringTensor."
          "Please check your input first and make sure you are on the "
          "right way."));
    }
  } else if (args_num == (Py_ssize_t)2) {  // case 2
    // 2 position args
    if (!flag_kwargs) {
      PyObject* arg0_ptr = PyTuple_GET_ITEM(args, 0);
1067
      if (PyObject_TypeCheck(arg0_ptr, p_string_tensor_type)) {
J
Jack Zhou 已提交
1068
        VLOG(6) << "Calling case6's string initializer.";
1069 1070
        AutoInitStringTensorByStringTensor(
            py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
J
Jack Zhou 已提交
1071 1072 1073
        return 0;
      } else if (pybind11::detail::npy_api::get().PyArray_Check_(arg0_ptr)) {
        VLOG(6) << "Calling case3's string initializer.";
1074 1075
        AutoInitStringTensorByPyArray(
            py_tensor_ptr, kws_map, args, flag_kwargs, args_num);
J
Jack Zhou 已提交
1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088
        return 0;
      } else {
        VLOG(6) << "Calling case2's string initializer.";
        std::vector<int> dims = CastPyArg2VectorOfInt(arg0_ptr, 0);
        std::string act_name = "";
        PyObject* name_obj = PyTuple_GET_ITEM(args, 1);
        if (name_obj == Py_None) {
          act_name = egr::Controller::Instance().GenerateUniqueName(
              "generated_string_tensor");
        } else {
          act_name = CastPyArg2AttrString(PyTuple_GET_ITEM(args, 1), 1);
        }
        EmptyStringTensorInitializer(
1089 1090 1091 1092
            py_tensor_ptr,
            act_name,
            egr::Controller::Instance().GetExpectedPlace(),
            dims);
J
Jack Zhou 已提交
1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103
        return 0;
      }
    } else {
      PADDLE_THROW(platform::errors::Fatal(
          "Can't not find expected num of args, please check your call, and "
          "make sure u call the existed constructor."));
    }
  }
  return 1;
}

1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117
void AddPyMethodDefs(std::vector<PyMethodDef>* vector, PyMethodDef* methods) {
  if (!vector->empty()) {
    // remove nullptr terminator
    vector->pop_back();
  }
  while (true) {
    vector->push_back(*methods);
    if (!methods->ml_name) {
      break;
    }
    methods++;
  }
}

1118
static void TensorDealloc(TensorObject* self) {
1119 1120
  if (self->weakrefs != NULL)
    PyObject_ClearWeakRefs(reinterpret_cast<PyObject*>(self));
1121
  self->tensor.~Tensor();
1122 1123 1124 1125
  Py_TYPE(self)->tp_free(reinterpret_cast<PyObject*>(self));
}

extern struct PyGetSetDef variable_properties[];
J
Jack Zhou 已提交
1126
extern struct PyGetSetDef string_tensor_variable_properties[];
1127 1128

extern PyMethodDef variable_methods[];
1129
extern PyMethodDef math_op_patch_methods[];
J
Jack Zhou 已提交
1130
extern PyMethodDef string_tensor_variable_methods[];
1131

W
wanghuancoder 已提交
1132 1133 1134 1135
PyNumberMethods number_methods;
PySequenceMethods sequence_methods;
PyMappingMethods mapping_methods;

1136 1137 1138
void BindEager(pybind11::module* module) {
  auto m = module->def_submodule("eager");

1139 1140 1141 1142
  static std::vector<PyMethodDef> methods;
  AddPyMethodDefs(&methods, variable_methods);
  AddPyMethodDefs(&methods, math_op_patch_methods);

1143
  auto heap_type = reinterpret_cast<PyHeapTypeObject*>(
1144
      PyType_Type.tp_alloc(&PyType_Type, 0));
1145 1146
  heap_type->ht_name = ToPyObject("Tensor");
  heap_type->ht_qualname = ToPyObject("Tensor");
1147
  auto type = &heap_type->ht_type;
1148
  type->tp_name = "Tensor";
1149
  type->tp_basicsize = sizeof(TensorObject);
1150
  type->tp_dealloc = (destructor)TensorDealloc;
1151 1152 1153
  type->tp_as_number = &number_methods;
  type->tp_as_sequence = &sequence_methods;
  type->tp_as_mapping = &mapping_methods;
1154
  type->tp_methods = methods.data();
1155
  type->tp_getset = variable_properties;
1156 1157
  type->tp_init = TensorInit;
  type->tp_new = TensorNew;
1158
  type->tp_weaklistoffset = offsetof(TensorObject, weakrefs);
1159 1160
  Py_INCREF(&PyBaseObject_Type);
  type->tp_base = reinterpret_cast<PyTypeObject*>(&PyBaseObject_Type);
1161 1162 1163 1164 1165
  type->tp_flags |=
      Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE | Py_TPFLAGS_HEAPTYPE;
#if PY_VERSION_HEX >= 0x03050000
  type->tp_as_async = &heap_type->as_async;
#endif
1166
  p_tensor_type = type;
1167 1168

  if (PyType_Ready(type) < 0) {
1169
    PADDLE_THROW(platform::errors::Fatal(
1170
        "Init Paddle error in BindEager(PyType_Ready)."));
1171 1172 1173
    return;
  }

1174
  Py_INCREF(type);
1175 1176
  if (PyModule_AddObject(m.ptr(), "Tensor", reinterpret_cast<PyObject*>(type)) <
      0) {
1177
    Py_DECREF(type);
1178 1179
    Py_DECREF(m.ptr());
    PADDLE_THROW(platform::errors::Fatal(
1180
        "Init Paddle error in BindEager(PyModule_AddObject)."));
1181 1182 1183 1184
    return;
  }

  BindFunctions(m.ptr());
W
wanghuancoder 已提交
1185
  BindEagerPyLayer(m.ptr());
1186
  BindEagerOpFunctions(&m);
1187 1188
}

J
Jack Zhou 已提交
1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222
void BindEagerStringTensor(pybind11::module* module) {
  auto m = module->def_submodule("eager");

  auto heap_type = reinterpret_cast<PyHeapTypeObject*>(
      PyType_Type.tp_alloc(&PyType_Type, 0));
  heap_type->ht_name = ToPyObject("StringTensor");
  heap_type->ht_qualname = ToPyObject("StringTensor");
  auto type = &heap_type->ht_type;
  type->tp_name = "StringTensor";
  type->tp_basicsize = sizeof(TensorObject);
  type->tp_dealloc = (destructor)TensorDealloc;
  type->tp_as_number = &number_methods;
  type->tp_as_sequence = &sequence_methods;
  type->tp_as_mapping = &mapping_methods;
  type->tp_methods = string_tensor_variable_methods;
  type->tp_getset = string_tensor_variable_properties;
  type->tp_init = StringTensorInit;
  type->tp_new = TensorNew;
  Py_INCREF(&PyBaseObject_Type);
  type->tp_base = reinterpret_cast<PyTypeObject*>(&PyBaseObject_Type);
  type->tp_flags |=
      Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE | Py_TPFLAGS_HEAPTYPE;
#if PY_VERSION_HEX >= 0x03050000
  type->tp_as_async = &heap_type->as_async;
#endif
  p_string_tensor_type = type;

  if (PyType_Ready(type) < 0) {
    PADDLE_THROW(platform::errors::Fatal(
        "Init Paddle error in BindEager(PyType_Ready)."));
    return;
  }

  Py_INCREF(type);
1223 1224
  if (PyModule_AddObject(
          m.ptr(), "StringTensor", reinterpret_cast<PyObject*>(type)) < 0) {
J
Jack Zhou 已提交
1225 1226 1227 1228 1229 1230 1231 1232
    Py_DECREF(type);
    Py_DECREF(m.ptr());
    PADDLE_THROW(platform::errors::Fatal(
        "Init Paddle error in BindEagerStringTensor(PyModule_AddObject)."));
    return;
  }
}

1233 1234
}  // namespace pybind
}  // namespace paddle