# Copyright (c) 2022 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. import unittest import numpy as np from op_test_ipu import IPUOpTest import paddle import paddle.static class TestBase(IPUOpTest): def setUp(self): self.set_atol() self.set_training() self.set_data_feed() self.set_feed_attr() self.set_op_attrs() def set_data_feed(self): x = np.random.uniform(size=[1, 2, 6, 10]) self.feed_fp32 = {"x": x.astype(np.float32)} self.feed_fp16 = {"x": x.astype(np.float16)} def set_feed_attr(self): self.feed_shape = [x.shape for x in self.feed_fp32.values()] self.feed_list = list(self.feed_fp32.keys()) self.feed_dtype = [x.dtype for x in self.feed_fp32.values()] def set_op_attrs(self): self.attrs = {} self.attrs["size"] = [12, 12] @IPUOpTest.static_graph def build_model(self): x = paddle.static.data( name=self.feed_list[0], shape=self.feed_shape[0], dtype="float32" ) out = paddle.nn.functional.interpolate(x, **self.attrs) self.fetch_list = [out.name] def run_model(self, exec_mode): self.run_op_test(exec_mode) def test(self): for m in IPUOpTest.ExecutionMode: if not self.skip_mode(m): self.build_model() self.run_model(m) self.check() class TestCase0(TestBase): def set_op_attrs(self): self.attrs = {} self.attrs["size"] = [3, 4] class TestCase1(TestBase): def set_op_attrs(self): self.attrs = {} self.attrs["scale_factor"] = [2, 1] @unittest.skip("Only one of size or scale_factor should be defined") class TestCase2(TestBase): def set_op_attrs(self): self.attrs = {"size": [12, 12], "scale_factor": [2, 1]} class TestCase3(TestBase): def set_op_attrs(self): self.attrs = {"scale_factor": 2.5} class TestBilinear(TestBase): @property def fp16_enabled(self): return False def set_atol(self): self.atol = 1e-6 self.rtol = 1e-6 self.atol_fp16 = 1e-3 self.rtol_fp16 = 1e-3 def set_op_attrs(self): self.attrs = {"size": [12, 12], "mode": "bilinear"} # Take long time class TestBicubic(TestBase): @property def fp16_enabled(self): return False def set_atol(self): self.atol = 1e-6 self.rtol = 1e-6 self.atol_fp16 = 1e-3 self.rtol_fp16 = 1e-3 def set_op_attrs(self): self.attrs = {"size": [12, 12], "mode": "bicubic"} # Trilinear requires 5-D input class TestTrilinear(TestBase): @property def fp16_enabled(self): return False def set_atol(self): self.atol = 1e-6 self.rtol = 1e-6 self.atol_fp16 = 1e-3 self.rtol_fp16 = 1e-3 def set_data_feed(self): x = np.random.uniform(size=[2, 3, 3, 6, 10]) self.feed_fp32 = {"x": x.astype(np.float32)} self.feed_fp16 = {"x": x.astype(np.float16)} def set_op_attrs(self): self.attrs = { "size": [12, 12, 12], "mode": "trilinear", "data_format": "NCDHW", } # Linear requires 3-D input class TestLinear(TestBase): @property def fp16_enabled(self): return False def set_atol(self): self.atol = 1e-6 self.rtol = 1e-6 self.atol_fp16 = 1e-3 self.rtol_fp16 = 1e-3 def set_data_feed(self): x = np.random.uniform(size=[3, 6, 10]) self.feed_fp32 = {"x": x.astype(np.float32)} self.feed_fp16 = {"x": x.astype(np.float16)} def set_op_attrs(self): self.attrs = {"size": [12], "mode": "linear", "data_format": "NCW"} @unittest.skip( "Transfer to Pool Op with 2-D ksize, now we only support 1-D ksize." ) class TestArea(TestBase): def set_data_feed(self): x = np.random.uniform(size=[2, 3, 6, 6]) self.feed_fp32 = {"x": x.astype(np.float32)} self.feed_fp16 = {"x": x.astype(np.float16)} def set_op_attrs(self): self.attrs = {"size": 12, "mode": "area"} # align_corners option can only be set with the interpolating modes: linear | bilinear | bicubic | trilinear class TestAlignCorners(TestBase): @property def fp16_enabled(self): return False def set_op_attrs(self): self.attrs = { "size": [12, 12], "align_corners": True, "mode": "bilinear", } # class TestAlignMode(TestBase): def set_op_attrs(self): self.attrs = {"size": [12, 12], "align_mode": 1} if __name__ == "__main__": unittest.main()