""" Copyright (c) 2018-2019 Intel Corporation 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 numpy as np from mo.front.caffe.extractors.utils import get_canonical_axis_index from mo.front.common.partial_infer.utils import int64_array from mo.graph.graph import Node from mo.graph.perm_inputs import PermuteInputs from mo.ops.op import Op from mo.utils.error import Error class Squeeze(Op): op = 'Squeeze' enabled = False def __init__(self, graph, attrs: dict): super().__init__(graph, { 'kind': 'op', 'op': __class__.op, 'type': __class__.op, 'squeeze_dims': None, 'reinterp_shape': True, 'keep_at_least_1d': 0, 'in_ports_count': 2, 'out_ports_count': 1, 'infer': __class__.infer, }, attrs) @staticmethod def infer(node: Node): real_squeeze_dims = int64_array([]) input_shape = node.in_node().shape if input_shape is None: return output_shape = input_shape.copy() assert len(node.in_nodes()) == 2, 'The Squeeze node {} must have 2 inputs'.format(node.soft_get('name')) # TODO remove the following 'if' statement when IE start support 0D tensors squeeze_dims = node.in_port(1).data.get_value() if squeeze_dims.ndim == 0: squeeze_dims = squeeze_dims.reshape([1]) for dim in squeeze_dims: if output_shape[dim] == 1: real_squeeze_dims = np.append(real_squeeze_dims, get_canonical_axis_index(output_shape, dim)) else: raise Error('Trying to squeeze dimension not equal to 1 for node "{}"'.format(node.soft_get('name'))) output_shape = np.delete(output_shape, real_squeeze_dims) node.out_node().shape = output_shape # make dimensions positive to correctly translate from NHWC to NCHW layout if node.in_port(1).get_source().node.op == 'Const': node.in_port(1).data.set_value(real_squeeze_dims) if node.in_port(0).data.get_value() is not None: node.out_port(0).data.set_value(node.in_port(0).data.get_value().reshape(output_shape)) # the squeeze_dim attribute will be converted to the second input in the end of the Middle phase PermuteInputs().set_input_permutation(node.in_node(1), node, 'input:0', 'axis')