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fc.c
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/*
* Licensed to the Apache Software Foundation (ASF) under one
* or more contributor license agreements. See the NOTICE file
* distributed with this work for additional information
* regarding copyright ownership. The ASF licenses this file
* to you 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.
*/
/*
* Copyright (c) 2020, OPEN AI LAB
* Author: [email protected]
*/
#include <stdio.h>
#include <assert.h>
#include "sys_port.h"
#include "tengine_ir.h"
#include "tengine_errno.h"
#include "tengine_log.h"
#include "tengine_op.h"
#include "parameter.h"
#include "fc_param.h"
DEFINE_PARM_PARSE_ENTRY(fc_param, num_output);
static int infer_shape(struct ir_node* node)
{
struct ir_graph* graph = node->graph;
struct ir_tensor* input = get_ir_graph_tensor(graph, node->input_tensors[0]);
struct ir_tensor* weight = get_ir_graph_tensor(graph, node->input_tensors[1]);
struct ir_tensor* output = get_ir_graph_tensor(graph, node->output_tensors[0]);
int dim[4];
int n = weight->dims[0];
int k = weight->dims[1];
int m = input->dims[0];
int input_k = input->dims[1];
if (input->dim_num == 2)
{
dim[0] = m;
dim[1] = n;
}
else if (input->dim_num == 3)
{
if (input->dims[2] != 0)
input_k *= input->dims[2];
if (graph->graph_layout == TENGINE_LAYOUT_NHWC)
{
dim[0] = m;
dim[1] = 1;
dim[2] = n;
}
else
{
dim[0] = m;
dim[1] = n;
dim[2] = 1;
}
}
else if (input->dim_num == 4)
{
if (input->dims[2] * input->dims[3] != 0)
input_k *= input->dims[2] * input->dims[3];
if (graph->graph_layout == TENGINE_LAYOUT_NHWC)
{
dim[0] = m;
dim[1] = 1;
dim[2] = 1;
dim[3] = n;
}
else
{
dim[0] = m;
dim[1] = n;
dim[2] = 1;
dim[3] = 1;
}
}
else
return -1;
if (k != input_k)
{
TLOG_ERR("fc: input tensor and weight tensor shape does not match, hidden_number: %d\n", k);
set_tengine_errno(EFAULT);
return -1;
}
set_ir_tensor_shape(output, dim, input->dim_num);
return 0;
}
static int init_op(struct ir_op* op)
{
struct fc_param* fc_param = ( struct fc_param* )sys_malloc(sizeof(struct fc_param));
if (fc_param == NULL)
{
set_tengine_errno(ENOMEM);
return -1;
}
/*set the param default value */
fc_param->num_output = 1;
op->param_mem = fc_param;
op->param_size = sizeof(struct fc_param);
op->same_shape = 0;
op->infer_shape = infer_shape;
return 0;
}
static void release_op(struct ir_op* op)
{
sys_free(op->param_mem);
}
static int register_fc_op(void* arg)
{
struct op_method m;
m.op_version = 1;
m.init_op = init_op;
m.release_op = release_op;
m.access_param_entry = access_param_entry;
return register_op(OP_FC, OP_FC_NAME, &m);
}
static int unregister_fc_op(void* arg)
{
sys_free(GET_PARAM_PARSE_MAP(fc_param));
return unregister_op(OP_FC, 1);
}
AUTO_REGISTER_OP(register_fc_op);
AUTO_UNREGISTER_OP(unregister_fc_op);