From 5ef74c2031a040f30a670dc7d60790fc6a9ec720 Mon Sep 17 00:00:00 2001
From: Joseph Redmon <pjreddie@gmail.com>
Date: Fri, 02 May 2014 22:20:34 +0000
Subject: [PATCH] Slowly refactoring and pushing to GPU

---
 src/connected_layer.c |  135 ++++++++++++++++++++++++---------------------
 1 files changed, 72 insertions(+), 63 deletions(-)

diff --git a/src/connected_layer.c b/src/connected_layer.c
index fe904ba..792f20b 100644
--- a/src/connected_layer.c
+++ b/src/connected_layer.c
@@ -1,92 +1,101 @@
 #include "connected_layer.h"
+#include "utils.h"
+#include "mini_blas.h"
 
+#include <math.h>
+#include <stdio.h>
 #include <stdlib.h>
 #include <string.h>
 
-double activation(double x)
+connected_layer *make_connected_layer(int batch, int inputs, int outputs, ACTIVATION activation)
 {
-    return x*(x>0);
-}
-
-double gradient(double x)
-{
-    return (x>=0);
-}
-
-connected_layer make_connected_layer(int inputs, int outputs)
-{
+    fprintf(stderr, "Connected Layer: %d inputs, %d outputs\n", inputs, outputs);
     int i;
-    connected_layer layer;
-    layer.inputs = inputs;
-    layer.outputs = outputs;
+    connected_layer *layer = calloc(1, sizeof(connected_layer));
+    layer->inputs = inputs;
+    layer->outputs = outputs;
+    layer->batch=batch;
 
-    layer.output = calloc(outputs, sizeof(double*));
+    layer->output = calloc(batch*outputs, sizeof(float*));
+    layer->delta = calloc(batch*outputs, sizeof(float*));
 
-    layer.weight_updates = calloc(inputs*outputs, sizeof(double));
-    layer.weights = calloc(inputs*outputs, sizeof(double));
+    layer->weight_updates = calloc(inputs*outputs, sizeof(float));
+    layer->weight_adapt = calloc(inputs*outputs, sizeof(float));
+    layer->weight_momentum = calloc(inputs*outputs, sizeof(float));
+    layer->weights = calloc(inputs*outputs, sizeof(float));
+    float scale = 1./inputs;
     for(i = 0; i < inputs*outputs; ++i)
-        layer.weights[i] = .5 - (double)rand()/RAND_MAX;
+        layer->weights[i] = scale*(rand_uniform());
 
-    layer.bias_updates = calloc(outputs, sizeof(double));
-    layer.biases = calloc(outputs, sizeof(double));
+    layer->bias_updates = calloc(outputs, sizeof(float));
+    layer->bias_adapt = calloc(outputs, sizeof(float));
+    layer->bias_momentum = calloc(outputs, sizeof(float));
+    layer->biases = calloc(outputs, sizeof(float));
     for(i = 0; i < outputs; ++i)
-        layer.biases[i] = (double)rand()/RAND_MAX;
+        //layer->biases[i] = rand_normal()*scale + scale;
+        layer->biases[i] = 1;
 
+    layer->activation = activation;
     return layer;
 }
 
-void run_connected_layer(double *input, connected_layer layer)
+void update_connected_layer(connected_layer layer, float step, float momentum, float decay)
 {
-    int i, j;
+    int i;
     for(i = 0; i < layer.outputs; ++i){
-        layer.output[i] = layer.biases[i];
-        for(j = 0; j < layer.inputs; ++j){
-            layer.output[i] += input[j]*layer.weights[i*layer.outputs + j];
-        }
-        layer.output[i] = activation(layer.output[i]);
+        layer.bias_momentum[i] = step*(layer.bias_updates[i]) + momentum*layer.bias_momentum[i];
+        layer.biases[i] += layer.bias_momentum[i];
+    }
+    for(i = 0; i < layer.outputs*layer.inputs; ++i){
+        layer.weight_momentum[i] = step*(layer.weight_updates[i] - decay*layer.weights[i]) + momentum*layer.weight_momentum[i];
+        layer.weights[i] += layer.weight_momentum[i];
+    }
+    memset(layer.bias_updates, 0, layer.outputs*sizeof(float));
+    memset(layer.weight_updates, 0, layer.outputs*layer.inputs*sizeof(float));
+}
+
+void forward_connected_layer(connected_layer layer, float *input)
+{
+    int i;
+    memcpy(layer.output, layer.biases, layer.outputs*sizeof(float));
+    int m = layer.batch;
+    int k = layer.inputs;
+    int n = layer.outputs;
+    float *a = input;
+    float *b = layer.weights;
+    float *c = layer.output;
+    gemm(0,0,m,n,k,1,a,k,b,n,1,c,n);
+    for(i = 0; i < layer.outputs*layer.batch; ++i){
+        layer.output[i] = activate(layer.output[i], layer.activation);
     }
 }
 
-void backpropagate_connected_layer(double *input, connected_layer layer)
+void learn_connected_layer(connected_layer layer, float *input)
 {
-    int i, j;
-    double *old_input = calloc(layer.inputs, sizeof(double));
-    memcpy(old_input, input, layer.inputs*sizeof(double));
-    memset(input, 0, layer.inputs*sizeof(double));
-
-    for(i = 0; i < layer.outputs; ++i){
-        for(j = 0; j < layer.inputs; ++j){
-            input[j] += layer.output[i]*layer.weights[i*layer.outputs + j];
-        }
+    int i;
+    for(i = 0; i < layer.outputs*layer.batch; ++i){
+        layer.delta[i] *= gradient(layer.output[i], layer.activation);
+        layer.bias_updates[i%layer.batch] += layer.delta[i]/layer.batch;
     }
-    for(j = 0; j < layer.inputs; ++j){
-        input[j] = input[j]*gradient(old_input[j]);
-    }
-    free(old_input);
+    int m = layer.inputs;
+    int k = layer.batch;
+    int n = layer.outputs;
+    float *a = input;
+    float *b = layer.delta;
+    float *c = layer.weight_updates;
+    gemm(0,0,m,n,k,1,a,k,b,n,1,c,n);
 }
 
-void calculate_updates_connected_layer(double *input, connected_layer layer)
+void backward_connected_layer(connected_layer layer, float *input, float *delta)
 {
-    int i, j;
-    for(i = 0; i < layer.outputs; ++i){
-        layer.bias_updates[i] += layer.output[i];
-        for(j = 0; j < layer.inputs; ++j){
-            layer.weight_updates[i*layer.outputs + j] += layer.output[i]*input[j];
-        }
-    }
-}
+    int m = layer.inputs;
+    int k = layer.outputs;
+    int n = layer.batch;
 
-void update_connected_layer(connected_layer layer, double step)
-{
-    int i,j;
-    for(i = 0; i < layer.outputs; ++i){
-        layer.biases[i] += step*layer.bias_updates[i];
-        for(j = 0; j < layer.inputs; ++j){
-            int index = i*layer.outputs+j;
-            layer.weights[index] = layer.weight_updates[index];
-        }
-    }
-    memset(layer.bias_updates, 0, layer.outputs*sizeof(double));
-    memset(layer.weight_updates, 0, layer.outputs*layer.inputs*sizeof(double));
+    float *a = layer.weights;
+    float *b = layer.delta;
+    float *c = delta;
+
+    gemm(0,0,m,n,k,1,a,k,b,n,0,c,n);
 }
 

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