#include "assert.h"
#include "error.h"
+#include "bucket.h"
#include "heuristical.h"
#include "html_dumper.h"
#include "kaps.h"
static void insert_into_edge_bucket(pbqp_edge *edge)
{
- unsigned bucket_len = ARR_LEN(edge_bucket);
+ unsigned bucket_len = edge_bucket_get_length(edge_bucket);
if (edge->bucket_index < bucket_len && edge_bucket[edge->bucket_index]
== edge)
arity = 3;
}
- node->bucket_index = ARR_LEN(node_buckets[arity]);
+ node->bucket_index = node_bucket_get_length(node_buckets[arity]);
ARR_APP1(pbqp_node *, node_buckets[arity], node);
}
src_vec->entries[src_index].data, min);
if (min == INF_COSTS) {
- insert_into_edge_bucket(edge);
+ unsigned edge_index;
+ unsigned edge_len = ARR_LEN(src_node->edges);
+
+ for (edge_index = 0; edge_index < edge_len; ++edge_index) {
+ pbqp_edge *edge_candidate = src_node->edges[edge_index];
+ if (edge_candidate != edge) {
+ insert_into_edge_bucket(edge_candidate);
+ }
+ }
}
}
}
tgt_vec->entries[tgt_index].data, min);
if (min == INF_COSTS) {
- insert_into_edge_bucket(edge);
+ unsigned edge_index;
+ unsigned edge_len = ARR_LEN(tgt_node->edges);
+
+ for (edge_index = 0; edge_index < edge_len; ++edge_index) {
+ pbqp_edge *edge_candidate = tgt_node->edges[edge_index];
+ if (edge_candidate != edge) {
+ insert_into_edge_bucket(edge_candidate);
+ }
+ }
}
}
}
/* Assume node lost one incident edge. */
old_arity = arity + 1;
old_bucket = node_buckets[old_arity];
- old_bucket_len = ARR_LEN(old_bucket);
+ old_bucket_len = node_bucket_get_length(old_bucket);
old_bucket_index = node->bucket_index;
if (old_bucket_len <= old_bucket_index || old_bucket[old_bucket_index]
!= node) {
- unsigned bucket_len = ARR_LEN(node_buckets[arity]);
+ unsigned bucket_len = node_bucket_get_length(node_buckets[arity]);
/* Old arity is new arity, so we have nothing to do. */
assert(old_bucket_index < bucket_len);
ARR_SHRINKLEN(node_buckets[old_arity], old_bucket_len - 1);
/* ..and add to new one. */
- node->bucket_index = ARR_LEN(node_buckets[arity]);
+ node->bucket_index = node_bucket_get_length(node_buckets[arity]);
ARR_APP1(pbqp_node*, node_buckets[arity], node);
}
fill_node_buckets(pbqp);
for (;;) {
- if (ARR_LEN(edge_bucket) > 0) {
+ if (edge_bucket_get_length(edge_bucket) > 0) {
apply_edge(pbqp);
- } else if (ARR_LEN(node_buckets[1]) > 0) {
+ } else if (node_bucket_get_length(node_buckets[1]) > 0) {
apply_RI(pbqp);
- } else if (ARR_LEN(node_buckets[2]) > 0) {
+ } else if (node_bucket_get_length(node_buckets[2]) > 0) {
apply_RII(pbqp);
- } else if (ARR_LEN(node_buckets[3]) > 0) {
+ } else if (node_bucket_get_length(node_buckets[3]) > 0) {
apply_RN(pbqp);
} else {
break;
}
/* Solve trivial nodes and calculate solution. */
- node_len = ARR_LEN(node_buckets[0]);
+ node_len = node_bucket_get_length(node_buckets[0]);
for (node_index = 0; node_index < node_len; ++node_index) {
pbqp_node *node = node_buckets[0][node_index];
assert(node);
if (pbqp->dump_file) {
dump_section(pbqp->dump_file, 2, "Minimum");
- fprintf(pbqp->dump_file, "Minimum is equal to %d.", pbqp->solution);
+ fprintf(pbqp->dump_file, "Minimum is equal to %lld.", pbqp->solution);
dump_section(pbqp->dump_file, 2, "Back Propagation");
}
/* Solve reduced nodes. */
- node_len = ARR_LEN(reduced_bucket);
+ node_len = node_bucket_get_length(reduced_bucket);
for (node_index = node_len; node_index > 0; --node_index) {
pbqp_node *node = reduced_bucket[node_index - 1];
assert(node);
void apply_edge(pbqp *pbqp)
{
- unsigned bucket_len = ARR_LEN(edge_bucket);
- pbqp_edge *edge = edge_bucket[bucket_len - 1];
-
- ARR_SHRINKLEN(edge_bucket, (int)bucket_len - 1);
+ pbqp_edge *edge = edge_bucket_pop(&edge_bucket);
simplify_edge(pbqp, edge);
}
void apply_RI(pbqp *pbqp)
{
pbqp_node **bucket = node_buckets[1];
- unsigned bucket_len = ARR_LEN(bucket);
+ unsigned bucket_len = node_bucket_get_length(bucket);
pbqp_node *node = bucket[bucket_len - 1];
pbqp_edge *edge = node->edges[0];
pbqp_matrix *mat = edge->costs;
reorder_node(other_node);
/* ...and add it to back propagation list. */
- node->bucket_index = ARR_LEN(reduced_bucket);
+ node->bucket_index = node_bucket_get_length(reduced_bucket);
ARR_APP1(pbqp_node *, reduced_bucket, node);
}
void apply_RII(pbqp *pbqp)
{
pbqp_node **bucket = node_buckets[2];
- unsigned bucket_len = ARR_LEN(bucket);
+ unsigned bucket_len = node_bucket_get_length(bucket);
pbqp_node *node = bucket[bucket_len - 1];
pbqp_edge *src_edge = node->edges[0];
pbqp_edge *tgt_edge = node->edges[1];
ARR_SHRINKLEN(bucket, (int)bucket_len - 1);
/* ...and add it to back propagation list. */
- node->bucket_index = ARR_LEN(reduced_bucket);
+ node->bucket_index = node_bucket_get_length(reduced_bucket);
ARR_APP1(pbqp_node *, reduced_bucket, node);
if (edge == NULL) {
void apply_RN(pbqp *pbqp)
{
- pbqp_node **bucket = node_buckets[3];
- unsigned bucket_len = ARR_LEN(bucket);
- pbqp_node *node = bucket[bucket_len - 1];
+ pbqp_node **bucket = node_buckets[3];
+ unsigned bucket_len = node_bucket_get_length(bucket);
+ unsigned bucket_index;
+ pbqp_node *node = NULL;
pbqp_edge *edge;
- vector *node_vec = node->costs;
+ vector *node_vec;
vector *vec;
pbqp_matrix *mat;
unsigned edge_index;
- unsigned edge_len = ARR_LEN(node->edges);
+ unsigned max_degree = 0;
unsigned node_index;
- unsigned node_len = node_vec->len;
- unsigned min_index = 0;
- num min = INF_COSTS;
+ unsigned node_len;
+ unsigned min_index = 0;
+ num min = INF_COSTS;
int is_src;
assert(pbqp);
+ /* Search for node with maximum degree. */
+ for (bucket_index = 0; bucket_index < bucket_len; ++bucket_index) {
+ pbqp_node *candidate = bucket[bucket_index];
+ unsigned degree = ARR_LEN(candidate->edges);
+
+ if (degree > max_degree) {
+ node = candidate;
+ max_degree = degree;
+ }
+ }
+ assert(node);
+ node_vec = node->costs;
+ node_len = node_vec->len;
+
if (pbqp->dump_file) {
char txt[100];
sprintf(txt, "RN-Reduction of Node n%d", node->index);
}
for (node_index = 0; node_index < node_len; ++node_index) {
- num value = 0;
+ num value = node_vec->entries[node_index].data;
- for (edge_index = 0; edge_index < edge_len; ++edge_index) {
+ for (edge_index = 0; edge_index < max_degree; ++edge_index) {
edge = node->edges[edge_index];
mat = edge->costs;
is_src = edge->src == node;
if (pbqp->dump_file) {
fprintf(pbqp->dump_file, "node n%d is set to %d<br><br>\n",
node->index, min_index);
- fprintf(pbqp->dump_file, "Minimal cost of RN reduction: %d<br>\n",
+ fprintf(pbqp->dump_file, "Minimal cost of RN reduction: %lld<br>\n",
min);
}
}
/* Add all incident edges to edge bucket, since they are now independent. */
- for (edge_index = 0; edge_index < edge_len; ++edge_index) {
+ for (edge_index = 0; edge_index < max_degree; ++edge_index) {
insert_into_edge_bucket(node->edges[edge_index]);
}
}
assert(node);
if (ARR_LEN(node->edges) == 0) return 1;
- unsigned bucket_length = ARR_LEN(reduced_bucket);
+ unsigned bucket_length = node_bucket_get_length(reduced_bucket);
unsigned bucket_index = node->bucket_index;
return bucket_index < bucket_length && reduced_bucket[bucket_index] == node;