#ifndef Z_PDF417_TRACE_H
#define Z_PDF417_TRACE_H
static int PDF_TRACE_getPreviousMode(struct pdf_edge *edges, struct pdf_edge *edge) {
struct pdf_edge *previous = PDF_PREVIOUS(edges, edge);
return previous == NULL ? PDF_ALP : previous->mode;
}
static void PDF_TRACE_EdgeToString(char *buf, const unsigned char *source, const int length, struct pdf_edge *edges,
struct pdf_edge *edge) {
int previousMode = PDF_TRACE_getPreviousMode(edges, edge);
(void)length;
if (buf) {
sprintf(buf, "%d_%c %c(%d,%d) %d(%d,%d,%d) -> %d_%c",
edge->from, pdf_smodes[previousMode], pdf_smodes[edge->mode], source[edge->from], edge->len, edge->size
+ edge->unit_size, edge->units, edge->unit_size, edge->size, edge->from + 1, pdf_smodes[edge->mode]);
} else {
printf("%d_%c %c(%d,%d) %d(%d,%d,%d) -> %d_%c",
edge->from, pdf_smodes[previousMode], pdf_smodes[edge->mode], source[edge->from], edge->len, edge->size
+ edge->unit_size, edge->units, edge->unit_size, edge->size, edge->from + 1, pdf_smodes[edge->mode]);
}
}
static void PDF_TRACE_Path(const unsigned char *source, const int length, struct pdf_edge *edges,
struct pdf_edge *edge, char *result, const int result_size) {
struct pdf_edge *current;
PDF_TRACE_EdgeToString(result, source, length, edges, edge);
current = PDF_PREVIOUS(edges, edge);
while (current) {
char s[256];
char *pos;
int len;
PDF_TRACE_EdgeToString(s, source, length, edges, current);
pos = strrchr(s, ' ');
assert(pos);
len = strlen(result);
if ((pos - s) + 1 + len + 1 >= result_size) {
memcpy(result + result_size - 4, "...", 4);
break;
}
memmove(result + (pos - s) + 1, result, len + 1);
memcpy(result, s, (pos - s) + 1);
current = PDF_PREVIOUS(edges, current);
}
puts(result);
}
static void PDF_TRACE_Edges(const char *prefix, const unsigned char *source, const int length,
struct pdf_edge *edges, const int vertexIndex) {
int i, j, e_i;
char result[1024 * 2];
if (vertexIndex) {
printf(prefix, vertexIndex);
} else {
fputs(prefix, stdout);
}
for (i = vertexIndex; i <= length; i++) {
e_i = i * PDF_NUM_MODES;
for (j = 0; j < PDF_NUM_MODES; j++) {
if (edges[e_i + j].mode) {
fputs(" **** ", stdout);
PDF_TRACE_Path(source, length, edges, edges + e_i + j, result, (int) ARRAY_SIZE(result));
}
}
}
}
static void PDF_TRACE_AddEdge(const unsigned char *source, const int length, struct pdf_edge *edges,
struct pdf_edge *previous, const int vertexIndex, const int t_table, struct pdf_edge *edge) {
const int new_size = edge->size + edge->unit_size;
const int v_ij = vertexIndex * PDF_NUM_MODES + edge->mode - 1;
const int v_size = edges[v_ij].size + edges[v_ij].unit_size;
(void)source; (void)length;
printf("add mode %c, t_table 0x%X, previous %d, from %d, len %d, v_ij %d, %d(%d,%d,%d) > %d(%d,%d,%d)\n",
pdf_smodes[edge->mode], t_table, previous ? (int) (previous - edges) : 0, edge->from, edge->len, v_ij,
v_size, edges[v_ij].units, edges[v_ij].unit_size, edges[v_ij].size,
new_size, edge->units, edge->unit_size, edge->size);
}
static void PDF_TRACE_NotAddEdge(const unsigned char *source, const int length, struct pdf_edge *edges,
struct pdf_edge *previous, const int vertexIndex, const int t_table, struct pdf_edge *edge) {
const int new_size = edge->size + edge->unit_size;
const int v_ij = vertexIndex * PDF_NUM_MODES + edge->mode - 1;
const int v_size = edges[v_ij].size + edges[v_ij].unit_size;
(void)source; (void)length;
printf("NOT mode %c, t_table %d, previous %d, from %d, len %d, v_ij %d, %d(%d,%d,%d) <= %d(%d,%d,%d)\n",
pdf_smodes[edge->mode], t_table, previous ? (int) (previous - edges) : 0, edge->from, edge->len, v_ij,
v_size, edges[v_ij].units, edges[v_ij].unit_size, edges[v_ij].size,
new_size, edge->units, edge->unit_size, edge->size);
}
#endif