38 #define NO_EDGE (int64_t) 0xffffffffffffffffi64 41 #define NO_EDGE (int64_t) 0xffffffffffffffffll 61 NodeChild(): unichar_id(INVALID_UNICHAR_ID), edge_ref(NO_EDGE) {}
81 #define FORWARD_EDGE (int32_t) 0 82 #define BACKWARD_EDGE (int32_t) 1 83 #define MAX_NODE_EDGES_DISPLAY (int64_t) 100 84 #define MARKER_FLAG (int64_t) 1 85 #define DIRECTION_FLAG (int64_t) 2 86 #define WERD_END_FLAG (int64_t) 4 87 #define LETTER_START_BIT 0 88 #define NUM_FLAG_BITS 3 89 #define REFFORMAT "%" PRId64 92 {
false,
true,
true,
false },
93 {
true,
false,
false,
false },
94 {
true,
false,
false,
false },
95 {
false,
false,
false,
false },
98 static const char kWildcard[] =
"*";
118 static const int16_t kDawgMagicNumber = 42;
135 bool prefix_in_dawg(
const WERD_CHOICE &prefix,
bool requires_complete)
const;
139 int check_for_words(
const char *filename,
141 bool enable_wildcard)
const;
145 void iterate_words(
const UNICHARSET &unicharset,
150 void iterate_words(
const UNICHARSET &unicharset,
157 bool word_end)
const = 0;
162 bool word_end)
const = 0;
170 virtual bool end_of_word(
EDGE_REF edge_ref)
const = 0;
177 virtual void print_node(
NODE_REF node,
int max_num_edges)
const = 0;
206 debug_level_(debug_level) {}
210 return ((edge_rec & next_node_mask_) >> next_node_start_bit_);
214 return (edge_rec & (
MARKER_FLAG << flag_start_bit_)) != 0;
233 *edge_rec &= (~next_node_mask_);
234 *edge_rec |= ((value << next_node_start_bit_) & next_node_mask_);
251 UNICHAR_ID curr_unichar_id = unichar_id_from_edge_rec(edge_rec);
252 NODE_REF curr_next_node = next_node_from_edge_rec(edge_rec);
253 bool curr_word_end = end_of_word_from_edge_rec(edge_rec);
254 if (edge_rec_match(next_node, word_end, unichar_id, curr_next_node,
255 curr_word_end, curr_unichar_id))
return 0;
256 if (unichar_id > curr_unichar_id)
return 1;
257 if (unichar_id == curr_unichar_id) {
258 if (next_node > curr_next_node)
return 1;
259 if (next_node == curr_next_node) {
260 if (word_end > curr_word_end)
return 1;
274 return ((unichar_id == other_unichar_id) &&
275 (next_node == NO_EDGE || next_node == other_next_node) &&
276 (!word_end || (word_end == other_word_end)));
281 void init(
int unicharset_size);
292 void iterate_words_rec(
const WERD_CHOICE &word_so_far,
352 : dawg_index(-1), dawg_ref(NO_EDGE), punc_ref(NO_EDGE),
353 back_to_punc(false) {}
357 : dawg_index(dawg_idx), dawg_ref(dawgref),
358 punc_index(punc_idx), punc_ref(puncref),
359 back_to_punc(backtopunc) {
387 const char *debug_msg) {
388 for (
int i = 0; i < size_used_; ++i) {
389 if (data_[i] == new_pos)
return false;
413 :
Dawg(type, lang, perm, debug_level) {}
416 :
Dawg(type, lang, perm, debug_level) {
420 num_forward_edges_in_node0 = num_forward_edges(0);
425 :
Dawg(type, lang, perm, debug_level),
427 num_edges_(num_edges) {
428 init(unicharset_size);
429 num_forward_edges_in_node0 = num_forward_edges(0);
430 if (debug_level > 3) print_all(
"SquishedDawg:");
436 if (!read_squished_dawg(fp))
return false;
437 num_forward_edges_in_node0 = num_forward_edges(0);
445 bool word_end)
const override;
450 bool word_end)
const override {
452 if (!edge_occupied(edge) || edge == NO_EDGE)
return;
453 assert(forward_edge(edge));
455 if (!word_end || end_of_word_from_edge_rec(edges_[edge])) {
458 }
while (!last_edge(edge++));
464 return next_node_from_edge_rec((edges_[edge]));
470 return end_of_word_from_edge_rec((edges_[edge_ref]));
475 return unichar_id_from_edge_rec((edges_[edge_ref]));
480 void print_node(
NODE_REF node,
int max_num_edges)
const override;
483 bool write_squished_dawg(
TFile *file);
490 if (!this->write_squished_dawg(&file)) {
491 tprintf(
"Error serializing %s\n", filename);
495 tprintf(
"Error writing file %s\n", filename);
504 set_next_node_in_edge_rec(&(edges_[edge_ref]), value);
507 inline void set_empty_edge(
EDGE_REF edge_ref) {
508 (edges_[
edge_ref] = next_node_mask_);
511 inline void clear_all_edges() {
512 for (
int edge = 0; edge < num_edges_; edge++) set_empty_edge(edge);
515 inline void clear_marker_flag(
EDGE_REF edge_ref) {
519 inline bool forward_edge(
EDGE_REF edge_ref)
const {
520 return (edge_occupied(edge_ref) &&
521 (
FORWARD_EDGE == direction_from_edge_rec(edges_[edge_ref])));
524 inline bool backward_edge(
EDGE_REF edge_ref)
const {
525 return (edge_occupied(edge_ref) &&
526 (
BACKWARD_EDGE == direction_from_edge_rec(edges_[edge_ref])));
529 inline bool edge_occupied(
EDGE_REF edge_ref)
const {
530 return (edges_[edge_ref] != next_node_mask_);
533 inline bool last_edge(
EDGE_REF edge_ref)
const {
534 return (edges_[edge_ref] & (
MARKER_FLAG << flag_start_bit_)) != 0;
538 int32_t num_forward_edges(
NODE_REF node)
const;
541 bool read_squished_dawg(
TFile *file);
544 void print_edge(
EDGE_REF edge)
const;
547 void print_all(
const char* msg) {
548 tprintf(
"\n__________________________\n%s\n", msg);
549 for (
int i = 0; i < num_edges_; ++i) print_edge(i);
550 tprintf(
"__________________________\n");
553 std::unique_ptr<EDGE_REF[]> build_node_map(int32_t *num_nodes)
const;
558 int num_forward_edges_in_node0;
563 #endif // DICT_DAWG_H_
bool add_unique(const DawgPosition &new_pos, bool debug, const char *debug_msg)
const STRING & lang() const
bool end_of_word(EDGE_REF edge_ref) const override
bool operator==(const DawgPosition &other)
Dawg(DawgType type, const STRING &lang, PermuterType perm, int debug_level)
UNICHAR_ID edge_letter(EDGE_REF edge_ref) const override
Returns UNICHAR_ID stored in the edge indicated by the given EDGE_REF.
virtual EDGE_REF pattern_loop_edge(EDGE_REF edge_ref, UNICHAR_ID unichar_id, bool word_end) const
int direction_from_edge_rec(const EDGE_RECORD &edge_rec) const
Returns the direction flag of this edge.
PermuterType permuter() const
void OpenWrite(GenericVector< char > *data)
SquishedDawg(EDGE_ARRAY edges, int num_edges, DawgType type, const STRING &lang, PermuterType perm, int unicharset_size, int debug_level)
bool marker_flag_from_edge_rec(const EDGE_RECORD &edge_rec) const
Returns the marker flag of this edge.
bool Open(const STRING &filename, FileReader reader)
NodeChild(UNICHAR_ID id, EDGE_REF ref)
void unichar_ids_of(NODE_REF node, NodeChildVector *vec, bool word_end) const override
NODE_REF next_node(EDGE_REF edge) const override
bool end_of_word_from_edge_rec(const EDGE_RECORD &edge_rec) const
Returns true if this edge marks the end of a word.
virtual void unichar_id_to_patterns(UNICHAR_ID unichar_id, const UNICHARSET &unicharset, GenericVector< UNICHAR_ID > *vec) const
bool write_squished_dawg(const char *filename)
DLLSYM void tprintf(const char *format,...)
bool CloseWrite(const STRING &filename, FileWriter writer)
void set_next_node_in_edge_rec(EDGE_RECORD *edge_rec, EDGE_REF value)
Sets the next node link for this edge in the Dawg.
PermuterType perm_
Permuter code that should be used if the word is found in this Dawg.
UNICHAR_ID unichar_id_from_edge_rec(const EDGE_RECORD &edge_rec) const
Returns UNICHAR_ID recorded in this edge.
NODE_REF next_node_from_edge_rec(const EDGE_RECORD &edge_rec) const
Returns the next node visited by following this edge.
void set_marker_flag_in_edge_rec(EDGE_RECORD *edge_rec)
Sets this edge record to be the last one in a sequence of edges.
bool edge_rec_match(NODE_REF next_node, bool word_end, UNICHAR_ID unichar_id, NODE_REF other_next_node, bool other_word_end, UNICHAR_ID other_unichar_id) const
SquishedDawg(DawgType type, const STRING &lang, PermuterType perm, int debug_level)
int given_greater_than_edge_rec(NODE_REF next_node, bool word_end, UNICHAR_ID unichar_id, const EDGE_RECORD &edge_rec) const
DawgPosition(int dawg_idx, EDGE_REF dawgref, int punc_idx, EDGE_REF puncref, bool backtopunc)
SquishedDawg(const char *filename, DawgType type, const STRING &lang, PermuterType perm, int debug_level)