Drop table based section lookup and look up sections on demand.
23 struct razor_set_section {
29 struct razor_set_header {
32 struct razor_set_section sections[0];
35 #define RAZOR_MAGIC 0x7a7a7a7a
36 #define RAZOR_VERSION 1
38 #define RAZOR_ENTRY_LAST 0x80000000ul
39 #define RAZOR_IMMEDIATE 0x80000000ul
40 #define RAZOR_ENTRY_MASK 0x00fffffful
42 #define RAZOR_STRING_POOL 0
43 #define RAZOR_PACKAGES 1
44 #define RAZOR_PROPERTIES 2
46 #define RAZOR_PACKAGE_POOL 4
47 #define RAZOR_PROPERTY_POOL 5
48 #define RAZOR_FILE_POOL 6
50 struct razor_package {
52 unsigned long version;
53 unsigned long properties;
57 struct razor_property {
59 unsigned long version;
60 unsigned long packages;
66 unsigned long packages;
70 struct array string_pool;
71 struct array packages;
72 struct array properties;
74 struct array package_pool;
75 struct array property_pool;
76 struct array file_pool;
77 struct razor_set_header *header;
81 unsigned long package;
85 struct import_directory {
86 unsigned long name, count;
88 struct array packages;
89 struct import_directory *last;
97 struct razor_importer {
98 struct razor_set *set;
99 struct hashtable table;
100 struct razor_package *package;
101 struct array properties;
106 array_init(struct array *array)
108 memset(array, 0, sizeof *array);
112 array_release(struct array *array)
118 array_add(struct array *array, int size)
123 if (array->alloc > 0)
124 alloc = array->alloc;
128 while (alloc < array->size + size)
131 if (array->alloc < alloc) {
132 data = realloc(array->data, alloc);
136 array->alloc = alloc;
139 p = array->data + array->size;
146 write_to_fd(int fd, void *p, size_t size)
152 len = write(fd, p, rest);
172 struct razor_set_section razor_sections[] = {
173 { RAZOR_STRING_POOL, offsetof(struct razor_set, string_pool) },
174 { RAZOR_PACKAGES, offsetof(struct razor_set, packages) },
175 { RAZOR_PROPERTIES, offsetof(struct razor_set, properties) },
176 { RAZOR_FILES, offsetof(struct razor_set, files) },
177 { RAZOR_PACKAGE_POOL, offsetof(struct razor_set, package_pool) },
178 { RAZOR_PROPERTY_POOL, offsetof(struct razor_set, property_pool) },
179 { RAZOR_FILE_POOL, offsetof(struct razor_set, file_pool) },
183 razor_set_create(void)
185 return zalloc(sizeof(struct razor_set));
189 razor_set_open(const char *filename)
191 struct razor_set *set;
192 struct razor_set_section *s;
197 set = zalloc(sizeof *set);
198 fd = open(filename, O_RDONLY);
199 if (fstat(fd, &stat) < 0)
201 set->header = mmap(NULL, stat.st_size, PROT_READ, MAP_PRIVATE, fd, 0);
202 if (set->header == MAP_FAILED) {
207 for (s = set->header->sections; ~s->type; s++) {
208 if (s->type >= ARRAY_SIZE(razor_sections))
210 if (s->type != razor_sections[s->type].type)
212 array = (void *) set + razor_sections[s->type].offset;
213 array->data = (void *) set->header + s->offset;
214 array->size = s->size;
215 array->alloc = s->size;
223 razor_set_destroy(struct razor_set *set)
230 for (i = 0; set->header->sections[i].type; i++)
232 size = set->header->sections[i].type;
233 munmap(set->header, size);
235 for (i = 0; i < ARRAY_SIZE(razor_sections); i++) {
236 a = (void *) set + razor_sections[i].offset;
245 razor_set_write(struct razor_set *set, const char *filename)
248 struct razor_set_header *header = (struct razor_set_header *) data;
250 unsigned long offset;
253 memset(data, 0, sizeof data);
254 header->magic = RAZOR_MAGIC;
255 header->version = RAZOR_VERSION;
256 offset = sizeof data;
258 for (i = 0; i < ARRAY_SIZE(razor_sections); i++) {
259 if (razor_sections[i].type != i)
261 a = (void *) set + razor_sections[i].offset;
262 header->sections[i].type = i;
263 header->sections[i].offset = offset;
264 header->sections[i].size = a->size;
265 offset += (a->size + 4095) & ~4095;
268 header->sections[i].type = ~0;
269 header->sections[i].offset = 0;
270 header->sections[i].size = 0;
272 fd = open(filename, O_CREAT | O_WRONLY | O_TRUNC, 0666);
276 write_to_fd(fd, data, sizeof data);
277 for (i = 0; i < ARRAY_SIZE(razor_sections); i++) {
278 if (razor_sections[i].type != i)
280 a = (void *) set + razor_sections[i].offset;
281 write_to_fd(fd, a->data, (a->size + 4095) & ~4095);
290 hash_string(const char *key)
293 unsigned int hash = 0;
295 for (p = key; *p; p++)
296 hash = (hash * 617) ^ *p;
302 hashtable_lookup(struct hashtable *table, const char *key)
304 unsigned int mask, start, i;
308 pool = table->pool->data;
309 mask = table->buckets.alloc - 1;
310 start = hash_string(key) * sizeof(unsigned long);
312 for (i = 0; i < table->buckets.alloc; i += sizeof *b) {
313 b = table->buckets.data + ((start + i) & mask);
318 if (strcmp(key, &pool[*b]) == 0)
326 add_to_string_pool(struct hashtable *table, const char *key)
331 len = strlen(key) + 1;
332 p = array_add(table->pool, len);
335 return p - (char *) table->pool->data;
339 add_to_property_pool(struct array *pool, struct array *properties)
343 p = array_add(pool, properties->size);
344 memcpy(p, properties->data, properties->size);
345 p[properties->size / sizeof *p - 1] |= RAZOR_IMMEDIATE;
347 return p - (unsigned long *) pool->data;
351 do_insert(struct hashtable *table, unsigned long value)
353 unsigned int mask, start, i;
357 key = (char *) table->pool->data + value;
358 mask = table->buckets.alloc - 1;
359 start = hash_string(key) * sizeof(unsigned long);
361 for (i = 0; i < table->buckets.alloc; i += sizeof *b) {
362 b = table->buckets.data + ((start + i) & mask);
371 hashtable_insert(struct hashtable *table, const char *key)
373 unsigned long value, *buckets, *b, *end;
376 alloc = table->buckets.alloc;
377 array_add(&table->buckets, 4 * sizeof *buckets);
378 if (alloc != table->buckets.alloc) {
379 end = table->buckets.data + alloc;
380 memset(end, 0, table->buckets.alloc - alloc);
381 for (b = table->buckets.data; b < end; b++) {
385 do_insert(table, value);
390 value = add_to_string_pool(table, key);
391 do_insert (table, value);
397 hashtable_init(struct hashtable *table, struct array *pool)
399 array_init(&table->buckets);
404 hashtable_release(struct hashtable *table)
406 array_release(&table->buckets);
410 hashtable_tokenize(struct hashtable *table, const char *string)
417 token = hashtable_lookup(table, string);
421 return hashtable_insert(table, string);
425 razor_importer_tokenize(struct razor_importer *importer, const char *string)
427 return hashtable_tokenize(&importer->table, string);
431 razor_importer_begin_package(struct razor_importer *importer,
432 const char *name, const char *version)
434 struct razor_package *p;
436 p = array_add(&importer->set->packages, sizeof *p);
437 p->name = razor_importer_tokenize(importer, name);
438 p->version = razor_importer_tokenize(importer, version);
440 importer->package = p;
441 array_init(&importer->properties);
445 razor_importer_finish_package(struct razor_importer *importer)
447 struct razor_package *p;
449 p = importer->package;
450 p->properties = add_to_property_pool(&importer->set->property_pool,
451 &importer->properties);
453 array_release(&importer->properties);
457 razor_importer_add_property(struct razor_importer *importer,
458 const char *name, const char *version,
459 enum razor_property_type type)
461 struct razor_property *p;
464 p = array_add(&importer->set->properties, sizeof *p);
465 p->name = razor_importer_tokenize(importer, name) | (type << 30);
466 p->version = razor_importer_tokenize(importer, version);
467 p->packages = importer->package -
468 (struct razor_package *) importer->set->packages.data;
470 r = array_add(&importer->properties, sizeof *r);
471 *r = p - (struct razor_property *) importer->set->properties.data;
475 razor_importer_add_file(struct razor_importer *importer, const char *name)
477 struct import_entry *e;
479 e = array_add(&importer->files, sizeof *e);
481 e->package = importer->package -
482 (struct razor_package *) importer->set->packages.data;
483 e->name = strdup(name);
486 struct razor_importer *
487 razor_importer_new(void)
489 struct razor_importer *importer;
491 importer = zalloc(sizeof *importer);
492 importer->set = razor_set_create();
493 hashtable_init(&importer->table, &importer->set->string_pool);
498 /* Destroy an importer without creating the set. */
500 razor_importer_destroy(struct razor_importer *importer)
502 /* FIXME: write this */
506 typedef int (*compare_with_data_func_t)(const void *p1,
510 struct qsort_context {
512 compare_with_data_func_t compare;
517 qsort_swap(void *p1, void *p2, size_t size)
521 memcpy(buffer, p1, size);
522 memcpy(p1, p2, size);
523 memcpy(p2, buffer, size);
527 __qsort_with_data(void *base, size_t nelem, unsigned long *map,
528 struct qsort_context *ctx)
530 void *p, *start, *end, *pivot;
531 unsigned long *mp, *mstart, *mend, tmp;
532 int left, right, result;
533 size_t size = ctx->size;
537 end = base + nelem * size;
541 pivot = base + (random() % nelem) * size;
544 result = ctx->compare(p, pivot, ctx->data);
546 qsort_swap(p, start, size);
556 } else if (result == 0) {
562 qsort_swap(p, end, size);
571 left = (start - base) / size;
572 right = (base + nelem * size - end) / size;
574 __qsort_with_data(base, left, map, ctx);
576 __qsort_with_data(end, right, mend, ctx);
580 qsort_with_data(void *base, size_t nelem, size_t size,
581 compare_with_data_func_t compare, void *data)
583 struct qsort_context ctx;
591 ctx.compare = compare;
594 map = malloc(nelem * sizeof (unsigned long));
595 for (i = 0; i < nelem; i++)
598 __qsort_with_data(base, nelem, map, &ctx);
604 versioncmp(const char *s1, const char *s2)
610 n1 = strtol(s1, (char **) &p1, 0);
611 n2 = strtol(s2, (char **) &p2, 0);
613 /* Epoch; if one but not the other has an epoch set, default
614 * the epoch-less version to 0. */
615 res = (*p1 == ':') - (*p2 == ':');
620 } else if (res > 0) {
633 if (isdigit(*p1) && isdigit(*p2))
634 return versioncmp(p1, p2);
642 compare_packages(const void *p1, const void *p2, void *data)
644 const struct razor_package *pkg1 = p1, *pkg2 = p2;
645 struct razor_set *set = data;
646 char *pool = set->string_pool.data;
648 if (pkg1->name == pkg2->name)
649 return versioncmp(&pool[pkg1->version], &pool[pkg2->version]);
651 return strcmp(&pool[pkg1->name], &pool[pkg2->name]);
655 compare_properties(const void *p1, const void *p2, void *data)
657 const struct razor_property *prop1 = p1, *prop2 = p2;
658 struct razor_set *set = data;
659 char *pool = set->string_pool.data;
661 if (prop1->name == prop2->name)
662 return versioncmp(&pool[prop1->version],
663 &pool[prop2->version]);
664 else if ((prop1->name & RAZOR_ENTRY_MASK) == (prop2->name & RAZOR_ENTRY_MASK))
665 return (prop1->name >> 30) - (prop2->name >> 30);
667 return strcmp(&pool[prop1->name & RAZOR_ENTRY_MASK],
668 &pool[prop2->name & RAZOR_ENTRY_MASK]);
671 static unsigned long *
672 uniqueify_properties(struct razor_set *set)
674 struct razor_property *rp, *up, *rp_end;
675 struct array *pkgs, *p;
676 unsigned long *map, *rmap, *r;
677 int i, count, unique;
679 count = set->properties.size / sizeof(struct razor_property);
680 map = qsort_with_data(set->properties.data,
682 sizeof(struct razor_property),
686 rp_end = set->properties.data + set->properties.size;
687 rmap = malloc(count * sizeof *map);
688 pkgs = zalloc(count * sizeof *pkgs);
689 for (rp = set->properties.data, up = rp, i = 0; rp < rp_end; rp++, i++) {
690 if (rp->name != up->name || rp->version != up->version) {
693 up->version = rp->version;
696 unique = up - (struct razor_property *) set->properties.data;
697 rmap[map[i]] = unique;
698 r = array_add(&pkgs[unique], sizeof *r);
704 set->properties.size = (void *) up - set->properties.data;
706 for (rp = set->properties.data, p = pkgs; rp < rp_end; rp++, p++) {
707 if (p->size / sizeof *r == 1) {
709 rp->packages = *r | RAZOR_IMMEDIATE;
712 add_to_property_pool(&set->package_pool, p);
723 remap_links(struct array *links, unsigned long *map)
725 unsigned long *p, *end;
727 end = links->data + links->size;
728 for (p = links->data; p < end; p++)
729 *p = map[*p & RAZOR_ENTRY_MASK] | (*p & ~RAZOR_ENTRY_MASK);
733 compare_filenames(const void *p1, const void *p2, void *data)
735 const struct import_entry *e1 = p1;
736 const struct import_entry *e2 = p2;
738 return strcmp(e1->name, e2->name);
742 count_entries(struct import_directory *d)
744 struct import_directory *p, *end;
747 end = d->files.data + d->files.size;
751 d->count += p->count + 1;
757 serialize_files(struct razor_set *set,
758 struct import_directory *d, struct array *array)
760 struct import_directory *p, *end;
761 struct razor_entry *e = NULL;
765 end = d->files.data + d->files.size;
766 s = array->size / sizeof *e + d->files.size / sizeof *p;
768 e = array_add(array, sizeof *e);
770 e->start = p->count > 0 ? s : 0;
773 if (p->packages.size == 0) {
774 /* FIXME: We need to make sure this is handled
775 * correctly as the empty list. */
776 e->packages = 0 | RAZOR_IMMEDIATE;
777 } else if (p->packages.size / sizeof *r == 1) {
778 r = p->packages.data;
779 e->packages = *r | RAZOR_IMMEDIATE;
781 e->packages = add_to_property_pool(&set->package_pool,
784 array_release(&p->packages);
788 e->name |= RAZOR_ENTRY_LAST;
791 end = d->files.data + d->files.size;
793 serialize_files(set, p, array);
799 remap_property_package_links(struct array *properties, unsigned long *rmap)
801 struct razor_property *p, *end;
803 end = properties->data + properties->size;
804 for (p = properties->data; p < end; p++)
805 if (p->packages & RAZOR_IMMEDIATE)
806 p->packages = rmap[p->packages & RAZOR_ENTRY_MASK] |
811 build_file_tree(struct razor_importer *importer)
813 int count, i, length;
814 struct import_entry *filenames;
816 unsigned long name, *r;
818 struct import_directory *d, root;
819 struct razor_entry *e;
821 count = importer->files.size / sizeof (struct import_entry);
822 qsort_with_data(importer->files.data,
824 sizeof (struct import_entry),
828 root.name = razor_importer_tokenize(importer, "");
829 array_init(&root.files);
830 array_init(&root.packages);
833 filenames = importer->files.data;
834 for (i = 0; i < count; i++) {
835 f = filenames[i].name;
842 end = strchr(f, '/');
846 memcpy(dirname, f, length);
847 dirname[length] ='\0';
848 name = razor_importer_tokenize(importer, dirname);
849 if (d->last == NULL || d->last->name != name) {
850 d->last = array_add(&d->files, sizeof *d);
851 d->last->name = name;
852 d->last->last = NULL;
853 array_init(&d->last->files);
854 array_init(&d->last->packages);
862 r = array_add(&d->packages, sizeof *r);
863 *r = filenames[i].package;
864 free(filenames[i].name);
867 count_entries(&root);
868 array_init(&importer->set->files);
870 e = array_add(&importer->set->files, sizeof *e);
871 e->name = root.name | RAZOR_ENTRY_LAST;
875 serialize_files(importer->set, &root, &importer->set->files);
877 array_release(&importer->files);
881 build_package_file_lists(struct razor_set *set, unsigned long *rmap)
883 struct razor_package *p, *packages;
885 struct razor_entry *e, *end;
886 unsigned long *r, *q;
889 count = set->packages.size / sizeof *p;
890 pkgs = zalloc(count * sizeof *pkgs);
893 end = set->files.data + set->files.size;
895 if (e->packages & RAZOR_IMMEDIATE) {
896 e->packages = rmap[e->packages & RAZOR_ENTRY_MASK] |
900 r = (unsigned long *) set->package_pool.data + e->packages;
904 q = array_add(&pkgs[*r & RAZOR_ENTRY_MASK], sizeof *q);
905 *q = e - (struct razor_entry *) set->files.data;
906 if (*r++ & RAZOR_IMMEDIATE)
912 packages = set->packages.data;
913 for (i = 0; i < count; i++) {
915 add_to_property_pool(&set->file_pool, &pkgs[i]);
916 array_release(&pkgs[i]);
922 razor_importer_finish(struct razor_importer *importer)
924 struct razor_set *set;
925 unsigned long *map, *rmap;
928 map = uniqueify_properties(importer->set);
929 remap_links(&importer->set->property_pool, map);
932 count = importer->set->packages.size / sizeof(struct razor_package);
933 map = qsort_with_data(importer->set->packages.data,
935 sizeof(struct razor_package),
939 rmap = malloc(count * sizeof *rmap);
940 for (i = 0; i < count; i++)
944 build_file_tree(importer);
945 remap_links(&importer->set->package_pool, rmap);
946 build_package_file_lists(importer->set, rmap);
947 remap_property_package_links(&importer->set->properties, rmap);
951 hashtable_release(&importer->table);
958 razor_set_list(struct razor_set *set, const char *pattern)
960 struct razor_package *p, *end;
961 int with_version = 0;
964 pool = set->string_pool.data;
965 end = set->packages.data + set->packages.size;
966 for (p = set->packages.data; p < end; p++) {
967 if (pattern && fnmatch(pattern, &pool[p->name], 0) != 0)
970 printf("%s-%s\n", &pool[p->name], &pool[p->version]);
972 printf("%s\n", &pool[p->name]);
976 struct razor_set *bsearch_set;
979 compare_package_name(const void *key, const void *data)
981 const struct razor_package *p = data;
984 pool = bsearch_set->string_pool.data;
986 return strcmp(key, &pool[p->name]);
989 struct razor_package *
990 razor_set_get_package(struct razor_set *set, const char *package)
993 return bsearch(package, set->packages.data,
994 set->packages.size / sizeof(struct razor_package),
995 sizeof(struct razor_package), compare_package_name);
999 compare_property_name(const void *key, const void *data)
1001 const struct razor_property *p = data;
1004 pool = bsearch_set->string_pool.data;
1006 return strcmp(key, &pool[p->name & RAZOR_ENTRY_MASK]);
1009 struct razor_property *
1010 razor_set_get_property(struct razor_set *set, const char *property)
1012 struct razor_property *p, *start;
1015 p = bsearch(property, set->properties.data,
1016 set->properties.size / sizeof(struct razor_property),
1017 sizeof(struct razor_property), compare_property_name);
1019 start = set->properties.data;
1021 ((p - 1)->name & RAZOR_ENTRY_MASK) ==
1022 (p->name & RAZOR_ENTRY_MASK))
1029 razor_set_list_properties(struct razor_set *set, const char *name,
1030 enum razor_property_type type)
1032 struct razor_property *p, *properties, *end;
1033 struct razor_package *package;
1037 pool = set->string_pool.data;
1040 package = razor_set_get_package(set, name);
1041 r = (unsigned long *) set->property_pool.data +
1042 package->properties;
1043 properties = set->properties.data;
1045 p = &properties[*r & RAZOR_ENTRY_MASK];
1046 if ((p->name >> 30) != type)
1048 if (pool[p->version] == '\0')
1050 &pool[p->name & RAZOR_ENTRY_MASK]);
1053 &pool[p->name & RAZOR_ENTRY_MASK],
1056 if (*r++ & RAZOR_IMMEDIATE)
1060 end = set->properties.data + set->properties.size;
1061 for (p = set->properties.data; p < end; p++) {
1062 if ((p->name >> 30) != type)
1064 if (pool[p->version] == '\0')
1066 &pool[p->name & RAZOR_ENTRY_MASK]);
1069 &pool[p->name & RAZOR_ENTRY_MASK],
1076 razor_set_list_property_packages(struct razor_set *set,
1078 const char *version,
1079 enum razor_property_type type)
1081 struct razor_property *property, *end;
1082 struct razor_package *p, *packages;
1089 property = razor_set_get_property(set, name);
1090 packages = set->packages.data;
1091 pool = set->string_pool.data;
1092 end = set->properties.data + set->properties.size;
1093 while (property < end &&
1094 strcmp(name, &pool[property->name & RAZOR_ENTRY_MASK]) == 0) {
1096 versioncmp(version, &pool[property->version]) != 0)
1098 if (type != (property->name >> 30))
1101 if (property->packages & RAZOR_IMMEDIATE)
1102 r = &property->packages;
1104 r = (unsigned long *)
1105 set->package_pool.data + property->packages;
1107 p = &packages[*r & RAZOR_ENTRY_MASK];
1109 &pool[p->name & RAZOR_ENTRY_MASK],
1111 if (*r++ & RAZOR_IMMEDIATE)
1119 static struct razor_entry *
1120 find_entry(struct razor_set *set, struct razor_entry *dir, const char *pattern)
1122 struct razor_entry *e;
1123 const char *n, *pool = set->string_pool.data;
1126 e = (struct razor_entry *) set->files.data + dir->start;
1128 n = pool + (e->name & RAZOR_ENTRY_MASK);
1129 if (strcmp(pattern + 1, n) == 0)
1132 if (e->start != 0 && strncmp(pattern + 1, n, len) == 0 &&
1133 pattern[len + 1] == '/') {
1134 return find_entry(set, e, pattern + len + 1);
1136 } while (((e++)->name & RAZOR_ENTRY_LAST) == 0);
1142 list_dir(struct razor_set *set, struct razor_entry *dir,
1143 const char *prefix, const char *pattern)
1145 struct razor_entry *e;
1146 const char *n, *pool = set->string_pool.data;
1148 e = (struct razor_entry *) set->files.data + dir->start;
1150 n = pool + (e->name & RAZOR_ENTRY_MASK);
1151 if (pattern && pattern[0] && fnmatch(pattern, n, 0) != 0)
1153 printf("%s/%s%s\n", prefix, n, e->start > 0 ? "/" : "");
1154 } while (((e++)->name & RAZOR_ENTRY_LAST) == 0);
1158 razor_set_list_files(struct razor_set *set, const char *pattern)
1160 struct razor_entry *e;
1161 char buffer[512], *p, *base;
1163 if (pattern == NULL)
1166 strcpy(buffer, pattern);
1167 e = find_entry(set, set->files.data, buffer);
1168 if (e && e->start > 0) {
1171 p = strrchr(buffer, '/');
1179 e = find_entry(set, set->files.data, buffer);
1181 list_dir(set, e, buffer, base);
1185 razor_set_list_file_packages(struct razor_set *set, const char *filename)
1187 struct razor_entry *e;
1188 struct razor_package *packages, *p;
1192 e = find_entry(set, set->files.data, filename);
1196 if (e->packages & RAZOR_IMMEDIATE)
1199 r = (unsigned long *) set->package_pool.data + e->packages;
1201 packages = set->packages.data;
1202 pool = set->string_pool.data;
1204 p = &packages[*r & RAZOR_ENTRY_MASK];
1205 printf("%s-%s\n", &pool[p->name], &pool[p->version]);
1206 if (*r++ & RAZOR_IMMEDIATE)
1211 static unsigned long *
1212 list_package_files(struct razor_set *set, unsigned long *r,
1213 struct razor_entry *dir, unsigned long end,
1216 struct razor_entry *e, *f, *entries;
1217 unsigned long next, file;
1221 entries = (struct razor_entry *) set->files.data;
1222 pool = set->string_pool.data;
1224 e = entries + dir->start;
1226 if (entries + (*r & RAZOR_ENTRY_MASK) == e) {
1227 printf("%s/%s\n", prefix,
1228 pool + (e->name & RAZOR_ENTRY_MASK));
1229 if (*r & RAZOR_ENTRY_LAST)
1232 if ((*r & RAZOR_ENTRY_MASK) >= end)
1235 } while (!((e++)->name & RAZOR_ENTRY_LAST));
1237 e = entries + dir->start;
1242 if (e->name & RAZOR_ENTRY_LAST)
1246 while (f->start == 0 && !(f->name & RAZOR_ENTRY_LAST))
1254 file = *r & RAZOR_ENTRY_MASK;
1255 if (e->start <= file && file < next) {
1256 len = strlen(prefix);
1258 strcpy(prefix + len + 1,
1259 pool + (e->name & RAZOR_ENTRY_MASK));
1260 r = list_package_files(set, r, e, next, prefix);
1263 } while (!((e++)->name & RAZOR_ENTRY_LAST) && r != NULL);
1269 razor_set_list_package_files(struct razor_set *set, const char *name)
1271 struct razor_package *package;
1272 unsigned long *r, end;
1275 package = razor_set_get_package(set, name);
1277 r = (unsigned long *) set->file_pool.data + package->files;
1278 end = set->files.size / sizeof (struct razor_entry);
1280 list_package_files(set, r, set->files.data, end, buffer);
1284 razor_set_validate(struct razor_set *set, struct array *unsatisfied)
1286 struct razor_property *r, *p, *end;
1290 end = set->properties.data + set->properties.size;
1291 pool = set->string_pool.data;
1293 for (r = set->properties.data, p = r; r < end; r++) {
1294 if (r->name >> 30 != RAZOR_PROPERTY_REQUIRES)
1297 if ((r->name & RAZOR_ENTRY_MASK) != (p->name & RAZOR_ENTRY_MASK)) {
1299 while (p < end && p->name == r->name)
1303 /* If there is more than one version of a provides,
1304 * seek to the end for the highest version. */
1305 /* FIXME: This doesn't work if we have a series of
1306 * requires a = 1, provides a = 1, requires a = 2,
1307 * provides a = 2, as the kernel and kernel-devel
1309 while (p + 1 < end && p->name == (p + 1)->name)
1312 /* FIXME: We need to track property flags (<, <=, =
1313 * etc) to properly determine if a requires is
1314 * satisfied. The current code doesn't track that the
1315 * requires a = 1 isn't satisfied by a = 2 provides. */
1318 (p->name >> 30) != RAZOR_PROPERTY_PROVIDES ||
1319 (r->name & RAZOR_ENTRY_MASK) != (p->name & RAZOR_ENTRY_MASK) ||
1320 versioncmp(&pool[r->version], &pool[p->version]) > 0) {
1321 /* FIXME: We ignore file requires for now. */
1322 if (pool[r->name & RAZOR_ENTRY_MASK] == '/')
1324 u = array_add(unsatisfied, sizeof *u);
1325 *u = r - (struct razor_property *) set->properties.data;
1331 razor_set_list_unsatisfied(struct razor_set *set)
1333 struct array unsatisfied;
1334 struct razor_property *properties, *r;
1335 unsigned long *u, *end;
1338 array_init(&unsatisfied);
1339 razor_set_validate(set, &unsatisfied);
1341 end = unsatisfied.data + unsatisfied.size;
1342 properties = set->properties.data;
1343 pool = set->string_pool.data;
1345 for (u = unsatisfied.data; u < end; u++) {
1346 r = properties + *u;
1347 if (pool[r->version] == '\0')
1348 printf("%ss not satisfied\n",
1349 &pool[r->name & RAZOR_ENTRY_MASK]);
1351 printf("%s-%s not satisfied\n",
1352 &pool[r->name & RAZOR_ENTRY_MASK],
1356 array_release(&unsatisfied);
1359 #define UPSTREAM_SOURCE 0x80000000ul
1360 #define INDEX_MASK 0x00fffffful
1363 struct razor_set *set;
1364 unsigned long *property_map;
1367 struct razor_merger {
1368 struct razor_set *set;
1369 struct hashtable table;
1370 struct source source1;
1371 struct source source2;
1374 static struct razor_merger *
1375 razor_merger_create(struct razor_set *set1, struct razor_set *set2)
1377 struct razor_merger *merger;
1381 merger = zalloc(sizeof *merger);
1382 merger->set = razor_set_create();
1383 hashtable_init(&merger->table, &merger->set->string_pool);
1385 count = set1->properties.size / sizeof (struct razor_property);
1386 size = count * sizeof merger->source1.property_map[0];
1387 merger->source1.property_map = zalloc(size);
1388 merger->source1.set = set1;
1390 count = set2->properties.size / sizeof (struct razor_property);
1391 size = count * sizeof merger->source2.property_map[0];
1392 merger->source2.property_map = zalloc(size);
1393 merger->source2.set = set2;
1399 add_package(struct razor_merger *merger,
1400 struct razor_package *package, struct source *source,
1401 unsigned long flags)
1405 struct razor_package *p;
1407 pool = source->set->string_pool.data;
1408 p = array_add(&merger->set->packages, sizeof *p);
1409 p->name = hashtable_tokenize(&merger->table, &pool[package->name]);
1411 p->version = hashtable_tokenize(&merger->table,
1412 &pool[package->version]);
1413 p->properties = package->properties;
1415 if (package->properties & RAZOR_IMMEDIATE)
1416 r = &package->properties;
1418 r = (unsigned long *)
1419 source->set->property_pool.data + package->properties;
1421 source->property_map[*r & RAZOR_ENTRY_MASK] = 1;
1422 if (*r++ & RAZOR_IMMEDIATE)
1428 /* Build the new package list sorted by merging the two package lists.
1429 * Build new string pool as we go. */
1431 merge_packages(struct razor_merger *merger, struct array *packages)
1433 struct razor_package *upstream_packages, *p, *s, *send;
1434 struct source *source1, *source2;
1435 char *spool, *upool;
1436 unsigned long *u, *uend;
1439 source1 = &merger->source1;
1440 source2 = &merger->source2;
1441 upstream_packages = source2->set->packages.data;
1444 uend = packages->data + packages->size;
1445 upool = source2->set->string_pool.data;
1447 s = source1->set->packages.data;
1448 send = source1->set->packages.data + source1->set->packages.size;
1449 spool = source1->set->string_pool.data;
1452 p = upstream_packages + *u;
1455 cmp = strcmp(&spool[s->name], &upool[p->name]);
1456 if (u >= uend || cmp < 0) {
1457 add_package(merger, s, source1, 0);
1459 } else if (cmp == 0) {
1460 add_package(merger, p, source2, UPSTREAM_SOURCE);
1464 add_package(merger, p, source2, UPSTREAM_SOURCE);
1470 static unsigned long
1471 add_property(struct razor_merger *merger,
1472 const char *name, const char *version, int type)
1474 struct razor_property *p;
1476 p = array_add(&merger->set->properties, sizeof *p);
1477 p->name = hashtable_tokenize(&merger->table, name) | (type << 30);
1478 p->version = hashtable_tokenize(&merger->table, version);
1480 return p - (struct razor_property *) merger->set->properties.data;
1484 merge_properties(struct razor_merger *merger)
1486 struct razor_property *p1, *p2;
1487 struct razor_set *set1, *set2;
1488 unsigned long *map1, *map2;
1489 int i, j, cmp, count1, count2;
1490 char *pool1, *pool2;
1492 set1 = merger->source1.set;
1493 set2 = merger->source2.set;
1494 map1 = merger->source1.property_map;
1495 map2 = merger->source2.property_map;
1499 pool1 = set1->string_pool.data;
1500 pool2 = set2->string_pool.data;
1502 count1 = set1->properties.size / sizeof *p1;
1503 count2 = set2->properties.size / sizeof *p2;
1504 while (i < count1 || j < count2) {
1505 if (i < count1 && map1[i] == 0) {
1509 if (j < count2 && map2[j] == 0) {
1513 p1 = (struct razor_property *) set1->properties.data + i;
1514 p2 = (struct razor_property *) set2->properties.data + j;
1515 if (i < count1 && j < count2)
1516 cmp = strcmp(&pool1[p1->name & RAZOR_ENTRY_MASK],
1517 &pool2[p2->name & RAZOR_ENTRY_MASK]);
1518 else if (i < count1)
1523 cmp = versioncmp(&pool1[p1->version],
1524 &pool2[p2->version]);
1526 map1[i++] = add_property(merger,
1527 &pool1[p1->name & RAZOR_ENTRY_MASK],
1528 &pool1[p1->version],
1530 } else if (cmp > 0) {
1531 map2[j++] = add_property(merger,
1532 &pool2[p2->name & RAZOR_ENTRY_MASK],
1533 &pool2[p2->version],
1536 map1[i++] = map2[j++] = add_property(merger,
1537 &pool1[p1->name & RAZOR_ENTRY_MASK],
1538 &pool1[p1->version],
1544 static unsigned long
1545 emit_properties(struct array *source_pool, unsigned long index,
1546 unsigned long *map, struct array *pool)
1548 unsigned long r, *p, *q;
1550 r = pool->size / sizeof *q;
1551 p = (unsigned long *) source_pool->data + index;
1553 q = array_add(pool, sizeof *q);
1554 *q = map[*p & RAZOR_ENTRY_MASK] | (*p & ~RAZOR_ENTRY_MASK);
1555 if (*p++ & RAZOR_ENTRY_LAST)
1562 /* Rebuild property->packages maps. We can't just remap these, as a
1563 * property may have lost or gained a number of packages. Allocate an
1564 * array per property and loop through the packages and add them to
1565 * the arrays for their properties. */
1567 rebuild_package_lists(struct razor_set *set)
1569 struct array *pkgs, *a;
1570 struct razor_package *pkg, *pkg_end;
1571 struct razor_property *prop, *prop_end;
1572 unsigned long *r, *q, *pool;
1575 count = set->properties.size / sizeof (struct razor_property);
1576 pkgs = zalloc(count * sizeof *pkgs);
1577 pkg_end = set->packages.data + set->packages.size;
1578 pool = set->property_pool.data;
1580 for (pkg = set->packages.data; pkg < pkg_end; pkg++) {
1581 for (r = &pool[pkg->properties]; ; r++) {
1582 q = array_add(&pkgs[*r & RAZOR_ENTRY_MASK], sizeof *q);
1583 *q = pkg - (struct razor_package *) set->packages.data;
1584 if (*r & RAZOR_IMMEDIATE)
1589 prop_end = set->properties.data + set->properties.size;
1591 for (prop = set->properties.data; prop < prop_end; prop++, a++) {
1592 if (a->size / sizeof *r == 1) {
1594 prop->packages = *r | RAZOR_IMMEDIATE;
1597 add_to_property_pool(&set->property_pool, a);
1605 razor_merger_finish(struct razor_merger *merger)
1607 struct razor_set *result;
1609 result = merger->set;
1610 hashtable_release(&merger->table);
1616 /* Add packages from 'upstream' to 'set'. The packages to add are
1617 * specified by the 'packages' array, which is a sorted list of
1618 * package indexes. Returns a newly allocated package set. Does not
1619 * enforce validity of the resulting package set.
1621 * This looks more complicated than it is. An easy way to merge two
1622 * package sets would be to just use a razor_importer, but that
1623 * requires resorting, and is thus O(n log n). We can do this in a
1624 * linear sweep, but it gets a little more complicated.
1627 razor_set_add(struct razor_set *set, struct razor_set *upstream,
1628 struct array *packages)
1630 struct razor_merger *merger;
1631 struct razor_package *p, *pend;
1633 merger = razor_merger_create(set, upstream);
1635 merge_packages(merger, packages);
1637 /* As we built the package list, we filled out a bitvector of
1638 * the properties that are referenced by the packages in the
1639 * new set. Now we do a parallel loop through the properties
1640 * and emit those marked in the bit vector to the new set. In
1641 * the process, we update the bit vector to actually map from
1642 * indices in the old property list to indices in the new
1643 * property list for both sets. */
1645 merge_properties(merger);
1647 /* Now we loop through the packages again and emit the
1648 * property lists, remapped to point to the new properties. */
1650 pend = merger->set->packages.data + merger->set->packages.size;
1651 for (p = merger->set->packages.data; p < pend; p++) {
1654 if (p->name & UPSTREAM_SOURCE)
1655 src = &merger->source2;
1657 src = &merger->source1;
1659 p->properties = emit_properties(&src->set->property_pool,
1662 &merger->set->property_pool);
1663 p->name &= INDEX_MASK;
1666 rebuild_package_lists(merger->set);
1668 return razor_merger_finish(merger);
1672 razor_set_satisfy(struct razor_set *set, struct array *unsatisfied,
1673 struct razor_set *upstream, struct array *list)
1675 struct razor_property *requires, *r;
1676 struct razor_property *p, *pend;
1677 unsigned long *u, *end, *pkg, *package_pool;
1680 end = unsatisfied->data + unsatisfied->size;
1681 requires = set->properties.data;
1682 pool = set->string_pool.data;
1684 p = upstream->properties.data;
1685 pend = upstream->properties.data + upstream->properties.size;
1686 upool = upstream->string_pool.data;
1687 package_pool = upstream->package_pool.data;
1689 for (u = unsatisfied->data; u < end; u++) {
1693 strcmp(&pool[r->name & RAZOR_ENTRY_MASK],
1694 &upool[p->name & RAZOR_ENTRY_MASK]) > 0 &&
1695 (p->name >> 30) != RAZOR_PROPERTY_PROVIDES)
1697 /* If there is more than one version of a provides,
1698 * seek to the end for the highest version. */
1699 while (p + 1 < pend && p->name == (p + 1)->name)
1703 strcmp(&pool[r->name & RAZOR_ENTRY_MASK],
1704 &upool[p->name & RAZOR_ENTRY_MASK]) != 0 ||
1705 versioncmp(&pool[r->version], &upool[p->version]) > 0) {
1706 /* Do we need to track unsatisfiable requires
1707 * as we go, or should we just do a
1708 * razor_set_validate() at the end? */
1710 pkg = array_add(list, sizeof *pkg);
1711 /* We just pull in the first package that provides */
1712 if (p->packages & RAZOR_IMMEDIATE)
1713 *pkg = p->packages & RAZOR_ENTRY_MASK;
1715 *pkg = package_pool[p->packages];
1721 find_packages(struct razor_set *set,
1722 int count, const char **packages, struct array *list)
1724 struct razor_package *p;
1728 /* FIXME: Sort the packages. */
1729 for (i = 0; i < count; i++) {
1730 p = razor_set_get_package(set, packages[i]);
1731 r = array_add(list, sizeof *r);
1732 *r = p - (struct razor_package *) set->packages.data;
1737 find_all_packages(struct razor_set *set,
1738 struct razor_set *upstream, struct array *list)
1740 struct razor_package *p, *u, *pend, *uend;
1744 pend = set->packages.data + set->packages.size;
1745 pool = set->string_pool.data;
1746 u = upstream->packages.data;
1747 uend = upstream->packages.data + upstream->packages.size;
1748 upool = upstream->string_pool.data;
1750 for (p = set->packages.data; p < pend; p++) {
1751 while (u < uend && strcmp(&pool[p->name], &upool[u->name]) > 0)
1753 if (strcmp(&pool[p->name], &upool[u->name]) == 0) {
1754 r = array_add(list, sizeof *r);
1755 *r = u - (struct razor_package *) upstream->packages.data;
1761 razor_set_update(struct razor_set *set, struct razor_set *upstream,
1762 int count, const char **packages)
1764 struct razor_set *new;
1765 struct razor_package *upackages;
1766 struct array list, unsatisfied;
1768 unsigned long *u, *end;
1773 find_packages(upstream, count, packages, &list);
1775 find_all_packages(set, upstream, &list);
1777 end = list.data + list.size;
1778 upackages = upstream->packages.data;
1779 pool = upstream->string_pool.data;
1780 total += list.size / sizeof *u;
1782 while (list.size > 0) {
1783 new = razor_set_add(set, upstream, &list);
1784 array_release(&list);
1785 razor_set_destroy(set);
1788 array_init(&unsatisfied);
1789 razor_set_validate(new, &unsatisfied);
1791 razor_set_satisfy(new, &unsatisfied, upstream, &list);
1792 array_release(&unsatisfied);
1794 end = list.data + list.size;
1795 upackages = upstream->packages.data;
1796 pool = upstream->string_pool.data;
1797 total += list.size / sizeof *u;
1800 array_release(&list);
1805 /* The diff order matters. We should sort the packages so that a
1806 * REMOVE of a package comes before the INSTALL, and so that all
1807 * requires for a package have been installed before the package.
1811 razor_set_diff(struct razor_set *set, struct razor_set *upstream,
1812 razor_package_callback_t callback, void *data)
1814 struct razor_package *p, *pend, *u, *uend;
1815 char *ppool, *upool;
1818 p = set->packages.data;
1819 pend = set->packages.data + set->packages.size;
1820 ppool = set->string_pool.data;
1822 u = upstream->packages.data;
1823 uend = upstream->packages.data + upstream->packages.size;
1824 upool = upstream->string_pool.data;
1826 while (p < pend || u < uend) {
1827 if (p < pend && u < uend) {
1828 res = strcmp(&ppool[p->name], &upool[u->name]);
1830 res = versioncmp(&ppool[p->version],
1831 &upool[u->version]);
1834 if (u == uend || res < 0) {
1835 callback(&ppool[p->name], &ppool[p->version],
1839 } else if (p == pend || res > 0) {
1840 callback(&upool[u->name], NULL, &upool[u->version],