razor.c
author Dan Winship <danw@gnome.org>
Fri Feb 29 11:51:58 2008 -0500 (2008-02-29)
changeset 136 eef2b734f2cc
parent 132 f2c0c5993ff7
child 137 4722cd3437cb
permissions -rw-r--r--
use -Wmissing-prototypes to help find dead code

(by forcing us to declare functions static, allowing gcc to tell us
"warning: foo defined by not used")
     1 #define _GNU_SOURCE
     2 
     3 #include <stdlib.h>
     4 #include <stddef.h>
     5 #include <stdint.h>
     6 #include <stdio.h>
     7 #include <string.h>
     8 #include <sys/types.h>
     9 #include <sys/stat.h>
    10 #include <sys/mman.h>
    11 #include <unistd.h>
    12 #include <fcntl.h>
    13 #include <errno.h>
    14 #include <ctype.h>
    15 #include <fnmatch.h>
    16 
    17 #include "razor.h"
    18 #include "razor-internal.h"
    19 #include "types.h"
    20 
    21 struct razor_set_section {
    22 	uint32_t type;
    23 	uint32_t offset;
    24 	uint32_t size;
    25 };
    26 
    27 struct razor_set_header {
    28 	uint32_t magic;
    29 	uint32_t version;
    30 	struct razor_set_section sections[0];
    31 };
    32 
    33 #define RAZOR_MAGIC 0x7a7a7a7a
    34 #define RAZOR_VERSION 1
    35 
    36 #define RAZOR_STRING_POOL	0
    37 #define RAZOR_PACKAGES		1
    38 #define RAZOR_PROPERTIES	2
    39 #define RAZOR_FILES		3
    40 #define RAZOR_PACKAGE_POOL	4
    41 #define RAZOR_PROPERTY_POOL	5
    42 #define RAZOR_FILE_POOL		6
    43 
    44 struct razor_package {
    45 	uint name  : 24;
    46 	uint flags : 8;
    47 	uint32_t version;
    48 	struct list_head properties;
    49 	struct list_head files;
    50 };
    51 
    52 struct razor_property {
    53 	uint name  : 24;
    54 	uint flags : 6;
    55 	uint type  : 2;
    56 	uint32_t relation;
    57 	uint32_t version;
    58 	struct list_head packages;
    59 };
    60 
    61 struct razor_entry {
    62 	uint name  : 24;
    63 	uint flags : 8;
    64 	uint32_t start;
    65 	struct list_head packages;
    66 };
    67 
    68 #define RAZOR_ENTRY_LAST	0x80
    69 
    70 struct razor_set {
    71 	struct array string_pool;
    72  	struct array packages;
    73  	struct array properties;
    74  	struct array files;
    75 	struct array package_pool;
    76  	struct array property_pool;
    77  	struct array file_pool;
    78 	struct razor_set_header *header;
    79 };
    80 
    81 struct import_entry {
    82 	uint32_t package;
    83 	char *name;
    84 };
    85 
    86 struct import_directory {
    87 	uint32_t name, count;
    88 	struct array files;
    89 	struct array packages;
    90 	struct import_directory *last;
    91 };
    92 
    93 struct razor_importer {
    94 	struct razor_set *set;
    95 	struct hashtable table;
    96 	struct razor_package *package;
    97 	struct array properties;
    98 	struct array files;
    99 };
   100 
   101 static void *
   102 zalloc(size_t size)
   103 {
   104 	void *p;
   105 
   106 	p = malloc(size);
   107 	memset(p, 0, size);
   108 
   109 	return p;
   110 }
   111 
   112 struct razor_set_section razor_sections[] = {
   113 	{ RAZOR_STRING_POOL,	offsetof(struct razor_set, string_pool) },
   114 	{ RAZOR_PACKAGES,	offsetof(struct razor_set, packages) },
   115 	{ RAZOR_PROPERTIES,	offsetof(struct razor_set, properties) },
   116 	{ RAZOR_FILES,		offsetof(struct razor_set, files) },
   117 	{ RAZOR_PACKAGE_POOL,	offsetof(struct razor_set, package_pool) },
   118 	{ RAZOR_PROPERTY_POOL,	offsetof(struct razor_set, property_pool) },
   119 	{ RAZOR_FILE_POOL,	offsetof(struct razor_set, file_pool) },
   120 };
   121 
   122 struct razor_set *
   123 razor_set_create(void)
   124 {
   125 	return zalloc(sizeof(struct razor_set));
   126 }
   127 
   128 struct razor_set *
   129 razor_set_open(const char *filename)
   130 {
   131 	struct razor_set *set;
   132 	struct razor_set_section *s;
   133 	struct stat stat;
   134 	struct array *array;
   135 	int fd;
   136 
   137 	set = zalloc(sizeof *set);
   138 	fd = open(filename, O_RDONLY);
   139 	if (fstat(fd, &stat) < 0)
   140 		return NULL;
   141 	set->header = mmap(NULL, stat.st_size, PROT_READ, MAP_PRIVATE, fd, 0);
   142 	if (set->header == MAP_FAILED) {
   143 		free(set);
   144 		return NULL;
   145 	}
   146 
   147 	for (s = set->header->sections; ~s->type; s++) {
   148 		if (s->type >= ARRAY_SIZE(razor_sections))
   149 			continue;
   150 		if (s->type != razor_sections[s->type].type)
   151 			continue;
   152 		array = (void *) set + razor_sections[s->type].offset;
   153 		array->data = (void *) set->header + s->offset;
   154 		array->size = s->size;
   155 		array->alloc = s->size;
   156 	}
   157 	close(fd);
   158 
   159 	return set;
   160 }
   161 
   162 void
   163 razor_set_destroy(struct razor_set *set)
   164 {
   165 	unsigned int size;
   166 	struct array *a;
   167 	int i;
   168 
   169 	if (set->header) {
   170 		for (i = 0; set->header->sections[i].type; i++)
   171 			;
   172 		size = set->header->sections[i].type;
   173 		munmap(set->header, size);
   174 	} else {
   175 		for (i = 0; i < ARRAY_SIZE(razor_sections); i++) {
   176 			a = (void *) set + razor_sections[i].offset;
   177 			free(a->data);
   178 		}
   179 	}
   180 
   181 	free(set);
   182 }
   183 
   184 int
   185 razor_set_write(struct razor_set *set, const char *filename)
   186 {
   187 	char data[4096];
   188 	struct razor_set_header *header = (struct razor_set_header *) data;
   189 	struct array *a;
   190 	uint32_t offset;
   191 	int i, fd;
   192 
   193 	memset(data, 0, sizeof data);
   194 	header->magic = RAZOR_MAGIC;
   195 	header->version = RAZOR_VERSION;
   196 	offset = sizeof data;
   197 
   198 	for (i = 0; i < ARRAY_SIZE(razor_sections); i++) {
   199 		if (razor_sections[i].type != i)
   200 			continue;
   201 		a = (void *) set + razor_sections[i].offset;
   202 		header->sections[i].type = i;
   203 		header->sections[i].offset = offset;
   204 		header->sections[i].size = a->size;
   205 		offset += ALIGN(a->size, 4096);
   206 	}
   207 
   208 	header->sections[i].type = ~0;
   209 	header->sections[i].offset = 0;
   210 	header->sections[i].size = 0;
   211 
   212 	fd = open(filename, O_CREAT | O_WRONLY | O_TRUNC, 0666);
   213 	if (fd < 0)
   214 		return -1;
   215 
   216 	razor_write(fd, data, sizeof data);
   217 	memset(data, 0, sizeof data);
   218 	for (i = 0; i < ARRAY_SIZE(razor_sections); i++) {
   219 		if (razor_sections[i].type != i)
   220 			continue;
   221 		a = (void *) set + razor_sections[i].offset;
   222 		razor_write(fd, a->data, a->size);
   223 		razor_write(fd, data, ALIGN(a->size, 4096) - a->size);
   224 	}
   225 
   226 	close(fd);
   227 
   228 	return 0;
   229 }
   230 
   231 void
   232 razor_importer_begin_package(struct razor_importer *importer,
   233 			     const char *name, const char *version)
   234 {
   235 	struct razor_package *p;
   236 
   237 	p = array_add(&importer->set->packages, sizeof *p);
   238 	p->name = hashtable_tokenize(&importer->table, name);
   239 	p->flags = 0;
   240 	p->version = hashtable_tokenize(&importer->table, version);
   241 
   242 	importer->package = p;
   243 	array_init(&importer->properties);
   244 }
   245 
   246 void
   247 razor_importer_finish_package(struct razor_importer *importer)
   248 {
   249 	list_set_array(&importer->package->properties,
   250 		       &importer->set->property_pool,
   251 		       &importer->properties,
   252 		       1);
   253 
   254 	array_release(&importer->properties);
   255 }
   256 
   257 void
   258 razor_importer_add_property(struct razor_importer *importer,
   259 			    const char *name,
   260 			    enum razor_version_relation relation,
   261 			    const char *version,
   262 			    enum razor_property_type type)
   263 {
   264 	struct razor_property *p;
   265 	uint32_t *r;
   266 
   267 	p = array_add(&importer->set->properties, sizeof *p);
   268 	p->name = hashtable_tokenize(&importer->table, name);
   269 	p->flags = 0;
   270 	p->type = type;
   271 	p->relation = relation;
   272 	p->version = hashtable_tokenize(&importer->table, version);
   273 	list_set_ptr(&p->packages, importer->package -
   274 		     (struct razor_package *) importer->set->packages.data);
   275 
   276 	r = array_add(&importer->properties, sizeof *r);
   277 	*r = p - (struct razor_property *) importer->set->properties.data;
   278 }
   279 
   280 void
   281 razor_importer_add_file(struct razor_importer *importer, const char *name)
   282 {
   283 	struct import_entry *e;
   284 
   285 	e = array_add(&importer->files, sizeof *e);
   286 
   287 	e->package = importer->package -
   288 		(struct razor_package *) importer->set->packages.data;
   289 	e->name = strdup(name);
   290 }
   291 
   292 struct razor_importer *
   293 razor_importer_new(void)
   294 {
   295 	struct razor_importer *importer;
   296 
   297 	importer = zalloc(sizeof *importer);
   298 	importer->set = razor_set_create();
   299 	hashtable_init(&importer->table, &importer->set->string_pool);
   300 
   301 	return importer;
   302 }
   303 
   304 /* Destroy an importer without creating the set. */
   305 void
   306 razor_importer_destroy(struct razor_importer *importer)
   307 {
   308 	/* FIXME: write this */
   309 }
   310 
   311 
   312 typedef int (*compare_with_data_func_t)(const void *p1,
   313 					const void *p,
   314 					void *data);
   315 
   316 struct qsort_context {
   317 	size_t size;
   318 	compare_with_data_func_t compare;
   319 	void *data;
   320 };
   321 
   322 static void
   323 qsort_swap(void *p1, void *p2, size_t size)
   324 {
   325 	char buffer[size];
   326 
   327 	memcpy(buffer, p1, size);
   328 	memcpy(p1, p2, size);
   329 	memcpy(p2, buffer, size);
   330 }
   331 
   332 static void
   333 __qsort_with_data(void *base, size_t nelem, uint32_t *map,
   334 		  struct qsort_context *ctx)
   335 {
   336 	void *p, *start, *end, *pivot;
   337 	uint32_t *mp, *mstart, *mend, tmp;
   338 	int left, right, result;
   339 	size_t size = ctx->size;
   340 
   341 	p = base;
   342 	start = base;
   343 	end = base + nelem * size;
   344 	mp = map;
   345 	mstart = map;
   346 	mend = map + nelem;
   347 	pivot = base + (random() % nelem) * size;
   348 
   349 	while (p < end) {
   350 		result = ctx->compare(p, pivot, ctx->data);
   351 		if (result < 0) {
   352 			qsort_swap(p, start, size);
   353 			tmp = *mp;
   354 			*mp = *mstart;
   355 			*mstart = tmp;
   356 			if (start == pivot)
   357 				pivot = p;
   358 			start += size;
   359 			mstart++;
   360 			p += size;
   361 			mp++;
   362 		} else if (result == 0) {
   363 			p += size;
   364 			mp++;
   365 		} else {
   366  			end -= size;
   367 			mend--;
   368 			qsort_swap(p, end, size);
   369 			tmp = *mp;
   370 			*mp = *mend;
   371 			*mend = tmp;
   372 			if (end == pivot)
   373 				pivot = p;
   374 		}
   375 	}
   376 
   377 	left = (start - base) / size;
   378 	right = (base + nelem * size - end) / size;
   379 	if (left > 1)
   380 		__qsort_with_data(base, left, map, ctx);
   381 	if (right > 1)
   382 		__qsort_with_data(end, right, mend, ctx);
   383 }
   384 
   385 uint32_t *
   386 qsort_with_data(void *base, size_t nelem, size_t size,
   387 		compare_with_data_func_t compare, void *data)
   388 {
   389 	struct qsort_context ctx;
   390 	uint32_t *map;
   391 	int i;
   392 
   393 	if (nelem == 0)
   394 		return NULL;
   395 
   396 	ctx.size = size;
   397 	ctx.compare = compare;
   398 	ctx.data = data;
   399 
   400 	map = malloc(nelem * sizeof (uint32_t));
   401 	for (i = 0; i < nelem; i++)
   402 		map[i] = i;
   403 
   404 	__qsort_with_data(base, nelem, map, &ctx);
   405 
   406 	return map;
   407 }
   408 
   409 static int
   410 versioncmp(const char *s1, const char *s2)
   411 {
   412 	const char *p1, *p2;
   413 	long n1, n2;
   414 	int res;
   415 
   416 	n1 = strtol(s1, (char **) &p1, 0);
   417 	n2 = strtol(s2, (char **) &p2, 0);
   418 
   419 	/* Epoch; if one but not the other has an epoch set, default
   420 	 * the epoch-less version to 0. */
   421 	res = (*p1 == ':') - (*p2 == ':');
   422 	if (res < 0) {
   423 		n1 = 0;
   424 		p1 = s1;
   425 		p2++;
   426 	} else if (res > 0) {
   427 		p1++;
   428 		n2 = 0;
   429 		p2 = s2;
   430 	}
   431 
   432 	if (n1 != n2)
   433 		return n1 - n2;
   434 	while (*p1 && *p2) {
   435 		if (*p1 != *p2)
   436 			return *p1 - *p2;
   437 		p1++;
   438 		p2++;
   439 		if (isdigit(*p1) && isdigit(*p2))
   440 			return versioncmp(p1, p2);
   441 	}
   442 
   443 	return *p1 - *p2;
   444 }
   445 
   446 static int
   447 compare_packages(const void *p1, const void *p2, void *data)
   448 {
   449 	const struct razor_package *pkg1 = p1, *pkg2 = p2;
   450 	struct razor_set *set = data;
   451 	char *pool = set->string_pool.data;
   452 
   453 	/* FIXME: what if the flags are different? */
   454 	if (pkg1->name == pkg2->name)
   455 		return versioncmp(&pool[pkg1->version], &pool[pkg2->version]);
   456 	else
   457 		return strcmp(&pool[pkg1->name], &pool[pkg2->name]);
   458 }
   459 
   460 static int
   461 compare_properties(const void *p1, const void *p2, void *data)
   462 {
   463 	const struct razor_property *prop1 = p1, *prop2 = p2;
   464 	struct razor_set *set = data;
   465 	char *pool = set->string_pool.data;
   466 
   467 	if (prop1->name != prop2->name) 
   468 		return strcmp(&pool[prop1->name], &pool[prop2->name]);
   469 	else if (prop1->type != prop2->type)
   470 		return prop1->type - prop2->type;
   471 	else if (prop1->relation != prop2->relation)
   472 		return prop1->relation - prop2->relation;
   473 	else
   474 		return versioncmp(&pool[prop1->version], &pool[prop2->version]);
   475 }
   476 
   477 static uint32_t *
   478 uniqueify_properties(struct razor_set *set)
   479 {
   480 	struct razor_property *rp, *up, *rp_end;
   481 	struct array *pkgs, *p;
   482 	struct list_head *r;
   483 	uint32_t *map, *rmap;
   484 	int i, count, unique;
   485 
   486 	count = set->properties.size / sizeof(struct razor_property);
   487 	map = qsort_with_data(set->properties.data,
   488 			      count,
   489 			      sizeof(struct razor_property),
   490 			      compare_properties,
   491 			      set);
   492 
   493 	rp_end = set->properties.data + set->properties.size;
   494 	rmap = malloc(count * sizeof *map);
   495 	pkgs = zalloc(count * sizeof *pkgs);
   496 	for (rp = set->properties.data, up = rp, i = 0; rp < rp_end; rp++, i++) {
   497 		if (rp->name != up->name || rp->type != up->type ||
   498 		    rp->relation != up->relation || rp->version != up->version) {
   499 			up++;
   500 			up->name = rp->name;
   501 			up->flags = 0;
   502 			up->type = rp->type;
   503 			up->relation = rp->relation;
   504 			up->version = rp->version;
   505 		}
   506 
   507 		unique = up - (struct razor_property *) set->properties.data;
   508 		rmap[map[i]] = unique;
   509 		r = array_add(&pkgs[unique], sizeof *r);
   510 		*r = rp->packages;
   511 	}
   512 	free(map);
   513 
   514 	if (up != rp)
   515 		up++;
   516 	set->properties.size = (void *) up - set->properties.data;
   517 	rp_end = up;
   518 	for (rp = set->properties.data, p = pkgs; rp < rp_end; rp++, p++) {
   519 		list_set_array(&rp->packages, &set->package_pool, p, 0);
   520 		array_release(p);
   521 	}
   522 
   523 	free(pkgs);
   524 
   525 	return rmap;
   526 }
   527 
   528 static int
   529 compare_filenames(const void *p1, const void *p2, void *data)
   530 {
   531 	const struct import_entry *e1 = p1;
   532 	const struct import_entry *e2 = p2;
   533 	const char *n1 = e1->name;
   534 	const char *n2 = e2->name;
   535 
   536 	/* Need to make sure that the contents of a directory
   537 	 * are sorted immediately after it. So "foo/bar" has to
   538 	 * sort before "foo.conf"
   539 	 *
   540 	 * FIXME: this is about 60% slower than strcmp
   541 	 */
   542 	while (*n1 && *n2) {
   543 		if (*n1 < *n2)
   544 			return *n2 == '/' ? 1 : -1;
   545 		else if (*n1 > *n2)
   546 			return *n1 == '/' ? -1 : 1;
   547 		n1++;
   548 		n2++;
   549 	}
   550 	if (*n1)
   551 		return 1;
   552 	else if (*n2)
   553 		return -1;
   554 	else
   555 		return 0;
   556 }
   557 
   558 static void
   559 count_entries(struct import_directory *d)
   560 {
   561 	struct import_directory *p, *end;
   562 
   563 	p = d->files.data;
   564 	end = d->files.data + d->files.size;
   565 	d->count = 0;
   566 	while (p < end) {
   567 		count_entries(p);
   568 		d->count += p->count + 1;
   569 		p++;
   570 	}		
   571 }
   572 
   573 static void
   574 serialize_files(struct razor_set *set,
   575 		struct import_directory *d, struct array *array)
   576 {
   577 	struct import_directory *p, *end;
   578 	struct razor_entry *e = NULL;
   579 	uint32_t s;
   580 
   581 	p = d->files.data;
   582 	end = d->files.data + d->files.size;
   583 	s = array->size / sizeof *e + d->files.size / sizeof *p;
   584 	while (p < end) {
   585 		e = array_add(array, sizeof *e);
   586 		e->name = p->name;
   587 		e->flags = 0;
   588 		e->start = p->count > 0 ? s : 0;
   589 		s += p->count;
   590 
   591 		list_set_array(&e->packages, &set->package_pool, &p->packages, 0);
   592 		array_release(&p->packages);
   593 		p++;
   594 	}		
   595 	if (e != NULL)
   596 		e->flags |= RAZOR_ENTRY_LAST;
   597 
   598 	p = d->files.data;
   599 	end = d->files.data + d->files.size;
   600 	while (p < end) {
   601 		serialize_files(set, p, array);
   602 		p++;
   603 	}
   604 }
   605 
   606 static void
   607 remap_property_package_links(struct array *properties, uint32_t *rmap)
   608 {
   609 	struct razor_property *p, *end;
   610 
   611 	end = properties->data + properties->size;
   612 	for (p = properties->data; p < end; p++)
   613 		list_remap_head(&p->packages, rmap);
   614 }
   615 
   616 static void
   617 build_file_tree(struct razor_importer *importer)
   618 {
   619 	int count, i, length;
   620 	struct import_entry *filenames;
   621 	char *f, *end;
   622 	uint32_t name, *r;
   623 	char dirname[256];
   624 	struct import_directory *d, root;
   625 	struct razor_entry *e;
   626 
   627 	count = importer->files.size / sizeof (struct import_entry);
   628 	qsort_with_data(importer->files.data,
   629 			count,
   630 			sizeof (struct import_entry),
   631 			compare_filenames,
   632 			NULL);
   633 
   634 	root.name = hashtable_tokenize(&importer->table, "");
   635 	array_init(&root.files);
   636 	array_init(&root.packages);
   637 	root.last = NULL;
   638 
   639 	filenames = importer->files.data;
   640 	for (i = 0; i < count; i++) {
   641 		f = filenames[i].name;
   642 		if (*f != '/')
   643 			continue;
   644 		f++;
   645 
   646 		d = &root;
   647 		while (*f) {
   648 			end = strchr(f, '/');
   649 			if (end == NULL)
   650 				end = f + strlen(f);
   651 			length = end - f;
   652 			memcpy(dirname, f, length);
   653 			dirname[length] ='\0';
   654 			name = hashtable_tokenize(&importer->table, dirname);
   655 			if (d->last == NULL || d->last->name != name) {
   656 				d->last = array_add(&d->files, sizeof *d);
   657 				d->last->name = name;
   658 				d->last->last = NULL;
   659 				array_init(&d->last->files);
   660 				array_init(&d->last->packages);
   661 			}
   662 			d = d->last;				
   663 			f = end + 1;
   664 			if (*end == '\0')
   665 				break;
   666 		}
   667 
   668 		r = array_add(&d->packages, sizeof *r);
   669 		*r = filenames[i].package;
   670 		free(filenames[i].name);
   671 	}
   672 
   673 	count_entries(&root);
   674 	array_init(&importer->set->files);
   675 
   676 	e = array_add(&importer->set->files, sizeof *e);
   677 	e->name = root.name;
   678 	e->flags = RAZOR_ENTRY_LAST;
   679 	e->start = importer->files.size ? 1 : 0;
   680 	list_set_empty(&e->packages);
   681 
   682 	serialize_files(importer->set, &root, &importer->set->files);
   683 
   684 	array_release(&importer->files);
   685 }
   686 
   687 static void
   688 build_package_file_lists(struct razor_set *set, uint32_t *rmap)
   689 {
   690 	struct razor_package *p, *packages;
   691 	struct array *pkgs;
   692 	struct razor_entry *e, *end;
   693 	struct list *r;
   694 	uint32_t *q;
   695 	int i, count;
   696 
   697 	count = set->packages.size / sizeof *p;
   698 	pkgs = zalloc(count * sizeof *pkgs);
   699 
   700 	end = set->files.data + set->files.size;
   701 	for (e = set->files.data; e < end; e++) {
   702 		list_remap_head(&e->packages, rmap);
   703 		r = list_first(&e->packages, &set->package_pool);
   704 		while (r) {
   705 			q = array_add(&pkgs[r->data], sizeof *q);
   706 			*q = e - (struct razor_entry *) set->files.data;
   707 			r = list_next(r);
   708 		}
   709 	}
   710 
   711 	packages = set->packages.data;
   712 	for (i = 0; i < count; i++) {
   713 		list_set_array(&packages[i].files, &set->file_pool, &pkgs[i], 0);
   714 		array_release(&pkgs[i]);
   715 	}
   716 	free(pkgs);
   717 }
   718 
   719 struct razor_set *
   720 razor_importer_finish(struct razor_importer *importer)
   721 {
   722 	struct razor_set *set;
   723 	uint32_t *map, *rmap;
   724 	int i, count;
   725 
   726 	map = uniqueify_properties(importer->set);
   727 	list_remap_pool(&importer->set->property_pool, map);
   728 	free(map);
   729 
   730 	count = importer->set->packages.size / sizeof(struct razor_package);
   731 	map = qsort_with_data(importer->set->packages.data,
   732 			      count,
   733 			      sizeof(struct razor_package),
   734 			      compare_packages,
   735 			      importer->set);
   736 
   737 	rmap = malloc(count * sizeof *rmap);
   738 	for (i = 0; i < count; i++)
   739 		rmap[map[i]] = i;
   740 	free(map);
   741 
   742 	build_file_tree(importer);
   743 	list_remap_pool(&importer->set->package_pool, rmap);
   744 	build_package_file_lists(importer->set, rmap);
   745 	remap_property_package_links(&importer->set->properties, rmap);
   746 	free(rmap);
   747 
   748 	set = importer->set;
   749 	hashtable_release(&importer->table);
   750 	free(importer);
   751 
   752 	return set;
   753 }
   754 
   755 struct razor_package_iterator {
   756 	struct razor_set *set;
   757 	struct razor_package *package, *end;
   758 	struct list *index;
   759 };
   760 
   761 struct razor_package_iterator *
   762 razor_package_iterator_create_with_index(struct razor_set *set,
   763 					 struct list *index)
   764 {
   765 	struct razor_package_iterator *pi;
   766 
   767 	pi = zalloc(sizeof *pi);
   768 	pi->set = set;
   769 	pi->index = index;
   770 
   771 	return pi;
   772 }
   773 
   774 struct razor_package_iterator *
   775 razor_package_iterator_create(struct razor_set *set)
   776 {
   777 	struct razor_package_iterator *pi;
   778 
   779 	pi = zalloc(sizeof *pi);
   780 	pi->set = set;
   781 	pi->end = set->packages.data + set->packages.size;
   782 	pi->package = set->packages.data;
   783 
   784 	return pi;
   785 }
   786 
   787 struct razor_package_iterator *
   788 razor_package_iterator_create_for_property(struct razor_set *set,
   789 					   struct razor_property *property)
   790 {
   791 	struct list *index;
   792 
   793 	index = list_first(&property->packages, &set->package_pool);
   794 	return razor_package_iterator_create_with_index(set, index);
   795 }
   796 
   797 int
   798 razor_package_iterator_next(struct razor_package_iterator *pi,
   799 			    struct razor_package **package,
   800 			    const char **name, const char **version)
   801 {
   802 	char *pool;
   803 	int valid;
   804 	struct razor_package *p, *packages;
   805 
   806 	if (pi->package) {
   807 		p = pi->package++;
   808 		valid = p < pi->end;
   809 	} else if (pi->index) {
   810 		packages = pi->set->packages.data;
   811 		p = &packages[pi->index->data];
   812 		pi->index = list_next(pi->index);
   813 		valid = 1;
   814 	} else
   815 		valid = 0;
   816 
   817 	if (valid) {
   818 		pool = pi->set->string_pool.data;
   819 		*package = p;
   820 		*name = &pool[p->name];
   821 		*version = &pool[p->version];
   822 	} else {
   823 		*package = NULL;
   824 	}
   825 
   826 	return valid;
   827 }
   828 
   829 void
   830 razor_package_iterator_destroy(struct razor_package_iterator *pi)
   831 {
   832 	free(pi);
   833 }
   834 
   835 struct razor_package *
   836 razor_set_get_package(struct razor_set *set, const char *package)
   837 {
   838 	struct razor_package_iterator *pi;
   839 	struct razor_package *p;
   840 	const char *name, *version;
   841 
   842 	pi = razor_package_iterator_create(set);
   843 	while (razor_package_iterator_next(pi, &p, &name, &version)) {
   844 		if (strcmp(package, name) == 0)
   845 			break;
   846 	}
   847 	razor_package_iterator_destroy(pi);
   848 
   849 	return p;
   850 }
   851 
   852 struct razor_property_iterator {
   853 	struct razor_set *set;
   854 	struct razor_property *property, *end;
   855 	struct list *index;
   856 };
   857 
   858 struct razor_property_iterator *
   859 razor_property_iterator_create(struct razor_set *set,
   860 			       struct razor_package *package)
   861 {
   862 	struct razor_property_iterator *pi;
   863 
   864 	pi = zalloc(sizeof *pi);
   865 	pi->set = set;
   866 
   867 	if (package) {
   868 		pi->index = list_first(&package->properties,
   869 				       &set->property_pool);
   870 	} else {
   871 		pi->property = set->properties.data;
   872 		pi->end = set->properties.data + set->properties.size;
   873 	}
   874 
   875 	return pi;
   876 }
   877 
   878 int
   879 razor_property_iterator_next(struct razor_property_iterator *pi,
   880 			     struct razor_property **property,
   881 			     const char **name,
   882 			     enum razor_version_relation *relation,
   883 			     const char **version,
   884 			     enum razor_property_type *type)
   885 {
   886 	char *pool;
   887 	int valid;
   888 	struct razor_property *p, *properties;
   889 
   890 	if (pi->property) {
   891 		p = pi->property++;
   892 		valid = p < pi->end;
   893 	} else if (pi->index) {
   894 		properties = pi->set->properties.data;
   895 		p = &properties[pi->index->data];
   896 		pi->index = list_next(pi->index);
   897 		valid = 1;
   898 	} else
   899 		valid = 0;
   900 
   901 	if (valid) {
   902 		pool = pi->set->string_pool.data;
   903 		*property = p;
   904 		*name = &pool[p->name];
   905 		*relation = p->relation;
   906 		*version = &pool[p->version];
   907 		*type = p->type;
   908 	} else {
   909 		*property = NULL;
   910 	}
   911 
   912 	return valid;
   913 }
   914 
   915 void
   916 razor_property_iterator_destroy(struct razor_property_iterator *pi)
   917 {
   918 	free(pi);
   919 }
   920 
   921 static struct razor_entry *
   922 find_entry(struct razor_set *set, struct razor_entry *dir, const char *pattern)
   923 {
   924 	struct razor_entry *e;
   925 	const char *n, *pool = set->string_pool.data;
   926 	int len;
   927 
   928 	e = (struct razor_entry *) set->files.data + dir->start;
   929 	do {
   930 		n = pool + e->name;
   931 		if (strcmp(pattern + 1, n) == 0)
   932 			return e;
   933 		len = strlen(n);
   934 		if (e->start != 0 && strncmp(pattern + 1, n, len) == 0 &&
   935 		    pattern[len + 1] == '/') {
   936 			return find_entry(set, e, pattern + len + 1);
   937 		}
   938 	} while (!((e++)->flags & RAZOR_ENTRY_LAST));
   939 
   940 	return NULL;
   941 }
   942 
   943 static void
   944 list_dir(struct razor_set *set, struct razor_entry *dir,
   945 	 char *prefix, const char *pattern)
   946 {
   947 	struct razor_entry *e;
   948 	const char *n, *pool = set->string_pool.data;
   949 
   950 	e = (struct razor_entry *) set->files.data + dir->start;
   951 	do {
   952 		n = pool + e->name;
   953 		if (pattern && pattern[0] && fnmatch(pattern, n, 0) != 0)
   954 			continue;
   955 		printf("%s/%s\n", prefix, n);
   956 		if (e->start) {
   957 			char *sub = prefix + strlen (prefix);
   958 			*sub = '/';
   959 			strcpy (sub + 1, n);
   960 			list_dir(set, e, prefix, pattern);
   961 			*sub = '\0';
   962 		}
   963 	} while (!((e++)->flags & RAZOR_ENTRY_LAST));
   964 }
   965 
   966 void
   967 razor_set_list_files(struct razor_set *set, const char *pattern)
   968 {
   969 	struct razor_entry *e;
   970 	char buffer[512], *p, *base;
   971 
   972 	if (pattern == NULL || !strcmp (pattern, "/")) {
   973 		buffer[0] = '\0';
   974 		list_dir(set, set->files.data, buffer, NULL);
   975 		return;
   976 	}
   977 
   978 	strcpy(buffer, pattern);
   979 	e = find_entry(set, set->files.data, buffer);
   980 	if (e && e->start > 0) {
   981 		base = NULL;
   982 	} else {
   983 		p = strrchr(buffer, '/');
   984 		if (p) {
   985 			*p = '\0';
   986 			base = p + 1;
   987 		} else {
   988 			base = NULL;
   989 		}
   990 	}
   991 	e = find_entry(set, set->files.data, buffer);
   992 	if (e->start != 0)
   993 		list_dir(set, e, buffer, base);
   994 }
   995 
   996 struct razor_package_iterator *
   997 razor_package_iterator_create_for_file(struct razor_set *set,
   998 				       const char *filename)
   999 {
  1000 	struct razor_entry *entry;
  1001 	struct list *index;
  1002 
  1003 	entry = find_entry(set, set->files.data, filename);
  1004 	if (entry == NULL)
  1005 		return NULL;
  1006 	
  1007 	index = list_first(&entry->packages, &set->package_pool);
  1008 	return razor_package_iterator_create_with_index(set, index);
  1009 }
  1010 
  1011 static struct list *
  1012 list_package_files(struct razor_set *set, struct list *r,
  1013 		   struct razor_entry *dir, uint32_t end,
  1014 		   char *prefix)
  1015 {
  1016 	struct razor_entry *e, *f, *entries;
  1017 	uint32_t next, file;
  1018 	char *pool;
  1019 	int len;
  1020 	
  1021 	entries = (struct razor_entry *) set->files.data;
  1022 	pool = set->string_pool.data;
  1023 
  1024 	e = entries + dir->start;
  1025 	do {
  1026 		if (entries + r->data == e) {
  1027 			printf("%s/%s\n", prefix, pool + e->name);
  1028 			r = list_next(r);
  1029 			if (!r)
  1030 				return NULL;
  1031 			if (r->data >= end)
  1032 				return r;
  1033 		}
  1034 	} while (!((e++)->flags & RAZOR_ENTRY_LAST));
  1035 
  1036 	e = entries + dir->start;
  1037 	do {
  1038 		if (e->start == 0)
  1039 			continue;
  1040 
  1041 		if (e->flags & RAZOR_ENTRY_LAST)
  1042 			next = end;
  1043 		else {
  1044 			f = e + 1; 
  1045 			while (f->start == 0 && !(f->flags & RAZOR_ENTRY_LAST))
  1046 				f++;
  1047 			if (f->start == 0)
  1048 				next = end;
  1049 			else
  1050 				next = f->start;
  1051 		}
  1052 
  1053 		file = r->data;
  1054 		if (e->start <= file && file < next) {
  1055 			len = strlen(prefix);
  1056 			prefix[len] = '/';
  1057 			strcpy(prefix + len + 1, pool + e->name);
  1058 			r = list_package_files(set, r, e, next, prefix);
  1059 			prefix[len] = '\0';
  1060 		}
  1061 	} while (!((e++)->flags & RAZOR_ENTRY_LAST) && r != NULL);
  1062 
  1063 	return r;
  1064 }
  1065 
  1066 void
  1067 razor_set_list_package_files(struct razor_set *set, const char *name)
  1068 {
  1069 	struct razor_package *package;
  1070 	struct list *r;
  1071 	uint32_t end;
  1072 	char buffer[512];
  1073 
  1074 	package = razor_set_get_package(set, name);
  1075 
  1076 	r = list_first(&package->files, &set->file_pool);
  1077 	end = set->files.size / sizeof (struct razor_entry);
  1078 	buffer[0] = '\0';
  1079 	list_package_files(set, r, set->files.data, end, buffer);
  1080 }
  1081 
  1082 static void
  1083 razor_set_validate(struct razor_set *set, struct array *unsatisfied)
  1084 {
  1085 	struct razor_property *r, *p, *end;
  1086 	uint32_t *u;
  1087 	char *pool;
  1088 
  1089 	end = set->properties.data + set->properties.size;
  1090 	pool = set->string_pool.data;
  1091 	
  1092 	for (r = set->properties.data, p = r; r < end; r++) {
  1093 		if (r->type != RAZOR_PROPERTY_REQUIRES)
  1094 			continue;
  1095 
  1096 		p = r;
  1097 		while (p < end && p->name == r->name &&
  1098 		       p->type == r->type)
  1099 			p++;
  1100 
  1101 		/* If there is more than one version of a provides,
  1102 		 * seek to the end for the highest version. */
  1103 		/* FIXME: This doesn't work if we have a series of
  1104 		 * requires a = 1, provides a = 1, requires a = 2,
  1105 		 * provides a = 2, as the kernel and kernel-devel
  1106 		 * does.*/
  1107 		while (p + 1 < end && p->name == (p + 1)->name &&
  1108 		       p->type == (p + 1)->type)
  1109 			p++;
  1110 
  1111 		/* FIXME: We need to track property flags (<, <=, =
  1112 		 * etc) to properly determine if a requires is
  1113 		 * satisfied.  The current code doesn't track that the
  1114 		 * requires a = 1 isn't satisfied by a = 2 provides. */
  1115 
  1116 		if (p == end ||
  1117 		    p->type != RAZOR_PROPERTY_PROVIDES ||
  1118 		    r->name != p->name ||
  1119 		    versioncmp(&pool[r->version], &pool[p->version]) > 0) {
  1120 			/* FIXME: We ignore file requires for now. */
  1121 			if (pool[r->name] == '/')
  1122 				continue;
  1123 			u = array_add(unsatisfied, sizeof *u);
  1124 			*u = r - (struct razor_property *) set->properties.data;
  1125 		}
  1126 	}
  1127 }
  1128 
  1129 void
  1130 razor_set_list_unsatisfied(struct razor_set *set)
  1131 {
  1132 	struct array unsatisfied;
  1133 	struct razor_property *properties, *r;
  1134 	uint32_t *u, *end;
  1135 	char *pool;
  1136 
  1137 	array_init(&unsatisfied);
  1138 	razor_set_validate(set, &unsatisfied);
  1139 
  1140 	end = unsatisfied.data + unsatisfied.size;
  1141 	properties = set->properties.data;
  1142 	pool = set->string_pool.data;
  1143 
  1144 	for (u = unsatisfied.data; u < end; u++) {
  1145 		r = properties + *u;
  1146 		if (pool[r->version] == '\0')
  1147 			printf("%ss not satisfied\n",
  1148 			       &pool[r->name]);
  1149 		else
  1150 			printf("%s-%s not satisfied\n",
  1151 			       &pool[r->name],
  1152 			       &pool[r->version]);
  1153 	}
  1154 
  1155 	array_release(&unsatisfied);
  1156 }
  1157 
  1158 #define UPSTREAM_SOURCE 0x80
  1159 
  1160 struct source {
  1161 	struct razor_set *set;
  1162 	uint32_t *property_map;
  1163 	uint32_t *file_map;
  1164 };
  1165 
  1166 struct razor_merger {
  1167 	struct razor_set *set;
  1168 	struct hashtable table;
  1169 	struct source source1;
  1170 	struct source source2;
  1171 };
  1172 
  1173 static struct razor_merger *
  1174 razor_merger_create(struct razor_set *set1, struct razor_set *set2)
  1175 {
  1176 	struct razor_merger *merger;
  1177 	int count;
  1178 	size_t size;
  1179 
  1180 	merger = zalloc(sizeof *merger);
  1181 	merger->set = razor_set_create();
  1182 	hashtable_init(&merger->table, &merger->set->string_pool);
  1183 
  1184 	merger->source1.set = set1;
  1185 	count = set1->properties.size / sizeof (struct razor_property);
  1186 	size = count * sizeof merger->source1.property_map[0];
  1187 	merger->source1.property_map = zalloc(size);
  1188 	count = set1->files.size / sizeof (struct razor_entry);
  1189 	size = count * sizeof merger->source1.file_map[0];
  1190 	merger->source1.file_map = zalloc(size);
  1191 
  1192 	merger->source2.set = set2;
  1193 	count = set2->properties.size / sizeof (struct razor_property);
  1194 	size = count * sizeof merger->source2.property_map[0];
  1195 	merger->source2.property_map = zalloc(size);
  1196 	count = set2->files.size / sizeof (struct razor_entry);
  1197 	size = count * sizeof merger->source2.file_map[0];
  1198 	merger->source2.file_map = zalloc(size);
  1199 
  1200 	return merger;
  1201 }
  1202 
  1203 static void
  1204 add_package(struct razor_merger *merger,
  1205 	    struct razor_package *package, struct source *source,
  1206 	    uint32_t flags)
  1207 {
  1208 	char *pool;
  1209 	struct list *r;
  1210 	struct razor_package *p;
  1211 
  1212 	pool = source->set->string_pool.data;
  1213 	p = array_add(&merger->set->packages, sizeof *p);
  1214 	p->name = hashtable_tokenize(&merger->table, &pool[package->name]);
  1215 	p->flags = flags;
  1216 	p->version = hashtable_tokenize(&merger->table,
  1217 					&pool[package->version]);
  1218 
  1219 	p->properties = package->properties;
  1220 	r = list_first(&package->properties, &source->set->property_pool);
  1221 	while (r) {
  1222 		source->property_map[r->data] = 1;
  1223 		r = list_next(r);
  1224 	}
  1225 
  1226 	p->files = package->files;
  1227 	r = list_first(&package->files, &source->set->file_pool);
  1228 	while (r) {
  1229 		source->file_map[r->data] = 1;
  1230 		r = list_next(r);
  1231 	}
  1232 }
  1233 
  1234 
  1235 /* Build the new package list sorted by merging the two package lists.
  1236  * Build new string pool as we go. */
  1237 static void
  1238 merge_packages(struct razor_merger *merger, struct array *packages)
  1239 {
  1240 	struct razor_package *upstream_packages, *p, *s, *send;
  1241 	struct source *source1, *source2;
  1242 	char *spool, *upool;
  1243 	uint32_t *u, *uend;
  1244 	int cmp;
  1245 
  1246 	source1 = &merger->source1;
  1247 	source2 = &merger->source2;
  1248 	upstream_packages = source2->set->packages.data;
  1249 
  1250 	u = packages->data;
  1251 	uend = packages->data + packages->size;
  1252 	upool = source2->set->string_pool.data;
  1253 
  1254 	s = source1->set->packages.data;
  1255 	send = source1->set->packages.data + source1->set->packages.size;
  1256 	spool = source1->set->string_pool.data;
  1257 
  1258 	while (s < send || u < uend) {
  1259 		p = upstream_packages + *u;
  1260 
  1261 		if (s < send && u < uend)
  1262 			cmp = strcmp(&spool[s->name], &upool[p->name]);
  1263 		else if (s < send)
  1264 			cmp = -1;
  1265 		else
  1266 			cmp = 1;
  1267 		if (cmp < 0) {
  1268 			add_package(merger, s, source1, 0);
  1269 			s++;
  1270 		} else if (cmp == 0) {
  1271 			add_package(merger, p, source2, UPSTREAM_SOURCE);
  1272 			s++;
  1273 			u++;
  1274 		} else {
  1275 			add_package(merger, p, source2, UPSTREAM_SOURCE);
  1276 			u++;
  1277 		}
  1278 	}
  1279 }
  1280 
  1281 static uint32_t
  1282 add_property(struct razor_merger *merger,
  1283 	     const char *name, enum razor_version_relation relation,
  1284 	     const char *version, int type)
  1285 {
  1286 	struct razor_property *p;
  1287 
  1288 	p = array_add(&merger->set->properties, sizeof *p);
  1289 	p->name = hashtable_tokenize(&merger->table, name);
  1290 	p->flags = 0;
  1291 	p->type = type;
  1292 	p->relation = relation;
  1293 	p->version = hashtable_tokenize(&merger->table, version);
  1294 
  1295 	return p - (struct razor_property *) merger->set->properties.data;
  1296 }
  1297 
  1298 static void
  1299 merge_properties(struct razor_merger *merger)
  1300 {
  1301 	struct razor_property *p1, *p2;
  1302 	struct razor_set *set1, *set2;
  1303 	uint32_t *map1, *map2;
  1304 	int i, j, cmp, count1, count2;
  1305 	char *pool1, *pool2;
  1306 
  1307 	set1 = merger->source1.set;
  1308 	set2 = merger->source2.set;
  1309 	map1 = merger->source1.property_map;
  1310 	map2 = merger->source2.property_map;
  1311 
  1312 	i = 0;
  1313 	j = 0;
  1314 	pool1 = set1->string_pool.data;
  1315 	pool2 = set2->string_pool.data;
  1316 
  1317 	count1 = set1->properties.size / sizeof *p1;
  1318 	count2 = set2->properties.size / sizeof *p2;
  1319 	while (i < count1 || j < count2) {
  1320 		if (i < count1 && map1[i] == 0) {
  1321 			i++;
  1322 			continue;
  1323 		}
  1324 		if (j < count2 && map2[j] == 0) {
  1325 			j++;
  1326 			continue;
  1327 		}
  1328 		p1 = (struct razor_property *) set1->properties.data + i;
  1329 		p2 = (struct razor_property *) set2->properties.data + j;
  1330 		if (i < count1 && j < count2)
  1331 			cmp = strcmp(&pool1[p1->name], &pool2[p2->name]);
  1332 		else if (i < count1)
  1333 			cmp = -1;
  1334 		else
  1335 			cmp = 1;
  1336 		if (cmp == 0)
  1337 			cmp = p1->type - p2->type;
  1338 		if (cmp == 0)
  1339 			cmp = p1->relation - p2->relation;
  1340 		if (cmp == 0)
  1341 			cmp = versioncmp(&pool1[p1->version],
  1342 					 &pool2[p2->version]);
  1343 		if (cmp < 0) {
  1344 			map1[i++] = add_property(merger,
  1345 						 &pool1[p1->name],
  1346 						 p1->relation,
  1347 						 &pool1[p1->version],
  1348 						 p1->type);
  1349 		} else if (cmp > 0) {
  1350 			map2[j++] = add_property(merger,
  1351 						 &pool2[p2->name],
  1352 						 p2->relation,
  1353 						 &pool2[p2->version],
  1354 						 p2->type);
  1355 		} else  {
  1356 			map1[i++] = map2[j++] = add_property(merger,
  1357 							     &pool1[p1->name],
  1358 							     p1->relation,
  1359 							     &pool1[p1->version],
  1360 							     p1->type);
  1361 		}
  1362 	}
  1363 }
  1364 
  1365 static void
  1366 emit_properties(struct list_head *properties, struct array *source_pool,
  1367 		uint32_t *map, struct array *pool)
  1368 {
  1369 	uint32_t r;
  1370 	struct list *p, *q;
  1371 
  1372 	r = pool->size / sizeof *q;
  1373 	p = list_first(properties, source_pool);
  1374 	while (p) {
  1375 		q = array_add(pool, sizeof *q);
  1376 		q->data = map[p->data];
  1377 		q->flags = p->flags;
  1378 		p = list_next(p);
  1379 	}
  1380 
  1381 	list_set_ptr(properties, r);
  1382 }
  1383 
  1384 static uint32_t
  1385 add_file(struct razor_merger *merger, const char *name)
  1386 {
  1387 	struct razor_entry *e;
  1388 
  1389 	e = array_add(&merger->set->files, sizeof *e);
  1390 	e->name = hashtable_tokenize(&merger->table, name);
  1391 	e->flags = 0;
  1392 	e->start = 0;
  1393 
  1394 	return e - (struct razor_entry *)merger->set->files.data;
  1395 }
  1396 
  1397 /* FIXME. Blah */
  1398 static int
  1399 fix_file_map(uint32_t *map,
  1400 	     struct razor_entry *files,
  1401 	     struct razor_entry *top)
  1402 {
  1403 	uint32_t e;
  1404 	int found_file = 0;
  1405 
  1406 	e = top->start;
  1407 	do {
  1408 		if (files[e].start)
  1409 			fix_file_map(map, files, &files[e]);
  1410 		if (map[e])
  1411 			found_file = 1;
  1412 	} while (!(files[e++].flags & RAZOR_ENTRY_LAST));
  1413 
  1414 	if (found_file)
  1415 		map[top - files] = 1;
  1416 	return found_file;
  1417 }
  1418 
  1419 struct merge_directory {
  1420 	uint32_t merged, dir1, dir2;
  1421 };
  1422 
  1423 static void
  1424 merge_one_directory(struct razor_merger *merger, struct merge_directory *md)
  1425 {
  1426 	struct razor_entry *root1, *root2, *mroot, *e1, *e2;
  1427 	struct razor_set *set1, *set2;
  1428 	struct array merge_stack;
  1429 	struct merge_directory *child_md, *end_md;
  1430 	uint32_t *map1, *map2, start, last;
  1431 	int cmp;
  1432 	char *pool1, *pool2;
  1433 
  1434 	set1 = merger->source1.set;
  1435 	set2 = merger->source2.set;
  1436 	map1 = merger->source1.file_map;
  1437 	map2 = merger->source2.file_map;
  1438 	pool1 = set1->string_pool.data;
  1439 	pool2 = set2->string_pool.data;
  1440 	root1 = (struct razor_entry *) set1->files.data;
  1441 	root2 = (struct razor_entry *) set2->files.data;
  1442 
  1443 	array_init(&merge_stack);
  1444 
  1445 	start = merger->set->files.size / sizeof (struct razor_entry);
  1446 	last = 0;
  1447 	e1 = md->dir1 ? root1 + md->dir1 : NULL;
  1448 	e2 = md->dir2 ? root2 + md->dir2 : NULL;
  1449 	while (e1 || e2) {
  1450 		if (!e2 && !map1[e1 - root1]) {
  1451 			if ((e1++)->flags & RAZOR_ENTRY_LAST)
  1452 				e1 = NULL;
  1453 			continue;
  1454 		}
  1455 		if (!e1 && !map2[e2 - root2]) {
  1456 			if ((e2++)->flags & RAZOR_ENTRY_LAST)
  1457 				e2 = NULL;
  1458 			continue;
  1459 		}
  1460 		if (e1 && !map1[e1 - root1] &&
  1461 		    e2 && !map1[e2 - root2]) {
  1462 			if ((e1++)->flags & RAZOR_ENTRY_LAST)
  1463 				e1 = NULL;
  1464 			if ((e2++)->flags & RAZOR_ENTRY_LAST)
  1465 				e2 = NULL;
  1466 			continue;
  1467 		}
  1468 
  1469 		if (!e1)
  1470 			cmp = 1;
  1471 		else if (!e2)
  1472 			cmp = -1;
  1473 		else {
  1474 			cmp = strcmp (&pool1[e1->name],
  1475 				      &pool2[e2->name]);
  1476 		}
  1477 
  1478 		if (cmp < 0) {
  1479 			if (map1[e1 - root1]) {
  1480 				map1[e1 - root1] = last =
  1481 					add_file(merger, &pool1[e1->name]);
  1482 				if (e1->start) {
  1483 					child_md = array_add(&merge_stack, sizeof (struct merge_directory));
  1484 					child_md->merged = last;
  1485 					child_md->dir1 = e1->start;
  1486 					child_md->dir2 = 0;
  1487 				}
  1488 			}
  1489 			if ((e1++)->flags & RAZOR_ENTRY_LAST)
  1490 				e1 = NULL;
  1491 		} else if (cmp > 0) {
  1492 			if (map2[e2 - root2]) {
  1493 				map2[e2 - root2] = last =
  1494 					add_file(merger, &pool2[e2->name]);
  1495 				if (e2->start) {
  1496 					child_md = array_add(&merge_stack, sizeof (struct merge_directory));
  1497 					child_md->merged = last;
  1498 					child_md->dir1 = 0;
  1499 					child_md->dir2 = e2->start;
  1500 				}
  1501 			}
  1502 			if ((e2++)->flags & RAZOR_ENTRY_LAST)
  1503 				e2 = NULL;
  1504 		} else {
  1505 			map1[e1 - root1] = map2[e2- root2] = last =
  1506 				add_file(merger, &pool1[e1->name]);
  1507 			if (e1->start || e2->start) {
  1508 				child_md = array_add(&merge_stack, sizeof (struct merge_directory));
  1509 				child_md->merged = last;
  1510 				child_md->dir1 = e1->start;
  1511 				child_md->dir2 = e2->start;
  1512 			}
  1513 			if ((e1++)->flags & RAZOR_ENTRY_LAST)
  1514 				e1 = NULL;
  1515 			if ((e2++)->flags & RAZOR_ENTRY_LAST)
  1516 				e2 = NULL;
  1517 		}
  1518 	}
  1519 
  1520 	mroot = (struct razor_entry *)merger->set->files.data;
  1521 	if (last) {
  1522 		mroot[last].flags = RAZOR_ENTRY_LAST;
  1523 		mroot[md->merged].start = start;
  1524 	} else
  1525 		mroot[md->merged].start = 0;
  1526 
  1527 	end_md = merge_stack.data + merge_stack.size;
  1528 	for (child_md = merge_stack.data; child_md < end_md; child_md++)
  1529 		merge_one_directory(merger, child_md);
  1530 	array_release(&merge_stack);
  1531 }
  1532 
  1533 static void
  1534 merge_files(struct razor_merger *merger)
  1535 {
  1536 	struct razor_entry *root;
  1537 	struct merge_directory md;
  1538 	uint32_t *map1, *map2;
  1539 
  1540 	map1 = merger->source1.file_map;
  1541 	map2 = merger->source2.file_map;
  1542 
  1543 	md.merged = add_file(merger, "");
  1544 
  1545 	if (merger->source1.set->files.size) {
  1546 		root = (struct razor_entry *) merger->source1.set->files.data;
  1547 		if (root->start)
  1548 			fix_file_map(map1, root, root);
  1549 		md.dir1 = root->start;
  1550 	} else
  1551 		md.dir1 = 0;
  1552 
  1553 	if (merger->source2.set->files.size) {
  1554 		root = (struct razor_entry *) merger->source2.set->files.data;
  1555 		if (root->start)
  1556 			fix_file_map(map2, root, root);
  1557 		md.dir2 = root->start;
  1558 	} else
  1559 		md.dir2 = 0;
  1560 
  1561 	merge_one_directory(merger, &md);
  1562 }
  1563 
  1564 static void
  1565 emit_files(struct list_head *files, struct array *source_pool,
  1566 	   uint32_t *map, struct array *pool)
  1567 {
  1568 	uint32_t r;
  1569 	struct list *p, *q;
  1570 
  1571 	r = pool->size / sizeof *q;
  1572 	p = list_first(files, source_pool);
  1573 	while (p) {
  1574 		q = array_add(pool, sizeof *q);
  1575 		q->data = map[p->data];
  1576 		q->flags = p->flags;
  1577 		p = list_next(p);
  1578 	}
  1579 
  1580 	list_set_ptr(files, r);
  1581 }
  1582 
  1583 /* Rebuild property->packages maps.  We can't just remap these, as a
  1584  * property may have lost or gained a number of packages.  Allocate an
  1585  * array per property and loop through the packages and add them to
  1586  * the arrays for their properties. */
  1587 static void
  1588 rebuild_property_package_lists(struct razor_set *set)
  1589 {
  1590 	struct array *pkgs, *a;
  1591 	struct razor_package *pkg, *pkg_end;
  1592 	struct razor_property *prop, *prop_end;
  1593 	struct list *r;
  1594 	uint32_t *q;
  1595 	int count;
  1596 
  1597 	count = set->properties.size / sizeof (struct razor_property);
  1598 	pkgs = zalloc(count * sizeof *pkgs);
  1599 	pkg_end = set->packages.data + set->packages.size;
  1600 
  1601 	for (pkg = set->packages.data; pkg < pkg_end; pkg++) {
  1602 		r = list_first(&pkg->properties, &set->property_pool);
  1603 		while (r) {
  1604 			q = array_add(&pkgs[r->data], sizeof *q);
  1605 			*q = pkg - (struct razor_package *) set->packages.data;
  1606 			r = list_next(r);
  1607 		}
  1608 	}
  1609 
  1610 	prop_end = set->properties.data + set->properties.size;
  1611 	a = pkgs;
  1612 	for (prop = set->properties.data; prop < prop_end; prop++, a++) {
  1613 		list_set_array(&prop->packages, &set->package_pool, a, 0);
  1614 		array_release(a);
  1615 	}
  1616 	free(pkgs);
  1617 }
  1618 
  1619 static void
  1620 rebuild_file_package_lists(struct razor_set *set)
  1621 {
  1622 	struct array *pkgs, *a;
  1623 	struct razor_package *pkg, *pkg_end;
  1624 	struct razor_entry *entry, *entry_end;
  1625 	struct list *r;
  1626 	uint32_t *q;
  1627 	int count;
  1628 
  1629 	count = set->files.size / sizeof (struct razor_entry);
  1630 	pkgs = zalloc(count * sizeof *pkgs);
  1631 	pkg_end = set->packages.data + set->packages.size;
  1632 
  1633 	for (pkg = set->packages.data; pkg < pkg_end; pkg++) {
  1634 		r = list_first(&pkg->files, &set->file_pool);
  1635 		while (r) {
  1636 			q = array_add(&pkgs[r->data], sizeof *q);
  1637 			*q = pkg - (struct razor_package *) set->packages.data;
  1638 			r = list_next(r);
  1639 		}
  1640 	}
  1641 
  1642 	entry_end = set->files.data + set->files.size;
  1643 	a = pkgs;
  1644 	for (entry = set->files.data; entry < entry_end; entry++, a++) {
  1645 		list_set_array(&entry->packages, &set->package_pool, a, 0);
  1646 		array_release(a);
  1647 	}
  1648 	free(pkgs);
  1649 }
  1650 
  1651 struct razor_set *
  1652 razor_merger_finish(struct razor_merger *merger)
  1653 {
  1654 	struct razor_set *result;
  1655 	struct razor_package *p, *pend;
  1656 
  1657 	/* As we built the package list, we filled out a bitvector of
  1658 	 * the properties that are referenced by the packages in the
  1659 	 * new set.  Now we do a parallel loop through the properties
  1660 	 * and emit those marked in the bit vector to the new set.  In
  1661 	 * the process, we update the bit vector to actually map from
  1662 	 * indices in the old property list to indices in the new
  1663 	 * property list for both sets. */
  1664 
  1665 	merge_properties(merger);
  1666 	merge_files(merger);
  1667 
  1668 	/* Now we loop through the packages again and emit the
  1669 	 * property lists, remapped to point to the new properties. */
  1670 
  1671 	pend = merger->set->packages.data + merger->set->packages.size;
  1672 	for (p = merger->set->packages.data; p < pend; p++) {
  1673 		struct source *src;
  1674 
  1675 		if (p->flags & UPSTREAM_SOURCE)
  1676 			src = &merger->source2;
  1677 		else
  1678 			src = &merger->source1;
  1679 
  1680 		emit_properties(&p->properties,
  1681 				&src->set->property_pool,
  1682 				src->property_map,
  1683 				&merger->set->property_pool);
  1684 		emit_files(&p->files,
  1685 			   &src->set->file_pool,
  1686 			   src->file_map,
  1687 			   &merger->set->file_pool);
  1688 		p->flags &= ~UPSTREAM_SOURCE;
  1689 	}
  1690 
  1691 	rebuild_property_package_lists(merger->set);
  1692 	rebuild_file_package_lists(merger->set);
  1693 
  1694 	result = merger->set;
  1695 	hashtable_release(&merger->table);
  1696 	free(merger);
  1697 
  1698 	return result;
  1699 }
  1700 
  1701 /* Add packages from 'upstream' to 'set'.  The packages to add are
  1702  * specified by the 'packages' array, which is a sorted list of
  1703  * package indexes.  Returns a newly allocated package set.  Does not
  1704  * enforce validity of the resulting package set.
  1705  *
  1706  * This looks more complicated than it is.  An easy way to merge two
  1707  * package sets would be to just use a razor_importer, but that
  1708  * requires resorting, and is thus O(n log n).  We can do this in a
  1709  * linear sweep, but it gets a little more complicated.
  1710  */
  1711 struct razor_set *
  1712 razor_set_add(struct razor_set *set, struct razor_set *upstream,
  1713 	      struct array *packages)
  1714 {
  1715 	struct razor_merger *merger;
  1716 
  1717 	merger = razor_merger_create(set, upstream);
  1718 
  1719 	merge_packages(merger, packages);
  1720 
  1721 	return razor_merger_finish(merger);
  1722 }
  1723 
  1724 void
  1725 razor_set_satisfy(struct razor_set *set, struct array *unsatisfied,
  1726 		  struct razor_set *upstream, struct array *list)
  1727 {
  1728 	struct razor_property *requires, *r;
  1729 	struct razor_property *p, *pend;
  1730 	uint32_t *u, *end, *pkg;
  1731 	struct array *package_pool;
  1732 	char *pool, *upool;
  1733 
  1734 	end = unsatisfied->data + unsatisfied->size;
  1735 	requires = set->properties.data;
  1736 	pool = set->string_pool.data;
  1737 
  1738 	p = upstream->properties.data;
  1739 	pend = upstream->properties.data + upstream->properties.size;
  1740 	upool = upstream->string_pool.data;
  1741 	package_pool = &upstream->package_pool;
  1742 
  1743 	u = unsatisfied->data;
  1744 	while (u < end) {
  1745 		r = requires + *u;
  1746 
  1747 		while (p < pend &&
  1748 		       p->type != RAZOR_PROPERTY_PROVIDES &&
  1749 		       strcmp(&pool[r->name], &upool[p->name]) > 0)
  1750 			p++;
  1751 		/* If there is more than one version of a provides,
  1752 		 * seek to the end for the highest version. */
  1753 		while (p + 1 < pend && p->name == (p + 1)->name && p->type == (p + 1)->type)
  1754 			p++;
  1755 
  1756 		if (p != pend &&
  1757 		    p->type == RAZOR_PROPERTY_PROVIDES &&
  1758 		    strcmp(&pool[r->name], &upool[p->name]) == 0 &&
  1759 		    versioncmp(&pool[r->version], &upool[p->version]) <= 0) {
  1760 			pkg = array_add(list, sizeof *pkg);
  1761 			/* We just pull in the first package that provides */
  1762 			*pkg = list_first(&p->packages, package_pool)->data;
  1763 
  1764 			/* Remove this from the unsatisfied list */
  1765 			memmove (u, u + 1, end - (u + 1));
  1766 			end--;
  1767 		} else {
  1768 			/* Leave this in the unsatisfied list */
  1769 			u++;
  1770 		}
  1771 	}
  1772 	unsatisfied->size = (void *)end - unsatisfied->data;
  1773 }
  1774 
  1775 static void
  1776 find_packages(struct razor_set *set,
  1777 	      int count, const char **package_names, struct array *list)
  1778 {
  1779 	struct razor_package_iterator *pi;
  1780 	struct razor_package *p, *packages;
  1781 	const char *name, *version;
  1782 	uint32_t *r;
  1783 	int i;
  1784 
  1785 	packages = (struct razor_package *) set->packages.data;
  1786 	pi = razor_package_iterator_create(set);
  1787 
  1788 	while (razor_package_iterator_next(pi, &p, &name, &version)) {
  1789 		for (i = 0; i < count; i++) {
  1790 			if (strcmp(name, package_names[i]) == 0) {
  1791 				r = array_add(list, sizeof *r);
  1792 				*r = p - packages;
  1793 				break;
  1794 			}
  1795 		}
  1796 	}
  1797 
  1798 	razor_package_iterator_destroy(pi);
  1799 }
  1800 
  1801 static void
  1802 find_all_packages(struct razor_set *set,
  1803 		  struct razor_set *upstream, struct array *list)
  1804 {
  1805 	struct razor_package *p, *u, *pend, *uend;
  1806 	uint32_t *r;
  1807 	char *pool, *upool;
  1808 
  1809 	pend = set->packages.data + set->packages.size;
  1810 	pool = set->string_pool.data;
  1811 	u = upstream->packages.data;
  1812 	uend = upstream->packages.data + upstream->packages.size;
  1813 	upool = upstream->string_pool.data;
  1814 
  1815 	for (p = set->packages.data; p < pend; p++) {
  1816 		while (u < uend && strcmp(&pool[p->name], &upool[u->name]) > 0)
  1817 			u++;
  1818 		if (strcmp(&pool[p->name], &upool[u->name]) == 0) {
  1819 			r = array_add(list, sizeof *r);
  1820 			*r = u - (struct razor_package *) upstream->packages.data;
  1821 		}
  1822 	}
  1823 }
  1824 
  1825 static int
  1826 find_provider(struct razor_set *set, const char *req_name,
  1827 	      enum razor_version_relation relation, const char *version)
  1828 {
  1829 	struct razor_property *props = set->properties.data;
  1830 	int p, hi, lo, cmp, pkg;
  1831 	char *pool = set->string_pool.data;
  1832 
  1833 	lo = 0;
  1834 	hi = set->properties.size / sizeof *props;
  1835 	while (lo < hi) {
  1836 		p = (lo + hi) / 2;
  1837 		cmp = strcmp(&pool[props[p].name], req_name);
  1838 		if (cmp < 0)
  1839 			lo = p + 1;
  1840 		else if (cmp > 0)
  1841 			hi = p;
  1842 		else
  1843 			break;
  1844 	}
  1845 	if (lo >= hi)
  1846 		return -1;
  1847 
  1848 	/* Seek to the last (ie, highest version number) PROVIDES
  1849 	 * entry for this name.
  1850 	 */
  1851 	if (props[p].type < RAZOR_PROPERTY_PROVIDES) {
  1852 		while (p < hi &&
  1853 		       props[p].type != RAZOR_PROPERTY_PROVIDES &&
  1854 		       props[p + 1].name == props[p].name)
  1855 			p++;
  1856 	} else if (props[p].type > RAZOR_PROPERTY_PROVIDES) {
  1857 		while (p > lo &&
  1858 		       props[p].type != RAZOR_PROPERTY_PROVIDES &&
  1859 		       props[p - 1].name == props[p].name)
  1860 			p--;
  1861 	}
  1862 	while (p < hi &&
  1863 	       props[p + 1].type == RAZOR_PROPERTY_PROVIDES &&
  1864 	       props[p + 1].name == props[p].name)
  1865 		p++;
  1866 
  1867 	if (props[p].type != RAZOR_PROPERTY_PROVIDES)
  1868 		return -1;
  1869 
  1870 	do {
  1871 		pkg = list_first(&props[p].packages, &set->package_pool)->data;
  1872 		if (!*version)
  1873 			return pkg;
  1874 
  1875 		cmp = versioncmp(&pool[props[p].version], version);
  1876 
  1877 		switch (relation) {
  1878 		case RAZOR_VERSION_EQUAL:
  1879 		case RAZOR_VERSION_GREATER_OR_EQUAL:
  1880 		case RAZOR_VERSION_GREATER:
  1881 			if (cmp >= 0)
  1882 				return pkg;
  1883 			else {
  1884 				/* If the highest version doesn't pass,
  1885 				 * none of the others will either.
  1886 				 */
  1887 				return -1;
  1888 			}
  1889 
  1890 		case RAZOR_VERSION_LESS_OR_EQUAL:
  1891 			if (cmp <= 0)
  1892 				return pkg;
  1893 			break;
  1894 
  1895 		case RAZOR_VERSION_LESS:
  1896 			if (cmp < 0)
  1897 				return pkg;
  1898 			break;
  1899 		}
  1900 
  1901 		p--;
  1902 	} while (p > lo && props[p].name == props[p + 1].name &&
  1903 		 props[p].type == RAZOR_PROPERTY_PROVIDES);
  1904 
  1905 	return -1;
  1906 }
  1907 
  1908 static void
  1909 gather_new_requires(struct razor_set *system, struct razor_set *upstream,
  1910 		    struct razor_package *pkg, struct array *new_requires)
  1911 {
  1912 	struct razor_property *uprops = upstream->properties.data, *prop;
  1913 	char *upool = upstream->string_pool.data;
  1914 	struct list *p;
  1915 	uint32_t *new;
  1916 
  1917 	for (p = list_first(&pkg->properties, &upstream->property_pool); p; p = list_next(p)) {
  1918 		prop = &uprops[p->data];
  1919 		if (prop->type != RAZOR_PROPERTY_REQUIRES)
  1920 			continue;
  1921 		if (!strncmp(&upool[prop->name], "rpmlib(", 7))
  1922 			continue;
  1923 
  1924 		if (find_provider(system, &upool[prop->name],
  1925 				  prop->relation, &upool[prop->version]) == -1) {
  1926 			new = array_add(new_requires, sizeof *new);
  1927 			*new = p->data;
  1928 		}
  1929 	}
  1930 }
  1931 
  1932 struct razor_set *
  1933 razor_set_update(struct razor_set *set, struct razor_set *upstream,
  1934 		 int count, const char **packages)
  1935 {
  1936 	struct razor_set *new_set;
  1937 	struct array list;
  1938 	struct razor_package *pkgs;
  1939 	int update_count, u, provider, already;
  1940 	uint32_t *update, *new, *new_end, *required;
  1941 	struct razor_property *props, *prop_end;
  1942 	struct array new_requires;
  1943 	char *pool;
  1944 
  1945 	pkgs = upstream->packages.data;
  1946 	props = upstream->properties.data;
  1947 	prop_end = upstream->properties.data + set->properties.size;
  1948 	pool = upstream->string_pool.data;
  1949 
  1950 	array_init(&list);
  1951 	if (count > 0)
  1952 		find_packages(upstream, count, packages, &list);
  1953 	else
  1954 		find_all_packages(set, upstream, &list);
  1955 
  1956 	update = list.data;
  1957 	update_count = list.size / sizeof (uint32_t);
  1958 	u = 0;
  1959 	while (u < update_count) {
  1960 		array_init(&new_requires);
  1961 		for (; u < update_count; u++)
  1962 			gather_new_requires(set, upstream, &pkgs[update[u]], &new_requires);
  1963 
  1964 		new_end = new_requires.data + new_requires.size;
  1965 		for (new = new_requires.data; new < new_end; new++) {
  1966 			provider = find_provider(upstream, &pool[props[*new].name],
  1967 						 props[*new].relation,
  1968 						 &pool[props[*new].version]);
  1969 
  1970 			/* FIXME */
  1971 			if (provider == -1)
  1972 				continue;
  1973 
  1974 			update = list.data;
  1975 			update_count = list.size / sizeof (uint32_t);
  1976 			for (already = 0; already < update_count; already++) {
  1977 				if (provider == update[already])
  1978 					break;
  1979 			}
  1980 			if (already < update_count)
  1981 				continue;
  1982 
  1983 			required = array_add(&list, sizeof *required);
  1984 			*required = provider;
  1985 		}
  1986 		array_release(&new_requires);
  1987 
  1988 		update = list.data;
  1989 		update_count = list.size / sizeof (uint32_t);
  1990 	}
  1991 
  1992 	new_set = razor_set_add(set, upstream, &list);
  1993 	array_release(&list);
  1994 	razor_set_destroy(set);
  1995 	return new_set;
  1996 }
  1997 
  1998 /* Look through pkg's PROVIDES, and for each one that no other package
  1999  * provides, add its property index to lost_provides.
  2000  */
  2001 static void
  2002 gather_lost_provides(struct razor_set *set, struct razor_package *pkg,
  2003 		     struct array *lost_provides)
  2004 {
  2005 	struct razor_property *props = set->properties.data, *prop;
  2006 	struct list *p, *providers;
  2007 	uint32_t *lost;
  2008 
  2009 	for (p = list_first(&pkg->properties, &set->property_pool); p; p = list_next(p)) {
  2010 		prop = &props[p->data];
  2011 		if (prop->type != RAZOR_PROPERTY_PROVIDES)
  2012 			continue;
  2013 
  2014 		providers = list_first(&prop->packages, &set->package_pool);
  2015 		if (providers && !list_next(providers)) {
  2016 			lost = array_add(lost_provides, sizeof *lost);
  2017 			*lost = p->data;
  2018 		}
  2019 	}
  2020 }
  2021 
  2022 /* Add the index of each package required by req that isn't already in
  2023  * lost_requires, to lost_requires
  2024  */
  2025 static void
  2026 gather_lost_requires(struct razor_set *set, struct razor_property *req,
  2027 		     struct array *lost_requires)
  2028 {
  2029 	struct list *p;
  2030 	uint32_t *lost, *already_lost, *already_end;
  2031 
  2032 	for (p = list_first(&req->packages, &set->package_pool); p; p = list_next(p)) {
  2033 		already_end = lost_requires->data + lost_requires->size;
  2034 		for (already_lost = lost_requires->data; already_lost < already_end; already_lost++) {
  2035 			if (*already_lost == p->data)
  2036 				break;
  2037 		}
  2038 
  2039 		if (already_lost == already_end) {
  2040 			lost = array_add(lost_requires, sizeof *lost);
  2041 			*lost = p->data;
  2042 		}
  2043 	}
  2044 }
  2045 
  2046 static struct razor_set *
  2047 razor_set_remove_internal(struct razor_set *set, struct array *list)
  2048 {
  2049 	struct razor_set *empty, *new;
  2050 	struct razor_merger *merger;
  2051 	struct razor_package *pkgs;
  2052 	int pkg_count, remove_count, p, r;
  2053 	uint32_t *remove, *lost, *lost_end;
  2054 	struct razor_property *props, *prop_end, *req;
  2055 	struct array lost_provides;
  2056 
  2057 	pkgs = set->packages.data;
  2058 	pkg_count = set->packages.size / sizeof (struct razor_package);
  2059 	props = set->properties.data;
  2060 	prop_end = set->properties.data + set->properties.size;
  2061 
  2062 	remove = list->data;
  2063 	remove_count = list->size / sizeof (uint32_t);
  2064 	r = 0;
  2065 	while (r < remove_count) {
  2066 		array_init(&lost_provides);
  2067 		for (; r < remove_count; r++)
  2068 			gather_lost_provides(set, &pkgs[remove[r]], &lost_provides);
  2069 
  2070 		lost_end = lost_provides.data + lost_provides.size;
  2071 		for (lost = lost_provides.data; lost < lost_end; lost++) {
  2072 			/* Requires FOO will appear before Provides FOO */
  2073 			for (req = &props[*lost]; req > props && req->name == props[*lost].name && req->type != RAZOR_PROPERTY_REQUIRES; req--)
  2074 				;
  2075 			/* FIXME: versioned deps... */
  2076 			while (req > props && req->name == props[*lost].name) {
  2077 				gather_lost_requires(set, req, list);
  2078 				req--;
  2079 			}
  2080 		}
  2081 		array_release(&lost_provides);
  2082 
  2083 		remove = list->data;
  2084 		remove_count = list->size / sizeof (uint32_t);
  2085 	}
  2086 
  2087 	empty = razor_set_create();
  2088 	merger = razor_merger_create(set, empty);
  2089 
  2090 	for (p = 0; p < pkg_count; p++) {
  2091 		for (r = 0; r < remove_count; r++) {
  2092 			if (p == remove[r])
  2093 				goto skip;
  2094 		}
  2095 		add_package(merger, &pkgs[p], &merger->source1, 0);
  2096 	skip:
  2097 		;
  2098 	}
  2099 
  2100 	new = razor_merger_finish(merger);
  2101 	razor_set_destroy(empty);
  2102 	return new;
  2103 }
  2104 
  2105 struct razor_set *
  2106 razor_set_remove(struct razor_set *set, int count, const char **packages)
  2107 {
  2108 	struct razor_set *new;
  2109 	struct array list;
  2110 
  2111 	array_init(&list);
  2112 	find_packages(set, count, packages, &list);
  2113 	new = razor_set_remove_internal(set, &list);
  2114 	array_release(&list);
  2115 	razor_set_destroy(set);
  2116 	return new;
  2117 }
  2118 
  2119 /* The diff order matters.  We should sort the packages so that a
  2120  * REMOVE of a package comes before the INSTALL, and so that all
  2121  * requires for a package have been installed before the package.
  2122  **/
  2123 
  2124 void
  2125 razor_set_diff(struct razor_set *set, struct razor_set *upstream,
  2126 	       razor_package_callback_t callback, void *data)
  2127 {
  2128 	struct razor_package_iterator *pi1, *pi2;
  2129 	struct razor_package *p1, *p2;
  2130 	const char *name1, *name2, *version1, *version2;
  2131 	int res;
  2132 
  2133 	pi1 = razor_package_iterator_create(set);
  2134 	pi2 = razor_package_iterator_create(upstream);
  2135 
  2136 	razor_package_iterator_next(pi1, &p1, &name1, &version1);
  2137 	razor_package_iterator_next(pi2, &p2, &name2, &version2);
  2138 
  2139 	while (p1 || p2) {
  2140 		if (p1 && p2) {
  2141 			res = strcmp(name1, name2);
  2142 			if (res == 0)
  2143 				res = versioncmp(version1, version2);
  2144 		} else {
  2145 			res = 0;
  2146 		}
  2147 
  2148 		if (p2 == NULL || res < 0)
  2149 			callback(name1, version1, NULL, data);
  2150 		else if (p1 == NULL || res > 0)
  2151 			callback(name2, NULL, version2, data);
  2152 
  2153 		if (p1 != NULL && res <= 0)
  2154 			razor_package_iterator_next(pi1, &p1,
  2155 						    &name1, &version1);
  2156 		if (p2 != NULL && res >= 0)
  2157 			razor_package_iterator_next(pi2, &p2,
  2158 						    &name2, &version2);
  2159 	}
  2160 
  2161 	razor_package_iterator_destroy(pi1);
  2162 	razor_package_iterator_destroy(pi2);
  2163 }