* Sync up to trunk r55544.
[reactos.git] / dll / win32 / urlmon / uri.c
1 /*
2 * Copyright 2010 Jacek Caban for CodeWeavers
3 * Copyright 2010 Thomas Mullaly
4 *
5 * This library is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU Lesser General Public
7 * License as published by the Free Software Foundation; either
8 * version 2.1 of the License, or (at your option) any later version.
9 *
10 * This library is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * Lesser General Public License for more details.
14 *
15 * You should have received a copy of the GNU Lesser General Public
16 * License along with this library; if not, write to the Free Software
17 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
18 */
19
20 #include "urlmon_main.h"
21 #include "wine/debug.h"
22
23 #define NO_SHLWAPI_REG
24 #include "shlwapi.h"
25
26 #include "strsafe.h"
27
28 #define UINT_MAX 0xffffffff
29 #define USHORT_MAX 0xffff
30
31 #define URI_DISPLAY_NO_ABSOLUTE_URI 0x1
32 #define URI_DISPLAY_NO_DEFAULT_PORT_AUTH 0x2
33
34 #define ALLOW_NULL_TERM_SCHEME 0x01
35 #define ALLOW_NULL_TERM_USER_NAME 0x02
36 #define ALLOW_NULL_TERM_PASSWORD 0x04
37 #define ALLOW_BRACKETLESS_IP_LITERAL 0x08
38 #define SKIP_IP_FUTURE_CHECK 0x10
39 #define IGNORE_PORT_DELIMITER 0x20
40
41 #define RAW_URI_FORCE_PORT_DISP 0x1
42 #define RAW_URI_CONVERT_TO_DOS_PATH 0x2
43
44 #define COMBINE_URI_FORCE_FLAG_USE 0x1
45
46 WINE_DEFAULT_DEBUG_CHANNEL(urlmon);
47
48 static const IID IID_IUriObj = {0x4b364760,0x9f51,0x11df,{0x98,0x1c,0x08,0x00,0x20,0x0c,0x9a,0x66}};
49
50 typedef struct {
51 IUri IUri_iface;
52 IUriBuilderFactory IUriBuilderFactory_iface;
53
54 LONG ref;
55
56 BSTR raw_uri;
57
58 /* Information about the canonicalized URI's buffer. */
59 WCHAR *canon_uri;
60 DWORD canon_size;
61 DWORD canon_len;
62 BOOL display_modifiers;
63 DWORD create_flags;
64
65 INT scheme_start;
66 DWORD scheme_len;
67 URL_SCHEME scheme_type;
68
69 INT userinfo_start;
70 DWORD userinfo_len;
71 INT userinfo_split;
72
73 INT host_start;
74 DWORD host_len;
75 Uri_HOST_TYPE host_type;
76
77 INT port_offset;
78 DWORD port;
79 BOOL has_port;
80
81 INT authority_start;
82 DWORD authority_len;
83
84 INT domain_offset;
85
86 INT path_start;
87 DWORD path_len;
88 INT extension_offset;
89
90 INT query_start;
91 DWORD query_len;
92
93 INT fragment_start;
94 DWORD fragment_len;
95 } Uri;
96
97 typedef struct {
98 IUriBuilder IUriBuilder_iface;
99 LONG ref;
100
101 Uri *uri;
102 DWORD modified_props;
103
104 WCHAR *fragment;
105 DWORD fragment_len;
106
107 WCHAR *host;
108 DWORD host_len;
109
110 WCHAR *password;
111 DWORD password_len;
112
113 WCHAR *path;
114 DWORD path_len;
115
116 BOOL has_port;
117 DWORD port;
118
119 WCHAR *query;
120 DWORD query_len;
121
122 WCHAR *scheme;
123 DWORD scheme_len;
124
125 WCHAR *username;
126 DWORD username_len;
127 } UriBuilder;
128
129 typedef struct {
130 const WCHAR *str;
131 DWORD len;
132 } h16;
133
134 typedef struct {
135 /* IPv6 addresses can hold up to 8 h16 components. */
136 h16 components[8];
137 DWORD h16_count;
138
139 /* An IPv6 can have 1 elision ("::"). */
140 const WCHAR *elision;
141
142 /* An IPv6 can contain 1 IPv4 address as the last 32bits of the address. */
143 const WCHAR *ipv4;
144 DWORD ipv4_len;
145
146 INT components_size;
147 INT elision_size;
148 } ipv6_address;
149
150 typedef struct {
151 BSTR uri;
152
153 BOOL is_relative;
154 BOOL is_opaque;
155 BOOL has_implicit_scheme;
156 BOOL has_implicit_ip;
157 UINT implicit_ipv4;
158
159 const WCHAR *scheme;
160 DWORD scheme_len;
161 URL_SCHEME scheme_type;
162
163 const WCHAR *username;
164 DWORD username_len;
165
166 const WCHAR *password;
167 DWORD password_len;
168
169 const WCHAR *host;
170 DWORD host_len;
171 Uri_HOST_TYPE host_type;
172
173 BOOL has_ipv6;
174 ipv6_address ipv6_address;
175
176 BOOL has_port;
177 const WCHAR *port;
178 DWORD port_len;
179 DWORD port_value;
180
181 const WCHAR *path;
182 DWORD path_len;
183
184 const WCHAR *query;
185 DWORD query_len;
186
187 const WCHAR *fragment;
188 DWORD fragment_len;
189 } parse_data;
190
191 static const CHAR hexDigits[] = "0123456789ABCDEF";
192
193 /* List of scheme types/scheme names that are recognized by the IUri interface as of IE 7. */
194 static const struct {
195 URL_SCHEME scheme;
196 WCHAR scheme_name[16];
197 } recognized_schemes[] = {
198 {URL_SCHEME_FTP, {'f','t','p',0}},
199 {URL_SCHEME_HTTP, {'h','t','t','p',0}},
200 {URL_SCHEME_GOPHER, {'g','o','p','h','e','r',0}},
201 {URL_SCHEME_MAILTO, {'m','a','i','l','t','o',0}},
202 {URL_SCHEME_NEWS, {'n','e','w','s',0}},
203 {URL_SCHEME_NNTP, {'n','n','t','p',0}},
204 {URL_SCHEME_TELNET, {'t','e','l','n','e','t',0}},
205 {URL_SCHEME_WAIS, {'w','a','i','s',0}},
206 {URL_SCHEME_FILE, {'f','i','l','e',0}},
207 {URL_SCHEME_MK, {'m','k',0}},
208 {URL_SCHEME_HTTPS, {'h','t','t','p','s',0}},
209 {URL_SCHEME_SHELL, {'s','h','e','l','l',0}},
210 {URL_SCHEME_SNEWS, {'s','n','e','w','s',0}},
211 {URL_SCHEME_LOCAL, {'l','o','c','a','l',0}},
212 {URL_SCHEME_JAVASCRIPT, {'j','a','v','a','s','c','r','i','p','t',0}},
213 {URL_SCHEME_VBSCRIPT, {'v','b','s','c','r','i','p','t',0}},
214 {URL_SCHEME_ABOUT, {'a','b','o','u','t',0}},
215 {URL_SCHEME_RES, {'r','e','s',0}},
216 {URL_SCHEME_MSSHELLROOTED, {'m','s','-','s','h','e','l','l','-','r','o','o','t','e','d',0}},
217 {URL_SCHEME_MSSHELLIDLIST, {'m','s','-','s','h','e','l','l','-','i','d','l','i','s','t',0}},
218 {URL_SCHEME_MSHELP, {'h','c','p',0}},
219 {URL_SCHEME_WILDCARD, {'*',0}}
220 };
221
222 /* List of default ports Windows recognizes. */
223 static const struct {
224 URL_SCHEME scheme;
225 USHORT port;
226 } default_ports[] = {
227 {URL_SCHEME_FTP, 21},
228 {URL_SCHEME_HTTP, 80},
229 {URL_SCHEME_GOPHER, 70},
230 {URL_SCHEME_NNTP, 119},
231 {URL_SCHEME_TELNET, 23},
232 {URL_SCHEME_WAIS, 210},
233 {URL_SCHEME_HTTPS, 443},
234 };
235
236 /* List of 3 character top level domain names Windows seems to recognize.
237 * There might be more, but, these are the only ones I've found so far.
238 */
239 static const struct {
240 WCHAR tld_name[4];
241 } recognized_tlds[] = {
242 {{'c','o','m',0}},
243 {{'e','d','u',0}},
244 {{'g','o','v',0}},
245 {{'i','n','t',0}},
246 {{'m','i','l',0}},
247 {{'n','e','t',0}},
248 {{'o','r','g',0}}
249 };
250
251 static Uri *get_uri_obj(IUri *uri)
252 {
253 Uri *ret;
254 HRESULT hres;
255
256 hres = IUri_QueryInterface(uri, &IID_IUriObj, (void**)&ret);
257 return SUCCEEDED(hres) ? ret : NULL;
258 }
259
260 static inline BOOL is_alpha(WCHAR val) {
261 return ((val >= 'a' && val <= 'z') || (val >= 'A' && val <= 'Z'));
262 }
263
264 static inline BOOL is_num(WCHAR val) {
265 return (val >= '0' && val <= '9');
266 }
267
268 static inline BOOL is_drive_path(const WCHAR *str) {
269 return (is_alpha(str[0]) && (str[1] == ':' || str[1] == '|'));
270 }
271
272 static inline BOOL is_unc_path(const WCHAR *str) {
273 return (str[0] == '\\' && str[0] == '\\');
274 }
275
276 static inline BOOL is_forbidden_dos_path_char(WCHAR val) {
277 return (val == '>' || val == '<' || val == '\"');
278 }
279
280 /* A URI is implicitly a file path if it begins with
281 * a drive letter (eg X:) or starts with "\\" (UNC path).
282 */
283 static inline BOOL is_implicit_file_path(const WCHAR *str) {
284 return (is_unc_path(str) || (is_alpha(str[0]) && str[1] == ':'));
285 }
286
287 /* Checks if the URI is a hierarchical URI. A hierarchical
288 * URI is one that has "//" after the scheme.
289 */
290 static BOOL check_hierarchical(const WCHAR **ptr) {
291 const WCHAR *start = *ptr;
292
293 if(**ptr != '/')
294 return FALSE;
295
296 ++(*ptr);
297 if(**ptr != '/') {
298 *ptr = start;
299 return FALSE;
300 }
301
302 ++(*ptr);
303 return TRUE;
304 }
305
306 /* unreserved = ALPHA / DIGIT / "-" / "." / "_" / "~" */
307 static inline BOOL is_unreserved(WCHAR val) {
308 return (is_alpha(val) || is_num(val) || val == '-' || val == '.' ||
309 val == '_' || val == '~');
310 }
311
312 /* sub-delims = "!" / "$" / "&" / "'" / "(" / ")"
313 * / "*" / "+" / "," / ";" / "="
314 */
315 static inline BOOL is_subdelim(WCHAR val) {
316 return (val == '!' || val == '$' || val == '&' ||
317 val == '\'' || val == '(' || val == ')' ||
318 val == '*' || val == '+' || val == ',' ||
319 val == ';' || val == '=');
320 }
321
322 /* gen-delims = ":" / "/" / "?" / "#" / "[" / "]" / "@" */
323 static inline BOOL is_gendelim(WCHAR val) {
324 return (val == ':' || val == '/' || val == '?' ||
325 val == '#' || val == '[' || val == ']' ||
326 val == '@');
327 }
328
329 /* Characters that delimit the end of the authority
330 * section of a URI. Sometimes a '\\' is considered
331 * an authority delimeter.
332 */
333 static inline BOOL is_auth_delim(WCHAR val, BOOL acceptSlash) {
334 return (val == '#' || val == '/' || val == '?' ||
335 val == '\0' || (acceptSlash && val == '\\'));
336 }
337
338 /* reserved = gen-delims / sub-delims */
339 static inline BOOL is_reserved(WCHAR val) {
340 return (is_subdelim(val) || is_gendelim(val));
341 }
342
343 static inline BOOL is_hexdigit(WCHAR val) {
344 return ((val >= 'a' && val <= 'f') ||
345 (val >= 'A' && val <= 'F') ||
346 (val >= '0' && val <= '9'));
347 }
348
349 static inline BOOL is_path_delim(WCHAR val) {
350 return (!val || val == '#' || val == '?');
351 }
352
353 static inline BOOL is_slash(WCHAR c)
354 {
355 return c == '/' || c == '\\';
356 }
357
358 static BOOL is_default_port(URL_SCHEME scheme, DWORD port) {
359 DWORD i;
360
361 for(i = 0; i < sizeof(default_ports)/sizeof(default_ports[0]); ++i) {
362 if(default_ports[i].scheme == scheme && default_ports[i].port)
363 return TRUE;
364 }
365
366 return FALSE;
367 }
368
369 /* List of schemes types Windows seems to expect to be hierarchical. */
370 static inline BOOL is_hierarchical_scheme(URL_SCHEME type) {
371 return(type == URL_SCHEME_HTTP || type == URL_SCHEME_FTP ||
372 type == URL_SCHEME_GOPHER || type == URL_SCHEME_NNTP ||
373 type == URL_SCHEME_TELNET || type == URL_SCHEME_WAIS ||
374 type == URL_SCHEME_FILE || type == URL_SCHEME_HTTPS ||
375 type == URL_SCHEME_RES);
376 }
377
378 /* Checks if 'flags' contains an invalid combination of Uri_CREATE flags. */
379 static inline BOOL has_invalid_flag_combination(DWORD flags) {
380 return((flags & Uri_CREATE_DECODE_EXTRA_INFO && flags & Uri_CREATE_NO_DECODE_EXTRA_INFO) ||
381 (flags & Uri_CREATE_CANONICALIZE && flags & Uri_CREATE_NO_CANONICALIZE) ||
382 (flags & Uri_CREATE_CRACK_UNKNOWN_SCHEMES && flags & Uri_CREATE_NO_CRACK_UNKNOWN_SCHEMES) ||
383 (flags & Uri_CREATE_PRE_PROCESS_HTML_URI && flags & Uri_CREATE_NO_PRE_PROCESS_HTML_URI) ||
384 (flags & Uri_CREATE_IE_SETTINGS && flags & Uri_CREATE_NO_IE_SETTINGS));
385 }
386
387 /* Applies each default Uri_CREATE flags to 'flags' if it
388 * doesn't cause a flag conflict.
389 */
390 static void apply_default_flags(DWORD *flags) {
391 if(!(*flags & Uri_CREATE_NO_CANONICALIZE))
392 *flags |= Uri_CREATE_CANONICALIZE;
393 if(!(*flags & Uri_CREATE_NO_DECODE_EXTRA_INFO))
394 *flags |= Uri_CREATE_DECODE_EXTRA_INFO;
395 if(!(*flags & Uri_CREATE_NO_CRACK_UNKNOWN_SCHEMES))
396 *flags |= Uri_CREATE_CRACK_UNKNOWN_SCHEMES;
397 if(!(*flags & Uri_CREATE_NO_PRE_PROCESS_HTML_URI))
398 *flags |= Uri_CREATE_PRE_PROCESS_HTML_URI;
399 if(!(*flags & Uri_CREATE_IE_SETTINGS))
400 *flags |= Uri_CREATE_NO_IE_SETTINGS;
401 }
402
403 /* Determines if the URI is hierarchical using the information already parsed into
404 * data and using the current location of parsing in the URI string.
405 *
406 * Windows considers a URI hierarchical if on of the following is true:
407 * A.) It's a wildcard scheme.
408 * B.) It's an implicit file scheme.
409 * C.) It's a known hierarchical scheme and it has two '\\' after the scheme name.
410 * (the '\\' will be converted into "//" during canonicalization).
411 * D.) It's not a relative URI and "//" appears after the scheme name.
412 */
413 static inline BOOL is_hierarchical_uri(const WCHAR **ptr, const parse_data *data) {
414 const WCHAR *start = *ptr;
415
416 if(data->scheme_type == URL_SCHEME_WILDCARD)
417 return TRUE;
418 else if(data->scheme_type == URL_SCHEME_FILE && data->has_implicit_scheme)
419 return TRUE;
420 else if(is_hierarchical_scheme(data->scheme_type) && (*ptr)[0] == '\\' && (*ptr)[1] == '\\') {
421 *ptr += 2;
422 return TRUE;
423 } else if(!data->is_relative && check_hierarchical(ptr))
424 return TRUE;
425
426 *ptr = start;
427 return FALSE;
428 }
429
430 /* Checks if the two Uri's are logically equivalent. It's a simple
431 * comparison, since they are both of type Uri, and it can access
432 * the properties of each Uri directly without the need to go
433 * through the "IUri_Get*" interface calls.
434 */
435 static BOOL are_equal_simple(const Uri *a, const Uri *b) {
436 if(a->scheme_type == b->scheme_type) {
437 const BOOL known_scheme = a->scheme_type != URL_SCHEME_UNKNOWN;
438 const BOOL are_hierarchical =
439 (a->authority_start > -1 && b->authority_start > -1);
440
441 if(a->scheme_type == URL_SCHEME_FILE) {
442 if(a->canon_len == b->canon_len)
443 return !StrCmpIW(a->canon_uri, b->canon_uri);
444 }
445
446 /* Only compare the scheme names (if any) if their unknown scheme types. */
447 if(!known_scheme) {
448 if((a->scheme_start > -1 && b->scheme_start > -1) &&
449 (a->scheme_len == b->scheme_len)) {
450 /* Make sure the schemes are the same. */
451 if(StrCmpNW(a->canon_uri+a->scheme_start, b->canon_uri+b->scheme_start, a->scheme_len))
452 return FALSE;
453 } else if(a->scheme_len != b->scheme_len)
454 /* One of the Uri's has a scheme name, while the other doesn't. */
455 return FALSE;
456 }
457
458 /* If they have a userinfo component, perform case sensitive compare. */
459 if((a->userinfo_start > -1 && b->userinfo_start > -1) &&
460 (a->userinfo_len == b->userinfo_len)) {
461 if(StrCmpNW(a->canon_uri+a->userinfo_start, b->canon_uri+b->userinfo_start, a->userinfo_len))
462 return FALSE;
463 } else if(a->userinfo_len != b->userinfo_len)
464 /* One of the Uri's had a userinfo, while the other one doesn't. */
465 return FALSE;
466
467 /* Check if they have a host name. */
468 if((a->host_start > -1 && b->host_start > -1) &&
469 (a->host_len == b->host_len)) {
470 /* Perform a case insensitive compare if they are a known scheme type. */
471 if(known_scheme) {
472 if(StrCmpNIW(a->canon_uri+a->host_start, b->canon_uri+b->host_start, a->host_len))
473 return FALSE;
474 } else if(StrCmpNW(a->canon_uri+a->host_start, b->canon_uri+b->host_start, a->host_len))
475 return FALSE;
476 } else if(a->host_len != b->host_len)
477 /* One of the Uri's had a host, while the other one didn't. */
478 return FALSE;
479
480 if(a->has_port && b->has_port) {
481 if(a->port != b->port)
482 return FALSE;
483 } else if(a->has_port || b->has_port)
484 /* One had a port, while the other one didn't. */
485 return FALSE;
486
487 /* Windows is weird with how it handles paths. For example
488 * One URI could be "http://google.com" (after canonicalization)
489 * and one could be "http://google.com/" and the IsEqual function
490 * would still evaluate to TRUE, but, only if they are both hierarchical
491 * URIs.
492 */
493 if((a->path_start > -1 && b->path_start > -1) &&
494 (a->path_len == b->path_len)) {
495 if(StrCmpNW(a->canon_uri+a->path_start, b->canon_uri+b->path_start, a->path_len))
496 return FALSE;
497 } else if(are_hierarchical && a->path_len == -1 && b->path_len == 0) {
498 if(*(a->canon_uri+a->path_start) != '/')
499 return FALSE;
500 } else if(are_hierarchical && b->path_len == 1 && a->path_len == 0) {
501 if(*(b->canon_uri+b->path_start) != '/')
502 return FALSE;
503 } else if(a->path_len != b->path_len)
504 return FALSE;
505
506 /* Compare the query strings of the two URIs. */
507 if((a->query_start > -1 && b->query_start > -1) &&
508 (a->query_len == b->query_len)) {
509 if(StrCmpNW(a->canon_uri+a->query_start, b->canon_uri+b->query_start, a->query_len))
510 return FALSE;
511 } else if(a->query_len != b->query_len)
512 return FALSE;
513
514 if((a->fragment_start > -1 && b->fragment_start > -1) &&
515 (a->fragment_len == b->fragment_len)) {
516 if(StrCmpNW(a->canon_uri+a->fragment_start, b->canon_uri+b->fragment_start, a->fragment_len))
517 return FALSE;
518 } else if(a->fragment_len != b->fragment_len)
519 return FALSE;
520
521 /* If we get here, the two URIs are equivalent. */
522 return TRUE;
523 }
524
525 return FALSE;
526 }
527
528 /* Computes the size of the given IPv6 address.
529 * Each h16 component is 16bits, if there is an IPv4 address, it's
530 * 32bits. If there's an elision it can be 16bits to 128bits, depending
531 * on the number of other components.
532 *
533 * Modeled after google-url's CheckIPv6ComponentsSize function
534 */
535 static void compute_ipv6_comps_size(ipv6_address *address) {
536 address->components_size = address->h16_count * 2;
537
538 if(address->ipv4)
539 /* IPv4 address is 4 bytes. */
540 address->components_size += 4;
541
542 if(address->elision) {
543 /* An elision can be anywhere from 2 bytes up to 16 bytes.
544 * It size depends on the size of the h16 and IPv4 components.
545 */
546 address->elision_size = 16 - address->components_size;
547 if(address->elision_size < 2)
548 address->elision_size = 2;
549 } else
550 address->elision_size = 0;
551 }
552
553 /* Taken from dlls/jscript/lex.c */
554 static int hex_to_int(WCHAR val) {
555 if(val >= '0' && val <= '9')
556 return val - '0';
557 else if(val >= 'a' && val <= 'f')
558 return val - 'a' + 10;
559 else if(val >= 'A' && val <= 'F')
560 return val - 'A' + 10;
561
562 return -1;
563 }
564
565 /* Helper function for converting a percent encoded string
566 * representation of a WCHAR value into its actual WCHAR value. If
567 * the two characters following the '%' aren't valid hex values then
568 * this function returns the NULL character.
569 *
570 * Eg.
571 * "%2E" will result in '.' being returned by this function.
572 */
573 static WCHAR decode_pct_val(const WCHAR *ptr) {
574 WCHAR ret = '\0';
575
576 if(*ptr == '%' && is_hexdigit(*(ptr + 1)) && is_hexdigit(*(ptr + 2))) {
577 INT a = hex_to_int(*(ptr + 1));
578 INT b = hex_to_int(*(ptr + 2));
579
580 ret = a << 4;
581 ret += b;
582 }
583
584 return ret;
585 }
586
587 /* Helper function for percent encoding a given character
588 * and storing the encoded value into a given buffer (dest).
589 *
590 * It's up to the calling function to ensure that there is
591 * at least enough space in 'dest' for the percent encoded
592 * value to be stored (so dest + 3 spaces available).
593 */
594 static inline void pct_encode_val(WCHAR val, WCHAR *dest) {
595 dest[0] = '%';
596 dest[1] = hexDigits[(val >> 4) & 0xf];
597 dest[2] = hexDigits[val & 0xf];
598 }
599
600 /* Attempts to parse the domain name from the host.
601 *
602 * This function also includes the Top-level Domain (TLD) name
603 * of the host when it tries to find the domain name. If it finds
604 * a valid domain name it will assign 'domain_start' the offset
605 * into 'host' where the domain name starts.
606 *
607 * It's implied that if there is a domain name its range is:
608 * [host+domain_start, host+host_len).
609 */
610 void find_domain_name(const WCHAR *host, DWORD host_len,
611 INT *domain_start) {
612 const WCHAR *last_tld, *sec_last_tld, *end;
613
614 end = host+host_len-1;
615
616 *domain_start = -1;
617
618 /* There has to be at least enough room for a '.' followed by a
619 * 3 character TLD for a domain to even exist in the host name.
620 */
621 if(host_len < 4)
622 return;
623
624 last_tld = memrchrW(host, '.', host_len);
625 if(!last_tld)
626 /* http://hostname -> has no domain name. */
627 return;
628
629 sec_last_tld = memrchrW(host, '.', last_tld-host);
630 if(!sec_last_tld) {
631 /* If the '.' is at the beginning of the host there
632 * has to be at least 3 characters in the TLD for it
633 * to be valid.
634 * Ex: .com -> .com as the domain name.
635 * .co -> has no domain name.
636 */
637 if(last_tld-host == 0) {
638 if(end-(last_tld-1) < 3)
639 return;
640 } else if(last_tld-host == 3) {
641 DWORD i;
642
643 /* If there's three characters in front of last_tld and
644 * they are on the list of recognized TLDs, then this
645 * host doesn't have a domain (since the host only contains
646 * a TLD name.
647 * Ex: edu.uk -> has no domain name.
648 * foo.uk -> foo.uk as the domain name.
649 */
650 for(i = 0; i < sizeof(recognized_tlds)/sizeof(recognized_tlds[0]); ++i) {
651 if(!StrCmpNIW(host, recognized_tlds[i].tld_name, 3))
652 return;
653 }
654 } else if(last_tld-host < 3)
655 /* Anything less than 3 characters is considered part
656 * of the TLD name.
657 * Ex: ak.uk -> Has no domain name.
658 */
659 return;
660
661 /* Otherwise the domain name is the whole host name. */
662 *domain_start = 0;
663 } else if(end+1-last_tld > 3) {
664 /* If the last_tld has more than 3 characters, then it's automatically
665 * considered the TLD of the domain name.
666 * Ex: www.winehq.org.uk.test -> uk.test as the domain name.
667 */
668 *domain_start = (sec_last_tld+1)-host;
669 } else if(last_tld - (sec_last_tld+1) < 4) {
670 DWORD i;
671 /* If the sec_last_tld is 3 characters long it HAS to be on the list of
672 * recognized to still be considered part of the TLD name, otherwise
673 * its considered the domain name.
674 * Ex: www.google.com.uk -> google.com.uk as the domain name.
675 * www.google.foo.uk -> foo.uk as the domain name.
676 */
677 if(last_tld - (sec_last_tld+1) == 3) {
678 for(i = 0; i < sizeof(recognized_tlds)/sizeof(recognized_tlds[0]); ++i) {
679 if(!StrCmpNIW(sec_last_tld+1, recognized_tlds[i].tld_name, 3)) {
680 const WCHAR *domain = memrchrW(host, '.', sec_last_tld-host);
681
682 if(!domain)
683 *domain_start = 0;
684 else
685 *domain_start = (domain+1) - host;
686 TRACE("Found domain name %s\n", debugstr_wn(host+*domain_start,
687 (host+host_len)-(host+*domain_start)));
688 return;
689 }
690 }
691
692 *domain_start = (sec_last_tld+1)-host;
693 } else {
694 /* Since the sec_last_tld is less than 3 characters it's considered
695 * part of the TLD.
696 * Ex: www.google.fo.uk -> google.fo.uk as the domain name.
697 */
698 const WCHAR *domain = memrchrW(host, '.', sec_last_tld-host);
699
700 if(!domain)
701 *domain_start = 0;
702 else
703 *domain_start = (domain+1) - host;
704 }
705 } else {
706 /* The second to last TLD has more than 3 characters making it
707 * the domain name.
708 * Ex: www.google.test.us -> test.us as the domain name.
709 */
710 *domain_start = (sec_last_tld+1)-host;
711 }
712
713 TRACE("Found domain name %s\n", debugstr_wn(host+*domain_start,
714 (host+host_len)-(host+*domain_start)));
715 }
716
717 /* Removes the dot segments from a hierarchical URIs path component. This
718 * function performs the removal in place.
719 *
720 * This function returns the new length of the path string.
721 */
722 static DWORD remove_dot_segments(WCHAR *path, DWORD path_len) {
723 WCHAR *out = path;
724 const WCHAR *in = out;
725 const WCHAR *end = out + path_len;
726 DWORD len;
727
728 while(in < end) {
729 /* Move the first path segment in the input buffer to the end of
730 * the output buffer, and any subsequent characters up to, including
731 * the next "/" character (if any) or the end of the input buffer.
732 */
733 while(in < end && !is_slash(*in))
734 *out++ = *in++;
735 if(in == end)
736 break;
737 *out++ = *in++;
738
739 while(in < end) {
740 if(*in != '.')
741 break;
742
743 /* Handle ending "/." */
744 if(in + 1 == end) {
745 ++in;
746 break;
747 }
748
749 /* Handle "/./" */
750 if(is_slash(in[1])) {
751 in += 2;
752 continue;
753 }
754
755 /* If we don't have "/../" or ending "/.." */
756 if(in[1] != '.' || (in + 2 != end && !is_slash(in[2])))
757 break;
758
759 /* Find the slash preceding out pointer and move out pointer to it */
760 if(out > path+1 && is_slash(*--out))
761 --out;
762 while(out > path && !is_slash(*(--out)));
763 if(is_slash(*out))
764 ++out;
765 in += 2;
766 if(in != end)
767 ++in;
768 }
769 }
770
771 len = out - path;
772 TRACE("(%p %d): Path after dot segments removed %s len=%d\n", path, path_len,
773 debugstr_wn(path, len), len);
774 return len;
775 }
776
777 /* Attempts to find the file extension in a given path. */
778 static INT find_file_extension(const WCHAR *path, DWORD path_len) {
779 const WCHAR *end;
780
781 for(end = path+path_len-1; end >= path && *end != '/' && *end != '\\'; --end) {
782 if(*end == '.')
783 return end-path;
784 }
785
786 return -1;
787 }
788
789 /* Computes the location where the elision should occur in the IPv6
790 * address using the numerical values of each component stored in
791 * 'values'. If the address shouldn't contain an elision then 'index'
792 * is assigned -1 as it's value. Otherwise 'index' will contain the
793 * starting index (into values) where the elision should be, and 'count'
794 * will contain the number of cells the elision covers.
795 *
796 * NOTES:
797 * Windows will expand an elision if the elision only represents 1 h16
798 * component of the address.
799 *
800 * Ex: [1::2:3:4:5:6:7] -> [1:0:2:3:4:5:6:7]
801 *
802 * If the IPv6 address contains an IPv4 address, the IPv4 address is also
803 * considered for being included as part of an elision if all its components
804 * are zeros.
805 *
806 * Ex: [1:2:3:4:5:6:0.0.0.0] -> [1:2:3:4:5:6::]
807 */
808 static void compute_elision_location(const ipv6_address *address, const USHORT values[8],
809 INT *index, DWORD *count) {
810 DWORD i, max_len, cur_len;
811 INT max_index, cur_index;
812
813 max_len = cur_len = 0;
814 max_index = cur_index = -1;
815 for(i = 0; i < 8; ++i) {
816 BOOL check_ipv4 = (address->ipv4 && i == 6);
817 BOOL is_end = (check_ipv4 || i == 7);
818
819 if(check_ipv4) {
820 /* Check if the IPv4 address contains only zeros. */
821 if(values[i] == 0 && values[i+1] == 0) {
822 if(cur_index == -1)
823 cur_index = i;
824
825 cur_len += 2;
826 ++i;
827 }
828 } else if(values[i] == 0) {
829 if(cur_index == -1)
830 cur_index = i;
831
832 ++cur_len;
833 }
834
835 if(is_end || values[i] != 0) {
836 /* We only consider it for an elision if it's
837 * more than 1 component long.
838 */
839 if(cur_len > 1 && cur_len > max_len) {
840 /* Found the new elision location. */
841 max_len = cur_len;
842 max_index = cur_index;
843 }
844
845 /* Reset the current range for the next range of zeros. */
846 cur_index = -1;
847 cur_len = 0;
848 }
849 }
850
851 *index = max_index;
852 *count = max_len;
853 }
854
855 /* Removes all the leading and trailing white spaces or
856 * control characters from the URI and removes all control
857 * characters inside of the URI string.
858 */
859 static BSTR pre_process_uri(LPCWSTR uri) {
860 BSTR ret;
861 DWORD len;
862 const WCHAR *start, *end;
863 WCHAR *buf, *ptr;
864
865 len = lstrlenW(uri);
866
867 start = uri;
868 /* Skip leading controls and whitespace. */
869 while(iscntrlW(*start) || isspaceW(*start)) ++start;
870
871 end = uri+len-1;
872 if(start == end)
873 /* URI consisted only of control/whitespace. */
874 ret = SysAllocStringLen(NULL, 0);
875 else {
876 while(iscntrlW(*end) || isspaceW(*end)) --end;
877
878 buf = heap_alloc(((end+1)-start)*sizeof(WCHAR));
879 if(!buf)
880 return NULL;
881
882 for(ptr = buf; start < end+1; ++start) {
883 if(!iscntrlW(*start))
884 *ptr++ = *start;
885 }
886
887 ret = SysAllocStringLen(buf, ptr-buf);
888 heap_free(buf);
889 }
890
891 return ret;
892 }
893
894 /* Converts the specified IPv4 address into an uint value.
895 *
896 * This function assumes that the IPv4 address has already been validated.
897 */
898 static UINT ipv4toui(const WCHAR *ip, DWORD len) {
899 UINT ret = 0;
900 DWORD comp_value = 0;
901 const WCHAR *ptr;
902
903 for(ptr = ip; ptr < ip+len; ++ptr) {
904 if(*ptr == '.') {
905 ret <<= 8;
906 ret += comp_value;
907 comp_value = 0;
908 } else
909 comp_value = comp_value*10 + (*ptr-'0');
910 }
911
912 ret <<= 8;
913 ret += comp_value;
914
915 return ret;
916 }
917
918 /* Converts an IPv4 address in numerical form into it's fully qualified
919 * string form. This function returns the number of characters written
920 * to 'dest'. If 'dest' is NULL this function will return the number of
921 * characters that would have been written.
922 *
923 * It's up to the caller to ensure there's enough space in 'dest' for the
924 * address.
925 */
926 static DWORD ui2ipv4(WCHAR *dest, UINT address) {
927 static const WCHAR formatW[] =
928 {'%','u','.','%','u','.','%','u','.','%','u',0};
929 DWORD ret = 0;
930 UCHAR digits[4];
931
932 digits[0] = (address >> 24) & 0xff;
933 digits[1] = (address >> 16) & 0xff;
934 digits[2] = (address >> 8) & 0xff;
935 digits[3] = address & 0xff;
936
937 if(!dest) {
938 WCHAR tmp[16];
939 ret = sprintfW(tmp, formatW, digits[0], digits[1], digits[2], digits[3]);
940 } else
941 ret = sprintfW(dest, formatW, digits[0], digits[1], digits[2], digits[3]);
942
943 return ret;
944 }
945
946 static DWORD ui2str(WCHAR *dest, UINT value) {
947 static const WCHAR formatW[] = {'%','u',0};
948 DWORD ret = 0;
949
950 if(!dest) {
951 WCHAR tmp[11];
952 ret = sprintfW(tmp, formatW, value);
953 } else
954 ret = sprintfW(dest, formatW, value);
955
956 return ret;
957 }
958
959 /* Converts an h16 component (from an IPv6 address) into it's
960 * numerical value.
961 *
962 * This function assumes that the h16 component has already been validated.
963 */
964 static USHORT h16tous(h16 component) {
965 DWORD i;
966 USHORT ret = 0;
967
968 for(i = 0; i < component.len; ++i) {
969 ret <<= 4;
970 ret += hex_to_int(component.str[i]);
971 }
972
973 return ret;
974 }
975
976 /* Converts an IPv6 address into its 128 bits (16 bytes) numerical value.
977 *
978 * This function assumes that the ipv6_address has already been validated.
979 */
980 static BOOL ipv6_to_number(const ipv6_address *address, USHORT number[8]) {
981 DWORD i, cur_component = 0;
982 BOOL already_passed_elision = FALSE;
983
984 for(i = 0; i < address->h16_count; ++i) {
985 if(address->elision) {
986 if(address->components[i].str > address->elision && !already_passed_elision) {
987 /* Means we just passed the elision and need to add its values to
988 * 'number' before we do anything else.
989 */
990 DWORD j = 0;
991 for(j = 0; j < address->elision_size; j+=2)
992 number[cur_component++] = 0;
993
994 already_passed_elision = TRUE;
995 }
996 }
997
998 number[cur_component++] = h16tous(address->components[i]);
999 }
1000
1001 /* Case when the elision appears after the h16 components. */
1002 if(!already_passed_elision && address->elision) {
1003 for(i = 0; i < address->elision_size; i+=2)
1004 number[cur_component++] = 0;
1005 }
1006
1007 if(address->ipv4) {
1008 UINT value = ipv4toui(address->ipv4, address->ipv4_len);
1009
1010 if(cur_component != 6) {
1011 ERR("(%p %p): Failed sanity check with %d\n", address, number, cur_component);
1012 return FALSE;
1013 }
1014
1015 number[cur_component++] = (value >> 16) & 0xffff;
1016 number[cur_component] = value & 0xffff;
1017 }
1018
1019 return TRUE;
1020 }
1021
1022 /* Checks if the characters pointed to by 'ptr' are
1023 * a percent encoded data octet.
1024 *
1025 * pct-encoded = "%" HEXDIG HEXDIG
1026 */
1027 static BOOL check_pct_encoded(const WCHAR **ptr) {
1028 const WCHAR *start = *ptr;
1029
1030 if(**ptr != '%')
1031 return FALSE;
1032
1033 ++(*ptr);
1034 if(!is_hexdigit(**ptr)) {
1035 *ptr = start;
1036 return FALSE;
1037 }
1038
1039 ++(*ptr);
1040 if(!is_hexdigit(**ptr)) {
1041 *ptr = start;
1042 return FALSE;
1043 }
1044
1045 ++(*ptr);
1046 return TRUE;
1047 }
1048
1049 /* dec-octet = DIGIT ; 0-9
1050 * / %x31-39 DIGIT ; 10-99
1051 * / "1" 2DIGIT ; 100-199
1052 * / "2" %x30-34 DIGIT ; 200-249
1053 * / "25" %x30-35 ; 250-255
1054 */
1055 static BOOL check_dec_octet(const WCHAR **ptr) {
1056 const WCHAR *c1, *c2, *c3;
1057
1058 c1 = *ptr;
1059 /* A dec-octet must be at least 1 digit long. */
1060 if(*c1 < '0' || *c1 > '9')
1061 return FALSE;
1062
1063 ++(*ptr);
1064
1065 c2 = *ptr;
1066 /* Since the 1 digit requirment was meet, it doesn't
1067 * matter if this is a DIGIT value, it's considered a
1068 * dec-octet.
1069 */
1070 if(*c2 < '0' || *c2 > '9')
1071 return TRUE;
1072
1073 ++(*ptr);
1074
1075 c3 = *ptr;
1076 /* Same explanation as above. */
1077 if(*c3 < '0' || *c3 > '9')
1078 return TRUE;
1079
1080 /* Anything > 255 isn't a valid IP dec-octet. */
1081 if(*c1 >= '2' && *c2 >= '5' && *c3 >= '5') {
1082 *ptr = c1;
1083 return FALSE;
1084 }
1085
1086 ++(*ptr);
1087 return TRUE;
1088 }
1089
1090 /* Checks if there is an implicit IPv4 address in the host component of the URI.
1091 * The max value of an implicit IPv4 address is UINT_MAX.
1092 *
1093 * Ex:
1094 * "234567" would be considered an implicit IPv4 address.
1095 */
1096 static BOOL check_implicit_ipv4(const WCHAR **ptr, UINT *val) {
1097 const WCHAR *start = *ptr;
1098 ULONGLONG ret = 0;
1099 *val = 0;
1100
1101 while(is_num(**ptr)) {
1102 ret = ret*10 + (**ptr - '0');
1103
1104 if(ret > UINT_MAX) {
1105 *ptr = start;
1106 return FALSE;
1107 }
1108 ++(*ptr);
1109 }
1110
1111 if(*ptr == start)
1112 return FALSE;
1113
1114 *val = ret;
1115 return TRUE;
1116 }
1117
1118 /* Checks if the string contains an IPv4 address.
1119 *
1120 * This function has a strict mode or a non-strict mode of operation
1121 * When 'strict' is set to FALSE this function will return TRUE if
1122 * the string contains at least 'dec-octet "." dec-octet' since partial
1123 * IPv4 addresses will be normalized out into full IPv4 addresses. When
1124 * 'strict' is set this function expects there to be a full IPv4 address.
1125 *
1126 * IPv4address = dec-octet "." dec-octet "." dec-octet "." dec-octet
1127 */
1128 static BOOL check_ipv4address(const WCHAR **ptr, BOOL strict) {
1129 const WCHAR *start = *ptr;
1130
1131 if(!check_dec_octet(ptr)) {
1132 *ptr = start;
1133 return FALSE;
1134 }
1135
1136 if(**ptr != '.') {
1137 *ptr = start;
1138 return FALSE;
1139 }
1140
1141 ++(*ptr);
1142 if(!check_dec_octet(ptr)) {
1143 *ptr = start;
1144 return FALSE;
1145 }
1146
1147 if(**ptr != '.') {
1148 if(strict) {
1149 *ptr = start;
1150 return FALSE;
1151 } else
1152 return TRUE;
1153 }
1154
1155 ++(*ptr);
1156 if(!check_dec_octet(ptr)) {
1157 *ptr = start;
1158 return FALSE;
1159 }
1160
1161 if(**ptr != '.') {
1162 if(strict) {
1163 *ptr = start;
1164 return FALSE;
1165 } else
1166 return TRUE;
1167 }
1168
1169 ++(*ptr);
1170 if(!check_dec_octet(ptr)) {
1171 *ptr = start;
1172 return FALSE;
1173 }
1174
1175 /* Found a four digit ip address. */
1176 return TRUE;
1177 }
1178 /* Tries to parse the scheme name of the URI.
1179 *
1180 * scheme = ALPHA *(ALPHA | NUM | '+' | '-' | '.') as defined by RFC 3896.
1181 * NOTE: Windows accepts a number as the first character of a scheme.
1182 */
1183 static BOOL parse_scheme_name(const WCHAR **ptr, parse_data *data, DWORD extras) {
1184 const WCHAR *start = *ptr;
1185
1186 data->scheme = NULL;
1187 data->scheme_len = 0;
1188
1189 while(**ptr) {
1190 if(**ptr == '*' && *ptr == start) {
1191 /* Might have found a wildcard scheme. If it is the next
1192 * char has to be a ':' for it to be a valid URI
1193 */
1194 ++(*ptr);
1195 break;
1196 } else if(!is_num(**ptr) && !is_alpha(**ptr) && **ptr != '+' &&
1197 **ptr != '-' && **ptr != '.')
1198 break;
1199
1200 (*ptr)++;
1201 }
1202
1203 if(*ptr == start)
1204 return FALSE;
1205
1206 /* Schemes must end with a ':' */
1207 if(**ptr != ':' && !((extras & ALLOW_NULL_TERM_SCHEME) && !**ptr)) {
1208 *ptr = start;
1209 return FALSE;
1210 }
1211
1212 data->scheme = start;
1213 data->scheme_len = *ptr - start;
1214
1215 ++(*ptr);
1216 return TRUE;
1217 }
1218
1219 /* Tries to deduce the corresponding URL_SCHEME for the given URI. Stores
1220 * the deduced URL_SCHEME in data->scheme_type.
1221 */
1222 static BOOL parse_scheme_type(parse_data *data) {
1223 /* If there's scheme data then see if it's a recognized scheme. */
1224 if(data->scheme && data->scheme_len) {
1225 DWORD i;
1226
1227 for(i = 0; i < sizeof(recognized_schemes)/sizeof(recognized_schemes[0]); ++i) {
1228 if(lstrlenW(recognized_schemes[i].scheme_name) == data->scheme_len) {
1229 /* Has to be a case insensitive compare. */
1230 if(!StrCmpNIW(recognized_schemes[i].scheme_name, data->scheme, data->scheme_len)) {
1231 data->scheme_type = recognized_schemes[i].scheme;
1232 return TRUE;
1233 }
1234 }
1235 }
1236
1237 /* If we get here it means it's not a recognized scheme. */
1238 data->scheme_type = URL_SCHEME_UNKNOWN;
1239 return TRUE;
1240 } else if(data->is_relative) {
1241 /* Relative URI's have no scheme. */
1242 data->scheme_type = URL_SCHEME_UNKNOWN;
1243 return TRUE;
1244 } else {
1245 /* Should never reach here! what happened... */
1246 FIXME("(%p): Unable to determine scheme type for URI %s\n", data, debugstr_w(data->uri));
1247 return FALSE;
1248 }
1249 }
1250
1251 /* Tries to parse (or deduce) the scheme_name of a URI. If it can't
1252 * parse a scheme from the URI it will try to deduce the scheme_name and scheme_type
1253 * using the flags specified in 'flags' (if any). Flags that affect how this function
1254 * operates are the Uri_CREATE_ALLOW_* flags.
1255 *
1256 * All parsed/deduced information will be stored in 'data' when the function returns.
1257 *
1258 * Returns TRUE if it was able to successfully parse the information.
1259 */
1260 static BOOL parse_scheme(const WCHAR **ptr, parse_data *data, DWORD flags, DWORD extras) {
1261 static const WCHAR fileW[] = {'f','i','l','e',0};
1262 static const WCHAR wildcardW[] = {'*',0};
1263
1264 /* First check to see if the uri could implicitly be a file path. */
1265 if(is_implicit_file_path(*ptr)) {
1266 if(flags & Uri_CREATE_ALLOW_IMPLICIT_FILE_SCHEME) {
1267 data->scheme = fileW;
1268 data->scheme_len = lstrlenW(fileW);
1269 data->has_implicit_scheme = TRUE;
1270
1271 TRACE("(%p %p %x): URI is an implicit file path.\n", ptr, data, flags);
1272 } else {
1273 /* Window's does not consider anything that can implicitly be a file
1274 * path to be a valid URI if the ALLOW_IMPLICIT_FILE_SCHEME flag is not set...
1275 */
1276 TRACE("(%p %p %x): URI is implicitly a file path, but, the ALLOW_IMPLICIT_FILE_SCHEME flag wasn't set.\n",
1277 ptr, data, flags);
1278 return FALSE;
1279 }
1280 } else if(!parse_scheme_name(ptr, data, extras)) {
1281 /* No Scheme was found, this means it could be:
1282 * a) an implicit Wildcard scheme
1283 * b) a relative URI
1284 * c) a invalid URI.
1285 */
1286 if(flags & Uri_CREATE_ALLOW_IMPLICIT_WILDCARD_SCHEME) {
1287 data->scheme = wildcardW;
1288 data->scheme_len = lstrlenW(wildcardW);
1289 data->has_implicit_scheme = TRUE;
1290
1291 TRACE("(%p %p %x): URI is an implicit wildcard scheme.\n", ptr, data, flags);
1292 } else if (flags & Uri_CREATE_ALLOW_RELATIVE) {
1293 data->is_relative = TRUE;
1294 TRACE("(%p %p %x): URI is relative.\n", ptr, data, flags);
1295 } else {
1296 TRACE("(%p %p %x): Malformed URI found. Unable to deduce scheme name.\n", ptr, data, flags);
1297 return FALSE;
1298 }
1299 }
1300
1301 if(!data->is_relative)
1302 TRACE("(%p %p %x): Found scheme=%s scheme_len=%d\n", ptr, data, flags,
1303 debugstr_wn(data->scheme, data->scheme_len), data->scheme_len);
1304
1305 if(!parse_scheme_type(data))
1306 return FALSE;
1307
1308 TRACE("(%p %p %x): Assigned %d as the URL_SCHEME.\n", ptr, data, flags, data->scheme_type);
1309 return TRUE;
1310 }
1311
1312 static BOOL parse_username(const WCHAR **ptr, parse_data *data, DWORD flags, DWORD extras) {
1313 data->username = *ptr;
1314
1315 while(**ptr != ':' && **ptr != '@') {
1316 if(**ptr == '%') {
1317 if(!check_pct_encoded(ptr)) {
1318 if(data->scheme_type != URL_SCHEME_UNKNOWN) {
1319 *ptr = data->username;
1320 data->username = NULL;
1321 return FALSE;
1322 }
1323 } else
1324 continue;
1325 } else if(extras & ALLOW_NULL_TERM_USER_NAME && !**ptr)
1326 break;
1327 else if(is_auth_delim(**ptr, data->scheme_type != URL_SCHEME_UNKNOWN)) {
1328 *ptr = data->username;
1329 data->username = NULL;
1330 return FALSE;
1331 }
1332
1333 ++(*ptr);
1334 }
1335
1336 data->username_len = *ptr - data->username;
1337 return TRUE;
1338 }
1339
1340 static BOOL parse_password(const WCHAR **ptr, parse_data *data, DWORD flags, DWORD extras) {
1341 data->password = *ptr;
1342
1343 while(**ptr != '@') {
1344 if(**ptr == '%') {
1345 if(!check_pct_encoded(ptr)) {
1346 if(data->scheme_type != URL_SCHEME_UNKNOWN) {
1347 *ptr = data->password;
1348 data->password = NULL;
1349 return FALSE;
1350 }
1351 } else
1352 continue;
1353 } else if(extras & ALLOW_NULL_TERM_PASSWORD && !**ptr)
1354 break;
1355 else if(is_auth_delim(**ptr, data->scheme_type != URL_SCHEME_UNKNOWN)) {
1356 *ptr = data->password;
1357 data->password = NULL;
1358 return FALSE;
1359 }
1360
1361 ++(*ptr);
1362 }
1363
1364 data->password_len = *ptr - data->password;
1365 return TRUE;
1366 }
1367
1368 /* Parses the userinfo part of the URI (if it exists). The userinfo field of
1369 * a URI can consist of "username:password@", or just "username@".
1370 *
1371 * RFC def:
1372 * userinfo = *( unreserved / pct-encoded / sub-delims / ":" )
1373 *
1374 * NOTES:
1375 * 1) If there is more than one ':' in the userinfo part of the URI Windows
1376 * uses the first occurrence of ':' to delimit the username and password
1377 * components.
1378 *
1379 * ex:
1380 * ftp://user:pass:word@winehq.org
1381 *
1382 * Would yield, "user" as the username and "pass:word" as the password.
1383 *
1384 * 2) Windows allows any character to appear in the "userinfo" part of
1385 * a URI, as long as it's not an authority delimeter character set.
1386 */
1387 static void parse_userinfo(const WCHAR **ptr, parse_data *data, DWORD flags) {
1388 const WCHAR *start = *ptr;
1389
1390 if(!parse_username(ptr, data, flags, 0)) {
1391 TRACE("(%p %p %x): URI contained no userinfo.\n", ptr, data, flags);
1392 return;
1393 }
1394
1395 if(**ptr == ':') {
1396 ++(*ptr);
1397 if(!parse_password(ptr, data, flags, 0)) {
1398 *ptr = start;
1399 data->username = NULL;
1400 data->username_len = 0;
1401 TRACE("(%p %p %x): URI contained no userinfo.\n", ptr, data, flags);
1402 return;
1403 }
1404 }
1405
1406 if(**ptr != '@') {
1407 *ptr = start;
1408 data->username = NULL;
1409 data->username_len = 0;
1410 data->password = NULL;
1411 data->password_len = 0;
1412
1413 TRACE("(%p %p %x): URI contained no userinfo.\n", ptr, data, flags);
1414 return;
1415 }
1416
1417 if(data->username)
1418 TRACE("(%p %p %x): Found username %s len=%d.\n", ptr, data, flags,
1419 debugstr_wn(data->username, data->username_len), data->username_len);
1420
1421 if(data->password)
1422 TRACE("(%p %p %x): Found password %s len=%d.\n", ptr, data, flags,
1423 debugstr_wn(data->password, data->password_len), data->password_len);
1424
1425 ++(*ptr);
1426 }
1427
1428 /* Attempts to parse a port from the URI.
1429 *
1430 * NOTES:
1431 * Windows seems to have a cap on what the maximum value
1432 * for a port can be. The max value is USHORT_MAX.
1433 *
1434 * port = *DIGIT
1435 */
1436 static BOOL parse_port(const WCHAR **ptr, parse_data *data, DWORD flags) {
1437 UINT port = 0;
1438 data->port = *ptr;
1439
1440 while(!is_auth_delim(**ptr, data->scheme_type != URL_SCHEME_UNKNOWN)) {
1441 if(!is_num(**ptr)) {
1442 *ptr = data->port;
1443 data->port = NULL;
1444 return FALSE;
1445 }
1446
1447 port = port*10 + (**ptr-'0');
1448
1449 if(port > USHORT_MAX) {
1450 *ptr = data->port;
1451 data->port = NULL;
1452 return FALSE;
1453 }
1454
1455 ++(*ptr);
1456 }
1457
1458 data->has_port = TRUE;
1459 data->port_value = port;
1460 data->port_len = *ptr - data->port;
1461
1462 TRACE("(%p %p %x): Found port %s len=%d value=%u\n", ptr, data, flags,
1463 debugstr_wn(data->port, data->port_len), data->port_len, data->port_value);
1464 return TRUE;
1465 }
1466
1467 /* Attempts to parse a IPv4 address from the URI.
1468 *
1469 * NOTES:
1470 * Window's normalizes IPv4 addresses, This means there's three
1471 * possibilities for the URI to contain an IPv4 address.
1472 * 1) A well formed address (ex. 192.2.2.2).
1473 * 2) A partially formed address. For example "192.0" would
1474 * normalize to "192.0.0.0" during canonicalization.
1475 * 3) An implicit IPv4 address. For example "256" would
1476 * normalize to "0.0.1.0" during canonicalization. Also
1477 * note that the maximum value for an implicit IP address
1478 * is UINT_MAX, if the value in the URI exceeds this then
1479 * it is not considered an IPv4 address.
1480 */
1481 static BOOL parse_ipv4address(const WCHAR **ptr, parse_data *data, DWORD flags) {
1482 const BOOL is_unknown = data->scheme_type == URL_SCHEME_UNKNOWN;
1483 data->host = *ptr;
1484
1485 if(!check_ipv4address(ptr, FALSE)) {
1486 if(!check_implicit_ipv4(ptr, &data->implicit_ipv4)) {
1487 TRACE("(%p %p %x): URI didn't contain anything looking like an IPv4 address.\n",
1488 ptr, data, flags);
1489 *ptr = data->host;
1490 data->host = NULL;
1491 return FALSE;
1492 } else
1493 data->has_implicit_ip = TRUE;
1494 }
1495
1496 /* Check if what we found is the only part of the host name (if it isn't
1497 * we don't have an IPv4 address).
1498 */
1499 if(**ptr == ':') {
1500 ++(*ptr);
1501 if(!parse_port(ptr, data, flags)) {
1502 *ptr = data->host;
1503 data->host = NULL;
1504 return FALSE;
1505 }
1506 } else if(!is_auth_delim(**ptr, !is_unknown)) {
1507 /* Found more data which belongs the host, so this isn't an IPv4. */
1508 *ptr = data->host;
1509 data->host = NULL;
1510 data->has_implicit_ip = FALSE;
1511 return FALSE;
1512 }
1513
1514 data->host_len = *ptr - data->host;
1515 data->host_type = Uri_HOST_IPV4;
1516
1517 TRACE("(%p %p %x): IPv4 address found. host=%s host_len=%d host_type=%d\n",
1518 ptr, data, flags, debugstr_wn(data->host, data->host_len),
1519 data->host_len, data->host_type);
1520 return TRUE;
1521 }
1522
1523 /* Attempts to parse the reg-name from the URI.
1524 *
1525 * Because of the way Windows handles ':' this function also
1526 * handles parsing the port.
1527 *
1528 * reg-name = *( unreserved / pct-encoded / sub-delims )
1529 *
1530 * NOTE:
1531 * Windows allows everything, but, the characters in "auth_delims" and ':'
1532 * to appear in a reg-name, unless it's an unknown scheme type then ':' is
1533 * allowed to appear (even if a valid port isn't after it).
1534 *
1535 * Windows doesn't like host names which start with '[' and end with ']'
1536 * and don't contain a valid IP literal address in between them.
1537 *
1538 * On Windows if an '[' is encountered in the host name the ':' no longer
1539 * counts as a delimiter until you reach the next ']' or an "authority delimeter".
1540 *
1541 * A reg-name CAN be empty.
1542 */
1543 static BOOL parse_reg_name(const WCHAR **ptr, parse_data *data, DWORD flags, DWORD extras) {
1544 const BOOL has_start_bracket = **ptr == '[';
1545 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
1546 const BOOL is_res = data->scheme_type == URL_SCHEME_RES;
1547 BOOL inside_brackets = has_start_bracket;
1548
1549 /* res URIs don't have ports. */
1550 BOOL ignore_col = (extras & IGNORE_PORT_DELIMITER) || is_res;
1551
1552 /* We have to be careful with file schemes. */
1553 if(data->scheme_type == URL_SCHEME_FILE) {
1554 /* This is because an implicit file scheme could be "C:\\test" and it
1555 * would trick this function into thinking the host is "C", when after
1556 * canonicalization the host would end up being an empty string. A drive
1557 * path can also have a '|' instead of a ':' after the drive letter.
1558 */
1559 if(is_drive_path(*ptr)) {
1560 /* Regular old drive paths don't have a host type (or host name). */
1561 data->host_type = Uri_HOST_UNKNOWN;
1562 data->host = *ptr;
1563 data->host_len = 0;
1564 return TRUE;
1565 } else if(is_unc_path(*ptr))
1566 /* Skip past the "\\" of a UNC path. */
1567 *ptr += 2;
1568 }
1569
1570 data->host = *ptr;
1571
1572 /* For res URIs, everything before the first '/' is
1573 * considered the host.
1574 */
1575 while((!is_res && !is_auth_delim(**ptr, known_scheme)) ||
1576 (is_res && **ptr && **ptr != '/')) {
1577 if(**ptr == ':' && !ignore_col) {
1578 /* We can ignore ':' if were inside brackets.*/
1579 if(!inside_brackets) {
1580 const WCHAR *tmp = (*ptr)++;
1581
1582 /* Attempt to parse the port. */
1583 if(!parse_port(ptr, data, flags)) {
1584 /* Windows expects there to be a valid port for known scheme types. */
1585 if(data->scheme_type != URL_SCHEME_UNKNOWN) {
1586 *ptr = data->host;
1587 data->host = NULL;
1588 TRACE("(%p %p %x %x): Expected valid port\n", ptr, data, flags, extras);
1589 return FALSE;
1590 } else
1591 /* Windows gives up on trying to parse a port when it
1592 * encounters 1 invalid port.
1593 */
1594 ignore_col = TRUE;
1595 } else {
1596 data->host_len = tmp - data->host;
1597 break;
1598 }
1599 }
1600 } else if(**ptr == '%' && (known_scheme && !is_res)) {
1601 /* Has to be a legit % encoded value. */
1602 if(!check_pct_encoded(ptr)) {
1603 *ptr = data->host;
1604 data->host = NULL;
1605 return FALSE;
1606 } else
1607 continue;
1608 } else if(is_res && is_forbidden_dos_path_char(**ptr)) {
1609 *ptr = data->host;
1610 data->host = NULL;
1611 return FALSE;
1612 } else if(**ptr == ']')
1613 inside_brackets = FALSE;
1614 else if(**ptr == '[')
1615 inside_brackets = TRUE;
1616
1617 ++(*ptr);
1618 }
1619
1620 if(has_start_bracket) {
1621 /* Make sure the last character of the host wasn't a ']'. */
1622 if(*(*ptr-1) == ']') {
1623 TRACE("(%p %p %x %x): Expected an IP literal inside of the host\n",
1624 ptr, data, flags, extras);
1625 *ptr = data->host;
1626 data->host = NULL;
1627 return FALSE;
1628 }
1629 }
1630
1631 /* Don't overwrite our length if we found a port earlier. */
1632 if(!data->port)
1633 data->host_len = *ptr - data->host;
1634
1635 /* If the host is empty, then it's an unknown host type. */
1636 if(data->host_len == 0 || is_res)
1637 data->host_type = Uri_HOST_UNKNOWN;
1638 else
1639 data->host_type = Uri_HOST_DNS;
1640
1641 TRACE("(%p %p %x %x): Parsed reg-name. host=%s len=%d\n", ptr, data, flags, extras,
1642 debugstr_wn(data->host, data->host_len), data->host_len);
1643 return TRUE;
1644 }
1645
1646 /* Attempts to parse an IPv6 address out of the URI.
1647 *
1648 * IPv6address = 6( h16 ":" ) ls32
1649 * / "::" 5( h16 ":" ) ls32
1650 * / [ h16 ] "::" 4( h16 ":" ) ls32
1651 * / [ *1( h16 ":" ) h16 ] "::" 3( h16 ":" ) ls32
1652 * / [ *2( h16 ":" ) h16 ] "::" 2( h16 ":" ) ls32
1653 * / [ *3( h16 ":" ) h16 ] "::" h16 ":" ls32
1654 * / [ *4( h16 ":" ) h16 ] "::" ls32
1655 * / [ *5( h16 ":" ) h16 ] "::" h16
1656 * / [ *6( h16 ":" ) h16 ] "::"
1657 *
1658 * ls32 = ( h16 ":" h16 ) / IPv4address
1659 * ; least-significant 32 bits of address.
1660 *
1661 * h16 = 1*4HEXDIG
1662 * ; 16 bits of address represented in hexadecimal.
1663 *
1664 * Modeled after google-url's 'DoParseIPv6' function.
1665 */
1666 static BOOL parse_ipv6address(const WCHAR **ptr, parse_data *data, DWORD flags) {
1667 const WCHAR *start, *cur_start;
1668 ipv6_address ip;
1669
1670 start = cur_start = *ptr;
1671 memset(&ip, 0, sizeof(ipv6_address));
1672
1673 for(;; ++(*ptr)) {
1674 /* Check if we're on the last character of the host. */
1675 BOOL is_end = (is_auth_delim(**ptr, data->scheme_type != URL_SCHEME_UNKNOWN)
1676 || **ptr == ']');
1677
1678 BOOL is_split = (**ptr == ':');
1679 BOOL is_elision = (is_split && !is_end && *(*ptr+1) == ':');
1680
1681 /* Check if we're at the end of a component, or
1682 * if we're at the end of the IPv6 address.
1683 */
1684 if(is_split || is_end) {
1685 DWORD cur_len = 0;
1686
1687 cur_len = *ptr - cur_start;
1688
1689 /* h16 can't have a length > 4. */
1690 if(cur_len > 4) {
1691 *ptr = start;
1692
1693 TRACE("(%p %p %x): h16 component to long.\n",
1694 ptr, data, flags);
1695 return FALSE;
1696 }
1697
1698 if(cur_len == 0) {
1699 /* An h16 component can't have the length of 0 unless
1700 * the elision is at the beginning of the address, or
1701 * at the end of the address.
1702 */
1703 if(!((*ptr == start && is_elision) ||
1704 (is_end && (*ptr-2) == ip.elision))) {
1705 *ptr = start;
1706 TRACE("(%p %p %x): IPv6 component cannot have a length of 0.\n",
1707 ptr, data, flags);
1708 return FALSE;
1709 }
1710 }
1711
1712 if(cur_len > 0) {
1713 /* An IPv6 address can have no more than 8 h16 components. */
1714 if(ip.h16_count >= 8) {
1715 *ptr = start;
1716 TRACE("(%p %p %x): Not a IPv6 address, to many h16 components.\n",
1717 ptr, data, flags);
1718 return FALSE;
1719 }
1720
1721 ip.components[ip.h16_count].str = cur_start;
1722 ip.components[ip.h16_count].len = cur_len;
1723
1724 TRACE("(%p %p %x): Found h16 component %s, len=%d, h16_count=%d\n",
1725 ptr, data, flags, debugstr_wn(cur_start, cur_len), cur_len,
1726 ip.h16_count);
1727 ++ip.h16_count;
1728 }
1729 }
1730
1731 if(is_end)
1732 break;
1733
1734 if(is_elision) {
1735 /* A IPv6 address can only have 1 elision ('::'). */
1736 if(ip.elision) {
1737 *ptr = start;
1738
1739 TRACE("(%p %p %x): IPv6 address cannot have 2 elisions.\n",
1740 ptr, data, flags);
1741 return FALSE;
1742 }
1743
1744 ip.elision = *ptr;
1745 ++(*ptr);
1746 }
1747
1748 if(is_split)
1749 cur_start = *ptr+1;
1750 else {
1751 if(!check_ipv4address(ptr, TRUE)) {
1752 if(!is_hexdigit(**ptr)) {
1753 /* Not a valid character for an IPv6 address. */
1754 *ptr = start;
1755 return FALSE;
1756 }
1757 } else {
1758 /* Found an IPv4 address. */
1759 ip.ipv4 = cur_start;
1760 ip.ipv4_len = *ptr - cur_start;
1761
1762 TRACE("(%p %p %x): Found an attached IPv4 address %s len=%d.\n",
1763 ptr, data, flags, debugstr_wn(ip.ipv4, ip.ipv4_len),
1764 ip.ipv4_len);
1765
1766 /* IPv4 addresses can only appear at the end of a IPv6. */
1767 break;
1768 }
1769 }
1770 }
1771
1772 compute_ipv6_comps_size(&ip);
1773
1774 /* Make sure the IPv6 address adds up to 16 bytes. */
1775 if(ip.components_size + ip.elision_size != 16) {
1776 *ptr = start;
1777 TRACE("(%p %p %x): Invalid IPv6 address, did not add up to 16 bytes.\n",
1778 ptr, data, flags);
1779 return FALSE;
1780 }
1781
1782 if(ip.elision_size == 2) {
1783 /* For some reason on Windows if an elision that represents
1784 * only 1 h16 component is encountered at the very begin or
1785 * end of an IPv6 address, Windows does not consider it a
1786 * valid IPv6 address.
1787 *
1788 * Ex: [::2:3:4:5:6:7] is not valid, even though the sum
1789 * of all the components == 128bits.
1790 */
1791 if(ip.elision < ip.components[0].str ||
1792 ip.elision > ip.components[ip.h16_count-1].str) {
1793 *ptr = start;
1794 TRACE("(%p %p %x): Invalid IPv6 address. Detected elision of 2 bytes at the beginning or end of the address.\n",
1795 ptr, data, flags);
1796 return FALSE;
1797 }
1798 }
1799
1800 data->host_type = Uri_HOST_IPV6;
1801 data->has_ipv6 = TRUE;
1802 data->ipv6_address = ip;
1803
1804 TRACE("(%p %p %x): Found valid IPv6 literal %s len=%d\n",
1805 ptr, data, flags, debugstr_wn(start, *ptr-start),
1806 (int)(*ptr-start));
1807 return TRUE;
1808 }
1809
1810 /* IPvFuture = "v" 1*HEXDIG "." 1*( unreserved / sub-delims / ":" ) */
1811 static BOOL parse_ipvfuture(const WCHAR **ptr, parse_data *data, DWORD flags) {
1812 const WCHAR *start = *ptr;
1813
1814 /* IPvFuture has to start with a 'v' or 'V'. */
1815 if(**ptr != 'v' && **ptr != 'V')
1816 return FALSE;
1817
1818 /* Following the v there must be at least 1 hex digit. */
1819 ++(*ptr);
1820 if(!is_hexdigit(**ptr)) {
1821 *ptr = start;
1822 return FALSE;
1823 }
1824
1825 ++(*ptr);
1826 while(is_hexdigit(**ptr))
1827 ++(*ptr);
1828
1829 /* End of the hexdigit sequence must be a '.' */
1830 if(**ptr != '.') {
1831 *ptr = start;
1832 return FALSE;
1833 }
1834
1835 ++(*ptr);
1836 if(!is_unreserved(**ptr) && !is_subdelim(**ptr) && **ptr != ':') {
1837 *ptr = start;
1838 return FALSE;
1839 }
1840
1841 ++(*ptr);
1842 while(is_unreserved(**ptr) || is_subdelim(**ptr) || **ptr == ':')
1843 ++(*ptr);
1844
1845 data->host_type = Uri_HOST_UNKNOWN;
1846
1847 TRACE("(%p %p %x): Parsed IPvFuture address %s len=%d\n", ptr, data, flags,
1848 debugstr_wn(start, *ptr-start), (int)(*ptr-start));
1849
1850 return TRUE;
1851 }
1852
1853 /* IP-literal = "[" ( IPv6address / IPvFuture ) "]" */
1854 static BOOL parse_ip_literal(const WCHAR **ptr, parse_data *data, DWORD flags, DWORD extras) {
1855 data->host = *ptr;
1856
1857 if(**ptr != '[' && !(extras & ALLOW_BRACKETLESS_IP_LITERAL)) {
1858 data->host = NULL;
1859 return FALSE;
1860 } else if(**ptr == '[')
1861 ++(*ptr);
1862
1863 if(!parse_ipv6address(ptr, data, flags)) {
1864 if(extras & SKIP_IP_FUTURE_CHECK || !parse_ipvfuture(ptr, data, flags)) {
1865 *ptr = data->host;
1866 data->host = NULL;
1867 return FALSE;
1868 }
1869 }
1870
1871 if(**ptr != ']' && !(extras & ALLOW_BRACKETLESS_IP_LITERAL)) {
1872 *ptr = data->host;
1873 data->host = NULL;
1874 return FALSE;
1875 } else if(!**ptr && extras & ALLOW_BRACKETLESS_IP_LITERAL) {
1876 /* The IP literal didn't contain brackets and was followed by
1877 * a NULL terminator, so no reason to even check the port.
1878 */
1879 data->host_len = *ptr - data->host;
1880 return TRUE;
1881 }
1882
1883 ++(*ptr);
1884 if(**ptr == ':') {
1885 ++(*ptr);
1886 /* If a valid port is not found, then let it trickle down to
1887 * parse_reg_name.
1888 */
1889 if(!parse_port(ptr, data, flags)) {
1890 *ptr = data->host;
1891 data->host = NULL;
1892 return FALSE;
1893 }
1894 } else
1895 data->host_len = *ptr - data->host;
1896
1897 return TRUE;
1898 }
1899
1900 /* Parses the host information from the URI.
1901 *
1902 * host = IP-literal / IPv4address / reg-name
1903 */
1904 static BOOL parse_host(const WCHAR **ptr, parse_data *data, DWORD flags, DWORD extras) {
1905 if(!parse_ip_literal(ptr, data, flags, extras)) {
1906 if(!parse_ipv4address(ptr, data, flags)) {
1907 if(!parse_reg_name(ptr, data, flags, extras)) {
1908 TRACE("(%p %p %x %x): Malformed URI, Unknown host type.\n",
1909 ptr, data, flags, extras);
1910 return FALSE;
1911 }
1912 }
1913 }
1914
1915 return TRUE;
1916 }
1917
1918 /* Parses the authority information from the URI.
1919 *
1920 * authority = [ userinfo "@" ] host [ ":" port ]
1921 */
1922 static BOOL parse_authority(const WCHAR **ptr, parse_data *data, DWORD flags) {
1923 parse_userinfo(ptr, data, flags);
1924
1925 /* Parsing the port will happen during one of the host parsing
1926 * routines (if the URI has a port).
1927 */
1928 if(!parse_host(ptr, data, flags, 0))
1929 return FALSE;
1930
1931 return TRUE;
1932 }
1933
1934 /* Attempts to parse the path information of a hierarchical URI. */
1935 static BOOL parse_path_hierarchical(const WCHAR **ptr, parse_data *data, DWORD flags) {
1936 const WCHAR *start = *ptr;
1937 static const WCHAR slash[] = {'/',0};
1938 const BOOL is_file = data->scheme_type == URL_SCHEME_FILE;
1939
1940 if(is_path_delim(**ptr)) {
1941 if(data->scheme_type == URL_SCHEME_WILDCARD) {
1942 /* Wildcard schemes don't get a '/' attached if their path is
1943 * empty.
1944 */
1945 data->path = NULL;
1946 data->path_len = 0;
1947 } else if(!(flags & Uri_CREATE_NO_CANONICALIZE)) {
1948 /* If the path component is empty, then a '/' is added. */
1949 data->path = slash;
1950 data->path_len = 1;
1951 }
1952 } else {
1953 while(!is_path_delim(**ptr)) {
1954 if(**ptr == '%' && data->scheme_type != URL_SCHEME_UNKNOWN && !is_file) {
1955 if(!check_pct_encoded(ptr)) {
1956 *ptr = start;
1957 return FALSE;
1958 } else
1959 continue;
1960 } else if(is_forbidden_dos_path_char(**ptr) && is_file &&
1961 (flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
1962 /* File schemes with USE_DOS_PATH set aren't allowed to have
1963 * a '<' or '>' or '\"' appear in them.
1964 */
1965 *ptr = start;
1966 return FALSE;
1967 } else if(**ptr == '\\') {
1968 /* Not allowed to have a backslash if NO_CANONICALIZE is set
1969 * and the scheme is known type (but not a file scheme).
1970 */
1971 if(flags & Uri_CREATE_NO_CANONICALIZE) {
1972 if(data->scheme_type != URL_SCHEME_FILE &&
1973 data->scheme_type != URL_SCHEME_UNKNOWN) {
1974 *ptr = start;
1975 return FALSE;
1976 }
1977 }
1978 }
1979
1980 ++(*ptr);
1981 }
1982
1983 /* The only time a URI doesn't have a path is when
1984 * the NO_CANONICALIZE flag is set and the raw URI
1985 * didn't contain one.
1986 */
1987 if(*ptr == start) {
1988 data->path = NULL;
1989 data->path_len = 0;
1990 } else {
1991 data->path = start;
1992 data->path_len = *ptr - start;
1993 }
1994 }
1995
1996 if(data->path)
1997 TRACE("(%p %p %x): Parsed path %s len=%d\n", ptr, data, flags,
1998 debugstr_wn(data->path, data->path_len), data->path_len);
1999 else
2000 TRACE("(%p %p %x): The URI contained no path\n", ptr, data, flags);
2001
2002 return TRUE;
2003 }
2004
2005 /* Parses the path of a opaque URI (much less strict then the parser
2006 * for a hierarchical URI).
2007 *
2008 * NOTE:
2009 * Windows allows invalid % encoded data to appear in opaque URI paths
2010 * for unknown scheme types.
2011 *
2012 * File schemes with USE_DOS_PATH set aren't allowed to have '<', '>', or '\"'
2013 * appear in them.
2014 */
2015 static BOOL parse_path_opaque(const WCHAR **ptr, parse_data *data, DWORD flags) {
2016 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
2017 const BOOL is_file = data->scheme_type == URL_SCHEME_FILE;
2018
2019 data->path = *ptr;
2020
2021 while(!is_path_delim(**ptr)) {
2022 if(**ptr == '%' && known_scheme) {
2023 if(!check_pct_encoded(ptr)) {
2024 *ptr = data->path;
2025 data->path = NULL;
2026 return FALSE;
2027 } else
2028 continue;
2029 } else if(is_forbidden_dos_path_char(**ptr) && is_file &&
2030 (flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
2031 *ptr = data->path;
2032 data->path = NULL;
2033 return FALSE;
2034 }
2035
2036 ++(*ptr);
2037 }
2038
2039 data->path_len = *ptr - data->path;
2040 TRACE("(%p %p %x): Parsed opaque URI path %s len=%d\n", ptr, data, flags,
2041 debugstr_wn(data->path, data->path_len), data->path_len);
2042 return TRUE;
2043 }
2044
2045 /* Determines how the URI should be parsed after the scheme information.
2046 *
2047 * If the scheme is followed, by "//" then, it is treated as an hierarchical URI
2048 * which then the authority and path information will be parsed out. Otherwise, the
2049 * URI will be treated as an opaque URI which the authority information is not parsed
2050 * out.
2051 *
2052 * RFC 3896 definition of hier-part:
2053 *
2054 * hier-part = "//" authority path-abempty
2055 * / path-absolute
2056 * / path-rootless
2057 * / path-empty
2058 *
2059 * MSDN opaque URI definition:
2060 * scheme ":" path [ "#" fragment ]
2061 *
2062 * NOTES:
2063 * If the URI is of an unknown scheme type and has a "//" following the scheme then it
2064 * is treated as a hierarchical URI, but, if the CREATE_NO_CRACK_UNKNOWN_SCHEMES flag is
2065 * set then it is considered an opaque URI reguardless of what follows the scheme information
2066 * (per MSDN documentation).
2067 */
2068 static BOOL parse_hierpart(const WCHAR **ptr, parse_data *data, DWORD flags) {
2069 const WCHAR *start = *ptr;
2070
2071 /* Checks if the authority information needs to be parsed. */
2072 if(is_hierarchical_uri(ptr, data)) {
2073 /* Only treat it as a hierarchical URI if the scheme_type is known or
2074 * the Uri_CREATE_NO_CRACK_UNKNOWN_SCHEMES flag is not set.
2075 */
2076 if(data->scheme_type != URL_SCHEME_UNKNOWN ||
2077 !(flags & Uri_CREATE_NO_CRACK_UNKNOWN_SCHEMES)) {
2078 TRACE("(%p %p %x): Treating URI as an hierarchical URI.\n", ptr, data, flags);
2079 data->is_opaque = FALSE;
2080
2081 /* TODO: Handle hierarchical URI's, parse authority then parse the path. */
2082 if(!parse_authority(ptr, data, flags))
2083 return FALSE;
2084
2085 return parse_path_hierarchical(ptr, data, flags);
2086 } else
2087 /* Reset ptr to it's starting position so opaque path parsing
2088 * begins at the correct location.
2089 */
2090 *ptr = start;
2091 }
2092
2093 /* If it reaches here, then the URI will be treated as an opaque
2094 * URI.
2095 */
2096
2097 TRACE("(%p %p %x): Treating URI as an opaque URI.\n", ptr, data, flags);
2098
2099 data->is_opaque = TRUE;
2100 if(!parse_path_opaque(ptr, data, flags))
2101 return FALSE;
2102
2103 return TRUE;
2104 }
2105
2106 /* Attempts to parse the query string from the URI.
2107 *
2108 * NOTES:
2109 * If NO_DECODE_EXTRA_INFO flag is set, then invalid percent encoded
2110 * data is allowed appear in the query string. For unknown scheme types
2111 * invalid percent encoded data is allowed to appear reguardless.
2112 */
2113 static BOOL parse_query(const WCHAR **ptr, parse_data *data, DWORD flags) {
2114 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
2115
2116 if(**ptr != '?') {
2117 TRACE("(%p %p %x): URI didn't contain a query string.\n", ptr, data, flags);
2118 return TRUE;
2119 }
2120
2121 data->query = *ptr;
2122
2123 ++(*ptr);
2124 while(**ptr && **ptr != '#') {
2125 if(**ptr == '%' && known_scheme &&
2126 !(flags & Uri_CREATE_NO_DECODE_EXTRA_INFO)) {
2127 if(!check_pct_encoded(ptr)) {
2128 *ptr = data->query;
2129 data->query = NULL;
2130 return FALSE;
2131 } else
2132 continue;
2133 }
2134
2135 ++(*ptr);
2136 }
2137
2138 data->query_len = *ptr - data->query;
2139
2140 TRACE("(%p %p %x): Parsed query string %s len=%d\n", ptr, data, flags,
2141 debugstr_wn(data->query, data->query_len), data->query_len);
2142 return TRUE;
2143 }
2144
2145 /* Attempts to parse the fragment from the URI.
2146 *
2147 * NOTES:
2148 * If NO_DECODE_EXTRA_INFO flag is set, then invalid percent encoded
2149 * data is allowed appear in the query string. For unknown scheme types
2150 * invalid percent encoded data is allowed to appear reguardless.
2151 */
2152 static BOOL parse_fragment(const WCHAR **ptr, parse_data *data, DWORD flags) {
2153 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
2154
2155 if(**ptr != '#') {
2156 TRACE("(%p %p %x): URI didn't contain a fragment.\n", ptr, data, flags);
2157 return TRUE;
2158 }
2159
2160 data->fragment = *ptr;
2161
2162 ++(*ptr);
2163 while(**ptr) {
2164 if(**ptr == '%' && known_scheme &&
2165 !(flags & Uri_CREATE_NO_DECODE_EXTRA_INFO)) {
2166 if(!check_pct_encoded(ptr)) {
2167 *ptr = data->fragment;
2168 data->fragment = NULL;
2169 return FALSE;
2170 } else
2171 continue;
2172 }
2173
2174 ++(*ptr);
2175 }
2176
2177 data->fragment_len = *ptr - data->fragment;
2178
2179 TRACE("(%p %p %x): Parsed fragment %s len=%d\n", ptr, data, flags,
2180 debugstr_wn(data->fragment, data->fragment_len), data->fragment_len);
2181 return TRUE;
2182 }
2183
2184 /* Parses and validates the components of the specified by data->uri
2185 * and stores the information it parses into 'data'.
2186 *
2187 * Returns TRUE if it successfully parsed the URI. False otherwise.
2188 */
2189 static BOOL parse_uri(parse_data *data, DWORD flags) {
2190 const WCHAR *ptr;
2191 const WCHAR **pptr;
2192
2193 ptr = data->uri;
2194 pptr = &ptr;
2195
2196 TRACE("(%p %x): BEGINNING TO PARSE URI %s.\n", data, flags, debugstr_w(data->uri));
2197
2198 if(!parse_scheme(pptr, data, flags, 0))
2199 return FALSE;
2200
2201 if(!parse_hierpart(pptr, data, flags))
2202 return FALSE;
2203
2204 if(!parse_query(pptr, data, flags))
2205 return FALSE;
2206
2207 if(!parse_fragment(pptr, data, flags))
2208 return FALSE;
2209
2210 TRACE("(%p %x): FINISHED PARSING URI.\n", data, flags);
2211 return TRUE;
2212 }
2213
2214 static BOOL canonicalize_username(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2215 const WCHAR *ptr;
2216
2217 if(!data->username) {
2218 uri->userinfo_start = -1;
2219 return TRUE;
2220 }
2221
2222 uri->userinfo_start = uri->canon_len;
2223 for(ptr = data->username; ptr < data->username+data->username_len; ++ptr) {
2224 if(*ptr == '%') {
2225 /* Only decode % encoded values for known scheme types. */
2226 if(data->scheme_type != URL_SCHEME_UNKNOWN) {
2227 /* See if the value really needs decoded. */
2228 WCHAR val = decode_pct_val(ptr);
2229 if(is_unreserved(val)) {
2230 if(!computeOnly)
2231 uri->canon_uri[uri->canon_len] = val;
2232
2233 ++uri->canon_len;
2234
2235 /* Move pass the hex characters. */
2236 ptr += 2;
2237 continue;
2238 }
2239 }
2240 } else if(!is_reserved(*ptr) && !is_unreserved(*ptr) && *ptr != '\\') {
2241 /* Only percent encode forbidden characters if the NO_ENCODE_FORBIDDEN_CHARACTERS flag
2242 * is NOT set.
2243 */
2244 if(!(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS)) {
2245 if(!computeOnly)
2246 pct_encode_val(*ptr, uri->canon_uri + uri->canon_len);
2247
2248 uri->canon_len += 3;
2249 continue;
2250 }
2251 }
2252
2253 if(!computeOnly)
2254 /* Nothing special, so just copy the character over. */
2255 uri->canon_uri[uri->canon_len] = *ptr;
2256 ++uri->canon_len;
2257 }
2258
2259 return TRUE;
2260 }
2261
2262 static BOOL canonicalize_password(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2263 const WCHAR *ptr;
2264
2265 if(!data->password) {
2266 uri->userinfo_split = -1;
2267 return TRUE;
2268 }
2269
2270 if(uri->userinfo_start == -1)
2271 /* Has a password, but, doesn't have a username. */
2272 uri->userinfo_start = uri->canon_len;
2273
2274 uri->userinfo_split = uri->canon_len - uri->userinfo_start;
2275
2276 /* Add the ':' to the userinfo component. */
2277 if(!computeOnly)
2278 uri->canon_uri[uri->canon_len] = ':';
2279 ++uri->canon_len;
2280
2281 for(ptr = data->password; ptr < data->password+data->password_len; ++ptr) {
2282 if(*ptr == '%') {
2283 /* Only decode % encoded values for known scheme types. */
2284 if(data->scheme_type != URL_SCHEME_UNKNOWN) {
2285 /* See if the value really needs decoded. */
2286 WCHAR val = decode_pct_val(ptr);
2287 if(is_unreserved(val)) {
2288 if(!computeOnly)
2289 uri->canon_uri[uri->canon_len] = val;
2290
2291 ++uri->canon_len;
2292
2293 /* Move pass the hex characters. */
2294 ptr += 2;
2295 continue;
2296 }
2297 }
2298 } else if(!is_reserved(*ptr) && !is_unreserved(*ptr) && *ptr != '\\') {
2299 /* Only percent encode forbidden characters if the NO_ENCODE_FORBIDDEN_CHARACTERS flag
2300 * is NOT set.
2301 */
2302 if(!(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS)) {
2303 if(!computeOnly)
2304 pct_encode_val(*ptr, uri->canon_uri + uri->canon_len);
2305
2306 uri->canon_len += 3;
2307 continue;
2308 }
2309 }
2310
2311 if(!computeOnly)
2312 /* Nothing special, so just copy the character over. */
2313 uri->canon_uri[uri->canon_len] = *ptr;
2314 ++uri->canon_len;
2315 }
2316
2317 return TRUE;
2318 }
2319
2320 /* Canonicalizes the userinfo of the URI represented by the parse_data.
2321 *
2322 * Canonicalization of the userinfo is a simple process. If there are any percent
2323 * encoded characters that fall in the "unreserved" character set, they are decoded
2324 * to their actual value. If a character is not in the "unreserved" or "reserved" sets
2325 * then it is percent encoded. Other than that the characters are copied over without
2326 * change.
2327 */
2328 static BOOL canonicalize_userinfo(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2329 uri->userinfo_start = uri->userinfo_split = -1;
2330 uri->userinfo_len = 0;
2331
2332 if(!data->username && !data->password)
2333 /* URI doesn't have userinfo, so nothing to do here. */
2334 return TRUE;
2335
2336 if(!canonicalize_username(data, uri, flags, computeOnly))
2337 return FALSE;
2338
2339 if(!canonicalize_password(data, uri, flags, computeOnly))
2340 return FALSE;
2341
2342 uri->userinfo_len = uri->canon_len - uri->userinfo_start;
2343 if(!computeOnly)
2344 TRACE("(%p %p %x %d): Canonicalized userinfo, userinfo_start=%d, userinfo=%s, userinfo_split=%d userinfo_len=%d.\n",
2345 data, uri, flags, computeOnly, uri->userinfo_start, debugstr_wn(uri->canon_uri + uri->userinfo_start, uri->userinfo_len),
2346 uri->userinfo_split, uri->userinfo_len);
2347
2348 /* Now insert the '@' after the userinfo. */
2349 if(!computeOnly)
2350 uri->canon_uri[uri->canon_len] = '@';
2351 ++uri->canon_len;
2352
2353 return TRUE;
2354 }
2355
2356 /* Attempts to canonicalize a reg_name.
2357 *
2358 * Things that happen:
2359 * 1) If Uri_CREATE_NO_CANONICALIZE flag is not set, then the reg_name is
2360 * lower cased. Unless it's an unknown scheme type, which case it's
2361 * no lower cased reguardless.
2362 *
2363 * 2) Unreserved % encoded characters are decoded for known
2364 * scheme types.
2365 *
2366 * 3) Forbidden characters are % encoded as long as
2367 * Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS flag is not set and
2368 * it isn't an unknown scheme type.
2369 *
2370 * 4) If it's a file scheme and the host is "localhost" it's removed.
2371 *
2372 * 5) If it's a file scheme and Uri_CREATE_FILE_USE_DOS_PATH is set,
2373 * then the UNC path characters are added before the host name.
2374 */
2375 static BOOL canonicalize_reg_name(const parse_data *data, Uri *uri,
2376 DWORD flags, BOOL computeOnly) {
2377 static const WCHAR localhostW[] =
2378 {'l','o','c','a','l','h','o','s','t',0};
2379 const WCHAR *ptr;
2380 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
2381
2382 if(data->scheme_type == URL_SCHEME_FILE &&
2383 data->host_len == lstrlenW(localhostW)) {
2384 if(!StrCmpNIW(data->host, localhostW, data->host_len)) {
2385 uri->host_start = -1;
2386 uri->host_len = 0;
2387 uri->host_type = Uri_HOST_UNKNOWN;
2388 return TRUE;
2389 }
2390 }
2391
2392 if(data->scheme_type == URL_SCHEME_FILE && flags & Uri_CREATE_FILE_USE_DOS_PATH) {
2393 if(!computeOnly) {
2394 uri->canon_uri[uri->canon_len] = '\\';
2395 uri->canon_uri[uri->canon_len+1] = '\\';
2396 }
2397 uri->canon_len += 2;
2398 uri->authority_start = uri->canon_len;
2399 }
2400
2401 uri->host_start = uri->canon_len;
2402
2403 for(ptr = data->host; ptr < data->host+data->host_len; ++ptr) {
2404 if(*ptr == '%' && known_scheme) {
2405 WCHAR val = decode_pct_val(ptr);
2406 if(is_unreserved(val)) {
2407 /* If NO_CANONICALZE is not set, then windows lower cases the
2408 * decoded value.
2409 */
2410 if(!(flags & Uri_CREATE_NO_CANONICALIZE) && isupperW(val)) {
2411 if(!computeOnly)
2412 uri->canon_uri[uri->canon_len] = tolowerW(val);
2413 } else {
2414 if(!computeOnly)
2415 uri->canon_uri[uri->canon_len] = val;
2416 }
2417 ++uri->canon_len;
2418
2419 /* Skip past the % encoded character. */
2420 ptr += 2;
2421 continue;
2422 } else {
2423 /* Just copy the % over. */
2424 if(!computeOnly)
2425 uri->canon_uri[uri->canon_len] = *ptr;
2426 ++uri->canon_len;
2427 }
2428 } else if(*ptr == '\\') {
2429 /* Only unknown scheme types could have made it here with a '\\' in the host name. */
2430 if(!computeOnly)
2431 uri->canon_uri[uri->canon_len] = *ptr;
2432 ++uri->canon_len;
2433 } else if(!(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS) &&
2434 !is_unreserved(*ptr) && !is_reserved(*ptr) && known_scheme) {
2435 if(!computeOnly) {
2436 pct_encode_val(*ptr, uri->canon_uri+uri->canon_len);
2437
2438 /* The percent encoded value gets lower cased also. */
2439 if(!(flags & Uri_CREATE_NO_CANONICALIZE)) {
2440 uri->canon_uri[uri->canon_len+1] = tolowerW(uri->canon_uri[uri->canon_len+1]);
2441 uri->canon_uri[uri->canon_len+2] = tolowerW(uri->canon_uri[uri->canon_len+2]);
2442 }
2443 }
2444
2445 uri->canon_len += 3;
2446 } else {
2447 if(!computeOnly) {
2448 if(!(flags & Uri_CREATE_NO_CANONICALIZE) && known_scheme)
2449 uri->canon_uri[uri->canon_len] = tolowerW(*ptr);
2450 else
2451 uri->canon_uri[uri->canon_len] = *ptr;
2452 }
2453
2454 ++uri->canon_len;
2455 }
2456 }
2457
2458 uri->host_len = uri->canon_len - uri->host_start;
2459
2460 if(!computeOnly)
2461 TRACE("(%p %p %x %d): Canonicalize reg_name=%s len=%d\n", data, uri, flags,
2462 computeOnly, debugstr_wn(uri->canon_uri+uri->host_start, uri->host_len),
2463 uri->host_len);
2464
2465 if(!computeOnly)
2466 find_domain_name(uri->canon_uri+uri->host_start, uri->host_len,
2467 &(uri->domain_offset));
2468
2469 return TRUE;
2470 }
2471
2472 /* Attempts to canonicalize an implicit IPv4 address. */
2473 static BOOL canonicalize_implicit_ipv4address(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2474 uri->host_start = uri->canon_len;
2475
2476 TRACE("%u\n", data->implicit_ipv4);
2477 /* For unknown scheme types Window's doesn't convert
2478 * the value into an IP address, but, it still considers
2479 * it an IPv4 address.
2480 */
2481 if(data->scheme_type == URL_SCHEME_UNKNOWN) {
2482 if(!computeOnly)
2483 memcpy(uri->canon_uri+uri->canon_len, data->host, data->host_len*sizeof(WCHAR));
2484 uri->canon_len += data->host_len;
2485 } else {
2486 if(!computeOnly)
2487 uri->canon_len += ui2ipv4(uri->canon_uri+uri->canon_len, data->implicit_ipv4);
2488 else
2489 uri->canon_len += ui2ipv4(NULL, data->implicit_ipv4);
2490 }
2491
2492 uri->host_len = uri->canon_len - uri->host_start;
2493 uri->host_type = Uri_HOST_IPV4;
2494
2495 if(!computeOnly)
2496 TRACE("%p %p %x %d): Canonicalized implicit IP address=%s len=%d\n",
2497 data, uri, flags, computeOnly,
2498 debugstr_wn(uri->canon_uri+uri->host_start, uri->host_len),
2499 uri->host_len);
2500
2501 return TRUE;
2502 }
2503
2504 /* Attempts to canonicalize an IPv4 address.
2505 *
2506 * If the parse_data represents a URI that has an implicit IPv4 address
2507 * (ex. http://256/, this function will convert 256 into 0.0.1.0). If
2508 * the implicit IP address exceeds the value of UINT_MAX (maximum value
2509 * for an IPv4 address) it's canonicalized as if were a reg-name.
2510 *
2511 * If the parse_data contains a partial or full IPv4 address it normalizes it.
2512 * A partial IPv4 address is something like "192.0" and would be normalized to
2513 * "192.0.0.0". With a full (or partial) IPv4 address like "192.002.01.003" would
2514 * be normalized to "192.2.1.3".
2515 *
2516 * NOTES:
2517 * Window's ONLY normalizes IPv4 address for known scheme types (one that isn't
2518 * URL_SCHEME_UNKNOWN). For unknown scheme types, it simply copies the data from
2519 * the original URI into the canonicalized URI, but, it still recognizes URI's
2520 * host type as HOST_IPV4.
2521 */
2522 static BOOL canonicalize_ipv4address(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2523 if(data->has_implicit_ip)
2524 return canonicalize_implicit_ipv4address(data, uri, flags, computeOnly);
2525 else {
2526 uri->host_start = uri->canon_len;
2527
2528 /* Windows only normalizes for known scheme types. */
2529 if(data->scheme_type != URL_SCHEME_UNKNOWN) {
2530 /* parse_data contains a partial or full IPv4 address, so normalize it. */
2531 DWORD i, octetDigitCount = 0, octetCount = 0;
2532 BOOL octetHasDigit = FALSE;
2533
2534 for(i = 0; i < data->host_len; ++i) {
2535 if(data->host[i] == '0' && !octetHasDigit) {
2536 /* Can ignore leading zeros if:
2537 * 1) It isn't the last digit of the octet.
2538 * 2) i+1 != data->host_len
2539 * 3) i+1 != '.'
2540 */
2541 if(octetDigitCount == 2 ||
2542 i+1 == data->host_len ||
2543 data->host[i+1] == '.') {
2544 if(!computeOnly)
2545 uri->canon_uri[uri->canon_len] = data->host[i];
2546 ++uri->canon_len;
2547 TRACE("Adding zero\n");
2548 }
2549 } else if(data->host[i] == '.') {
2550 if(!computeOnly)
2551 uri->canon_uri[uri->canon_len] = data->host[i];
2552 ++uri->canon_len;
2553
2554 octetDigitCount = 0;
2555 octetHasDigit = FALSE;
2556 ++octetCount;
2557 } else {
2558 if(!computeOnly)
2559 uri->canon_uri[uri->canon_len] = data->host[i];
2560 ++uri->canon_len;
2561
2562 ++octetDigitCount;
2563 octetHasDigit = TRUE;
2564 }
2565 }
2566
2567 /* Make sure the canonicalized IP address has 4 dec-octets.
2568 * If doesn't add "0" ones until there is 4;
2569 */
2570 for( ; octetCount < 3; ++octetCount) {
2571 if(!computeOnly) {
2572 uri->canon_uri[uri->canon_len] = '.';
2573 uri->canon_uri[uri->canon_len+1] = '0';
2574 }
2575
2576 uri->canon_len += 2;
2577 }
2578 } else {
2579 /* Windows doesn't normalize addresses in unknown schemes. */
2580 if(!computeOnly)
2581 memcpy(uri->canon_uri+uri->canon_len, data->host, data->host_len*sizeof(WCHAR));
2582 uri->canon_len += data->host_len;
2583 }
2584
2585 uri->host_len = uri->canon_len - uri->host_start;
2586 if(!computeOnly)
2587 TRACE("(%p %p %x %d): Canonicalized IPv4 address, ip=%s len=%d\n",
2588 data, uri, flags, computeOnly,
2589 debugstr_wn(uri->canon_uri+uri->host_start, uri->host_len),
2590 uri->host_len);
2591 }
2592
2593 return TRUE;
2594 }
2595
2596 /* Attempts to canonicalize the IPv6 address of the URI.
2597 *
2598 * Multiple things happen during the canonicalization of an IPv6 address:
2599 * 1) Any leading zero's in an h16 component are removed.
2600 * Ex: [0001:0022::] -> [1:22::]
2601 *
2602 * 2) The longest sequence of zero h16 components are compressed
2603 * into a "::" (elision). If there's a tie, the first is choosen.
2604 *
2605 * Ex: [0:0:0:0:1:6:7:8] -> [::1:6:7:8]
2606 * [0:0:0:0:1:2::] -> [::1:2:0:0]
2607 * [0:0:1:2:0:0:7:8] -> [::1:2:0:0:7:8]
2608 *
2609 * 3) If an IPv4 address is attached to the IPv6 address, it's
2610 * also normalized.
2611 * Ex: [::001.002.022.000] -> [::1.2.22.0]
2612 *
2613 * 4) If an elision is present, but, only represents 1 h16 component
2614 * it's expanded.
2615 *
2616 * Ex: [1::2:3:4:5:6:7] -> [1:0:2:3:4:5:6:7]
2617 *
2618 * 5) If the IPv6 address contains an IPv4 address and there exists
2619 * at least 1 non-zero h16 component the IPv4 address is converted
2620 * into two h16 components, otherwise it's normalized and kept as is.
2621 *
2622 * Ex: [::192.200.003.4] -> [::192.200.3.4]
2623 * [ffff::192.200.003.4] -> [ffff::c0c8:3041]
2624 *
2625 * NOTE:
2626 * For unknown scheme types Windows simply copies the address over without any
2627 * changes.
2628 *
2629 * IPv4 address can be included in an elision if all its components are 0's.
2630 */
2631 static BOOL canonicalize_ipv6address(const parse_data *data, Uri *uri,
2632 DWORD flags, BOOL computeOnly) {
2633 uri->host_start = uri->canon_len;
2634
2635 if(data->scheme_type == URL_SCHEME_UNKNOWN) {
2636 if(!computeOnly)
2637 memcpy(uri->canon_uri+uri->canon_len, data->host, data->host_len*sizeof(WCHAR));
2638 uri->canon_len += data->host_len;
2639 } else {
2640 USHORT values[8];
2641 INT elision_start;
2642 DWORD i, elision_len;
2643
2644 if(!ipv6_to_number(&(data->ipv6_address), values)) {
2645 TRACE("(%p %p %x %d): Failed to compute numerical value for IPv6 address.\n",
2646 data, uri, flags, computeOnly);
2647 return FALSE;
2648 }
2649
2650 if(!computeOnly)
2651 uri->canon_uri[uri->canon_len] = '[';
2652 ++uri->canon_len;
2653
2654 /* Find where the elision should occur (if any). */
2655 compute_elision_location(&(data->ipv6_address), values, &elision_start, &elision_len);
2656
2657 TRACE("%p %p %x %d): Elision starts at %d, len=%u\n", data, uri, flags,
2658 computeOnly, elision_start, elision_len);
2659
2660 for(i = 0; i < 8; ++i) {
2661 BOOL in_elision = (elision_start > -1 && i >= elision_start &&
2662 i < elision_start+elision_len);
2663 BOOL do_ipv4 = (i == 6 && data->ipv6_address.ipv4 && !in_elision &&
2664 data->ipv6_address.h16_count == 0);
2665
2666 if(i == elision_start) {
2667 if(!computeOnly) {
2668 uri->canon_uri[uri->canon_len] = ':';
2669 uri->canon_uri[uri->canon_len+1] = ':';
2670 }
2671 uri->canon_len += 2;
2672 }
2673
2674 /* We can ignore the current component if we're in the elision. */
2675 if(in_elision)
2676 continue;
2677
2678 /* We only add a ':' if we're not at i == 0, or when we're at
2679 * the very end of elision range since the ':' colon was handled
2680 * earlier. Otherwise we would end up with ":::" after elision.
2681 */
2682 if(i != 0 && !(elision_start > -1 && i == elision_start+elision_len)) {
2683 if(!computeOnly)
2684 uri->canon_uri[uri->canon_len] = ':';
2685 ++uri->canon_len;
2686 }
2687
2688 if(do_ipv4) {
2689 UINT val;
2690 DWORD len;
2691
2692 /* Combine the two parts of the IPv4 address values. */
2693 val = values[i];
2694 val <<= 16;
2695 val += values[i+1];
2696
2697 if(!computeOnly)
2698 len = ui2ipv4(uri->canon_uri+uri->canon_len, val);
2699 else
2700 len = ui2ipv4(NULL, val);
2701
2702 uri->canon_len += len;
2703 ++i;
2704 } else {
2705 /* Write a regular h16 component to the URI. */
2706
2707 /* Short circuit for the trivial case. */
2708 if(values[i] == 0) {
2709 if(!computeOnly)
2710 uri->canon_uri[uri->canon_len] = '0';
2711 ++uri->canon_len;
2712 } else {
2713 static const WCHAR formatW[] = {'%','x',0};
2714
2715 if(!computeOnly)
2716 uri->canon_len += sprintfW(uri->canon_uri+uri->canon_len,
2717 formatW, values[i]);
2718 else {
2719 WCHAR tmp[5];
2720 uri->canon_len += sprintfW(tmp, formatW, values[i]);
2721 }
2722 }
2723 }
2724 }
2725
2726 /* Add the closing ']'. */
2727 if(!computeOnly)
2728 uri->canon_uri[uri->canon_len] = ']';
2729 ++uri->canon_len;
2730 }
2731
2732 uri->host_len = uri->canon_len - uri->host_start;
2733
2734 if(!computeOnly)
2735 TRACE("(%p %p %x %d): Canonicalized IPv6 address %s, len=%d\n", data, uri, flags,
2736 computeOnly, debugstr_wn(uri->canon_uri+uri->host_start, uri->host_len),
2737 uri->host_len);
2738
2739 return TRUE;
2740 }
2741
2742 /* Attempts to canonicalize the host of the URI (if any). */
2743 static BOOL canonicalize_host(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2744 uri->host_start = -1;
2745 uri->host_len = 0;
2746 uri->domain_offset = -1;
2747
2748 if(data->host) {
2749 switch(data->host_type) {
2750 case Uri_HOST_DNS:
2751 uri->host_type = Uri_HOST_DNS;
2752 if(!canonicalize_reg_name(data, uri, flags, computeOnly))
2753 return FALSE;
2754
2755 break;
2756 case Uri_HOST_IPV4:
2757 uri->host_type = Uri_HOST_IPV4;
2758 if(!canonicalize_ipv4address(data, uri, flags, computeOnly))
2759 return FALSE;
2760
2761 break;
2762 case Uri_HOST_IPV6:
2763 if(!canonicalize_ipv6address(data, uri, flags, computeOnly))
2764 return FALSE;
2765
2766 uri->host_type = Uri_HOST_IPV6;
2767 break;
2768 case Uri_HOST_UNKNOWN:
2769 if(data->host_len > 0 || data->scheme_type != URL_SCHEME_FILE) {
2770 uri->host_start = uri->canon_len;
2771
2772 /* Nothing happens to unknown host types. */
2773 if(!computeOnly)
2774 memcpy(uri->canon_uri+uri->canon_len, data->host, data->host_len*sizeof(WCHAR));
2775 uri->canon_len += data->host_len;
2776 uri->host_len = data->host_len;
2777 }
2778
2779 uri->host_type = Uri_HOST_UNKNOWN;
2780 break;
2781 default:
2782 FIXME("(%p %p %x %d): Canonicalization for host type %d not supported.\n", data,
2783 uri, flags, computeOnly, data->host_type);
2784 return FALSE;
2785 }
2786 }
2787
2788 return TRUE;
2789 }
2790
2791 static BOOL canonicalize_port(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2792 BOOL has_default_port = FALSE;
2793 USHORT default_port = 0;
2794 DWORD i;
2795
2796 uri->port_offset = -1;
2797
2798 /* Check if the scheme has a default port. */
2799 for(i = 0; i < sizeof(default_ports)/sizeof(default_ports[0]); ++i) {
2800 if(default_ports[i].scheme == data->scheme_type) {
2801 has_default_port = TRUE;
2802 default_port = default_ports[i].port;
2803 break;
2804 }
2805 }
2806
2807 uri->has_port = data->has_port || has_default_port;
2808
2809 /* Possible cases:
2810 * 1) Has a port which is the default port.
2811 * 2) Has a port (not the default).
2812 * 3) Doesn't have a port, but, scheme has a default port.
2813 * 4) No port.
2814 */
2815 if(has_default_port && data->has_port && data->port_value == default_port) {
2816 /* If it's the default port and this flag isn't set, don't do anything. */
2817 if(flags & Uri_CREATE_NO_CANONICALIZE) {
2818 uri->port_offset = uri->canon_len-uri->authority_start;
2819 if(!computeOnly)
2820 uri->canon_uri[uri->canon_len] = ':';
2821 ++uri->canon_len;
2822
2823 if(data->port) {
2824 /* Copy the original port over. */
2825 if(!computeOnly)
2826 memcpy(uri->canon_uri+uri->canon_len, data->port, data->port_len*sizeof(WCHAR));
2827 uri->canon_len += data->port_len;
2828 } else {
2829 if(!computeOnly)
2830 uri->canon_len += ui2str(uri->canon_uri+uri->canon_len, data->port_value);
2831 else
2832 uri->canon_len += ui2str(NULL, data->port_value);
2833 }
2834 }
2835
2836 uri->port = default_port;
2837 } else if(data->has_port) {
2838 uri->port_offset = uri->canon_len-uri->authority_start;
2839 if(!computeOnly)
2840 uri->canon_uri[uri->canon_len] = ':';
2841 ++uri->canon_len;
2842
2843 if(flags & Uri_CREATE_NO_CANONICALIZE && data->port) {
2844 /* Copy the original over without changes. */
2845 if(!computeOnly)
2846 memcpy(uri->canon_uri+uri->canon_len, data->port, data->port_len*sizeof(WCHAR));
2847 uri->canon_len += data->port_len;
2848 } else {
2849 if(!computeOnly)
2850 uri->canon_len += ui2str(uri->canon_uri+uri->canon_len, data->port_value);
2851 else
2852 uri->canon_len += ui2str(NULL, data->port_value);
2853 }
2854
2855 uri->port = data->port_value;
2856 } else if(has_default_port)
2857 uri->port = default_port;
2858
2859 return TRUE;
2860 }
2861
2862 /* Canonicalizes the authority of the URI represented by the parse_data. */
2863 static BOOL canonicalize_authority(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
2864 uri->authority_start = uri->canon_len;
2865 uri->authority_len = 0;
2866
2867 if(!canonicalize_userinfo(data, uri, flags, computeOnly))
2868 return FALSE;
2869
2870 if(!canonicalize_host(data, uri, flags, computeOnly))
2871 return FALSE;
2872
2873 if(!canonicalize_port(data, uri, flags, computeOnly))
2874 return FALSE;
2875
2876 if(uri->host_start != -1 || (data->is_relative && (data->password || data->username)))
2877 uri->authority_len = uri->canon_len - uri->authority_start;
2878 else
2879 uri->authority_start = -1;
2880
2881 return TRUE;
2882 }
2883
2884 /* Attempts to canonicalize the path of a hierarchical URI.
2885 *
2886 * Things that happen:
2887 * 1). Forbidden characters are percent encoded, unless the NO_ENCODE_FORBIDDEN
2888 * flag is set or it's a file URI. Forbidden characters are always encoded
2889 * for file schemes reguardless and forbidden characters are never encoded
2890 * for unknown scheme types.
2891 *
2892 * 2). For known scheme types '\\' are changed to '/'.
2893 *
2894 * 3). Percent encoded, unreserved characters are decoded to their actual values.
2895 * Unless the scheme type is unknown. For file schemes any percent encoded
2896 * character in the unreserved or reserved set is decoded.
2897 *
2898 * 4). For File schemes if the path is starts with a drive letter and doesn't
2899 * start with a '/' then one is appended.
2900 * Ex: file://c:/test.mp3 -> file:///c:/test.mp3
2901 *
2902 * 5). Dot segments are removed from the path for all scheme types
2903 * unless NO_CANONICALIZE flag is set. Dot segments aren't removed
2904 * for wildcard scheme types.
2905 *
2906 * NOTES:
2907 * file://c:/test%20test -> file:///c:/test%2520test
2908 * file://c:/test%3Etest -> file:///c:/test%253Etest
2909 * if Uri_CREATE_FILE_USE_DOS_PATH is not set:
2910 * file:///c:/test%20test -> file:///c:/test%20test
2911 * file:///c:/test%test -> file:///c:/test%25test
2912 */
2913 static BOOL canonicalize_path_hierarchical(const parse_data *data, Uri *uri,
2914 DWORD flags, BOOL computeOnly) {
2915 const WCHAR *ptr;
2916 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
2917 const BOOL is_file = data->scheme_type == URL_SCHEME_FILE;
2918 const BOOL is_res = data->scheme_type == URL_SCHEME_RES;
2919
2920 BOOL escape_pct = FALSE;
2921
2922 if(!data->path) {
2923 uri->path_start = -1;
2924 uri->path_len = 0;
2925 return TRUE;
2926 }
2927
2928 uri->path_start = uri->canon_len;
2929 ptr = data->path;
2930
2931 if(is_file && uri->host_start == -1) {
2932 /* Check if a '/' needs to be appended for the file scheme. */
2933 if(data->path_len > 1 && is_drive_path(ptr) && !(flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
2934 if(!computeOnly)
2935 uri->canon_uri[uri->canon_len] = '/';
2936 uri->canon_len++;
2937 escape_pct = TRUE;
2938 } else if(*ptr == '/') {
2939 if(!(flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
2940 /* Copy the extra '/' over. */
2941 if(!computeOnly)
2942 uri->canon_uri[uri->canon_len] = '/';
2943 ++uri->canon_len;
2944 }
2945 ++ptr;
2946 }
2947
2948 if(is_drive_path(ptr)) {
2949 if(!computeOnly) {
2950 uri->canon_uri[uri->canon_len] = *ptr;
2951 /* If theres a '|' after the drive letter, convert it to a ':'. */
2952 uri->canon_uri[uri->canon_len+1] = ':';
2953 }
2954 ptr += 2;
2955 uri->canon_len += 2;
2956 }
2957 }
2958
2959 if(!is_file && *(data->path) && *(data->path) != '/') {
2960 /* Prepend a '/' to the path if it doesn't have one. */
2961 if(!computeOnly)
2962 uri->canon_uri[uri->canon_len] = '/';
2963 ++uri->canon_len;
2964 }
2965
2966 for(; ptr < data->path+data->path_len; ++ptr) {
2967 BOOL do_default_action = TRUE;
2968
2969 if(*ptr == '%' && !is_res) {
2970 const WCHAR *tmp = ptr;
2971 WCHAR val;
2972
2973 /* Check if the % represents a valid encoded char, or if it needs encoded. */
2974 BOOL force_encode = !check_pct_encoded(&tmp) && is_file && !(flags&Uri_CREATE_FILE_USE_DOS_PATH);
2975 val = decode_pct_val(ptr);
2976
2977 if(force_encode || escape_pct) {
2978 /* Escape the percent sign in the file URI. */
2979 if(!computeOnly)
2980 pct_encode_val(*ptr, uri->canon_uri+uri->canon_len);
2981 uri->canon_len += 3;
2982 do_default_action = FALSE;
2983 } else if((is_unreserved(val) && known_scheme) ||
2984 (is_file && (is_unreserved(val) || is_reserved(val) ||
2985 (val && flags&Uri_CREATE_FILE_USE_DOS_PATH && !is_forbidden_dos_path_char(val))))) {
2986 if(!computeOnly)
2987 uri->canon_uri[uri->canon_len] = val;
2988 ++uri->canon_len;
2989
2990 ptr += 2;
2991 continue;
2992 }
2993 } else if(*ptr == '/' && is_file && (flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
2994 /* Convert the '/' back to a '\\'. */
2995 if(!computeOnly)
2996 uri->canon_uri[uri->canon_len] = '\\';
2997 ++uri->canon_len;
2998 do_default_action = FALSE;
2999 } else if(*ptr == '\\' && known_scheme) {
3000 if(!(is_file && (flags & Uri_CREATE_FILE_USE_DOS_PATH))) {
3001 /* Convert '\\' into a '/'. */
3002 if(!computeOnly)
3003 uri->canon_uri[uri->canon_len] = '/';
3004 ++uri->canon_len;
3005 do_default_action = FALSE;
3006 }
3007 } else if(known_scheme && !is_res && !is_unreserved(*ptr) && !is_reserved(*ptr) &&
3008 (!(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS) || is_file)) {
3009 if(!(is_file && (flags & Uri_CREATE_FILE_USE_DOS_PATH))) {
3010 /* Escape the forbidden character. */
3011 if(!computeOnly)
3012 pct_encode_val(*ptr, uri->canon_uri+uri->canon_len);
3013 uri->canon_len += 3;
3014 do_default_action = FALSE;
3015 }
3016 }
3017
3018 if(do_default_action) {
3019 if(!computeOnly)
3020 uri->canon_uri[uri->canon_len] = *ptr;
3021 ++uri->canon_len;
3022 }
3023 }
3024
3025 uri->path_len = uri->canon_len - uri->path_start;
3026
3027 /* Removing the dot segments only happens when it's not in
3028 * computeOnly mode and it's not a wildcard scheme. File schemes
3029 * with USE_DOS_PATH set don't get dot segments removed.
3030 */
3031 if(!(is_file && (flags & Uri_CREATE_FILE_USE_DOS_PATH)) &&
3032 data->scheme_type != URL_SCHEME_WILDCARD) {
3033 if(!(flags & Uri_CREATE_NO_CANONICALIZE) && !computeOnly) {
3034 /* Remove the dot segments (if any) and reset everything to the new
3035 * correct length.
3036 */
3037 DWORD new_len = remove_dot_segments(uri->canon_uri+uri->path_start, uri->path_len);
3038 uri->canon_len -= uri->path_len-new_len;
3039 uri->path_len = new_len;
3040 }
3041 }
3042
3043 if(!computeOnly)
3044 TRACE("Canonicalized path %s len=%d\n",
3045 debugstr_wn(uri->canon_uri+uri->path_start, uri->path_len),
3046 uri->path_len);
3047
3048 return TRUE;
3049 }
3050
3051 /* Attempts to canonicalize the path for an opaque URI.
3052 *
3053 * For known scheme types:
3054 * 1) forbidden characters are percent encoded if
3055 * NO_ENCODE_FORBIDDEN_CHARACTERS isn't set.
3056 *
3057 * 2) Percent encoded, unreserved characters are decoded
3058 * to their actual values, for known scheme types.
3059 *
3060 * 3) '\\' are changed to '/' for known scheme types
3061 * except for mailto schemes.
3062 *
3063 * 4) For file schemes, if USE_DOS_PATH is set all '/'
3064 * are converted to backslashes.
3065 *
3066 * 5) For file schemes, if USE_DOS_PATH isn't set all '\'
3067 * are converted to forward slashes.
3068 */
3069 static BOOL canonicalize_path_opaque(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
3070 const WCHAR *ptr;
3071 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
3072 const BOOL is_file = data->scheme_type == URL_SCHEME_FILE;
3073
3074 if(!data->path) {
3075 uri->path_start = -1;
3076 uri->path_len = 0;
3077 return TRUE;
3078 }
3079
3080 uri->path_start = uri->canon_len;
3081
3082 /* Windows doesn't allow a "//" to appear after the scheme
3083 * of a URI, if it's an opaque URI.
3084 */
3085 if(data->scheme && *(data->path) == '/' && *(data->path+1) == '/') {
3086 /* So it inserts a "/." before the "//" if it exists. */
3087 if(!computeOnly) {
3088 uri->canon_uri[uri->canon_len] = '/';
3089 uri->canon_uri[uri->canon_len+1] = '.';
3090 }
3091
3092 uri->canon_len += 2;
3093 }
3094
3095 for(ptr = data->path; ptr < data->path+data->path_len; ++ptr) {
3096 BOOL do_default_action = TRUE;
3097
3098 if(*ptr == '%' && known_scheme) {
3099 WCHAR val = decode_pct_val(ptr);
3100
3101 if(is_unreserved(val)) {
3102 if(!computeOnly)
3103 uri->canon_uri[uri->canon_len] = val;
3104 ++uri->canon_len;
3105
3106 ptr += 2;
3107 continue;
3108 }
3109 } else if(*ptr == '/' && is_file && (flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
3110 if(!computeOnly)
3111 uri->canon_uri[uri->canon_len] = '\\';
3112 ++uri->canon_len;
3113 do_default_action = FALSE;
3114 } else if(*ptr == '\\') {
3115 if(is_file && !(flags & Uri_CREATE_FILE_USE_DOS_PATH)) {
3116 /* Convert to a '/'. */
3117 if(!computeOnly)
3118 uri->canon_uri[uri->canon_len] = '/';
3119 ++uri->canon_len;
3120 do_default_action = FALSE;
3121 }
3122 } else if(known_scheme && !is_unreserved(*ptr) && !is_reserved(*ptr) &&
3123 !(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS)) {
3124 if(!(is_file && (flags & Uri_CREATE_FILE_USE_DOS_PATH))) {
3125 if(!computeOnly)
3126 pct_encode_val(*ptr, uri->canon_uri+uri->canon_len);
3127 uri->canon_len += 3;
3128 do_default_action = FALSE;
3129 }
3130 }
3131
3132 if(do_default_action) {
3133 if(!computeOnly)
3134 uri->canon_uri[uri->canon_len] = *ptr;
3135 ++uri->canon_len;
3136 }
3137 }
3138
3139 if(data->scheme_type == URL_SCHEME_MK && !computeOnly && !(flags & Uri_CREATE_NO_CANONICALIZE)) {
3140 DWORD new_len = remove_dot_segments(uri->canon_uri + uri->path_start,
3141 uri->canon_len - uri->path_start);
3142 uri->canon_len = uri->path_start + new_len;
3143 }
3144
3145 uri->path_len = uri->canon_len - uri->path_start;
3146
3147 if(!computeOnly)
3148 TRACE("(%p %p %x %d): Canonicalized opaque URI path %s len=%d\n", data, uri, flags, computeOnly,
3149 debugstr_wn(uri->canon_uri+uri->path_start, uri->path_len), uri->path_len);
3150 return TRUE;
3151 }
3152
3153 /* Determines how the URI represented by the parse_data should be canonicalized.
3154 *
3155 * Essentially, if the parse_data represents an hierarchical URI then it calls
3156 * canonicalize_authority and the canonicalization functions for the path. If the
3157 * URI is opaque it canonicalizes the path of the URI.
3158 */
3159 static BOOL canonicalize_hierpart(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
3160 if(!data->is_opaque || (data->is_relative && (data->password || data->username))) {
3161 /* "//" is only added for non-wildcard scheme types.
3162 *
3163 * A "//" is only added to a relative URI if it has a
3164 * host or port component (this only happens if a IUriBuilder
3165 * is generating an IUri).
3166 */
3167 if((data->is_relative && (data->host || data->has_port)) ||
3168 (!data->is_relative && data->scheme_type != URL_SCHEME_WILDCARD)) {
3169 if(!computeOnly) {
3170 INT pos = uri->canon_len;
3171
3172 uri->canon_uri[pos] = '/';
3173 uri->canon_uri[pos+1] = '/';
3174 }
3175 uri->canon_len += 2;
3176 }
3177
3178 if(!canonicalize_authority(data, uri, flags, computeOnly))
3179 return FALSE;
3180
3181 if(data->is_relative && (data->password || data->username)) {
3182 if(!canonicalize_path_opaque(data, uri, flags, computeOnly))
3183 return FALSE;
3184 } else {
3185 if(!canonicalize_path_hierarchical(data, uri, flags, computeOnly))
3186 return FALSE;
3187 }
3188 } else {
3189 /* Opaque URI's don't have an authority. */
3190 uri->userinfo_start = uri->userinfo_split = -1;
3191 uri->userinfo_len = 0;
3192 uri->host_start = -1;
3193 uri->host_len = 0;
3194 uri->host_type = Uri_HOST_UNKNOWN;
3195 uri->has_port = FALSE;
3196 uri->authority_start = -1;
3197 uri->authority_len = 0;
3198 uri->domain_offset = -1;
3199 uri->port_offset = -1;
3200
3201 if(is_hierarchical_scheme(data->scheme_type)) {
3202 DWORD i;
3203
3204 /* Absolute URIs aren't displayed for known scheme types
3205 * which should be hierarchical URIs.
3206 */
3207 uri->display_modifiers |= URI_DISPLAY_NO_ABSOLUTE_URI;
3208
3209 /* Windows also sets the port for these (if they have one). */
3210 for(i = 0; i < sizeof(default_ports)/sizeof(default_ports[0]); ++i) {
3211 if(data->scheme_type == default_ports[i].scheme) {
3212 uri->has_port = TRUE;
3213 uri->port = default_ports[i].port;
3214 break;
3215 }
3216 }
3217 }
3218
3219 if(!canonicalize_path_opaque(data, uri, flags, computeOnly))
3220 return FALSE;
3221 }
3222
3223 if(uri->path_start > -1 && !computeOnly)
3224 /* Finding file extensions happens for both types of URIs. */
3225 uri->extension_offset = find_file_extension(uri->canon_uri+uri->path_start, uri->path_len);
3226 else
3227 uri->extension_offset = -1;
3228
3229 return TRUE;
3230 }
3231
3232 /* Attempts to canonicalize the query string of the URI.
3233 *
3234 * Things that happen:
3235 * 1) For known scheme types forbidden characters
3236 * are percent encoded, unless the NO_DECODE_EXTRA_INFO flag is set
3237 * or NO_ENCODE_FORBIDDEN_CHARACTERS is set.
3238 *
3239 * 2) For known scheme types, percent encoded, unreserved characters
3240 * are decoded as long as the NO_DECODE_EXTRA_INFO flag isn't set.
3241 */
3242 static BOOL canonicalize_query(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
3243 const WCHAR *ptr, *end;
3244 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
3245
3246 if(!data->query) {
3247 uri->query_start = -1;
3248 uri->query_len = 0;
3249 return TRUE;
3250 }
3251
3252 uri->query_start = uri->canon_len;
3253
3254 end = data->query+data->query_len;
3255 for(ptr = data->query; ptr < end; ++ptr) {
3256 if(*ptr == '%') {
3257 if(known_scheme && !(flags & Uri_CREATE_NO_DECODE_EXTRA_INFO)) {
3258 WCHAR val = decode_pct_val(ptr);
3259 if(is_unreserved(val)) {
3260 if(!computeOnly)
3261 uri->canon_uri[uri->canon_len] = val;
3262 ++uri->canon_len;
3263
3264 ptr += 2;
3265 continue;
3266 }
3267 }
3268 } else if(known_scheme && !is_unreserved(*ptr) && !is_reserved(*ptr)) {
3269 if(!(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS) &&
3270 !(flags & Uri_CREATE_NO_DECODE_EXTRA_INFO)) {
3271 if(!computeOnly)
3272 pct_encode_val(*ptr, uri->canon_uri+uri->canon_len);
3273 uri->canon_len += 3;
3274 continue;
3275 }
3276 }
3277
3278 if(!computeOnly)
3279 uri->canon_uri[uri->canon_len] = *ptr;
3280 ++uri->canon_len;
3281 }
3282
3283 uri->query_len = uri->canon_len - uri->query_start;
3284
3285 if(!computeOnly)
3286 TRACE("(%p %p %x %d): Canonicalized query string %s len=%d\n", data, uri, flags,
3287 computeOnly, debugstr_wn(uri->canon_uri+uri->query_start, uri->query_len),
3288 uri->query_len);
3289 return TRUE;
3290 }
3291
3292 static BOOL canonicalize_fragment(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
3293 const WCHAR *ptr, *end;
3294 const BOOL known_scheme = data->scheme_type != URL_SCHEME_UNKNOWN;
3295
3296 if(!data->fragment) {
3297 uri->fragment_start = -1;
3298 uri->fragment_len = 0;
3299 return TRUE;
3300 }
3301
3302 uri->fragment_start = uri->canon_len;
3303
3304 end = data->fragment + data->fragment_len;
3305 for(ptr = data->fragment; ptr < end; ++ptr) {
3306 if(*ptr == '%') {
3307 if(known_scheme && !(flags & Uri_CREATE_NO_DECODE_EXTRA_INFO)) {
3308 WCHAR val = decode_pct_val(ptr);
3309 if(is_unreserved(val)) {
3310 if(!computeOnly)
3311 uri->canon_uri[uri->canon_len] = val;
3312 ++uri->canon_len;
3313
3314 ptr += 2;
3315 continue;
3316 }
3317 }
3318 } else if(known_scheme && !is_unreserved(*ptr) && !is_reserved(*ptr)) {
3319 if(!(flags & Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS) &&
3320 !(flags & Uri_CREATE_NO_DECODE_EXTRA_INFO)) {
3321 if(!computeOnly)
3322 pct_encode_val(*ptr, uri->canon_uri+uri->canon_len);
3323 uri->canon_len += 3;
3324 continue;
3325 }
3326 }
3327
3328 if(!computeOnly)
3329 uri->canon_uri[uri->canon_len] = *ptr;
3330 ++uri->canon_len;
3331 }
3332
3333 uri->fragment_len = uri->canon_len - uri->fragment_start;
3334
3335 if(!computeOnly)
3336 TRACE("(%p %p %x %d): Canonicalized fragment %s len=%d\n", data, uri, flags,
3337 computeOnly, debugstr_wn(uri->canon_uri+uri->fragment_start, uri->fragment_len),
3338 uri->fragment_len);
3339 return TRUE;
3340 }
3341
3342 /* Canonicalizes the scheme information specified in the parse_data using the specified flags. */
3343 static BOOL canonicalize_scheme(const parse_data *data, Uri *uri, DWORD flags, BOOL computeOnly) {
3344 uri->scheme_start = -1;
3345 uri->scheme_len = 0;
3346
3347 if(!data->scheme) {
3348 /* The only type of URI that doesn't have to have a scheme is a relative
3349 * URI.
3350 */
3351 if(!data->is_relative) {
3352 FIXME("(%p %p %x): Unable to determine the scheme type of %s.\n", data,
3353 uri, flags, debugstr_w(data->uri));
3354 return FALSE;
3355 }
3356 } else {
3357 if(!computeOnly) {
3358 DWORD i;
3359 INT pos = uri->canon_len;
3360
3361 for(i = 0; i < data->scheme_len; ++i) {
3362 /* Scheme name must be lower case after canonicalization. */
3363 uri->canon_uri[i + pos] = tolowerW(data->scheme[i]);
3364 }
3365
3366 uri->canon_uri[i + pos] = ':';
3367 uri->scheme_start = pos;
3368
3369 TRACE("(%p %p %x): Canonicalized scheme=%s, len=%d.\n", data, uri, flags,
3370 debugstr_wn(uri->canon_uri, uri->scheme_len), data->scheme_len);
3371 }
3372
3373 /* This happens in both computation modes. */
3374 uri->canon_len += data->scheme_len + 1;
3375 uri->scheme_len = data->scheme_len;
3376 }
3377 return TRUE;
3378 }
3379
3380 /* Compute's what the length of the URI specified by the parse_data will be
3381 * after canonicalization occurs using the specified flags.
3382 *
3383 * This function will return a non-zero value indicating the length of the canonicalized
3384 * URI, or -1 on error.
3385 */
3386 static int compute_canonicalized_length(const parse_data *data, DWORD flags) {
3387 Uri uri;
3388
3389 memset(&uri, 0, sizeof(Uri));
3390
3391 TRACE("(%p %x): Beginning to compute canonicalized length for URI %s\n", data, flags,
3392 debugstr_w(data->uri));
3393
3394 if(!canonicalize_scheme(data, &uri, flags, TRUE)) {
3395 ERR("(%p %x): Failed to compute URI scheme length.\n", data, flags);
3396 return -1;
3397 }
3398
3399 if(!canonicalize_hierpart(data, &uri, flags, TRUE)) {
3400 ERR("(%p %x): Failed to compute URI hierpart length.\n", data, flags);
3401 return -1;
3402 }
3403
3404 if(!canonicalize_query(data, &uri, flags, TRUE)) {
3405 ERR("(%p %x): Failed to compute query string length.\n", data, flags);
3406 return -1;
3407 }
3408
3409 if(!canonicalize_fragment(data, &uri, flags, TRUE)) {
3410 ERR("(%p %x): Failed to compute fragment length.\n", data, flags);
3411 return -1;
3412 }
3413
3414 TRACE("(%p %x): Finished computing canonicalized URI length. length=%d\n", data, flags, uri.canon_len);
3415
3416 return uri.canon_len;
3417 }
3418
3419 /* Canonicalizes the URI data specified in the parse_data, using the given flags. If the
3420 * canonicalization succeededs it will store all the canonicalization information
3421 * in the pointer to the Uri.
3422 *
3423 * To canonicalize a URI this function first computes what the length of the URI
3424 * specified by the parse_data will be. Once this is done it will then perfom the actual
3425 * canonicalization of the URI.
3426 */
3427 static HRESULT canonicalize_uri(const parse_data *data, Uri *uri, DWORD flags) {
3428 INT len;
3429
3430 uri->canon_uri = NULL;
3431 uri->canon_size = uri->canon_len = 0;
3432
3433 TRACE("(%p %p %x): beginning to canonicalize URI %s.\n", data, uri, flags, debugstr_w(data->uri));
3434
3435 /* First try to compute the length of the URI. */
3436 len = compute_canonicalized_length(data, flags);
3437 if(len == -1) {
3438 ERR("(%p %p %x): Could not compute the canonicalized length of %s.\n", data, uri, flags,
3439 debugstr_w(data->uri));
3440 return E_INVALIDARG;
3441 }
3442
3443 uri->canon_uri = heap_alloc((len+1)*sizeof(WCHAR));
3444 if(!uri->canon_uri)
3445 return E_OUTOFMEMORY;
3446
3447 uri->canon_size = len;
3448 if(!canonicalize_scheme(data, uri, flags, FALSE)) {
3449 ERR("(%p %p %x): Unable to canonicalize the scheme of the URI.\n", data, uri, flags);
3450 return E_INVALIDARG;
3451 }
3452 uri->scheme_type = data->scheme_type;
3453
3454 if(!canonicalize_hierpart(data, uri, flags, FALSE)) {
3455 ERR("(%p %p %x): Unable to canonicalize the heirpart of the URI\n", data, uri, flags);
3456 return E_INVALIDARG;
3457 }
3458
3459 if(!canonicalize_query(data, uri, flags, FALSE)) {
3460 ERR("(%p %p %x): Unable to canonicalize query string of the URI.\n",
3461 data, uri, flags);
3462 return E_INVALIDARG;
3463 }
3464
3465 if(!canonicalize_fragment(data, uri, flags, FALSE)) {
3466 ERR("(%p %p %x): Unable to canonicalize fragment of the URI.\n",
3467 data, uri, flags);
3468 return E_INVALIDARG;
3469 }
3470
3471 /* There's a possibility we didn't use all the space we allocated
3472 * earlier.
3473 */
3474 if(uri->canon_len < uri->canon_size) {
3475 /* This happens if the URI is hierarchical and dot
3476 * segments were removed from it's path.
3477 */
3478 WCHAR *tmp = heap_realloc(uri->canon_uri, (uri->canon_len+1)*sizeof(WCHAR));
3479 if(!tmp)
3480 return E_OUTOFMEMORY;
3481
3482 uri->canon_uri = tmp;
3483 uri->canon_size = uri->canon_len;
3484 }
3485
3486 uri->canon_uri[uri->canon_len] = '\0';
3487 TRACE("(%p %p %x): finished canonicalizing the URI. uri=%s\n", data, uri, flags, debugstr_w(uri->canon_uri));
3488
3489 return S_OK;
3490 }
3491
3492 static HRESULT get_builder_component(LPWSTR *component, DWORD *component_len,
3493 LPCWSTR source, DWORD source_len,
3494 LPCWSTR *output, DWORD *output_len)
3495 {
3496 if(!output_len) {
3497 if(output)
3498 *output = NULL;
3499 return E_POINTER;
3500 }
3501
3502 if(!output) {
3503 *output_len = 0;
3504 return E_POINTER;
3505 }
3506
3507 if(!(*component) && source) {
3508 /* Allocate 'component', and copy the contents from 'source'
3509 * into the new allocation.
3510 */
3511 *component = heap_alloc((source_len+1)*sizeof(WCHAR));
3512 if(!(*component))
3513 return E_OUTOFMEMORY;
3514
3515 memcpy(*component, source, source_len*sizeof(WCHAR));
3516 (*component)[source_len] = '\0';
3517 *component_len = source_len;
3518 }
3519
3520 *output = *component;
3521 *output_len = *component_len;
3522 return *output ? S_OK : S_FALSE;
3523 }
3524
3525 /* Allocates 'component' and copies the string from 'new_value' into 'component'.
3526 * If 'prefix' is set and 'new_value' isn't NULL, then it checks if 'new_value'
3527 * starts with 'prefix'. If it doesn't then 'prefix' is prepended to 'component'.
3528 *
3529 * If everything is successful, then will set 'success_flag' in 'flags'.
3530 */
3531 static HRESULT set_builder_component(LPWSTR *component, DWORD *component_len, LPCWSTR new_value,
3532 WCHAR prefix, DWORD *flags, DWORD success_flag)
3533 {
3534 heap_free(*component);
3535
3536 if(!new_value) {
3537 *component = NULL;
3538 *component_len = 0;
3539 } else {
3540 BOOL add_prefix = FALSE;
3541 DWORD len = lstrlenW(new_value);
3542 DWORD pos = 0;
3543
3544 if(prefix && *new_value != prefix) {
3545 add_prefix = TRUE;
3546 *component = heap_alloc((len+2)*sizeof(WCHAR));
3547 } else
3548 *component = heap_alloc((len+1)*sizeof(WCHAR));
3549
3550 if(!(*component))
3551 return E_OUTOFMEMORY;
3552
3553 if(add_prefix)
3554 (*component)[pos++] = prefix;
3555
3556 memcpy(*component+pos, new_value, (len+1)*sizeof(WCHAR));
3557 *component_len = len+pos;
3558 }
3559
3560 *flags |= success_flag;
3561 return S_OK;
3562 }
3563
3564 static void reset_builder(UriBuilder *builder) {
3565 if(builder->uri)
3566 IUri_Release(&builder->uri->IUri_iface);
3567 builder->uri = NULL;
3568
3569 heap_free(builder->fragment);
3570 builder->fragment = NULL;
3571 builder->fragment_len = 0;
3572
3573 heap_free(builder->host);
3574 builder->host = NULL;
3575 builder->host_len = 0;
3576
3577 heap_free(builder->password);
3578 builder->password = NULL;
3579 builder->password_len = 0;
3580
3581 heap_free(builder->path);
3582 builder->path = NULL;
3583 builder->path_len = 0;
3584
3585 heap_free(builder->query);
3586 builder->query = NULL;
3587 builder->query_len = 0;
3588
3589 heap_free(builder->scheme);
3590 builder->scheme = NULL;
3591 builder->scheme_len = 0;
3592
3593 heap_free(builder->username);
3594 builder->username = NULL;
3595 builder->username_len = 0;
3596
3597 builder->has_port = FALSE;
3598 builder->port = 0;
3599 builder->modified_props = 0;
3600 }
3601
3602 static HRESULT validate_scheme_name(const UriBuilder *builder, parse_data *data, DWORD flags) {
3603 const WCHAR *component;
3604 const WCHAR *ptr;
3605 const WCHAR **pptr;
3606 DWORD expected_len;
3607
3608 if(builder->scheme) {
3609 ptr = builder->scheme;
3610 expected_len = builder->scheme_len;
3611 } else if(builder->uri && builder->uri->scheme_start > -1) {
3612 ptr = builder->uri->canon_uri+builder->uri->scheme_start;
3613 expected_len = builder->uri->scheme_len;
3614 } else {
3615 static const WCHAR nullW[] = {0};
3616 ptr = nullW;
3617 expected_len = 0;
3618 }
3619
3620 component = ptr;
3621 pptr = &ptr;
3622 if(parse_scheme(pptr, data, flags, ALLOW_NULL_TERM_SCHEME) &&
3623 data->scheme_len == expected_len) {
3624 if(data->scheme)
3625 TRACE("(%p %p %x): Found valid scheme component %s len=%d.\n", builder, data, flags,
3626 debugstr_wn(data->scheme, data->scheme_len), data->scheme_len);
3627 } else {
3628 TRACE("(%p %p %x): Invalid scheme component found %s.\n", builder, data, flags,
3629 debugstr_wn(component, expected_len));
3630 return INET_E_INVALID_URL;
3631 }
3632
3633 return S_OK;
3634 }
3635
3636 static HRESULT validate_username(const UriBuilder *builder, parse_data *data, DWORD flags) {
3637 const WCHAR *ptr;
3638 const WCHAR **pptr;
3639 DWORD expected_len;
3640
3641 if(builder->username) {
3642 ptr = builder->username;
3643 expected_len = builder->username_len;
3644 } else if(!(builder->modified_props & Uri_HAS_USER_NAME) && builder->uri &&
3645 builder->uri->userinfo_start > -1 && builder->uri->userinfo_split != 0) {
3646 /* Just use the username from the base Uri. */
3647 data->username = builder->uri->canon_uri+builder->uri->userinfo_start;
3648 data->username_len = (builder->uri->userinfo_split > -1) ?
3649 builder->uri->userinfo_split : builder->uri->userinfo_len;
3650 ptr = NULL;
3651 } else {
3652 ptr = NULL;
3653 expected_len = 0;
3654 }
3655
3656 if(ptr) {
3657 const WCHAR *component = ptr;
3658 pptr = &ptr;
3659 if(parse_username(pptr, data, flags, ALLOW_NULL_TERM_USER_NAME) &&
3660 data->username_len == expected_len)
3661 TRACE("(%p %p %x): Found valid username component %s len=%d.\n", builder, data, flags,
3662 debugstr_wn(data->username, data->username_len), data->username_len);
3663 else {
3664 TRACE("(%p %p %x): Invalid username component found %s.\n", builder, data, flags,
3665 debugstr_wn(component, expected_len));
3666 return INET_E_INVALID_URL;
3667 }
3668 }
3669
3670 return S_OK;
3671 }
3672
3673 static HRESULT validate_password(const UriBuilder *builder, parse_data *data, DWORD flags) {
3674 const WCHAR *ptr;
3675 const WCHAR **pptr;
3676 DWORD expected_len;
3677
3678 if(builder->password) {
3679 ptr = builder->password;
3680 expected_len = builder->password_len;
3681 } else if(!(builder->modified_props & Uri_HAS_PASSWORD) && builder->uri &&
3682 builder->uri->userinfo_split > -1) {
3683 data->password = builder->uri->canon_uri+builder->uri->userinfo_start+builder->uri->userinfo_split+1;
3684 data->password_len = builder->uri->userinfo_len-builder->uri->userinfo_split-1;
3685 ptr = NULL;
3686 } else {
3687 ptr = NULL;
3688 expected_len = 0;
3689 }
3690
3691 if(ptr) {
3692 const WCHAR *component = ptr;
3693 pptr = &ptr;
3694 if(parse_password(pptr, data, flags, ALLOW_NULL_TERM_PASSWORD) &&
3695 data->password_len == expected_len)
3696 TRACE("(%p %p %x): Found valid password component %s len=%d.\n", builder, data, flags,
3697 debugstr_wn(data->password, data->password_len), data->password_len);
3698 else {
3699 TRACE("(%p %p %x): Invalid password component found %s.\n", builder, data, flags,
3700 debugstr_wn(component, expected_len));
3701 return INET_E_INVALID_URL;
3702 }
3703 }
3704
3705 return S_OK;
3706 }
3707
3708 static HRESULT validate_userinfo(const UriBuilder *builder, parse_data *data, DWORD flags) {
3709 HRESULT hr;
3710
3711 hr = validate_username(builder, data, flags);
3712 if(FAILED(hr))
3713 return hr;
3714
3715 hr = validate_password(builder, data, flags);
3716 if(FAILED(hr))
3717 return hr;
3718
3719 return S_OK;
3720 }
3721
3722 static HRESULT validate_host(const UriBuilder *builder, parse_data *data, DWORD flags) {
3723 const WCHAR *ptr;
3724 const WCHAR **pptr;
3725 DWORD expected_len;
3726
3727 if(builder->host) {
3728 ptr = builder->host;
3729 expected_len = builder->host_len;
3730 } else if(!(builder->modified_props & Uri_HAS_HOST) && builder->uri && builder->uri->host_start > -1) {
3731 ptr = builder->uri->canon_uri + builder->uri->host_start;
3732 expected_len = builder->uri->host_len;
3733 } else
3734 ptr = NULL;
3735
3736 if(ptr) {
3737 const WCHAR *component = ptr;
3738 DWORD extras = ALLOW_BRACKETLESS_IP_LITERAL|IGNORE_PORT_DELIMITER|SKIP_IP_FUTURE_CHECK;
3739 pptr = &ptr;
3740
3741 if(parse_host(pptr, data, flags, extras) && data->host_len == expected_len)
3742 TRACE("(%p %p %x): Found valid host name %s len=%d type=%d.\n", builder, data, flags,
3743 debugstr_wn(data->host, data->host_len), data->host_len, data->host_type);
3744 else {
3745 TRACE("(%p %p %x): Invalid host name found %s.\n", builder, data, flags,
3746 debugstr_wn(component, expected_len));
3747 return INET_E_INVALID_URL;
3748 }
3749 }
3750
3751 return S_OK;
3752 }
3753
3754 static void setup_port(const UriBuilder *builder, parse_data *data, DWORD flags) {
3755 if(builder->modified_props & Uri_HAS_PORT) {
3756 if(builder->has_port) {
3757 data->has_port = TRUE;
3758 data->port_value = builder->port;
3759 }
3760 } else if(builder->uri && builder->uri->has_port) {
3761 data->has_port = TRUE;
3762 data->port_value = builder->uri->port;
3763 }
3764
3765 if(data->has_port)
3766 TRACE("(%p %p %x): Using %u as port for IUri.\n", builder, data, flags, data->port_value);
3767 }
3768
3769 static HRESULT validate_path(const UriBuilder *builder, parse_data *data, DWORD flags) {
3770 const WCHAR *ptr = NULL;
3771 const WCHAR *component;
3772 const WCHAR **pptr;
3773 DWORD expected_len;
3774 BOOL check_len = TRUE;
3775 BOOL valid = FALSE;
3776
3777 if(builder->path) {
3778 ptr = builder->path;
3779 expected_len = builder->path_len;
3780 } else if(!(builder->modified_props & Uri_HAS_PATH) &&
3781 builder->uri && builder->uri->path_start > -1) {
3782 ptr = builder->uri->canon_uri+builder->uri->path_start;
3783 expected_len = builder->uri->path_len;
3784 } else {
3785 static const WCHAR nullW[] = {0};
3786 ptr = nullW;
3787 check_len = FALSE;
3788 }
3789
3790 component = ptr;
3791 pptr = &ptr;
3792
3793 /* How the path is validated depends on what type of
3794 * URI it is.
3795 */
3796 valid = data->is_opaque ?
3797 parse_path_opaque(pptr, data, flags) : parse_path_hierarchical(pptr, data, flags);
3798
3799 if(!valid || (check_len && expected_len != data->path_len)) {
3800 TRACE("(%p %p %x): Invalid path component %s.\n", builder, data, flags,
3801 debugstr_wn(component, check_len ? expected_len : -1) );
3802 return INET_E_INVALID_URL;
3803 }
3804
3805 TRACE("(%p %p %x): Valid path component %s len=%d.\n", builder, data, flags,
3806 debugstr_wn(data->path, data->path_len), data->path_len);
3807
3808 return S_OK;
3809 }
3810
3811 static HRESULT validate_query(const UriBuilder *builder, parse_data *data, DWORD flags) {
3812 const WCHAR *ptr = NULL;
3813 const WCHAR **pptr;
3814 DWORD expected_len;
3815
3816 if(builder->query) {
3817 ptr = builder->query;
3818 expected_len = builder->query_len;
3819 } else if(!(builder->modified_props & Uri_HAS_QUERY) && builder->uri &&
3820 builder->uri->query_start > -1) {
3821 ptr = builder->uri->canon_uri+builder->uri->query_start;
3822 expected_len = builder->uri->query_len;
3823 }
3824
3825 if(ptr) {
3826 const WCHAR *component = ptr;
3827 pptr = &ptr;
3828
3829 if(parse_query(pptr, data, flags) && expected_len == data->query_len)
3830 TRACE("(%p %p %x): Valid query component %s len=%d.\n", builder, data, flags,
3831 debugstr_wn(data->query, data->query_len), data->query_len);
3832 else {
3833 TRACE("(%p %p %x): Invalid query component %s.\n", builder, data, flags,
3834 debugstr_wn(component, expected_len));
3835 return INET_E_INVALID_URL;
3836 }
3837 }
3838
3839 return S_OK;
3840 }
3841
3842 static HRESULT validate_fragment(const UriBuilder *builder, parse_data *data, DWORD flags) {
3843 const WCHAR *ptr = NULL;
3844 const WCHAR **pptr;
3845 DWORD expected_len;
3846
3847 if(builder->fragment) {
3848 ptr = builder->fragment;
3849 expected_len = builder->fragment_len;
3850 } else if(!(builder->modified_props & Uri_HAS_FRAGMENT) && builder->uri &&
3851 builder->uri->fragment_start > -1) {
3852 ptr = builder->uri->canon_uri+builder->uri->fragment_start;
3853 expected_len = builder->uri->fragment_len;
3854 }
3855
3856 if(ptr) {
3857 const WCHAR *component = ptr;
3858 pptr = &ptr;
3859
3860 if(parse_fragment(pptr, data, flags) && expected_len == data->fragment_len)
3861 TRACE("(%p %p %x): Valid fragment component %s len=%d.\n", builder, data, flags,
3862 debugstr_wn(data->fragment, data->fragment_len), data->fragment_len);
3863 else {
3864 TRACE("(%p %p %x): Invalid fragment component %s.\n", builder, data, flags,
3865 debugstr_wn(component, expected_len));
3866 return INET_E_INVALID_URL;
3867 }
3868 }
3869
3870 return S_OK;
3871 }
3872
3873 static HRESULT validate_components(const UriBuilder *builder, parse_data *data, DWORD flags) {
3874 HRESULT hr;
3875
3876 memset(data, 0, sizeof(parse_data));
3877
3878 TRACE("(%p %p %x): Beginning to validate builder components.\n", builder, data, flags);
3879
3880 hr = validate_scheme_name(builder, data, flags);
3881 if(FAILED(hr))
3882 return hr;
3883
3884 /* Extra validation for file schemes. */
3885 if(data->scheme_type == URL_SCHEME_FILE) {
3886 if((builder->password || (builder->uri && builder->uri->userinfo_split > -1)) ||
3887 (builder->username || (builder->uri && builder->uri->userinfo_start > -1))) {
3888 TRACE("(%p %p %x): File schemes can't contain a username or password.\n",
3889 builder, data, flags);
3890 return INET_E_INVALID_URL;
3891 }
3892 }
3893
3894 hr = validate_userinfo(builder, data, flags);
3895 if(FAILED(hr))
3896 return hr;
3897
3898 hr = validate_host(builder, data, flags);
3899 if(FAILED(hr))
3900 return hr;
3901
3902 setup_port(builder, data, flags);
3903
3904 /* The URI is opaque if it doesn't have an authority component. */
3905 if(!data->is_relative)
3906 data->is_opaque = !data->username && !data->password && !data->host && !data->has_port;
3907 else
3908 data->is_opaque = !data->host && !data->has_port;
3909
3910 hr = validate_path(builder, data, flags);
3911 if(FAILED(hr))
3912 return hr;
3913
3914 hr = validate_query(builder, data, flags);
3915 if(FAILED(hr))
3916 return hr;
3917
3918 hr = validate_fragment(builder, data, flags);
3919 if(FAILED(hr))
3920 return hr;
3921
3922 TRACE("(%p %p %x): Finished validating builder components.\n", builder, data, flags);
3923
3924 return S_OK;
3925 }
3926
3927 static void convert_to_dos_path(const WCHAR *path, DWORD path_len,
3928 WCHAR *output, DWORD *output_len)
3929 {
3930 const WCHAR *ptr = path;
3931
3932 if(path_len > 3 && *ptr == '/' && is_drive_path(path+1))
3933 /* Skip over the leading / before the drive path. */
3934 ++ptr;
3935
3936 for(; ptr < path+path_len; ++ptr) {
3937 if(*ptr == '/') {
3938 if(output)
3939 *output++ = '\\';
3940 (*output_len)++;
3941 } else {
3942 if(output)
3943 *output++ = *ptr;
3944 (*output_len)++;
3945 }
3946 }
3947 }
3948
3949 /* Generates a raw uri string using the parse_data. */
3950 static DWORD generate_raw_uri(const parse_data *data, BSTR uri, DWORD flags) {
3951 DWORD length = 0;
3952
3953 if(data->scheme) {
3954 if(uri) {
3955 memcpy(uri, data->scheme, data->scheme_len*sizeof(WCHAR));
3956 uri[data->scheme_len] = ':';
3957 }
3958 length += data->scheme_len+1;
3959 }
3960
3961 if(!data->is_opaque) {
3962 /* For the "//" which appears before the authority component. */
3963 if(uri) {
3964 uri[length] = '/';
3965 uri[length+1] = '/';
3966 }
3967 length += 2;
3968
3969 /* Check if we need to add the "\\" before the host name
3970 * of a UNC server name in a DOS path.
3971 */
3972 if(flags & RAW_URI_CONVERT_TO_DOS_PATH &&
3973 data->scheme_type == URL_SCHEME_FILE && data->host) {
3974 if(uri) {
3975 uri[length] = '\\';
3976 uri[length+1] = '\\';
3977 }
3978 length += 2;
3979 }
3980 }
3981
3982 if(data->username) {
3983 if(uri)
3984 memcpy(uri+length, data->username, data->username_len*sizeof(WCHAR));
3985 length += data->username_len;
3986 }
3987
3988 if(data->password) {
3989 if(uri) {
3990 uri[length] = ':';
3991 memcpy(uri+length+1, data->password, data->password_len*sizeof(WCHAR));
3992 }
3993 length += data->password_len+1;
3994 }
3995
3996 if(data->password || data->username) {
3997 if(uri)
3998 uri[length] = '@';
3999 ++length;
4000 }
4001
4002 if(data->host) {
4003 /* IPv6 addresses get the brackets added around them if they don't already
4004 * have them.
4005 */
4006 const BOOL add_brackets = data->host_type == Uri_HOST_IPV6 && *(data->host) != '[';
4007 if(add_brackets) {
4008 if(uri)
4009 uri[length] = '[';
4010 ++length;
4011 }
4012
4013 if(uri)
4014 memcpy(uri+length, data->host, data->host_len*sizeof(WCHAR));
4015 length += data->host_len;
4016
4017 if(add_brackets) {
4018 if(uri)
4019 uri[length] = ']';
4020 length++;
4021 }
4022 }
4023
4024 if(data->has_port) {
4025 /* The port isn't included in the raw uri if it's the default
4026 * port for the scheme type.
4027 */
4028 DWORD i;
4029 BOOL is_default = FALSE;
4030
4031 for(i = 0; i < sizeof(default_ports)/sizeof(default_ports[0]); ++i) {
4032 if(data->scheme_type == default_ports[i].scheme &&
4033 data->port_value == default_ports[i].port)
4034 is_default = TRUE;
4035 }
4036
4037 if(!is_default || flags & RAW_URI_FORCE_PORT_DISP) {
4038 if(uri)
4039 uri[length] = ':';
4040 ++length;
4041
4042 if(uri)
4043 length += ui2str(uri+length, data->port_value);
4044 else
4045 length += ui2str(NULL, data->port_value);
4046 }
4047 }
4048
4049 /* Check if a '/' should be added before the path for hierarchical URIs. */
4050 if(!data->is_opaque && data->path && *(data->path) != '/') {
4051 if(uri)
4052 uri[length] = '/';
4053 ++length;
4054 }
4055
4056 if(data->path) {
4057 if(!data->is_opaque && data->scheme_type == URL_SCHEME_FILE &&
4058 flags & RAW_URI_CONVERT_TO_DOS_PATH) {
4059 DWORD len = 0;
4060
4061 if(uri)
4062 convert_to_dos_path(data->path, data->path_len, uri+length, &len);
4063 else
4064 convert_to_dos_path(data->path, data->path_len, NULL, &len);
4065
4066 length += len;
4067 } else {
4068 if(uri)
4069 memcpy(uri+length, data->path, data->path_len*sizeof(WCHAR));
4070 length += data->path_len;
4071 }
4072 }
4073
4074 if(data->query) {
4075 if(uri)
4076 memcpy(uri+length, data->query, data->query_len*sizeof(WCHAR));
4077 length += data->query_len;
4078 }
4079
4080 if(data->fragment) {
4081 if(uri)
4082 memcpy(uri+length, data->fragment, data->fragment_len*sizeof(WCHAR));
4083 length += data->fragment_len;
4084 }
4085
4086 if(uri)
4087 TRACE("(%p %p): Generated raw uri=%s len=%d\n", data, uri, debugstr_wn(uri, length), length);
4088 else
4089 TRACE("(%p %p): Computed raw uri len=%d\n", data, uri, length);
4090
4091 return length;
4092 }
4093
4094 static HRESULT generate_uri(const UriBuilder *builder, const parse_data *data, Uri *uri, DWORD flags) {
4095 HRESULT hr;
4096 DWORD length = generate_raw_uri(data, NULL, 0);
4097 uri->raw_uri = SysAllocStringLen(NULL, length);
4098 if(!uri->raw_uri)
4099 return E_OUTOFMEMORY;
4100
4101 generate_raw_uri(data, uri->raw_uri, 0);
4102
4103 hr = canonicalize_uri(data, uri, flags);
4104 if(FAILED(hr)) {
4105 if(hr == E_INVALIDARG)
4106 return INET_E_INVALID_URL;
4107 return hr;
4108 }
4109
4110 uri->create_flags = flags;
4111 return S_OK;
4112 }
4113
4114 static inline Uri* impl_from_IUri(IUri *iface)
4115 {
4116 return CONTAINING_RECORD(iface, Uri, IUri_iface);
4117 }
4118
4119 static inline void destory_uri_obj(Uri *This)
4120 {
4121 SysFreeString(This->raw_uri);
4122 heap_free(This->canon_uri);
4123 heap_free(This);
4124 }
4125
4126 static HRESULT WINAPI Uri_QueryInterface(IUri *iface, REFIID riid, void **ppv)
4127 {
4128 Uri *This = impl_from_IUri(iface);
4129
4130 if(IsEqualGUID(&IID_IUnknown, riid)) {
4131 TRACE("(%p)->(IID_IUnknown %p)\n", This, ppv);
4132 *ppv = &This->IUri_iface;
4133 }else if(IsEqualGUID(&IID_IUri, riid)) {
4134 TRACE("(%p)->(IID_IUri %p)\n", This, ppv);
4135 *ppv = &This->IUri_iface;
4136 }else if(IsEqualGUID(&IID_IUriBuilderFactory, riid)) {
4137 TRACE("(%p)->(IID_IUriBuilderFactory %p)\n", This, riid);
4138 *ppv = &This->IUriBuilderFactory_iface;
4139 }else if(IsEqualGUID(&IID_IUriObj, riid)) {
4140 TRACE("(%p)->(IID_IUriObj %p)\n", This, ppv);
4141 *ppv = This;
4142 return S_OK;
4143 }else {
4144 TRACE("(%p)->(%s %p)\n", This, debugstr_guid(riid), ppv);
4145 *ppv = NULL;
4146 return E_NOINTERFACE;
4147 }
4148
4149 IUnknown_AddRef((IUnknown*)*ppv);
4150 return S_OK;
4151 }
4152
4153 static ULONG WINAPI Uri_AddRef(IUri *iface)
4154 {
4155 Uri *This = impl_from_IUri(iface);
4156 LONG ref = InterlockedIncrement(&This->ref);
4157
4158 TRACE("(%p) ref=%d\n", This, ref);
4159
4160 return ref;
4161 }
4162
4163 static ULONG WINAPI Uri_Release(IUri *iface)
4164 {
4165 Uri *This = impl_from_IUri(iface);
4166 LONG ref = InterlockedDecrement(&This->ref);
4167
4168 TRACE("(%p) ref=%d\n", This, ref);
4169
4170 if(!ref)
4171 destory_uri_obj(This);
4172
4173 return ref;
4174 }
4175
4176 static HRESULT WINAPI Uri_GetPropertyBSTR(IUri *iface, Uri_PROPERTY uriProp, BSTR *pbstrProperty, DWORD dwFlags)
4177 {
4178 Uri *This = impl_from_IUri(iface);
4179 HRESULT hres;
4180 TRACE("(%p)->(%d %p %x)\n", This, uriProp, pbstrProperty, dwFlags);
4181
4182 if(!pbstrProperty)
4183 return E_POINTER;
4184
4185 if(uriProp > Uri_PROPERTY_STRING_LAST) {
4186 /* Windows allocates an empty BSTR for invalid Uri_PROPERTY's. */
4187 *pbstrProperty = SysAllocStringLen(NULL, 0);
4188 if(!(*pbstrProperty))
4189 return E_OUTOFMEMORY;
4190
4191 /* It only returns S_FALSE for the ZONE property... */
4192 if(uriProp == Uri_PROPERTY_ZONE)
4193 return S_FALSE;
4194 else
4195 return S_OK;
4196 }
4197
4198 /* Don't have support for flags yet. */
4199 if(dwFlags) {
4200 FIXME("(%p)->(%d %p %x)\n", This, uriProp, pbstrProperty, dwFlags);
4201 return E_NOTIMPL;
4202 }
4203
4204 switch(uriProp) {
4205 case Uri_PROPERTY_ABSOLUTE_URI:
4206 if(This->display_modifiers & URI_DISPLAY_NO_ABSOLUTE_URI) {
4207 *pbstrProperty = SysAllocStringLen(NULL, 0);
4208 hres = S_FALSE;
4209 } else {
4210 if(This->scheme_type != URL_SCHEME_UNKNOWN && This->userinfo_start > -1) {
4211 if(This->userinfo_len == 0) {
4212 /* Don't include the '@' after the userinfo component. */
4213 *pbstrProperty = SysAllocStringLen(NULL, This->canon_len-1);
4214 hres = S_OK;
4215 if(*pbstrProperty) {
4216 /* Copy everything before it. */
4217 memcpy(*pbstrProperty, This->canon_uri, This->userinfo_start*sizeof(WCHAR));
4218
4219 /* And everything after it. */
4220 memcpy(*pbstrProperty+This->userinfo_start, This->canon_uri+This->userinfo_start+1,
4221 (This->canon_len-This->userinfo_start-1)*sizeof(WCHAR));
4222 }
4223 } else if(This->userinfo_split == 0 && This->userinfo_len == 1) {
4224 /* Don't include the ":@" */
4225 *pbstrProperty = SysAllocStringLen(NULL, This->canon_len-2);
4226 hres = S_OK;
4227 if(*pbstrProperty) {
4228 memcpy(*pbstrProperty, This->canon_uri, This->userinfo_start*sizeof(WCHAR));
4229 memcpy(*pbstrProperty+This->userinfo_start, This->canon_uri+This->userinfo_start+2,
4230 (This->canon_len-This->userinfo_start-2)*sizeof(WCHAR));
4231 }
4232 } else {
4233 *pbstrProperty = SysAllocString(This->canon_uri);
4234 hres = S_OK;
4235 }
4236 } else {
4237 *pbstrProperty = SysAllocString(This->canon_uri);
4238 hres = S_OK;
4239 }
4240 }
4241
4242 if(!(*pbstrProperty))
4243 hres = E_OUTOFMEMORY;
4244
4245 break;
4246 case Uri_PROPERTY_AUTHORITY:
4247 if(This->authority_start > -1) {
4248 if(This->port_offset > -1 && is_default_port(This->scheme_type, This->port) &&
4249 This->display_modifiers & URI_DISPLAY_NO_DEFAULT_PORT_AUTH)
4250 /* Don't include the port in the authority component. */
4251 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->authority_start, This->port_offset);
4252 else
4253 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->authority_start, This->authority_len);
4254 hres = S_OK;
4255 } else {
4256 *pbstrProperty = SysAllocStringLen(NULL, 0);
4257 hres = S_FALSE;
4258 }
4259
4260 if(!(*pbstrProperty))
4261 hres = E_OUTOFMEMORY;
4262
4263 break;
4264 case Uri_PROPERTY_DISPLAY_URI:
4265 /* The Display URI contains everything except for the userinfo for known
4266 * scheme types.
4267 */
4268 if(This->scheme_type != URL_SCHEME_UNKNOWN && This->userinfo_start > -1) {
4269 *pbstrProperty = SysAllocStringLen(NULL, This->canon_len-This->userinfo_len);
4270
4271 if(*pbstrProperty) {
4272 /* Copy everything before the userinfo over. */
4273 memcpy(*pbstrProperty, This->canon_uri, This->userinfo_start*sizeof(WCHAR));
4274 /* Copy everything after the userinfo over. */
4275 memcpy(*pbstrProperty+This->userinfo_start,
4276 This->canon_uri+This->userinfo_start+This->userinfo_len+1,
4277 (This->canon_len-(This->userinfo_start+This->userinfo_len+1))*sizeof(WCHAR));
4278 }
4279 } else
4280 *pbstrProperty = SysAllocString(This->canon_uri);
4281
4282 if(!(*pbstrProperty))
4283 hres = E_OUTOFMEMORY;
4284 else
4285 hres = S_OK;
4286
4287 break;
4288 case Uri_PROPERTY_DOMAIN:
4289 if(This->domain_offset > -1) {
4290 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->host_start+This->domain_offset,
4291 This->host_len-This->domain_offset);
4292 hres = S_OK;
4293 } else {
4294 *pbstrProperty = SysAllocStringLen(NULL, 0);
4295 hres = S_FALSE;
4296 }
4297
4298 if(!(*pbstrProperty))
4299 hres = E_OUTOFMEMORY;
4300
4301 break;
4302 case Uri_PROPERTY_EXTENSION:
4303 if(This->extension_offset > -1) {
4304 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->path_start+This->extension_offset,
4305 This->path_len-This->extension_offset);
4306 hres = S_OK;
4307 } else {
4308 *pbstrProperty = SysAllocStringLen(NULL, 0);
4309 hres = S_FALSE;
4310 }
4311
4312 if(!(*pbstrProperty))
4313 hres = E_OUTOFMEMORY;
4314
4315 break;
4316 case Uri_PROPERTY_FRAGMENT:
4317 if(This->fragment_start > -1) {
4318 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->fragment_start, This->fragment_len);
4319 hres = S_OK;
4320 } else {
4321 *pbstrProperty = SysAllocStringLen(NULL, 0);
4322 hres = S_FALSE;
4323 }
4324
4325 if(!(*pbstrProperty))
4326 hres = E_OUTOFMEMORY;
4327
4328 break;
4329 case Uri_PROPERTY_HOST:
4330 if(This->host_start > -1) {
4331 /* The '[' and ']' aren't included for IPv6 addresses. */
4332 if(This->host_type == Uri_HOST_IPV6)
4333 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->host_start+1, This->host_len-2);
4334 else
4335 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->host_start, This->host_len);
4336
4337 hres = S_OK;
4338 } else {
4339 *pbstrProperty = SysAllocStringLen(NULL, 0);
4340 hres = S_FALSE;
4341 }
4342
4343 if(!(*pbstrProperty))
4344 hres = E_OUTOFMEMORY;
4345
4346 break;
4347 case Uri_PROPERTY_PASSWORD:
4348 if(This->userinfo_split > -1) {
4349 *pbstrProperty = SysAllocStringLen(
4350 This->canon_uri+This->userinfo_start+This->userinfo_split+1,
4351 This->userinfo_len-This->userinfo_split-1);
4352 hres = S_OK;
4353 } else {
4354 *pbstrProperty = SysAllocStringLen(NULL, 0);
4355 hres = S_FALSE;
4356 }
4357
4358 if(!(*pbstrProperty))
4359 return E_OUTOFMEMORY;
4360
4361 break;
4362 case Uri_PROPERTY_PATH:
4363 if(This->path_start > -1) {
4364 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->path_start, This->path_len);
4365 hres = S_OK;
4366 } else {
4367 *pbstrProperty = SysAllocStringLen(NULL, 0);
4368 hres = S_FALSE;
4369 }
4370
4371 if(!(*pbstrProperty))
4372 hres = E_OUTOFMEMORY;
4373
4374 break;
4375 case Uri_PROPERTY_PATH_AND_QUERY:
4376 if(This->path_start > -1) {
4377 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->path_start, This->path_len+This->query_len);
4378 hres = S_OK;
4379 } else if(This->query_start > -1) {
4380 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->query_start, This->query_len);
4381 hres = S_OK;
4382 } else {
4383 *pbstrProperty = SysAllocStringLen(NULL, 0);
4384 hres = S_FALSE;
4385 }
4386
4387 if(!(*pbstrProperty))
4388 hres = E_OUTOFMEMORY;
4389
4390 break;
4391 case Uri_PROPERTY_QUERY:
4392 if(This->query_start > -1) {
4393 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->query_start, This->query_len);
4394 hres = S_OK;
4395 } else {
4396 *pbstrProperty = SysAllocStringLen(NULL, 0);
4397 hres = S_FALSE;
4398 }
4399
4400 if(!(*pbstrProperty))
4401 hres = E_OUTOFMEMORY;
4402
4403 break;
4404 case Uri_PROPERTY_RAW_URI:
4405 *pbstrProperty = SysAllocString(This->raw_uri);
4406 if(!(*pbstrProperty))
4407 hres = E_OUTOFMEMORY;
4408 else
4409 hres = S_OK;
4410 break;
4411 case Uri_PROPERTY_SCHEME_NAME:
4412 if(This->scheme_start > -1) {
4413 *pbstrProperty = SysAllocStringLen(This->canon_uri + This->scheme_start, This->scheme_len);
4414 hres = S_OK;
4415 } else {
4416 *pbstrProperty = SysAllocStringLen(NULL, 0);
4417 hres = S_FALSE;
4418 }
4419
4420 if(!(*pbstrProperty))
4421 hres = E_OUTOFMEMORY;
4422
4423 break;
4424 case Uri_PROPERTY_USER_INFO:
4425 if(This->userinfo_start > -1) {
4426 *pbstrProperty = SysAllocStringLen(This->canon_uri+This->userinfo_start, This->userinfo_len);
4427 hres = S_OK;
4428 } else {
4429 *pbstrProperty = SysAllocStringLen(NULL, 0);
4430 hres = S_FALSE;
4431 }
4432
4433 if(!(*pbstrProperty))
4434 hres = E_OUTOFMEMORY;
4435
4436 break;
4437 case Uri_PROPERTY_USER_NAME:
4438 if(This->userinfo_start > -1 && This->userinfo_split != 0) {
4439 /* If userinfo_split is set, that means a password exists
4440 * so the username is only from userinfo_start to userinfo_split.
4441 */
4442 if(This->userinfo_split > -1) {
4443 *pbstrProperty = SysAllocStringLen(This->canon_uri + This->userinfo_start, This->userinfo_split);
4444 hres = S_OK;
4445 } else {
4446 *pbstrProperty = SysAllocStringLen(This->canon_uri + This->userinfo_start, This->userinfo_len);
4447 hres = S_OK;
4448 }
4449 } else {
4450 *pbstrProperty = SysAllocStringLen(NULL, 0);
4451 hres = S_FALSE;
4452 }
4453
4454 if(!(*pbstrProperty))
4455 return E_OUTOFMEMORY;
4456
4457 break;
4458 default:
4459 FIXME("(%p)->(%d %p %x)\n", This, uriProp, pbstrProperty, dwFlags);
4460 hres = E_NOTIMPL;
4461 }
4462
4463 return hres;
4464 }
4465
4466 static HRESULT WINAPI Uri_GetPropertyLength(IUri *iface, Uri_PROPERTY uriProp, DWORD *pcchProperty, DWORD dwFlags)
4467 {
4468 Uri *This = impl_from_IUri(iface);
4469 HRESULT hres;
4470 TRACE("(%p)->(%d %p %x)\n", This, uriProp, pcchProperty, dwFlags);
4471
4472 if(!pcchProperty)
4473 return E_INVALIDARG;
4474
4475 /* Can only return a length for a property if it's a string. */
4476 if(uriProp > Uri_PROPERTY_STRING_LAST)
4477 return E_INVALIDARG;
4478
4479 /* Don't have support for flags yet. */
4480 if(dwFlags) {
4481 FIXME("(%p)->(%d %p %x)\n", This, uriProp, pcchProperty, dwFlags);
4482 return E_NOTIMPL;
4483 }
4484
4485 switch(uriProp) {
4486 case Uri_PROPERTY_ABSOLUTE_URI:
4487 if(This->display_modifiers & URI_DISPLAY_NO_ABSOLUTE_URI) {
4488 *pcchProperty = 0;
4489 hres = S_FALSE;
4490 } else {
4491 if(This->scheme_type != URL_SCHEME_UNKNOWN) {
4492 if(This->userinfo_start > -1 && This->userinfo_len == 0)
4493 /* Don't include the '@' in the length. */
4494 *pcchProperty = This->canon_len-1;
4495 else if(This->userinfo_start > -1 && This->userinfo_len == 1 &&
4496 This->userinfo_split == 0)
4497 /* Don't include the ":@" in the length. */
4498 *pcchProperty = This->canon_len-2;
4499 else
4500 *pcchProperty = This->canon_len;
4501 } else
4502 *pcchProperty = This->canon_len;
4503
4504 hres = S_OK;
4505 }
4506
4507 break;
4508 case Uri_PROPERTY_AUTHORITY:
4509 if(This->port_offset > -1 &&
4510 This->display_modifiers & URI_DISPLAY_NO_DEFAULT_PORT_AUTH &&
4511 is_default_port(This->scheme_type, This->port))
4512 /* Only count up until the port in the authority. */
4513 *pcchProperty = This->port_offset;
4514 else
4515 *pcchProperty = This->authority_len;
4516 hres = (This->authority_start > -1) ? S_OK : S_FALSE;
4517 break;
4518 case Uri_PROPERTY_DISPLAY_URI:
4519 if(This->scheme_type != URL_SCHEME_UNKNOWN && This->userinfo_start > -1)
4520 *pcchProperty = This->canon_len-This->userinfo_len-1;
4521 else
4522 *pcchProperty = This->canon_len;
4523
4524 hres = S_OK;
4525 break;
4526 case Uri_PROPERTY_DOMAIN:
4527 if(This->domain_offset > -1)
4528 *pcchProperty = This->host_len - This->domain_offset;
4529 else
4530 *pcchProperty = 0;
4531
4532 hres = (This->domain_offset > -1) ? S_OK : S_FALSE;
4533 break;
4534 case Uri_PROPERTY_EXTENSION:
4535 if(This->extension_offset > -1) {
4536 *pcchProperty = This->path_len - This->extension_offset;
4537 hres = S_OK;
4538 } else {
4539 *pcchProperty = 0;
4540 hres = S_FALSE;
4541 }
4542
4543 break;
4544 case Uri_PROPERTY_FRAGMENT:
4545 *pcchProperty = This->fragment_len;
4546 hres = (This->fragment_start > -1) ? S_OK : S_FALSE;
4547 break;
4548 case Uri_PROPERTY_HOST:
4549 *pcchProperty = This->host_len;
4550
4551 /* '[' and ']' aren't included in the length. */
4552 if(This->host_type == Uri_HOST_IPV6)
4553 *pcchProperty -= 2;
4554
4555 hres = (This->host_start > -1) ? S_OK : S_FALSE;
4556 break;
4557 case Uri_PROPERTY_PASSWORD:
4558 *pcchProperty = (This->userinfo_split > -1) ? This->userinfo_len-This->userinfo_split-1 : 0;
4559 hres = (This->userinfo_split > -1) ? S_OK : S_FALSE;
4560 break;
4561 case Uri_PROPERTY_PATH:
4562 *pcchProperty = This->path_len;
4563 hres = (This->path_start > -1) ? S_OK : S_FALSE;
4564 break;
4565 case Uri_PROPERTY_PATH_AND_QUERY:
4566 *pcchProperty = This->path_len+This->query_len;
4567 hres = (This->path_start > -1 || This->query_start > -1) ? S_OK : S_FALSE;
4568 break;
4569 case Uri_PROPERTY_QUERY:
4570 *pcchProperty = This->query_len;
4571 hres = (This->query_start > -1) ? S_OK : S_FALSE;
4572 break;
4573 case Uri_PROPERTY_RAW_URI:
4574 *pcchProperty = SysStringLen(This->raw_uri);
4575 hres = S_OK;
4576 break;
4577 case Uri_PROPERTY_SCHEME_NAME:
4578 *pcchProperty = This->scheme_len;
4579 hres = (This->scheme_start > -1) ? S_OK : S_FALSE;
4580 break;
4581 case Uri_PROPERTY_USER_INFO:
4582 *pcchProperty = This->userinfo_len;
4583 hres = (This->userinfo_start > -1) ? S_OK : S_FALSE;
4584 break;
4585 case Uri_PROPERTY_USER_NAME:
4586 *pcchProperty = (This->userinfo_split > -1) ? This->userinfo_split : This->userinfo_len;
4587 if(This->userinfo_split == 0)
4588 hres = S_FALSE;
4589 else
4590 hres = (This->userinfo_start > -1) ? S_OK : S_FALSE;
4591 break;
4592 default:
4593 FIXME("(%p)->(%d %p %x)\n", This, uriProp, pcchProperty, dwFlags);
4594 hres = E_NOTIMPL;
4595 }
4596
4597 return hres;
4598 }
4599
4600 static HRESULT WINAPI Uri_GetPropertyDWORD(IUri *iface, Uri_PROPERTY uriProp, DWORD *pcchProperty, DWORD dwFlags)
4601 {
4602 Uri *This = impl_from_IUri(iface);
4603 HRESULT hres;
4604
4605 TRACE("(%p)->(%d %p %x)\n", This, uriProp, pcchProperty, dwFlags);
4606
4607 if(!pcchProperty)
4608 return E_INVALIDARG;
4609
4610 /* Microsoft's implementation for the ZONE property of a URI seems to be lacking...
4611 * From what I can tell, instead of checking which URLZONE the URI belongs to it
4612 * simply assigns URLZONE_INVALID and returns E_NOTIMPL. This also applies to the GetZone
4613 * function.
4614 */
4615 if(uriProp == Uri_PROPERTY_ZONE) {
4616 *pcchProperty = URLZONE_INVALID;
4617 return E_NOTIMPL;
4618 }
4619
4620 if(uriProp < Uri_PROPERTY_DWORD_START) {
4621 *pcchProperty = 0;
4622 return E_INVALIDARG;
4623 }
4624
4625 switch(uriProp) {
4626 case Uri_PROPERTY_HOST_TYPE:
4627 *pcchProperty = This->host_type;
4628 hres = S_OK;
4629 break;
4630 case Uri_PROPERTY_PORT:
4631 if(!This->has_port) {
4632 *pcchProperty = 0;
4633 hres = S_FALSE;
4634 } else {
4635 *pcchProperty = This->port;
4636 hres = S_OK;
4637 }
4638
4639 break;
4640 case Uri_PROPERTY_SCHEME:
4641 *pcchProperty = This->scheme_type;
4642 hres = S_OK;
4643 break;
4644 default:
4645 FIXME("(%p)->(%d %p %x)\n", This, uriProp, pcchProperty, dwFlags);
4646 hres = E_NOTIMPL;
4647 }
4648
4649 return hres;
4650 }
4651
4652 static HRESULT WINAPI Uri_HasProperty(IUri *iface, Uri_PROPERTY uriProp, BOOL *pfHasProperty)
4653 {
4654 Uri *This = impl_from_IUri(iface);
4655 TRACE("(%p)->(%d %p)\n", This, uriProp, pfHasProperty);
4656
4657 if(!pfHasProperty)
4658 return E_INVALIDARG;
4659
4660 switch(uriProp) {
4661 case Uri_PROPERTY_ABSOLUTE_URI:
4662 *pfHasProperty = !(This->display_modifiers & URI_DISPLAY_NO_ABSOLUTE_URI);
4663 break;
4664 case Uri_PROPERTY_AUTHORITY:
4665 *pfHasProperty = This->authority_start > -1;
4666 break;
4667 case Uri_PROPERTY_DISPLAY_URI:
4668 *pfHasProperty = TRUE;
4669 break;
4670 case Uri_PROPERTY_DOMAIN:
4671 *pfHasProperty = This->domain_offset > -1;
4672 break;
4673 case Uri_PROPERTY_EXTENSION:
4674 *pfHasProperty = This->extension_offset > -1;
4675 break;
4676 case Uri_PROPERTY_FRAGMENT:
4677 *pfHasProperty = This->fragment_start > -1;
4678 break;
4679 case Uri_PROPERTY_HOST:
4680 *pfHasProperty = This->host_start > -1;
4681 break;
4682 case Uri_PROPERTY_PASSWORD:
4683 *pfHasProperty = This->userinfo_split > -1;
4684 break;
4685 case Uri_PROPERTY_PATH:
4686 *pfHasProperty = This->path_start > -1;
4687 break;
4688 case Uri_PROPERTY_PATH_AND_QUERY:
4689 *pfHasProperty = (This->path_start > -1 || This->query_start > -1);
4690 break;
4691 case Uri_PROPERTY_QUERY:
4692 *pfHasProperty = This->query_start > -1;
4693 break;
4694 case Uri_PROPERTY_RAW_URI:
4695 *pfHasProperty = TRUE;
4696 break;
4697 case Uri_PROPERTY_SCHEME_NAME:
4698 *pfHasProperty = This->scheme_start > -1;
4699 break;
4700 case Uri_PROPERTY_USER_INFO:
4701 *pfHasProperty = This->userinfo_start > -1;
4702 break;
4703 case Uri_PROPERTY_USER_NAME:
4704 if(This->userinfo_split == 0)
4705 *pfHasProperty = FALSE;
4706 else
4707 *pfHasProperty = This->userinfo_start > -1;
4708 break;
4709 case Uri_PROPERTY_HOST_TYPE:
4710 *pfHasProperty = TRUE;
4711 break;
4712 case Uri_PROPERTY_PORT:
4713 *pfHasProperty = This->has_port;
4714 break;
4715 case Uri_PROPERTY_SCHEME:
4716 *pfHasProperty = TRUE;
4717 break;
4718 case Uri_PROPERTY_ZONE:
4719 *pfHasProperty = FALSE;
4720 break;
4721 default:
4722 FIXME("(%p)->(%d %p): Unsupported property type.\n", This, uriProp, pfHasProperty);
4723 return E_NOTIMPL;
4724 }
4725
4726 return S_OK;
4727 }
4728
4729 static HRESULT WINAPI Uri_GetAbsoluteUri(IUri *iface, BSTR *pstrAbsoluteUri)
4730 {
4731 TRACE("(%p)->(%p)\n", iface, pstrAbsoluteUri);
4732 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_ABSOLUTE_URI, pstrAbsoluteUri, 0);
4733 }
4734
4735 static HRESULT WINAPI Uri_GetAuthority(IUri *iface, BSTR *pstrAuthority)
4736 {
4737 TRACE("(%p)->(%p)\n", iface, pstrAuthority);
4738 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_AUTHORITY, pstrAuthority, 0);
4739 }
4740
4741 static HRESULT WINAPI Uri_GetDisplayUri(IUri *iface, BSTR *pstrDisplayUri)
4742 {
4743 TRACE("(%p)->(%p)\n", iface, pstrDisplayUri);
4744 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_DISPLAY_URI, pstrDisplayUri, 0);
4745 }
4746
4747 static HRESULT WINAPI Uri_GetDomain(IUri *iface, BSTR *pstrDomain)
4748 {
4749 TRACE("(%p)->(%p)\n", iface, pstrDomain);
4750 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_DOMAIN, pstrDomain, 0);
4751 }
4752
4753 static HRESULT WINAPI Uri_GetExtension(IUri *iface, BSTR *pstrExtension)
4754 {
4755 TRACE("(%p)->(%p)\n", iface, pstrExtension);
4756 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_EXTENSION, pstrExtension, 0);
4757 }
4758
4759 static HRESULT WINAPI Uri_GetFragment(IUri *iface, BSTR *pstrFragment)
4760 {
4761 TRACE("(%p)->(%p)\n", iface, pstrFragment);
4762 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_FRAGMENT, pstrFragment, 0);
4763 }
4764
4765 static HRESULT WINAPI Uri_GetHost(IUri *iface, BSTR *pstrHost)
4766 {
4767 TRACE("(%p)->(%p)\n", iface, pstrHost);
4768 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_HOST, pstrHost, 0);
4769 }
4770
4771 static HRESULT WINAPI Uri_GetPassword(IUri *iface, BSTR *pstrPassword)
4772 {
4773 TRACE("(%p)->(%p)\n", iface, pstrPassword);
4774 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_PASSWORD, pstrPassword, 0);
4775 }
4776
4777 static HRESULT WINAPI Uri_GetPath(IUri *iface, BSTR *pstrPath)
4778 {
4779 TRACE("(%p)->(%p)\n", iface, pstrPath);
4780 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_PATH, pstrPath, 0);
4781 }
4782
4783 static HRESULT WINAPI Uri_GetPathAndQuery(IUri *iface, BSTR *pstrPathAndQuery)
4784 {
4785 TRACE("(%p)->(%p)\n", iface, pstrPathAndQuery);
4786 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_PATH_AND_QUERY, pstrPathAndQuery, 0);
4787 }
4788
4789 static HRESULT WINAPI Uri_GetQuery(IUri *iface, BSTR *pstrQuery)
4790 {
4791 TRACE("(%p)->(%p)\n", iface, pstrQuery);
4792 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_QUERY, pstrQuery, 0);
4793 }
4794
4795 static HRESULT WINAPI Uri_GetRawUri(IUri *iface, BSTR *pstrRawUri)
4796 {
4797 TRACE("(%p)->(%p)\n", iface, pstrRawUri);
4798 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_RAW_URI, pstrRawUri, 0);
4799 }
4800
4801 static HRESULT WINAPI Uri_GetSchemeName(IUri *iface, BSTR *pstrSchemeName)
4802 {
4803 TRACE("(%p)->(%p)\n", iface, pstrSchemeName);
4804 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_SCHEME_NAME, pstrSchemeName, 0);
4805 }
4806
4807 static HRESULT WINAPI Uri_GetUserInfo(IUri *iface, BSTR *pstrUserInfo)
4808 {
4809 TRACE("(%p)->(%p)\n", iface, pstrUserInfo);
4810 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_USER_INFO, pstrUserInfo, 0);
4811 }
4812
4813 static HRESULT WINAPI Uri_GetUserName(IUri *iface, BSTR *pstrUserName)
4814 {
4815 TRACE("(%p)->(%p)\n", iface, pstrUserName);
4816 return IUri_GetPropertyBSTR(iface, Uri_PROPERTY_USER_NAME, pstrUserName, 0);
4817 }
4818
4819 static HRESULT WINAPI Uri_GetHostType(IUri *iface, DWORD *pdwHostType)
4820 {
4821 TRACE("(%p)->(%p)\n", iface, pdwHostType);
4822 return IUri_GetPropertyDWORD(iface, Uri_PROPERTY_HOST_TYPE, pdwHostType, 0);
4823 }
4824
4825 static HRESULT WINAPI Uri_GetPort(IUri *iface, DWORD *pdwPort)
4826 {
4827 TRACE("(%p)->(%p)\n", iface, pdwPort);
4828 return IUri_GetPropertyDWORD(iface, Uri_PROPERTY_PORT, pdwPort, 0);
4829 }
4830
4831 static HRESULT WINAPI Uri_GetScheme(IUri *iface, DWORD *pdwScheme)
4832 {
4833 TRACE("(%p)->(%p)\n", iface, pdwScheme);
4834 return IUri_GetPropertyDWORD(iface, Uri_PROPERTY_SCHEME, pdwScheme, 0);
4835 }
4836
4837 static HRESULT WINAPI Uri_GetZone(IUri *iface, DWORD *pdwZone)
4838 {
4839 TRACE("(%p)->(%p)\n", iface, pdwZone);
4840 return IUri_GetPropertyDWORD(iface, Uri_PROPERTY_ZONE,pdwZone, 0);
4841 }
4842
4843 static HRESULT WINAPI Uri_GetProperties(IUri *iface, DWORD *pdwProperties)
4844 {
4845 Uri *This = impl_from_IUri(iface);
4846 TRACE("(%p)->(%p)\n", This, pdwProperties);
4847
4848 if(!pdwProperties)
4849 return E_INVALIDARG;
4850
4851 /* All URIs have these. */
4852 *pdwProperties = Uri_HAS_DISPLAY_URI|Uri_HAS_RAW_URI|Uri_HAS_SCHEME|Uri_HAS_HOST_TYPE;
4853
4854 if(!(This->display_modifiers & URI_DISPLAY_NO_ABSOLUTE_URI))
4855 *pdwProperties |= Uri_HAS_ABSOLUTE_URI;
4856
4857 if(This->scheme_start > -1)
4858 *pdwProperties |= Uri_HAS_SCHEME_NAME;
4859
4860 if(This->authority_start > -1) {
4861 *pdwProperties |= Uri_HAS_AUTHORITY;
4862 if(This->userinfo_start > -1) {
4863 *pdwProperties |= Uri_HAS_USER_INFO;
4864 if(This->userinfo_split != 0)
4865 *pdwProperties |= Uri_HAS_USER_NAME;
4866 }
4867 if(This->userinfo_split > -1)
4868 *pdwProperties |= Uri_HAS_PASSWORD;
4869 if(This->host_start > -1)
4870 *pdwProperties |= Uri_HAS_HOST;
4871 if(This->domain_offset > -1)
4872 *pdwProperties |= Uri_HAS_DOMAIN;
4873 }
4874
4875 if(This->has_port)
4876 *pdwProperties |= Uri_HAS_PORT;
4877 if(This->path_start > -1)
4878 *pdwProperties |= Uri_HAS_PATH|Uri_HAS_PATH_AND_QUERY;
4879 if(This->query_start > -1)
4880 *pdwProperties |= Uri_HAS_QUERY|Uri_HAS_PATH_AND_QUERY;
4881
4882 if(This->extension_offset > -1)
4883 *pdwProperties |= Uri_HAS_EXTENSION;
4884
4885 if(This->fragment_start > -1)
4886 *pdwProperties |= Uri_HAS_FRAGMENT;
4887
4888 return S_OK;
4889 }
4890
4891 static HRESULT WINAPI Uri_IsEqual(IUri *iface, IUri *pUri, BOOL *pfEqual)
4892 {
4893 Uri *This = impl_from_IUri(iface);
4894 Uri *other;
4895
4896 TRACE("(%p)->(%p %p)\n", This, pUri, pfEqual);
4897
4898 if(!pfEqual)
4899 return E_POINTER;
4900
4901 if(!pUri) {
4902 *pfEqual = FALSE;
4903
4904 /* For some reason Windows returns S_OK here... */
4905 return S_OK;
4906 }
4907
4908 /* Try to convert it to a Uri (allows for a more simple comparison). */
4909 if((other = get_uri_obj(pUri)))
4910 *pfEqual = are_equal_simple(This, other);
4911 else {
4912 /* Do it the hard way. */
4913 FIXME("(%p)->(%p %p) No support for unknown IUri's yet.\n", iface, pUri, pfEqual);
4914 return E_NOTIMPL;
4915 }
4916
4917 return S_OK;
4918 }
4919
4920 static const IUriVtbl UriVtbl = {
4921 Uri_QueryInterface,
4922 Uri_AddRef,
4923 Uri_Release,
4924 Uri_GetPropertyBSTR,
4925 Uri_GetPropertyLength,
4926 Uri_GetPropertyDWORD,
4927 Uri_HasProperty,
4928 Uri_GetAbsoluteUri,
4929 Uri_GetAuthority,
4930 Uri_GetDisplayUri,
4931 Uri_GetDomain,
4932 Uri_GetExtension,
4933 Uri_GetFragment,
4934 Uri_GetHost,
4935 Uri_GetPassword,
4936 Uri_GetPath,
4937 Uri_GetPathAndQuery,
4938 Uri_GetQuery,
4939 Uri_GetRawUri,
4940 Uri_GetSchemeName,
4941 Uri_GetUserInfo,
4942 Uri_GetUserName,
4943 Uri_GetHostType,
4944 Uri_GetPort,
4945 Uri_GetScheme,
4946 Uri_GetZone,
4947 Uri_GetProperties,
4948 Uri_IsEqual
4949 };
4950
4951 static inline Uri* impl_from_IUriBuilderFactory(IUriBuilderFactory *iface)
4952 {
4953 return CONTAINING_RECORD(iface, Uri, IUriBuilderFactory_iface);
4954 }
4955
4956 static HRESULT WINAPI UriBuilderFactory_QueryInterface(IUriBuilderFactory *iface, REFIID riid, void **ppv)
4957 {
4958 Uri *This = impl_from_IUriBuilderFactory(iface);
4959
4960 if(IsEqualGUID(&IID_IUnknown, riid)) {
4961 TRACE("(%p)->(IID_IUnknown %p)\n", This, ppv);
4962 *ppv = &This->IUriBuilderFactory_iface;
4963 }else if(IsEqualGUID(&IID_IUriBuilderFactory, riid)) {
4964 TRACE("(%p)->(IID_IUriBuilderFactory %p)\n", This, ppv);
4965 *ppv = &This->IUriBuilderFactory_iface;
4966 }else if(IsEqualGUID(&IID_IUri, riid)) {
4967 TRACE("(%p)->(IID_IUri %p)\n", This, ppv);
4968 *ppv = &This->IUri_iface;
4969 }else {
4970 TRACE("(%p)->(%s %p)\n", This, debugstr_guid(riid), ppv);
4971 *ppv = NULL;
4972 return E_NOINTERFACE;
4973 }
4974
4975 IUnknown_AddRef((IUnknown*)*ppv);
4976 return S_OK;
4977 }
4978
4979 static ULONG WINAPI UriBuilderFactory_AddRef(IUriBuilderFactory *iface)
4980 {
4981 Uri *This = impl_from_IUriBuilderFactory(iface);
4982 LONG ref = InterlockedIncrement(&This->ref);
4983
4984 TRACE("(%p) ref=%d\n", This, ref);
4985
4986 return ref;
4987 }
4988
4989 static ULONG WINAPI UriBuilderFactory_Release(IUriBuilderFactory *iface)
4990 {
4991 Uri *This = impl_from_IUriBuilderFactory(iface);
4992 LONG ref = InterlockedDecrement(&This->ref);
4993
4994 TRACE("(%p) ref=%d\n", This, ref);
4995
4996 if(!ref)
4997 destory_uri_obj(This);
4998
4999 return ref;
5000 }
5001
5002 static HRESULT WINAPI UriBuilderFactory_CreateIUriBuilder(IUriBuilderFactory *iface,
5003 DWORD dwFlags,
5004 DWORD_PTR dwReserved,
5005 IUriBuilder **ppIUriBuilder)
5006 {
5007 Uri *This = impl_from_IUriBuilderFactory(iface);
5008 TRACE("(%p)->(%08x %08x %p)\n", This, dwFlags, (DWORD)dwReserved, ppIUriBuilder);
5009
5010 if(!ppIUriBuilder)
5011 return E_POINTER;
5012
5013 if(dwFlags || dwReserved) {
5014 *ppIUriBuilder = NULL;
5015 return E_INVALIDARG;
5016 }
5017
5018 return CreateIUriBuilder(NULL, 0, 0, ppIUriBuilder);
5019 }
5020
5021 static HRESULT WINAPI UriBuilderFactory_CreateInitializedIUriBuilder(IUriBuilderFactory *iface,
5022 DWORD dwFlags,
5023 DWORD_PTR dwReserved,
5024 IUriBuilder **ppIUriBuilder)
5025 {
5026 Uri *This = impl_from_IUriBuilderFactory(iface);
5027 TRACE("(%p)->(%08x %08x %p)\n", This, dwFlags, (DWORD)dwReserved, ppIUriBuilder);
5028
5029 if(!ppIUriBuilder)
5030 return E_POINTER;
5031
5032 if(dwFlags || dwReserved) {
5033 *ppIUriBuilder = NULL;
5034 return E_INVALIDARG;
5035 }
5036
5037 return CreateIUriBuilder(&This->IUri_iface, 0, 0, ppIUriBuilder);
5038 }
5039
5040 static const IUriBuilderFactoryVtbl UriBuilderFactoryVtbl = {
5041 UriBuilderFactory_QueryInterface,
5042 UriBuilderFactory_AddRef,
5043 UriBuilderFactory_Release,
5044 UriBuilderFactory_CreateIUriBuilder,
5045 UriBuilderFactory_CreateInitializedIUriBuilder
5046 };
5047
5048 static Uri* create_uri_obj(void) {
5049 Uri *ret = heap_alloc_zero(sizeof(Uri));
5050 if(ret) {
5051 ret->IUri_iface.lpVtbl = &UriVtbl;
5052 ret->IUriBuilderFactory_iface.lpVtbl = &UriBuilderFactoryVtbl;
5053 ret->ref = 1;
5054 }
5055
5056 return ret;
5057 }
5058
5059 /***********************************************************************
5060 * CreateUri (urlmon.@)
5061 *
5062 * Creates a new IUri object using the URI represented by pwzURI. This function
5063 * parses and validates the components of pwzURI and then canonicalizes the
5064 * parsed components.
5065 *
5066 * PARAMS
5067 * pwzURI [I] The URI to parse, validate, and canonicalize.
5068 * dwFlags [I] Flags which can affect how the parsing/canonicalization is performed.
5069 * dwReserved [I] Reserved (not used).
5070 * ppURI [O] The resulting IUri after parsing/canonicalization occurs.
5071 *
5072 * RETURNS
5073 * Success: Returns S_OK. ppURI contains the pointer to the newly allocated IUri.
5074 * Failure: E_INVALIDARG if there's invalid flag combinations in dwFlags, or an
5075 * invalid parameters, or pwzURI doesn't represnt a valid URI.
5076 * E_OUTOFMEMORY if any memory allocation fails.
5077 *
5078 * NOTES
5079 * Default flags:
5080 * Uri_CREATE_CANONICALIZE, Uri_CREATE_DECODE_EXTRA_INFO, Uri_CREATE_CRACK_UNKNOWN_SCHEMES,
5081 * Uri_CREATE_PRE_PROCESS_HTML_URI, Uri_CREATE_NO_IE_SETTINGS.
5082 */
5083 HRESULT WINAPI CreateUri(LPCWSTR pwzURI, DWORD dwFlags, DWORD_PTR dwReserved, IUri **ppURI)
5084 {
5085 const DWORD supported_flags = Uri_CREATE_ALLOW_RELATIVE|Uri_CREATE_ALLOW_IMPLICIT_WILDCARD_SCHEME|
5086 Uri_CREATE_ALLOW_IMPLICIT_FILE_SCHEME|Uri_CREATE_NO_CANONICALIZE|Uri_CREATE_CANONICALIZE|
5087 Uri_CREATE_DECODE_EXTRA_INFO|Uri_CREATE_NO_DECODE_EXTRA_INFO|Uri_CREATE_CRACK_UNKNOWN_SCHEMES|
5088 Uri_CREATE_NO_CRACK_UNKNOWN_SCHEMES|Uri_CREATE_PRE_PROCESS_HTML_URI|Uri_CREATE_NO_PRE_PROCESS_HTML_URI|
5089 Uri_CREATE_NO_IE_SETTINGS|Uri_CREATE_NO_ENCODE_FORBIDDEN_CHARACTERS|Uri_CREATE_FILE_USE_DOS_PATH;
5090 Uri *ret;
5091 HRESULT hr;
5092 parse_data data;
5093
5094 TRACE("(%s %x %x %p)\n", debugstr_w(pwzURI), dwFlags, (DWORD)dwReserved, ppURI);
5095
5096 if(!ppURI)
5097 return E_INVALIDARG;
5098
5099 if(!pwzURI || !*pwzURI) {
5100 *ppURI = NULL;
5101 return E_INVALIDARG;
5102 }
5103
5104 /* Check for invalid flags. */
5105 if(has_invalid_flag_combination(dwFlags)) {
5106 *ppURI = NULL;
5107 return E_INVALIDARG;
5108 }
5109
5110 /* Currently unsupported. */
5111 if(dwFlags & ~supported_flags)
5112 FIXME("Ignoring unsupported flag(s) %x\n", dwFlags & ~supported_flags);
5113
5114 ret = create_uri_obj();
5115 if(!ret) {
5116 *ppURI = NULL;
5117 return E_OUTOFMEMORY;
5118 }
5119
5120 /* Explicitly set the default flags if it doesn't cause a flag conflict. */
5121 apply_default_flags(&dwFlags);
5122
5123 /* Pre process the URI, unless told otherwise. */
5124 if(!(dwFlags & Uri_CREATE_NO_PRE_PROCESS_HTML_URI))
5125 ret->raw_uri = pre_process_uri(pwzURI);
5126 else
5127 ret->raw_uri = SysAllocString(pwzURI);
5128
5129 if(!ret->raw_uri) {
5130 heap_free(ret);
5131 return E_OUTOFMEMORY;
5132 }
5133
5134 memset(&data, 0, sizeof(parse_data));
5135 data.uri = ret->raw_uri;
5136
5137 /* Validate and parse the URI into it's components. */
5138 if(!parse_uri(&data, dwFlags)) {
5139 /* Encountered an unsupported or invalid URI */
5140 IUri_Release(&ret->IUri_iface);
5141 *ppURI = NULL;
5142 return E_INVALIDARG;
5143 }
5144
5145 /* Canonicalize the URI. */
5146 hr = canonicalize_uri(&data, ret, dwFlags);
5147 if(FAILED(hr)) {
5148 IUri_Release(&ret->IUri_iface);
5149 *ppURI = NULL;
5150 return hr;
5151 }
5152
5153 ret->create_flags = dwFlags;
5154
5155 *ppURI = &ret->IUri_iface;
5156 return S_OK;
5157 }
5158
5159 /***********************************************************************
5160 * CreateUriWithFragment (urlmon.@)
5161 *
5162 * Creates a new IUri object. This is almost the same as CreateUri, expect that
5163 * it allows you to explicitly specify a fragment (pwzFragment) for pwzURI.
5164 *
5165 * PARAMS
5166 * pwzURI [I] The URI to parse and perform canonicalization on.
5167 * pwzFragment [I] The explict fragment string which should be added to pwzURI.
5168 * dwFlags [I] The flags which will be passed to CreateUri.
5169 * dwReserved [I] Reserved (not used).
5170 * ppURI [O] The resulting IUri after parsing/canonicalization.
5171 *
5172 * RETURNS
5173 * Success: S_OK. ppURI contains the pointer to the newly allocated IUri.
5174 * Failure: E_INVALIDARG if pwzURI already contains a fragment and pwzFragment
5175 * isn't NULL. Will also return E_INVALIDARG for the same reasons as
5176 * CreateUri will. E_OUTOFMEMORY if any allocations fail.
5177 */
5178 HRESULT WINAPI CreateUriWithFragment(LPCWSTR pwzURI, LPCWSTR pwzFragment, DWORD dwFlags,
5179 DWORD_PTR dwReserved, IUri **ppURI)
5180 {
5181 HRESULT hres;
5182 TRACE("(%s %s %x %x %p)\n", debugstr_w(pwzURI), debugstr_w(pwzFragment), dwFlags, (DWORD)dwReserved, ppURI);
5183
5184 if(!ppURI)
5185 return E_INVALIDARG;
5186
5187 if(!pwzURI) {
5188 *ppURI = NULL;
5189 return E_INVALIDARG;
5190 }
5191
5192 /* Check if a fragment should be appended to the URI string. */
5193 if(pwzFragment) {
5194 WCHAR *uriW;
5195 DWORD uri_len, frag_len;
5196 BOOL add_pound;
5197
5198 /* Check if the original URI already has a fragment component. */
5199 if(StrChrW(pwzURI, '#')) {
5200 *ppURI = NULL;
5201 return E_INVALIDARG;
5202 }
5203
5204 uri_len = lstrlenW(pwzURI);
5205 frag_len = lstrlenW(pwzFragment);
5206
5207 /* If the fragment doesn't start with a '#', one will be added. */
5208 add_pound = *pwzFragment != '#';
5209
5210 if(add_pound)
5211 uriW = heap_alloc((uri_len+frag_len+2)*sizeof(WCHAR));
5212 else
5213 uriW = heap_alloc((uri_len+frag_len+1)*sizeof(WCHAR));
5214
5215 if(!uriW)
5216 return E_OUTOFMEMORY;
5217
5218 memcpy(uriW, pwzURI, uri_len*sizeof(WCHAR));
5219 if(add_pound)
5220 uriW[uri_len++] = '#';
5221 memcpy(uriW+uri_len, pwzFragment, (frag_len+1)*sizeof(WCHAR));
5222
5223 hres = CreateUri(uriW, dwFlags, 0, ppURI);
5224
5225 heap_free(uriW);
5226 } else
5227 /* A fragment string wasn't specified, so just forward the call. */
5228 hres = CreateUri(pwzURI, dwFlags, 0, ppURI);
5229
5230 return hres;
5231 }
5232
5233 static HRESULT build_uri(const UriBuilder *builder, IUri **uri, DWORD create_flags,
5234 DWORD use_orig_flags, DWORD encoding_mask)
5235 {
5236 HRESULT hr;
5237 parse_data data;
5238 Uri *ret;
5239
5240 if(!uri)
5241 return E_POINTER;
5242
5243 if(encoding_mask && (!builder->uri || builder->modified_props)) {
5244 *uri = NULL;
5245 return E_NOTIMPL;
5246 }
5247
5248 /* Decide what flags should be used when creating the Uri. */
5249 if((use_orig_flags & UriBuilder_USE_ORIGINAL_FLAGS) && builder->uri)
5250 create_flags = builder->uri->create_flags;
5251 else {
5252 if(has_invalid_flag_combination(create_flags)) {
5253 *uri = NULL;
5254 return E_INVALIDARG;
5255 }
5256
5257 /* Set the default flags if they don't cause a conflict. */
5258 apply_default_flags(&create_flags);
5259 }
5260
5261 /* Return the base IUri if no changes have been made and the create_flags match. */
5262 if(builder->uri && !builder->modified_props && builder->uri->create_flags == create_flags) {
5263 *uri = &builder->uri->IUri_iface;
5264 IUri_AddRef(*uri);
5265 return S_OK;
5266 }
5267
5268 hr = validate_components(builder, &data, create_flags);
5269 if(FAILED(hr)) {
5270 *uri = NULL;
5271 return hr;
5272 }
5273
5274 ret = create_uri_obj();
5275 if(!ret) {
5276 *uri = NULL;
5277 return E_OUTOFMEMORY;
5278 }
5279
5280 hr = generate_uri(builder, &data, ret, create_flags);
5281 if(FAILED(hr)) {
5282 IUri_Release(&ret->IUri_iface);
5283 *uri = NULL;
5284 return hr;
5285 }
5286
5287 *uri = &ret->IUri_iface;
5288 return S_OK;
5289 }
5290
5291 static inline UriBuilder* impl_from_IUriBuilder(IUriBuilder *iface)
5292 {
5293 return CONTAINING_RECORD(iface, UriBuilder, IUriBuilder_iface);
5294 }
5295
5296 static HRESULT WINAPI UriBuilder_QueryInterface(IUriBuilder *iface, REFIID riid, void **ppv)
5297 {
5298 UriBuilder *This = impl_from_IUriBuilder(iface);
5299
5300 if(IsEqualGUID(&IID_IUnknown, riid)) {
5301 TRACE("(%p)->(IID_IUnknown %p)\n", This, ppv);
5302 *ppv = &This->IUriBuilder_iface;
5303 }else if(IsEqualGUID(&IID_IUriBuilder, riid)) {
5304 TRACE("(%p)->(IID_IUriBuilder %p)\n", This, ppv);
5305 *ppv = &This->IUriBuilder_iface;
5306 }else {
5307 TRACE("(%p)->(%s %p)\n", This, debugstr_guid(riid), ppv);
5308 *ppv = NULL;
5309 return E_NOINTERFACE;
5310 }
5311
5312 IUnknown_AddRef((IUnknown*)*ppv);
5313 return S_OK;
5314 }
5315
5316 static ULONG WINAPI UriBuilder_AddRef(IUriBuilder *iface)
5317 {
5318 UriBuilder *This = impl_from_IUriBuilder(iface);
5319 LONG ref = InterlockedIncrement(&This->ref);
5320
5321 TRACE("(%p) ref=%d\n", This, ref);
5322
5323 return ref;
5324 }
5325
5326 static ULONG WINAPI UriBuilder_Release(IUriBuilder *iface)
5327 {
5328 UriBuilder *This = impl_from_IUriBuilder(iface);
5329 LONG ref = InterlockedDecrement(&This->ref);
5330
5331 TRACE("(%p) ref=%d\n", This, ref);
5332
5333 if(!ref) {
5334 if(This->uri) IUri_Release(&This->uri->IUri_iface);
5335 heap_free(This->fragment);
5336 heap_free(This->host);
5337 heap_free(This->password);
5338 heap_free(This->path);
5339 heap_free(This->query);
5340 heap_free(This->scheme);
5341 heap_free(This->username);
5342 heap_free(This);
5343 }
5344
5345 return ref;
5346 }
5347
5348 static HRESULT WINAPI UriBuilder_CreateUriSimple(IUriBuilder *iface,
5349 DWORD dwAllowEncodingPropertyMask,
5350 DWORD_PTR dwReserved,
5351 IUri **ppIUri)
5352 {
5353 UriBuilder *This = impl_from_IUriBuilder(iface);
5354 HRESULT hr;
5355 TRACE("(%p)->(%d %d %p)\n", This, dwAllowEncodingPropertyMask, (DWORD)dwReserved, ppIUri);
5356
5357 hr = build_uri(This, ppIUri, 0, UriBuilder_USE_ORIGINAL_FLAGS, dwAllowEncodingPropertyMask);
5358 if(hr == E_NOTIMPL)
5359 FIXME("(%p)->(%d %d %p)\n", This, dwAllowEncodingPropertyMask, (DWORD)dwReserved, ppIUri);
5360 return hr;
5361 }
5362
5363 static HRESULT WINAPI UriBuilder_CreateUri(IUriBuilder *iface,
5364 DWORD dwCreateFlags,
5365 DWORD dwAllowEncodingPropertyMask,
5366 DWORD_PTR dwReserved,
5367 IUri **ppIUri)
5368 {
5369 UriBuilder *This = impl_from_IUriBuilder(iface);
5370 HRESULT hr;
5371 TRACE("(%p)->(0x%08x %d %d %p)\n", This, dwCreateFlags, dwAllowEncodingPropertyMask, (DWORD)dwReserved, ppIUri);
5372
5373 if(dwCreateFlags == -1)
5374 hr = build_uri(This, ppIUri, 0, UriBuilder_USE_ORIGINAL_FLAGS, dwAllowEncodingPropertyMask);
5375 else
5376 hr = build_uri(This, ppIUri, dwCreateFlags, 0, dwAllowEncodingPropertyMask);
5377
5378 if(hr == E_NOTIMPL)
5379 FIXME("(%p)->(0x%08x %d %d %p)\n", This, dwCreateFlags, dwAllowEncodingPropertyMask, (DWORD)dwReserved, ppIUri);
5380 return hr;
5381 }
5382
5383 static HRESULT WINAPI UriBuilder_CreateUriWithFlags(IUriBuilder *iface,
5384 DWORD dwCreateFlags,
5385 DWORD dwUriBuilderFlags,
5386 DWORD dwAllowEncodingPropertyMask,
5387 DWORD_PTR dwReserved,
5388 IUri **ppIUri)
5389 {
5390 UriBuilder *This = impl_from_IUriBuilder(iface);
5391 HRESULT hr;
5392 TRACE("(%p)->(0x%08x 0x%08x %d %d %p)\n", This, dwCreateFlags, dwUriBuilderFlags,
5393 dwAllowEncodingPropertyMask, (DWORD)dwReserved, ppIUri);
5394
5395 hr = build_uri(This, ppIUri, dwCreateFlags, dwUriBuilderFlags, dwAllowEncodingPropertyMask);
5396 if(hr == E_NOTIMPL)
5397 FIXME("(%p)->(0x%08x 0x%08x %d %d %p)\n", This, dwCreateFlags, dwUriBuilderFlags,
5398 dwAllowEncodingPropertyMask, (DWORD)dwReserved, ppIUri);
5399 return hr;
5400 }
5401
5402 static HRESULT WINAPI UriBuilder_GetIUri(IUriBuilder *iface, IUri **ppIUri)
5403 {
5404 UriBuilder *This = impl_from_IUriBuilder(iface);
5405 TRACE("(%p)->(%p)\n", This, ppIUri);
5406
5407 if(!ppIUri)
5408 return E_POINTER;
5409
5410 if(This->uri) {
5411 IUri *uri = &This->uri->IUri_iface;
5412 IUri_AddRef(uri);
5413 *ppIUri = uri;
5414 } else
5415 *ppIUri = NULL;
5416
5417 return S_OK;
5418 }
5419
5420 static HRESULT WINAPI UriBuilder_SetIUri(IUriBuilder *iface, IUri *pIUri)
5421 {
5422 UriBuilder *This = impl_from_IUriBuilder(iface);
5423 TRACE("(%p)->(%p)\n", This, pIUri);
5424
5425 if(pIUri) {
5426 Uri *uri;
5427
5428 if((uri = get_uri_obj(pIUri))) {
5429 /* Only reset the builder if it's Uri isn't the same as
5430 * the Uri passed to the function.
5431 */
5432 if(This->uri != uri) {
5433 reset_builder(This);
5434
5435 This->uri = uri;
5436 if(uri->has_port)
5437 This->port = uri->port;
5438
5439 IUri_AddRef(pIUri);
5440 }
5441 } else {
5442 FIXME("(%p)->(%p) Unknown IUri types not supported yet.\n", This, pIUri);
5443 return E_NOTIMPL;
5444 }
5445 } else if(This->uri)
5446 /* Only reset the builder if it's Uri isn't NULL. */
5447 reset_builder(This);
5448
5449 return S_OK;
5450 }
5451
5452 static HRESULT WINAPI UriBuilder_GetFragment(IUriBuilder *iface, DWORD *pcchFragment, LPCWSTR *ppwzFragment)
5453 {
5454 UriBuilder *This = impl_from_IUriBuilder(iface);
5455 TRACE("(%p)->(%p %p)\n", This, pcchFragment, ppwzFragment);
5456
5457 if(!This->uri || This->uri->fragment_start == -1 || This->modified_props & Uri_HAS_FRAGMENT)
5458 return get_builder_component(&This->fragment, &This->fragment_len, NULL, 0, ppwzFragment, pcchFragment);
5459 else
5460 return get_builder_component(&This->fragment, &This->fragment_len, This->uri->canon_uri+This->uri->fragment_start,
5461 This->uri->fragment_len, ppwzFragment, pcchFragment);
5462 }
5463
5464 static HRESULT WINAPI UriBuilder_GetHost(IUriBuilder *iface, DWORD *pcchHost, LPCWSTR *ppwzHost)
5465 {
5466 UriBuilder *This = impl_from_IUriBuilder(iface);
5467 TRACE("(%p)->(%p %p)\n", This, pcchHost, ppwzHost);
5468
5469 if(!This->uri || This->uri->host_start == -1 || This->modified_props & Uri_HAS_HOST)
5470 return get_builder_component(&This->host, &This->host_len, NULL, 0, ppwzHost, pcchHost);
5471 else {
5472 if(This->uri->host_type == Uri_HOST_IPV6)
5473 /* Don't include the '[' and ']' around the address. */
5474 return get_builder_component(&This->host, &This->host_len, This->uri->canon_uri+This->uri->host_start+1,
5475 This->uri->host_len-2, ppwzHost, pcchHost);
5476 else
5477 return get_builder_component(&This->host, &This->host_len, This->uri->canon_uri+This->uri->host_start,
5478 This->uri->host_len, ppwzHost, pcchHost);
5479 }
5480 }
5481
5482 static HRESULT WINAPI UriBuilder_GetPassword(IUriBuilder *iface, DWORD *pcchPassword, LPCWSTR *ppwzPassword)
5483 {
5484 UriBuilder *This = impl_from_IUriBuilder(iface);
5485 TRACE("(%p)->(%p %p)\n", This, pcchPassword, ppwzPassword);
5486
5487 if(!This->uri || This->uri->userinfo_split == -1 || This->modified_props & Uri_HAS_PASSWORD)
5488 return get_builder_component(&This->password, &This->password_len, NULL, 0, ppwzPassword, pcchPassword);
5489 else {
5490 const WCHAR *start = This->uri->canon_uri+This->uri->userinfo_start+This->uri->userinfo_split+1;
5491 DWORD len = This->uri->userinfo_len-This->uri->userinfo_split-1;
5492 return get_builder_component(&This->password, &This->password_len, start, len, ppwzPassword, pcchPassword);
5493 }
5494 }
5495
5496 static HRESULT WINAPI UriBuilder_GetPath(IUriBuilder *iface, DWORD *pcchPath, LPCWSTR *ppwzPath)
5497 {
5498 UriBuilder *This = impl_from_IUriBuilder(iface);
5499 TRACE("(%p)->(%p %p)\n", This, pcchPath, ppwzPath);
5500
5501 if(!This->uri || This->uri->path_start == -1 || This->modified_props & Uri_HAS_PATH)
5502 return get_builder_component(&This->path, &This->path_len, NULL, 0, ppwzPath, pcchPath);
5503 else
5504 return get_builder_component(&This->path, &This->path_len, This->uri->canon_uri+This->uri->path_start,
5505 This->uri->path_len, ppwzPath, pcchPath);
5506 }
5507
5508 static HRESULT WINAPI UriBuilder_GetPort(IUriBuilder *iface, BOOL *pfHasPort, DWORD *pdwPort)
5509 {
5510 UriBuilder *This = impl_from_IUriBuilder(iface);
5511 TRACE("(%p)->(%p %p)\n", This, pfHasPort, pdwPort);
5512
5513 if(!pfHasPort) {
5514 if(pdwPort)
5515 *pdwPort = 0;
5516 return E_POINTER;
5517 }
5518
5519 if(!pdwPort) {
5520 *pfHasPort = FALSE;
5521 return E_POINTER;
5522 }
5523
5524 *pfHasPort = This->has_port;
5525 *pdwPort = This->port;
5526 return S_OK;
5527 }
5528
5529 static HRESULT WINAPI UriBuilder_GetQuery(IUriBuilder *iface, DWORD *pcchQuery, LPCWSTR *ppwzQuery)
5530 {
5531 UriBuilder *This = impl_from_IUriBuilder(iface);
5532 TRACE("(%p)->(%p %p)\n", This, pcchQuery, ppwzQuery);
5533
5534 if(!This->uri || This->uri->query_start == -1 || This->modified_props & Uri_HAS_QUERY)
5535 return get_builder_component(&This->query, &This->query_len, NULL, 0, ppwzQuery, pcchQuery);
5536 else
5537 return get_builder_component(&This->query, &This->query_len, This->uri->canon_uri+This->uri->query_start,
5538 This->uri->query_len, ppwzQuery, pcchQuery);
5539 }
5540
5541 static HRESULT WINAPI UriBuilder_GetSchemeName(IUriBuilder *iface, DWORD *pcchSchemeName, LPCWSTR *ppwzSchemeName)
5542 {
5543 UriBuilder *This = impl_from_IUriBuilder(iface);
5544 TRACE("(%p)->(%p %p)\n", This, pcchSchemeName, ppwzSchemeName);
5545
5546 if(!This->uri || This->uri->scheme_start == -1 || This->modified_props & Uri_HAS_SCHEME_NAME)
5547 return get_builder_component(&This->scheme, &This->scheme_len, NULL, 0, ppwzSchemeName, pcchSchemeName);
5548 else
5549 return get_builder_component(&This->scheme, &This->scheme_len, This->uri->canon_uri+This->uri->scheme_start,
5550 This->uri->scheme_len, ppwzSchemeName, pcchSchemeName);
5551 }
5552
5553 static HRESULT WINAPI UriBuilder_GetUserName(IUriBuilder *iface, DWORD *pcchUserName, LPCWSTR *ppwzUserName)
5554 {
5555 UriBuilder *This = impl_from_IUriBuilder(iface);
5556 TRACE("(%p)->(%p %p)\n", This, pcchUserName, ppwzUserName);
5557
5558 if(!This->uri || This->uri->userinfo_start == -1 || This->uri->userinfo_split == 0 ||
5559 This->modified_props & Uri_HAS_USER_NAME)
5560 return get_builder_component(&This->username, &This->username_len, NULL, 0, ppwzUserName, pcchUserName);
5561 else {
5562 const WCHAR *start = This->uri->canon_uri+This->uri->userinfo_start;
5563
5564 /* Check if there's a password in the userinfo section. */
5565 if(This->uri->userinfo_split > -1)
5566 /* Don't include the password. */
5567 return get_builder_component(&This->username, &This->username_len, start,
5568 This->uri->userinfo_split, ppwzUserName, pcchUserName);
5569 else
5570 return get_builder_component(&This->username, &This->username_len, start,
5571 This->uri->userinfo_len, ppwzUserName, pcchUserName);
5572 }
5573 }
5574
5575 static HRESULT WINAPI UriBuilder_SetFragment(IUriBuilder *iface, LPCWSTR pwzNewValue)
5576 {
5577 UriBuilder *This = impl_from_IUriBuilder(iface);
5578 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5579 return set_builder_component(&This->fragment, &This->fragment_len, pwzNewValue, '#',
5580 &This->modified_props, Uri_HAS_FRAGMENT);
5581 }
5582
5583 static HRESULT WINAPI UriBuilder_SetHost(IUriBuilder *iface, LPCWSTR pwzNewValue)
5584 {
5585 UriBuilder *This = impl_from_IUriBuilder(iface);
5586 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5587
5588 /* Host name can't be set to NULL. */
5589 if(!pwzNewValue)
5590 return E_INVALIDARG;
5591
5592 return set_builder_component(&This->host, &This->host_len, pwzNewValue, 0,
5593 &This->modified_props, Uri_HAS_HOST);
5594 }
5595
5596 static HRESULT WINAPI UriBuilder_SetPassword(IUriBuilder *iface, LPCWSTR pwzNewValue)
5597 {
5598 UriBuilder *This = impl_from_IUriBuilder(iface);
5599 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5600 return set_builder_component(&This->password, &This->password_len, pwzNewValue, 0,
5601 &This->modified_props, Uri_HAS_PASSWORD);
5602 }
5603
5604 static HRESULT WINAPI UriBuilder_SetPath(IUriBuilder *iface, LPCWSTR pwzNewValue)
5605 {
5606 UriBuilder *This = impl_from_IUriBuilder(iface);
5607 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5608 return set_builder_component(&This->path, &This->path_len, pwzNewValue, 0,
5609 &This->modified_props, Uri_HAS_PATH);
5610 }
5611
5612 static HRESULT WINAPI UriBuilder_SetPort(IUriBuilder *iface, BOOL fHasPort, DWORD dwNewValue)
5613 {
5614 UriBuilder *This = impl_from_IUriBuilder(iface);
5615 TRACE("(%p)->(%d %d)\n", This, fHasPort, dwNewValue);
5616
5617 This->has_port = fHasPort;
5618 This->port = dwNewValue;
5619 This->modified_props |= Uri_HAS_PORT;
5620 return S_OK;
5621 }
5622
5623 static HRESULT WINAPI UriBuilder_SetQuery(IUriBuilder *iface, LPCWSTR pwzNewValue)
5624 {
5625 UriBuilder *This = impl_from_IUriBuilder(iface);
5626 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5627 return set_builder_component(&This->query, &This->query_len, pwzNewValue, '?',
5628 &This->modified_props, Uri_HAS_QUERY);
5629 }
5630
5631 static HRESULT WINAPI UriBuilder_SetSchemeName(IUriBuilder *iface, LPCWSTR pwzNewValue)
5632 {
5633 UriBuilder *This = impl_from_IUriBuilder(iface);
5634 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5635
5636 /* Only set the scheme name if it's not NULL or empty. */
5637 if(!pwzNewValue || !*pwzNewValue)
5638 return E_INVALIDARG;
5639
5640 return set_builder_component(&This->scheme, &This->scheme_len, pwzNewValue, 0,
5641 &This->modified_props, Uri_HAS_SCHEME_NAME);
5642 }
5643
5644 static HRESULT WINAPI UriBuilder_SetUserName(IUriBuilder *iface, LPCWSTR pwzNewValue)
5645 {
5646 UriBuilder *This = impl_from_IUriBuilder(iface);
5647 TRACE("(%p)->(%s)\n", This, debugstr_w(pwzNewValue));
5648 return set_builder_component(&This->username, &This->username_len, pwzNewValue, 0,
5649 &This->modified_props, Uri_HAS_USER_NAME);
5650 }
5651
5652 static HRESULT WINAPI UriBuilder_RemoveProperties(IUriBuilder *iface, DWORD dwPropertyMask)
5653 {
5654 const DWORD accepted_flags = Uri_HAS_AUTHORITY|Uri_HAS_DOMAIN|Uri_HAS_EXTENSION|Uri_HAS_FRAGMENT|Uri_HAS_HOST|
5655 Uri_HAS_PASSWORD|Uri_HAS_PATH|Uri_HAS_PATH_AND_QUERY|Uri_HAS_QUERY|
5656 Uri_HAS_USER_INFO|Uri_HAS_USER_NAME;
5657
5658 UriBuilder *This = impl_from_IUriBuilder(iface);
5659 TRACE("(%p)->(0x%08x)\n", This, dwPropertyMask);
5660
5661 if(dwPropertyMask & ~accepted_flags)
5662 return E_INVALIDARG;
5663
5664 if(dwPropertyMask & Uri_HAS_FRAGMENT)
5665 UriBuilder_SetFragment(iface, NULL);
5666
5667 /* Even though you can't set the host name to NULL or an
5668 * empty string, you can still remove it... for some reason.
5669 */
5670 if(dwPropertyMask & Uri_HAS_HOST)
5671 set_builder_component(&This->host, &This->host_len, NULL, 0,
5672 &This->modified_props, Uri_HAS_HOST);
5673
5674 if(dwPropertyMask & Uri_HAS_PASSWORD)
5675 UriBuilder_SetPassword(iface, NULL);
5676
5677 if(dwPropertyMask & Uri_HAS_PATH)
5678 UriBuilder_SetPath(iface, NULL);
5679
5680 if(dwPropertyMask & Uri_HAS_PORT)
5681 UriBuilder_SetPort(iface, FALSE, 0);
5682
5683 if(dwPropertyMask & Uri_HAS_QUERY)
5684 UriBuilder_SetQuery(iface, NULL);
5685
5686 if(dwPropertyMask & Uri_HAS_USER_NAME)
5687 UriBuilder_SetUserName(iface, NULL);
5688
5689 return S_OK;
5690 }
5691
5692 static HRESULT WINAPI UriBuilder_HasBeenModified(IUriBuilder *iface, BOOL *pfModified)
5693 {
5694 UriBuilder *This = impl_from_IUriBuilder(iface);
5695 TRACE("(%p)->(%p)\n", This, pfModified);
5696
5697 if(!pfModified)
5698 return E_POINTER;
5699
5700 *pfModified = This->modified_props > 0;
5701 return S_OK;
5702 }
5703
5704 static const IUriBuilderVtbl UriBuilderVtbl = {
5705 UriBuilder_QueryInterface,
5706 UriBuilder_AddRef,
5707 UriBuilder_Release,
5708 UriBuilder_CreateUriSimple,
5709 UriBuilder_CreateUri,
5710 UriBuilder_CreateUriWithFlags,
5711 UriBuilder_GetIUri,
5712 UriBuilder_SetIUri,
5713 UriBuilder_GetFragment,
5714 UriBuilder_GetHost,
5715 UriBuilder_GetPassword,
5716 UriBuilder_GetPath,
5717 UriBuilder_GetPort,
5718 UriBuilder_GetQuery,
5719 UriBuilder_GetSchemeName,
5720 UriBuilder_GetUserName,
5721 UriBuilder_SetFragment,
5722 UriBuilder_SetHost,
5723 UriBuilder_SetPassword,
5724 UriBuilder_SetPath,
5725 UriBuilder_SetPort,
5726 UriBuilder_SetQuery,
5727 UriBuilder_SetSchemeName,
5728 UriBuilder_SetUserName,
5729 UriBuilder_RemoveProperties,
5730 UriBuilder_HasBeenModified,
5731 };
5732
5733 /***********************************************************************
5734 * CreateIUriBuilder (urlmon.@)
5735 */
5736 HRESULT WINAPI CreateIUriBuilder(IUri *pIUri, DWORD dwFlags, DWORD_PTR dwReserved, IUriBuilder **ppIUriBuilder)
5737 {
5738 UriBuilder *ret;
5739
5740 TRACE("(%p %x %x %p)\n", pIUri, dwFlags, (DWORD)dwReserved, ppIUriBuilder);
5741
5742 if(!ppIUriBuilder)
5743 return E_POINTER;
5744
5745 ret = heap_alloc_zero(sizeof(UriBuilder));
5746 if(!ret)
5747 return E_OUTOFMEMORY;
5748
5749 ret->IUriBuilder_iface.lpVtbl = &UriBuilderVtbl;
5750 ret->ref = 1;
5751
5752 if(pIUri) {
5753 Uri *uri;
5754
5755 if((uri = get_uri_obj(pIUri))) {
5756 IUri_AddRef(pIUri);
5757 ret->uri = uri;
5758
5759 if(uri->has_port)
5760 /* Windows doesn't set 'has_port' to TRUE in this case. */
5761 ret->port = uri->port;
5762
5763 } else {
5764 heap_free(ret);
5765 *ppIUriBuilder = NULL;
5766 FIXME("(%p %x %x %p): Unknown IUri types not supported yet.\n", pIUri, dwFlags,
5767 (DWORD)dwReserved, ppIUriBuilder);
5768 return E_NOTIMPL;
5769 }
5770 }
5771
5772 *ppIUriBuilder = &ret->IUriBuilder_iface;
5773 return S_OK;
5774 }
5775
5776 /* Merges the base path with the relative path and stores the resulting path
5777 * and path len in 'result' and 'result_len'.
5778 */
5779 static HRESULT merge_paths(parse_data *data, const WCHAR *base, DWORD base_len, const WCHAR *relative,
5780 DWORD relative_len, WCHAR **result, DWORD *result_len, DWORD flags)
5781 {
5782 const WCHAR *end = NULL;
5783 DWORD base_copy_len = 0;
5784 WCHAR *ptr;
5785
5786 if(base_len) {
5787 /* Find the characters the will be copied over from
5788 * the base path.
5789 */
5790 end = memrchrW(base, '/', base_len);
5791 if(!end && data->scheme_type == URL_SCHEME_FILE)
5792 /* Try looking for a '\\'. */
5793 end = memrchrW(base, '\\', base_len);
5794 }
5795
5796 if(end) {
5797 base_copy_len = (end+1)-base;
5798 *result = heap_alloc((base_copy_len+relative_len+1)*sizeof(WCHAR));
5799 } else
5800 *result = heap_alloc((relative_len+1)*sizeof(WCHAR));
5801
5802 if(!(*result)) {
5803 *result_len = 0;
5804 return E_OUTOFMEMORY;
5805 }
5806
5807 ptr = *result;
5808 if(end) {
5809 memcpy(ptr, base, base_copy_len*sizeof(WCHAR));
5810 ptr += base_copy_len;
5811 }
5812
5813 memcpy(ptr, relative, relative_len*sizeof(WCHAR));
5814 ptr += relative_len;
5815 *ptr = '\0';
5816
5817 *result_len = (ptr-*result);
5818 return S_OK;
5819 }
5820
5821 static HRESULT combine_uri(Uri *base, Uri *relative, DWORD flags, IUri **result, DWORD extras) {
5822 Uri *ret;
5823 HRESULT hr;
5824 parse_data data;
5825 DWORD create_flags = 0, len = 0;
5826
5827 memset(&data, 0, sizeof(parse_data));
5828
5829 /* Base case is when the relative Uri has a scheme name,
5830 * if it does, then 'result' will contain the same data
5831 * as the relative Uri.
5832 */
5833 if(relative->scheme_start > -1) {
5834 data.uri = SysAllocString(relative->raw_uri);
5835 if(!data.uri) {
5836 *result = NULL;
5837 return E_OUTOFMEMORY;
5838 }
5839
5840 parse_uri(&data, 0);
5841
5842 ret = create_uri_obj();
5843 if(!ret) {
5844 *result = NULL;
5845 return E_OUTOFMEMORY;
5846 }
5847
5848 if(extras & COMBINE_URI_FORCE_FLAG_USE) {
5849 if(flags & URL_DONT_SIMPLIFY)
5850 create_flags |= Uri_CREATE_NO_CANONICALIZE;
5851 if(flags & URL_DONT_UNESCAPE_EXTRA_INFO)
5852 create_flags |= Uri_CREATE_NO_DECODE_EXTRA_INFO;
5853 }
5854
5855 ret->raw_uri = data.uri;
5856 hr = canonicalize_uri(&data, ret, create_flags);
5857 if(FAILED(hr)) {
5858 IUri_Release(&ret->IUri_iface);
5859 *result = NULL;
5860 return hr;
5861 }
5862
5863 apply_default_flags(&create_flags);
5864 ret->create_flags = create_flags;
5865
5866 *result = &ret->IUri_iface;
5867 } else {
5868 WCHAR *path = NULL;
5869 DWORD raw_flags = 0;
5870
5871 if(base->scheme_start > -1) {
5872 data.scheme = base->canon_uri+base->scheme_start;
5873 data.scheme_len = base->scheme_len;
5874 data.scheme_type = base->scheme_type;
5875 } else {
5876 data.is_relative = TRUE;
5877 data.scheme_type = URL_SCHEME_UNKNOWN;
5878 create_flags |= Uri_CREATE_ALLOW_RELATIVE;
5879 }
5880
5881 if(base->authority_start > -1) {
5882 if(base->userinfo_start > -1 && base->userinfo_split != 0) {
5883 data.username = base->canon_uri+base->userinfo_start;
5884 data.username_len = (base->userinfo_split > -1) ? base->userinfo_split : base->userinfo_len;
5885 }
5886
5887 if(base->userinfo_split > -1) {
5888 data.password = base->canon_uri+base->userinfo_start+base->userinfo_split+1;
5889 data.password_len = base->userinfo_len-base->userinfo_split-1;
5890 }
5891
5892 if(base->host_start > -1) {
5893 data.host = base->canon_uri+base->host_start;
5894 data.host_len = base->host_len;
5895 data.host_type = base->host_type;
5896 }
5897
5898 if(base->has_port) {
5899 data.has_port = TRUE;
5900 data.port_value = base->port;
5901 }
5902 } else if(base->scheme_type != URL_SCHEME_FILE)
5903 data.is_opaque = TRUE;
5904
5905 if(relative->path_start == -1 || !relative->path_len) {
5906 if(base->path_start > -1) {
5907 data.path = base->canon_uri+base->path_start;
5908 data.path_len = base->path_len;
5909 } else if((base->path_start == -1 || !base->path_len) && !data.is_opaque) {
5910 /* Just set the path as a '/' if the base didn't have
5911 * one and if it's an hierarchical URI.
5912 */
5913 static const WCHAR slashW[] = {'/',0};
5914 data.path = slashW;
5915 data.path_len = 1;
5916 }
5917
5918 if(relative->query_start > -1) {
5919 data.query = relative->canon_uri+relative->query_start;
5920 data.query_len = relative->query_len;
5921 } else if(base->query_start > -1) {
5922 data.query = base->canon_uri+base->query_start;
5923 data.query_len = base->query_len;
5924 }
5925 } else {
5926 const WCHAR *ptr, **pptr;
5927 DWORD path_offset = 0, path_len = 0;
5928
5929 /* There's two possibilities on what will happen to the path component
5930 * of the result IUri. First, if the relative path begins with a '/'
5931 * then the resulting path will just be the relative path. Second, if
5932 * relative path doesn't begin with a '/' then the base path and relative
5933 * path are merged together.
5934 */
5935 if(relative->path_len && *(relative->canon_uri+relative->path_start) == '/') {
5936 WCHAR *tmp = NULL;
5937 BOOL copy_drive_path = FALSE;
5938
5939 /* If the relative IUri's path starts with a '/', then we
5940 * don't use the base IUri's path. Unless the base IUri
5941 * is a file URI, in which case it uses the drive path of
5942 * the base IUri (if it has any) in the new path.
5943 */
5944 if(base->scheme_type == URL_SCHEME_FILE) {
5945 if(base->path_len > 3 && *(base->canon_uri+base->path_start) == '/' &&
5946 is_drive_path(base->canon_uri+base->path_start+1)) {
5947 path_len += 3;
5948 copy_drive_path = TRUE;
5949 }
5950 }
5951
5952 path_len += relative->path_len;
5953
5954 path = heap_alloc((path_len+1)*sizeof(WCHAR));
5955 if(!path) {
5956 *result = NULL;
5957 return E_OUTOFMEMORY;
5958 }
5959
5960 tmp = path;
5961
5962 /* Copy the base paths, drive path over. */
5963 if(copy_drive_path) {
5964 memcpy(tmp, base->canon_uri+base->path_start, 3*sizeof(WCHAR));
5965 tmp += 3;
5966 }
5967
5968 memcpy(tmp, relative->canon_uri+relative->path_start, relative->path_len*sizeof(WCHAR));
5969 path[path_len] = '\0';
5970 } else {
5971 /* Merge the base path with the relative path. */
5972 hr = merge_paths(&data, base->canon_uri+base->path_start, base->path_len,
5973 relative->canon_uri+relative->path_start, relative->path_len,
5974 &path, &path_len, flags);
5975 if(FAILED(hr)) {
5976 *result = NULL;
5977 return hr;
5978 }
5979
5980 /* If the resulting IUri is a file URI, the drive path isn't
5981 * reduced out when the dot segments are removed.
5982 */
5983 if(path_len >= 3 && data.scheme_type == URL_SCHEME_FILE && !data.host) {
5984 if(*path == '/' && is_drive_path(path+1))
5985 path_offset = 2;
5986 else if(is_drive_path(path))
5987 path_offset = 1;
5988 }
5989 }
5990
5991 /* Check if the dot segments need to be removed from the path. */
5992 if(!(flags & URL_DONT_SIMPLIFY) && !data.is_opaque) {
5993 DWORD offset = (path_offset > 0) ? path_offset+1 : 0;
5994 DWORD new_len = remove_dot_segments(path+offset,path_len-offset);
5995
5996 if(new_len != path_len) {
5997 WCHAR *tmp = heap_realloc(path, (offset+new_len+1)*sizeof(WCHAR));
5998 if(!tmp) {
5999 heap_free(path);
6000 *result = NULL;
6001 return E_OUTOFMEMORY;
6002 }
6003
6004 tmp[new_len+offset] = '\0';
6005 path = tmp;
6006 path_len = new_len+offset;
6007 }
6008 }
6009
6010 if(relative->query_start > -1) {
6011 data.query = relative->canon_uri+relative->query_start;
6012 data.query_len = relative->query_len;
6013 }
6014
6015 /* Make sure the path component is valid. */
6016 ptr = path;
6017 pptr = &ptr;
6018 if((data.is_opaque && !parse_path_opaque(pptr, &data, 0)) ||
6019 (!data.is_opaque && !parse_path_hierarchical(pptr, &data, 0))) {
6020 heap_free(path);
6021 *result = NULL;
6022 return E_INVALIDARG;
6023 }
6024 }
6025
6026 if(relative->fragment_start > -1) {
6027 data.fragment = relative->canon_uri+relative->fragment_start;
6028 data.fragment_len = relative->fragment_len;
6029 }
6030
6031 if(flags & URL_DONT_SIMPLIFY)
6032 raw_flags |= RAW_URI_FORCE_PORT_DISP;
6033 if(flags & URL_FILE_USE_PATHURL)
6034 raw_flags |= RAW_URI_CONVERT_TO_DOS_PATH;
6035
6036 len = generate_raw_uri(&data, data.uri, raw_flags);
6037 data.uri = SysAllocStringLen(NULL, len);
6038 if(!data.uri) {
6039 heap_free(path);
6040 *result = NULL;
6041 return E_OUTOFMEMORY;
6042 }
6043
6044 generate_raw_uri(&data, data.uri, raw_flags);
6045
6046 ret = create_uri_obj();
6047 if(!ret) {
6048 SysFreeString(data.uri);
6049 heap_free(path);
6050 *result = NULL;
6051 return E_OUTOFMEMORY;
6052 }
6053
6054 if(flags & URL_DONT_SIMPLIFY)
6055 create_flags |= Uri_CREATE_NO_CANONICALIZE;
6056 if(flags & URL_FILE_USE_PATHURL)
6057 create_flags |= Uri_CREATE_FILE_USE_DOS_PATH;
6058
6059 ret->raw_uri = data.uri;
6060 hr = canonicalize_uri(&data, ret, create_flags);
6061 if(FAILED(hr)) {
6062 IUri_Release(&ret->IUri_iface);
6063 *result = NULL;
6064 return hr;
6065 }
6066
6067 if(flags & URL_DONT_SIMPLIFY)
6068 ret->display_modifiers |= URI_DISPLAY_NO_DEFAULT_PORT_AUTH;
6069
6070 apply_default_flags(&create_flags);
6071 ret->create_flags = create_flags;
6072 *result = &ret->IUri_iface;
6073
6074 heap_free(path);
6075 }
6076
6077 return S_OK;
6078 }
6079
6080 /***********************************************************************
6081 * CoInternetCombineIUri (urlmon.@)
6082 */
6083 HRESULT WINAPI CoInternetCombineIUri(IUri *pBaseUri, IUri *pRelativeUri, DWORD dwCombineFlags,
6084 IUri **ppCombinedUri, DWORD_PTR dwReserved)
6085 {
6086 HRESULT hr;
6087 IInternetProtocolInfo *info;
6088 Uri *relative, *base;
6089 TRACE("(%p %p %x %p %x)\n", pBaseUri, pRelativeUri, dwCombineFlags, ppCombinedUri, (DWORD)dwReserved);
6090
6091 if(!ppCombinedUri)
6092 return E_INVALIDARG;
6093
6094 if(!pBaseUri || !pRelativeUri) {
6095 *ppCombinedUri = NULL;
6096 return E_INVALIDARG;
6097 }
6098
6099 relative = get_uri_obj(pRelativeUri);
6100 base = get_uri_obj(pBaseUri);
6101 if(!relative || !base) {
6102 *ppCombinedUri = NULL;
6103 FIXME("(%p %p %x %p %x) Unknown IUri types not supported yet.\n",
6104 pBaseUri, pRelativeUri, dwCombineFlags, ppCombinedUri, (DWORD)dwReserved);
6105 return E_NOTIMPL;
6106 }
6107
6108 info = get_protocol_info(base->canon_uri);
6109 if(info) {
6110 WCHAR result[INTERNET_MAX_URL_LENGTH+1];
6111 DWORD result_len = 0;
6112
6113 hr = IInternetProtocolInfo_CombineUrl(info, base->canon_uri, relative->canon_uri, dwCombineFlags,
6114 result, INTERNET_MAX_URL_LENGTH+1, &result_len, 0);
6115 IInternetProtocolInfo_Release(info);
6116 if(SUCCEEDED(hr)) {
6117 hr = CreateUri(result, Uri_CREATE_ALLOW_RELATIVE, 0, ppCombinedUri);
6118 if(SUCCEEDED(hr))
6119 return hr;
6120 }
6121 }
6122
6123 return combine_uri(base, relative, dwCombineFlags, ppCombinedUri, 0);
6124 }
6125
6126 /***********************************************************************
6127 * CoInternetCombineUrlEx (urlmon.@)
6128 */
6129 HRESULT WINAPI CoInternetCombineUrlEx(IUri *pBaseUri, LPCWSTR pwzRelativeUrl, DWORD dwCombineFlags,
6130 IUri **ppCombinedUri, DWORD_PTR dwReserved)
6131 {
6132 IUri *relative;
6133 Uri *base;
6134 HRESULT hr;
6135 IInternetProtocolInfo *info;
6136
6137 TRACE("(%p %s %x %p %x) stub\n", pBaseUri, debugstr_w(pwzRelativeUrl), dwCombineFlags,
6138 ppCombinedUri, (DWORD)dwReserved);
6139
6140 if(!ppCombinedUri)
6141 return E_POINTER;
6142
6143 if(!pwzRelativeUrl) {
6144 *ppCombinedUri = NULL;
6145 return E_UNEXPECTED;
6146 }
6147
6148 if(!pBaseUri) {
6149 *ppCombinedUri = NULL;
6150 return E_INVALIDARG;
6151 }
6152
6153 base = get_uri_obj(pBaseUri);
6154 if(!base) {
6155 *ppCombinedUri = NULL;
6156 FIXME("(%p %s %x %p %x) Unknown IUri's not supported yet.\n", pBaseUri, debugstr_w(pwzRelativeUrl),
6157 dwCombineFlags, ppCombinedUri, (DWORD)dwReserved);
6158 return E_NOTIMPL;
6159 }
6160
6161 info = get_protocol_info(base->canon_uri);
6162 if(info) {
6163 WCHAR result[INTERNET_MAX_URL_LENGTH+1];
6164 DWORD result_len = 0;
6165
6166 hr = IInternetProtocolInfo_CombineUrl(info, base->canon_uri, pwzRelativeUrl, dwCombineFlags,
6167 result, INTERNET_MAX_URL_LENGTH+1, &result_len, 0);
6168 IInternetProtocolInfo_Release(info);
6169 if(SUCCEEDED(hr)) {
6170 hr = CreateUri(result, Uri_CREATE_ALLOW_RELATIVE, 0, ppCombinedUri);
6171 if(SUCCEEDED(hr))
6172 return hr;
6173 }
6174 }
6175
6176 hr = CreateUri(pwzRelativeUrl, Uri_CREATE_ALLOW_RELATIVE, 0, &relative);
6177 if(FAILED(hr)) {
6178 *ppCombinedUri = NULL;
6179 return hr;
6180 }
6181
6182 hr = combine_uri(base, get_uri_obj(relative), dwCombineFlags, ppCombinedUri, COMBINE_URI_FORCE_FLAG_USE);
6183
6184 IUri_Release(relative);
6185 return hr;
6186 }
6187
6188 static HRESULT parse_canonicalize(const Uri *uri, DWORD flags, LPWSTR output,
6189 DWORD output_len, DWORD *result_len)
6190 {
6191 const WCHAR *ptr = NULL;
6192 WCHAR *path = NULL;
6193 const WCHAR **pptr;
6194 WCHAR buffer[INTERNET_MAX_URL_LENGTH+1];
6195 DWORD len = 0;
6196 BOOL reduce_path;
6197
6198 /* URL_UNESCAPE only has effect if none of the URL_ESCAPE flags are set. */
6199 const BOOL allow_unescape = !(flags & URL_ESCAPE_UNSAFE) &&
6200 !(flags & URL_ESCAPE_SPACES_ONLY) &&
6201 !(flags & URL_ESCAPE_PERCENT);
6202
6203
6204 /* Check if the dot segments need to be removed from the
6205 * path component.
6206 */
6207 if(uri->scheme_start > -1 && uri->path_start > -1) {
6208 ptr = uri->canon_uri+uri->scheme_start+uri->scheme_len+1;
6209 pptr = &ptr;
6210 }
6211 reduce_path = !(flags & URL_NO_META) &&
6212 !(flags & URL_DONT_SIMPLIFY) &&
6213 ptr && check_hierarchical(pptr);
6214
6215 for(ptr = uri->canon_uri; ptr < uri->canon_uri+uri->canon_len; ++ptr) {
6216 BOOL do_default_action = TRUE;
6217
6218 /* Keep track of the path if we need to remove dot segments from
6219 * it later.
6220 */
6221 if(reduce_path && !path && ptr == uri->canon_uri+uri->path_start)
6222 path = buffer+len;
6223
6224 /* Check if it's time to reduce the path. */
6225 if(reduce_path && ptr == uri->canon_uri+uri->path_start+uri->path_len) {
6226 DWORD current_path_len = (buffer+len) - path;
6227 DWORD new_path_len = remove_dot_segments(path, current_path_len);
6228
6229 /* Update the current length. */
6230 len -= (current_path_len-new_path_len);
6231 reduce_path = FALSE;
6232 }
6233
6234 if(*ptr == '%') {
6235 const WCHAR decoded = decode_pct_val(ptr);
6236 if(decoded) {
6237 if(allow_unescape && (flags & URL_UNESCAPE)) {
6238 buffer[len++] = decoded;
6239 ptr += 2;
6240 do_default_action = FALSE;
6241 }
6242 }
6243
6244 /* See if %'s needed to encoded. */
6245 if(do_default_action && (flags & URL_ESCAPE_PERCENT)) {
6246 pct_encode_val(*ptr, buffer+len);
6247 len += 3;
6248 do_default_action = FALSE;
6249 }
6250 } else if(*ptr == ' ') {
6251 if((flags & URL_ESCAPE_SPACES_ONLY) &&
6252 !(flags & URL_ESCAPE_UNSAFE)) {
6253 pct_encode_val(*ptr, buffer+len);
6254 len += 3;
6255 do_default_action = FALSE;
6256 }
6257 } else if(!is_reserved(*ptr) && !is_unreserved(*ptr)) {
6258 if(flags & URL_ESCAPE_UNSAFE) {
6259 pct_encode_val(*ptr, buffer+len);
6260 len += 3;
6261 do_default_action = FALSE;
6262 }
6263 }
6264
6265 if(do_default_action)
6266 buffer[len++] = *ptr;
6267 }
6268
6269 /* Sometimes the path is the very last component of the IUri, so
6270 * see if the dot segments need to be reduced now.
6271 */
6272 if(reduce_path && path) {
6273 DWORD current_path_len = (buffer+len) - path;
6274 DWORD new_path_len = remove_dot_segments(path, current_path_len);
6275
6276 /* Update the current length. */
6277 len -= (current_path_len-new_path_len);
6278 }
6279
6280 buffer[len++] = 0;
6281
6282 /* The null terminator isn't included the length. */
6283 *result_len = len-1;
6284 if(len > output_len)
6285 return STRSAFE_E_INSUFFICIENT_BUFFER;
6286 else
6287 memcpy(output, buffer, len*sizeof(WCHAR));
6288
6289 return S_OK;
6290 }
6291
6292 static HRESULT parse_friendly(IUri *uri, LPWSTR output, DWORD output_len,
6293 DWORD *result_len)
6294 {
6295 HRESULT hr;
6296 DWORD display_len;
6297 BSTR display;
6298
6299 hr = IUri_GetPropertyLength(uri, Uri_PROPERTY_DISPLAY_URI, &display_len, 0);
6300 if(FAILED(hr)) {
6301 *result_len = 0;
6302 return hr;
6303 }
6304
6305 *result_len = display_len;
6306 if(display_len+1 > output_len)
6307 return STRSAFE_E_INSUFFICIENT_BUFFER;
6308
6309 hr = IUri_GetDisplayUri(uri, &display);
6310 if(FAILED(hr)) {
6311 *result_len = 0;
6312 return hr;
6313 }
6314
6315 memcpy(output, display, (display_len+1)*sizeof(WCHAR));
6316 SysFreeString(display);
6317 return S_OK;
6318 }
6319
6320 static HRESULT parse_rootdocument(const Uri *uri, LPWSTR output, DWORD output_len,
6321 DWORD *result_len)
6322 {
6323 static const WCHAR colon_slashesW[] = {':','/','/'};
6324
6325 WCHAR *ptr;
6326 DWORD len = 0;
6327
6328 /* Windows only returns the root document if the URI has an authority
6329 * and it's not an unknown scheme type or a file scheme type.
6330 */
6331 if(uri->authority_start == -1 ||
6332 uri->scheme_type == URL_SCHEME_UNKNOWN ||
6333 uri->scheme_type == URL_SCHEME_FILE) {
6334 *result_len = 0;
6335 if(!output_len)
6336 return STRSAFE_E_INSUFFICIENT_BUFFER;
6337
6338 output[0] = 0;
6339 return S_OK;
6340 }
6341
6342 len = uri->scheme_len+uri->authority_len;
6343 /* For the "://" and '/' which will be added. */
6344 len += 4;
6345
6346 if(len+1 > output_len) {
6347 *result_len = len;
6348 return STRSAFE_E_INSUFFICIENT_BUFFER;
6349 }
6350
6351 ptr = output;
6352 memcpy(ptr, uri->canon_uri+uri->scheme_start, uri->scheme_len*sizeof(WCHAR));
6353
6354 /* Add the "://". */
6355 ptr += uri->scheme_len;
6356 memcpy(ptr, colon_slashesW, sizeof(colon_slashesW));
6357
6358 /* Add the authority. */
6359 ptr += sizeof(colon_slashesW)/sizeof(WCHAR);
6360 memcpy(ptr, uri->canon_uri+uri->authority_start, uri->authority_len*sizeof(WCHAR));
6361
6362 /* Add the '/' after the authority. */
6363 ptr += uri->authority_len;
6364 *ptr = '/';
6365 ptr[1] = 0;
6366
6367 *result_len = len;
6368 return S_OK;
6369 }
6370
6371 static HRESULT parse_document(const Uri *uri, LPWSTR output, DWORD output_len,
6372 DWORD *result_len)
6373 {
6374 DWORD len = 0;
6375
6376 /* It has to be a known scheme type, but, it can't be a file
6377 * scheme. It also has to hierarchical.
6378 */
6379 if(uri->scheme_type == URL_SCHEME_UNKNOWN ||
6380 uri->scheme_type == URL_SCHEME_FILE ||
6381 uri->authority_start == -1) {
6382 *result_len = 0;
6383 if(output_len < 1)
6384 return STRSAFE_E_INSUFFICIENT_BUFFER;
6385
6386 output[0] = 0;
6387 return S_OK;
6388 }
6389
6390 if(uri->fragment_start > -1)
6391 len = uri->fragment_start;
6392 else
6393 len = uri->canon_len;
6394
6395 *result_len = len;
6396 if(len+1 > output_len)
6397 return STRSAFE_E_INSUFFICIENT_BUFFER;
6398
6399 memcpy(output, uri->canon_uri, len*sizeof(WCHAR));
6400 output[len] = 0;
6401 return S_OK;
6402 }
6403
6404 static HRESULT parse_path_from_url(const Uri *uri, LPWSTR output, DWORD output_len,
6405 DWORD *result_len)
6406 {
6407 const WCHAR *path_ptr;
6408 WCHAR buffer[INTERNET_MAX_URL_LENGTH+1];
6409 WCHAR *ptr;
6410
6411 if(uri->scheme_type != URL_SCHEME_FILE) {
6412 *result_len = 0;
6413 if(output_len > 0)
6414 output[0] = 0;
6415 return E_INVALIDARG;
6416 }
6417
6418 ptr = buffer;
6419 if(uri->host_start > -1) {
6420 static const WCHAR slash_slashW[] = {'\\','\\'};
6421
6422 memcpy(ptr, slash_slashW, sizeof(slash_slashW));
6423 ptr += sizeof(slash_slashW)/sizeof(WCHAR);
6424 memcpy(ptr, uri->canon_uri+uri->host_start, uri->host_len*sizeof(WCHAR));
6425 ptr += uri->host_len;
6426 }
6427
6428 path_ptr = uri->canon_uri+uri->path_start;
6429 if(uri->path_len > 3 && *path_ptr == '/' && is_drive_path(path_ptr+1))
6430 /* Skip past the '/' in front of the drive path. */
6431 ++path_ptr;
6432
6433 for(; path_ptr < uri->canon_uri+uri->path_start+uri->path_len; ++path_ptr, ++ptr) {
6434 BOOL do_default_action = TRUE;
6435
6436 if(*path_ptr == '%') {
6437 const WCHAR decoded = decode_pct_val(path_ptr);
6438 if(decoded) {
6439 *ptr = decoded;
6440 path_ptr += 2;
6441 do_default_action = FALSE;
6442 }
6443 } else if(*path_ptr == '/') {
6444 *ptr = '\\';
6445 do_default_action = FALSE;
6446 }
6447
6448 if(do_default_action)
6449 *ptr = *path_ptr;
6450 }
6451
6452 *ptr = 0;
6453
6454 *result_len = ptr-buffer;
6455 if(*result_len+1 > output_len)
6456 return STRSAFE_E_INSUFFICIENT_BUFFER;
6457
6458 memcpy(output, buffer, (*result_len+1)*sizeof(WCHAR));
6459 return S_OK;
6460 }
6461
6462 static HRESULT parse_url_from_path(IUri *uri, LPWSTR output, DWORD output_len,
6463 DWORD *result_len)
6464 {
6465 HRESULT hr;
6466 BSTR received;
6467 DWORD len = 0;
6468
6469 hr = IUri_GetPropertyLength(uri, Uri_PROPERTY_ABSOLUTE_URI, &len, 0);
6470 if(FAILED(hr)) {
6471 *result_len = 0;
6472 return hr;
6473 }
6474
6475 *result_len = len;
6476 if(len+1 > output_len)
6477 return STRSAFE_E_INSUFFICIENT_BUFFER;
6478
6479 hr = IUri_GetAbsoluteUri(uri, &received);
6480 if(FAILED(hr)) {
6481 *result_len = 0;
6482 return hr;
6483 }
6484
6485 memcpy(output, received, (len+1)*sizeof(WCHAR));
6486 SysFreeString(received);
6487
6488 return S_OK;
6489 }
6490
6491 static HRESULT parse_schema(IUri *uri, LPWSTR output, DWORD output_len,
6492 DWORD *result_len)
6493 {
6494 HRESULT hr;
6495 DWORD len;
6496 BSTR received;
6497
6498 hr = IUri_GetPropertyLength(uri, Uri_PROPERTY_SCHEME_NAME, &len, 0);
6499 if(FAILED(hr)) {
6500 *result_len = 0;
6501 return hr;
6502 }
6503
6504 *result_len = len;
6505 if(len+1 > output_len)
6506 return STRSAFE_E_INSUFFICIENT_BUFFER;
6507
6508 hr = IUri_GetSchemeName(uri, &received);
6509 if(FAILED(hr)) {
6510 *result_len = 0;
6511 return hr;
6512 }
6513
6514 memcpy(output, received, (len+1)*sizeof(WCHAR));
6515 SysFreeString(received);
6516
6517 return S_OK;
6518 }
6519
6520 static HRESULT parse_site(IUri *uri, LPWSTR output, DWORD output_len, DWORD *result_len)
6521 {
6522 HRESULT hr;
6523 DWORD len;
6524 BSTR received;
6525
6526 hr = IUri_GetPropertyLength(uri, Uri_PROPERTY_HOST, &len, 0);
6527 if(FAILED(hr)) {
6528 *result_len = 0;
6529 return hr;
6530 }
6531
6532 *result_len = len;
6533 if(len+1 > output_len)
6534 return STRSAFE_E_INSUFFICIENT_BUFFER;
6535
6536 hr = IUri_GetHost(uri, &received);
6537 if(FAILED(hr)) {
6538 *result_len = 0;
6539 return hr;
6540 }
6541
6542 memcpy(output, received, (len+1)*sizeof(WCHAR));
6543 SysFreeString(received);
6544
6545 return S_OK;
6546 }
6547
6548 static HRESULT parse_domain(IUri *uri, LPWSTR output, DWORD output_len, DWORD *result_len)
6549 {
6550 HRESULT hr;
6551 DWORD len;
6552 BSTR received;
6553
6554 hr = IUri_GetPropertyLength(uri, Uri_PROPERTY_DOMAIN, &len, 0);
6555 if(FAILED(hr)) {
6556 *result_len = 0;
6557 return hr;
6558 }
6559
6560 *result_len = len;
6561 if(len+1 > output_len)
6562 return STRSAFE_E_INSUFFICIENT_BUFFER;
6563
6564 hr = IUri_GetDomain(uri, &received);
6565 if(FAILED(hr)) {
6566 *result_len = 0;
6567 return hr;
6568 }
6569
6570 memcpy(output, received, (len+1)*sizeof(WCHAR));
6571 SysFreeString(received);
6572
6573 return S_OK;
6574 }
6575
6576 static HRESULT parse_anchor(IUri *uri, LPWSTR output, DWORD output_len, DWORD *result_len)
6577 {
6578 HRESULT hr;
6579 DWORD len;
6580 BSTR received;
6581
6582 hr = IUri_GetPropertyLength(uri, Uri_PROPERTY_FRAGMENT, &len, 0);
6583 if(FAILED(hr)) {
6584 *result_len = 0;
6585 return hr;
6586 }
6587
6588 *result_len = len;
6589 if(len+1 > output_len)
6590 return STRSAFE_E_INSUFFICIENT_BUFFER;
6591
6592 hr = IUri_GetFragment(uri, &received);
6593 if(FAILED(hr)) {
6594 *result_len = 0;
6595 return hr;
6596 }
6597
6598 memcpy(output, received, (len+1)*sizeof(WCHAR));
6599 SysFreeString(received);
6600
6601 return S_OK;
6602 }
6603
6604 /***********************************************************************
6605 * CoInternetParseIUri (urlmon.@)
6606 */
6607 HRESULT WINAPI CoInternetParseIUri(IUri *pIUri, PARSEACTION ParseAction, DWORD dwFlags,
6608 LPWSTR pwzResult, DWORD cchResult, DWORD *pcchResult,
6609 DWORD_PTR dwReserved)
6610 {
6611 HRESULT hr;
6612 Uri *uri;
6613 IInternetProtocolInfo *info;
6614
6615 TRACE("(%p %d %x %p %d %p %x)\n", pIUri, ParseAction, dwFlags, pwzResult,
6616 cchResult, pcchResult, (DWORD)dwReserved);
6617
6618 if(!pcchResult)
6619 return E_POINTER;
6620
6621 if(!pwzResult || !pIUri) {
6622 *pcchResult = 0;
6623 return E_INVALIDARG;
6624 }
6625
6626 if(!(uri = get_uri_obj(pIUri))) {
6627 *pcchResult = 0;
6628 FIXME("(%p %d %x %p %d %p %x) Unknown IUri's not supported for this action.\n",
6629 pIUri, ParseAction, dwFlags, pwzResult, cchResult, pcchResult, (DWORD)dwReserved);
6630 return E_NOTIMPL;
6631 }
6632
6633 info = get_protocol_info(uri->canon_uri);
6634 if(info) {
6635 hr = IInternetProtocolInfo_ParseUrl(info, uri->canon_uri, ParseAction, dwFlags,
6636 pwzResult, cchResult, pcchResult, 0);
6637 IInternetProtocolInfo_Release(info);
6638 if(SUCCEEDED(hr)) return hr;
6639 }
6640
6641 switch(ParseAction) {
6642 case PARSE_CANONICALIZE:
6643 hr = parse_canonicalize(uri, dwFlags, pwzResult, cchResult, pcchResult);
6644 break;
6645 case PARSE_FRIENDLY:
6646 hr = parse_friendly(pIUri, pwzResult, cchResult, pcchResult);
6647 break;
6648 case PARSE_ROOTDOCUMENT:
6649 hr = parse_rootdocument(uri, pwzResult, cchResult, pcchResult);
6650 break;
6651 case PARSE_DOCUMENT:
6652 hr = parse_document(uri, pwzResult, cchResult, pcchResult);
6653 break;
6654 case PARSE_PATH_FROM_URL:
6655 hr = parse_path_from_url(uri, pwzResult, cchResult, pcchResult);
6656 break;
6657 case PARSE_URL_FROM_PATH:
6658 hr = parse_url_from_path(pIUri, pwzResult, cchResult, pcchResult);
6659 break;
6660 case PARSE_SCHEMA:
6661 hr = parse_schema(pIUri, pwzResult, cchResult, pcchResult);
6662 break;
6663 case PARSE_SITE:
6664 hr = parse_site(pIUri, pwzResult, cchResult, pcchResult);
6665 break;
6666 case PARSE_DOMAIN:
6667 hr = parse_domain(pIUri, pwzResult, cchResult, pcchResult);
6668 break;
6669 case PARSE_LOCATION:
6670 case PARSE_ANCHOR:
6671 hr = parse_anchor(pIUri, pwzResult, cchResult, pcchResult);
6672 break;
6673 case PARSE_SECURITY_URL:
6674 case PARSE_MIME:
6675 case PARSE_SERVER:
6676 case PARSE_SECURITY_DOMAIN:
6677 *pcchResult = 0;
6678 hr = E_FAIL;
6679 break;
6680 default:
6681 *pcchResult = 0;
6682 hr = E_NOTIMPL;
6683 FIXME("(%p %d %x %p %d %p %x) Partial stub.\n", pIUri, ParseAction, dwFlags,
6684 pwzResult, cchResult, pcchResult, (DWORD)dwReserved);
6685 }
6686
6687 return hr;
6688 }