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authorMichael Krelin <hacker@klever.net>2008-03-02 23:52:14 (UTC)
committer Michael Krelin <hacker@klever.net>2008-03-02 23:52:14 (UTC)
commit5fd5ecad8c2bd1e8846c11fa9b281f0f4ab8a4a7 (patch) (unidiff)
tree76ba24c589d0ce7de6cab113787cf7a70572f994 /lib/util.cc
parentf6482fb9003e4953f838ba4ef2c110190355622f (diff)
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aded util::url_decode()
Signed-off-by: Michael Krelin <hacker@klever.net>
Diffstat (limited to 'lib/util.cc') (more/less context) (ignore whitespace changes)
-rw-r--r--lib/util.cc28
1 files changed, 28 insertions, 0 deletions
diff --git a/lib/util.cc b/lib/util.cc
index a6e08e2..3e7f3aa 100644
--- a/lib/util.cc
+++ b/lib/util.cc
@@ -3,384 +3,412 @@
3#include <cctype> 3#include <cctype>
4#include <cstring> 4#include <cstring>
5#include <vector> 5#include <vector>
6#include <string> 6#include <string>
7#include <stack> 7#include <stack>
8#include <algorithm> 8#include <algorithm>
9#include <openssl/bio.h> 9#include <openssl/bio.h>
10#include <openssl/evp.h> 10#include <openssl/evp.h>
11#include <openssl/sha.h> 11#include <openssl/sha.h>
12#include <openssl/hmac.h> 12#include <openssl/hmac.h>
13#include <opkele/util.h> 13#include <opkele/util.h>
14#include <opkele/exception.h> 14#include <opkele/exception.h>
15#include <opkele/data.h> 15#include <opkele/data.h>
16#include <opkele/debug.h> 16#include <opkele/debug.h>
17 17
18#include <config.h> 18#include <config.h>
19#ifdef HAVE_DEMANGLE 19#ifdef HAVE_DEMANGLE
20# include <cxxabi.h> 20# include <cxxabi.h>
21#endif 21#endif
22 22
23namespace opkele { 23namespace opkele {
24 using namespace std; 24 using namespace std;
25 25
26 namespace util { 26 namespace util {
27 27
28 /* 28 /*
29 * base64 29 * base64
30 */ 30 */
31 string encode_base64(const void *data,size_t length) { 31 string encode_base64(const void *data,size_t length) {
32 BIO *b64 = 0, *bmem = 0; 32 BIO *b64 = 0, *bmem = 0;
33 try { 33 try {
34 b64 = BIO_new(BIO_f_base64()); 34 b64 = BIO_new(BIO_f_base64());
35 if(!b64) 35 if(!b64)
36 throw exception_openssl(OPKELE_CP_ "failed to BIO_new() base64 encoder"); 36 throw exception_openssl(OPKELE_CP_ "failed to BIO_new() base64 encoder");
37 BIO_set_flags(b64,BIO_FLAGS_BASE64_NO_NL); 37 BIO_set_flags(b64,BIO_FLAGS_BASE64_NO_NL);
38 bmem = BIO_new(BIO_s_mem()); 38 bmem = BIO_new(BIO_s_mem());
39 BIO_set_flags(b64,BIO_CLOSE); 39 BIO_set_flags(b64,BIO_CLOSE);
40 if(!bmem) 40 if(!bmem)
41 throw exception_openssl(OPKELE_CP_ "failed to BIO_new() memory buffer"); 41 throw exception_openssl(OPKELE_CP_ "failed to BIO_new() memory buffer");
42 BIO_push(b64,bmem); 42 BIO_push(b64,bmem);
43 if(((size_t)BIO_write(b64,data,length))!=length) 43 if(((size_t)BIO_write(b64,data,length))!=length)
44 throw exception_openssl(OPKELE_CP_ "failed to BIO_write()"); 44 throw exception_openssl(OPKELE_CP_ "failed to BIO_write()");
45 if(BIO_flush(b64)!=1) 45 if(BIO_flush(b64)!=1)
46 throw exception_openssl(OPKELE_CP_ "failed to BIO_flush()"); 46 throw exception_openssl(OPKELE_CP_ "failed to BIO_flush()");
47 char *rvd; 47 char *rvd;
48 long rvl = BIO_get_mem_data(bmem,&rvd); 48 long rvl = BIO_get_mem_data(bmem,&rvd);
49 string rv(rvd,rvl); 49 string rv(rvd,rvl);
50 BIO_free_all(b64); 50 BIO_free_all(b64);
51 return rv; 51 return rv;
52 }catch(...) { 52 }catch(...) {
53 if(b64) BIO_free_all(b64); 53 if(b64) BIO_free_all(b64);
54 throw; 54 throw;
55 } 55 }
56 } 56 }
57 57
58 void decode_base64(const string& data,vector<unsigned char>& rv) { 58 void decode_base64(const string& data,vector<unsigned char>& rv) {
59 BIO *b64 = 0, *bmem = 0; 59 BIO *b64 = 0, *bmem = 0;
60 rv.clear(); 60 rv.clear();
61 try { 61 try {
62 bmem = BIO_new_mem_buf((void*)data.data(),data.size()); 62 bmem = BIO_new_mem_buf((void*)data.data(),data.size());
63 if(!bmem) 63 if(!bmem)
64 throw exception_openssl(OPKELE_CP_ "failed to BIO_new_mem_buf()"); 64 throw exception_openssl(OPKELE_CP_ "failed to BIO_new_mem_buf()");
65 b64 = BIO_new(BIO_f_base64()); 65 b64 = BIO_new(BIO_f_base64());
66 if(!b64) 66 if(!b64)
67 throw exception_openssl(OPKELE_CP_ "failed to BIO_new() base64 decoder"); 67 throw exception_openssl(OPKELE_CP_ "failed to BIO_new() base64 decoder");
68 BIO_set_flags(b64,BIO_FLAGS_BASE64_NO_NL); 68 BIO_set_flags(b64,BIO_FLAGS_BASE64_NO_NL);
69 BIO_push(b64,bmem); 69 BIO_push(b64,bmem);
70 unsigned char tmp[512]; 70 unsigned char tmp[512];
71 size_t rb = 0; 71 size_t rb = 0;
72 while((rb=BIO_read(b64,tmp,sizeof(tmp)))>0) 72 while((rb=BIO_read(b64,tmp,sizeof(tmp)))>0)
73 rv.insert(rv.end(),tmp,&tmp[rb]); 73 rv.insert(rv.end(),tmp,&tmp[rb]);
74 BIO_free_all(b64); 74 BIO_free_all(b64);
75 }catch(...) { 75 }catch(...) {
76 if(b64) BIO_free_all(b64); 76 if(b64) BIO_free_all(b64);
77 throw; 77 throw;
78 } 78 }
79 } 79 }
80 80
81 /* 81 /*
82 * big numerics 82 * big numerics
83 */ 83 */
84 84
85 BIGNUM *base64_to_bignum(const string& b64) { 85 BIGNUM *base64_to_bignum(const string& b64) {
86 vector<unsigned char> bin; 86 vector<unsigned char> bin;
87 decode_base64(b64,bin); 87 decode_base64(b64,bin);
88 BIGNUM *rv = BN_bin2bn(&(bin.front()),bin.size(),0); 88 BIGNUM *rv = BN_bin2bn(&(bin.front()),bin.size(),0);
89 if(!rv) 89 if(!rv)
90 throw failed_conversion(OPKELE_CP_ "failed to BN_bin2bn()"); 90 throw failed_conversion(OPKELE_CP_ "failed to BN_bin2bn()");
91 return rv; 91 return rv;
92 } 92 }
93 93
94 BIGNUM *dec_to_bignum(const string& dec) { 94 BIGNUM *dec_to_bignum(const string& dec) {
95 BIGNUM *rv = 0; 95 BIGNUM *rv = 0;
96 if(!BN_dec2bn(&rv,dec.c_str())) 96 if(!BN_dec2bn(&rv,dec.c_str()))
97 throw failed_conversion(OPKELE_CP_ "failed to BN_dec2bn()"); 97 throw failed_conversion(OPKELE_CP_ "failed to BN_dec2bn()");
98 return rv; 98 return rv;
99 } 99 }
100 100
101 string bignum_to_base64(const BIGNUM *bn) { 101 string bignum_to_base64(const BIGNUM *bn) {
102 vector<unsigned char> bin(BN_num_bytes(bn)+1); 102 vector<unsigned char> bin(BN_num_bytes(bn)+1);
103 unsigned char *binptr = &(bin.front())+1; 103 unsigned char *binptr = &(bin.front())+1;
104 int l = BN_bn2bin(bn,binptr); 104 int l = BN_bn2bin(bn,binptr);
105 if(l && (*binptr)&0x80){ 105 if(l && (*binptr)&0x80){
106 (*(--binptr)) = 0; ++l; 106 (*(--binptr)) = 0; ++l;
107 } 107 }
108 return encode_base64(binptr,l); 108 return encode_base64(binptr,l);
109 } 109 }
110 110
111 /* 111 /*
112 * w3c times 112 * w3c times
113 */ 113 */
114 114
115 string time_to_w3c(time_t t) { 115 string time_to_w3c(time_t t) {
116 struct tm tm_t; 116 struct tm tm_t;
117 if(!gmtime_r(&t,&tm_t)) 117 if(!gmtime_r(&t,&tm_t))
118 throw failed_conversion(OPKELE_CP_ "failed to BN_dec2bn()"); 118 throw failed_conversion(OPKELE_CP_ "failed to BN_dec2bn()");
119 char rv[25]; 119 char rv[25];
120 if(!strftime(rv,sizeof(rv)-1,"%Y-%m-%dT%H:%M:%SZ",&tm_t)) 120 if(!strftime(rv,sizeof(rv)-1,"%Y-%m-%dT%H:%M:%SZ",&tm_t))
121 throw failed_conversion(OPKELE_CP_ "failed to strftime()"); 121 throw failed_conversion(OPKELE_CP_ "failed to strftime()");
122 return rv; 122 return rv;
123 } 123 }
124 124
125 time_t w3c_to_time(const string& w) { 125 time_t w3c_to_time(const string& w) {
126 int fraction; 126 int fraction;
127 struct tm tm_t; 127 struct tm tm_t;
128 memset(&tm_t,0,sizeof(tm_t)); 128 memset(&tm_t,0,sizeof(tm_t));
129 if( ( 129 if( (
130 sscanf( 130 sscanf(
131 w.c_str(), 131 w.c_str(),
132 "%04d-%02d-%02dT%02d:%02d:%02dZ", 132 "%04d-%02d-%02dT%02d:%02d:%02dZ",
133 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday, 133 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday,
134 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec 134 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec
135 ) != 6 135 ) != 6
136 ) && ( 136 ) && (
137 sscanf( 137 sscanf(
138 w.c_str(), 138 w.c_str(),
139 "%04d-%02d-%02dT%02d:%02d:%02d.%03dZ", 139 "%04d-%02d-%02dT%02d:%02d:%02d.%03dZ",
140 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday, 140 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday,
141 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec, 141 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec,
142 &fraction 142 &fraction
143 ) != 7 143 ) != 7
144 ) ) 144 ) )
145 throw failed_conversion(OPKELE_CP_ "failed to sscanf()"); 145 throw failed_conversion(OPKELE_CP_ "failed to sscanf()");
146 tm_t.tm_mon--; 146 tm_t.tm_mon--;
147 tm_t.tm_year-=1900; 147 tm_t.tm_year-=1900;
148 time_t rv = mktime(&tm_t); 148 time_t rv = mktime(&tm_t);
149 if(rv==(time_t)-1) 149 if(rv==(time_t)-1)
150 throw failed_conversion(OPKELE_CP_ "failed to mktime()"); 150 throw failed_conversion(OPKELE_CP_ "failed to mktime()");
151 return rv-timezone; 151 return rv-timezone;
152 } 152 }
153 153
154 /* 154 /*
155 * 155 *
156 */ 156 */
157 157
158 static inline bool isrfc3986unreserved(int c) { 158 static inline bool isrfc3986unreserved(int c) {
159 if(c<'-') return false; 159 if(c<'-') return false;
160 if(c<='.') return true; 160 if(c<='.') return true;
161 if(c<'0') return false; if(c<='9') return true; 161 if(c<'0') return false; if(c<='9') return true;
162 if(c<'A') return false; if(c<='Z') return true; 162 if(c<'A') return false; if(c<='Z') return true;
163 if(c<'_') return false; 163 if(c<'_') return false;
164 if(c=='_') return true; 164 if(c=='_') return true;
165 if(c<'a') return false; if(c<='z') return true; 165 if(c<'a') return false; if(c<='z') return true;
166 if(c=='~') return true; 166 if(c=='~') return true;
167 return false; 167 return false;
168 } 168 }
169 169
170 struct __url_encoder : public unary_function<char,void> { 170 struct __url_encoder : public unary_function<char,void> {
171 public: 171 public:
172 string& rv; 172 string& rv;
173 173
174 __url_encoder(string& r) : rv(r) { } 174 __url_encoder(string& r) : rv(r) { }
175 175
176 result_type operator()(argument_type c) { 176 result_type operator()(argument_type c) {
177 if(isrfc3986unreserved(c)) 177 if(isrfc3986unreserved(c))
178 rv += c; 178 rv += c;
179 else{ 179 else{
180 char tmp[4]; 180 char tmp[4];
181 snprintf(tmp,sizeof(tmp),"%%%02X", 181 snprintf(tmp,sizeof(tmp),"%%%02X",
182 (c&0xff)); 182 (c&0xff));
183 rv += tmp; 183 rv += tmp;
184 } 184 }
185 } 185 }
186 }; 186 };
187 187
188 string url_encode(const string& str) { 188 string url_encode(const string& str) {
189 string rv; 189 string rv;
190 for_each(str.begin(),str.end(), 190 for_each(str.begin(),str.end(),
191 __url_encoder(rv)); 191 __url_encoder(rv));
192 return rv; 192 return rv;
193 } 193 }
194 194
195 string url_decode(const string& str) {
196 string rv;
197 back_insert_iterator<string> ii(rv);
198 for(string::const_iterator i=str.begin(),ie=str.end();
199 i!=ie;++i) {
200 switch(*i) {
201 case '+':
202 *(ii++) = ' '; break;
203 case '%':
204 ++i;
205 static char tmp[3] = {0,0,0};
206 if(i==ie)
207 throw failed_conversion(OPKELE_CP_ "trailing percent in the url-encoded string");
208 tmp[0] == *(i++);
209 if(i==ie)
210 throw failed_conversion(OPKELE_CP_ "not enough hexadecimals after the percent sign in url-encoded string");
211 tmp[1] == *i;
212 if(!(isxdigit(tmp[0]) && isxdigit(tmp[1])))
213 throw failed_conversion(OPKELE_CP_ "non-hex follows percent in url-encoded string");
214 *(ii++) = strtol(tmp,0,16);
215 break;
216 default:
217 *(ii++) = *i; break;
218 }
219 }
220 return rv;
221 }
222
195 string attr_escape(const string& str) { 223 string attr_escape(const string& str) {
196 static const char *unsafechars = "<>&\n\"'"; 224 static const char *unsafechars = "<>&\n\"'";
197 string rv; 225 string rv;
198 string::size_type p=0; 226 string::size_type p=0;
199 while(true) { 227 while(true) {
200 string::size_type us = str.find_first_of(unsafechars,p); 228 string::size_type us = str.find_first_of(unsafechars,p);
201 if(us==string::npos) { 229 if(us==string::npos) {
202 if(p!=str.length()) 230 if(p!=str.length())
203 rv.append(str,p,str.length()-p); 231 rv.append(str,p,str.length()-p);
204 return rv; 232 return rv;
205 } 233 }
206 rv.append(str,p,us-p); 234 rv.append(str,p,us-p);
207 rv += "&#"; 235 rv += "&#";
208 rv += long_to_string((long)str[us]); 236 rv += long_to_string((long)str[us]);
209 rv += ';'; 237 rv += ';';
210 p = us+1; 238 p = us+1;
211 } 239 }
212 } 240 }
213 241
214 string long_to_string(long l) { 242 string long_to_string(long l) {
215 char rv[32]; 243 char rv[32];
216 int r=snprintf(rv,sizeof(rv),"%ld",l); 244 int r=snprintf(rv,sizeof(rv),"%ld",l);
217 if(r<0 || r>=(int)sizeof(rv)) 245 if(r<0 || r>=(int)sizeof(rv))
218 throw failed_conversion(OPKELE_CP_ "failed to snprintf()"); 246 throw failed_conversion(OPKELE_CP_ "failed to snprintf()");
219 return rv; 247 return rv;
220 } 248 }
221 249
222 long string_to_long(const string& s) { 250 long string_to_long(const string& s) {
223 char *endptr = 0; 251 char *endptr = 0;
224 long rv = strtol(s.c_str(),&endptr,10); 252 long rv = strtol(s.c_str(),&endptr,10);
225 if((!endptr) || endptr==s.c_str()) 253 if((!endptr) || endptr==s.c_str())
226 throw failed_conversion(OPKELE_CP_ "failed to strtol()"); 254 throw failed_conversion(OPKELE_CP_ "failed to strtol()");
227 return rv; 255 return rv;
228 } 256 }
229 257
230 /* 258 /*
231 * Normalize URL according to the rules, described in rfc 3986, section 6 259 * Normalize URL according to the rules, described in rfc 3986, section 6
232 * 260 *
233 * - uppercase hex triplets (e.g. %ab -> %AB) 261 * - uppercase hex triplets (e.g. %ab -> %AB)
234 * - lowercase scheme and host 262 * - lowercase scheme and host
235 * - decode %-encoded characters, specified as unreserved in rfc 3986, section 2.3, 263 * - decode %-encoded characters, specified as unreserved in rfc 3986, section 2.3,
236 * that is - [:alpha:][:digit:]._~- 264 * that is - [:alpha:][:digit:]._~-
237 * - remove dot segments 265 * - remove dot segments
238 * - remove empty and default ports 266 * - remove empty and default ports
239 * - if there's no path component, add '/' 267 * - if there's no path component, add '/'
240 */ 268 */
241 string rfc_3986_normalize_uri(const string& uri) { 269 string rfc_3986_normalize_uri(const string& uri) {
242 string rv; 270 string rv;
243 string::size_type ns = uri.find_first_not_of(data::_whitespace_chars); 271 string::size_type ns = uri.find_first_not_of(data::_whitespace_chars);
244 if(ns==string::npos) 272 if(ns==string::npos)
245 throw bad_input(OPKELE_CP_ "Can't normalize empty URI"); 273 throw bad_input(OPKELE_CP_ "Can't normalize empty URI");
246 string::size_type colon = uri.find(':',ns); 274 string::size_type colon = uri.find(':',ns);
247 if(colon==string::npos) 275 if(colon==string::npos)
248 throw bad_input(OPKELE_CP_ "No scheme specified in URI"); 276 throw bad_input(OPKELE_CP_ "No scheme specified in URI");
249 transform( 277 transform(
250 uri.begin()+ns, uri.begin()+colon+1, 278 uri.begin()+ns, uri.begin()+colon+1,
251 back_inserter(rv), ::tolower ); 279 back_inserter(rv), ::tolower );
252 bool s; 280 bool s;
253 string::size_type ul = uri.find_last_not_of(data::_whitespace_chars)+1; 281 string::size_type ul = uri.find_last_not_of(data::_whitespace_chars)+1;
254 if(ul <= (colon+3)) 282 if(ul <= (colon+3))
255 throw bad_input(OPKELE_CP_ "Unexpected end of URI being normalized encountered"); 283 throw bad_input(OPKELE_CP_ "Unexpected end of URI being normalized encountered");
256 if(uri[colon+1]!='/' || uri[colon+2]!='/') 284 if(uri[colon+1]!='/' || uri[colon+2]!='/')
257 throw bad_input(OPKELE_CP_ "Unexpected input in URI being normalized after scheme component"); 285 throw bad_input(OPKELE_CP_ "Unexpected input in URI being normalized after scheme component");
258 if(rv=="http:") 286 if(rv=="http:")
259 s = false; 287 s = false;
260 else if(rv=="https:") 288 else if(rv=="https:")
261 s = true; 289 s = true;
262 else{ 290 else{
263 /* TODO: support more schemes. e.g. xri. How do we normalize 291 /* TODO: support more schemes. e.g. xri. How do we normalize
264 * xri? 292 * xri?
265 */ 293 */
266 rv.append(uri,colon+1,ul-colon-1); 294 rv.append(uri,colon+1,ul-colon-1);
267 return rv; 295 return rv;
268 } 296 }
269 rv += "//"; 297 rv += "//";
270 string::size_type interesting = uri.find_first_of(":/#?",colon+3); 298 string::size_type interesting = uri.find_first_of(":/#?",colon+3);
271 if(interesting==string::npos) { 299 if(interesting==string::npos) {
272 transform( 300 transform(
273 uri.begin()+colon+3,uri.begin()+ul, 301 uri.begin()+colon+3,uri.begin()+ul,
274 back_inserter(rv), ::tolower ); 302 back_inserter(rv), ::tolower );
275 rv += '/'; return rv; 303 rv += '/'; return rv;
276 } 304 }
277 transform( 305 transform(
278 uri.begin()+colon+3,uri.begin()+interesting, 306 uri.begin()+colon+3,uri.begin()+interesting,
279 back_inserter(rv), ::tolower ); 307 back_inserter(rv), ::tolower );
280 bool qf = false; 308 bool qf = false;
281 char ic = uri[interesting]; 309 char ic = uri[interesting];
282 if(ic==':') { 310 if(ic==':') {
283 string::size_type ni = uri.find_first_of("/#?%",interesting+1); 311 string::size_type ni = uri.find_first_of("/#?%",interesting+1);
284 const char *nptr = uri.data()+interesting+1; 312 const char *nptr = uri.data()+interesting+1;
285 char *eptr = 0; 313 char *eptr = 0;
286 long port = strtol(nptr,&eptr,10); 314 long port = strtol(nptr,&eptr,10);
287 if( (port>0) && (port<65535) && port!=(s?443:80) ) { 315 if( (port>0) && (port<65535) && port!=(s?443:80) ) {
288 char tmp[8]; 316 char tmp[8];
289 snprintf(tmp,sizeof(tmp),":%ld",port); 317 snprintf(tmp,sizeof(tmp),":%ld",port);
290 rv += tmp; 318 rv += tmp;
291 } 319 }
292 if(ni==string::npos) { 320 if(ni==string::npos) {
293 rv += '/'; return rv; 321 rv += '/'; return rv;
294 } 322 }
295 interesting = ni; 323 interesting = ni;
296 }else if(ic!='/') { 324 }else if(ic!='/') {
297 rv += '/'; rv += ic; 325 rv += '/'; rv += ic;
298 qf = true; 326 qf = true;
299 ++interesting; 327 ++interesting;
300 } 328 }
301 string::size_type n = interesting; 329 string::size_type n = interesting;
302 char tmp[3] = { 0,0,0 }; 330 char tmp[3] = { 0,0,0 };
303 stack<string::size_type> psegs; psegs.push(rv.length()); 331 stack<string::size_type> psegs; psegs.push(rv.length());
304 string pseg; 332 string pseg;
305 for(;n<ul;) { 333 for(;n<ul;) {
306 string::size_type unsafe = uri.find_first_of(qf?"%":"%/?#",n); 334 string::size_type unsafe = uri.find_first_of(qf?"%":"%/?#",n);
307 if(unsafe==string::npos) { 335 if(unsafe==string::npos) {
308 pseg.append(uri,n,ul-n-1); n = ul-1; 336 pseg.append(uri,n,ul-n-1); n = ul-1;
309 }else{ 337 }else{
310 pseg.append(uri,n,unsafe-n); 338 pseg.append(uri,n,unsafe-n);
311 n = unsafe; 339 n = unsafe;
312 } 340 }
313 char c = uri[n++]; 341 char c = uri[n++];
314 if(c=='%') { 342 if(c=='%') {
315 if((n+1)>=ul) 343 if((n+1)>=ul)
316 throw bad_input(OPKELE_CP_ "Unexpected end of URI encountered while parsing percent-encoded character"); 344 throw bad_input(OPKELE_CP_ "Unexpected end of URI encountered while parsing percent-encoded character");
317 tmp[0] = uri[n++]; 345 tmp[0] = uri[n++];
318 tmp[1] = uri[n++]; 346 tmp[1] = uri[n++];
319 if(!( isxdigit(tmp[0]) && isxdigit(tmp[1]) )) 347 if(!( isxdigit(tmp[0]) && isxdigit(tmp[1]) ))
320 throw bad_input(OPKELE_CP_ "Invalid percent-encoded character in URI being normalized"); 348 throw bad_input(OPKELE_CP_ "Invalid percent-encoded character in URI being normalized");
321 int cc = strtol(tmp,0,16); 349 int cc = strtol(tmp,0,16);
322 if( isalpha(cc) || isdigit(cc) || strchr("._~-",cc) ) 350 if( isalpha(cc) || isdigit(cc) || strchr("._~-",cc) )
323 pseg += cc; 351 pseg += cc;
324 else{ 352 else{
325 pseg += '%'; 353 pseg += '%';
326 pseg += toupper(tmp[0]); pseg += toupper(tmp[1]); 354 pseg += toupper(tmp[0]); pseg += toupper(tmp[1]);
327 } 355 }
328 }else if(qf) { 356 }else if(qf) {
329 rv += pseg; rv += c; 357 rv += pseg; rv += c;
330 pseg.clear(); 358 pseg.clear();
331 }else if(n>=ul || strchr("?/#",c)) { 359 }else if(n>=ul || strchr("?/#",c)) {
332 if(pseg.empty() || pseg==".") { 360 if(pseg.empty() || pseg==".") {
333 }else if(pseg=="..") { 361 }else if(pseg=="..") {
334 if(psegs.size()>1) { 362 if(psegs.size()>1) {
335 rv.resize(psegs.top()); psegs.pop(); 363 rv.resize(psegs.top()); psegs.pop();
336 } 364 }
337 }else{ 365 }else{
338 psegs.push(rv.length()); 366 psegs.push(rv.length());
339 if(c!='/') { 367 if(c!='/') {
340 pseg += c; 368 pseg += c;
341 qf = true; 369 qf = true;
342 } 370 }
343 rv += '/'; rv += pseg; 371 rv += '/'; rv += pseg;
344 } 372 }
345 if(c=='/' && (n>=ul || strchr("?#",uri[n])) ) { 373 if(c=='/' && (n>=ul || strchr("?#",uri[n])) ) {
346 rv += '/'; 374 rv += '/';
347 if(n<ul) 375 if(n<ul)
348 qf = true; 376 qf = true;
349 }else if(strchr("?#",c)) { 377 }else if(strchr("?#",c)) {
350 if(psegs.size()==1 && psegs.top()==rv.length()) 378 if(psegs.size()==1 && psegs.top()==rv.length())
351 rv += '/'; 379 rv += '/';
352 if(pseg.empty()) 380 if(pseg.empty())
353 rv += c; 381 rv += c;
354 qf = true; 382 qf = true;
355 } 383 }
356 pseg.clear(); 384 pseg.clear();
357 }else{ 385 }else{
358 pseg += c; 386 pseg += c;
359 } 387 }
360 } 388 }
361 if(!pseg.empty()) { 389 if(!pseg.empty()) {
362 if(!qf) rv += '/'; 390 if(!qf) rv += '/';
363 rv += pseg; 391 rv += pseg;
364 } 392 }
365 return rv; 393 return rv;
366 } 394 }
367 395
368 string& strip_uri_fragment_part(string& u) { 396 string& strip_uri_fragment_part(string& u) {
369 string::size_type q = u.find('?'), f = u.find('#'); 397 string::size_type q = u.find('?'), f = u.find('#');
370 if(q==string::npos) { 398 if(q==string::npos) {
371 if(f!=string::npos) 399 if(f!=string::npos)
372 u.erase(f); 400 u.erase(f);
373 }else{ 401 }else{
374 if(f!=string::npos) { 402 if(f!=string::npos) {
375 if(f<q) 403 if(f<q)
376 u.erase(f,q-f); 404 u.erase(f,q-f);
377 else 405 else
378 u.erase(f); 406 u.erase(f);
379 } 407 }
380 } 408 }
381 return u; 409 return u;
382 } 410 }
383 411
384 bool uri_matches_realm(const string& uri,const string& realm) { 412 bool uri_matches_realm(const string& uri,const string& realm) {
385 string nrealm = opkele::util::rfc_3986_normalize_uri(realm); 413 string nrealm = opkele::util::rfc_3986_normalize_uri(realm);
386 string nu = opkele::util::rfc_3986_normalize_uri(uri); 414 string nu = opkele::util::rfc_3986_normalize_uri(uri);