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authorMichael Krelin <hacker@klever.net>2008-09-22 20:08:35 (UTC)
committer Michael Krelin <hacker@klever.net>2008-09-22 20:08:35 (UTC)
commit4522de61114018633f66492e2e9977cdb3108098 (patch) (unidiff)
tree2af460f9269163320098476d484dee867c4e8138
parent767b9926a3b2a2ab000415cc5d36df84dd90f13f (diff)
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A couple of bugfixes
- added missing 'return' statement to the forward_iterator_proxy operator=() - made temporary non-static for thread safety in url_decode() Thanks to Masato Kataoka of orenosv project Signed-off-by: Michael Krelin <hacker@klever.net>
Diffstat (more/less context) (show whitespace changes)
-rw-r--r--include/opkele/iterator.h2
-rw-r--r--lib/util.cc2
2 files changed, 2 insertions, 2 deletions
diff --git a/include/opkele/iterator.h b/include/opkele/iterator.h
index 8f86234..94da7e4 100644
--- a/include/opkele/iterator.h
+++ b/include/opkele/iterator.h
@@ -10,193 +10,193 @@ namespace opkele {
10 using std::forward_iterator_tag; 10 using std::forward_iterator_tag;
11 using std::output_iterator_tag; 11 using std::output_iterator_tag;
12 12
13 template <typename T> 13 template <typename T>
14 class basic_output_iterator_proxy_impl : public iterator<output_iterator_tag,T,void,T*,T&> { 14 class basic_output_iterator_proxy_impl : public iterator<output_iterator_tag,T,void,T*,T&> {
15 public: 15 public:
16 virtual ~basic_output_iterator_proxy_impl() { } 16 virtual ~basic_output_iterator_proxy_impl() { }
17 17
18 virtual basic_output_iterator_proxy_impl<T>* dup() const = 0; 18 virtual basic_output_iterator_proxy_impl<T>* dup() const = 0;
19 basic_output_iterator_proxy_impl<T>& operator*() { return *this; }; 19 basic_output_iterator_proxy_impl<T>& operator*() { return *this; };
20 virtual basic_output_iterator_proxy_impl<T>& operator=(const T& x) = 0; 20 virtual basic_output_iterator_proxy_impl<T>& operator=(const T& x) = 0;
21 21
22 }; 22 };
23 23
24 template<typename IT,typename T=typename IT::value_type> 24 template<typename IT,typename T=typename IT::value_type>
25 class output_iterator_proxy_impl : public basic_output_iterator_proxy_impl<T> { 25 class output_iterator_proxy_impl : public basic_output_iterator_proxy_impl<T> {
26 public: 26 public:
27 IT i; 27 IT i;
28 28
29 output_iterator_proxy_impl(const IT& _i) : i(_i) { } 29 output_iterator_proxy_impl(const IT& _i) : i(_i) { }
30 basic_output_iterator_proxy_impl<T>* dup() const { 30 basic_output_iterator_proxy_impl<T>* dup() const {
31 return new output_iterator_proxy_impl<IT,T>(i); } 31 return new output_iterator_proxy_impl<IT,T>(i); }
32 basic_output_iterator_proxy_impl<T>& operator=(const T& x) { 32 basic_output_iterator_proxy_impl<T>& operator=(const T& x) {
33 (*i) = x; return *this; } 33 (*i) = x; return *this; }
34 }; 34 };
35 35
36 template<typename T> 36 template<typename T>
37 class output_iterator_proxy : public iterator<output_iterator_tag,T,void,T*,T&> { 37 class output_iterator_proxy : public iterator<output_iterator_tag,T,void,T*,T&> {
38 public: 38 public:
39 basic_output_iterator_proxy_impl<T> *I; 39 basic_output_iterator_proxy_impl<T> *I;
40 40
41 template<typename IT> 41 template<typename IT>
42 output_iterator_proxy(const IT& i) 42 output_iterator_proxy(const IT& i)
43 : I(new output_iterator_proxy_impl<IT,T>(i)) { } 43 : I(new output_iterator_proxy_impl<IT,T>(i)) { }
44 output_iterator_proxy(const output_iterator_proxy<T>& x) 44 output_iterator_proxy(const output_iterator_proxy<T>& x)
45 : I(x.I->dup()) { } 45 : I(x.I->dup()) { }
46 ~output_iterator_proxy() { delete I; } 46 ~output_iterator_proxy() { delete I; }
47 47
48 output_iterator_proxy& operator=(const output_iterator_proxy<T>& x) { 48 output_iterator_proxy& operator=(const output_iterator_proxy<T>& x) {
49 delete I; I = x.I->dup(); } 49 delete I; I = x.I->dup(); }
50 50
51 output_iterator_proxy& operator*() { return *this; } 51 output_iterator_proxy& operator*() { return *this; }
52 output_iterator_proxy& operator=(const T& x) { 52 output_iterator_proxy& operator=(const T& x) {
53 (**I) = x; return *this; } 53 (**I) = x; return *this; }
54 54
55 output_iterator_proxy& operator++() { return *this; } 55 output_iterator_proxy& operator++() { return *this; }
56 output_iterator_proxy& operator++(int) { return *this; } 56 output_iterator_proxy& operator++(int) { return *this; }
57 }; 57 };
58 58
59 template <typename T,typename TR=T&,typename TP=T*> 59 template <typename T,typename TR=T&,typename TP=T*>
60 class basic_forward_iterator_proxy_impl : public iterator<forward_iterator_tag,T,void,TP,TR> { 60 class basic_forward_iterator_proxy_impl : public iterator<forward_iterator_tag,T,void,TP,TR> {
61 public: 61 public:
62 virtual ~basic_forward_iterator_proxy_impl() { } 62 virtual ~basic_forward_iterator_proxy_impl() { }
63 63
64 virtual basic_forward_iterator_proxy_impl<T,TR,TP>* dup() const = 0; 64 virtual basic_forward_iterator_proxy_impl<T,TR,TP>* dup() const = 0;
65 65
66 virtual bool operator==(const basic_forward_iterator_proxy_impl<T,TR,TP>& x) const = 0; 66 virtual bool operator==(const basic_forward_iterator_proxy_impl<T,TR,TP>& x) const = 0;
67 virtual bool operator!=(const basic_forward_iterator_proxy_impl<T,TR,TP>& x) const { 67 virtual bool operator!=(const basic_forward_iterator_proxy_impl<T,TR,TP>& x) const {
68 return !((*this)==x); } 68 return !((*this)==x); }
69 virtual TR operator*() const = 0; 69 virtual TR operator*() const = 0;
70 virtual TP operator->() const = 0; 70 virtual TP operator->() const = 0;
71 virtual void advance() = 0; 71 virtual void advance() = 0;
72 }; 72 };
73 73
74 template <typename IT> 74 template <typename IT>
75 class forward_iterator_proxy_impl : public basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer> { 75 class forward_iterator_proxy_impl : public basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer> {
76 public: 76 public:
77 IT i; 77 IT i;
78 78
79 forward_iterator_proxy_impl(const IT& _i) : i(_i) { } 79 forward_iterator_proxy_impl(const IT& _i) : i(_i) { }
80 80
81 virtual basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer>* dup() const { 81 virtual basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer>* dup() const {
82 return new forward_iterator_proxy_impl<IT>(i); } 82 return new forward_iterator_proxy_impl<IT>(i); }
83 83
84 virtual bool operator==(const basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer>& x) const { 84 virtual bool operator==(const basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer>& x) const {
85 return i==static_cast<const forward_iterator_proxy_impl<IT>*>(&x)->i; } 85 return i==static_cast<const forward_iterator_proxy_impl<IT>*>(&x)->i; }
86 virtual bool operator!=(const basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer>& x) const { 86 virtual bool operator!=(const basic_forward_iterator_proxy_impl<typename IT::value_type,typename IT::reference,typename IT::pointer>& x) const {
87 return i!=static_cast<const forward_iterator_proxy_impl<IT>*>(&x)->i; } 87 return i!=static_cast<const forward_iterator_proxy_impl<IT>*>(&x)->i; }
88 virtual typename IT::reference operator*() const { return *i; } 88 virtual typename IT::reference operator*() const { return *i; }
89 virtual typename IT::pointer operator->() const { return i.operator->(); } 89 virtual typename IT::pointer operator->() const { return i.operator->(); }
90 virtual void advance() { ++i; } 90 virtual void advance() { ++i; }
91 }; 91 };
92 92
93 template<typename T,typename TR=T&,typename TP=T*> 93 template<typename T,typename TR=T&,typename TP=T*>
94 class forward_iterator_proxy : public iterator<forward_iterator_tag,T,void,TP,TR> { 94 class forward_iterator_proxy : public iterator<forward_iterator_tag,T,void,TP,TR> {
95 public: 95 public:
96 basic_forward_iterator_proxy_impl<T,TR,TP> *I; 96 basic_forward_iterator_proxy_impl<T,TR,TP> *I;
97 97
98 template<typename IT> 98 template<typename IT>
99 forward_iterator_proxy(const IT& i) 99 forward_iterator_proxy(const IT& i)
100 : I(new forward_iterator_proxy_impl<IT>(i)) { } 100 : I(new forward_iterator_proxy_impl<IT>(i)) { }
101 forward_iterator_proxy(const forward_iterator_proxy<T,TR,TP>& x) 101 forward_iterator_proxy(const forward_iterator_proxy<T,TR,TP>& x)
102 : I(x.I->dup()) { } 102 : I(x.I->dup()) { }
103 ~forward_iterator_proxy() { delete I; } 103 ~forward_iterator_proxy() { delete I; }
104 104
105 forward_iterator_proxy& operator=(const forward_iterator_proxy<T,TR,TP>& x) { 105 forward_iterator_proxy& operator=(const forward_iterator_proxy<T,TR,TP>& x) {
106 delete I; I = x.I->dup(); } 106 delete I; I = x.I->dup(); return *this; }
107 107
108 bool operator==(const forward_iterator_proxy<T,TR,TP>& x) const { 108 bool operator==(const forward_iterator_proxy<T,TR,TP>& x) const {
109 return (*I)==(*(x.I)); } 109 return (*I)==(*(x.I)); }
110 bool operator!=(const forward_iterator_proxy<T,TR,TP>& x) const { 110 bool operator!=(const forward_iterator_proxy<T,TR,TP>& x) const {
111 return (*I)!=(*(x.I)); } 111 return (*I)!=(*(x.I)); }
112 112
113 TR operator*() const { 113 TR operator*() const {
114 return **I; } 114 return **I; }
115 TP operator->() const { 115 TP operator->() const {
116 return I->operator->(); } 116 return I->operator->(); }
117 117
118 forward_iterator_proxy<T,TR,TP>& operator++() { 118 forward_iterator_proxy<T,TR,TP>& operator++() {
119 I->advance(); return *this; } 119 I->advance(); return *this; }
120 forward_iterator_proxy<T,TR,TP>& operator++(int) { 120 forward_iterator_proxy<T,TR,TP>& operator++(int) {
121 forward_iterator_proxy<T,TR,TP> rv(*this); 121 forward_iterator_proxy<T,TR,TP> rv(*this);
122 I->advance(); return rv; } 122 I->advance(); return rv; }
123 }; 123 };
124 124
125 template<typename IT> 125 template<typename IT>
126 class basic_filterator : public iterator< 126 class basic_filterator : public iterator<
127 typename IT::iterator_category, 127 typename IT::iterator_category,
128 typename IT::value_type, 128 typename IT::value_type,
129 typename IT::difference_type, 129 typename IT::difference_type,
130 typename IT::pointer, 130 typename IT::pointer,
131 typename IT::reference> { 131 typename IT::reference> {
132 public: 132 public:
133 IT it; 133 IT it;
134 IT ei; 134 IT ei;
135 bool empty; 135 bool empty;
136 136
137 basic_filterator() : empty(true) { } 137 basic_filterator() : empty(true) { }
138 basic_filterator(const IT& _bi,const IT& _ei) 138 basic_filterator(const IT& _bi,const IT& _ei)
139 : it(_bi), ei(_ei) { empty = (it==ei); } 139 : it(_bi), ei(_ei) { empty = (it==ei); }
140 basic_filterator(const basic_filterator<IT>& x) 140 basic_filterator(const basic_filterator<IT>& x)
141 : it(x.it), ei(x.ei), empty(x.empty) { } 141 : it(x.it), ei(x.ei), empty(x.empty) { }
142 virtual ~basic_filterator() { } 142 virtual ~basic_filterator() { }
143 143
144 bool operator==(const basic_filterator<IT>& x) const { 144 bool operator==(const basic_filterator<IT>& x) const {
145 return empty?x.empty:(it==x.it); } 145 return empty?x.empty:(it==x.it); }
146 bool operator!=(const basic_filterator<IT>& x) const { 146 bool operator!=(const basic_filterator<IT>& x) const {
147 return empty!=x.empty || it!=x.it; } 147 return empty!=x.empty || it!=x.it; }
148 148
149 typename IT::reference operator*() const { 149 typename IT::reference operator*() const {
150 assert(!empty); 150 assert(!empty);
151 return *it; } 151 return *it; }
152 typename IT::pointer operator->() const { 152 typename IT::pointer operator->() const {
153 assert(!empty); 153 assert(!empty);
154 return it.operator->(); } 154 return it.operator->(); }
155 155
156 basic_filterator<IT>& operator++() { 156 basic_filterator<IT>& operator++() {
157 bool found = false; 157 bool found = false;
158 for(++it;!(it==ei || (found=is_interesting()));++it) ; 158 for(++it;!(it==ei || (found=is_interesting()));++it) ;
159 if(!found) empty=true; 159 if(!found) empty=true;
160 return *this; 160 return *this;
161 } 161 }
162 basic_filterator<IT> operator++(int) { 162 basic_filterator<IT> operator++(int) {
163 basic_filterator<IT> rv(*this); 163 basic_filterator<IT> rv(*this);
164 ++(*this); 164 ++(*this);
165 return rv; 165 return rv;
166 } 166 }
167 167
168 void prepare() { 168 void prepare() {
169 bool found = false; 169 bool found = false;
170 for(;!(it==ei || (found=is_interesting()));++it) ; 170 for(;!(it==ei || (found=is_interesting()));++it) ;
171 if(!found) empty = true; 171 if(!found) empty = true;
172 } 172 }
173 virtual bool is_interesting() const = 0; 173 virtual bool is_interesting() const = 0;
174 }; 174 };
175 175
176 template<typename IT,typename T=typename IT::value_type::first_type,typename TR=T&,typename TP=T*> 176 template<typename IT,typename T=typename IT::value_type::first_type,typename TR=T&,typename TP=T*>
177 class map_keys_iterator : public iterator< 177 class map_keys_iterator : public iterator<
178 typename IT::iterator_category, 178 typename IT::iterator_category,
179 T,void,TP,TR> { 179 T,void,TP,TR> {
180 public: 180 public:
181 typedef map_keys_iterator<IT,T,TR,TP> self_type; 181 typedef map_keys_iterator<IT,T,TR,TP> self_type;
182 IT it; 182 IT it;
183 IT ei; 183 IT ei;
184 bool empty; 184 bool empty;
185 185
186 map_keys_iterator() : empty(true) { } 186 map_keys_iterator() : empty(true) { }
187 map_keys_iterator(const IT& _bi, 187 map_keys_iterator(const IT& _bi,
188 const IT& _ei) 188 const IT& _ei)
189 : it(_bi), ei(_ei) { empty = (it==ei); } 189 : it(_bi), ei(_ei) { empty = (it==ei); }
190 map_keys_iterator(const self_type& x) 190 map_keys_iterator(const self_type& x)
191 : it(x.it), ei(x.ei), empty(x.empty) { } 191 : it(x.it), ei(x.ei), empty(x.empty) { }
192 192
193 bool operator==(const self_type& x) const { 193 bool operator==(const self_type& x) const {
194 return empty?x.empty:(it==x.it); } 194 return empty?x.empty:(it==x.it); }
195 bool operator!=(const self_type& x) const { 195 bool operator!=(const self_type& x) const {
196 return empty!=x.empty || it!=x.it; } 196 return empty!=x.empty || it!=x.it; }
197 197
198 TR operator*() const { 198 TR operator*() const {
199 assert(!empty); 199 assert(!empty);
200 return it->first; } 200 return it->first; }
201 TP operator->() const { 201 TP operator->() const {
202 assert(!empty); 202 assert(!empty);
diff --git a/lib/util.cc b/lib/util.cc
index a46ba2a..249eeed 100644
--- a/lib/util.cc
+++ b/lib/util.cc
@@ -117,200 +117,200 @@ namespace opkele {
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#ifndef HAVE_TIMEGM 125#ifndef HAVE_TIMEGM
126 static time_t timegm(struct tm *t) { 126 static time_t timegm(struct tm *t) {
127 char *tz = getenv("TZ"); 127 char *tz = getenv("TZ");
128 setenv("TZ","",1); tzset(); 128 setenv("TZ","",1); tzset();
129 time_t rv = mktime(t); 129 time_t rv = mktime(t);
130 if(tz) 130 if(tz)
131 setenv("TZ",tz,1); 131 setenv("TZ",tz,1);
132 else 132 else
133 unsetenv("TZ"); 133 unsetenv("TZ");
134 tzset(); 134 tzset();
135 return rv; 135 return rv;
136 } 136 }
137 #define timegm opkele::util::timegm 137 #define timegm opkele::util::timegm
138#endif /* HAVE_TIMEGM */ 138#endif /* HAVE_TIMEGM */
139 139
140 time_t w3c_to_time(const string& w) { 140 time_t w3c_to_time(const string& w) {
141 int fraction; 141 int fraction;
142 struct tm tm_t; 142 struct tm tm_t;
143 memset(&tm_t,0,sizeof(tm_t)); 143 memset(&tm_t,0,sizeof(tm_t));
144 if( ( 144 if( (
145 sscanf( 145 sscanf(
146 w.c_str(), 146 w.c_str(),
147 "%04d-%02d-%02dT%02d:%02d:%02dZ", 147 "%04d-%02d-%02dT%02d:%02d:%02dZ",
148 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday, 148 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday,
149 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec 149 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec
150 ) != 6 150 ) != 6
151 ) && ( 151 ) && (
152 sscanf( 152 sscanf(
153 w.c_str(), 153 w.c_str(),
154 "%04d-%02d-%02dT%02d:%02d:%02d.%03dZ", 154 "%04d-%02d-%02dT%02d:%02d:%02d.%03dZ",
155 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday, 155 &tm_t.tm_year,&tm_t.tm_mon,&tm_t.tm_mday,
156 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec, 156 &tm_t.tm_hour,&tm_t.tm_min,&tm_t.tm_sec,
157 &fraction 157 &fraction
158 ) != 7 158 ) != 7
159 ) ) 159 ) )
160 throw failed_conversion(OPKELE_CP_ "failed to sscanf()"); 160 throw failed_conversion(OPKELE_CP_ "failed to sscanf()");
161 tm_t.tm_mon--; 161 tm_t.tm_mon--;
162 tm_t.tm_year-=1900; 162 tm_t.tm_year-=1900;
163 time_t rv = timegm(&tm_t); 163 time_t rv = timegm(&tm_t);
164 if(rv==(time_t)-1) 164 if(rv==(time_t)-1)
165 throw failed_conversion(OPKELE_CP_ "failed to gmtime()"); 165 throw failed_conversion(OPKELE_CP_ "failed to gmtime()");
166 return rv; 166 return rv;
167 } 167 }
168 168
169 /* 169 /*
170 * 170 *
171 */ 171 */
172 172
173 static inline bool isrfc3986unreserved(int c) { 173 static inline bool isrfc3986unreserved(int c) {
174 if(c<'-') return false; 174 if(c<'-') return false;
175 if(c<='.') return true; 175 if(c<='.') return true;
176 if(c<'0') return false; if(c<='9') return true; 176 if(c<'0') return false; if(c<='9') return true;
177 if(c<'A') return false; if(c<='Z') return true; 177 if(c<'A') return false; if(c<='Z') return true;
178 if(c<'_') return false; 178 if(c<'_') return false;
179 if(c=='_') return true; 179 if(c=='_') return true;
180 if(c<'a') return false; if(c<='z') return true; 180 if(c<'a') return false; if(c<='z') return true;
181 if(c=='~') return true; 181 if(c=='~') return true;
182 return false; 182 return false;
183 } 183 }
184 184
185 struct __url_encoder : public unary_function<char,void> { 185 struct __url_encoder : public unary_function<char,void> {
186 public: 186 public:
187 string& rv; 187 string& rv;
188 188
189 __url_encoder(string& r) : rv(r) { } 189 __url_encoder(string& r) : rv(r) { }
190 190
191 result_type operator()(argument_type c) { 191 result_type operator()(argument_type c) {
192 if(isrfc3986unreserved(c)) 192 if(isrfc3986unreserved(c))
193 rv += c; 193 rv += c;
194 else{ 194 else{
195 char tmp[4]; 195 char tmp[4];
196 snprintf(tmp,sizeof(tmp),"%%%02X", 196 snprintf(tmp,sizeof(tmp),"%%%02X",
197 (c&0xff)); 197 (c&0xff));
198 rv += tmp; 198 rv += tmp;
199 } 199 }
200 } 200 }
201 }; 201 };
202 202
203 string url_encode(const string& str) { 203 string url_encode(const string& str) {
204 string rv; 204 string rv;
205 for_each(str.begin(),str.end(), 205 for_each(str.begin(),str.end(),
206 __url_encoder(rv)); 206 __url_encoder(rv));
207 return rv; 207 return rv;
208 } 208 }
209 209
210 string url_decode(const string& str) { 210 string url_decode(const string& str) {
211 string rv; 211 string rv;
212 back_insert_iterator<string> ii(rv); 212 back_insert_iterator<string> ii(rv);
213 char tmp[3]; tmp[2] = 0;
213 for(string::const_iterator i=str.begin(),ie=str.end(); 214 for(string::const_iterator i=str.begin(),ie=str.end();
214 i!=ie;++i) { 215 i!=ie;++i) {
215 switch(*i) { 216 switch(*i) {
216 case '+': 217 case '+':
217 *(ii++) = ' '; break; 218 *(ii++) = ' '; break;
218 case '%': 219 case '%':
219 ++i; 220 ++i;
220 static char tmp[3] = {0,0,0};
221 if(i==ie) 221 if(i==ie)
222 throw failed_conversion(OPKELE_CP_ "trailing percent in the url-encoded string"); 222 throw failed_conversion(OPKELE_CP_ "trailing percent in the url-encoded string");
223 tmp[0] = *(i++); 223 tmp[0] = *(i++);
224 if(i==ie) 224 if(i==ie)
225 throw failed_conversion(OPKELE_CP_ "not enough hexadecimals after the percent sign in url-encoded string"); 225 throw failed_conversion(OPKELE_CP_ "not enough hexadecimals after the percent sign in url-encoded string");
226 tmp[1] = *i; 226 tmp[1] = *i;
227 if(!(isxdigit(tmp[0]) && isxdigit(tmp[1]))) 227 if(!(isxdigit(tmp[0]) && isxdigit(tmp[1])))
228 throw failed_conversion(OPKELE_CP_ "non-hex follows percent in url-encoded string"); 228 throw failed_conversion(OPKELE_CP_ "non-hex follows percent in url-encoded string");
229 *(ii++) = (char)strtol(tmp,0,16); 229 *(ii++) = (char)strtol(tmp,0,16);
230 break; 230 break;
231 default: 231 default:
232 *(ii++) = *i; break; 232 *(ii++) = *i; break;
233 } 233 }
234 } 234 }
235 return rv; 235 return rv;
236 } 236 }
237 237
238 string attr_escape(const string& str) { 238 string attr_escape(const string& str) {
239 static const char *unsafechars = "<>&\n\"'"; 239 static const char *unsafechars = "<>&\n\"'";
240 string rv; 240 string rv;
241 string::size_type p=0; 241 string::size_type p=0;
242 while(true) { 242 while(true) {
243 string::size_type us = str.find_first_of(unsafechars,p); 243 string::size_type us = str.find_first_of(unsafechars,p);
244 if(us==string::npos) { 244 if(us==string::npos) {
245 if(p!=str.length()) 245 if(p!=str.length())
246 rv.append(str,p,str.length()-p); 246 rv.append(str,p,str.length()-p);
247 return rv; 247 return rv;
248 } 248 }
249 rv.append(str,p,us-p); 249 rv.append(str,p,us-p);
250 rv += "&#"; 250 rv += "&#";
251 rv += long_to_string((long)str[us]); 251 rv += long_to_string((long)str[us]);
252 rv += ';'; 252 rv += ';';
253 p = us+1; 253 p = us+1;
254 } 254 }
255 } 255 }
256 256
257 string long_to_string(long l) { 257 string long_to_string(long l) {
258 char rv[32]; 258 char rv[32];
259 int r=snprintf(rv,sizeof(rv),"%ld",l); 259 int r=snprintf(rv,sizeof(rv),"%ld",l);
260 if(r<0 || r>=(int)sizeof(rv)) 260 if(r<0 || r>=(int)sizeof(rv))
261 throw failed_conversion(OPKELE_CP_ "failed to snprintf()"); 261 throw failed_conversion(OPKELE_CP_ "failed to snprintf()");
262 return rv; 262 return rv;
263 } 263 }
264 264
265 long string_to_long(const string& s) { 265 long string_to_long(const string& s) {
266 char *endptr = 0; 266 char *endptr = 0;
267 long rv = strtol(s.c_str(),&endptr,10); 267 long rv = strtol(s.c_str(),&endptr,10);
268 if((!endptr) || endptr==s.c_str()) 268 if((!endptr) || endptr==s.c_str())
269 throw failed_conversion(OPKELE_CP_ "failed to strtol()"); 269 throw failed_conversion(OPKELE_CP_ "failed to strtol()");
270 return rv; 270 return rv;
271 } 271 }
272 272
273 /* 273 /*
274 * Normalize URL according to the rules, described in rfc 3986, section 6 274 * Normalize URL according to the rules, described in rfc 3986, section 6
275 * 275 *
276 * - uppercase hex triplets (e.g. %ab -> %AB) 276 * - uppercase hex triplets (e.g. %ab -> %AB)
277 * - lowercase scheme and host 277 * - lowercase scheme and host
278 * - decode %-encoded characters, specified as unreserved in rfc 3986, section 2.3, 278 * - decode %-encoded characters, specified as unreserved in rfc 3986, section 2.3,
279 * that is - [:alpha:][:digit:]._~- 279 * that is - [:alpha:][:digit:]._~-
280 * - remove dot segments 280 * - remove dot segments
281 * - remove empty and default ports 281 * - remove empty and default ports
282 * - if there's no path component, add '/' 282 * - if there's no path component, add '/'
283 */ 283 */
284 string rfc_3986_normalize_uri(const string& uri) { 284 string rfc_3986_normalize_uri(const string& uri) {
285 string rv; 285 string rv;
286 string::size_type ns = uri.find_first_not_of(data::_whitespace_chars); 286 string::size_type ns = uri.find_first_not_of(data::_whitespace_chars);
287 if(ns==string::npos) 287 if(ns==string::npos)
288 throw bad_input(OPKELE_CP_ "Can't normalize empty URI"); 288 throw bad_input(OPKELE_CP_ "Can't normalize empty URI");
289 string::size_type colon = uri.find(':',ns); 289 string::size_type colon = uri.find(':',ns);
290 if(colon==string::npos) 290 if(colon==string::npos)
291 throw bad_input(OPKELE_CP_ "No scheme specified in URI"); 291 throw bad_input(OPKELE_CP_ "No scheme specified in URI");
292 transform( 292 transform(
293 uri.begin()+ns, uri.begin()+colon+1, 293 uri.begin()+ns, uri.begin()+colon+1,
294 back_inserter(rv), ::tolower ); 294 back_inserter(rv), ::tolower );
295 bool s; 295 bool s;
296 string::size_type ul = uri.find_last_not_of(data::_whitespace_chars)+1; 296 string::size_type ul = uri.find_last_not_of(data::_whitespace_chars)+1;
297 if(ul <= (colon+3)) 297 if(ul <= (colon+3))
298 throw bad_input(OPKELE_CP_ "Unexpected end of URI being normalized encountered"); 298 throw bad_input(OPKELE_CP_ "Unexpected end of URI being normalized encountered");
299 if(uri[colon+1]!='/' || uri[colon+2]!='/') 299 if(uri[colon+1]!='/' || uri[colon+2]!='/')
300 throw bad_input(OPKELE_CP_ "Unexpected input in URI being normalized after scheme component"); 300 throw bad_input(OPKELE_CP_ "Unexpected input in URI being normalized after scheme component");
301 if(rv=="http:") 301 if(rv=="http:")
302 s = false; 302 s = false;
303 else if(rv=="https:") 303 else if(rv=="https:")
304 s = true; 304 s = true;
305 else{ 305 else{
306 /* TODO: support more schemes. e.g. xri. How do we normalize 306 /* TODO: support more schemes. e.g. xri. How do we normalize
307 * xri? 307 * xri?
308 */ 308 */
309 rv.append(uri,colon+1,ul-colon-1); 309 rv.append(uri,colon+1,ul-colon-1);
310 return rv; 310 return rv;
311 } 311 }
312 rv += "//"; 312 rv += "//";
313 string::size_type interesting = uri.find_first_of(":/#?",colon+3); 313 string::size_type interesting = uri.find_first_of(":/#?",colon+3);
314 if(interesting==string::npos) { 314 if(interesting==string::npos) {
315 transform( 315 transform(
316 uri.begin()+colon+3,uri.begin()+ul, 316 uri.begin()+colon+3,uri.begin()+ul,