@@ -8,7 +8,6 @@ discard block |
||
8 | 8 | /** |
9 | 9 | * Read WKT string into geometry objects |
10 | 10 | * |
11 | - * @param string $WKT A WKT string |
|
12 | 11 | * |
13 | 12 | * @return Geometry |
14 | 13 | */ |
@@ -184,11 +183,17 @@ discard block |
||
184 | 183 | else return $str; |
185 | 184 | } |
186 | 185 | |
186 | + /** |
|
187 | + * @param string $char |
|
188 | + */ |
|
187 | 189 | protected function beginsWith($str, $char) { |
188 | 190 | if (substr($str,0,strlen($char)) == $char) return TRUE; |
189 | 191 | else return FALSE; |
190 | 192 | } |
191 | 193 | |
194 | + /** |
|
195 | + * @param string $char |
|
196 | + */ |
|
192 | 197 | protected function endsWith($str, $char) { |
193 | 198 | if (substr($str,(0 - strlen($char))) == $char) return TRUE; |
194 | 199 | else return FALSE; |
@@ -193,6 +193,9 @@ |
||
193 | 193 | } |
194 | 194 | } |
195 | 195 | |
196 | + /** |
|
197 | + * @param Point $point |
|
198 | + */ |
|
196 | 199 | public function pointOnVertex($point) { |
197 | 200 | foreach($this->getPoints() as $vertex) { |
198 | 201 | if ($point->equals($vertex)) { |
@@ -41,6 +41,10 @@ |
||
41 | 41 | print "Testing Done!"; |
42 | 42 | } |
43 | 43 | |
44 | +/** |
|
45 | + * @param resource $connection |
|
46 | + * @param string $format |
|
47 | + */ |
|
44 | 48 | function test_postgis($name, $type, $geom, $connection, $format) { |
45 | 49 | global $table; |
46 | 50 |
@@ -112,6 +112,9 @@ discard block |
||
112 | 112 | $geometry->m(); |
113 | 113 | } |
114 | 114 | |
115 | +/** |
|
116 | + * @param string $input |
|
117 | + */ |
|
115 | 118 | function test_adapters($geometry, $format, $input) { |
116 | 119 | // Test adapter output and input. Do a round-trip and re-test |
117 | 120 | foreach (geoPHP::getAdapterMap() as $adapter_key => $adapter_class) { |
@@ -234,6 +237,9 @@ discard block |
||
234 | 237 | } |
235 | 238 | } |
236 | 239 | |
240 | +/** |
|
241 | + * @param string $value |
|
242 | + */ |
|
237 | 243 | function test_detection($value, $format, $file) { |
238 | 244 | $detected = geoPHP::detectFormat($value); |
239 | 245 | if ($detected != $format) { |
@@ -58,6 +58,10 @@ |
||
58 | 58 | } |
59 | 59 | } |
60 | 60 | |
61 | + /** |
|
62 | + * @param string $method_name |
|
63 | + * @param string|null $argument |
|
64 | + */ |
|
61 | 65 | function _methods_tester($geometry, $method_name, $argument) { |
62 | 66 | |
63 | 67 | if (!method_exists($geometry, $method_name)) { |
@@ -122,6 +122,9 @@ |
||
122 | 122 | return self::array_random( empty( $lang ) ? self::$languages : $lang ); |
123 | 123 | } |
124 | 124 | |
125 | + /** |
|
126 | + * @param string $os |
|
127 | + */ |
|
125 | 128 | private static function get_processor( $os ) |
126 | 129 | { |
127 | 130 | return self::array_random( self::$processors[$os] ); |
@@ -319,6 +319,9 @@ |
||
319 | 319 | return false; |
320 | 320 | } |
321 | 321 | |
322 | + /** |
|
323 | + * @param string $aircraft_icao |
|
324 | + */ |
|
322 | 325 | public function fromIvaoMtl($aircraft_icao,$airline_icao) { |
323 | 326 | $Common = new Common(); |
324 | 327 | //echo "\n".'SEARCH IMAGE : http://mtlcatalog.ivao.aero/images/aircraft/'.$aircraft_icao.$airline_icao.'.jpg'; |
@@ -146,20 +146,6 @@ discard block |
||
146 | 146 | |
147 | 147 | /** Predict first pass after a certain time. |
148 | 148 | * |
149 | - * @param Predict_Sat $sat The satellite data. |
|
150 | - * @param Predict_QTH $qth The observer's location data. |
|
151 | - * @param float $start Starting time. |
|
152 | - * @param int $maxdt The maximum number of days to look ahead (0 for no limit). |
|
153 | - * |
|
154 | - * @return Predict_Pass or NULL if there was an error. |
|
155 | - * |
|
156 | - * This function will find the first upcoming pass with AOS no earlier than |
|
157 | - * t = start and no later than t = (start+maxdt). |
|
158 | - * |
|
159 | - * note For no time limit use maxdt = 0.0 |
|
160 | - * |
|
161 | - * note the data in sat will be corrupt (future) and must be refreshed |
|
162 | - * by the caller, if the caller will need it later on |
|
163 | 149 | */ |
164 | 150 | public function get_pass(Predict_Sat $sat_in, Predict_QTH $qth, $start, $maxdt) |
165 | 151 | { |
@@ -407,7 +393,7 @@ discard block |
||
407 | 393 | * @param Predict_QTH $qth The observer's location (QTH) data. |
408 | 394 | * @param float $start The julian date where calculation should start. |
409 | 395 | * @param int $maxdt The upper time limit in days (0.0 = no limit) |
410 | - * @return The julain date of the next AOS or 0.0 if the satellite has no AOS. |
|
396 | + * @return double julain date of the next AOS or 0.0 if the satellite has no AOS. |
|
411 | 397 | * |
412 | 398 | * This function finds the time of AOS for the first coming pass taking place |
413 | 399 | * no earlier that start. |
@@ -563,7 +549,7 @@ discard block |
||
563 | 549 | * @param Predict_QTH $qth The QTH observer location data. |
564 | 550 | * @param float $start The time where calculation should start. (Julian Date) |
565 | 551 | * @param int $maxdt The upper time limit in days (0.0 = no limit) |
566 | - * @return The time (julian date) of the next LOS or 0.0 if the satellite has no LOS. |
|
552 | + * @return double time (julian date) of the next LOS or 0.0 if the satellite has no LOS. |
|
567 | 553 | * |
568 | 554 | * This function finds the time of LOS for the first coming pass taking place |
569 | 555 | * no earlier that start. |
@@ -648,7 +634,7 @@ discard block |
||
648 | 634 | * @param Predict_Sat $sat The satellite to find AOS for. |
649 | 635 | * @param Predict_QTH $qth The ground station. |
650 | 636 | * @param float $start Start time, prefereably now. |
651 | - * @return The time of the previous AOS or 0.0 if the satellite has no AOS. |
|
637 | + * @return double time of the previous AOS or 0.0 if the satellite has no AOS. |
|
652 | 638 | * |
653 | 639 | * This function can be used to find the AOS time in the past of the |
654 | 640 | * current pass. |
@@ -42,6 +42,10 @@ discard block |
||
42 | 42 | } |
43 | 43 | |
44 | 44 | /* Returns arccosine of rgument */ |
45 | + |
|
46 | + /** |
|
47 | + * @param double $arg |
|
48 | + */ |
|
45 | 49 | public static function ArcCos($arg) |
46 | 50 | { |
47 | 51 | return Predict::pio2 - self::ArcSin($arg); |
@@ -68,6 +72,10 @@ discard block |
||
68 | 72 | } |
69 | 73 | |
70 | 74 | /* Multiplies the vector v1 by the scalar k to produce the vector v2 */ |
75 | + |
|
76 | + /** |
|
77 | + * @param integer $k |
|
78 | + */ |
|
71 | 79 | public static function Scalar_Multiply($k, Predict_Vector $v1, Predict_Vector $v2) |
72 | 80 | { |
73 | 81 | $v2->x = $k * $v1->x; |
@@ -155,6 +163,10 @@ discard block |
||
155 | 163 | } |
156 | 164 | |
157 | 165 | /* Returns arg1 mod arg2 */ |
166 | + |
|
167 | + /** |
|
168 | + * @param double $arg1 |
|
169 | + */ |
|
158 | 170 | public static function Modulus($arg1, $arg2) |
159 | 171 | { |
160 | 172 | $ret_val = $arg1; |
@@ -169,6 +181,10 @@ discard block |
||
169 | 181 | } |
170 | 182 | |
171 | 183 | /* Returns fractional part of double argument */ |
184 | + |
|
185 | + /** |
|
186 | + * @param double $arg |
|
187 | + */ |
|
172 | 188 | public static function Frac($arg) |
173 | 189 | { |
174 | 190 | return $arg - floor($arg); |