kopia lustrzana https://github.com/magicbug/Cloudlog
250 wiersze
6.9 KiB
PHP
250 wiersze
6.9 KiB
PHP
<?php if ( ! defined('BASEPATH')) exit('No direct script access allowed');
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class Qra {
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/*
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* Class Description: QRA handles manipulation of the Gridsquares used within amateur radio
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*
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* Units of measurement are the following
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*
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* Info: Distance Function
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*
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* M = Miles
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* K = Kilometers
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* N = Nautical Miles
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*/
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// Name: qra2latlong
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// Task: convert qra to lat/long
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function qra2latlong($strQRA)
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{
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return qra2latlong($strQRA);
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}
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// calculate the bearing between two squares
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function bearing($tx, $rx, $unit = 'M') {
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$my = qra2latlong($tx);
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$stn = qra2latlong($rx);
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if ($my !== false && $stn !== false ) {
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$bearing = bearing($my[0], $my[1], $stn[0], $stn[1], $unit);
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return $bearing;
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} else {
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return false;
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}
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}
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/*
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* Function: calculate the distance between two gridsqaures
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*
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* Inputs are QRA's TX and TX and the unit
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*
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*/
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function distance($tx, $rx, $unit = 'M') {
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// Calc LatLongs
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$my = qra2latlong($tx);
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$stn = qra2latlong($rx);
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// Check if qra2latlong returned valid values
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if ($my && $stn) {
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// Feed in Lat Longs plus the unit type
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try
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{
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$total_distance = distance($my[0], $my[1], $stn[0], $stn[1], $unit);
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}
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catch (Exception $e)
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{
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$total_distance = 0;
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}
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// Return the distance
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return $total_distance;
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} else {
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// Handle the case where qra2latlong did not return valid values
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return 0;
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}
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}
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/*
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* Function returns just the bearing
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* Input locator1 and locator2
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*/
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function get_bearing($tx, $rx) {
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$my = qra2latlong($tx);
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$stn = qra2latlong($rx);
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return get_bearing($my[0], $my[1], $stn[0], $stn[1]);
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}
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/*
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Find the Midpoint between two gridsquares using lat / long
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Needs following passed
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$coords[]=array('lat' => '53.344104','lng'=>'-6.2674937');
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$coords[]=array('lat' => '51.5081289','lng'=>'-0.128005');
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*/
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function get_midpoint($coords)
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{
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$count_coords = count($coords);
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$xcos=0.0;
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$ycos=0.0;
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$zsin=0.0;
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foreach ($coords as $lnglat)
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{
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$lat = $lnglat['lat'] * pi() / 180;
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$lon = $lnglat['lng'] * pi() / 180;
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$acos = cos($lat) * cos($lon);
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$bcos = cos($lat) * sin($lon);
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$csin = sin($lat);
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$xcos += $acos;
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$ycos += $bcos;
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$zsin += $csin;
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}
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$xcos /= $count_coords;
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$ycos /= $count_coords;
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$zsin /= $count_coords;
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$lon = atan2($ycos, $xcos);
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$sqrt = sqrt($xcos * $xcos + $ycos * $ycos);
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$lat = atan2($zsin, $sqrt);
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return array($lat * 180 / pi(), $lon * 180 / pi());
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}
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}
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function distance($lat1, $lon1, $lat2, $lon2, $unit = 'M') {
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$theta = $lon1 - $lon2;
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$dist = sin(deg2rad($lat1)) * sin(deg2rad($lat2)) + cos(deg2rad($lat1)) * cos(deg2rad($lat2)) * cos(deg2rad($theta));
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$dist = acos($dist);
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$dist = rad2deg($dist);
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$dist = $dist * 60 * 1.1515;
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if ($unit == "K") {
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$dist *= 1.609344;
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} else if ($unit == "N") {
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$dist *= 0.8684;
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}
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return round($dist, 1);
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}
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function bearing($lat1, $lon1, $lat2, $lon2, $unit = 'M') {
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$dist = distance($lat1, $lon1, $lat2, $lon2, $unit);
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$dist = round($dist, 0);
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$bearing = get_bearing($lat1, $lon1, $lat2, $lon2);
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$dirs = array("N","E","S","W");
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$rounded = round($bearing / 22.5) % 16;
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if (($rounded % 4) == 0) {
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$dir = $dirs[$rounded / 4];
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} else {
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$dir = $dirs[2 * floor(((floor($rounded / 4) + 1) % 4) / 2)];
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$dir .= $dirs[1 + 2 * floor($rounded / 8)];
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#if ($rounded % 2 == 1)
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# $dir = $dirs[round_to_int($rounded/4) % 4] . "-" . $dir;
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}
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$var_dist = "";
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#return $dir;
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if (isset($dist)) {
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$var_dist = $dist;
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switch ($unit) {
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case 'M':
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$var_dist .= " miles";
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break;
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case 'N':
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$var_dist .= " nautic miles";
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break;
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case 'K':
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$var_dist .= " kilometers";
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break;
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}
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}
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return round($bearing, 0)."º ".$dir." ".$var_dist;
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}
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function get_bearing($lat1, $lon1, $lat2, $lon2) {
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return (int)(rad2deg(atan2(sin(deg2rad($lon2) - deg2rad($lon1)) * cos(deg2rad($lat2)), cos(deg2rad($lat1)) * sin(deg2rad($lat2)) - sin(deg2rad($lat1)) * cos(deg2rad($lat2)) * cos(deg2rad($lon2) - deg2rad($lon1)))) + 360) % 360;
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}
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function qra2latlong($strQRA) {
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if (substr_count($strQRA, ',') > 0) {
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if (substr_count($strQRA, ',') == 3) {
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// Handle grid corners
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$grids = explode(',', $strQRA);
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$gridlengths = array(strlen($grids[0]), strlen($grids[1]), strlen($grids[2]), strlen($grids[3]));
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$same = array_count_values($gridlengths);
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if (count($same) != 1) {
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return false;
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}
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$coords = array(0, 0);
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for($i=0; $i<4; $i++) {
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$cornercoords[$i] = qra2latlong($grids[$i]);
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$coords[0] += $cornercoords[$i][0];
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$coords[1] += $cornercoords[$i][1];
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}
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return array (round($coords[0]/4), round($coords[1]/4));
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} else if (substr_count($strQRA, ',') == 1) {
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// Handle grid lines
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$grids = explode(',', $strQRA);
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if (strlen($grids[0]) != strlen($grids[1])) {
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return false;
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}
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$coords = array(0, 0);
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for($i=0; $i<2; $i++) {
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$linecoords[$i] = qra2latlong($grids[$i]);
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}
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if ($linecoords[0][0] != $linecoords[1][0]) {
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$coords[0] = round((($linecoords[0][0] + $linecoords[1][0]) / 2),1);
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} else {
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$coords[0] = round($linecoords[0][0],1);
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}
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if ($linecoords[0][1] != $linecoords[1][1]) {
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$coords[1] = round(($linecoords[0][1] + $linecoords[1][1]) / 2);
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} else {
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$coords[1] = round($linecoords[0][1]);
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}
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return $coords;
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} else {
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return false;
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}
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}
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if ((strlen($strQRA) % 2 == 0) && (strlen($strQRA) <= 8)) { // Check if QRA is EVEN (the % 2 does that) and smaller/equal 8
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$strQRA = strtoupper($strQRA);
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if (strlen($strQRA) == 4) $strQRA .= "MM"; // Only 4 Chars? Fill with center "MM"
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if (strlen($strQRA) == 6) $strQRA .= "55"; // Only 6 Chars? Fill with center "55"
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if (!preg_match('/^[A-R]{2}[0-9]{2}[A-X]{2}[0-9]{2}$/', $strQRA)) {
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return false;
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}
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list($a, $b, $c, $d, $e, $f, $g, $h) = str_split($strQRA, 1); // Maidenhead is always alternating. e.g. "AA00AA00AA00" - doesn't matter how deep. 2 chars, 2 numbers, etc.
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$a = ord($a) - ord('A');
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$b = ord($b) - ord('A');
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$c = ord($c) - ord('0');
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$d = ord($d) - ord('0');
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$e = ord($e) - ord('A');
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$f = ord($f) - ord('A');
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$g = ord($g) - ord('0');
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$h = ord($h) - ord('0');
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$nLong = ($a*20) + ($c*2) + (($e+0.5)/12) + (($g-5)/120) - 180; // the 4th pair is "in the middle", so we've to substract 5
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$nLat = ($b*10) + $d + (($f+0.5)/24) + (($h-5)/240) - 90;
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$arLatLong = array($nLat, $nLong);
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return $arLatLong;
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} else {
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return array(0, 0);
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}
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}
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/* End of file Qra.php */
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