@ 2014-09-09T17:28:28Z <?php
//require_once (dirname(__FILE__) . "/sha256.php");
$AWS_ACCESS_KEY = 'AKIAIDMODWRW3CRDO2BA';
$AWS_PRIVATE_KEY = 'kMuJRvcejqzMvmoZWsURIDKkteVTXa3ReDXQ6RqE';
$AWS_REGION = 'us-west-2';
$TOPIC_ARN_UPDATECUS = 'arn:aws:sns:us-west-2:791920038536:updateCusNumberRequest';
$endpoints = array(
'US-EAST-1' => 'sns.us-east-1.amazonaws.com',
'US-WEST-1' => 'sns.us-west-1.amazonaws.com',
'US-WEST-2' => 'sns.us-west-2.amazonaws.com',
'EU-WEST-1' => 'sns.eu-west-1.amazonaws.com',
'AP-SE-1' => 'sns.ap-southeast-1.amazonaws.com',
'AP-NE-1' => 'sns.ap-northeast-1.amazonaws.com',
'SA-EAST-1' => 'sns.sa-east-1.amazonaws.com'
);
$endpoint = $endpoints[strtoupper($AWS_REGION)];
$protocol = 'https://';
$email = '';
$cus_id = '';
/*if ($argc >= 3)
{
$email = $argv[2];
$cus_id = $argv[3];
}*/
$message = array(
'topic' => 'updateCusNumberRequest',
'email' => $email,
'cus_id' => $cus_id
);
$params = array(
'TopicArn' => $TOPIC_ARN_UPDATECUS,
'Message' => php_compat_json_encode($message)
);
$params['Action'] = 'Publish';
$params['AWSAccessKeyId'] = $AWS_ACCESS_KEY;
$params['Timestamp'] = gmdate('Y-m-d\TH:i:s\Z');
$params['SignatureVersion'] = 2;
$params['SignatureMethod'] = 'HmacSHA256';
uksort($params, 'strnatcmp');
$queryString = '';
foreach ($params as $key => $val) {
$queryString .= "&{$key}=".rawurlencode($val);
}
$queryString = substr($queryString, 1);
$requestString = "GET\n"
. $endpoint."\n"
. "/\n"
. $queryString;
$params['Signature'] = base64_encode(
php_compat_hash_hmac('sha256', $requestString, $AWS_PRIVATE_KEY, true)
);
$request = $protocol . $endpoint . '/?' . php_compat_http_build_query($params);
var_dump($request);
/* php4 compatible functions */
//http://bit.ly/1qd0Usl
function php_compat_hash_hmac($algo, $data, $key, $raw_output = false)
{
// Block size (byte) for MD5, SHA-1 and SHA-256.
$blocksize = 64;
$ipad = str_repeat("\x36", $blocksize);
$opad = str_repeat("\x5c", $blocksize);
if (strlen($key) > $blocksize) {
$key = php_compat_hash($algo, $key, true);
} else {
$key = str_pad($key, $blocksize, "\x00");
}
$ipad ^= $key;
$opad ^= $key;
return php_compat_hash($algo, $opad . php_compat_hash($algo, $ipad . $data, true), $raw_output);
}
//http://bit.ly/1nIYD2h
function php_compat_hash($algo, $data, $raw_output = false)
{
$hash = sha256($data);
if ($raw_output) {
return pack('H*', $hash);
} else {
echo "returnhash";
return $hash;
}
}
//http://bit.ly/1uH6OR0
function php_compat_json_encode($a=false)
{
if (is_null($a)) return 'null';
if ($a === false) return 'false';
if ($a === true) return 'true';
if (is_scalar($a))
{
if (is_float($a))
{
// Always use "." for floats.
return floatval(str_replace(",", ".", strval($a)));
}
if (is_string($a))
{
$jsonReplaces = array(array("\\", "/", "\n", "\t", "\r", "\b", "\f", '"'), array('\\\\', '\\/', '\\n', '\\t', '\\r', '\\b', '\\f', '\"'));
return '"' . str_replace($jsonReplaces[0], $jsonReplaces[1], $a) . '"';
}
else
return $a;
}
$isList = true;
for ($i = 0, reset($a); $i < count($a); $i++, next($a))
{
if (key($a) !== $i)
{
$isList = false;
break;
}
}
$result = array();
if ($isList)
{
foreach ($a as $v) $result[] = php_compat_json_encode($v);
return '[' . join(',', $result) . ']';
}
else
{
foreach ($a as $k => $v) $result[] = php_compat_json_encode($k).':'.php_compat_json_encode($v);
return '{' . join(',', $result) . '}';
}
}
//http://bit.ly/1q8GwII
function php_compat_http_build_query($data, $prefix = null, $sep = '', $key = '')
{
$ret = array();
foreach ((array )$data as $k => $v) {
$k = urlencode($k);
if (is_int($k) && $prefix != null) {
$k = $prefix . $k;
}
if (!empty($key)) {
$k = $key . "[" . $k . "]";
}
if (is_array($v) || is_object($v)) {
array_push($ret, http_build_query($v, "", $sep, $k));
} else {
array_push($ret, $k . "=" . urlencode($v));
}
}
if (empty($sep)) {
$sep = ini_get("arg_separator.output");
}
return implode($sep, $ret);
}
/*
* Transparent SHA-256 Implementation for PHP 4 and PHP 5
*
* Author: Perry McGee (pmcgee@nanolink.ca)
* Website: http://www.nanolink.ca/pub/sha256
*
* Copyright (C) 2006,2007,2008,2009 Nanolink Solutions
*
* Created: Feb 11, 2006
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
* or see <http://www.gnu.org/licenses/>.
*
* Include:
*
* require_once("[path/]sha256.inc.php");
*
* Usage Options:
*
* 1) $shaStr = hash('sha256', $string_to_hash);
*
* 2) $shaStr = sha256($string_to_hash[, bool ignore_php5_hash = false]);
*
* 3) $obj = new nanoSha2([bool $upper_case_output = false]);
* $shaStr = $obj->hash($string_to_hash[, bool $ignore_php5_hash = false]);
*
* Reference: http://csrc.nist.gov/groups/ST/toolkit/secure_hashing.html
*
* 2007-12-13: Cleaned up for initial public release
* 2008-05-10: Moved all helper functions into a class. API access unchanged.
* 2009-06-23: Created abstraction of hash() routine
* 2009-07-23: Added detection of 32 vs 64bit platform, and patches.
* Ability to define "_NANO_SHA2_UPPER" to yeild upper case hashes.
* 2009-08-01: Added ability to attempt to use mhash() prior to running pure
* php code.
*
* NOTE: Some sporadic versions of PHP do not handle integer overflows the
* same as the majority of builds. If you get hash results of:
* 7fffffff7fffffff7fffffff7fffffff7fffffff7fffffff7fffffff7fffffff
*
* If you do not have permissions to change PHP versions (if you did
* you'd probably upgrade to PHP 5 anyway) it is advised you install a
* module that will allow you to use their hashing routines, examples are:
* - mhash module : http://ca3.php.net/mhash
* - Suhosin : http://www.hardened-php.net/suhosin/
*
* If you install the Suhosin module, this script will transparently
* use their routine and define the PHP routine as _nano_sha256().
*
* If the mhash module is present, and $ignore_php5_hash = false the
* script will attempt to use the output from mhash prior to running
* the PHP code.
*/
if (!class_exists('nanoSha2'))
{
class nanoSha2
{
// php 4 - 5 compatable class properties
var $toUpper;
var $platform;
// Php 4 - 6 compatable constructor
function nanoSha2($toUpper = false) {
// Determine if the caller wants upper case or not.
$this->toUpper = is_bool($toUpper)
? $toUpper
: ((defined('_NANO_SHA2_UPPER')) ? true : false);
// Deteremine if the system is 32 or 64 bit.
$tmpInt = (int)4294967295;
$this->platform = ($tmpInt > 0) ? 64 : 32;
}
// Do the SHA-256 Padding routine (make input a multiple of 512 bits)
function char_pad($str)
{
$tmpStr = $str;
$l = strlen($tmpStr)*8; // # of bits from input string
$tmpStr .= "\x80"; // append the "1" bit followed by 7 0's
$k = (512 - (($l + 8 + 64) % 512)) / 8; // # of 0 bytes to append
$k += 4; // PHP Strings will never exceed (2^31)-1, 1st 32bits of
// the 64-bit value representing $l can be all 0's
for ($x = 0; $x < $k; $x++) {
$tmpStr .= "\0";
}
// append the 32-bits representing # of bits from input string ($l)
$tmpStr .= chr((($l>>24) & 0xFF));
$tmpStr .= chr((($l>>16) & 0xFF));
$tmpStr .= chr((($l>>8) & 0xFF));
$tmpStr .= chr(($l & 0xFF));
return $tmpStr;
}
// Here are the bitwise and functions as defined in FIPS180-2 Standard
function addmod2n($x, $y, $n = 4294967296) // Z = (X + Y) mod 2^32
{
$mask = 0x80000000;
if ($x < 0) {
$x &= 0x7FFFFFFF;
$x = (float)$x + $mask;
}
if ($y < 0) {
$y &= 0x7FFFFFFF;
$y = (float)$y + $mask;
}
$r = $x + $y;
if ($r >= $n) {
while ($r >= $n) {
$r -= $n;
}
}
return (int)$r;
}
// Logical bitwise right shift (PHP default is arithmetic shift)
function SHR($x, $n) // x >> n
{
if ($n >= 32) { // impose some limits to keep it 32-bit
return (int)0;
}
if ($n <= 0) {
return (int)$x;
}
$mask = 0x40000000;
if ($x < 0) {
$x &= 0x7FFFFFFF;
$mask = $mask >> ($n-1);
return ($x >> $n) | $mask;
}
return (int)$x >> (int)$n;
}
function ROTR($x, $n) { return (int)(($this->SHR($x, $n) | ($x << (32-$n)) & 0xFFFFFFFF)); }
function Ch($x, $y, $z) { return ($x & $y) ^ ((~$x) & $z); }
function Maj($x, $y, $z) { return ($x & $y) ^ ($x & $z) ^ ($y & $z); }
function Sigma0($x) { return (int) ($this->ROTR($x, 2)^$this->ROTR($x, 13)^$this->ROTR($x, 22)); }
function Sigma1($x) { return (int) ($this->ROTR($x, 6)^$this->ROTR($x, 11)^$this->ROTR($x, 25)); }
function sigma_0($x) { return (int) ($this->ROTR($x, 7)^$this->ROTR($x, 18)^$this->SHR($x, 3)); }
function sigma_1($x) { return (int) ($this->ROTR($x, 17)^$this->ROTR($x, 19)^$this->SHR($x, 10)); }
/*
* Custom functions to provide PHP support
*/
// split a byte-string into integer array values
function int_split($input)
{
$l = strlen($input);
if ($l <= 0) {
return (int)0;
}
if (($l % 4) != 0) { // invalid input
return false;
}
for ($i = 0; $i < $l; $i += 4)
{
$int_build = (ord($input[$i]) << 24);
$int_build += (ord($input[$i+1]) << 16);
$int_build += (ord($input[$i+2]) << 8);
$int_build += (ord($input[$i+3]));
$result[] = $int_build;
}
return $result;
}
/**
* Process and return the hash.
*
* @param $str Input string to hash
* @param $ig_func Option param to ignore checking for php > 5.1.2
* @return string Hexadecimal representation of the message digest
*/
function hash($str, $ig_func = false)
{
unset($binStr); // binary representation of input string
unset($hexStr); // 256-bit message digest in readable hex format
// check for php's internal sha256 function, ignore if ig_func==true
if ($ig_func == false) {
if (version_compare(PHP_VERSION,'5.1.2','>=')) {
return hash("sha256", $str, false);
} else if (function_exists('mhash') && defined('MHASH_SHA256')) {
return base64_encode(bin2hex(mhash(MHASH_SHA256, $str)));
}
}
/*
* SHA-256 Constants
* Sequence of sixty-four constant 32-bit words representing the
* first thirty-two bits of the fractional parts of the cube roots
* of the first sixtyfour prime numbers.
*/
$K = array((int)0x428a2f98, (int)0x71374491, (int)0xb5c0fbcf,
(int)0xe9b5dba5, (int)0x3956c25b, (int)0x59f111f1,
(int)0x923f82a4, (int)0xab1c5ed5, (int)0xd807aa98,
(int)0x12835b01, (int)0x243185be, (int)0x550c7dc3,
(int)0x72be5d74, (int)0x80deb1fe, (int)0x9bdc06a7,
(int)0xc19bf174, (int)0xe49b69c1, (int)0xefbe4786,
(int)0x0fc19dc6, (int)0x240ca1cc, (int)0x2de92c6f,
(int)0x4a7484aa, (int)0x5cb0a9dc, (int)0x76f988da,
(int)0x983e5152, (int)0xa831c66d, (int)0xb00327c8,
(int)0xbf597fc7, (int)0xc6e00bf3, (int)0xd5a79147,
(int)0x06ca6351, (int)0x14292967, (int)0x27b70a85,
(int)0x2e1b2138, (int)0x4d2c6dfc, (int)0x53380d13,
(int)0x650a7354, (int)0x766a0abb, (int)0x81c2c92e,
(int)0x92722c85, (int)0xa2bfe8a1, (int)0xa81a664b,
(int)0xc24b8b70, (int)0xc76c51a3, (int)0xd192e819,
(int)0xd6990624, (int)0xf40e3585, (int)0x106aa070,
(int)0x19a4c116, (int)0x1e376c08, (int)0x2748774c,
(int)0x34b0bcb5, (int)0x391c0cb3, (int)0x4ed8aa4a,
(int)0x5b9cca4f, (int)0x682e6ff3, (int)0x748f82ee,
(int)0x78a5636f, (int)0x84c87814, (int)0x8cc70208,
(int)0x90befffa, (int)0xa4506ceb, (int)0xbef9a3f7,
(int)0xc67178f2);
// Pre-processing: Padding the string
$binStr = $this->char_pad($str);
// Parsing the Padded Message (Break into N 512-bit blocks)
$M = str_split($binStr, 64);
// Set the initial hash values
$h[0] = (int)0x6a09e667;
$h[1] = (int)0xbb67ae85;
$h[2] = (int)0x3c6ef372;
$h[3] = (int)0xa54ff53a;
$h[4] = (int)0x510e527f;
$h[5] = (int)0x9b05688c;
$h[6] = (int)0x1f83d9ab;
$h[7] = (int)0x5be0cd19;
// loop through message blocks and compute hash. ( For i=1 to N : )
$N = count($M);
for ($i = 0; $i < $N; $i++)
{
// Break input block into 16 32bit words (message schedule prep)
$MI = $this->int_split($M[$i]);
// Initialize working variables
$_a = (int)$h[0];
$_b = (int)$h[1];
$_c = (int)$h[2];
$_d = (int)$h[3];
$_e = (int)$h[4];
$_f = (int)$h[5];
$_g = (int)$h[6];
$_h = (int)$h[7];
unset($_s0);
unset($_s1);
unset($_T1);
unset($_T2);
$W = array();
// Compute the hash and update
for ($t = 0; $t < 16; $t++)
{
// Prepare the first 16 message schedule values as we loop
$W[$t] = $MI[$t];
// Compute hash
$_T1 = $this->addmod2n($this->addmod2n($this->addmod2n($this->addmod2n($_h, $this->Sigma1($_e)), $this->Ch($_e, $_f, $_g)), $K[$t]), $W[$t]);
$_T2 = $this->addmod2n($this->Sigma0($_a), $this->Maj($_a, $_b, $_c));
// Update working variables
$_h = $_g; $_g = $_f; $_f = $_e; $_e = $this->addmod2n($_d, $_T1);
$_d = $_c; $_c = $_b; $_b = $_a; $_a = $this->addmod2n($_T1, $_T2);
}
for (; $t < 64; $t++)
{
// Continue building the message schedule as we loop
$_s0 = $W[($t+1)&0x0F];
$_s0 = $this->sigma_0($_s0);
$_s1 = $W[($t+14)&0x0F];
$_s1 = $this->sigma_1($_s1);
$W[$t&0xF] = $this->addmod2n($this->addmod2n($this->addmod2n($W[$t&0xF], $_s0), $_s1), $W[($t+9)&0x0F]);
// Compute hash
$_T1 = $this->addmod2n($this->addmod2n($this->addmod2n($this->addmod2n($_h, $this->Sigma1($_e)), $this->Ch($_e, $_f, $_g)), $K[$t]), $W[$t&0xF]);
$_T2 = $this->addmod2n($this->Sigma0($_a), $this->Maj($_a, $_b, $_c));
// Update working variables
$_h = $_g; $_g = $_f; $_f = $_e; $_e = $this->addmod2n($_d, $_T1);
$_d = $_c; $_c = $_b; $_b = $_a; $_a = $this->addmod2n($_T1, $_T2);
}
$h[0] = $this->addmod2n($h[0], $_a);
$h[1] = $this->addmod2n($h[1], $_b);
$h[2] = $this->addmod2n($h[2], $_c);
$h[3] = $this->addmod2n($h[3], $_d);
$h[4] = $this->addmod2n($h[4], $_e);
$h[5] = $this->addmod2n($h[5], $_f);
$h[6] = $this->addmod2n($h[6], $_g);
$h[7] = $this->addmod2n($h[7], $_h);
}
// Convert the 32-bit words into human readable hexadecimal format.
$hexStr = sprintf("%08x%08x%08x%08x%08x%08x%08x%08x", $h[0], $h[1], $h[2], $h[3], $h[4], $h[5], $h[6], $h[7]);
return ($this->toUpper) ? strtoupper($hexStr) : $hexStr;
}
}
}
if (!function_exists('str_split'))
{
/**
* Splits a string into an array of strings with specified length.
* Compatability with older verions of PHP
*/
function str_split($string, $split_length = 1)
{
$sign = ($split_length < 0) ? -1 : 1;
$strlen = strlen($string);
$split_length = abs($split_length);
if (($split_length == 0) || ($strlen == 0)) {
$result = false;
} elseif ($split_length >= $strlen) {
$result[] = $string;
} else {
$length = $split_length;
for ($i = 0; $i < $strlen; $i++)
{
$i = (($sign < 0) ? $i + $length : $i);
$result[] = substr($string, $sign*$i, $length);
$i--;
$i = (($sign < 0) ? $i : $i + $length);
$length = (($i + $split_length) > $strlen)
? ($strlen - ($i + 1))
: $split_length;
}
}
return $result;
}
}
/**
* Main routine called from an application using this include.
*
* General usage:
* require_once('sha256.inc.php');
* $hashstr = sha256('abc');
*
* Note:
* PHP Strings are limitd to (2^31)-1, so it is not worth it to
* check for input strings > 2^64 as the FIPS180-2 defines.
*/
// 2009-07-23: Added check for function as the Suhosin plugin adds this routine.
if (!function_exists('sha256')) {
function sha256($str, $ig_func = false) {
$obj = new nanoSha2((defined('_NANO_SHA2_UPPER')) ? true : false);
return $obj->hash($str, $ig_func);
}
} else {
function _nano_sha256($str, $ig_func = false) {
$obj = new nanoSha2((defined('_NANO_SHA2_UPPER')) ? true : false);
return $obj->hash($str, $ig_func);
}
}
// support to give php4 the hash() routine which abstracts this code.
if (!function_exists('hash'))
{
function hash($algo, $data)
{
if (empty($algo) || !is_string($algo) || !is_string($data)) {
return false;
}
if (function_exists($algo)) {
return $algo($data);
}
}
}
?>
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Here you find the average performance (time & memory) of each version. A grayed out version indicates it didn't complete successfully (based on exit-code).
Version System time (s) User time (s) Memory (MiB) 8.3.6 0.004 0.011 17.00 8.3.5 0.010 0.010 22.89 8.3.4 0.012 0.003 19.27 8.3.3 0.012 0.003 19.34 8.3.2 0.005 0.003 20.51 8.3.1 0.008 0.000 23.51 8.3.0 0.000 0.009 19.50 8.2.18 0.008 0.008 18.29 8.2.17 0.013 0.003 22.96 8.2.16 0.008 0.006 20.60 8.2.15 0.006 0.003 24.18 8.2.14 0.006 0.003 24.66 8.2.13 0.005 0.003 26.16 8.2.12 0.008 0.000 20.95 8.2.11 0.007 0.004 22.14 8.2.10 0.008 0.004 18.47 8.2.9 0.003 0.009 19.17 8.2.8 0.006 0.003 18.00 8.2.7 0.003 0.006 17.88 8.2.6 0.000 0.011 18.18 8.2.5 0.004 0.004 18.07 8.2.4 0.003 0.006 20.01 8.2.3 0.004 0.004 18.29 8.2.2 0.003 0.006 18.03 8.2.1 0.004 0.004 18.29 8.2.0 0.006 0.003 18.04 8.1.28 0.006 0.009 25.92 8.1.27 0.006 0.003 23.90 8.1.26 0.004 0.004 26.35 8.1.25 0.005 0.003 28.09 8.1.24 0.010 0.000 23.96 8.1.23 0.006 0.006 19.30 8.1.22 0.008 0.000 18.04 8.1.21 0.006 0.003 18.77 8.1.20 0.003 0.010 17.50 8.1.19 0.004 0.004 17.60 8.1.18 0.003 0.006 18.10 8.1.17 0.000 0.008 18.97 8.1.16 0.004 0.004 22.19 8.1.15 0.000 0.008 19.16 8.1.14 0.000 0.009 17.75 8.1.13 0.005 0.003 18.07 8.1.12 0.004 0.004 17.80 8.1.11 0.000 0.008 17.80 8.1.10 0.003 0.006 17.77 8.1.9 0.000 0.009 17.79 8.1.8 0.000 0.008 17.72 8.1.7 0.006 0.003 17.75 8.1.6 0.000 0.010 17.83 8.1.5 0.004 0.004 17.63 8.1.4 0.004 0.004 17.70 8.1.3 0.000 0.008 17.86 8.1.2 0.003 0.006 17.80 8.1.1 0.000 0.009 17.75 8.1.0 0.008 0.005 17.79 8.0.30 0.000 0.008 18.77 8.0.29 0.005 0.003 16.88 8.0.28 0.005 0.005 18.55 8.0.27 0.000 0.007 17.48 8.0.26 0.003 0.003 17.50 8.0.25 0.000 0.007 17.21 8.0.24 0.003 0.006 17.20 8.0.23 0.003 0.005 17.26 8.0.22 0.005 0.002 17.21 8.0.21 0.000 0.008 17.25 8.0.20 0.000 0.008 17.14 8.0.19 0.005 0.003 17.31 8.0.18 0.004 0.007 17.21 8.0.17 0.006 0.003 17.23 8.0.16 0.005 0.003 17.16 8.0.15 0.003 0.005 17.13 8.0.14 0.004 0.004 16.97 8.0.13 0.005 0.003 13.61 8.0.12 0.000 0.008 17.05 8.0.11 0.004 0.004 17.16 8.0.10 0.004 0.004 17.21 8.0.9 0.006 0.003 17.02 8.0.8 0.012 0.004 17.18 8.0.7 0.003 0.006 17.24 8.0.6 0.004 0.004 17.18 8.0.5 0.003 0.006 17.14 8.0.3 0.010 0.010 17.30 8.0.2 0.013 0.009 17.43 8.0.1 0.008 0.000 17.43 8.0.0 0.010 0.008 17.20 7.4.33 0.000 0.005 15.08 7.4.32 0.004 0.004 16.79 7.4.30 0.003 0.003 16.77 7.4.29 0.007 0.000 16.75 7.4.28 0.004 0.004 16.79 7.4.27 0.000 0.008 16.86 7.4.26 0.005 0.003 16.84 7.4.25 0.005 0.003 16.81 7.4.24 0.007 0.002 16.77 7.4.23 0.000 0.007 16.55 7.4.22 0.009 0.009 16.73 7.4.21 0.004 0.014 16.88 7.4.20 0.004 0.004 16.59 7.4.16 0.010 0.013 16.86 7.4.15 0.017 0.006 17.40 7.4.14 0.007 0.010 17.86 7.4.13 0.007 0.012 16.83 7.4.12 0.012 0.007 16.72 7.4.11 0.006 0.015 17.00 7.4.10 0.010 0.010 16.86 7.4.9 0.010 0.014 16.82 7.4.8 0.011 0.007 19.39 7.4.7 0.007 0.010 16.82 7.4.6 0.006 0.010 16.88 7.4.5 0.006 0.003 16.88 7.4.4 0.009 0.009 16.83 7.4.3 0.006 0.012 16.52 7.4.0 0.004 0.011 15.09 7.3.33 0.003 0.006 13.68 7.3.32 0.000 0.005 13.59 7.3.31 0.000 0.007 16.49 7.3.30 0.004 0.004 16.57 7.3.29 0.009 0.006 16.63 7.3.28 0.007 0.012 16.65 7.3.27 0.013 0.006 17.40 7.3.26 0.012 0.012 16.92 7.3.25 0.009 0.009 16.75 7.3.24 0.015 0.003 16.82 7.3.23 0.008 0.012 16.77 7.3.21 0.003 0.014 16.89 7.3.20 0.014 0.003 19.39 7.3.19 0.003 0.013 16.86 7.3.18 0.011 0.008 16.78 7.3.17 0.007 0.010 16.67 7.3.16 0.008 0.008 16.84 7.2.33 0.005 0.013 16.74 7.2.32 0.007 0.011 17.02 7.2.31 0.018 0.000 16.71 7.2.30 0.000 0.018 17.10 7.2.29 0.006 0.012 16.85 7.2.6 0.003 0.009 17.14 7.2.0 0.007 0.007 19.52 7.1.20 0.000 0.011 15.63 7.1.10 0.009 0.003 18.41 7.1.7 0.003 0.006 17.25 7.1.6 0.010 0.013 19.40 7.1.5 0.028 0.007 34.95 7.1.0 0.000 0.077 22.37 7.0.20 0.163 0.010 14.83 7.0.14 0.007 0.073 22.00 7.0.10 0.000 0.083 20.17 7.0.9 0.003 0.073 20.16 7.0.8 0.003 0.087 20.12 7.0.7 0.033 0.050 20.11 7.0.6 0.040 0.077 20.15 7.0.5 0.030 0.073 20.63 7.0.4 0.013 0.077 20.08 7.0.3 0.017 0.067 20.19 7.0.2 0.013 0.073 19.99 7.0.1 0.013 0.080 20.07 7.0.0 0.003 0.053 20.09 5.6.28 0.003 0.073 21.06 5.6.25 0.013 0.077 20.70 5.6.24 0.007 0.067 20.81 5.6.23 0.010 0.067 20.73 5.6.22 0.010 0.043 20.73 5.6.21 0.003 0.073 20.60 5.6.20 0.010 0.080 21.16 5.6.19 0.013 0.073 21.13 5.6.18 0.017 0.073 21.21 5.6.17 0.010 0.073 21.09 5.6.16 0.007 0.083 21.08 5.6.15 0.007 0.057 21.15 5.6.14 0.007 0.047 21.16 5.6.13 0.003 0.053 21.15 5.6.12 0.003 0.063 21.17 5.6.11 0.007 0.043 21.07 5.6.10 0.003 0.047 21.25 5.6.9 0.003 0.047 21.28 5.6.8 0.003 0.087 20.56 5.6.7 0.003 0.033 20.59 5.6.6 0.000 0.043 20.56 5.6.5 0.003 0.040 20.53 5.6.4 0.007 0.033 20.63 5.6.3 0.007 0.067 20.53 5.6.2 0.003 0.040 20.48 5.6.1 0.007 0.040 20.53 5.6.0 0.007 0.037 20.54 5.5.38 0.007 0.043 20.53 5.5.37 0.007 0.043 20.52 5.5.36 0.007 0.083 20.54 5.5.35 0.020 0.077 20.61 5.5.34 0.013 0.077 21.03 5.5.33 0.010 0.053 21.00 5.5.32 0.017 0.070 20.78 5.5.31 0.000 0.047 20.77 5.5.30 0.010 0.043 20.96 5.5.29 0.013 0.037 20.86 5.5.28 0.000 0.053 21.02 5.5.27 0.007 0.047 20.94 5.5.26 0.003 0.040 20.95 5.5.25 0.000 0.037 20.78 5.5.24 0.010 0.033 20.40 5.5.23 0.000 0.037 20.39 5.5.22 0.007 0.037 20.39 5.5.21 0.003 0.043 20.40 5.5.20 0.007 0.040 20.33 5.5.19 0.003 0.040 20.37 5.5.18 0.013 0.057 20.31 5.5.16 0.010 0.043 20.12 5.5.15 0.010 0.033 20.34 5.5.14 0.007 0.037 20.28 5.5.13 0.003 0.040 20.28 5.5.12 0.000 0.043 20.34 5.5.11 0.003 0.043 20.10 5.5.10 0.003 0.033 20.25 5.5.9 0.003 0.037 20.22 5.5.8 0.003 0.040 20.13 5.5.7 0.007 0.037 20.18 5.5.6 0.017 0.027 20.29 5.5.5 0.003 0.043 20.18 5.5.4 0.010 0.033 20.13 5.5.3 0.003 0.040 20.18 5.5.2 0.007 0.043 20.20 5.5.1 0.000 0.043 20.09 5.5.0 0.000 0.043 20.08 5.4.45 0.007 0.040 19.57 5.4.44 0.003 0.043 19.57 5.4.43 0.007 0.040 19.55 5.4.42 0.003 0.037 19.45 5.4.41 0.007 0.040 19.36 5.4.40 0.003 0.040 19.23 5.4.39 0.010 0.033 19.11 5.4.38 0.007 0.037 19.15 5.4.37 0.007 0.053 19.13 5.4.36 0.010 0.033 19.10 5.4.35 0.000 0.040 19.28 5.4.34 0.000 0.043 18.94 5.4.32 0.000 0.053 19.09 5.4.31 0.010 0.033 18.95 5.4.30 0.003 0.037 19.27 5.4.29 0.007 0.037 18.94 5.4.28 0.000 0.043 18.91 5.4.27 0.003 0.037 19.09 5.4.26 0.000 0.033 19.08 5.4.25 0.003 0.040 19.09 5.4.24 0.010 0.037 19.11 5.4.23 0.000 0.040 19.20 5.4.22 0.003 0.040 19.13 5.4.21 0.003 0.043 19.24 5.4.20 0.003 0.040 19.09 5.4.19 0.003 0.040 18.95 5.4.18 0.007 0.040 19.13 5.4.17 0.003 0.040 19.16 5.4.16 0.013 0.027 19.11 5.4.15 0.007 0.037 18.93 5.4.14 0.003 0.030 16.52 5.4.13 0.003 0.073 16.51 5.4.12 0.013 0.070 16.38 5.4.11 0.010 0.067 16.61 5.4.10 0.000 0.040 16.46 5.4.9 0.013 0.067 16.54 5.4.8 0.007 0.077 16.48 5.4.7 0.007 0.073 16.53 5.4.6 0.003 0.063 16.48 5.4.5 0.020 0.060 16.54 5.4.4 0.003 0.047 16.42 5.4.3 0.007 0.067 16.52 5.4.2 0.007 0.080 16.52 5.4.1 0.007 0.060 16.58 5.4.0 0.000 0.043 15.85
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45.83 ms | 401 KiB | 5 Q