Files
huangjingfen/pro_v3.5.1_副本/vendor/symfony/polyfill-php72/Php72.php
apple 434aa8c69d feat(fsgx): 完成全部24项开发任务 Phase1-7
Phase1 后端核心:
- 新增 fsgx_v1.sql 迁移脚本(is_queue_goods/frozen_points/available_points/no_assess)
- SystemConfigServices 返佣设置扩展(周期人数/分档比例/范围/时机)
- StoreOrderCreateServices 周期循环佣金计算
- StoreOrderTakeServices 佣金发放后同步冻结积分
- StoreProductServices/StoreProduct 保存 is_queue_goods

Phase2 后端接口:
- GET /api/hjf/brokerage/progress 佣金周期进度
- GET /api/hjf/assets/overview 资产总览
- HjfPointsServices 每日 frozen_points 0.4‰ 释放定时任务
- PUT /adminapi/hjf/member/{uid}/no_assess 不考核接口
- GET /adminapi/hjf/points/release_log 积分日志接口

Phase3 前端清理:
- hjfCustom.js 路由精简(仅保留 points/log)
- hjfQueue.js/hjfMember.js API 清理/重定向至 CRMEB 原生接口
- pages.json 公排→推荐佣金/佣金记录/佣金规则

Phase4-5 前端改造:
- queue/status.vue 推荐佣金进度页整体重写
- 商品详情/订单确认/支付结果页文案与逻辑改造
- 个人中心/资产页/引导页/规则页文案改造
- HjfQueueProgress/HjfRefundNotice/HjfAssetCard 组件改造
- 推广中心嵌入佣金进度摘要
- hjfMockData.js 全量更新(公排字段→佣金字段)

Phase6 Admin 增强:
- 用户列表新增 frozen_points/available_points 列及不考核操作按钮
- hjfPoints.js USE_MOCK=false 对接真实积分日志接口

Phase7 配置文档:
- docs/fsgx-phase7-config-checklist.md 后台配置与全链路验收清单

Made-with: Cursor
2026-03-23 22:32:19 +08:00

218 lines
6.5 KiB
PHP

<?php
/*
* This file is part of the Symfony package.
*
* (c) Fabien Potencier <fabien@symfony.com>
*
* For the full copyright and license information, please view the LICENSE
* file that was distributed with this source code.
*/
namespace Symfony\Polyfill\Php72;
/**
* @author Nicolas Grekas <p@tchwork.com>
* @author Dariusz Rumiński <dariusz.ruminski@gmail.com>
*
* @internal
*/
final class Php72
{
private static $hashMask;
public static function utf8_encode($s)
{
$s .= $s;
$len = \strlen($s);
for ($i = $len >> 1, $j = 0; $i < $len; ++$i, ++$j) {
switch (true) {
case $s[$i] < "\x80": $s[$j] = $s[$i]; break;
case $s[$i] < "\xC0": $s[$j] = "\xC2"; $s[++$j] = $s[$i]; break;
default: $s[$j] = "\xC3"; $s[++$j] = \chr(\ord($s[$i]) - 64); break;
}
}
return substr($s, 0, $j);
}
public static function utf8_decode($s)
{
$s = (string) $s;
$len = \strlen($s);
for ($i = 0, $j = 0; $i < $len; ++$i, ++$j) {
switch ($s[$i] & "\xF0") {
case "\xC0":
case "\xD0":
$c = (\ord($s[$i] & "\x1F") << 6) | \ord($s[++$i] & "\x3F");
$s[$j] = $c < 256 ? \chr($c) : '?';
break;
case "\xF0":
++$i;
// no break
case "\xE0":
$s[$j] = '?';
$i += 2;
break;
default:
$s[$j] = $s[$i];
}
}
return substr($s, 0, $j);
}
public static function php_os_family()
{
if ('\\' === \DIRECTORY_SEPARATOR) {
return 'Windows';
}
$map = [
'Darwin' => 'Darwin',
'DragonFly' => 'BSD',
'FreeBSD' => 'BSD',
'NetBSD' => 'BSD',
'OpenBSD' => 'BSD',
'Linux' => 'Linux',
'SunOS' => 'Solaris',
];
return $map[\PHP_OS] ?? 'Unknown';
}
public static function spl_object_id($object)
{
if (null === self::$hashMask) {
self::initHashMask();
}
if (null === $hash = spl_object_hash($object)) {
return;
}
// On 32-bit systems, PHP_INT_SIZE is 4,
return self::$hashMask ^ hexdec(substr($hash, 16 - (\PHP_INT_SIZE * 2 - 1), \PHP_INT_SIZE * 2 - 1));
}
public static function sapi_windows_vt100_support($stream, $enable = null)
{
if (!\is_resource($stream)) {
trigger_error('sapi_windows_vt100_support() expects parameter 1 to be resource, '.\gettype($stream).' given', \E_USER_WARNING);
return false;
}
$meta = stream_get_meta_data($stream);
if ('STDIO' !== $meta['stream_type']) {
trigger_error('sapi_windows_vt100_support() was not able to analyze the specified stream', \E_USER_WARNING);
return false;
}
// We cannot actually disable vt100 support if it is set
if (false === $enable || !self::stream_isatty($stream)) {
return false;
}
// The native function does not apply to stdin
$meta = array_map('strtolower', $meta);
$stdin = 'php://stdin' === $meta['uri'] || 'php://fd/0' === $meta['uri'];
return !$stdin
&& (false !== getenv('ANSICON')
|| 'ON' === getenv('ConEmuANSI')
|| 'xterm' === getenv('TERM')
|| 'Hyper' === getenv('TERM_PROGRAM'));
}
public static function stream_isatty($stream)
{
if (!\is_resource($stream)) {
trigger_error('stream_isatty() expects parameter 1 to be resource, '.\gettype($stream).' given', \E_USER_WARNING);
return false;
}
if ('\\' === \DIRECTORY_SEPARATOR) {
$stat = @fstat($stream);
// Check if formatted mode is S_IFCHR
return $stat ? 0020000 === ($stat['mode'] & 0170000) : false;
}
return \function_exists('posix_isatty') && @posix_isatty($stream);
}
private static function initHashMask()
{
$obj = (object) [];
self::$hashMask = -1;
// check if we are nested in an output buffering handler to prevent a fatal error with ob_start() below
$obFuncs = ['ob_clean', 'ob_end_clean', 'ob_flush', 'ob_end_flush', 'ob_get_contents', 'ob_get_flush'];
foreach (debug_backtrace(\PHP_VERSION_ID >= 50400 ? \DEBUG_BACKTRACE_IGNORE_ARGS : false) as $frame) {
if (isset($frame['function'][0]) && !isset($frame['class']) && 'o' === $frame['function'][0] && \in_array($frame['function'], $obFuncs)) {
$frame['line'] = 0;
break;
}
}
if (!empty($frame['line'])) {
ob_start();
debug_zval_dump($obj);
self::$hashMask = (int) substr(ob_get_clean(), 17);
}
self::$hashMask ^= hexdec(substr(spl_object_hash($obj), 16 - (\PHP_INT_SIZE * 2 - 1), \PHP_INT_SIZE * 2 - 1));
}
public static function mb_chr($code, $encoding = null)
{
if (0x80 > $code %= 0x200000) {
$s = \chr($code);
} elseif (0x800 > $code) {
$s = \chr(0xC0 | $code >> 6).\chr(0x80 | $code & 0x3F);
} elseif (0x10000 > $code) {
$s = \chr(0xE0 | $code >> 12).\chr(0x80 | $code >> 6 & 0x3F).\chr(0x80 | $code & 0x3F);
} else {
$s = \chr(0xF0 | $code >> 18).\chr(0x80 | $code >> 12 & 0x3F).\chr(0x80 | $code >> 6 & 0x3F).\chr(0x80 | $code & 0x3F);
}
if ('UTF-8' !== $encoding = $encoding ?? mb_internal_encoding()) {
$s = mb_convert_encoding($s, $encoding, 'UTF-8');
}
return $s;
}
public static function mb_ord($s, $encoding = null)
{
if (null === $encoding) {
$s = mb_convert_encoding($s, 'UTF-8');
} elseif ('UTF-8' !== $encoding) {
$s = mb_convert_encoding($s, 'UTF-8', $encoding);
}
if (1 === \strlen($s)) {
return \ord($s);
}
$code = ($s = unpack('C*', substr($s, 0, 4))) ? $s[1] : 0;
if (0xF0 <= $code) {
return (($code - 0xF0) << 18) + (($s[2] - 0x80) << 12) + (($s[3] - 0x80) << 6) + $s[4] - 0x80;
}
if (0xE0 <= $code) {
return (($code - 0xE0) << 12) + (($s[2] - 0x80) << 6) + $s[3] - 0x80;
}
if (0xC0 <= $code) {
return (($code - 0xC0) << 6) + $s[2] - 0x80;
}
return $code;
}
}