我很欣赏您希望拥有接近函数式编程和隐式循环的东西,但 PHP 不适合您。它不会以实用的风格自然地表达自己。
reset 函数返回数组中的第一个元素,因此您可以将该函数映射到数组:
array_map('reset', $array)
然而在 PHP 中最快的方法是一个简单的for 循环(不是foreach,for)。这里有一堆不同的扁平化方法。只有包含for 和foreach 的函数会执行显式循环并包含在比较中。
function flatten_for($arr) {
$c = count($arr);
$newarr = array();
for ($i = 0; $i < $c; $i++) {
$newarr[] = $arr[$i][0];
}
return $newarr;
}
function flatten_for_inplace($arr) {
$c = count($arr);
for ($i = 0; $i < $c; $i++) {
$arr[$i] = $arr[$i][0];
}
}
function flatten_foreach($arr) {
$newarr = array();
foreach ($arr as $value) {
$newarr[] = $value[0];
}
return $newarr;
}
function flatten_foreach_inplace($arr) {
foreach ($arr as $k => $v) {
$arr[$k] = $v[0];
}
}
function flatten_foreach_inplace_ref($arr) {
foreach ($arr as &$value) {
$value = $value[0];
}
}
function flatten_map($arr) {
return array_map('reset', $arr);
}
function flatten_walk($arr) {
array_walk($arr, function(&$v, $k){$v = $v[0];});
}
function visitor($v, $k, &$a) {
return $a[] = $v;
}
function flatten_walk_recursive($arr) {
$newarr = array();
array_walk_recursive($arr, 'visitor', $newarr);
return $newarr;
}
function reducer($result, $item) {
return $item[0];
}
function flatten_reduce($arr) {
return array_reduce($arr, 'reducer', array());
}
function flatten_merge($arr) {
return call_user_func_array('array_merge_recursive', $arr);
}
这是计时码:
function buildarray($length) {
return array_map(function($e){return array($e);}, range(0, $length));
}
function timeit($callable, $argfactory, $iterations) {
$start = microtime(true);
for ($i = 0; $i < $iterations; $i++) {
call_user_func($callable, call_user_func($argfactory));
}
return microtime(true) - $start;
}
function time_callbacks($callbacks, $argfactory, $iterations) {
$times = array();
foreach ($callbacks as $callback) {
$times[$callback] = timeit($callback, $argfactory, $iterations);
}
return $times;
}
function argfactory() {
return buildarray(1000);
}
$flatteners = array(
'flatten_for', 'flatten_for_inplace', 'flatten_foreach',
'flatten_foreach_inplace', 'flatten_foreach_inplace_ref',
'flatten_map', 'flatten_walk', 'flatten_walk_recursive',
'flatten_reduce', 'flatten_merge',
);
$results = time_callbacks($flatteners, 'argfactory', 1000);
var_export($results);
在较旧的 MacBook Pro(Core 2 Duo、2.66 GHz、8GB、PHP 5.3.15 和 Suhosin-Patch)上,我得到以下结果:
array (
'flatten_for' => 12.793387174606,
'flatten_for_inplace' => 14.093497991562,
'flatten_foreach' => 16.71691608429,
'flatten_foreach_inplace' => 16.964510917664,
'flatten_foreach_inplace_ref' => 16.618073940277,
'flatten_map' => 24.578175067902,
'flatten_walk' => 22.884744882584,
'flatten_walk_recursive' => 31.647840976715,
'flatten_reduce' => 17.748590946198,
'flatten_merge' => 20.691106081009,
)
for 和 foreach 方法之间的差异在较长的数组上更小。
令人惊讶的是(对我来说,无论如何)flatten_merge 仍然比普通的 for 循环慢。我预计 array_merge_recursive 至少会更快,因为它基本上将整个工作交给了 C 函数!