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<ol class="chapter"><li class="chapter-item expanded affix "><a href="../index.html">Go语言圣经</a></li><li class="chapter-item expanded affix "><a href="../preface.html">前言</a></li><li class="chapter-item expanded "><a href="../ch1/ch1.html"><strong aria-hidden="true">1.</strong> 入门</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch1/ch1-01.html"><strong aria-hidden="true">1.1.</strong> Hello, World</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-02.html"><strong aria-hidden="true">1.2.</strong> 命令行参数</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-03.html"><strong aria-hidden="true">1.3.</strong> 查找重复的行</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-04.html"><strong aria-hidden="true">1.4.</strong> GIF动画</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-05.html"><strong aria-hidden="true">1.5.</strong> 获取URL</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-06.html"><strong aria-hidden="true">1.6.</strong> 并发获取多个URL</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-07.html"><strong aria-hidden="true">1.7.</strong> Web服务</a></li><li class="chapter-item expanded "><a href="../ch1/ch1-08.html"><strong aria-hidden="true">1.8.</strong> 本章要点</a></li></ol></li><li class="chapter-item expanded "><a href="../ch2/ch2.html"><strong aria-hidden="true">2.</strong> 程序结构</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch2/ch2-01.html"><strong aria-hidden="true">2.1.</strong> 命名</a></li><li class="chapter-item expanded "><a href="../ch2/ch2-02.html"><strong aria-hidden="true">2.2.</strong> 声明</a></li><li class="chapter-item expanded "><a href="../ch2/ch2-03.html"><strong aria-hidden="true">2.3.</strong> 变量</a></li><li class="chapter-item expanded "><a href="../ch2/ch2-04.html"><strong aria-hidden="true">2.4.</strong> 赋值</a></li><li class="chapter-item expanded "><a href="../ch2/ch2-05.html"><strong aria-hidden="true">2.5.</strong> 类型</a></li><li class="chapter-item expanded "><a href="../ch2/ch2-06.html"><strong aria-hidden="true">2.6.</strong> 包和文件</a></li><li class="chapter-item expanded "><a href="../ch2/ch2-07.html"><strong aria-hidden="true">2.7.</strong> 作用域</a></li></ol></li><li class="chapter-item expanded "><a href="../ch3/ch3.html"><strong aria-hidden="true">3.</strong> 基础数据类型</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch3/ch3-01.html"><strong aria-hidden="true">3.1.</strong> 整型</a></li><li class="chapter-item expanded "><a href="../ch3/ch3-02.html"><strong aria-hidden="true">3.2.</strong> 浮点数</a></li><li class="chapter-item expanded "><a href="../ch3/ch3-03.html"><strong aria-hidden="true">3.3.</strong> 复数</a></li><li class="chapter-item expanded "><a href="../ch3/ch3-04.html"><strong aria-hidden="true">3.4.</strong> 布尔型</a></li><li class="chapter-item expanded "><a href="../ch3/ch3-05.html"><strong aria-hidden="true">3.5.</strong> 字符串</a></li><li class="chapter-item expanded "><a href="../ch3/ch3-06.html"><strong aria-hidden="true">3.6.</strong> 常量</a></li></ol></li><li class="chapter-item expanded "><a href="../ch4/ch4.html"><strong aria-hidden="true">4.</strong> 复合数据类型</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch4/ch4-01.html"><strong aria-hidden="true">4.1.</strong> 数组</a></li><li class="chapter-item expanded "><a href="../ch4/ch4-02.html"><strong aria-hidden="true">4.2.</strong> Slice</a></li><li class="chapter-item expanded "><a href="../ch4/ch4-03.html"><strong aria-hidden="true">4.3.</strong> Map</a></li><li class="chapter-item expanded "><a href="../ch4/ch4-04.html"><strong aria-hidden="true">4.4.</strong> 结构体</a></li><li class="chapter-item expanded "><a href="../ch4/ch4-05.html"><strong aria-hidden="true">4.5.</strong> JSON</a></li><li class="chapter-item expanded "><a href="../ch4/ch4-06.html"><strong aria-hidden="true">4.6.</strong> 文本和HTML模板</a></li></ol></li><li class="chapter-item expanded "><a href="../ch5/ch5.html"><strong aria-hidden="true">5.</strong> 函数</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch5/ch5-01.html"><strong aria-hidden="true">5.1.</strong> 函数声明</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-02.html"><strong aria-hidden="true">5.2.</strong> 递归</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-03.html"><strong aria-hidden="true">5.3.</strong> 多返回值</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-04.html"><strong aria-hidden="true">5.4.</strong> 错误</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-05.html"><strong aria-hidden="true">5.5.</strong> 函数值</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-06.html" class="active"><strong aria-hidden="true">5.6.</strong> 匿名函数</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-07.html"><strong aria-hidden="true">5.7.</strong> 可变参数</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-08.html"><strong aria-hidden="true">5.8.</strong> Deferred函数</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-09.html"><strong aria-hidden="true">5.9.</strong> Panic异常</a></li><li class="chapter-item expanded "><a href="../ch5/ch5-10.html"><strong aria-hidden="true">5.10.</strong> Recover捕获异常</a></li></ol></li><li class="chapter-item expanded "><a href="../ch6/ch6.html"><strong aria-hidden="true">6.</strong> 方法</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch6/ch6-01.html"><strong aria-hidden="true">6.1.</strong> 方法声明</a></li><li class="chapter-item expanded "><a href="../ch6/ch6-02.html"><strong aria-hidden="true">6.2.</strong> 基于指针对象的方法</a></li><li class="chapter-item expanded "><a href="../ch6/ch6-03.html"><strong aria-hidden="true">6.3.</strong> 通过嵌入结构体来扩展类型</a></li><li class="chapter-item expanded "><a href="../ch6/ch6-04.html"><strong aria-hidden="true">6.4.</strong> 方法值和方法表达式</a></li><li class="chapter-item expanded "><a href="../ch6/ch6-05.html"><strong aria-hidden="true">6.5.</strong> 示例: Bit数组</a></li><li class="chapter-item expanded "><a href="../ch6/ch6-06.html"><strong aria-hidden="true">6.6.</strong> 封装</a></li></ol></li><li class="chapter-item expanded "><a href="../ch7/ch7.html"><strong aria-hidden="true">7.</strong> 接口</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch7/ch7-01.html"><strong aria-hidden="true">7.1.</strong> 接口是合约</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-02.html"><strong aria-hidden="true">7.2.</strong> 接口类型</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-03.html"><strong aria-hidden="true">7.3.</strong> 实现接口的条件</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-04.html"><strong aria-hidden="true">7.4.</strong> flag.Value接口</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-05.html"><strong aria-hidden="true">7.5.</strong> 接口值</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-06.html"><strong aria-hidden="true">7.6.</strong> sort.Interface接口</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-07.html"><strong aria-hidden="true">7.7.</strong> http.Handler接口</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-08.html"><strong aria-hidden="true">7.8.</strong> error接口</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-09.html"><strong aria-hidden="true">7.9.</strong> 示例: 表达式求值</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-10.html"><strong aria-hidden="true">7.10.</strong> 类型断言</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-11.html"><strong aria-hidden="true">7.11.</strong> 基于类型断言识别错误类型</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-12.html"><strong aria-hidden="true">7.12.</strong> 通过类型断言查询接口</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-13.html"><strong aria-hidden="true">7.13.</strong> 类型分支</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-14.html"><strong aria-hidden="true">7.14.</strong> 示例: 基于标记的XML解码</a></li><li class="chapter-item expanded "><a href="../ch7/ch7-15.html"><strong aria-hidden="true">7.15.</strong> 补充几点</a></li></ol></li><li class="chapter-item expanded "><a href="../ch8/ch8.html"><strong aria-hidden="true">8.</strong> Goroutines和Channels</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch8/ch8-01.html"><strong aria-hidden="true">8.1.</strong> Goroutines</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-02.html"><strong aria-hidden="true">8.2.</strong> 示例: 并发的Clock服务</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-03.html"><strong aria-hidden="true">8.3.</strong> 示例: 并发的Echo服务</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-04.html"><strong aria-hidden="true">8.4.</strong> Channels</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-05.html"><strong aria-hidden="true">8.5.</strong> 并发的循环</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-06.html"><strong aria-hidden="true">8.6.</strong> 示例: 并发的Web爬虫</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-07.html"><strong aria-hidden="true">8.7.</strong> 基于select的多路复用</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-08.html"><strong aria-hidden="true">8.8.</strong> 示例: 并发的目录遍历</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-09.html"><strong aria-hidden="true">8.9.</strong> 并发的退出</a></li><li class="chapter-item expanded "><a href="../ch8/ch8-10.html"><strong aria-hidden="true">8.10.</strong> 示例: 聊天服务</a></li></ol></li><li class="chapter-item expanded "><a href="../ch9/ch9.html"><strong aria-hidden="true">9.</strong> 基于共享变量的并发</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch9/ch9-01.html"><strong aria-hidden="true">9.1.</strong> 竞争条件</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-02.html"><strong aria-hidden="true">9.2.</strong> sync.Mutex互斥锁</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-03.html"><strong aria-hidden="true">9.3.</strong> sync.RWMutex读写锁</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-04.html"><strong aria-hidden="true">9.4.</strong> 内存同步</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-05.html"><strong aria-hidden="true">9.5.</strong> sync.Once惰性初始化</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-06.html"><strong aria-hidden="true">9.6.</strong> 竞争条件检测</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-07.html"><strong aria-hidden="true">9.7.</strong> 示例: 并发的非阻塞缓存</a></li><li class="chapter-item expanded "><a href="../ch9/ch9-08.html"><strong aria-hidden="true">9.8.</strong> Goroutines和线程</a></li></ol></li><li class="chapter-item expanded "><a href="../ch10/ch10.html"><strong aria-hidden="true">10.</strong> 包和工具</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch10/ch10-01.html"><strong aria-hidden="true">10.1.</strong> 包简介</a></li><li class="chapter-item expanded "><a href="../ch10/ch10-02.html"><strong aria-hidden="true">10.2.</strong> 导入路径</a></li><li class="chapter-item expanded "><a href="../ch10/ch10-03.html"><strong aria-hidden="true">10.3.</strong> 包声明</a></li><li class="chapter-item expanded "><a href="../ch10/ch10-04.html"><strong aria-hidden="true">10.4.</strong> 导入声明</a></li><li class="chapter-item expanded "><a href="../ch10/ch10-05.html"><strong aria-hidden="true">10.5.</strong> 包的匿名导入</a></li><li class="chapter-item expanded "><a href="../ch10/ch10-06.html"><strong aria-hidden="true">10.6.</strong> 包和命名</a></li><li class="chapter-item expanded "><a href="../ch10/ch10-07.html"><strong aria-hidden="true">10.7.</strong> 工具</a></li></ol></li><li class="chapter-item expanded "><a href="../ch11/ch11.html"><strong aria-hidden="true">11.</strong> 测试</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch11/ch11-01.html"><strong aria-hidden="true">11.1.</strong> go test</a></li><li class="chapter-item expanded "><a href="../ch11/ch11-02.html"><strong aria-hidden="true">11.2.</strong> 测试函数</a></li><li class="chapter-item expanded "><a href="../ch11/ch11-03.html"><strong aria-hidden="true">11.3.</strong> 测试覆盖率</a></li><li class="chapter-item expanded "><a href="../ch11/ch11-04.html"><strong aria-hidden="true">11.4.</strong> 基准测试</a></li><li class="chapter-item expanded "><a href="../ch11/ch11-05.html"><strong aria-hidden="true">11.5.</strong> 剖析</a></li><li class="chapter-item expanded "><a href="../ch11/ch11-06.html"><strong aria-hidden="true">11.6.</strong> 示例函数</a></li></ol></li><li class="chapter-item expanded "><a href="../ch12/ch12.html"><strong aria-hidden="true">12.</strong> 反射</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch12/ch12-01.html"><strong aria-hidden="true">12.1.</strong> 为何需要反射?</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-02.html"><strong aria-hidden="true">12.2.</strong> reflect.Type和reflect.Value</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-03.html"><strong aria-hidden="true">12.3.</strong> Display递归打印</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-04.html"><strong aria-hidden="true">12.4.</strong> 示例: 编码S表达式</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-05.html"><strong aria-hidden="true">12.5.</strong> 通过reflect.Value修改值</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-06.html"><strong aria-hidden="true">12.6.</strong> 示例: 解码S表达式</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-07.html"><strong aria-hidden="true">12.7.</strong> 获取结构体字段标签</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-08.html"><strong aria-hidden="true">12.8.</strong> 显示一个类型的方法集</a></li><li class="chapter-item expanded "><a href="../ch12/ch12-09.html"><strong aria-hidden="true">12.9.</strong> 几点忠告</a></li></ol></li><li class="chapter-item expanded "><a href="../ch13/ch13.html"><strong aria-hidden="true">13.</strong> 底层编程</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../ch13/ch13-01.html"><strong aria-hidden="true">13.1.</strong> unsafe.Sizeof, Alignof 和 Offsetof</a></li><li class="chapter-item expanded "><a href="../ch13/ch13-02.html"><strong aria-hidden="true">13.2.</strong> unsafe.Pointer</a></li><li class="chapter-item expanded "><a href="../ch13/ch13-03.html"><strong aria-hidden="true">13.3.</strong> 示例: 深度相等判断</a></li><li class="chapter-item expanded "><a href="../ch13/ch13-04.html"><strong aria-hidden="true">13.4.</strong> 通过cgo调用C代码</a></li><li class="chapter-item expanded "><a href="../ch13/ch13-05.html"><strong aria-hidden="true">13.5.</strong> 几点忠告</a></li></ol></li><li class="chapter-item expanded "><a href="../appendix/appendix.html"><strong aria-hidden="true">14.</strong> 附录</a></li><li><ol class="section"><li class="chapter-item expanded "><a href="../appendix/appendix-a-errata.html"><strong aria-hidden="true">14.1.</strong> 附录A:原文勘误</a></li><li class="chapter-item expanded "><a href="../appendix/appendix-b-author.html"><strong aria-hidden="true">14.2.</strong> 附录B:作者译者</a></li><li class="chapter-item expanded "><a href="../appendix/appendix-c-cpoyright.html"><strong aria-hidden="true">14.3.</strong> 附录C:译文授权</a></li><li class="chapter-item expanded "><a href="../appendix/appendix-d-translations.html"><strong aria-hidden="true">14.4.</strong> 附录D:其它语言</a></li></ol></li></ol> </div>
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<a href="../print.html" title="Print this book" aria-label="Print this book">
|
||
<i id="print-button" class="fa fa-print"></i>
|
||
</a>
|
||
<a href="https://github.com/gopl-zh/gopl-zh.github.com" title="Git repository" aria-label="Git repository">
|
||
<i id="git-repository-button" class="fa fa-github"></i>
|
||
</a>
|
||
<a href="https://github.com/gopl-zh/gopl-zh.github.com/edit/master/./ch5/ch5-06.md" title="Suggest an edit" aria-label="Suggest an edit">
|
||
<i id="git-edit-button" class="fa fa-edit"></i>
|
||
</a>
|
||
|
||
</div>
|
||
</div>
|
||
|
||
<div id="search-wrapper" class="hidden">
|
||
<form id="searchbar-outer" class="searchbar-outer">
|
||
<input type="search" id="searchbar" name="searchbar" placeholder="Search this book ..." aria-controls="searchresults-outer" aria-describedby="searchresults-header">
|
||
</form>
|
||
<div id="searchresults-outer" class="searchresults-outer hidden">
|
||
<div id="searchresults-header" class="searchresults-header"></div>
|
||
<ul id="searchresults">
|
||
</ul>
|
||
</div>
|
||
</div>
|
||
|
||
<!-- Apply ARIA attributes after the sidebar and the sidebar toggle button are added to the DOM -->
|
||
<script type="text/javascript">
|
||
document.getElementById('sidebar-toggle').setAttribute('aria-expanded', sidebar === 'visible');
|
||
document.getElementById('sidebar').setAttribute('aria-hidden', sidebar !== 'visible');
|
||
Array.from(document.querySelectorAll('#sidebar a')).forEach(function(link) {
|
||
link.setAttribute('tabIndex', sidebar === 'visible' ? 0 : -1);
|
||
});
|
||
</script>
|
||
|
||
<div id="content" class="content">
|
||
<!-- Page table of contents -->
|
||
<div class="sidetoc"><nav class="pagetoc"></nav></div>
|
||
<main>
|
||
<!-- 头部 -->
|
||
<ul dir="auto">
|
||
<li><em>KusonStack一站式可编程配置技术栈(Go): <a href="https://github.com/KusionStack/kusion">https://github.com/KusionStack/kusion</a></em></li>
|
||
<li><em>KCL 配置编程语言(Rust): <a href="https://github.com/KusionStack/KCLVM">https://github.com/KusionStack/KCLVM</a></em></li>
|
||
<li><em>凹语言™: <a href="https://github.com/wa-lang/wa">https://github.com/wa-lang/wa</a></em></li>
|
||
</ul>
|
||
<hr>
|
||
|
||
<h2 id="56-匿名函数"><a class="header" href="#56-匿名函数">5.6. 匿名函数</a></h2>
|
||
<p>拥有函数名的函数只能在包级语法块中被声明,通过函数字面量(function literal),我们可绕过这一限制,在任何表达式中表示一个函数值。函数字面量的语法和函数声明相似,区别在于func关键字后没有函数名。函数值字面量是一种表达式,它的值被称为匿名函数(anonymous function)。</p>
|
||
<p>函数字面量允许我们在使用函数时,再定义它。通过这种技巧,我们可以改写之前对strings.Map的调用:</p>
|
||
<pre><code class="language-Go">strings.Map(func(r rune) rune { return r + 1 }, "HAL-9000")
|
||
</code></pre>
|
||
<p>更为重要的是,通过这种方式定义的函数可以访问完整的词法环境(lexical environment),这意味着在函数中定义的内部函数可以引用该函数的变量,如下例所示:</p>
|
||
<p><u><i>gopl.io/ch5/squares</i></u></p>
|
||
<pre><code class="language-Go">// squares返回一个匿名函数。
|
||
// 该匿名函数每次被调用时都会返回下一个数的平方。
|
||
func squares() func() int {
|
||
var x int
|
||
return func() int {
|
||
x++
|
||
return x * x
|
||
}
|
||
}
|
||
func main() {
|
||
f := squares()
|
||
fmt.Println(f()) // "1"
|
||
fmt.Println(f()) // "4"
|
||
fmt.Println(f()) // "9"
|
||
fmt.Println(f()) // "16"
|
||
}
|
||
</code></pre>
|
||
<p>函数squares返回另一个类型为 func() int 的函数。对squares的一次调用会生成一个局部变量x并返回一个匿名函数。每次调用匿名函数时,该函数都会先使x的值加1,再返回x的平方。第二次调用squares时,会生成第二个x变量,并返回一个新的匿名函数。新匿名函数操作的是第二个x变量。</p>
|
||
<p>squares的例子证明,函数值不仅仅是一串代码,还记录了状态。在squares中定义的匿名内部函数可以访问和更新squares中的局部变量,这意味着匿名函数和squares中,存在变量引用。这就是函数值属于引用类型和函数值不可比较的原因。Go使用闭包(closures)技术实现函数值,Go程序员也把函数值叫做闭包。</p>
|
||
<p>通过这个例子,我们看到变量的生命周期不由它的作用域决定:squares返回后,变量x仍然隐式的存在于f中。</p>
|
||
<p>接下来,我们讨论一个有点学术性的例子,考虑这样一个问题:给定一些计算机课程,每个课程都有前置课程,只有完成了前置课程才可以开始当前课程的学习;我们的目标是选择出一组课程,这组课程必须确保按顺序学习时,能全部被完成。每个课程的前置课程如下:</p>
|
||
<p><u><i>gopl.io/ch5/toposort</i></u></p>
|
||
<pre><code class="language-Go">// prereqs记录了每个课程的前置课程
|
||
var prereqs = map[string][]string{
|
||
"algorithms": {"data structures"},
|
||
"calculus": {"linear algebra"},
|
||
"compilers": {
|
||
"data structures",
|
||
"formal languages",
|
||
"computer organization",
|
||
},
|
||
"data structures": {"discrete math"},
|
||
"databases": {"data structures"},
|
||
"discrete math": {"intro to programming"},
|
||
"formal languages": {"discrete math"},
|
||
"networks": {"operating systems"},
|
||
"operating systems": {"data structures", "computer organization"},
|
||
"programming languages": {"data structures", "computer organization"},
|
||
}
|
||
</code></pre>
|
||
<p>这类问题被称作拓扑排序。从概念上说,前置条件可以构成有向图。图中的顶点表示课程,边表示课程间的依赖关系。显然,图中应该无环,这也就是说从某点出发的边,最终不会回到该点。下面的代码用深度优先搜索了整张图,获得了符合要求的课程序列。</p>
|
||
<pre><code class="language-Go">func main() {
|
||
for i, course := range topoSort(prereqs) {
|
||
fmt.Printf("%d:\t%s\n", i+1, course)
|
||
}
|
||
}
|
||
|
||
func topoSort(m map[string][]string) []string {
|
||
var order []string
|
||
seen := make(map[string]bool)
|
||
var visitAll func(items []string)
|
||
visitAll = func(items []string) {
|
||
for _, item := range items {
|
||
if !seen[item] {
|
||
seen[item] = true
|
||
visitAll(m[item])
|
||
order = append(order, item)
|
||
}
|
||
}
|
||
}
|
||
var keys []string
|
||
for key := range m {
|
||
keys = append(keys, key)
|
||
}
|
||
sort.Strings(keys)
|
||
visitAll(keys)
|
||
return order
|
||
}
|
||
</code></pre>
|
||
<p>当匿名函数需要被递归调用时,我们必须首先声明一个变量(在上面的例子中,我们首先声明了 visitAll),再将匿名函数赋值给这个变量。如果不分成两步,函数字面量无法与visitAll绑定,我们也无法递归调用该匿名函数。</p>
|
||
<pre><code class="language-Go">visitAll := func(items []string) {
|
||
// ...
|
||
visitAll(m[item]) // compile error: undefined: visitAll
|
||
// ...
|
||
}
|
||
</code></pre>
|
||
<p>在toposort程序的输出如下所示,它的输出顺序是大多人想看到的固定顺序输出,但是这需要我们多花点心思才能做到。哈希表prepreqs的value是遍历顺序固定的切片,而不再试遍历顺序随机的map,所以我们对prereqs的key值进行排序,保证每次运行toposort程序,都以相同的遍历顺序遍历prereqs。</p>
|
||
<pre><code>1: intro to programming
|
||
2: discrete math
|
||
3: data structures
|
||
4: algorithms
|
||
5: linear algebra
|
||
6: calculus
|
||
7: formal languages
|
||
8: computer organization
|
||
9: compilers
|
||
10: databases
|
||
11: operating systems
|
||
12: networks
|
||
13: programming languages
|
||
</code></pre>
|
||
<p>让我们回到findLinks这个例子。我们将代码移动到了links包下,将函数重命名为Extract,在第八章我们会再次用到这个函数。新的匿名函数被引入,用于替换原来的visit函数。该匿名函数负责将新连接添加到切片中。在Extract中,使用forEachNode遍历HTML页面,由于Extract只需要在遍历结点前操作结点,所以forEachNode的post参数被传入nil。</p>
|
||
<p><u><i>gopl.io/ch5/links</i></u></p>
|
||
<pre><code class="language-Go">// Package links provides a link-extraction function.
|
||
package links
|
||
import (
|
||
"fmt"
|
||
"net/http"
|
||
"golang.org/x/net/html"
|
||
)
|
||
// Extract makes an HTTP GET request to the specified URL, parses
|
||
// the response as HTML, and returns the links in the HTML document.
|
||
func Extract(url string) ([]string, error) {
|
||
resp, err := http.Get(url)
|
||
if err != nil {
|
||
return nil, err
|
||
}
|
||
if resp.StatusCode != http.StatusOK {
|
||
resp.Body.Close()
|
||
return nil, fmt.Errorf("getting %s: %s", url, resp.Status)
|
||
}
|
||
doc, err := html.Parse(resp.Body)
|
||
resp.Body.Close()
|
||
if err != nil {
|
||
return nil, fmt.Errorf("parsing %s as HTML: %v", url, err)
|
||
}
|
||
var links []string
|
||
visitNode := func(n *html.Node) {
|
||
if n.Type == html.ElementNode && n.Data == "a" {
|
||
for _, a := range n.Attr {
|
||
if a.Key != "href" {
|
||
continue
|
||
}
|
||
link, err := resp.Request.URL.Parse(a.Val)
|
||
if err != nil {
|
||
continue // ignore bad URLs
|
||
}
|
||
links = append(links, link.String())
|
||
}
|
||
}
|
||
}
|
||
forEachNode(doc, visitNode, nil)
|
||
return links, nil
|
||
}
|
||
</code></pre>
|
||
<p>上面的代码对之前的版本做了改进,现在links中存储的不是href属性的原始值,而是通过resp.Request.URL解析后的值。解析后,这些连接以绝对路径的形式存在,可以直接被http.Get访问。</p>
|
||
<p>网页抓取的核心问题就是如何遍历图。在topoSort的例子中,已经展示了深度优先遍历,在网页抓取中,我们会展示如何用广度优先遍历图。在第8章,我们会介绍如何将深度优先和广度优先结合使用。</p>
|
||
<p>下面的函数实现了广度优先算法。调用者需要输入一个初始的待访问列表和一个函数f。待访问列表中的每个元素被定义为string类型。广度优先算法会为每个元素调用一次f。每次f执行完毕后,会返回一组待访问元素。这些元素会被加入到待访问列表中。当待访问列表中的所有元素都被访问后,breadthFirst函数运行结束。为了避免同一个元素被访问两次,代码中维护了一个map。</p>
|
||
<p><u><i>gopl.io/ch5/findlinks3</i></u></p>
|
||
<pre><code class="language-Go">// breadthFirst calls f for each item in the worklist.
|
||
// Any items returned by f are added to the worklist.
|
||
// f is called at most once for each item.
|
||
func breadthFirst(f func(item string) []string, worklist []string) {
|
||
seen := make(map[string]bool)
|
||
for len(worklist) > 0 {
|
||
items := worklist
|
||
worklist = nil
|
||
for _, item := range items {
|
||
if !seen[item] {
|
||
seen[item] = true
|
||
worklist = append(worklist, f(item)...)
|
||
}
|
||
}
|
||
}
|
||
}
|
||
</code></pre>
|
||
<p>就像我们在章节3解释的那样,append的参数“f(item)...”,会将f返回的一组元素一个个添加到worklist中。</p>
|
||
<p>在我们网页抓取器中,元素的类型是url。crawl函数会将URL输出,提取其中的新链接,并将这些新链接返回。我们会将crawl作为参数传递给breadthFirst。</p>
|
||
<pre><code class="language-go">func crawl(url string) []string {
|
||
fmt.Println(url)
|
||
list, err := links.Extract(url)
|
||
if err != nil {
|
||
log.Print(err)
|
||
}
|
||
return list
|
||
}
|
||
</code></pre>
|
||
<p>为了使抓取器开始运行,我们用命令行输入的参数作为初始的待访问url。</p>
|
||
<pre><code class="language-Go">func main() {
|
||
// Crawl the web breadth-first,
|
||
// starting from the command-line arguments.
|
||
breadthFirst(crawl, os.Args[1:])
|
||
}
|
||
</code></pre>
|
||
<p>让我们从 https://golang.org 开始,下面是程序的输出结果:</p>
|
||
<pre><code>$ go build gopl.io/ch5/findlinks3
|
||
$ ./findlinks3 https://golang.org
|
||
https://golang.org/
|
||
https://golang.org/doc/
|
||
https://golang.org/pkg/
|
||
https://golang.org/project/
|
||
https://code.google.com/p/go-tour/
|
||
https://golang.org/doc/code.html
|
||
https://www.youtube.com/watch?v=XCsL89YtqCs
|
||
http://research.swtch.com/gotour
|
||
</code></pre>
|
||
<p>当所有发现的链接都已经被访问或电脑的内存耗尽时,程序运行结束。</p>
|
||
<p><strong>练习5.10:</strong> 重写topoSort函数,用map代替切片并移除对key的排序代码。验证结果的正确性(结果不唯一)。</p>
|
||
<p><strong>练习5.11:</strong> 现在线性代数的老师把微积分设为了前置课程。完善topSort,使其能检测有向图中的环。</p>
|
||
<p><strong>练习5.12:</strong> gopl.io/ch5/outline2(5.5节)的startElement和endElement共用了全局变量depth,将它们修改为匿名函数,使其共享outline中的局部变量。</p>
|
||
<p><strong>练习5.13:</strong> 修改crawl,使其能保存发现的页面,必要时,可以创建目录来保存这些页面。只保存来自原始域名下的页面。假设初始页面在golang.org下,就不要保存vimeo.com下的页面。</p>
|
||
<p><strong>练习5.14:</strong> 使用breadthFirst遍历其他数据结构。比如,topoSort例子中的课程依赖关系(有向图)、个人计算机的文件层次结构(树);你所在城市的公交或地铁线路(无向图)。</p>
|
||
<h3 id="561-警告捕获迭代变量"><a class="header" href="#561-警告捕获迭代变量">5.6.1. 警告:捕获迭代变量</a></h3>
|
||
<p>本节,将介绍Go词法作用域的一个陷阱。请务必仔细的阅读,弄清楚发生问题的原因。即使是经验丰富的程序员也会在这个问题上犯错误。</p>
|
||
<p>考虑这样一个问题:你被要求首先创建一些目录,再将目录删除。在下面的例子中我们用函数值来完成删除操作。下面的示例代码需要引入os包。为了使代码简单,我们忽略了所有的异常处理。</p>
|
||
<pre><code class="language-Go">var rmdirs []func()
|
||
for _, d := range tempDirs() {
|
||
dir := d // NOTE: necessary!
|
||
os.MkdirAll(dir, 0755) // creates parent directories too
|
||
rmdirs = append(rmdirs, func() {
|
||
os.RemoveAll(dir)
|
||
})
|
||
}
|
||
// ...do some work…
|
||
for _, rmdir := range rmdirs {
|
||
rmdir() // clean up
|
||
}
|
||
</code></pre>
|
||
<p>你可能会感到困惑,为什么要在循环体中用循环变量d赋值一个新的局部变量,而不是像下面的代码一样直接使用循环变量dir。需要注意,下面的代码是错误的。</p>
|
||
<pre><code class="language-go">var rmdirs []func()
|
||
for _, dir := range tempDirs() {
|
||
os.MkdirAll(dir, 0755)
|
||
rmdirs = append(rmdirs, func() {
|
||
os.RemoveAll(dir) // NOTE: incorrect!
|
||
})
|
||
}
|
||
</code></pre>
|
||
<p>问题的原因在于循环变量的作用域。在上面的程序中,for循环语句引入了新的词法块,循环变量dir在这个词法块中被声明。在该循环中生成的所有函数值都共享相同的循环变量。需要注意,函数值中记录的是循环变量的内存地址,而不是循环变量某一时刻的值。以dir为例,后续的迭代会不断更新dir的值,当删除操作执行时,for循环已完成,dir中存储的值等于最后一次迭代的值。这意味着,每次对os.RemoveAll的调用删除的都是相同的目录。</p>
|
||
<p>通常,为了解决这个问题,我们会引入一个与循环变量同名的局部变量,作为循环变量的副本。比如下面的变量dir,虽然这看起来很奇怪,但却很有用。</p>
|
||
<pre><code class="language-Go">for _, dir := range tempDirs() {
|
||
dir := dir // declares inner dir, initialized to outer dir
|
||
// ...
|
||
}
|
||
</code></pre>
|
||
<p>这个问题不仅存在基于range的循环,在下面的例子中,对循环变量i的使用也存在同样的问题:</p>
|
||
<pre><code class="language-Go">var rmdirs []func()
|
||
dirs := tempDirs()
|
||
for i := 0; i < len(dirs); i++ {
|
||
os.MkdirAll(dirs[i], 0755) // OK
|
||
rmdirs = append(rmdirs, func() {
|
||
os.RemoveAll(dirs[i]) // NOTE: incorrect!
|
||
})
|
||
}
|
||
</code></pre>
|
||
<p>如果你使用go语句(第八章)或者defer语句(5.8节)会经常遇到此类问题。这不是go或defer本身导致的,而是因为它们都会等待循环结束后,再执行函数值。</p>
|
||
|
||
|
||
<!-- 公众号 -->
|
||
<hr>
|
||
<table>
|
||
<tr>
|
||
<td>
|
||
<img width="222px" src="https://chai2010.cn/advanced-go-programming-book/css.png">
|
||
</td>
|
||
<td>
|
||
<img width="222px" src="https://chai2010.cn/advanced-go-programming-book/cch.png">
|
||
</td>
|
||
</tr>
|
||
</table>
|
||
|
||
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