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Vue

Home: https://cn.vuejs.org/

Directory

src
├── compiler        # 编译相关 
├── core            # 核心代码 
├── platforms       # 不同平台的支持
├── server          # 服务端渲染
├── sfc             # .vue 文件解析
├── shared          # 共享代码

Start

Dist && Entry

"name": "vue",
"version": "2.6.11",
"description": "Reactive, component-oriented view layer for modern web interfaces.",
"main": "dist/vue.runtime.common.js",
"scripts": {
    "build": "node scripts/build.js",
    "build:ssr": "npm run build -- web-runtime-cjs,web-server-renderer",
    "build:weex": "npm run build -- weex",
}

build.js 构建(Rollup) (scripts)

从配置文件拿到配置,再通过命令行参数对构建配置进行过滤,使得可以构建出不同用途的 Vue.js

//  获取到所有的配置
let builds = require('./config').getAllBuilds()

// filter builds via command line arg
/* process.argv 属性返回一个数组,这个数组包含了启动 Node.js 进程时的命令行参数,
   process.argv[0]——返回启动 Node.js 进程的可执行文件所在的绝对路径
   process.argv[1]——为当前执行的 JavaScript 文件路径
   剩余的元素为其他命令行参数
*/
if (process.argv[2]) {
  const filters = process.argv[2].split(',')
  builds = builds.filter(b => {
    return filters.some(f => b.output.file.indexOf(f) > -1 || b._name.indexOf(f) > -1)
  })
} else {
  // filter out weex builds by default
  builds = builds.filter(b => {
    return b.output.file.indexOf('weex') === -1
  })
}

build(builds)

config.js (scripts)

// Runtime+compiler ES modules build (for bundlers)
  'web-full-esm': {
    entry: resolve('web/entry-runtime-with-compiler.js'),
    dest: resolve('dist/vue.esm.js'),
    format: 'es',
    alias: { he: './entity-decoder' },
    banner
  },
      
//	function resolve --- 方便演示跟随上面的入口例子 Go
const aliases = require('./alias')
const resolve = p => {	//	'web/entry-runtime-with-compiler.js'
  const base = p.split('/')[0]	//	web
  if (aliases[base]) {	//	'src/platforms/web'
    return path.resolve(aliases[base], p.slice(base.length + 1))
      //	'src/platforms/web/entry-runtime-with-compiler.js'
  } else {
    return path.resolve(__dirname, '../', p)
  }
}

alias.js (scripts)

const resolve = p => path.resolve(__dirname, '../', p)

module.exports = {
  vue: resolve('src/platforms/web/entry-runtime-with-compiler'),
  compiler: resolve('src/compiler'),
  core: resolve('src/core'),
  shared: resolve('src/shared'),
  web: resolve('src/platforms/web'),
  weex: resolve('src/platforms/weex'),
  server: resolve('src/server'),
  sfc: resolve('src/sfc')
}

此时我们就找到了我们需要分析的 Vue 入口文件:src/platforms/web/entry-runtime-with-compiler.js

entry-runtime-with-compiler.js

/* @flow */

import config from 'core/config'
import { warn, cached } from 'core/util/index'
import { mark, measure } from 'core/util/perf'

import Vue from './runtime/index'
import { query } from './util/index'
import { compileToFunctions } from './compiler/index'
import { shouldDecodeNewlines, shouldDecodeNewlinesForHref } from './util/compat'

const idToTemplate = cached(id => {
  const el = query(id)
  return el && el.innerHTML
})

//  先将 $mount(src\platforms\web\runtime\index.js) 缓存起来
const mount = Vue.prototype.$mount
/*
  * override $mount
  * el 需要挂载的东西,字符串或者 DOM 对象
  * hydrating ssr (服务端渲染)
 */
Vue.prototype.$mount = function (
  el?: string | Element,
  hydrating?: boolean
): Component {
  //	查询 el 节点,成功返回该节点否则直接返回一个 DIV (document.createElement('div'))
  el = el && query(el)

  /* istanbul ignore if */
  //	进行 el 节点判断,因为我们的 vue 最后是直接替换掉页面代码,如果 el 节点为我们的根节点,我们替换掉后网页就没有了 body or document,那么网页肯定是错误的
  if (el === document.body || el === document.documentElement) {
    process.env.NODE_ENV !== 'production' && warn(
      `Do not mount Vue to <html> or <body> - mount to normal elements instead.`
    )
    return this
  }

  const options = this.$options
  // resolve template/el and convert to render function
  // 处理我们的模板并转换为 render 函数
  if (!options.render) {	//	if not render function
    let template = options.template
    if (template) {
      if (typeof template === 'string') {
        if (template.charAt(0) === '#') {
          template = idToTemplate(template)
          /* istanbul ignore if */
          if (process.env.NODE_ENV !== 'production' && !template) {
            warn(
              `Template element not found or is empty: ${options.template}`,
              this
            )
          }
        }
      } else if (template.nodeType) {
        template = template.innerHTML
      } else {
        if (process.env.NODE_ENV !== 'production') {
          warn('invalid template option:' + template, this)
        }
        return this
      }
    } else if (el) {
      template = getOuterHTML(el)
    }
    if (template) {
      /* istanbul ignore if */
      if (process.env.NODE_ENV !== 'production' && config.performance && mark) {
        mark('compile')
      }

      const { render, staticRenderFns } = compileToFunctions(template, {
        outputSourceRange: process.env.NODE_ENV !== 'production',
        shouldDecodeNewlines,
        shouldDecodeNewlinesForHref,
        delimiters: options.delimiters,
        comments: options.comments
      }, this)
      options.render = render
      options.staticRenderFns = staticRenderFns

      /* istanbul ignore if */
      if (process.env.NODE_ENV !== 'production' && config.performance && mark) {
        mark('compile end')
        measure(`vue ${this._name} compile`, 'compile', 'compile end')
      }
    }
  }
  //  如果我们直接传入了 render function 则不会进行上面的模板处理操作而是直接去调用挂载方法
  return mount.call(this, el, hydrating)
    
    // public mount method 因此最后挂载时调用的是 mountComponent() 方法
    Vue.prototype.$mount = function (
      el?: string | Element,
      hydrating?: boolean
    ): Component {
      el = el && inBrowser ? query(el) : undefined
      return mountComponent(this, el, hydrating)
    }
    
}

/**
 * Get outerHTML of elements, taking care
 * of SVG elements in IE as well.
 */
function getOuterHTML (el: Element): string {
  if (el.outerHTML) {
    return el.outerHTML
  } else {
    const container = document.createElement('div')
    container.appendChild(el.cloneNode(true))
    return container.innerHTML
  }
}

Vue.compile = compileToFunctions

export default Vue

这个入口文件目前看起来和我们初次见到源码时是一样的懵逼,但是我们可以先暂时跳过,重点关注导入的 Vue

  • ./runtime/index
    • 'core/index' --- 这里我们需要关注initGlobalAPI(Vue)具体内容见代码
      • './instance/index'

此时我们就来到真正的核心入口处:

src\core\instance\index.js

import { initMixin } from './init'
import { stateMixin } from './state'
import { renderMixin } from './render'
import { eventsMixin } from './events'
import { lifecycleMixin } from './lifecycle'
import { warn } from '../util/index'

function Vue (options) {
  if (process.env.NODE_ENV !== 'production' &&
    !(this instanceof Vue)
  ) {
    warn('Vue is a constructor and should be called with the `new` keyword')
  }
  this._init(options)
}

initMixin(Vue)
stateMixin(Vue)
eventsMixin(Vue)
lifecycleMixin(Vue)
renderMixin(Vue)

export default Vue

Vue 是通过 function 的方式创建的,而非 ES6 中的 class 的方式,这便也算是其巧妙之处,因为在上面的代码里面可以看到后续是通过一系列的 Mixin 方法对 Vue 进行扩展,这样就可以通过功能将其分散到各个模块来进行实现,不需要我们在一个模块就直接定义好所有的功能,因为一个模块所实现的功能越多自然对于代码质量和以后的维护会造成很大的影响。

new Vue

  • init
  • mount
  • compile
  • _render --- VNode
  • _update
  • patch --- DOM

src\core\instance\init.js

/* @flow */

import config from '../config'
import { initProxy } from './proxy'
import { initState } from './state'
import { initRender } from './render'
import { initEvents } from './events'
import { mark, measure } from '../util/perf'
import { initLifecycle, callHook } from './lifecycle'
import { initProvide, initInjections } from './inject'
import { extend, mergeOptions, formatComponentName } from '../util/index'

let uid = 0

export function initMixin (Vue: Class<Component>) {
  Vue.prototype._init = function (options?: Object) {
    const vm: Component = this
    // a uid
    vm._uid = uid++

    let startTag, endTag
    /* istanbul ignore if */
    if (process.env.NODE_ENV !== 'production' && config.performance && mark) {
      startTag = `vue-perf-start:${vm._uid}`
      endTag = `vue-perf-end:${vm._uid}`
      mark(startTag)
    }

    // a flag to avoid this being observed
    vm._isVue = true
    // merge options
    if (options && options._isComponent) {
      // optimize internal component instantiation
      // since dynamic options merging is pretty slow, and none of the
      // internal component options needs special treatment.
      initInternalComponent(vm, options)
    } else {
      vm.$options = mergeOptions(
        resolveConstructorOptions(vm.constructor),
        options || {},
        vm
      )
    }
    /* istanbul ignore else */
    if (process.env.NODE_ENV !== 'production') {
      initProxy(vm)
    } else {
      vm._renderProxy = vm
    }
    // expose real self
    vm._self = vm
    //	初始化生命周期
    initLifecycle(vm)
    //	初始化事件
    initEvents(vm)
    initRender(vm)
    callHook(vm, 'beforeCreate')
    initInjections(vm) // resolve injections before data/props
    //	初始化	props/data/methods/watch...
    initState(vm)
    initProvide(vm) // resolve provide after data/props
    callHook(vm, 'created')

    /* istanbul ignore if */
    if (process.env.NODE_ENV !== 'production' && config.performance && mark) {
      vm._name = formatComponentName(vm, false)
      mark(endTag)
      measure(`vue ${vm._name} init`, startTag, endTag)
    }

    if (vm.$options.el) {
      vm.$mount(vm.$options.el)
    }
  }
}
......

具体的初始化过程我们可以直接跳到相应的文件进行查阅,初始化完成后就进行挂载点检测并进行模板或者 render 函数挂载渲染成实际的 DOM(这中间也包含一大段的内容,比如 vnode等)

$mount方法其实我们在entry-runtime-with-compiler.js就已经见到过,见上面或根据目录跳转。

因为真正的挂载是调用 mountComponent() 这个方法,接下来详细阅读它:

src\platforms\web\runtime\index.js

// public mount method
Vue.prototype.$mount = function (
  el?: string | Element,
  hydrating?: boolean
): Component {
  el = el && inBrowser ? query(el) : undefined
  return mountComponent(this, el, hydrating)
}

src\core\instance\lifecycle.js

// ...more
export function mountComponent (
  vm: Component,
  el: ?Element,
  hydrating?: boolean
): Component {
  vm.$el = el
  if (!vm.$options.render) {
    //  创建一个空文本 vnode
    vm.$options.render = createEmptyVNode
    if (process.env.NODE_ENV !== 'production') {
      /* istanbul ignore if */
      if ((vm.$options.template && vm.$options.template.charAt(0) !== '#') ||
        vm.$options.el || el) {
        warn(
          'You are using the runtime-only build of Vue where the template ' +
          'compiler is not available. Either pre-compile the templates into ' +
          'render functions, or use the compiler-included build.',
          vm
        )
      } else {
        warn(
          'Failed to mount component: template or render function not defined.',
          vm
        )
      }
    }
  }
  callHook(vm, 'beforeMount')

  let updateComponent
  /* istanbul ignore if */
  if (process.env.NODE_ENV !== 'production' && config.performance && mark) {
    updateComponent = () => {
      const name = vm._name
      const id = vm._uid
      const startTag = `vue-perf-start:${id}`
      const endTag = `vue-perf-end:${id}`

      mark(startTag)
      const vnode = vm._render()
      mark(endTag)
      measure(`vue ${name} render`, startTag, endTag)

      mark(startTag)
      vm._update(vnode, hydrating)
      mark(endTag)
      measure(`vue ${name} patch`, startTag, endTag)
    }
  } else {
    //  Key
    updateComponent = () => {
      //  vm._render() 将返回一个 VNode
      vm._update(vm._render(), hydrating)
    }
  }

  // we set this to vm._watcher inside the watcher's constructor
  // since the watcher's initial patch may call $forceUpdate (e.g. inside child
  // component's mounted hook), which relies on vm._watcher being already defined
  // 渲染 watcher ,因为我们后续数据更新后就还需要使用该渲染 watcher to update view
  // 通过传入第五个 boolean 类型的参数来区分 watcher 类型,因为后续我们还有用于数据绑定的 watcher
  new Watcher(vm, updateComponent, noop, {
    before () {
      if (vm._isMounted && !vm._isDestroyed) {
        callHook(vm, 'beforeUpdate')
      }
    }
  }, true /* isRenderWatcher */)
  hydrating = false

  // manually mounted instance, call mounted on self
  // mounted is called for render-created child components in its inserted hook
  if (vm.$vnode == null) {
    vm._isMounted = true
    callHook(vm, 'mounted')
  }
  return vm
}

export function updateChildComponent (
  vm: Component,
  propsData: ?Object,
  listeners: ?Object,
  parentVnode: MountedComponentVNode,
  renderChildren: ?Array<VNode>
) {
  if (process.env.NODE_ENV !== 'production') {
    isUpdatingChildComponent = true
  }

  // determine whether component has slot children
  // we need to do this before overwriting $options._renderChildren.

  // check if there are dynamic scopedSlots (hand-written or compiled but with
  // dynamic slot names). Static scoped slots compiled from template has the
  // "$stable" marker.
  const newScopedSlots = parentVnode.data.scopedSlots
  const oldScopedSlots = vm.$scopedSlots
  const hasDynamicScopedSlot = !!(
    (newScopedSlots && !newScopedSlots.$stable) ||
    (oldScopedSlots !== emptyObject && !oldScopedSlots.$stable) ||
    (newScopedSlots && vm.$scopedSlots.$key !== newScopedSlots.$key)
  )

  // Any static slot children from the parent may have changed during parent's
  // update. Dynamic scoped slots may also have changed. In such cases, a forced
  // update is necessary to ensure correctness.
  const needsForceUpdate = !!(
    renderChildren ||               // has new static slots
    vm.$options._renderChildren ||  // has old static slots
    hasDynamicScopedSlot
  )

  vm.$options._parentVnode = parentVnode
  vm.$vnode = parentVnode // update vm's placeholder node without re-render

  if (vm._vnode) { // update child tree's parent
    vm._vnode.parent = parentVnode
  }
  vm.$options._renderChildren = renderChildren

  // update $attrs and $listeners hash
  // these are also reactive so they may trigger child update if the child
  // used them during render
  vm.$attrs = parentVnode.data.attrs || emptyObject
  vm.$listeners = listeners || emptyObject

  // update props
  if (propsData && vm.$options.props) {
    toggleObserving(false)
    const props = vm._props
    const propKeys = vm.$options._propKeys || []
    for (let i = 0; i < propKeys.length; i++) {
      const key = propKeys[i]
      const propOptions: any = vm.$options.props // wtf flow?
      props[key] = validateProp(key, propOptions, propsData, vm)
    }
    toggleObserving(true)
    // keep a copy of raw propsData
    vm.$options.propsData = propsData
  }

  // update listeners
  listeners = listeners || emptyObject
  const oldListeners = vm.$options._parentListeners
  vm.$options._parentListeners = listeners
  updateComponentListeners(vm, listeners, oldListeners)

  // resolve slots + force update if has children
  if (needsForceUpdate) {
    vm.$slots = resolveSlots(renderChildren, parentVnode.context)
    vm.$forceUpdate()
  }

  if (process.env.NODE_ENV !== 'production') {
    isUpdatingChildComponent = false
  }
}

// ...more

export function callHook (vm: Component, hook: string) {
  // #7573 disable dep collection when invoking lifecycle hooks
  pushTarget()
  const handlers = vm.$options[hook]
  const info = `${hook} hook`
  if (handlers) {
    for (let i = 0, j = handlers.length; i < j; i++) {
      invokeWithErrorHandling(handlers[i], vm, null, vm, info)
    }
  }
  if (vm._hasHookEvent) {
    vm.$emit('hook:' + hook)
  }
  popTarget()
}

正如注释为 key的地方有vm._rendervm._update两个核心方法:

vm._render

src\core\instance\render.js

/* @flow */

import {
  warn,
  nextTick,
  emptyObject,
  handleError,
  defineReactive
} from '../util/index'

import { createElement } from '../vdom/create-element'
import { installRenderHelpers } from './render-helpers/index'
import { resolveSlots } from './render-helpers/resolve-slots'
import { normalizeScopedSlots } from '../vdom/helpers/normalize-scoped-slots'
import VNode, { createEmptyVNode } from '../vdom/vnode'

import { isUpdatingChildComponent } from './lifecycle'

export function initRender (vm: Component) {
  vm._vnode = null // the root of the child tree
  vm._staticTrees = null // v-once cached trees
  const options = vm.$options
  const parentVnode = vm.$vnode = options._parentVnode // the placeholder node in parent tree
  const renderContext = parentVnode && parentVnode.context
  vm.$slots = resolveSlots(options._renderChildren, renderContext)
  vm.$scopedSlots = emptyObject
  // bind the createElement fn to this instance
  // so that we get proper render context inside it.
  // args order: tag, data, children, normalizationType, alwaysNormalize
  // internal version is used by render functions compiled from templates
  vm._c = (a, b, c, d) => createElement(vm, a, b, c, d, false)
  // normalization is always applied for the public version, used in
  // user-written render functions.
  vm.$createElement = (a, b, c, d) => createElement(vm, a, b, c, d, true)

  // $attrs & $listeners are exposed for easier HOC creation.
  // they need to be reactive so that HOCs using them are always updated
  const parentData = parentVnode && parentVnode.data

  /* istanbul ignore else */
  if (process.env.NODE_ENV !== 'production') {
    defineReactive(vm, '$attrs', parentData && parentData.attrs || emptyObject, () => {
      !isUpdatingChildComponent && warn(`$attrs is readonly.`, vm)
    }, true)
    defineReactive(vm, '$listeners', options._parentListeners || emptyObject, () => {
      !isUpdatingChildComponent && warn(`$listeners is readonly.`, vm)
    }, true)
  } else {
    defineReactive(vm, '$attrs', parentData && parentData.attrs || emptyObject, null, true)
    defineReactive(vm, '$listeners', options._parentListeners || emptyObject, null, true)
  }
}

export let currentRenderingInstance: Component | null = null

// for testing only
export function setCurrentRenderingInstance (vm: Component) {
  currentRenderingInstance = vm
}

export function renderMixin (Vue: Class<Component>) {
  // install runtime convenience helpers
  installRenderHelpers(Vue.prototype)

  Vue.prototype.$nextTick = function (fn: Function) {
    return nextTick(fn, this)
  }

  Vue.prototype._render = function (): VNode {
    const vm: Component = this
    const { render, _parentVnode } = vm.$options

    if (_parentVnode) {
      vm.$scopedSlots = normalizeScopedSlots(
        _parentVnode.data.scopedSlots,
        vm.$slots,
        vm.$scopedSlots
      )
    }

    // set parent vnode. this allows render functions to have access
    // to the data on the placeholder node.
    vm.$vnode = _parentVnode
    // render self
    let vnode
    try {
      // There's no need to maintain a stack because all render fns are called
      // separately from one another. Nested component's render fns are called
      // when parent component is patched.
      currentRenderingInstance = vm
      vnode = render.call(vm._renderProxy, vm.$createElement)
    } catch (e) {
      handleError(e, vm, `render`)
      // return error render result,
      // or previous vnode to prevent render error causing blank component
      /* istanbul ignore else */
      if (process.env.NODE_ENV !== 'production' && vm.$options.renderError) {
        try {
          vnode = vm.$options.renderError.call(vm._renderProxy, vm.$createElement, e)
        } catch (e) {
          handleError(e, vm, `renderError`)
          vnode = vm._vnode
        }
      } else {
        vnode = vm._vnode
      }
    } finally {
      currentRenderingInstance = null
    }
    // if the returned array contains only a single node, allow it
    if (Array.isArray(vnode) && vnode.length === 1) {
      vnode = vnode[0]
    }
    // return empty vnode in case the render function errored out
    // 根节点只能有一个 vnode 比如一个模板只能有一个 div,otherwise warn
    if (!(vnode instanceof VNode)) {
      if (process.env.NODE_ENV !== 'production' && Array.isArray(vnode)) {
        warn(
          'Multiple root nodes returned from render function. Render function ' +
          'should return a single root node.',
          vm
        )
      }
      vnode = createEmptyVNode()
    }
    // set parent
    vnode.parent = _parentVnode
    return vnode
  }
}

其中的 vm._renderProxy

/* istanbul ignore else --- src\core\instance\init.js */
if (process.env.NODE_ENV !== 'production') {
    initProxy(vm)
} else {	//	生产环境
    vm._renderProxy = vm
}
// initProxy function

/* not type checking this file because flow doesn't play well with Proxy */

import config from 'core/config'
import { warn, makeMap, isNative } from '../util/index'

let initProxy

if (process.env.NODE_ENV !== 'production') {
  const allowedGlobals = makeMap(
    'Infinity,undefined,NaN,isFinite,isNaN,' +
    'parseFloat,parseInt,decodeURI,decodeURIComponent,encodeURI,encodeURIComponent,' +
    'Math,Number,Date,Array,Object,Boolean,String,RegExp,Map,Set,JSON,Intl,' +
    'require' // for Webpack/Browserify
  )

  const warnNonPresent = (target, key) => {
    warn(
      `Property or method "${key}" is not defined on the instance but ` +
      'referenced during render. Make sure that this property is reactive, ' +
      'either in the data option, or for class-based components, by ' +
      'initializing the property. ' +
      'See: https://vuejs.org/v2/guide/reactivity.html#Declaring-Reactive-Properties.',
      target
    )
  }

  const warnReservedPrefix = (target, key) => {
    warn(
      `Property "${key}" must be accessed with "$data.${key}" because ` +
      'properties starting with "$" or "_" are not proxied in the Vue instance to ' +
      'prevent conflicts with Vue internals. ' +
      'See: https://vuejs.org/v2/api/#data',
      target
    )
  }

  //  判断浏览器是否支持 Proxy
  const hasProxy =
    typeof Proxy !== 'undefined' && isNative(Proxy)

  if (hasProxy) {
    const isBuiltInModifier = makeMap('stop,prevent,self,ctrl,shift,alt,meta,exact')
    config.keyCodes = new Proxy(config.keyCodes, {
      set (target, key, value) {
        if (isBuiltInModifier(key)) {
          warn(`Avoid overwriting built-in modifier in config.keyCodes: .${key}`)
          return false
        } else {
          target[key] = value
          return true
        }
      }
    })
  }

  const hasHandler = {
    has (target, key) {
      const has = key in target
      const isAllowed = allowedGlobals(key) ||
        (typeof key === 'string' && key.charAt(0) === '_' && !(key in target.$data))
      if (!has && !isAllowed) {
        if (key in target.$data) warnReservedPrefix(target, key)
        //  如果我们使用了未定义的变量则会报错
        else warnNonPresent(target, key)
      }
      return has || !isAllowed
    }
  }

  const getHandler = {
    get (target, key) {
      if (typeof key === 'string' && !(key in target)) {
        if (key in target.$data) warnReservedPrefix(target, key)
        else warnNonPresent(target, key)
      }
      return target[key]
    }
  }

  initProxy = function initProxy (vm) {
    if (hasProxy) {
      // determine which proxy handler to use
      const options = vm.$options
      const handlers = options.render && options.render._withStripped
        ? getHandler
        : hasHandler
      vm._renderProxy = new Proxy(vm, handlers)
    } else {
      vm._renderProxy = vm
    }
  }
}

export { initProxy }

vm.$createElement

// bind the createElement fn to this instance
// so that we get proper render context inside it.
// args order: tag, data, children, normalizationType, alwaysNormalize
// internal version is used by render functions compiled from templates
vm._c = (a, b, c, d) => createElement(vm, a, b, c, d, false)
// normalization is always applied for the public version, used in
// user-written render functions.
vm.$createElement = (a, b, c, d) => createElement(vm, a, b, c, d, true)

src\core\vdom\create-element.js

/* @flow */

import config from '../config'
import VNode, { createEmptyVNode } from './vnode'
import { createComponent } from './create-component'
import { traverse } from '../observer/traverse'

import {
  warn,
  isDef,
  isUndef,
  isTrue,
  isObject,
  isPrimitive,
  resolveAsset
} from '../util/index'

import {
  normalizeChildren,
  simpleNormalizeChildren
} from './helpers/index'

const SIMPLE_NORMALIZE = 1
const ALWAYS_NORMALIZE = 2

// wrapper function for providing a more flexible interface
// without getting yelled at by flow
export function createElement (
  context: Component,
  tag: any,
  data: any,
  children: any,
  normalizationType: any,
  alwaysNormalize: boolean
): VNode | Array<VNode> {
  //  当没有传入 data 的时候对参数进行前移操作
  if (Array.isArray(data) || isPrimitive(data)) {
    normalizationType = children
    children = data
    data = undefined
  }
  //  设置 normalizationType 后续会根据其值对 children 进行数据拍平处理
  //  处理见 src\core\vdom\helpers\normalize-children.js
  if (isTrue(alwaysNormalize)) {
    normalizationType = ALWAYS_NORMALIZE
  }
  //  此时可以看出 createElement 是对 _createElement 进行的封装操作(预处理参数)
  return _createElement(context, tag, data, children, normalizationType)
}

export function _createElement (
  context: Component,
  tag?: string | Class<Component> | Function | Object,
  data?: VNodeData,
  children?: any,
  normalizationType?: number
): VNode | Array<VNode> {
  //  判断 data 是否为响应式(会在其上添加 __ob__)
  if (isDef(data) && isDef((data: any).__ob__)) {
    process.env.NODE_ENV !== 'production' && warn(
      `Avoid using observed data object as vnode data: $\{JSON.stringify(data)}\n` +
      'Always create fresh vnode data objects in each render!',
      context
    )
    //  返回一个空的注释 VNode
    return createEmptyVNode()
  }
  // object syntax in v-bind
  if (isDef(data) && isDef(data.is)) {
    tag = data.is
  }
  if (!tag) {
    // in case of component :is set to falsy value
    return createEmptyVNode()
  }
  // warn against non-primitive key
  if (process.env.NODE_ENV !== 'production' &&
    isDef(data) && isDef(data.key) && !isPrimitive(data.key)
  ) {
    if (!__WEEX__ || !('@binding' in data.key)) {
      warn(
        'Avoid using non-primitive value as key, ' +
        'use string/number value instead.',
        context
      )
    }
  }
  // support single function children as default scoped slot
  if (Array.isArray(children) &&
    typeof children[0] === 'function'
  ) {
    data = data || {}
    data.scopedSlots = { default: children[0] }
    children.length = 0
  }
  if (normalizationType === ALWAYS_NORMALIZE) {
    children = normalizeChildren(children)
  } else if (normalizationType === SIMPLE_NORMALIZE) {
    children = simpleNormalizeChildren(children)
  }
  let vnode, ns
  if (typeof tag === 'string') {
    let Ctor
    ns = (context.$vnode && context.$vnode.ns) || config.getTagNamespace(tag)
    //  判断是否为平台原生标签 比如 div
    if (config.isReservedTag(tag)) {
      // platform built-in elements
      if (process.env.NODE_ENV !== 'production' && isDef(data) && isDef(data.nativeOn)) {
        warn(
          `The .native modifier for v-on is only valid on components but it was used on <${tag}>.`,
          context
        )
      }
      vnode = new VNode(
        config.parsePlatformTagName(tag), data, children,
        undefined, undefined, context
      )
    } else if ((!data || !data.pre) && isDef(Ctor = resolveAsset(context.$options, 'components', tag))) {
      // component
      vnode = createComponent(Ctor, data, context, children, tag)
    } else {
      // unknown or unlisted namespaced elements
      // check at runtime because it may get assigned a namespace when its
      // parent normalizes children
      vnode = new VNode(
        tag, data, children,
        undefined, undefined, context
      )
    }
  } else {
    // direct component options / constructor
    vnode = createComponent(tag, data, context, children)
  }
  if (Array.isArray(vnode)) {
    return vnode
  } else if (isDef(vnode)) {
    if (isDef(ns)) applyNS(vnode, ns)
    if (isDef(data)) registerDeepBindings(data)
    return vnode
  } else {
    return createEmptyVNode()
  }
}

function applyNS (vnode, ns, force) {
  vnode.ns = ns
  if (vnode.tag === 'foreignObject') {
    // use default namespace inside foreignObject
    ns = undefined
    force = true
  }
  if (isDef(vnode.children)) {
    for (let i = 0, l = vnode.children.length; i < l; i++) {
      const child = vnode.children[i]
      if (isDef(child.tag) && (
        isUndef(child.ns) || (isTrue(force) && child.tag !== 'svg'))) {
        applyNS(child, ns, force)
      }
    }
  }
}

// ref #5318
// necessary to ensure parent re-render when deep bindings like :style and
// :class are used on slot nodes
function registerDeepBindings (data) {
  if (isObject(data.style)) {
    traverse(data.style)
  }
  if (isObject(data.class)) {
    traverse(data.class)
  }
}

vm._update

初次渲染和数据更新后的视图更新需要执行此方法

src\core\instance\lifecycle.js(part)

Vue.prototype._update = function (vnode: VNode, hydrating?: boolean) {
    const vm: Component = this
    const prevEl = vm.$el
    const prevVnode = vm._vnode
    const restoreActiveInstance = setActiveInstance(vm)
    vm._vnode = vnode
    // Vue.prototype.__patch__ is injected in entry points
    // based on the rendering backend used.
    if (!prevVnode) {
      // initial render
      // 真实的 dom,virtual node(_render function value),false(服务端渲染),false
      vm.$el = vm.__patch__(vm.$el, vnode, hydrating, false /* removeOnly */)
    } else {
      // updates
      vm.$el = vm.__patch__(prevVnode, vnode)
    }
    restoreActiveInstance()
    // update __vue__ reference
    if (prevEl) {
      prevEl.__vue__ = null
    }
    if (vm.$el) {
      vm.$el.__vue__ = vm
    }
    // if parent is an HOC, update its $el as well
    if (vm.$vnode && vm.$parent && vm.$vnode === vm.$parent._vnode) {
      vm.$parent.$el = vm.$el
    }
    // updated hook is called by the scheduler to ensure that children are
    // updated in a parent's updated hook.
}
// src\platforms\web\runtime\index.js
// install platform patch function
import { patch } from './patch'
// 因为服务端没有 dom 则不需要 patch 而直接传入 noop(null function) 即可
Vue.prototype.__patch__ = inBrowser ? patch : noop

// src\platforms\web\runtime\patch.js
// the directive module should be applied last, after all
// built-in modules have been applied.
const modules = platformModules.concat(baseModules)
/*
  * nodeOps 一系列操作 dom function
  * modules dom 上的 attrs/class/style/events...
  * 函数柯里化 --- 不同平台的 DOM 操作也是有区别的
 */
export const patch: Function = createPatchFunction({ nodeOps, modules })
// src\core\vdom\patch.js
export function createPatchFunction (backend) {
  let i, j
  const cbs = {}

  const { modules, nodeOps } = backend

  for (i = 0; i < hooks.length; ++i) {
    cbs[hooks[i]] = []
    for (j = 0; j < modules.length; ++j) {
      if (isDef(modules[j][hooks[i]])) {
        cbs[hooks[i]].push(modules[j][hooks[i]])
      }
    }
  }
    
  function emptyNodeAt (elm) {
    return new VNode(nodeOps.tagName(elm).toLowerCase(), {}, [], undefined, elm)
  }
    
  function insert (parent, elm, ref) {
    if (isDef(parent)) {
      if (isDef(ref)) {
        if (nodeOps.parentNode(ref) === parent) {
          nodeOps.insertBefore(parent, elm, ref)
        }
      } else {
        nodeOps.appendChild(parent, elm)
      }
    }
  }

  function createChildren (vnode, children, insertedVnodeQueue) {
    if (Array.isArray(children)) {
      if (process.env.NODE_ENV !== 'production') {
        checkDuplicateKeys(children)
      }
      for (let i = 0; i < children.length; ++i) {
        createElm(children[i], insertedVnodeQueue, vnode.elm, null, true, children, i)
      }
    } else if (isPrimitive(vnode.text)) {
      nodeOps.appendChild(vnode.elm, nodeOps.createTextNode(String(vnode.text)))
    }
  }
    
  function createElm (
    vnode,
    insertedVnodeQueue,
    parentElm,
    refElm,
    nested,
    ownerArray,
    index
  ) {
    if (isDef(vnode.elm) && isDef(ownerArray)) {
      // This vnode was used in a previous render!
      // now it's used as a new node, overwriting its elm would cause
      // potential patch errors down the road when it's used as an insertion
      // reference node. Instead, we clone the node on-demand before creating
      // associated DOM element for it.
      vnode = ownerArray[index] = cloneVNode(vnode)
    }

    vnode.isRootInsert = !nested // for transition enter check
    if (createComponent(vnode, insertedVnodeQueue, parentElm, refElm)) {
      return
    }

    const data = vnode.data
    const children = vnode.children
    const tag = vnode.tag
    if (isDef(tag)) {
      if (process.env.NODE_ENV !== 'production') {
        if (data && data.pre) {
          creatingElmInVPre++
        }
        if (isUnknownElement(vnode, creatingElmInVPre)) {
          warn(
            'Unknown custom element: <' + tag + '> - did you ' +
            'register the component correctly? For recursive components, ' +
            'make sure to provide the "name" option.',
            vnode.context
          )
        }
      }

      vnode.elm = vnode.ns
        ? nodeOps.createElementNS(vnode.ns, tag)
        : nodeOps.createElement(tag, vnode)
      setScope(vnode)

      /* istanbul ignore if */
      if (__WEEX__) {
        // in Weex, the default insertion order is parent-first.
        // List items can be optimized to use children-first insertion
        // with append="tree".
        const appendAsTree = isDef(data) && isTrue(data.appendAsTree)
        if (!appendAsTree) {
          if (isDef(data)) {
            invokeCreateHooks(vnode, insertedVnodeQueue)
          }
          insert(parentElm, vnode.elm, refElm)
        }
        createChildren(vnode, children, insertedVnodeQueue)
        if (appendAsTree) {
          if (isDef(data)) {
            invokeCreateHooks(vnode, insertedVnodeQueue)
          }
          insert(parentElm, vnode.elm, refElm)
        }
      } else {
        createChildren(vnode, children, insertedVnodeQueue)
        if (isDef(data)) {
          invokeCreateHooks(vnode, insertedVnodeQueue)
        }
        insert(parentElm, vnode.elm, refElm)
      }

      if (process.env.NODE_ENV !== 'production' && data && data.pre) {
        creatingElmInVPre--
      }
    } else if (isTrue(vnode.isComment)) {
      vnode.elm = nodeOps.createComment(vnode.text)
      insert(parentElm, vnode.elm, refElm)
    } else {
      vnode.elm = nodeOps.createTextNode(vnode.text)
      insert(parentElm, vnode.elm, refElm)
    }
  }
    
  
  return function patch (oldVnode, vnode, hydrating, removeOnly) {
    if (isUndef(vnode)) {
      if (isDef(oldVnode)) invokeDestroyHook(oldVnode)
      return
    }

    let isInitialPatch = false
    const insertedVnodeQueue = []

    if (isUndef(oldVnode)) {
      // empty mount (likely as component), create new root element
      isInitialPatch = true
      createElm(vnode, insertedVnodeQueue)
    } else {
      const isRealElement = isDef(oldVnode.nodeType)
      if (!isRealElement && sameVnode(oldVnode, vnode)) {
        // patch existing root node
        patchVnode(oldVnode, vnode, insertedVnodeQueue, null, null, removeOnly)
      } else {
        if (isRealElement) {
          // mounting to a real element
          // check if this is server-rendered content and if we can perform
          // a successful hydration.
          if (oldVnode.nodeType === 1 && oldVnode.hasAttribute(SSR_ATTR)) {
            oldVnode.removeAttribute(SSR_ATTR)
            hydrating = true
          }
          if (isTrue(hydrating)) {
            if (hydrate(oldVnode, vnode, insertedVnodeQueue)) {
              invokeInsertHook(vnode, insertedVnodeQueue, true)
              return oldVnode
            } else if (process.env.NODE_ENV !== 'production') {
              warn(
                'The client-side rendered virtual DOM tree is not matching ' +
                'server-rendered content. This is likely caused by incorrect ' +
                'HTML markup, for example nesting block-level elements inside ' +
                '<p>, or missing <tbody>. Bailing hydration and performing ' +
                'full client-side render.'
              )
            }
          }
          // either not server-rendered, or hydration failed.
          // create an empty node and replace it
          // 将真实的 dom 转换为 VNode
          oldVnode = emptyNodeAt(oldVnode)
        }

        // replacing existing element
        const oldElm = oldVnode.elm
        const parentElm = nodeOps.parentNode(oldElm)

        // create new node
        createElm(
          vnode,
          insertedVnodeQueue,
          // extremely rare edge case: do not insert if old element is in a
          // leaving transition. Only happens when combining transition +
          // keep-alive + HOCs. (#4590)
          oldElm._leaveCb ? null : parentElm,
          nodeOps.nextSibling(oldElm)
        )

        // update parent placeholder node element, recursively
        if (isDef(vnode.parent)) {
          let ancestor = vnode.parent
          const patchable = isPatchable(vnode)
          while (ancestor) {
            for (let i = 0; i < cbs.destroy.length; ++i) {
              cbs.destroy[i](ancestor)
            }
            ancestor.elm = vnode.elm
            if (patchable) {
              for (let i = 0; i < cbs.create.length; ++i) {
                cbs.create[i](emptyNode, ancestor)
              }
              // #6513
              // invoke insert hooks that may have been merged by create hooks.
              // e.g. for directives that uses the "inserted" hook.
              const insert = ancestor.data.hook.insert
              if (insert.merged) {
                // start at index 1 to avoid re-invoking component mounted hook
                for (let i = 1; i < insert.fns.length; i++) {
                  insert.fns[i]()
                }
              }
            } else {
              registerRef(ancestor)
            }
            ancestor = ancestor.parent
          }
        }

        // destroy old node
        if (isDef(parentElm)) {
          removeVnodes([oldVnode], 0, 0)
        } else if (isDef(oldVnode.tag)) {
          invokeDestroyHook(oldVnode)
        }
      }
    }

    invokeInsertHook(vnode, insertedVnodeQueue, isInitialPatch)
    return vnode.elm
  }
}

到此我们经过 _render 生成的vnode通过_update 中的 patch调用 DOM 操作渲染成了真正的 DOM。

此时再回头看 new Vue 的目录则清楚地明白了整个过程,最好的就是我们自己运行一个简单的 vue 实例并在关键函数处(_render/_update/patch)打个 debugger就能更加清楚地看到整个过程以及所有的变量变化过程。

Component

src\core\vdom\create-element.js中我们可以看到其中有个区分逻辑:

if (typeof tag === 'string') {
    let Ctor
    ns = (context.$vnode && context.$vnode.ns) || config.getTagNamespace(tag)
    //  判断是否为平台原生标签 比如 div
    if (config.isReservedTag(tag)) {
      // platform built-in elements
      if (process.env.NODE_ENV !== 'production' && isDef(data) && isDef(data.nativeOn)) {
        warn(
          `The .native modifier for v-on is only valid on components but it was used on <${tag}>.`,
          context
        )
      }
      vnode = new VNode(
        config.parsePlatformTagName(tag), data, children,
        undefined, undefined, context
      )
    } else if ((!data || !data.pre) && isDef(Ctor = resolveAsset(context.$options, 'components', tag))) {
      // component
      vnode = createComponent(Ctor, data, context, children, tag)
    } else {
      // unknown or unlisted namespaced elements
      // check at runtime because it may get assigned a namespace when its
      // parent normalizes children
      vnode = new VNode(
        tag, data, children,
        undefined, undefined, context
      )
    }
  } else {
    // direct component options / constructor
    vnode = createComponent(tag, data, context, children)
  }

此时我们就来看else if and else部分,即组件,进入到createComponent方法:

src\core\vdom\create-component.js

export function createComponent (
  Ctor: Class<Component> | Function | Object | void,
  data: ?VNodeData,
  context: Component,
  children: ?Array<VNode>,
  tag?: string
): VNode | Array<VNode> | void {
  if (isUndef(Ctor)) {
    return
  }

  //  Vue =-- src\core\global-api\index.js
  // this is used to identify the "base" constructor to extend all plain-object
    //  Vue.options._base = Vue

  //  此处为 context.$options, 因为我们在 src\core\instance\init.js 中已经进行了配置合并
  // merge options
    // if (options && options._isComponent) {
    //   // optimize internal component instantiation
    //   // since dynamic options merging is pretty slow, and none of the
    //   // internal component options needs special treatment.
    //   initInternalComponent(vm, options)
    // } else {
    //   vm.$options = mergeOptions(
    //     resolveConstructorOptions(vm.constructor),
    //     options || {},
    //     vm
    //   )
    // }
  const baseCtor = context.$options._base

  // plain options object: turn it into a constructor
  // 组件暴露出去的是一个 Object (export default{ ... })
  if (isObject(Ctor)) {
    // 具体详见 src\core\global-api\extend.js
    // Vue.extend 的作用就是构造一个 Vue 的子类,
    // 它使用一种非常经典的原型继承的方式把一个纯对象转换一个继承于 Vue 的构造器 Sub 并返回,
    // 然后对 Sub 这个对象本身扩展了一些属性,如扩展 options、添加全局 API 等;
    // 并且对配置中的 props 和 computed 做了初始化工作;
    // 最后对于这个 Sub 构造函数做了缓存,避免多次执行 Vue.extend 的时候对同一个子组件重复构造。
    Ctor = baseCtor.extend(Ctor)
  }

  // if at this stage it's not a constructor or an async component factory,
  // reject.
  if (typeof Ctor !== 'function') {
    if (process.env.NODE_ENV !== 'production') {
      warn(`Invalid Component definition: ${String(Ctor)}`, context)
    }
    return
  }

  // async component
  let asyncFactory
  if (isUndef(Ctor.cid)) {
    asyncFactory = Ctor
    Ctor = resolveAsyncComponent(asyncFactory, baseCtor)
    if (Ctor === undefined) {
      // return a placeholder node for async component, which is rendered
      // as a comment node but preserves all the raw information for the node.
      // the information will be used for async server-rendering and hydration.
      return createAsyncPlaceholder(
        asyncFactory,
        data,
        context,
        children,
        tag
      )
    }
  }

  data = data || {}

  // resolve constructor options in case global mixins are applied after
  // component constructor creation
  resolveConstructorOptions(Ctor)

  // transform component v-model data into props & events
  if (isDef(data.model)) {
    transformModel(Ctor.options, data)
  }

  // extract props
  const propsData = extractPropsFromVNodeData(data, Ctor, tag)

  // functional component
  if (isTrue(Ctor.options.functional)) {
    return createFunctionalComponent(Ctor, propsData, data, context, children)
  }

  // extract listeners, since these needs to be treated as
  // child component listeners instead of DOM listeners
  const listeners = data.on
  // replace with listeners with .native modifier
  // so it gets processed during parent component patch.
  data.on = data.nativeOn

  if (isTrue(Ctor.options.abstract)) {
    // abstract components do not keep anything
    // other than props & listeners & slot

    // work around flow
    const slot = data.slot
    data = {}
    if (slot) {
      data.slot = slot
    }
  }

  // install component management hooks onto the placeholder node
  // init prepatch insert destroy --- data.hook
  installComponentHooks(data)

  // return a placeholder vnode
  const name = Ctor.options.name || tag
  const vnode = new VNode(
    `vue-component-${Ctor.cid}${name ? `-${name}` : ''}`,
    data, undefined, undefined, undefined, context,
    { Ctor, propsData, listeners, tag, children },
    asyncFactory
  )

  // Weex specific: invoke recycle-list optimized @render function for
  // extracting cell-slot template.
  // https://github.com/Hanks10100/weex-native-directive/tree/master/component
  /* istanbul ignore if */
  if (__WEEX__ && isRecyclableComponent(vnode)) {
    return renderRecyclableComponentTemplate(vnode)
  }

  return vnode
}

此方法代码较多,但是逻辑很清晰,我们可以 debugger 走一遍即可更加明白创建组件 vnode 的过程

同之前的一样,拿到 VNode 之后,我们就应该 patch 将其渲染为真实 DOM

src\core\vdom\patch.js

export function createPatchFunction (backend) {
  function createElm (
    vnode,
    insertedVnodeQueue,
    parentElm,
    refElm,
    nested,
    ownerArray,
    index
  ) {
    if (isDef(vnode.elm) && isDef(ownerArray)) {
      // This vnode was used in a previous render!
      // now it's used as a new node, overwriting its elm would cause
      // potential patch errors down the road when it's used as an insertion
      // reference node. Instead, we clone the node on-demand before creating
      // associated DOM element for it.
      vnode = ownerArray[index] = cloneVNode(vnode)
    }

  vnode.isRootInsert = !nested // for transition enter check
  if (createComponent(vnode, insertedVnodeQueue, parentElm, refElm)) {
    return
  }
        
  function createComponent (vnode, insertedVnodeQueue, parentElm, refElm) {
    let i = vnode.data
    if (isDef(i)) {
      const isReactivated = isDef(vnode.componentInstance) && i.keepAlive
      if (isDef(i = i.hook) && isDef(i = i.init)) {
        i(vnode, false /* hydrating */)
      }
      // after calling the init hook, if the vnode is a child component
      // it should've created a child instance and mounted it. the child
      // component also has set the placeholder vnode's elm.
      // in that case we can just return the element and be done.
      if (isDef(vnode.componentInstance)) {
        initComponent(vnode, insertedVnodeQueue)
        insert(parentElm, vnode.elm, refElm)
        if (isTrue(isReactivated)) {
          reactivateComponent(vnode, insertedVnodeQueue, parentElm, refElm)
        }
        return true
      }
    }
  }
}

接下来我们查看 init 方法:

// src\core\vdom\create-component.js
init (vnode: VNodeWithData, hydrating: boolean): ?boolean {
    if (
      vnode.componentInstance &&
      !vnode.componentInstance._isDestroyed &&
      vnode.data.keepAlive
    ) {
      // kept-alive components, treat as a patch
      const mountedNode: any = vnode // work around flow
      componentVNodeHooks.prepatch(mountedNode, mountedNode)
    } else {
      const child = vnode.componentInstance = createComponentInstanceForVnode(
        vnode,
        activeInstance
      )
      child.$mount(hydrating ? vnode.elm : undefined, hydrating)
    }
}

// activeInstance --- 当前激活的 vm 实例
export let activeInstance: any = null

export function setActiveInstance(vm: Component) {
  const prevActiveInstance = activeInstance
  activeInstance = vm
  return () => {
    activeInstance = prevActiveInstance
  }
}

export function initLifecycle (vm: Component) {
  const options = vm.$options

  // locate first non-abstract parent
  let parent = options.parent
  if (parent && !options.abstract) {
    while (parent.$options.abstract && parent.$parent) {
      parent = parent.$parent
    }
    parent.$children.push(vm)
  }

  vm.$parent = parent
    
  Vue.prototype._update = function (vnode: VNode, hydrating?: boolean) {
    const vm: Component = this
    const prevEl = vm.$el
    const prevVnode = vm._vnode
    const restoreActiveInstance = setActiveInstance(vm)
    vm._vnode = vnode
    // Vue.prototype.__patch__ is injected in entry points
    // based on the rendering backend used.
    if (!prevVnode) {
      // initial render
      // 真实的 dom,virtual node,false,false
      vm.$el = vm.__patch__(vm.$el, vnode, hydrating, false /* removeOnly */)
    } else {
      // updates
      vm.$el = vm.__patch__(prevVnode, vnode)
    }
    restoreActiveInstance()

暂时先不看 keepAlive,进入到createComponentInstanceForVnode方法:

// src\core\vdom\create-component.js
export function createComponentInstanceForVnode (
  vnode: any, // we know it's MountedComponentVNode but flow doesn't
  parent: any, // activeInstance in lifecycle state
): Component {
  const options: InternalComponentOptions = {
    _isComponent: true,
    _parentVnode: vnode,
    parent
  }
  // check inline-template render functions
  const inlineTemplate = vnode.data.inlineTemplate
  if (isDef(inlineTemplate)) {
    options.render = inlineTemplate.render
    options.staticRenderFns = inlineTemplate.staticRenderFns
  }
  //  Ctor 即 Sub
  return new vnode.componentOptions.Ctor(options)
}
// src\core\global-api\extend.js
const Sub = function VueComponent (options) {
    this._init(options)
}

// src\core\instance\init.js
Vue.prototype._init = function (options?: Object) {
    const vm: Component = this
    // a uid
    vm._uid = uid++
    
    // ...
    
    // a flag to avoid this being observed
    vm._isVue = true
    // merge options
    if (options && options._isComponent) {
        // optimize internal component instantiation
        // since dynamic options merging is pretty slow, and none of the
        // internal component options needs special treatment.
        initInternalComponent(vm, options)
    } else {
        vm.$options = mergeOptions(
            resolveConstructorOptions(vm.constructor),
            options || {},
            vm
        )
    }
    
    // ...

    //	组件则没有 el 选项,他自己后面会进行 mount 操作
    if (vm.$options.el) {
        vm.$mount(vm.$options.el)
    }
}

export function initInternalComponent (vm: Component, options: InternalComponentOptions) {
  const opts = vm.$options = Object.create(vm.constructor.options)
  // doing this because it's faster than dynamic enumeration.
  const parentVnode = options._parentVnode
  // key important
  opts.parent = options.parent
  opts._parentVnode = parentVnode

  const vnodeComponentOptions = parentVnode.componentOptions
  opts.propsData = vnodeComponentOptions.propsData
  opts._parentListeners = vnodeComponentOptions.listeners
  opts._renderChildren = vnodeComponentOptions.children
  opts._componentTag = vnodeComponentOptions.tag

  if (options.render) {
    opts.render = options.render
    opts.staticRenderFns = options.staticRenderFns
  }
}

接下来便是 new Vue 的那一系列的操作,只是中间执行逻辑稍有不同,并且vm.$vnode为组件的占位vnode,vm._vnode 为组件的渲染vnode;同时嵌套组件的时候是先子后父。

组件的整个渲染过程还是稍显复杂,阅读起来确实吃力,暂时先跳过此部分,后续有能力了继续此部分。

响应式数据

vue 2.x --- Object.defineProperty(obj, key, descriptor) && vue 3.x --- Proxy(target, handler)

既然是将我们定义好的数据进行响应式处理,那么先看看数据的相关操作:

init

src\core\instance\init.js

  Vue.prototype._init = function (options?: Object) {
    // ... 
      
    // expose real self
    vm._self = vm
    initLifecycle(vm)
    initEvents(vm)
    initRender(vm)
    callHook(vm, 'beforeCreate')
    initInjections(vm) // resolve injections before data/props
    // key
    initState(vm)
    initProvide(vm) // resolve provide after data/props
    callHook(vm, 'created')
      // ...
  }

src\core\instance\state.js

initState

// init props/methods/data/computed/watch
export function initState (vm: Component) {
  vm._watchers = []
  const opts = vm.$options
  if (opts.props) initProps(vm, opts.props)
  if (opts.methods) initMethods(vm, opts.methods)
  if (opts.data) {
    initData(vm)
  } else {
    observe(vm._data = {}, true /* asRootData */)
  }
  if (opts.computed) initComputed(vm, opts.computed)
  if (opts.watch && opts.watch !== nativeWatch) {
    initWatch(vm, opts.watch)
  }
}

initData

function initData (vm: Component) {
  let data = vm.$options.data
  data = vm._data = typeof data === 'function'
    ? getData(data, vm)
    : data || {}
  if (!isPlainObject(data)) {
    data = {}
    process.env.NODE_ENV !== 'production' && warn(
      'data functions should return an object:\n' +
      'https://vuejs.org/v2/guide/components.html#data-Must-Be-a-Function',
      vm
    )
  }
  // proxy data on instance
  const keys = Object.keys(data)
  const props = vm.$options.props
  const methods = vm.$options.methods
  let i = keys.length
  while (i--) {
    const key = keys[i]
    if (process.env.NODE_ENV !== 'production') {
      if (methods && hasOwn(methods, key)) {
        warn(
          `Method "${key}" has already been defined as a data property.`,
          vm
        )
      }
    }
    if (props && hasOwn(props, key)) {
      process.env.NODE_ENV !== 'production' && warn(
        `The data property "${key}" is already declared as a prop. ` +
        `Use prop default value instead.`,
        vm
      )
    } else if (!isReserved(key)) {
      proxy(vm, `_data`, key)
    }
  }
  // observe data
  observe(data, true /* asRootData */)
}

其实整段代码很简单了现在看着,先进行了一些条件判断并给予warn,然后将vm._data.xxx代理到vm.xxx,具体见 proxy方法;重点是最后的 oberver 方法,会将data进行响应式处理。

src\core\observer\index.js

observer function

/**
 * Attempt to create an observer instance for a value,
 * returns the new observer if successfully observed,
 * or the existing observer if the value already has one.
 */
export function observe (value: any, asRootData: ?boolean): Observer | void {
  if (!isObject(value) || value instanceof VNode) {
    return
  }
  let ob: Observer | void
  // 如果已经有 __ob__ 则直接返回,否则对需要响应式处理的数据进行实例化 Observer
  if (hasOwn(value, '__ob__') && value.__ob__ instanceof Observer) {
    ob = value.__ob__
  } else if (
    shouldObserve &&
    !isServerRendering() &&
    (Array.isArray(value) || isPlainObject(value)) &&
    Object.isExtensible(value) &&
    !value._isVue
  ) {
    ob = new Observer(value)
  }
  if (asRootData && ob) {
    ob.vmCount++
  }
  return ob
}

Observer class

/**
 * Observer class that is attached to each observed
 * object. Once attached, the observer converts the target
 * object's property keys into getter/setters that
 * collect dependencies and dispatch updates.
 */
export class Observer {
  value: any;
  dep: Dep;
  vmCount: number; // number of vms that have this object as root $data

  constructor (value: any) {
    this.value = value
    this.dep = new Dep()
    this.vmCount = 0
    //  将自己加到 __ob__ 属性上,注意只传入了三个参数,那么 def 中的 enumerable 就为 false,因为我们需要将该属性设为不可枚举,这样在调用 walk 时就不需要将该属性也响应式处理
    def(value, '__ob__', this)
    if (Array.isArray(value)) {
      if (hasProto) {
        protoAugment(value, arrayMethods)
      } else {
        copyAugment(value, arrayMethods, arrayKeys)
      }
      this.observeArray(value)
    } else {
      this.walk(value)
    }
  }

  /**
   * Walk through all properties and convert them into
   * getter/setters. This method should only be called when
   * value type is Object.
   */
  walk (obj: Object) {
    const keys = Object.keys(obj)
    for (let i = 0; i < keys.length; i++) {
      defineReactive(obj, keys[i])
    }
  }

  /**
   * Observe a list of Array items.
   */
  observeArray (items: Array<any>) {
    for (let i = 0, l = items.length; i < l; i++) {
      observe(items[i])
    }
  }
}

def function

// src\core\util\lang.js
/**
 * Define a property.
 */
export function def (obj: Object, key: string, val: any, enumerable?: boolean) {
  Object.defineProperty(obj, key, {
    value: val,
    enumerable: !!enumerable,
    writable: true,
    configurable: true
  })
}

接下来进入 defineReactive,核心的响应式处理方法。

defineReactive function

/**
 * Define a reactive property on an Object.
 */
export function defineReactive (
  obj: Object,
  key: string,
  val: any,
  customSetter?: ?Function,
  shallow?: boolean
) {
  const dep = new Dep()

  const property = Object.getOwnPropertyDescriptor(obj, key)
  if (property && property.configurable === false) {
    return
  }

  // cater for pre-defined getter/setters
  const getter = property && property.get
  const setter = property && property.set
  if ((!getter || setter) && arguments.length === 2) {
    val = obj[key]
  }

  // 递归 observer
  let childOb = !shallow && observe(val)
  Object.defineProperty(obj, key, {
    enumerable: true,
    configurable: true,
    get: function reactiveGetter () {
      const value = getter ? getter.call(obj) : val
      // 依赖收集
      if (Dep.target) {
        dep.depend()
        if (childOb) {
          childOb.dep.depend()
          if (Array.isArray(value)) {
            dependArray(value)
          }
        }
      }
      return value
    },
    set: function reactiveSetter (newVal) {
      const value = getter ? getter.call(obj) : val
      // 派发更新
      /* eslint-disable no-self-compare */
      if (newVal === value || (newVal !== newVal && value !== value)) {
        return
      }
      /* eslint-enable no-self-compare */
      if (process.env.NODE_ENV !== 'production' && customSetter) {
        customSetter()
      }
      // #7981: for accessor properties without setter
      if (getter && !setter) return
      if (setter) {
        setter.call(obj, newVal)
      } else {
        val = newVal
      }
      childOb = !shallow && observe(newVal)
      // 通知订阅者进行相关操作
      dep.notify()
    }
  })
}

其中的依赖收集和派发更新非常的重要!

依赖收集

当响应式数据变化时,重新渲染页面时则会触发 getter / setter ,而我们则需要收集相关的依赖来通知对应的订阅者去做应该处理的操作。

const dep = new Dep()

const property = Object.getOwnPropertyDescriptor(obj, key)
if (property && property.configurable === false) {
    return
}

// cater for pre-defined getter/setters
const getter = property && property.get
const setter = property && property.set
if ((!getter || setter) && arguments.length === 2) {
    val = obj[key]
}

// 递归 observer
let childOb = !shallow && observe(val)
Object.defineProperty(obj, key, {
    enumerable: true,
    configurable: true,
    get: function reactiveGetter () {
        const value = getter ? getter.call(obj) : val
        // 依赖收集
        if (Dep.target) {
            dep.depend()
            if (childOb) {
                childOb.dep.depend()
                if (Array.isArray(value)) {
                    dependArray(value)
                }
            }
        }
        return value
    },

src\core\observer\dep.js

/* @flow */

import type Watcher from './watcher'
import { remove } from '../util/index'
import config from '../config'

let uid = 0

/**
 * A dep is an observable that can have multiple
 * directives subscribing to it.
 */
export default class Dep {
  static target: ?Watcher;
  id: number;
  subs: Array<Watcher>;

  constructor () {
    this.id = uid++
    this.subs = []
  }

  addSub (sub: Watcher) {
    this.subs.push(sub)
  }

  removeSub (sub: Watcher) {
    remove(this.subs, sub)
  }

  depend () {
    if (Dep.target) {
      Dep.target.addDep(this)
    }
  }

  notify () {
    // stabilize the subscriber list first
    const subs = this.subs.slice()
    if (process.env.NODE_ENV !== 'production' && !config.async) {
      // subs aren't sorted in scheduler if not running async
      // we need to sort them now to make sure they fire in correct
      // order
      subs.sort((a, b) => a.id - b.id)
    }
    for (let i = 0, l = subs.length; i < l; i++) {
      subs[i].update()
    }
  }
}

// The current target watcher being evaluated.
// This is globally unique because only one watcher
// can be evaluated at a time.
Dep.target = null
const targetStack = []

export function pushTarget (target: ?Watcher) {
  targetStack.push(target)
  Dep.target = target
}

export function popTarget () {
  targetStack.pop()
  Dep.target = targetStack[targetStack.length - 1]
}

src\core\observer\watcher.js

/* @flow */

import {
  warn,
  remove,
  isObject,
  parsePath,
  _Set as Set,
  handleError,
  noop
} from '../util/index'

import { traverse } from './traverse'
import { queueWatcher } from './scheduler'
import Dep, { pushTarget, popTarget } from './dep'

import type { SimpleSet } from '../util/index'

let uid = 0

/**
 * A watcher parses an expression, collects dependencies,
 * and fires callback when the expression value changes.
 * This is used for both the $watch() api and directives.
 */
export default class Watcher {
  vm: Component;
  expression: string;
  cb: Function;
  id: number;
  deep: boolean;
  user: boolean;
  lazy: boolean;
  sync: boolean;
  dirty: boolean;
  active: boolean;
  deps: Array<Dep>;
  newDeps: Array<Dep>;
  depIds: SimpleSet;
  newDepIds: SimpleSet;
  before: ?Function;
  getter: Function;
  value: any;

  constructor (
    vm: Component,
    expOrFn: string | Function,
    cb: Function,
    options?: ?Object,
    isRenderWatcher?: boolean
  ) {
    this.vm = vm
    if (isRenderWatcher) {
      vm._watcher = this
    }
    vm._watchers.push(this)
    // options
    if (options) {
      this.deep = !!options.deep
      this.user = !!options.user
      this.lazy = !!options.lazy
      this.sync = !!options.sync
      this.before = options.before
    } else {
      this.deep = this.user = this.lazy = this.sync = false
    }
    this.cb = cb
    this.id = ++uid // uid for batching
    this.active = true
    this.dirty = this.lazy // for lazy watchers
    this.deps = []
    this.newDeps = []
    this.depIds = new Set()
    this.newDepIds = new Set()
    this.expression = process.env.NODE_ENV !== 'production'
      ? expOrFn.toString()
      : ''
    // parse expression for getter
    if (typeof expOrFn === 'function') {
      this.getter = expOrFn
    } else {
      this.getter = parsePath(expOrFn)
      if (!this.getter) {
        this.getter = noop
        process.env.NODE_ENV !== 'production' && warn(
          `Failed watching path: "${expOrFn}" ` +
          'Watcher only accepts simple dot-delimited paths. ' +
          'For full control, use a function instead.',
          vm
        )
      }
    }
    this.value = this.lazy
      ? undefined
      : this.get()
  }

  /**
   * Evaluate the getter, and re-collect dependencies.
   */
  get () {
    pushTarget(this)
    let value
    const vm = this.vm
    try {
      value = this.getter.call(vm, vm)
    } catch (e) {
      if (this.user) {
        handleError(e, vm, `getter for watcher "${this.expression}"`)
      } else {
        throw e
      }
    } finally {
      // "touch" every property so they are all tracked as
      // dependencies for deep watching
      if (this.deep) {
        traverse(value)
      }
      popTarget()
      this.cleanupDeps()
    }
    return value
  }

  /**
   * Add a dependency to this directive.
   */
  addDep (dep: Dep) {
    const id = dep.id
    if (!this.newDepIds.has(id)) {
      this.newDepIds.add(id)
      this.newDeps.push(dep)
      if (!this.depIds.has(id)) {
        dep.addSub(this)
      }
    }
  }

  /**
   * Clean up for dependency collection.
   */
  cleanupDeps () {
    let i = this.deps.length
    while (i--) {
      const dep = this.deps[i]
      if (!this.newDepIds.has(dep.id)) {
        dep.removeSub(this)
      }
    }
    let tmp = this.depIds
    this.depIds = this.newDepIds
    this.newDepIds = tmp
    this.newDepIds.clear()
    tmp = this.deps
    this.deps = this.newDeps
    this.newDeps = tmp
    this.newDeps.length = 0
  }

  /**
   * Subscriber interface.
   * Will be called when a dependency changes.
   */
  update () {
    /* istanbul ignore else */
    if (this.lazy) {
      this.dirty = true
    } else if (this.sync) {
      this.run()
    } else {
      queueWatcher(this)
    }
  }

  /**
   * Scheduler job interface.
   * Will be called by the scheduler.
   */
  run () {
    if (this.active) {
      const value = this.get()
      if (
        value !== this.value ||
        // Deep watchers and watchers on Object/Arrays should fire even
        // when the value is the same, because the value may
        // have mutated.
        isObject(value) ||
        this.deep
      ) {
        // set new value
        const oldValue = this.value
        this.value = value
        if (this.user) {
          try {
            this.cb.call(this.vm, value, oldValue)
          } catch (e) {
            handleError(e, this.vm, `callback for watcher "${this.expression}"`)
          }
        } else {
          this.cb.call(this.vm, value, oldValue)
        }
      }
    }
  }

  /**
   * Evaluate the value of the watcher.
   * This only gets called for lazy watchers.
   */
  evaluate () {
    this.value = this.get()
    this.dirty = false
  }

  /**
   * Depend on all deps collected by this watcher.
   */
  depend () {
    let i = this.deps.length
    while (i--) {
      this.deps[i].depend()
    }
  }

  /**
   * Remove self from all dependencies' subscriber list.
   */
  teardown () {
    if (this.active) {
      // remove self from vm's watcher list
      // this is a somewhat expensive operation so we skip it
      // if the vm is being destroyed.
      if (!this.vm._isBeingDestroyed) {
        remove(this.vm._watchers, this)
      }
      let i = this.deps.length
      while (i--) {
        this.deps[i].removeSub(this)
      }
      this.active = false
    }
  }
}

其实单看里面的方法并不复杂,但是每个方法的调用稍微有点复杂,接下来我们通过能执行到 get 的路径进行分析!

之前有碰到 mountComponent方法,里面会进行实例化一个渲染Watcher并把updateComponent方法传入到构造函数中:

// src\core\instance\lifecycle.js
//  Key
updateComponent = () => {
    //  vm._render() 将返回一个 VNode
    vm._update(vm._render(), hydrating)
}

  // we set this to vm._watcher inside the watcher's constructor
  // since the watcher's initial patch may call $forceUpdate (e.g. inside child
  // component's mounted hook), which relies on vm._watcher being already defined
  // 渲染 watcher ,因为我们后续数据更新后就还需要使用该渲染 watcher to update view
  // 通过传入第五个 boolean 类型的参数来区分 watcher 类型,因为后续我们还有用于数据绑定的 watcher
  new Watcher(vm, updateComponent, noop, {
    before () {
      if (vm._isMounted && !vm._isDestroyed) {
        callHook(vm, 'beforeUpdate')
      }
    }
  }, true /* isRenderWatcher */)
  hydrating = false

调用 watcher构造函数的过程见 watcher

export default class Watcher {constructor (
    vm: Component,
    expOrFn: string | Function,
    cb: Function,
    options?: ?Object,
    isRenderWatcher?: boolean
  ) {}
  // parse expression for getter
    if (typeof expOrFn === 'function') {
      this.getter = expOrFn
    }
  this.value = this.lazy
      ? undefined
      : this.get()


// The current target watcher being evaluated.
// This is globally unique because only one watcher
// can be evaluated at a time.
Dep.target = null
const targetStack = []

export function pushTarget (target: ?Watcher) {
  targetStack.push(target)
  Dep.target = target
}

export function popTarget () {
  targetStack.pop()
  Dep.target = targetStack[targetStack.length - 1]
}


  get () {
    pushTarget(this)
    let value
    const vm = this.vm
    try {
        // 这里的 getter 就是 updateComponent (vm._update(vm._render(), hydrating))
      value = this.getter.call(vm, vm)
    } finally {
      // "touch" every property so they are all tracked as
      // dependencies for deep watching
      if (this.deep) {
        traverse(value)
      }
      popTarget()
      this.cleanupDeps()
    }
    return value
}

分析:将updateComponent传入后作为watcherthis.getter,然后会将当前的渲染 watcher 赋值给 Dep.target,然后进行调用getter自然就会调用_renderrender,然后就会获取相应的值调用getter,进行依赖收集。

dep.depend()

depend () {
    // 此时为当前渲染 watcher 
    if (Dep.target) {
        Dep.target.addDep(this)
    }
}

/**
   * Add a dependency to this directive.
   */
addDep (dep: Dep) {
    const id = dep.id
    if (!this.newDepIds.has(id)) {
        this.newDepIds.add(id)
        this.newDeps.push(dep)
        if (!this.depIds.has(id)) {
            dep.addSub(this)
        }
    }
}

addSub (sub: Watcher) {
    this.subs.push(sub)
  }

popTarget()
this.cleanupDeps()

export function popTarget () {
  targetStack.pop()
  Dep.target = targetStack[targetStack.length - 1]
}

而 cleanupDeps 是一个性能的优化点,具体来看:

  /**
   * Clean up for dependency collection.
   */
  cleanupDeps () {
    let i = this.deps.length
    while (i--) {
      const dep = this.deps[i]
      if (!this.newDepIds.has(dep.id)) {
        dep.removeSub(this)
      }
    }
    let tmp = this.depIds
    this.depIds = this.newDepIds
    this.newDepIds = tmp
    this.newDepIds.clear()
    tmp = this.deps
    this.deps = this.newDeps
    this.newDeps = tmp
    this.newDeps.length = 0
  }

因为 Vue 是数据驱动的,所以每次数据变化后都会重新 render,那么又会执行 _render() 方法,并再次触发数据的 getters,所以 Wathcer 在构造函数中会初始化 2 个 Dep 实例数组,newDeps 表示新添加的 Dep 实例数组,而 deps 表示上一次添加的 Dep 实例数组。

在执行 cleanupDeps 函数的时候,会首先遍历 deps,移除对 dep.subs 数组中 Wathcer 的订阅,然后把 newDepIdsdepIds 交换,newDepsdeps 交换,并把 newDepIdsnewDeps 清空。

那么为什么需要做 deps 订阅的移除呢,在添加 deps 的订阅过程,已经能通过 id 去重避免重复订阅了。

考虑到一种场景,我们的模板会根据 v-if 去渲染不同子模板 a 和 b,当我们满足某种条件的时候渲染 a 的时候,会访问到 a 中的数据,这时候我们对 a 使用的数据添加了 getter,做了依赖收集,那么当我们去修改 a 的数据的时候,理应通知到这些订阅者。那么如果我们一旦改变了条件渲染了 b 模板,又会对 b 使用的数据添加了 getter,如果我们没有依赖移除的过程,那么这时候我去修改 a 模板的数据,会通知 a 数据的订阅的回调,这显然是有浪费的,因为此时其实我们并不需要将其改变重新渲染到界面。

因此 Vue 在每次添加完新的订阅后,会移除掉旧的订阅,这样就保证了在我们刚才的场景中,如果渲染 b 模板的时候去修改 a 模板的数据,而 a 数据订阅回调已经被移除了。

派发更新

set: function reactiveSetter (newVal) {
      const value = getter ? getter.call(obj) : val
      // 派发更新
      // 如果值并没有改变则直接返回
      /* eslint-disable no-self-compare */
      if (newVal === value || (newVal !== newVal && value !== value)) {
        return
      }
      /* eslint-enable no-self-compare */
      if (process.env.NODE_ENV !== 'production' && customSetter) {
        customSetter()
      }
      // #7981: for accessor properties without setter
      if (getter && !setter) return
      if (setter) {
        setter.call(obj, newVal)
      } else {
        val = newVal
      }
      // 递归
      childOb = !shallow && observe(newVal)
      // 通知订阅者进行相关操作
      dep.notify()
    }

notify

// src\core\observer\dep.js
notify () {
    // stabilize the subscriber list first
    const subs = this.subs.slice()
    if (process.env.NODE_ENV !== 'production' && !config.async) {
      // subs aren't sorted in scheduler if not running async
      // we need to sort them now to make sure they fire in correct
      // order
      subs.sort((a, b) => a.id - b.id)
    }
    for (let i = 0, l = subs.length; i < l; i++) {
      subs[i].update()
    }
  }

update

// src\core\observer\watcher.js
/**
   * Subscriber interface.
   * Will be called when a dependency changes.
   */
  update () {
    /* istanbul ignore else */
    if (this.lazy) {
      this.dirty = true
    } else if (this.sync) {
      this.run()
    } else {
      queueWatcher(this)
    }
  }

queueWatcher

// src\core\observer\scheduler.js

/**
 * Push a watcher into the watcher queue.
 * Jobs with duplicate IDs will be skipped unless it's
 * pushed when the queue is being flushed.
 */
export function queueWatcher (watcher: Watcher) {
  // 得到对应的 watcher 的唯一 id
  const id = watcher.id
  // 保证加入一次 watcher
  if (has[id] == null) {
    has[id] = true
    if (!flushing) {
      queue.push(watcher)
    } else {
      // if already flushing, splice the watcher based on its id
      // if already past its id, it will be run next immediately.
      let i = queue.length - 1
      while (i > index && queue[i].id > watcher.id) {
        i--
      }
      queue.splice(i + 1, 0, watcher)
    }
    // queue the flush
    if (!waiting) {
      waiting = true

      if (process.env.NODE_ENV !== 'production' && !config.async) {
        flushSchedulerQueue()
        return
      }
      nextTick(flushSchedulerQueue)
    }
  }
}

flushSchedulerQueue

// src\core\observer\scheduler.js

/**
 * Flush both queues and run the watchers.
 */
function flushSchedulerQueue () {
  currentFlushTimestamp = getNow()
  flushing = true
  let watcher, id

  // Sort queue before flush.
  // This ensures that:
  // 1. Components are updated from parent to child. (because parent is always
  //    created before the child)
  // 2. A component's user watchers are run before its render watcher (because
  //    user watchers are created before the render watcher)
  // 3. If a component is destroyed during a parent component's watcher run,
  //    its watchers can be skipped.
  queue.sort((a, b) => a.id - b.id)

  // do not cache length because more watchers might be pushed
  // as we run existing watchers
  for (index = 0; index < queue.length; index++) {
    watcher = queue[index]
    if (watcher.before) {
      watcher.before()
    }
    id = watcher.id
    has[id] = null
    // 触发其他回调函数时可能又会触发 queueWatcher and  make queue.length mag be chang
    watcher.run()
    // in dev build, check and stop circular updates.
    if (process.env.NODE_ENV !== 'production' && has[id] != null) {
      circular[id] = (circular[id] || 0) + 1
      if (circular[id] > MAX_UPDATE_COUNT) {
        warn(
          'You may have an infinite update loop ' + (
            watcher.user
              ? `in watcher with expression "${watcher.expression}"`
              : `in a component render function.`
          ),
          watcher.vm
        )
        break
      }
    }
  }

  // keep copies of post queues before resetting state
  const activatedQueue = activatedChildren.slice()
  const updatedQueue = queue.slice()

  resetSchedulerState()

  // call component updated and activated hooks
  callActivatedHooks(activatedQueue)
  callUpdatedHooks(updatedQueue)

  // devtool hook
  /* istanbul ignore if */
  if (devtools && config.devtools) {
    devtools.emit('flush')
  }
}

/**
 * Reset the scheduler's state.
 */
function resetSchedulerState () {
  index = queue.length = activatedChildren.length = 0
  has = {}
  if (process.env.NODE_ENV !== 'production') {
    circular = {}
  }
  waiting = flushing = false
}

run

// src\core\observer\watcher.js

/**
   * Scheduler job interface.
   * Will be called by the scheduler.
   */
run () {
    if (this.active) {
      const value = this.get()
      if (
        value !== this.value ||
        // Deep watchers and watchers on Object/Arrays should fire even
        // when the value is the same, because the value may
        // have mutated.
        isObject(value) ||
        this.deep
      ) {
        // set new value
        const oldValue = this.value
        this.value = value
        // 自定义 watcher 时
        if (this.user) {
          try {
            // 将我们的新旧值返回到回调中,watch(){ xxx(newValue, oldValue){...} ...}
            this.cb.call(this.vm, value, oldValue)
          } catch (e) {
            handleError(e, this.vm, `callback for watcher "${this.expression}"`)
          }
        } else {
          this.cb.call(this.vm, value, oldValue)
        }
      }
    }

接着就会执行渲染watcherthis.get()(具体见 watcher.js),然后执行getter,_render,__patch__等,达到页面更新的目的。

nextTick

/* @flow */
/* globals MutationObserver */

import { noop } from 'shared/util'
import { handleError } from './error'
import { isIE, isIOS, isNative } from './env'

export let isUsingMicroTask = false

const callbacks = []
let pending = false

function flushCallbacks () {
  pending = false
  const copies = callbacks.slice(0)
  callbacks.length = 0
  for (let i = 0; i < copies.length; i++) {
    copies[i]()
  }
}

// Here we have async deferring wrappers using microtasks.
// In 2.5 we used (macro) tasks (in combination with microtasks).
// However, it has subtle problems when state is changed right before repaint
// (e.g. #6813, out-in transitions).
// Also, using (macro) tasks in event handler would cause some weird behaviors
// that cannot be circumvented (e.g. #7109, #7153, #7546, #7834, #8109).
// So we now use microtasks everywhere, again.
// A major drawback of this tradeoff is that there are some scenarios
// where microtasks have too high a priority and fire in between supposedly
// sequential events (e.g. #4521, #6690, which have workarounds)
// or even between bubbling of the same event (#6566).
let timerFunc

// The nextTick behavior leverages the microtask queue, which can be accessed
// via either native Promise.then or MutationObserver.
// MutationObserver has wider support, however it is seriously bugged in
// UIWebView in iOS >= 9.3.3 when triggered in touch event handlers. It
// completely stops working after triggering a few times... so, if native
// Promise is available, we will use it:
/* istanbul ignore next, $flow-disable-line */
if (typeof Promise !== 'undefined' && isNative(Promise)) {
  const p = Promise.resolve()
  timerFunc = () => {
    p.then(flushCallbacks)
    // In problematic UIWebViews, Promise.then doesn't completely break, but
    // it can get stuck in a weird state where callbacks are pushed into the
    // microtask queue but the queue isn't being flushed, until the browser
    // needs to do some other work, e.g. handle a timer. Therefore we can
    // "force" the microtask queue to be flushed by adding an empty timer.
    if (isIOS) setTimeout(noop)
  }
  isUsingMicroTask = true
} else if (!isIE && typeof MutationObserver !== 'undefined' && (
  isNative(MutationObserver) ||
  // PhantomJS and iOS 7.x
  MutationObserver.toString() === '[object MutationObserverConstructor]'
)) {
  // Use MutationObserver where native Promise is not available,
  // e.g. PhantomJS, iOS7, Android 4.4
  // (#6466 MutationObserver is unreliable in IE11)
  let counter = 1
  const observer = new MutationObserver(flushCallbacks)
  const textNode = document.createTextNode(String(counter))
  observer.observe(textNode, {
    characterData: true
  })
  timerFunc = () => {
    counter = (counter + 1) % 2
    textNode.data = String(counter)
  }
  isUsingMicroTask = true
} else if (typeof setImmediate !== 'undefined' && isNative(setImmediate)) {
  // Fallback to setImmediate.
  // Technically it leverages the (macro) task queue,
  // but it is still a better choice than setTimeout.
  timerFunc = () => {
    setImmediate(flushCallbacks)
  }
} else {
  // Fallback to setTimeout.
  timerFunc = () => {
    setTimeout(flushCallbacks, 0)
  }
}

export function nextTick (cb?: Function, ctx?: Object) {
  let _resolve
  callbacks.push(() => {
    if (cb) {
      try {
        cb.call(ctx)
      } catch (e) {
        handleError(e, ctx, 'nextTick')
      }
    } else if (_resolve) {
      _resolve(ctx)
    }
  })
  if (!pending) {
    pending = true
    timerFunc()
  }
  // $flow-disable-line
  if (!cb && typeof Promise !== 'undefined') {
    return new Promise(resolve => {
      _resolve = resolve
    })
  }
}

其实代码逻辑还是很清楚,先将这些异步任务pushcallbacks中,对于 Promise/MutationObserver/setImmediate 这些分别做了相应的处理,然后再通过相应的timerFunc执行。

特殊情况

  • Vue.set
  • Vue.del
  • Array.push/pop/shift/splice/...\

set (src\core\observer\index.js)

/**
 * Set a property on an object. Adds the new property and
 * triggers change notification if the property doesn't
 * already exist.
 */
export function set (target: Array<any> | Object, key: any, val: any): any {
  if (process.env.NODE_ENV !== 'production' &&
    (isUndef(target) || isPrimitive(target))
  ) {
    warn(`Cannot set reactive property on undefined, null, or primitive value: ${(target: any)}`)
  }
  if (Array.isArray(target) && isValidArrayIndex(key)) {
    target.length = Math.max(target.length, key)
    target.splice(key, 1, val)
    return val
  }
  if (key in target && !(key in Object.prototype)) {
    target[key] = val
    return val
  }
  const ob = (target: any).__ob__
  if (target._isVue || (ob && ob.vmCount)) {
    process.env.NODE_ENV !== 'production' && warn(
      'Avoid adding reactive properties to a Vue instance or its root $data ' +
      'at runtime - declare it upfront in the data option.'
    )
    return val
  }
  if (!ob) {
    target[key] = val
    return val
  }
  // 响应式处理
  defineReactive(ob.value, key, val)
  // 通知订阅者
  ob.dep.notify()
  return val
}

而在 defineReactive中:

let childOb = !shallow && observe(val)
  Object.defineProperty(obj, key, {
    enumerable: true,
    configurable: true,
    get: function reactiveGetter () {
      const value = getter ? getter.call(obj) : val
      // 依赖收集
      if (Dep.target) {
        dep.depend()
        if (childOb) {
          childOb.dep.depend()
          if (Array.isArray(value)) {
            dependArray(value)
          }
        }
      }
      return value
    },
if (Array.isArray(value)) {
    if (hasProto) {
        protoAugment(value, arrayMethods)
    } else {
        copyAugment(value, arrayMethods, arrayKeys)
    }
    this.observeArray(value)
} else {
    this.walk(value)
}

/**
 * Augment a target Object or Array by intercepting
 * the prototype chain using __proto__
 */
function protoAugment (target, src: Object) {
  /* eslint-disable no-proto */
  target.__proto__ = src
  /* eslint-enable no-proto */
}

/**
 * Augment a target Object or Array by defining
 * hidden properties.
 */
/* istanbul ignore next */
function copyAugment (target: Object, src: Object, keys: Array<string>) {
  for (let i = 0, l = keys.length; i < l; i++) {
    const key = keys[i]
    def(target, key, src[key])
  }
}

src\core\observer\array.js

/*
 * not type checking this file because flow doesn't play well with
 * dynamically accessing methods on Array prototype
 */

import { def } from '../util/index'

const arrayProto = Array.prototype
export const arrayMethods = Object.create(arrayProto)

const methodsToPatch = [
  'push',
  'pop',
  'shift',
  'unshift',
  'splice',
  'sort',
  'reverse'
]

/**
 * Intercept mutating methods and emit events
 */
methodsToPatch.forEach(function (method) {
  // cache original method
  const original = arrayProto[method]
  def(arrayMethods, method, function mutator (...args) {
    const result = original.apply(this, args)
    const ob = this.__ob__
    let inserted
    switch (method) {
      case 'push':
      case 'unshift':
        inserted = args
        break
      case 'splice':
        inserted = args.slice(2)
        break
    }
    if (inserted) ob.observeArray(inserted)
    // notify change --- key
    ob.dep.notify()
    return result
  })
})

到此我们就可以修改对象和数组,而且新增的也是响应式的;但是看上去有些麻烦,特别是数组的情况,官方是重写数组的那些原型方法,然后再进行手动通知订阅者去更新。而vue3是通过Proxy的方式进行监听,很好的简化了对象和数组这样的响应式处理。

More

原理图

非常感谢原作者的作图

后续继续不断更新!

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Vue 2.6.11 源码阅读笔记

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