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https://salsa.debian.org/mdosch/feed-to-muc.git
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586 lines
14 KiB
Go
586 lines
14 KiB
Go
package cascadia
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import (
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"fmt"
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"regexp"
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"strings"
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"golang.org/x/net/html"
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)
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// Matcher is the interface for basic selector functionality.
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// Match returns whether a selector matches n.
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type Matcher interface {
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Match(n *html.Node) bool
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}
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// Sel is the interface for all the functionality provided by selectors.
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type Sel interface {
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Matcher
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Specificity() Specificity
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// Returns a CSS input compiling to this selector.
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String() string
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// Returns a pseudo-element, or an empty string.
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PseudoElement() string
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}
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// Parse parses a selector. Use `ParseWithPseudoElement`
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// if you need support for pseudo-elements.
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func Parse(sel string) (Sel, error) {
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p := &parser{s: sel}
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compiled, err := p.parseSelector()
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if err != nil {
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return nil, err
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}
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if p.i < len(sel) {
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return nil, fmt.Errorf("parsing %q: %d bytes left over", sel, len(sel)-p.i)
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}
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return compiled, nil
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}
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// ParseWithPseudoElement parses a single selector,
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// with support for pseudo-element.
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func ParseWithPseudoElement(sel string) (Sel, error) {
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p := &parser{s: sel, acceptPseudoElements: true}
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compiled, err := p.parseSelector()
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if err != nil {
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return nil, err
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}
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if p.i < len(sel) {
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return nil, fmt.Errorf("parsing %q: %d bytes left over", sel, len(sel)-p.i)
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}
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return compiled, nil
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}
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// ParseGroup parses a selector, or a group of selectors separated by commas.
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// Use `ParseGroupWithPseudoElements`
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// if you need support for pseudo-elements.
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func ParseGroup(sel string) (SelectorGroup, error) {
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p := &parser{s: sel}
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compiled, err := p.parseSelectorGroup()
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if err != nil {
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return nil, err
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}
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if p.i < len(sel) {
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return nil, fmt.Errorf("parsing %q: %d bytes left over", sel, len(sel)-p.i)
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}
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return compiled, nil
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}
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// ParseGroupWithPseudoElements parses a selector, or a group of selectors separated by commas.
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// It supports pseudo-elements.
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func ParseGroupWithPseudoElements(sel string) (SelectorGroup, error) {
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p := &parser{s: sel, acceptPseudoElements: true}
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compiled, err := p.parseSelectorGroup()
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if err != nil {
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return nil, err
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}
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if p.i < len(sel) {
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return nil, fmt.Errorf("parsing %q: %d bytes left over", sel, len(sel)-p.i)
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}
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return compiled, nil
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}
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// A Selector is a function which tells whether a node matches or not.
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//
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// This type is maintained for compatibility; I recommend using the newer and
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// more idiomatic interfaces Sel and Matcher.
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type Selector func(*html.Node) bool
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// Compile parses a selector and returns, if successful, a Selector object
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// that can be used to match against html.Node objects.
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func Compile(sel string) (Selector, error) {
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compiled, err := ParseGroup(sel)
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if err != nil {
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return nil, err
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}
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return Selector(compiled.Match), nil
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}
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// MustCompile is like Compile, but panics instead of returning an error.
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func MustCompile(sel string) Selector {
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compiled, err := Compile(sel)
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if err != nil {
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panic(err)
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}
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return compiled
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}
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// MatchAll returns a slice of the nodes that match the selector,
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// from n and its children.
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func (s Selector) MatchAll(n *html.Node) []*html.Node {
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return s.matchAllInto(n, nil)
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}
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func (s Selector) matchAllInto(n *html.Node, storage []*html.Node) []*html.Node {
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if s(n) {
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storage = append(storage, n)
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}
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for child := n.FirstChild; child != nil; child = child.NextSibling {
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storage = s.matchAllInto(child, storage)
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}
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return storage
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}
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func queryInto(n *html.Node, m Matcher, storage []*html.Node) []*html.Node {
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for child := n.FirstChild; child != nil; child = child.NextSibling {
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if m.Match(child) {
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storage = append(storage, child)
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}
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storage = queryInto(child, m, storage)
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}
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return storage
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}
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// QueryAll returns a slice of all the nodes that match m, from the descendants
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// of n.
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func QueryAll(n *html.Node, m Matcher) []*html.Node {
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return queryInto(n, m, nil)
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}
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// Match returns true if the node matches the selector.
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func (s Selector) Match(n *html.Node) bool {
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return s(n)
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}
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// MatchFirst returns the first node that matches s, from n and its children.
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func (s Selector) MatchFirst(n *html.Node) *html.Node {
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if s.Match(n) {
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return n
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}
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for c := n.FirstChild; c != nil; c = c.NextSibling {
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m := s.MatchFirst(c)
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if m != nil {
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return m
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}
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}
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return nil
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}
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// Query returns the first node that matches m, from the descendants of n.
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// If none matches, it returns nil.
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func Query(n *html.Node, m Matcher) *html.Node {
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for c := n.FirstChild; c != nil; c = c.NextSibling {
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if m.Match(c) {
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return c
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}
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if matched := Query(c, m); matched != nil {
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return matched
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}
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}
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return nil
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}
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// Filter returns the nodes in nodes that match the selector.
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func (s Selector) Filter(nodes []*html.Node) (result []*html.Node) {
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for _, n := range nodes {
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if s(n) {
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result = append(result, n)
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}
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}
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return result
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}
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// Filter returns the nodes that match m.
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func Filter(nodes []*html.Node, m Matcher) (result []*html.Node) {
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for _, n := range nodes {
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if m.Match(n) {
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result = append(result, n)
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}
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}
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return result
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}
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type tagSelector struct {
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tag string
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}
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// Matches elements with a given tag name.
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func (t tagSelector) Match(n *html.Node) bool {
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return n.Type == html.ElementNode && n.Data == t.tag
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}
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func (c tagSelector) Specificity() Specificity {
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return Specificity{0, 0, 1}
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}
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func (c tagSelector) PseudoElement() string {
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return ""
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}
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type classSelector struct {
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class string
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}
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// Matches elements by class attribute.
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func (t classSelector) Match(n *html.Node) bool {
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return matchAttribute(n, "class", func(s string) bool {
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return matchInclude(t.class, s, false)
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})
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}
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func (c classSelector) Specificity() Specificity {
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return Specificity{0, 1, 0}
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}
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func (c classSelector) PseudoElement() string {
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return ""
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}
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type idSelector struct {
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id string
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}
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// Matches elements by id attribute.
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func (t idSelector) Match(n *html.Node) bool {
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return matchAttribute(n, "id", func(s string) bool {
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return s == t.id
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})
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}
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func (c idSelector) Specificity() Specificity {
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return Specificity{1, 0, 0}
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}
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func (c idSelector) PseudoElement() string {
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return ""
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}
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type attrSelector struct {
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key, val, operation string
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regexp *regexp.Regexp
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insensitive bool
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}
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// Matches elements by attribute value.
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func (t attrSelector) Match(n *html.Node) bool {
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switch t.operation {
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case "":
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return matchAttribute(n, t.key, func(string) bool { return true })
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case "=":
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return matchAttribute(n, t.key, func(s string) bool { return matchInsensitiveValue(s, t.val, t.insensitive) })
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case "!=":
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return attributeNotEqualMatch(t.key, t.val, n, t.insensitive)
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case "~=":
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// matches elements where the attribute named key is a whitespace-separated list that includes val.
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return matchAttribute(n, t.key, func(s string) bool { return matchInclude(t.val, s, t.insensitive) })
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case "|=":
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return attributeDashMatch(t.key, t.val, n, t.insensitive)
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case "^=":
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return attributePrefixMatch(t.key, t.val, n, t.insensitive)
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case "$=":
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return attributeSuffixMatch(t.key, t.val, n, t.insensitive)
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case "*=":
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return attributeSubstringMatch(t.key, t.val, n, t.insensitive)
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case "#=":
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return attributeRegexMatch(t.key, t.regexp, n)
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default:
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panic(fmt.Sprintf("unsuported operation : %s", t.operation))
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}
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}
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// matches elements where we ignore (or not) the case of the attribute value
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// the user attribute is the value set by the user to match elements
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// the real attribute is the attribute value found in the code parsed
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func matchInsensitiveValue(userAttr string, realAttr string, ignoreCase bool) bool {
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if ignoreCase {
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return strings.EqualFold(userAttr, realAttr)
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}
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return userAttr == realAttr
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}
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// matches elements where the attribute named key satisifes the function f.
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func matchAttribute(n *html.Node, key string, f func(string) bool) bool {
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if n.Type != html.ElementNode {
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return false
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}
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for _, a := range n.Attr {
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if a.Key == key && f(a.Val) {
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return true
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}
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}
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return false
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}
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// attributeNotEqualMatch matches elements where
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// the attribute named key does not have the value val.
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func attributeNotEqualMatch(key, val string, n *html.Node, ignoreCase bool) bool {
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if n.Type != html.ElementNode {
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return false
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}
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for _, a := range n.Attr {
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if a.Key == key && matchInsensitiveValue(a.Val, val, ignoreCase) {
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return false
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}
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}
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return true
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}
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// returns true if s is a whitespace-separated list that includes val.
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func matchInclude(val string, s string, ignoreCase bool) bool {
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for s != "" {
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i := strings.IndexAny(s, " \t\r\n\f")
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if i == -1 {
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return matchInsensitiveValue(s, val, ignoreCase)
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}
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if matchInsensitiveValue(s[:i], val, ignoreCase) {
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return true
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}
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s = s[i+1:]
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}
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return false
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}
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// matches elements where the attribute named key equals val or starts with val plus a hyphen.
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func attributeDashMatch(key, val string, n *html.Node, ignoreCase bool) bool {
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return matchAttribute(n, key,
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func(s string) bool {
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if matchInsensitiveValue(s, val, ignoreCase) {
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return true
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}
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if len(s) <= len(val) {
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return false
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}
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if matchInsensitiveValue(s[:len(val)], val, ignoreCase) && s[len(val)] == '-' {
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return true
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}
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return false
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})
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}
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// attributePrefixMatch returns a Selector that matches elements where
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// the attribute named key starts with val.
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func attributePrefixMatch(key, val string, n *html.Node, ignoreCase bool) bool {
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return matchAttribute(n, key,
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func(s string) bool {
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if strings.TrimSpace(s) == "" {
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return false
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}
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if ignoreCase {
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return strings.HasPrefix(strings.ToLower(s), strings.ToLower(val))
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}
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return strings.HasPrefix(s, val)
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})
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}
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// attributeSuffixMatch matches elements where
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// the attribute named key ends with val.
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func attributeSuffixMatch(key, val string, n *html.Node, ignoreCase bool) bool {
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return matchAttribute(n, key,
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func(s string) bool {
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if strings.TrimSpace(s) == "" {
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return false
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}
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if ignoreCase {
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return strings.HasSuffix(strings.ToLower(s), strings.ToLower(val))
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}
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return strings.HasSuffix(s, val)
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})
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}
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// attributeSubstringMatch matches nodes where
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// the attribute named key contains val.
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func attributeSubstringMatch(key, val string, n *html.Node, ignoreCase bool) bool {
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return matchAttribute(n, key,
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func(s string) bool {
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if strings.TrimSpace(s) == "" {
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return false
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}
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if ignoreCase {
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return strings.Contains(strings.ToLower(s), strings.ToLower(val))
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}
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return strings.Contains(s, val)
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})
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}
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// attributeRegexMatch matches nodes where
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// the attribute named key matches the regular expression rx
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func attributeRegexMatch(key string, rx *regexp.Regexp, n *html.Node) bool {
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return matchAttribute(n, key,
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func(s string) bool {
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return rx.MatchString(s)
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})
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}
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func (c attrSelector) Specificity() Specificity {
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return Specificity{0, 1, 0}
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}
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func (c attrSelector) PseudoElement() string {
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return ""
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}
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// see pseudo_classes.go for pseudo classes selectors
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// on a static context, some selectors can't match anything
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type neverMatchSelector struct {
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value string
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}
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func (s neverMatchSelector) Match(n *html.Node) bool {
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return false
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}
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func (s neverMatchSelector) Specificity() Specificity {
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return Specificity{0, 0, 0}
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}
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func (c neverMatchSelector) PseudoElement() string {
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return ""
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}
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type compoundSelector struct {
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selectors []Sel
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pseudoElement string
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}
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// Matches elements if each sub-selectors matches.
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func (t compoundSelector) Match(n *html.Node) bool {
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if len(t.selectors) == 0 {
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return n.Type == html.ElementNode
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}
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for _, sel := range t.selectors {
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if !sel.Match(n) {
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return false
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}
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}
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return true
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}
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func (s compoundSelector) Specificity() Specificity {
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var out Specificity
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for _, sel := range s.selectors {
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out = out.Add(sel.Specificity())
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}
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if s.pseudoElement != "" {
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// https://drafts.csswg.org/selectors-3/#specificity
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out = out.Add(Specificity{0, 0, 1})
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}
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return out
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}
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func (c compoundSelector) PseudoElement() string {
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return c.pseudoElement
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}
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type combinedSelector struct {
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first Sel
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combinator byte
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second Sel
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}
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func (t combinedSelector) Match(n *html.Node) bool {
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if t.first == nil {
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return false // maybe we should panic
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}
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switch t.combinator {
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case 0:
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return t.first.Match(n)
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case ' ':
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return descendantMatch(t.first, t.second, n)
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case '>':
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return childMatch(t.first, t.second, n)
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case '+':
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return siblingMatch(t.first, t.second, true, n)
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case '~':
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return siblingMatch(t.first, t.second, false, n)
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default:
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panic("unknown combinator")
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}
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}
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// matches an element if it matches d and has an ancestor that matches a.
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func descendantMatch(a, d Matcher, n *html.Node) bool {
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if !d.Match(n) {
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return false
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}
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for p := n.Parent; p != nil; p = p.Parent {
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if a.Match(p) {
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return true
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}
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}
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return false
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}
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// matches an element if it matches d and its parent matches a.
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func childMatch(a, d Matcher, n *html.Node) bool {
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return d.Match(n) && n.Parent != nil && a.Match(n.Parent)
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}
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// matches an element if it matches s2 and is preceded by an element that matches s1.
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// If adjacent is true, the sibling must be immediately before the element.
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func siblingMatch(s1, s2 Matcher, adjacent bool, n *html.Node) bool {
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if !s2.Match(n) {
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return false
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}
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if adjacent {
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for n = n.PrevSibling; n != nil; n = n.PrevSibling {
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if n.Type == html.TextNode || n.Type == html.CommentNode {
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continue
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}
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return s1.Match(n)
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}
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return false
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}
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// Walk backwards looking for element that matches s1
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for c := n.PrevSibling; c != nil; c = c.PrevSibling {
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if s1.Match(c) {
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return true
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}
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}
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return false
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}
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func (s combinedSelector) Specificity() Specificity {
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spec := s.first.Specificity()
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if s.second != nil {
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spec = spec.Add(s.second.Specificity())
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}
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return spec
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}
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// on combinedSelector, a pseudo-element only makes sens on the last
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// selector, although others increase specificity.
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func (c combinedSelector) PseudoElement() string {
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if c.second == nil {
|
|
return ""
|
|
}
|
|
return c.second.PseudoElement()
|
|
}
|
|
|
|
// A SelectorGroup is a list of selectors, which matches if any of the
|
|
// individual selectors matches.
|
|
type SelectorGroup []Sel
|
|
|
|
// Match returns true if the node matches one of the single selectors.
|
|
func (s SelectorGroup) Match(n *html.Node) bool {
|
|
for _, sel := range s {
|
|
if sel.Match(n) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|