2019-04-09 11:52:21 -04:00
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package ast
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import "strings"
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// IndirectFieldDecl is node represents a indirect field declaration.
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type IndirectFieldDecl struct {
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Addr Address
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Pos Position
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Position2 string
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Implicit bool
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Name string
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Type string
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ChildNodes []Node
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}
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2019-06-03 11:07:12 -04:00
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func parseIndirectFieldDecl(line string) Node {
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2019-04-09 11:52:21 -04:00
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groups := groupsFromRegex(
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`<(?P<position>.*)>
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(?P<position2> [^ ]+:[\d:]+)?
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(?P<implicit> implicit)?
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(?P<name>\w+)
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'(?P<type>.+?)'`,
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line,
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)
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2019-06-11 12:38:22 -04:00
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if groups == nil {
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return &Unknown{}
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}
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2019-04-09 11:52:21 -04:00
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return &IndirectFieldDecl{
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Addr: ParseAddress(groups["address"]),
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Pos: NewPositionFromString(groups["position"]),
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Position2: strings.TrimSpace(groups["position2"]),
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Implicit: len(groups["implicit"]) > 0,
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Name: groups["name"],
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Type: groups["type"],
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ChildNodes: []Node{},
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}
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}
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// AddChild adds a new child node. Child nodes can then be accessed with the
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// Children attribute.
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func (n *IndirectFieldDecl) AddChild(node Node) {
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n.ChildNodes = append(n.ChildNodes, node)
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}
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// Address returns the numeric address of the node. See the documentation for
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// the Address type for more information.
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func (n *IndirectFieldDecl) Address() Address {
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return n.Addr
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}
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// Children returns the child nodes. If this node does not have any children or
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// this node does not support children it will always return an empty slice.
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func (n *IndirectFieldDecl) Children() []Node {
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return n.ChildNodes
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}
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// Position returns the position in the original source code.
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func (n *IndirectFieldDecl) Position() Position {
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return n.Pos
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}
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