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semantic/prototype/DoubtTests/UnannotatedTerm.swift

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struct UnannotatedTerm: Comparable {
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typealias Term = Cofree<String, ()>
let term: Term
static let indexed = (prefix: "[\n\t", separator: ",\n\t", suffix: "\n]")
static let keyed = (prefix: "[\n\t", separator: ",\n\t", suffix: "\n}")
var source: String {
let indexed = UnannotatedTerm.indexed
let keyed = UnannotatedTerm.keyed
return term.cata {
switch $0 {
case let .Leaf(s):
return s
case let .Indexed(s):
return indexed.prefix + s.joinWithSeparator(indexed.separator) + indexed.suffix
case let .Keyed(s):
return keyed.prefix + s.map { "\"\($0)\": \($1)" }.joinWithSeparator(keyed.separator) + keyed.suffix
}
}
}
var ranged: Cofree<String, Range<Int>> {
let indexed = UnannotatedTerm.indexed
let keyed = UnannotatedTerm.keyed
return term.cata {
switch $0 {
case let .Leaf(s):
return Cofree(0..<s.characters.count, .Leaf(s))
case let .Indexed(i):
var length = indexed.prefix.characters.count
var results: [Cofree<String, Range<Int>>] = []
for value in i {
if results.count > 0 {
length += indexed.separator.characters.count
}
results.append(value.map {
($0.startIndex + length)..<($0.endIndex + length)
})
length += value.extract.count
}
return Cofree(0..<(length + indexed.suffix.characters.count), .Indexed(results))
case let .Keyed(k):
var length = keyed.prefix.characters.count
var results: [(String, Cofree<String, Range<Int>>)] = []
for (key, value) in k {
if results.count > 0 {
length += keyed.separator.characters.count
}
results.append((key, value.map {
($0.startIndex + length)..<($0.endIndex + length)
}))
length += value.extract.count + 4 // for the characters around the key
}
return Cofree(0..<(length + keyed.suffix.characters.count), .Keyed(Dictionary(elements: results)))
}
}
}
var arranged: RangedTerm {
let source = self.source
return RangedTerm(
term: ranged.map {
source.startIndex.advancedBy($0.startIndex)..<source.startIndex.advancedBy($0.endIndex)
},
source: source)
}
}
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func == (left: UnannotatedTerm, right: UnannotatedTerm) -> Bool {
return UnannotatedTerm.Term.equals(annotation: const(true), leaf: ==)(left.term, right.term)
}
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func < (left: UnannotatedTerm, right: UnannotatedTerm) -> Bool {
return left.term.size < right.term.size
}
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extension UnannotatedTerm: Arbitrary {
static func arbitrary(k: Int) -> Gen<UnannotatedTerm> {
let symbol: Gen<String> = Gen<Int>.choose((0, 15)).fmap { "_\($0)" }
let leaf: Gen<Term> = symbol.fmap { Term((), .Leaf($0)) }
let indexed: Gen<Term> = Gen<Int>.choose((0, k)).bind { n in
sequence((0..<n).map { _ in arbitrary(k - 1) }).fmap {
Term((), .Indexed($0.map { $0.term }))
}
}
let keyed: Gen<Term> = Gen<Int>.choose((0, k)).bind { n in
sequence((0..<n).map { _ in symbol.bind { key in Gen.pure(()).bind { arbitrary(k - 1) }.fmap { (key, $0.term) } } }).fmap {
Term((), .Keyed(Dictionary(elements: $0)))
}
}
return Gen.oneOf([
leaf,
indexed,
keyed,
]).fmap(UnannotatedTerm.init)
}
static var arbitrary: Gen<UnannotatedTerm> {
return arbitrary(7)
}
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static func shrink(term: UnannotatedTerm) -> [UnannotatedTerm] {
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return term.term.cata {
switch $0 {
case .Leaf:
return []
case let .Indexed(i):
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return i.flatMap {
Array.shrink($0).map {
UnannotatedTerm(term: Cofree((), .Indexed($0.map { $0.term })))
}
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}.sort()
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case let .Keyed(k):
return []
}
}
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}
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}
import Doubt
import Prelude
import SwiftCheck