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ast_conditional_test.go
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package javascript
import "testing"
func makeConditionLiteral(tk Tokens, pos int) ConditionalExpression {
p := PrimaryExpression{Tokens: tk[pos : pos+1]}
if tk[pos].Type == TokenIdentifier || tk[pos].Type == TokenKeyword {
p.IdentifierReference = &tk[pos]
} else {
p.Literal = &tk[pos]
}
return *WrapConditional(&p)
}
func wrapConditional(i ConditionalWrappable) ConditionalExpression {
return *WrapConditional(i)
}
func TestConditional(t *testing.T) {
doTests(t, []sourceFn{
{`true`, func(t *test, tk Tokens) { // 1
t.Output = makeConditionLiteral(tk, 0)
}},
{`true || false`, func(t *test, tk Tokens) { // 2
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(LogicalORExpression{
LogicalORExpression: litA.LogicalORExpression,
LogicalANDExpression: litB.LogicalORExpression.LogicalANDExpression,
Tokens: tk[:5],
})
}},
{`true && false`, func(t *test, tk Tokens) { // 3
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(LogicalORExpression{
LogicalANDExpression: LogicalANDExpression{
LogicalANDExpression: &litA.LogicalORExpression.LogicalANDExpression,
BitwiseORExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:5],
},
Tokens: tk[:5],
})
}},
{`1 || 2 || 3`, func(t *test, tk Tokens) { // 4
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(LogicalORExpression{
LogicalORExpression: &LogicalORExpression{
LogicalORExpression: litA.LogicalORExpression,
LogicalANDExpression: litB.LogicalORExpression.LogicalANDExpression,
Tokens: tk[:5],
},
LogicalANDExpression: litC.LogicalORExpression.LogicalANDExpression,
Tokens: tk[:9],
})
}},
{`1 && 2 && 3`, func(t *test, tk Tokens) { // 5
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(LogicalANDExpression{
LogicalANDExpression: &LogicalANDExpression{
LogicalANDExpression: &litA.LogicalORExpression.LogicalANDExpression,
BitwiseORExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:5],
},
BitwiseORExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:9],
})
}},
{`1 && 2 || 3`, func(t *test, tk Tokens) { // 6
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(LogicalORExpression{
LogicalORExpression: &LogicalORExpression{
LogicalANDExpression: LogicalANDExpression{
LogicalANDExpression: &litA.LogicalORExpression.LogicalANDExpression,
BitwiseORExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:5],
},
Tokens: tk[:5],
},
LogicalANDExpression: litC.LogicalORExpression.LogicalANDExpression,
Tokens: tk[:9],
})
}},
{`1 || 2 && 3`, func(t *test, tk Tokens) { // 7
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(LogicalORExpression{
LogicalORExpression: litA.LogicalORExpression,
LogicalANDExpression: LogicalANDExpression{
LogicalANDExpression: &litB.LogicalORExpression.LogicalANDExpression,
BitwiseORExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[4:9],
},
Tokens: tk[:9],
})
}},
{`1 | 2`, func(t *test, tk Tokens) { // 8
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(BitwiseORExpression{
BitwiseORExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
BitwiseXORExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression,
Tokens: tk[:5],
})
}},
{`1 | 2 | 3`, func(t *test, tk Tokens) { // 9
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(BitwiseORExpression{
BitwiseORExpression: &BitwiseORExpression{
BitwiseORExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
BitwiseXORExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression,
Tokens: tk[:5],
},
BitwiseXORExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression,
Tokens: tk[:9],
})
}},
{`1 ^ 2`, func(t *test, tk Tokens) { // 10
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(BitwiseXORExpression{
BitwiseXORExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression,
BitwiseANDExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression,
Tokens: tk[:5],
})
}},
{`1 ^ 2 ^ 3`, func(t *test, tk Tokens) { // 11
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(BitwiseXORExpression{
BitwiseXORExpression: &BitwiseXORExpression{
BitwiseXORExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression,
BitwiseANDExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression,
Tokens: tk[:5],
},
BitwiseANDExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression,
Tokens: tk[:9],
})
}},
{`1 & 2`, func(t *test, tk Tokens) { // 12
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(BitwiseANDExpression{
BitwiseANDExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression,
EqualityExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
Tokens: tk[:5],
})
}},
{`1 & 2 & 3`, func(t *test, tk Tokens) { // 13
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(BitwiseANDExpression{
BitwiseANDExpression: &BitwiseANDExpression{
BitwiseANDExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression,
EqualityExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
Tokens: tk[:5],
},
EqualityExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
Tokens: tk[:9],
})
}},
{`1 == 2`, func(t *test, tk Tokens) { // 14
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
})
}},
{`1 == 2 != true`, func(t *test, tk Tokens) { // 15
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
},
EqualityOperator: EqualityNotEqual,
RelationalExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:9],
})
}},
{`1 != 2`, func(t *test, tk Tokens) { // 16
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityNotEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
})
}},
{`1 != 2 == true`, func(t *test, tk Tokens) { // 17
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityNotEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
},
EqualityOperator: EqualityEqual,
RelationalExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:9],
})
}},
{`1 === 2`, func(t *test, tk Tokens) { // 18
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityStrictEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
})
}},
{`1 === 2 !== true`, func(t *test, tk Tokens) { // 19
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityStrictEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
},
EqualityOperator: EqualityStrictNotEqual,
RelationalExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:9],
})
}},
{`1 !== 2`, func(t *test, tk Tokens) { // 20
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityStrictNotEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
})
}},
{`1 !== 2 === true`, func(t *test, tk Tokens) { // 21
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityStrictNotEqual,
RelationalExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:5],
},
EqualityOperator: EqualityStrictEqual,
RelationalExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:9],
})
}},
{`1 < 2`, func(t *test, tk Tokens) { // 22
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipLessThan,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:5],
})
}},
{`1 < 2 === true`, func(t *test, tk Tokens) { // 23
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &EqualityExpression{
RelationalExpression: RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipLessThan,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:5],
},
Tokens: tk[:5],
},
EqualityOperator: EqualityStrictEqual,
RelationalExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
Tokens: tk[:9],
})
}},
{`true === 1 < 2`, func(t *test, tk Tokens) { // 24
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(EqualityExpression{
EqualityExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression,
EqualityOperator: EqualityStrictEqual,
RelationalExpression: RelationalExpression{
RelationalExpression: &litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipLessThan,
ShiftExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[4:9],
},
Tokens: tk[:9],
})
}},
{`1 > 2`, func(t *test, tk Tokens) { // 25
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipGreaterThan,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:5],
})
}},
{`1 <= 2`, func(t *test, tk Tokens) { // 26
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipLessThanEqual,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:5],
})
}},
{`1 >= 2`, func(t *test, tk Tokens) { // 27
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 5)
t.Output = wrapConditional(RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipGreaterThanEqual,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:6],
})
}},
{`1 instanceof 2`, func(t *test, tk Tokens) { // 28
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipInstanceOf,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:5],
})
}},
{`1 in 2`, func(t *test, tk Tokens) { // 29
t.Output = makeConditionLiteral(tk, 0)
}},
{`1 in 2`, func(t *test, tk Tokens) { // 30
t.In = true
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(RelationalExpression{
RelationalExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression,
RelationshipOperator: RelationshipIn,
ShiftExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
Tokens: tk[:5],
})
}},
{`1 << 2`, func(t *test, tk Tokens) { // 31
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(ShiftExpression{
ShiftExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
ShiftOperator: ShiftLeft,
AdditiveExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:5],
})
}},
{`1 << 2 << 3`, func(t *test, tk Tokens) { // 32
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(ShiftExpression{
ShiftExpression: &ShiftExpression{
ShiftExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
ShiftOperator: ShiftLeft,
AdditiveExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:5],
},
ShiftOperator: ShiftLeft,
AdditiveExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:9],
})
}},
{`1 >> 2`, func(t *test, tk Tokens) { // 33
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 5)
t.Output = wrapConditional(ShiftExpression{
ShiftExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
ShiftOperator: ShiftRight,
AdditiveExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:6],
})
}},
{`1 >> 2 >> 3`, func(t *test, tk Tokens) { // 34
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 5)
litC := makeConditionLiteral(tk, 10)
t.Output = wrapConditional(ShiftExpression{
ShiftExpression: &ShiftExpression{
ShiftExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
ShiftOperator: ShiftRight,
AdditiveExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:6],
},
ShiftOperator: ShiftRight,
AdditiveExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:11],
})
}},
{`1 >>> 2`, func(t *test, tk Tokens) { // 35
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 6)
t.Output = wrapConditional(ShiftExpression{
ShiftExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
ShiftOperator: ShiftUnsignedRight,
AdditiveExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:7],
})
}},
{`1 >>> 2 >>> 3`, func(t *test, tk Tokens) { // 36
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 6)
litC := makeConditionLiteral(tk, 12)
t.Output = wrapConditional(ShiftExpression{
ShiftExpression: &ShiftExpression{
ShiftExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression,
ShiftOperator: ShiftUnsignedRight,
AdditiveExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:7],
},
ShiftOperator: ShiftUnsignedRight,
AdditiveExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
Tokens: tk[:13],
})
}},
{`1 + 2`, func(t *test, tk Tokens) { // 37
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(AdditiveExpression{
AdditiveExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
AdditiveOperator: AdditiveAdd,
MultiplicativeExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:5],
})
}},
{`1 + 2 + 3`, func(t *test, tk Tokens) { // 38
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(AdditiveExpression{
AdditiveExpression: &AdditiveExpression{
AdditiveExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
AdditiveOperator: AdditiveAdd,
MultiplicativeExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:5],
},
AdditiveOperator: AdditiveAdd,
MultiplicativeExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:9],
})
}},
{`1 - 2`, func(t *test, tk Tokens) { // 39
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(AdditiveExpression{
AdditiveExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
AdditiveOperator: AdditiveMinus,
MultiplicativeExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:5],
})
}},
{`1 + 2 - 3`, func(t *test, tk Tokens) { // 40
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(AdditiveExpression{
AdditiveExpression: &AdditiveExpression{
AdditiveExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
AdditiveOperator: AdditiveAdd,
MultiplicativeExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:5],
},
AdditiveOperator: AdditiveMinus,
MultiplicativeExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:9],
})
}},
{`1 - 2 - 3`, func(t *test, tk Tokens) { // 41
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(AdditiveExpression{
AdditiveExpression: &AdditiveExpression{
AdditiveExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
AdditiveOperator: AdditiveMinus,
MultiplicativeExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:5],
},
AdditiveOperator: AdditiveMinus,
MultiplicativeExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:9],
})
}},
{`1 - 2 + 3`, func(t *test, tk Tokens) { // 42
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(AdditiveExpression{
AdditiveExpression: &AdditiveExpression{
AdditiveExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression,
AdditiveOperator: AdditiveMinus,
MultiplicativeExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:5],
},
AdditiveOperator: AdditiveAdd,
MultiplicativeExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
Tokens: tk[:9],
})
}},
{`1 * 2`, func(t *test, tk Tokens) { // 43
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(MultiplicativeExpression{
MultiplicativeExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
MultiplicativeOperator: MultiplicativeMultiply,
ExponentiationExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:5],
})
}},
{`1 * 2 * 3`, func(t *test, tk Tokens) { // 44
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(MultiplicativeExpression{
MultiplicativeExpression: &MultiplicativeExpression{
MultiplicativeExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
MultiplicativeOperator: MultiplicativeMultiply,
ExponentiationExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:5],
},
MultiplicativeOperator: MultiplicativeMultiply,
ExponentiationExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:9],
})
}},
{`1 / 2`, func(t *test, tk Tokens) { // 45
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(MultiplicativeExpression{
MultiplicativeExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
MultiplicativeOperator: MultiplicativeDivide,
ExponentiationExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:5],
})
}},
{`1 / 2 / 3`, func(t *test, tk Tokens) { // 46
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(MultiplicativeExpression{
MultiplicativeExpression: &MultiplicativeExpression{
MultiplicativeExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
MultiplicativeOperator: MultiplicativeDivide,
ExponentiationExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:5],
},
MultiplicativeOperator: MultiplicativeDivide,
ExponentiationExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:9],
})
}},
{`1 % 2`, func(t *test, tk Tokens) { // 47
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(MultiplicativeExpression{
MultiplicativeExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
MultiplicativeOperator: MultiplicativeRemainder,
ExponentiationExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:5],
})
}},
{`1 % 2 % 3`, func(t *test, tk Tokens) { // 48
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(MultiplicativeExpression{
MultiplicativeExpression: &MultiplicativeExpression{
MultiplicativeExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression,
MultiplicativeOperator: MultiplicativeRemainder,
ExponentiationExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:5],
},
MultiplicativeOperator: MultiplicativeRemainder,
ExponentiationExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
Tokens: tk[:9],
})
}},
{`1 ** 2`, func(t *test, tk Tokens) { // 49
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(ExponentiationExpression{
ExponentiationExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
UnaryExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression,
Tokens: tk[:5],
})
}},
{`1 ** 2 ** 3`, func(t *test, tk Tokens) { // 50
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = wrapConditional(ExponentiationExpression{
ExponentiationExpression: &ExponentiationExpression{
ExponentiationExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression,
UnaryExpression: litB.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression,
Tokens: tk[:5],
},
UnaryExpression: litC.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression,
Tokens: tk[:9],
})
}},
{`delete 1`, func(t *test, tk Tokens) { // 51
litA := makeConditionLiteral(tk, 2)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryDelete},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:3],
})
}},
{`void 1`, func(t *test, tk Tokens) { // 52
litA := makeConditionLiteral(tk, 2)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryVoid},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:3],
})
}},
{`typeof 1`, func(t *test, tk Tokens) { // 53
litA := makeConditionLiteral(tk, 2)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryTypeOf},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:3],
})
}},
{`+1`, func(t *test, tk Tokens) { // 54
litA := makeConditionLiteral(tk, 1)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryAdd},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:2],
})
}},
{`-1`, func(t *test, tk Tokens) { // 55
litA := makeConditionLiteral(tk, 1)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryMinus},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:2],
})
}},
{`~1`, func(t *test, tk Tokens) { // 56
litA := makeConditionLiteral(tk, 1)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryBitwiseNot},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:2],
})
}},
{`!1`, func(t *test, tk Tokens) { // 57
litA := makeConditionLiteral(tk, 1)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryLogicalNot},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:2],
})
}},
{`await 1`, func(t *test, tk Tokens) { // 58
t.Output = makeConditionLiteral(tk, 0)
}},
{`await 1`, func(t *test, tk Tokens) { // 59
t.Await = true
litA := makeConditionLiteral(tk, 2)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryAwait},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:3],
})
}},
{`await!~-1`, func(t *test, tk Tokens) { // 60
t.Output = makeConditionLiteral(tk, 0)
}},
{`await!~-1`, func(t *test, tk Tokens) { // 61
t.Await = true
litA := makeConditionLiteral(tk, 4)
t.Output = wrapConditional(UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryAwait, UnaryLogicalNot, UnaryBitwiseNot, UnaryMinus},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[:5],
})
}},
{`a++`, func(t *test, tk Tokens) { // 62
litA := makeConditionLiteral(tk, 0)
t.Output = wrapConditional(UpdateExpression{
LeftHandSideExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression.LeftHandSideExpression,
UpdateOperator: UpdatePostIncrement,
Tokens: tk[:2],
})
}},
{`a--`, func(t *test, tk Tokens) { // 63
litA := makeConditionLiteral(tk, 0)
t.Output = wrapConditional(UpdateExpression{
LeftHandSideExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression.LeftHandSideExpression,
UpdateOperator: UpdatePostDecrement,
Tokens: tk[:2],
})
}},
{`++a`, func(t *test, tk Tokens) { // 64
litA := makeConditionLiteral(tk, 1)
t.Output = wrapConditional(UpdateExpression{
UpdateOperator: UpdatePreIncrement,
UnaryExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression,
Tokens: tk[:2],
})
}},
{`--a`, func(t *test, tk Tokens) { // 65
litA := makeConditionLiteral(tk, 1)
t.Output = wrapConditional(UpdateExpression{
UpdateOperator: UpdatePreDecrement,
UnaryExpression: &litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression,
Tokens: tk[:2],
})
}},
{`++!a`, func(t *test, tk Tokens) { // 66
litA := makeConditionLiteral(tk, 2)
t.Output = wrapConditional(UpdateExpression{
UpdateOperator: UpdatePreIncrement,
UnaryExpression: &UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryLogicalNot},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[1:3],
},
Tokens: tk[:3],
})
}},
{`--!a`, func(t *test, tk Tokens) { // 67
litA := makeConditionLiteral(tk, 2)
t.Output = wrapConditional(UpdateExpression{
UpdateOperator: UpdatePreDecrement,
UnaryExpression: &UnaryExpression{
UnaryOperators: []UnaryOperator{UnaryLogicalNot},
UpdateExpression: litA.LogicalORExpression.LogicalANDExpression.BitwiseORExpression.BitwiseXORExpression.BitwiseANDExpression.EqualityExpression.RelationalExpression.ShiftExpression.AdditiveExpression.MultiplicativeExpression.ExponentiationExpression.UnaryExpression.UpdateExpression,
Tokens: tk[1:3],
},
Tokens: tk[:3],
})
}},
{`true ? 1 : 2`, func(t *test, tk Tokens) { // 68
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
t.Output = ConditionalExpression{
LogicalORExpression: litA.LogicalORExpression,
True: &AssignmentExpression{
ConditionalExpression: &litB,
Tokens: tk[4:5],
},
False: &AssignmentExpression{
ConditionalExpression: &litC,
Tokens: tk[8:9],
},
Tokens: tk[:9],
}
}},
{`true ? 1 ? 2 : 3 : 4 ? 5 : 6`, func(t *test, tk Tokens) { // 69
litA := makeConditionLiteral(tk, 0)
litB := makeConditionLiteral(tk, 4)
litC := makeConditionLiteral(tk, 8)
litD := makeConditionLiteral(tk, 12)
litE := makeConditionLiteral(tk, 16)
litF := makeConditionLiteral(tk, 20)
litG := makeConditionLiteral(tk, 24)
t.Output = ConditionalExpression{
LogicalORExpression: litA.LogicalORExpression,
True: &AssignmentExpression{
ConditionalExpression: &ConditionalExpression{
LogicalORExpression: litB.LogicalORExpression,
True: &AssignmentExpression{
ConditionalExpression: &litC,
Tokens: tk[8:9],
},
False: &AssignmentExpression{
ConditionalExpression: &litD,
Tokens: tk[12:13],
},
Tokens: tk[4:13],
},
Tokens: tk[4:13],
},
False: &AssignmentExpression{
ConditionalExpression: &ConditionalExpression{
LogicalORExpression: litE.LogicalORExpression,
True: &AssignmentExpression{
ConditionalExpression: &litF,
Tokens: tk[20:21],
},
False: &AssignmentExpression{
ConditionalExpression: &litG,
Tokens: tk[24:25],
},
Tokens: tk[16:25],
},
Tokens: tk[16:25],
},
Tokens: tk[:25],
}
}},
{`true ? :`, func(t *test, tk Tokens) { // 70
t.Err = Error{
Err: assignmentError(tk[4]),
Parsing: "ConditionalExpression",
Token: tk[4],
}
}},
{`true ? a`, func(t *test, tk Tokens) { // 71
t.Err = Error{
Err: ErrMissingColon,
Parsing: "ConditionalExpression",
Token: tk[5],
}
}},
{`true ? a : :`, func(t *test, tk Tokens) { // 72
t.Err = Error{
Err: assignmentError(tk[8]),
Parsing: "ConditionalExpression",
Token: tk[8],
}
}},
{`++?`, func(t *test, tk Tokens) { /// 73
t.Err = Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: ErrNoIdentifier,
Parsing: "PrimaryExpression",
Token: tk[1],
},
Parsing: "MemberExpression",
Token: tk[1],
},
Parsing: "NewExpression",
Token: tk[1],
},
Parsing: "LeftHandSideExpression",
Token: tk[1],
},
Parsing: "UpdateExpression",
Token: tk[1],
},
Parsing: "UnaryExpression",
Token: tk[1],
},
Parsing: "UpdateExpression",
Token: tk[1],
},
Parsing: "UnaryExpression",
Token: tk[0],
},
Parsing: "ExponentiationExpression",
Token: tk[0],
},
Parsing: "MultiplicativeExpression",
Token: tk[0],
},
Parsing: "AdditiveExpression",
Token: tk[0],
},
Parsing: "ShiftExpression",
Token: tk[0],
},
Parsing: "RelationalExpression",
Token: tk[0],
},
Parsing: "EqualityExpression",
Token: tk[0],
},
Parsing: "BitwiseANDExpression",
Token: tk[0],
},
Parsing: "BitwiseXORExpression",
Token: tk[0],
},
Parsing: "BitwiseORExpression",
Token: tk[0],
},
Parsing: "LogicalANDExpression",
Token: tk[0],
},
Parsing: "LogicalORExpression",
Token: tk[0],
},
Parsing: "ConditionalExpression",
Token: tk[0],
}
}},
{"a\n??\nb", func(t *test, tk Tokens) { // 73
t.Output = ConditionalExpression{
CoalesceExpression: &CoalesceExpression{
CoalesceExpressionHead: &CoalesceExpression{
BitwiseORExpression: makeConditionLiteral(tk, 0).LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:1],
},
BitwiseORExpression: makeConditionLiteral(tk, 4).LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:5],
},
Tokens: tk[:5],
}
}},
{"a\n??\nb\n??\nc", func(t *test, tk Tokens) { // 74
t.Output = ConditionalExpression{
CoalesceExpression: &CoalesceExpression{
CoalesceExpressionHead: &CoalesceExpression{
CoalesceExpressionHead: &CoalesceExpression{
BitwiseORExpression: makeConditionLiteral(tk, 0).LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:1],
},
BitwiseORExpression: makeConditionLiteral(tk, 4).LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:5],
},
BitwiseORExpression: makeConditionLiteral(tk, 8).LogicalORExpression.LogicalANDExpression.BitwiseORExpression,
Tokens: tk[:9],
},
Tokens: tk[:9],
}
}},
{"a\n??\n!", func(t *test, tk Tokens) { // 75
t.Err = Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: Error{
Err: ErrNoIdentifier,
Parsing: "PrimaryExpression",
Token: tk[5],
},
Parsing: "MemberExpression",
Token: tk[5],
},
Parsing: "NewExpression",
Token: tk[5],
},