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159 changes: 159 additions & 0 deletions library/src-bootstrapped/scala/quoted/util/ExprMap.scala
Original file line number Diff line number Diff line change
@@ -0,0 +1,159 @@
package scala.quoted.util

import scala.quoted._

trait ExprMap {

/** Map an expression `e` with a type `tpe` */
def transform[T](e: Expr[T])(given qctx: QuoteContext, tpe: Type[T]): Expr[T]

/** Map subexpressions an expression `e` with a type `tpe` */
def transformChildren[T](e: Expr[T])(given qctx: QuoteContext, tpe: Type[T]): Expr[T] = {
import qctx.tasty.{_, given}
final class MapChildren() {

def transformStatement(tree: Statement)(given ctx: Context): Statement = {
def localCtx(definition: Definition): Context = definition.symbol.localContext
tree match {
case tree: Term =>
transformTerm(tree, defn.AnyType)
case tree: Definition =>
transformDefinition(tree)
case tree: Import =>
tree
}
}

def transformDefinition(tree: Definition)(given ctx: Context): Definition = {
def localCtx(definition: Definition): Context = definition.symbol.localContext
tree match {
case tree: ValDef =>
implicit val ctx = localCtx(tree)
val rhs1 = tree.rhs.map(x => transformTerm(x, tree.tpt.tpe))
ValDef.copy(tree)(tree.name, tree.tpt, rhs1)
case tree: DefDef =>
implicit val ctx = localCtx(tree)
DefDef.copy(tree)(tree.name, tree.typeParams, tree.paramss, tree.returnTpt, tree.rhs.map(x => transformTerm(x, tree.returnTpt.tpe)))
case tree: TypeDef =>
tree
case tree: ClassDef =>
val newBody = transformStats(tree.body)
ClassDef.copy(tree)(tree.name, tree.constructor, tree.parents, tree.derived, tree.self, newBody)
}
}

def transformTermChildren(tree: Term, tpe: Type)(given ctx: Context): Term = tree match {
case Ident(name) =>
tree
case Select(qualifier, name) =>
Select.copy(tree)(transformTerm(qualifier, qualifier.tpe), name)
case This(qual) =>
tree
case Super(qual, mix) =>
tree
case tree @ Apply(fun, args) =>
val MethodType(_, tpes, _) = fun.tpe.widen
Apply.copy(tree)(transformTerm(fun, defn.AnyType), transformTerms(args, tpes))
case TypeApply(fun, args) =>
TypeApply.copy(tree)(transformTerm(fun, defn.AnyType), args)
case _: Literal =>
tree
case New(tpt) =>
New.copy(tree)(transformTypeTree(tpt))
case Typed(expr, tpt) =>
val tp = tpt.tpe match
// TODO improve code
case AppliedType(TypeRef(ThisType(TypeRef(NoPrefix(), "scala")), "<repeated>"), List(tp0: Type)) =>
type T
val a = tp0.seal.asInstanceOf[quoted.Type[T]]
'[Seq[$a]].unseal.tpe
case tp => tp
Typed.copy(tree)(transformTerm(expr, tp), transformTypeTree(tpt))
case tree: NamedArg =>
NamedArg.copy(tree)(tree.name, transformTerm(tree.value, tpe))
case Assign(lhs, rhs) =>
Assign.copy(tree)(lhs, transformTerm(rhs, lhs.tpe.widen))
case Block(stats, expr) =>
Block.copy(tree)(transformStats(stats), transformTerm(expr, tpe))
case If(cond, thenp, elsep) =>
If.copy(tree)(
transformTerm(cond, defn.BooleanType),
transformTerm(thenp, tpe),
transformTerm(elsep, tpe))
case _: Closure =>
tree
case Match(selector, cases) =>
Match.copy(tree)(transformTerm(selector, selector.tpe), transformCaseDefs(cases, tpe))
case Return(expr) =>
// FIXME
// ctx.owner seems to be set to the wrong symbol
// Return.copy(tree)(transformTerm(expr, expr.tpe))
tree
case While(cond, body) =>
While.copy(tree)(transformTerm(cond, defn.BooleanType), transformTerm(body, defn.AnyType))
case Try(block, cases, finalizer) =>
Try.copy(tree)(transformTerm(block, tpe), transformCaseDefs(cases, defn.AnyType), finalizer.map(x => transformTerm(x, defn.AnyType)))
case Repeated(elems, elemtpt) =>
Repeated.copy(tree)(transformTerms(elems, elemtpt.tpe), elemtpt)
case Inlined(call, bindings, expansion) =>
Inlined.copy(tree)(call, transformDefinitions(bindings), transformTerm(expansion, tpe)/*()call.symbol.localContext)*/)
}

def transformTerm(tree: Term, tpe: Type)(given ctx: Context): Term =
tree match {
case _: Closure =>
tree
case _: Inlined =>
transformTermChildren(tree, tpe)
case _ =>
tree.tpe.widen match {
case _: MethodType | _: PolyType =>
transformTermChildren(tree, tpe)
case _ =>
type X
val expr = tree.seal.asInstanceOf[Expr[X]]
val t = tpe.seal.asInstanceOf[quoted.Type[X]]
transform(expr)(given qctx, t).unseal
}
}

def transformTypeTree(tree: TypeTree)(given ctx: Context): TypeTree = tree

def transformCaseDef(tree: CaseDef, tpe: Type)(given ctx: Context): CaseDef =
CaseDef.copy(tree)(tree.pattern, tree.guard.map(x => transformTerm(x, defn.BooleanType)), transformTerm(tree.rhs, tpe))

def transformTypeCaseDef(tree: TypeCaseDef)(given ctx: Context): TypeCaseDef = {
TypeCaseDef.copy(tree)(transformTypeTree(tree.pattern), transformTypeTree(tree.rhs))
}

def transformStats(trees: List[Statement])(given ctx: Context): List[Statement] =
trees mapConserve (transformStatement(_))

def transformDefinitions(trees: List[Definition])(given ctx: Context): List[Definition] =
trees mapConserve (transformDefinition(_))

def transformTerms(trees: List[Term], tpes: List[Type])(given ctx: Context): List[Term] =
var tpes2 = tpes // TODO use proper zipConserve
trees mapConserve { x =>
val tpe :: tail = tpes2
tpes2 = tail
transformTerm(x, tpe)
}

def transformTerms(trees: List[Term], tpe: Type)(given ctx: Context): List[Term] =
trees.mapConserve(x => transformTerm(x, tpe))

def transformTypeTrees(trees: List[TypeTree])(given ctx: Context): List[TypeTree] =
trees mapConserve (transformTypeTree(_))

def transformCaseDefs(trees: List[CaseDef], tpe: Type)(given ctx: Context): List[CaseDef] =
trees mapConserve (x => transformCaseDef(x, tpe))

def transformTypeCaseDefs(trees: List[TypeCaseDef])(given ctx: Context): List[TypeCaseDef] =
trees mapConserve (transformTypeCaseDef(_))

}
new MapChildren().transformTermChildren(e.unseal, tpe.unseal.tpe).seal.cast[T] // Cast will only fail if this implementation has a bug
}

}
11 changes: 11 additions & 0 deletions library/src/scala/quoted/Expr.scala
Original file line number Diff line number Diff line change
Expand Up @@ -19,6 +19,17 @@ package quoted {
*/
final def getValue[U >: T](given qctx: QuoteContext, valueOf: ValueOfExpr[U]): Option[U] = valueOf(this)

/** Pattern matches `this` against `that`. Effectively performing a deep equality check.
* It does the equivalent of
* ```
* this match
* case '{...} => true // where the contens of the pattern are the contents of `that`
* case _ => false
* ```
*/
final def matches(that: Expr[Any])(given qctx: QuoteContext): Boolean =
!scala.internal.quoted.Expr.unapply[Unit, Unit](this)(given that, false, qctx).isEmpty

}

object Expr {
Expand Down
27 changes: 27 additions & 0 deletions tests/run-macros/expr-map-1.check
Original file line number Diff line number Diff line change
@@ -0,0 +1,27 @@
oof
oofoof
ylppa
kcolb
kcolb
neht
esle
lav
vals
fed
defs
fed
rab
yrt
yllanif
hctac
elihw
wen
depyt
depyt
grAdeman
qual
adbmal
ravsgra
hctam
def
ooF wen
18 changes: 18 additions & 0 deletions tests/run-macros/expr-map-1/Macro_1.scala
Original file line number Diff line number Diff line change
@@ -0,0 +1,18 @@
import scala.quoted._
import scala.quoted.matching._

inline def rewrite[T](x: => Any): Any = ${ stringRewriter('x) }

private def stringRewriter(e: Expr[Any])(given QuoteContext): Expr[Any] =
StringRewriter.transform(e)

private object StringRewriter extends util.ExprMap {

def transform[T](e: Expr[T])(given QuoteContext, Type[T]): Expr[T] = e match
case Const(s: String) =>
Expr(s.reverse) match
case '{ $x: T } => x
case _ => e // e had a singlton String type
case _ => transformChildren(e)

}
130 changes: 130 additions & 0 deletions tests/run-macros/expr-map-1/Test_2.scala
Original file line number Diff line number Diff line change
@@ -0,0 +1,130 @@
object Test {

def main(args: Array[String]): Unit = {
println(rewrite("foo"))
println(rewrite("foo" + "foo"))

rewrite {
println("apply")
}

rewrite {
println("block")
println("block")
}

val b: Boolean = true
rewrite {
if b then println("then")
else println("else")
}

rewrite {
if !b then println("then")
else println("else")
}

rewrite {
val s: String = "val"
println(s)
}

rewrite {
val s: "vals" = "vals"
println(s) // prints "foo" not "oof"
}

rewrite {
def s: String = "def"
println(s)
}

rewrite {
def s: "defs" = "defs"
println(s) // prints "foo" not "oof"
}

rewrite {
def s(x: String): String = x
println(s("def"))
}

rewrite {
var s: String = "var"
s = "bar"
println(s)
}

rewrite {
try println("try")
finally println("finally")
}

rewrite {
try throw new Exception()
catch case x: Exception => println("catch")
}

rewrite {
var x = true
while (x) {
println("while")
x = false
}
}

rewrite {
val t = new Tuple1("new")
println(t._1)
}

rewrite {
println("typed": String)
println("typed": Any)
}

rewrite {
val f = new Foo(foo = "namedArg")
println(f.foo)
}

rewrite {
println("qual".reverse)
}

rewrite {
val f = () => "lambda"
println(f())
}

rewrite {
def f(args: String*): String = args.mkString
println(f("var", "args"))
}

rewrite {
"match" match {
case "match" => println("match")
case x => println("x")
}
}

// FIXME should print fed
rewrite {
def s: String = return "def"
println(s)
}

rewrite {
class Foo {
println("new Foo")
}
new Foo
}


}

}

class Foo(val foo: String)
3 changes: 3 additions & 0 deletions tests/run-macros/expr-map-2.check
Original file line number Diff line number Diff line change
@@ -0,0 +1,3 @@
Foo(2)
4
4
19 changes: 19 additions & 0 deletions tests/run-macros/expr-map-2/Macro_1.scala
Original file line number Diff line number Diff line change
@@ -0,0 +1,19 @@
import scala.quoted._
import scala.quoted.matching._

inline def rewrite[T](x: => Any): Any = ${ stringRewriter('x) }

private def stringRewriter(e: Expr[Any])(given QuoteContext): Expr[Any] =
StringRewriter.transform(e)

private object StringRewriter extends util.ExprMap {

def transform[T](e: Expr[T])(given QuoteContext, Type[T]): Expr[T] = e match
case '{ ($x: Foo).x } =>
'{ new Foo(4).x } match case '{ $e: T } => e
case _ =>
transformChildren(e)

}

case class Foo(x: Int)
13 changes: 13 additions & 0 deletions tests/run-macros/expr-map-2/Test_2.scala
Original file line number Diff line number Diff line change
@@ -0,0 +1,13 @@
object Test {

def main(args: Array[String]): Unit = {
println(rewrite(new Foo(2)))
println(rewrite(new Foo(2).x))

rewrite {
val foo = new Foo(2)
println(foo.x)
}

}
}
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