@@ -36,7 +36,6 @@ import util.{Property, SimpleIdentityMap, SrcPos}
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import Applications .{tupleComponentTypes , wrapDefs , defaultArgument }
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import collection .mutable
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- import annotation .tailrec
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import Implicits .*
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import util .Stats .record
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import config .Printers .{gadts , typr }
@@ -52,7 +51,8 @@ import config.Config
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import config .MigrationVersion
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import transform .CheckUnused .OriginalName
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- import scala .annotation .constructorOnly
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+ import scala .annotation .{unchecked as _ , * }
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+ import scala .util .chaining .given
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object Typer {
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@@ -4188,6 +4188,12 @@ class Typer(@constructorOnly nestingLevel: Int = 0) extends Namer
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def addImplicitArgs (using Context ) =
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def hasDefaultParams = methPart(tree).symbol.hasDefaultParams
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+ def findDefaultArgument (argIndex : Int ): Tree =
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+ def appPart (t : Tree ): Tree = t match
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+ case Block (_, expr) => appPart(expr)
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+ case Inlined (_, _, expr) => appPart(expr)
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+ case t => t
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+ defaultArgument(appPart(tree), n = argIndex, testOnly = false )
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def implicitArgs (formals : List [Type ], argIndex : Int , pt : Type ): List [Tree ] = formals match
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case Nil => Nil
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case formal :: formals1 =>
@@ -4209,13 +4215,8 @@ class Typer(@constructorOnly nestingLevel: Int = 0) extends Namer
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then implicitArgs(formals, argIndex, pt1)
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else arg :: implicitArgs(formals1, argIndex + 1 , pt1)
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case failed : SearchFailureType =>
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- lazy val defaultArg =
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- def appPart (t : Tree ): Tree = t match
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- case Block (stats, expr) => appPart(expr)
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- case Inlined (_, _, expr) => appPart(expr)
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- case _ => t
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- defaultArgument(appPart(tree), argIndex, testOnly = false )
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- .showing(i " default argument: for $formal, $tree, $argIndex = $result" , typr)
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+ lazy val defaultArg = findDefaultArgument(argIndex)
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+ .showing(i " default argument: for $formal, $tree, $argIndex = $result" , typr)
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if ! hasDefaultParams || defaultArg.isEmpty then
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// no need to search further, the adapt fails in any case
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// the reason why we continue inferring arguments in case of an AmbiguousImplicits
@@ -4237,44 +4238,44 @@ class Typer(@constructorOnly nestingLevel: Int = 0) extends Namer
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arg :: inferArgsAfter(arg)
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end implicitArgs
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- /** Reports errors for arguments of `appTree` that have a
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- * `SearchFailureType`.
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- */
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- def issueErrors (fun : Tree , args : List [Tree ]): Tree =
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- // Prefer other errors over ambiguities. If nested in outer searches a missing
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- // implicit can be healed by simply dropping this alternative and trying something
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- // else. But an ambiguity is sticky and propagates outwards. If we have both
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- // a missing implicit on one argument and an ambiguity on another the whole
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- // branch should be classified as a missing implicit.
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- val firstNonAmbiguous = args.tpes.find(tp => tp.isError && ! tp.isInstanceOf [AmbiguousImplicits ])
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- def firstError = args.tpes.find(_.isInstanceOf [SearchFailureType ]).getOrElse(NoType )
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- def firstFailure = firstNonAmbiguous.getOrElse(firstError)
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- val errorType =
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- firstFailure match
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- case tp : AmbiguousImplicits =>
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- AmbiguousImplicits (tp.alt1, tp.alt2, tp.expectedType, tp.argument, nested = true )
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- case tp =>
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- tp
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- val res = untpd.Apply (fun, args).withType(errorType)
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-
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- wtp.paramNames.lazyZip(wtp.paramInfos).lazyZip(args).foreach { (paramName, formal, arg) =>
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- arg.tpe match
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- case failure : SearchFailureType =>
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- val methodStr = err.refStr(methPart(fun).tpe)
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- val paramStr = implicitParamString(paramName, methodStr, fun)
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- val paramSym = fun.symbol.paramSymss.flatten.find(_.name == paramName)
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- val paramSymWithMethodCallTree = paramSym.map((_, res))
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- report.error(
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- missingArgMsg(arg, formal, paramStr, paramSymWithMethodCallTree),
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- tree.srcPos.endPos
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- )
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- case _ =>
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- }
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-
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- res
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+ // Pick a failure type to propagate, if any.
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+ // Prefer other errors over ambiguities. If nested in outer searches a missing
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+ // implicit can be healed by simply dropping this alternative and trying something
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+ // else. But an ambiguity is sticky and propagates outwards. If we have both
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+ // a missing implicit on one argument and an ambiguity on another the whole
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+ // branch should be classified as a missing implicit.
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+ def propagatedFailure (args : List [Tree ]): Type = args match
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+ case arg :: args => arg.tpe match
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+ case ambi : AmbiguousImplicits => propagatedFailure(args) match
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+ case NoType | (_ : AmbiguousImplicits ) => ambi
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+ case failed => failed
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+ case failed : SearchFailureType => failed
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+ case _ => propagatedFailure(args)
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+ case Nil => NoType
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+
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+ /** Reports errors for arguments of `appTree` that have a `SearchFailureType`.
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+ */
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+ def issueErrors (fun : Tree , args : List [Tree ], failureType : Type ): Tree =
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+ val errorType = failureType match
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+ case ai : AmbiguousImplicits => ai.asNested
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+ case tp => tp
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+ untpd.Apply (fun, args)
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+ .withType(errorType)
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+ .tap: res =>
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+ wtp.paramNames.lazyZip(wtp.paramInfos).lazyZip(args).foreach: (paramName, formal, arg) =>
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+ arg.tpe match
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+ case failure : SearchFailureType =>
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+ val methodStr = err.refStr(methPart(fun).tpe)
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+ val paramStr = implicitParamString(paramName, methodStr, fun)
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+ val paramSym = fun.symbol.paramSymss.flatten.find(_.name == paramName)
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+ val paramSymWithMethodCallTree = paramSym.map((_, res))
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+ val msg = missingArgMsg(arg, formal, paramStr, paramSymWithMethodCallTree)
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+ report.error(msg, tree.srcPos.endPos)
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+ case _ =>
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val args = implicitArgs(wtp.paramInfos, 0 , pt)
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- if (args.tpes.exists(_.isInstanceOf [SearchFailureType ])) {
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+ val failureType = propagatedFailure(args)
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+ if failureType.exists then
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// If there are several arguments, some arguments might already
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// have influenced the context, binding variables, but later ones
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// might fail. In that case the constraint and instantiated variables
@@ -4283,32 +4284,40 @@ class Typer(@constructorOnly nestingLevel: Int = 0) extends Namer
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// If method has default params, fall back to regular application
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// where all inferred implicits are passed as named args.
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- if hasDefaultParams then
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+ if hasDefaultParams && ! failureType. isInstanceOf [ AmbiguousImplicits ] then
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// Only keep the arguments that don't have an error type, or that
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- // have an `AmbiguousImplicits` error type. The later ensures that a
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+ // have an `AmbiguousImplicits` error type. The latter ensures that a
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// default argument can't override an ambiguous implicit. See tests
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// `given-ambiguous-default*` and `19414*`.
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val namedArgs =
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- wtp.paramNames.lazyZip(args)
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- .filter((_, arg) => ! arg.tpe.isError || arg.tpe.isInstanceOf [AmbiguousImplicits ])
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- .map((pname, arg) => untpd.NamedArg (pname, untpd.TypedSplice (arg)))
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-
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- val app = cpy.Apply (tree)(untpd.TypedSplice (tree), namedArgs)
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- val needsUsing = wtp.isContextualMethod || wtp.match
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- case MethodType (ContextBoundParamName (_) :: _) => sourceVersion.isAtLeast(`3.4`)
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- case _ => false
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- if needsUsing then app.setApplyKind(ApplyKind .Using )
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- typr.println(i " try with default implicit args $app" )
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- val retyped = typed(app, pt, locked)
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-
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- // If the retyped tree still has an error type and is an `Apply`
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- // node, we can report the errors for each argument nicely.
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- // Otherwise, we don't report anything here.
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- retyped match
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- case Apply (tree, args) if retyped.tpe.isError => issueErrors(tree, args)
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- case _ => retyped
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- else issueErrors(tree, args)
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- }
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+ wtp.paramNames.lazyZip(args).collect:
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+ case (pname, arg) if ! arg.tpe.isError || arg.tpe.isInstanceOf [AmbiguousImplicits ] =>
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+ untpd.NamedArg (pname, untpd.TypedSplice (arg))
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+ .toList
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+ val usingDefaultArgs =
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+ wtp.paramNames.zipWithIndex
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+ .exists((n, i) => ! namedArgs.exists(_.name == n) && ! findDefaultArgument(i).isEmpty)
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+
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+ if ! usingDefaultArgs then
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+ issueErrors(tree, args, failureType)
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+ else
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+ val app = cpy.Apply (tree)(untpd.TypedSplice (tree), namedArgs)
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+ // old-style implicit needs to be marked using so that implicits are searched
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+ val needsUsing = wtp.isImplicitMethod || wtp.match
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+ case MethodType (ContextBoundParamName (_) :: _) => sourceVersion.isAtLeast(`3.4`)
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+ case _ => false
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+ if needsUsing then app.setApplyKind(ApplyKind .Using )
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+ typr.println(i " try with default implicit args $app" )
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+ // If the retyped tree still has an error type and is an `Apply`
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+ // node, we can report the errors for each argument nicely.
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+ // Otherwise, we don't report anything here.
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+ typed(app, pt, locked) match
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+ case retyped @ Apply (tree, args) if retyped.tpe.isError =>
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+ propagatedFailure(args) match
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+ case sft : SearchFailureType => issueErrors(tree, args, sft)
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+ case _ => issueErrors(tree, args, retyped.tpe)
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+ case retyped => retyped
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+ else issueErrors(tree, args, failureType)
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else
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inContext(origCtx):
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// Reset context in case it was set to a supercall context before.
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