org.jetbrains.kotlin.resolve.calls.tower.CandidateApplicability.kt Maven / Gradle / Ivy
/*
* Copyright 2010-2020 JetBrains s.r.o. and Kotlin Programming Language contributors.
* Use of this source code is governed by the Apache 2.0 license that can be found in the license/LICENSE.txt file.
*/
package org.jetbrains.kotlin.resolve.calls.tower
enum class CandidateApplicability {
/**
* Special applicability for migration warning up to 1.5.
* Used when resolved to function with SAM conversion and array without spread as vararg.
*/
K1_RESOLVED_TO_SAM_WITH_VARARG,
/**
* Candidate is removed from resolve due to SinceKotlin with later version or Deprecation with hidden level.
* Note that SinceKotlin does not filter out classifier symbols and property accessors. Those
* should lead to API_NOT_AVAILABLE.
* Provokes UNRESOLVED_REFERENCE.
*/
HIDDEN,
/**
* Candidate could be successful but requires an unsupported feature.
* Reported for references to local variables in K2.
* Provokes UNSUPPORTED.
*/
K2_UNSUPPORTED,
/**
* Candidate could be successful but receiver isn't matched
*/
INAPPLICABLE_WRONG_RECEIVER,
/**
* Candidate could be successful but arguments not mapped to parameters (i.e. different size of arguments and parameters)
*/
INAPPLICABLE_ARGUMENTS_MAPPING_ERROR,
/**
* Candidate could be successful but arguments have wrong types (or other general inapplicability)
*/
INAPPLICABLE,
/**
* Candidate could be successful but uses some non-object classifier without companion object as a variable.
*/
K2_NO_COMPANION_OBJECT,
/**
* Candidate could be successful but requires access to outer class from nested (non-inner)
*/
K1_IMPOSSIBLE_TO_GENERATE,
// TODO: Consider re-assigning this diagnostics (K1_RUNTIME_ERROR)
/**
* This applicability is used in K1 as a catch-all for all other errors.
*/
K1_RUNTIME_ERROR,
/**
* Candidate isn't visible. Provokes INVISIBLE_REFERENCE.
*/
K2_VISIBILITY_ERROR,
/**
* Candidate could be successful but receiver (or argument?) nullability doesn't match
*/
UNSAFE_CALL,
/**
* Candidate could be successful but requires unstable smart cast.
*/
UNSTABLE_SMARTCAST,
/**
* Candidate could be successful but does not obey conventions.
* E.g. infix / operator / etc are missed (= no expected modifier).
*/
CONVENTION_ERROR,
// Everything below has isSuccess = true (RESOLVED_WITH_ERROR is an exception)
/**
* Candidate is successful but has low priority.
* Tower resolve proceeds to next levels.
*/
RESOLVED_LOW_PRIORITY,
/**
* Candidate is successful but uses property of functional type as an operator.
* Tower resolve proceeds to next levels.
*/
K2_PROPERTY_AS_OPERATOR,
/**
* Candidate is successful but uses new features that change resolve.
* Tower resolve proceeds to next levels.
*/
RESOLVED_NEED_PRESERVE_COMPATIBILITY,
// Everything below has shouldStopResolve = true
// (Tower resolve does not go to further scopes if candidate with applicability below is found)
/**
* Successful but synthetic candidate.
* Used in K2 for (Java) synthetic discrimination at the same level.
*/
K2_SYNTHETIC_RESOLVED,
/**
* Candidate has some error, but it is still successful from resolution perspective.
* This means that tower resolve stops with this applicability.
* However, error will be reported.
* This is the only applicability that stops resolve but provokes an error.
*/
RESOLVED_WITH_ERROR,
/**
* Candidate is successful or has uncompleted inference (so possibly successful).
*/
RESOLVED,
}
/**
* This property determines that the considered candidate is "successful" in terms of having no resolve errors.
* Note that it does not necessarily mean tower resolve should stop on this candidate.
*/
val CandidateApplicability.isSuccess: Boolean
get() = this >= CandidateApplicability.RESOLVED_LOW_PRIORITY && this != CandidateApplicability.RESOLVED_WITH_ERROR
/**
* This property determines that tower resolve should stop on the candidate/group with this applicability
* and should not go to further scope levels. Note that candidate can still have error(s).
*/
val CandidateApplicability.shouldStopResolve: Boolean
get() = this >= CandidateApplicability.K2_SYNTHETIC_RESOLVED
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