mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-12-22 13:00:19 +00:00
5a66991bb3
updating the kubernetes release to the latest in main go.mod Signed-off-by: Madhu Rajanna <madhupr007@gmail.com>
861 lines
18 KiB
Go
861 lines
18 KiB
Go
// Copyright 2023 Google LLC
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package ast
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import (
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"github.com/google/cel-go/common/types/ref"
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)
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// ExprKind represents the expression node kind.
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type ExprKind int
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const (
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// UnspecifiedExprKind represents an unset expression with no specified properties.
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UnspecifiedExprKind ExprKind = iota
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// CallKind represents a function call.
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CallKind
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// ComprehensionKind represents a comprehension expression generated by a macro.
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ComprehensionKind
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// IdentKind represents a simple variable, constant, or type identifier.
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IdentKind
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// ListKind represents a list literal expression.
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ListKind
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// LiteralKind represents a primitive scalar literal.
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LiteralKind
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// MapKind represents a map literal expression.
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MapKind
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// SelectKind represents a field selection expression.
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SelectKind
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// StructKind represents a struct literal expression.
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StructKind
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)
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// Expr represents the base expression node in a CEL abstract syntax tree.
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//
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// Depending on the `Kind()` value, the Expr may be converted to a concrete expression types
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// as indicated by the `As<Kind>` methods.
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type Expr interface {
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// ID of the expression as it appears in the AST
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ID() int64
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// Kind of the expression node. See ExprKind for the valid enum values.
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Kind() ExprKind
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// AsCall adapts the expr into a CallExpr
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//
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// The Kind() must be equal to a CallKind for the conversion to be well-defined.
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AsCall() CallExpr
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// AsComprehension adapts the expr into a ComprehensionExpr.
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//
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// The Kind() must be equal to a ComprehensionKind for the conversion to be well-defined.
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AsComprehension() ComprehensionExpr
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// AsIdent adapts the expr into an identifier string.
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//
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// The Kind() must be equal to an IdentKind for the conversion to be well-defined.
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AsIdent() string
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// AsLiteral adapts the expr into a constant ref.Val.
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//
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// The Kind() must be equal to a LiteralKind for the conversion to be well-defined.
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AsLiteral() ref.Val
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// AsList adapts the expr into a ListExpr.
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//
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// The Kind() must be equal to a ListKind for the conversion to be well-defined.
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AsList() ListExpr
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// AsMap adapts the expr into a MapExpr.
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//
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// The Kind() must be equal to a MapKind for the conversion to be well-defined.
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AsMap() MapExpr
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// AsSelect adapts the expr into a SelectExpr.
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//
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// The Kind() must be equal to a SelectKind for the conversion to be well-defined.
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AsSelect() SelectExpr
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// AsStruct adapts the expr into a StructExpr.
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//
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// The Kind() must be equal to a StructKind for the conversion to be well-defined.
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AsStruct() StructExpr
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// RenumberIDs performs an in-place update of the expression and all of its descendents numeric ids.
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RenumberIDs(IDGenerator)
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// SetKindCase replaces the contents of the current expression with the contents of the other.
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//
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// The SetKindCase takes ownership of any expression instances references within the input Expr.
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// A shallow copy is made of the Expr value itself, but not a deep one.
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//
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// This method should only be used during AST rewrites using temporary Expr values.
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SetKindCase(Expr)
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// isExpr is a marker interface.
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isExpr()
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}
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// EntryExprKind represents the possible EntryExpr kinds.
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type EntryExprKind int
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const (
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// UnspecifiedEntryExprKind indicates that the entry expr is not set.
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UnspecifiedEntryExprKind EntryExprKind = iota
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// MapEntryKind indicates that the entry is a MapEntry type with key and value expressions.
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MapEntryKind
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// StructFieldKind indicates that the entry is a StructField with a field name and initializer
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// expression.
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StructFieldKind
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)
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// EntryExpr represents the base entry expression in a CEL map or struct literal.
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type EntryExpr interface {
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// ID of the entry as it appears in the AST.
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ID() int64
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// Kind of the entry expression node. See EntryExprKind for valid enum values.
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Kind() EntryExprKind
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// AsMapEntry casts the EntryExpr to a MapEntry.
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//
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// The Kind() must be equal to MapEntryKind for the conversion to be well-defined.
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AsMapEntry() MapEntry
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// AsStructField casts the EntryExpr to a StructField
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//
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// The Kind() must be equal to StructFieldKind for the conversion to be well-defined.
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AsStructField() StructField
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// RenumberIDs performs an in-place update of the expression and all of its descendents numeric ids.
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RenumberIDs(IDGenerator)
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isEntryExpr()
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}
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// IDGenerator produces unique ids suitable for tagging expression nodes
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type IDGenerator func(originalID int64) int64
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// CallExpr defines an interface for inspecting a function call and its arugments.
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type CallExpr interface {
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// FunctionName returns the name of the function.
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FunctionName() string
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// IsMemberFunction returns whether the call has a non-nil target indicating it is a member function
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IsMemberFunction() bool
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// Target returns the target of the expression if one is present.
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Target() Expr
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// Args returns the list of call arguments, excluding the target.
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Args() []Expr
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// marker interface method
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isExpr()
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}
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// ListExpr defines an interface for inspecting a list literal expression.
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type ListExpr interface {
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// Elements returns the list elements as navigable expressions.
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Elements() []Expr
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// OptionalIndicies returns the list of optional indices in the list literal.
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OptionalIndices() []int32
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// IsOptional indicates whether the given element index is optional.
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IsOptional(int32) bool
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// Size returns the number of elements in the list.
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Size() int
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// marker interface method
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isExpr()
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}
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// SelectExpr defines an interface for inspecting a select expression.
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type SelectExpr interface {
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// Operand returns the selection operand expression.
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Operand() Expr
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// FieldName returns the field name being selected from the operand.
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FieldName() string
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// IsTestOnly indicates whether the select expression is a presence test generated by a macro.
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IsTestOnly() bool
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// marker interface method
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isExpr()
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}
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// MapExpr defines an interface for inspecting a map expression.
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type MapExpr interface {
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// Entries returns the map key value pairs as EntryExpr values.
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Entries() []EntryExpr
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// Size returns the number of entries in the map.
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Size() int
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// marker interface method
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isExpr()
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}
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// MapEntry defines an interface for inspecting a map entry.
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type MapEntry interface {
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// Key returns the map entry key expression.
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Key() Expr
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// Value returns the map entry value expression.
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Value() Expr
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// IsOptional returns whether the entry is optional.
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IsOptional() bool
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// marker interface method
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isEntryExpr()
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}
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// StructExpr defines an interfaces for inspecting a struct and its field initializers.
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type StructExpr interface {
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// TypeName returns the struct type name.
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TypeName() string
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// Fields returns the set of field initializers in the struct expression as EntryExpr values.
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Fields() []EntryExpr
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// marker interface method
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isExpr()
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}
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// StructField defines an interface for inspecting a struct field initialization.
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type StructField interface {
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// Name returns the name of the field.
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Name() string
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// Value returns the field initialization expression.
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Value() Expr
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// IsOptional returns whether the field is optional.
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IsOptional() bool
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// marker interface method
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isEntryExpr()
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}
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// ComprehensionExpr defines an interface for inspecting a comprehension expression.
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type ComprehensionExpr interface {
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// IterRange returns the iteration range expression.
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IterRange() Expr
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// IterVar returns the iteration variable name.
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IterVar() string
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// AccuVar returns the accumulation variable name.
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AccuVar() string
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// AccuInit returns the accumulation variable initialization expression.
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AccuInit() Expr
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// LoopCondition returns the loop condition expression.
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LoopCondition() Expr
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// LoopStep returns the loop step expression.
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LoopStep() Expr
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// Result returns the comprehension result expression.
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Result() Expr
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// marker interface method
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isExpr()
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}
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var _ Expr = &expr{}
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type expr struct {
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id int64
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exprKindCase
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}
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type exprKindCase interface {
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Kind() ExprKind
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renumberIDs(IDGenerator)
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isExpr()
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}
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func (e *expr) ID() int64 {
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if e == nil {
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return 0
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}
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return e.id
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}
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func (e *expr) Kind() ExprKind {
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if e == nil || e.exprKindCase == nil {
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return UnspecifiedExprKind
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}
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return e.exprKindCase.Kind()
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}
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func (e *expr) AsCall() CallExpr {
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if e.Kind() != CallKind {
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return nilCall
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}
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return e.exprKindCase.(CallExpr)
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}
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func (e *expr) AsComprehension() ComprehensionExpr {
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if e.Kind() != ComprehensionKind {
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return nilCompre
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}
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return e.exprKindCase.(ComprehensionExpr)
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}
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func (e *expr) AsIdent() string {
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if e.Kind() != IdentKind {
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return ""
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}
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return string(e.exprKindCase.(baseIdentExpr))
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}
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func (e *expr) AsLiteral() ref.Val {
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if e.Kind() != LiteralKind {
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return nil
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}
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return e.exprKindCase.(*baseLiteral).Val
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}
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func (e *expr) AsList() ListExpr {
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if e.Kind() != ListKind {
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return nilList
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}
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return e.exprKindCase.(ListExpr)
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}
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func (e *expr) AsMap() MapExpr {
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if e.Kind() != MapKind {
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return nilMap
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}
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return e.exprKindCase.(MapExpr)
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}
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func (e *expr) AsSelect() SelectExpr {
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if e.Kind() != SelectKind {
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return nilSel
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}
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return e.exprKindCase.(SelectExpr)
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}
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func (e *expr) AsStruct() StructExpr {
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if e.Kind() != StructKind {
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return nilStruct
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}
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return e.exprKindCase.(StructExpr)
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}
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func (e *expr) SetKindCase(other Expr) {
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if e == nil {
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return
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}
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if other == nil {
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e.exprKindCase = nil
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return
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}
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switch other.Kind() {
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case CallKind:
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c := other.AsCall()
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e.exprKindCase = &baseCallExpr{
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function: c.FunctionName(),
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target: c.Target(),
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args: c.Args(),
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isMember: c.IsMemberFunction(),
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}
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case ComprehensionKind:
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c := other.AsComprehension()
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e.exprKindCase = &baseComprehensionExpr{
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iterRange: c.IterRange(),
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iterVar: c.IterVar(),
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accuVar: c.AccuVar(),
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accuInit: c.AccuInit(),
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loopCond: c.LoopCondition(),
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loopStep: c.LoopStep(),
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result: c.Result(),
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}
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case IdentKind:
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e.exprKindCase = baseIdentExpr(other.AsIdent())
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case ListKind:
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l := other.AsList()
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optIndexMap := make(map[int32]struct{}, len(l.OptionalIndices()))
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for _, idx := range l.OptionalIndices() {
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optIndexMap[idx] = struct{}{}
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}
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e.exprKindCase = &baseListExpr{
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elements: l.Elements(),
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optIndices: l.OptionalIndices(),
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optIndexMap: optIndexMap,
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}
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case LiteralKind:
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e.exprKindCase = &baseLiteral{Val: other.AsLiteral()}
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case MapKind:
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e.exprKindCase = &baseMapExpr{
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entries: other.AsMap().Entries(),
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}
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case SelectKind:
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s := other.AsSelect()
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e.exprKindCase = &baseSelectExpr{
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operand: s.Operand(),
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field: s.FieldName(),
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testOnly: s.IsTestOnly(),
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}
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case StructKind:
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s := other.AsStruct()
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e.exprKindCase = &baseStructExpr{
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typeName: s.TypeName(),
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fields: s.Fields(),
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}
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case UnspecifiedExprKind:
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e.exprKindCase = nil
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}
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}
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func (e *expr) RenumberIDs(idGen IDGenerator) {
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if e == nil {
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return
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}
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e.id = idGen(e.id)
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if e.exprKindCase != nil {
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e.exprKindCase.renumberIDs(idGen)
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}
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}
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type baseCallExpr struct {
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function string
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target Expr
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args []Expr
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isMember bool
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}
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func (*baseCallExpr) Kind() ExprKind {
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return CallKind
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}
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func (e *baseCallExpr) FunctionName() string {
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if e == nil {
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return ""
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}
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return e.function
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}
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func (e *baseCallExpr) IsMemberFunction() bool {
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if e == nil {
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return false
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}
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return e.isMember
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}
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func (e *baseCallExpr) Target() Expr {
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if e == nil || !e.IsMemberFunction() {
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return nilExpr
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}
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return e.target
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}
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func (e *baseCallExpr) Args() []Expr {
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if e == nil {
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return []Expr{}
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}
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return e.args
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}
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func (e *baseCallExpr) renumberIDs(idGen IDGenerator) {
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if e.IsMemberFunction() {
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e.Target().RenumberIDs(idGen)
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}
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for _, arg := range e.Args() {
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arg.RenumberIDs(idGen)
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}
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}
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func (*baseCallExpr) isExpr() {}
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var _ ComprehensionExpr = &baseComprehensionExpr{}
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type baseComprehensionExpr struct {
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iterRange Expr
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iterVar string
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accuVar string
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accuInit Expr
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loopCond Expr
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loopStep Expr
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result Expr
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}
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func (*baseComprehensionExpr) Kind() ExprKind {
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return ComprehensionKind
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}
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func (e *baseComprehensionExpr) IterRange() Expr {
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if e == nil {
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return nilExpr
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}
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return e.iterRange
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}
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func (e *baseComprehensionExpr) IterVar() string {
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return e.iterVar
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}
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func (e *baseComprehensionExpr) AccuVar() string {
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return e.accuVar
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}
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func (e *baseComprehensionExpr) AccuInit() Expr {
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if e == nil {
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return nilExpr
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}
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return e.accuInit
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}
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func (e *baseComprehensionExpr) LoopCondition() Expr {
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if e == nil {
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return nilExpr
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}
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return e.loopCond
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}
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func (e *baseComprehensionExpr) LoopStep() Expr {
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if e == nil {
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return nilExpr
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}
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return e.loopStep
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}
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func (e *baseComprehensionExpr) Result() Expr {
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if e == nil {
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return nilExpr
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}
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return e.result
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}
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func (e *baseComprehensionExpr) renumberIDs(idGen IDGenerator) {
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e.IterRange().RenumberIDs(idGen)
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e.AccuInit().RenumberIDs(idGen)
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e.LoopCondition().RenumberIDs(idGen)
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e.LoopStep().RenumberIDs(idGen)
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e.Result().RenumberIDs(idGen)
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}
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func (*baseComprehensionExpr) isExpr() {}
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var _ exprKindCase = baseIdentExpr("")
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type baseIdentExpr string
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func (baseIdentExpr) Kind() ExprKind {
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return IdentKind
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}
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func (e baseIdentExpr) renumberIDs(IDGenerator) {}
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func (baseIdentExpr) isExpr() {}
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var _ exprKindCase = &baseLiteral{}
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var _ ref.Val = &baseLiteral{}
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type baseLiteral struct {
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ref.Val
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}
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func (*baseLiteral) Kind() ExprKind {
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return LiteralKind
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}
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func (l *baseLiteral) renumberIDs(IDGenerator) {}
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func (*baseLiteral) isExpr() {}
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var _ ListExpr = &baseListExpr{}
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type baseListExpr struct {
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elements []Expr
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optIndices []int32
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optIndexMap map[int32]struct{}
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}
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func (*baseListExpr) Kind() ExprKind {
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return ListKind
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}
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|
|
func (e *baseListExpr) Elements() []Expr {
|
|
if e == nil {
|
|
return []Expr{}
|
|
}
|
|
return e.elements
|
|
}
|
|
|
|
func (e *baseListExpr) IsOptional(index int32) bool {
|
|
_, found := e.optIndexMap[index]
|
|
return found
|
|
}
|
|
|
|
func (e *baseListExpr) OptionalIndices() []int32 {
|
|
if e == nil {
|
|
return []int32{}
|
|
}
|
|
return e.optIndices
|
|
}
|
|
|
|
func (e *baseListExpr) Size() int {
|
|
return len(e.Elements())
|
|
}
|
|
|
|
func (e *baseListExpr) renumberIDs(idGen IDGenerator) {
|
|
for _, elem := range e.Elements() {
|
|
elem.RenumberIDs(idGen)
|
|
}
|
|
}
|
|
|
|
func (*baseListExpr) isExpr() {}
|
|
|
|
type baseMapExpr struct {
|
|
entries []EntryExpr
|
|
}
|
|
|
|
func (*baseMapExpr) Kind() ExprKind {
|
|
return MapKind
|
|
}
|
|
|
|
func (e *baseMapExpr) Entries() []EntryExpr {
|
|
if e == nil {
|
|
return []EntryExpr{}
|
|
}
|
|
return e.entries
|
|
}
|
|
|
|
func (e *baseMapExpr) Size() int {
|
|
return len(e.Entries())
|
|
}
|
|
|
|
func (e *baseMapExpr) renumberIDs(idGen IDGenerator) {
|
|
for _, entry := range e.Entries() {
|
|
entry.RenumberIDs(idGen)
|
|
}
|
|
}
|
|
|
|
func (*baseMapExpr) isExpr() {}
|
|
|
|
type baseSelectExpr struct {
|
|
operand Expr
|
|
field string
|
|
testOnly bool
|
|
}
|
|
|
|
func (*baseSelectExpr) Kind() ExprKind {
|
|
return SelectKind
|
|
}
|
|
|
|
func (e *baseSelectExpr) Operand() Expr {
|
|
if e == nil || e.operand == nil {
|
|
return nilExpr
|
|
}
|
|
return e.operand
|
|
}
|
|
|
|
func (e *baseSelectExpr) FieldName() string {
|
|
if e == nil {
|
|
return ""
|
|
}
|
|
return e.field
|
|
}
|
|
|
|
func (e *baseSelectExpr) IsTestOnly() bool {
|
|
if e == nil {
|
|
return false
|
|
}
|
|
return e.testOnly
|
|
}
|
|
|
|
func (e *baseSelectExpr) renumberIDs(idGen IDGenerator) {
|
|
e.Operand().RenumberIDs(idGen)
|
|
}
|
|
|
|
func (*baseSelectExpr) isExpr() {}
|
|
|
|
type baseStructExpr struct {
|
|
typeName string
|
|
fields []EntryExpr
|
|
}
|
|
|
|
func (*baseStructExpr) Kind() ExprKind {
|
|
return StructKind
|
|
}
|
|
|
|
func (e *baseStructExpr) TypeName() string {
|
|
if e == nil {
|
|
return ""
|
|
}
|
|
return e.typeName
|
|
}
|
|
|
|
func (e *baseStructExpr) Fields() []EntryExpr {
|
|
if e == nil {
|
|
return []EntryExpr{}
|
|
}
|
|
return e.fields
|
|
}
|
|
|
|
func (e *baseStructExpr) renumberIDs(idGen IDGenerator) {
|
|
for _, f := range e.Fields() {
|
|
f.RenumberIDs(idGen)
|
|
}
|
|
}
|
|
|
|
func (*baseStructExpr) isExpr() {}
|
|
|
|
type entryExprKindCase interface {
|
|
Kind() EntryExprKind
|
|
|
|
renumberIDs(IDGenerator)
|
|
|
|
isEntryExpr()
|
|
}
|
|
|
|
var _ EntryExpr = &entryExpr{}
|
|
|
|
type entryExpr struct {
|
|
id int64
|
|
entryExprKindCase
|
|
}
|
|
|
|
func (e *entryExpr) ID() int64 {
|
|
return e.id
|
|
}
|
|
|
|
func (e *entryExpr) AsMapEntry() MapEntry {
|
|
if e.Kind() != MapEntryKind {
|
|
return nilMapEntry
|
|
}
|
|
return e.entryExprKindCase.(MapEntry)
|
|
}
|
|
|
|
func (e *entryExpr) AsStructField() StructField {
|
|
if e.Kind() != StructFieldKind {
|
|
return nilStructField
|
|
}
|
|
return e.entryExprKindCase.(StructField)
|
|
}
|
|
|
|
func (e *entryExpr) RenumberIDs(idGen IDGenerator) {
|
|
e.id = idGen(e.id)
|
|
e.entryExprKindCase.renumberIDs(idGen)
|
|
}
|
|
|
|
type baseMapEntry struct {
|
|
key Expr
|
|
value Expr
|
|
isOptional bool
|
|
}
|
|
|
|
func (e *baseMapEntry) Kind() EntryExprKind {
|
|
return MapEntryKind
|
|
}
|
|
|
|
func (e *baseMapEntry) Key() Expr {
|
|
if e == nil {
|
|
return nilExpr
|
|
}
|
|
return e.key
|
|
}
|
|
|
|
func (e *baseMapEntry) Value() Expr {
|
|
if e == nil {
|
|
return nilExpr
|
|
}
|
|
return e.value
|
|
}
|
|
|
|
func (e *baseMapEntry) IsOptional() bool {
|
|
if e == nil {
|
|
return false
|
|
}
|
|
return e.isOptional
|
|
}
|
|
|
|
func (e *baseMapEntry) renumberIDs(idGen IDGenerator) {
|
|
e.Key().RenumberIDs(idGen)
|
|
e.Value().RenumberIDs(idGen)
|
|
}
|
|
|
|
func (*baseMapEntry) isEntryExpr() {}
|
|
|
|
type baseStructField struct {
|
|
field string
|
|
value Expr
|
|
isOptional bool
|
|
}
|
|
|
|
func (f *baseStructField) Kind() EntryExprKind {
|
|
return StructFieldKind
|
|
}
|
|
|
|
func (f *baseStructField) Name() string {
|
|
if f == nil {
|
|
return ""
|
|
}
|
|
return f.field
|
|
}
|
|
|
|
func (f *baseStructField) Value() Expr {
|
|
if f == nil {
|
|
return nilExpr
|
|
}
|
|
return f.value
|
|
}
|
|
|
|
func (f *baseStructField) IsOptional() bool {
|
|
if f == nil {
|
|
return false
|
|
}
|
|
return f.isOptional
|
|
}
|
|
|
|
func (f *baseStructField) renumberIDs(idGen IDGenerator) {
|
|
f.Value().RenumberIDs(idGen)
|
|
}
|
|
|
|
func (*baseStructField) isEntryExpr() {}
|
|
|
|
var (
|
|
nilExpr *expr = nil
|
|
nilCall *baseCallExpr = nil
|
|
nilCompre *baseComprehensionExpr = nil
|
|
nilList *baseListExpr = nil
|
|
nilMap *baseMapExpr = nil
|
|
nilMapEntry *baseMapEntry = nil
|
|
nilSel *baseSelectExpr = nil
|
|
nilStruct *baseStructExpr = nil
|
|
nilStructField *baseStructField = nil
|
|
)
|