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ast.sml
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(* -*- mode: sml; mode: font-lock; tab-width: 4; insert-tabs-mode: nil; indent-tabs-mode: nil -*- *)
(*
* The following licensing terms and conditions apply and must be
* accepted in order to use the Reference Implementation:
*
* 1. This Reference Implementation is made available to all
* interested persons on the same terms as Ecma makes available its
* standards and technical reports, as set forth at
* http://www.ecma-international.org/publications/.
*
* 2. All liability and responsibility for any use of this Reference
* Implementation rests with the user, and not with any of the parties
* who contribute to, or who own or hold any copyright in, this Reference
* Implementation.
*
* 3. THIS REFERENCE IMPLEMENTATION IS PROVIDED BY THE COPYRIGHT
* HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED
* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
* BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
* OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
* IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
* End of Terms and Conditions
*
* Copyright (c) 2007 Adobe Systems Inc., The Mozilla Foundation, Opera
* Software ASA, and others.
*)
(* A sketch of the ES4 AST in SML *)
structure Ast = struct
type SOURCE_POS = { line: int, col: int }
type LOC = { file: string, span: SOURCE_POS * SOURCE_POS, post_newline: bool }
type BOOLEAN = bool
type IEEE_754_BINARY_64_BIT = Real64.real
type IEEE_754R_DECIMAL_128_BIT = Decimal.DEC
type STRING = Ustring.STRING
type IDENTIFIER = STRING
type NONCE = int
type OPAQUE_NAMESPACE_IDENTIFIER = (* LDOTS *)
NONCE
datatype NAMESPACE =
TransparentNamespace of STRING
| OpaqueNamespace of OPAQUE_NAMESPACE_IDENTIFIER
type NAME = { ns: NAMESPACE, id: IDENTIFIER }
type NAMESPACE_SET = (* LDOTS *)
NAMESPACE list
type OPEN_NAMESPACES = NAMESPACE_SET list
type NAME_SET = NAME list
datatype BINTYPEOP =
Cast
| Is
| Like
datatype BINOP =
Plus
| Minus
| Times
| Divide
| Remainder
| LeftShift
| RightShift
| RightShiftUnsigned
| BitwiseAnd
| BitwiseOr
| BitwiseXor
| LogicalAnd
| LogicalOr
| InstanceOf
| In
| Equals
| NotEquals
| StrictEquals
| StrictNotEquals
| Less
| LessOrEqual
| Greater
| GreaterOrEqual
| Comma
datatype ASSIGNOP =
Assign
| AssignPlus
| AssignMinus
| AssignTimes
| AssignDivide
| AssignRemainder
| AssignLeftShift
| AssignRightShift
| AssignRightShiftUnsigned
| AssignBitwiseAnd
| AssignBitwiseOr
| AssignBitwiseXor
| AssignLogicalAnd
| AssignLogicalOr
datatype UNOP =
Delete
| Void
| Typeof
| PreIncrement
| PreDecrement
| PostIncrement
| PostDecrement
| UnaryPlus
| UnaryMinus
| BitwiseNot
| LogicalNot
| Type
| Spread
datatype VAR_DEFN_TAG =
Const
| Var
| LetVar
| LetConst
datatype PRAGMA =
UseNamespace of NAMESPACE_EXPRESSION
| UseDefaultNamespace of NAMESPACE_EXPRESSION
| UseStrict
| UseStandard
and NAME_EXPRESSION =
QualifiedName of { namespace: NAMESPACE_EXPRESSION,
identifier: IDENTIFIER }
| UnqualifiedName of { identifier: IDENTIFIER,
openNamespaces: OPEN_NAMESPACES }
and NAMESPACE_EXPRESSION =
Namespace of NAMESPACE
| NamespaceName of NAME_EXPRESSION
and FUNC_NAME_KIND =
Ordinary
| Operator
| Get
| Set
| Call
| Has
and CLASS =
Class of
{ name: NAME,
privateNS: NAMESPACE,
protectedNS: NAMESPACE,
parentProtectedNSs: NAMESPACE list,
typeParams: IDENTIFIER list,
nonnullable: BOOLEAN,
dynamic: BOOLEAN,
extends: TYPE option,
implements: TYPE list,
classFixtureMap: FIXTURE_MAP,
instanceFixtureMap: FIXTURE_MAP,
instanceInits: HEAD,
constructor: CTOR option }
and INTERFACE =
Interface of
{ name: NAME,
typeParams: IDENTIFIER list,
nonnullable: BOOLEAN,
extends: TYPE list,
instanceFixtureMap: FIXTURE_MAP }
and CTOR =
Ctor of
{ settings: HEAD, (* FIXME should be a EXPRESSION list of LetExpr of InitExpr *)
superArgs: EXPRESSION list,
func: FUNC }
and FUNC =
Func of
{ name: FUNC_NAME,
fsig: FUNC_SIG,
native: BOOLEAN,
generator: BOOLEAN,
block: BLOCK option, (* NONE => abstract *)
param: HEAD,
defaults: EXPRESSION list,
ty: TYPE,
loc: LOC option }
and DEFN =
ClassDefn of CLASS_DEFN
| VariableDefn of VAR_DEFN
| FunctionDefn of FUNC_DEFN
| ConstructorDefn of CTOR_DEFN
| InterfaceDefn of INTERFACE_DEFN
| NamespaceDefn of NAMESPACE_DEFN
| TypeDefn of TYPE_DEFN
and FUNC_SIG =
FunctionSignature of
{ typeParams: IDENTIFIER list,
params: BINDINGS,
paramTypes: TYPE list,
defaults: EXPRESSION list,
ctorInits: (BINDINGS * EXPRESSION list) option, (* settings + super args *)
returnType: TYPE option, (* NONE => void *)
thisType: TYPE option,
hasRest: BOOLEAN }
and BINDING =
Binding of
{ ident: BINDING_IDENTIFIER, (* FIXME: use tuple *)
ty: TYPE }
and BINDING_IDENTIFIER =
TempIdent of int
| ParamIdent of int
| PropIdent of IDENTIFIER
and INIT_STEP = (* used to encode init of bindings *)
InitStep of (BINDING_IDENTIFIER * EXPRESSION)
| AssignStep of (EXPRESSION * EXPRESSION)
and TYPE =
AnyType
| NullType
| UndefinedType
| RecordType of (NAME_EXPRESSION * TYPE) list
| ArrayType of (TYPE list * TYPE option)
| UnionType of TYPE list
| FunctionType of FUNCTION_TYPE
| NonNullType of TYPE
| AppType of (TYPE * TYPE list)
| TypeName of (NAME_EXPRESSION * NONCE option)
| ClassType of CLASS
| InstanceType of CLASS
| InterfaceType of INTERFACE
(* Following will be removed during defn phase *) (* INFORMATIVE *)
| TypeNameReferenceType of (TYPE * NAME_EXPRESSION) (* INFORMATIVE *)
| TypeIndexReferenceType of (TYPE * int) (* INFORMATIVE *)
and STATEMENT =
EmptyStmt
| ExprStmt of EXPRESSION
| InitStmt of {
kind: VAR_DEFN_TAG,
ns: NAMESPACE_EXPRESSION option,
prototype: BOOLEAN,
static: BOOLEAN,
temps: BINDINGS,
inits: INIT_STEP list }
| ClassBlock of CLASS_BLOCK
| ForInStmt of FOR_ENUM_STATEMENT
| ThrowStmt of EXPRESSION
| ReturnStmt of EXPRESSION
| BreakStmt of IDENTIFIER option
| ContinueStmt of IDENTIFIER option
| BlockStmt of BLOCK
| LabeledStmt of (IDENTIFIER * STATEMENT)
| LetStmt of BLOCK
| WhileStmt of WHILE_STATEMENT
| DoWhileStmt of WHILE_STATEMENT
| ForStmt of FOR_STATEMENT
| IfStmt of {
cnd: EXPRESSION,
thn: STATEMENT,
els: STATEMENT }
| WithStmt of {
obj: EXPRESSION,
ty: TYPE,
body: STATEMENT }
| TryStmt of {
block: BLOCK,
catches: CATCH_CLAUSE list,
finally: BLOCK option }
| SwitchStmt of { (* FIXME: needs HEAD, DEFNS for defns hoisted from body *)
cond: EXPRESSION,
labels: IDENTIFIER list,
cases: CASE list }
| SwitchTypeStmt of {
cond: EXPRESSION,
ty: TYPE,
cases: CATCH_CLAUSE list }
| DXNStmt of {
expr: EXPRESSION }
and EXPRESSION =
ApplyTypeExpression of { expr: EXPRESSION, actuals: TYPE list }
| BinaryExpr of (BINOP * EXPRESSION * EXPRESSION)
| BinaryTypeExpr of (BINTYPEOP * EXPRESSION * TYPE)
| CallExpr of { func: EXPRESSION, actuals: EXPRESSION list }
| Comprehension of (EXPRESSION * FOR_ENUM_HEAD list * EXPRESSION option) (* INFORMATIVE *)
| ConditionalExpression of (EXPRESSION * EXPRESSION * EXPRESSION)
| GetParam of int (* INFORMATIVE *)
| GetTemp of int
| InitExpr of (INIT_TARGET * HEAD * INITS) (* Informative *)
| LetExpr of { defs: BINDINGS, body: EXPRESSION, head: HEAD option }
| ListExpr of EXPRESSION list (* INFORMATIVE *)
| LexicalReference of { name: NAME_EXPRESSION, loc: LOC option }
| NewExpr of { obj: EXPRESSION, actuals: EXPRESSION list }
| ObjectNameReference of { object: EXPRESSION, name: NAME_EXPRESSION, loc: LOC option }
| ObjectIndexReference of { object: EXPRESSION, index: EXPRESSION, loc: LOC option }
| SetExpr of (ASSIGNOP * EXPRESSION * EXPRESSION)
| SuperExpr of EXPRESSION option
| TypeExpr of TYPE
| ThisExpr of THIS_KIND option
| UnaryExpr of (UNOP * EXPRESSION)
| YieldExpr of EXPRESSION option
| LiteralNull
| LiteralUndefined
| LiteralDouble of IEEE_754_BINARY_64_BIT
| LiteralDecimal of IEEE_754R_DECIMAL_128_BIT
| LiteralBoolean of BOOLEAN
| LiteralString of STRING
| LiteralArray of
{ exprs: EXPRESSION, (* FIXME: more specific type here *)
ty:TYPE option }
| LiteralNamespace of NAMESPACE
| LiteralObject of
{ expr : FIELD list,
ty: TYPE option }
| LiteralFunction of FUNC
| LiteralRegExp of
{ str: STRING }
and INIT_TARGET = Hoisted
| Local
| Prototype
and THIS_KIND = FunctionThis
| GeneratorThis
and FIXTURE_NAME = TempName of int
| PropName of NAME
and BLOCK = Block of DIRECTIVES
(* FIXTURE_MAPs are built by the definition phase, not the parser; but they
* are patched back into the AST in class-definition and block
* nodes, so we must define them here. *)
(*
datatype FIXTURE =
NamespaceFixture of NAMESPACE
| ClassFixture of CLASS
| InterfaceFixture of INTERFACE
| TypeVarFixture of TYPEVAR_FIXTURE
| TypeFixture of TY
| MethodFixture of METHOD
| ValFixture of VAL_FIXTURE
| VirtualValFixture of VIRTUAL_VAL_FIXTURE
*)
(* ClassFixture only at package level,
* VirtualValFixture only in classes,
*)
and FIXTURE =
NamespaceFixture of NAMESPACE
| ClassFixture of CLASS
| InterfaceFixture of INTERFACE
| TypeVarFixture of NONCE
| TypeFixture of (IDENTIFIER list * TYPE)
| MethodFixture of
{ func: FUNC,
ty: TYPE,
writable: BOOLEAN, (* ES3 funcs are r/w methods with ty=Ast.Special Ast.Any *)
override: BOOLEAN,
final: BOOLEAN,
inheritedFrom: CLASS option }
| ValFixture of
{ ty: TYPE,
writable: BOOLEAN }
| VirtualValFixture of
{ ty: TYPE,
getter: (FUNC * (CLASS option)) option,
setter: (FUNC * (CLASS option)) option } (* VIRTUAL_VAL_FIXTURE *)
and HEAD =
Head of FIXTURE_MAP * INITS
withtype
BINDINGS = (BINDING list * INIT_STEP list)
and FIXTURE_MAP = (FIXTURE_NAME * FIXTURE) list
and FIXTURE_MAPS = ((FIXTURE_NAME * FIXTURE) list) list
and INITS = (FIXTURE_NAME * EXPRESSION) list
and INSTANCE_TYPE =
{ name : NAME,
typeArgs : TYPE list,
(* following fields cached for fast evaluation *)
nonnullable : BOOLEAN,
typeParams : IDENTIFIER list,
superTypes : TYPE list,
ty : TYPE,
dynamic : BOOLEAN
}
and FIELD =
{ kind: VAR_DEFN_TAG,
name: NAME_EXPRESSION,
init: EXPRESSION }
and FIELD_TYPE = NAME_EXPRESSION * TYPE
(*
{ name: NAME_EXPRESSION,
ty: TYPE }
*)
and FUNCTION_TYPE =
{ typeParams : IDENTIFIER list,
thisType : TYPE,
params : TYPE list,
minArgs : int,
hasRest : BOOLEAN,
result : TYPE option (* NONE indicates return type is void *)
}
and FUNC_DEFN =
{ kind : VAR_DEFN_TAG,
ns: NAMESPACE_EXPRESSION option,
final: BOOLEAN,
override: BOOLEAN,
prototype: BOOLEAN,
static: BOOLEAN,
func : FUNC }
and CTOR_DEFN = CTOR
and VAR_DEFN =
{ kind : VAR_DEFN_TAG,
ns : NAMESPACE_EXPRESSION option,
static : BOOLEAN,
prototype : BOOLEAN,
bindings : (BINDING list * INIT_STEP list) (* BINDINGS *)
}
and NAMESPACE_DEFN =
{ ident: IDENTIFIER,
ns: NAMESPACE_EXPRESSION option,
init: NAMESPACE_EXPRESSION option }
and CLASS_DEFN =
{ ns: NAMESPACE_EXPRESSION option,
privateNS: NAMESPACE, (* FIXME: do we need to keep this around? *)
protectedNS: NAMESPACE,
ident: IDENTIFIER,
nonnullable: BOOLEAN,
dynamic: BOOLEAN,
final: BOOLEAN,
params: IDENTIFIER list,
extends: TYPE option,
implements: TYPE list,
classDefns: DEFN list,
instanceDefns: DEFN list,
instanceStmts: STATEMENT list,
ctorDefn: CTOR option (* FIXME: does it need to be optional? *)
}
and INTERFACE_DEFN =
{ ident: IDENTIFIER,
ns: NAMESPACE_EXPRESSION option,
nonnullable: BOOLEAN,
params: IDENTIFIER list,
extends: TYPE list,
instanceDefns: DEFN list }
and TYPE_DEFN =
{ ident: IDENTIFIER,
ns: NAMESPACE_EXPRESSION option,
typeParams : IDENTIFIER list,
init: TYPE }
and CLASS_BLOCK =
{ ns: NAMESPACE_EXPRESSION option,
protectedNS: NAMESPACE,
privateNS: NAMESPACE,
ident: IDENTIFIER,
name: NAME option,
block: BLOCK }
and FOR_ENUM_HEAD = (* FIXME: use this in FOR_ENUM_STATEMENT *)
{ isEach: BOOLEAN,
bindings: (BINDING list * INIT_STEP list),
expr: EXPRESSION }
and FOR_ENUM_STATEMENT =
{ isEach: BOOLEAN,
(* VAR_DEFN option *)
defn: { kind : VAR_DEFN_TAG,
ns : NAMESPACE_EXPRESSION option,
static : BOOLEAN,
prototype : BOOLEAN,
bindings : (BINDING list * INIT_STEP list) (* BINDINGS *)
} option,
obj: EXPRESSION,
fixtureMap: ((FIXTURE_NAME * FIXTURE) list) option, (* FIXTURE_MAP option *)
next: STATEMENT,
labels: IDENTIFIER list,
body: STATEMENT }
and FOR_STATEMENT =
{ fixtureMap: ((FIXTURE_NAME * FIXTURE) list) option, (* FIXTURE_MAP option *) (* CF: list option seems redundant *)
(* VAR_DEFN option *)
defn: { kind : VAR_DEFN_TAG,
ns : NAMESPACE_EXPRESSION option,
static : BOOLEAN,
prototype : BOOLEAN,
bindings : (BINDING list * INIT_STEP list) (* BINDINGS *)
} option,
init: STATEMENT list,
cond: EXPRESSION,
update: EXPRESSION,
labels: IDENTIFIER list,
body: STATEMENT }
and WHILE_STATEMENT =
{ cond: EXPRESSION,
fixtureMap: ((FIXTURE_NAME * FIXTURE) list) option, (* FIXTURE_MAP option *)
body: STATEMENT,
labels: IDENTIFIER list }
and DIRECTIVES =
{ pragmas: PRAGMA list,
defns: DEFN list,
head: HEAD option,
body: STATEMENT list,
loc: LOC option }
and CASE =
{ label: EXPRESSION option,
inits: ((FIXTURE_NAME * EXPRESSION) list) option, (* INITS option, replace by INITS?? *)
body: BLOCK } (* FIXME: should be STATEMENT list *)
and CATCH_CLAUSE =
{ bindings:(BINDING list * INIT_STEP list), (* BINDINGS *)
ty: TYPE, (* CF: what is this for? *)
fixtureMap: ((FIXTURE_NAME * FIXTURE) list) option, (* FIXTURE_MAP option *)
inits: ((FIXTURE_NAME * EXPRESSION) list) option, (* INITS option, TODO: replace by INITS?? *)
block:BLOCK }
and FUNC_NAME =
{ kind : FUNC_NAME_KIND,
ident : IDENTIFIER }
type VIRTUAL_VAL_FIXTURE =
{ ty: TYPE,
getter: (FUNC * (CLASS option)) option,
setter: (FUNC * (CLASS option)) option }
datatype PROGRAM =
Program of BLOCK
end