v/vlib/v/ast/ast.v

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// Copyright (c) 2019-2020 Alexander Medvednikov. All rights reserved.
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// Use of this source code is governed by an MIT license
// that can be found in the LICENSE file.
module ast
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import v.token
import v.table
import v.errors
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pub type TypeDecl = AliasTypeDecl | FnTypeDecl | SumTypeDecl
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pub type Expr = AnonFn | ArrayInit | AsCast | Assoc | BoolLiteral | CallExpr | CastExpr | CharLiteral |
ComptimeCall | ConcatExpr | EnumVal | FloatLiteral | Ident | IfExpr | IfGuardExpr | IndexExpr |
InfixExpr | IntegerLiteral | Likely | MapInit | MatchExpr | None | OrExpr | ParExpr | PostfixExpr |
PrefixExpr | RangeExpr | SelectorExpr | SizeOf | SqlExpr | StringInterLiteral | StringLiteral |
StructInit | Type | TypeOf
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pub type Stmt = AssertStmt | AssignStmt | Attr | Block | BranchStmt | Comment | CompIf | ConstDecl |
DeferStmt | EnumDecl | ExprStmt | FnDecl | ForCStmt | ForInStmt | ForStmt | GlobalDecl | GoStmt |
GotoLabel | GotoStmt | HashStmt | Import | InterfaceDecl | Module | Return | StructDecl | TypeDecl |
UnsafeStmt
pub type ScopeObject = ConstField | GlobalDecl | Var
// pub type Type = StructType | ArrayType
// pub struct StructType {
// fields []Field
// }
// pub struct ArrayType {}
pub struct Type {
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pub:
typ table.Type
pos token.Position
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}
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pub struct Block {
pub:
stmts []Stmt
}
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// | IncDecStmt k
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// Stand-alone expression in a statement list.
pub struct ExprStmt {
pub:
expr Expr
pos token.Position
is_expr bool
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pub mut:
typ table.Type
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}
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pub struct IntegerLiteral {
pub:
val string
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pos token.Position
}
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pub struct FloatLiteral {
pub:
val string
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pos token.Position
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}
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pub struct StringLiteral {
pub:
val string
is_raw bool
language table.Language
pos token.Position
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}
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// 'name: $name'
pub struct StringInterLiteral {
pub:
vals []string
exprs []Expr
fwidths []int
precisions []int
pluss []bool
fills []bool
fmt_poss []token.Position
pos token.Position
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pub mut:
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expr_types []table.Type
fmts []byte
need_fmts []bool // an explicit non-default fmt required, e.g. `x`
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}
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pub struct CharLiteral {
pub:
val string
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pos token.Position
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}
pub struct BoolLiteral {
pub:
val bool
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pos token.Position
}
// `foo.bar`
pub struct SelectorExpr {
pub:
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pos token.Position
expr Expr
field_name string
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pub mut:
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expr_type table.Type
}
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// module declaration
pub struct Module {
pub:
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name string
path string
expr Expr
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pos token.Position
is_skipped bool // module main can be skipped in single file programs
}
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pub struct StructField {
pub:
name string
pos token.Position
comment Comment
default_expr Expr
has_default_expr bool
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attrs []string
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is_public bool
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pub mut:
typ table.Type
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}
pub struct Field {
pub:
name string
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pos token.Position
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pub mut:
typ table.Type
}
pub struct ConstField {
pub:
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name string
expr Expr
is_pub bool
pos token.Position
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pub mut:
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typ table.Type
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comment Comment
}
pub struct ConstDecl {
pub:
is_pub bool
pos token.Position
pub mut:
fields []ConstField
}
pub struct StructDecl {
pub:
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pos token.Position
name string
fields []StructField
is_pub bool
mut_pos int // mut:
pub_pos int // pub:
pub_mut_pos int // pub mut:
language table.Language
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is_union bool
attrs []string
}
pub struct InterfaceDecl {
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pub:
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name string
field_names []string
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methods []FnDecl
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pos token.Position
}
pub struct StructInitField {
pub:
expr Expr
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pos token.Position
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pub mut:
name string
typ table.Type
expected_type table.Type
}
pub struct StructInit {
pub:
pos token.Position
is_short bool
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pub mut:
typ table.Type
fields []StructInitField
}
// import statement
pub struct Import {
pub:
pos token.Position
mod string
alias string
}
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pub struct AnonFn {
pub:
decl FnDecl
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pub mut:
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typ table.Type
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}
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pub struct FnDecl {
pub:
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name string
mod string
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stmts []Stmt
args []table.Arg
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is_deprecated bool
is_pub bool
is_variadic bool
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is_anon bool
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receiver Field
receiver_pos token.Position
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is_method bool
rec_mut bool // is receiver mutable
language table.Language
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no_body bool // just a definition `fn C.malloc()`
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is_builtin bool // this function is defined in builtin/strconv
ctdefine string // has [if myflag] tag
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pos token.Position
body_pos token.Position
file string
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is_generic bool
pub mut:
return_type table.Type
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}
pub struct BranchStmt {
pub:
tok token.Token
}
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pub struct CallExpr {
pub:
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pos token.Position
left Expr // `user` in `user.register()`
mod string
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pub mut:
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name string
is_method bool
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args []CallArg
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expected_arg_types []table.Type
language table.Language
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or_block OrExpr
left_type table.Type // type of `user`
receiver_type table.Type // User
return_type table.Type
should_be_skipped bool
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generic_type table.Type // TODO array, to support multiple types
}
pub struct CallArg {
pub:
is_mut bool
expr Expr
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pub mut:
typ table.Type
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}
pub struct Return {
pub:
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pos token.Position
exprs []Expr
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pub mut:
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types []table.Type
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}
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/*
pub enum Expr {
Binary(InfixExpr)
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If(IfExpr)
Integer(IntegerExpr)
}
*/
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/*
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pub struct Stmt {
pos int
//end int
}
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*/
pub struct Var {
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pub:
name string
expr Expr
is_mut bool
is_arg bool // fn args should not be autofreed
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pub mut:
typ table.Type
pos token.Position
is_used bool
is_changed bool // to detect mutable vars that are never changed
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}
pub struct GlobalDecl {
pub:
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name string
expr Expr
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has_expr bool
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pos token.Position
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pub mut:
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typ table.Type
}
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pub struct File {
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pub:
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path string
mod Module
stmts []Stmt
scope &Scope
global_scope &Scope
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pub mut:
imports []Import
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errors []errors.Error
warnings []errors.Warning
}
pub struct IdentFn {
pub mut:
typ table.Type
}
pub struct IdentVar {
pub mut:
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typ table.Type
is_mut bool
is_static bool
is_optional bool
}
pub type IdentInfo = IdentFn | IdentVar
pub enum IdentKind {
unresolved
blank_ident
variable
constant
global
function
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}
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// A single identifier
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pub struct Ident {
pub:
value string
language table.Language
tok_kind token.Kind
mod string
pos token.Position
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pub mut:
name string
kind IdentKind
info IdentInfo
is_mut bool
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}
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pub fn (i &Ident) var_info() IdentVar {
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match i.info {
IdentVar {
return it
}
else {
// return IdentVar{}
panic('Ident.var_info(): info is not IdentVar variant')
}
}
}
pub struct InfixExpr {
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pub:
op token.Kind
pos token.Position
left Expr
right Expr
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pub mut:
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left_type table.Type
right_type table.Type
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}
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pub struct PostfixExpr {
pub:
op token.Kind
expr Expr
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pos token.Position
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}
pub struct PrefixExpr {
pub:
op token.Kind
right Expr
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pos token.Position
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}
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pub struct IndexExpr {
pub:
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pos token.Position
left Expr
index Expr // [0], [start..end] etc
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pub mut:
left_type table.Type // array, map, fixed array
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is_setter bool
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}
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pub struct IfExpr {
pub:
tok_kind token.Kind
branches []IfBranch
left Expr // `a` in `a := if ...`
pos token.Position
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pub mut:
is_expr bool
typ table.Type
has_else bool
}
pub struct IfBranch {
pub:
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cond Expr
stmts []Stmt
pos token.Position
comment Comment
}
pub struct MatchExpr {
pub:
tok_kind token.Kind
cond Expr
branches []MatchBranch
pos token.Position
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is_mut bool // `match mut ast_node {`
var_name string
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pub mut:
is_expr bool // returns a value
return_type table.Type
cond_type table.Type // type of `x` in `match x {`
expected_type table.Type // for debugging only
is_sum_type bool
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is_interface bool
}
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pub struct MatchBranch {
pub:
exprs []Expr // left side
stmts []Stmt // right side
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pos token.Position
comment Comment // comment above `xxx {`
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is_else bool
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}
/*
CompIf.is_opt:
`$if xyz? {}` => this compile time `if` is optional,
and .is_opt reflects the presence of ? at the end.
When .is_opt is true, the code should compile, even
if `xyz` is NOT defined.
If .is_opt is false, then when `xyz` is not defined,
the compilation will fail.
*/
pub struct CompIf {
pub:
val string
stmts []Stmt
is_not bool
pos token.Position
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pub mut:
is_opt bool
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has_else bool
else_stmts []Stmt
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}
pub struct ForStmt {
pub:
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cond Expr
stmts []Stmt
is_inf bool // `for {}`
pos token.Position
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}
pub struct ForInStmt {
pub:
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key_var string
val_var string
cond Expr
is_range bool
high Expr // `10` in `for i in 0..10 {`
stmts []Stmt
pos token.Position
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pub mut:
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key_type table.Type
val_type table.Type
cond_type table.Type
kind table.Kind // array/map/string
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}
pub struct ForCStmt {
pub:
init Stmt // i := 0;
has_init bool
cond Expr // i < 10;
has_cond bool
inc Stmt // i++; i += 2
has_inc bool
stmts []Stmt
pos token.Position
}
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/*
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pub struct ReturnStmt {
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pub:
tok_kind token.Kind // or pos
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results []Expr
pos token.Position
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}
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*/
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// #include etc
pub struct HashStmt {
pub:
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val string
mod string
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}
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// filter(), map()
pub struct Lambda {
pub:
name string
}
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pub struct AssignStmt {
pub:
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right []Expr
op token.Kind
pos token.Position
pub mut:
left []Expr
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left_types []table.Type
right_types []table.Type
is_static bool // for translated code only
is_simple bool // `x+=2` in `for x:=1; ; x+=2`
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has_cross_var bool
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}
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pub struct AsCast {
pub:
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expr Expr
typ table.Type
pos token.Position
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pub mut:
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expr_type table.Type
}
// e.g. `[unsafe_fn]`
pub struct Attr {
pub:
name string
}
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pub fn (attrs []Attr) contains(attr Attr) bool {
for a in attrs {
if attr.name == a.name {
return true
}
}
return false
}
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pub struct EnumVal {
pub:
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enum_name string
val string
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mod string // for full path `mod_Enum_val`
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pos token.Position
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pub mut:
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typ table.Type
}
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pub struct EnumField {
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pub:
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name string
pos token.Position
expr Expr
has_expr bool
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}
pub struct EnumDecl {
pub:
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name string
is_pub bool
is_flag bool // true when the enum has [flag] tag
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fields []EnumField
pos token.Position
}
pub struct AliasTypeDecl {
pub:
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name string
is_pub bool
parent_type table.Type
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pos token.Position
}
pub struct SumTypeDecl {
pub:
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name string
is_pub bool
sub_types []table.Type
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pos token.Position
}
pub struct FnTypeDecl {
pub:
name string
is_pub bool
typ table.Type
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pos token.Position
}
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// TODO: handle this differently
// v1 excludes non current os ifdefs so
// the defer's never get added in the first place
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pub struct DeferStmt {
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pub:
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stmts []Stmt
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pub mut:
ifdef string
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}
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pub struct UnsafeStmt {
pub:
stmts []Stmt
}
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// `(3+4)`
pub struct ParExpr {
pub:
expr Expr
}
pub struct GoStmt {
pub:
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call_expr Expr
}
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pub struct GotoLabel {
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pub:
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name string
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}
pub struct GotoStmt {
pub:
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name string
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}
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pub struct ArrayInit {
pub:
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pos token.Position
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elem_type_pos token.Position
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exprs []Expr
is_fixed bool
has_val bool
mod string
len_expr Expr
cap_expr Expr
default_expr Expr
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has_len bool
has_cap bool
has_default bool
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pub mut:
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is_interface bool // array of interfaces e.g. `[]Animal` `[Dog{}, Cat{}]`
interface_types []table.Type // [Dog, Cat]
interface_type table.Type // Animal
elem_type table.Type
typ table.Type
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}
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pub struct MapInit {
pub:
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pos token.Position
keys []Expr
vals []Expr
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pub mut:
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typ table.Type
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key_type table.Type
value_type table.Type
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}
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// s[10..20]
pub struct RangeExpr {
pub:
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low Expr
high Expr
has_high bool
has_low bool
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}
pub struct CastExpr {
pub:
expr Expr // `buf`
arg Expr // `n` in `string(buf, n)`
typ table.Type // `string`
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pos token.Position
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pub mut:
typname string
expr_type table.Type // `byteptr`
has_arg bool
}
pub struct AssertStmt {
pub:
expr Expr
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pos token.Position
}
// `if [x := opt()] {`
pub struct IfGuardExpr {
pub:
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var_name string
expr Expr
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pub mut:
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expr_type table.Type
}
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pub enum OrKind {
absent
block
propagate
}
// `or { ... }`
pub struct OrExpr {
pub:
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stmts []Stmt
kind OrKind
pos token.Position
}
pub struct Assoc {
pub:
var_name string
fields []string
exprs []Expr
pos token.Position
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pub mut:
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typ table.Type
}
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pub struct SizeOf {
pub:
typ table.Type
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type_name string
}
pub struct Likely {
pub:
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expr Expr
pos token.Position
is_likely bool // false for _unlikely_
}
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pub struct TypeOf {
pub:
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expr Expr
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pub mut:
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expr_type table.Type
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}
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pub struct Comment {
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pub:
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text string
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is_multi bool
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line_nr int
pos token.Position
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}
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pub struct ConcatExpr {
pub:
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vals []Expr
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pub mut:
return_type table.Type
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}
pub struct ComptimeCall {
pub:
method_name string
left Expr
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is_vweb bool
vweb_tmpl File
pub mut:
sym table.TypeSymbol
}
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pub struct None {
pub:
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pos token.Position
foo int // todo
}
pub struct SqlExpr {
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pub:
typ table.Type
is_count bool
db_var_name string // `db` in `sql db {`
table_name string
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where_expr Expr
has_where bool
fields []table.Field
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is_array bool
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}
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pub struct SqlInsertExpr {
}
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[inline]
pub fn (expr Expr) is_blank_ident() bool {
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match expr {
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Ident { return it.kind == .blank_ident }
else { return false }
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}
}
pub fn (expr Expr) position() token.Position {
// all uncommented have to be implemented
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match mut expr {
ArrayInit {
return it.pos
}
AsCast {
return it.pos
}
// ast.Ident { }
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CastExpr {
return it.pos
}
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Assoc {
return it.pos
}
BoolLiteral {
return it.pos
}
CallExpr {
return it.pos
}
CharLiteral {
return it.pos
}
EnumVal {
return it.pos
}
FloatLiteral {
return it.pos
}
Ident {
return it.pos
}
IfExpr {
return it.pos
}
// ast.IfGuardExpr { }
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IndexExpr {
return it.pos
}
InfixExpr {
left_pos := it.left.position()
right_pos := it.right.position()
if left_pos.pos == 0 || right_pos.pos == 0 {
return it.pos
}
return token.Position{
line_nr: it.pos.line_nr
pos: left_pos.pos
len: right_pos.pos - left_pos.pos + right_pos.len
}
}
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IntegerLiteral {
return it.pos
}
MapInit {
return it.pos
}
MatchExpr {
return it.pos
}
None {
return it.pos
}
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PostfixExpr {
return it.pos
}
// ast.None { }
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PrefixExpr {
return it.pos
}
// ast.ParExpr { }
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SelectorExpr {
return it.pos
}
// ast.SizeOf { }
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StringLiteral {
return it.pos
}
StringInterLiteral {
return it.pos
}
// ast.Type { }
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StructInit {
return it.pos
}
Likely {
return it.pos
}
// ast.TypeOf { }
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else {
return token.Position{}
}
}
}
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pub fn (stmt Stmt) position() token.Position {
match stmt {
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AssertStmt { return it.pos }
AssignStmt { return it.pos }
/*
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// Attr {
// }
// Block {
// }
// BranchStmt {
// }
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*/
Comment { return it.pos }
CompIf { return it.pos }
ConstDecl { return it.pos }
/*
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// DeferStmt {
// }
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*/
EnumDecl { return it.pos }
ExprStmt { return it.pos }
FnDecl { return it.pos }
ForCStmt { return it.pos }
ForInStmt { return it.pos }
ForStmt { return it.pos }
/*
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// GlobalDecl {
// }
// GoStmt {
// }
// GotoLabel {
// }
// GotoStmt {
// }
// HashStmt {
// }
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*/
Import { return it.pos }
/*
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// InterfaceDecl {
// }
// Module {
// }
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*/
Return { return it.pos }
StructDecl { return it.pos }
/*
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// TypeDecl {
// }
// UnsafeStmt {
// }
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*/
else { return token.Position{} }
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}
}
// TODO: remove this fugly hack :-|
// fe2ex/1 and ex2fe/1 are used to convert back and forth from
// table.FExpr to ast.Expr , which in turn is needed to break
// a dependency cycle between v.ast and v.table, for the single
// field table.Field.default_expr, which should be ast.Expr
pub fn fe2ex(x table.FExpr) Expr {
res := Expr{}
C.memcpy(&res, &x, sizeof(Expr))
return res
}
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pub fn ex2fe(x Expr) table.FExpr {
res := table.FExpr{}
C.memcpy(&res, &x, sizeof(table.FExpr))
return res
}