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v/vlib/v/parser/struct.v
2020-06-06 19:05:26 +03:00

348 lines
8.2 KiB
V

// Copyright (c) 2019-2020 Alexander Medvednikov. All rights reserved.
// Use of this source code is governed by an MIT license
// that can be found in the LICENSE file.
module parser
import v.ast
import v.table
import v.token
import v.util
fn (mut p Parser) struct_decl() ast.StructDecl {
p.top_level_statement_start()
start_pos := p.tok.position()
is_pub := p.tok.kind == .key_pub
if is_pub {
p.next()
}
is_union := p.tok.kind == .key_union
if p.tok.kind == .key_struct {
p.next()
} else {
p.check(.key_union)
}
language := if p.tok.lit == 'C' && p.peek_tok.kind == .dot {
table.Language.c
} else if p.tok.lit == 'JS' && p.peek_tok.kind == .dot {
table.Language.js
} else {
table.Language.v
}
if language != .v {
p.next() // C || JS
p.next() // .
}
is_typedef := p.attr == 'typedef'
no_body := p.peek_tok.kind != .lcbr
if language == .v && no_body {
p.error('`$p.tok.lit` lacks body')
}
end_pos := p.tok.position()
mut name := p.check_name()
if language == .v && p.mod != 'builtin' && name.len > 0 && !name[0].is_capital() {
p.error_with_pos('struct name `$name` must begin with capital letter', end_pos)
}
if name.len == 1 {
p.error_with_pos('struct names must have more than one character', end_pos)
}
// println('struct decl $name')
mut ast_fields := []ast.StructField{}
mut fields := []table.Field{}
mut mut_pos := -1
mut pub_pos := -1
mut pub_mut_pos := -1
mut global_pos := -1
mut is_field_mut := false
mut is_field_pub := false
mut is_field_global := false
if !no_body {
p.check(.lcbr)
for p.tok.kind != .rcbr {
mut comment := ast.Comment{}
if p.tok.kind == .comment {
comment = p.comment()
}
if p.tok.kind == .key_pub {
p.next()
if p.tok.kind == .key_mut {
if pub_mut_pos != -1 {
p.error('redefinition of `pub mut` section')
}
p.next()
pub_mut_pos = fields.len
is_field_pub = true
is_field_mut = true
is_field_global = false
} else {
if pub_pos != -1 {
p.error('redefinition of `pub` section')
}
pub_pos = fields.len
is_field_pub = true
is_field_mut = false
is_field_global = false
}
p.check(.colon)
} else if p.tok.kind == .key_mut {
if mut_pos != -1 {
p.error('redefinition of `mut` section')
}
p.next()
p.check(.colon)
mut_pos = fields.len
is_field_pub = false
is_field_mut = true
is_field_global = false
} else if p.tok.kind == .key_global {
if global_pos != -1 {
p.error('redefinition of `global` section')
}
p.next()
p.check(.colon)
global_pos = fields.len
is_field_pub = true
is_field_mut = true
is_field_global = true
}
field_start_pos := p.tok.position()
field_name := p.check_name()
// p.warn('field $field_name')
typ := p.parse_type()
field_pos := field_start_pos.extend(p.tok.position())
/*
if name == '_net_module_s' {
s := p.table.get_type_symbol(typ)
println('XXXX' + s.str())
}
*/
mut attrs := []string{}
if p.tok.kind == .lsbr {
parsed_attrs := p.attributes()
for attr in parsed_attrs {
attrs << attr.name
}
}
mut default_expr := ast.Expr{}
mut has_default_expr := false
if p.tok.kind == .assign {
// Default value
p.next()
// default_expr = p.tok.lit
// p.expr(0)
default_expr = p.expr(0)
match default_expr {
ast.EnumVal { it.typ = typ }
// TODO: implement all types??
else {}
}
has_default_expr = true
}
if p.tok.kind == .comment {
comment = p.comment()
}
// TODO merge table and ast Fields?
ast_fields << ast.StructField{
name: field_name
pos: field_pos
typ: typ
comment: comment
default_expr: default_expr
has_default_expr: has_default_expr
attrs: attrs
is_public: is_field_pub
}
fields << table.Field{
name: field_name
typ: typ
default_expr: ast.ex2fe(default_expr)
has_default_expr: has_default_expr
is_pub: is_field_pub
is_mut: is_field_mut
is_global: is_field_global
attrs: attrs
}
// println('struct field $ti.name $field_name')
}
p.top_level_statement_end()
p.check(.rcbr)
}
if language == .c {
name = 'C.$name'
} else if language == .js {
name = 'JS.$name'
} else {
name = p.prepend_mod(name)
}
t := table.TypeSymbol{
kind: .struct_
name: name
info: table.Struct{
fields: fields
is_typedef: is_typedef
is_union: is_union
is_ref_only: p.attr == 'ref_only'
}
mod: p.mod
is_public: is_pub
}
mut ret := 0
if p.builtin_mod && t.name in table.builtin_type_names {
// this allows overiding the builtins type
// with the real struct type info parsed from builtin
ret = p.table.register_builtin_type_symbol(t)
} else {
// println('reg type symbol $name mod=$p.mod')
ret = p.table.register_type_symbol(t)
}
if ret == -1 {
p.error('cannot register type `$name`, another type with this name exists')
}
p.expr_mod = ''
return ast.StructDecl{
name: name
is_pub: is_pub
fields: ast_fields
pos: start_pos.extend(end_pos)
mut_pos: mut_pos
pub_pos: pub_pos
pub_mut_pos: pub_mut_pos
language: language
is_union: is_union
attr: p.attr
}
}
fn (mut p Parser) struct_init(short_syntax bool) ast.StructInit {
first_pos := p.tok.position()
typ := if short_syntax { table.void_type } else { p.parse_type() }
p.expr_mod = ''
// sym := p.table.get_type_symbol(typ)
// p.warn('struct init typ=$sym.name')
if !short_syntax {
p.check(.lcbr)
}
mut fields := []ast.StructInitField{}
mut i := 0
no_keys := p.peek_tok.kind != .colon && p.tok.kind != .rcbr // `Vec{a,b,c}
// p.warn(is_short_syntax.str())
saved_is_amp := p.is_amp
p.is_amp = false
for p.tok.kind != .rcbr && p.tok.kind != .rpar {
p.check_comment()
mut field_name := ''
if no_keys {
expr := p.expr(0)
// name will be set later in checker
fields << ast.StructInitField{
expr: expr
pos: expr.position()
}
} else {
first_field_pos := p.tok.position()
field_name = p.check_name()
p.check(.colon)
expr := p.expr(0)
last_field_pos := expr.position()
field_pos := token.Position{
line_nr: first_field_pos.line_nr
pos: first_field_pos.pos
len: last_field_pos.pos - first_field_pos.pos + last_field_pos.len
}
fields << ast.StructInitField{
name: field_name
expr: expr
pos: field_pos
}
}
i++
if p.tok.kind == .comma {
p.next()
}
p.check_comment()
}
last_pos := p.tok.position()
if !short_syntax {
p.check(.rcbr)
}
p.is_amp = saved_is_amp
node := ast.StructInit{
typ: typ
fields: fields
pos: token.Position{
line_nr: first_pos.line_nr
pos: first_pos.pos
len: last_pos.pos - first_pos.pos + last_pos.len
}
is_short: no_keys
}
return node
}
fn (mut p Parser) interface_decl() ast.InterfaceDecl {
p.top_level_statement_start()
start_pos := p.tok.position()
is_pub := p.tok.kind == .key_pub
if is_pub {
p.next()
}
p.next() // `interface`
interface_name := p.prepend_mod(p.check_name())
// println('interface decl $interface_name')
p.check(.lcbr)
// Declare the type
t := table.TypeSymbol{
kind: .interface_
name: interface_name
mod: p.mod
info: table.Interface{
types: []
}
}
typ := table.new_type(p.table.register_type_symbol(t))
ts := p.table.get_type_symbol(typ) // TODO t vs ts
// Parse methods
mut methods := []ast.FnDecl{}
for p.tok.kind != .rcbr && p.tok.kind != .eof {
method_start_pos := p.tok.position()
line_nr := p.tok.line_nr
name := p.check_name()
if util.contains_capital(name) {
p.error('interface methods cannot contain uppercase letters, use snake_case instead')
}
// field_names << name
args2, _ := p.fn_args()
mut args := [table.Arg{
name: 'x'
typ: typ
is_hidden: true
}]
args << args2
mut method := ast.FnDecl{
name: name
args: args
file: p.file_name
return_type: table.void_type
is_pub: true
pos: method_start_pos.extend(p.prev_tok.position())
}
if p.tok.kind.is_start_of_type() && p.tok.line_nr == line_nr {
method.return_type = p.parse_type()
}
methods << method
// println('register method $name')
ts.register_method(table.Fn{
name: name
args: args
return_type: method.return_type
is_pub: true
})
}
p.top_level_statement_end()
p.check(.rcbr)
return ast.InterfaceDecl{
name: interface_name
methods: methods
pos: start_pos
}
}