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v2: [] expr for known arrays; p.expected_type
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@ -90,8 +90,9 @@ pub fn (p mut Parser) parse_type() table.Type {
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if p.tok.kind == .question {
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p.next()
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}
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// `module.Type`
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if p.peek_tok.kind == .dot {
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///if !(p.tok.lit in p.table.imports) {
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// /if !(p.tok.lit in p.table.imports) {
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if !p.table.known_import(p.tok.lit) {
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println(p.table.imports)
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p.error('unknown module `$p.tok.lit`')
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@ -467,6 +467,53 @@ pub fn (p mut Parser) parse_ident(is_c bool) (ast.Ident,table.Type) {
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return node,typ
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}
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fn (p mut Parser) struct_init() (ast.Expr,table.Type) {
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mut node := ast.Expr{}
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typ := p.parse_type()
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// p.warn('struct init typ=$typ.name')
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p.check(.lcbr)
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mut field_names := []string
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mut exprs := []ast.Expr
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mut i := 0
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sym := p.table.get_type_symbol(typ)
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// TODO if sym.info is table.Struct
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mut is_struct := false
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match sym.info {
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table.Struct {
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is_struct = true
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}
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else {}
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}
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for p.tok.kind != .rcbr {
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field_name := p.check_name()
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field_names << field_name
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// Set expected type for this field's expression
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// p.warn('$sym.name field $field_name')
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if is_struct {
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info := sym.info as table.Struct
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field := sym.find_field(field_name) or {
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p.error(err)
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continue
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}
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p.expected_type = field.typ
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// p.warn('setting exp $field.typ')
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}
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//
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p.check(.colon)
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expr,_ := p.expr(0)
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exprs << expr
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i++
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}
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node = ast.StructInit{
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typ: typ
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exprs: exprs
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fields: field_names
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pos: p.tok.position()
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}
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p.check(.rcbr)
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return node,typ
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}
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pub fn (p mut Parser) name_expr() (ast.Expr,table.Type) {
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mut node := ast.Expr{}
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mut typ := table.void_type
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@ -518,25 +565,7 @@ pub fn (p mut Parser) name_expr() (ast.Expr,table.Type) {
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// struct init
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else if p.peek_tok.kind == .lcbr && (p.tok.lit[0].is_capital() || is_c || p.tok.lit in ['array', 'string', 'ustring', 'mapnode', 'map']) && !p.tok.lit[p.tok.lit.len - 1].is_capital() {
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// || p.table.known_type(p.tok.lit)) {
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typ = p.parse_type()
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// p.warn('struct init typ=$typ.name')
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p.check(.lcbr)
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mut field_names := []string
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mut exprs := []ast.Expr
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for p.tok.kind != .rcbr {
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field_name := p.check_name()
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field_names << field_name
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p.check(.colon)
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expr,_ := p.expr(0)
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exprs << expr
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}
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node = ast.StructInit{
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typ: typ
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exprs: exprs
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fields: field_names
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pos: p.tok.position()
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}
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p.check(.rcbr)
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return p.struct_init()
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}
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else {
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mut ident := ast.Ident{}
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@ -1027,17 +1056,24 @@ fn (p mut Parser) array_init() (ast.Expr,table.Type) {
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mut node := ast.Expr{}
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p.check(.lsbr)
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// `[]` - empty array with an automatically deduced type
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// p.warn('array_init() exp=$p.expected_type')
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/*
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if p.peek_tok.kind == .rsbr && p.expected_type.kind == .array {
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if p.expected_type != 0 {
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sym := p.table.get_type_symbol(p.expected_type)
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println(sym.name)
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}
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*/
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if p.tok.kind == .rsbr && int(p.expected_type) != 0 && p.table.get_type_symbol(p.expected_type).kind == .array {
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// p.warn('[] expr')
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node = ast.ArrayInit{
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// typ: array_type
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exprs: []
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pos: p.tok.position()
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}
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p.check(.rsbr)
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return node,p.expected_type
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}
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*/
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mut val_type := table.void_type
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mut exprs := []ast.Expr
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mut is_fixed := false
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@ -77,7 +77,10 @@ pub fn new_scanner(text string) &Scanner {
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fn (s &Scanner) scan_res(tok_kind token.Kind, lit string) token.Token {
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return token.Token{
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tok_kind,lit,s.line_nr + 1}
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kind: tok_kind
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lit: lit
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line_nr: s.line_nr + 1
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}
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}
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fn (s mut Scanner) ident_name() string {
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