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compiler: initializing fixed arrays with [1,2,3]
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@ -53,7 +53,15 @@ fn (p mut Parser) gen_var_decl(name string, is_static bool) string {
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// `foo := C.Foo{}` => `Foo foo;`
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if !p.is_empty_c_struct_init && !typ.starts_with('['){
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nt_gen += '='
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} else if typ.starts_with('[') && typ[ typ.len-1 ] != `*` {
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// a fixed_array initializer, like `v := [1.1, 2.2]!!`
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// ... should translate to the following in C `f32 v[2] = {1.1, 2.2};`
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initializer := p.cgen.cur_line.right(pos)
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if initializer.len > 0 {
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p.cgen.resetln(' = {' + initializer.all_after('{') )
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}
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}
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if is_static {
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nt_gen = 'static $nt_gen'
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}
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@ -1389,6 +1389,17 @@ fn ($v.name mut $v.typ) $p.cur_fn.name (...) {
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typ := expr_type.replace('Option_', '')
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p.cgen.resetln(left + 'opt_ok($expr, sizeof($typ))')
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}
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else if expr_type[0]==`[` {
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// assignment to a fixed_array `mut a:=[3]int a=[1,2,3]!!`
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expr := p.cgen.cur_line.right(pos).all_after('{').all_before('}')
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left := p.cgen.cur_line.left(pos).all_before('=')
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cline_pos := p.cgen.cur_line.right(pos)
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etype := cline_pos.all_before(' {')
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if p.assigned_type != p.expected_type {
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p.error_with_token_index( 'incompatible types: $p.assigned_type != $p.expected_type', errtok)
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}
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p.cgen.resetln('memcpy(& $left, $etype{$expr}, sizeof( $left ) );')
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}
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else if !p.builtin_mod && !p.check_types_no_throw(expr_type, p.assigned_type) {
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p.error_with_token_index( 'cannot use type `$expr_type` as type `$p.assigned_type` in assignment', errtok)
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}
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@ -2062,6 +2073,7 @@ fn (p mut Parser) dot(str_typ_ string, method_ph int) string {
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return 'void'
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}
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field_name := p.lit
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fname_tidx := p.cur_tok_index()
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p.fgen(field_name)
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//p.log('dot() field_name=$field_name typ=$str_typ')
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//if p.fileis('main.v') {
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@ -2094,7 +2106,7 @@ fn (p mut Parser) dot(str_typ_ string, method_ph int) string {
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//println(field.name)
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//}
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//println('str_typ=="$str_typ"')
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p.error('type `$typ.name` has no field or method `$field_name`')
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p.error_with_token_index('type `$typ.name` has no field or method `$field_name`', fname_tidx)
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}
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mut dot := '.'
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if str_typ.ends_with('*') || str_typ == 'FT_Face' { // TODO fix C ptr typedefs
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@ -2104,7 +2116,7 @@ fn (p mut Parser) dot(str_typ_ string, method_ph int) string {
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if has_field {
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struct_field := if typ.name != 'Option' { p.table.var_cgen_name(field_name) } else { field_name }
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field := p.table.find_field(typ, struct_field) or {
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p.error('missing field: $struct_field in type $typ.name')
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p.error_with_token_index('missing field: $struct_field in type $typ.name', fname_tidx)
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exit(1)
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}
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if !field.is_mut && !p.has_immutable_field {
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@ -2119,13 +2131,13 @@ fn (p mut Parser) dot(str_typ_ string, method_ph int) string {
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if !p.builtin_mod && !p.pref.translated && modifying && !is_vi
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&& p.has_immutable_field {
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f := p.first_immutable_field
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p.error('cannot modify immutable field `$f.name` (type `$f.parent_fn`)\n' +
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p.error_with_token_index('cannot modify immutable field `$f.name` (type `$f.parent_fn`)\n' +
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'declare the field with `mut:`
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struct $f.parent_fn {
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mut:
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$f.name $f.typ
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}
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')
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', fname_tidx)
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}
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if !p.builtin_mod && p.mod != typ.mod {
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}
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@ -2133,7 +2145,7 @@ struct $f.parent_fn {
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if field.access_mod == .private && !p.builtin_mod && !p.pref.translated && p.mod != typ.mod {
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// println('$typ.name :: $field.name ')
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// println(field.access_mod)
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p.error('cannot refer to unexported field `$struct_field` (type `$typ.name`)')
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p.error_with_token_index('cannot refer to unexported field `$struct_field` (type `$typ.name`)', fname_tidx)
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}
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p.gen(dot + struct_field)
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p.next()
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@ -2141,7 +2153,7 @@ struct $f.parent_fn {
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}
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// method
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method := p.table.find_method(typ, field_name) or {
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p.error('could not find method `$field_name`') // should never happen
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p.error_with_token_index('could not find method `$field_name`', fname_tidx) // should never happen
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exit(1)
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}
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p.fn_call(method, method_ph, '', str_typ)
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32
compiler/tests/fixed_array_test.v
Normal file
32
compiler/tests/fixed_array_test.v
Normal file
@ -0,0 +1,32 @@
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fn test_fixed_array_can_be_assigned(){
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x := 2.32
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mut v := [8]f32
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v = [1.0, x, 3.0,4.0,5.0,6.0,7.0,8.0]!!
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assert v[1] == x
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}
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fn test_fixed_array_can_be_used_in_declaration(){
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x := 2.32
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v := [1.0, x, 3.0,4.0,5.0,6.0,7.0,8.0]!!
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assert v[1] == x
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}
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struct Context {
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pub mut:
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vb [8]f32
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}
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fn test_fixed_array_can_be_assigned_to_a_struct_field(){
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mut ctx := Context{}
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x := 2.32
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ctx.vb = [1.1, x, 3.3, 4.4, 5.0, 6.0, 7.0, 8.9]!!
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assert ctx.vb[1] == x
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assert ctx.vb[7] == 8.9
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/*
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println( ctx.vb[0] )
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println( ctx.vb[1] )
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println( ctx.vb[2] )
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println( ctx.vb[3] )
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*/
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}
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