vfmt: add missing imports automatically
parent
d55f4ab097
commit
0db0c642c3
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@ -12,6 +12,14 @@ struct C.cJSON {
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valuestring byteptr
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}
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pub fn decode() voidptr {
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}
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pub fn encode() voidptr {
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}
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fn jsdecode_int(root &C.cJSON) int {
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if isnil(root) {
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return 0
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@ -251,185 +251,196 @@ fn (c mut Checker) assign_expr(assign_expr mut ast.AssignExpr) {
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}
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pub fn (c mut Checker) call_expr(call_expr mut ast.CallExpr) table.Type {
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if call_expr.name == 'panic' {
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c.returns = true
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}
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c.stmts(call_expr.or_block.stmts)
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if call_expr.is_method {
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left_type := c.expr(call_expr.left)
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call_expr.left_type = left_type
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left_type_sym := c.table.get_type_symbol(left_type)
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method_name := call_expr.name
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// TODO: remove this for actual methods, use only for compiler magic
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if left_type_sym.kind == .array && method_name in ['filter', 'clone', 'repeat', 'reverse',
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'map', 'slice'] {
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if method_name in ['filter', 'map'] {
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array_info := left_type_sym.info as table.Array
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mut scope := c.file.scope.innermost(call_expr.pos.pos)
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scope.update_var_type('it', array_info.elem_type)
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}
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for i, arg in call_expr.args {
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c.expr(arg.expr)
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}
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// need to return `array_xxx` instead of `array`
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call_expr.return_type = left_type
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if method_name == 'clone' {
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// in ['clone', 'str'] {
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call_expr.receiver_type = table.type_to_ptr(left_type)
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// call_expr.return_type = call_expr.receiver_type
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} else {
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call_expr.receiver_type = left_type
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}
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return left_type
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} else if left_type_sym.kind == .array && method_name in ['first', 'last'] {
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info := left_type_sym.info as table.Array
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call_expr.return_type = info.elem_type
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call_expr.receiver_type = left_type
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return info.elem_type
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return c.call_method(call_expr)
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}
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return c.call_fn(call_expr)
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}
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pub fn (c mut Checker) call_method(call_expr mut ast.CallExpr) table.Type {
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left_type := c.expr(call_expr.left)
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call_expr.left_type = left_type
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left_type_sym := c.table.get_type_symbol(left_type)
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method_name := call_expr.name
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// TODO: remove this for actual methods, use only for compiler magic
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if left_type_sym.kind == .array && method_name in ['filter', 'clone', 'repeat', 'reverse',
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'map', 'slice'] {
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if method_name in ['filter', 'map'] {
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array_info := left_type_sym.info as table.Array
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mut scope := c.file.scope.innermost(call_expr.pos.pos)
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scope.update_var_type('it', array_info.elem_type)
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}
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if method := c.table.type_find_method(left_type_sym, method_name) {
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no_args := method.args.len - 1
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min_required_args := method.args.len - if method.is_variadic && method.args.len >
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1 { 2 } else { 1 }
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if call_expr.args.len < min_required_args {
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c.error('too few arguments in call to `${left_type_sym.name}.$method_name` ($call_expr.args.len instead of $min_required_args)',
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call_expr.pos)
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} else if !method.is_variadic && call_expr.args.len > no_args {
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c.error('too many arguments in call to `${left_type_sym.name}.$method_name` ($call_expr.args.len instead of $no_args)',
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call_expr.pos)
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return method.return_type
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}
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// if method_name == 'clone' {
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// println('CLONE nr args=$method.args.len')
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// }
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// call_expr.args << method.args[0].typ
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// call_expr.exp_arg_types << method.args[0].typ
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for i, arg in call_expr.args {
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c.expected_type = if method.is_variadic && i >= method.args.len - 1 {
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method.args[method.args.len - 1].typ
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} else {
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method.args[i + 1].typ
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}
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call_expr.args[i].typ = c.expr(arg.expr)
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}
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// TODO: typ optimize.. this node can get processed more than once
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if call_expr.expected_arg_types.len == 0 {
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for i in 1 .. method.args.len {
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call_expr.expected_arg_types << method.args[i].typ
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}
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}
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call_expr.receiver_type = method.args[0].typ
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call_expr.return_type = method.return_type
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for i, arg in call_expr.args {
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c.expr(arg.expr)
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}
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// need to return `array_xxx` instead of `array`
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call_expr.return_type = left_type
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if method_name == 'clone' {
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// in ['clone', 'str'] {
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call_expr.receiver_type = table.type_to_ptr(left_type)
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// call_expr.return_type = call_expr.receiver_type
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} else {
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call_expr.receiver_type = left_type
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}
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return left_type
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} else if left_type_sym.kind == .array && method_name in ['first', 'last'] {
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info := left_type_sym.info as table.Array
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call_expr.return_type = info.elem_type
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call_expr.receiver_type = left_type
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return info.elem_type
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}
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if method := c.table.type_find_method(left_type_sym, method_name) {
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no_args := method.args.len - 1
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min_required_args := method.args.len - if method.is_variadic && method.args.len > 1 { 2 } else { 1 }
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if call_expr.args.len < min_required_args {
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c.error('too few arguments in call to `${left_type_sym.name}.$method_name` ($call_expr.args.len instead of $min_required_args)',
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call_expr.pos)
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} else if !method.is_variadic && call_expr.args.len > no_args {
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c.error('too many arguments in call to `${left_type_sym.name}.$method_name` ($call_expr.args.len instead of $no_args)',
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call_expr.pos)
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return method.return_type
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}
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// TODO: str methods
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if left_type_sym.kind == .map && method_name == 'str' {
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call_expr.receiver_type = table.new_type(c.table.type_idxs['map_string'])
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call_expr.return_type = table.string_type
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return table.string_type
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}
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if left_type_sym.kind == .array && method_name == 'str' {
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call_expr.receiver_type = left_type
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call_expr.return_type = table.string_type
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return table.string_type
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}
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c.error('unknown method: ${left_type_sym.name}.$method_name', call_expr.pos)
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return table.void_type
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} else {
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fn_name := call_expr.name
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// TODO: impl typeof properly (probably not going to be a fn call)
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if fn_name == 'typeof' {
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return table.string_type
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}
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// look for function in format `mod.fn` or `fn` (main/builtin)
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mut f := table.Fn{}
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mut found := false
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// try prefix with current module as it would have never gotten prefixed
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if !fn_name.contains('.') && !(call_expr.mod in ['builtin', 'main']) {
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name_prefixed := '${call_expr.mod}.$fn_name'
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if f1 := c.table.find_fn(name_prefixed) {
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call_expr.name = name_prefixed
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found = true
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f = f1
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// if method_name == 'clone' {
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// println('CLONE nr args=$method.args.len')
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// }
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// call_expr.args << method.args[0].typ
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// call_expr.exp_arg_types << method.args[0].typ
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for i, arg in call_expr.args {
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c.expected_type = if method.is_variadic && i >= method.args.len - 1 {
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method.args[method.args.len - 1].typ
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} else {
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method.args[i + 1].typ
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}
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}
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// already prefixed (mod.fn) or C/builtin/main
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if !found {
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if f1 := c.table.find_fn(fn_name) {
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found = true
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f = f1
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}
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}
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// check for arg (var) of fn type
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if !found {
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scope := c.file.scope.innermost(call_expr.pos.pos)
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if var := scope.find_var(fn_name) {
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if var.typ != 0 {
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vts := c.table.get_type_symbol(var.typ)
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if vts.kind == .function {
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info := vts.info as table.FnType
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f = info.func
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found = true
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}
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}
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}
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}
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if !found {
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c.error('unknown fn: $fn_name', call_expr.pos)
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return table.void_type
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}
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call_expr.return_type = f.return_type
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if f.is_c || call_expr.is_c {
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for arg in call_expr.args {
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c.expr(arg.expr)
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}
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return f.return_type
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}
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min_required_args := if f.is_variadic { f.args.len - 1 } else { f.args.len }
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if call_expr.args.len < min_required_args {
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c.error('too few arguments in call to `$fn_name` ($call_expr.args.len instead of $min_required_args)',
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call_expr.pos)
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} else if !f.is_variadic && call_expr.args.len > f.args.len {
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c.error('too many arguments in call to `$fn_name` ($call_expr.args.len instead of $f.args.len)',
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call_expr.pos)
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return f.return_type
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}
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// println can print anything
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if fn_name == 'println' || fn_name == 'print' {
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c.expected_type = table.string_type
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call_expr.args[0].typ = c.expr(call_expr.args[0].expr)
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return f.return_type
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call_expr.args[i].typ = c.expr(arg.expr)
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}
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// TODO: typ optimize.. this node can get processed more than once
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if call_expr.expected_arg_types.len == 0 {
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for arg in f.args {
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call_expr.expected_arg_types << arg.typ
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for i in 1 .. method.args.len {
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call_expr.expected_arg_types << method.args[i].typ
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}
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}
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for i, call_arg in call_expr.args {
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arg := if f.is_variadic && i >= f.args.len - 1 { f.args[f.args.len - 1] } else { f.args[i] }
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c.expected_type = arg.typ
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typ := c.expr(call_arg.expr)
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call_expr.args[i].typ = typ
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typ_sym := c.table.get_type_symbol(typ)
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arg_typ_sym := c.table.get_type_symbol(arg.typ)
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if !c.table.check(typ, arg.typ) {
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// str method, allow type with str method if fn arg is string
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if arg_typ_sym.kind == .string && typ_sym.has_method('str') {
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continue
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call_expr.receiver_type = method.args[0].typ
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call_expr.return_type = method.return_type
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return method.return_type
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}
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// TODO: str methods
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if left_type_sym.kind == .map && method_name == 'str' {
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call_expr.receiver_type = table.new_type(c.table.type_idxs['map_string'])
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call_expr.return_type = table.string_type
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return table.string_type
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}
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if left_type_sym.kind == .array && method_name == 'str' {
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call_expr.receiver_type = left_type
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call_expr.return_type = table.string_type
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return table.string_type
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}
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c.error('unknown method: ${left_type_sym.name}.$method_name', call_expr.pos)
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return table.void_type
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}
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pub fn (c mut Checker) call_fn(call_expr mut ast.CallExpr) table.Type {
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if call_expr.name == 'panic' {
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c.returns = true
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}
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fn_name := call_expr.name
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if fn_name == 'typeof' {
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// TODO: impl typeof properly (probably not going to be a fn call)
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return table.string_type
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}
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//if c.fileis('json_test.v') {
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//println(fn_name)
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//}
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if fn_name == 'json.encode' {
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}
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// look for function in format `mod.fn` or `fn` (main/builtin)
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mut f := table.Fn{}
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mut found := false
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// try prefix with current module as it would have never gotten prefixed
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if !fn_name.contains('.') && !(call_expr.mod in ['builtin', 'main']) {
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name_prefixed := '${call_expr.mod}.$fn_name'
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if f1 := c.table.find_fn(name_prefixed) {
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call_expr.name = name_prefixed
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found = true
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f = f1
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}
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}
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// already prefixed (mod.fn) or C/builtin/main
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if !found {
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if f1 := c.table.find_fn(fn_name) {
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found = true
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f = f1
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}
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}
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// check for arg (var) of fn type
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if !found {
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scope := c.file.scope.innermost(call_expr.pos.pos)
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if var := scope.find_var(fn_name) {
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if var.typ != 0 {
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vts := c.table.get_type_symbol(var.typ)
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if vts.kind == .function {
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info := vts.info as table.FnType
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f = info.func
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found = true
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}
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if typ_sym.kind == .void && arg_typ_sym.kind == .string {
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continue
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}
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if typ_sym.kind == .array_fixed {
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}
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// println('fixed')
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c.error('cannot use type `$typ_sym.str()` as type `$arg_typ_sym.str()` in argument ${i+1} to `$fn_name`',
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call_expr.pos)
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}
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}
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}
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if !found {
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c.error('unknown fn: $fn_name', call_expr.pos)
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return table.void_type
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}
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call_expr.return_type = f.return_type
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if f.is_c || call_expr.is_c {
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for arg in call_expr.args {
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c.expr(arg.expr)
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}
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return f.return_type
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}
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min_required_args := if f.is_variadic { f.args.len - 1 } else { f.args.len }
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if call_expr.args.len < min_required_args {
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c.error('too few arguments in call to `$fn_name` ($call_expr.args.len instead of $min_required_args)',
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call_expr.pos)
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} else if !f.is_variadic && call_expr.args.len > f.args.len {
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c.error('too many arguments in call to `$fn_name` ($call_expr.args.len instead of $f.args.len)',
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call_expr.pos)
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return f.return_type
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}
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// println can print anything
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if fn_name == 'println' || fn_name == 'print' {
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c.expected_type = table.string_type
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call_expr.args[0].typ = c.expr(call_expr.args[0].expr)
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return f.return_type
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}
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// TODO: typ optimize.. this node can get processed more than once
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if call_expr.expected_arg_types.len == 0 {
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for arg in f.args {
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call_expr.expected_arg_types << arg.typ
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}
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}
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for i, call_arg in call_expr.args {
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arg := if f.is_variadic && i >= f.args.len - 1 { f.args[f.args.len - 1] } else { f.args[i] }
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c.expected_type = arg.typ
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typ := c.expr(call_arg.expr)
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call_expr.args[i].typ = typ
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typ_sym := c.table.get_type_symbol(typ)
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arg_typ_sym := c.table.get_type_symbol(arg.typ)
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if !c.table.check(typ, arg.typ) {
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// str method, allow type with str method if fn arg is string
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if arg_typ_sym.kind == .string && typ_sym.has_method('str') {
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continue
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}
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if typ_sym.kind == .void && arg_typ_sym.kind == .string {
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continue
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}
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if typ_sym.kind == .array_fixed {
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}
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// println('fixed')
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c.error('cannot use type `$typ_sym.str()` as type `$arg_typ_sym.str()` in argument ${i+1} to `$fn_name`',
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call_expr.pos)
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}
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}
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return f.return_type
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}
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pub fn (c mut Checker) check_expr_opt_call(x ast.Expr, xtype table.Type, is_return_used bool) {
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@ -1564,3 +1575,7 @@ fn (c mut Checker) warn_or_error(s string, pos token.Position, warn bool) {
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exit(1)
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}
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}
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fn (p Checker) fileis(s string) bool {
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return p.file.path.contains(s)
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}
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@ -16,6 +16,7 @@ const (
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struct Fmt {
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out strings.Builder
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out_imports strings.Builder
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table &table.Table
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mut:
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indent int
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@ -26,21 +27,35 @@ mut:
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file ast.File
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did_imports bool
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is_assign bool
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auto_imports []string // automatically inserted imports that the user forgot to specify
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import_pos int // position of the imports in the resulting string for later autoimports insertion
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}
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pub fn fmt(file ast.File, table &table.Table) string {
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mut f := Fmt{
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out: strings.new_builder(1000)
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out_imports: strings.new_builder(200)
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table: table
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indent: 0
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file: file
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}
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f.cur_mod = 'main'
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for i, stmt in file.stmts {
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// TODO `if stmt is ast.Import`
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match stmt {
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ast.Import {
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// Just remember the position of the imports for now
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f.import_pos = f.out.len
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// f.imports(f.file.imports)
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}
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else {}
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}
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||||
f.stmt(stmt)
|
||||
}
|
||||
// for comment in file.comments { println('$comment.line_nr $comment.text') }
|
||||
return f.out.str().trim_space() + '\n'
|
||||
f.imports(f.file.imports) // now that we have all autoimports, handle them
|
||||
res := f.out.str().trim_space() + '\n'
|
||||
return res[..f.import_pos] + f.out_imports.str() + res[f.import_pos..]
|
||||
}
|
||||
|
||||
/*
|
||||
|
@ -86,17 +101,19 @@ fn (f mut Fmt) imports(imports []ast.Import) {
|
|||
return
|
||||
}
|
||||
f.did_imports = true
|
||||
// f.import_pos = f.out.len
|
||||
if imports.len == 1 {
|
||||
imp_stmt_str := f.imp_stmt_str(imports[0])
|
||||
f.writeln('import ${imp_stmt_str}\n')
|
||||
f.out_imports.writeln('import ${imp_stmt_str}\n')
|
||||
} else if imports.len > 1 {
|
||||
f.writeln('import (')
|
||||
f.indent++
|
||||
f.out_imports.writeln('import (')
|
||||
// f.indent++
|
||||
for imp in imports {
|
||||
f.writeln(f.imp_stmt_str(imp))
|
||||
f.out_imports.write('\t')
|
||||
f.out_imports.writeln(f.imp_stmt_str(imp))
|
||||
}
|
||||
f.indent--
|
||||
f.writeln(')\n')
|
||||
// f.indent--
|
||||
f.out_imports.writeln(')\n')
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -306,7 +323,8 @@ fn (f mut Fmt) stmt(node ast.Stmt) {
|
|||
f.writeln('#$it.val')
|
||||
}
|
||||
ast.Import {
|
||||
f.imports(f.file.imports)
|
||||
// Imports are handled after the file is formatted, to automatically add necessary modules
|
||||
// f.imports(f.file.imports)
|
||||
}
|
||||
ast.Module {
|
||||
f.mod(it)
|
||||
|
@ -482,19 +500,7 @@ fn (f mut Fmt) expr(node ast.Expr) {
|
|||
f.write(')')
|
||||
}
|
||||
ast.CallExpr {
|
||||
if it.is_method {
|
||||
f.expr(it.left)
|
||||
f.write('.' + it.name + '(')
|
||||
f.call_args(it.args)
|
||||
f.write(')')
|
||||
f.or_expr(it.or_block)
|
||||
} else {
|
||||
name := short_module(it.name)
|
||||
f.write('${name}(')
|
||||
f.call_args(it.args)
|
||||
f.write(')')
|
||||
f.or_expr(it.or_block)
|
||||
}
|
||||
f.call_expr(it)
|
||||
}
|
||||
ast.CharLiteral {
|
||||
f.write('`$it.val`')
|
||||
|
@ -801,3 +807,40 @@ fn (f mut Fmt) if_expr(it ast.IfExpr) {
|
|||
f.write('}')
|
||||
f.single_line_if = false
|
||||
}
|
||||
|
||||
fn (f mut Fmt) call_expr(node ast.CallExpr) {
|
||||
if node.is_method {
|
||||
match node.left {
|
||||
ast.Ident {
|
||||
// `time.now()` without `time imported` is processed as a method call with `time` being
|
||||
// a `node.left` expression. Import `time` automatically.
|
||||
// TODO fetch all available modules
|
||||
if it.name in ['time', 'os', 'strings', 'math', 'json'] {
|
||||
if !(it.name in f.auto_imports) {
|
||||
f.auto_imports << it.name
|
||||
f.file.imports << ast.Import{
|
||||
mod: it.name
|
||||
alias: it.name
|
||||
}
|
||||
}
|
||||
println(it.name + '!!')
|
||||
for imp in f.file.imports {
|
||||
println(imp.mod)
|
||||
}
|
||||
}
|
||||
}
|
||||
else {}
|
||||
}
|
||||
f.expr(node.left)
|
||||
f.write('.' + node.name + '(')
|
||||
f.call_args(node.args)
|
||||
f.write(')')
|
||||
f.or_expr(node.or_block)
|
||||
} else {
|
||||
name := short_module(node.name)
|
||||
f.write('${name}(')
|
||||
f.call_args(node.args)
|
||||
f.write(')')
|
||||
f.or_expr(node.or_block)
|
||||
}
|
||||
}
|
||||
|
|
|
@ -338,6 +338,13 @@ fn (g mut Gen) stmt(node ast.Stmt) {
|
|||
// println('cgen.stmt()')
|
||||
// g.writeln('//// stmt start')
|
||||
match node {
|
||||
ast.InterfaceDecl {
|
||||
g.writeln('//interface')
|
||||
g.writeln('struct $it.name {')
|
||||
g.writeln('\tvoid* _object;')
|
||||
g.writeln('\tint _interface_idx;')
|
||||
g.writeln('};')
|
||||
}
|
||||
ast.AssertStmt {
|
||||
g.gen_assert_stmt(it)
|
||||
}
|
||||
|
@ -2339,6 +2346,7 @@ fn (g Gen) sort_structs(typesa []table.TypeSymbol) []table.TypeSymbol {
|
|||
field_deps << dep
|
||||
}
|
||||
}
|
||||
// table.Interface {}
|
||||
else {}
|
||||
}
|
||||
// add type and dependant types to graph
|
||||
|
|
|
@ -482,7 +482,16 @@ fn (p mut Parser) attribute() ast.Attr {
|
|||
if p.tok.kind == .key_if {
|
||||
p.next()
|
||||
}
|
||||
name := p.check_name()
|
||||
mut name := p.check_name()
|
||||
if p.tok.kind == .colon {
|
||||
p.next()
|
||||
if p.tok.kind == .name {
|
||||
name += p.check_name()
|
||||
} else if p.tok.kind == .string {
|
||||
name += p.tok.lit
|
||||
p.next()
|
||||
}
|
||||
}
|
||||
p.check(.rsbr)
|
||||
p.attr = name
|
||||
return ast.Attr{
|
||||
|
@ -1577,6 +1586,10 @@ fn (p mut Parser) struct_decl() ast.StructDecl {
|
|||
}
|
||||
has_default_expr = true
|
||||
}
|
||||
mut attr := ast.Attr{}
|
||||
if p.tok.kind == .lsbr {
|
||||
attr = p.attribute()
|
||||
}
|
||||
if p.tok.kind == .comment {
|
||||
comment = p.comment()
|
||||
}
|
||||
|
@ -1587,6 +1600,7 @@ fn (p mut Parser) struct_decl() ast.StructDecl {
|
|||
comment: comment
|
||||
default_expr: default_expr
|
||||
has_default_expr: has_default_expr
|
||||
attr: attr.name
|
||||
}
|
||||
fields << table.Field{
|
||||
name: field_name
|
||||
|
|
|
@ -24,14 +24,16 @@ fn (d Dog) name() string {
|
|||
|
||||
fn test_todo() {}
|
||||
|
||||
/*
|
||||
interface Speaker {
|
||||
name ()string
|
||||
speak()}
|
||||
speak()
|
||||
}
|
||||
|
||||
/*
|
||||
interface Speak2er {
|
||||
name ()string
|
||||
speak()}
|
||||
speak()
|
||||
}
|
||||
|
||||
struct Foo {
|
||||
speaker Speaker
|
||||
|
|
Loading…
Reference in New Issue