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scanner: fix new string interpolation println('{a}{b}{c}{d}') (#16258)
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@ -47,6 +47,7 @@ const verify_known_failing_exceptions = [
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'vlib/builtin/int_test.v' /* special number formatting that should be tested */,
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// TODOs and unfixed vfmt bugs
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'vlib/v/gen/js/tests/js.v', /* local `hello` fn, gets replaced with module `hello` aliased as `hl` */
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'vlib/v/tests/string_new_interpolation_test.v', /* new string interpolation */
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]
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const vfmt_verify_list = [
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@ -9,7 +9,7 @@ const (
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module eval
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import v.token
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import v.ast
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fn(e Eval)infix_expr(left Object,right Object,op token.Kind,expecting ast.Type)Object{match op{'
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fn(e Eval)infix_expr(left Object,right Object,op token.Kind,expecting ast.Type)Object{ match op{'
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footer = "else{ e.error('unknown infix expression: \$op')}}return empty // should e.error before this anyway
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}
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"
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@ -37,26 +37,26 @@ fn main() {
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b.write_string(header)
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for enm, op in comparison {
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b.write_string('.$enm{match left{')
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b.write_string('.$enm{ match left{')
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for ct in compound_types {
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b.write_string('$ct {match right{')
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b.write_string('$ct { match right{')
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for ct2 in compound_types {
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b.write_string('$ct2{return left.val${op}right.val}')
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b.write_string('$ct2{ return left.val${op}right.val}')
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}
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for lt2 in literal_types {
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b.write_string('$lt2{return left.val${op}right}')
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b.write_string('$lt2{ return left.val${op}right}')
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}
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b.write_string("else{ e.error('invalid operands to $op: $ct and \$right.type_name()')}}}")
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}
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for lt in literal_types {
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b.write_string('$lt {match right{')
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b.write_string('$lt { match right{')
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for ct2 in compound_types {
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b.write_string('$ct2{return left${op}right.val}')
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b.write_string('$ct2{ return left${op}right.val}')
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}
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for lt2 in literal_types {
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b.write_string('$lt2{return left${op}right}')
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b.write_string('$lt2{ return left${op}right}')
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}
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b.write_string("else {e.error('invalid operands to $op: ")
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b.write_string("else { e.error('invalid operands to $op: ")
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b.write_string(if lt == 'i64' { 'int' } else { 'float' })
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b.write_string(" literal and \$right.type_name()')}}}")
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}
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@ -66,12 +66,12 @@ fn main() {
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b.write_string("else { e.error('invalid operands to $op: \$left.type_name() and \$right.type_name()')}}}")
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}
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for math, op in math_ops {
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b.write_string('.$math{match left{')
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b.write_string('.$math{ match left{')
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for ct in compound_types {
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if op in ['<<', '>>'] && ct == 'Float' {
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continue
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}
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b.write_string('$ct {match right{')
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b.write_string('$ct { match right{')
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for ct2 in compound_types {
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if op in ['<<', '>>'] && ct2 == 'Float' {
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continue
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@ -117,13 +117,13 @@ fn main() {
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continue
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}
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unsafe_start, unsafe_end := if op in ['<<', '>>'] { 'unsafe{', '}' } else { '', '' }
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b.write_string('$lt2{if expecting in ast.signed_integer_type_idxs{ return Int{ i64(left)${op}i64(right),i8(e.type_to_size(expecting))}}else if expecting in ast.unsigned_integer_type_idxs{ return Uint{ u64(left)${op}u64(right),i8(e.type_to_size(expecting))}}else if expecting==ast.int_literal_type_idx{${unsafe_start}return i64(i64(left)${op}i64(right))$unsafe_end}')
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b.write_string('$lt2{ if expecting in ast.signed_integer_type_idxs{ return Int{ i64(left)${op}i64(right),i8(e.type_to_size(expecting))}}else if expecting in ast.unsigned_integer_type_idxs{ return Uint{ u64(left)${op}u64(right),i8(e.type_to_size(expecting))}}else if expecting==ast.int_literal_type_idx{${unsafe_start}return i64(i64(left)${op}i64(right))$unsafe_end}')
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if op !in ['<<', '>>'] {
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b.write_string('else if expecting in ast.float_type_idxs{ return Float{ f64(left)${op}f64(right), i8(e.type_to_size(expecting))}}else if expecting==ast.float_literal_type_idx{ return f64(f64(left)${op}f64(right))}')
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}
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b.write_string(uk_expect_footer)
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}
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b.write_string("else {e.error('invalid operands to $op: ")
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b.write_string("else { e.error('invalid operands to $op: ")
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b.write_string(if lt == 'i64' { 'int' } else { 'float' })
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b.write_string(" literal and \$right.type_name()')}}}")
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}
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@ -1214,7 +1214,7 @@ fn (mut s Scanner) ident_string() string {
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u_escapes_pos << s.pos - 1
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}
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}
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// ${var} (ignore in vfmt mode) (skip \$)
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// '${var}' (ignore in vfmt mode) (skip \$)
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if prevc == `$` && c == `{` && !is_raw
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&& s.count_symbol_before(s.pos - 2, scanner.backslash) % 2 == 0 {
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s.is_inside_string = true
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@ -1223,7 +1223,7 @@ fn (mut s Scanner) ident_string() string {
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s.pos -= 2
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break
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}
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// $var
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// '$var'
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if prevc == `$` && util.is_name_char(c) && !is_raw
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&& s.count_symbol_before(s.pos - 2, scanner.backslash) % 2 == 0 {
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s.is_inside_string = true
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@ -1231,7 +1231,7 @@ fn (mut s Scanner) ident_string() string {
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s.pos -= 2
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break
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}
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// {var} (ignore in vfmt mode) (skip \{)
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// '{var}' (ignore in vfmt mode) (skip \{)
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if c == `{` && util.is_name_char(s.text[s.pos + 1]) && prevc != `$` && !is_raw
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&& s.count_symbol_before(s.pos - 1, scanner.backslash) % 2 == 0 {
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// Detect certain strings with "{" that are not interpolation:
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@ -1258,6 +1258,33 @@ fn (mut s Scanner) ident_string() string {
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break
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}
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}
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// '{var1}{var2}'
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if prevc == `{` && util.is_name_char(c) && s.text[s.pos - 2] !in [`$`, `{`] && !is_raw
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&& s.count_symbol_before(s.pos - 2, scanner.backslash) % 2 == 0 {
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// Detect certain strings with "{" that are not interpolation:
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// e.g. "{init: " (no "}" at the end)
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mut is_valid_inter := true
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for i := s.pos; i < s.text.len; i++ {
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if s.text[i] == `}` {
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// No } in this string, so it's not a valid `{x}` interpolation
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break
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}
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if s.text[i] in [`=`, `:`, `\n`, s.inter_quote] {
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// We reached the end of the line or string without reaching "}".
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// Also if there's "=", there's no way it's a valid interpolation expression:
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// e.g. `println("{a.b = 42}")` `println('{foo:bar}')`
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is_valid_inter = false
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break
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}
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}
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if is_valid_inter {
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s.is_inside_string = true
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s.is_enclosed_inter = true
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// so that s.pos points to $ at the next step
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s.pos -= 2
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break
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}
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}
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if c != scanner.backslash {
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backslash_count = 0
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}
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9
vlib/v/tests/string_new_interpolation_test.v
Normal file
9
vlib/v/tests/string_new_interpolation_test.v
Normal file
@ -0,0 +1,9 @@
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fn test_string_new_interpolation() {
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a, b, c, d := 1, 2, 3, 4
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println('{a}{b}{c}{d}')
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assert '{a}{b}{c}{d}' == '1234'
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println('{a} {b} {c} {d}')
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assert '{a} {b} {c} {d}' == '1 2 3 4'
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}
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