// Copyright 2009 The Go Authors. All rights reserved. // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. package utf8 import ( "fmt"; "io"; "testing"; "utf8"; ) type Utf8Map struct { rune int; str string; } var utf8map = []Utf8Map { Utf8Map{ 0x0000, "\x00" }, Utf8Map{ 0x0001, "\x01" }, Utf8Map{ 0x007e, "\x7e" }, Utf8Map{ 0x007f, "\x7f" }, Utf8Map{ 0x0080, "\xc2\x80" }, Utf8Map{ 0x0081, "\xc2\x81" }, Utf8Map{ 0x00bf, "\xc2\xbf" }, Utf8Map{ 0x00c0, "\xc3\x80" }, Utf8Map{ 0x00c1, "\xc3\x81" }, Utf8Map{ 0x00c8, "\xc3\x88" }, Utf8Map{ 0x00d0, "\xc3\x90" }, Utf8Map{ 0x00e0, "\xc3\xa0" }, Utf8Map{ 0x00f0, "\xc3\xb0" }, Utf8Map{ 0x00f8, "\xc3\xb8" }, Utf8Map{ 0x00ff, "\xc3\xbf" }, Utf8Map{ 0x0100, "\xc4\x80" }, Utf8Map{ 0x07ff, "\xdf\xbf" }, Utf8Map{ 0x0800, "\xe0\xa0\x80" }, Utf8Map{ 0x0801, "\xe0\xa0\x81" }, Utf8Map{ 0xfffe, "\xef\xbf\xbe" }, Utf8Map{ 0xffff, "\xef\xbf\xbf" }, Utf8Map{ 0x10000, "\xf0\x90\x80\x80" }, Utf8Map{ 0x10001, "\xf0\x90\x80\x81" }, Utf8Map{ 0x10fffe, "\xf4\x8f\xbf\xbe" }, Utf8Map{ 0x10ffff, "\xf4\x8f\xbf\xbf" }, } // io.StringBytes with one extra byte at end func bytes(s string) []byte { s += "\x00"; b := io.StringBytes(s); return b[0:len(s)-1]; } func TestFullRune(t *testing.T) { for i := 0; i < len(utf8map); i++ { m := utf8map[i]; b := bytes(m.str); if !utf8.FullRune(b) { t.Errorf("FullRune(%q) (rune %04x) = false, want true", b, m.rune); } s := "xx"+m.str; if !utf8.FullRuneInString(s, 2) { t.Errorf("FullRuneInString(%q, 2) (rune %04x) = false, want true", s, m.rune); } b1 := b[0:len(b)-1]; if utf8.FullRune(b1) { t.Errorf("FullRune(%q) = true, want false", b1); } s1 := "xxx"+string(b1); if utf8.FullRuneInString(s1, 3) { t.Errorf("FullRune(%q, 3) = true, want false", s1); } } } func equalBytes(a, b []byte) bool { if len(a) != len(b) { return false; } for i := 0; i < len(a); i++ { if a[i] != b[i] { return false; } } return true; } func TestEncodeRune(t *testing.T) { for i := 0; i < len(utf8map); i++ { m := utf8map[i]; b := bytes(m.str); var buf [10]byte; n := utf8.EncodeRune(m.rune, buf); b1 := buf[0:n]; if !equalBytes(b, b1) { t.Errorf("EncodeRune(0x%04x) = %q want %q", m.rune, b1, b); } } } func TestEncodeRuneToString(t *testing.T) { for i := 0; i < len(utf8map); i++ { m := utf8map[i]; s := m.str; s1 := utf8.EncodeRuneToString(m.rune); if s != s1 { t.Errorf("EncodeRuneToString(0x%04x) = %s want %s", m.rune, s1, s); } } } func TestDecodeRune(t *testing.T) { for i := 0; i < len(utf8map); i++ { m := utf8map[i]; b := bytes(m.str); rune, size := utf8.DecodeRune(b); if rune != m.rune || size != len(b) { t.Errorf("DecodeRune(%q) = 0x%04x, %d want 0x%04x, %d", b, rune, size, m.rune, len(b)); } s := "xx"+m.str; rune, size = utf8.DecodeRuneInString(s, 2); if rune != m.rune || size != len(b) { t.Errorf("DecodeRune(%q, 2) = 0x%04x, %d want 0x%04x, %d", s, rune, size, m.rune, len(b)); } // there's an extra byte that bytes left behind - make sure trailing byte works rune, size = utf8.DecodeRune(b[0:cap(b)]); if rune != m.rune || size != len(b) { t.Errorf("DecodeRune(%q) = 0x%04x, %d want 0x%04x, %d", b, rune, size, m.rune, len(b)); } s = "x"+m.str+"\x00"; rune, size = utf8.DecodeRuneInString(s, 1); if rune != m.rune || size != len(b) { t.Errorf("DecodeRuneInString(%q, 1) = 0x%04x, %d want 0x%04x, %d", s, rune, size, m.rune, len(b)); } // make sure missing bytes fail wantsize := 1; if wantsize >= len(b) { wantsize = 0; } rune, size = utf8.DecodeRune(b[0:len(b)-1]); if rune != RuneError || size != wantsize { t.Errorf("DecodeRune(%q) = 0x%04x, %d want 0x%04x, %d", b[0:len(b)-1], rune, size, RuneError, wantsize); } s = "xxx"+m.str[0:len(m.str)-1]; rune, size = utf8.DecodeRuneInString(s, 3); if rune != RuneError || size != wantsize { t.Errorf("DecodeRuneInString(%q, 3) = 0x%04x, %d want 0x%04x, %d", s, rune, size, RuneError, wantsize); } // make sure bad sequences fail if len(b) == 1 { b[0] = 0x80; } else { b[len(b)-1] = 0x7F; } rune, size = utf8.DecodeRune(b); if rune != RuneError || size != 1 { t.Errorf("DecodeRune(%q) = 0x%04x, %d want 0x%04x, %d", b, rune, size, RuneError, 1); } s = "xxxx"+string(b); rune, size = utf8.DecodeRune(b); if rune != RuneError || size != 1 { t.Errorf("DecodeRuneInString(%q, 4) = 0x%04x, %d want 0x%04x, %d", s, rune, size, RuneError, 1); } } } type RuneCountTest struct { in string; out int; } var runecounttests = []RuneCountTest { RuneCountTest{ "abcd", 4 }, RuneCountTest{ "☺☻☹", 3 }, RuneCountTest{ "1,2,3,4", 7 }, RuneCountTest{ "\xe2\x00", 2 }, } func TestRuneCount(t *testing.T) { for i := 0; i < len(runecounttests); i++ { tt := runecounttests[i]; if out := utf8.RuneCountInString(tt.in, 0, len(tt.in)); out != tt.out { t.Errorf("RuneCountInString(%q) = %d, want %d", tt.in, out, tt.out); } if out := utf8.RuneCount(bytes(tt.in)); out != tt.out { t.Errorf("RuneCount(%q) = %d, want %d", tt.in, out, tt.out); } } }