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      1 // Copyright 2009 The Go Authors. All rights reserved.
      2 // Use of this source code is governed by a BSD-style
      3 // license that can be found in the LICENSE file.
      4 
      5 // +build ignore
      6 
      7 // Unicode table generator.
      8 // Data read from the web.
      9 
     10 package main
     11 
     12 import (
     13 	"bufio"
     14 	"flag"
     15 	"fmt"
     16 	"io"
     17 	"log"
     18 	"net/http"
     19 	"os"
     20 	"os/exec"
     21 	"path/filepath"
     22 	"regexp"
     23 	"sort"
     24 	"strconv"
     25 	"strings"
     26 	"unicode"
     27 )
     28 
     29 func main() {
     30 	flag.Parse()
     31 	setupOutput()
     32 	loadChars() // always needed
     33 	loadCasefold()
     34 	printCategories()
     35 	printScriptOrProperty(false)
     36 	printScriptOrProperty(true)
     37 	printCases()
     38 	printLatinProperties()
     39 	printCasefold()
     40 	printSizes()
     41 	flushOutput()
     42 }
     43 
     44 var dataURL = flag.String("data", "", "full URL for UnicodeData.txt; defaults to --url/UnicodeData.txt")
     45 var casefoldingURL = flag.String("casefolding", "", "full URL for CaseFolding.txt; defaults to --url/CaseFolding.txt")
     46 var url = flag.String("url",
     47 	"http://www.unicode.org/Public/8.0.0/ucd/",
     48 	"URL of Unicode database directory")
     49 var tablelist = flag.String("tables",
     50 	"all",
     51 	"comma-separated list of which tables to generate; can be letter")
     52 var scriptlist = flag.String("scripts",
     53 	"all",
     54 	"comma-separated list of which script tables to generate")
     55 var proplist = flag.String("props",
     56 	"all",
     57 	"comma-separated list of which property tables to generate")
     58 var cases = flag.Bool("cases",
     59 	true,
     60 	"generate case tables")
     61 var test = flag.Bool("test",
     62 	false,
     63 	"test existing tables; can be used to compare web data with package data")
     64 var localFiles = flag.Bool("local",
     65 	false,
     66 	"data files have been copied to current directory; for debugging only")
     67 var outputFile = flag.String("output",
     68 	"",
     69 	"output file for generated tables; default stdout")
     70 
     71 var scriptRe = regexp.MustCompile(`^([0-9A-F]+)(\.\.[0-9A-F]+)? *; ([A-Za-z_]+)$`)
     72 var logger = log.New(os.Stderr, "", log.Lshortfile)
     73 
     74 var output *bufio.Writer // points to os.Stdout or to "gofmt > outputFile"
     75 
     76 func setupOutput() {
     77 	output = bufio.NewWriter(startGofmt())
     78 }
     79 
     80 // startGofmt connects output to a gofmt process if -output is set.
     81 func startGofmt() io.Writer {
     82 	if *outputFile == "" {
     83 		return os.Stdout
     84 	}
     85 	stdout, err := os.Create(*outputFile)
     86 	if err != nil {
     87 		logger.Fatal(err)
     88 	}
     89 	// Pipe output to gofmt.
     90 	gofmt := exec.Command("gofmt")
     91 	fd, err := gofmt.StdinPipe()
     92 	if err != nil {
     93 		logger.Fatal(err)
     94 	}
     95 	gofmt.Stdout = stdout
     96 	gofmt.Stderr = os.Stderr
     97 	err = gofmt.Start()
     98 	if err != nil {
     99 		logger.Fatal(err)
    100 	}
    101 	return fd
    102 }
    103 
    104 func flushOutput() {
    105 	err := output.Flush()
    106 	if err != nil {
    107 		logger.Fatal(err)
    108 	}
    109 }
    110 
    111 func printf(format string, args ...interface{}) {
    112 	fmt.Fprintf(output, format, args...)
    113 }
    114 
    115 func print(args ...interface{}) {
    116 	fmt.Fprint(output, args...)
    117 }
    118 
    119 func println(args ...interface{}) {
    120 	fmt.Fprintln(output, args...)
    121 }
    122 
    123 type reader struct {
    124 	*bufio.Reader
    125 	fd   *os.File
    126 	resp *http.Response
    127 }
    128 
    129 func open(url string) *reader {
    130 	file := filepath.Base(url)
    131 	if *localFiles {
    132 		fd, err := os.Open(file)
    133 		if err != nil {
    134 			logger.Fatal(err)
    135 		}
    136 		return &reader{bufio.NewReader(fd), fd, nil}
    137 	}
    138 	resp, err := http.Get(url)
    139 	if err != nil {
    140 		logger.Fatal(err)
    141 	}
    142 	if resp.StatusCode != 200 {
    143 		logger.Fatalf("bad GET status for %s: %d", file, resp.Status)
    144 	}
    145 	return &reader{bufio.NewReader(resp.Body), nil, resp}
    146 
    147 }
    148 
    149 func (r *reader) close() {
    150 	if r.fd != nil {
    151 		r.fd.Close()
    152 	} else {
    153 		r.resp.Body.Close()
    154 	}
    155 }
    156 
    157 var category = map[string]bool{
    158 	// Nd Lu etc.
    159 	// We use one-character names to identify merged categories
    160 	"L": true, // Lu Ll Lt Lm Lo
    161 	"P": true, // Pc Pd Ps Pe Pu Pf Po
    162 	"M": true, // Mn Mc Me
    163 	"N": true, // Nd Nl No
    164 	"S": true, // Sm Sc Sk So
    165 	"Z": true, // Zs Zl Zp
    166 	"C": true, // Cc Cf Cs Co Cn
    167 }
    168 
    169 // UnicodeData.txt has form:
    170 //	0037;DIGIT SEVEN;Nd;0;EN;;7;7;7;N;;;;;
    171 //	007A;LATIN SMALL LETTER Z;Ll;0;L;;;;;N;;;005A;;005A
    172 // See http://www.unicode.org/reports/tr44/ for a full explanation
    173 // The fields:
    174 const (
    175 	FCodePoint = iota
    176 	FName
    177 	FGeneralCategory
    178 	FCanonicalCombiningClass
    179 	FBidiClass
    180 	FDecompositionTypeAndMapping
    181 	FNumericType
    182 	FNumericDigit // If a decimal digit.
    183 	FNumericValue // Includes non-decimal, e.g. U+2155=1/5
    184 	FBidiMirrored
    185 	FUnicode1Name
    186 	FISOComment
    187 	FSimpleUppercaseMapping
    188 	FSimpleLowercaseMapping
    189 	FSimpleTitlecaseMapping
    190 	NumField
    191 
    192 	MaxChar = 0x10FFFF // anything above this shouldn't exist
    193 )
    194 
    195 var fieldName = []string{
    196 	FCodePoint:                   "CodePoint",
    197 	FName:                        "Name",
    198 	FGeneralCategory:             "GeneralCategory",
    199 	FCanonicalCombiningClass:     "CanonicalCombiningClass",
    200 	FBidiClass:                   "BidiClass",
    201 	FDecompositionTypeAndMapping: "DecompositionTypeAndMapping",
    202 	FNumericType:                 "NumericType",
    203 	FNumericDigit:                "NumericDigit",
    204 	FNumericValue:                "NumericValue",
    205 	FBidiMirrored:                "BidiMirrored",
    206 	FUnicode1Name:                "Unicode1Name",
    207 	FISOComment:                  "ISOComment",
    208 	FSimpleUppercaseMapping:      "SimpleUppercaseMapping",
    209 	FSimpleLowercaseMapping:      "SimpleLowercaseMapping",
    210 	FSimpleTitlecaseMapping:      "SimpleTitlecaseMapping",
    211 }
    212 
    213 // This contains only the properties we're interested in.
    214 type Char struct {
    215 	field     []string // debugging only; could be deleted if we take out char.dump()
    216 	codePoint rune     // if zero, this index is not a valid code point.
    217 	category  string
    218 	upperCase rune
    219 	lowerCase rune
    220 	titleCase rune
    221 	foldCase  rune // simple case folding
    222 	caseOrbit rune // next in simple case folding orbit
    223 }
    224 
    225 // Scripts.txt has form:
    226 //	A673          ; Cyrillic # Po       SLAVONIC ASTERISK
    227 //	A67C..A67D    ; Cyrillic # Mn   [2] COMBINING CYRILLIC KAVYKA..COMBINING CYRILLIC PAYEROK
    228 // See http://www.unicode.org/Public/5.1.0/ucd/UCD.html for full explanation
    229 
    230 type Script struct {
    231 	lo, hi uint32 // range of code points
    232 	script string
    233 }
    234 
    235 var chars = make([]Char, MaxChar+1)
    236 var scripts = make(map[string][]Script)
    237 var props = make(map[string][]Script) // a property looks like a script; can share the format
    238 
    239 var lastChar rune = 0
    240 
    241 // In UnicodeData.txt, some ranges are marked like this:
    242 //	3400;<CJK Ideograph Extension A, First>;Lo;0;L;;;;;N;;;;;
    243 //	4DB5;<CJK Ideograph Extension A, Last>;Lo;0;L;;;;;N;;;;;
    244 // parseCategory returns a state variable indicating the weirdness.
    245 type State int
    246 
    247 const (
    248 	SNormal State = iota // known to be zero for the type
    249 	SFirst
    250 	SLast
    251 	SMissing
    252 )
    253 
    254 func parseCategory(line string) (state State) {
    255 	field := strings.Split(line, ";")
    256 	if len(field) != NumField {
    257 		logger.Fatalf("%5s: %d fields (expected %d)\n", line, len(field), NumField)
    258 	}
    259 	point, err := strconv.ParseUint(field[FCodePoint], 16, 64)
    260 	if err != nil {
    261 		logger.Fatalf("%.5s...: %s", line, err)
    262 	}
    263 	lastChar = rune(point)
    264 	if point == 0 {
    265 		return // not interesting and we use 0 as unset
    266 	}
    267 	if point > MaxChar {
    268 		return
    269 	}
    270 	char := &chars[point]
    271 	char.field = field
    272 	if char.codePoint != 0 {
    273 		logger.Fatalf("point %U reused", point)
    274 	}
    275 	char.codePoint = lastChar
    276 	char.category = field[FGeneralCategory]
    277 	category[char.category] = true
    278 	switch char.category {
    279 	case "Nd":
    280 		// Decimal digit
    281 		_, err := strconv.Atoi(field[FNumericValue])
    282 		if err != nil {
    283 			logger.Fatalf("%U: bad numeric field: %s", point, err)
    284 		}
    285 	case "Lu":
    286 		char.letter(field[FCodePoint], field[FSimpleLowercaseMapping], field[FSimpleTitlecaseMapping])
    287 	case "Ll":
    288 		char.letter(field[FSimpleUppercaseMapping], field[FCodePoint], field[FSimpleTitlecaseMapping])
    289 	case "Lt":
    290 		char.letter(field[FSimpleUppercaseMapping], field[FSimpleLowercaseMapping], field[FCodePoint])
    291 	default:
    292 		char.letter(field[FSimpleUppercaseMapping], field[FSimpleLowercaseMapping], field[FSimpleTitlecaseMapping])
    293 	}
    294 	switch {
    295 	case strings.Index(field[FName], ", First>") > 0:
    296 		state = SFirst
    297 	case strings.Index(field[FName], ", Last>") > 0:
    298 		state = SLast
    299 	}
    300 	return
    301 }
    302 
    303 func (char *Char) dump(s string) {
    304 	print(s, " ")
    305 	for i := 0; i < len(char.field); i++ {
    306 		printf("%s:%q ", fieldName[i], char.field[i])
    307 	}
    308 	print("\n")
    309 }
    310 
    311 func (char *Char) letter(u, l, t string) {
    312 	char.upperCase = char.letterValue(u, "U")
    313 	char.lowerCase = char.letterValue(l, "L")
    314 	char.titleCase = char.letterValue(t, "T")
    315 }
    316 
    317 func (char *Char) letterValue(s string, cas string) rune {
    318 	if s == "" {
    319 		return 0
    320 	}
    321 	v, err := strconv.ParseUint(s, 16, 64)
    322 	if err != nil {
    323 		char.dump(cas)
    324 		logger.Fatalf("%U: bad letter(%s): %s", char.codePoint, s, err)
    325 	}
    326 	return rune(v)
    327 }
    328 
    329 func allCategories() []string {
    330 	a := make([]string, 0, len(category))
    331 	for k := range category {
    332 		a = append(a, k)
    333 	}
    334 	sort.Strings(a)
    335 	return a
    336 }
    337 
    338 func all(scripts map[string][]Script) []string {
    339 	a := make([]string, 0, len(scripts))
    340 	for k := range scripts {
    341 		a = append(a, k)
    342 	}
    343 	sort.Strings(a)
    344 	return a
    345 }
    346 
    347 func allCatFold(m map[string]map[rune]bool) []string {
    348 	a := make([]string, 0, len(m))
    349 	for k := range m {
    350 		a = append(a, k)
    351 	}
    352 	sort.Strings(a)
    353 	return a
    354 }
    355 
    356 // Extract the version number from the URL
    357 func version() string {
    358 	// Break on slashes and look for the first numeric field
    359 	fields := strings.Split(*url, "/")
    360 	for _, f := range fields {
    361 		if len(f) > 0 && '0' <= f[0] && f[0] <= '9' {
    362 			return f
    363 		}
    364 	}
    365 	logger.Fatal("unknown version")
    366 	return "Unknown"
    367 }
    368 
    369 func categoryOp(code rune, class uint8) bool {
    370 	category := chars[code].category
    371 	return len(category) > 0 && category[0] == class
    372 }
    373 
    374 func loadChars() {
    375 	if *dataURL == "" {
    376 		flag.Set("data", *url+"UnicodeData.txt")
    377 	}
    378 	input := open(*dataURL)
    379 	defer input.close()
    380 	scanner := bufio.NewScanner(input)
    381 	var first rune = 0
    382 	for scanner.Scan() {
    383 		switch parseCategory(scanner.Text()) {
    384 		case SNormal:
    385 			if first != 0 {
    386 				logger.Fatalf("bad state normal at %U", lastChar)
    387 			}
    388 		case SFirst:
    389 			if first != 0 {
    390 				logger.Fatalf("bad state first at %U", lastChar)
    391 			}
    392 			first = lastChar
    393 		case SLast:
    394 			if first == 0 {
    395 				logger.Fatalf("bad state last at %U", lastChar)
    396 			}
    397 			for i := first + 1; i <= lastChar; i++ {
    398 				chars[i] = chars[first]
    399 				chars[i].codePoint = i
    400 			}
    401 			first = 0
    402 		}
    403 	}
    404 	if scanner.Err() != nil {
    405 		logger.Fatal(scanner.Err())
    406 	}
    407 }
    408 
    409 func loadCasefold() {
    410 	if *casefoldingURL == "" {
    411 		flag.Set("casefolding", *url+"CaseFolding.txt")
    412 	}
    413 	input := open(*casefoldingURL)
    414 	defer input.close()
    415 	scanner := bufio.NewScanner(input)
    416 	for scanner.Scan() {
    417 		line := scanner.Text()
    418 		if len(line) == 0 || line[0] == '#' || len(strings.TrimSpace(line)) == 0 {
    419 			continue
    420 		}
    421 		field := strings.Split(line, "; ")
    422 		if len(field) != 4 {
    423 			logger.Fatalf("CaseFolding.txt %.5s...: %d fields (expected %d)\n", line, len(field), 4)
    424 		}
    425 		kind := field[1]
    426 		if kind != "C" && kind != "S" {
    427 			// Only care about 'common' and 'simple' foldings.
    428 			continue
    429 		}
    430 		p1, err := strconv.ParseUint(field[0], 16, 64)
    431 		if err != nil {
    432 			logger.Fatalf("CaseFolding.txt %.5s...: %s", line, err)
    433 		}
    434 		p2, err := strconv.ParseUint(field[2], 16, 64)
    435 		if err != nil {
    436 			logger.Fatalf("CaseFolding.txt %.5s...: %s", line, err)
    437 		}
    438 		chars[p1].foldCase = rune(p2)
    439 	}
    440 	if scanner.Err() != nil {
    441 		logger.Fatal(scanner.Err())
    442 	}
    443 }
    444 
    445 const progHeader = `// Copyright 2013 The Go Authors. All rights reserved.
    446 // Use of this source code is governed by a BSD-style
    447 // license that can be found in the LICENSE file.
    448 
    449 // Generated by running
    450 //	maketables --tables=%s --data=%s --casefolding=%s
    451 // DO NOT EDIT
    452 
    453 package unicode
    454 
    455 `
    456 
    457 func printCategories() {
    458 	if *tablelist == "" {
    459 		return
    460 	}
    461 	// Find out which categories to dump
    462 	list := strings.Split(*tablelist, ",")
    463 	if *tablelist == "all" {
    464 		list = allCategories()
    465 	}
    466 	if *test {
    467 		fullCategoryTest(list)
    468 		return
    469 	}
    470 	printf(progHeader, *tablelist, *dataURL, *casefoldingURL)
    471 
    472 	println("// Version is the Unicode edition from which the tables are derived.")
    473 	printf("const Version = %q\n\n", version())
    474 
    475 	if *tablelist == "all" {
    476 		println("// Categories is the set of Unicode category tables.")
    477 		println("var Categories = map[string] *RangeTable {")
    478 		for _, k := range allCategories() {
    479 			printf("\t%q: %s,\n", k, k)
    480 		}
    481 		print("}\n\n")
    482 	}
    483 
    484 	decl := make(sort.StringSlice, len(list))
    485 	ndecl := 0
    486 	for _, name := range list {
    487 		if _, ok := category[name]; !ok {
    488 			logger.Fatal("unknown category", name)
    489 		}
    490 		// We generate an UpperCase name to serve as concise documentation and an _UnderScored
    491 		// name to store the data.  This stops godoc dumping all the tables but keeps them
    492 		// available to clients.
    493 		// Cases deserving special comments
    494 		varDecl := ""
    495 		switch name {
    496 		case "C":
    497 			varDecl = "\tOther = _C;	// Other/C is the set of Unicode control and special characters, category C.\n"
    498 			varDecl += "\tC = _C\n"
    499 		case "L":
    500 			varDecl = "\tLetter = _L;	// Letter/L is the set of Unicode letters, category L.\n"
    501 			varDecl += "\tL = _L\n"
    502 		case "M":
    503 			varDecl = "\tMark = _M;	// Mark/M is the set of Unicode mark characters, category M.\n"
    504 			varDecl += "\tM = _M\n"
    505 		case "N":
    506 			varDecl = "\tNumber = _N;	// Number/N is the set of Unicode number characters, category N.\n"
    507 			varDecl += "\tN = _N\n"
    508 		case "P":
    509 			varDecl = "\tPunct = _P;	// Punct/P is the set of Unicode punctuation characters, category P.\n"
    510 			varDecl += "\tP = _P\n"
    511 		case "S":
    512 			varDecl = "\tSymbol = _S;	// Symbol/S is the set of Unicode symbol characters, category S.\n"
    513 			varDecl += "\tS = _S\n"
    514 		case "Z":
    515 			varDecl = "\tSpace = _Z;	// Space/Z is the set of Unicode space characters, category Z.\n"
    516 			varDecl += "\tZ = _Z\n"
    517 		case "Nd":
    518 			varDecl = "\tDigit = _Nd;	// Digit is the set of Unicode characters with the \"decimal digit\" property.\n"
    519 		case "Lu":
    520 			varDecl = "\tUpper = _Lu;	// Upper is the set of Unicode upper case letters.\n"
    521 		case "Ll":
    522 			varDecl = "\tLower = _Ll;	// Lower is the set of Unicode lower case letters.\n"
    523 		case "Lt":
    524 			varDecl = "\tTitle = _Lt;	// Title is the set of Unicode title case letters.\n"
    525 		}
    526 		if len(name) > 1 {
    527 			varDecl += fmt.Sprintf(
    528 				"\t%s = _%s;	// %s is the set of Unicode characters in category %s.\n",
    529 				name, name, name, name)
    530 		}
    531 		decl[ndecl] = varDecl
    532 		ndecl++
    533 		if len(name) == 1 { // unified categories
    534 			decl := fmt.Sprintf("var _%s = &RangeTable{\n", name)
    535 			dumpRange(
    536 				decl,
    537 				func(code rune) bool { return categoryOp(code, name[0]) })
    538 			continue
    539 		}
    540 		dumpRange(
    541 			fmt.Sprintf("var _%s = &RangeTable{\n", name),
    542 			func(code rune) bool { return chars[code].category == name })
    543 	}
    544 	decl.Sort()
    545 	println("// These variables have type *RangeTable.")
    546 	println("var (")
    547 	for _, d := range decl {
    548 		print(d)
    549 	}
    550 	print(")\n\n")
    551 }
    552 
    553 type Op func(code rune) bool
    554 
    555 const format = "\t\t{0x%04x, 0x%04x, %d},\n"
    556 
    557 func dumpRange(header string, inCategory Op) {
    558 	print(header)
    559 	next := rune(0)
    560 	latinOffset := 0
    561 	print("\tR16: []Range16{\n")
    562 	// one Range for each iteration
    563 	count := &range16Count
    564 	size := 16
    565 	for {
    566 		// look for start of range
    567 		for next < rune(len(chars)) && !inCategory(next) {
    568 			next++
    569 		}
    570 		if next >= rune(len(chars)) {
    571 			// no characters remain
    572 			break
    573 		}
    574 
    575 		// start of range
    576 		lo := next
    577 		hi := next
    578 		stride := rune(1)
    579 		// accept lo
    580 		next++
    581 		// look for another character to set the stride
    582 		for next < rune(len(chars)) && !inCategory(next) {
    583 			next++
    584 		}
    585 		if next >= rune(len(chars)) {
    586 			// no more characters
    587 			printf(format, lo, hi, stride)
    588 			break
    589 		}
    590 		// set stride
    591 		stride = next - lo
    592 		// check for length of run. next points to first jump in stride
    593 		for i := next; i < rune(len(chars)); i++ {
    594 			if inCategory(i) == (((i - lo) % stride) == 0) {
    595 				// accept
    596 				if inCategory(i) {
    597 					hi = i
    598 				}
    599 			} else {
    600 				// no more characters in this run
    601 				break
    602 			}
    603 		}
    604 		if uint32(hi) <= unicode.MaxLatin1 {
    605 			latinOffset++
    606 		}
    607 		size, count = printRange(uint32(lo), uint32(hi), uint32(stride), size, count)
    608 		// next range: start looking where this range ends
    609 		next = hi + 1
    610 	}
    611 	print("\t},\n")
    612 	if latinOffset > 0 {
    613 		printf("\tLatinOffset: %d,\n", latinOffset)
    614 	}
    615 	print("}\n\n")
    616 }
    617 
    618 func printRange(lo, hi, stride uint32, size int, count *int) (int, *int) {
    619 	if size == 16 && hi >= 1<<16 {
    620 		if lo < 1<<16 {
    621 			if lo+stride != hi {
    622 				logger.Fatalf("unexpected straddle: %U %U %d", lo, hi, stride)
    623 			}
    624 			// No range contains U+FFFF as an instance, so split
    625 			// the range into two entries. That way we can maintain
    626 			// the invariant that R32 contains only >= 1<<16.
    627 			printf(format, lo, lo, 1)
    628 			lo = hi
    629 			stride = 1
    630 			*count++
    631 		}
    632 		print("\t},\n")
    633 		print("\tR32: []Range32{\n")
    634 		size = 32
    635 		count = &range32Count
    636 	}
    637 	printf(format, lo, hi, stride)
    638 	*count++
    639 	return size, count
    640 }
    641 
    642 func fullCategoryTest(list []string) {
    643 	for _, name := range list {
    644 		if _, ok := category[name]; !ok {
    645 			logger.Fatal("unknown category", name)
    646 		}
    647 		r, ok := unicode.Categories[name]
    648 		if !ok && len(name) > 1 {
    649 			logger.Fatalf("unknown table %q", name)
    650 		}
    651 		if len(name) == 1 {
    652 			verifyRange(name, func(code rune) bool { return categoryOp(code, name[0]) }, r)
    653 		} else {
    654 			verifyRange(
    655 				name,
    656 				func(code rune) bool { return chars[code].category == name },
    657 				r)
    658 		}
    659 	}
    660 }
    661 
    662 func verifyRange(name string, inCategory Op, table *unicode.RangeTable) {
    663 	count := 0
    664 	for j := range chars {
    665 		i := rune(j)
    666 		web := inCategory(i)
    667 		pkg := unicode.Is(table, i)
    668 		if web != pkg {
    669 			fmt.Fprintf(os.Stderr, "%s: %U: web=%t pkg=%t\n", name, i, web, pkg)
    670 			count++
    671 			if count > 10 {
    672 				break
    673 			}
    674 		}
    675 	}
    676 }
    677 
    678 func parseScript(line string, scripts map[string][]Script) {
    679 	comment := strings.Index(line, "#")
    680 	if comment >= 0 {
    681 		line = line[0:comment]
    682 	}
    683 	line = strings.TrimSpace(line)
    684 	if len(line) == 0 {
    685 		return
    686 	}
    687 	field := strings.Split(line, ";")
    688 	if len(field) != 2 {
    689 		logger.Fatalf("%s: %d fields (expected 2)\n", line, len(field))
    690 	}
    691 	matches := scriptRe.FindStringSubmatch(line)
    692 	if len(matches) != 4 {
    693 		logger.Fatalf("%s: %d matches (expected 3)\n", line, len(matches))
    694 	}
    695 	lo, err := strconv.ParseUint(matches[1], 16, 64)
    696 	if err != nil {
    697 		logger.Fatalf("%.5s...: %s", line, err)
    698 	}
    699 	hi := lo
    700 	if len(matches[2]) > 2 { // ignore leading ..
    701 		hi, err = strconv.ParseUint(matches[2][2:], 16, 64)
    702 		if err != nil {
    703 			logger.Fatalf("%.5s...: %s", line, err)
    704 		}
    705 	}
    706 	name := matches[3]
    707 	scripts[name] = append(scripts[name], Script{uint32(lo), uint32(hi), name})
    708 }
    709 
    710 // The script tables have a lot of adjacent elements. Fold them together.
    711 func foldAdjacent(r []Script) []unicode.Range32 {
    712 	s := make([]unicode.Range32, 0, len(r))
    713 	j := 0
    714 	for i := 0; i < len(r); i++ {
    715 		if j > 0 && r[i].lo == s[j-1].Hi+1 {
    716 			s[j-1].Hi = r[i].hi
    717 		} else {
    718 			s = s[0 : j+1]
    719 			s[j] = unicode.Range32{
    720 				Lo:     uint32(r[i].lo),
    721 				Hi:     uint32(r[i].hi),
    722 				Stride: 1,
    723 			}
    724 			j++
    725 		}
    726 	}
    727 	return s
    728 }
    729 
    730 func fullScriptTest(list []string, installed map[string]*unicode.RangeTable, scripts map[string][]Script) {
    731 	for _, name := range list {
    732 		if _, ok := scripts[name]; !ok {
    733 			logger.Fatal("unknown script", name)
    734 		}
    735 		_, ok := installed[name]
    736 		if !ok {
    737 			logger.Fatal("unknown table", name)
    738 		}
    739 		for _, script := range scripts[name] {
    740 			for r := script.lo; r <= script.hi; r++ {
    741 				if !unicode.Is(installed[name], rune(r)) {
    742 					fmt.Fprintf(os.Stderr, "%U: not in script %s\n", r, name)
    743 				}
    744 			}
    745 		}
    746 	}
    747 }
    748 
    749 // PropList.txt has the same format as Scripts.txt so we can share its parser.
    750 func printScriptOrProperty(doProps bool) {
    751 	flag := "scripts"
    752 	flaglist := *scriptlist
    753 	file := "Scripts.txt"
    754 	table := scripts
    755 	installed := unicode.Scripts
    756 	if doProps {
    757 		flag = "props"
    758 		flaglist = *proplist
    759 		file = "PropList.txt"
    760 		table = props
    761 		installed = unicode.Properties
    762 	}
    763 	if flaglist == "" {
    764 		return
    765 	}
    766 	input := open(*url + file)
    767 	scanner := bufio.NewScanner(input)
    768 	for scanner.Scan() {
    769 		parseScript(scanner.Text(), table)
    770 	}
    771 	if scanner.Err() != nil {
    772 		logger.Fatal(scanner.Err())
    773 	}
    774 	input.close()
    775 
    776 	// Find out which scripts to dump
    777 	list := strings.Split(flaglist, ",")
    778 	if flaglist == "all" {
    779 		list = all(table)
    780 	}
    781 	if *test {
    782 		fullScriptTest(list, installed, table)
    783 		return
    784 	}
    785 
    786 	printf(
    787 		"// Generated by running\n"+
    788 			"//	maketables --%s=%s --url=%s\n"+
    789 			"// DO NOT EDIT\n\n",
    790 		flag,
    791 		flaglist,
    792 		*url)
    793 	if flaglist == "all" {
    794 		if doProps {
    795 			println("// Properties is the set of Unicode property tables.")
    796 			println("var Properties = map[string] *RangeTable{")
    797 		} else {
    798 			println("// Scripts is the set of Unicode script tables.")
    799 			println("var Scripts = map[string] *RangeTable{")
    800 		}
    801 		for _, k := range all(table) {
    802 			printf("\t%q: %s,\n", k, k)
    803 		}
    804 		print("}\n\n")
    805 	}
    806 
    807 	decl := make(sort.StringSlice, len(list))
    808 	ndecl := 0
    809 	for _, name := range list {
    810 		if doProps {
    811 			decl[ndecl] = fmt.Sprintf(
    812 				"\t%s = _%s;\t// %s is the set of Unicode characters with property %s.\n",
    813 				name, name, name, name)
    814 		} else {
    815 			decl[ndecl] = fmt.Sprintf(
    816 				"\t%s = _%s;\t// %s is the set of Unicode characters in script %s.\n",
    817 				name, name, name, name)
    818 		}
    819 		ndecl++
    820 		printf("var _%s = &RangeTable {\n", name)
    821 		ranges := foldAdjacent(table[name])
    822 		print("\tR16: []Range16{\n")
    823 		size := 16
    824 		count := &range16Count
    825 		for _, s := range ranges {
    826 			size, count = printRange(s.Lo, s.Hi, s.Stride, size, count)
    827 		}
    828 		print("\t},\n")
    829 		if off := findLatinOffset(ranges); off > 0 {
    830 			printf("\tLatinOffset: %d,\n", off)
    831 		}
    832 		print("}\n\n")
    833 	}
    834 	decl.Sort()
    835 	println("// These variables have type *RangeTable.")
    836 	println("var (")
    837 	for _, d := range decl {
    838 		print(d)
    839 	}
    840 	print(")\n\n")
    841 }
    842 
    843 func findLatinOffset(ranges []unicode.Range32) int {
    844 	i := 0
    845 	for i < len(ranges) && ranges[i].Hi <= unicode.MaxLatin1 {
    846 		i++
    847 	}
    848 	return i
    849 }
    850 
    851 const (
    852 	CaseUpper = 1 << iota
    853 	CaseLower
    854 	CaseTitle
    855 	CaseNone    = 0  // must be zero
    856 	CaseMissing = -1 // character not present; not a valid case state
    857 )
    858 
    859 type caseState struct {
    860 	point        rune
    861 	_case        int
    862 	deltaToUpper rune
    863 	deltaToLower rune
    864 	deltaToTitle rune
    865 }
    866 
    867 // Is d a continuation of the state of c?
    868 func (c *caseState) adjacent(d *caseState) bool {
    869 	if d.point < c.point {
    870 		c, d = d, c
    871 	}
    872 	switch {
    873 	case d.point != c.point+1: // code points not adjacent (shouldn't happen)
    874 		return false
    875 	case d._case != c._case: // different cases
    876 		return c.upperLowerAdjacent(d)
    877 	case c._case == CaseNone:
    878 		return false
    879 	case c._case == CaseMissing:
    880 		return false
    881 	case d.deltaToUpper != c.deltaToUpper:
    882 		return false
    883 	case d.deltaToLower != c.deltaToLower:
    884 		return false
    885 	case d.deltaToTitle != c.deltaToTitle:
    886 		return false
    887 	}
    888 	return true
    889 }
    890 
    891 // Is d the same as c, but opposite in upper/lower case? this would make it
    892 // an element of an UpperLower sequence.
    893 func (c *caseState) upperLowerAdjacent(d *caseState) bool {
    894 	// check they're a matched case pair.  we know they have adjacent values
    895 	switch {
    896 	case c._case == CaseUpper && d._case != CaseLower:
    897 		return false
    898 	case c._case == CaseLower && d._case != CaseUpper:
    899 		return false
    900 	}
    901 	// matched pair (at least in upper/lower).  make the order Upper Lower
    902 	if c._case == CaseLower {
    903 		c, d = d, c
    904 	}
    905 	// for an Upper Lower sequence the deltas have to be in order
    906 	//	c: 0 1 0
    907 	//	d: -1 0 -1
    908 	switch {
    909 	case c.deltaToUpper != 0:
    910 		return false
    911 	case c.deltaToLower != 1:
    912 		return false
    913 	case c.deltaToTitle != 0:
    914 		return false
    915 	case d.deltaToUpper != -1:
    916 		return false
    917 	case d.deltaToLower != 0:
    918 		return false
    919 	case d.deltaToTitle != -1:
    920 		return false
    921 	}
    922 	return true
    923 }
    924 
    925 // Does this character start an UpperLower sequence?
    926 func (c *caseState) isUpperLower() bool {
    927 	// for an Upper Lower sequence the deltas have to be in order
    928 	//	c: 0 1 0
    929 	switch {
    930 	case c.deltaToUpper != 0:
    931 		return false
    932 	case c.deltaToLower != 1:
    933 		return false
    934 	case c.deltaToTitle != 0:
    935 		return false
    936 	}
    937 	return true
    938 }
    939 
    940 // Does this character start a LowerUpper sequence?
    941 func (c *caseState) isLowerUpper() bool {
    942 	// for an Upper Lower sequence the deltas have to be in order
    943 	//	c: -1 0 -1
    944 	switch {
    945 	case c.deltaToUpper != -1:
    946 		return false
    947 	case c.deltaToLower != 0:
    948 		return false
    949 	case c.deltaToTitle != -1:
    950 		return false
    951 	}
    952 	return true
    953 }
    954 
    955 func getCaseState(i rune) (c *caseState) {
    956 	c = &caseState{point: i, _case: CaseNone}
    957 	ch := &chars[i]
    958 	switch ch.codePoint {
    959 	case 0:
    960 		c._case = CaseMissing // Will get NUL wrong but that doesn't matter
    961 		return
    962 	case ch.upperCase:
    963 		c._case = CaseUpper
    964 	case ch.lowerCase:
    965 		c._case = CaseLower
    966 	case ch.titleCase:
    967 		c._case = CaseTitle
    968 	}
    969 	// Some things such as roman numeral U+2161 don't describe themselves
    970 	// as upper case, but have a lower case.  Second-guess them.
    971 	if c._case == CaseNone && ch.lowerCase != 0 {
    972 		c._case = CaseUpper
    973 	}
    974 	// Same in the other direction.
    975 	if c._case == CaseNone && ch.upperCase != 0 {
    976 		c._case = CaseLower
    977 	}
    978 
    979 	if ch.upperCase != 0 {
    980 		c.deltaToUpper = ch.upperCase - i
    981 	}
    982 	if ch.lowerCase != 0 {
    983 		c.deltaToLower = ch.lowerCase - i
    984 	}
    985 	if ch.titleCase != 0 {
    986 		c.deltaToTitle = ch.titleCase - i
    987 	}
    988 	return
    989 }
    990 
    991 func printCases() {
    992 	if !*cases {
    993 		return
    994 	}
    995 	if *test {
    996 		fullCaseTest()
    997 		return
    998 	}
    999 	printf(
   1000 		"// Generated by running\n"+
   1001 			"//	maketables --data=%s --casefolding=%s\n"+
   1002 			"// DO NOT EDIT\n\n"+
   1003 			"// CaseRanges is the table describing case mappings for all letters with\n"+
   1004 			"// non-self mappings.\n"+
   1005 			"var CaseRanges = _CaseRanges\n"+
   1006 			"var _CaseRanges = []CaseRange {\n",
   1007 		*dataURL, *casefoldingURL)
   1008 
   1009 	var startState *caseState    // the start of a run; nil for not active
   1010 	var prevState = &caseState{} // the state of the previous character
   1011 	for i := range chars {
   1012 		state := getCaseState(rune(i))
   1013 		if state.adjacent(prevState) {
   1014 			prevState = state
   1015 			continue
   1016 		}
   1017 		// end of run (possibly)
   1018 		printCaseRange(startState, prevState)
   1019 		startState = nil
   1020 		if state._case != CaseMissing && state._case != CaseNone {
   1021 			startState = state
   1022 		}
   1023 		prevState = state
   1024 	}
   1025 	print("}\n")
   1026 }
   1027 
   1028 func printCaseRange(lo, hi *caseState) {
   1029 	if lo == nil {
   1030 		return
   1031 	}
   1032 	if lo.deltaToUpper == 0 && lo.deltaToLower == 0 && lo.deltaToTitle == 0 {
   1033 		// character represents itself in all cases - no need to mention it
   1034 		return
   1035 	}
   1036 	switch {
   1037 	case hi.point > lo.point && lo.isUpperLower():
   1038 		printf("\t{0x%04X, 0x%04X, d{UpperLower, UpperLower, UpperLower}},\n",
   1039 			lo.point, hi.point)
   1040 	case hi.point > lo.point && lo.isLowerUpper():
   1041 		logger.Fatalf("LowerUpper sequence: should not happen: %U.  If it's real, need to fix To()", lo.point)
   1042 		printf("\t{0x%04X, 0x%04X, d{LowerUpper, LowerUpper, LowerUpper}},\n",
   1043 			lo.point, hi.point)
   1044 	default:
   1045 		printf("\t{0x%04X, 0x%04X, d{%d, %d, %d}},\n",
   1046 			lo.point, hi.point,
   1047 			lo.deltaToUpper, lo.deltaToLower, lo.deltaToTitle)
   1048 	}
   1049 }
   1050 
   1051 // If the cased value in the Char is 0, it means use the rune itself.
   1052 func caseIt(r, cased rune) rune {
   1053 	if cased == 0 {
   1054 		return r
   1055 	}
   1056 	return cased
   1057 }
   1058 
   1059 func fullCaseTest() {
   1060 	for j, c := range chars {
   1061 		i := rune(j)
   1062 		lower := unicode.ToLower(i)
   1063 		want := caseIt(i, c.lowerCase)
   1064 		if lower != want {
   1065 			fmt.Fprintf(os.Stderr, "lower %U should be %U is %U\n", i, want, lower)
   1066 		}
   1067 		upper := unicode.ToUpper(i)
   1068 		want = caseIt(i, c.upperCase)
   1069 		if upper != want {
   1070 			fmt.Fprintf(os.Stderr, "upper %U should be %U is %U\n", i, want, upper)
   1071 		}
   1072 		title := unicode.ToTitle(i)
   1073 		want = caseIt(i, c.titleCase)
   1074 		if title != want {
   1075 			fmt.Fprintf(os.Stderr, "title %U should be %U is %U\n", i, want, title)
   1076 		}
   1077 	}
   1078 }
   1079 
   1080 func printLatinProperties() {
   1081 	if *test {
   1082 		return
   1083 	}
   1084 	println("var properties = [MaxLatin1+1]uint8{")
   1085 	for code := 0; code <= unicode.MaxLatin1; code++ {
   1086 		var property string
   1087 		switch chars[code].category {
   1088 		case "Cc", "": // NUL has no category.
   1089 			property = "pC"
   1090 		case "Cf": // soft hyphen, unique category, not printable.
   1091 			property = "0"
   1092 		case "Ll":
   1093 			property = "pLl | pp"
   1094 		case "Lo":
   1095 			property = "pLo | pp"
   1096 		case "Lu":
   1097 			property = "pLu | pp"
   1098 		case "Nd", "No":
   1099 			property = "pN | pp"
   1100 		case "Pc", "Pd", "Pe", "Pf", "Pi", "Po", "Ps":
   1101 			property = "pP | pp"
   1102 		case "Sc", "Sk", "Sm", "So":
   1103 			property = "pS | pp"
   1104 		case "Zs":
   1105 			property = "pZ"
   1106 		default:
   1107 			logger.Fatalf("%U has unknown category %q", code, chars[code].category)
   1108 		}
   1109 		// Special case
   1110 		if code == ' ' {
   1111 			property = "pZ | pp"
   1112 		}
   1113 		printf("\t0x%02X: %s, // %q\n", code, property, code)
   1114 	}
   1115 	printf("}\n\n")
   1116 }
   1117 
   1118 type runeSlice []rune
   1119 
   1120 func (p runeSlice) Len() int           { return len(p) }
   1121 func (p runeSlice) Less(i, j int) bool { return p[i] < p[j] }
   1122 func (p runeSlice) Swap(i, j int)      { p[i], p[j] = p[j], p[i] }
   1123 
   1124 func printCasefold() {
   1125 	// Build list of case-folding groups attached to each canonical folded char (typically lower case).
   1126 	var caseOrbit = make([][]rune, MaxChar+1)
   1127 	for j := range chars {
   1128 		i := rune(j)
   1129 		c := &chars[i]
   1130 		if c.foldCase == 0 {
   1131 			continue
   1132 		}
   1133 		orb := caseOrbit[c.foldCase]
   1134 		if orb == nil {
   1135 			orb = append(orb, c.foldCase)
   1136 		}
   1137 		caseOrbit[c.foldCase] = append(orb, i)
   1138 	}
   1139 
   1140 	// Insert explicit 1-element groups when assuming [lower, upper] would be wrong.
   1141 	for j := range chars {
   1142 		i := rune(j)
   1143 		c := &chars[i]
   1144 		f := c.foldCase
   1145 		if f == 0 {
   1146 			f = i
   1147 		}
   1148 		orb := caseOrbit[f]
   1149 		if orb == nil && (c.upperCase != 0 && c.upperCase != i || c.lowerCase != 0 && c.lowerCase != i) {
   1150 			// Default assumption of [upper, lower] is wrong.
   1151 			caseOrbit[i] = []rune{i}
   1152 		}
   1153 	}
   1154 
   1155 	// Delete the groups for which assuming [lower, upper] or [upper, lower] is right.
   1156 	for i, orb := range caseOrbit {
   1157 		if len(orb) == 2 && chars[orb[0]].upperCase == orb[1] && chars[orb[1]].lowerCase == orb[0] {
   1158 			caseOrbit[i] = nil
   1159 		}
   1160 		if len(orb) == 2 && chars[orb[1]].upperCase == orb[0] && chars[orb[0]].lowerCase == orb[1] {
   1161 			caseOrbit[i] = nil
   1162 		}
   1163 	}
   1164 
   1165 	// Record orbit information in chars.
   1166 	for _, orb := range caseOrbit {
   1167 		if orb == nil {
   1168 			continue
   1169 		}
   1170 		sort.Sort(runeSlice(orb))
   1171 		c := orb[len(orb)-1]
   1172 		for _, d := range orb {
   1173 			chars[c].caseOrbit = d
   1174 			c = d
   1175 		}
   1176 	}
   1177 
   1178 	printCaseOrbit()
   1179 
   1180 	// Tables of category and script folding exceptions: code points
   1181 	// that must be added when interpreting a particular category/script
   1182 	// in a case-folding context.
   1183 	cat := make(map[string]map[rune]bool)
   1184 	for name := range category {
   1185 		if x := foldExceptions(inCategory(name)); len(x) > 0 {
   1186 			cat[name] = x
   1187 		}
   1188 	}
   1189 
   1190 	scr := make(map[string]map[rune]bool)
   1191 	for name := range scripts {
   1192 		if x := foldExceptions(inScript(name)); len(x) > 0 {
   1193 			cat[name] = x
   1194 		}
   1195 	}
   1196 
   1197 	printCatFold("FoldCategory", cat)
   1198 	printCatFold("FoldScript", scr)
   1199 }
   1200 
   1201 // inCategory returns a list of all the runes in the category.
   1202 func inCategory(name string) []rune {
   1203 	var x []rune
   1204 	for j := range chars {
   1205 		i := rune(j)
   1206 		c := &chars[i]
   1207 		if c.category == name || len(name) == 1 && len(c.category) > 1 && c.category[0] == name[0] {
   1208 			x = append(x, i)
   1209 		}
   1210 	}
   1211 	return x
   1212 }
   1213 
   1214 // inScript returns a list of all the runes in the script.
   1215 func inScript(name string) []rune {
   1216 	var x []rune
   1217 	for _, s := range scripts[name] {
   1218 		for c := s.lo; c <= s.hi; c++ {
   1219 			x = append(x, rune(c))
   1220 		}
   1221 	}
   1222 	return x
   1223 }
   1224 
   1225 // foldExceptions returns a list of all the runes fold-equivalent
   1226 // to runes in class but not in class themselves.
   1227 func foldExceptions(class []rune) map[rune]bool {
   1228 	// Create map containing class and all fold-equivalent chars.
   1229 	m := make(map[rune]bool)
   1230 	for _, r := range class {
   1231 		c := &chars[r]
   1232 		if c.caseOrbit == 0 {
   1233 			// Just upper and lower.
   1234 			if u := c.upperCase; u != 0 {
   1235 				m[u] = true
   1236 			}
   1237 			if l := c.lowerCase; l != 0 {
   1238 				m[l] = true
   1239 			}
   1240 			m[r] = true
   1241 			continue
   1242 		}
   1243 		// Otherwise walk orbit.
   1244 		r0 := r
   1245 		for {
   1246 			m[r] = true
   1247 			r = chars[r].caseOrbit
   1248 			if r == r0 {
   1249 				break
   1250 			}
   1251 		}
   1252 	}
   1253 
   1254 	// Remove class itself.
   1255 	for _, r := range class {
   1256 		delete(m, r)
   1257 	}
   1258 
   1259 	// What's left is the exceptions.
   1260 	return m
   1261 }
   1262 
   1263 var comment = map[string]string{
   1264 	"FoldCategory": "// FoldCategory maps a category name to a table of\n" +
   1265 		"// code points outside the category that are equivalent under\n" +
   1266 		"// simple case folding to code points inside the category.\n" +
   1267 		"// If there is no entry for a category name, there are no such points.\n",
   1268 
   1269 	"FoldScript": "// FoldScript maps a script name to a table of\n" +
   1270 		"// code points outside the script that are equivalent under\n" +
   1271 		"// simple case folding to code points inside the script.\n" +
   1272 		"// If there is no entry for a script name, there are no such points.\n",
   1273 }
   1274 
   1275 func printCaseOrbit() {
   1276 	if *test {
   1277 		for j := range chars {
   1278 			i := rune(j)
   1279 			c := &chars[i]
   1280 			f := c.caseOrbit
   1281 			if f == 0 {
   1282 				if c.lowerCase != i && c.lowerCase != 0 {
   1283 					f = c.lowerCase
   1284 				} else if c.upperCase != i && c.upperCase != 0 {
   1285 					f = c.upperCase
   1286 				} else {
   1287 					f = i
   1288 				}
   1289 			}
   1290 			if g := unicode.SimpleFold(i); g != f {
   1291 				fmt.Fprintf(os.Stderr, "unicode.SimpleFold(%#U) = %#U, want %#U\n", i, g, f)
   1292 			}
   1293 		}
   1294 		return
   1295 	}
   1296 
   1297 	printf("var caseOrbit = []foldPair{\n")
   1298 	for i := range chars {
   1299 		c := &chars[i]
   1300 		if c.caseOrbit != 0 {
   1301 			printf("\t{0x%04X, 0x%04X},\n", i, c.caseOrbit)
   1302 			foldPairCount++
   1303 		}
   1304 	}
   1305 	printf("}\n\n")
   1306 }
   1307 
   1308 func printCatFold(name string, m map[string]map[rune]bool) {
   1309 	if *test {
   1310 		var pkgMap map[string]*unicode.RangeTable
   1311 		if name == "FoldCategory" {
   1312 			pkgMap = unicode.FoldCategory
   1313 		} else {
   1314 			pkgMap = unicode.FoldScript
   1315 		}
   1316 		if len(pkgMap) != len(m) {
   1317 			fmt.Fprintf(os.Stderr, "unicode.%s has %d elements, want %d\n", name, len(pkgMap), len(m))
   1318 			return
   1319 		}
   1320 		for k, v := range m {
   1321 			t, ok := pkgMap[k]
   1322 			if !ok {
   1323 				fmt.Fprintf(os.Stderr, "unicode.%s[%q] missing\n", name, k)
   1324 				continue
   1325 			}
   1326 			n := 0
   1327 			for _, r := range t.R16 {
   1328 				for c := rune(r.Lo); c <= rune(r.Hi); c += rune(r.Stride) {
   1329 					if !v[c] {
   1330 						fmt.Fprintf(os.Stderr, "unicode.%s[%q] contains %#U, should not\n", name, k, c)
   1331 					}
   1332 					n++
   1333 				}
   1334 			}
   1335 			for _, r := range t.R32 {
   1336 				for c := rune(r.Lo); c <= rune(r.Hi); c += rune(r.Stride) {
   1337 					if !v[c] {
   1338 						fmt.Fprintf(os.Stderr, "unicode.%s[%q] contains %#U, should not\n", name, k, c)
   1339 					}
   1340 					n++
   1341 				}
   1342 			}
   1343 			if n != len(v) {
   1344 				fmt.Fprintf(os.Stderr, "unicode.%s[%q] has %d code points, want %d\n", name, k, n, len(v))
   1345 			}
   1346 		}
   1347 		return
   1348 	}
   1349 
   1350 	print(comment[name])
   1351 	printf("var %s = map[string]*RangeTable{\n", name)
   1352 	for _, name := range allCatFold(m) {
   1353 		printf("\t%q: fold%s,\n", name, name)
   1354 	}
   1355 	printf("}\n\n")
   1356 	for _, name := range allCatFold(m) {
   1357 		class := m[name]
   1358 		dumpRange(
   1359 			fmt.Sprintf("var fold%s = &RangeTable{\n", name),
   1360 			func(code rune) bool { return class[code] })
   1361 	}
   1362 }
   1363 
   1364 var range16Count = 0  // Number of entries in the 16-bit range tables.
   1365 var range32Count = 0  // Number of entries in the 32-bit range tables.
   1366 var foldPairCount = 0 // Number of fold pairs in the exception tables.
   1367 
   1368 func printSizes() {
   1369 	if *test {
   1370 		return
   1371 	}
   1372 	println()
   1373 	printf("// Range entries: %d 16-bit, %d 32-bit, %d total.\n", range16Count, range32Count, range16Count+range32Count)
   1374 	range16Bytes := range16Count * 3 * 2
   1375 	range32Bytes := range32Count * 3 * 4
   1376 	printf("// Range bytes: %d 16-bit, %d 32-bit, %d total.\n", range16Bytes, range32Bytes, range16Bytes+range32Bytes)
   1377 	println()
   1378 	printf("// Fold orbit bytes: %d pairs, %d bytes\n", foldPairCount, foldPairCount*2*2)
   1379 }
   1380