440 lines
17 KiB
Go
440 lines
17 KiB
Go
package fejkdata
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import (
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"regexp"
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"strconv"
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"strings"
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"testing"
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"time"
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)
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// TestShippedDataCategories asserts every shipped locale emits only well-formed
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// values for each data category. en and sv patterns differ where the format is
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// locale-specific (date, time, company, price, ...); the rest are shared.
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func TestShippedDataCategories(t *testing.T) {
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letters := regexp.MustCompile(`^[\pL'-]+$`)
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semver := regexp.MustCompile(`^v?\d+\.\d+\.\d+(-(alpha|beta|rc)\.\d+)?$`)
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ip := regexp.MustCompile(`^((\d{1,3}\.){3}\d{1,3}|([0-9a-f]{4}:){7}[0-9a-f]{4})$`)
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color := regexp.MustCompile(`^(#[0-9a-f]{6}|[\pL ]+)$`)
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url := regexp.MustCompile(`^https?://([a-z0-9-]+\.)+[a-z]{2,}(/[a-z0-9./-]*)?$`)
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email := regexp.MustCompile(`^[a-z0-9._-]+@([a-z0-9-]+\.)+[a-z]{2,}$`)
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uname := regexp.MustCompile(`^[a-z][a-z0-9._]*$`)
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cases := []struct {
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path string
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en, sv *regexp.Regexp
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}{
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{"word", letters, letters},
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{"sentence",
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regexp.MustCompile(`^[A-Z].* .*[.!?]$`),
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regexp.MustCompile(`^[A-ZÅÄÖ].* .*[.!?]$`)},
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{"date",
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regexp.MustCompile(`^(0[1-9]|1[0-2])/(0[1-9]|[12]\d|3[01])/\d{4}$`),
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regexp.MustCompile(`^\d{4}-(0[1-9]|1[0-2])-(0[1-9]|[12]\d|3[01])$`)},
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{"time",
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regexp.MustCompile(`^([1-9]|1[0-2]):[0-5]\d (AM|PM)$`),
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regexp.MustCompile(`^([01]\d|2[0-3]):[0-5]\d$`)},
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{"version", semver, semver},
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{"email", email, email},
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{"ip", ip, ip},
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{"company",
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regexp.MustCompile(`^.+ (Inc\.|LLC|Corp\.|Co\.|Group|Ltd\.)$`),
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regexp.MustCompile(`^.+ (AB|HB|KB)$`)},
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{"color", color, color},
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{"url", url, url},
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{"username", uname, uname},
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{"price",
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regexp.MustCompile(`^\$\d{1,3}(,\d{3})?\.\d{2}$`),
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regexp.MustCompile(`^\d{1,3}( \d{3})?(,\d{2})? kr$`)},
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}
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f := newGenerator(t, "data", WithSeed(1))
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for _, c := range cases {
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for i := 0; i < 200; i++ {
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if v := fake(t, f, "en_US."+c.path); !c.en.MatchString(v) {
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t.Fatalf("en_US %s = %q, want %s", c.path, v, c.en)
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}
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if v := fake(t, f, "sv_SE."+c.path); !c.sv.MatchString(v) {
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t.Fatalf("sv_SE %s = %q, want %s", c.path, v, c.sv)
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}
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}
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}
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}
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// TestShippedMiscCategories covers the locale-neutral data/misc folder: a proper
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// v4 UUID (version/variant nibbles fixed), a MAC address, and credit-card numbers
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// whose trailing {luhn()} check passes.
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func TestShippedMiscCategories(t *testing.T) {
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f := newGenerator(t, "data/misc", WithSeed(1))
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v4 := regexp.MustCompile(`^[0-9a-f]{8}-[0-9a-f]{4}-4[0-9a-f]{3}-[89ab][0-9a-f]{3}-[0-9a-f]{12}$`)
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mac := regexp.MustCompile(`^([0-9a-f]{2}:){5}[0-9a-f]{2}$`)
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objectid := regexp.MustCompile(`^[0-9a-f]{24}$`)
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datetime := regexp.MustCompile(`^\d{4}-\d\d-\d\dT\d\d:\d\d:\d\dZ$`)
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for i := 0; i < 200; i++ {
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if v := fake(t, f, "datetime"); !datetime.MatchString(v) {
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t.Fatalf("misc datetime %q is not an RFC 3339 UTC instant", v)
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}
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if v := fake(t, f, "objectid"); !objectid.MatchString(v) {
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t.Fatalf("misc objectid %q is not 24 hex chars", v)
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}
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if v := fake(t, f, "uuid"); !v4.MatchString(v) {
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t.Fatalf("misc uuid %q is not a valid v4", v)
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}
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if v := fake(t, f, "mac"); !mac.MatchString(v) {
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t.Fatalf("misc mac %q is not a MAC address", v)
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}
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if v := fake(t, f, "creditcard"); len(v) < 15 || len(v) > 16 || !luhnValid(v) {
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t.Fatalf("creditcard %q is not a 15-16 digit Luhn-valid number", v)
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}
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}
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}
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// TestShippedMiscReferenceData covers the locale-neutral reference categories:
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// codes follow their standard shape, dotted sub-paths resolve, emoji is a real
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// glyph, and a coordinate parses to a point within geographic bounds.
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func TestShippedMiscReferenceData(t *testing.T) {
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f := newGenerator(t, "data/misc", WithSeed(1))
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re := map[string]*regexp.Regexp{
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"currency": regexp.MustCompile(`^[A-Z]{3}$`),
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"currency.name": regexp.MustCompile(`\p{L}`),
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"currency.symbol": regexp.MustCompile(`^\S+$`),
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"territory": regexp.MustCompile(`\p{L}`),
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"territory.alpha2": regexp.MustCompile(`^[A-Z]{2}$`),
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"territory.alpha3": regexp.MustCompile(`^[A-Z]{3}$`),
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"territory.country": regexp.MustCompile(`^[A-Z]{2}$`),
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"language": regexp.MustCompile(`\p{L}`),
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"language.code": regexp.MustCompile(`^[a-z]{2}$`),
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"language.code3": regexp.MustCompile(`^[a-z]{3}$`),
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"timezone": regexp.MustCompile(`^[A-Za-z]+(/[A-Za-z0-9_+-]+)+$`),
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"timezone.offset": regexp.MustCompile(`^[+-](0\d|1[0-4]):[0-5]\d$`),
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"timezone.territory": regexp.MustCompile(`^[A-Z]{2}$`),
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"timezone.weight": regexp.MustCompile(`^[1-9]\d*$`),
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"mimetype": regexp.MustCompile(`^[a-z]+/[a-z0-9.+-]+$`),
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"mimetype.ext": regexp.MustCompile(`^\.[a-z0-9_-]+$`),
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"httpmethod": regexp.MustCompile(`^[A-Za-z][A-Za-z-]*$`),
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"httpmethod.safe": regexp.MustCompile(`^(yes|no)$`),
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"httpmethod.idempotent": regexp.MustCompile(`^(yes|no)$`),
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"port": regexp.MustCompile(`^[1-9]\d{0,4}$`),
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"port.name": regexp.MustCompile(`^\S+$`),
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"protocol": regexp.MustCompile(`^\S+( \S+)*$`),
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"protocol.name": regexp.MustCompile(`\S`),
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"protocol.number": regexp.MustCompile(`^\d{1,3}$`),
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"httpstatus": regexp.MustCompile(`^[1-5]\d{2} \S.*$`),
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"httpstatus.code": regexp.MustCompile(`^[1-5]\d{2}$`),
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"useragent": regexp.MustCompile(`^Mozilla/5\.0 .+`),
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"useragent.browser": regexp.MustCompile(`^(Chrome|Edge|Firefox|Opera|Safari|Samsung Internet)$`),
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"useragent.device": regexp.MustCompile(`^(desktop|mobile)$`),
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"useragent.os": regexp.MustCompile(`^(Android|ChromeOS|Linux|Windows|iOS|macOS)$`),
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"car": regexp.MustCompile(`^\S.* \S`),
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"car.make": regexp.MustCompile(`^\S`),
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}
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for i := 0; i < 100; i++ {
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for p, rx := range re {
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if v := fake(t, f, p); !rx.MatchString(v) {
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t.Fatalf("misc %s = %q, want %s", p, v, rx)
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}
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}
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if e := fake(t, f, "emoji"); e == "" || []rune(e)[0] < 128 {
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t.Fatalf("emoji %q is not a non-ASCII glyph", e)
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}
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c := fake(t, f, "coordinate")
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parts := strings.SplitN(c, ", ", 2)
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lat, err1 := strconv.ParseFloat(parts[0], 64)
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lon, err2 := strconv.ParseFloat(parts[len(parts)-1], 64)
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if len(parts) != 2 || err1 != nil || err2 != nil || lat < -90 || lat > 90 || lon < -180 || lon > 180 {
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t.Fatalf("coordinate %q is not a 'lat, lon' point within bounds", c)
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}
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}
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}
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// TestSwedishPersonNamesHaveNoTripleLetter pins an orthographic rule the shape
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// regexes miss: no generated name repeats a character three times over.
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func TestSwedishPersonNamesHaveNoTripleLetter(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(11))
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for _, path := range []string{"sv_SE.person", "sv_SE.person.last"} {
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for i := 0; i < 20000; i++ {
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name := fake(t, f, path)
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r := []rune(name)
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for j := 0; j+2 < len(r); j++ {
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if r[j] == r[j+1] && r[j] == r[j+2] {
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t.Fatalf("%s = %q, which triples %q", path, name, string(r[j]))
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}
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}
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}
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}
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}
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// TestSwedishPersonnummer checks what the shape regex can't: the date is a real
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// calendar date, the birth number is Skatteverket's test series (238 female, 239
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// male), the trailing digit is a Luhn checksum over the other nine, and a
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// samordningsnummer is the same with 60 added to the day.
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func TestSwedishPersonnummer(t *testing.T) {
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sv := newGenerator(t, "data", WithSeed(1))
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re := regexp.MustCompile(`^\d{6}-23[89]\d$`)
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sawLongMonthEnd, birth := false, map[string]bool{}
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for i := 0; i < 2000; i++ {
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v := fake(t, sv, "sv_SE.personnummer")
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d := digitsOnly(v)
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if !re.MatchString(v) {
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t.Fatalf("personnummer %q, want YYMMDD-238C or YYMMDD-239C", v)
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}
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if _, err := time.Parse("060102", d[:6]); err != nil {
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t.Fatalf("personnummer %q is not a valid calendar date: %v", v, err)
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}
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if !luhnValid(d) {
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t.Fatalf("personnummer %q fails the Luhn check", v)
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}
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sawLongMonthEnd = sawLongMonthEnd || d[4:6] == "31"
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birth[d[6:9]] = true
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s := fake(t, sv, "sv_SE.samordningsnummer")
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sd := digitsOnly(s)
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day, err := strconv.Atoi(sd[4:6])
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if !re.MatchString(s) || err != nil || day < 61 || day > 88 || !luhnValid(sd) {
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t.Fatalf("samordningsnummer %q, want YYMM(61-88)-23[89]C, Luhn-valid", s)
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}
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if _, err := time.Parse("0601", sd[:4]); err != nil {
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t.Fatalf("samordningsnummer %q is not a valid year and month: %v", s, err)
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}
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}
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if !sawLongMonthEnd {
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t.Fatal("never generated a 31st")
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}
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if !birth["238"] || !birth["239"] {
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t.Fatalf("birth numbers drawn %v, want both 238 and 239", birth)
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}
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for i := 0; i < 200; i++ {
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got := fakeTemplate(t, sv, `{/sv_SE.person.sex} {/sv_SE.personnummer}`)
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sex, id, _ := strings.Cut(got, " ")
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if want := map[string]string{"kvinna": "238", "man": "239"}[sex]; want == "" || !strings.Contains(id, "-"+want) {
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t.Fatalf("%q: a person and a personnummer in one render disagree on sex", got)
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}
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}
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}
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// TestShippedUSTaxIds pins the SSA and IRS ranges: an SSN's area is 001-899 but
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// 666, its group 01-99 and its serial 0001-9999; an ITIN is 9XX-GG-XXXX with GG
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// in 50-65, 70-88, 90-92 or 94-99.
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func TestShippedUSTaxIds(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(5))
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ssn := regexp.MustCompile(`^(\d{3})-(\d{2})-(\d{4})$`)
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itin := regexp.MustCompile(`^9\d{2}-(5\d|6[0-5]|7\d|8[0-8]|9[0-24-9])-\d{4}$`)
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for i := 0; i < 2000; i++ {
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v := fake(t, f, "en_US.ssn")
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m := ssn.FindStringSubmatch(v)
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if m == nil {
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t.Fatalf("ssn %q, want AAA-GG-SSSS", v)
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}
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area, _ := strconv.Atoi(m[1])
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group, _ := strconv.Atoi(m[2])
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serial, _ := strconv.Atoi(m[3])
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if area < 1 || area > 899 || area == 666 || group < 1 || serial < 1 {
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t.Fatalf("ssn %q is in a range the SSA never assigns", v)
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}
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if v := fake(t, f, "en_US.itin"); !itin.MatchString(v) {
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t.Fatalf("itin %q, want %s", v, itin)
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}
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}
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}
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// TestShippedPersonNames pins the name tables: a sex pins its first names, a name
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// both sexes carry appears under both, and the record's sex agrees with its name.
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func TestShippedPersonNames(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(9))
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for path, want := range map[string]string{
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"sv_SE.sex[f]": "kvinna",
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"sv_SE.sex[man].code": "m",
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"en_US.sex[f]": "female",
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"sv_SE.sex[f].first-name[Anna]": "Anna",
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"sv_SE.sex[m].first-name[Erik].sex": "m",
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"en_US.sex[m].first-name[James]": "James",
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"en_US.sex[f].first-name[Taylor].sex": "f",
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"en_US.sex[m].first-name[Taylor].sex": "m",
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"sv_SE.last-name[Andersson]": "Andersson",
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"sv_SE.last-name[Andersson].count": "",
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"en_US.last-name[Smith]": "Smith",
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} {
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got := fake(t, f, path)
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if want == "" && !regexp.MustCompile(`^[1-9]\d*$`).MatchString(got) {
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t.Errorf("Fake(%q) = %q, want a count", path, got)
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} else if want != "" && got != want {
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t.Errorf("Fake(%q) = %q, want %q", path, got, want)
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}
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}
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if _, err := f.Fake("en_US.first-name[Taylor]"); err == nil || !strings.Contains(err.Error(), "sex[f].first-name[Taylor]") {
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t.Fatalf("Fake(en_US.first-name[Taylor]) = %v, want both sexes' rows listed", err)
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}
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for _, locale := range []string{"sv_SE", "en_US"} {
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seen := map[string]bool{}
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for i := 0; i < 2000; i++ {
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seen[fake(t, f, locale+".sex[f].first-name")] = true
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first, sex := fake(t, f, locale+".person.first"), fake(t, f, locale+".person.sex")
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if first == "" || sex == "" {
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t.Fatalf("%s.person lacks a first name or a sex", locale)
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}
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}
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if len(seen) < 300 || !seen["Anna"] && locale == "sv_SE" || !seen["Mary"] && locale == "en_US" {
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t.Fatalf("%s female first names: %d distinct in 2000, want a weighted register", locale, len(seen))
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}
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got := fakeTemplate(t, f, `{/`+locale+`.sex.code}|{/`+locale+`.person.first}`)
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code, first, _ := strings.Cut(got, "|")
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if v := fake(t, f, locale+".sex["+code+"].first-name["+first+"]"); v != first {
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t.Fatalf("%s: %q drawn as a %s name is not one", locale, first, code)
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}
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}
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}
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func TestShippedSwedishPhone(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(11))
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re := regexp.MustCompile(`^0\d{1,2}-\d{3} \d{2} \d{2}$`)
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for i := 0; i < 50; i++ {
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if n := fake(t, f, "sv_SE.phone"); !re.MatchString(n) {
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t.Fatalf("phone %q does not match %s", n, re)
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}
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}
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}
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func TestShippedSwedishAddress(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(3))
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digit := regexp.MustCompile(`\d`)
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for i := 0; i < 30; i++ {
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a := fake(t, f, "sv_SE.address")
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if !regexp.MustCompile(`\n`).MatchString(a) || !digit.MatchString(a) {
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t.Fatalf("address %q is not a multi-line address with a number", a)
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}
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}
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locality := regexp.MustCompile(`^\p{L}+([ -]\p{L}+)*$`)
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for i := 0; i < 30; i++ {
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if c := fake(t, f, "sv_SE.address.locality"); !locality.MatchString(c) {
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t.Fatalf("locality %q is not a Swedish place name", c)
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}
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}
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}
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func TestShippedPersonHasParts(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(7))
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for _, path := range []string{"sv_SE.person", "en_US.person"} {
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for i := 0; i < 30; i++ {
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if name := fake(t, f, path); len(name) < 3 || !regexp.MustCompile(`\S \S`).MatchString(name) {
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t.Fatalf("%s %q lacks first and last name", path, name)
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}
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}
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}
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}
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func TestShippedUSPhone(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(11))
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re := regexp.MustCompile(`^(\(\d{3}\) \d{3}-\d{4}|\d{3}-\d{3}-\d{4})$`)
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for i := 0; i < 50; i++ {
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if n := fake(t, f, "en_US.phone"); !re.MatchString(n) {
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t.Fatalf("phone %q does not match %s", n, re)
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}
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}
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}
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// TestShippedNamespacedTree loads the whole data/ tree (not a single locale) and
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// reaches each locale through its folder segment: data/sv_SE/person -> sv_SE.person.
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func TestShippedNamespacedTree(t *testing.T) {
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f := newGenerator(t, "data", WithSeed(1))
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for _, path := range []string{"sv_SE.person", "en_US.person", "sv_SE.address.locality"} {
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if got := fake(t, f, path); got == "" {
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t.Fatalf("Fake(%q) returned empty", path)
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}
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}
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if _, err := f.Fake("person"); err == nil {
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t.Fatal("Fake(person) = nil error; categories should be namespaced under the locale folder")
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}
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}
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func digitsOnly(s string) string {
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var b strings.Builder
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for _, r := range s {
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if r >= '0' && r <= '9' {
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b.WriteRune(r)
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}
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}
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return b.String()
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}
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// luhnValid verifies a full number (payload + trailing check digit). It doubles
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// from the second-from-right, independent of the builtin's own Luhn code.
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func luhnValid(s string) bool {
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sum, double := 0, false
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for i := len(s) - 1; i >= 0; i-- {
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n := int(s[i] - '0')
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if double {
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if n *= 2; n > 9 {
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n -= 9
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}
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}
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double = !double
|
|
sum += n
|
|
}
|
|
return sum%10 == 0
|
|
}
|
|
|
|
// swedishName matches one or more letter-words, optionally space/hyphen joined
|
|
// ("Storgatan", "Norra Promenaden", "von Flemming"). Used by the composition
|
|
// tests so shipped name lists can grow without re-enumerating them here.
|
|
var swedishName = regexp.MustCompile(`^\p{L}+([ -]\p{L}+)*$`)
|
|
|
|
func TestShippedStreetIsARegisteredName(t *testing.T) {
|
|
f := newGenerator(t, "data", WithSeed(5))
|
|
street := regexp.MustCompile(`^\p{L}[\p{L}\d:.-]*([ -][\p{L}\d:.-]+)*$`)
|
|
for i := 0; i < 300; i++ {
|
|
if s := fake(t, f, "sv_SE.address.street"); !street.MatchString(s) {
|
|
t.Fatalf("street %q is not a Swedish street name", s)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestShippedLastNameComposition(t *testing.T) {
|
|
// last is a choice of patronymic {first}sson templates, compound
|
|
// {first}{last} templates and literal surnames.
|
|
f := newGenerator(t, "data", WithSeed(6))
|
|
for i := 0; i < 300; i++ {
|
|
if s := fake(t, f, "sv_SE.person.last"); !swedishName.MatchString(s) {
|
|
t.Fatalf("last name %q is not a Swedish surname", s)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestShippedStreetNumberFormats(t *testing.T) {
|
|
// Reachable via a hyphenated path; covers all five weighted number variants.
|
|
f := newGenerator(t, "data", WithSeed(8))
|
|
re := regexp.MustCompile(`^[1-9]\d{0,2}[A-Z]?$`)
|
|
for i := 0; i < 300; i++ {
|
|
if n := fake(t, f, "sv_SE.address.street-number"); !re.MatchString(n) {
|
|
t.Fatalf("street-number %q does not match %s", n, re)
|
|
}
|
|
}
|
|
}
|
|
|
|
// TestShippedUSTitleAgreesWithSex pins that one person's title and sex agree, and
|
|
// that the everyday titles are reachable.
|
|
func TestShippedUSTitleAgreesWithSex(t *testing.T) {
|
|
f := newGenerator(t, "data", WithSeed(4))
|
|
female := map[string]bool{"Miss": true, "Mrs": true, "Ms": true}
|
|
seen := map[string]bool{}
|
|
for i := 0; i < 3000; i++ {
|
|
got := fakeTemplate(t, f, `{/en_US.person.prefix}|{/en_US.person.sex}`)
|
|
title, sex, _ := strings.Cut(got, "|")
|
|
title = strings.TrimSpace(title)
|
|
seen[title] = true
|
|
if title == "Mr" && sex != "male" || female[title] && sex != "female" {
|
|
t.Fatalf("%q: the title contradicts the sex", got)
|
|
}
|
|
}
|
|
for _, want := range []string{"", "Mr", "Ms"} {
|
|
if !seen[want] {
|
|
t.Errorf("en_US.person.prefix never drew %q in 3000 draws", want)
|
|
}
|
|
}
|
|
swedish := map[string]bool{"dr": true, "prof": true}
|
|
for i := 0; i < 50; i++ {
|
|
if got := fake(t, f, "sv_SE.title"); !swedish[got] {
|
|
t.Fatalf("sv_SE.title = %q, want an unsexed Swedish honorific", got)
|
|
}
|
|
}
|
|
}
|