/* utf8.c
*
- * Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005 by Larry Wall and
- * others
+ * Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007
+ * by Larry Wall and others
*
* You may distribute under the terms of either the GNU General Public
* License or the Artistic License, as specified in the README file.
#define PERL_IN_UTF8_C
#include "perl.h"
+#ifndef EBCDIC
+/* Separate prototypes needed because in ASCII systems these
+ * usually macros but they still are compiled as code, too. */
+PERL_CALLCONV UV Perl_utf8n_to_uvchr(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen, U32 flags);
+PERL_CALLCONV U8* Perl_uvchr_to_utf8(pTHX_ U8 *d, UV uv);
+#endif
+
static const char unees[] =
"Malformed UTF-8 character (unexpected end of string)";
U8 *
Perl_uvuni_to_utf8_flags(pTHX_ U8 *d, UV uv, UV flags)
{
+ PERL_ARGS_ASSERT_UVUNI_TO_UTF8_FLAGS;
+
if (ckWARN(WARN_UTF8)) {
if (UNICODE_IS_SURROGATE(uv) &&
!(flags & UNICODE_ALLOW_SURROGATE))
#endif
#endif /* Loop style */
}
-
-U8 *
-Perl_uvuni_to_utf8(pTHX_ U8 *d, UV uv)
-{
- return Perl_uvuni_to_utf8_flags(aTHX_ d, uv, 0);
-}
-
/*
-=for apidoc A|STRLEN|is_utf8_char|const U8 *s
Tests if some arbitrary number of bytes begins in a valid UTF-8
character. Note that an INVARIANT (i.e. ASCII) character is a valid
UTF-8 character. The actual number of bytes in the UTF-8 character
will be returned if it is valid, otherwise 0.
+This is the "slow" version as opposed to the "fast" version which is
+the "unrolled" IS_UTF8_CHAR(). E.g. for t/uni/class.t the speed
+difference is a factor of 2 to 3. For lengths (UTF8SKIP(s)) of four
+or less you should use the IS_UTF8_CHAR(), for lengths of five or more
+you should use the _slow(). In practice this means that the _slow()
+will be used very rarely, since the maximum Unicode code point (as of
+Unicode 4.1) is U+10FFFF, which encodes in UTF-8 to four bytes. Only
+the "Perl extended UTF-8" (the infamous 'v-strings') will encode into
+five bytes or more.
+
=cut */
-STRLEN
-Perl_is_utf8_char(pTHX_ const U8 *s)
+STATIC STRLEN
+S_is_utf8_char_slow(const U8 *s, const STRLEN len)
{
U8 u = *s;
- STRLEN slen, len;
+ STRLEN slen;
UV uv, ouv;
+ PERL_ARGS_ASSERT_IS_UTF8_CHAR_SLOW;
+
if (UTF8_IS_INVARIANT(u))
return 1;
if (!UTF8_IS_START(u))
return 0;
- len = UTF8SKIP(s);
-
if (len < 2 || !UTF8_IS_CONTINUATION(s[1]))
return 0;
slen = len - 1;
s++;
+#ifdef EBCDIC
+ u = NATIVE_TO_UTF(u);
+#endif
u &= UTF_START_MASK(len);
uv = u;
ouv = uv;
}
/*
+=for apidoc A|STRLEN|is_utf8_char|const U8 *s
+
+Tests if some arbitrary number of bytes begins in a valid UTF-8
+character. Note that an INVARIANT (i.e. ASCII) character is a valid
+UTF-8 character. The actual number of bytes in the UTF-8 character
+will be returned if it is valid, otherwise 0.
+
+=cut */
+STRLEN
+Perl_is_utf8_char(pTHX_ const U8 *s)
+{
+ const STRLEN len = UTF8SKIP(s);
+
+ PERL_ARGS_ASSERT_IS_UTF8_CHAR;
+ PERL_UNUSED_CONTEXT;
+#ifdef IS_UTF8_CHAR
+ if (IS_UTF8_CHAR_FAST(len))
+ return IS_UTF8_CHAR(s, len) ? len : 0;
+#endif /* #ifdef IS_UTF8_CHAR */
+ return is_utf8_char_slow(s, len);
+}
+
+/*
=for apidoc A|bool|is_utf8_string|const U8 *s|STRLEN len
Returns true if first C<len> bytes of the given string form a valid
not mean 'a string that contains code points above 0x7F encoded in UTF-8'
because a valid ASCII string is a valid UTF-8 string.
+See also is_utf8_string_loclen() and is_utf8_string_loc().
+
=cut
*/
bool
Perl_is_utf8_string(pTHX_ const U8 *s, STRLEN len)
{
+ const U8* const send = s + (len ? len : strlen((const char *)s));
const U8* x = s;
- const U8* send;
- STRLEN c;
- if (!len && s)
- len = strlen((const char *)s);
- send = s + len;
+ PERL_ARGS_ASSERT_IS_UTF8_STRING;
+ PERL_UNUSED_CONTEXT;
while (x < send) {
+ STRLEN c;
/* Inline the easy bits of is_utf8_char() here for speed... */
if (UTF8_IS_INVARIANT(*x))
c = 1;
else if (!UTF8_IS_START(*x))
- return FALSE;
+ goto out;
else {
/* ... and call is_utf8_char() only if really needed. */
- c = is_utf8_char(x);
+#ifdef IS_UTF8_CHAR
+ c = UTF8SKIP(x);
+ if (IS_UTF8_CHAR_FAST(c)) {
+ if (!IS_UTF8_CHAR(x, c))
+ c = 0;
+ }
+ else
+ c = is_utf8_char_slow(x, c);
+#else
+ c = is_utf8_char(x);
+#endif /* #ifdef IS_UTF8_CHAR */
if (!c)
- return FALSE;
+ goto out;
}
x += c;
}
+
+ out:
if (x != send)
return FALSE;
}
/*
-=for apidoc A|bool|is_utf8_string_loc|const U8 *s|STRLEN len|const U8 **p
+Implemented as a macro in utf8.h
+
+=for apidoc A|bool|is_utf8_string_loc|const U8 *s|STRLEN len|const U8 **ep
+
+Like is_utf8_string() but stores the location of the failure (in the
+case of "utf8ness failure") or the location s+len (in the case of
+"utf8ness success") in the C<ep>.
+
+See also is_utf8_string_loclen() and is_utf8_string().
-Like is_ut8_string but store the location of the failure in
-the last argument.
+=for apidoc A|bool|is_utf8_string_loclen|const U8 *s|STRLEN len|const U8 **ep|const STRLEN *el
+
+Like is_utf8_string() but stores the location of the failure (in the
+case of "utf8ness failure") or the location s+len (in the case of
+"utf8ness success") in the C<ep>, and the number of UTF-8
+encoded characters in the C<el>.
+
+See also is_utf8_string_loc() and is_utf8_string().
=cut
*/
bool
-Perl_is_utf8_string_loc(pTHX_ const U8 *s, STRLEN len, const U8 **p)
+Perl_is_utf8_string_loclen(pTHX_ const U8 *s, STRLEN len, const U8 **ep, STRLEN *el)
{
+ const U8* const send = s + (len ? len : strlen((const char *)s));
const U8* x = s;
- const U8* send;
STRLEN c;
+ STRLEN outlen = 0;
- if (!len && s)
- len = strlen((const char *)s);
- send = s + len;
+ PERL_ARGS_ASSERT_IS_UTF8_STRING_LOCLEN;
+ PERL_UNUSED_CONTEXT;
while (x < send) {
/* Inline the easy bits of is_utf8_char() here for speed... */
if (UTF8_IS_INVARIANT(*x))
- c = 1;
- else if (!UTF8_IS_START(*x)) {
- if (p)
- *p = x;
- return FALSE;
- }
+ c = 1;
+ else if (!UTF8_IS_START(*x))
+ goto out;
else {
- /* ... and call is_utf8_char() only if really needed. */
- c = is_utf8_char(x);
- if (!c) {
- if (p)
- *p = x;
- return FALSE;
- }
+ /* ... and call is_utf8_char() only if really needed. */
+#ifdef IS_UTF8_CHAR
+ c = UTF8SKIP(x);
+ if (IS_UTF8_CHAR_FAST(c)) {
+ if (!IS_UTF8_CHAR(x, c))
+ c = 0;
+ } else
+ c = is_utf8_char_slow(x, c);
+#else
+ c = is_utf8_char(x);
+#endif /* #ifdef IS_UTF8_CHAR */
+ if (!c)
+ goto out;
}
- x += c;
- }
- if (x != send) {
- if (p)
- *p = x;
- return FALSE;
+ x += c;
+ outlen++;
}
- return TRUE;
+ out:
+ if (el)
+ *el = outlen;
+
+ if (ep)
+ *ep = x;
+ return (x == send);
}
/*
+
=for apidoc A|UV|utf8n_to_uvuni|const U8 *s|STRLEN curlen|STRLEN *retlen|U32 flags
Bottom level UTF-8 decode routine.
-Returns the unicode code point value of the first character in the string C<s>
+Returns the Unicode code point value of the first character in the string C<s>
which is assumed to be in UTF-8 encoding and no longer than C<curlen>;
C<retlen> will be set to the length, in bytes, of that character.
UV
Perl_utf8n_to_uvuni(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen, U32 flags)
{
- const U8 *s0 = s;
+ dVAR;
+ const U8 * const s0 = s;
UV uv = *s, ouv = 0;
STRLEN len = 1;
const bool dowarn = ckWARN_d(WARN_UTF8);
STRLEN expectlen = 0;
U32 warning = 0;
+ PERL_ARGS_ASSERT_UTF8N_TO_UVUNI;
+
/* This list is a superset of the UTF8_ALLOW_XXX. */
#define UTF8_WARN_EMPTY 1
if (flags & UTF8_CHECK_ONLY) {
if (retlen)
- *retlen = -1;
+ *retlen = ((STRLEN) -1);
return 0;
}
if (dowarn) {
- SV* sv = sv_2mortal(newSVpv("Malformed UTF-8 character ", 0));
+ SV* const sv = newSVpvs_flags("Malformed UTF-8 character ", SVs_TEMP);
switch (warning) {
case 0: /* Intentionally empty. */ break;
case UTF8_WARN_EMPTY:
- Perl_sv_catpv(aTHX_ sv, "(empty string)");
+ sv_catpvs(sv, "(empty string)");
break;
case UTF8_WARN_CONTINUATION:
Perl_sv_catpvf(aTHX_ sv, "(unexpected continuation byte 0x%02"UVxf", with no preceding start byte)", uv);
if (s == s0)
Perl_sv_catpvf(aTHX_ sv, "(unexpected non-continuation byte 0x%02"UVxf", immediately after start byte 0x%02"UVxf")",
(UV)s[1], startbyte);
- else
+ else {
+ const int len = (int)(s-s0);
Perl_sv_catpvf(aTHX_ sv, "(unexpected non-continuation byte 0x%02"UVxf", %d byte%s after start byte 0x%02"UVxf", expected %d bytes)",
- (UV)s[1], s - s0, s - s0 > 1 ? "s" : "", startbyte, expectlen);
-
+ (UV)s[1], len, len > 1 ? "s" : "", startbyte, (int)expectlen);
+ }
+
break;
case UTF8_WARN_FE_FF:
Perl_sv_catpvf(aTHX_ sv, "(byte 0x%02"UVxf")", uv);
break;
case UTF8_WARN_SHORT:
Perl_sv_catpvf(aTHX_ sv, "(%d byte%s, need %d, after start byte 0x%02"UVxf")",
- curlen, curlen == 1 ? "" : "s", expectlen, startbyte);
+ (int)curlen, curlen == 1 ? "" : "s", (int)expectlen, startbyte);
expectlen = curlen; /* distance for caller to skip */
break;
case UTF8_WARN_OVERFLOW:
break;
case UTF8_WARN_LONG:
Perl_sv_catpvf(aTHX_ sv, "(%d byte%s, need %d, after start byte 0x%02"UVxf")",
- expectlen, expectlen == 1 ? "": "s", UNISKIP(uv), startbyte);
+ (int)expectlen, expectlen == 1 ? "": "s", UNISKIP(uv), startbyte);
break;
case UTF8_WARN_FFFF:
Perl_sv_catpvf(aTHX_ sv, "(character 0x%04"UVxf")", uv);
break;
default:
- Perl_sv_catpv(aTHX_ sv, "(unknown reason)");
+ sv_catpvs(sv, "(unknown reason)");
break;
}
if (warning) {
- char *s = SvPVX(sv);
+ const char * const s = SvPVX_const(sv);
if (PL_op)
Perl_warner(aTHX_ packWARN(WARN_UTF8),
UV
Perl_utf8_to_uvchr(pTHX_ const U8 *s, STRLEN *retlen)
{
- return Perl_utf8n_to_uvchr(aTHX_ s, UTF8_MAXBYTES, retlen,
- ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY);
+ PERL_ARGS_ASSERT_UTF8_TO_UVCHR;
+
+ return utf8n_to_uvchr(s, UTF8_MAXBYTES, retlen,
+ ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY);
}
/*
UV
Perl_utf8_to_uvuni(pTHX_ const U8 *s, STRLEN *retlen)
{
+ PERL_ARGS_ASSERT_UTF8_TO_UVUNI;
+
/* Call the low level routine asking for checks */
return Perl_utf8n_to_uvuni(aTHX_ s, UTF8_MAXBYTES, retlen,
ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY);
STRLEN
Perl_utf8_length(pTHX_ const U8 *s, const U8 *e)
{
+ dVAR;
STRLEN len = 0;
+ U8 t = 0;
+
+ PERL_ARGS_ASSERT_UTF8_LENGTH;
/* Note: cannot use UTF8_IS_...() too eagerly here since e.g.
* the bitops (especially ~) can create illegal UTF-8.
* In other words: in Perl UTF-8 is not just for Unicode. */
- if (e < s) {
- if (ckWARN_d(WARN_UTF8)) {
- if (PL_op)
- Perl_warner(aTHX_ packWARN(WARN_UTF8),
- "%s in %s", unees, OP_DESC(PL_op));
- else
- Perl_warner(aTHX_ packWARN(WARN_UTF8), unees);
- }
- return 0;
- }
+ if (e < s)
+ goto warn_and_return;
while (s < e) {
- U8 t = UTF8SKIP(s);
-
+ t = UTF8SKIP(s);
if (e - s < t) {
+ warn_and_return:
if (ckWARN_d(WARN_UTF8)) {
if (PL_op)
Perl_warner(aTHX_ packWARN(WARN_UTF8),
- unees, OP_DESC(PL_op));
+ "%s in %s", unees, OP_DESC(PL_op));
else
Perl_warner(aTHX_ packWARN(WARN_UTF8), unees);
}
IV
Perl_utf8_distance(pTHX_ const U8 *a, const U8 *b)
{
- IV off = 0;
-
- /* Note: cannot use UTF8_IS_...() too eagerly here since e.g.
- * the bitops (especially ~) can create illegal UTF-8.
- * In other words: in Perl UTF-8 is not just for Unicode. */
-
- if (a < b) {
- while (a < b) {
- const U8 c = UTF8SKIP(a);
-
- if (b - a < c) {
- if (ckWARN_d(WARN_UTF8)) {
- if (PL_op)
- Perl_warner(aTHX_ packWARN(WARN_UTF8),
- "%s in %s", unees, OP_DESC(PL_op));
- else
- Perl_warner(aTHX_ packWARN(WARN_UTF8), unees);
- }
- return off;
- }
- a += c;
- off--;
- }
- }
- else {
- while (b < a) {
- U8 c = UTF8SKIP(b);
-
- if (a - b < c) {
- if (ckWARN_d(WARN_UTF8)) {
- if (PL_op)
- Perl_warner(aTHX_ packWARN(WARN_UTF8),
- "%s in %s", unees, OP_DESC(PL_op));
- else
- Perl_warner(aTHX_ packWARN(WARN_UTF8), unees);
- }
- return off;
- }
- b += c;
- off++;
- }
- }
+ PERL_ARGS_ASSERT_UTF8_DISTANCE;
- return off;
+ return (a < b) ? -1 * (IV) utf8_length(a, b) : (IV) utf8_length(b, a);
}
/*
*/
U8 *
-Perl_utf8_hop(pTHX_ U8 *s, I32 off)
+Perl_utf8_hop(pTHX_ const U8 *s, I32 off)
{
+ PERL_ARGS_ASSERT_UTF8_HOP;
+
+ PERL_UNUSED_CONTEXT;
/* Note: cannot use UTF8_IS_...() too eagerly here since e.g
* the bitops (especially ~) can create illegal UTF-8.
* In other words: in Perl UTF-8 is not just for Unicode. */
s--;
}
}
- return s;
+ return (U8 *)s;
}
/*
updates len to contain the new length.
Returns zero on failure, setting C<len> to -1.
+If you need a copy of the string, see C<bytes_from_utf8>.
+
=cut
*/
U8 *
Perl_utf8_to_bytes(pTHX_ U8 *s, STRLEN *len)
{
- U8 *send;
+ U8 * const save = s;
+ U8 * const send = s + *len;
U8 *d;
- U8 *save = s;
+
+ PERL_ARGS_ASSERT_UTF8_TO_BYTES;
/* ensure valid UTF-8 and chars < 256 before updating string */
- for (send = s + *len; s < send; ) {
+ while (s < send) {
U8 c = *s++;
if (!UTF8_IS_INVARIANT(c) &&
(!UTF8_IS_DOWNGRADEABLE_START(c) || (s >= send)
|| !(c = *s++) || !UTF8_IS_CONTINUATION(c))) {
- *len = -1;
+ *len = ((STRLEN) -1);
return 0;
}
}
const U8 *send;
I32 count = 0;
+ PERL_ARGS_ASSERT_BYTES_FROM_UTF8;
+
+ PERL_UNUSED_CONTEXT;
if (!*is_utf8)
return (U8 *)start;
}
}
- *is_utf8 = 0;
+ *is_utf8 = FALSE;
- Newz(801, d, (*len) - count + 1, U8);
+ Newx(d, (*len) - count + 1, U8);
s = start; start = d;
while (s < send) {
U8 c = *s++;
U8 *d;
U8 *dst;
- Newz(801, d, (*len) * 2 + 1, U8);
+ PERL_ARGS_ASSERT_BYTES_TO_UTF8;
+ PERL_UNUSED_CONTEXT;
+
+ Newx(d, (*len) * 2 + 1, U8);
dst = d;
while (s < send) {
U8* pend;
U8* dstart = d;
+ PERL_ARGS_ASSERT_UTF16_TO_UTF8;
+
if (bytelen == 1 && p[0] == 0) { /* Be understanding. */
d[0] = 0;
*newlen = 1;
}
if (bytelen & 1)
- Perl_croak(aTHX_ "panic: utf16_to_utf8: odd bytelen %"UVf, (UV)bytelen);
+ Perl_croak(aTHX_ "panic: utf16_to_utf8: odd bytelen %"UVuf, (UV)bytelen);
pend = p + bytelen;
UV uv = (p[0] << 8) + p[1]; /* UTF-16BE */
p += 2;
if (uv < 0x80) {
+#ifdef EBCDIC
+ *d++ = UNI_TO_NATIVE(uv);
+#else
*d++ = (U8)uv;
+#endif
continue;
}
if (uv < 0x800) {
Perl_utf16_to_utf8_reversed(pTHX_ U8* p, U8* d, I32 bytelen, I32 *newlen)
{
U8* s = (U8*)p;
- U8* send = s + bytelen;
+ U8* const send = s + bytelen;
+
+ PERL_ARGS_ASSERT_UTF16_TO_UTF8_REVERSED;
+
while (s < send) {
- U8 tmp = s[0];
+ const U8 tmp = s[0];
s[0] = s[1];
s[1] = tmp;
s += 2;
UV
Perl_to_uni_upper(pTHX_ UV c, U8* p, STRLEN *lenp)
{
+ PERL_ARGS_ASSERT_TO_UNI_UPPER;
+
uvchr_to_utf8(p, c);
return to_utf8_upper(p, p, lenp);
}
UV
Perl_to_uni_title(pTHX_ UV c, U8* p, STRLEN *lenp)
{
+ PERL_ARGS_ASSERT_TO_UNI_TITLE;
+
uvchr_to_utf8(p, c);
return to_utf8_title(p, p, lenp);
}
UV
Perl_to_uni_lower(pTHX_ UV c, U8* p, STRLEN *lenp)
{
+ PERL_ARGS_ASSERT_TO_UNI_LOWER;
+
uvchr_to_utf8(p, c);
return to_utf8_lower(p, p, lenp);
}
UV
Perl_to_uni_fold(pTHX_ UV c, U8* p, STRLEN *lenp)
{
+ PERL_ARGS_ASSERT_TO_UNI_FOLD;
+
uvchr_to_utf8(p, c);
return to_utf8_fold(p, p, lenp);
}
return (U32)to_uni_lower(c, tmpbuf, &len);
}
-bool
-Perl_is_utf8_alnum(pTHX_ const U8 *p)
+static bool
+S_is_utf8_common(pTHX_ const U8 *const p, SV **swash,
+ const char *const swashname)
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_COMMON;
+
if (!is_utf8_char(p))
return FALSE;
- if (!PL_utf8_alnum)
- /* NOTE: "IsWord", not "IsAlnum", since Alnum is a true
- * descendant of isalnum(3), in other words, it doesn't
- * contain the '_'. --jhi */
- PL_utf8_alnum = swash_init("utf8", "IsWord", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_alnum, p, TRUE) != 0;
-/* return *p == '_' || is_utf8_alpha(p) || is_utf8_digit(p); */
-#ifdef SURPRISINGLY_SLOWER /* probably because alpha is usually true */
- if (!PL_utf8_alnum)
- PL_utf8_alnum = swash_init("utf8", "",
- sv_2mortal(newSVpv("+utf8::IsAlpha\n+utf8::IsDigit\n005F\n",0)), 0, 0);
- return swash_fetch(PL_utf8_alnum, p, TRUE) != 0;
-#endif
+ if (!*swash)
+ *swash = swash_init("utf8", swashname, &PL_sv_undef, 1, 0);
+ return swash_fetch(*swash, p, TRUE) != 0;
+}
+
+bool
+Perl_is_utf8_alnum(pTHX_ const U8 *p)
+{
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_ALNUM;
+
+ /* NOTE: "IsWord", not "IsAlnum", since Alnum is a true
+ * descendant of isalnum(3), in other words, it doesn't
+ * contain the '_'. --jhi */
+ return is_utf8_common(p, &PL_utf8_alnum, "IsWord");
}
bool
Perl_is_utf8_alnumc(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_alnum)
- PL_utf8_alnum = swash_init("utf8", "IsAlnumC", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_alnum, p, TRUE) != 0;
-/* return is_utf8_alpha(p) || is_utf8_digit(p); */
-#ifdef SURPRISINGLY_SLOWER /* probably because alpha is usually true */
- if (!PL_utf8_alnum)
- PL_utf8_alnum = swash_init("utf8", "",
- sv_2mortal(newSVpv("+utf8::IsAlpha\n+utf8::IsDigit\n005F\n",0)), 0, 0);
- return swash_fetch(PL_utf8_alnum, p, TRUE) != 0;
-#endif
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_ALNUMC;
+
+ return is_utf8_common(p, &PL_utf8_alnumc, "IsAlnumC");
}
bool
Perl_is_utf8_idfirst(pTHX_ const U8 *p) /* The naming is historical. */
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_IDFIRST;
+
if (*p == '_')
return TRUE;
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_idstart) /* is_utf8_idstart would be more logical. */
- PL_utf8_idstart = swash_init("utf8", "IdStart", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_idstart, p, TRUE) != 0;
+ /* is_utf8_idstart would be more logical. */
+ return is_utf8_common(p, &PL_utf8_idstart, "IdStart");
}
bool
Perl_is_utf8_idcont(pTHX_ const U8 *p)
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_IDCONT;
+
if (*p == '_')
return TRUE;
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_idcont)
- PL_utf8_idcont = swash_init("utf8", "IdContinue", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_idcont, p, TRUE) != 0;
+ return is_utf8_common(p, &PL_utf8_idcont, "IdContinue");
}
bool
Perl_is_utf8_alpha(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_alpha)
- PL_utf8_alpha = swash_init("utf8", "IsAlpha", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_alpha, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_ALPHA;
+
+ return is_utf8_common(p, &PL_utf8_alpha, "IsAlpha");
}
bool
Perl_is_utf8_ascii(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_ascii)
- PL_utf8_ascii = swash_init("utf8", "IsAscii", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_ascii, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_ASCII;
+
+ return is_utf8_common(p, &PL_utf8_ascii, "IsAscii");
}
bool
Perl_is_utf8_space(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_space)
- PL_utf8_space = swash_init("utf8", "IsSpacePerl", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_space, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_SPACE;
+
+ return is_utf8_common(p, &PL_utf8_space, "IsSpacePerl");
}
bool
Perl_is_utf8_digit(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_digit)
- PL_utf8_digit = swash_init("utf8", "IsDigit", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_digit, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_DIGIT;
+
+ return is_utf8_common(p, &PL_utf8_digit, "IsDigit");
}
bool
Perl_is_utf8_upper(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_upper)
- PL_utf8_upper = swash_init("utf8", "IsUppercase", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_upper, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_UPPER;
+
+ return is_utf8_common(p, &PL_utf8_upper, "IsUppercase");
}
bool
Perl_is_utf8_lower(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_lower)
- PL_utf8_lower = swash_init("utf8", "IsLowercase", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_lower, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_LOWER;
+
+ return is_utf8_common(p, &PL_utf8_lower, "IsLowercase");
}
bool
Perl_is_utf8_cntrl(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_cntrl)
- PL_utf8_cntrl = swash_init("utf8", "IsCntrl", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_cntrl, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_CNTRL;
+
+ return is_utf8_common(p, &PL_utf8_cntrl, "IsCntrl");
}
bool
Perl_is_utf8_graph(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_graph)
- PL_utf8_graph = swash_init("utf8", "IsGraph", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_graph, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_GRAPH;
+
+ return is_utf8_common(p, &PL_utf8_graph, "IsGraph");
}
bool
Perl_is_utf8_print(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_print)
- PL_utf8_print = swash_init("utf8", "IsPrint", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_print, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_PRINT;
+
+ return is_utf8_common(p, &PL_utf8_print, "IsPrint");
}
bool
Perl_is_utf8_punct(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_punct)
- PL_utf8_punct = swash_init("utf8", "IsPunct", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_punct, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_PUNCT;
+
+ return is_utf8_common(p, &PL_utf8_punct, "IsPunct");
}
bool
Perl_is_utf8_xdigit(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_xdigit)
- PL_utf8_xdigit = swash_init("utf8", "IsXDigit", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_xdigit, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_XDIGIT;
+
+ return is_utf8_common(p, &PL_utf8_xdigit, "Isxdigit");
}
bool
Perl_is_utf8_mark(pTHX_ const U8 *p)
{
- if (!is_utf8_char(p))
- return FALSE;
- if (!PL_utf8_mark)
- PL_utf8_mark = swash_init("utf8", "IsM", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_mark, p, TRUE) != 0;
+ dVAR;
+
+ PERL_ARGS_ASSERT_IS_UTF8_MARK;
+
+ return is_utf8_common(p, &PL_utf8_mark, "IsM");
}
/*
The "swashp" is a pointer to the swash to use.
Both the special and normal mappings are stored lib/unicore/To/Foo.pl,
-and loaded by SWASHGET, using lib/utf8_heavy.pl. The special (usually,
+and loaded by SWASHNEW, using lib/utf8_heavy.pl. The special (usually,
but not always, a multicharacter mapping), is tried first.
The "special" is a string like "utf8::ToSpecLower", which means the
=cut */
UV
-Perl_to_utf8_case(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp, SV **swashp, const char *normal, const char *special)
+Perl_to_utf8_case(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp,
+ SV **swashp, const char *normal, const char *special)
{
- UV uv1;
+ dVAR;
U8 tmpbuf[UTF8_MAXBYTES_CASE+1];
STRLEN len = 0;
-
- const UV uv0 = utf8_to_uvchr(p, 0);
+ const UV uv0 = utf8_to_uvchr(p, NULL);
/* The NATIVE_TO_UNI() and UNI_TO_NATIVE() mappings
* are necessary in EBCDIC, they are redundant no-ops
* in ASCII-ish platforms, and hopefully optimized away. */
- uv1 = NATIVE_TO_UNI(uv0);
+ const UV uv1 = NATIVE_TO_UNI(uv0);
+
+ PERL_ARGS_ASSERT_TO_UTF8_CASE;
+
uvuni_to_utf8(tmpbuf, uv1);
if (!*swashp) /* load on-demand */
if (special && (uv1 == 0xDF || uv1 > 0xFF)) {
/* It might be "special" (sometimes, but not always,
* a multicharacter mapping) */
- HV *hv;
+ HV * const hv = get_hv(special, FALSE);
SV **svp;
- if ((hv = get_hv(special, FALSE)) &&
+ if (hv &&
(svp = hv_fetch(hv, (const char*)tmpbuf, UNISKIP(uv1), FALSE)) &&
(*svp)) {
- char *s;
+ const char *s;
- s = SvPV(*svp, len);
+ s = SvPV_const(*svp, len);
if (len == 1)
len = uvuni_to_utf8(ustrp, NATIVE_TO_UNI(*(U8*)s)) - ustrp;
else {
STRLEN tlen = 0;
while (t < tend) {
- UV c = utf8_to_uvchr(t, &tlen);
+ const UV c = utf8_to_uvchr(t, &tlen);
if (tlen > 0) {
d = uvchr_to_utf8(d, UNI_TO_NATIVE(c));
t += tlen;
}
if (!len && *swashp) {
- UV uv2 = swash_fetch(*swashp, tmpbuf, TRUE);
-
+ const UV uv2 = swash_fetch(*swashp, tmpbuf, TRUE);
+
if (uv2) {
/* It was "normal" (a single character mapping). */
- UV uv3 = UNI_TO_NATIVE(uv2);
-
+ const UV uv3 = UNI_TO_NATIVE(uv2);
len = uvchr_to_utf8(ustrp, uv3) - ustrp;
}
}
UV
Perl_to_utf8_upper(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp)
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_TO_UTF8_UPPER;
+
return Perl_to_utf8_case(aTHX_ p, ustrp, lenp,
&PL_utf8_toupper, "ToUpper", "utf8::ToSpecUpper");
}
UV
Perl_to_utf8_title(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp)
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_TO_UTF8_TITLE;
+
return Perl_to_utf8_case(aTHX_ p, ustrp, lenp,
&PL_utf8_totitle, "ToTitle", "utf8::ToSpecTitle");
}
UV
Perl_to_utf8_lower(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp)
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_TO_UTF8_LOWER;
+
return Perl_to_utf8_case(aTHX_ p, ustrp, lenp,
&PL_utf8_tolower, "ToLower", "utf8::ToSpecLower");
}
UV
Perl_to_utf8_fold(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp)
{
+ dVAR;
+
+ PERL_ARGS_ASSERT_TO_UTF8_FOLD;
+
return Perl_to_utf8_case(aTHX_ p, ustrp, lenp,
&PL_utf8_tofold, "ToFold", "utf8::ToSpecFold");
}
-/* a "swash" is a swatch hash */
-
+/* Note:
+ * A "swash" is a swatch hash.
+ * A "swatch" is a bit vector generated by utf8.c:S_swash_get().
+ * C<pkg> is a pointer to a package name for SWASHNEW, should be "utf8".
+ * For other parameters, see utf8::SWASHNEW in lib/utf8_heavy.pl.
+ */
SV*
Perl_swash_init(pTHX_ const char* pkg, const char* name, SV *listsv, I32 minbits, I32 none)
{
dVAR;
SV* retval;
- SV* tokenbufsv = sv_newmortal();
dSP;
const size_t pkg_len = strlen(pkg);
const size_t name_len = strlen(name);
- HV *stash = gv_stashpvn(pkg, pkg_len, FALSE);
+ HV * const stash = gv_stashpvn(pkg, pkg_len, 0);
SV* errsv_save;
+ PERL_ARGS_ASSERT_SWASH_INIT;
+
PUSHSTACKi(PERLSI_MAGIC);
ENTER;
SAVEI32(PL_hints);
if (!gv_fetchmeth(stash, "SWASHNEW", 8, -1)) { /* demand load utf8 */
ENTER;
errsv_save = newSVsv(ERRSV);
+ /* It is assumed that callers of this routine are not passing in any
+ user derived data. */
+ /* Need to do this after save_re_context() as it will set PL_tainted to
+ 1 while saving $1 etc (see the code after getrx: in Perl_magic_get).
+ Even line to create errsv_save can turn on PL_tainted. */
+ SAVEBOOL(PL_tainted);
+ PL_tainted = 0;
Perl_load_module(aTHX_ PERL_LOADMOD_NOIMPORT, newSVpvn(pkg,pkg_len),
- Nullsv);
+ NULL);
if (!SvTRUE(ERRSV))
sv_setsv(ERRSV, errsv_save);
SvREFCNT_dec(errsv_save);
SPAGAIN;
PUSHMARK(SP);
EXTEND(SP,5);
- PUSHs(sv_2mortal(newSVpvn(pkg, pkg_len)));
- PUSHs(sv_2mortal(newSVpvn(name, name_len)));
+ mPUSHp(pkg, pkg_len);
+ mPUSHp(name, name_len);
PUSHs(listsv);
- PUSHs(sv_2mortal(newSViv(minbits)));
- PUSHs(sv_2mortal(newSViv(none)));
+ mPUSHi(minbits);
+ mPUSHi(none);
PUTBACK;
- if (IN_PERL_COMPILETIME) {
- /* XXX ought to be handled by lex_start */
- SAVEI32(PL_in_my);
- PL_in_my = 0;
- sv_setpv(tokenbufsv, PL_tokenbuf);
- }
errsv_save = newSVsv(ERRSV);
if (call_method("SWASHNEW", G_SCALAR))
retval = newSVsv(*PL_stack_sp--);
LEAVE;
POPSTACK;
if (IN_PERL_COMPILETIME) {
- STRLEN len;
- const char* pv = SvPV(tokenbufsv, len);
-
- Copy(pv, PL_tokenbuf, len+1, char);
- PL_curcop->op_private = (U8)(PL_hints & HINT_PRIVATE_MASK);
+ CopHINTS_set(PL_curcop, PL_hints);
}
if (!SvROK(retval) || SvTYPE(SvRV(retval)) != SVt_PVHV) {
if (SvPOK(retval))
Perl_croak(aTHX_ "Can't find Unicode property definition \"%"SVf"\"",
- retval);
+ SVfARG(retval));
Perl_croak(aTHX_ "SWASHNEW didn't return an HV ref");
}
return retval;
* (see lib/unicore/SpecCase.txt) The SWASHGET in lib/utf8_heavy.pl is
* the lower-level routine, and it is similarly broken for returning
* multiple values. --jhi */
+/* Now SWASHGET is recasted into S_swash_get in this file. */
+
+/* Note:
+ * Returns the value of property/mapping C<swash> for the first character
+ * of the string C<ptr>. If C<do_utf8> is true, the string C<ptr> is
+ * assumed to be in utf8. If C<do_utf8> is false, the string C<ptr> is
+ * assumed to be in native 8-bit encoding. Caches the swatch in C<swash>.
+ */
UV
-Perl_swash_fetch(pTHX_ SV *sv, const U8 *ptr, bool do_utf8)
+Perl_swash_fetch(pTHX_ SV *swash, const U8 *ptr, bool do_utf8)
{
dVAR;
- HV* hv = (HV*)SvRV(sv);
+ HV* const hv = (HV*)SvRV(swash);
U32 klen;
U32 off;
STRLEN slen;
STRLEN needents;
- U8 *tmps = NULL;
+ const U8 *tmps = NULL;
U32 bit;
- SV *retval;
+ SV *swatch;
U8 tmputf8[2];
- UV c = NATIVE_TO_ASCII(*ptr);
+ const UV c = NATIVE_TO_ASCII(*ptr);
+
+ PERL_ARGS_ASSERT_SWASH_FETCH;
if (!do_utf8 && !UNI_IS_INVARIANT(c)) {
- tmputf8[0] = (U8)UTF8_EIGHT_BIT_HI(c);
- tmputf8[1] = (U8)UTF8_EIGHT_BIT_LO(c);
- ptr = tmputf8;
+ tmputf8[0] = (U8)UTF8_EIGHT_BIT_HI(c);
+ tmputf8[1] = (U8)UTF8_EIGHT_BIT_LO(c);
+ ptr = tmputf8;
}
/* Given a UTF-X encoded char 0xAA..0xYY,0xZZ
* then the "swatch" is a vec() for al the chars which start
klen = UTF8SKIP(ptr) - 1;
off = ptr[klen];
- if (klen == 0)
- {
+ if (klen == 0) {
/* If char in invariant then swatch is for all the invariant chars
* In both UTF-8 and UTF-8-MOD that happens to be UTF_CONTINUATION_MARK
*/
- needents = UTF_CONTINUATION_MARK;
- off = NATIVE_TO_UTF(ptr[klen]);
- }
- else
- {
+ needents = UTF_CONTINUATION_MARK;
+ off = NATIVE_TO_UTF(ptr[klen]);
+ }
+ else {
/* If char is encoded then swatch is for the prefix */
- needents = (1 << UTF_ACCUMULATION_SHIFT);
- off = NATIVE_TO_UTF(ptr[klen]) & UTF_CONTINUATION_MASK;
- }
+ needents = (1 << UTF_ACCUMULATION_SHIFT);
+ off = NATIVE_TO_UTF(ptr[klen]) & UTF_CONTINUATION_MASK;
+ }
/*
* This single-entry cache saves about 1/3 of the utf8 overhead in test
/* Try our second-level swatch cache, kept in a hash. */
SV** svp = hv_fetch(hv, (const char*)ptr, klen, FALSE);
- /* If not cached, generate it via utf8::SWASHGET */
- if (!svp || !SvPOK(*svp) || !(tmps = (U8*)SvPV(*svp, slen))) {
- dSP;
+ /* If not cached, generate it via swash_get */
+ if (!svp || !SvPOK(*svp)
+ || !(tmps = (const U8*)SvPV_const(*svp, slen))) {
/* We use utf8n_to_uvuni() as we want an index into
Unicode tables, not a native character number.
*/
- UV code_point = utf8n_to_uvuni(ptr, UTF8_MAXBYTES, 0,
+ const UV code_point = utf8n_to_uvuni(ptr, UTF8_MAXBYTES, 0,
ckWARN(WARN_UTF8) ?
0 : UTF8_ALLOW_ANY);
- SV *errsv_save;
- ENTER;
- SAVETMPS;
- save_re_context();
- PUSHSTACKi(PERLSI_MAGIC);
- PUSHMARK(SP);
- EXTEND(SP,3);
- PUSHs((SV*)sv);
- /* On EBCDIC & ~(0xA0-1) isn't a useful thing to do */
- PUSHs(sv_2mortal(newSViv((klen) ?
- (code_point & ~(needents - 1)) : 0)));
- PUSHs(sv_2mortal(newSViv(needents)));
- PUTBACK;
- errsv_save = newSVsv(ERRSV);
- if (call_method("SWASHGET", G_SCALAR))
- retval = newSVsv(*PL_stack_sp--);
- else
- retval = &PL_sv_undef;
- if (!SvTRUE(ERRSV))
- sv_setsv(ERRSV, errsv_save);
- SvREFCNT_dec(errsv_save);
- POPSTACK;
- FREETMPS;
- LEAVE;
+ swatch = swash_get(swash,
+ /* On EBCDIC & ~(0xA0-1) isn't a useful thing to do */
+ (klen) ? (code_point & ~(needents - 1)) : 0,
+ needents);
+
if (IN_PERL_COMPILETIME)
- PL_curcop->op_private = (U8)(PL_hints & HINT_PRIVATE_MASK);
+ CopHINTS_set(PL_curcop, PL_hints);
- svp = hv_store(hv, (const char *)ptr, klen, retval, 0);
+ svp = hv_store(hv, (const char *)ptr, klen, swatch, 0);
- if (!svp || !(tmps = (U8*)SvPV(*svp, slen)) || (slen << 3) < needents)
- Perl_croak(aTHX_ "SWASHGET didn't return result of proper length");
+ if (!svp || !(tmps = (U8*)SvPV(*svp, slen))
+ || (slen << 3) < needents)
+ Perl_croak(aTHX_ "panic: swash_fetch got improper swatch");
}
PL_last_swash_hv = hv;
- PL_last_swash_klen = klen;
- PL_last_swash_tmps = tmps;
+ assert(klen <= sizeof(PL_last_swash_key));
+ PL_last_swash_klen = (U8)klen;
+ /* FIXME change interpvar.h? */
+ PL_last_swash_tmps = (U8 *) tmps;
PL_last_swash_slen = slen;
if (klen)
Copy(ptr, PL_last_swash_key, klen, U8);
off <<= 2;
return (tmps[off] << 24) + (tmps[off+1] << 16) + (tmps[off+2] << 8) + tmps[off + 3] ;
}
- Perl_croak(aTHX_ "panic: swash_fetch");
- return 0;
+ Perl_croak(aTHX_ "panic: swash_fetch got swatch of unexpected bit width");
+ NORETURN_FUNCTION_END;
}
+/* Note:
+ * Returns a swatch (a bit vector string) for a code point sequence
+ * that starts from the value C<start> and comprises the number C<span>.
+ * A C<swash> must be an object created by SWASHNEW (see lib/utf8_heavy.pl).
+ * Should be used via swash_fetch, which will cache the swatch in C<swash>.
+ */
+STATIC SV*
+S_swash_get(pTHX_ SV* swash, UV start, UV span)
+{
+ SV *swatch;
+ U8 *l, *lend, *x, *xend, *s;
+ STRLEN lcur, xcur, scur;
+ HV* const hv = (HV*)SvRV(swash);
+ SV** const listsvp = hv_fetchs(hv, "LIST", FALSE);
+ SV** const typesvp = hv_fetchs(hv, "TYPE", FALSE);
+ SV** const bitssvp = hv_fetchs(hv, "BITS", FALSE);
+ SV** const nonesvp = hv_fetchs(hv, "NONE", FALSE);
+ SV** const extssvp = hv_fetchs(hv, "EXTRAS", FALSE);
+ const U8* const typestr = (U8*)SvPV_nolen(*typesvp);
+ const int typeto = typestr[0] == 'T' && typestr[1] == 'o';
+ const STRLEN bits = SvUV(*bitssvp);
+ const STRLEN octets = bits >> 3; /* if bits == 1, then octets == 0 */
+ const UV none = SvUV(*nonesvp);
+ const UV end = start + span;
+
+ PERL_ARGS_ASSERT_SWASH_GET;
+
+ if (bits != 1 && bits != 8 && bits != 16 && bits != 32) {
+ Perl_croak(aTHX_ "panic: swash_get doesn't expect bits %"UVuf,
+ (UV)bits);
+ }
+
+ /* create and initialize $swatch */
+ scur = octets ? (span * octets) : (span + 7) / 8;
+ swatch = newSV(scur);
+ SvPOK_on(swatch);
+ s = (U8*)SvPVX(swatch);
+ if (octets && none) {
+ const U8* const e = s + scur;
+ while (s < e) {
+ if (bits == 8)
+ *s++ = (U8)(none & 0xff);
+ else if (bits == 16) {
+ *s++ = (U8)((none >> 8) & 0xff);
+ *s++ = (U8)( none & 0xff);
+ }
+ else if (bits == 32) {
+ *s++ = (U8)((none >> 24) & 0xff);
+ *s++ = (U8)((none >> 16) & 0xff);
+ *s++ = (U8)((none >> 8) & 0xff);
+ *s++ = (U8)( none & 0xff);
+ }
+ }
+ *s = '\0';
+ }
+ else {
+ (void)memzero((U8*)s, scur + 1);
+ }
+ SvCUR_set(swatch, scur);
+ s = (U8*)SvPVX(swatch);
+
+ /* read $swash->{LIST} */
+ l = (U8*)SvPV(*listsvp, lcur);
+ lend = l + lcur;
+ while (l < lend) {
+ UV min, max, val;
+ STRLEN numlen;
+ I32 flags = PERL_SCAN_SILENT_ILLDIGIT | PERL_SCAN_DISALLOW_PREFIX;
+
+ U8* const nl = (U8*)memchr(l, '\n', lend - l);
+
+ numlen = lend - l;
+ min = grok_hex((char *)l, &numlen, &flags, NULL);
+ if (numlen)
+ l += numlen;
+ else if (nl) {
+ l = nl + 1; /* 1 is length of "\n" */
+ continue;
+ }
+ else {
+ l = lend; /* to LIST's end at which \n is not found */
+ break;
+ }
+
+ if (isBLANK(*l)) {
+ ++l;
+ flags = PERL_SCAN_SILENT_ILLDIGIT | PERL_SCAN_DISALLOW_PREFIX;
+ numlen = lend - l;
+ max = grok_hex((char *)l, &numlen, &flags, NULL);
+ if (numlen)
+ l += numlen;
+ else
+ max = min;
+
+ if (octets) {
+ if (isBLANK(*l)) {
+ ++l;
+ flags = PERL_SCAN_SILENT_ILLDIGIT |
+ PERL_SCAN_DISALLOW_PREFIX;
+ numlen = lend - l;
+ val = grok_hex((char *)l, &numlen, &flags, NULL);
+ if (numlen)
+ l += numlen;
+ else
+ val = 0;
+ }
+ else {
+ val = 0;
+ if (typeto) {
+ Perl_croak(aTHX_ "%s: illegal mapping '%s'",
+ typestr, l);
+ }
+ }
+ }
+ else
+ val = 0; /* bits == 1, then val should be ignored */
+ }
+ else {
+ max = min;
+ if (octets) {
+ val = 0;
+ if (typeto) {
+ Perl_croak(aTHX_ "%s: illegal mapping '%s'", typestr, l);
+ }
+ }
+ else
+ val = 0; /* bits == 1, then val should be ignored */
+ }
+
+ if (nl)
+ l = nl + 1;
+ else
+ l = lend;
+
+ if (max < start)
+ continue;
+
+ if (octets) {
+ UV key;
+ if (min < start) {
+ if (!none || val < none) {
+ val += start - min;
+ }
+ min = start;
+ }
+ for (key = min; key <= max; key++) {
+ STRLEN offset;
+ if (key >= end)
+ goto go_out_list;
+ /* offset must be non-negative (start <= min <= key < end) */
+ offset = octets * (key - start);
+ if (bits == 8)
+ s[offset] = (U8)(val & 0xff);
+ else if (bits == 16) {
+ s[offset ] = (U8)((val >> 8) & 0xff);
+ s[offset + 1] = (U8)( val & 0xff);
+ }
+ else if (bits == 32) {
+ s[offset ] = (U8)((val >> 24) & 0xff);
+ s[offset + 1] = (U8)((val >> 16) & 0xff);
+ s[offset + 2] = (U8)((val >> 8) & 0xff);
+ s[offset + 3] = (U8)( val & 0xff);
+ }
+
+ if (!none || val < none)
+ ++val;
+ }
+ }
+ else { /* bits == 1, then val should be ignored */
+ UV key;
+ if (min < start)
+ min = start;
+ for (key = min; key <= max; key++) {
+ const STRLEN offset = (STRLEN)(key - start);
+ if (key >= end)
+ goto go_out_list;
+ s[offset >> 3] |= 1 << (offset & 7);
+ }
+ }
+ } /* while */
+ go_out_list:
+
+ /* read $swash->{EXTRAS} */
+ x = (U8*)SvPV(*extssvp, xcur);
+ xend = x + xcur;
+ while (x < xend) {
+ STRLEN namelen;
+ U8 *namestr;
+ SV** othersvp;
+ HV* otherhv;
+ STRLEN otherbits;
+ SV **otherbitssvp, *other;
+ U8 *s, *o, *nl;
+ STRLEN slen, olen;
+
+ const U8 opc = *x++;
+ if (opc == '\n')
+ continue;
+
+ nl = (U8*)memchr(x, '\n', xend - x);
+
+ if (opc != '-' && opc != '+' && opc != '!' && opc != '&') {
+ if (nl) {
+ x = nl + 1; /* 1 is length of "\n" */
+ continue;
+ }
+ else {
+ x = xend; /* to EXTRAS' end at which \n is not found */
+ break;
+ }
+ }
+
+ namestr = x;
+ if (nl) {
+ namelen = nl - namestr;
+ x = nl + 1;
+ }
+ else {
+ namelen = xend - namestr;
+ x = xend;
+ }
+
+ othersvp = hv_fetch(hv, (char *)namestr, namelen, FALSE);
+ otherhv = (HV*)SvRV(*othersvp);
+ otherbitssvp = hv_fetchs(otherhv, "BITS", FALSE);
+ otherbits = (STRLEN)SvUV(*otherbitssvp);
+ if (bits < otherbits)
+ Perl_croak(aTHX_ "panic: swash_get found swatch size mismatch");
+
+ /* The "other" swatch must be destroyed after. */
+ other = swash_get(*othersvp, start, span);
+ o = (U8*)SvPV(other, olen);
+
+ if (!olen)
+ Perl_croak(aTHX_ "panic: swash_get got improper swatch");
+
+ s = (U8*)SvPV(swatch, slen);
+ if (bits == 1 && otherbits == 1) {
+ if (slen != olen)
+ Perl_croak(aTHX_ "panic: swash_get found swatch length mismatch");
+
+ switch (opc) {
+ case '+':
+ while (slen--)
+ *s++ |= *o++;
+ break;
+ case '!':
+ while (slen--)
+ *s++ |= ~*o++;
+ break;
+ case '-':
+ while (slen--)
+ *s++ &= ~*o++;
+ break;
+ case '&':
+ while (slen--)
+ *s++ &= *o++;
+ break;
+ default:
+ break;
+ }
+ }
+ else {
+ STRLEN otheroctets = otherbits >> 3;
+ STRLEN offset = 0;
+ U8* const send = s + slen;
+
+ while (s < send) {
+ UV otherval = 0;
+
+ if (otherbits == 1) {
+ otherval = (o[offset >> 3] >> (offset & 7)) & 1;
+ ++offset;
+ }
+ else {
+ STRLEN vlen = otheroctets;
+ otherval = *o++;
+ while (--vlen) {
+ otherval <<= 8;
+ otherval |= *o++;
+ }
+ }
+
+ if (opc == '+' && otherval)
+ NOOP; /* replace with otherval */
+ else if (opc == '!' && !otherval)
+ otherval = 1;
+ else if (opc == '-' && otherval)
+ otherval = 0;
+ else if (opc == '&' && !otherval)
+ otherval = 0;
+ else {
+ s += octets; /* no replacement */
+ continue;
+ }
+
+ if (bits == 8)
+ *s++ = (U8)( otherval & 0xff);
+ else if (bits == 16) {
+ *s++ = (U8)((otherval >> 8) & 0xff);
+ *s++ = (U8)( otherval & 0xff);
+ }
+ else if (bits == 32) {
+ *s++ = (U8)((otherval >> 24) & 0xff);
+ *s++ = (U8)((otherval >> 16) & 0xff);
+ *s++ = (U8)((otherval >> 8) & 0xff);
+ *s++ = (U8)( otherval & 0xff);
+ }
+ }
+ }
+ sv_free(other); /* through with it! */
+ } /* while */
+ return swatch;
+}
/*
=for apidoc A|U8 *|uvchr_to_utf8|U8 *d|UV uv
/* On ASCII machines this is normally a macro but we want a
real function in case XS code wants it
*/
-#undef Perl_uvchr_to_utf8
U8 *
Perl_uvchr_to_utf8(pTHX_ U8 *d, UV uv)
{
+ PERL_ARGS_ASSERT_UVCHR_TO_UTF8;
+
return Perl_uvuni_to_utf8_flags(aTHX_ d, NATIVE_TO_UNI(uv), 0);
}
U8 *
Perl_uvchr_to_utf8_flags(pTHX_ U8 *d, UV uv, UV flags)
{
+ PERL_ARGS_ASSERT_UVCHR_TO_UTF8_FLAGS;
+
return Perl_uvuni_to_utf8_flags(aTHX_ d, NATIVE_TO_UNI(uv), flags);
}
/*
-=for apidoc A|UV|utf8n_to_uvchr|U8 *s|STRLEN curlen|STRLEN *retlen|U32 flags
+=for apidoc A|UV|utf8n_to_uvchr|U8 *s|STRLEN curlen|STRLEN *retlen|U32
+flags
-Returns the native character value of the first character in the string C<s>
+Returns the native character value of the first character in the string
+C<s>
which is assumed to be in UTF-8 encoding; C<retlen> will be set to the
length, in bytes, of that character.
/* On ASCII machines this is normally a macro but we want
a real function in case XS code wants it
*/
-#undef Perl_utf8n_to_uvchr
UV
-Perl_utf8n_to_uvchr(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen, U32 flags)
+Perl_utf8n_to_uvchr(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen,
+U32 flags)
{
- UV uv = Perl_utf8n_to_uvuni(aTHX_ s, curlen, retlen, flags);
+ const UV uv = Perl_utf8n_to_uvuni(aTHX_ s, curlen, retlen, flags);
+
+ PERL_ARGS_ASSERT_UTF8N_TO_UVCHR;
+
return UNI_TO_NATIVE(uv);
}
int truncated = 0;
const char *s, *e;
+ PERL_ARGS_ASSERT_PV_UNI_DISPLAY;
+
sv_setpvn(dsv, "", 0);
+ SvUTF8_off(dsv);
for (s = (const char *)spv, e = s + len; s < e; s += UTF8SKIP(s)) {
UV u;
/* This serves double duty as a flag and a character to print after
}
u = utf8_to_uvchr((U8*)s, 0);
if (u < 256) {
- unsigned char c = (unsigned char)u & 0xFF;
- if (!ok && (flags & UNI_DISPLAY_BACKSLASH)) {
+ const unsigned char c = (unsigned char)u & 0xFF;
+ if (flags & UNI_DISPLAY_BACKSLASH) {
switch (c) {
case '\n':
ok = 'n'; break;
default: break;
}
if (ok) {
- Perl_sv_catpvf(aTHX_ dsv, "\\%c", ok);
+ const char string = ok;
+ sv_catpvn(dsv, &string, 1);
}
}
/* isPRINT() is the locale-blind version. */
if (!ok && (flags & UNI_DISPLAY_ISPRINT) && isPRINT(c)) {
- Perl_sv_catpvf(aTHX_ dsv, "%c", c);
+ const char string = c;
+ sv_catpvn(dsv, &string, 1);
ok = 1;
}
}
Perl_sv_catpvf(aTHX_ dsv, "\\x{%"UVxf"}", u);
}
if (truncated)
- sv_catpvn(dsv, "...", 3);
+ sv_catpvs(dsv, "...");
return SvPVX(dsv);
}
The pointer to the PV of the dsv is returned.
-=cut */
+=cut
+*/
char *
Perl_sv_uni_display(pTHX_ SV *dsv, SV *ssv, STRLEN pvlim, UV flags)
{
- return Perl_pv_uni_display(aTHX_ dsv, (U8*)SvPVX(ssv), SvCUR(ssv),
- pvlim, flags);
+ PERL_ARGS_ASSERT_SV_UNI_DISPLAY;
+
+ return Perl_pv_uni_display(aTHX_ dsv, (const U8*)SvPVX_const(ssv),
+ SvCUR(ssv), pvlim, flags);
}
/*
I32
Perl_ibcmp_utf8(pTHX_ const char *s1, char **pe1, register UV l1, bool u1, const char *s2, char **pe2, register UV l2, bool u2)
{
+ dVAR;
register const U8 *p1 = (const U8*)s1;
register const U8 *p2 = (const U8*)s2;
- register const U8 *f1 = 0, *f2 = 0;
- register U8 *e1 = 0, *q1 = 0;
- register U8 *e2 = 0, *q2 = 0;
+ register const U8 *f1 = NULL;
+ register const U8 *f2 = NULL;
+ register U8 *e1 = NULL;
+ register U8 *q1 = NULL;
+ register U8 *e2 = NULL;
+ register U8 *q2 = NULL;
STRLEN n1 = 0, n2 = 0;
U8 foldbuf1[UTF8_MAXBYTES_CASE+1];
U8 foldbuf2[UTF8_MAXBYTES_CASE+1];
U8 natbuf[1+1];
STRLEN foldlen1, foldlen2;
bool match;
+
+ PERL_ARGS_ASSERT_IBCMP_UTF8;
if (pe1)
e1 = *(U8**)pe1;
+ /* assert(e1 || l1); */
if (e1 == 0 || (l1 && l1 < (UV)(e1 - (const U8*)s1)))
f1 = (const U8*)s1 + l1;
if (pe2)
e2 = *(U8**)pe2;
+ /* assert(e2 || l2); */
if (e2 == 0 || (l2 && l2 < (UV)(e2 - (const U8*)s2)))
f2 = (const U8*)s2 + l2;
+ /* This shouldn't happen. However, putting an assert() there makes some
+ * tests fail. */
+ /* assert((e1 == 0 && f1 == 0) || (e2 == 0 && f2 == 0) || (f1 == 0 && f2 == 0)); */
if ((e1 == 0 && f1 == 0) || (e2 == 0 && f2 == 0) || (f1 == 0 && f2 == 0))
return 1; /* mismatch; possible infinite loop or false positive */
if (u1)
to_utf8_fold(p1, foldbuf1, &foldlen1);
else {
- natbuf[0] = *p1;
+ uvuni_to_utf8(natbuf, (UV) NATIVE_TO_UNI(((UV)*p1)));
to_utf8_fold(natbuf, foldbuf1, &foldlen1);
}
q1 = foldbuf1;
if (u2)
to_utf8_fold(p2, foldbuf2, &foldlen2);
else {
- natbuf[0] = *p2;
+ uvuni_to_utf8(natbuf, (UV) NATIVE_TO_UNI(((UV)*p2)));
to_utf8_fold(natbuf, foldbuf2, &foldlen2);
}
q2 = foldbuf2;
* indent-tabs-mode: t
* End:
*
- * vim: shiftwidth=4:
-*/
+ * ex: set ts=8 sts=4 sw=4 noet:
+ */