/* utf8.c
*
- * Copyright (c) 1998-2002, Larry Wall
+ * Copyright (C) 2000, 2001, 2002, 2003, 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"
+static char unees[] = "Malformed UTF-8 character (unexpected end of string)";
+
/*
=head1 Unicode Support
=for apidoc A|U8 *|uvuni_to_utf8_flags|U8 *d|UV uv|UV flags
-Adds the UTF8 representation of the Unicode codepoint C<uv> to the end
+Adds the UTF-8 representation of the Unicode codepoint C<uv> to the end
of the string C<d>; C<d> should be have at least C<UTF8_MAXLEN+1> free
bytes available. The return value is the pointer to the byte after the
end of the new character. In other words,
if (ckWARN(WARN_UTF8)) {
if (UNICODE_IS_SURROGATE(uv) &&
!(flags & UNICODE_ALLOW_SURROGATE))
- Perl_warner(aTHX_ WARN_UTF8, "UTF-16 surrogate 0x%04"UVxf, uv);
+ Perl_warner(aTHX_ packWARN(WARN_UTF8), "UTF-16 surrogate 0x%04"UVxf, uv);
else if (
((uv >= 0xFDD0 && uv <= 0xFDEF &&
!(flags & UNICODE_ALLOW_FDD0))
||
- ((uv & 0xFFFF) == 0xFFFE &&
- !(flags & UNICODE_ALLOW_FFFE))
- ||
- ((uv & 0xFFFF) == 0xFFFF &&
+ ((uv & 0xFFFE) == 0xFFFE && /* Either FFFE or FFFF. */
!(flags & UNICODE_ALLOW_FFFF))) &&
/* UNICODE_ALLOW_SUPER includes
* FFFEs and FFFFs beyond 0x10FFFF. */
((uv <= PERL_UNICODE_MAX) ||
!(flags & UNICODE_ALLOW_SUPER))
)
- Perl_warner(aTHX_ WARN_UTF8,
+ Perl_warner(aTHX_ packWARN(WARN_UTF8),
"Unicode character 0x%04"UVxf" is illegal", uv);
}
if (UNI_IS_INVARIANT(uv)) {
- *d++ = UTF_TO_NATIVE(uv);
+ *d++ = (U8)UTF_TO_NATIVE(uv);
return d;
}
#if defined(EBCDIC)
STRLEN len = UNISKIP(uv);
U8 *p = d+len-1;
while (p > d) {
- *p-- = UTF_TO_NATIVE((uv & UTF_CONTINUATION_MASK) | UTF_CONTINUATION_MARK);
+ *p-- = (U8)UTF_TO_NATIVE((uv & UTF_CONTINUATION_MASK) | UTF_CONTINUATION_MARK);
uv >>= UTF_ACCUMULATION_SHIFT;
}
- *p = UTF_TO_NATIVE((uv & UTF_START_MASK(len)) | UTF_START_MARK(len));
+ *p = (U8)UTF_TO_NATIVE((uv & UTF_START_MASK(len)) | UTF_START_MARK(len));
return d+len;
}
#else /* Non loop style */
if (uv < 0x800) {
- *d++ = (( uv >> 6) | 0xc0);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 6) | 0xc0);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
if (uv < 0x10000) {
- *d++ = (( uv >> 12) | 0xe0);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 12) | 0xe0);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
if (uv < 0x200000) {
- *d++ = (( uv >> 18) | 0xf0);
- *d++ = (((uv >> 12) & 0x3f) | 0x80);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 18) | 0xf0);
+ *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
if (uv < 0x4000000) {
- *d++ = (( uv >> 24) | 0xf8);
- *d++ = (((uv >> 18) & 0x3f) | 0x80);
- *d++ = (((uv >> 12) & 0x3f) | 0x80);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 24) | 0xf8);
+ *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
if (uv < 0x80000000) {
- *d++ = (( uv >> 30) | 0xfc);
- *d++ = (((uv >> 24) & 0x3f) | 0x80);
- *d++ = (((uv >> 18) & 0x3f) | 0x80);
- *d++ = (((uv >> 12) & 0x3f) | 0x80);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 30) | 0xfc);
+ *d++ = (U8)(((uv >> 24) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
#ifdef HAS_QUAD
if (uv < UTF8_QUAD_MAX)
#endif
{
- *d++ = 0xfe; /* Can't match U+FEFF! */
- *d++ = (((uv >> 30) & 0x3f) | 0x80);
- *d++ = (((uv >> 24) & 0x3f) | 0x80);
- *d++ = (((uv >> 18) & 0x3f) | 0x80);
- *d++ = (((uv >> 12) & 0x3f) | 0x80);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = 0xfe; /* Can't match U+FEFF! */
+ *d++ = (U8)(((uv >> 30) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 24) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
#ifdef HAS_QUAD
{
- *d++ = 0xff; /* Can't match U+FFFE! */
- *d++ = 0x80; /* 6 Reserved bits */
- *d++ = (((uv >> 60) & 0x0f) | 0x80); /* 2 Reserved bits */
- *d++ = (((uv >> 54) & 0x3f) | 0x80);
- *d++ = (((uv >> 48) & 0x3f) | 0x80);
- *d++ = (((uv >> 42) & 0x3f) | 0x80);
- *d++ = (((uv >> 36) & 0x3f) | 0x80);
- *d++ = (((uv >> 30) & 0x3f) | 0x80);
- *d++ = (((uv >> 24) & 0x3f) | 0x80);
- *d++ = (((uv >> 18) & 0x3f) | 0x80);
- *d++ = (((uv >> 12) & 0x3f) | 0x80);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = 0xff; /* Can't match U+FFFE! */
+ *d++ = 0x80; /* 6 Reserved bits */
+ *d++ = (U8)(((uv >> 60) & 0x0f) | 0x80); /* 2 Reserved bits */
+ *d++ = (U8)(((uv >> 54) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 48) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 42) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 36) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 30) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 24) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
return d;
}
#endif
=for apidoc A|STRLEN|is_utf8_char|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.
+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
-*/
+=cut */
STRLEN
Perl_is_utf8_char(pTHX_ U8 *s)
{
s++;
}
- if (UNISKIP(uv) < len)
+ if ((STRLEN)UNISKIP(uv) < len)
return 0;
return len;
/*
=for apidoc A|bool|is_utf8_string|U8 *s|STRLEN len
-Returns true if first C<len> bytes of the given string form a valid UTF8
-string, false otherwise. Note that 'a valid UTF8 string' does not mean
-'a string that contains UTF8' because a valid ASCII string is a valid
-UTF8 string.
+Returns true if first C<len> bytes of the given string form a valid
+UTF-8 string, false otherwise. Note that 'a valid UTF-8 string' does
+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.
=cut
*/
send = s + len;
while (x < send) {
- c = is_utf8_char(x);
- if (!c)
- return FALSE;
+ /* 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;
+ else {
+ /* ... and call is_utf8_char() only if really needed. */
+ c = is_utf8_char(x);
+ if (!c)
+ return FALSE;
+ }
x += c;
}
if (x != send)
}
/*
+=for apidoc A|bool|is_utf8_string_loc|U8 *s|STRLEN len|U8 **p
+
+Like is_ut8_string but store the location of the failure in
+the last argument.
+
+=cut
+*/
+
+bool
+Perl_is_utf8_string_loc(pTHX_ U8 *s, STRLEN len, U8 **p)
+{
+ U8* x = s;
+ U8* send;
+ STRLEN c;
+
+ if (!len)
+ len = strlen((char *)s);
+ send = s + len;
+
+ 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;
+ }
+ else {
+ /* ... and call is_utf8_char() only if really needed. */
+ c = is_utf8_char(x);
+ if (!c) {
+ if (p)
+ *p = x;
+ return FALSE;
+ }
+ }
+ x += c;
+ }
+ if (x != send) {
+ if (p)
+ *p = x;
+ return FALSE;
+ }
+
+ return TRUE;
+}
+
+/*
=for apidoc A|UV|utf8n_to_uvuni|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>
-which is assumed to be in UTF8 encoding and no longer than C<curlen>;
+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.
-If C<s> does not point to a well-formed UTF8 character, the behaviour
+If C<s> does not point to a well-formed UTF-8 character, the behaviour
is dependent on the value of C<flags>: if it contains UTF8_CHECK_ONLY,
it is assumed that the caller will raise a warning, and this function
will silently just set C<retlen> to C<-1> and return zero. If the
#define UTF8_WARN_SHORT 5
#define UTF8_WARN_OVERFLOW 6
#define UTF8_WARN_SURROGATE 7
-#define UTF8_WARN_BOM 8
-#define UTF8_WARN_LONG 9
-#define UTF8_WARN_FFFF 10
+#define UTF8_WARN_LONG 8
+#define UTF8_WARN_FFFF 9 /* Also FFFE. */
if (curlen == 0 &&
!(flags & UTF8_ALLOW_EMPTY)) {
!(flags & UTF8_ALLOW_SURROGATE)) {
warning = UTF8_WARN_SURROGATE;
goto malformed;
- } else if (UNICODE_IS_BYTE_ORDER_MARK(uv) &&
- !(flags & UTF8_ALLOW_BOM)) {
- warning = UTF8_WARN_BOM;
- goto malformed;
- } else if ((expectlen > UNISKIP(uv)) &&
+ } else if ((expectlen > (STRLEN)UNISKIP(uv)) &&
!(flags & UTF8_ALLOW_LONG)) {
warning = UTF8_WARN_LONG;
goto malformed;
case UTF8_WARN_SURROGATE:
Perl_sv_catpvf(aTHX_ sv, "(UTF-16 surrogate 0x%04"UVxf")", uv);
break;
- case UTF8_WARN_BOM:
- Perl_sv_catpvf(aTHX_ sv, "(byte order mark 0x%04"UVxf")", uv);
- 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);
char *s = SvPVX(sv);
if (PL_op)
- Perl_warner(aTHX_ WARN_UTF8,
+ Perl_warner(aTHX_ packWARN(WARN_UTF8),
"%s in %s", s, OP_DESC(PL_op));
else
- Perl_warner(aTHX_ WARN_UTF8, "%s", s);
+ Perl_warner(aTHX_ packWARN(WARN_UTF8), "%s", s);
}
}
=for apidoc A|UV|utf8_to_uvchr|U8 *s|STRLEN *retlen
Returns the native character value of the first character in the string C<s>
-which is assumed to be in UTF8 encoding; C<retlen> will be set to the
+which is assumed to be in UTF-8 encoding; C<retlen> will be set to the
length, in bytes, of that character.
-If C<s> does not point to a well-formed UTF8 character, zero is
+If C<s> does not point to a well-formed UTF-8 character, zero is
returned and retlen is set, if possible, to -1.
=cut
UV
Perl_utf8_to_uvchr(pTHX_ U8 *s, STRLEN *retlen)
{
- return Perl_utf8n_to_uvchr(aTHX_ s, UTF8_MAXLEN, retlen, 0);
+ return Perl_utf8n_to_uvchr(aTHX_ s, UTF8_MAXLEN, retlen,
+ ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY);
}
/*
=for apidoc A|UV|utf8_to_uvuni|U8 *s|STRLEN *retlen
Returns the Unicode code point of the first character in the string C<s>
-which is assumed to be in UTF8 encoding; C<retlen> will be set to the
+which is assumed to be in UTF-8 encoding; C<retlen> will be set to the
length, in bytes, of that character.
This function should only be used when returned UV is considered
an index into the Unicode semantic tables (e.g. swashes).
-If C<s> does not point to a well-formed UTF8 character, zero is
+If C<s> does not point to a well-formed UTF-8 character, zero is
returned and retlen is set, if possible, to -1.
=cut
Perl_utf8_to_uvuni(pTHX_ U8 *s, STRLEN *retlen)
{
/* Call the low level routine asking for checks */
- return Perl_utf8n_to_uvuni(aTHX_ s, UTF8_MAXLEN, retlen, 0);
+ return Perl_utf8n_to_uvuni(aTHX_ s, UTF8_MAXLEN, retlen,
+ ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY);
}
/*
* the bitops (especially ~) can create illegal UTF-8.
* In other words: in Perl UTF-8 is not just for Unicode. */
- if (e < s)
- Perl_croak(aTHX_ "panic: utf8_length: unexpected end");
+ 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;
+ }
while (s < e) {
U8 t = UTF8SKIP(s);
- if (e - s < t)
- Perl_croak(aTHX_ "panic: utf8_length: unaligned end");
+ if (e - s < t) {
+ if (ckWARN_d(WARN_UTF8)) {
+ if (PL_op)
+ Perl_warner(aTHX_ packWARN(WARN_UTF8),
+ unees, OP_DESC(PL_op));
+ else
+ Perl_warner(aTHX_ packWARN(WARN_UTF8), unees);
+ }
+ return len;
+ }
s += t;
len++;
}
/*
=for apidoc A|IV|utf8_distance|U8 *a|U8 *b
-Returns the number of UTF8 characters between the UTF-8 pointers C<a>
+Returns the number of UTF-8 characters between the UTF-8 pointers C<a>
and C<b>.
WARNING: use only if you *know* that the pointers point inside the
while (a < b) {
U8 c = UTF8SKIP(a);
- if (b - a < c)
- Perl_croak(aTHX_ "panic: utf8_distance: unaligned end");
+ 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--;
}
while (b < a) {
U8 c = UTF8SKIP(b);
- if (a - b < c)
- Perl_croak(aTHX_ "panic: utf8_distance: unaligned end");
+ 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++;
}
/*
=for apidoc A|U8 *|utf8_to_bytes|U8 *s|STRLEN *len
-Converts a string C<s> of length C<len> from UTF8 into byte encoding.
+Converts a string C<s> of length C<len> from UTF-8 into byte encoding.
Unlike C<bytes_to_utf8>, this over-writes the original string, and
updates len to contain the new length.
Returns zero on failure, setting C<len> to -1.
U8 *d;
U8 *save = s;
- /* ensure valid UTF8 and chars < 256 before updating string */
+ /* ensure valid UTF-8 and chars < 256 before updating string */
for (send = s + *len; s < send; ) {
U8 c = *s++;
/*
=for apidoc A|U8 *|bytes_from_utf8|U8 *s|STRLEN *len|bool *is_utf8
-Converts a string C<s> of length C<len> from UTF8 into byte encoding.
+Converts a string C<s> of length C<len> from UTF-8 into byte encoding.
Unlike <utf8_to_bytes> but like C<bytes_to_utf8>, returns a pointer to
the newly-created string, and updates C<len> to contain the new
length. Returns the original string if no conversion occurs, C<len>
if (!*is_utf8)
return start;
- /* ensure valid UTF8 and chars < 256 before converting string */
+ /* ensure valid UTF-8 and chars < 256 before converting string */
for (send = s + *len; s < send;) {
U8 c = *s++;
if (!UTF8_IS_INVARIANT(c)) {
/*
=for apidoc A|U8 *|bytes_to_utf8|U8 *s|STRLEN *len
-Converts a string C<s> of length C<len> from ASCII into UTF8 encoding.
+Converts a string C<s> of length C<len> from ASCII into UTF-8 encoding.
Returns a pointer to the newly-created string, and sets C<len> to
reflect the new length.
+If you want to convert to UTF-8 from other encodings than ASCII,
+see sv_recode_to_utf8().
+
=cut
*/
while (s < send) {
UV uv = NATIVE_TO_ASCII(*s++);
if (UNI_IS_INVARIANT(uv))
- *d++ = UTF_TO_NATIVE(uv);
+ *d++ = (U8)UTF_TO_NATIVE(uv);
else {
- *d++ = UTF8_EIGHT_BIT_HI(uv);
- *d++ = UTF8_EIGHT_BIT_LO(uv);
+ *d++ = (U8)UTF8_EIGHT_BIT_HI(uv);
+ *d++ = (U8)UTF8_EIGHT_BIT_LO(uv);
}
}
*d = '\0';
UV uv = (p[0] << 8) + p[1]; /* UTF-16BE */
p += 2;
if (uv < 0x80) {
- *d++ = uv;
+ *d++ = (U8)uv;
continue;
}
if (uv < 0x800) {
- *d++ = (( uv >> 6) | 0xc0);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 6) | 0xc0);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
continue;
}
if (uv >= 0xd800 && uv < 0xdbff) { /* surrogates */
- UV low = *p++;
+ UV low = (p[0] << 8) + p[1];
+ p += 2;
if (low < 0xdc00 || low >= 0xdfff)
Perl_croak(aTHX_ "Malformed UTF-16 surrogate");
uv = ((uv - 0xd800) << 10) + (low - 0xdc00) + 0x10000;
}
if (uv < 0x10000) {
- *d++ = (( uv >> 12) | 0xe0);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 12) | 0xe0);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
continue;
}
else {
- *d++ = (( uv >> 18) | 0xf0);
- *d++ = (((uv >> 12) & 0x3f) | 0x80);
- *d++ = (((uv >> 6) & 0x3f) | 0x80);
- *d++ = (( uv & 0x3f) | 0x80);
+ *d++ = (U8)(( uv >> 18) | 0xf0);
+ *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80);
+ *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80);
+ *d++ = (U8)(( uv & 0x3f) | 0x80);
continue;
}
}
UV
Perl_to_uni_upper(pTHX_ UV c, U8* p, STRLEN *lenp)
{
- U8 tmpbuf[UTF8_MAXLEN_UCLC+1];
- uvchr_to_utf8(tmpbuf, c);
- return to_utf8_upper(tmpbuf, p, lenp);
+ uvchr_to_utf8(p, c);
+ return to_utf8_upper(p, p, lenp);
}
UV
Perl_to_uni_title(pTHX_ UV c, U8* p, STRLEN *lenp)
{
- U8 tmpbuf[UTF8_MAXLEN_UCLC+1];
- uvchr_to_utf8(tmpbuf, c);
- return to_utf8_title(tmpbuf, p, lenp);
+ uvchr_to_utf8(p, c);
+ return to_utf8_title(p, p, lenp);
}
UV
Perl_to_uni_lower(pTHX_ UV c, U8* p, STRLEN *lenp)
{
- U8 tmpbuf[UTF8_MAXLEN_UCLC+1];
- uvchr_to_utf8(tmpbuf, c);
- return to_utf8_lower(tmpbuf, p, lenp);
+ uvchr_to_utf8(p, c);
+ return to_utf8_lower(p, p, lenp);
}
UV
Perl_to_uni_fold(pTHX_ UV c, U8* p, STRLEN *lenp)
{
- U8 tmpbuf[UTF8_MAXLEN_FOLD+1];
- uvchr_to_utf8(tmpbuf, c);
- return to_utf8_fold(tmpbuf, p, lenp);
+ uvchr_to_utf8(p, c);
+ return to_utf8_fold(p, p, lenp);
}
/* for now these all assume no locale info available for Unicode > 255 */
* 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);
+ 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);
+ return swash_fetch(PL_utf8_alnum, p, TRUE) != 0;
#endif
}
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);
+ 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);
+ return swash_fetch(PL_utf8_alnum, p, TRUE) != 0;
#endif
}
bool
-Perl_is_utf8_idfirst(pTHX_ U8 *p)
+Perl_is_utf8_idfirst(pTHX_ U8 *p) /* The naming is historical. */
+{
+ 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;
+}
+
+bool
+Perl_is_utf8_idcont(pTHX_ U8 *p)
{
- return *p == '_' || is_utf8_alpha(p);
+ 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;
}
bool
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);
+ return swash_fetch(PL_utf8_alpha, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_ascii, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_space, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_digit, p, TRUE) != 0;
}
bool
if (!is_utf8_char(p))
return FALSE;
if (!PL_utf8_upper)
- PL_utf8_upper = swash_init("utf8", "IsUpper", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_upper, p, TRUE);
+ PL_utf8_upper = swash_init("utf8", "IsUppercase", &PL_sv_undef, 0, 0);
+ return swash_fetch(PL_utf8_upper, p, TRUE) != 0;
}
bool
if (!is_utf8_char(p))
return FALSE;
if (!PL_utf8_lower)
- PL_utf8_lower = swash_init("utf8", "IsLower", &PL_sv_undef, 0, 0);
- return swash_fetch(PL_utf8_lower, p, TRUE);
+ PL_utf8_lower = swash_init("utf8", "IsLowercase", &PL_sv_undef, 0, 0);
+ return swash_fetch(PL_utf8_lower, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_cntrl, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_graph, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_print, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_punct, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_xdigit, p, TRUE) != 0;
}
bool
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);
+ return swash_fetch(PL_utf8_mark, p, TRUE) != 0;
}
/*
SAVEI32(PL_hints);
PL_hints = 0;
save_re_context();
- if (PL_curcop == &PL_compiling)
+ 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--);
SvREFCNT_dec(errsv_save);
LEAVE;
POPSTACK;
- if (PL_curcop == &PL_compiling) {
+ if (IN_PERL_COMPILETIME) {
STRLEN len;
char* pv = SvPV(tokenbufsv, len);
Copy(pv, PL_tokenbuf, len+1, char);
- PL_curcop->op_private = PL_hints;
+ PL_curcop->op_private = (U8)(PL_hints & HINT_PRIVATE_MASK);
}
- if (!SvROK(retval) || SvTYPE(SvRV(retval)) != SVt_PVHV)
+ if (!SvROK(retval) || SvTYPE(SvRV(retval)) != SVt_PVHV) {
+ if (SvPOK(retval))
+ Perl_croak(aTHX_ "Can't find Unicode property definition \"%"SVf"\"",
+ retval);
Perl_croak(aTHX_ "SWASHNEW didn't return an HV ref");
+ }
return retval;
}
UV c = NATIVE_TO_ASCII(*ptr);
if (!do_utf8 && !UNI_IS_INVARIANT(c)) {
- tmputf8[0] = UTF8_EIGHT_BIT_HI(c);
- tmputf8[1] = UTF8_EIGHT_BIT_LO(c);
+ 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
if (klen == 0)
{
/* If char in invariant then swatch is for all the invariant chars
- * In both UTF-8 and UTF8-MOD that happens to be UTF_CONTINUATION_MARK
+ * 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]);
/* 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_MAXLEN, NULL, 0);
+ UV code_point = utf8n_to_uvuni(ptr, UTF8_MAXLEN, 0,
+ ckWARN(WARN_UTF8) ?
+ 0 : UTF8_ALLOW_ANY);
SV *errsv_save;
ENTER;
SAVETMPS;
POPSTACK;
FREETMPS;
LEAVE;
- if (PL_curcop == &PL_compiling)
- PL_curcop->op_private = PL_hints;
+ if (IN_PERL_COMPILETIME)
+ PL_curcop->op_private = (U8)(PL_hints & HINT_PRIVATE_MASK);
svp = hv_store(hv, (char*)ptr, klen, retval, 0);
/*
=for apidoc A|U8 *|uvchr_to_utf8|U8 *d|UV uv
-Adds the UTF8 representation of the Native codepoint C<uv> to the end
+Adds the UTF-8 representation of the Native codepoint C<uv> to the end
of the string C<d>; C<d> should be have at least C<UTF8_MAXLEN+1> free
bytes available. The return value is the pointer to the byte after the
end of the new character. In other words,
=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>
-which is assumed to be in UTF8 encoding; C<retlen> will be set to the
+which is assumed to be in UTF-8 encoding; C<retlen> will be set to the
length, in bytes, of that character.
Allows length and flags to be passed to low level routine.
case '\a':
Perl_sv_catpvf(aTHX_ dsv, "\\a"); ok = TRUE; break;
case '\\':
- Perl_sv_catpvf(aTHX_ dsv, "\\" ); ok = TRUE; break;
+ Perl_sv_catpvf(aTHX_ dsv, "\\\\" ); ok = TRUE; break;
default: break;
}
}
if (pe1)
e1 = *(U8**)pe1;
- if (e1 == 0 || (l1 && l1 < e1 - (U8*)s1))
+ if (e1 == 0 || (l1 && l1 < (UV)(e1 - (U8*)s1)))
f1 = (U8*)s1 + l1;
if (pe2)
e2 = *(U8**)pe2;
- if (e2 == 0 || (l2 && l2 < e2 - (U8*)s2))
+ if (e2 == 0 || (l2 && l2 < (UV)(e2 - (U8*)s2)))
f2 = (U8*)s2 + l2;
if ((e1 == 0 && f1 == 0) || (e2 == 0 && f2 == 0) || (f1 == 0 && f2 == 0))