harfbuzz/src/hb-open-type.hh

1084 lines
34 KiB
C++
Raw Normal View History

2008-01-23 22:14:38 +01:00
/*
2011-04-21 23:14:28 +02:00
* Copyright © 2007,2008,2009,2010 Red Hat, Inc.
* Copyright © 2012 Google, Inc.
2008-01-23 22:14:38 +01:00
*
2010-04-22 06:11:43 +02:00
* This is part of HarfBuzz, a text shaping library.
2008-01-23 22:14:38 +01:00
*
* Permission is hereby granted, without written agreement and without
* license or royalty fees, to use, copy, modify, and distribute this
* software and its documentation for any purpose, provided that the
* above copyright notice and the following two paragraphs appear in
* all copies of this software.
*
* IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE TO ANY PARTY FOR
* DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
* ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN
* IF THE COPYRIGHT HOLDER HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH
* DAMAGE.
*
* THE COPYRIGHT HOLDER SPECIFICALLY DISCLAIMS ANY WARRANTIES, INCLUDING,
* BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
* FITNESS FOR A PARTICULAR PURPOSE. THE SOFTWARE PROVIDED HEREUNDER IS
* ON AN "AS IS" BASIS, AND THE COPYRIGHT HOLDER HAS NO OBLIGATION TO
* PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
*
* Red Hat Author(s): Behdad Esfahbod
* Google Author(s): Behdad Esfahbod
2008-01-23 22:14:38 +01:00
*/
#ifndef HB_OPEN_TYPE_HH
#define HB_OPEN_TYPE_HH
#include "hb.hh"
#include "hb-blob.hh"
#include "hb-face.hh"
#include "hb-machinery.hh"
2018-09-01 01:31:00 +02:00
#include "hb-subset.hh"
2008-01-23 23:01:55 +01:00
namespace OT {
2006-12-22 08:21:55 +01:00
/*
*
* The OpenType Font File: Data Types
2006-12-22 08:21:55 +01:00
*/
/* "The following data types are used in the OpenType font file.
* All OpenType fonts use Motorola-style byte ordering (Big Endian):" */
2009-05-17 06:54:25 +02:00
/*
* Int types
*/
2010-04-22 05:11:45 +02:00
/* Integer types in big-endian order and no alignment requirement */
2012-12-11 22:00:43 +01:00
template <typename Type, unsigned int Size>
2010-04-21 09:11:46 +02:00
struct IntType
{
2018-10-20 00:23:49 +02:00
typedef Type type;
2019-05-11 05:31:20 +02:00
typedef hb_conditional<hb_is_signed (Type), signed, unsigned> wide_type;
2019-06-17 23:12:11 +02:00
IntType& operator = (wide_type i) { v = i; return *this; }
operator wide_type () const { return v; }
2019-06-17 23:12:11 +02:00
bool operator == (const IntType &o) const { return (Type) v == (Type) o.v; }
bool operator != (const IntType &o) const { return !(*this == o); }
2019-08-28 22:49:17 +02:00
IntType& operator += (unsigned count) { *this = *this + count; return *this; }
IntType& operator -= (unsigned count) { *this = *this - count; return *this; }
IntType& operator ++ () { *this += 1; return *this; }
IntType& operator -- () { *this -= 1; return *this; }
IntType operator ++ (int) { IntType c (*this); ++*this; return c; }
IntType operator -- (int) { IntType c (*this); --*this; return c; }
2019-06-17 23:12:11 +02:00
HB_INTERNAL static int cmp (const IntType *a, const IntType *b)
{ return b->cmp (*a); }
HB_INTERNAL static int cmp (const void *a, const void *b)
{
IntType *pa = (IntType *) a;
IntType *pb = (IntType *) b;
return pb->cmp (*pa);
}
template <typename Type2,
hb_enable_if (hb_is_integral (Type2) &&
sizeof (Type2) < sizeof (int) &&
sizeof (Type) < sizeof (int))>
int cmp (Type2 a) const
{
Type b = v;
return (int) a - (int) b;
}
template <typename Type2,
hb_enable_if (hb_is_convertible (Type2, Type))>
int cmp (Type2 a) const
{
Type b = v;
return a < b ? -1 : a == b ? 0 : +1;
}
bool sanitize (hb_sanitize_context_t *c) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
return_trace (likely (c->check_struct (this)));
2010-04-21 09:11:46 +02:00
}
2010-05-10 23:55:03 +02:00
protected:
2012-12-11 22:00:43 +01:00
BEInt<Type, Size> v;
2010-05-10 22:38:32 +02:00
public:
2012-12-11 22:00:43 +01:00
DEFINE_SIZE_STATIC (Size);
2010-04-21 09:11:46 +02:00
};
typedef IntType<uint8_t, 1> HBUINT8; /* 8-bit unsigned integer. */
typedef IntType<int8_t, 1> HBINT8; /* 8-bit signed integer. */
typedef IntType<uint16_t, 2> HBUINT16; /* 16-bit unsigned integer. */
typedef IntType<int16_t, 2> HBINT16; /* 16-bit signed integer. */
typedef IntType<uint32_t, 4> HBUINT32; /* 32-bit unsigned integer. */
typedef IntType<int32_t, 4> HBINT32; /* 32-bit signed integer. */
/* Note: we cannot defined a signed HBINT24 because there's no corresponding C type.
* Works for unsigned, but not signed, since we rely on compiler for sign-extension. */
typedef IntType<uint32_t, 3> HBUINT24; /* 24-bit unsigned integer. */
2010-04-21 09:11:46 +02:00
/* 16-bit signed integer (HBINT16) that describes a quantity in FUnits. */
typedef HBINT16 FWORD;
2011-08-17 14:43:45 +02:00
2018-10-11 01:58:20 +02:00
/* 32-bit signed integer (HBINT32) that describes a quantity in FUnits. */
typedef HBINT32 FWORD32;
/* 16-bit unsigned integer (HBUINT16) that describes a quantity in FUnits. */
typedef HBUINT16 UFWORD;
2011-08-17 14:43:45 +02:00
2016-03-01 08:41:53 +01:00
/* 16-bit signed fixed number with the low 14 bits of fraction (2.14). */
struct F2DOT14 : HBINT16
2016-03-01 08:41:53 +01:00
{
F2DOT14& operator = (uint16_t i ) { HBINT16::operator= (i); return *this; }
// 16384 means 1<<14
float to_float () const { return ((int32_t) v) / 16384.f; }
void set_float (float f) { v = roundf (f * 16384.f); }
2016-03-01 08:41:53 +01:00
public:
DEFINE_SIZE_STATIC (2);
};
/* 32-bit signed fixed-point number (16.16). */
struct HBFixed : HBINT32
{
HBFixed& operator = (uint32_t i) { HBINT32::operator= (i); return *this; }
// 65536 means 1<<16
float to_float () const { return ((int32_t) v) / 65536.f; }
void set_float (float f) { v = roundf (f * 65536.f); }
public:
DEFINE_SIZE_STATIC (4);
};
2010-05-19 17:47:17 +02:00
/* Date represented in number of seconds since 12:00 midnight, January 1,
* 1904. The value is represented as a signed 64-bit integer. */
struct LONGDATETIME
{
bool sanitize (hb_sanitize_context_t *c) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
return_trace (likely (c->check_struct (this)));
2010-05-19 17:47:17 +02:00
}
protected:
HBINT32 major;
HBUINT32 minor;
2010-05-19 17:47:17 +02:00
public:
DEFINE_SIZE_STATIC (8);
};
/* Array of four uint8s (length = 32 bits) used to identify a script, language
* system, feature, or baseline */
struct Tag : HBUINT32
2009-05-20 05:58:54 +02:00
{
2019-06-17 23:19:13 +02:00
Tag& operator = (hb_tag_t i) { HBUINT32::operator= (i); return *this; }
2006-12-25 15:14:52 +01:00
/* What the char* converters return is NOT nul-terminated. Print using "%.4s" */
operator const char* () const { return reinterpret_cast<const char *> (&this->v); }
operator char* () { return reinterpret_cast<char *> (&this->v); }
public:
DEFINE_SIZE_STATIC (4);
};
/* Glyph index number, same as uint16 (length = 16 bits) */
struct HBGlyphID : HBUINT16
{
HBGlyphID& operator = (uint16_t i) { HBUINT16::operator= (i); return *this; }
};
2010-05-11 04:22:22 +02:00
/* Script/language-system/feature index */
struct Index : HBUINT16 {
static constexpr unsigned NOT_FOUND_INDEX = 0xFFFFu;
Index& operator = (uint16_t i) { HBUINT16::operator= (i); return *this; }
2010-05-11 04:22:22 +02:00
};
DECLARE_NULL_NAMESPACE_BYTES (OT, Index);
2010-05-11 04:22:22 +02:00
typedef Index NameID;
2014-06-27 21:12:52 +02:00
/* Offset, Null offset = 0 */
2018-09-13 18:45:35 +02:00
template <typename Type, bool has_null=true>
2014-06-27 21:12:52 +02:00
struct Offset : Type
{
Offset& operator = (typename Type::type i) { Type::operator= (i); return *this; }
2018-10-20 00:23:49 +02:00
typedef Type type;
bool is_null () const { return has_null && 0 == *this; }
2018-02-08 04:13:10 +01:00
void *serialize (hb_serialize_context_t *c, const void *base)
2018-02-08 04:13:10 +01:00
{
void *t = c->start_embed<void> ();
c->check_assign (*this, (unsigned) ((char *) t - (char *) base));
2018-02-08 04:13:10 +01:00
return t;
}
2018-02-26 04:06:25 +01:00
public:
2018-11-15 20:40:56 +01:00
DEFINE_SIZE_STATIC (sizeof (Type));
};
2009-05-25 08:27:29 +02:00
typedef Offset<HBUINT16> Offset16;
typedef Offset<HBUINT32> Offset32;
2017-11-15 06:09:03 +01:00
/* CheckSum */
struct CheckSum : HBUINT32
2009-05-20 05:58:54 +02:00
{
CheckSum& operator = (uint32_t i) { HBUINT32::operator= (i); return *this; }
2013-07-21 23:05:02 +02:00
/* This is reference implementation from the spec. */
static uint32_t CalcTableChecksum (const HBUINT32 *Table, uint32_t Length)
2009-05-20 05:58:54 +02:00
{
uint32_t Sum = 0L;
assert (0 == (Length & 3));
const HBUINT32 *EndPtr = Table + Length / HBUINT32::static_size;
while (Table < EndPtr)
Sum += *Table++;
return Sum;
}
2013-07-21 23:05:02 +02:00
/* Note: data should be 4byte aligned and have 4byte padding at the end. */
void set_for_data (const void *data, unsigned int length)
{ *this = CalcTableChecksum ((const HBUINT32 *) data, length); }
2013-07-21 23:05:02 +02:00
public:
DEFINE_SIZE_STATIC (4);
};
/*
* Version Numbers
*/
template <typename FixedType=HBUINT16>
2009-05-24 07:03:24 +02:00
struct FixedVersion
2009-05-20 05:58:54 +02:00
{
uint32_t to_int () const { return (major << (sizeof (FixedType) * 8)) + minor; }
2009-05-24 18:30:40 +02:00
bool sanitize (hb_sanitize_context_t *c) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
return_trace (c->check_struct (this));
2009-08-04 08:09:34 +02:00
}
2016-02-22 03:44:45 +01:00
FixedType major;
FixedType minor;
public:
2018-11-15 20:40:56 +01:00
DEFINE_SIZE_STATIC (2 * sizeof (FixedType));
};
2009-08-04 16:41:32 +02:00
2009-05-17 06:54:25 +02:00
/*
2014-06-27 21:12:52 +02:00
* Template subclasses of Offset that do the dereferencing.
2010-05-03 00:14:25 +02:00
* Use: (base+offset)
2009-05-17 06:54:25 +02:00
*/
template <typename Type, bool has_null>
struct _hb_has_null
{
static const Type *get_null () { return nullptr; }
static Type *get_crap () { return nullptr; }
};
template <typename Type>
struct _hb_has_null<Type, true>
{
2019-10-01 12:19:55 +02:00
static const Type *get_null () { return &Null (Type); }
static Type *get_crap () { return &Crap (Type); }
};
2018-09-13 18:45:35 +02:00
template <typename Type, typename OffsetType=HBUINT16, bool has_null=true>
struct OffsetTo : Offset<OffsetType, has_null>
2009-08-04 16:41:32 +02:00
{
HB_DELETE_COPY_ASSIGN (OffsetTo);
OffsetTo () = default;
OffsetTo& operator = (typename OffsetType::type i) { OffsetType::operator= (i); return *this; }
const Type& operator () (const void *base) const
2009-08-04 16:41:32 +02:00
{
if (unlikely (this->is_null ())) return *_hb_has_null<Type, has_null>::get_null ();
2018-09-13 18:45:35 +02:00
return StructAtOffset<const Type> (base, *this);
}
Type& operator () (void *base) const
{
if (unlikely (this->is_null ())) return *_hb_has_null<Type, has_null>::get_crap ();
2018-09-13 18:45:35 +02:00
return StructAtOffset<Type> (base, *this);
2009-08-04 16:41:32 +02:00
}
2012-09-02 02:48:22 +02:00
template <typename Base,
hb_enable_if (hb_is_convertible (const Base, const void *))>
friend const Type& operator + (const Base &base, const OffsetTo &offset) { return offset ((const void *) base); }
template <typename Base,
hb_enable_if (hb_is_convertible (const Base, const void *))>
friend const Type& operator + (const OffsetTo &offset, const Base &base) { return offset ((const void *) base); }
template <typename Base,
hb_enable_if (hb_is_convertible (Base, void *))>
friend Type& operator + (Base &&base, OffsetTo &offset) { return offset ((void *) base); }
template <typename Base,
hb_enable_if (hb_is_convertible (Base, void *))>
friend Type& operator + (OffsetTo &offset, Base &&base) { return offset ((void *) base); }
2019-05-15 10:15:11 +02:00
Type& serialize (hb_serialize_context_t *c, const void *base)
2012-09-02 02:48:22 +02:00
{
2018-02-08 04:13:10 +01:00
return * (Type *) Offset<OffsetType>::serialize (c, base);
2012-09-02 02:48:22 +02:00
}
2009-08-04 16:41:32 +02:00
template <typename ...Ts>
bool serialize_subset (hb_subset_context_t *c, const OffsetTo& src,
const void *src_base, Ts&&... ds)
{
2019-04-02 06:36:13 +02:00
*this = 0;
if (src.is_null ())
return false;
2019-04-02 06:36:13 +02:00
2019-04-03 02:42:10 +02:00
auto *s = c->serializer;
s->push ();
bool ret = c->dispatch (src_base+src, hb_forward<Ts> (ds)...);
if (ret || !has_null)
s->add_link (*this, s->pop_pack ());
2019-04-03 02:12:24 +02:00
else
2019-04-03 02:42:10 +02:00
s->pop_discard ();
return ret;
}
2019-05-08 00:56:51 +02:00
/* TODO: Somehow merge this with previous function into a serialize_dispatch(). */
/* Workaround clang bug: https://bugs.llvm.org/show_bug.cgi?id=23029
* Can't compile: whence = hb_serialize_context_t::Head followed by Ts&&...
*/
template <typename ...Ts>
bool serialize_copy (hb_serialize_context_t *c, const OffsetTo& src,
const void *src_base, unsigned dst_bias,
hb_serialize_context_t::whence_t whence,
Ts&&... ds)
{
*this = 0;
if (src.is_null ())
return false;
c->push ();
bool ret = c->copy (src_base+src, hb_forward<Ts> (ds)...);
c->add_link (*this, c->pop_pack (), whence, dst_bias);
return ret;
}
bool serialize_copy (hb_serialize_context_t *c, const OffsetTo& src,
const void *src_base, unsigned dst_bias = 0)
{ return serialize_copy (c, src, src_base, dst_bias, hb_serialize_context_t::Head); }
2019-05-02 23:04:51 +02:00
bool sanitize_shallow (hb_sanitize_context_t *c, const void *base) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
if (unlikely (!c->check_struct (this))) return_trace (false);
2018-09-13 18:45:35 +02:00
if (unlikely (this->is_null ())) return_trace (true);
if (unlikely (!c->check_range (base, *this))) return_trace (false);
2018-09-13 16:29:49 +02:00
return_trace (true);
}
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, const void *base, Ts&&... ds) const
2018-09-13 16:29:49 +02:00
{
TRACE_SANITIZE (this);
2018-09-13 16:31:31 +02:00
return_trace (sanitize_shallow (c, base) &&
2018-09-13 18:45:35 +02:00
(this->is_null () ||
c->dispatch (StructAtOffset<Type> (base, *this), hb_forward<Ts> (ds)...) ||
2018-09-13 16:31:31 +02:00
neuter (c)));
2018-09-13 16:29:49 +02:00
}
/* Set the offset to Null */
bool neuter (hb_sanitize_context_t *c) const
2018-09-13 18:45:35 +02:00
{
if (!has_null) return false;
2014-06-05 00:42:32 +02:00
return c->try_set (this, 0);
2009-08-04 19:30:49 +02:00
}
2018-11-15 20:40:56 +01:00
DEFINE_SIZE_STATIC (sizeof (OffsetType));
2009-08-04 16:41:32 +02:00
};
2019-01-18 00:10:38 +01:00
/* Partial specializations. */
template <typename Type, bool has_null=true>
using LOffsetTo = OffsetTo<Type, HBUINT32, has_null>;
template <typename Type, typename OffsetType=HBUINT16>
using NNOffsetTo = OffsetTo<Type, OffsetType, false>;
template <typename Type>
using LNNOffsetTo = LOffsetTo<Type, false>;
2009-08-04 16:41:32 +02:00
/*
* Array Types
*/
2018-03-14 16:18:42 +01:00
template <typename Type>
struct UnsizedArrayOf
{
2018-12-21 07:57:40 +01:00
typedef Type item_t;
static constexpr unsigned item_size = hb_static_size (Type);
HB_DELETE_CREATE_COPY_ASSIGN (UnsizedArrayOf);
const Type& operator [] (int i_) const
{
unsigned int i = (unsigned int) i_;
const Type *p = &arrayZ[i];
if (unlikely (p < arrayZ)) return Null (Type); /* Overflowed. */
return *p;
}
Type& operator [] (int i_)
{
unsigned int i = (unsigned int) i_;
2018-11-17 01:52:42 +01:00
Type *p = &arrayZ[i];
if (unlikely (p < arrayZ)) return Crap (Type); /* Overflowed. */
return *p;
}
2018-03-14 16:18:42 +01:00
unsigned int get_size (unsigned int len) const
2018-11-02 16:38:00 +01:00
{ return len * Type::static_size; }
template <typename T> operator T * () { return arrayZ; }
template <typename T> operator const T * () const { return arrayZ; }
hb_array_t<Type> as_array (unsigned int len)
{ return hb_array (arrayZ, len); }
hb_array_t<const Type> as_array (unsigned int len) const
{ return hb_array (arrayZ, len); }
template <typename T>
Type &lsearch (unsigned int len, const T &x, Type &not_found = Crap (Type))
{ return *as_array (len).lsearch (x, &not_found); }
template <typename T>
const Type &lsearch (unsigned int len, const T &x, const Type &not_found = Null (Type)) const
{ return *as_array (len).lsearch (x, &not_found); }
2020-06-28 10:43:25 +02:00
template <typename T>
bool lfind (unsigned int len, const T &x, unsigned *pos = nullptr) const
{ return as_array (len).lfind (x, pos); }
void qsort (unsigned int len, unsigned int start = 0, unsigned int end = (unsigned int) -1)
{ as_array (len).qsort (start, end); }
bool serialize (hb_serialize_context_t *c, unsigned int items_len)
{
TRACE_SERIALIZE (this);
if (unlikely (!c->extend (*this, items_len))) return_trace (false);
return_trace (true);
}
template <typename Iterator,
hb_requires (hb_is_source_of (Iterator, Type))>
bool serialize (hb_serialize_context_t *c, Iterator items)
{
TRACE_SERIALIZE (this);
unsigned count = items.len ();
if (unlikely (!serialize (c, count))) return_trace (false);
/* TODO Umm. Just exhaust the iterator instead? Being extra
* cautious right now.. */
2019-05-08 23:24:57 +02:00
for (unsigned i = 0; i < count; i++, ++items)
arrayZ[i] = *items;
return_trace (true);
}
UnsizedArrayOf* copy (hb_serialize_context_t *c, unsigned count) const
{
TRACE_SERIALIZE (this);
auto *out = c->start_embed (this);
2019-05-09 01:37:38 +02:00
if (unlikely (!as_array (count).copy (c))) return_trace (nullptr);
return_trace (out);
}
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, unsigned int count, Ts&&... ds) const
2018-03-14 16:18:42 +01:00
{
TRACE_SANITIZE (this);
if (unlikely (!sanitize_shallow (c, count))) return_trace (false);
2019-05-11 07:44:19 +02:00
if (!sizeof... (Ts) && hb_is_trivially_copyable (Type)) return_trace (true);
2018-03-14 16:18:42 +01:00
for (unsigned int i = 0; i < count; i++)
if (unlikely (!c->dispatch (arrayZ[i], hb_forward<Ts> (ds)...)))
2018-11-15 20:40:56 +01:00
return_trace (false);
2018-03-14 16:18:42 +01:00
return_trace (true);
}
bool sanitize_shallow (hb_sanitize_context_t *c, unsigned int count) const
2018-03-14 16:18:42 +01:00
{
TRACE_SANITIZE (this);
return_trace (c->check_array (arrayZ, count));
2018-03-14 16:18:42 +01:00
}
public:
2019-09-06 22:54:27 +02:00
Type arrayZ[HB_VAR_ARRAY];
2018-03-14 16:18:42 +01:00
public:
DEFINE_SIZE_UNBOUNDED (0);
2018-03-14 16:18:42 +01:00
};
/* Unsized array of offset's */
template <typename Type, typename OffsetType, bool has_null=true>
using UnsizedOffsetArrayOf = UnsizedArrayOf<OffsetTo<Type, OffsetType, has_null>>;
2018-03-14 16:18:42 +01:00
/* Unsized array of offsets relative to the beginning of the array itself. */
template <typename Type, typename OffsetType, bool has_null=true>
struct UnsizedOffsetListOf : UnsizedOffsetArrayOf<Type, OffsetType, has_null>
2018-03-14 16:18:42 +01:00
{
const Type& operator [] (int i_) const
2018-03-14 16:18:42 +01:00
{
unsigned int i = (unsigned int) i_;
2018-11-25 04:48:34 +01:00
const OffsetTo<Type, OffsetType, has_null> *p = &this->arrayZ[i];
if (unlikely (p < this->arrayZ)) return Null (Type); /* Overflowed. */
return this+*p;
2018-03-14 16:18:42 +01:00
}
Type& operator [] (int i_)
2018-11-25 04:48:34 +01:00
{
unsigned int i = (unsigned int) i_;
2018-11-25 04:48:34 +01:00
const OffsetTo<Type, OffsetType, has_null> *p = &this->arrayZ[i];
if (unlikely (p < this->arrayZ)) return Crap (Type); /* Overflowed. */
return this+*p;
}
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, unsigned int count, Ts&&... ds) const
2018-03-14 16:18:42 +01:00
{
TRACE_SANITIZE (this);
return_trace ((UnsizedOffsetArrayOf<Type, OffsetType, has_null>
::sanitize (c, count, this, hb_forward<Ts> (ds)...)));
2018-03-14 16:18:42 +01:00
}
};
/* An array with sorted elements. Supports binary searching. */
template <typename Type>
struct SortedUnsizedArrayOf : UnsizedArrayOf<Type>
{
hb_sorted_array_t<Type> as_array (unsigned int len)
{ return hb_sorted_array (this->arrayZ, len); }
hb_sorted_array_t<const Type> as_array (unsigned int len) const
{ return hb_sorted_array (this->arrayZ, len); }
operator hb_sorted_array_t<Type> () { return as_array (); }
operator hb_sorted_array_t<const Type> () const { return as_array (); }
template <typename T>
Type &bsearch (unsigned int len, const T &x, Type &not_found = Crap (Type))
{ return *as_array (len).bsearch (x, &not_found); }
template <typename T>
const Type &bsearch (unsigned int len, const T &x, const Type &not_found = Null (Type)) const
{ return *as_array (len).bsearch (x, &not_found); }
template <typename T>
bool bfind (unsigned int len, const T &x, unsigned int *i = nullptr,
2020-07-18 16:33:36 +02:00
hb_bfind_not_found_t not_found = HB_BFIND_NOT_FOUND_DONT_STORE,
unsigned int to_store = (unsigned int) -1) const
{ return as_array (len).bfind (x, i, not_found, to_store); }
};
/* An array with a number of elements. */
template <typename Type, typename LenType=HBUINT16>
struct ArrayOf
2009-05-20 05:58:54 +02:00
{
2018-12-21 07:57:40 +01:00
typedef Type item_t;
static constexpr unsigned item_size = hb_static_size (Type);
HB_DELETE_CREATE_COPY_ASSIGN (ArrayOf);
const Type& operator [] (int i_) const
2009-05-20 05:58:54 +02:00
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i >= len)) return Null (Type);
2018-05-09 01:56:11 +02:00
return arrayZ[i];
2009-05-17 06:54:25 +02:00
}
Type& operator [] (int i_)
2012-08-30 03:08:59 +02:00
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i >= len)) return Crap (Type);
2018-05-09 01:56:11 +02:00
return arrayZ[i];
2012-08-30 03:08:59 +02:00
}
unsigned int get_size () const
{ return len.static_size + len * Type::static_size; }
2009-05-18 08:03:58 +02:00
explicit operator bool () const { return len; }
2019-08-28 22:49:35 +02:00
void pop () { len--; }
hb_array_t< Type> as_array () { return hb_array (arrayZ, len); }
hb_array_t<const Type> as_array () const { return hb_array (arrayZ, len); }
/* Iterator. */
typedef hb_array_t<const Type> iter_t;
typedef hb_array_t< Type> writer_t;
iter_t iter () const { return as_array (); }
writer_t writer () { return as_array (); }
operator iter_t () const { return iter (); }
operator writer_t () { return writer (); }
2018-11-23 22:04:56 +01:00
hb_array_t<const Type> sub_array (unsigned int start_offset, unsigned int count) const
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_array_t<const Type> sub_array (unsigned int start_offset, unsigned int *count = nullptr /* IN/OUT */) const
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_array_t<Type> sub_array (unsigned int start_offset, unsigned int count)
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_array_t<Type> sub_array (unsigned int start_offset, unsigned int *count = nullptr /* IN/OUT */)
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_success_t serialize (hb_serialize_context_t *c, unsigned items_len)
{
2012-11-23 21:32:14 +01:00
TRACE_SERIALIZE (this);
if (unlikely (!c->extend_min (*this))) return_trace (false);
c->check_assign (len, items_len);
if (unlikely (!c->extend (*this))) return_trace (false);
return_trace (true);
}
template <typename Iterator,
hb_requires (hb_is_source_of (Iterator, Type))>
hb_success_t serialize (hb_serialize_context_t *c, Iterator items)
2012-09-02 03:43:38 +02:00
{
2012-11-23 21:32:14 +01:00
TRACE_SERIALIZE (this);
unsigned count = items.len ();
if (unlikely (!serialize (c, count))) return_trace (false);
/* TODO Umm. Just exhaust the iterator instead? Being extra
* cautious right now.. */
2019-05-08 23:24:57 +02:00
for (unsigned i = 0; i < count; i++, ++items)
arrayZ[i] = *items;
return_trace (true);
2012-09-02 03:43:38 +02:00
}
2019-08-28 22:33:08 +02:00
Type* serialize_append (hb_serialize_context_t *c)
{
TRACE_SERIALIZE (this);
len++;
if (unlikely (!len || !c->extend (*this)))
{
len--;
return_trace (nullptr);
}
return_trace (&arrayZ[len - 1]);
}
ArrayOf* copy (hb_serialize_context_t *c) const
{
TRACE_SERIALIZE (this);
auto *out = c->start_embed (this);
2019-05-09 01:37:38 +02:00
if (unlikely (!c->extend_min (out))) return_trace (nullptr);
c->check_assign (out->len, len);
if (unlikely (!as_array ().copy (c))) return_trace (nullptr);
return_trace (out);
}
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, Ts&&... ds) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
if (unlikely (!sanitize_shallow (c))) return_trace (false);
2019-05-11 07:44:19 +02:00
if (!sizeof... (Ts) && hb_is_trivially_copyable (Type)) return_trace (true);
2009-08-04 19:30:49 +02:00
unsigned int count = len;
for (unsigned int i = 0; i < count; i++)
if (unlikely (!c->dispatch (arrayZ[i], hb_forward<Ts> (ds)...)))
2018-11-15 20:40:56 +01:00
return_trace (false);
return_trace (true);
2009-08-04 19:30:49 +02:00
}
2009-08-04 06:58:28 +02:00
template <typename T>
Type &lsearch (const T &x, Type &not_found = Crap (Type))
{ return *as_array ().lsearch (x, &not_found); }
template <typename T>
const Type &lsearch (const T &x, const Type &not_found = Null (Type)) const
{ return *as_array ().lsearch (x, &not_found); }
2020-06-28 10:43:25 +02:00
template <typename T>
bool lfind (const T &x, unsigned *pos = nullptr) const
{ return as_array ().lfind (x, pos); }
void qsort (unsigned int start = 0, unsigned int end = (unsigned int) -1)
{ as_array ().qsort (start, end); }
2018-02-08 04:13:10 +01:00
bool sanitize_shallow (hb_sanitize_context_t *c) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
return_trace (len.sanitize (c) && c->check_array (arrayZ, len));
2010-05-04 20:28:18 +02:00
}
public:
2018-09-10 23:29:26 +02:00
LenType len;
2019-09-06 22:54:27 +02:00
Type arrayZ[HB_VAR_ARRAY];
public:
2018-05-09 01:56:11 +02:00
DEFINE_SIZE_ARRAY (sizeof (LenType), arrayZ);
2009-05-18 08:03:58 +02:00
};
template <typename Type>
using LArrayOf = ArrayOf<Type, HBUINT32>;
using PString = ArrayOf<HBUINT8, HBUINT8>;
2009-05-18 08:03:58 +02:00
2009-08-04 16:41:32 +02:00
/* Array of Offset's */
2018-10-29 00:29:09 +01:00
template <typename Type>
using OffsetArrayOf = ArrayOf<OffsetTo<Type, HBUINT16>>;
2018-10-29 00:29:09 +01:00
template <typename Type>
using LOffsetArrayOf = ArrayOf<OffsetTo<Type, HBUINT32>>;
2018-10-29 00:27:18 +01:00
template <typename Type>
using LOffsetLArrayOf = ArrayOf<OffsetTo<Type, HBUINT32>, HBUINT32>;
2009-08-04 16:41:32 +02:00
2009-08-15 00:40:56 +02:00
/* Array of offsets relative to the beginning of the array itself. */
template <typename Type>
struct OffsetListOf : OffsetArrayOf<Type>
{
const Type& operator [] (int i_) const
2009-08-15 00:40:56 +02:00
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i >= this->len)) return Null (Type);
2018-05-09 01:56:11 +02:00
return this+this->arrayZ[i];
2009-08-15 00:40:56 +02:00
}
const Type& operator [] (int i_)
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i >= this->len)) return Crap (Type);
return this+this->arrayZ[i];
}
2009-08-15 00:40:56 +02:00
bool subset (hb_subset_context_t *c) const
{
TRACE_SUBSET (this);
struct OffsetListOf<Type> *out = c->serializer->embed (*this);
if (unlikely (!out)) return_trace (false);
unsigned int count = this->len;
for (unsigned int i = 0; i < count; i++)
out->arrayZ[i].serialize_subset (c, this->arrayZ[i], this, out);
return_trace (true);
}
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, Ts&&... ds) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
return_trace (OffsetArrayOf<Type>::sanitize (c, this, hb_forward<Ts> (ds)...));
2009-08-15 00:40:56 +02:00
}
};
2014-06-27 21:27:15 +02:00
/* An array starting at second element. */
template <typename Type, typename LenType=HBUINT16>
2009-05-20 05:58:54 +02:00
struct HeadlessArrayOf
{
static constexpr unsigned item_size = Type::static_size;
HB_DELETE_CREATE_COPY_ASSIGN (HeadlessArrayOf);
const Type& operator [] (int i_) const
2009-05-20 05:58:54 +02:00
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i >= lenP1 || !i)) return Null (Type);
2018-05-09 01:56:11 +02:00
return arrayZ[i-1];
2009-05-18 08:03:58 +02:00
}
Type& operator [] (int i_)
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i >= lenP1 || !i)) return Crap (Type);
return arrayZ[i-1];
}
unsigned int get_size () const
2019-08-29 00:05:49 +02:00
{ return lenP1.static_size + get_length () * Type::static_size; }
2009-05-17 06:54:25 +02:00
2019-08-29 00:05:49 +02:00
unsigned get_length () const { return lenP1 ? lenP1 - 1 : 0; }
2019-08-29 00:05:49 +02:00
hb_array_t< Type> as_array () { return hb_array (arrayZ, get_length ()); }
hb_array_t<const Type> as_array () const { return hb_array (arrayZ, get_length ()); }
/* Iterator. */
typedef hb_array_t<const Type> iter_t;
typedef hb_array_t< Type> writer_t;
iter_t iter () const { return as_array (); }
writer_t writer () { return as_array (); }
operator iter_t () const { return iter (); }
operator writer_t () { return writer (); }
bool serialize (hb_serialize_context_t *c, unsigned int items_len)
{
2012-11-23 21:32:14 +01:00
TRACE_SERIALIZE (this);
if (unlikely (!c->extend_min (*this))) return_trace (false);
c->check_assign (lenP1, items_len + 1);
if (unlikely (!c->extend (*this))) return_trace (false);
return_trace (true);
}
template <typename Iterator,
hb_requires (hb_is_source_of (Iterator, Type))>
bool serialize (hb_serialize_context_t *c, Iterator items)
{
TRACE_SERIALIZE (this);
unsigned count = items.len ();
if (unlikely (!serialize (c, count))) return_trace (false);
/* TODO Umm. Just exhaust the iterator instead? Being extra
* cautious right now.. */
for (unsigned i = 0; i < count; i++, ++items)
arrayZ[i] = *items;
return_trace (true);
}
2019-05-11 07:23:24 +02:00
template <typename ...Ts>
bool sanitize (hb_sanitize_context_t *c, Ts&&... ds) const
{
2012-11-23 21:32:14 +01:00
TRACE_SANITIZE (this);
if (unlikely (!sanitize_shallow (c))) return_trace (false);
2019-05-11 07:44:19 +02:00
if (!sizeof... (Ts) && hb_is_trivially_copyable (Type)) return_trace (true);
2019-08-29 00:05:49 +02:00
unsigned int count = get_length ();
2019-05-11 07:23:24 +02:00
for (unsigned int i = 0; i < count; i++)
if (unlikely (!c->dispatch (arrayZ[i], hb_forward<Ts> (ds)...)))
return_trace (false);
return_trace (true);
2009-08-04 06:58:28 +02:00
}
private:
bool sanitize_shallow (hb_sanitize_context_t *c) const
{
TRACE_SANITIZE (this);
return_trace (lenP1.sanitize (c) &&
(!lenP1 || c->check_array (arrayZ, lenP1 - 1)));
}
public:
LenType lenP1;
2019-09-06 22:54:27 +02:00
Type arrayZ[HB_VAR_ARRAY];
2010-05-11 00:08:46 +02:00
public:
2018-05-09 01:56:11 +02:00
DEFINE_SIZE_ARRAY (sizeof (LenType), arrayZ);
2009-05-17 06:54:25 +02:00
};
/* An array storing length-1. */
template <typename Type, typename LenType=HBUINT16>
struct ArrayOfM1
{
HB_DELETE_CREATE_COPY_ASSIGN (ArrayOfM1);
const Type& operator [] (int i_) const
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i > lenM1)) return Null (Type);
return arrayZ[i];
}
Type& operator [] (int i_)
{
unsigned int i = (unsigned int) i_;
2018-11-15 20:40:56 +01:00
if (unlikely (i > lenM1)) return Crap (Type);
return arrayZ[i];
}
unsigned int get_size () const
{ return lenM1.static_size + (lenM1 + 1) * Type::static_size; }
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, Ts&&... ds) const
{
TRACE_SANITIZE (this);
if (unlikely (!sanitize_shallow (c))) return_trace (false);
unsigned int count = lenM1 + 1;
for (unsigned int i = 0; i < count; i++)
if (unlikely (!c->dispatch (arrayZ[i], hb_forward<Ts> (ds)...)))
2018-11-15 20:40:56 +01:00
return_trace (false);
return_trace (true);
}
private:
bool sanitize_shallow (hb_sanitize_context_t *c) const
{
TRACE_SANITIZE (this);
return_trace (lenM1.sanitize (c) &&
(c->check_array (arrayZ, lenM1 + 1)));
}
public:
LenType lenM1;
2019-09-06 22:54:27 +02:00
Type arrayZ[HB_VAR_ARRAY];
public:
DEFINE_SIZE_ARRAY (sizeof (LenType), arrayZ);
};
/* An array with sorted elements. Supports binary searching. */
template <typename Type, typename LenType=HBUINT16>
struct SortedArrayOf : ArrayOf<Type, LenType>
2014-05-09 00:21:04 +02:00
{
hb_sorted_array_t< Type> as_array () { return hb_sorted_array (this->arrayZ, this->len); }
hb_sorted_array_t<const Type> as_array () const { return hb_sorted_array (this->arrayZ, this->len); }
/* Iterator. */
typedef hb_sorted_array_t<const Type> iter_t;
typedef hb_sorted_array_t< Type> writer_t;
iter_t iter () const { return as_array (); }
writer_t writer () { return as_array (); }
operator iter_t () const { return iter (); }
operator writer_t () { return writer (); }
hb_sorted_array_t<const Type> sub_array (unsigned int start_offset, unsigned int count) const
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_sorted_array_t<const Type> sub_array (unsigned int start_offset, unsigned int *count = nullptr /* IN/OUT */) const
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_sorted_array_t<Type> sub_array (unsigned int start_offset, unsigned int count)
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
hb_sorted_array_t<Type> sub_array (unsigned int start_offset, unsigned int *count = nullptr /* IN/OUT */)
2019-07-25 23:49:22 +02:00
{ return as_array ().sub_array (start_offset, count); }
bool serialize (hb_serialize_context_t *c, unsigned int items_len)
{
TRACE_SERIALIZE (this);
bool ret = ArrayOf<Type, LenType>::serialize (c, items_len);
return_trace (ret);
}
template <typename Iterator,
hb_requires (hb_is_sorted_source_of (Iterator, Type))>
bool serialize (hb_serialize_context_t *c, Iterator items)
{
TRACE_SERIALIZE (this);
bool ret = ArrayOf<Type, LenType>::serialize (c, items);
return_trace (ret);
}
template <typename T>
Type &bsearch (const T &x, Type &not_found = Crap (Type))
{ return *as_array ().bsearch (x, &not_found); }
template <typename T>
const Type &bsearch (const T &x, const Type &not_found = Null (Type)) const
{ return *as_array ().bsearch (x, &not_found); }
template <typename T>
bool bfind (const T &x, unsigned int *i = nullptr,
2019-10-01 12:19:55 +02:00
hb_bfind_not_found_t not_found = HB_BFIND_NOT_FOUND_DONT_STORE,
unsigned int to_store = (unsigned int) -1) const
{ return as_array ().bfind (x, i, not_found, to_store); }
2010-07-08 06:40:04 +02:00
};
2018-10-08 04:28:45 +02:00
/*
* Binary-search arrays
*/
2018-10-08 04:30:42 +02:00
template <typename LenType=HBUINT16>
2017-11-01 03:05:37 +01:00
struct BinSearchHeader
{
operator uint32_t () const { return len; }
2017-11-01 03:05:37 +01:00
bool sanitize (hb_sanitize_context_t *c) const
2017-11-01 03:05:37 +01:00
{
TRACE_SANITIZE (this);
return_trace (c->check_struct (this));
}
BinSearchHeader& operator = (unsigned int v)
2018-02-08 04:13:10 +01:00
{
len = v;
2018-02-08 04:13:10 +01:00
assert (len == v);
entrySelector = hb_max (1u, hb_bit_storage (v)) - 1;
searchRange = 16 * (1u << entrySelector);
rangeShift = v * 16 > searchRange
? 16 * v - searchRange
: 0;
return *this;
2018-02-08 04:13:10 +01:00
}
2017-11-01 03:05:37 +01:00
protected:
2018-10-08 04:30:42 +02:00
LenType len;
LenType searchRange;
LenType entrySelector;
LenType rangeShift;
2017-11-01 03:05:37 +01:00
public:
DEFINE_SIZE_STATIC (8);
};
2018-10-08 04:30:42 +02:00
template <typename Type, typename LenType=HBUINT16>
using BinSearchArrayOf = SortedArrayOf<Type, BinSearchHeader<LenType>>;
2017-11-01 03:05:37 +01:00
2018-10-08 04:28:45 +02:00
struct VarSizedBinSearchHeader
{
bool sanitize (hb_sanitize_context_t *c) const
2018-10-08 04:28:45 +02:00
{
TRACE_SANITIZE (this);
return_trace (c->check_struct (this));
}
HBUINT16 unitSize; /* Size of a lookup unit for this search in bytes. */
HBUINT16 nUnits; /* Number of units of the preceding size to be searched. */
HBUINT16 searchRange; /* The value of unitSize times the largest power of 2
* that is less than or equal to the value of nUnits. */
HBUINT16 entrySelector; /* The log base 2 of the largest power of 2 less than
* or equal to the value of nUnits. */
HBUINT16 rangeShift; /* The value of unitSize times the difference of the
* value of nUnits minus the largest power of 2 less
* than or equal to the value of nUnits. */
public:
DEFINE_SIZE_STATIC (10);
};
template <typename Type>
struct VarSizedBinSearchArrayOf
{
static constexpr unsigned item_size = Type::static_size;
HB_DELETE_CREATE_COPY_ASSIGN (VarSizedBinSearchArrayOf);
bool last_is_terminator () const
{
if (unlikely (!header.nUnits)) return false;
/* Gah.
*
* "The number of termination values that need to be included is table-specific.
* The value that indicates binary search termination is 0xFFFF." */
const HBUINT16 *words = &StructAtOffset<HBUINT16> (&bytesZ, (header.nUnits - 1) * header.unitSize);
unsigned int count = Type::TerminationWordCount;
for (unsigned int i = 0; i < count; i++)
if (words[i] != 0xFFFFu)
return false;
return true;
}
const Type& operator [] (int i_) const
2018-10-08 04:28:45 +02:00
{
unsigned int i = (unsigned int) i_;
2018-11-25 04:48:34 +01:00
if (unlikely (i >= get_length ())) return Null (Type);
2018-10-08 04:28:45 +02:00
return StructAtOffset<Type> (&bytesZ, i * header.unitSize);
}
Type& operator [] (int i_)
2018-10-08 04:28:45 +02:00
{
unsigned int i = (unsigned int) i_;
2018-11-25 04:48:34 +01:00
if (unlikely (i >= get_length ())) return Crap (Type);
2018-10-08 04:28:45 +02:00
return StructAtOffset<Type> (&bytesZ, i * header.unitSize);
}
unsigned int get_length () const
{ return header.nUnits - last_is_terminator (); }
unsigned int get_size () const
2018-10-08 04:28:45 +02:00
{ return header.static_size + header.nUnits * header.unitSize; }
template <typename ...Ts>
2019-05-08 05:58:43 +02:00
bool sanitize (hb_sanitize_context_t *c, Ts&&... ds) const
{
TRACE_SANITIZE (this);
if (unlikely (!sanitize_shallow (c))) return_trace (false);
2019-05-11 07:44:19 +02:00
if (!sizeof... (Ts) && hb_is_trivially_copyable (Type)) return_trace (true);
2018-11-25 04:48:34 +01:00
unsigned int count = get_length ();
for (unsigned int i = 0; i < count; i++)
2019-04-24 15:22:14 +02:00
if (unlikely (!(*this)[i].sanitize (c, hb_forward<Ts> (ds)...)))
2018-11-15 20:40:56 +01:00
return_trace (false);
return_trace (true);
}
2018-10-08 04:28:45 +02:00
template <typename T>
const Type *bsearch (const T &key) const
2018-10-08 04:28:45 +02:00
{
unsigned pos;
return hb_bsearch_impl (&pos,
key,
(const void *) bytesZ,
get_length (),
header.unitSize,
_hb_cmp_method<T, Type>)
? (const Type *) (((const char *) &bytesZ) + (pos * header.unitSize))
: nullptr;
2018-10-08 04:28:45 +02:00
}
private:
bool sanitize_shallow (hb_sanitize_context_t *c) const
2018-10-08 04:28:45 +02:00
{
TRACE_SANITIZE (this);
return_trace (header.sanitize (c) &&
Type::static_size <= header.unitSize &&
c->check_range (bytesZ.arrayZ,
header.nUnits,
header.unitSize));
2018-10-08 04:28:45 +02:00
}
protected:
VarSizedBinSearchHeader header;
UnsizedArrayOf<HBUINT8> bytesZ;
public:
DEFINE_SIZE_ARRAY (10, bytesZ);
};
2010-07-08 06:40:04 +02:00
2012-11-17 03:49:54 +01:00
} /* namespace OT */
2010-07-23 21:11:18 +02:00
#endif /* HB_OPEN_TYPE_HH */