#include "hb-buffer.hh"
#include "hb-utf.hh"
hb_bool_t
hb_segment_properties_equal (const hb_segment_properties_t *a,
const hb_segment_properties_t *b)
{
return a->direction == b->direction &&
a->script == b->script &&
a->language == b->language &&
a->reserved1 == b->reserved1 &&
a->reserved2 == b->reserved2;
}
unsigned int
hb_segment_properties_hash (const hb_segment_properties_t *p)
{
return ((unsigned int) p->direction * 31 +
(unsigned int) p->script) * 31 +
(intptr_t) (p->language);
}
void
hb_segment_properties_overlay (hb_segment_properties_t *p,
const hb_segment_properties_t *src)
{
if (unlikely (!p || !src))
return;
if (!p->direction)
p->direction = src->direction;
if (p->direction != src->direction)
return;
if (!p->script)
p->script = src->script;
if (p->script != src->script)
return;
if (!p->language)
p->language = src->language;
}
bool
hb_buffer_t::enlarge (unsigned int size)
{
if (unlikely (!successful))
return false;
if (unlikely (size > max_len))
{
successful = false;
return false;
}
unsigned int new_allocated = allocated;
hb_glyph_position_t *new_pos = nullptr;
hb_glyph_info_t *new_info = nullptr;
bool separate_out = out_info != info;
if (unlikely (hb_unsigned_mul_overflows (size, sizeof (info[0]))))
goto done;
while (size >= new_allocated)
new_allocated += (new_allocated >> 1) + 32;
unsigned new_bytes;
if (unlikely (hb_unsigned_mul_overflows (new_allocated, sizeof (info[0]), &new_bytes)))
goto done;
static_assert (sizeof (info[0]) == sizeof (pos[0]), "");
new_pos = (hb_glyph_position_t *) hb_realloc (pos, new_bytes);
new_info = (hb_glyph_info_t *) hb_realloc (info, new_bytes);
done:
if (unlikely (!new_pos || !new_info))
successful = false;
if (likely (new_pos))
pos = new_pos;
if (likely (new_info))
info = new_info;
out_info = separate_out ? (hb_glyph_info_t *) pos : info;
if (likely (successful))
allocated = new_allocated;
return likely (successful);
}
bool
hb_buffer_t::make_room_for (unsigned int num_in,
unsigned int num_out)
{
if (unlikely (!ensure (out_len + num_out))) return false;
if (out_info == info &&
out_len + num_out > idx + num_in)
{
assert (have_output);
out_info = (hb_glyph_info_t *) pos;
hb_memcpy (out_info, info, out_len * sizeof (out_info[0]));
}
return true;
}
bool
hb_buffer_t::shift_forward (unsigned int count)
{
assert (have_output);
if (unlikely (!ensure (len + count))) return false;
memmove (info + idx + count, info + idx, (len - idx) * sizeof (info[0]));
if (idx + count > len)
{
hb_memset (info + len, 0, (idx + count - len) * sizeof (info[0]));
}
len += count;
idx += count;
return true;
}
hb_buffer_t::scratch_buffer_t *
hb_buffer_t::get_scratch_buffer (unsigned int *size)
{
have_output = false;
have_positions = false;
out_len = 0;
out_info = info;
assert ((uintptr_t) pos % sizeof (scratch_buffer_t) == 0);
*size = allocated * sizeof (pos[0]) / sizeof (scratch_buffer_t);
return (scratch_buffer_t *) (void *) pos;
}
void
hb_buffer_t::similar (const hb_buffer_t &src)
{
hb_unicode_funcs_destroy (unicode);
unicode = hb_unicode_funcs_reference (src.unicode);
flags = src.flags;
cluster_level = src.cluster_level;
replacement = src.replacement;
invisible = src.invisible;
not_found = src.not_found;
}
void
hb_buffer_t::reset ()
{
hb_unicode_funcs_destroy (unicode);
unicode = hb_unicode_funcs_reference (hb_unicode_funcs_get_default ());
flags = HB_BUFFER_FLAG_DEFAULT;
cluster_level = HB_BUFFER_CLUSTER_LEVEL_DEFAULT;
replacement = HB_BUFFER_REPLACEMENT_CODEPOINT_DEFAULT;
invisible = 0;
not_found = 0;
clear ();
}
void
hb_buffer_t::clear ()
{
content_type = HB_BUFFER_CONTENT_TYPE_INVALID;
hb_segment_properties_t default_props = HB_SEGMENT_PROPERTIES_DEFAULT;
props = default_props;
successful = true;
shaping_failed = false;
have_output = false;
have_positions = false;
idx = 0;
len = 0;
out_len = 0;
out_info = info;
hb_memset (context, 0, sizeof context);
hb_memset (context_len, 0, sizeof context_len);
deallocate_var_all ();
serial = 0;
random_state = 1;
scratch_flags = HB_BUFFER_SCRATCH_FLAG_DEFAULT;
}
void
hb_buffer_t::enter ()
{
deallocate_var_all ();
serial = 0;
shaping_failed = false;
scratch_flags = HB_BUFFER_SCRATCH_FLAG_DEFAULT;
unsigned mul;
if (likely (!hb_unsigned_mul_overflows (len, HB_BUFFER_MAX_LEN_FACTOR, &mul)))
{
max_len = hb_max (mul, (unsigned) HB_BUFFER_MAX_LEN_MIN);
}
if (likely (!hb_unsigned_mul_overflows (len, HB_BUFFER_MAX_OPS_FACTOR, &mul)))
{
max_ops = hb_max (mul, (unsigned) HB_BUFFER_MAX_OPS_MIN);
}
}
void
hb_buffer_t::leave ()
{
max_len = HB_BUFFER_MAX_LEN_DEFAULT;
max_ops = HB_BUFFER_MAX_OPS_DEFAULT;
deallocate_var_all ();
serial = 0;
}
void
hb_buffer_t::add (hb_codepoint_t codepoint,
unsigned int cluster)
{
hb_glyph_info_t *glyph;
if (unlikely (!ensure (len + 1))) return;
glyph = &info[len];
hb_memset (glyph, 0, sizeof (*glyph));
glyph->codepoint = codepoint;
glyph->mask = 0;
glyph->cluster = cluster;
len++;
}
void
hb_buffer_t::add_info (const hb_glyph_info_t &glyph_info)
{
if (unlikely (!ensure (len + 1))) return;
info[len] = glyph_info;
len++;
}
void
hb_buffer_t::clear_output ()
{
have_output = true;
have_positions = false;
idx = 0;
out_len = 0;
out_info = info;
}
void
hb_buffer_t::clear_positions ()
{
have_output = false;
have_positions = true;
out_len = 0;
out_info = info;
hb_memset (pos, 0, sizeof (pos[0]) * len);
}
bool
hb_buffer_t::sync ()
{
bool ret = false;
assert (have_output);
assert (idx <= len);
if (unlikely (!successful || !next_glyphs (len - idx)))
goto reset;
if (out_info != info)
{
pos = (hb_glyph_position_t *) info;
info = out_info;
}
len = out_len;
ret = true;
reset:
have_output = false;
out_len = 0;
out_info = info;
idx = 0;
return ret;
}
int
hb_buffer_t::sync_so_far ()
{
bool had_output = have_output;
unsigned out_i = out_len;
unsigned i = idx;
unsigned old_idx = idx;
if (sync ())
idx = out_i;
else
idx = i;
if (had_output)
{
have_output = true;
out_len = idx;
}
assert (idx <= len);
return idx - old_idx;
}
bool
hb_buffer_t::move_to (unsigned int i)
{
if (!have_output)
{
assert (i <= len);
idx = i;
return true;
}
if (unlikely (!successful))
return false;
assert (i <= out_len + (len - idx));
if (out_len < i)
{
unsigned int count = i - out_len;
if (unlikely (!make_room_for (count, count))) return false;
memmove (out_info + out_len, info + idx, count * sizeof (out_info[0]));
idx += count;
out_len += count;
}
else if (out_len > i)
{
unsigned int count = out_len - i;
if (unlikely (idx < count && !shift_forward (count - idx))) return false;
assert (idx >= count);
idx -= count;
out_len -= count;
memmove (info + idx, out_info + out_len, count * sizeof (out_info[0]));
}
return true;
}
void
hb_buffer_t::set_masks (hb_mask_t value,
hb_mask_t mask,
unsigned int cluster_start,
unsigned int cluster_end)
{
if (!mask)
return;
hb_mask_t not_mask = ~mask;
value &= mask;
unsigned int count = len;
for (unsigned int i = 0; i < count; i++)
if (cluster_start <= info[i].cluster && info[i].cluster < cluster_end)
info[i].mask = (info[i].mask & not_mask) | value;
}
void
hb_buffer_t::merge_clusters_impl (unsigned int start,
unsigned int end)
{
if (cluster_level == HB_BUFFER_CLUSTER_LEVEL_CHARACTERS)
{
unsafe_to_break (start, end);
return;
}
unsigned int cluster = info[start].cluster;
for (unsigned int i = start + 1; i < end; i++)
cluster = hb_min (cluster, info[i].cluster);
if (cluster != info[end - 1].cluster)
while (end < len && info[end - 1].cluster == info[end].cluster)
end++;
if (cluster != info[start].cluster)
while (idx < start && info[start - 1].cluster == info[start].cluster)
start--;
if (idx == start && info[start].cluster != cluster)
for (unsigned int i = out_len; i && out_info[i - 1].cluster == info[start].cluster; i--)
set_cluster (out_info[i - 1], cluster);
for (unsigned int i = start; i < end; i++)
set_cluster (info[i], cluster);
}
void
hb_buffer_t::merge_out_clusters (unsigned int start,
unsigned int end)
{
if (cluster_level == HB_BUFFER_CLUSTER_LEVEL_CHARACTERS)
return;
if (unlikely (end - start < 2))
return;
unsigned int cluster = out_info[start].cluster;
for (unsigned int i = start + 1; i < end; i++)
cluster = hb_min (cluster, out_info[i].cluster);
while (start && out_info[start - 1].cluster == out_info[start].cluster)
start--;
while (end < out_len && out_info[end - 1].cluster == out_info[end].cluster)
end++;
if (end == out_len)
for (unsigned int i = idx; i < len && info[i].cluster == out_info[end - 1].cluster; i++)
set_cluster (info[i], cluster);
for (unsigned int i = start; i < end; i++)
set_cluster (out_info[i], cluster);
}
void
hb_buffer_t::delete_glyph ()
{
unsigned int cluster = info[idx].cluster;
if ((idx + 1 < len && cluster == info[idx + 1].cluster) ||
(out_len && cluster == out_info[out_len - 1].cluster))
{
goto done;
}
if (out_len)
{
if (cluster < out_info[out_len - 1].cluster)
{
unsigned int mask = info[idx].mask;
unsigned int old_cluster = out_info[out_len - 1].cluster;
for (unsigned i = out_len; i && out_info[i - 1].cluster == old_cluster; i--)
set_cluster (out_info[i - 1], cluster, mask);
}
goto done;
}
if (idx + 1 < len)
{
merge_clusters (idx, idx + 2);
goto done;
}
done:
skip_glyph ();
}
void
hb_buffer_t::delete_glyphs_inplace (bool (*filter) (const hb_glyph_info_t *info))
{
unsigned int j = 0;
unsigned int count = len;
for (unsigned int i = 0; i < count; i++)
{
if (filter (&info[i]))
{
unsigned int cluster = info[i].cluster;
if (i + 1 < count && cluster == info[i + 1].cluster)
continue;
if (j)
{
if (cluster < info[j - 1].cluster)
{
unsigned int mask = info[i].mask;
unsigned int old_cluster = info[j - 1].cluster;
for (unsigned k = j; k && info[k - 1].cluster == old_cluster; k--)
set_cluster (info[k - 1], cluster, mask);
}
continue;
}
if (i + 1 < count)
merge_clusters (i, i + 2);
continue;
}
if (j != i)
{
info[j] = info[i];
pos[j] = pos[i];
}
j++;
}
len = j;
}
void
hb_buffer_t::guess_segment_properties ()
{
assert_unicode ();
if (props.script == HB_SCRIPT_INVALID) {
for (unsigned int i = 0; i < len; i++) {
hb_script_t script = unicode->script (info[i].codepoint);
if (likely (script != HB_SCRIPT_COMMON &&
script != HB_SCRIPT_INHERITED &&
script != HB_SCRIPT_UNKNOWN)) {
props.script = script;
break;
}
}
}
if (props.direction == HB_DIRECTION_INVALID) {
props.direction = hb_script_get_horizontal_direction (props.script);
if (props.direction == HB_DIRECTION_INVALID)
props.direction = HB_DIRECTION_LTR;
}
if (props.language == HB_LANGUAGE_INVALID) {
props.language = hb_language_get_default ();
}
}
DEFINE_NULL_INSTANCE (hb_buffer_t) =
{
HB_OBJECT_HEADER_STATIC,
const_cast<hb_unicode_funcs_t *> (&_hb_Null_hb_unicode_funcs_t),
HB_BUFFER_FLAG_DEFAULT,
HB_BUFFER_CLUSTER_LEVEL_DEFAULT,
HB_BUFFER_REPLACEMENT_CODEPOINT_DEFAULT,
0,
0,
HB_BUFFER_CONTENT_TYPE_INVALID,
HB_SEGMENT_PROPERTIES_DEFAULT,
false,
true,
false,
true
};
hb_buffer_t *
hb_buffer_create ()
{
hb_buffer_t *buffer;
if (!(buffer = hb_object_create<hb_buffer_t> ()))
return hb_buffer_get_empty ();
buffer->max_len = HB_BUFFER_MAX_LEN_DEFAULT;
buffer->max_ops = HB_BUFFER_MAX_OPS_DEFAULT;
buffer->reset ();
return buffer;
}
hb_buffer_t *
hb_buffer_create_similar (const hb_buffer_t *src)
{
hb_buffer_t *buffer = hb_buffer_create ();
buffer->similar (*src);
return buffer;
}
void
hb_buffer_reset (hb_buffer_t *buffer)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->reset ();
}
hb_buffer_t *
hb_buffer_get_empty ()
{
return const_cast<hb_buffer_t *> (&Null (hb_buffer_t));
}
hb_buffer_t *
hb_buffer_reference (hb_buffer_t *buffer)
{
return hb_object_reference (buffer);
}
void
hb_buffer_destroy (hb_buffer_t *buffer)
{
if (!hb_object_destroy (buffer)) return;
hb_unicode_funcs_destroy (buffer->unicode);
hb_free (buffer->info);
hb_free (buffer->pos);
#ifndef HB_NO_BUFFER_MESSAGE
if (buffer->message_destroy)
buffer->message_destroy (buffer->message_data);
#endif
hb_free (buffer);
}
hb_bool_t
hb_buffer_set_user_data (hb_buffer_t *buffer,
hb_user_data_key_t *key,
void * data,
hb_destroy_func_t destroy,
hb_bool_t replace)
{
return hb_object_set_user_data (buffer, key, data, destroy, replace);
}
void *
hb_buffer_get_user_data (const hb_buffer_t *buffer,
hb_user_data_key_t *key)
{
return hb_object_get_user_data (buffer, key);
}
void
hb_buffer_set_content_type (hb_buffer_t *buffer,
hb_buffer_content_type_t content_type)
{
buffer->content_type = content_type;
}
hb_buffer_content_type_t
hb_buffer_get_content_type (const hb_buffer_t *buffer)
{
return buffer->content_type;
}
void
hb_buffer_set_unicode_funcs (hb_buffer_t *buffer,
hb_unicode_funcs_t *unicode_funcs)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
if (!unicode_funcs)
unicode_funcs = hb_unicode_funcs_get_default ();
hb_unicode_funcs_reference (unicode_funcs);
hb_unicode_funcs_destroy (buffer->unicode);
buffer->unicode = unicode_funcs;
}
hb_unicode_funcs_t *
hb_buffer_get_unicode_funcs (const hb_buffer_t *buffer)
{
return buffer->unicode;
}
void
hb_buffer_set_direction (hb_buffer_t *buffer,
hb_direction_t direction)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->props.direction = direction;
}
hb_direction_t
hb_buffer_get_direction (const hb_buffer_t *buffer)
{
return buffer->props.direction;
}
void
hb_buffer_set_script (hb_buffer_t *buffer,
hb_script_t script)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->props.script = script;
}
hb_script_t
hb_buffer_get_script (const hb_buffer_t *buffer)
{
return buffer->props.script;
}
void
hb_buffer_set_language (hb_buffer_t *buffer,
hb_language_t language)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->props.language = language;
}
hb_language_t
hb_buffer_get_language (const hb_buffer_t *buffer)
{
return buffer->props.language;
}
void
hb_buffer_set_segment_properties (hb_buffer_t *buffer,
const hb_segment_properties_t *props)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->props = *props;
}
void
hb_buffer_get_segment_properties (const hb_buffer_t *buffer,
hb_segment_properties_t *props)
{
*props = buffer->props;
}
void
hb_buffer_set_flags (hb_buffer_t *buffer,
hb_buffer_flags_t flags)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->flags = flags;
}
hb_buffer_flags_t
hb_buffer_get_flags (const hb_buffer_t *buffer)
{
return buffer->flags;
}
void
hb_buffer_set_cluster_level (hb_buffer_t *buffer,
hb_buffer_cluster_level_t cluster_level)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->cluster_level = cluster_level;
}
hb_buffer_cluster_level_t
hb_buffer_get_cluster_level (const hb_buffer_t *buffer)
{
return buffer->cluster_level;
}
void
hb_buffer_set_replacement_codepoint (hb_buffer_t *buffer,
hb_codepoint_t replacement)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->replacement = replacement;
}
hb_codepoint_t
hb_buffer_get_replacement_codepoint (const hb_buffer_t *buffer)
{
return buffer->replacement;
}
void
hb_buffer_set_invisible_glyph (hb_buffer_t *buffer,
hb_codepoint_t invisible)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->invisible = invisible;
}
hb_codepoint_t
hb_buffer_get_invisible_glyph (const hb_buffer_t *buffer)
{
return buffer->invisible;
}
void
hb_buffer_set_not_found_glyph (hb_buffer_t *buffer,
hb_codepoint_t not_found)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->not_found = not_found;
}
hb_codepoint_t
hb_buffer_get_not_found_glyph (const hb_buffer_t *buffer)
{
return buffer->not_found;
}
void
hb_buffer_set_random_state (hb_buffer_t *buffer,
unsigned state)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->random_state = state;
}
unsigned
hb_buffer_get_random_state (const hb_buffer_t *buffer)
{
return buffer->random_state;
}
void
hb_buffer_clear_contents (hb_buffer_t *buffer)
{
if (unlikely (hb_object_is_immutable (buffer)))
return;
buffer->clear ();
}
hb_bool_t
hb_buffer_pre_allocate (hb_buffer_t *buffer, unsigned int size)
{
return buffer->ensure (size);
}
hb_bool_t
hb_buffer_allocation_successful (hb_buffer_t *buffer)
{
return buffer->successful;
}
void
hb_buffer_add (hb_buffer_t *buffer,
hb_codepoint_t codepoint,
unsigned int cluster)
{
buffer->add (codepoint, cluster);
buffer->clear_context (1);
}
hb_bool_t
hb_buffer_set_length (hb_buffer_t *buffer,
unsigned int length)
{
if (unlikely (hb_object_is_immutable (buffer)))
return length == 0;
if (unlikely (!buffer->ensure (length)))
return false;
if (length > buffer->len) {
hb_memset (buffer->info + buffer->len, 0, sizeof (buffer->info[0]) * (length - buffer->len));
if (buffer->have_positions)
hb_memset (buffer->pos + buffer->len, 0, sizeof (buffer->pos[0]) * (length - buffer->len));
}
buffer->len = length;
if (!length)
{
buffer->content_type = HB_BUFFER_CONTENT_TYPE_INVALID;
buffer->clear_context (0);
}
buffer->clear_context (1);
return true;
}
unsigned int
hb_buffer_get_length (const hb_buffer_t *buffer)
{
return buffer->len;
}
hb_glyph_info_t *
hb_buffer_get_glyph_infos (hb_buffer_t *buffer,
unsigned int *length)
{
if (length)
*length = buffer->len;
return (hb_glyph_info_t *) buffer->info;
}
hb_glyph_position_t *
hb_buffer_get_glyph_positions (hb_buffer_t *buffer,
unsigned int *length)
{
if (length)
*length = buffer->len;
if (!buffer->have_positions)
{
if (unlikely (buffer->message_depth))
return nullptr;
buffer->clear_positions ();
}
return (hb_glyph_position_t *) buffer->pos;
}
HB_EXTERN hb_bool_t
hb_buffer_has_positions (hb_buffer_t *buffer)
{
return buffer->have_positions;
}
hb_glyph_flags_t
(hb_glyph_info_get_glyph_flags) (const hb_glyph_info_t *info)
{
return hb_glyph_info_get_glyph_flags (info);
}
void
hb_buffer_reverse (hb_buffer_t *buffer)
{
buffer->reverse ();
}
void
hb_buffer_reverse_range (hb_buffer_t *buffer,
unsigned int start, unsigned int end)
{
buffer->reverse_range (start, end);
}
void
hb_buffer_reverse_clusters (hb_buffer_t *buffer)
{
buffer->reverse_clusters ();
}
void
hb_buffer_guess_segment_properties (hb_buffer_t *buffer)
{
buffer->guess_segment_properties ();
}
template <typename utf_t>
static inline void
hb_buffer_add_utf (hb_buffer_t *buffer,
const typename utf_t::codepoint_t *text,
int text_length,
unsigned int item_offset,
int item_length)
{
typedef typename utf_t::codepoint_t T;
const hb_codepoint_t replacement = buffer->replacement;
buffer->assert_unicode ();
if (unlikely (hb_object_is_immutable (buffer)))
return;
if (text_length == -1)
text_length = utf_t::strlen (text);
if (item_length == -1)
item_length = text_length - item_offset;
if (unlikely (item_length < 0 ||
item_length > INT_MAX / 8 ||
!buffer->ensure (buffer->len + item_length * sizeof (T) / 4)))
return;
if (!buffer->len && item_offset > 0)
{
buffer->clear_context (0);
const T *prev = text + item_offset;
const T *start = text;
while (start < prev && buffer->context_len[0] < buffer->CONTEXT_LENGTH)
{
hb_codepoint_t u;
prev = utf_t::prev (prev, start, &u, replacement);
buffer->context[0][buffer->context_len[0]++] = u;
}
}
const T *next = text + item_offset;
const T *end = next + item_length;
while (next < end)
{
hb_codepoint_t u;
const T *old_next = next;
next = utf_t::next (next, end, &u, replacement);
buffer->add (u, old_next - (const T *) text);
}
buffer->clear_context (1);
end = text + text_length;
while (next < end && buffer->context_len[1] < buffer->CONTEXT_LENGTH)
{
hb_codepoint_t u;
next = utf_t::next (next, end, &u, replacement);
buffer->context[1][buffer->context_len[1]++] = u;
}
buffer->content_type = HB_BUFFER_CONTENT_TYPE_UNICODE;
}
void
hb_buffer_add_utf8 (hb_buffer_t *buffer,
const char *text,
int text_length,
unsigned int item_offset,
int item_length)
{
hb_buffer_add_utf<hb_utf8_t> (buffer, (const uint8_t *) text, text_length, item_offset, item_length);
}
void
hb_buffer_add_utf16 (hb_buffer_t *buffer,
const uint16_t *text,
int text_length,
unsigned int item_offset,
int item_length)
{
hb_buffer_add_utf<hb_utf16_t> (buffer, text, text_length, item_offset, item_length);
}
void
hb_buffer_add_utf32 (hb_buffer_t *buffer,
const uint32_t *text,
int text_length,
unsigned int item_offset,
int item_length)
{
hb_buffer_add_utf<hb_utf32_t> (buffer, text, text_length, item_offset, item_length);
}
void
hb_buffer_add_latin1 (hb_buffer_t *buffer,
const uint8_t *text,
int text_length,
unsigned int item_offset,
int item_length)
{
hb_buffer_add_utf<hb_latin1_t> (buffer, text, text_length, item_offset, item_length);
}
void
hb_buffer_add_codepoints (hb_buffer_t *buffer,
const hb_codepoint_t *text,
int text_length,
unsigned int item_offset,
int item_length)
{
hb_buffer_add_utf<hb_utf32_novalidate_t> (buffer, text, text_length, item_offset, item_length);
}
HB_EXTERN void
hb_buffer_append (hb_buffer_t *buffer,
const hb_buffer_t *source,
unsigned int start,
unsigned int end)
{
assert (!buffer->have_output && !source->have_output);
assert (buffer->have_positions == source->have_positions ||
!buffer->len || !source->len);
assert (buffer->content_type == source->content_type ||
!buffer->len || !source->len);
if (end > source->len)
end = source->len;
if (start > end)
start = end;
if (start == end)
return;
if (buffer->len + (end - start) < buffer->len)
{
buffer->successful = false;
return;
}
unsigned int orig_len = buffer->len;
hb_buffer_set_length (buffer, buffer->len + (end - start));
if (unlikely (!buffer->successful))
return;
if (!orig_len)
buffer->content_type = source->content_type;
if (!buffer->have_positions && source->have_positions)
buffer->clear_positions ();
hb_segment_properties_overlay (&buffer->props, &source->props);
hb_memcpy (buffer->info + orig_len, source->info + start, (end - start) * sizeof (buffer->info[0]));
if (buffer->have_positions)
hb_memcpy (buffer->pos + orig_len, source->pos + start, (end - start) * sizeof (buffer->pos[0]));
if (source->content_type == HB_BUFFER_CONTENT_TYPE_UNICODE)
{
if (!orig_len && start + source->context_len[0] > 0)
{
buffer->clear_context (0);
while (start > 0 && buffer->context_len[0] < buffer->CONTEXT_LENGTH)
buffer->context[0][buffer->context_len[0]++] = source->info[--start].codepoint;
for (auto i = 0u; i < source->context_len[0] && buffer->context_len[0] < buffer->CONTEXT_LENGTH; i++)
buffer->context[0][buffer->context_len[0]++] = source->context[0][i];
}
buffer->clear_context (1);
while (end < source->len && buffer->context_len[1] < buffer->CONTEXT_LENGTH)
buffer->context[1][buffer->context_len[1]++] = source->info[end++].codepoint;
for (auto i = 0u; i < source->context_len[1] && buffer->context_len[1] < buffer->CONTEXT_LENGTH; i++)
buffer->context[1][buffer->context_len[1]++] = source->context[1][i];
}
}
static int
compare_info_codepoint (const hb_glyph_info_t *pa,
const hb_glyph_info_t *pb)
{
return (int) pb->codepoint - (int) pa->codepoint;
}
static inline void
normalize_glyphs_cluster (hb_buffer_t *buffer,
unsigned int start,
unsigned int end,
bool backward)
{
hb_glyph_position_t *pos = buffer->pos;
hb_position_t total_x_advance = 0, total_y_advance = 0;
for (unsigned int i = start; i < end; i++)
{
total_x_advance += pos[i].x_advance;
total_y_advance += pos[i].y_advance;
}
hb_position_t x_advance = 0, y_advance = 0;
for (unsigned int i = start; i < end; i++)
{
pos[i].x_offset += x_advance;
pos[i].y_offset += y_advance;
x_advance += pos[i].x_advance;
y_advance += pos[i].y_advance;
pos[i].x_advance = 0;
pos[i].y_advance = 0;
}
if (backward)
{
pos[end - 1].x_advance = total_x_advance;
pos[end - 1].y_advance = total_y_advance;
hb_stable_sort (buffer->info + start, end - start - 1, compare_info_codepoint, buffer->pos + start);
} else {
pos[start].x_advance += total_x_advance;
pos[start].y_advance += total_y_advance;
for (unsigned int i = start + 1; i < end; i++) {
pos[i].x_offset -= total_x_advance;
pos[i].y_offset -= total_y_advance;
}
hb_stable_sort (buffer->info + start + 1, end - start - 1, compare_info_codepoint, buffer->pos + start + 1);
}
}
void
hb_buffer_normalize_glyphs (hb_buffer_t *buffer)
{
assert (buffer->have_positions);
buffer->assert_glyphs ();
bool backward = HB_DIRECTION_IS_BACKWARD (buffer->props.direction);
foreach_cluster (buffer, start, end)
normalize_glyphs_cluster (buffer, start, end, backward);
}
void
hb_buffer_t::sort (unsigned int start, unsigned int end, int(*compar)(const hb_glyph_info_t *, const hb_glyph_info_t *))
{
assert (!have_positions);
for (unsigned int i = start + 1; i < end; i++)
{
unsigned int j = i;
while (j > start && compar (&info[j - 1], &info[i]) > 0)
j--;
if (i == j)
continue;
merge_clusters (j, i + 1);
{
hb_glyph_info_t t = info[i];
memmove (&info[j + 1], &info[j], (i - j) * sizeof (hb_glyph_info_t));
info[j] = t;
}
}
}
hb_buffer_diff_flags_t
hb_buffer_diff (hb_buffer_t *buffer,
hb_buffer_t *reference,
hb_codepoint_t dottedcircle_glyph,
unsigned int position_fuzz)
{
if (buffer->content_type != reference->content_type && buffer->len && reference->len)
return HB_BUFFER_DIFF_FLAG_CONTENT_TYPE_MISMATCH;
hb_buffer_diff_flags_t result = HB_BUFFER_DIFF_FLAG_EQUAL;
bool contains = dottedcircle_glyph != (hb_codepoint_t) -1;
unsigned int count = reference->len;
if (buffer->len != count)
{
const hb_glyph_info_t *info = reference->info;
unsigned int i;
for (i = 0; i < count; i++)
{
if (contains && info[i].codepoint == dottedcircle_glyph)
result |= HB_BUFFER_DIFF_FLAG_DOTTED_CIRCLE_PRESENT;
if (contains && info[i].codepoint == 0)
result |= HB_BUFFER_DIFF_FLAG_NOTDEF_PRESENT;
}
result |= HB_BUFFER_DIFF_FLAG_LENGTH_MISMATCH;
return hb_buffer_diff_flags_t (result);
}
if (!count)
return hb_buffer_diff_flags_t (result);
const hb_glyph_info_t *buf_info = buffer->info;
const hb_glyph_info_t *ref_info = reference->info;
for (unsigned int i = 0; i < count; i++)
{
if (buf_info->codepoint != ref_info->codepoint)
result |= HB_BUFFER_DIFF_FLAG_CODEPOINT_MISMATCH;
if (buf_info->cluster != ref_info->cluster)
result |= HB_BUFFER_DIFF_FLAG_CLUSTER_MISMATCH;
if ((buf_info->mask ^ ref_info->mask) & HB_GLYPH_FLAG_DEFINED)
result |= HB_BUFFER_DIFF_FLAG_GLYPH_FLAGS_MISMATCH;
if (contains && ref_info->codepoint == dottedcircle_glyph)
result |= HB_BUFFER_DIFF_FLAG_DOTTED_CIRCLE_PRESENT;
if (contains && ref_info->codepoint == 0)
result |= HB_BUFFER_DIFF_FLAG_NOTDEF_PRESENT;
buf_info++;
ref_info++;
}
if (buffer->content_type == HB_BUFFER_CONTENT_TYPE_GLYPHS)
{
assert (buffer->have_positions);
const hb_glyph_position_t *buf_pos = buffer->pos;
const hb_glyph_position_t *ref_pos = reference->pos;
for (unsigned int i = 0; i < count; i++)
{
if ((unsigned int) abs (buf_pos->x_advance - ref_pos->x_advance) > position_fuzz ||
(unsigned int) abs (buf_pos->y_advance - ref_pos->y_advance) > position_fuzz ||
(unsigned int) abs (buf_pos->x_offset - ref_pos->x_offset) > position_fuzz ||
(unsigned int) abs (buf_pos->y_offset - ref_pos->y_offset) > position_fuzz)
{
result |= HB_BUFFER_DIFF_FLAG_POSITION_MISMATCH;
break;
}
buf_pos++;
ref_pos++;
}
}
return result;
}
#ifndef HB_NO_BUFFER_MESSAGE
void
hb_buffer_set_message_func (hb_buffer_t *buffer,
hb_buffer_message_func_t func,
void *user_data, hb_destroy_func_t destroy)
{
if (unlikely (hb_object_is_immutable (buffer)))
{
if (destroy)
destroy (user_data);
return;
}
if (buffer->message_destroy)
buffer->message_destroy (buffer->message_data);
if (func) {
buffer->message_func = func;
buffer->message_data = user_data;
buffer->message_destroy = destroy;
} else {
buffer->message_func = nullptr;
buffer->message_data = nullptr;
buffer->message_destroy = nullptr;
}
}
bool
hb_buffer_t::message_impl (hb_font_t *font, const char *fmt, va_list ap)
{
assert (!have_output || (out_info == info && out_len == idx));
message_depth++;
char buf[100];
vsnprintf (buf, sizeof (buf), fmt, ap);
bool ret = (bool) this->message_func (this, font, buf, this->message_data);
message_depth--;
return ret;
}
#endif