#ifndef HB_OT_VAR_MVAR_TABLE_HH
#define HB_OT_VAR_MVAR_TABLE_HH
#include "hb-ot-var-common.hh"
namespace OT {
struct VariationValueRecord
{
bool sanitize (hb_sanitize_context_t *c) const
{
TRACE_SANITIZE (this);
return_trace (c->check_struct (this));
}
bool subset (hb_subset_context_t *c,
const hb_map_t& varidx_map) const
{
TRACE_SUBSET (this);
auto *out = c->serializer->embed (*this);
if (unlikely (!out)) return_trace (false);
hb_codepoint_t *new_idx;
return_trace (c->serializer->check_assign (out->varIdx,
(varidx_map.has (varIdx, &new_idx)) ? *new_idx : HB_OT_LAYOUT_NO_VARIATIONS_INDEX,
HB_SERIALIZE_ERROR_INT_OVERFLOW));
}
public:
Tag valueTag;
VarIdx varIdx;
public:
DEFINE_SIZE_STATIC (8);
};
#define HB_OT_TAG_MVAR HB_TAG('M','V','A','R')
struct MVAR
{
static constexpr hb_tag_t tableTag = HB_OT_TAG_MVAR;
bool sanitize (hb_sanitize_context_t *c) const
{
TRACE_SANITIZE (this);
return_trace (version.sanitize (c) &&
hb_barrier () &&
likely (version.major == 1) &&
c->check_struct (this) &&
hb_barrier () &&
valueRecordSize >= VariationValueRecord::static_size &&
varStore.sanitize (c, this) &&
c->check_range (valuesZ.arrayZ,
valueRecordCount,
valueRecordSize));
}
bool subset (hb_subset_context_t *c) const
{
TRACE_SUBSET (this);
#ifdef HB_NO_VAR
return_trace (false);
#endif
if (c->plan->all_axes_pinned)
return_trace (false);
MVAR *out = c->serializer->start_embed (*this);
if (unlikely (!c->serializer->extend_min (out))) return_trace (false);
out->version = version;
out->reserved = reserved;
out->valueRecordSize = valueRecordSize;
out->valueRecordCount = valueRecordCount;
item_variations_t item_vars;
const ItemVariationStore& src_var_store = this+varStore;
if (!item_vars.instantiate (src_var_store, c->plan))
return_trace (false);
if (!out->varStore.serialize_serialize (c->serializer, item_vars.has_long_word (),
c->plan->axis_tags,
item_vars.get_region_list (),
item_vars.get_vardata_encodings ()))
return_trace (false);
unsigned value_rec_count = valueRecordCount;
const VariationValueRecord *record = reinterpret_cast<const VariationValueRecord*> (valuesZ.arrayZ);
for (unsigned i = 0; i < value_rec_count; i++)
{
if (!record->subset (c, item_vars.get_varidx_map ())) return_trace (false);
record++;
}
return_trace (true);
}
float get_var (hb_tag_t tag,
const int *coords, unsigned int coord_count) const
{
const VariationValueRecord *record;
record = (VariationValueRecord *) hb_bsearch (tag,
(const VariationValueRecord *)
(const HBUINT8 *) valuesZ,
valueRecordCount, valueRecordSize,
tag_compare);
if (!record)
return 0.;
return (this+varStore).get_delta (record->varIdx, coords, coord_count);
}
protected:
static int tag_compare (const void *pa, const void *pb)
{
const hb_tag_t *a = (const hb_tag_t *) pa;
const Tag *b = (const Tag *) pb;
return b->cmp (*a);
}
protected:
FixedVersion<>version;
HBUINT16 reserved;
HBUINT16 valueRecordSize;
HBUINT16 valueRecordCount;
Offset16To<ItemVariationStore>
varStore;
UnsizedArrayOf<HBUINT8>
valuesZ;
public:
DEFINE_SIZE_ARRAY (12, valuesZ);
};
}
#define HB_ADD_MVAR_VAR(tag, field) \
c->serializer->check_assign (table->field, \
roundf (table->field + \
MVAR.get_var (tag, \
c->plan->normalized_coords.arrayZ, \
c->plan->normalized_coords.length)), \
HB_SERIALIZE_ERROR_INT_OVERFLOW)
#endif