free(l.data);
}
+uint64_t LogicSnapshot::unpack_sample(const uint8_t *ptr) const
+{
+ uint64_t value = 0;
+ switch(_unit_size) {
+ default:
+ value |= ((uint64_t)ptr[7]) << 56;
+ /* FALLTHRU */
+ case 7:
+ value |= ((uint64_t)ptr[6]) << 48;
+ /* FALLTHRU */
+ case 6:
+ value |= ((uint64_t)ptr[5]) << 40;
+ /* FALLTHRU */
+ case 5:
+ value |= ((uint64_t)ptr[4]) << 32;
+ /* FALLTHRU */
+ case 4:
+ value |= ((uint32_t)ptr[3]) << 24;
+ /* FALLTHRU */
+ case 3:
+ value |= ((uint32_t)ptr[2]) << 16;
+ /* FALLTHRU */
+ case 2:
+ value |= ptr[1] << 8;
+ /* FALLTHRU */
+ case 1:
+ value |= ptr[0];
+ /* FALLTHRU */
+ case 0:
+ break;
+ }
+ return value;
+}
+
+void LogicSnapshot::pack_sample(uint8_t *ptr, uint64_t value)
+{
+ switch(_unit_size) {
+ default:
+ ptr[7] = value >> 56;
+ /* FALLTHRU */
+ case 7:
+ ptr[6] = value >> 48;
+ /* FALLTHRU */
+ case 6:
+ ptr[5] = value >> 40;
+ /* FALLTHRU */
+ case 5:
+ ptr[4] = value >> 32;
+ /* FALLTHRU */
+ case 4:
+ ptr[3] = value >> 24;
+ /* FALLTHRU */
+ case 3:
+ ptr[2] = value >> 16;
+ /* FALLTHRU */
+ case 2:
+ ptr[1] = value >> 8;
+ /* FALLTHRU */
+ case 1:
+ ptr[0] = value;
+ /* FALLTHRU */
+ case 0:
+ break;
+ }
+}
+
void LogicSnapshot::append_payload(
const sr_datafeed_logic &logic)
{
diff_counter = MipMapScaleFactor;
while (diff_counter-- > 0)
{
- const uint64_t sample = *(uint64_t*)src_ptr;
+ const uint64_t sample = unpack_sample(src_ptr);
accumulator |= _last_append_sample ^ sample;
_last_append_sample = sample;
src_ptr += _unit_size;
}
- *(uint64_t*)dest_ptr = accumulator;
+ pack_sample(dest_ptr, accumulator);
dest_ptr += _unit_size;
}
diff_counter = MipMapScaleFactor;
while (diff_counter-- > 0)
{
- accumulator |= *(uint64_t*)src_ptr;
+ accumulator |= unpack_sample(src_ptr);
src_ptr += _unit_size;
}
- *(uint64_t*)dest_ptr = accumulator;
+ pack_sample(dest_ptr, accumulator);
}
}
}
assert(_data);
assert(index < _sample_count);
- return *(uint64_t*)((uint8_t*)_data + index * _unit_size);
+ return unpack_sample((uint8_t*)_data + index * _unit_size);
}
void LogicSnapshot::get_subsampled_edges(
{
assert(level >= 0);
assert(_mip_map[level].data);
- return *(uint64_t*)((uint8_t*)_mip_map[level].data +
+ return unpack_sample((uint8_t*)_mip_map[level].data +
_unit_size * offset);
}
int64_t start_sample, int64_t end_sample) const;
private:
+ uint64_t unpack_sample(const uint8_t *ptr) const;
+ void pack_sample(uint8_t *ptr, uint64_t value);
+
void reallocate_mipmap_level(MipMapLevel &m);
void append_payload_to_mipmap();