Blender V5.0
bake_items_serialize.cc
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1/* SPDX-FileCopyrightText: 2023 Blender Authors
2 *
3 * SPDX-License-Identifier: GPL-2.0-or-later */
4
7#include "BKE_bake_items.hh"
9#include "BKE_curves.hh"
10#include "BKE_customdata.hh"
11#include "BKE_grease_pencil.hh"
12#include "BKE_instances.hh"
13#include "BKE_lib_id.hh"
14#include "BKE_mesh.hh"
15#include "BKE_pointcloud.hh"
16#include "BKE_volume.hh"
17
18#include "BLI_endian_defines.h"
19#include "BLI_listbase.h"
21#include "BLI_path_utils.hh"
22#include "BLI_string_utf8.h"
23
24#include "DNA_object_types.h"
25#include "DNA_volume_types.h"
26
27#include "RNA_access.hh"
28#include "RNA_enum_types.hh"
29
30#include <fmt/format.h>
31#include <sstream>
32#include <xxhash.h>
33
34#ifdef WITH_OPENVDB
35# include <openvdb/io/Stream.h>
36# include <openvdb/openvdb.h>
37
38# include "BKE_volume_grid.hh"
39#endif
40
41namespace blender::bke::bake {
42
43using namespace io::serialize;
44using DictionaryValuePtr = std::shared_ptr<DictionaryValue>;
45
46std::shared_ptr<DictionaryValue> BlobSlice::serialize() const
47{
48 auto io_slice = std::make_shared<DictionaryValue>();
49 io_slice->append_str("name", this->name);
50 io_slice->append_int("start", range.start());
51 io_slice->append_int("size", range.size());
52 return io_slice;
53}
54
55std::optional<BlobSlice> BlobSlice::deserialize(const DictionaryValue &io_slice)
56{
57 const std::optional<StringRefNull> name = io_slice.lookup_str("name");
58 const std::optional<int64_t> start = io_slice.lookup_int("start");
59 const std::optional<int64_t> size = io_slice.lookup_int("size");
60 if (!name || !start || !size) {
61 return std::nullopt;
62 }
63
64 return BlobSlice{*name, {*start, *size}};
65}
66
68 const FunctionRef<void(std::ostream &)> fn)
69{
70 std::ostringstream stream{std::ios::binary};
71 fn(stream);
72 std::string data = stream.rdbuf()->str();
73 return this->write(data.data(), data.size());
74}
75
76bool BlobReader::read_as_stream(const BlobSlice &slice, FunctionRef<bool(std::istream &)> fn) const
77{
78 const int64_t size = slice.range.size();
79 std::string buffer;
80 buffer.resize(size);
81 if (!this->read(slice, buffer.data())) {
82 return false;
83 }
84 std::istringstream stream{buffer, std::ios::binary};
85 if (!fn(stream)) {
86 return false;
87 }
88 return true;
89}
90
91DiskBlobReader::DiskBlobReader(std::string blobs_dir) : blobs_dir_(std::move(blobs_dir)) {}
92
93[[nodiscard]] bool DiskBlobReader::read(const BlobSlice &slice, void *r_data) const
94{
95 if (slice.range.is_empty()) {
96 return true;
97 }
98
99 char blob_path[FILE_MAX];
100 BLI_path_join(blob_path, sizeof(blob_path), blobs_dir_.c_str(), slice.name.c_str());
101
102 std::lock_guard lock{mutex_};
103 std::unique_ptr<fstream> &blob_file = open_input_streams_.lookup_or_add_cb_as(blob_path, [&]() {
104 return std::make_unique<fstream>(blob_path, std::ios::in | std::ios::binary);
105 });
106 blob_file->seekg(slice.range.start());
107 blob_file->read(static_cast<char *>(r_data), slice.range.size());
108 if (blob_file->gcount() != slice.range.size()) {
109 return false;
110 }
111 return true;
112}
113
114DiskBlobWriter::DiskBlobWriter(std::string blob_dir, std::string base_name)
115 : blob_dir_(std::move(blob_dir)), base_name_(std::move(base_name))
116{
117 blob_name_ = base_name_ + ".blob";
118}
119
121{
122 if (!blob_stream_.is_open()) {
123 char blob_path[FILE_MAX];
124 BLI_path_join(blob_path, sizeof(blob_path), blob_dir_.c_str(), blob_name_.c_str());
126 blob_stream_.open(blob_path, std::ios::out | std::ios::binary);
127 }
128
129 const int64_t old_offset = current_offset_;
130 blob_stream_.write(static_cast<const char *>(data), size);
131 current_offset_ += size;
133 return {blob_name_, {old_offset, size}};
134}
135
136static std::string make_independent_file_name(const StringRef base_name,
137 const int file_index,
138 const StringRef extension)
139{
140 return fmt::format("{}_file_{}{}", base_name, file_index, extension);
141}
142
144 const FunctionRef<void(std::ostream &)> fn)
145{
146 BLI_assert(file_extension.startswith("."));
147 independent_file_count_++;
148 const std::string file_name = make_independent_file_name(
149 base_name_, independent_file_count_, file_extension);
150
151 char path[FILE_MAX];
152 BLI_path_join(path, sizeof(path), blob_dir_.c_str(), file_name.c_str());
154 std::fstream stream{path, std::ios::out | std::ios::binary};
155 fn(stream);
156 const int64_t written_bytes_num = stream.tellg();
157 total_written_size_ += written_bytes_num;
158 return {file_name, {0, written_bytes_num}};
159}
160
162{
163 blob_by_name_.add(name, blob);
164}
165
166bool MemoryBlobReader::read(const BlobSlice &slice, void *r_data) const
167{
168 if (slice.range.is_empty()) {
169 return true;
170 }
171 const Span<std::byte> blob_data = blob_by_name_.lookup_default(slice.name, {});
172 if (!blob_data.index_range().contains(slice.range)) {
173 return false;
174 }
175 const void *copy_src = blob_data.slice(slice.range).data();
176 memcpy(r_data, copy_src, slice.range.size());
177 return true;
178}
179
180MemoryBlobWriter::MemoryBlobWriter(std::string base_name) : base_name_(std::move(base_name))
181{
182 blob_name_ = base_name_ + ".blob";
183 stream_by_name_.add(blob_name_, {std::make_unique<std::ostringstream>(std::ios::binary)});
184}
185
187{
188 OutputStream &stream = stream_by_name_.lookup(blob_name_);
189 const int64_t old_offset = stream.offset;
190 stream.stream->write(static_cast<const char *>(data), size);
191 stream.offset += size;
193 return {blob_name_, IndexRange::from_begin_size(old_offset, size)};
194}
195
197 const FunctionRef<void(std::ostream &)> fn)
198{
199 BLI_assert(file_extension.startswith("."));
200 independent_file_count_++;
201 const std::string name = make_independent_file_name(
202 base_name_, independent_file_count_, file_extension);
203 OutputStream stream{std::make_unique<std::ostringstream>(std::ios::binary)};
204 fn(*stream.stream);
205 const int64_t size = stream.stream->tellp();
206 stream_by_name_.add_new(name, std::move(stream));
208 return {name, IndexRange(size)};
209}
210
212{
213 for (const ImplicitSharingInfo *sharing_info : stored_by_runtime_.keys()) {
214 sharing_info->remove_weak_user_and_delete_if_last();
215 }
216}
217
219{
220 for (const ImplicitSharingInfoAndData &value : runtime_by_stored_.values()) {
221 if (value.sharing_info) {
222 value.sharing_info->remove_user_and_delete_if_last();
223 }
224 }
225}
226
228 const ImplicitSharingInfo *sharing_info, FunctionRef<DictionaryValuePtr()> write_fn)
229{
230 if (sharing_info == nullptr) {
231 return write_fn();
232 }
233 return stored_by_runtime_.add_or_modify(
234 sharing_info,
235 /* Create new value. */
236 [&](StoredByRuntimeValue *value) {
237 new (value) StoredByRuntimeValue();
238 value->io_data = write_fn();
239 value->sharing_info_version = sharing_info->version();
240 sharing_info->add_weak_user();
241 return value->io_data;
242 },
243 /* Potentially modify existing value. */
244 [&](StoredByRuntimeValue *value) {
245 const int64_t new_version = sharing_info->version();
246 BLI_assert(value->sharing_info_version <= new_version);
247 if (value->sharing_info_version < new_version) {
248 value->io_data = write_fn();
249 value->sharing_info_version = new_version;
250 }
251 return value->io_data;
252 });
253}
254
255std::shared_ptr<io::serialize::DictionaryValue> BlobWriteSharing::write_deduplicated(
256 BlobWriter &writer, const void *data, const int64_t size_in_bytes)
257{
258 const uint64_t content_hash = XXH3_64bits(data, size_in_bytes);
259 const BlobSlice slice = slice_by_content_hash_.lookup_or_add_cb(
260 content_hash, [&]() { return writer.write(data, size_in_bytes); });
261 return slice.serialize();
262}
263
264std::optional<ImplicitSharingInfoAndData> BlobReadSharing::read_shared(
265 const DictionaryValue &io_data,
266 FunctionRef<std::optional<ImplicitSharingInfoAndData>()> read_fn) const
267{
268 std::lock_guard lock{mutex_};
269
271 std::stringstream ss;
272 formatter.serialize(ss, io_data);
273 const std::string key = ss.str();
274
275 if (const ImplicitSharingInfoAndData *shared_data = runtime_by_stored_.lookup_ptr(key)) {
276 shared_data->sharing_info->add_user();
277 return *shared_data;
278 }
279 std::optional<ImplicitSharingInfoAndData> data = read_fn();
280 if (!data) {
281 return std::nullopt;
282 }
283 if (data->sharing_info != nullptr) {
284 data->sharing_info->add_user();
285 runtime_by_stored_.add_new(key, *data);
286 }
287 return data;
288}
289
290static StringRefNull get_endian_io_name(const int endian)
291{
292 BLI_assert(endian == L_ENDIAN);
293 UNUSED_VARS_NDEBUG(endian);
294 return "little";
295}
296
298{
299 const char *io_name = "unknown";
301 return io_name;
302}
303
305{
306 const char *io_name = "unknown";
308 return io_name;
309}
310
311static std::optional<AttrDomain> get_domain_from_io_name(const StringRefNull io_name)
312{
313 int domain;
315 return std::nullopt;
316 }
317 return AttrDomain(domain);
318}
319
320static std::optional<eCustomDataType> get_data_type_from_io_name(const StringRefNull io_name)
321{
322 int domain;
324 return std::nullopt;
325 }
326 return eCustomDataType(domain);
327}
328
332static std::shared_ptr<DictionaryValue> write_blob_raw_data_with_endian(
333 BlobWriter &blob_writer,
334 BlobWriteSharing &blob_sharing,
335 const void *data,
336 const int64_t size_in_bytes)
337{
338 auto io_data = blob_sharing.write_deduplicated(blob_writer, data, size_in_bytes);
339 BLI_STATIC_ASSERT(ENDIAN_ORDER == L_ENDIAN, "Blender only builds on little endian systems")
340 return io_data;
341}
342
348[[nodiscard]] static bool read_blob_raw_data_with_endian(const BlobReader &blob_reader,
349 const DictionaryValue &io_data,
350 const int64_t element_size,
351 const int64_t elements_num,
352 void *r_data)
353{
354 const std::optional<BlobSlice> slice = BlobSlice::deserialize(io_data);
355 if (!slice) {
356 return false;
357 }
358 if (slice->range.size() != element_size * elements_num) {
359 return false;
360 }
361 if (!blob_reader.read(*slice, r_data)) {
362 return false;
363 }
364 const StringRefNull stored_endian = io_data.lookup_str("endian").value_or("little");
365 const StringRefNull current_endian = get_endian_io_name(ENDIAN_ORDER);
366 const bool need_endian_switch = stored_endian != current_endian;
367 if (need_endian_switch) {
368 /* NOTE: this is endianness-sensitive. */
369 /* Blender only builds on little endian systems, and reads little endian data here. */
370 return false;
371 }
372 return true;
373}
374
376static std::shared_ptr<DictionaryValue> write_blob_raw_bytes(BlobWriter &blob_writer,
377 BlobWriteSharing &blob_sharing,
378 const void *data,
379 const int64_t size_in_bytes)
380{
381 return blob_sharing.write_deduplicated(blob_writer, data, size_in_bytes);
382}
383
385[[nodiscard]] static bool read_blob_raw_bytes(const BlobReader &blob_reader,
386 const DictionaryValue &io_data,
387 const int64_t bytes_num,
388 void *r_data)
389{
390 const std::optional<BlobSlice> slice = BlobSlice::deserialize(io_data);
391 if (!slice) {
392 return false;
393 }
394 if (slice->range.size() != bytes_num) {
395 return false;
396 }
397 return blob_reader.read(*slice, r_data);
398}
399
400static std::shared_ptr<DictionaryValue> write_blob_simple_gspan(BlobWriter &blob_writer,
401 BlobWriteSharing &blob_sharing,
402 const GSpan data)
403{
404 const CPPType &type = data.type();
406 if (type.size == 1 || type.is<ColorGeometry4b>()) {
407 return write_blob_raw_bytes(blob_writer, blob_sharing, data.data(), data.size_in_bytes());
408 }
410 blob_writer, blob_sharing, data.data(), data.size_in_bytes());
411}
412
413[[nodiscard]] static bool read_blob_simple_gspan(const BlobReader &blob_reader,
414 const DictionaryValue &io_data,
415 GMutableSpan r_data)
416{
417 const CPPType &type = r_data.type();
419 if (type.size == 1 || type.is<ColorGeometry4b>()) {
420 return read_blob_raw_bytes(blob_reader, io_data, r_data.size_in_bytes(), r_data.data());
421 }
422 if (type.is_any<int16_t, uint16_t, int32_t, uint32_t, int64_t, uint64_t, float>()) {
424 blob_reader, io_data, type.size, r_data.size(), r_data.data());
425 }
426 if (type.is_any<float2, int2>()) {
428 blob_reader, io_data, sizeof(int32_t), r_data.size() * 2, r_data.data());
429 }
430 if (type.is_any<short2>()) {
432 blob_reader, io_data, sizeof(short), r_data.size() * 2, r_data.data());
433 }
434 if (type.is<float3>()) {
436 blob_reader, io_data, sizeof(float), r_data.size() * 3, r_data.data());
437 }
438 if (type.is<float4x4>()) {
440 blob_reader, io_data, sizeof(float), r_data.size() * 16, r_data.data());
441 }
442 if (type.is<ColorGeometry4f>()) {
444 blob_reader, io_data, sizeof(float), r_data.size() * 4, r_data.data());
445 }
446 if (type.is<math::Quaternion>()) {
448 blob_reader, io_data, sizeof(float), r_data.size() * 4, r_data.data());
449 }
450 return false;
451}
452
453static std::shared_ptr<DictionaryValue> write_blob_shared_simple_gspan(
454 BlobWriter &blob_writer,
455 BlobWriteSharing &blob_sharing,
456 const GSpan data,
457 const ImplicitSharingInfo *sharing_info)
458{
459 return blob_sharing.write_implicitly_shared(
460 sharing_info, [&]() { return write_blob_simple_gspan(blob_writer, blob_sharing, data); });
461}
462
463[[nodiscard]] static const void *read_blob_shared_simple_gspan(
464 const DictionaryValue &io_data,
465 const BlobReader &blob_reader,
466 const BlobReadSharing &blob_sharing,
467 const CPPType &cpp_type,
468 const int size,
469 const ImplicitSharingInfo **r_sharing_info)
470{
471 const char *func = __func__;
472 const std::optional<ImplicitSharingInfoAndData> sharing_info_and_data = blob_sharing.read_shared(
473 io_data, [&]() -> std::optional<ImplicitSharingInfoAndData> {
474 void *data_mem = MEM_mallocN_aligned(size * cpp_type.size, cpp_type.alignment, func);
475 if (!read_blob_simple_gspan(blob_reader, io_data, {cpp_type, data_mem, size})) {
476 MEM_freeN(data_mem);
477 return std::nullopt;
478 }
480 });
481 if (!sharing_info_and_data) {
482 *r_sharing_info = nullptr;
483 return nullptr;
484 }
485 *r_sharing_info = sharing_info_and_data->sharing_info;
486 return sharing_info_and_data->data;
487}
488
489template<typename T>
490[[nodiscard]] static bool read_blob_shared_simple_span(const DictionaryValue &io_data,
491 const BlobReader &blob_reader,
492 const BlobReadSharing &blob_sharing,
493 const int size,
494 T **r_data,
495 const ImplicitSharingInfo **r_sharing_info)
496{
497 *r_data = const_cast<T *>(static_cast<const T *>(read_blob_shared_simple_gspan(
498 io_data, blob_reader, blob_sharing, CPPType::get<T>(), size, r_sharing_info)));
499 return *r_data != nullptr;
500}
501
502[[nodiscard]] static bool load_materials(const io::serialize::ArrayValue &io_materials,
503 std::unique_ptr<BakeMaterialsList> &materials)
504{
505 if (io_materials.elements().is_empty()) {
506 return true;
507 }
508 materials = std::make_unique<BakeMaterialsList>();
509 for (const auto &io_material_value : io_materials.elements()) {
510 if (io_material_value->type() == io::serialize::eValueType::Null) {
511 materials->append(std::nullopt);
512 continue;
513 }
514 const auto *io_material = io_material_value->as_dictionary_value();
515 if (!io_material) {
516 return false;
517 }
518 std::optional<std::string> id_name = io_material->lookup_str("name");
519 if (!id_name) {
520 return false;
521 }
522 std::string lib_name = io_material->lookup_str("lib_name").value_or("");
523 materials->append(BakeDataBlockID(ID_MA, std::move(*id_name), std::move(lib_name)));
524 }
525 return true;
526}
527
528[[nodiscard]] static bool load_attributes(const io::serialize::ArrayValue &io_attributes,
529 MutableAttributeAccessor &attributes,
530 const BlobReader &blob_reader,
531 const BlobReadSharing &blob_sharing)
532{
533 for (const auto &io_attribute_value : io_attributes.elements()) {
534 const auto *io_attribute = io_attribute_value->as_dictionary_value();
535 if (!io_attribute) {
536 return false;
537 }
538 const std::optional<StringRefNull> name = io_attribute->lookup_str("name");
539 const std::optional<StringRefNull> domain_str = io_attribute->lookup_str("domain");
540 const std::optional<StringRefNull> type_str = io_attribute->lookup_str("type");
541 const auto *io_data = io_attribute->lookup_dict("data");
542 if (!name || !domain_str || !type_str || !io_data) {
543 return false;
544 }
545
546 const std::optional<AttrDomain> domain = get_domain_from_io_name(*domain_str);
547 const std::optional<eCustomDataType> data_type = get_data_type_from_io_name(*type_str);
548 if (!domain || !data_type) {
549 return false;
550 }
551 const CPPType *cpp_type = custom_data_type_to_cpp_type(*data_type);
552 if (!cpp_type) {
553 return false;
554 }
555 const int domain_size = attributes.domain_size(*domain);
556 const ImplicitSharingInfo *attribute_sharing_info;
557 const void *attribute_data = read_blob_shared_simple_gspan(
558 *io_data, blob_reader, blob_sharing, *cpp_type, domain_size, &attribute_sharing_info);
559 if (!attribute_data) {
560 return false;
561 }
562 BLI_SCOPED_DEFER([&]() { attribute_sharing_info->remove_user_and_delete_if_last(); });
563
564 if (attributes.contains(*name)) {
565 /* If the attribute exists already, copy the values over to the existing array. */
567 *name, *domain, *custom_data_type_to_attr_type(*data_type));
568 if (!attribute) {
569 return false;
570 }
571 cpp_type->copy_assign_n(attribute_data, attribute.span.data(), domain_size);
572 attribute.finish();
573 }
574 else {
575 /* Add a new attribute that shares the data. */
576 if (!attributes.add(*name,
577 *domain,
579 AttributeInitShared(attribute_data, *attribute_sharing_info)))
580 {
581 return false;
582 }
583 }
584 }
585 return true;
586}
587
589 const BlobReader &blob_reader,
590 const BlobReadSharing &blob_sharing)
591{
592 const DictionaryValue *io_pointcloud = io_geometry.lookup_dict("pointcloud");
593 if (!io_pointcloud) {
594 return nullptr;
595 }
596 const io::serialize::ArrayValue *io_attributes = io_pointcloud->lookup_array("attributes");
597 if (!io_attributes) {
598 return nullptr;
599 }
600 const int points_num = io_pointcloud->lookup_int("num_points").value_or(0);
601 PointCloud *pointcloud = bke::pointcloud_new_no_attributes(points_num);
602
603 auto cancel = [&]() {
604 BKE_id_free(nullptr, pointcloud);
605 return nullptr;
606 };
607
608 MutableAttributeAccessor attributes = pointcloud->attributes_for_write();
609 if (!load_attributes(*io_attributes, attributes, blob_reader, blob_sharing)) {
610 return cancel();
611 }
612
613 if (const io::serialize::ArrayValue *io_materials = io_pointcloud->lookup_array("materials")) {
614 if (!load_materials(*io_materials, pointcloud->runtime->bake_materials)) {
615 return cancel();
616 }
617 }
618 return pointcloud;
619}
620
621static std::optional<CurvesGeometry> try_load_curves_geometry(const DictionaryValue &io_curves,
622 const BlobReader &blob_reader,
623 const BlobReadSharing &blob_sharing)
624{
625 const io::serialize::ArrayValue *io_attributes = io_curves.lookup_array("attributes");
626 if (!io_attributes) {
627 return std::nullopt;
628 }
629
631 curves.attribute_storage.wrap().remove("position");
632 curves.point_num = io_curves.lookup_int("num_points").value_or(0);
633 curves.curve_num = io_curves.lookup_int("num_curves").value_or(0);
634
635 if (curves.curves_num() > 0) {
636 const auto *io_curve_offsets = io_curves.lookup_dict("curve_offsets");
637 if (!io_curve_offsets) {
638 return std::nullopt;
639 }
640 if (!read_blob_shared_simple_span(*io_curve_offsets,
641 blob_reader,
642 blob_sharing,
643 curves.curves_num() + 1,
644 &curves.curve_offsets,
645 &curves.runtime->curve_offsets_sharing_info))
646 {
647 return std::nullopt;
648 }
649 }
650
651 MutableAttributeAccessor attributes = curves.attributes_for_write();
652 if (!load_attributes(*io_attributes, attributes, blob_reader, blob_sharing)) {
653 return std::nullopt;
654 }
655
656 if (const io::serialize::ArrayValue *io_materials = io_curves.lookup_array("materials")) {
657 if (!load_materials(*io_materials, curves.runtime->bake_materials)) {
658 return std::nullopt;
659 }
660 }
661
662 curves.update_curve_types();
663 return curves;
664}
665
666static Curves *try_load_curves(const DictionaryValue &io_geometry,
667 const BlobReader &blob_reader,
668 const BlobReadSharing &blob_sharing)
669{
670 const DictionaryValue *io_curves = io_geometry.lookup_dict("curves");
671 if (!io_curves) {
672 return nullptr;
673 }
674
675 const io::serialize::ArrayValue *io_attributes = io_curves->lookup_array("attributes");
676 if (!io_attributes) {
677 return nullptr;
678 }
679
680 std::optional<CurvesGeometry> curves_opt = try_load_curves_geometry(
681 *io_curves, blob_reader, blob_sharing);
682 if (!curves_opt) {
683 return nullptr;
684 }
685
686 Curves *curves_id = curves_new_nomain(std::move(*curves_opt));
687 CurvesGeometry &curves = curves_id->geometry.wrap();
688
689 auto cancel = [&]() {
690 BKE_id_free(nullptr, curves_id);
691 return nullptr;
692 };
693
694 if (const io::serialize::ArrayValue *io_materials = io_curves->lookup_array("materials")) {
695 if (!load_materials(*io_materials, curves.runtime->bake_materials)) {
696 return cancel();
697 }
698 }
699
700 return curves_id;
701}
702
704 const BlobReader &blob_reader,
705 const BlobReadSharing &blob_sharing)
706{
707 const DictionaryValue *io_grease_pencil = io_geometry.lookup_dict("grease_pencil");
708 if (!io_grease_pencil) {
709 return nullptr;
710 }
711
712 const io::serialize::ArrayValue *io_layers = io_grease_pencil->lookup_array("layers");
713 if (!io_layers) {
714 return nullptr;
715 }
716
717 const io::serialize::ArrayValue *io_layer_attributes = io_grease_pencil->lookup_array(
718 "layer_attributes");
719 if (!io_layer_attributes) {
720 return nullptr;
721 }
722
724 auto cancel = [&]() {
725 BKE_id_free(nullptr, grease_pencil);
726 return nullptr;
727 };
728
729 const int layers_num = io_layers->elements().size();
730 grease_pencil->add_layers_with_empty_drawings_for_eval(layers_num);
731
732 for (const int layer_i : io_layers->elements().index_range()) {
733 const auto &io_layer_value = io_layers->elements()[layer_i];
734 const io::serialize::DictionaryValue *io_layer = io_layer_value->as_dictionary_value();
735 if (!io_layer) {
736 return cancel();
737 }
738 const io::serialize::DictionaryValue *io_strokes = io_layer->lookup_dict("strokes");
739 if (!io_strokes) {
740 return cancel();
741 }
742 const std::optional<std::string> layer_name = io_layer->lookup_str("name");
743 if (!layer_name) {
744 return cancel();
745 }
746 greasepencil::Layer &layer = grease_pencil->layer(layer_i);
747 layer.set_name(*layer_name);
748 std::optional<CurvesGeometry> curves_opt = try_load_curves_geometry(
749 *io_strokes, blob_reader, blob_sharing);
750 if (!curves_opt) {
751 return cancel();
752 }
753 greasepencil::Drawing &drawing = *grease_pencil->get_eval_drawing(layer);
754 drawing.strokes_for_write() = std::move(*curves_opt);
755 }
756
757 MutableAttributeAccessor attributes = grease_pencil->attributes_for_write();
758 if (!load_attributes(*io_layer_attributes, attributes, blob_reader, blob_sharing)) {
759 return cancel();
760 }
761
762 const DictionaryValue *io_layer_opacities = io_grease_pencil->lookup_dict("opacities");
763 Array<float> layer_opacities(layers_num);
764 if (!io_layer_opacities ||
765 !read_blob_simple_gspan(blob_reader, *io_layer_opacities, layer_opacities.as_mutable_span()))
766 {
767 return cancel();
768 }
769
770 const DictionaryValue *io_layer_blend_modes = io_grease_pencil->lookup_dict("blend_modes");
771 Array<int8_t> layer_blend_modes(layers_num);
772 if (!io_layer_opacities || !read_blob_simple_gspan(blob_reader,
773 *io_layer_blend_modes,
774 layer_blend_modes.as_mutable_span()))
775 {
776 return cancel();
777 }
778
779 const DictionaryValue *io_layer_transforms = io_grease_pencil->lookup_dict("transforms");
780 Array<float4x4> layer_transforms(layers_num);
781 if (!io_layer_transforms || !read_blob_simple_gspan(blob_reader,
782 *io_layer_transforms,
783 layer_transforms.as_mutable_span()))
784 {
785 return cancel();
786 }
787
788 for (const int layer_i : IndexRange(layers_num)) {
789 greasepencil::Layer &layer = grease_pencil->layer(layer_i);
790 layer.opacity = layer_opacities[layer_i];
791 layer.blend_mode = layer_blend_modes[layer_i];
792 layer.set_local_transform(layer_transforms[layer_i]);
793 }
794
795 if (const io::serialize::ArrayValue *io_materials = io_grease_pencil->lookup_array("materials"))
796 {
797 if (!load_materials(*io_materials, grease_pencil->runtime->bake_materials)) {
798 return cancel();
799 }
800 }
801
802 return grease_pencil;
803}
804
805static Mesh *try_load_mesh(const DictionaryValue &io_geometry,
806 const BlobReader &blob_reader,
807 const BlobReadSharing &blob_sharing)
808{
809 const DictionaryValue *io_mesh = io_geometry.lookup_dict("mesh");
810 if (!io_mesh) {
811 return nullptr;
812 }
813
814 const io::serialize::ArrayValue *io_attributes = io_mesh->lookup_array("attributes");
815 if (!io_attributes) {
816 return nullptr;
817 }
818
819 Mesh *mesh = BKE_mesh_new_nomain(0, 0, 0, 0);
820 CustomData_free_layer_named(&mesh->vert_data, "position");
821 CustomData_free_layer_named(&mesh->edge_data, ".edge_verts");
822 CustomData_free_layer_named(&mesh->corner_data, ".corner_vert");
823 CustomData_free_layer_named(&mesh->corner_data, ".corner_edge");
824 mesh->verts_num = io_mesh->lookup_int("num_vertices").value_or(0);
825 mesh->edges_num = io_mesh->lookup_int("num_edges").value_or(0);
826 mesh->faces_num = io_mesh->lookup_int("num_polygons").value_or(0);
827 mesh->corners_num = io_mesh->lookup_int("num_corners").value_or(0);
828
829 auto cancel = [&]() {
830 BKE_id_free(nullptr, mesh);
831 return nullptr;
832 };
833
834 if (mesh->faces_num > 0) {
835 const auto *io_poly_offsets = io_mesh->lookup_dict("poly_offsets");
836 if (!io_poly_offsets) {
837 return cancel();
838 }
839 if (!read_blob_shared_simple_span(*io_poly_offsets,
840 blob_reader,
841 blob_sharing,
842 mesh->faces_num + 1,
843 &mesh->face_offset_indices,
844 &mesh->runtime->face_offsets_sharing_info))
845 {
846 return cancel();
847 }
848 }
849
850 /* Create the vertex group name list, then later on when processing generic attributes, these
851 * names will be stored as vertex groups. */
852 if (const auto *io_attributes = io_mesh->lookup_array("vertex_group_names")) {
853 for (const std::shared_ptr<Value> &value : io_attributes->elements()) {
854 if (value->type() != io::serialize::eValueType::String) {
855 return cancel();
856 }
857 bDeformGroup *defgroup = MEM_callocN<bDeformGroup>(__func__);
858 STRNCPY_UTF8(defgroup->name, value->as_string_value()->value().c_str());
859 BLI_addtail(&mesh->vertex_group_names, defgroup);
860 }
861 }
862
863 MutableAttributeAccessor attributes = mesh->attributes_for_write();
864 if (!load_attributes(*io_attributes, attributes, blob_reader, blob_sharing)) {
865 return cancel();
866 }
867
868 if (const io::serialize::ArrayValue *io_materials = io_mesh->lookup_array("materials")) {
869 if (!load_materials(*io_materials, mesh->runtime->bake_materials)) {
870 return cancel();
871 }
872 }
873
874 return mesh;
875}
876
877static GeometrySet load_geometry(const DictionaryValue &io_geometry,
878 const BlobReader &blob_reader,
879 const BlobReadSharing &blob_sharing);
880
881static std::unique_ptr<Instances> try_load_instances(const DictionaryValue &io_geometry,
882 const BlobReader &blob_reader,
883 const BlobReadSharing &blob_sharing)
884{
885 const DictionaryValue *io_instances = io_geometry.lookup_dict("instances");
886 if (!io_instances) {
887 return nullptr;
888 }
889 const int num_instances = io_instances->lookup_int("num_instances").value_or(0);
890 if (num_instances == 0) {
891 return nullptr;
892 }
893 const io::serialize::ArrayValue *io_attributes = io_instances->lookup_array("attributes");
894 if (!io_attributes) {
895 return nullptr;
896 }
897 const io::serialize::ArrayValue *io_references = io_instances->lookup_array("references");
898 if (!io_references) {
899 return nullptr;
900 }
901
902 std::unique_ptr<Instances> instances = std::make_unique<Instances>();
903 instances->resize(num_instances);
904
905 for (const auto &io_reference_value : io_references->elements()) {
906 const DictionaryValue *io_reference = io_reference_value->as_dictionary_value();
907 GeometrySet reference_geometry;
908 if (io_reference) {
909 reference_geometry = load_geometry(*io_reference, blob_reader, blob_sharing);
910 }
911 instances->add_new_reference(std::move(reference_geometry));
912 }
913
914 MutableAttributeAccessor attributes = instances->attributes_for_write();
915 if (!load_attributes(*io_attributes, attributes, blob_reader, blob_sharing)) {
916 return {};
917 }
918
919 if (!attributes.contains(".reference_index")) {
920 /* Try reading the reference index attribute from the old bake format from before it was an
921 * attribute. */
922 const auto *io_handles = io_instances->lookup_dict("handles");
923 if (!io_handles) {
924 return {};
925 }
927 blob_reader, *io_handles, instances->reference_handles_for_write()))
928 {
929 return {};
930 }
931 }
932
933 if (!attributes.contains("instance_transform")) {
934 /* Try reading the transform attribute from the old bake format from before it was an
935 * attribute. */
936 const auto *io_handles = io_instances->lookup_dict("transforms");
937 if (!io_handles) {
938 return {};
939 }
940 if (!read_blob_simple_gspan(blob_reader, *io_handles, instances->transforms_for_write())) {
941 return {};
942 }
943 }
944
945 return instances;
946}
947
948#ifdef WITH_OPENVDB
949static Volume *try_load_volume(const DictionaryValue &io_geometry, const BlobReader &blob_reader)
950{
951 const DictionaryValue *io_volume = io_geometry.lookup_dict("volume");
952 if (!io_volume) {
953 return nullptr;
954 }
955 const auto *io_vdb = io_volume->lookup_dict("vdb");
956 if (!io_vdb) {
957 return nullptr;
958 }
959 openvdb::GridPtrVecPtr vdb_grids;
960 if (std::optional<BlobSlice> vdb_slice = BlobSlice::deserialize(*io_vdb)) {
961 if (!blob_reader.read_as_stream(*vdb_slice, [&](std::istream &stream) {
962 try {
963 openvdb::io::Stream vdb_stream{stream};
964 vdb_grids = vdb_stream.getGrids();
965 return true;
966 }
967 catch (...) {
968 return false;
969 }
970 }))
971 {
972 return nullptr;
973 }
974 }
975 Volume *volume = BKE_id_new_nomain<Volume>(nullptr);
976 auto cancel = [&]() {
977 BKE_id_free(nullptr, volume);
978 return nullptr;
979 };
980
981 for (openvdb::GridBase::Ptr &vdb_grid : *vdb_grids) {
982 if (vdb_grid) {
983 bke::GVolumeGrid grid{std::move(vdb_grid)};
984 BKE_volume_grid_add(volume, *grid.release());
985 }
986 }
987 if (const io::serialize::ArrayValue *io_materials = io_volume->lookup_array("materials")) {
988 if (!load_materials(*io_materials, volume->runtime->bake_materials)) {
989 return cancel();
990 }
991 }
992 return volume;
993}
994#endif
995
996static GeometrySet load_geometry(const DictionaryValue &io_geometry,
997 const BlobReader &blob_reader,
998 const BlobReadSharing &blob_sharing)
999{
1001 geometry.replace_mesh(try_load_mesh(io_geometry, blob_reader, blob_sharing));
1002 geometry.replace_pointcloud(try_load_pointcloud(io_geometry, blob_reader, blob_sharing));
1003 geometry.replace_curves(try_load_curves(io_geometry, blob_reader, blob_sharing));
1004 geometry.replace_grease_pencil(try_load_grease_pencil(io_geometry, blob_reader, blob_sharing));
1005 geometry.replace_instances(try_load_instances(io_geometry, blob_reader, blob_sharing).release());
1006#ifdef WITH_OPENVDB
1007 geometry.replace_volume(try_load_volume(io_geometry, blob_reader));
1008#endif
1009 return geometry;
1010}
1011
1012static std::shared_ptr<io::serialize::ArrayValue> serialize_materials(
1013 const std::unique_ptr<BakeMaterialsList> &materials)
1014{
1015 auto io_materials = std::make_shared<io::serialize::ArrayValue>();
1016 if (!materials) {
1017 return io_materials;
1018 }
1019 for (const std::optional<BakeDataBlockID> &material : *materials) {
1020 if (material) {
1021 auto io_material = io_materials->append_dict();
1022 io_material->append_str("name", material->id_name);
1023 if (!material->lib_name.empty()) {
1024 io_material->append_str("lib_name", material->lib_name);
1025 }
1026 }
1027 else {
1028 io_materials->append_null();
1029 }
1030 }
1031 return io_materials;
1032}
1033
1034static std::shared_ptr<io::serialize::ArrayValue> serialize_attributes(
1035 const AttributeAccessor &attributes,
1036 BlobWriter &blob_writer,
1037 BlobWriteSharing &blob_sharing,
1038 const Set<std::string> &attributes_to_ignore)
1039{
1040 auto io_attributes = std::make_shared<io::serialize::ArrayValue>();
1041 attributes.foreach_attribute([&](const AttributeIter &iter) {
1043 if (attributes_to_ignore.contains_as(iter.name)) {
1044 return;
1045 }
1046
1047 auto io_attribute = io_attributes->append_dict();
1048
1049 io_attribute->append_str("name", iter.name);
1050
1051 const StringRefNull domain_name = get_domain_io_name(iter.domain);
1052 io_attribute->append_str("domain", domain_name);
1053
1054 const StringRefNull type_name = get_data_type_io_name(
1056 io_attribute->append_str("type", type_name);
1057
1058 const GAttributeReader attribute = iter.get();
1059 const GVArraySpan attribute_span(attribute.varray);
1060 io_attribute->append("data",
1062 blob_writer,
1063 blob_sharing,
1064 attribute_span,
1065 attribute.varray.is_span() ? attribute.sharing_info : nullptr));
1066 });
1067 return io_attributes;
1068}
1069
1071 const CurvesGeometry &curves,
1072 BlobWriter &blob_writer,
1073 BlobWriteSharing &blob_sharing)
1074{
1075 io_curves.append_int("num_points", curves.point_num);
1076 io_curves.append_int("num_curves", curves.curve_num);
1077
1078 if (curves.curve_num > 0) {
1079 io_curves.append("curve_offsets",
1081 blob_sharing,
1082 curves.offsets(),
1083 curves.runtime->curve_offsets_sharing_info));
1084 }
1085
1086 auto io_attributes = serialize_attributes(curves.attributes(), blob_writer, blob_sharing, {});
1087 io_curves.append("attributes", io_attributes);
1088}
1089
1090static std::shared_ptr<DictionaryValue> serialize_geometry_set(const GeometrySet &geometry,
1091 BlobWriter &blob_writer,
1092 BlobWriteSharing &blob_sharing)
1093{
1094 auto io_geometry = std::make_shared<DictionaryValue>();
1095 if (geometry.has_mesh()) {
1096 const Mesh &mesh = *geometry.get_mesh();
1097 auto io_mesh = io_geometry->append_dict("mesh");
1098
1099 io_mesh->append_int("num_vertices", mesh.verts_num);
1100 io_mesh->append_int("num_edges", mesh.edges_num);
1101 io_mesh->append_int("num_polygons", mesh.faces_num);
1102 io_mesh->append_int("num_corners", mesh.corners_num);
1103
1104 if (mesh.faces_num > 0) {
1105 io_mesh->append("poly_offsets",
1107 blob_sharing,
1108 mesh.face_offsets(),
1109 mesh.runtime->face_offsets_sharing_info));
1110 }
1111
1112 auto io_materials = serialize_materials(mesh.runtime->bake_materials);
1113 io_mesh->append("materials", io_materials);
1114
1115 if (!BLI_listbase_is_empty(&mesh.vertex_group_names)) {
1116 auto io_vertex_group_names = io_mesh->append_array("vertex_group_names");
1117 LISTBASE_FOREACH (bDeformGroup *, defgroup, &mesh.vertex_group_names) {
1118 io_vertex_group_names->append_str(defgroup->name);
1119 }
1120 }
1121
1122 auto io_attributes = serialize_attributes(mesh.attributes(), blob_writer, blob_sharing, {});
1123 io_mesh->append("attributes", io_attributes);
1124 }
1125 if (geometry.has_pointcloud()) {
1126 const PointCloud &pointcloud = *geometry.get_pointcloud();
1127 auto io_pointcloud = io_geometry->append_dict("pointcloud");
1128
1129 io_pointcloud->append_int("num_points", pointcloud.totpoint);
1130
1131 auto io_materials = serialize_materials(pointcloud.runtime->bake_materials);
1132 io_pointcloud->append("materials", io_materials);
1133
1134 auto io_attributes = serialize_attributes(
1135 pointcloud.attributes(), blob_writer, blob_sharing, {});
1136 io_pointcloud->append("attributes", io_attributes);
1137 }
1138 if (geometry.has_curves()) {
1139 const Curves &curves_id = *geometry.get_curves();
1140 const CurvesGeometry &curves = curves_id.geometry.wrap();
1141
1142 auto io_curves = io_geometry->append_dict("curves");
1143
1144 serialize_curves_geometry(*io_curves, curves, blob_writer, blob_sharing);
1145
1146 auto io_materials = serialize_materials(curves.runtime->bake_materials);
1147 io_curves->append("materials", io_materials);
1148 }
1149 if (geometry.has_grease_pencil()) {
1150 const GreasePencil &grease_pencil = *geometry.get_grease_pencil();
1151 auto io_grease_pencil = io_geometry->append_dict("grease_pencil");
1152 auto io_layers = io_grease_pencil->append_array("layers");
1153
1154 Vector<float> layer_opacities;
1155 Vector<int8_t> layer_blend_modes;
1156 Vector<float4x4> layer_transforms;
1157 for (const greasepencil::Layer *layer : grease_pencil.layers()) {
1158 auto io_layer = io_layers->append_dict();
1159 io_layer->append_str("name", layer->name());
1160 auto io_strokes = io_layer->append_dict("strokes");
1161 const greasepencil::Drawing *drawing = grease_pencil.get_eval_drawing(*layer);
1162 if (drawing) {
1163 serialize_curves_geometry(*io_strokes, drawing->strokes(), blob_writer, blob_sharing);
1164 }
1165 else {
1166 serialize_curves_geometry(*io_strokes, CurvesGeometry(), blob_writer, blob_sharing);
1167 }
1168
1169 layer_opacities.append(layer->opacity);
1170 layer_blend_modes.append(layer->blend_mode);
1171 layer_transforms.append(layer->local_transform());
1172 }
1173
1174 io_grease_pencil->append(
1175 "opacities",
1176 write_blob_simple_gspan(blob_writer, blob_sharing, layer_opacities.as_span()));
1177 io_grease_pencil->append(
1178 "blend_modes",
1179 write_blob_simple_gspan(blob_writer, blob_sharing, layer_blend_modes.as_span()));
1180 io_grease_pencil->append(
1181 "transforms",
1182 write_blob_simple_gspan(blob_writer, blob_sharing, layer_transforms.as_span()));
1183
1184 auto io_layer_attributes = serialize_attributes(
1185 grease_pencil.attributes(), blob_writer, blob_sharing, {});
1186 io_grease_pencil->append("layer_attributes", io_layer_attributes);
1187
1188 auto io_materials = serialize_materials(grease_pencil.runtime->bake_materials);
1189 io_grease_pencil->append("materials", io_materials);
1190 }
1191#ifdef WITH_OPENVDB
1192 if (geometry.has_volume()) {
1193 const Volume &volume = *geometry.get_volume();
1194 const int grids_num = BKE_volume_num_grids(&volume);
1195
1196 auto io_volume = io_geometry->append_dict("volume");
1197 auto io_vdb = blob_writer
1198 .write_as_stream(".vdb",
1199 [&](std::ostream &stream) {
1200 openvdb::GridCPtrVec vdb_grids;
1202 for (const int i : IndexRange(grids_num)) {
1203 const bke::VolumeGridData *grid = BKE_volume_grid_get(
1204 &volume, i);
1205 tree_tokens.append_as();
1206 vdb_grids.push_back(grid->grid_ptr(tree_tokens.last()));
1207 }
1208
1209 openvdb::io::Stream vdb_stream(stream);
1210 vdb_stream.write(vdb_grids);
1211 })
1212 .serialize();
1213 io_volume->append("vdb", std::move(io_vdb));
1214
1215 auto io_materials = serialize_materials(volume.runtime->bake_materials);
1216 io_volume->append("materials", io_materials);
1217 }
1218#endif
1219 if (geometry.has_instances()) {
1220 const Instances &instances = *geometry.get_instances();
1221 auto io_instances = io_geometry->append_dict("instances");
1222
1223 io_instances->append_int("num_instances", instances.instances_num());
1224
1225 auto io_references = io_instances->append_array("references");
1226 for (const InstanceReference &reference : instances.references()) {
1227 if (reference.type() == InstanceReference::Type::GeometrySet) {
1228 const GeometrySet &geometry = reference.geometry_set();
1229 io_references->append(serialize_geometry_set(geometry, blob_writer, blob_sharing));
1230 }
1231 else {
1232 /* TODO: Support serializing object and collection references. */
1233 io_references->append(serialize_geometry_set({}, blob_writer, blob_sharing));
1234 }
1235 }
1236
1237 auto io_attributes = serialize_attributes(
1238 instances.attributes(), blob_writer, blob_sharing, {});
1239 io_instances->append("attributes", io_attributes);
1240 }
1241 return io_geometry;
1242}
1243
1244static std::shared_ptr<io::serialize::ArrayValue> serialize_float_array(const Span<float> values)
1245{
1246 auto io_value = std::make_shared<io::serialize::ArrayValue>();
1247 for (const float value : values) {
1248 io_value->append_double(value);
1249 }
1250 return io_value;
1251}
1252
1253static std::shared_ptr<io::serialize::ArrayValue> serialize_int_array(const Span<int> values)
1254{
1255 auto io_value = std::make_shared<io::serialize::ArrayValue>();
1256 for (const int value : values) {
1257 io_value->append_int(value);
1258 }
1259 return io_value;
1260}
1261
1262static std::shared_ptr<io::serialize::Value> serialize_primitive_value(
1263 const eCustomDataType data_type, const void *value_ptr)
1264{
1265 switch (data_type) {
1266 case CD_PROP_FLOAT: {
1267 const float value = *static_cast<const float *>(value_ptr);
1268 return std::make_shared<io::serialize::DoubleValue>(value);
1269 }
1270 case CD_PROP_FLOAT2: {
1271 const float2 value = *static_cast<const float2 *>(value_ptr);
1272 return serialize_float_array({&value.x, 2});
1273 }
1274 case CD_PROP_FLOAT3: {
1275 const float3 value = *static_cast<const float3 *>(value_ptr);
1276 return serialize_float_array({&value.x, 3});
1277 }
1278 case CD_PROP_BOOL: {
1279 const bool value = *static_cast<const bool *>(value_ptr);
1280 return std::make_shared<io::serialize::BooleanValue>(value);
1281 }
1282 case CD_PROP_INT32: {
1283 const int value = *static_cast<const int *>(value_ptr);
1284 return std::make_shared<io::serialize::IntValue>(value);
1285 }
1286 case CD_PROP_INT16_2D: {
1287 const int2 value = int2(*static_cast<const short2 *>(value_ptr));
1288 return serialize_int_array({&value.x, 2});
1289 }
1290 case CD_PROP_INT32_2D: {
1291 const int2 value = *static_cast<const int2 *>(value_ptr);
1292 return serialize_int_array({&value.x, 2});
1293 }
1294 case CD_PROP_BYTE_COLOR: {
1295 const ColorGeometry4b value = *static_cast<const ColorGeometry4b *>(value_ptr);
1296 const int4 value_int{&value.r};
1297 return serialize_int_array({&value_int.x, 4});
1298 }
1299 case CD_PROP_COLOR: {
1300 const ColorGeometry4f value = *static_cast<const ColorGeometry4f *>(value_ptr);
1301 return serialize_float_array({&value.r, 4});
1302 }
1303 case CD_PROP_QUATERNION: {
1304 const math::Quaternion value = *static_cast<const math::Quaternion *>(value_ptr);
1305 return serialize_float_array({&value.w, 4});
1306 }
1307 case CD_PROP_FLOAT4X4: {
1308 const float4x4 value = *static_cast<const float4x4 *>(value_ptr);
1310 }
1311 default:
1312 break;
1313 }
1315 return {};
1316}
1317
1318template<typename T>
1319[[nodiscard]] static bool deserialize_typed_array(
1320 const io::serialize::Value &io_value,
1321 FunctionRef<std::optional<T>(const io::serialize::Value &io_element)> fn,
1322 MutableSpan<T> r_values)
1323{
1324 const io::serialize::ArrayValue *io_array = io_value.as_array_value();
1325 if (!io_array) {
1326 return false;
1327 }
1328 if (io_array->elements().size() != r_values.size()) {
1329 return false;
1330 }
1331 for (const int i : r_values.index_range()) {
1332 const io::serialize::Value &io_element = *io_array->elements()[i];
1333 std::optional<T> element = fn(io_element);
1334 if (!element) {
1335 return false;
1336 }
1337 r_values[i] = std::move(*element);
1338 }
1339 return true;
1340}
1341
1342template<typename T> static std::optional<T> deserialize_int(const io::serialize::Value &io_value)
1343{
1344 const io::serialize::IntValue *io_int = io_value.as_int_value();
1345 if (!io_int) {
1346 return std::nullopt;
1347 }
1348 const int64_t value = io_int->value();
1349 if (value < std::numeric_limits<T>::lowest()) {
1350 return std::nullopt;
1351 }
1352 if (value > std::numeric_limits<T>::max()) {
1353 return std::nullopt;
1354 }
1355 return value;
1356}
1357
1358static std::optional<float> deserialize_float(const io::serialize::Value &io_value)
1359{
1360 if (const io::serialize::DoubleValue *io_double = io_value.as_double_value()) {
1361 return io_double->value();
1362 }
1363 if (const io::serialize::IntValue *io_int = io_value.as_int_value()) {
1364 return io_int->value();
1365 }
1366 return std::nullopt;
1367}
1368
1369[[nodiscard]] static bool deserialize_float_array(const io::serialize::Value &io_value,
1370 MutableSpan<float> r_values)
1371{
1372 return deserialize_typed_array<float>(io_value, deserialize_float, r_values);
1373}
1374
1375template<typename T>
1376[[nodiscard]] static bool deserialize_int_array(const io::serialize::Value &io_value,
1377 MutableSpan<T> r_values)
1378{
1379 static_assert(std::is_integral_v<T>);
1380 return deserialize_typed_array<T>(io_value, deserialize_int<T>, r_values);
1381}
1382
1383[[nodiscard]] static bool deserialize_primitive_value(const io::serialize::Value &io_value,
1384 const eCustomDataType type,
1385 void *r_value)
1386{
1387 switch (type) {
1388 case CD_PROP_FLOAT: {
1389 const std::optional<float> value = deserialize_float(io_value);
1390 if (!value) {
1391 return false;
1392 }
1393 *static_cast<float *>(r_value) = *value;
1394 return true;
1395 }
1396 case CD_PROP_FLOAT2: {
1397 return deserialize_float_array(io_value, {static_cast<float *>(r_value), 2});
1398 }
1399 case CD_PROP_FLOAT3: {
1400 return deserialize_float_array(io_value, {static_cast<float *>(r_value), 3});
1401 }
1402 case CD_PROP_BOOL: {
1403 if (const io::serialize::BooleanValue *io_value_boolean = io_value.as_boolean_value()) {
1404 *static_cast<bool *>(r_value) = io_value_boolean->value();
1405 return true;
1406 }
1407 return false;
1408 }
1409 case CD_PROP_INT32: {
1410 const std::optional<int> value = deserialize_int<int>(io_value);
1411 if (!value) {
1412 return false;
1413 }
1414 *static_cast<int *>(r_value) = *value;
1415 return true;
1416 }
1417 case CD_PROP_INT16_2D: {
1418 return deserialize_int_array<int16_t>(io_value, {static_cast<int16_t *>(r_value), 2});
1419 }
1420 case CD_PROP_INT32_2D: {
1421 return deserialize_int_array<int>(io_value, {static_cast<int *>(r_value), 2});
1422 }
1423 case CD_PROP_BYTE_COLOR: {
1424 return deserialize_int_array<uint8_t>(io_value, {static_cast<uint8_t *>(r_value), 4});
1425 }
1426 case CD_PROP_COLOR: {
1427 return deserialize_float_array(io_value, {static_cast<float *>(r_value), 4});
1428 }
1429 case CD_PROP_QUATERNION: {
1430 return deserialize_float_array(io_value, {static_cast<float *>(r_value), 4});
1431 }
1432 case CD_PROP_FLOAT4X4: {
1433 return deserialize_float_array(io_value, {static_cast<float *>(r_value), 4 * 4});
1434 }
1435 default:
1436 break;
1437 }
1438 return false;
1439}
1440
1441static void serialize_bake_item(const BakeItem &item,
1442 BlobWriter &blob_writer,
1443 BlobWriteSharing &blob_sharing,
1444 DictionaryValue &r_io_item)
1445{
1446 if (!item.name.empty()) {
1447 r_io_item.append_str("name", item.name);
1448 }
1449 if (const auto *geometry_state_item = dynamic_cast<const GeometryBakeItem *>(&item)) {
1450 r_io_item.append_str("type", "GEOMETRY");
1451
1452 const GeometrySet &geometry = geometry_state_item->geometry;
1453 auto io_geometry = serialize_geometry_set(geometry, blob_writer, blob_sharing);
1454 r_io_item.append("data", io_geometry);
1455 }
1456 else if (const auto *attribute_state_item = dynamic_cast<const AttributeBakeItem *>(&item)) {
1457 r_io_item.append_str("type", "ATTRIBUTE");
1458 r_io_item.append_str("name", attribute_state_item->name());
1459 }
1460#ifdef WITH_OPENVDB
1461 else if (const auto *grid_state_item = dynamic_cast<const VolumeGridBakeItem *>(&item)) {
1462 r_io_item.append_str("type", "GRID");
1463 const GVolumeGrid &grid = *grid_state_item->grid;
1464 auto io_vdb = blob_writer
1465 .write_as_stream(".vdb",
1466 [&](std::ostream &stream) {
1467 openvdb::GridCPtrVec vdb_grids;
1468 bke::VolumeTreeAccessToken tree_token;
1469 vdb_grids.push_back(grid->grid_ptr(tree_token));
1470 openvdb::io::Stream vdb_stream(stream);
1471 vdb_stream.write(vdb_grids);
1472 })
1473 .serialize();
1474 r_io_item.append("vdb", std::move(io_vdb));
1475 }
1476#endif
1477 else if (const auto *string_state_item = dynamic_cast<const StringBakeItem *>(&item)) {
1478 r_io_item.append_str("type", "STRING");
1479 const StringRefNull str = string_state_item->value();
1480 /* Small strings are inlined, larger strings are stored separately. */
1481 const int64_t blob_threshold = 100;
1482 if (str.size() < blob_threshold) {
1483 r_io_item.append_str("data", string_state_item->value());
1484 }
1485 else {
1486 r_io_item.append("data",
1487 write_blob_raw_bytes(blob_writer, blob_sharing, str.data(), str.size()));
1488 }
1489 }
1490 else if (const auto *primitive_state_item = dynamic_cast<const PrimitiveBakeItem *>(&item)) {
1491 const eCustomDataType data_type = cpp_type_to_custom_data_type(primitive_state_item->type());
1492 r_io_item.append_str("type", get_data_type_io_name(data_type));
1493 auto io_data = serialize_primitive_value(data_type, primitive_state_item->value());
1494 r_io_item.append("data", std::move(io_data));
1495 }
1496 else if (const auto *bundle_state_item = dynamic_cast<const BundleBakeItem *>(&item)) {
1497 r_io_item.append_str("type", "BUNDLE");
1498 ArrayValue &io_items = *r_io_item.append_array("items");
1499 for (const BundleBakeItem::Item &item : bundle_state_item->items) {
1500 if (const auto *socket_value = std::get_if<BundleBakeItem::SocketValue>(&item.value)) {
1501 DictionaryValue &io_bundle_item = *io_items.append_dict();
1502 io_bundle_item.append_str("key", item.key);
1503 io_bundle_item.append_str("socket_idname", socket_value->socket_idname);
1504 io::serialize::DictionaryValue &io_bundle_item_value = *io_bundle_item.append_dict(
1505 "value");
1506 serialize_bake_item(*socket_value->value, blob_writer, blob_sharing, io_bundle_item_value);
1507 }
1508 }
1509 }
1510}
1511
1512static std::unique_ptr<BakeItem> deserialize_bake_item(const DictionaryValue &io_item,
1513 const BlobReader &blob_reader,
1514 const BlobReadSharing &blob_sharing)
1515{
1516
1517 const std::optional<StringRefNull> state_item_type = io_item.lookup_str("type");
1518 if (!state_item_type) {
1519 return {};
1520 }
1521 if (*state_item_type == StringRef("GEOMETRY")) {
1522 const DictionaryValue *io_geometry = io_item.lookup_dict("data");
1523 if (!io_geometry) {
1524 return {};
1525 }
1526 GeometrySet geometry = load_geometry(*io_geometry, blob_reader, blob_sharing);
1527 return std::make_unique<GeometryBakeItem>(std::move(geometry));
1528 }
1529 if (*state_item_type == StringRef("ATTRIBUTE")) {
1530 const DictionaryValue *io_attribute = &io_item;
1531 if (!io_attribute) {
1532 return {};
1533 }
1534 std::optional<StringRefNull> name = io_attribute->lookup_str("name");
1535 if (!name) {
1536 return {};
1537 }
1538 return std::make_unique<AttributeBakeItem>(std::move(*name));
1539 }
1540#ifdef WITH_OPENVDB
1541 if (*state_item_type == StringRef("GRID")) {
1542 const DictionaryValue &io_grid = io_item;
1543 const auto *io_vdb = io_grid.lookup_dict("vdb");
1544 if (!io_vdb) {
1545 return {};
1546 }
1547 std::optional<BlobSlice> vdb_slice = BlobSlice::deserialize(*io_vdb);
1548 if (!vdb_slice) {
1549 return {};
1550 }
1551 openvdb::GridPtrVecPtr vdb_grids;
1552 if (!blob_reader.read_as_stream(*vdb_slice, [&](std::istream &stream) {
1553 try {
1554 openvdb::io::Stream vdb_stream{stream};
1555 vdb_grids = vdb_stream.getGrids();
1556 return true;
1557 }
1558 catch (...) {
1559 return false;
1560 }
1561 }))
1562 {
1563 return {};
1564 }
1565 if (vdb_grids->size() != 1) {
1566 return {};
1567 }
1568 std::shared_ptr<openvdb::GridBase> vdb_grid = std::move((*vdb_grids)[0]);
1569 GVolumeGrid grid{std::move(vdb_grid)};
1570 return std::make_unique<VolumeGridBakeItem>(std::make_unique<GVolumeGrid>(grid));
1571 }
1572#endif
1573 if (*state_item_type == StringRef("STRING")) {
1574 const std::shared_ptr<io::serialize::Value> *io_data = io_item.lookup("data");
1575 if (!io_data) {
1576 return {};
1577 }
1578 if (io_data->get()->type() == io::serialize::eValueType::String) {
1579 const io::serialize::StringValue &io_string = *io_data->get()->as_string_value();
1580 return std::make_unique<StringBakeItem>(io_string.value());
1581 }
1582 if (const io::serialize::DictionaryValue *io_string = io_data->get()->as_dictionary_value()) {
1583 const std::optional<int64_t> size = io_string->lookup_int("size");
1584 if (!size) {
1585 return {};
1586 }
1587 std::string str;
1588 str.resize(*size);
1589 if (!read_blob_raw_bytes(blob_reader, *io_string, *size, str.data())) {
1590 return {};
1591 }
1592 return std::make_unique<StringBakeItem>(std::move(str));
1593 }
1594 }
1595 if (*state_item_type == StringRef("BUNDLE")) {
1596 const ArrayValue *io_items = io_item.lookup_array("items");
1597 if (!io_items) {
1598 return {};
1599 }
1600 auto bundle = std::make_unique<BundleBakeItem>();
1601 for (const auto &io_item_ : io_items->elements()) {
1602 const DictionaryValue *io_item = io_item_->as_dictionary_value();
1603 if (!io_item) {
1604 return {};
1605 }
1606 const std::optional<std::string> key = io_item->lookup_str("key");
1607 if (!key) {
1608 return {};
1609 }
1610 const std::optional<StringRefNull> socket_idname = io_item->lookup_str("socket_idname");
1611 if (!socket_idname) {
1612 return {};
1613 }
1614 const DictionaryValue *io_item_value = io_item->lookup_dict("value");
1615 std::unique_ptr<BakeItem> value = deserialize_bake_item(
1616 *io_item_value, blob_reader, blob_sharing);
1617 if (!value) {
1618 return {};
1619 }
1620 bundle->items.append(BundleBakeItem::Item{
1621 *key, BundleBakeItem::SocketValue{*socket_idname, std::move(value)}});
1622 }
1623 return bundle;
1624 }
1625 const std::shared_ptr<io::serialize::Value> *io_data = io_item.lookup("data");
1626 if (!io_data) {
1627 return {};
1628 }
1629 const std::optional<eCustomDataType> data_type = get_data_type_from_io_name(*state_item_type);
1630 if (data_type) {
1631 const CPPType &cpp_type = *custom_data_type_to_cpp_type(*data_type);
1632 BUFFER_FOR_CPP_TYPE_VALUE(cpp_type, buffer);
1633 if (!deserialize_primitive_value(**io_data, *data_type, buffer)) {
1634 return {};
1635 }
1636 BLI_SCOPED_DEFER([&]() { cpp_type.destruct(buffer); });
1637 return std::make_unique<PrimitiveBakeItem>(cpp_type, buffer);
1638 }
1639 return {};
1640}
1641
1642static constexpr int bake_file_version = 3;
1643
1644void serialize_bake(const BakeState &bake_state,
1645 BlobWriter &blob_writer,
1646 BlobWriteSharing &blob_sharing,
1647 std::ostream &r_stream)
1648{
1650 io_root.append_int("version", bake_file_version);
1651 io::serialize::DictionaryValue &io_items = *io_root.append_dict("items");
1652 for (auto item : bake_state.items_by_id.items()) {
1653 io::serialize::DictionaryValue &io_item = *io_items.append_dict(std::to_string(item.key));
1654 serialize_bake_item(*item.value, blob_writer, blob_sharing, io_item);
1655 }
1656
1658 formatter.serialize(r_stream, io_root);
1659}
1660
1661std::optional<BakeState> deserialize_bake(std::istream &stream,
1662 const BlobReader &blob_reader,
1663 const BlobReadSharing &blob_sharing)
1664{
1665 JsonFormatter formatter;
1666 std::unique_ptr<io::serialize::Value> io_root_value;
1667 try {
1668 io_root_value = formatter.deserialize(stream);
1669 }
1670 catch (...) {
1671 return std::nullopt;
1672 }
1673 if (!io_root_value) {
1674 return std::nullopt;
1675 }
1676 const io::serialize::DictionaryValue *io_root = io_root_value->as_dictionary_value();
1677 if (!io_root) {
1678 return std::nullopt;
1679 }
1680 const std::optional<int> version = io_root->lookup_int("version");
1681 if (!version.has_value() || *version != bake_file_version) {
1682 return std::nullopt;
1683 }
1684 const io::serialize::DictionaryValue *io_items = io_root->lookup_dict("items");
1685 if (!io_items) {
1686 return std::nullopt;
1687 }
1688 BakeState bake_state;
1689 for (const auto &io_item_value : io_items->elements()) {
1690 const io::serialize::DictionaryValue *io_item = io_item_value.second->as_dictionary_value();
1691 if (!io_item) {
1692 return std::nullopt;
1693 }
1694 int id;
1695 try {
1696 id = std::stoi(io_item_value.first);
1697 }
1698 catch (...) {
1699 return std::nullopt;
1700 }
1701 if (bake_state.items_by_id.contains(id)) {
1702 return std::nullopt;
1703 }
1704 std::unique_ptr<BakeItem> bake_item = deserialize_bake_item(
1705 *io_item, blob_reader, blob_sharing);
1706 if (!bake_item) {
1707 return std::nullopt;
1708 }
1709 bake_state.items_by_id.add_new(id, std::move(bake_item));
1710 }
1711 return bake_state;
1712}
1713
1714} // namespace blender::bke::bake
Low-level operations for curves.
CustomData interface, see also DNA_customdata_types.h.
bool CustomData_free_layer_named(CustomData *data, blender::StringRef name)
Low-level operations for grease pencil.
GreasePencil * BKE_grease_pencil_new_nomain()
void BKE_id_free(Main *bmain, void *idv)
void * BKE_id_new_nomain(short type, const char *name)
Definition lib_id.cc:1519
Mesh * BKE_mesh_new_nomain(int verts_num, int edges_num, int faces_num, int corners_num)
General operations for point clouds.
Volume data-block.
void BKE_volume_grid_add(Volume *volume, const blender::bke::VolumeGridData &grid)
int BKE_volume_num_grids(const Volume *volume)
const blender::bke::VolumeGridData * BKE_volume_grid_get(const Volume *volume, int grid_index)
#define BLI_assert_unreachable()
Definition BLI_assert.h:93
#define BLI_STATIC_ASSERT(a, msg)
Definition BLI_assert.h:83
#define BLI_assert(a)
Definition BLI_assert.h:46
#define BUFFER_FOR_CPP_TYPE_VALUE(type, variable_name)
#define L_ENDIAN
#define ENDIAN_ORDER
bool BLI_file_ensure_parent_dir_exists(const char *filepath) ATTR_NONNULL(1)
Definition fileops_c.cc:452
#define LISTBASE_FOREACH(type, var, list)
BLI_INLINE bool BLI_listbase_is_empty(const ListBase *lb)
void BLI_addtail(ListBase *listbase, void *vlink) ATTR_NONNULL(1)
Definition listbase.cc:111
#define BLI_SCOPED_DEFER(function_to_defer)
#define FILE_MAX
#define BLI_path_join(...)
#define STRNCPY_UTF8(dst, src)
#define UNUSED_VARS_NDEBUG(...)
@ ID_MA
struct CurvesGeometry CurvesGeometry
@ CD_PROP_BYTE_COLOR
@ CD_PROP_FLOAT
@ CD_PROP_FLOAT3
@ CD_PROP_INT32_2D
@ CD_PROP_COLOR
@ CD_PROP_QUATERNION
@ CD_PROP_INT32
@ CD_PROP_FLOAT2
@ CD_PROP_INT16_2D
@ CD_PROP_FLOAT4X4
Object is a sort of wrapper for general info.
struct Volume Volume
volatile int lock
BMesh const char void * data
ATTR_WARN_UNUSED_RESULT const void * element
long long int int64_t
unsigned long long int uint64_t
static DBVT_INLINE btScalar size(const btDbvtVolume &a)
Definition btDbvt.cpp:52
virtual bool serialize(void *o_alignedDataBuffer, unsigned i_dataBufferSize, bool i_swapEndian) const
Data buffer MUST be 16 byte aligned.
void destruct(void *ptr) const
AttributeSet attributes
MutableSpan< T > as_mutable_span()
Definition BLI_array.hh:248
bool is_any() const
static const CPPType & get()
bool is() const
void copy_assign_n(const void *src, void *dst, int64_t n) const
ChannelStorageType r
int64_t size_in_bytes() const
const CPPType & type() const
constexpr int64_t size() const
constexpr bool is_empty() const
static constexpr IndexRange from_begin_size(const int64_t begin, const int64_t size)
constexpr int64_t start() const
constexpr bool contains(int64_t value) const
constexpr int64_t size() const
Definition BLI_span.hh:493
constexpr IndexRange index_range() const
Definition BLI_span.hh:670
bool contains_as(const ForwardKey &key) const
Definition BLI_set.hh:314
constexpr Span slice(int64_t start, int64_t size) const
Definition BLI_span.hh:137
constexpr const T * data() const
Definition BLI_span.hh:215
constexpr IndexRange index_range() const
Definition BLI_span.hh:401
constexpr bool startswith(StringRef prefix) const
constexpr const char * c_str() const
void append(const T &value)
const T & last(const int64_t n=0) const
Span< T > as_span() const
void append_as(ForwardValue &&...value)
void foreach_attribute(const FunctionRef< void(const AttributeIter &)> fn) const
bool contains(StringRef attribute_id) const
int domain_size(const AttrDomain domain) const
GAttributeReader get() const
Span< InstanceReference > references() const
Definition instances.cc:275
bke::AttributeAccessor attributes() const
Definition instances.cc:64
int instances_num() const
Definition instances.cc:393
bool add(const StringRef attribute_id, const AttrDomain domain, const AttrType data_type, const AttributeInit &initializer)
GSpanAttributeWriter lookup_or_add_for_write_only_span(StringRef attribute_id, AttrDomain domain, AttrType data_type)
std::optional< ImplicitSharingInfoAndData > read_shared(const io::serialize::DictionaryValue &io_data, FunctionRef< std::optional< ImplicitSharingInfoAndData >()> read_fn) const
virtual bool read_as_stream(const BlobSlice &slice, FunctionRef< bool(std::istream &)> fn) const
virtual bool read(const BlobSlice &slice, void *r_data) const =0
std::shared_ptr< io::serialize::DictionaryValue > write_implicitly_shared(const ImplicitSharingInfo *sharing_info, FunctionRef< std::shared_ptr< io::serialize::DictionaryValue >()> write_fn)
std::shared_ptr< io::serialize::DictionaryValue > write_deduplicated(BlobWriter &writer, const void *data, int64_t size_in_bytes)
virtual BlobSlice write(const void *data, int64_t size)=0
virtual BlobSlice write_as_stream(StringRef file_extension, FunctionRef< void(std::ostream &)> fn)
bool read(const BlobSlice &slice, void *r_data) const override
DiskBlobWriter(std::string blob_dir, std::string base_name)
BlobSlice write_as_stream(StringRef file_extension, FunctionRef< void(std::ostream &)> fn) override
BlobSlice write(const void *data, int64_t size) override
void add(StringRef name, Span< std::byte > blob)
bool read(const BlobSlice &slice, void *r_data) const override
BlobSlice write(const void *data, int64_t size) override
BlobSlice write_as_stream(StringRef file_extension, FunctionRef< void(std::ostream &)> fn) override
bke::CurvesGeometry & strokes_for_write()
const bke::CurvesGeometry & strokes() const
void set_local_transform(const float4x4 &transform)
Span< std::shared_ptr< Value > > elements() const
std::shared_ptr< DictionaryValue > append_dict()
Definition serialize.cc:242
const std::shared_ptr< Value > * lookup(StringRef key) const
Definition serialize.cc:265
void append(std::string key, std::shared_ptr< Value > value)
Definition serialize.cc:321
std::optional< StringRefNull > lookup_str(StringRef key) const
Definition serialize.cc:275
void append_str(std::string key, std::string value)
Definition serialize.cc:336
std::shared_ptr< DictionaryValue > append_dict(std::string key)
Definition serialize.cc:341
std::optional< int64_t > lookup_int(StringRef key) const
Definition serialize.cc:285
void append_int(std::string key, int64_t value)
Definition serialize.cc:326
std::shared_ptr< ArrayValue > append_array(std::string key)
Definition serialize.cc:348
const DictionaryValue * lookup_dict(StringRef key) const
Definition serialize.cc:305
const ArrayValue * lookup_array(StringRef key) const
Definition serialize.cc:313
std::unique_ptr< Value > deserialize(std::istream &is) override
Definition serialize.cc:367
void serialize(std::ostream &os, const Value &value) override
Definition serialize.cc:355
const BooleanValue * as_boolean_value() const
Definition serialize.cc:40
const ArrayValue * as_array_value() const
Definition serialize.cc:56
const IntValue * as_int_value() const
Definition serialize.cc:24
const DoubleValue * as_double_value() const
Definition serialize.cc:32
const DictionaryValue * as_dictionary_value() const
Definition serialize.cc:64
#define str(s)
void * MEM_mallocN_aligned(size_t len, size_t alignment, const char *str)
Definition mallocn.cc:138
void * MEM_callocN(size_t len, const char *str)
Definition mallocn.cc:118
void MEM_freeN(void *vmemh)
Definition mallocn.cc:113
#define T
static bool deserialize_typed_array(const io::serialize::Value &io_value, FunctionRef< std::optional< T >(const io::serialize::Value &io_element)> fn, MutableSpan< T > r_values)
static StringRefNull get_domain_io_name(const AttrDomain domain)
static constexpr int bake_file_version
static bool read_blob_shared_simple_span(const DictionaryValue &io_data, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing, const int size, T **r_data, const ImplicitSharingInfo **r_sharing_info)
static std::optional< AttrDomain > get_domain_from_io_name(const StringRefNull io_name)
static std::optional< eCustomDataType > get_data_type_from_io_name(const StringRefNull io_name)
static bool deserialize_int_array(const io::serialize::Value &io_value, MutableSpan< T > r_values)
static bool read_blob_simple_gspan(const BlobReader &blob_reader, const DictionaryValue &io_data, GMutableSpan r_data)
static std::shared_ptr< io::serialize::ArrayValue > serialize_int_array(const Span< int > values)
std::shared_ptr< DictionaryValue > DictionaryValuePtr
Definition bake_items.cc:23
static bool read_blob_raw_bytes(const BlobReader &blob_reader, const DictionaryValue &io_data, const int64_t bytes_num, void *r_data)
static StringRefNull get_data_type_io_name(const eCustomDataType data_type)
static bool load_materials(const io::serialize::ArrayValue &io_materials, std::unique_ptr< BakeMaterialsList > &materials)
static StringRefNull get_endian_io_name(const int endian)
static std::optional< CurvesGeometry > try_load_curves_geometry(const DictionaryValue &io_curves, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static std::optional< float > deserialize_float(const io::serialize::Value &io_value)
static std::optional< T > deserialize_int(const io::serialize::Value &io_value)
static std::shared_ptr< io::serialize::Value > serialize_primitive_value(const eCustomDataType data_type, const void *value_ptr)
static bool load_attributes(const io::serialize::ArrayValue &io_attributes, MutableAttributeAccessor &attributes, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
void serialize_bake(const BakeState &bake_state, BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, std::ostream &r_stream)
static void serialize_curves_geometry(DictionaryValue &io_curves, const CurvesGeometry &curves, BlobWriter &blob_writer, BlobWriteSharing &blob_sharing)
static std::shared_ptr< DictionaryValue > write_blob_raw_bytes(BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, const void *data, const int64_t size_in_bytes)
static std::shared_ptr< DictionaryValue > serialize_geometry_set(const GeometrySet &geometry, BlobWriter &blob_writer, BlobWriteSharing &blob_sharing)
static Curves * try_load_curves(const DictionaryValue &io_geometry, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static std::shared_ptr< DictionaryValue > write_blob_shared_simple_gspan(BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, const GSpan data, const ImplicitSharingInfo *sharing_info)
static GeometrySet load_geometry(const DictionaryValue &io_geometry, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static void serialize_bake_item(const BakeItem &item, BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, DictionaryValue &r_io_item)
static Mesh * try_load_mesh(const DictionaryValue &io_geometry, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static std::unique_ptr< BakeItem > deserialize_bake_item(const DictionaryValue &io_item, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static PointCloud * try_load_pointcloud(const DictionaryValue &io_geometry, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
std::optional< BakeState > deserialize_bake(std::istream &stream, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static bool deserialize_primitive_value(const io::serialize::Value &io_value, const eCustomDataType type, void *r_value)
static std::shared_ptr< DictionaryValue > write_blob_simple_gspan(BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, const GSpan data)
static GreasePencil * try_load_grease_pencil(const DictionaryValue &io_geometry, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static const void * read_blob_shared_simple_gspan(const DictionaryValue &io_data, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing, const CPPType &cpp_type, const int size, const ImplicitSharingInfo **r_sharing_info)
static std::unique_ptr< Instances > try_load_instances(const DictionaryValue &io_geometry, const BlobReader &blob_reader, const BlobReadSharing &blob_sharing)
static bool deserialize_float_array(const io::serialize::Value &io_value, MutableSpan< float > r_values)
static std::shared_ptr< DictionaryValue > write_blob_raw_data_with_endian(BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, const void *data, const int64_t size_in_bytes)
static std::string make_independent_file_name(const StringRef base_name, const int file_index, const StringRef extension)
static std::shared_ptr< io::serialize::ArrayValue > serialize_float_array(const Span< float > values)
static std::shared_ptr< io::serialize::ArrayValue > serialize_attributes(const AttributeAccessor &attributes, BlobWriter &blob_writer, BlobWriteSharing &blob_sharing, const Set< std::string > &attributes_to_ignore)
static std::shared_ptr< io::serialize::ArrayValue > serialize_materials(const std::unique_ptr< BakeMaterialsList > &materials)
static bool read_blob_raw_data_with_endian(const BlobReader &blob_reader, const DictionaryValue &io_data, const int64_t element_size, const int64_t elements_num, void *r_data)
std::optional< eCustomDataType > attr_type_to_custom_data_type(AttrType attr_type)
bool attribute_name_is_anonymous(const StringRef name)
std::optional< AttrType > custom_data_type_to_attr_type(eCustomDataType data_type)
eCustomDataType cpp_type_to_custom_data_type(const CPPType &type)
const CPPType * custom_data_type_to_cpp_type(eCustomDataType type)
PointCloud * pointcloud_new_no_attributes(int totpoint)
Curves * curves_new_nomain(int points_num, int curves_num)
const ImplicitSharingInfo * info_for_mem_free(void *data)
PrimitiveValue< int64_t, eValueType::Int > IntValue
PrimitiveValue< bool, eValueType::Boolean > BooleanValue
PrimitiveValue< double, eValueType::Double > DoubleValue
QuaternionBase< float > Quaternion
VecBase< int32_t, 4 > int4
MatBase< float, 4, 4 > float4x4
VecBase< int32_t, 2 > int2
VecBase< float, 2 > float2
ColorSceneLinear4f< eAlpha::Premultiplied > ColorGeometry4f
VecBase< float, 3 > float3
blender::VecBase< int16_t, 2 > short2
ColorSceneLinearByteEncoded4b< eAlpha::Premultiplied > ColorGeometry4b
const char * name
bool RNA_enum_id_from_value(const EnumPropertyItem *item, int value, const char **r_identifier)
bool RNA_enum_value_from_identifier(const EnumPropertyItem *item, const char *identifier, int *r_value)
const EnumPropertyItem rna_enum_attribute_domain_items[]
const EnumPropertyItem rna_enum_attribute_type_items[]
CurvesGeometry geometry
GreasePencilRuntimeHandle * runtime
PointCloudRuntimeHandle * runtime
VolumeRuntimeHandle * runtime
const T * base_ptr() const
const ImplicitSharingInfo * sharing_info
Map< int, std::unique_ptr< BakeItem > > items_by_id
std::shared_ptr< io::serialize::DictionaryValue > serialize() const
static std::optional< BlobSlice > deserialize(const io::serialize::DictionaryValue &io_slice)
std::variant< SocketValue, InternalValue > value
i
Definition text_draw.cc:230