Files
korenkonder_ReDIVA/src/KKdLib/aet.cpp
T
2023-09-16 16:52:33 +03:00

1039 lines
37 KiB
C++

/*
by korenkonder
GitHub/GitLab: korenkonder
*/
#include <map>
#include "aet.hpp"
#include "f2/struct.hpp"
#include "io/path.hpp"
#include "io/memory_stream.hpp"
struct aet_layer_header {
int64_t markers_offset;
int64_t video_offset;
int64_t audio_offset;
};
struct aet_scene_header {
int64_t camera_offset;
int64_t comp_offset;
int64_t video_offset;
int64_t audio_offset;
};
static void aet_set_classic_read_inner(aet_set* as, prj::shared_ptr<prj::stack_allocator>& alloc, stream& s);
static void aet_set_classic_write_inner(aet_set* as, stream& s);
static void aet_set_modern_read_inner(aet_set* as, prj::shared_ptr<prj::stack_allocator>& alloc, stream& s);
static void aet_set_modern_write_inner(aet_set* as, stream& s);
static void aet_classic_read_audio(aet_audio* audio,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s);
static aet_camera* aet_classic_read_camera(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset);
static void aet_classic_read_comp(aet_comp* comp,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
std::map<int64_t, aet_layer*>& layers,
std::map<int64_t, aet_item>& items);
static void aet_classic_read_fcurve(aet_fcurve* fcurve,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s);
static void aet_classic_read_layer(aet_layer* layer,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s);
static aet_layer_audio* aet_classic_read_layer_audio(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset);
static aet_layer_video* aet_classic_read_layer_video(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset);
static aet_layer_video_3d* aet_classic_read_layer_video_3d(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset);
static void aet_classic_read_marker(aet_marker* marker,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s);
static aet_scene* aet_classic_read_scene(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset, std::map<int64_t, aet_layer*>& layers,
std::map<int64_t, aet_item>& items);
static void aet_classic_read_video(aet_video* video,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
std::map<int64_t, aet_item>& items);
static void aet_modern_read_audio(aet_audio* audio,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x);
static aet_camera* aet_modern_read_camera(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x);
static void aet_modern_read_comp(aet_comp* comp,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x,
std::map<int64_t, aet_layer*>& layers, std::map<int64_t, aet_item>& items);
static void aet_modern_read_fcurve(aet_fcurve* fcurve,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x);
static void aet_modern_read_layer(aet_layer* layer,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x);
static aet_layer_audio* aet_modern_read_layer_audio(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x);
static aet_layer_video* aet_modern_read_layer_video(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x);
static aet_layer_video_3d* aet_modern_read_layer_video_3d(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x);
static void aet_modern_read_marker(aet_marker* marker,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x);
static aet_scene* aet_modern_read_scene(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x,
std::map<int64_t, aet_layer*>& layers, std::map<int64_t, aet_item>& items);
static void aet_modern_read_video(aet_video* video,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x,
std::map<int64_t, aet_item>& items);
static void aet_comp_set_item_parent(const aet_comp* comp,
std::map<int64_t, aet_layer*>& layers, std::map<int64_t, aet_item>& items);
static const char* aet_move_data_string(const char* str,
prj::shared_ptr<prj::stack_allocator>& alloc);
static const char* aet_read_utf8_string_null_terminated_offset(
prj::shared_ptr<prj::stack_allocator>& alloc, stream& s, int64_t offset);
aet_fcurve::aet_fcurve() : keys_count(), keys() {
}
float_t aet_fcurve::interpolate(float_t frame) const {
if (!keys_count)
return 0.0f;
else if (keys_count == 1)
return keys[0];
size_t keys_count = this->keys_count;
const float_t* keys = this->keys;
const float_t* values = &keys[keys_count];
if (frame <= keys[0])
return values[0];
const float_t* v6 = keys;
const float_t* v7 = &keys[keys_count];
if (frame >= keys[keys_count - 1])
return values[(keys_count - 1) * 2];
const float_t* v8 = &keys[keys_count / 2];
while (v6 < v8) {
if (frame >= *v8)
v6 = v8;
else
v7 = v8;
v8 = &v6[(v7 - v6) / 2];
}
if (values - 1 <= v8)
return values[(keys_count - 1) * 2];
size_t v9 = (v8 - keys) * 2;
float_t df = v8[1] - v8[0];
float_t t = (frame - v8[0]) / df;
float_t t_1 = t - 1.0f;
return (t_1 * values[v9 + 1] + t * values[v9 + 3]) * t * t_1 * df
+ t * t * (3.0f - 2.0f * t) * values[v9 + 2]
+ (1.0f + 2.0f * t) * (t_1 * t_1) * values[v9];
}
aet_layer_video_3d::aet_layer_video_3d() {
}
aet_transfer_mode::aet_transfer_mode() : mode(), flag(), matte() {
}
aet_layer_video::aet_layer_video() : _3d() {
}
aet_layer_audio::aet_layer_audio() {
}
aet_camera::aet_camera() {
}
aet_video_src::aet_video_src() : sprite_name() {
sprite_index = -1;
}
aet_video::aet_video() : color(), width(), height(), fpf(), sources_count(), sources() {
}
aet_audio::aet_audio() : sound_index() {
}
aet_marker::aet_marker() : time(), name() {
}
aet_layer::aet_layer() : name(), start_time(), end_time(), offset_time(), time_scale(),
flags(), quality(), item_type(), parent(), markers_count(), markers(), video(), audio() {
}
aet_comp::aet_comp() : layers_count(), layers() {
}
aet_scene::aet_scene() : name(), start_time(), end_time(), fps(), color(), width(),
height(), camera(), comp_count(), comp(), video_count(), video(), audio_count(), audio() {
}
const aet_comp* aet_scene::get_root_comp(const aet_scene* scene) {
if (scene && scene->comp_count)
return &scene->comp[scene->comp_count - 1];
return 0;
}
aet_set::aet_set() : ready(), modern(), big_endian(), is_x(), scenes_count(), scenes() {
}
void aet_set::move_data(aet_set* set_src, prj::shared_ptr<prj::stack_allocator> alloc) {
}
void aet_set::pack_file(void** data, size_t* size) {
if (!data || !ready)
return;
memory_stream s;
s.open();
if (!modern)
aet_set_classic_write_inner(this, s);
else
aet_set_modern_write_inner(this, s);
s.align_write(0x10);
s.copy(data, size);
}
void aet_set::unpack_file(prj::shared_ptr<prj::stack_allocator> alloc, const void* data, size_t size, bool modern) {
if (!data || !size)
return;
memory_stream s;
s.open(data, size);
if (!modern)
aet_set_classic_read_inner(this, alloc, s);
else
aet_set_modern_read_inner(this, alloc, s);
}
static void aet_set_classic_read_inner(aet_set* as, prj::shared_ptr<prj::stack_allocator>& alloc, stream& s) {
uint32_t scenes_count = 0;
while (s.read_uint32_t())
scenes_count++;
as->scenes_count = scenes_count;
aet_scene** scenes = alloc->allocate<aet_scene*>(scenes_count);
as->scenes = (const aet_scene**)scenes;
uint32_t* data = force_malloc<uint32_t>(scenes_count);
s.set_position(0, SEEK_SET);
for (uint32_t i = 0; i < scenes_count; i++)
data[i] = s.read_uint32_t();
std::map<int64_t, aet_layer*> layers;
std::map<int64_t, aet_item> items;
for (uint32_t i = 0; i < scenes_count; i++)
scenes[i] = aet_classic_read_scene(alloc, s, data[i], layers, items);
for (uint32_t i = 0; i < scenes_count; i++) {
aet_scene* scene = scenes[i];
const aet_comp* comp = scene->comp;
for (uint32_t j = scene->comp_count; j; j--, comp++)
aet_comp_set_item_parent(comp, layers, items);
}
free_def(data);
as->ready = true;
as->modern = false;
as->big_endian = false;
as->is_x = false;
}
static void aet_set_classic_write_inner(aet_set* as, stream& s) {
}
static void aet_set_modern_read_inner(aet_set* as, prj::shared_ptr<prj::stack_allocator>& alloc, stream& s) {
f2_struct st;
st.read(s);
if (st.header.signature != reverse_endianness_uint32_t('AETC') || !st.data.size())
return;
uint32_t header_length = st.header.length;
bool big_endian = st.header.use_big_endian;
bool is_x = st.pof.shift_x;
memory_stream s_aetc;
s_aetc.open(st.data);
s_aetc.big_endian = big_endian;
uint32_t scenes_count = 0;
if (!is_x)
while (s_aetc.read_uint32_t_reverse_endianness())
scenes_count++;
else
while (s_aetc.read_int64_t_reverse_endianness())
scenes_count++;
as->scenes_count = scenes_count;
aet_scene** scenes = alloc->allocate<aet_scene*>(scenes_count);
as->scenes = (const aet_scene**)scenes;
int64_t* data = force_malloc<int64_t>(scenes_count);
s_aetc.set_position(0, SEEK_SET);
if (!is_x)
for (uint32_t i = 0; i < scenes_count; i++)
data[i] = s_aetc.read_uint32_t_reverse_endianness();
else
for (uint32_t i = 0; i < scenes_count; i++)
data[i] = s_aetc.read_int64_t_reverse_endianness();
std::map<int64_t, aet_layer*> layers;
std::map<int64_t, aet_item> items;
for (uint32_t i = 0; i < scenes_count; i++)
scenes[i] = aet_modern_read_scene(alloc, s_aetc, data[i],
header_length, is_x, layers, items);
for (uint32_t i = 0; i < scenes_count; i++) {
aet_scene* scene = scenes[i];
const aet_comp* comp = scene->comp;
for (uint32_t j = scene->comp_count; j; j--, comp++)
aet_comp_set_item_parent(comp, layers, items);
}
free_def(data);
as->ready = true;
as->modern = true;
as->big_endian = big_endian;
as->is_x = is_x;
}
static void aet_set_modern_write_inner(aet_set* as, stream& s) {
bool big_endian = as->big_endian;
bool is_x = as->is_x;
memory_stream s_aetc;
s_aetc.open();
s_aetc.big_endian = big_endian;
uint32_t off;
enrs e;
enrs_entry ee;
pof pof;
off = align_val(0, 0x10);
f2_struct st;
s_aetc.align_write(0x10);
s_aetc.copy(st.data);
s_aetc.close();
st.enrs = e;
st.pof = pof;
st.header.signature = reverse_endianness_uint32_t('AETC');
st.header.length = 0x20;
st.header.use_big_endian = big_endian;
st.header.use_section_size = true;
st.write(s, true, is_x);
}
static void aet_classic_read_audio(aet_audio* audio,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s) {
audio->sound_index = s.read_int32_t();
}
static aet_camera* aet_classic_read_camera(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset) {
if (!offset)
return 0;
aet_camera* cam = alloc->allocate<aet_camera>();
s.position_push(offset, SEEK_SET);
aet_classic_read_fcurve(&cam->eye_x, alloc, s);
aet_classic_read_fcurve(&cam->eye_y, alloc, s);
aet_classic_read_fcurve(&cam->eye_z, alloc, s);
aet_classic_read_fcurve(&cam->pos_x, alloc, s);
aet_classic_read_fcurve(&cam->pos_y, alloc, s);
aet_classic_read_fcurve(&cam->pos_z, alloc, s);
aet_classic_read_fcurve(&cam->dir_x, alloc, s);
aet_classic_read_fcurve(&cam->dir_y, alloc, s);
aet_classic_read_fcurve(&cam->dir_z, alloc, s);
aet_classic_read_fcurve(&cam->rot_x, alloc, s);
aet_classic_read_fcurve(&cam->rot_y, alloc, s);
aet_classic_read_fcurve(&cam->rot_z, alloc, s);
aet_classic_read_fcurve(&cam->zoom, alloc, s);
s.position_pop();
return cam;
}
static void aet_classic_read_comp(aet_comp* comp,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
std::map<int64_t, aet_layer*>& layers,
std::map<int64_t, aet_item>& items) {
items.insert_or_assign(s.get_position(), comp);
comp->layers_count = s.read_uint32_t();
uint32_t layers_offset = s.read_uint32_t();
if (layers_offset) {
aet_layer* layer = alloc->allocate<aet_layer>(comp->layers_count);
comp->layers = layer;
s.position_push(layers_offset, SEEK_SET);
for (uint32_t i = comp->layers_count; i; i--, layer++) {
layers.insert_or_assign(s.get_position(), layer);
aet_classic_read_layer(layer, alloc, s);
}
s.position_pop();
}
else
comp->layers = 0;
}
static void aet_classic_read_fcurve(aet_fcurve* fcurve,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s) {
fcurve->keys_count = s.read_uint32_t();
uint32_t keys_offset = s.read_uint32_t();
s.position_push(keys_offset, SEEK_SET);
if (fcurve->keys_count > 1) {
float_t* key = alloc->allocate<float_t>(fcurve->keys_count * 3ULL);
fcurve->keys = key;
s.read(key, fcurve->keys_count * 3ULL * sizeof(float_t));
}
else if (fcurve->keys_count) {
float_t* key = alloc->allocate<float_t>();
fcurve->keys = key;
*key = s.read_float_t();
}
else
fcurve->keys = 0;
s.position_pop();
}
static void aet_classic_read_layer(aet_layer* layer,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s) {
aet_layer_header alh = {};
layer->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_uint32_t());
layer->start_time = s.read_float_t();
layer->end_time = s.read_float_t();
layer->offset_time = s.read_float_t();
layer->time_scale = s.read_float_t();
*(uint16_t*)&layer->flags = s.read_uint16_t();
layer->quality = (aet_layer_quality)s.read_uint8_t();
layer->item_type = (aet_item_type)s.read_uint8_t();
if (layer->item_type == AET_ITEM_TYPE_VIDEO
|| layer->item_type == AET_ITEM_TYPE_COMPOSITION)
layer->item.none = (void*)(size_t)s.read_uint32_t();
else
s.read_uint32_t();
layer->parent = (const aet_layer*)(size_t)s.read_uint32_t();
layer->markers_count = s.read_uint32_t();
alh.markers_offset = s.read_uint32_t();
alh.video_offset = s.read_uint32_t();
alh.audio_offset = s.read_uint32_t();
if (alh.markers_offset) {
aet_marker* marker = alloc->allocate<aet_marker>(layer->markers_count);
layer->markers = marker;
s.position_push(alh.markers_offset, SEEK_SET);
for (uint32_t i = layer->markers_count; i; i--, marker++)
aet_classic_read_marker(marker, alloc, s);
s.position_pop();
}
else
layer->audio = 0;
layer->video = aet_classic_read_layer_video(alloc, s, alh.video_offset);
layer->audio = aet_classic_read_layer_audio(alloc, s, alh.audio_offset);
}
static aet_layer_audio* aet_classic_read_layer_audio(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset) {
if (!offset)
return 0;
aet_layer_audio* layer_audio = alloc->allocate<aet_layer_audio>();
s.position_push(offset, SEEK_SET);
aet_classic_read_fcurve(&layer_audio->volume_l, alloc, s);
aet_classic_read_fcurve(&layer_audio->volume_r, alloc, s);
aet_classic_read_fcurve(&layer_audio->pan_l, alloc, s);
aet_classic_read_fcurve(&layer_audio->pan_r, alloc, s);
s.position_pop();
return layer_audio;
}
static aet_layer_video* aet_classic_read_layer_video(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset) {
if (!offset)
return 0;
aet_layer_video* layer_video = alloc->allocate<aet_layer_video>();
s.position_push(offset, SEEK_SET);
layer_video->transfer_mode.mode = (aet_blend_mode)s.read_uint8_t();
layer_video->transfer_mode.flag = s.read_uint8_t();
layer_video->transfer_mode.matte = s.read_uint8_t();
s.read_uint8_t();
aet_classic_read_fcurve(&layer_video->anchor_x, alloc, s);
aet_classic_read_fcurve(&layer_video->anchor_y, alloc, s);
aet_classic_read_fcurve(&layer_video->pos_x, alloc, s);
aet_classic_read_fcurve(&layer_video->pos_y, alloc, s);
aet_classic_read_fcurve(&layer_video->rot_z, alloc, s);
aet_classic_read_fcurve(&layer_video->scale_x, alloc, s);
aet_classic_read_fcurve(&layer_video->scale_y, alloc, s);
aet_classic_read_fcurve(&layer_video->opacity, alloc, s);
layer_video->_3d = aet_classic_read_layer_video_3d(alloc, s, s.read_uint32_t());
s.position_pop();
return layer_video;
}
static aet_layer_video_3d* aet_classic_read_layer_video_3d(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset) {
if (!offset)
return 0;
aet_layer_video_3d* layer_video_3d = alloc->allocate<aet_layer_video_3d>();
s.position_push(offset, SEEK_SET);
aet_classic_read_fcurve(&layer_video_3d->anchor_z, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->pos_z, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->dir_x, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->dir_y, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->dir_z, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->rot_x, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->rot_y, alloc, s);
aet_classic_read_fcurve(&layer_video_3d->scale_z, alloc, s);
s.position_pop();
return layer_video_3d;
}
static void aet_classic_read_marker(aet_marker* marker,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s) {
marker->time = s.read_float_t();
marker->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_uint32_t());
}
static aet_scene* aet_classic_read_scene(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset, std::map<int64_t, aet_layer*>& layers,
std::map<int64_t, aet_item>& items) {
if (!offset)
return 0;
aet_scene_header ash = {};
aet_scene* scene = alloc->allocate<aet_scene>();
s.position_push(offset, SEEK_SET);
scene->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_uint32_t());
scene->start_time = s.read_float_t();
scene->end_time = s.read_float_t();
scene->fps = s.read_float_t();
scene->color[0] = s.read_uint8_t();
scene->color[1] = s.read_uint8_t();
scene->color[2] = s.read_uint8_t();
s.read_uint8_t();
scene->width = s.read_uint32_t();
scene->height = s.read_uint32_t();
ash.camera_offset = s.read_uint32_t();
scene->comp_count = s.read_uint32_t();
ash.comp_offset = s.read_uint32_t();
scene->video_count = s.read_uint32_t();
ash.video_offset = s.read_uint32_t();
scene->audio_count = s.read_uint32_t();
ash.audio_offset = s.read_uint32_t();
s.position_pop();
scene->camera = aet_classic_read_camera(alloc, s, ash.camera_offset);
if (ash.comp_offset) {
aet_comp* comp = alloc->allocate<aet_comp>(scene->comp_count);
scene->comp = comp;
s.position_push(ash.comp_offset, SEEK_SET);
for (uint32_t i = scene->comp_count; i; i--, comp++)
aet_classic_read_comp(comp, alloc, s, layers, items);
s.position_pop();
}
else
scene->comp = 0;
if (ash.video_offset) {
aet_video* video = alloc->allocate<aet_video>(scene->video_count);
scene->video = video;
s.position_push(ash.video_offset, SEEK_SET);
for (uint32_t i = scene->video_count; i; i--, video++)
aet_classic_read_video(video, alloc, s, items);
s.position_pop();
}
else
scene->video = 0;
if (ash.audio_offset) {
aet_audio* audio = alloc->allocate<aet_audio>(scene->audio_count);
scene->audio = audio;
s.position_push(ash.audio_offset, SEEK_SET);
for (uint32_t i = scene->audio_count; i; i--, audio++)
aet_classic_read_audio(audio, alloc, s);
s.position_pop();
}
else
scene->audio = 0;
return scene;
}
static void aet_classic_read_video(aet_video* video,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
std::map<int64_t, aet_item>& items) {
items.insert_or_assign(s.get_position(), video);
video->color[0] = s.read_uint8_t();
video->color[1] = s.read_uint8_t();
video->color[2] = s.read_uint8_t();
s.read_uint8_t();
video->width = s.read_uint16_t();
video->height = s.read_uint16_t();
video->fpf = s.read_float_t();
video->sources_count = s.read_uint32_t();
uint32_t sources_offset = s.read_uint32_t();
if (sources_offset) {
aet_video_src* source = alloc->allocate<aet_video_src>(video->sources_count);
video->sources = source;
s.position_push(sources_offset, SEEK_SET);
for (uint32_t i = video->sources_count; i; i--, source++) {
source->sprite_name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_uint32_t());
source->sprite_index = s.read_int32_t();
}
s.position_pop();
}
else
video->sources = 0;
}
static void aet_modern_read_audio(aet_audio* audio,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x) {
audio->sound_index = s.read_int32_t();
}
static aet_camera* aet_modern_read_camera(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x) {
if (!offset)
return 0;
aet_camera* cam = alloc->allocate<aet_camera>();
s.position_push(offset, SEEK_SET);
aet_modern_read_fcurve(&cam->eye_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->eye_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->eye_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->pos_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->pos_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->pos_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->dir_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->dir_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->dir_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->rot_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->rot_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->rot_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&cam->zoom, alloc, s, header_length, is_x);
s.position_pop();
return cam;
}
static void aet_modern_read_comp(aet_comp* comp,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x,
std::map<int64_t, aet_layer*>& layers, std::map<int64_t, aet_item>& items) {
items.insert_or_assign(s.get_position(), comp);
comp->layers_count = s.read_uint32_t();
int64_t layers_offset = s.read_offset(header_length, is_x);
if (layers_offset) {
aet_layer* layer = alloc->allocate<aet_layer>(comp->layers_count);
comp->layers = layer;
s.position_push(layers_offset, SEEK_SET);
for (uint32_t i = comp->layers_count; i; i--, layer++) {
layers.insert_or_assign(s.get_position(), layer);
aet_modern_read_layer(layer, alloc, s, header_length, is_x);
}
s.position_pop();
}
else
comp->layers = 0;
}
static void aet_modern_read_fcurve(aet_fcurve* fcurve,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x) {
fcurve->keys_count = s.read_uint32_t();
int64_t keys_offset = s.read_offset(header_length, is_x);
s.position_push(keys_offset, SEEK_SET);
if (fcurve->keys_count > 1) {
float_t* key = alloc->allocate<float_t>(fcurve->keys_count * 3ULL);
fcurve->keys = key;
s.read(key, fcurve->keys_count * 3ULL * sizeof(float_t));
}
else if (fcurve->keys_count) {
float_t* key = alloc->allocate<float_t>();
fcurve->keys = key;
*key = s.read_float_t_reverse_endianness();
}
else
fcurve->keys = 0;
s.position_pop();
}
static void aet_modern_read_layer(aet_layer* layer,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x) {
aet_layer_header alh = {};
if (!is_x) {
layer->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset_f2(header_length));
layer->start_time = s.read_float_t_reverse_endianness();
layer->end_time = s.read_float_t_reverse_endianness();
layer->offset_time = s.read_float_t_reverse_endianness();
layer->time_scale = s.read_float_t_reverse_endianness();
*(uint16_t*)&layer->flags = s.read_uint16_t_reverse_endianness();
layer->quality = (aet_layer_quality)s.read_uint8_t();
layer->item_type = (aet_item_type)s.read_uint8_t();
if (layer->item_type == AET_ITEM_TYPE_VIDEO
|| layer->item_type == AET_ITEM_TYPE_COMPOSITION)
layer->item.none = (void*)(size_t)s.read_offset_f2(header_length);
else
s.read_offset_f2(header_length);
layer->parent = (const aet_layer*)(size_t)s.read_offset_f2(header_length);
layer->markers_count = s.read_uint32_t_reverse_endianness();
alh.markers_offset = s.read_offset_f2(header_length);
alh.video_offset = s.read_offset_f2(header_length);
alh.audio_offset = s.read_offset_f2(header_length);
}
else {
layer->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset_x());
layer->start_time = s.read_float_t_reverse_endianness();
layer->end_time = s.read_float_t_reverse_endianness();
layer->offset_time = s.read_float_t_reverse_endianness();
layer->time_scale = s.read_float_t_reverse_endianness();
*(uint16_t*)&layer->flags = s.read_uint16_t_reverse_endianness();
layer->quality = (aet_layer_quality)s.read_uint8_t();
layer->item_type = (aet_item_type)s.read_uint8_t();
if (layer->item_type == AET_ITEM_TYPE_VIDEO
|| layer->item_type == AET_ITEM_TYPE_COMPOSITION)
layer->item.none = (void*)s.read_offset_x();
else
s.read_offset_x();
layer->parent = (const aet_layer*)s.read_offset_x();
layer->markers_count = s.read_uint32_t_reverse_endianness();
alh.markers_offset = s.read_offset_x();
alh.video_offset = s.read_offset_x();
alh.audio_offset = s.read_offset_x();
}
if (alh.markers_offset) {
aet_marker* marker = alloc->allocate<aet_marker>(layer->markers_count);
layer->markers = marker;
s.position_push(alh.markers_offset, SEEK_SET);
for (uint32_t i = layer->markers_count; i; i--, marker++)
aet_modern_read_marker(marker, alloc, s, header_length, is_x);
s.position_pop();
}
else
layer->audio = 0;
layer->video = aet_modern_read_layer_video(alloc, s, alh.video_offset, header_length, is_x);
layer->audio = aet_modern_read_layer_audio(alloc, s, alh.audio_offset, header_length, is_x);
}
static aet_layer_audio* aet_modern_read_layer_audio(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x) {
if (!offset)
return 0;
aet_layer_audio* layer_audio = alloc->allocate<aet_layer_audio>();
s.position_push(offset, SEEK_SET);
aet_modern_read_fcurve(&layer_audio->volume_l, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_audio->volume_r, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_audio->pan_l, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_audio->pan_r, alloc, s, header_length, is_x);
s.position_pop();
return layer_audio;
}
static aet_layer_video* aet_modern_read_layer_video(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x) {
if (!offset)
return 0;
aet_layer_video* layer_video = alloc->allocate<aet_layer_video>();
s.position_push(offset, SEEK_SET);
layer_video->transfer_mode.mode = (aet_blend_mode)s.read_uint8_t();
layer_video->transfer_mode.flag = s.read_uint8_t();
layer_video->transfer_mode.matte = s.read_uint8_t();
s.read_uint8_t();
if (is_x)
s.read_uint32_t();
aet_modern_read_fcurve(&layer_video->anchor_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->anchor_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->pos_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->pos_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->rot_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->scale_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->scale_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video->opacity, alloc, s, header_length, is_x);
layer_video->_3d = aet_modern_read_layer_video_3d(alloc,
s, s.read_offset(header_length, is_x), header_length, is_x);
s.position_pop();
return layer_video;
}
static aet_layer_video_3d* aet_modern_read_layer_video_3d(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x) {
if (!offset)
return 0;
aet_layer_video_3d* layer_video_3d = alloc->allocate<aet_layer_video_3d>();
s.position_push(offset, SEEK_SET);
aet_modern_read_fcurve(&layer_video_3d->anchor_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->pos_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->dir_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->dir_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->dir_z, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->rot_x, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->rot_y, alloc, s, header_length, is_x);
aet_modern_read_fcurve(&layer_video_3d->scale_z, alloc, s, header_length, is_x);
s.position_pop();
return layer_video_3d;
}
static void aet_modern_read_marker(aet_marker* marker,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x) {
marker->time = s.read_float_t_reverse_endianness();
marker->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset(header_length, is_x));
}
static aet_scene* aet_modern_read_scene(prj::shared_ptr<prj::stack_allocator> alloc,
stream& s, int64_t offset,
uint32_t header_length, bool is_x,
std::map<int64_t, aet_layer*>& layers, std::map<int64_t, aet_item>& items) {
if (!offset)
return 0;
aet_scene_header ash = {};
aet_scene* scene = alloc->allocate<aet_scene>();
s.position_push(offset, SEEK_SET);
if (!is_x) {
scene->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset_f2(header_length));
scene->start_time = s.read_float_t_reverse_endianness();
scene->end_time = s.read_float_t_reverse_endianness();
scene->fps = s.read_float_t_reverse_endianness();
scene->color[0] = s.read_uint8_t();
scene->color[1] = s.read_uint8_t();
scene->color[2] = s.read_uint8_t();
s.read_uint8_t();
scene->width = s.read_uint32_t_reverse_endianness();
scene->height = s.read_uint32_t_reverse_endianness();
ash.camera_offset = s.read_offset_f2(header_length);
scene->comp_count = s.read_uint32_t_reverse_endianness();
ash.comp_offset = s.read_offset_f2(header_length);
scene->video_count = s.read_uint32_t_reverse_endianness();
ash.video_offset = s.read_offset_f2(header_length);
scene->audio_count = s.read_uint32_t_reverse_endianness();
ash.audio_offset = s.read_offset_f2(header_length);
}
else {
scene->name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset_x());
scene->start_time = s.read_float_t_reverse_endianness();
scene->end_time = s.read_float_t_reverse_endianness();
scene->fps = s.read_float_t_reverse_endianness();
scene->color[0] = s.read_uint8_t();
scene->color[1] = s.read_uint8_t();
scene->color[2] = s.read_uint8_t();
s.read_uint8_t();
scene->width = s.read_uint32_t_reverse_endianness();
scene->height = s.read_uint32_t_reverse_endianness();
ash.camera_offset = s.read_offset_x();
scene->comp_count = s.read_uint32_t_reverse_endianness();
ash.comp_offset = s.read_offset_x();
scene->video_count = s.read_uint32_t_reverse_endianness();
ash.video_offset = s.read_offset_x();
scene->audio_count = s.read_uint32_t_reverse_endianness();
ash.audio_offset = s.read_offset_x();
}
s.position_pop();
scene->camera = aet_modern_read_camera(alloc, s, ash.camera_offset, header_length, is_x);
if (ash.comp_offset) {
aet_comp* comp = alloc->allocate<aet_comp>(scene->comp_count);
scene->comp = comp;
s.position_push(ash.comp_offset, SEEK_SET);
for (uint32_t i = scene->comp_count; i; i--, comp++)
aet_modern_read_comp(comp, alloc, s, header_length, is_x, layers, items);
s.position_pop();
}
else
scene->comp = 0;
if (ash.video_offset) {
aet_video* video = alloc->allocate<aet_video>(scene->video_count);
scene->video = video;
s.position_push(ash.video_offset, SEEK_SET);
for (uint32_t i = scene->video_count; i; i--, video++)
aet_modern_read_video(video, alloc, s, header_length, is_x, items);
s.position_pop();
}
else
scene->video = 0;
if (ash.audio_offset) {
aet_audio* audio = alloc->allocate<aet_audio>(scene->audio_count);
scene->audio = audio;
s.position_push(ash.audio_offset, SEEK_SET);
for (uint32_t i = scene->audio_count; i; i--, audio++)
aet_modern_read_audio(audio, alloc, s, header_length, is_x);
s.position_pop();
}
else
scene->audio = 0;
return scene;
}
static void aet_modern_read_video(aet_video* video,
prj::shared_ptr<prj::stack_allocator> alloc, stream& s,
uint32_t header_length, bool is_x,
std::map<int64_t, aet_item>& items) {
items.insert_or_assign(s.get_position(), video);
video->color[0] = s.read_uint8_t();
video->color[1] = s.read_uint8_t();
video->color[2] = s.read_uint8_t();
s.read_uint8_t();
video->width = s.read_uint16_t_reverse_endianness();
video->height = s.read_uint16_t_reverse_endianness();
video->fpf = s.read_float_t_reverse_endianness();
video->sources_count = s.read_uint32_t_reverse_endianness();
int64_t sources_offset = s.read_offset(header_length, is_x);
if (sources_offset) {
aet_video_src* source = alloc->allocate<aet_video_src>(video->sources_count);
video->sources = source;
s.position_push(sources_offset, SEEK_SET);
if (!is_x)
for (uint32_t i = video->sources_count; i; i--, source++) {
source->sprite_name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset_f2(header_length));
source->sprite_index = s.read_int32_t();
}
else
for (uint32_t i = video->sources_count; i; i--, source++) {
source->sprite_name = aet_read_utf8_string_null_terminated_offset(
alloc, s, s.read_offset_x());
source->sprite_index = s.read_int32_t();
}
s.position_pop();
}
else
video->sources = 0;
}
static void aet_comp_set_item_parent(const aet_comp* comp,
std::map<int64_t, aet_layer*>& layers, std::map<int64_t, aet_item>& items) {
aet_layer* layer = (aet_layer*)comp->layers;
for (uint32_t i = comp->layers_count; i; i--, layer++) {
if (layer->item_type == AET_ITEM_TYPE_VIDEO
|| layer->item_type == AET_ITEM_TYPE_COMPOSITION) {
int64_t item_offset = (int64_t)layer->item.none;
layer->item.none = 0;
if (item_offset) {
auto elem = items.find(item_offset);
if (elem != items.end())
layer->item = elem->second;
}
}
int64_t parent_offset = (int64_t)layer->parent;
layer->parent = 0;
if (parent_offset) {
auto elem = layers.find(parent_offset);
if (elem != layers.end())
layer->parent = elem->second;
}
}
}
inline static const char* aet_move_data_string(const char* str,
prj::shared_ptr<prj::stack_allocator>& alloc) {
if (str)
return alloc->allocate<char>(str, utf8_length(str) + 1);
return 0;
}
inline static const char* aet_read_utf8_string_null_terminated_offset(
prj::shared_ptr<prj::stack_allocator>& alloc, stream& s, int64_t offset) {
size_t len = s.read_utf8_string_null_terminated_offset_length(offset);
char* str = alloc->allocate<char>(len + 1);
s.position_push(offset, SEEK_SET);
s.read(str, len);
s.position_pop();
str[len] = 0;
return str;
}