Files
korenkonder_ReDIVA/src/CRE/light_param.cpp
T

616 lines
20 KiB
C++

/*
by korenkonder
GitHub/GitLab: korenkonder
*/
#include "light_param.hpp"
#include "../KKdLib/hash.hpp"
#include "../KKdLib/str_utils.hpp"
#include "render_context.hpp"
static void light_param_data_get_stage_name_string(std::string* str, int32_t stage_index);
static int32_t light_param_data_load_file(light_param_data* a1, p_file_handler* a2);
static void light_param_data_load_file_pv_cut(std::map<int32_t, light_param_data>* tree,
farc* f, light_param_data* default_light_param, int32_t pv_id);
static void light_param_data_load_pv_cut_file_names(light_param_data* light_param, int32_t cut_id, std::string* name);
static void light_param_data_load_stage_file_names(light_param_data* light_param, std::string* name);
static void light_param_data_set(light_param_data* a1, light_param_data_storage* storage);
static void light_param_storage_free_file_handlers(light_param_data_storage* a1);
static void light_param_storage_load_stages(light_param_data_storage* a1, std::vector<int32_t>* stage_indices);
static void light_param_storage_load_stages(light_param_data_storage* a1,
std::vector<uint32_t>* stage_hashes, stage_database* stage_data);
static int32_t light_param_storage_load_file(light_param_data_storage* a1, bool read_now);
static void light_param_storage_reset(light_param_data_storage* a1);
static void light_param_storage_set_default_light_param(light_param_data_storage* a1, int32_t stage_index);
static void light_param_storage_set_pv_cut(light_param_data_storage* a1,
std::map<int32_t, light_param_data>::iterator* elem, int32_t cut_id);
static void light_param_storage_set_stage(light_param_data_storage* a1,
std::map<int32_t, light_param_data>::iterator* elem, int32_t stage_index);
light_param_data_storage* light_param_data_storage_data;
extern render_context* rctx_ptr;
light_param_data::light_param_data() : pv() {
}
light_param_data::~light_param_data() {
}
int32_t light_param_data_load_file() {
return light_param_storage_load_file(light_param_data_storage_data, false);
}
light_param_data_storage::light_param_data_storage() : textures(),
state(), stage_index(), default_stage_node(), pv_id() {
}
light_param_data_storage::~light_param_data_storage() {
}
void light_param_data_storage::load(data_struct* data) {
glGenTextures(5, light_param_data_storage_data->textures);
light_param_storage_data_load_stage(0);
while (light_param_storage_load_file(light_param_data_storage_data, true));
light_param_storage_set_default_light_param(light_param_data_storage_data, 0);
}
void light_param_data_storage::unload() {
glDeleteTextures(5, light_param_data_storage_data->textures);
}
void light_param_storage_data_init() {
light_param_data_storage_data = new light_param_data_storage;
}
void light_param_storage_data_free_file_handlers() {
light_param_storage_free_file_handlers(light_param_data_storage_data);
}
int32_t light_param_storage_data_load_file() {
return light_param_storage_load_file(light_param_data_storage_data, false);
}
void light_param_storage_data_load_stage(int32_t stage_index) {
std::vector<int32_t> stage_indices = { stage_index };
light_param_storage_load_stages(light_param_data_storage_data, &stage_indices);
}
void light_param_storage_data_load_stage(
uint32_t stage_hash, stage_database* stage_data) {
std::vector<uint32_t> stage_hashes = { stage_hash };
light_param_storage_load_stages(light_param_data_storage_data, &stage_hashes, stage_data);
}
void light_param_storage_data_load_stages(std::vector<int32_t>* stage_indices) {
light_param_storage_load_stages(light_param_data_storage_data, stage_indices);
}
void light_param_storage_data_load_stages(
std::vector<uint32_t>* stage_hashes, stage_database* stage_data) {
light_param_storage_load_stages(light_param_data_storage_data, stage_hashes, stage_data);
}
void light_param_storage_data_reset() {
light_param_storage_reset(light_param_data_storage_data);
}
void light_param_storage_data_set_default_light_param() {
light_param_data_set(&light_param_data_storage_data->default_light_param, light_param_data_storage_data);
}
void light_param_storage_data_set_pv_id(int32_t pv_id) {
light_param_data_storage_data->pv_id = pv_id;
}
void light_param_storage_data_set_pv_cut(int32_t cut_id) {
std::map<int32_t, light_param_data>::iterator elem;
light_param_storage_set_pv_cut(light_param_data_storage_data, &elem, cut_id);
}
void light_param_storage_data_set_stage(int32_t stage_id) {
std::map<int32_t, light_param_data>::iterator elem;
light_param_storage_set_stage(light_param_data_storage_data, &elem, stage_id);
}
void light_param_storage_data_free() {
delete light_param_data_storage_data;
}
static int32_t light_param_storage_load_file(light_param_data_storage* a1, bool read_now) {
if (a1->state == 1) {
light_param_data* light_param = &a1->stage_light_param_iterator->second;
std::string* paths = light_param->paths;
std::string* files = light_param->files;
for (int32_t i = 0; i < 6; i++)
a1->file_handlers[i].read_file(rctx_ptr->data, paths[i].c_str(), files[i].c_str());
a1->state = 2;
return 1;
}
else if (a1->state == 2) {
for (int32_t i = 0; i < 6; ++i)
if (read_now)
a1->file_handlers[i].read_now();
else if (a1->file_handlers[i].check_not_ready())
return 1;
int32_t load_error = light_param_data_load_file(&a1->stage_light_param_iterator->second, a1->file_handlers);
for (int32_t i = 0; i < 6; i++)
a1->file_handlers[i].free_data();
a1->stage_light_param_iterator++;
if (a1->stage_light_param_iterator == a1->stage.end())
a1->state = 3;
else
a1->state = 1;
if (load_error) {
for (int32_t i = 0; i < 6; i++)
a1->file_handlers[i].call_free_func_free_data();
a1->state = 0;
return 0;
}
return 1;
}
else if (a1->state == 3) {
char buf[0x100];
sprintf_s(buf, sizeof(buf), "light_pv%03d.farc", a1->pv_id);
if (a1->farc_file_handler.read_file(rctx_ptr->data, "rom/light_param/", buf))
a1->state = 4;
else {
a1->farc_file_handler.free_data();
a1->state = 0;
return 0;
}
return 1;
}
else if (a1->state == 4) {
if (read_now)
a1->farc_file_handler.read_now();
else if (a1->farc_file_handler.check_not_ready())
return 1;
farc a1a;
a1a.read(a1->farc_file_handler.get_data(), a1->farc_file_handler.get_size(), true);
if (a1a.files.size())
light_param_data_load_file_pv_cut(&a1->pv_cut, &a1a, &a1->default_light_param, a1->pv_id);
a1->state = 0;
return 0;
}
return 0;
}
static void light_param_data_get_stage_name_string(std::string* str, int32_t stage_index) {
str->clear();
str->shrink_to_fit();
stage_database* data = &rctx_ptr->data->data_ft.stage_data;
const char* stage_name = stage_index < data->stage_data.size()
? data->stage_data[stage_index].name.c_str() : 0;
if (!stage_name)
return;
size_t length = utf8_length(stage_name);
if (length <= 3)
return;
stage_name += 3;
length -= 3;
char* s = force_malloc_s(char, length + 1);
for (size_t i = 0; i < length; i++) {
char c = stage_name[i];
if (c == '_') {
length = i;
break;
}
if (c > 0x40 && c < 0x5B)
c += 0x20;
s[i] = c;
}
s[length] = '\0';
*str = std::string(s, length);
free(s);
}
static void light_param_data_get_stage_name_string(std::string* str,
uint32_t stage_hash, stage_database* stage_data) {
str->clear();
str->shrink_to_fit();
const char* stage_name = 0;
for (stage_data_modern& i : stage_data->stage_modern) {
if (i.hash != stage_hash)
continue;
stage_name = i.name.c_str();
break;
}
if (!stage_name)
return;
size_t length = utf8_length(stage_name);
if (length <= 3)
return;
stage_name += 3;
length -= 3;
char* s = force_malloc_s(char, length + 1);
for (size_t i = 0; i < length; i++) {
char c = stage_name[i];
if (c == '_') {
length = i;
break;
}
if (c > 0x40 && c < 0x5B)
c += 0x20;
s[i] = c;
}
s[length] = '\0';
*str = std::string(s, length);
free(s);
}
static int32_t light_param_data_load_file(light_param_data* a1, p_file_handler* a2) {
if (a2[0].ptr) {
a1->ibl = light_param_ibl();
a1->ibl.read(a2[0].get_data(), a2[0].get_size());
}
if (a2[1].ptr) {
a1->light = light_param_light();
a1->light.read(a2[1].get_data(), a2[1].get_size());
}
if (a2[2].ptr) {
a1->fog = light_param_fog();
a1->fog.read(a2[2].get_data(), a2[2].get_size());
}
if (a2[3].ptr) {
a1->glow = light_param_glow();
a1->glow.read(a2[3].get_data(), a2[3].get_size());
}
if (a2[4].ptr) {
a1->wind = light_param_wind();
a1->wind.read(a2[4].get_data(), a2[4].get_size());
}
if (a2[5].ptr) {
a1->face = light_param_face();
a1->face.read(a2[5].get_data(), a2[5].get_size());
}
return !(a1->ibl.ready | a1->light.ready | a1->fog.ready
| a1->glow.ready | a1->wind.ready | a1->face.ready) ? 1 : 0;
}
static void light_param_data_load_file_pv_cut(std::map<int32_t, light_param_data>* tree,
farc* f, light_param_data* default_light_param, int32_t pv_id) {
char buf[0x100];
sprintf_s(buf, sizeof(buf), "pv%03d", pv_id);
std::string pv_str = buf;
for (farc_file& i : f->files) {
const char* name = i.name.c_str();
size_t name_len = i.name.size();
int32_t type = 0;
if (!str_utils_compare_length(name, name_len, "light", 5) && name_len > 6 && name[5] == '_') {
type = 1;
name += 6;
name_len -= 6;
}
else if (!str_utils_compare_length(name, name_len, "fog", 3) && name_len > 4 && name[3] == '_') {
type = 2;
name += 4;
name_len -= 4;
}
else if (!str_utils_compare_length(name, name_len, "glow", 4) && name_len > 5 && name[4] == '_') {
type = 3;
name += 5;
name_len -= 5;
}
else if (!str_utils_compare_length(name, name_len, "wind", 4) && name_len > 5 && name[4] == '_') {
type = 4;
name += 5;
name_len -= 5;
}
else if (!str_utils_compare_length(name, name_len, "face", 4) && name_len > 5 && name[4] == '_') {
type = 5;
name += 5;
name_len -= 5;
}
else
continue;
char* b = buf;
const char* n = name;
size_t s = 0;
bool ret = false;
do {
char c = *n++;
if (c == '_' || c == '.')
break;
else if (!c) {
ret = true;
break;
}
*b++ = c;
s++;
} while (*n);
if (ret)
continue;
*b++ = 0;
b = buf;
if (s < 5 || b[0] != 'p' || b[1] != 'v' || b[2] < '0' && b[2] > '9'
|| b[3] < '0' && b[3] > '9' || b[4] < '0' && b[4] > '9')
continue;
int32_t pv_id = (b[2] - '0') * 100;
pv_id += (b[3] - '0') * 10;
pv_id += b[4] - '0';
s = 0;
ret = false;
do {
char c = *n++;
if (c == '_' || c == '.')
break;
else if (!c) {
ret = true;
break;
}
*b++ = c;
s++;
} while (*n);
if (ret)
continue;
*b++ = 0;
b = buf;
if (s != 4 || b[0] != 'c' || b[1] < '0' && b[1] > '9'
|| b[2] < '0' && b[2] > '9' || b[3] < '0' && b[3] > '9')
continue;
int32_t cut_id = (b[1] - '0') * 100;
cut_id += (b[2] - '0') * 10;
cut_id += b[3] - '0';
std::map<int32_t, light_param_data>::iterator elem = tree->find(cut_id);
light_param_data* light_param;
if (elem != tree->end())
light_param = &elem->second;
else {
light_param = &tree->insert({ cut_id, *default_light_param }).first->second;
light_param->ibl.ready = false;
light_param->light.ready = false;
light_param->fog.ready = false;
light_param->glow.ready = false;
light_param->wind.ready = false;
light_param->face.ready = false;
light_param->pv = true;
light_param_data_load_pv_cut_file_names(light_param, cut_id, &pv_str);
}
if (type == 1) {
light_param->light = light_param_light();
light_param->light.read(i.data, i.size);
}
else if (type == 2) {
light_param->fog = light_param_fog();
light_param->fog.read(i.data, i.size);
}
else if (type == 3) {
light_param->glow = light_param_glow();
light_param->glow.read(i.data, i.size);
}
else if (type == 4) {
light_param->wind = light_param_wind();
light_param->wind.read(i.data, i.size);
}
else if (type == 5) {
light_param->face = light_param_face();
light_param->face.read(i.data, i.size);
}
}
}
static void light_param_data_load_pv_cut_file_names(light_param_data* light_param, int32_t cut_id, std::string* name) {
char buf[0x100];
sprintf_s(buf, sizeof(buf), "%s_c%03d", name->c_str(), cut_id);
light_param->name = buf;
sprintf_s(buf, sizeof(buf), "%s.ibl", light_param->name.c_str());
light_param->paths[0] = "rom/ibl/";
light_param->files[0] = buf;
sprintf_s(buf, sizeof(buf), "light_%s.txt", light_param->name.c_str());
light_param->paths[1] = "rom/light_param/";
light_param->files[1] = buf;
sprintf_s(buf, sizeof(buf), "fog_%s.txt", light_param->name.c_str());
light_param->paths[2] = "rom/light_param/";
light_param->files[2] = buf;
sprintf_s(buf, sizeof(buf), "glow_%s.txt", light_param->name.c_str());
light_param->paths[3] = "rom/light_param/";
light_param->files[3] = buf;
sprintf_s(buf, sizeof(buf), "wind_%s.txt", light_param->name.c_str());
light_param->paths[4] = "rom/light_param/";
light_param->files[4] = buf;
sprintf_s(buf, sizeof(buf), "face_%s.txt", light_param->name.c_str());
light_param->paths[5] = "rom/light_param/";
light_param->files[5] = buf;
}
void light_param_data_load_stage_file_names(light_param_data* light_param, std::string* name) {
char buf[0x100];
light_param->name = *name;
sprintf_s(buf, sizeof(buf), "%s.ibl", light_param->name.c_str());
light_param->paths[0] = "rom/ibl/";
light_param->files[0] = buf;
sprintf_s(buf, sizeof(buf), "light_%s.txt", light_param->name.c_str());
light_param->paths[1] = "rom/light_param/";
light_param->files[1] = buf;
sprintf_s(buf, sizeof(buf), "fog_%s.txt", light_param->name.c_str());
light_param->paths[2] = "rom/light_param/";
light_param->files[2] = buf;
sprintf_s(buf, sizeof(buf), "glow_%s.txt", light_param->name.c_str());
light_param->paths[3] = "rom/light_param/";
light_param->files[3] = buf;
sprintf_s(buf, sizeof(buf), "wind_%s.txt", light_param->name.c_str());
light_param->paths[4] = "rom/light_param/";
light_param->files[4] = buf;
sprintf_s(buf, sizeof(buf), "face_%s.txt", light_param->name.c_str());
light_param->paths[5] = "rom/light_param/";
light_param->files[5] = buf;
}
static void light_param_storage_free_file_handlers(light_param_data_storage* a1) {
for (int32_t i = 0; i < 6; ++i)
a1->file_handlers[i].free_data();
a1->farc_file_handler.free_data();
}
static void light_param_storage_load_stages(light_param_data_storage* a1, std::vector<int32_t>* stage_indices) {
if (a1->state)
for (int32_t i = 0; i < 6; ++i)
if (a1->file_handlers[i].check_not_ready())
a1->file_handlers[i].call_free_func_free_data();
a1->stage_index = -1;
a1->stage.clear();
for (int32_t& i : *stage_indices) {
std::string name;
light_param_data_get_stage_name_string(&name, i);
if (!name.size())
continue;
std::map<int32_t, light_param_data>::iterator elem = a1->stage.find(i);
light_param_data* light_param;
if (elem != a1->stage.end())
light_param = &elem->second;
else
light_param = &a1->stage.insert({ i, a1->default_light_param }).first->second;
light_param_data_load_stage_file_names(light_param, &name);
light_param->pv = false;
}
a1->stage_light_param_iterator = a1->stage.begin();
a1->state = a1->stage.size() ? 1 : 0;
}
static void light_param_storage_load_stages(light_param_data_storage* a1,
std::vector<uint32_t>* stage_hashes, stage_database* stage_data) {
if (a1->state)
for (int32_t i = 0; i < 6; ++i)
if (a1->file_handlers[i].check_not_ready())
a1->file_handlers[i].call_free_func_free_data();
a1->stage_index = -1;
a1->stage.clear();
for (uint32_t& i : *stage_hashes) {
std::string name;
light_param_data_get_stage_name_string(&name, i, stage_data);
if (!name.size())
continue;
if (!str_utils_compare_length(name.c_str(), name.size(), "pv0", 3))
name[2] = '8';
std::map<int32_t, light_param_data>::iterator elem = a1->stage.find(i);
light_param_data* light_param;
if (elem != a1->stage.end())
light_param = &elem->second;
else
light_param = &a1->stage.insert({ i, a1->default_light_param }).first->second;
light_param_data_load_stage_file_names(light_param, &name);
light_param->pv = false;
}
a1->stage_light_param_iterator = a1->stage.begin();
a1->state = a1->stage.size() ? 1 : 0;
}
static void light_param_storage_reset(light_param_data_storage* a1) {
a1->stage.clear();
a1->pv_cut.clear();
a1->pv_id = 0;
for (p_file_handler& i : a1->file_handlers)
i.free_data();
a1->farc_file_handler.free_data();
}
static void light_param_storage_set_default_light_param(light_param_data_storage* a1, int32_t stage_index) {
std::map<int32_t, light_param_data>::iterator elem;
light_param_storage_set_stage(a1, &elem, stage_index);
if (elem != a1->stage.end())
a1->default_light_param = elem->second;
}
static void light_param_data_set(light_param_data* a1, light_param_data_storage* storage) {
if (!a1->pv || a1->light.ready)
rctx_ptr->light_param_data_light_set(&a1->light);
if (!a1->pv || a1->fog.ready)
rctx_ptr->light_param_data_fog_set(&a1->fog);
if (!a1->pv || a1->glow.ready)
rctx_ptr->light_param_data_glow_set(&a1->glow);
if (!a1->pv || a1->ibl.ready)
rctx_ptr->light_param_data_ibl_set(&a1->ibl, storage);
if (!a1->pv) {
rctx_ptr->light_param_data_wind_set(&a1->wind);
if (a1->face.ready)
rctx_ptr->light_param_data_face_set(&a1->face);
}
}
static void light_param_storage_set_pv_cut(light_param_data_storage* a1,
std::map<int32_t, light_param_data>::iterator* elem, int32_t cut_id) {
*elem = a1->pv_cut.find(cut_id);
if (*elem != a1->pv_cut.end())
light_param_data_set(&(*elem)->second, a1);
}
static void light_param_storage_set_stage(light_param_data_storage* a1,
std::map<int32_t, light_param_data>::iterator* elem, int32_t stage_index) {
*elem = a1->stage.find(stage_index);
if (*elem != a1->stage.end()) {
a1->stage_index = stage_index;
a1->name = (*elem)->second.name;
light_param_data_set(&(*elem)->second, a1);
}
}