sdvx: option to disable Live2D (#777)

## Link to GitHub Issue or related Pull Request, if one exists
n/a

## Description of change
Adds an option to disable Live2D. Can be disabled everywhere, or just
during a song.

## Testing
Tested EG final and recent Nabla.
This commit is contained in:
bicarus
2026-06-27 02:34:19 -07:00
committed by GitHub
parent db7defff5a
commit 3fdb369128
11 changed files with 378 additions and 2 deletions
+2
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@@ -408,6 +408,7 @@ set(SOURCE_FILES ${SOURCE_FILES}
games/iidx/mf_wrappers.cpp games/iidx/mf_wrappers.cpp
games/sdvx/bi2x_hook.cpp games/sdvx/bi2x_hook.cpp
games/sdvx/sdvx.cpp games/sdvx/sdvx.cpp
games/sdvx/sdvx_live2d.cpp
games/sdvx/io.cpp games/sdvx/io.cpp
games/sdvx/camera.cpp games/sdvx/camera.cpp
games/jb/jb.cpp games/jb/jb.cpp
@@ -529,6 +530,7 @@ set(SOURCE_FILES ${SOURCE_FILES}
hooks/graphics/nvenc_hook.cpp hooks/graphics/nvenc_hook.cpp
hooks/graphics/backends/d3d9/d3d9_backend.cpp hooks/graphics/backends/d3d9/d3d9_backend.cpp
hooks/graphics/backends/d3d9/d3d9_device.cpp hooks/graphics/backends/d3d9/d3d9_device.cpp
hooks/graphics/backends/d3d9/d3d9_live2d.cpp
hooks/graphics/backends/d3d9/d3d9_fake_swapchain.cpp hooks/graphics/backends/d3d9/d3d9_fake_swapchain.cpp
hooks/graphics/backends/d3d9/d3d9_swapchain.cpp hooks/graphics/backends/d3d9/d3d9_swapchain.cpp
hooks/graphics/backends/d3d9/d3d9_texture.cpp hooks/graphics/backends/d3d9/d3d9_texture.cpp
+72
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@@ -0,0 +1,72 @@
#include "sdvx_live2d.h"
// only the Live2D-capable SDVX versions are 64-bit, so the whole feature is
// compiled out of 32-bit builds.
#ifdef SPICE64
#include <string>
#include "hooks/graphics/graphics.h"
#include "launcher/logger.h"
#include "util/logging.h"
namespace games::sdvx {
// Live2D in-game scene detection (for the -sdvxnolive2d "ingame" option).
//
// the game logs scene transitions as "I:Attach: in <SCENE>" / "I:Detach: in
// <SCENE>". several scenes correspond to in-song gameplay (with the heavy
// Live2D rendering); we watch those log lines and keep the shared flag
// the d3d9 backend reads up to date. the hook never alters the log output
// (always returns false).
static bool live2d_scene_log_hook(
void *user, const std::string &data, logger::Style style, std::string &out) {
// any of these scenes counts as in-song gameplay (different play modes)
static const char *const gameplay_scenes[] = {
"in ALTERNATIVE_GAME_SCENE",
"in MEGAMIX_GAME_SCENE",
"in MEGAMIX_BATTLE",
"in BATTLE_GAME_SCENE",
"in AUTOMATION_GAME_SCENE",
"in ARENA_GAME_SCENE",
};
bool in_gameplay_scene = false;
for (const auto *scene : gameplay_scenes) {
if (data.find(scene) != std::string::npos) {
in_gameplay_scene = true;
break;
}
}
if (!in_gameplay_scene) {
return false;
}
// note: log messages here must NOT contain any matched scene token, else
// this hook would re-enter itself when the message is pushed.
if (data.find("I:Attach: in ") != std::string::npos) {
if (!GRAPHICS_SDVX_LIVE2D_IN_GAMEPLAY.exchange(true, std::memory_order_relaxed)) {
log_info("sdvx", "Live2D skip: entering gameplay");
}
} else if (data.find("I:Detach: in ") != std::string::npos) {
if (GRAPHICS_SDVX_LIVE2D_IN_GAMEPLAY.exchange(false, std::memory_order_relaxed)) {
log_info("sdvx", "Live2D skip: leaving gameplay");
}
}
return false;
}
void live2d_scene_detection_init() {
static bool installed = false;
if (installed) {
return;
}
installed = true;
// the logger's hook list is a persistent static, so registering here is
// safe even though this runs before logger::start(). we intentionally do
// NOT log a confirmation now: at this point the log file isn't open yet
// and the message would be dropped. the entering/leaving-gameplay lines
// above provide runtime confirmation once the logger is running.
logger::hook_add(live2d_scene_log_hook, nullptr);
}
}
#endif // SPICE64
+14
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@@ -0,0 +1,14 @@
#pragma once
namespace games::sdvx {
#ifdef SPICE64
// installs the Live2D in-game scene-detection log hook used by the
// -sdvxnolive2d "ingame" option. does not require the SDVX game module to
// be attached, so it can be enabled purely from the launcher option.
// only the Live2D-capable SDVX versions are 64-bit, so this is compiled out
// of 32-bit builds.
void live2d_scene_detection_init();
#endif
}
@@ -1,7 +1,11 @@
#include "d3d9_device.h" #include "d3d9_device.h"
#include <algorithm>
#include <cassert> #include <cassert>
#include <climits>
#include <mutex> #include <mutex>
#include <unordered_map>
#include <vector>
#include "avs/game.h" #include "avs/game.h"
#include "games/gitadora/gitadora.h" #include "games/gitadora/gitadora.h"
@@ -12,6 +16,7 @@
#include "cfg/screen_resize.h" #include "cfg/screen_resize.h"
#include "d3d9_backend.h" #include "d3d9_backend.h"
#include "d3d9_live2d.h"
#include "d3d9_texture.h" #include "d3d9_texture.h"
#ifndef SPICE64 #ifndef SPICE64
@@ -1301,6 +1306,9 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::DrawPrimitive(
UINT PrimitiveCount) UINT PrimitiveCount)
{ {
WRAP_DEBUG; WRAP_DEBUG;
if (d3d9_live2d::should_skip_draw()) [[unlikely]] {
return D3D_OK;
}
CHECK_RESULT(pReal->DrawPrimitive(PrimitiveType, StartVertex, PrimitiveCount)); CHECK_RESULT(pReal->DrawPrimitive(PrimitiveType, StartVertex, PrimitiveCount));
} }
@@ -1313,6 +1321,9 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::DrawIndexedPrimitive(
UINT PrimitiveCount) UINT PrimitiveCount)
{ {
WRAP_DEBUG; WRAP_DEBUG;
if (d3d9_live2d::should_skip_draw()) [[unlikely]] {
return D3D_OK;
}
CHECK_RESULT(pReal->DrawIndexedPrimitive( CHECK_RESULT(pReal->DrawIndexedPrimitive(
PrimitiveType, BaseVertexIndex, PrimitiveType, BaseVertexIndex,
MinVertexIndex, NumVertices, MinVertexIndex, NumVertices,
@@ -1328,6 +1339,9 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::DrawPrimitiveUP(
WRAP_DEBUG_FMT("DrawPrimitiveUP({}, {}, {}, {})", WRAP_DEBUG_FMT("DrawPrimitiveUP({}, {}, {}, {})",
PrimitiveType, PrimitiveCount, PrimitiveType, PrimitiveCount,
fmt::ptr(pVertexStreamZeroData), VertexStreamZeroStride); fmt::ptr(pVertexStreamZeroData), VertexStreamZeroStride);
if (d3d9_live2d::should_skip_draw()) [[unlikely]] {
return D3D_OK;
}
CHECK_RESULT(pReal->DrawPrimitiveUP( CHECK_RESULT(pReal->DrawPrimitiveUP(
PrimitiveType, PrimitiveCount, PrimitiveType, PrimitiveCount,
pVertexStreamZeroData, VertexStreamZeroStride)); pVertexStreamZeroData, VertexStreamZeroStride));
@@ -1344,6 +1358,9 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::DrawIndexedPrimitiveUP(
UINT VertexStreamZeroStride) UINT VertexStreamZeroStride)
{ {
WRAP_DEBUG; WRAP_DEBUG;
if (d3d9_live2d::should_skip_draw()) [[unlikely]] {
return D3D_OK;
}
CHECK_RESULT(pReal->DrawIndexedPrimitiveUP( CHECK_RESULT(pReal->DrawIndexedPrimitiveUP(
PrimitiveType, MinVertexIndex, NumVertices, PrimitiveCount, pIndexData, PrimitiveType, MinVertexIndex, NumVertices, PrimitiveCount, pIndexData,
IndexDataFormat, pVertexStreamZeroData, VertexStreamZeroStride)); IndexDataFormat, pVertexStreamZeroData, VertexStreamZeroStride));
@@ -1403,7 +1420,14 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::CreateVertexShader(
IDirect3DVertexShader9 **ppShader) IDirect3DVertexShader9 **ppShader)
{ {
WRAP_VERBOSE_FMT("CreateVertexShader({})", fmt::ptr(pFunction)); WRAP_VERBOSE_FMT("CreateVertexShader({})", fmt::ptr(pFunction));
CHECK_RESULT(pReal->CreateVertexShader(pFunction, ppShader)); HRESULT ret = pReal->CreateVertexShader(pFunction, ppShader);
if (SUCCEEDED(ret) && ppShader != nullptr) {
d3d9_live2d::on_create_vertex_shader(*ppShader, pFunction);
}
if (GRAPHICS_LOG_HRESULT && FAILED(ret)) [[unlikely]] {
log_warning("graphics::d3d9", "{} failed, hr={}", __FUNCTION__, FMT_HRESULT(ret));
}
return ret;
} }
HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::SetVertexShader( HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::SetVertexShader(
@@ -1411,6 +1435,8 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::SetVertexShader(
{ {
WRAP_DEBUG_FMT("SetVertexShader({})", fmt::ptr(pShader)); WRAP_DEBUG_FMT("SetVertexShader({})", fmt::ptr(pShader));
d3d9_live2d::on_set_vertex_shader(pShader);
#ifndef SPICE64 #ifndef SPICE64
// diagonal line fix // diagonal line fix
@@ -1557,13 +1583,21 @@ HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::CreatePixelShader(
IDirect3DPixelShader9 **ppShader) IDirect3DPixelShader9 **ppShader)
{ {
WRAP_VERBOSE_FMT("CreatePixelShader({})", fmt::ptr(pFunction)); WRAP_VERBOSE_FMT("CreatePixelShader({})", fmt::ptr(pFunction));
CHECK_RESULT(pReal->CreatePixelShader(pFunction, ppShader)); HRESULT ret = pReal->CreatePixelShader(pFunction, ppShader);
if (SUCCEEDED(ret) && ppShader != nullptr) {
d3d9_live2d::on_create_pixel_shader(*ppShader, pFunction);
}
if (GRAPHICS_LOG_HRESULT && FAILED(ret)) [[unlikely]] {
log_warning("graphics::d3d9", "{} failed, hr={}", __FUNCTION__, FMT_HRESULT(ret));
}
return ret;
} }
HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::SetPixelShader( HRESULT STDMETHODCALLTYPE WrappedIDirect3DDevice9::SetPixelShader(
IDirect3DPixelShader9 *pShader) IDirect3DPixelShader9 *pShader)
{ {
WRAP_DEBUG_FMT("SetPixelShader({})", fmt::ptr(pShader)); WRAP_DEBUG_FMT("SetPixelShader({})", fmt::ptr(pShader));
d3d9_live2d::on_set_pixel_shader(pShader);
CHECK_RESULT(pReal->SetPixelShader(pShader)); CHECK_RESULT(pReal->SetPixelShader(pShader));
} }
@@ -0,0 +1,144 @@
#include "d3d9_live2d.h"
// only the Live2D-capable SDVX versions are 64-bit, so the entire implementation
// is compiled out of 32-bit builds (the header supplies inline no-op stubs there).
#ifdef SPICE64
#include <cstdint>
#include <unordered_set>
#include "hooks/graphics/graphics.h"
// how the Live2D draw filtering works
// ------------------------------------
// SDVX draws its Live2D characters with a small, fixed set of pixel and
// vertex shaders. to skip those draws (and save GPU) we have to recognise them at
// the exact moment the game issues a draw call. the d3d9 device hooks feed three
// kinds of events into this module:
//
// 1. shader creation (on_create_pixel_shader / on_create_vertex_shader)
// the game compiles its shaders once at load. we can't trust the shader
// *object pointer* to identify a shader (it's just a heap address that
// varies per run and can be recycled), so instead we hash the shader's
// D3D9 *bytecode* - that fingerprint is stable across runs because the
// game ships the same shaders. if the hash matches a known Live2D shader
// we remember that object pointer in g_live2d_shaders.
//
// 2. shader binding (on_set_pixel_shader / on_set_vertex_shader)
// whenever the game binds a shader we look it up in that set once and cache
// the yes/no answer in g_cur_ps_is_live2d / g_cur_vs_is_live2d. binds happen
// far less often than draws, so this is where the lookup cost lives.
//
// 3. draw call (should_skip_draw, called from every Draw* hook)
// the per-draw question "is this a Live2D draw?" is then just reading those
// two cached bools - no hashing, no map lookups. if the skip is currently
// active (see graphics_sdvx_live2d_should_skip) and either bound shader is
// Live2D, the Draw* hook drops the call instead of forwarding it.
//
// everything is gated on the feature being enabled (mode != Off); when it's Off
// every entry point is a single predicted-not-taken branch. d3d9 rendering for a
// device is single-threaded, so none of this state needs locking.
namespace {
// shader state is tracked whenever the feature might act (mode != Off) so the
// known-shader set is populated before a song starts. when Off, every entry
// point is a single cheap branch.
bool tracking_enabled() {
return GRAPHICS_SDVX_LIVE2D_MODE != SdvxLive2dMode::Off;
}
// the set of shader objects (pixel or vertex) whose bytecode matched a known
// Live2D fingerprint. only matching shaders are stored, so this stays tiny.
std::unordered_set<void *> g_live2d_shaders;
// whether the currently-bound shaders are known Live2D shaders. cached at set
// time so the per-draw check is just two bool reads.
bool g_cur_ps_is_live2d = false;
bool g_cur_vs_is_live2d = false;
// FNV-1a 64 over a D3D9 shader token stream (ends with D3DSIO_END = 0x0000FFFF)
uint64_t bytecode_hash(const DWORD *func) {
if (func == nullptr) {
return 0;
}
const DWORD *p = func;
const DWORD *cap = func + 65536; // safety bound
while (p < cap && *p != 0x0000FFFF) {
p++;
}
const size_t n_bytes = ((size_t)(p - func) + 1) * sizeof(DWORD);
uint64_t h = 1469598103934665603ULL;
const auto *bytes = reinterpret_cast<const uint8_t *>(func);
for (size_t i = 0; i < n_bytes; i++) {
h ^= bytes[i];
h *= 1099511628211ULL;
}
return h;
}
// known SDVX Live2D shader bytecode hashes (4 pixel + 3 vertex). stable
// across runs because the game ships fixed shaders. the two sets are disjoint so
// a single shader can be classified by its own hash alone.
bool hash_is_live2d(uint64_t hash) {
switch (hash) {
case 0x75c89951817421a4ULL: // pixel: dominant model draw (~4.9M prims/120f in-song)
case 0x2d7ce428c6b4775dULL: // pixel: masked model draw
case 0x3ce00cc6111c10e7ULL: // pixel: mask generation
case 0x8bb3a2f37150ac34ULL: // pixel: mask generation (variant)
case 0xe9cf898c331e2a51ULL: // vertex
case 0x94dc84e7b7c0f437ULL: // vertex
case 0xc872937c5cc04309ULL: // vertex
return true;
}
return false;
}
// classify a shader at creation time and record it if it is Live2D. erasing on a
// miss keeps the set correct if the runtime reuses a freed shader pointer.
void classify_shader(void *shader, const DWORD *func) {
if (hash_is_live2d(bytecode_hash(func))) {
g_live2d_shaders.insert(shader);
} else {
g_live2d_shaders.erase(shader);
}
}
} // namespace
namespace d3d9_live2d {
// stage 1: fingerprint each shader as the game creates it
void on_create_vertex_shader(IDirect3DVertexShader9 *shader, const DWORD *func) {
if (tracking_enabled() && shader != nullptr) [[unlikely]] {
classify_shader(shader, func);
}
}
void on_create_pixel_shader(IDirect3DPixelShader9 *shader, const DWORD *func) {
if (tracking_enabled() && shader != nullptr) [[unlikely]] {
classify_shader(shader, func);
}
}
// stage 2: remember whether the just-bound shader is a Live2D one
void on_set_vertex_shader(IDirect3DVertexShader9 *shader) {
if (tracking_enabled()) [[unlikely]] {
g_cur_vs_is_live2d = g_live2d_shaders.count(shader) != 0;
}
}
void on_set_pixel_shader(IDirect3DPixelShader9 *shader) {
if (tracking_enabled()) [[unlikely]] {
g_cur_ps_is_live2d = g_live2d_shaders.count(shader) != 0;
}
}
// stage 3: drop the draw if the skip is active and a Live2D shader is bound
bool should_skip_draw() {
return graphics_sdvx_live2d_should_skip() && (g_cur_ps_is_live2d || g_cur_vs_is_live2d);
}
} // namespace d3d9_live2d
#endif // SPICE64
@@ -0,0 +1,44 @@
#pragma once
#include <windows.h>
#include <d3d9.h>
// SDVX Live2D draw-skip support for the D3D9 backend.
//
// SDVX renders its Live2D navigator / in-song character through a fixed set of
// shaders. when the skip is active (see graphics_sdvx_live2d_should_skip)
// the matching draw calls are dropped to save GPU. shaders are identified by a
// stable hash of their D3D9 bytecode (object pointers vary per run, the bytecode
// does not). the hashes were captured with the draw-call fingerprinting tool.
//
// every entry point is a no-op unless the feature is enabled (mode != Off), and
// d3d9 rendering for a device is single-threaded, so none of this needs locking.
namespace d3d9_live2d {
#ifdef SPICE64
// record a shader's bytecode fingerprint at creation time
void on_create_vertex_shader(IDirect3DVertexShader9 *shader, const DWORD *func);
void on_create_pixel_shader(IDirect3DPixelShader9 *shader, const DWORD *func);
// remember the currently-bound shaders
void on_set_vertex_shader(IDirect3DVertexShader9 *shader);
void on_set_pixel_shader(IDirect3DPixelShader9 *shader);
// true if the current draw call should be dropped (skip active AND the bound
// shaders identify it as SDVX Live2D)
bool should_skip_draw();
#else // !SPICE64
// only the Live2D-capable SDVX versions are 64-bit; on 32-bit every entry point
// compiles away to nothing, so the d3d9 device hooks need no #ifdefs at their
// call sites.
inline void on_create_vertex_shader(IDirect3DVertexShader9 *, const DWORD *) {}
inline void on_create_pixel_shader(IDirect3DPixelShader9 *, const DWORD *) {}
inline void on_set_vertex_shader(IDirect3DVertexShader9 *) {}
inline void on_set_pixel_shader(IDirect3DPixelShader9 *) {}
inline bool should_skip_draw() { return false; }
#endif // SPICE64
}
+4
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@@ -86,6 +86,10 @@ static bool monitor_layout_needs_reset = false;
bool GRAPHICS_CAPTURE_CURSOR = false; bool GRAPHICS_CAPTURE_CURSOR = false;
bool GRAPHICS_LOG_HRESULT = false; bool GRAPHICS_LOG_HRESULT = false;
bool GRAPHICS_SDVX_FORCE_720 = false; bool GRAPHICS_SDVX_FORCE_720 = false;
#ifdef SPICE64
SdvxLive2dMode GRAPHICS_SDVX_LIVE2D_MODE = SdvxLive2dMode::Off;
std::atomic<bool> GRAPHICS_SDVX_LIVE2D_IN_GAMEPLAY = false;
#endif // SPICE64
bool GRAPHICS_SHOW_CURSOR = false; bool GRAPHICS_SHOW_CURSOR = false;
bool GRAPHICS_WINDOWED = false; bool GRAPHICS_WINDOWED = false;
std::vector<HWND> GRAPHICS_WINDOWS; std::vector<HWND> GRAPHICS_WINDOWS;
+28
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@@ -1,5 +1,6 @@
#pragma once #pragma once
#include <atomic>
#include <string> #include <string>
#include <vector> #include <vector>
#include <optional> #include <optional>
@@ -27,6 +28,33 @@ enum graphics_dx9on12_state {
DX9ON12_FORCE_ON, DX9ON12_FORCE_ON,
}; };
// SDVX Live2D suppression policy. the mode comes from the launcher
// option; the in-gameplay flag is maintained by the SDVX scene-detection hook in
// games/sdvx (which does not require the SDVX game module to be enabled). the
// d3d9 backend reads graphics_sdvx_live2d_should_skip() on every draw.
// only the Live2D-capable SDVX versions are 64-bit, so the whole feature is
// compiled out of 32-bit builds.
#ifdef SPICE64
enum class SdvxLive2dMode {
Off, // leave Live2D untouched (default)
Always, // always skip Live2D draws (also removes the menu navigator)
InGame, // skip Live2D draws only during a song
};
extern SdvxLive2dMode GRAPHICS_SDVX_LIVE2D_MODE;
extern std::atomic<bool> GRAPHICS_SDVX_LIVE2D_IN_GAMEPLAY;
inline bool graphics_sdvx_live2d_should_skip() {
switch (GRAPHICS_SDVX_LIVE2D_MODE) {
case SdvxLive2dMode::Always:
return true;
case SdvxLive2dMode::InGame:
return GRAPHICS_SDVX_LIVE2D_IN_GAMEPLAY.load(std::memory_order_relaxed);
default:
return false;
}
}
#endif // SPICE64
// flag settings // flag settings
extern bool GRAPHICS_CAPTURE_CURSOR; extern bool GRAPHICS_CAPTURE_CURSOR;
extern bool GRAPHICS_LOG_HRESULT; extern bool GRAPHICS_LOG_HRESULT;
+15
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@@ -53,6 +53,7 @@
#include "games/sc/sc.h" #include "games/sc/sc.h"
#include "games/scotto/scotto.h" #include "games/scotto/scotto.h"
#include "games/sdvx/sdvx.h" #include "games/sdvx/sdvx.h"
#include "games/sdvx/sdvx_live2d.h"
#include "games/shared/printer.h" #include "games/shared/printer.h"
#include "games/silentscope/silentscope.h" #include "games/silentscope/silentscope.h"
#include "games/mfc/mfc.h" #include "games/mfc/mfc.h"
@@ -1046,6 +1047,20 @@ int main_implementation(int argc, char *argv[]) {
if (options[launcher::Options::SDVXForce720p].value_bool()) { if (options[launcher::Options::SDVXForce720p].value_bool()) {
GRAPHICS_SDVX_FORCE_720 = true; GRAPHICS_SDVX_FORCE_720 = true;
} }
#ifdef SPICE64
// only the Live2D-capable SDVX versions are 64-bit, so this whole feature is
// gated out of 32-bit builds and only armed for SDVX (model KFC).
if (avs::game::is_model("KFC")) {
auto live2d = options[launcher::Options::SDVXDisableLive2D].value_text();
if (live2d == "always") {
GRAPHICS_SDVX_LIVE2D_MODE = SdvxLive2dMode::Always;
} else if (live2d == "ingame") {
GRAPHICS_SDVX_LIVE2D_MODE = SdvxLive2dMode::InGame;
// scene detection runs independently of the SDVX game module
games::sdvx::live2d_scene_detection_init();
}
}
#endif // SPICE64
if (options[launcher::Options::InvertTouchCoordinates].value_bool()) { if (options[launcher::Options::InvertTouchCoordinates].value_bool()) {
rawinput::touch::INVERTED = true; rawinput::touch::INVERTED = true;
} }
+18
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@@ -1026,6 +1026,24 @@ static const std::vector<OptionDefinition> OPTION_DEFINITIONS = {
.category = "Game Options", .category = "Game Options",
.quick_setting_category = "Game", .quick_setting_category = "Game",
}, },
{
// SDVXDisableLive2D
.title = "SDVX Disable Live2D (EXPERIMENTAL)",
.name = "sdvxnolive2d",
.desc = "Skip rendering the SDVX Live2D graphics to save GPU.\n\n"
"Off: leave Live2D as-is.\n"
"Always: never render Live2D (also removes the menu navigator).\n"
"During songs: only skip Live2D during a song; keeps the menu navigator. Scene detection relies on game logging.",
.type = OptionType::Enum,
.game_name = "Sound Voltex",
.category = "Advanced Game Options",
.elements = {
{"off", "Show Live2D"},
{"always", "Never show Live2D"},
{"ingame", "Show navigators only"},
},
.quick_setting_category = "Game",
},
{ {
// spice2x_SDVXSubPos // spice2x_SDVXSubPos
.title = "SDVX Subscreen Overlay Position", .title = "SDVX Subscreen Overlay Position",
+1
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@@ -97,6 +97,7 @@ namespace launcher {
SDVXDigitalKnobSocd, SDVXDigitalKnobSocd,
spice2x_SDVXAsioDriver, spice2x_SDVXAsioDriver,
SDVXAsioTwoChannel, SDVXAsioTwoChannel,
SDVXDisableLive2D,
spice2x_SDVXSubPos, spice2x_SDVXSubPos,
SDVXSubMonitorOverride, SDVXSubMonitorOverride,
LoadDDRModule, LoadDDRModule,