SA: Fix Map screen boundaries and the cursor not scaling to resolution

Debugged by Wesser
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Silent 2024-10-23 23:58:23 +02:00
parent 97c2c8a094
commit 710f1b13ad
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@ -2991,6 +2991,94 @@ namespace CrosshairScalingFixes
} }
// ============= Fix Map screen boundaries and the cursor not scaling to resolution =============
// Debugged by Wesser
namespace MapScreenScalingFixes
{
void __declspec(naked) ScaleX_NewBinaries()
{
_asm
{
push ecx
push 3F800000h // 1.0f
call [ScaleX]
add esp, 4
fsub st(1), st
fxch st(1)
pop ecx
retn
}
}
void __declspec(naked) ScaleY_NewBinaries()
{
_asm
{
push ecx
push 3F800000h // 1.0f
call [ScaleY]
add esp, 4
fsub st(1), st
fxch st(1)
pop ecx
retn
}
}
template<std::size_t Index>
static const float* orgCursorXSize;
template<std::size_t Index>
static float CursorXSize_Recalculated;
template<std::size_t... I>
static void RecalculateXSize(std::index_sequence<I...>)
{
((CursorXSize_Recalculated<I> = ScaleX(*orgCursorXSize<I>)), ...);
}
template<std::size_t Index>
static const float* orgCursorYSize;
template<std::size_t Index>
static float CursorYSize_Recalculated;
template<std::size_t... I>
static void RecalculateYSize(std::index_sequence<I...>)
{
((CursorYSize_Recalculated<I> = ScaleY(*orgCursorYSize<I>)), ...);
}
static void (*orgLimitToMap)(float* x, float* y);
template<std::size_t NumXSize, std::size_t NumYSize>
static void LimitToMap_Scale(float* x, float* y)
{
// LimitToMap assumes it's given scaled coordinates, but then the caller assumes it returns unscaled coordinates.
// Need to scale them for the call, then unscale again, to save us from some assembly patching.
const float XScale = ScaleX(1.0f);
const float YScale = ScaleY(1.0f);
*x *= XScale;
*y *= YScale;
orgLimitToMap(x, y);
*x /= XScale;
*y /= YScale;
// This is also a comfortable spot to scale the cursor dimensions
RecalculateXSize(std::make_index_sequence<NumXSize>{});
RecalculateYSize(std::make_index_sequence<NumYSize>{});
}
HOOK_EACH_INIT(CursorXSize, orgCursorXSize, CursorXSize_Recalculated);
HOOK_EACH_INIT(CursorYSize, orgCursorYSize, CursorYSize_Recalculated);
}
// ============= LS-RP Mode stuff ============= // ============= LS-RP Mode stuff =============
namespace LSRPMode namespace LSRPMode
{ {
@ -6051,6 +6139,20 @@ void Patch_SA_10(HINSTANCE hInstance)
} }
// Fix Map screen boundaries and the cursor not scaling to resolution
// Debugged by Wesser
{
using namespace MapScreenScalingFixes;
std::array<float**, 2> cursorXSizes = { (float**)(0x588251 + 2), (float**)(0x588265 + 2) };
std::array<float**, 2> cursorYSizes = { (float**)(0x5882A8 + 2), (float**)(0x5882C6 + 2) };
HookEach_CursorXSize(cursorXSizes, PatchFloat);
HookEach_CursorYSize(cursorYSizes, PatchFloat);
InterceptCall(0x58822D, orgLimitToMap, LimitToMap_Scale<cursorXSizes.size(), cursorYSizes.size()>);
}
#if FULL_PRECISION_D3D #if FULL_PRECISION_D3D
// Test - full precision D3D device // Test - full precision D3D device
Patch<uint8_t>( 0x7F672B+1, *(uint8_t*)(0x7F672B+1) | D3DCREATE_FPU_PRESERVE ); Patch<uint8_t>( 0x7F672B+1, *(uint8_t*)(0x7F672B+1) | D3DCREATE_FPU_PRESERVE );
@ -8213,6 +8315,29 @@ void Patch_SA_NewBinaries_Common(HINSTANCE hInstance)
HookEach_GamepadCrosshair_Double(triangleSizesDouble, PatchDouble); HookEach_GamepadCrosshair_Double(triangleSizesDouble, PatchDouble);
} }
TXN_CATCH(); TXN_CATCH();
// Fix Map screen boundaries and the cursor not scaling to resolution
// Debugged by Wesser
try
{
using namespace MapScreenScalingFixes;
auto limitToMap = get_pattern("E8 ? ? ? ? DB 05 ? ? ? ? 83 C4 1C");
// Cursor X/Y scaling need to be done differently than in 1.0, as the game has one fld1 for width and one fld1 for height
auto scaleX = pattern("D9 E8 DC E9 D9 C9 D9 5D 94").get_one();
auto scaleY = pattern("D9 E8 DC E9 D9 C9 D9 5D B0").get_one();
InterceptCall(limitToMap, orgLimitToMap, LimitToMap_Scale<0, 0>);
Nop(scaleX.get<void>(), 1);
InjectHook(scaleX.get<void>(1), ScaleX_NewBinaries, HookType::Call);
Nop(scaleY.get<void>(), 1);
InjectHook(scaleY.get<void>(1), ScaleY_NewBinaries, HookType::Call);
}
TXN_CATCH();
} }