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https://github.com/isledecomp/isle.git
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8113a17167
* Introduce LPD3DRM_APPDATA typedef for setting d3drm appdata * Fix warning about assigning const string literals to variable char pointers * Don't cast pointers to integers on non-32-bit architectures * memset 2nd argument is int * Assume cpuid is available on x86_64, needs testing on i386 and unavailable on anything else * Store HFILE in its own member variable
193 lines
5.1 KiB
C++
193 lines
5.1 KiB
C++
#include "impl.h"
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using namespace TglImpl;
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DECOMP_SIZE_ASSERT(TglD3DRMIMAGE, 0x40);
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inline TglD3DRMIMAGE* TextureGetImage(IDirect3DRMTexture* pTexture)
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{
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return reinterpret_cast<TglD3DRMIMAGE*>(pTexture->GetAppData());
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}
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// Forward declare to satisfy order check
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void TextureDestroyCallback(IDirect3DRMObject* pObject, void* pArg);
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// FUNCTION: LEGO1 0x100a12a0
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Result TextureImpl::SetImage(IDirect3DRMTexture* pSelf, TglD3DRMIMAGE* pImage)
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{
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void* appData;
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Result result;
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appData = pImage;
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// This is here because in the original code they asserted
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// on the return value being NULL.
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TextureGetImage(pSelf);
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result = ResultVal(pSelf->SetAppData((LPD3DRM_APPDATA) appData));
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if (Succeeded(result) && pImage) {
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result = ResultVal(pSelf->AddDestroyCallback(TextureDestroyCallback, NULL));
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if (!Succeeded(result)) {
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pSelf->SetAppData(0);
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}
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}
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return result;
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}
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// FUNCTION: LEGO1 0x100a1300
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void TextureDestroyCallback(IDirect3DRMObject* pObject, void* pArg)
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{
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TglD3DRMIMAGE* pImage = reinterpret_cast<TglD3DRMIMAGE*>(pObject->GetAppData());
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delete pImage;
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pObject->SetAppData(0);
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}
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// FUNCTION: LEGO1 0x100a1330
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TglD3DRMIMAGE::TglD3DRMIMAGE(
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int width,
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int height,
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int depth,
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void* pBuffer,
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int useBuffer,
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int paletteSize,
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PaletteEntry* pEntries
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)
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{
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m_image.aspectx = 1;
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m_image.aspecty = 1;
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m_image.width = 0;
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m_image.height = 0;
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m_image.depth = 0;
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m_image.rgb = 0;
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m_image.bytes_per_line = 0;
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m_image.buffer1 = NULL;
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m_image.buffer2 = NULL;
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m_image.red_mask = 0xFF;
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m_image.green_mask = 0xFF;
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m_image.blue_mask = 0xFF;
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m_image.alpha_mask = 0xFF;
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m_image.palette_size = 0;
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m_image.palette = NULL;
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m_texelsAllocatedByClient = 0;
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if (pBuffer != NULL) {
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CreateBuffer(width, height, depth, pBuffer, useBuffer);
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}
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if (pEntries != NULL) {
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InitializePalette(paletteSize, pEntries);
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}
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}
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// FUNCTION: LEGO1 0x100a13b0
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void TglD3DRMIMAGE::Destroy()
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{
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if (m_texelsAllocatedByClient == 0) {
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delete m_image.buffer1;
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}
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delete m_image.palette;
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}
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// STUB: LEGO1 0x100a13e0
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Result TglD3DRMIMAGE::CreateBuffer(int width, int height, int depth, void* pBuffer, int useBuffer)
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{
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return Error;
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}
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// FUNCTION: LEGO1 0x100a1510
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void TglD3DRMIMAGE::FillRowsOfTexture(int y, int height, char* pContent)
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{
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// The purpose is clearly this but I can't get the assembly to line up.
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memcpy((char*) m_image.buffer1 + (y * m_image.bytes_per_line), pContent, height * m_image.bytes_per_line);
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}
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// FUNCTION: LEGO1 0x100a1550
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Result TglD3DRMIMAGE::InitializePalette(int paletteSize, PaletteEntry* pEntries)
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{
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// This function is a 100% match if the PaletteEntry class is copied
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// into into the TglD3DRMIMAGE class instead of being a global struct.
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if (m_image.palette_size != paletteSize) {
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if (m_image.palette != NULL) {
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delete m_image.palette;
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m_image.palette = NULL;
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m_image.palette_size = 0;
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}
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if (paletteSize > 0) {
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m_image.palette = new D3DRMPALETTEENTRY[paletteSize];
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m_image.palette_size = paletteSize;
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}
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}
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if (paletteSize > 0) {
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for (int i = 0; i < paletteSize; i++) {
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m_image.palette[i].red = pEntries[i].m_red;
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m_image.palette[i].green = pEntries[i].m_green;
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m_image.palette[i].blue = pEntries[i].m_blue;
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m_image.palette[i].flags = D3DRMPALETTE_READONLY;
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}
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}
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return Success;
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}
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// FUNCTION: LEGO1 0x100a3c10
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Result TextureImpl::SetTexels(int width, int height, int bitsPerTexel, void* pTexels)
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{
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TglD3DRMIMAGE* image = TextureGetImage(m_data);
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Result result = image->CreateBuffer(width, height, bitsPerTexel, pTexels, TRUE);
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if (Succeeded(result)) {
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result = ResultVal(m_data->Changed(TRUE, FALSE));
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}
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return result;
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}
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// FUNCTION: LEGO1 0x100a3c60
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void TextureImpl::FillRowsOfTexture(int y, int height, void* pBuffer)
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{
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TglD3DRMIMAGE* image = TextureGetImage(m_data);
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image->FillRowsOfTexture(y, height, (char*) pBuffer);
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}
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// FUNCTION: LEGO1 0x100a3c90
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Result TextureImpl::Changed(int texelsChanged, int paletteChanged)
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{
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return ResultVal(m_data->Changed(texelsChanged, paletteChanged));
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}
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// FUNCTION: LEGO1 0x100a3cc0
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Result TextureImpl::GetBufferAndPalette(
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int* width,
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int* height,
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int* depth,
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void** pBuffer,
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int* paletteSize,
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PaletteEntry** pEntries
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)
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{
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// Something really doesn't match here, not sure what's up.
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TglD3DRMIMAGE* image = TextureGetImage(m_data);
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*width = image->m_image.width;
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*height = image->m_image.height;
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*depth = image->m_image.depth;
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*pBuffer = image->m_image.buffer1;
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*paletteSize = image->m_image.palette_size;
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for (int i = 0; i < image->m_image.palette_size; i++) {
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pEntries[i]->m_red = image->m_image.palette[i].red;
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pEntries[i]->m_green = image->m_image.palette[i].green;
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pEntries[i]->m_blue = image->m_image.palette[i].blue;
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}
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return Success;
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}
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// FUNCTION: LEGO1 0x100a3d40
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Result TextureImpl::SetPalette(int entryCount, PaletteEntry* pEntries)
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{
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// Not 100% confident this is supposed to directly be forwarding arguments,
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// but it probably is given FillRowsOfTexture matches doing that.
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TglD3DRMIMAGE* image = TextureGetImage(m_data);
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image->InitializePalette(entryCount, pEntries);
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m_data->Changed(FALSE, TRUE);
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return Success;
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}
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// FUNCTION: LEGO1 0x100a3d70
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void* TextureImpl::ImplementationDataPtr()
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{
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return reinterpret_cast<void*>(&m_data);
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}
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