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#include "nw4r/lyt/lyt_common.h"
#include "nw4r/lyt/lyt_layout.h"
#include "nw4r/ut/ut_Color.h"
#include "nw4r/ut/ut_algorithm.h"
namespace nw4r {
namespace lyt {
using namespace math;
using namespace ut;
// EqualsResName__Q34nw4r3lyt6detailFPCcPCc
bool detail::EqualsResName(const char *name1, const char *name2) {
return strncmp(name1, name2, NW4R_RES_NAME_SIZE) == 0;
}
// EqualsMaterialName__Q34nw4r3lyt6detailFPCcPCc
bool detail::EqualsMaterialName(const char *name1, const char *name2) {
return strncmp(name1, name2, NW4R_MAT_NAME_SIZE) == 0;
}
// TestFileHeader__Q34nw4r3lyt6detailFRCQ44nw4r3lyt3res16BinaryFileHeaderUl
bool detail::TestFileHeader(const res::BinaryFileHeader &fileHeader, u32 testSig) {
return ((testSig == detail::GetSignatureInt(fileHeader.signature)) && (fileHeader.byteOrder == NW4R_BYTEORDER_BIG));
}
namespace detail {
// __ct__Q44nw4r3lyt6detail11TexCoordAryFv
TexCoordAry::TexCoordAry() : mpData(nullptr), mCap(0), mNum(0) {}
// Free__Q44nw4r3lyt6detail11TexCoordAryFv
void TexCoordAry::Free() {
if (this->mpData) {
Layout::DeleteArray<VEC2>(*this->mpData, this->mNum * TEXCOORD_VTX_COUNT);
this->mpData = nullptr;
this->mCap = 0;
this->mNum = 0;
}
}
// Reserve__Q44nw4r3lyt6detail11TexCoordAryFUc
void TexCoordAry::Reserve(u8 num) {
if (mCap < num) {
Free();
TexCoordData *pData = (TexCoordData *)Layout::NewArray<VEC2>(num * TEXCOORD_VTX_COUNT);
this->mpData = pData;
if (mpData != NULL) {
mCap = num;
}
}
}
// SetSize__Q44nw4r3lyt6detail11TexCoordAryFUc
void TexCoordAry::SetSize(u8 num) {
if (this->mpData != nullptr && num <= this->mCap) {
static TexCoordData texCoords = {VEC2(0.0f, 0.0f), VEC2(1.0f, 0.0f), VEC2(0.0f, 1.0f), VEC2(1.0f, 1.0f)};
for (int i = mNum; i < num; i++) {
for (int j = 0; j < TEXCOORD_VTX_COUNT; j++) {
this->mpData[i][j] = texCoords[j];
}
}
this->mNum = num;
}
}
// Copy__Q44nw4r3lyt6detail11TexCoordAryFPCvUc
void TexCoordAry::Copy(const void *pResTexCoord, u8 texCoordNum) {
mNum = Max<u8>(mNum, texCoordNum);
const TexCoordData *src = static_cast<const TexCoordData *>(pResTexCoord);
for (int i = 0; i < texCoordNum; i++) {
for (int j = 0; j < TEXCOORD_VTX_COUNT; j++) {
mpData[i][j] = src[i][j];
}
}
}
} // namespace detail
// IsModulateVertexColor__Q34nw4r3lyt6detailFPQ34nw4r2ut5ColorUc
bool detail::IsModulateVertexColor(ut::Color *vtxColors, u8 glbAlpha) {
if (glbAlpha != 0xFF) {
return true;
}
if ((vtxColors != NULL) && ((vtxColors[0] != 0xFFFFFFFF) || (vtxColors[1] != 0xFFFFFFFF) ||
(vtxColors[2] != 0xFFFFFFFF) || (vtxColors[3] != 0xFFFFFFFF))) {
return true;
} else {
return false;
}
}
// MultipleAlpha__Q34nw4r3lyt6detailFQ34nw4r2ut5ColorUc
ut::Color detail::MultipleAlpha(ut::Color col, u8 alpha) {
ut::Color ret = col;
if (alpha != 0xFF) {
ret.a = (col.a * alpha) / 0xFF;
}
return ret;
}
// MultipleAlpha__Q34nw4r3lyt6detailFPQ34nw4r2ut5ColorPCQ34nw4r2ut5ColorUc
void detail::MultipleAlpha(ut::Color *dst, const ut::Color *src, u8 alpha) {
for (int i = 0; i < TEXCOORD_VTX_COUNT; i++) {
dst[i] = MultipleAlpha(src[i], alpha);
}
}
// SetVertexFormat__Q34nw4r3lyt6detailFbUc
void detail::SetVertexFormat(bool bModulate, u8 textCoordNum) {
GXClearVtxDesc();
GXSetVtxDesc(GX_VA_POS, GX_DIRECT);
if (bModulate) {
GXSetVtxDesc(GX_VA_CLR0, GX_DIRECT);
}
for (int i = 0; i < textCoordNum; i++) {
GXSetVtxDesc((GXAttr)(GX_VA_TEX0 + i), GX_DIRECT);
}
GXSetVtxAttrFmt(GX_VTXFMT0, GX_VA_POS, GX_POS_XY, GX_F32, 0);
if (bModulate) {
GXSetVtxAttrFmt(GX_VTXFMT0, GX_VA_CLR0, GX_CLR_RGBA, GX_RGBA8, 0);
}
for (int i = 0; i < textCoordNum; i++) {
GXSetVtxAttrFmt(GX_VTXFMT0, (GXAttr)(GX_VA_TEX0 + i), GX_TEX_ST, GX_F32, 0);
}
}
// DrawQuad__Q34nw4r3lyt6detailFRCQ34nw4r4math4VEC2RCQ34nw4r3lyt4SizeUcPA4_CQ34nw4r4math4VEC2PCQ34nw4r2ut5Color
void detail::DrawQuad(
const math::VEC2 &basePt, const Size &size, u8 texCoordNum, const TexCoordData *texCoords,
const ut::Color *vtxColors
) {
GXBegin(GX_QUADS, GX_VTXFMT0, 4);
GXPosition2f32(basePt.x, basePt.y);
if (vtxColors != NULL) {
GXColor1u32(vtxColors[0]);
}
for (int i = 0; i < texCoordNum; i++) {
GXTexCoord2f32(texCoords[i][0].x, texCoords[i][0].y);
}
GXPosition2f32(basePt.x + size.width, basePt.y);
if (vtxColors != NULL) {
GXColor1u32(vtxColors[1]);
}
for (int i = 0; i < texCoordNum; i++) {
GXTexCoord2f32(texCoords[i][1].x, texCoords[i][1].y);
}
GXPosition2f32(basePt.x + size.width, basePt.y - size.height);
if (vtxColors != NULL) {
GXColor1u32(vtxColors[3]);
}
for (int i = 0; i < texCoordNum; i++) {
GXTexCoord2f32(texCoords[i][3].x, texCoords[i][3].y);
}
GXPosition2f32(basePt.x, basePt.y - size.height);
if (vtxColors != NULL) {
GXColor1u32(vtxColors[2]);
}
for (int i = 0; i < texCoordNum; i++) {
GXTexCoord2f32(texCoords[i][2].x, texCoords[i][2].y);
}
}
// DrawQuad__Q34nw4r3lyt6detailFRCQ34nw4r4math4VEC2RCQ34nw4r3lyt4SizeUcPA4_CQ34nw4r4math4VEC2PCQ34nw4r2ut5ColorUc
void detail::DrawQuad(
const math::VEC2 &basePt, const Size &size, u8 texCoordNum, const TexCoordData *texCoords,
const ut::Color *vtxColors, u8 alpha
) {
ut::Color wkVtxColors[4];
if (vtxColors) {
MultipleAlpha(wkVtxColors, vtxColors, alpha);
}
DrawQuad(basePt, size, texCoordNum, texCoords, vtxColors ? wkVtxColors : nullptr);
}
// DrawLine__Q34nw4r3lyt6detailFRCQ34nw4r4math4VEC2RCQ34nw4r3lyt4SizeQ34nw4r2ut5Color
void detail::DrawLine(const math::VEC2 &pos, const Size &size, ut::Color color) {
// Not Impl in SS
}
} // namespace lyt
} // namespace nw4r
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