mirror of https://github.com/AxioDL/metaforce.git
388 lines
14 KiB
C++
388 lines
14 KiB
C++
#pragma once
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#include "Graphics/GX.hpp"
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#include "RetroTypes.hpp"
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#include <aurora/model.hpp>
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#include <zeus/CColor.hpp>
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namespace metaforce::CGX {
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enum class EChannelId {
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Channel0, // GX::COLOR0
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Channel1, // GX::COLOR1
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};
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struct STevState {
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u32 x0_colorInArgs = 0;
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u32 x4_alphaInArgs = 0;
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u32 x8_colorOps = 0;
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u32 xc_alphaOps = 0;
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u32 x10_indFlags = 0;
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u32 x14_tevOrderFlags = 0;
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GX::TevKColorSel x18_kColorSel = GX::TEV_KCSEL_1;
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GX::TevKAlphaSel x19_kAlphaSel = GX::TEV_KASEL_1;
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};
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struct STexState {
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u32 x0_coordGen = 0;
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};
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struct SGXState {
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std::array<void*, 12> x0_arrayPtrs{};
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std::array<u16, 2> x30_prevChanCtrls{};
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std::array<u16, 2> x34_chanCtrls{};
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std::array<GXColor, 2> x38_chanAmbColors;
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std::array<GXColor, 2> x40_chanMatColors;
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GX::VtxDescList* x48_descList = nullptr;
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u8 x4c_dirtyChans = 0;
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u8 x4d_prevNumChans = 0;
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u8 x4e_numChans = 0;
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u8 x4f_numTexGens = 0;
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u8 x50_numTevStages = 0;
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u8 x51_numIndStages = 0;
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u8 x52_zmode = 0;
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GX::FogType x53_fogType = GX::FOG_NONE;
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u16 x54_lineWidthAndOffset = 0;
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u16 x56_blendMode = 0;
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std::array<GXColor, GX::MAX_KCOLOR> x58_kColors;
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std::array<STevState, GX::MAX_TEVSTAGE> x68_tevStates;
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std::array<STexState, GX::MAX_TEXMAP> x228_texStates;
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u32 x248_alphaCompare = 0;
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float x24c_fogStartZ = 0.f;
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float x250_fogEndZ = 0.f;
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float x254_fogNearZ = 0.f;
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float x258_fogFarZ = 0.f;
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GXColor x25c_fogColor;
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};
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extern SGXState sGXState;
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static inline void update_fog(u32 value) noexcept {
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if (sGXState.x53_fogType == GX::FOG_NONE || (sGXState.x56_blendMode & 0xE0) == (value & 0xE0)) {
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return;
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}
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if ((value & 0xE0) == 0x20) {
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// TODO
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return;
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}
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// TODO
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}
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static inline void FlushState() noexcept {
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if ((sGXState.x4c_dirtyChans & 1) != 0) {
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u8 numChans = sGXState.x4e_numChans;
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GXSetNumChans(numChans);
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sGXState.x4d_prevNumChans = numChans;
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}
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if ((sGXState.x4c_dirtyChans & 2) != 0) {
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// TODO actually COLOR0
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auto flags = sGXState.x34_chanCtrls[0];
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GXSetChanCtrl(GX::COLOR0A0, GXBool(flags & 1), GX::ColorSrc(flags >> 1 & 1), GX::ColorSrc(flags >> 2 & 1),
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flags >> 3 & 0xFF, GX::DiffuseFn(flags >> 11 & 3), GX::AttnFn(flags >> 13 & 3));
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sGXState.x30_prevChanCtrls[0] = flags;
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}
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if ((sGXState.x4c_dirtyChans & 4) != 0) {
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// TODO actually COLOR1
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auto flags = sGXState.x34_chanCtrls[1];
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GXSetChanCtrl(GX::COLOR1A1, GXBool(flags & 1), GX::ColorSrc(flags >> 1 & 1), GX::ColorSrc(flags >> 2 & 1),
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flags >> 3 & 0xFF, GX::DiffuseFn(flags >> 11 & 3), GX::AttnFn(flags >> 13 & 3));
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sGXState.x30_prevChanCtrls[1] = flags;
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}
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sGXState.x4c_dirtyChans = 0;
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}
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static inline void Begin(GX::Primitive primitive, GX::VtxFmt fmt, u16 nverts) noexcept {
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if (sGXState.x4c_dirtyChans != 0) {
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FlushState();
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}
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// TODO GXBegin(type, fmt, nverts);
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}
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static inline void CallDisplayList(const void* data, u32 nbytes) noexcept {
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if (sGXState.x4c_dirtyChans != 0) {
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FlushState();
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}
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GXCallDisplayList(data, nbytes);
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}
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static inline void End() noexcept {
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// no-op
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}
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static inline const GXColor& GetChanAmbColor(EChannelId id) noexcept {
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const auto idx = std::underlying_type_t<EChannelId>(id);
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return sGXState.x38_chanAmbColors[idx];
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}
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void ResetGXStates() noexcept;
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static inline void SetAlphaCompare(GX::Compare comp0, u8 ref0, GX::AlphaOp op, GX::Compare comp1, u8 ref1) noexcept {
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u32 flags = ref1 << 17 | (comp1 & 7) << 14 | (op & 7) << 11 | ref0 << 3 | (comp0 & 7);
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if (flags != sGXState.x248_alphaCompare) {
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sGXState.x248_alphaCompare = flags;
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GXSetAlphaCompare(comp0, ref0 / 255.f, op, comp1, ref1 / 255.f);
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// GXSetZCompLoc(comp0 == GX::ALWAYS);
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}
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}
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template <typename T>
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static inline void SetArray(GX::Attr attr, const std::vector<T>* data) noexcept {
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if (data != nullptr && sGXState.x0_arrayPtrs[attr - GX::VA_POS] != data) {
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GXSetArray(attr, data, sizeof(T));
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}
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}
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static inline void SetBlendMode(GX::BlendMode mode, GX::BlendFactor srcFac, GX::BlendFactor dstFac,
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GX::LogicOp op) noexcept {
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const u16 flags = (op & 0xF) << 8 | (dstFac & 7) << 5 | (srcFac & 7) << 2 | (mode & 3);
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if (flags != sGXState.x56_blendMode) {
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update_fog(flags);
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sGXState.x56_blendMode = flags;
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GXSetBlendMode(mode, srcFac, dstFac, op);
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}
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}
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static inline void SetChanAmbColor(EChannelId id, const GXColor& color) noexcept {
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const auto idx = std::underlying_type_t<EChannelId>(id);
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if (color != sGXState.x38_chanAmbColors[idx]) {
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sGXState.x38_chanAmbColors[idx] = color;
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GXSetChanAmbColor(GX::ChannelID(idx + GX::COLOR0A0), color);
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}
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}
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static inline void SetChanCtrl(EChannelId id, GXBool enable, GX::ColorSrc ambSrc, GX::ColorSrc matSrc,
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GX::LightMask lights, GX::DiffuseFn diffFn, GX::AttnFn attnFn) noexcept {
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const auto idx = std::underlying_type_t<EChannelId>(id);
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const u32 flags = (attnFn & 3) << 13 | (diffFn & 3) << 11 | (lights.to_ulong() & 0xFF) << 3 | (matSrc & 1) << 2 |
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(ambSrc & 1) << 1 | (u8(enable) & 1);
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sGXState.x34_chanCtrls[idx] = flags;
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sGXState.x4c_dirtyChans = 7; // TODO
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}
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// Helper function for common logic
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static inline void SetChanCtrl(EChannelId id, GX::LightMask lights) noexcept {
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const bool hasLights = lights.any();
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SetChanCtrl(id, hasLights, GX::SRC_REG, GX::SRC_REG, lights, hasLights ? GX::DF_CLAMP : GX::DF_NONE,
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hasLights ? GX::AF_SPOT : GX::AF_NONE);
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}
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static inline void SetChanMatColor(EChannelId id, const GXColor& color) noexcept {
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const auto idx = std::underlying_type_t<EChannelId>(id);
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if (color != sGXState.x40_chanMatColors[idx]) {
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sGXState.x40_chanMatColors[idx] = color;
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GXSetChanMatColor(GX::ChannelID(idx + GX::COLOR0A0), color);
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}
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}
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static inline void SetFog(GX::FogType type, float startZ, float endZ, float nearZ, float farZ,
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const GXColor& color) noexcept {
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sGXState.x25c_fogColor = color;
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sGXState.x53_fogType = type;
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sGXState.x24c_fogStartZ = startZ;
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sGXState.x250_fogEndZ = endZ;
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sGXState.x254_fogNearZ = nearZ;
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sGXState.x258_fogFarZ = farZ;
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auto fogColor = color;
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if ((sGXState.x56_blendMode & 0xE0) == 0x20) {
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fogColor = zeus::skClear;
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}
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// TODO
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// GXSetFog(type, startZ, endZ, nearZ, farZ, fogColor);
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}
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void SetIndTexMtxSTPointFive(GX::IndTexMtxID id, s8 scaleExp) noexcept;
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void SetLineWidth(u8 width, GX::TexOffset offset) noexcept;
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static inline void SetNumChans(u8 num) noexcept {
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sGXState.x4c_dirtyChans = 7; // TODO
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sGXState.x4e_numChans = num;
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}
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static inline void SetNumIndStages(u8 num) noexcept {
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auto& state = sGXState.x51_numIndStages;
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if (num != state) {
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state = num;
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GXSetNumIndStages(num);
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}
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}
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static inline void SetNumTevStages(u8 num) noexcept {
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auto& state = sGXState.x50_numTevStages;
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if (num != state) {
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state = num;
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GXSetNumTevStages(num);
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}
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}
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static inline void SetNumTexGens(u8 num) noexcept {
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auto& state = sGXState.x4f_numTexGens;
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if (num != state) {
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state = num;
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GXSetNumTexGens(num);
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}
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}
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static inline void SetStandardTevColorAlphaOp(GX::TevStageID stageId) noexcept {
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auto& state = sGXState.x68_tevStates[stageId];
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if (state.x8_colorOps != 0x100 || state.xc_alphaOps != 0x100) {
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state.x8_colorOps = 0x100;
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state.xc_alphaOps = 0x100;
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GXSetTevColorOp(stageId, GX::TEV_ADD, GX::TB_ZERO, GX::CS_SCALE_1, true, GX::TEVPREV);
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GXSetTevAlphaOp(stageId, GX::TEV_ADD, GX::TB_ZERO, GX::CS_SCALE_1, true, GX::TEVPREV);
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}
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}
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static inline void SetTevAlphaIn(GX::TevStageID stageId, GX::TevAlphaArg a, GX::TevAlphaArg b, GX::TevAlphaArg c,
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GX::TevAlphaArg d) noexcept {
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u32 flags = (d & 31) << 15 | (c & 31) << 10 | (b & 31) << 5 | (a & 31);
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auto& state = sGXState.x68_tevStates[stageId].x4_alphaInArgs;
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if (flags != state) {
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state = flags;
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GXSetTevAlphaIn(stageId, a, b, c, d);
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}
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}
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static inline void SetTevAlphaOp(GX::TevStageID stageId, GX::TevOp op, GX::TevBias bias, GX::TevScale scale,
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GXBool clamp, GX::TevRegID outReg) noexcept {
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u32 flags = (outReg & 3) << 9 | (u8(clamp) & 1) << 8 | (scale & 3) << 6 | (bias & 3) << 4 | (op & 15);
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auto& state = sGXState.x68_tevStates[stageId].xc_alphaOps;
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if (flags != state) {
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state = flags;
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GXSetTevAlphaOp(stageId, op, bias, scale, clamp, outReg);
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}
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}
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static inline void SetTevAlphaOp_Compressed(GX::TevStageID stageId, u32 ops) noexcept {
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auto& state = sGXState.x68_tevStates[stageId].xc_alphaOps;
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if (ops != state) {
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state = ops;
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GXSetTevAlphaOp(stageId, GX::TevOp(ops & 31), GX::TevBias(ops >> 4 & 3), GX::TevScale(ops >> 6 & 3),
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GXBool(ops >> 8 & 1), GX::TevRegID(ops >> 9 & 3));
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}
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}
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static inline void SetTevColorIn(GX::TevStageID stageId, GX::TevColorArg a, GX::TevColorArg b, GX::TevColorArg c,
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GX::TevColorArg d) noexcept {
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u32 flags = (d & 31) << 15 | (c & 31) << 10 | (b & 31) << 5 | (a & 31);
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auto& state = sGXState.x68_tevStates[stageId].x0_colorInArgs;
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if (flags != state) {
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state = flags;
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GXSetTevColorIn(stageId, a, b, c, d);
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}
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}
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static inline void SetTevColorOp(GX::TevStageID stageId, GX::TevOp op, GX::TevBias bias, GX::TevScale scale,
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GXBool clamp, GX::TevRegID outReg) noexcept {
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u32 flags = (outReg & 3) << 9 | (u8(clamp) & 1) << 8 | (scale & 3) << 6 | (bias & 3) << 4 | (op & 15);
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auto& state = sGXState.x68_tevStates[stageId].x8_colorOps;
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if (flags != state) {
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state = flags;
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GXSetTevColorOp(stageId, op, bias, scale, clamp, outReg);
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}
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}
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static inline void SetTevColorOp_Compressed(GX::TevStageID stageId, u32 ops) noexcept {
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auto& state = sGXState.x68_tevStates[stageId].x8_colorOps;
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if (ops != state) {
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state = ops;
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GXSetTevColorOp(stageId, GX::TevOp(ops & 31), GX::TevBias(ops >> 4 & 3), GX::TevScale(ops >> 6 & 3),
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GXBool(ops >> 8 & 1), GX::TevRegID(ops >> 9 & 3));
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}
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}
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static inline void SetTevDirect(GX::TevStageID stageId) noexcept {
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auto& state = sGXState.x68_tevStates[stageId].x10_indFlags;
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if (state != 0) {
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state = 0;
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// TODO
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// GXSetTevDirect(stageId);
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}
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}
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static inline void SetStandardDirectTev_Compressed(GX::TevStageID stageId, u32 colorArgs, u32 alphaArgs, u32 colorOps,
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u32 alphaOps) noexcept {
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auto& state = sGXState.x68_tevStates[stageId];
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SetTevDirect(stageId);
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if (state.x0_colorInArgs != colorArgs) {
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state.x0_colorInArgs = colorArgs;
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GXSetTevColorIn(stageId, GX::TevColorArg(colorArgs & 31), GX::TevColorArg(colorArgs >> 5 & 31),
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GX::TevColorArg(colorArgs >> 10 & 31), GX::TevColorArg(colorArgs >> 15 & 31));
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}
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if (state.x4_alphaInArgs != alphaArgs) {
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state.x4_alphaInArgs = alphaArgs;
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GXSetTevAlphaIn(stageId, GX::TevAlphaArg(alphaArgs & 31), GX::TevAlphaArg(alphaArgs >> 5 & 31),
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GX::TevAlphaArg(alphaArgs >> 10 & 31), GX::TevAlphaArg(alphaArgs >> 15 & 31));
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}
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if (colorOps != alphaOps || (colorOps & 0x1FF) != 0x100) {
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SetTevColorOp_Compressed(stageId, colorOps);
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SetTevAlphaOp_Compressed(stageId, alphaOps);
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} else if (colorOps != state.x8_colorOps || colorOps != state.xc_alphaOps) {
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state.x8_colorOps = colorOps;
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state.xc_alphaOps = colorOps;
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const auto outReg = GX::TevRegID(colorOps >> 9 & 3);
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GXSetTevColorOp(stageId, GX::TEV_ADD, GX::TB_ZERO, GX::CS_SCALE_1, true, outReg);
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GXSetTevAlphaOp(stageId, GX::TEV_ADD, GX::TB_ZERO, GX::CS_SCALE_1, true, outReg);
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}
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}
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void SetTevIndirect(GX::TevStageID stageId, GX::IndTexStageID indStage, GX::IndTexFormat fmt, GX::IndTexBiasSel biasSel,
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GX::IndTexMtxID mtxSel, GX::IndTexWrap wrapS, GX::IndTexWrap wrapT, GXBool addPrev, GXBool indLod,
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GX::IndTexAlphaSel alphaSel) noexcept;
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void SetTevIndWarp(GX::TevStageID stageId, GX::IndTexStageID indStage, GXBool signedOffset, GXBool replaceMode,
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GX::IndTexMtxID mtxSel) noexcept;
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static inline void SetTevKAlphaSel(GX::TevStageID stageId, GX::TevKAlphaSel sel) noexcept {
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auto& state = sGXState.x68_tevStates[stageId].x19_kAlphaSel;
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if (sel != state) {
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state = sel;
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GXSetTevKAlphaSel(stageId, sel);
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}
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}
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static inline void SetTevKColor(GX::TevKColorID id, const GXColor& color) noexcept {
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auto& state = sGXState.x58_kColors[id];
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if (color != state) {
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state = color;
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GXSetTevKColor(id, color);
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}
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}
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static inline void SetTevKColorSel(GX::TevStageID stageId, GX::TevKColorSel sel) noexcept {
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auto& state = sGXState.x68_tevStates[stageId].x18_kColorSel;
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if (sel != state) {
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state = sel;
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GXSetTevKColorSel(stageId, sel);
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}
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}
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static inline void SetTevOrder(GX::TevStageID stageId, GX::TexCoordID texCoord, GX::TexMapID texMap,
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GX::ChannelID color) noexcept {
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u32 flags = (color & 0xFF) << 16 | (texMap & 0xFF) << 8 | (texCoord & 0xFF);
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auto& state = sGXState.x68_tevStates[stageId].x14_tevOrderFlags;
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if (flags != state) {
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state = flags;
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GXSetTevOrder(stageId, texCoord, texMap, color);
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}
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}
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static inline void SetTexCoordGen(GX::TexCoordID dstCoord, GX::TexGenType fn, GX::TexGenSrc src, u32 mtx,
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GXBool normalize, u32 postMtx) noexcept {
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// TODO
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}
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void SetVtxDescv(GX::VtxDescList* descList) noexcept;
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static inline void SetVtxDescv_Compressed(u32 descList) noexcept {
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// TODO convert to GX::VtxDescList
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aurora::gfx::model::set_vtx_desc_compressed(descList);
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}
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static inline void SetZMode(GXBool compareEnable, GX::Compare func, GXBool updateEnable) noexcept {
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u32 flags = (func & 0xFF) << 2 | (u8(updateEnable) << 1) | (u8(compareEnable) & 1);
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auto& state = sGXState.x52_zmode;
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if (flags != state) {
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state = flags;
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GXSetZMode(compareEnable, func, updateEnable);
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}
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}
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} // namespace metaforce::CGX
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