From 57922418524361124b7ec1a72299da31339a8e7e Mon Sep 17 00:00:00 2001 From: OctoSpacc Date: Mon, 20 Nov 2023 21:46:45 +0100 Subject: [PATCH] Add BouncyCubePs1 --- .gitignore | 2 + BouncyCubePs1/Cube.asm | 271 ++ BouncyCubePs1/GFX/A.bin | 1 + BouncyCubePs1/GFX/B.bin | 6 + BouncyCubePs1/GFX/C.bin | 1 + BouncyCubePs1/GFX/D.bin | 1 + BouncyCubePs1/GFX/E.bin | 1 + BouncyCubePs1/GFX/F.bin | 1 + BouncyCubePs1/LIB/3D.INC | 5533 +++++++++++++++++++++++++++++++ BouncyCubePs1/LIB/PSX.INC | 427 +++ BouncyCubePs1/LIB/PSX_GPU.INC | 2297 +++++++++++++ BouncyCubePs1/LIB/PSX_GTE.INC | 211 ++ BouncyCubePs1/LIB/PSX_INPUT.INC | 53 + BouncyCubePs1/bin2exe.py | 69 + BouncyCubePs1/make.bat | 2 + BouncyCubePs1/objects.asm | 103 + BouncyCubePs1/sincos256.asm | 257 ++ README.md | 21 + 18 files changed, 9257 insertions(+) create mode 100644 .gitignore create mode 100644 BouncyCubePs1/Cube.asm create mode 100644 BouncyCubePs1/GFX/A.bin create mode 100644 BouncyCubePs1/GFX/B.bin create mode 100644 BouncyCubePs1/GFX/C.bin create mode 100644 BouncyCubePs1/GFX/D.bin create mode 100644 BouncyCubePs1/GFX/E.bin create mode 100644 BouncyCubePs1/GFX/F.bin create mode 100644 BouncyCubePs1/LIB/3D.INC create mode 100644 BouncyCubePs1/LIB/PSX.INC create mode 100644 BouncyCubePs1/LIB/PSX_GPU.INC create mode 100644 BouncyCubePs1/LIB/PSX_GTE.INC create mode 100644 BouncyCubePs1/LIB/PSX_INPUT.INC create mode 100644 BouncyCubePs1/bin2exe.py create mode 100644 BouncyCubePs1/make.bat create mode 100644 BouncyCubePs1/objects.asm create mode 100644 BouncyCubePs1/sincos256.asm create mode 100644 README.md diff --git a/.gitignore b/.gitignore new file mode 100644 index 0000000..0b36747 --- /dev/null +++ b/.gitignore @@ -0,0 +1,2 @@ +*.o +*.exe diff --git a/BouncyCubePs1/Cube.asm b/BouncyCubePs1/Cube.asm new file mode 100644 index 0000000..5a84a76 --- /dev/null +++ b/BouncyCubePs1/Cube.asm @@ -0,0 +1,271 @@ +; PSX 'Bare Metal' Cube CPU Demo by krom (Peter Lemon): +; Joypad Control: +; Up, Down: -Y, +Y Translation +; Left, Right: -X, +X Translation +; L1, L2: -Z, +Z Translation +; Triangle, X: -X, +X Rotation +; Circle, Square: -Y, +Y Rotation +; R1, R2: -Z, +Z Rotation +.psx +.create "Cube.bin", 0x80010000 + +.include "LIB/PSX.INC" ; Include PSX Definitions +.include "LIB/PSX_GPU.INC" ; Include PSX GPU Definitions & Macros +.include "LIB/PSX_INPUT.INC" ; Include PSX Input Definitions & Macros +.include "LIB/3D.INC" ; Include 3D Definitions & Macros + +.org 0x80010000 ; Entry Point Of Code + +InitJoy PadBuffer ; Initialise Joypads & Setup VSync Wait Routine Using BIOS: Buffer Address + +la a0,IO_BASE ; A0 = I/O Port Base Address ($1F80XXXX) + +; Setup Screen Mode +WRGP1 GPURESET,0 ; Write GP1 Command Word (Reset GPU) +WRGP1 GPUDISPEN,0 ; Write GP1 Command Word (Enable Display) +WRGP1 GPUDISPM,HRES320+VRES240+BPP15+VNTSC ; Write GP1 Command Word (Set Display Mode: 320x240, 15BPP, NTSC) +WRGP1 GPUDISPH,0xC60260 ; Write GP1 Command Word (Horizontal Display Range 608..3168) +WRGP1 GPUDISPV,0x042018 ; Write GP1 Command Word (Vertical Display Range 24..264) + +; Setup Drawing Area +WRGP0 GPUDRAWM,0x000508 ; Write GP0 Command Word (Drawing To Display Area Allowed Bit 10, Texture Page Colors = 15BPP Bit 7..8, Texture Page Y Base = 0 Bit 4, Texture Page X Base = 512 Bit 0..3) +WRGP0 GPUDRAWATL,0x000000 ; Write GP0 Command Word (Set Drawing Area Top Left X1=0, Y1=0) +WRGP0 GPUDRAWABR,0x03BD3F ; Write GP0 Command Word (Set Drawing Area Bottom Right X2=319, Y2=239) +WRGP0 GPUDRAWOFS,0x000000 ; Write GP0 Command Word (Set Drawing Offset X=0, Y=0) + +.macro CopyTextureVram, TEXTURE, X,Y + CopyRectCPU X,Y, 256,256 ; Copy Rectangle (CPU To VRAM): X,Y, Width,Height + li t0,32767 ; T0 = Data Copy Word Count + la a1,TEXTURE ; A1 = Texture RAM Offset + CopyTextureThis: + lw t1,0(a1) ; T1 = DATA Word + addiu a1,4 ; A1 += 4 (Delay Slot) + sw t1,GP0(a0) ; Write GP0 Packet Word + bnez t0,CopyTextureThis ; IF (T0 != 0) Copy Texture A + subiu t0,1 ; T0-- (Delay Slot) +.endmacro + +.macro CubePositionMoveCheck, joykey,position,branch + IsJoyDown joykey,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + beqz t0,branch + nop ; Delay Slot + la a1,position + lw t0,0(a1) + nop ; Delay Slot +.endmacro + +CopyTextureVram TextureA, 512,0 +CopyTextureVram TextureB, 768,0 +;CopyTextureVram TextureC, 0,256 +CopyTextureVram TextureD, 256,256 +CopyTextureVram TextureE, 512,256 +CopyTextureVram TextureF, 768,256 + +ReverseCubeAccelY: + la a2,YAccel ; Load cube acceleration + lw t1,0(a2) ; in t1 + + nop + subu t1,$0,t1 ; Reverse acceleration + sw t1,0(a2) ; ... + + la a1,YPos ; Load cube Y position + lw t0,0(a1) ; ... + + nop + add t0,t1 ; Accelerate cube + sw t0,0(a1) ; Commit cube Y position + + b PRESSEND +;ReverseCubeAccelY + +Refresh: + WaitVSync PadBuffer,PadData ; Wait For Vertical Retrace Period & Store XOR Pad Data: Buffer Address, Data Address + FillRectVRAM 0xEEDDFF, 0,0, 320,240 ; Fill Rectangle In VRAM: Color, X,Y, Width,Height + XYZPos XPos,YPos,ZPos ; Object X,Y,Z Translation: X,Y,Z + XYZRotCalc XRot,YRot,ZRot,SinCos256 ; XYZ Rotation Calculation: X Rotation, Y Rotation, Z Rotation, Matrix Sin & Cos Pre-Calculated Table + +; Move cube towards the left + la a1,XPos ; Load cube X position + lw t0,0(a1) ; + nop ; Chill + subiu t0,32 ; Move cube left + sw t0,0(a1) ; Store position + +; Gravity pulling cube down, its force remaking it jump + la a1,YPos ; Load cube Y position + lw t0,0(a1) ; ... + + li t2,+8192-1024 ; Set compare value of ... floor Y + li t3,-8192-1024 ; ... roof Y + + ;beq t0,t2,ReverseCubeAccelY ; [If cube touches ... floor + ;nop + ;beq t0,t3,ReverseCubeAccelY ; reverse direction] ... roof + + slt t4,t0,t2 ; if cubeY >= floorY + beq t4,$0,ReverseCubeAccelY ; then reverse it + + la a2,YAccel ; Load cube acceleration + lw t1,0(a2) ; ... + + nop + addi t1,16 ; Get acceleration stronger + sw t1,0(a2) ; Then store it + + nop + add t0,t1 ; Accelerate cube + sw t0,0(a1) ; Commit cube Y position + +; PRESSUP: + ; CubePositionMoveCheck JOY_UP,YPos,PRESSDOWN + ; subiu t0,256 ; Y Position-- + ; sw t0,0(a1) +; PRESSDOWN: + ; CubePositionMoveCheck JOY_DOWN,YPos,PRESSLEFT + ; addiu t0,256 ; Y Position++ + ; sw t0,0(a1) +; PRESSLEFT: + ; CubePositionMoveCheck JOY_LEFT,XPos,PRESSRIGHT + ; subiu t0,256 ; X Position-- + ; sw t0,0(a1) +; PRESSRIGHT: + ; CubePositionMoveCheck JOY_RIGHT,XPos,PRESSL1 + ; addiu t0,256 ; X Position++ + ; sw t0,0(a1) +; PRESSL1: + ; IsJoyDown JOY_L1,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSL2 + ; nop ; Delay Slot + ; la a1,ZPos ; Z Position-- + ; lw t0,0(a1) + ; li t1,10240 + ; beq t0,t1,PRESSL2 + ; nop ; Delay Slot + ; subiu t0,256 + ; sw t0,0(a1) +; PRESSL2: + ; IsJoyDown JOY_L2,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESST + ; nop ; Delay Slot + ; la a1,ZPos ; Z Position++ + ; lw t0,0(a1) + ; li t1,25600 + ; beq t0,t1,PRESST + ; nop ; Delay Slot + ; addiu t0,256 + ; sw t0,0(a1) +; PRESST: + ; IsJoyDown JOY_T,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSX + ; nop ; Delay Slot + ; la a1,XRot ; X Rotation-- + ; lw t0,0(a1) + ; nop ; Delay Slot + ; subiu t0,1 + ; andi t0,0xFF + ; sw t0,0(a1) +; PRESSX: + ; IsJoyDown JOY_X,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSC + ; nop ; Delay Slot + ; la a1,XRot ; X Rotation++ + ; lw t0,0(a1) + ; nop ; Delay Slot + ; addiu t0,1 + ; andi t0,0xFF + ; sw t0,0(a1) +; PRESSC: + ; IsJoyDown JOY_C,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSS + ; nop ; Delay Slot + ; la a1,YRot ; Y Rotation-- + ; lw t0,0(a1) + ; nop ; Delay Slot + ; subiu t0,1 + ; andi t0,0xFF + ; sw t0,0(a1) +; PRESSS: + ; IsJoyDown JOY_S,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSR1 + ; nop ; Delay Slot + ; la a1,YRot ; Y Rotation++ + ; lw t0,0(a1) + ; nop ; Delay Slot + ; addiu t0,1 + ; andi t0,0xFF + ; sw t0,0(a1) +; PRESSR1: + ; IsJoyDown JOY_R1,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSR2 + ; nop ; Delay Slot + ; la a1,ZRot ; Z Rotation-- + ; lw t0,0(a1) + ; nop ; Delay Slot + ; subiu t0,1 + ; andi t0,0xFF + ; sw t0,0(a1) +; PRESSR2: + ; IsJoyDown JOY_R2,PadData ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + ; beqz t0,PRESSEND + ; nop ; Delay Slot + ; la a1,ZRot ; Z Rotation++ + ; lw t0,0(a1) + ; nop ; Delay Slot + ; addiu t0,1 + ; andi t0,0xFF + ; sw t0,0(a1) +PRESSEND: + ShadeTexQuadCullBackZSort ShadeTexCubeQuad,ShadeTexCubeQuadEnd,PolySort ; Shaded Texture Quad Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + b Refresh + nop ; Delay Slot + +PadBuffer: + dw 0 ; Pad Buffer (Automatically Stored Every Frame) +PadData: + dw 0 ; Pad Data (Read From VSync Routine) + +XPos: + dw 16384 ; X Position Word +YPos: + dw 512 ; Y Position Word +ZPos: + dw 25600 ; Z Position Word + +YAccel: + dw -64 + +XRot: + dw 0 ; X Rotate Word (0..255) +YRot: + dw 0 ; Y Rotate Word (0..255) +ZRot: + dw 0 ; Z Rotate Word (0..255) + +Matrix3D: ; 3D Matrix: Set To Default Identity Matrix (All Numbers Multiplied By 256 For 24.8 Fixed Point Format) + dw 256, 0, 0, 0 ; X = 1.0, 0.0, 0.0, X Translation = 0.0 + dw 0, 256, 0, 0 ; 0.0, Y = 1.0, 0.0, Y Translation = 0.0 + dw 0, 0, 256, 0 ; 0.0, 0.0, Z = 1.0, Z Translation = 0.0 + +; Matrix Sin & Cos Pre-Calculated Table + .include "sincos256.asm" ; Matrix Sin & Cos Pre-Calculated Table (256 Rotations) + +; Object Data + .include "objects.asm" ; Object Data + +TextureA: + .incbin "GFX/A.bin" ; Include 256x256 15BPP Texture Data (131072 Bytes) +TextureB: + .incbin "GFX/B.bin" ; Include 256x256 15BPP Texture Data (131072 Bytes) +;TextureC: +; .incbin "GFX/C.bin" ; Include 256x256 15BPP Texture Data (131072 Bytes) +TextureD: + .incbin "GFX/D.bin" ; Include 256x256 15BPP Texture Data (131072 Bytes) +TextureE: + .incbin "GFX/E.bin" ; Include 256x256 15BPP Texture Data (131072 Bytes) +TextureF: + .incbin "GFX/F.bin" ; Include 256x256 15BPP Texture Data (131072 Bytes) + +PolySort: ; Polygon Sorting Area + +.close \ No newline at end of file diff --git a/BouncyCubePs1/GFX/A.bin b/BouncyCubePs1/GFX/A.bin new file mode 100644 index 0000000..1adb5b7 --- /dev/null +++ b/BouncyCubePs1/GFX/A.bin @@ -0,0 +1 @@ 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\ No newline at end of file diff --git a/BouncyCubePs1/LIB/3D.INC b/BouncyCubePs1/LIB/3D.INC new file mode 100644 index 0000000..067bbfc --- /dev/null +++ b/BouncyCubePs1/LIB/3D.INC @@ -0,0 +1,5533 @@ +.macro LoadXYZ,X,Y,Z ; Load X,Y,Z: X,Y,Z + lw t0,0(a2) ; T0 = X + lw t1,4(a2) ; T1 = Y + lw t2,8(a2) ; T2 = Z + addiu a2,12 ; A2 += 12 + Calc3D t0,t1,t2,X,Y,Z +.endmacro + +.macro Calc3D,X,Y,Z,XCALC,YCALC,ZCALC ; Calculate X,Y,Z 3D: X,Y,Z,XCalc,YCalc,ZCalc + la a1,Matrix3D ; Load Matrix3D Address + lw t3,0(a1) ; XCalc = (Matrix3D[0] * X) + (Matrix3D[1] * Y) + (Matrix3D[2] * Z) + Matrix3D[3] + lw t4,4(a1) + lw t5,8(a1) + lw t6,12(a1) + mult t3,x + mflo XCALC + mult t4,y + mflo t3 + add XCALC,t3 + mult t5,z + mflo t3 + add XCALC,t3 + sll t6,8 + add XCALC,t6 + lw t3,16(a1) ; YCalc = (Matrix3D[4] * X) + (Matrix3D[5] * Y) + (Matrix3D[6] * Z) + Matrix3D[7] + lw t4,20(a1) + lw t5,24(a1) + lw t6,28(a1) + mult t3,x + mflo YCALC + mult t4,y + mflo t3 + add YCALC,t3 + mult t5,z + mflo t3 + add YCALC,t3 + sll t6,8 + add YCALC,t6 + lw t3,32(a1) ; ZCalc = (Matrix3D[8] * X) + (Matrix3D[9] * Y) + (Matrix3D[10] * Z) + Matrix3D[11] + lw t4,36(a1) + lw t5,40(a1) + lw t6,44(a1) + mult t3,x + mflo ZCALC + mult t4,y + mflo t3 + add ZCALC,t3 + mult t5,z + mflo t3 + add ZCALC,t3 + sll t6,8 + add ZCALC,t6 + + Calc2D XCALC,YCALC,ZCALC +.endmacro + +.macro Calc2D,X,Y,Z ; Calculate X,Y 2D: X,Y,Z + beqz Z,Skip ; IF (Z <= 0) Skip + sra Z,8 ; Z /= 256 (Delay Slot) + + div X,Z ; X = X / Z + (ScreenX / 2) + mflo X + addi X,320/2 + + div Y,Z ; Y = Y / Z + (ScreenY / 2) + mflo Y + addi Y,240/2 + + Skip: +.endmacro + +.macro CullFace,X1,Y1,X2,Y2,X3,Y3 ; Cull Face Calculation: X1,Y1,X2,Y2,X3,Y3 + sub t0,X3,X1 ; T0 = HDX (X3 - X1) + sub t1,Y2,Y1 ; T1 = MDY (Y2 - Y1) + mult t0,t1 ; T0 = HDX * MDY + mflo t0 + + sub t1,Y3,Y1 ; T1 = HDY (Y3 - Y1) + sub t2,X2,X1 ; T2 = MDX (X2 - X1) + mult t1,t2 ; T1 = HDY * MDX + mflo t1 + + sub t0,t1 ; T0 = R (HDX * MDY) - (HDY * MDX) Compare To Zero +.endmacro + +.macro AverageZTri,Z1,Z2,Z3 ; Average Z Triangle: Z1,Z2,Z3 + add t0,Z1,Z2 ; T0 = Z1+Z2 + add t0,Z3 ; T0 = Z1+Z2+Z3 +.endmacro + +.macro AverageZQuad,Z1,Z2,Z3,Z4 ; Average Z Quad: Z1,Z2,Z3,Z4 + add t0,Z1,Z2 ; T0 = Z1+Z2 + add t0,Z3 ; T0 = Z1+Z2+Z3 + add t0,Z4 ; T0 = Z1+Z2+Z3+Z4 +.endmacro + +.macro Point,START,END ; Point: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X, S1 = 2D Y + + sll s1,16 ; Y <<= 16 + andi s0,0xFFFF ; X &= 0xFFFF + or s0,s1 ; X |= Y + + lw s1,0(a2) ; S1 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s1,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro PointZSort,START,END,SORT ; Point Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X, S1 = 2D Y, S2 = 3D Z + + sll s1,16 ; Y <<= 16 + andi s0,0xFFFF ; X &= 0xFFFF + or s0,s1 ; X |= Y + + sw s2,0(v0) ; Store Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s1,0(a2) ; S1 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s1,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s0,0(v0) ; Store Vertex To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,12 ; A3 += 12 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,12 ; A2 += 12 (Delay Slot) + subiu a2,12 ; A2 -= 12 + + li t0,(12/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(8/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro Line,START,END ; Line: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + lw s2,0(a2) ; S2 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s2,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro LineZSort,START,END,SORT ; Line Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1, S2 = 3D Z1 + LoadXYZ s3,s4,s5 ; S3 = 2D X2, S4 = 2D Y2, S5 = 3D Z2 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s4,16 ; Y2 <<= 16 + andi s3,0xFFFF ; X2 &= 0xFFFF + or s1,s3,s4 ; X2 |= Y2 + + add s2,s5 ; Z1 += Z2 + sw s2,0(v0) ; Store Z1+Z2 To Sort Address + addiu v0,4 ; V0 += 4 + + lw s2,0(a2) ; S2 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s2,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s0,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,16 ; A3 += 16 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + li t0,(16/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(12/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro WireTriCullNone,START,END ; Wire Triangle Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro WireTriCullBack,START,END ; Wire Triangle Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro WireTriCullFront,START,END ; Wire Triangle Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro WireTriCullNoneZSort,START,END,SORT ; Wire Triangle Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s3,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + li t0,0x55555555 ; T0 = Termination Code + sw t0,0(v0) ; Store Termination Code To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,28 ; A3 += 28 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + li t0,(28/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(24/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro WireTriCullBackZSort,START,END,SORT ; Wire Triangle Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s3,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + li t0,0x55555555 ; T0 = Termination Code + sw t0,0(v0) ; Store Termination Code To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,28 ; A3 += 28 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + li t0,(28/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(24/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro WireTriCullFrontZSort,START,END,SORT ; Wire Triangle Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s3,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + li t0,0x55555555 ; T0 = Termination Code + sw t0,0(v0) ; Store Termination Code To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,28 ; A3 += 28 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + li t0,(28/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(24/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro FillTriCullNone,START,END ; Fill Triangle Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro FillTriCullBack,START,END ; Fill Triangle Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro FillTriCullFront,START,END ; Fill Triangle Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro FillTriCullNoneZSort,START,END,SORT ; Fill Triangle Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,20 ; A3 += 20 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,20 ; A2 += 20 (Delay Slot) + subiu a2,20 ; A2 -= 20 + + li t0,(20/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(16/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro FillTriCullBackZSort,START,END,SORT ; Fill Triangle Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,20 ; A3 += 20 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,20 ; A2 += 20 (Delay Slot) + subiu a2,20 ; A2 -= 20 + + li t0,(20/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(16/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro FillTriCullFrontZSort,START,END,SORT ; Fill Triangle Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,4 ; A2 += 4 (Delay Slot) + subiu a2,4 ; A2 -= 4 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,20 ; A3 += 20 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,20 ; A2 += 20 (Delay Slot) + subiu a2,20 ; A2 -= 20 + + li t0,(20/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(16/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeTriCullNone,START,END ; Shaded Triangle Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s4,0(a2) ; S4 = Color2 + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s4,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTriCullBack,START,END ; Shaded Triangle Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,12 ; A2 += 12 (Delay Slot) + subiu a2,12 ; A2 -= 12 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s4,0(a2) ; S4 = Color2 + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s4,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTriCullFront,START,END ; Shaded Triangle Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,12 ; A2 += 12 (Delay Slot) + subiu a2,12 ; A2 -= 12 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s4,0(a2) ; S4 = Color2 + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s4,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTriCullNoneZSort,START,END,SORT ; Shaded Triangle Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,28 ; A3 += 28 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + li t0,(28/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(24/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTriCullBackZSort,START,END,SORT ; Shaded Triangle Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,12 ; A2 += 12 (Delay Slot) + subiu a2,12 ; A2 -= 12 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,28 ; A3 += 28 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + li t0,(28/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(24/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeTriCullFrontZSort,START,END,SORT ; Shaded Triangle Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,12 ; A2 += 12 (Delay Slot) + subiu a2,12 ; A2 -= 12 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,28 ; A3 += 28 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + li t0,(28/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(24/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro TexTriCullNone,START,END ; Texture Triangle Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s4,0(a2) ; S4 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s4,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s5,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro TexTriCullBack,START,END ; Texture Triangle Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s4,0(a2) ; S4 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s4,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s5,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro TexTriCullFront,START,END ; Texture Triangle Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s4,0(a2) ; S4 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s4,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s5,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro TexTriCullNoneZSort,START,END,SORT ; Texture Triangle Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s1,0(a2) ; S1 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s1,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s2,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,32 ; A3 += 32 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + li t0,(32/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(28/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro TexTriCullBackZSort,START,END,SORT ; Texture Triangle Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s1,0(a2) ; S1 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s1,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s2,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,32 ; A3 += 32 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + li t0,(32/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(28/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro TexTriCullFrontZSort,START,END,SORT ; Texture Triangle Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s1,0(a2) ; S1 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s1,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s2,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,32 ; A3 += 32 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + li t0,(32/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(28/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeTexTriCullNone,START,END ; Shaded Texture Triangle Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s4,0(a2) ; S4 = Color2 + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color3 + addiu a2,4 ; A2 += 4 + + lw s6,0(a2) ; S6 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s4,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s7,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexTriCullBack,START,END ; Shaded Texture Triangle Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s4,0(a2) ; S4 = Color2 + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color3 + addiu a2,4 ; A2 += 4 + + lw s6,0(a2) ; S6 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s4,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s7,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexTriCullFront,START,END ; Shaded Texture Triangle Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + lw s3,0(a2) ; S3 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s4,0(a2) ; S4 = Color2 + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color3 + addiu a2,4 ; A2 += 4 + + lw s6,0(a2) ; S6 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s3,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s4,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s7,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexTriCullNoneZSort,START,END,SORT ; Shaded Texture Triangle Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + + lw s6,0(a2) ; S6 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,40 ; A3 += 40 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,40 ; A2 += 40 (Delay Slot) + subiu a2,40 ; A2 -= 40 + + li t0,(40/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(36/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexTriCullBackZSort,START,END,SORT ; Shaded Texture Triangle Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + + lw s6,0(a2) ; S6 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,40 ; A3 += 40 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,40 ; A2 += 40 (Delay Slot) + subiu a2,40 ; A2 -= 40 + + li t0,(40/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(36/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeTexTriCullFrontZSort,START,END,SORT ; Shaded Texture Triangle Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + AverageZTri s0,s1,s2 ; Average Z Triangle: Z1,Z2,Z3 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + + lw s6,0(a2) ; S6 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord3 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,40 ; A3 += 40 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,40 ; A2 += 40 (Delay Slot) + subiu a2,40 ; A2 -= 40 + + li t0,(40/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(36/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro WireQuadCullNone,START,END ; Wire Quad Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro WireQuadCullBack,START,END ; Wire Quad Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro WireQuadCullFront,START,END ; Wire Quad Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro WireQuadCullNoneZSort,START,END,SORT ; Wire Quad Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s3,0(v0) ; Store Vertex5 To Sort Address + addiu v0,4 ; V0 += 4 + + li t0,0x55555555 ; T0 = Termination Code + sw t0,0(v0) ; Store Termination Code To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,32 ; A3 += 32 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + li t0,(32/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(28/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro WireQuadCullBackZSort,START,END,SORT ; Wire Quad Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s3,0(v0) ; Store Vertex5 To Sort Address + addiu v0,4 ; V0 += 4 + + li t0,0x55555555 ; T0 = Termination Code + sw t0,0(v0) ; Store Termination Code To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,32 ; A3 += 32 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + li t0,(32/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(28/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro WireQuadCullFrontZSort,START,END,SORT ; Wire Quad Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s3,0(v0) ; Store Vertex5 To Sort Address + addiu v0,4 ; V0 += 4 + + li t0,0x55555555 ; T0 = Termination Code + sw t0,0(v0) ; Store Termination Code To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,32 ; A3 += 32 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + li t0,(32/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(28/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro FillQuadCullNone,START,END ; Fill Quad Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro FillQuadCullBack,START,END ; Fill Quad Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro FillQuadCullFront,START,END ; Fill Quad Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro FillQuadCullNoneZSort,START,END,SORT ; Fill Quad Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,24 ; A3 += 24 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + li t0,(24/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(20/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro FillQuadCullBackZSort,START,END,SORT ; Fill Quad Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,24 ; A3 += 24 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + li t0,(24/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(20/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro FillQuadCullFrontZSort,START,END,SORT ; Fill Quad Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,16 ; A2 += 16 (Delay Slot) + subiu a2,16 ; A2 -= 16 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,24 ; A3 += 24 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,24 ; A2 += 24 (Delay Slot) + subiu a2,24 ; A2 -= 24 + + li t0,(24/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(20/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeQuadCullNone,START,END ; Shaded Quad Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color2 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color3 + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Color4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s6,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Color4) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeQuadCullBack,START,END ; Shaded Quad Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color2 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color3 + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Color4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s6,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Color4) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeQuadCullFront,START,END ; Shaded Quad Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color2 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color3 + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Color4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s6,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Color4) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeQuadCullNoneZSort,START,END,SORT ; Shaded Quad Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s6,0(v0) ; Store Color4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,36 ; A3 += 36 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,36 ; A2 += 36 (Delay Slot) + subiu a2,36 ; A2 -= 36 + + li t0,(36/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(32/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro ShadeQuadCullBackZSort,START,END,SORT ; Shaded Quad Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s6,0(v0) ; Store Color4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,36 ; A3 += 36 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,36 ; A2 += 36 (Delay Slot) + subiu a2,36 ; A2 -= 36 + + li t0,(36/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(32/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeQuadCullFrontZSort,START,END,SORT ; Shaded Quad Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,28 ; A2 += 28 (Delay Slot) + subiu a2,28 ; A2 -= 28 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s6,0(v0) ; Store Color4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,36 ; A3 += 36 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,36 ; A2 += 36 (Delay Slot) + subiu a2,36 ; A2 -= 36 + + li t0,(36/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(32/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro TexQuadCullNone,START,END ; Texture Quad Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s5,0(a2) ; S5 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s5,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord4) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro TexQuadCullBack,START,END ; Texture Quad Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s5,0(a2) ; S5 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s5,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro TexQuadCullFront,START,END ; Texture Quad Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s5,0(a2) ; S5 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s5,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw s6,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro TexQuadCullNoneZSort,START,END,SORT ; Texture Quad Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s1,0(a2) ; S1 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s1,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s2,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord4 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,40 ; A3 += 40 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,40 ; A2 += 40 (Delay Slot) + subiu a2,40 ; A2 -= 40 + + li t0,(40/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(36/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro TexQuadCullBackZSort,START,END,SORT ; Texture Quad Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s1,0(a2) ; S1 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s1,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s2,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,40 ; A3 += 40 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,40 ; A2 += 40 (Delay Slot) + subiu a2,40 ; A2 -= 40 + + li t0,(40/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(36/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro TexQuadCullFrontZSort,START,END,SORT ; Texture Quad Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,32 ; A2 += 32 (Delay Slot) + subiu a2,32 ; A2 -= 32 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color+Command + addiu a2,4 ; A2 += 4 + + lw s1,0(a2) ; S1 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw s8,0(a2) ; S8 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s1,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s2,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s6,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,40 ; A3 += 40 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,40 ; A2 += 40 (Delay Slot) + subiu a2,40 ; A2 -= 40 + + li t0,(40/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(36/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeTexQuadCullNone,START,END ; Shaded Texture Quad Face Cull None: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color2 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color3 + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Color4 + addiu a2,4 ; A2 += 4 + + lw s8,0(a2) ; S8 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw t0,0(a2) ; T0 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw t1,0(a2) ; T1 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw t2,0(a2) ; T2 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw t0,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s6,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw t1,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Color4) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw t2,GP0(a0) ; Write GP0 Packet Word (Texcoord4) + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexQuadCullBack,START,END ; Shaded Texture Quad Back Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,44 ; A2 += 44 (Delay Slot) + subiu a2,44 ; A2 -= 44 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color2 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color3 + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Color4 + addiu a2,4 ; A2 += 4 + + lw s8,0(a2) ; S8 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw t0,0(a2) ; T0 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw t1,0(a2) ; T1 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw t2,0(a2) ; T2 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw t0,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s6,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw t1,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Color4) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw t2,GP0(a0) ; Write GP0 Packet Word (Texcoord4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexQuadCullFront,START,END ; Shaded Texture Quad Front Face Cull: Object Start Address, Object End Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + Loop: + LoadXYZ s0,s1,s2 ; S0 = 2D X1, S1 = 2D Y1 + LoadXYZ s2,s3,s4 ; S2 = 2D X2, S3 = 2D Y2 + LoadXYZ s4,s5,s6 ; S4 = 2D X3, S5 = 2D Y3 + + CullFace s0,s1,s2,s3,s4,s5 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,44 ; A2 += 44 (Delay Slot) + subiu a2,44 ; A2 -= 44 + + LoadXYZ s6,s7,s8 ; S6 = 2D X4, S7 = 2D Y4 + + sll s1,16 ; Y1 <<= 16 + andi s0,0xFFFF ; X1 &= 0xFFFF + or s0,s1 ; X1 |= Y1 + + sll s3,16 ; Y2 <<= 16 + andi s2,0xFFFF ; X2 &= 0xFFFF + or s1,s2,s3 ; X2 |= Y2 + + sll s5,16 ; Y3 <<= 16 + andi s4,0xFFFF ; X3 &= 0xFFFF + or s2,s4,s5 ; X3 |= Y3 + + sll s7,16 ; Y4 <<= 16 + andi s6,0xFFFF ; X4 &= 0xFFFF + or s3,s6,s7 ; X4 |= Y4 + + lw s4,0(a2) ; S4 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s5,0(a2) ; S5 = Color2 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color3 + addiu a2,4 ; A2 += 4 + lw s7,0(a2) ; S7 = Color4 + addiu a2,4 ; A2 += 4 + + lw s8,0(a2) ; S8 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw t0,0(a2) ; T0 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw t1,0(a2) ; T1 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw t2,0(a2) ; T2 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s4,GP0(a0) ; Write GP0 Command Word (Color1+Command) + sw s0,GP0(a0) ; Write GP0 Packet Word (Vertex1) + sw s8,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + sw s5,GP0(a0) ; Write GP0 Packet Word (Color2) + sw s1,GP0(a0) ; Write GP0 Packet Word (Vertex2) + sw t0,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + sw s6,GP0(a0) ; Write GP0 Packet Word (Color3) + sw s2,GP0(a0) ; Write GP0 Packet Word (Vertex3) + sw t1,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + sw s7,GP0(a0) ; Write GP0 Packet Word (Color4) + sw s3,GP0(a0) ; Write GP0 Packet Word (Vertex4) + sw t2,GP0(a0) ; Write GP0 Packet Word (Texcoord4) + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexQuadCullNoneZSort,START,END,SORT ; Shaded Texture Quad Face Cull None Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color4 + addiu a2,4 ; A2 += 4 + + lw s8,0(a2) ; S8 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw t0,0(a2) ; T0 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw t1,0(a2) ; T1 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw t2,0(a2) ; T2 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw t0,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw t1,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s6,0(v0) ; Store Color4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + sw t2,0(v0) ; Store Texcoord4 To Sort Address + addiu v0,4 ; V0 += 4 + + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,52 ; A3 += 52 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,52 ; A2 += 52 (Delay Slot) + subiu a2,52 ; A2 -= 52 + + li t0,(52/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(48/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot +.endmacro + +.macro ShadeTexQuadCullBackZSort,START,END,SORT ; Shaded Texture Quad Back Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Back Face Cull: X1,Y1,X2,Y2,X3,Y3 + bgez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) >= 0 Skip + addiu a2,44 ; A2 += 44 (Delay Slot) + subiu a2,44 ; A2 -= 44 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color4 + addiu a2,4 ; A2 += 4 + + lw s8,0(a2) ; S8 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw t0,0(a2) ; T0 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw t1,0(a2) ; T1 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw t2,0(a2) ; T2 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw t0,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw t1,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s6,0(v0) ; Store Color4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + sw t2,0(v0) ; Store Texcoord4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,52 ; A3 += 52 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,52 ; A2 += 52 (Delay Slot) + subiu a2,52 ; A2 -= 52 + + li t0,(52/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(48/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro ShadeTexQuadCullFrontZSort,START,END,SORT ; Shaded Texture Quad Front Face Cull Z Sort: Object Start Address, Object End Address, Sort Address + la a2,START ; A2 = Object Start Address + la a3,END ; A3 = Object End Address + la v0,SORT ; V0 = Sort Address + Loop: + LoadXYZ s3,s4,s0 ; S3 = 2D X1, S4 = 2D Y1, S0 = 3D Z1 + LoadXYZ s5,s6,s1 ; S5 = 2D X2, S6 = 2D Y2, S1 = 3D Z2 + LoadXYZ s7,s8,s2 ; S6 = 2D X3, S8 = 2D Y3, S2 = 3D Z3 + + CullFace s3,s4,s5,s6,s7,s8 ; Front Face Cull: X1,Y1,X2,Y2,X3,Y3 + blez t0,Skip ; IF ((X3-X1 * Y2-Y1) - (Y3-Y1 * X2-X1)) <= 0 Skip + addiu a2,44 ; A2 += 44 (Delay Slot) + subiu a2,44 ; A2 -= 44 + + sll s4,16 ; Y1 <<= 16 + andi s3,0xFFFF ; X1 &= 0xFFFF + or s3,s4 ; X1 |= Y1 + + sll s6,16 ; Y2 <<= 16 + andi s5,0xFFFF ; X2 &= 0xFFFF + or s4,s5,s6 ; X2 |= Y2 + + sll s8,16 ; Y3 <<= 16 + andi s7,0xFFFF ; X3 &= 0xFFFF + or s5,s7,s8 ; X3 |= Y3 + + LoadXYZ s7,s8,s6 ; S7 = 2D X4, S8 = 2D Y4, S6 = 3D Z4 + + AverageZQuad s0,s1,s2,s6 ; Average Z Quad: Z1,Z2,Z3,Z4 + sw t0,0(v0) ; Store Average Z To Sort Address + addiu v0,4 ; V0 += 4 + + sll s8,16 ; Y4 <<= 16 + andi s7,0xFFFF ; X4 &= 0xFFFF + or s7,s8 ; X4 |= Y4 + + lw s0,0(a2) ; S0 = Color1+Command + addiu a2,4 ; A2 += 4 + lw s1,0(a2) ; S1 = Color2 + addiu a2,4 ; A2 += 4 + lw s2,0(a2) ; S2 = Color3 + addiu a2,4 ; A2 += 4 + lw s6,0(a2) ; S6 = Color4 + addiu a2,4 ; A2 += 4 + + lw s8,0(a2) ; S8 = Texcoord1+Palette + addiu a2,4 ; A2 += 4 + lw t0,0(a2) ; T0 = Texcoord2+Texpage + addiu a2,4 ; A2 += 4 + lw t1,0(a2) ; T1 = Texcoord3 + addiu a2,4 ; A2 += 4 + lw t2,0(a2) ; T2 = Texcoord4 + addiu a2,4 ; A2 += 4 + + sw s0,0(v0) ; Store Color1+Command To Sort Address + addiu v0,4 ; V0 += 4 + sw s3,0(v0) ; Store Vertex1 To Sort Address + addiu v0,4 ; V0 += 4 + sw s8,0(v0) ; Store Texcoord1+Palette To Sort Address + addiu v0,4 ; V0 += 4 + + sw s1,0(v0) ; Store Color2 To Sort Address + addiu v0,4 ; V0 += 4 + sw s4,0(v0) ; Store Vertex2 To Sort Address + addiu v0,4 ; V0 += 4 + sw t0,0(v0) ; Store Texcoord2+TexPage To Sort Address + addiu v0,4 ; V0 += 4 + + sw s2,0(v0) ; Store Color3 To Sort Address + addiu v0,4 ; V0 += 4 + sw s5,0(v0) ; Store Vertex3 To Sort Address + addiu v0,4 ; V0 += 4 + sw t1,0(v0) ; Store Texcoord3 To Sort Address + addiu v0,4 ; V0 += 4 + + sw s6,0(v0) ; Store Color4 To Sort Address + addiu v0,4 ; V0 += 4 + sw s7,0(v0) ; Store Vertex4 To Sort Address + addiu v0,4 ; V0 += 4 + sw t2,0(v0) ; Store Texcoord4 To Sort Address + addiu v0,4 ; V0 += 4 + + Skip: + bne a2,a3,Loop ; IF (Object Start Offset != Object End Offset) Loop + nop ; Delay Slot + + ; Sort List (Selection Sort) + la a2,SORT ; A2 = Sort Start Address + beq a2,v0,SkipObject ; IF (Sort Start Offset == Sort End Offset) Skip Object + nop ; Delay Slot + SelectionSort: + or a3,a2,r0 ; A3 = Sort Current Address + li t0,0 ; T0 = MaxZ + SortLoop: + lw t1,0(a3) ; T1 = Average Z Value + nop ; Delay Slot + blt t1,t0,ZLT ; IF (Average Z Value < MaxZ) Z Less Than + nop ; Delay Slot + or t0,t1,r0 ; ELSE (MaxZ = Average Z Value) + or v1,a3,r0 ; V1 = MaxZ Address + ZLT: + addiu a3,52 ; A3 += 52 + + bne a3,v0,SortLoop ; IF (Sort Current Offset != Sort End Offset) Sort Loop + nop ; Delay Slot + + beq v1,a2,NoSwap ; IF (MaxZ Address == Sort Start Address) No Swap + addiu a2,52 ; A2 += 52 (Delay Slot) + subiu a2,52 ; A2 -= 52 + + li t0,(52/4)-1 ; T0 = Swap Count + Swap: + lw t1,0(a2) + lw t2,0(v1) + sw t1,0(v1) + sw t2,0(a2) + addiu a2,4 ; A2 += 4 + addiu v1,4 ; V1 += 4 + bnez t0,Swap ; IF (Swap Count != 0) Swap + subiu t0,1 ; T0-- (Delay Slot) + + NoSwap: + bne a2,v0,SelectionSort ; IF (Sort Start Offset != Sort End Offset) Selection Sort + nop ; Delay Slot + + ; Render Sort List + la a1,SORT ; A1 = Sort Start Address + RenderLoop: + addiu a1,4 ; A1 += 4 (Skip Average Z) + li t0,(48/4)-1 ; T0 = Render Count + Render: + lw t1,0(a1) ; T1 = Command/Packet Word + addiu a1,4 ; A1 += 4 + sw t1,GP0(a0) ; Write GP0 Command/Packet Word + bnez t0,Render ; IF (Render Count != 0) Render + subiu t0,1 ; T0-- (Delay Slot) + bne a1,v0,RenderLoop ; IF (Sort Start Offset != Sort End Offset) Render Loop + nop ; Delay Slot + + SkipObject: +.endmacro + +.macro XPos,X ; Object X Translation: X + la a1,X ; Load X Translation Value Address + lw t0,0(a1) ; Load X Translation Value + la a1,Matrix3D ; Load Matrix3D Address + sw t0,12(a1) ; Matrix3D[3] = (Translation X) +.endmacro + +.macro YPos,Y ; Object Y Translation: Y + la a1,Y ; Load Y Translation Value Address + lw t0,0(a1) ; Load Y Translation Value + la a1,Matrix3D ; Load Matrix3D Address + sw t1,28(a1) ; Matrix3D[7] = (Translation Y) +.endmacro + +.macro ZPos,Z ; Object Z Translation: Z + la a1,Z ; Load Z Translation Value Address + lw t0,0(a1) ; Load Z Translation Value + la a1,Matrix3D ; Load Matrix3D Address + sw t2,44(a1) ; Matrix3D[11] = (Translation Z) +.endmacro + +.macro XYZPos,X,Y,Z ; Object X,Y,Z Translation: X,Y,Z + la a1,X ; Load X Translation Value Address + lw t0,0(a1) ; Load X Translation Value + la a1,Y ; Load Y Translation Value Address + lw t1,0(a1) ; Load Y Translation Value + la a1,Z ; Load Z Translation Value Address + lw t2,0(a1) ; Load Z Translation Value + la a1,Matrix3D ; Load Matrix3D Address + sw t0,12(a1) ; Matrix3D[3] = (Translation X) + sw t1,28(a1) ; Matrix3D[7] = (Translation Y) + sw t2,44(a1) ; Matrix3D[11] = (Translation Z) +.endmacro + +.macro XRotCalc,XROT,PRECALC ; X Rotation Calculation: X Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,XROT ; Load X Rotation Address + lw t0,0(a1) ; T0 = X Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add X Rotation * 16 To X Rotate Matrix Offset + lw t0,0(a1) ; Load XC + lw t1,4(a1) ; Load -XS + lw t2,8(a1) ; Load XS + + la a1,Matrix3D ; Load Matrix3D Address + sw t0,20(a1) ; Store T0 (XC) To Matrix3D 6th Word + sw t1,24(a1) ; Store T1 (-XS) To Matrix3D 7th Word + sw t2,36(a1) ; Store T2 (XS) To Matrix3D 10th Word + sw t0,40(a1) ; Store T0 (XC) To Matrix3D 11th Word +.endmacro + +.macro YRotCalc,YROT,PRECALC ; Y Rotation Calculation: Y Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,YROT ; Load Y Rotation Address + lw t0,0(a1) ; T0 = Y Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add Y Rotation * 16 To Y Rotate Matrix Offset + lw t0,0(a1) ; Load YC + lw t1,4(a1) ; Load -YS + lw t2,8(a1) ; Load YS + + la a1,Matrix3D ; Load Matrix3D Address + sw t0,0(a1) ; Store T0 (YC) To Matrix3D 1st Word + sw t2,8(a1) ; Store T1 (YS) To Matrix3D 3rd Word + sw t1,32(a1) ; Store T2 (-YS) To Matrix3D 9th Word + sw t0,40(a1) ; Store T0 (YC) To Matrix3D 11th Word +.endmacro + +.macro ZRotCalc,ZROT,PRECALC ; Z Rotation Calculation: Z Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,ZROT ; Load Z Rotation Address + lw t0,0(a1) ; T0 = Z Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add Z Rotation * 16 To Z Rotate Matrix Offset + lw t0,0(a1) ; Load ZC + lw t1,4(a1) ; Load -ZS + lw t2,8(a1) ; Load ZS + + la a1,Matrix3D ; Load Matrix3D Address + sw t0,0(a1) ; Store T0 (ZC) To Matrix3D 1st Word + sw t1,4(a1) ; Store T1 (-ZS) To Matrix3D 2nd Word + sw t2,16(a1) ; Store T2 (ZS) To Matrix3D 5th Word + sw t0,20(a1) ; Store T0 (ZC) To Matrix3D 6th Word +.endmacro + +.macro XYRotCalc,XROT,YROT,PRECALC ; XY Rotation Calculation: X Rotation, Y Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,XROT ; Load X Rotation Address + lw t0,0(a1) ; T0 = X Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add X Rotation * 16 To X Rotate Matrix Offset + lw t0,0(a1) ; Load XC + lw t1,4(a1) ; Load -XS + lw t2,8(a1) ; Load XS + lw t3,12(a1) ; Load -XC + + la a1,YROT ; Load Y Rotation Address + lw t4,0(a1) ; T4 = Y Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t4,4 ; T4 *= 16 + addu a1,t4 ; Add Y Rotation * 16 To Y Rotate Matrix Offset + lw t4,0(a1) ; Load YC + lw t5,4(a1) ; Load -YS + lw t6,8(a1) ; Load YS + + la a1,Matrix3D ; Load Matrix3D Address + sw t4,0(a1) ; Store T4 (YC) To Matrix3D 1st Word + mult t2,t6 ; Load (XS * YS) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,4(a1) ; Store T7 (XS * YS) To Matrix3D 2nd Word + mult t3,t6 ; Load (-XC * YS) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,8(a1) ; Store T7 (-XC * YS) To Matrix3D 3rd Word + sw t0,20(a1) ; Store T0 (XC) To Matrix3D 6th Word + sw t2,24(a1) ; Store T2 (XS) To Matrix3D 7th Word + sw t6,32(a1) ; Store T6 (YS) To Matrix3D 9th Word + mult t1,t4 ; Load (-XS * YC) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,36(a1) ; Store T7 (-XS * YC) To Matrix3D 10th Word + mult t0,t4 ; Load (XC * YC) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,40(a1) ; Store T7 (XC * YC) To Matrix3D 11th Word +.endmacro + +.macro XZRotCalc,XROT,ZROT,PRECALC ; XZ Rotation Calculation: X Rotation, Z Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,XROT ; Load X Rotation Address + lw t0,0(a1) ; T0 = X Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add X Rotation * 16 To X Rotate Matrix Offset + lw t0,0(a1) ; Load XC + lw t1,4(a1) ; Load -XS + lw t2,8(a1) ; Load XS + + la a1,ZROT ; Load Z Rotation Address + lw t3,0(a1) ; T3 = Z Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t3,4 ; T3 *= 16 + addu a1,t3 ; Add Z Rotation * 16 To Z Rotate Matrix Offset + lw t3,0(a1) ; Load ZC + lw t4,4(a1) ; Load -ZS + lw t5,8(a1) ; Load ZS + lw t6,12(a1) ; Load -ZC + + la a1,Matrix3D ; Load Matrix3D Address + sw t3,0(a1) ; Store T3 (ZC) To Matrix3D 1st Word + sw t5,4(a1) ; Store T5 (ZS) To Matrix3D 2nd Word + mult t0,t4 ; Load (XC * -ZS) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,16(a1) ; Store T7 (XC * -ZS) To Matrix3D 5th Word + mult t0,t3 ; Load (XC * ZC) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,20(a1) ; Store T7 (XC * ZC) To Matrix3D 6th Word + sw t2,24(a1) ; store T2 (XS) To Matrix3D 7th Word + mult t2,t5 ; Load (XS * ZS) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,32(a1) ; Store T7 (XS * ZS) To Matrix3D 9th Word + mult t2,t6 ; Load (XS * -ZC) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,36(a1) ; Store T7 (XS * -ZC) To Matrix3D 10th Word + sw t0,40(a1) ; Store T0 (XC) To Matrix3D 11th Word +.endmacro + +.macro YZRotCalc,YROT,ZROT,PRECALC ; YZ Rotation Calculation: Y Rotation, Z Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,YROT ; Load Y Rotation Address + lw t0,0(a1) ; T0 = Y Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add Y Rotation * 16 To Y Rotate Matrix Offset + lw t0,0(a1) ; Load YC + lw t1,4(a1) ; Load -YS + lw t2,8(a1) ; Load YS + + la a1,ZROT ; Load Z Rotation Address + lw t3,0(a1) ; T3 = Z Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t3,4 ; T3 *= 16 + addu a1,t3 ; Add Z Rotation * 16 To Z Rotate Matrix Offset + lw t3,0(a1) ; Load ZC + lw t4,4(a1) ; Load -ZS + lw t5,8(a1) ; Load ZS + lw t6,12(a1) ; Load -ZC + + la a1,Matrix3D ; Load Matrix3D Address + mult t0,t3 ; Load (YC * ZC) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,0(a1) ; Store T7 (YC * ZC) To Matrix3D 1st Word + sw t5,4(a1) ; Store T5 (ZS) To Matrix3D 2nd Word + mult t2,t6 ; Load (YS * -ZC) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,8(a1) ; Store T7 (YS * -ZC) To Matrix3D 3rd Word + mult t0,t4 ; Load (YC * -ZS) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,16(a1) ; Store T7 (YC * -ZS) To Matrix3D 5th Word + sw t3,20(a1) ; Store T3 (ZC) To Matrix3D 6th Word + mult t2,t5 ; Load (YS * ZS) To T7 + mflo t7 + sra t7,8 ; Divide T7 By 256 + sw t7,24(a1) ; Store T7 (YS * ZS) To Matrix3D 7th Word + sw t2,32(a1) ; Store T2 (YS) To Matrix3D 9th Word + sw t0,40(a1) ; Store T0 (YC) To Matrix3D 11th Word +.endmacro + +.macro XYZRotCalc,XROT,YROT,ZROT,PRECALC ; XYZ Rotation Calculation: X Rotation, Y Rotation, Z Rotation, Matrix Sin & Cos Pre-Calculated Table + la a1,XROT ; Load X Rotation Address + lw t0,0(a1) ; T0 = X Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t0,4 ; T0 *= 16 + addu a1,t0 ; Add X Rotation * 16 To X Rotate Matrix Offset + lw t0,0(a1) ; Load XC + lw t1,4(a1) ; Load -XS + lw t2,8(a1) ; Load XS + lw t3,12(a1) ; Load -XC + + la a1,YROT ; Load Y Rotation Address + lw t4,0(a1) ; T4 = Y Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t4,4 ; T4 *= 16 + addu a1,t4 ; Add Y Rotation * 16 To Y Rotate Matrix Offset + lw t4,0(a1) ; Load YC + lw t5,4(a1) ; Load -YS + lw t6,8(a1) ; Load YS + + la a1,ZROT ; Load Z Rotation Address + lw t7,0(a1) ; T7 = Z Rotation + la a1,PRECALC ; Load Matrix Sin & Cos Pre-Calculated Table Address + sll t7,4 ; T7 *= 16 + addu a1,t7 ; Add Z Rotation * 16 To Z Rotate Matrix Offset + lw t7,0(a1) ; Load ZC + lw t8,4(a1) ; Load -ZS + lw t9,8(a1) ; Load ZS + + la a1,Matrix3D ; Load Matrix3D Address + mult t0,t4 ; Load (XC * YC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult s0,t7 ; Load (XC * YC * ZC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult t2,t9 ; Load (XS * ZS) To S1 + mflo s1 + sra s1,8 ; Divide S1 By 256 + sub s0,s1 + sw s0,0(a1) ; Store S0 (XC * YC * ZC) - (XS * ZS) To Matrix3D 1st Word + + mult t0,t4 ; Load (XC * YC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult s0,t9 ; Load (XC * YC * ZS) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult t2,t7 ; Load (XS * ZC) To S1 + mflo s1 + sra s1,8 ; Divide S1 By 256 + add s0,s1 + sw s0,4(a1) ; Store S0 (XC * YC * ZS) + (XS * ZC) To Matrix3D 2nd Word + + mult t3,t6 ; Load (-XC * YS) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + sw s0,8(a1) ; Store S0 (-XC * YS) To Matrix3D 3rd Word + + mult t1,t4 ; Load (-XS * YC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult s0,t7 ; Load (-XS * YC * ZC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult t0,t9 ; Load (XC * ZS) To S1 + mflo s1 + sra s1,8 ; Divide S1 By 256 + sub s0,s1 + sw s0,16(a1) ; Store S0 (-XS * YC * ZC) - (XC * ZS) To Matrix3D 5th Word + + mult t1,t4 ; Load (-XS * YC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult s0,t9 ; Load (-XS * YC * ZS) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + mult t0,t7 ; Load (XC * ZC) To S1 + mflo s1 + sra s1,8 ; Divide S1 By 256 + add s0,s1 + sw s0,20(a1) ; Stores S0 (-XS * YC * ZS) + (XC * ZC) To Matrix3D 6th Word + + mult t2,t6 ; Load (XS * YS) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + sw s0,24(a1) ; Store S0 (XS * YS) To Matrix3D 7th Word + mult t6,t7 ; Load (YS * ZC) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + sw s0,32(a1) ; Store S0 (YS * ZC) To Matrix3D 9th Word + mult t6,t9 ; Load (YS * ZS) To S0 + mflo s0 + sra s0,8 ; Divide S0 By 256 + sw s0,36(a1) ; Store S0 (YS * ZS) To Matrix3D 10th Word + sw t4,40(a1) ; Store T4 (YC) To Matrix3D 11th Word +.endmacro \ No newline at end of file diff --git a/BouncyCubePs1/LIB/PSX.INC b/BouncyCubePs1/LIB/PSX.INC new file mode 100644 index 0000000..4e16289 --- /dev/null +++ b/BouncyCubePs1/LIB/PSX.INC @@ -0,0 +1,427 @@ +;============== (Key: R=Read, W=Write) +; PSX Include +;============== +; Memory Map +RAM_KUSEG equ 0x00000000 ; Main RAM KUSEG (Cached) (First 64KB Reserved For BIOS) 2048KB/RW +RAM_KSEG0 equ 0x80000000 ; Main RAM KSEG0 (Uncached) (First 64KB Reserved For BIOS) 2048KB/RW +RAM_KSEG1 equ 0xA0000000 ; Main RAM KSEG1 (Virtual) (First 64KB Reserved For BIOS) 2048KB/RW + +EXP1_KUSEG equ 0x1F000000 ; Expansion Region 1 (ROM/RAM) KUSEG (Cached) 8192KB/RW +EXP1_KSEG0 equ 0x9F000000 ; Expansion Region 1 (ROM/RAM) KSEG0 (Uncached) 8192KB/RW +EXP1_KSEG1 equ 0xBF000000 ; Expansion Region 1 (ROM/RAM) KSEG1 (Virtual) 8192KB/RW + +SPM_KUSEG equ 0x1F800000 ; Scratchpad (D-Cache Used As Fast RAM) KUSEG (Cached) 1KB/RW +SPM_KSEG0 equ 0x9F800000 ; Scratchpad (D-Cache Used As Fast RAM) KSEG0 (Uncached) 1KB/RW +SPM_KSEG1 equ 0xBF800000 ; Scratchpad (D-Cache Used As Fast RAM) KSEG1 (Virtual) 1KB/RW + +IOP_KUSEG equ 0x1F801000 ; I/O Ports KUSEG (Cached) 8KB/RW +IOP_KSEG0 equ 0x9F801000 ; I/O Ports KSEG0 (Uncached) 8KB/RW +IOP_KSEG1 equ 0xBF801000 ; I/O Ports KSEG1 (Virtual) 8KB/RW + +EXP2_KUSEG equ 0x1F802000 ; Expansion Region 2 (I/O Ports) KUSEG (Cached) 8KB/RW +EXP2_KSEG0 equ 0x9F802000 ; Expansion Region 2 (I/O Ports) KSEG0 (Uncached) 8KB/RW +EXP2_KSEG1 equ 0xBF802000 ; Expansion Region 2 (I/O Ports) KSEG1 (Virtual) 8KB/RW + +EXP3_KUSEG equ 0x1FA00000 ; Expansion Region 3 (Whatever Purpose) KUSEG (Cached) 2048KB/RW +EXP3_KSEG0 equ 0x9FA00000 ; Expansion Region 3 (Whatever Purpose) KSEG0 (Uncached) 2048KB/RW +EXP3_KSEG1 equ 0xBFA00000 ; Expansion Region 3 (Whatever Purpose) KSEG1 (Virtual) 2048KB/RW + +BIOS_KUSEG equ 0x1FC00000 ; BIOS ROM (Kernel) (4096K Max) KUSEG (Cached) 4096KB/R +BIOS_KSEG0 equ 0x9FC00000 ; BIOS ROM (Kernel) (4096K max) KSEG0 (Uncached) 4096KB/R +BIOS_KSEG1 equ 0xBFC00000 ; BIOS ROM (Kernel) (4096K max) KSEG1 (Virtual) 4096KB/R + +IOP_KSEG2 equ 0xFFFE0000 ; I/O Ports (Cache Control) KSEG2 512B/RW + +; I/O Map +IO_BASE equ 0x1F800000 ; I/O Port Base Address ($1F80XXXX) + +; Expansion Region 1 +EXP1_BASE equ 0x1F000000 ; $1F000000..$1F07FFFF Expansion Region 1: Region (Default 512KB, Max 8MB) 8192KB/RW +EXP1_ROM equ 0x1F000000 ; $1F000000..$1F0000FF Expansion Region 1: ROM Header (IDs & Entrypoints) 256B/R + +; Scratchpad +SPM_RAM equ 0x0000 ; $1F800000..$1F8003FF Scratchpad: (1KB Fast RAM) (Data Cache Mapped To Fixed Address) 1KB/RW + +; Memory Control 1 +EXP1_ADDR equ 0x1000 ; $1F801000..$1F801003 Memory Control 1: Expansion 1 Base Address (Usually $1F000000) 4B/RW +EXP2_ADDR equ 0x1004 ; $1F801004..$1F801007 Memory Control 1: Expansion 2 Base Address (usually $1F802000) 4B/RW +EXP1_DELAY equ 0x1008 ; $1F801008..$1F80100B Memory Control 1: Expansion 1 Delay/Size (Usually $0013243F/512KB 8-Bit BUS) 4B/RW +EXP3_DELAY equ 0x100C ; $1F80100C..$1F80100F Memory Control 1: Expansion 3 Delay/Size (Usually $00003022/1B) 4B/RW +BIOS_DELAY equ 0x1010 ; $1F801010..$1F801013 Memory Control 1: BIOS ROM Delay/Size (Usually $0013243F/512KB 8-Bit BUS) 4B/RW +SPU_DELAY equ 0x1014 ; $1F801014..$1F801017 Memory Control 1: SPU Delay/Size (Usually $200931E1) 4B/RW +CDROM_DELAY equ 0x1018 ; $1F801018..$1F80101B Memory Control 1: CDROM Delay/Size (Usually $00020843 Or $00020943) 4B/RW +EXP2_DELAY equ 0x101C ; $1F80101C..$1F80101F Memory Control 1: Expansion 2 Delay/Size (Usually $00070777/128B 8-Bit BUS) 4B/RW +COM_DELAY equ 0x1020 ; $1F801020..$1F801023 Memory Control 1: COMMON Delay/Size ($00031125 Or $0000132C Or $00001325) 4B/RW + +; Peripheral I/O Ports +JOY_DATA equ 0x1040 ; $1F801040..$1F801043 Peripheral I/O Ports: Joypad/Memory Card Data 4B/RW +JOY_STAT equ 0x1044 ; $1F801044..$1F801047 Peripheral I/O Ports: Joypad/Memory Card Status 4B/R +JOY_MODE equ 0x1048 ; $1F801048..$1F801049 Peripheral I/O Ports: Joypad/Memory Card Mode 2B/RW +JOY_CTRL equ 0x104A ; $1F80104A..$1F80104D Peripheral I/O Ports: Joypad/Memory Card Control 4B/RW +JOY_BAUD equ 0x104E ; $1F80104E..$1F80104F Peripheral I/O Ports: Joypad/Memory Card Baudrate 2B/RW +SIO_DATA equ 0x1050 ; $1F801050..$1F801053 Peripheral I/O Ports: Serial Port Data 4B/RW +SIO_STAT equ 0x1054 ; $1F801054..$1F801057 Peripheral I/O Ports: Serial Port Status 4B/R +SIO_MODE equ 0x1058 ; $1F801058..$1F801059 Peripheral I/O Ports: Serial Port Mode 2B/RW +SIO_CTRL equ 0x105A ; $1F80105A..$1F80105B Peripheral I/O Ports: Serial Port Control 2B/RW +SIO_MISC equ 0x105C ; $1F80105C..$1F80105D Peripheral I/O Ports: Serial Port Internal Register 2B/RW +SIO_BAUD equ 0x105E ; $1F80105E..$1F80105F Peripheral I/O Ports: Serial Port Baudrate 2B/RW + +; Memory Control 2 +RAM_SIZE equ 0x1060 ; $1F801060..$1F801063 Memory Control 2: RAM Size (Usually $00000B88/2MB RAM Mirrored In First 8MB) 4B/RW + +; Interrupt Control +I_STAT equ 0x1070 ; $1F801070..$1F801073 Interrupt Control: Interrupt Status Register 4B/RW +I_MASK equ 0x1074 ; $1F801074..$1F801077 Interrupt Control: Interrupt Mask Register 4B/RW + +; DMA Registers +D0_MADR equ 0x1080 ; $1F801080..$1F801083 DMA Registers: DMA Channel 0 Base Address (MDECin) 4B/RW +D0_BCR equ 0x1084 ; $1F801084..$1F801087 DMA Registers: DMA Channel 0 Block Control (MDECin) 4B/RW +D0_CHCR equ 0x1088 ; $1F801088..$1F80108B DMA Registers: DMA Channel 0 Channel Control (MDECin) 4B/RW + +D1_MADR equ 0x1090 ; $1F801090..$1F801093 DMA Registers: DMA Channel 1 Base Address (MDECout) 4B/RW +D1_BCR equ 0x1094 ; $1F801094..$1F801097 DMA Registers: DMA Channel 1 Block Control (MDECout) 4B/RW +D1_CHCR equ 0x1098 ; $1F801098..$1F80109B DMA Registers: DMA Channel 1 Channel Control (MDECout) 4B/RW + +D2_MADR equ 0x10A0 ; $1F8010A0..$1F8010A3 DMA Registers: DMA Channel 2 Base Address (GPU Display List & Image Data) 4B/RW +D2_BCR equ 0x10A4 ; $1F8010A4..$1F8010A7 DMA Registers: DMA Channel 2 Block Control (GPU Display List & Image Data) 4B/RW +D2_CHCR equ 0x10A8 ; $1F8010A8..$1F8010AB DMA Registers: DMA Channel 2 Channel Control (GPU Display List & Image Data) 4B/RW + +D3_MADR equ 0x10B0 ; $1F8010B0..$1F8010B3 DMA Registers: DMA Channel 3 Base Address (CDROM) 4B/RW +D3_BCR equ 0x10B4 ; $1F8010B4..$1F8010B7 DMA Registers: DMA Channel 3 Block Control (CDROM) 4B/RW +D3_CHCR equ 0x10B8 ; $1F8010B8..$1F8010BB DMA Registers: DMA Channel 3 Channel Control (CDROM) 4B/RW + +D4_MADR equ 0x10C0 ; $1F8010C0..$1F8010C3 DMA Registers: DMA Channel 4 Base Address (SPU) 4B/RW +D4_BCR equ 0x10C4 ; $1F8010C4..$1F8010C7 DMA Registers: DMA Channel 4 Block Control (SPU) 4B/RW +D4_CHCR equ 0x10C8 ; $1F8010C8..$1F8010CB DMA Registers: DMA Channel 4 Channel Control (SPU) 4B/RW + +D5_MADR equ 0x10D0 ; $1F8010D0..$1F8010D3 DMA Registers: DMA Channel 5 Base Address (PIO Expansion Port) 4B/RW +D5_BCR equ 0x10D4 ; $1F8010D4..$1F8010D7 DMA Registers: DMA Channel 5 Block Control (PIO Expansion Port) 4B/RW +D5_CHCR equ 0x10D8 ; $1F8010D8..$1F8010DB DMA Registers: DMA Channel 5 Channel Control (PIO Expansion Port) 4B/RW + +D6_MADR equ 0x10E0 ; $1F8010E0..$1F8010E3 DMA Registers: DMA Channel 6 Base Address (OTC Reverse Clear OT, GPU Related) 4B/RW +D6_BCR equ 0x10E4 ; $1F8010E4..$1F8010E7 DMA Registers: DMA Channel 6 Block Control (OTC Reverse Clear OT, GPU Related) 4B/RW +D6_CHCR equ 0x10E8 ; $1F8010E8..$1F8010EB DMA Registers: DMA Channel 6 Channel Control (OTC Reverse Clear OT, GPU Related) 4B/RW + +DPCR equ 0x10F0 ; $1F8010F0..$1F8010F3 DMA Registers: DMA Control Register 4B/RW +DICR equ 0x10F4 ; $1F8010F4..$1F8010F7 DMA Registers: DMA Interrupt Register 4B/RW +D_UNK1 equ 0x10F8 ; $1F8010F8..$1F8010FB DMA Registers: DMA Unknown (Changes To $7FE358D1 After DMA Transfer) 4B/RW +D_UNK2 equ 0x10FC ; $1F8010FC..$1F8010FF DMA Registers: DMA Unknown (Usually $00FFFFF7) (Maybe OTC Fill Value) 4B/RW + +; Timers (AKA Root Counters) +T0_CNT equ 0x1100 ; $1F801100..$1F801103 Timers: Timer 0 Current Counter Value (Dotclock) 4B/RW +T0_CNTM equ 0x1104 ; $1F801104..$1F801107 Timers: Timer 0 Counter Mode (Dotclock) 4B/RW +T0_CNTT equ 0x1108 ; $1F801108..$1F80110B Timers: Timer 0 Counter Target Value (Dotclock) 4B/RW + +T1_CNT equ 0x1110 ; $1F801110..$1F801113 Timers: Timer 1 Current Counter Value (Horizontal Retrace) 4B/RW +T1_CNTM equ 0x1114 ; $1F801114..$1F801117 Timers: Timer 1 Counter Mode (Horizontal Retrace) 4B/RW +T1_CNTT equ 0x1118 ; $1F801118..$1F80111B Timers: Timer 1 Counter Target Value (Horizontal Retrace) 4B/RW + +T2_CNT equ 0x1120 ; $1F801120..$1F801123 Timers: Timer 2 Current Counter Value (1/8 System Clock) 4B/RW +T2_CNTM equ 0x1124 ; $1F801124..$1F801127 Timers: Timer 2 Counter Mode (1/8 System Clock) 4B/RW +T2_CNTT equ 0x1128 ; $1F801128..$1F80112B Timers: Timer 2 Counter Target Value (1/8 System Clock) 4B/RW + +; CDROM Registers (Address.Read/Write.Index) +CD_STAT equ 0x1800 ; $1F801800..$1F801800 CDROM Registers: CD Index/Status Register (Bit 0..1 R/W, Bit 2..7 Read Only) 1B/RW +CD_RRFI equ 0x1801 ; $1F801801..$1F801801 CDROM Registers: Read CD Response Fifo (Usually With Index1) 1B/R +CD_RDFI equ 0x1802 ; $1F801802..$1F801802 CDROM Registers: Read CD Data Fifo 8-Bit/16-Bit (Usually With Index0..1) 1B/R + +CD_R0INT equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Read 0 CD Interrupt Enable Register 1B/R +CD_R1FLG equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Read 1 CD Interrupt Flag Register 1B/RW +CD_R2INT equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Read 2 CD Interrupt Enable Register (Mirror) 1B/R +CD_R3FLG equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Read 3 CD Interrupt Flag Register (Mirror) 1B/RW + +CD_W0COM equ 0x1801 ; $1F801801..$1F801801 CDROM Registers: Write 0 CD Command Register 1B/W +CD_W0PFI equ 0x1802 ; $1F801802..$1F801802 CDROM Registers: Write 0 CD Parameter Fifo 1B/W +CD_W0REQ equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Write 0 CD Request Register 1B/W + +CD_W1UNK equ 0x1801 ; $1F801801..$1F801801 CDROM Registers: Write 1 CD Unknown/Unused 1B/W +CD_W1INT equ 0x1802 ; $1F801802..$1F801802 CDROM Registers: Write 1 CD Interrupt Enable Register 1B/W +CD_W1FLG equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Write 1 CD Interrupt Flag Register 1B/RW + +CD_W2UNK equ 0x1801 ; $1F801801..$1F801801 CDROM Registers: Write 2 CD Unknown/Unused 1B/W +CD_W2VLL equ 0x1802 ; $1F801802..$1F801802 CDROM Registers: Write 2 CD Audio Volume For Left-CD-Out To Left-SPU-Input 1B/W +CD_W2VLR equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Write 2 CD Audio Volume For Left-CD-Out To Right-SPU-Input 1B/W + +CD_W3VRR equ 0x1801 ; $1F801801..$1F801801 CDROM Registers: Write 3 CD Audio Volume For Right-CD-Out To Right-SPU-Input 1B/W +CD_W3VRL equ 0x1802 ; $1F801802..$1F801802 CDROM Registers: Write 3 CD Audio Volume For Right-CD-Out To Left-SPU-Input 1B/W +CD_W3VAC equ 0x1803 ; $1F801803..$1F801803 CDROM Registers: Write 3 CD Audio Volume Apply Changes (By Writing Bit 5 = 1) 1B/W + +; GPU Registers +GP0 equ 0x1810 ; $1F801810..$1F801813 GPU Registers: Write GP0 Commands/Packets (Rendering & VRAM Access) 4B/W +GP1 equ 0x1814 ; $1F801814..$1F801817 GPU Registers: Write GP1 Commands (Display Control) 4B/W + +GPUREAD equ 0x1810 ; $1F801810..$1F801813 GPU Registers: Read Responses To GP0($C0) & GP1($10) Commands 4B/R +GPUSTAT equ 0x1814 ; $1F801814..$1F801817 GPU Registers: Read GPU Status Register 4B/R + +; MDEC Registers +MDECPAR equ 0x1820 ; $1F801820..$1F801823 MDEC Registers: Write MDEC Command/Parameter Register 4B/W +MDECCNT equ 0x1824 ; $1F801824..$1F801827 MDEC Registers: Write MDEC Control/Reset Register 4B/W + +MDECREAD equ 0x1820 ; $1F801820..$1F801823 MDEC Registers: Read MDEC Data/Response Register 4B/R +MDECSTAT equ 0x1824 ; $1F801824..$1F801827 MDEC Registers: Read MDEC Status Register 4B/R + +; SPU Voice Registers (0..23) +SPUVOL0 equ 0x1C00 ; $1F801C00..$1F801C03 SPU Voice Registers: Voice 0 Volume Left/Right 4B/RW +SPUVOL1 equ 0x1C10 ; $1F801C10..$1F801C13 SPU Voice Registers: Voice 1 Volume Left/Right 4B/RW +SPUVOL2 equ 0x1C20 ; $1F801C20..$1F801C23 SPU Voice Registers: Voice 2 Volume Left/Right 4B/RW +SPUVOL3 equ 0x1C30 ; $1F801C30..$1F801C33 SPU Voice Registers: Voice 3 Volume Left/Right 4B/RW +SPUVOL4 equ 0x1C40 ; $1F801C40..$1F801C43 SPU Voice Registers: Voice 4 Volume Left/Right 4B/RW +SPUVOL5 equ 0x1C50 ; $1F801C50..$1F801C53 SPU Voice Registers: Voice 5 Volume Left/Right 4B/RW +SPUVOL6 equ 0x1C60 ; $1F801C60..$1F801C63 SPU Voice Registers: Voice 6 Volume Left/Right 4B/RW +SPUVOL7 equ 0x1C70 ; $1F801C70..$1F801C73 SPU Voice Registers: Voice 7 Volume Left/Right 4B/RW +SPUVOL8 equ 0x1C80 ; $1F801C80..$1F801C83 SPU Voice Registers: Voice 8 Volume Left/Right 4B/RW +SPUVOL9 equ 0x1C90 ; $1F801C90..$1F801C93 SPU Voice Registers: Voice 9 Volume Left/Right 4B/RW +SPUVOL10 equ 0x1CA0 ; $1F801CA0..$1F801CA3 SPU Voice Registers: Voice 10 Volume Left/Right 4B/RW +SPUVOL11 equ 0x1CB0 ; $1F801CB0..$1F801CB3 SPU Voice Registers: Voice 11 Volume Left/Right 4B/RW +SPUVOL12 equ 0x1CC0 ; $1F801CC0..$1F801CC3 SPU Voice Registers: Voice 12 Volume Left/Right 4B/RW +SPUVOL13 equ 0x1CD0 ; $1F801CD0..$1F801CD3 SPU Voice Registers: Voice 13 Volume Left/Right 4B/RW +SPUVOL14 equ 0x1CE0 ; $1F801CE0..$1F801CE3 SPU Voice Registers: Voice 14 Volume Left/Right 4B/RW +SPUVOL15 equ 0x1CF0 ; $1F801CF0..$1F801CF3 SPU Voice Registers: Voice 15 Volume Left/Right 4B/RW +SPUVOL16 equ 0x1D00 ; $1F801D00..$1F801D03 SPU Voice Registers: Voice 16 Volume Left/Right 4B/RW +SPUVOL17 equ 0x1D10 ; $1F801D10..$1F801D13 SPU Voice Registers: Voice 17 Volume Left/Right 4B/RW +SPUVOL18 equ 0x1D20 ; $1F801D20..$1F801D23 SPU Voice Registers: Voice 18 Volume Left/Right 4B/RW +SPUVOL19 equ 0x1D30 ; $1F801D30..$1F801D33 SPU Voice Registers: Voice 19 Volume Left/Right 4B/RW +SPUVOL20 equ 0x1D40 ; $1F801D40..$1F801D43 SPU Voice Registers: Voice 20 Volume Left/Right 4B/RW +SPUVOL21 equ 0x1D50 ; $1F801D50..$1F801D53 SPU Voice Registers: Voice 21 Volume Left/Right 4B/RW +SPUVOL22 equ 0x1D60 ; $1F801D60..$1F801D63 SPU Voice Registers: Voice 22 Volume Left/Right 4B/RW +SPUVOL23 equ 0x1D70 ; $1F801D70..$1F801D73 SPU Voice Registers: Voice 23 Volume Left/Right 4B/RW + +SPUFRQ0 equ 0x1C04 ; $1F801C04..$1F801C05 SPU Voice Registers: Voice 0 ADPCM Sample Rate 2B/RW +SPUFRQ1 equ 0x1C14 ; $1F801C14..$1F801C15 SPU Voice Registers: Voice 1 ADPCM Sample Rate 2B/RW +SPUFRQ2 equ 0x1C24 ; $1F801C24..$1F801C25 SPU Voice Registers: Voice 2 ADPCM Sample Rate 2B/RW +SPUFRQ3 equ 0x1C34 ; $1F801C34..$1F801C35 SPU Voice Registers: Voice 3 ADPCM Sample Rate 2B/RW +SPUFRQ4 equ 0x1C44 ; $1F801C44..$1F801C45 SPU Voice Registers: Voice 4 ADPCM Sample Rate 2B/RW +SPUFRQ5 equ 0x1C54 ; $1F801C54..$1F801C55 SPU Voice Registers: Voice 5 ADPCM Sample Rate 2B/RW +SPUFRQ6 equ 0x1C64 ; $1F801C64..$1F801C65 SPU Voice Registers: Voice 6 ADPCM Sample Rate 2B/RW +SPUFRQ7 equ 0x1C74 ; $1F801C74..$1F801C75 SPU Voice Registers: Voice 7 ADPCM Sample Rate 2B/RW +SPUFRQ8 equ 0x1C84 ; $1F801C84..$1F801C85 SPU Voice Registers: Voice 8 ADPCM Sample Rate 2B/RW +SPUFRQ9 equ 0x1C94 ; $1F801C94..$1F801C95 SPU Voice Registers: Voice 9 ADPCM Sample Rate 2B/RW +SPUFRQ10 equ 0x1CA4 ; $1F801CA4..$1F801CA5 SPU Voice Registers: Voice 10 ADPCM Sample Rate 2B/RW +SPUFRQ11 equ 0x1CB4 ; $1F801CB4..$1F801CB5 SPU Voice Registers: Voice 11 ADPCM Sample Rate 2B/RW +SPUFRQ12 equ 0x1CC4 ; $1F801CC4..$1F801CC5 SPU Voice Registers: Voice 12 ADPCM Sample Rate 2B/RW +SPUFRQ13 equ 0x1CD4 ; $1F801CD4..$1F801CD5 SPU Voice Registers: Voice 13 ADPCM Sample Rate 2B/RW +SPUFRQ14 equ 0x1CE4 ; $1F801CE4..$1F801CE5 SPU Voice Registers: Voice 14 ADPCM Sample Rate 2B/RW +SPUFRQ15 equ 0x1CF4 ; $1F801CF4..$1F801CF5 SPU Voice Registers: Voice 15 ADPCM Sample Rate 2B/RW +SPUFRQ16 equ 0x1D04 ; $1F801D04..$1F801D05 SPU Voice Registers: Voice 16 ADPCM Sample Rate 2B/RW +SPUFRQ17 equ 0x1D14 ; $1F801D14..$1F801D15 SPU Voice Registers: Voice 17 ADPCM Sample Rate 2B/RW +SPUFRQ18 equ 0x1D24 ; $1F801D24..$1F801D25 SPU Voice Registers: Voice 18 ADPCM Sample Rate 2B/RW +SPUFRQ19 equ 0x1D34 ; $1F801D34..$1F801D35 SPU Voice Registers: Voice 19 ADPCM Sample Rate 2B/RW +SPUFRQ20 equ 0x1D44 ; $1F801D44..$1F801D45 SPU Voice Registers: Voice 20 ADPCM Sample Rate 2B/RW +SPUFRQ21 equ 0x1D54 ; $1F801D54..$1F801D55 SPU Voice Registers: Voice 21 ADPCM Sample Rate 2B/RW +SPUFRQ22 equ 0x1D64 ; $1F801D64..$1F801D65 SPU Voice Registers: Voice 22 ADPCM Sample Rate 2B/RW +SPUFRQ23 equ 0x1D74 ; $1F801D74..$1F801D75 SPU Voice Registers: Voice 23 ADPCM Sample Rate 2B/RW + +SPUBASE0 equ 0x1C06 ; $1F801C06..$1F801C07 SPU Voice Registers: Voice 0 ADPCM Start Address 2B/RW +SPUBASE1 equ 0x1C16 ; $1F801C16..$1F801C17 SPU Voice Registers: Voice 1 ADPCM Start Address 2B/RW +SPUBASE2 equ 0x1C26 ; $1F801C26..$1F801C27 SPU Voice Registers: Voice 2 ADPCM Start Address 2B/RW +SPUBASE3 equ 0x1C36 ; $1F801C36..$1F801C37 SPU Voice Registers: Voice 3 ADPCM Start Address 2B/RW +SPUBASE4 equ 0x1C46 ; $1F801C46..$1F801C47 SPU Voice Registers: Voice 4 ADPCM Start Address 2B/RW +SPUBASE5 equ 0x1C56 ; $1F801C56..$1F801C57 SPU Voice Registers: Voice 5 ADPCM Start Address 2B/RW +SPUBASE6 equ 0x1C66 ; $1F801C66..$1F801C67 SPU Voice Registers: Voice 6 ADPCM Start Address 2B/RW +SPUBASE7 equ 0x1C76 ; $1F801C76..$1F801C77 SPU Voice Registers: Voice 7 ADPCM Start Address 2B/RW +SPUBASE8 equ 0x1C86 ; $1F801C86..$1F801C87 SPU Voice Registers: Voice 8 ADPCM Start Address 2B/RW +SPUBASE9 equ 0x1C96 ; $1F801C96..$1F801C97 SPU Voice Registers: Voice 9 ADPCM Start Address 2B/RW +SPUBASE10 equ 0x1CA6 ; $1F801CA6..$1F801CA7 SPU Voice Registers: Voice 10 ADPCM Start Address 2B/RW +SPUBASE11 equ 0x1CB6 ; $1F801CB6..$1F801CB7 SPU Voice Registers: Voice 11 ADPCM Start Address 2B/RW +SPUBASE12 equ 0x1CC6 ; $1F801CC6..$1F801CC7 SPU Voice Registers: Voice 12 ADPCM Start Address 2B/RW +SPUBASE13 equ 0x1CD6 ; $1F801CD6..$1F801CD7 SPU Voice Registers: Voice 13 ADPCM Start Address 2B/RW +SPUBASE14 equ 0x1CE6 ; $1F801CE6..$1F801CE7 SPU Voice Registers: Voice 14 ADPCM Start Address 2B/RW +SPUBASE15 equ 0x1CF6 ; $1F801CF6..$1F801CF7 SPU Voice Registers: Voice 15 ADPCM Start Address 2B/RW +SPUBASE16 equ 0x1D06 ; $1F801D06..$1F801D07 SPU Voice Registers: Voice 16 ADPCM Start Address 2B/RW +SPUBASE17 equ 0x1D16 ; $1F801D16..$1F801D17 SPU Voice Registers: Voice 17 ADPCM Start Address 2B/RW +SPUBASE18 equ 0x1D26 ; $1F801D26..$1F801D27 SPU Voice Registers: Voice 18 ADPCM Start Address 2B/RW +SPUBASE19 equ 0x1D36 ; $1F801D36..$1F801D37 SPU Voice Registers: Voice 19 ADPCM Start Address 2B/RW +SPUBASE20 equ 0x1D46 ; $1F801D46..$1F801D47 SPU Voice Registers: Voice 20 ADPCM Start Address 2B/RW +SPUBASE21 equ 0x1D56 ; $1F801D56..$1F801D57 SPU Voice Registers: Voice 21 ADPCM Start Address 2B/RW +SPUBASE22 equ 0x1D66 ; $1F801D66..$1F801D67 SPU Voice Registers: Voice 22 ADPCM Start Address 2B/RW +SPUBASE23 equ 0x1D76 ; $1F801D76..$1F801D77 SPU Voice Registers: Voice 23 ADPCM Start Address 2B/RW + +SPUADSR0 equ 0x1C08 ; $1F801C08..$1F801C0B SPU Voice Registers: Voice 0 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR1 equ 0x1C18 ; $1F801C18..$1F801C1B SPU Voice Registers: Voice 1 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR2 equ 0x1C28 ; $1F801C28..$1F801C2B SPU Voice Registers: Voice 2 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR3 equ 0x1C38 ; $1F801C38..$1F801C3B SPU Voice Registers: Voice 3 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR4 equ 0x1C48 ; $1F801C48..$1F801C4B SPU Voice Registers: Voice 4 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR5 equ 0x1C58 ; $1F801C58..$1F801C5B SPU Voice Registers: Voice 5 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR6 equ 0x1C68 ; $1F801C68..$1F801C6B SPU Voice Registers: Voice 6 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR7 equ 0x1C78 ; $1F801C78..$1F801C7B SPU Voice Registers: Voice 7 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR8 equ 0x1C88 ; $1F801C88..$1F801C8B SPU Voice Registers: Voice 8 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR9 equ 0x1C98 ; $1F801C98..$1F801C9B SPU Voice Registers: Voice 9 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR10 equ 0x1CA8 ; $1F801CA8..$1F801CAB SPU Voice Registers: Voice 10 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR11 equ 0x1CB8 ; $1F801CB8..$1F801CBB SPU Voice Registers: Voice 11 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR12 equ 0x1CC8 ; $1F801CC8..$1F801CCB SPU Voice Registers: Voice 12 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR13 equ 0x1CD8 ; $1F801CD8..$1F801CDB SPU Voice Registers: Voice 13 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR14 equ 0x1CE8 ; $1F801CE8..$1F801CEB SPU Voice Registers: Voice 14 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR15 equ 0x1CF8 ; $1F801CF8..$1F801CFB SPU Voice Registers: Voice 15 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR16 equ 0x1D08 ; $1F801D08..$1F801D0B SPU Voice Registers: Voice 16 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR17 equ 0x1D18 ; $1F801D18..$1F801D1B SPU Voice Registers: Voice 17 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR18 equ 0x1D28 ; $1F801D28..$1F801D2B SPU Voice Registers: Voice 18 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR19 equ 0x1D38 ; $1F801D38..$1F801D3B SPU Voice Registers: Voice 19 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR20 equ 0x1D48 ; $1F801D48..$1F801D4B SPU Voice Registers: Voice 20 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR21 equ 0x1D58 ; $1F801D58..$1F801D5B SPU Voice Registers: Voice 21 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR22 equ 0x1D68 ; $1F801D68..$1F801D6B SPU Voice Registers: Voice 22 ADSR (Attack/Decay/Sustain/Release) 4B/RW +SPUADSR23 equ 0x1D78 ; $1F801D78..$1F801D7B SPU Voice Registers: Voice 23 ADSR (Attack/Decay/Sustain/Release) 4B/RW + +SPUADSRVOL0 equ 0x1C0C ; $1F801C0C..$1F801C0D SPU Voice Registers: Voice 0 ADSR Current Volume 2B/RW +SPUADSRVOL1 equ 0x1C1C ; $1F801C1C..$1F801C1D SPU Voice Registers: Voice 1 ADSR Current Volume 2B/RW +SPUADSRVOL2 equ 0x1C2C ; $1F801C2C..$1F801C2D SPU Voice Registers: Voice 2 ADSR Current Volume 2B/RW +SPUADSRVOL3 equ 0x1C3C ; $1F801C3C..$1F801C3D SPU Voice Registers: Voice 3 ADSR Current Volume 2B/RW +SPUADSRVOL4 equ 0x1C4C ; $1F801C4C..$1F801C4D SPU Voice Registers: Voice 4 ADSR Current Volume 2B/RW +SPUADSRVOL5 equ 0x1C5C ; $1F801C5C..$1F801C5D SPU Voice Registers: Voice 5 ADSR Current Volume 2B/RW +SPUADSRVOL6 equ 0x1C6C ; $1F801C6C..$1F801C6D SPU Voice Registers: Voice 6 ADSR Current Volume 2B/RW +SPUADSRVOL7 equ 0x1C7C ; $1F801C7C..$1F801C7D SPU Voice Registers: Voice 7 ADSR Current Volume 2B/RW +SPUADSRVOL8 equ 0x1C8C ; $1F801C8C..$1F801C8D SPU Voice Registers: Voice 8 ADSR Current Volume 2B/RW +SPUADSRVOL9 equ 0x1C9C ; $1F801C9C..$1F801C9D SPU Voice Registers: Voice 9 ADSR Current Volume 2B/RW +SPUADSRVOL10 equ 0x1CAC ; $1F801CAC..$1F801CAD SPU Voice Registers: Voice 10 ADSR Current Volume 2B/RW +SPUADSRVOL11 equ 0x1CBC ; $1F801CBC..$1F801CBD SPU Voice Registers: Voice 11 ADSR Current Volume 2B/RW +SPUADSRVOL12 equ 0x1CCC ; $1F801CCC..$1F801CCD SPU Voice Registers: Voice 12 ADSR Current Volume 2B/RW +SPUADSRVOL13 equ 0x1CDC ; $1F801CDC..$1F801CDD SPU Voice Registers: Voice 13 ADSR Current Volume 2B/RW +SPUADSRVOL14 equ 0x1CEC ; $1F801CEC..$1F801CED SPU Voice Registers: Voice 14 ADSR Current Volume 2B/RW +SPUADSRVOL15 equ 0x1CFC ; $1F801CFC..$1F801CFD SPU Voice Registers: Voice 15 ADSR Current Volume 2B/RW +SPUADSRVOL16 equ 0x1D0C ; $1F801D0C..$1F801D0D SPU Voice Registers: Voice 16 ADSR Current Volume 2B/RW +SPUADSRVOL17 equ 0x1D1C ; $1F801D1C..$1F801D1D SPU Voice Registers: Voice 17 ADSR Current Volume 2B/RW +SPUADSRVOL18 equ 0x1D2C ; $1F801D2C..$1F801D2D SPU Voice Registers: Voice 18 ADSR Current Volume 2B/RW +SPUADSRVOL19 equ 0x1D3C ; $1F801D3C..$1F801D3D SPU Voice Registers: Voice 19 ADSR Current Volume 2B/RW +SPUADSRVOL20 equ 0x1D4C ; $1F801D4C..$1F801D4D SPU Voice Registers: Voice 20 ADSR Current Volume 2B/RW +SPUADSRVOL21 equ 0x1D5C ; $1F801D5C..$1F801D5D SPU Voice Registers: Voice 21 ADSR Current Volume 2B/RW +SPUADSRVOL22 equ 0x1D6C ; $1F801D6C..$1F801D6D SPU Voice Registers: Voice 22 ADSR Current Volume 2B/RW +SPUADSRVOL23 equ 0x1D7C ; $1F801D7C..$1F801D7D SPU Voice Registers: Voice 23 ADSR Current Volume 2B/RW + +SPULOOP0 equ 0x1C0E ; $1F801C0E..$1F801C0F SPU Voice Registers: Voice 0 ADPCM Repeat Address 2B/RW +SPULOOP1 equ 0x1C1E ; $1F801C1E..$1F801C1F SPU Voice Registers: Voice 1 ADPCM Repeat Address 2B/RW +SPULOOP2 equ 0x1C2E ; $1F801C2E..$1F801C2F SPU Voice Registers: Voice 2 ADPCM Repeat Address 2B/RW +SPULOOP3 equ 0x1C3E ; $1F801C3E..$1F801C3F SPU Voice Registers: Voice 3 ADPCM Repeat Address 2B/RW +SPULOOP4 equ 0x1C4E ; $1F801C4E..$1F801C4F SPU Voice Registers: Voice 4 ADPCM Repeat Address 2B/RW +SPULOOP5 equ 0x1C5E ; $1F801C5E..$1F801C5F SPU Voice Registers: Voice 5 ADPCM Repeat Address 2B/RW +SPULOOP6 equ 0x1C6E ; $1F801C6E..$1F801C6F SPU Voice Registers: Voice 6 ADPCM Repeat Address 2B/RW +SPULOOP7 equ 0x1C7E ; $1F801C7E..$1F801C7F SPU Voice Registers: Voice 7 ADPCM Repeat Address 2B/RW +SPULOOP8 equ 0x1C8E ; $1F801C8E..$1F801C8F SPU Voice Registers: Voice 8 ADPCM Repeat Address 2B/RW +SPULOOP9 equ 0x1C9E ; $1F801C9E..$1F801C9F SPU Voice Registers: Voice 9 ADPCM Repeat Address 2B/RW +SPULOOP10 equ 0x1CAE ; $1F801CAE..$1F801CAF SPU Voice Registers: Voice 10 ADPCM Repeat Address 2B/RW +SPULOOP11 equ 0x1CBE ; $1F801CBE..$1F801CBF SPU Voice Registers: Voice 11 ADPCM Repeat Address 2B/RW +SPULOOP12 equ 0x1CCE ; $1F801CCE..$1F801CCF SPU Voice Registers: Voice 12 ADPCM Repeat Address 2B/RW +SPULOOP13 equ 0x1CDE ; $1F801CDE..$1F801CDF SPU Voice Registers: Voice 13 ADPCM Repeat Address 2B/RW +SPULOOP14 equ 0x1CEE ; $1F801CEE..$1F801CEF SPU Voice Registers: Voice 14 ADPCM Repeat Address 2B/RW +SPULOOP15 equ 0x1CFE ; $1F801CFE..$1F801CFF SPU Voice Registers: Voice 15 ADPCM Repeat Address 2B/RW +SPULOOP16 equ 0x1D0E ; $1F801D0E..$1F801D0F SPU Voice Registers: Voice 16 ADPCM Repeat Address 2B/RW +SPULOOP17 equ 0x1D1E ; $1F801D1E..$1F801D1F SPU Voice Registers: Voice 17 ADPCM Repeat Address 2B/RW +SPULOOP18 equ 0x1D2E ; $1F801D2E..$1F801D2F SPU Voice Registers: Voice 18 ADPCM Repeat Address 2B/RW +SPULOOP19 equ 0x1D3E ; $1F801D3E..$1F801D3F SPU Voice Registers: Voice 19 ADPCM Repeat Address 2B/RW +SPULOOP20 equ 0x1D4E ; $1F801D4E..$1F801D4F SPU Voice Registers: Voice 20 ADPCM Repeat Address 2B/RW +SPULOOP21 equ 0x1D5E ; $1F801D5E..$1F801D5F SPU Voice Registers: Voice 21 ADPCM Repeat Address 2B/RW +SPULOOP22 equ 0x1D6E ; $1F801D6E..$1F801D6F SPU Voice Registers: Voice 22 ADPCM Repeat Address 2B/RW +SPULOOP23 equ 0x1D7E ; $1F801D7E..$1F801D7F SPU Voice Registers: Voice 23 ADPCM Repeat Address 2B/RW + +; SPU Control Registers +SPUMVOL equ 0x1D80 ; $1F801D80..$1F801D83 SPU Control Registers: Main Volume Left/Right 4B/RW +SPUEVOL equ 0x1D84 ; $1F801D84..$1F801D87 SPU Control Registers: Echo/Reverb Output Volume Left/Right 4B/RW +SPUKON equ 0x1D88 ; $1F801D88..$1F801D8B SPU Control Registers: Voice 0..23 Key ON (Start Attack/Decay/Sustain) 4B/W +SPUKOFF equ 0x1D8C ; $1F801D8C..$1F801D8F SPU Control Registers: Voice 0..23 Key OFF (Start Release) 4B/W +SPUPMON equ 0x1D90 ; $1F801D90..$1F801D93 SPU Control Registers: Voice 1..23 Pitch Modulation Enable Flags 4B/RW +SPUNON equ 0x1D94 ; $1F801D94..$1F801D97 SPU Control Registers: Voice 0..23 Channel Noise Enable Flags 4B/RW +SPUEON equ 0x1D98 ; $1F801D98..$1F801D9B SPU Control Registers: Voice 0..23 Channel Echo/Reverb Enable Flags 4B/RW +SPUENDX equ 0x1D9C ; $1F801D9C..$1F801D9F SPU Control Registers: Voice 0..23 Channel ON/OFF (Status) 4B/R +SPUUNK1 equ 0x1DA0 ; $1F801DA0..$1F801DA1 SPU Control Registers: Unknown/Unused 2B/RW +SPUEBASE equ 0x1DA2 ; $1F801DA2..$1F801DA3 SPU Control Registers: Sound RAM Echo/Reverb Work Area Start Address 2B/RW +SPUIRQ equ 0x1DA4 ; $1F801DA4..$1F801DA5 SPU Control Registers: Sound RAM IRQ Address 2B/RW +SPUDBASE equ 0x1DA6 ; $1F801DA6..$1F801DA7 SPU Control Registers: Sound RAM Data Transfer Address 2B/RW +SPUDFIFO equ 0x1DA8 ; $1F801DA8..$1F801DA9 SPU Control Registers: Sound RAM Data Transfer Fifo 2B/RW +SPUCNT equ 0x1DAA ; $1F801DAA..$1F801DAB SPU Control Registers: SPU Control Register 2B/RW +SPUDCNT equ 0x1DAC ; $1F801DAC..$1F801DAD SPU Control Registers: Sound RAM Data Transfer Control (Should Be $0004) 2B/RW +SPUSTAT equ 0x1DAE ; $1F801DAE..$1F801DAF SPU Control Registers: SPU Status Register 2B/R +SPUCDVOL equ 0x1DB0 ; $1F801DB0..$1F801DB3 SPU Control Registers: CD Volume Left/Right (CD-DA & Compressed XA-ADPCM) 4B/RW +SPUEXVOL equ 0x1DB4 ; $1F801DB4..$1F801DB7 SPU Control Registers: External Audio Input Volume Left/Right 4B/RW +SPUCMVOL equ 0x1DB8 ; $1F801DB8..$1F801DBB SPU Control Registers: Current Main Volume Left/Right 4B/RW +SPUUNK2 equ 0x1DBC ; $1F801DBC..$1F801DBF SPU Control Registers: Unknown/Unused 4B/RW + +; SPU Echo/Reverb Configuration Area +SPUDAPF1 equ 0x1DC0 ; $1F801DC0..$1F801DC1 SPU Echo/Reverb Configuration Area: APF Offset 1 2B/RW +SPUDAPF2 equ 0x1DC2 ; $1F801DC2..$1F801DC3 SPU Echo/Reverb Configuration Area: APF Offset 2 2B/RW +SPUVIIR equ 0x1DC4 ; $1F801DC4..$1F801DC5 SPU Echo/Reverb Configuration Area: Reflection Volume 1 2B/RW +SPUVCOMB1 equ 0x1DC6 ; $1F801DC6..$1F801DC7 SPU Echo/Reverb Configuration Area: Comb Volume 1 2B/RW +SPUVCOMB2 equ 0x1DC8 ; $1F801DC8..$1F801DC9 SPU Echo/Reverb Configuration Area: Comb Volume 2 2B/RW +SPUVCOMB3 equ 0x1DCA ; $1F801DCA..$1F801DCB SPU Echo/Reverb Configuration Area: Comb Volume 3 2B/RW +SPUVCOMB4 equ 0x1DCC ; $1F801DCC..$1F801DCD SPU Echo/Reverb Configuration Area: Comb Volume 4 2B/RW +SPUVWALL equ 0x1DCE ; $1F801DCE..$1F801DCF SPU Echo/Reverb Configuration Area: Reflection Volume 2 2B/RW +SPUVAPF1 equ 0x1DD0 ; $1F801DD0..$1F801DD1 SPU Echo/Reverb Configuration Area: APF Volume 1 2B/RW +SPUVAPF2 equ 0x1DD2 ; $1F801DD2..$1F801DD3 SPU Echo/Reverb Configuration Area: APF Volume 2 2B/RW +SPUMSAME equ 0x1DD4 ; $1F801DD4..$1F801DD7 SPU Echo/Reverb Configuration Area: Same Side Reflection Address 1 Left/Right 4B/RW +SPUMCOMB1 equ 0x1DD8 ; $1F801DD8..$1F801DDB SPU Echo/Reverb Configuration Area: Comb Address 1 Left/Right 4B/RW +SPUMCOMB2 equ 0x1DDC ; $1F801DDC..$1F801DDF SPU Echo/Reverb Configuration Area: Comb Address 2 Left/Right 4B/RW +SPUDSAME equ 0x1DE0 ; $1F801DE0..$1F801DE3 SPU Echo/Reverb Configuration Area: Same Side Reflection Address 2 Left/Right 4B/RW +SPUMDIFF equ 0x1DE4 ; $1F801DE4..$1F801DE7 SPU Echo/Reverb Configuration Area: Diff Side Reflection Address 1 Left/Right 4B/RW +SPUMCOMB3 equ 0x1DE8 ; $1F801DE8..$1F801DEB SPU Echo/Reverb Configuration Area: Comb Address 3 Left/Right 4B/RW +SPUMCOMB4 equ 0x1DEC ; $1F801DEC..$1F801DEF SPU Echo/Reverb Configuration Area: Comb Address 4 Left/Right 4B/RW +SPUDDIFF equ 0x1DF0 ; $1F801DF0..$1F801DF3 SPU Echo/Reverb Configuration Area: Diff Side Reflection Address 2 Left/Right 4B/RW +SPUMAPF1 equ 0x1DF4 ; $1F801DF4..$1F801DF7 SPU Echo/Reverb Configuration Area: APF Address 1 Left/Right 4B/RW +SPUMAPF2 equ 0x1DF8 ; $1F801DF8..$1F801DFB SPU Echo/Reverb Configuration Area: APF Address 2 Left/Right 4B/RW +SPUVIN equ 0x1DFC ; $1F801DFC..$1F801DFF SPU Echo/Reverb Configuration Area: Input Volume Left/Right 4B/RW + +; SPU Internal Registers +SPUCVOL0 equ 0x1E00 ; $1F801E00..$1F801E03 SPU Internal Registers: Voice 0 Current Volume Left/Right 4B/RW +SPUCVOL1 equ 0x1E04 ; $1F801E04..$1F801E07 SPU Internal Registers: Voice 1 Current Volume Left/Right 4B/RW +SPUCVOL2 equ 0x1E08 ; $1F801E08..$1F801E0B SPU Internal Registers: Voice 2 Current Volume Left/Right 4B/RW +SPUCVOL3 equ 0x1E0C ; $1F801E0C..$1F801E0F SPU Internal Registers: Voice 3 Current Volume Left/Right 4B/RW +SPUCVOL4 equ 0x1E10 ; $1F801E10..$1F801E13 SPU Internal Registers: Voice 4 Current Volume Left/Right 4B/RW +SPUCVOL5 equ 0x1E14 ; $1F801E14..$1F801E17 SPU Internal Registers: Voice 5 Current Volume Left/Right 4B/RW +SPUCVOL6 equ 0x1E18 ; $1F801E18..$1F801E1B SPU Internal Registers: Voice 6 Current Volume Left/Right 4B/RW +SPUCVOL7 equ 0x1E1C ; $1F801E1C..$1F801E1F SPU Internal Registers: Voice 7 Current Volume Left/Right 4B/RW +SPUCVOL8 equ 0x1E20 ; $1F801E20..$1F801E23 SPU Internal Registers: Voice 8 Current Volume Left/Right 4B/RW +SPUCVOL9 equ 0x1E24 ; $1F801E24..$1F801E27 SPU Internal Registers: Voice 9 Current Volume Left/Right 4B/RW +SPUCVOL10 equ 0x1E28 ; $1F801E28..$1F801E2B SPU Internal Registers: Voice 10 Current Volume Left/Right 4B/RW +SPUCVOL11 equ 0x1E2C ; $1F801E2C..$1F801E2F SPU Internal Registers: Voice 11 Current Volume Left/Right 4B/RW +SPUCVOL12 equ 0x1E30 ; $1F801E30..$1F801E33 SPU Internal Registers: Voice 12 Current Volume Left/Right 4B/RW +SPUCVOL13 equ 0x1E34 ; $1F801E34..$1F801E37 SPU Internal Registers: Voice 13 Current Volume Left/Right 4B/RW +SPUCVOL14 equ 0x1E38 ; $1F801E38..$1F801E3B SPU Internal Registers: Voice 14 Current Volume Left/Right 4B/RW +SPUCVOL15 equ 0x1E3C ; $1F801E3C..$1F801E3F SPU Internal Registers: Voice 15 Current Volume Left/Right 4B/RW +SPUCVOL16 equ 0x1E40 ; $1F801E40..$1F801E43 SPU Internal Registers: Voice 16 Current Volume Left/Right 4B/RW +SPUCVOL17 equ 0x1E44 ; $1F801E44..$1F801E47 SPU Internal Registers: Voice 17 Current Volume Left/Right 4B/RW +SPUCVOL18 equ 0x1E48 ; $1F801E48..$1F801E4B SPU Internal Registers: Voice 18 Current Volume Left/Right 4B/RW +SPUCVOL19 equ 0x1E4C ; $1F801E4C..$1F801E4F SPU Internal Registers: Voice 19 Current Volume Left/Right 4B/RW +SPUCVOL20 equ 0x1E50 ; $1F801E50..$1F801E53 SPU Internal Registers: Voice 20 Current Volume Left/Right 4B/RW +SPUCVOL21 equ 0x1E54 ; $1F801E54..$1F801E57 SPU Internal Registers: Voice 21 Current Volume Left/Right 4B/RW +SPUCVOL22 equ 0x1E58 ; $1F801E58..$1F801E5B SPU Internal Registers: Voice 22 Current Volume Left/Right 4B/RW +SPUCVOL23 equ 0x1E5C ; $1F801E5C..$1F801E5F SPU Internal Registers: Voice 23 Current Volume Left/Right 4B/RW + +SPUUNK3 equ 0x1E60 ; $1F801E60..$1F801E7F SPU Internal Registers: Unknown/Unused 32B/RW +SPUUNK4 equ 0x1E80 ; $1F801E80..$1F801FFF SPU Internal Registers: Unknown/Unused (Read: $FF Filled) 384B/RW + +; Expansion Region 2 (Default 128B, Max 8KB) +EXP2_BASE equ 0x1F802000 ; $1F802000..$1F80207F Expansion Region 2: Expansion Region (8-Bit Data BUS) 128B/RW + +; Expansion Region 3 (Default 1B, Max 2MB) +EXP3_BASE equ 0x1FA00000 ; $1FA00000..$1FA00000 Expansion Region 3: Expansion Region (Not Used By BIOS Or Any PSX Games) 1B/RW + +; BIOS Region (Default 512KB, Max 4MB) +BIOS_BASE equ 0x1FC00000 ; $1FC00000..$1FC001FF BIOS Region: BIOS ROM (Reset Entrypoint At $BFC00000) 512KB/R + +; Memory Control 3 (Cache Control) +CACHE_CTRL equ 0xFFFE0130 ; $FFFE0130..$FFFE0133 Memory Control 3: Cache Control 4B/RW + +; Macros +.macro CLIOH,IOREG ; Clear I/O Port Register Half (A0 = IO_BASE 0x1F800000) + sh r0,IOREG(a0) ; I/O Port Register Half = 0 +.endmacro + +.macro CLIOW,IOREG ; Clear I/O Port Register Word (A0 = IO_BASE 0x1F800000) + sw r0,IOREG(a0) ; I/O Port Register Word = 0 +.endmacro + +.macro RDIOH,IOREG,REG ; Read I/O Port Register Half (A0 = IO_BASE 0x1F800000) + lhu REG,IOREG(a0) ; Register = I/O Port Register Half + nop ; Delay Slot +.endmacro + +.macro RDIOW,IOREG,REG ; Read I/O Port Register Word (A0 = IO_BASE 0x1F800000) + lw REG,IOREG(a0) ; Register = I/O Port Register Word + nop ; Delay Slot +.endmacro + +.macro WRIOH,IOREG,DATA ; Write I/O Port Register Half (A0 = IO_BASE 0x1F800000) + li t0,DATA ; T0 = DATA Half + sh t0,IOREG(a0) ; I/O Port Register Half = T0 +.endmacro + +.macro WRIOW,IOREG,DATA ; Write I/O Port Register Word (A0 = IO_BASE 0x1F800000) + li t0,DATA ; T0 = DATA Word + sw t0,IOREG(a0) ; I/O Port Register Word = T0 +.endmacro \ No newline at end of file diff --git a/BouncyCubePs1/LIB/PSX_GPU.INC b/BouncyCubePs1/LIB/PSX_GPU.INC new file mode 100644 index 0000000..b5f4b1c --- /dev/null +++ b/BouncyCubePs1/LIB/PSX_GPU.INC @@ -0,0 +1,2297 @@ +;========= +; PSX GPU +;========= +;========================== +; GPU Other Commands (GP0) +;========================== +GPUNOP equ 0x00 ; GPU Other Commands (GP0): $00 - NOP +GPUIRQREQ equ 0x1F ; GPU Other Commands (GP0): $1F - Interrupt Request (IRQ1) + +;==================================== +; GPU Memory Transfer Commands (GP0) +;==================================== +GPUCLRCACHE equ 0x01 ; GPU Memory Transfer Commands (GP0): $01 - Clear Cache + +GPUFILLRECTVRAM equ 0x02 ; GPU Memory Transfer Commands (GP0): $02 - Fill Rectangle In VRAM +.macro FillRectVRAM,COLOR,X,Y,WIDTH,HEIGHT ; GP0($02) - Fill Rectangle In VRAM + WRIOW GP0,(0x02<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Top Left Corner: X Counted In Halfwords, Steps Of $10) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords, Steps Of $10) +.endmacro +.macro FillRectVRAMV,COLOR,X,Y,WIDTH,HEIGHT ; GP0($02) - Fill Rectangle In VRAM Variable + lui t0,0x0200 ; Fill Rectangle In VRAM Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Top Left Corner: X Counted In Halfwords, Steps Of $10) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords, Steps Of $10) +.endmacro + +GPUCOPYRECTVRAM equ 0x80 ; GPU Memory Transfer Commands (GP0): $80 - Copy Rectangle (VRAM To VRAM) +.macro CopyRectVRAM,X1,Y1,X2,Y2,WIDTH,HEIGHT ; GP0($80) - Copy Rectangle (VRAM To VRAM) + WRIOW GP0,0x80<<24 ; Write GP0 Command Word (Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Source Coord: X Counted In Halfwords) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Destination Coord: X Counted In Halfwords) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords) +.endmacro +.macro CopyRectVRAMV,X1,Y1,X2,Y2,WIDTH,HEIGHT ; GP0($80) - Copy Rectangle (VRAM To VRAM) Variable + lui t0,0x8000 ; Copy Rectangle (VRAM To VRAM) Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Source Coord: X Counted In Halfwords) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Destination Coord: X Counted In Halfwords) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords) +.endmacro + +GPUCOPYRECTCPU equ 0xA0 ; GPU Memory Transfer Commands (GP0): $A0 - Copy Rectangle (CPU To VRAM) +.macro CopyRectCPU,X,Y,WIDTH,HEIGHT ; GP0($A0) - Copy Rectangle (CPU To VRAM) + WRIOW GP0,0xA0<<24 ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Destination Coord: X Counted In Halfwords) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords) + ; Write GP0 Packet Word (Data) +.endmacro +.macro CopyRectCPUV,X,Y,WIDTH,HEIGHT ; GP0($A0) - Copy Rectangle (CPU To VRAM) Variable + lui t0,0xA000 ; Copy Rectangle (CPU To VRAM) Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Destination Coord: X Counted In Halfwords) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords) + ; Write GP0 Packet Word (Data) +.endmacro + +GPUCOPYRECTVRAMCPU equ 0xC0 ; GPU Memory Transfer Commands (GP0): $C0 - Copy Rectangle (VRAM To CPU) +.macro CopyRectVRAMCPU,X,Y,WIDTH,HEIGHT ; GP0($C0) - Copy Rectangle (VRAM To CPU) + WRIOW GP0,0xC0<<24 ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Source Coord: X Counted In Halfwords) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords) + ; Read GP0 Packet Word (Data) +.endmacro +.macro CopyRectVRAMCPUV,X,Y,WIDTH,HEIGHT ; GP0($C0) - Copy Rectangle (VRAM To CPU) + lui t0,0xC000 ; Copy Rectangle (VRAM To CPU) Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Source Coord: X Counted In Halfwords) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height: Width Counted In Halfwords) + ; Read GP0 Packet Word (Data) +.endmacro + +;=================================== +; GPU Render Polygon Commands (GP0) +;=================================== +GPUFILLTRI equ 0x20 ; GPU Render Polygon Commands (GP0): $20 - Monochrome Triangle, Opaque +.macro FillTri,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($20) - Monochrome Triangle Polygon, Opaque + WRIOW GP0,(0x20<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) +.endmacro +.macro FillTriV,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($20) - Monochrome Triangle Polygon, Opaque Variable + lui t0,0x2000 ; Monochrome Triangle Polygon, Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) +.endmacro + +GPUFILLTRIALPHA equ 0x22 ; GPU Render Polygon Commands (GP0): $22 - Monochrome Triangle, Semi-Transparent +.macro FillTriAlpha,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($22) - Monochrome Triangle polygon, Semi-Transparent + WRIOW GP0,(0x22<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) +.endmacro +.macro FillTriAlphaV,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($22) - Monochrome Triangle polygon, Semi-Transparent Variable + lui t0,0x2200 ; Monochrome Triangle Polygon, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) +.endmacro + +GPUTEXTRIBLEND equ 0x24 ; GPU Render Polygon Commands (GP0): $24 - Textured Triangle, Opaque, Texture-Blending +.macro TexTriBlend,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($24) - Textured Triangle, Opaque, Texture-Blending + WRIOW GP0,(0x24<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) +.endmacro +.macro TexTriBlendV,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($24) - Textured Triangle, Opaque, Texture-Blending Variable + lui t0,0x2400 ; Textured Triangle, Opaque, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) +.endmacro + +GPUTEXTRIRAW equ 0x25 ; GPU Render Polygon Commands (GP0): $25 - Textured Triangle, Opaque, Raw-Texture +.macro TexTriRaw,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($25) - Textured Triangle, Opaque, Raw-Texture + WRIOW GP0,(0x25<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) +.endmacro +.macro TexTriRawV,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($25) - Textured Triangle, Opaque, Raw-Texture Variable + lui t0,0x2500 ; Textured Triangle, Opaque, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) +.endmacro + +GPUTEXTRIBLENDALPHA equ 0x26 ; GPU Render Polygon Commands (GP0): $26 - Textured Triangle, Semi-Transparent, Texture-Blending +.macro TexTriBlendAlpha,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($26) - Textured Triangle, Semi-Transparent, Texture-Blending + WRIOW GP0,(0x26<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) +.endmacro +.macro TexTriBlendAlphaV,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($26) - Textured Triangle, Semi-Transparent, Texture-Blending Variable + lui t0,0x2600 ; Textured Triangle, Semi-Transparent, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) +.endmacro + +GPUTEXTRIRAWALPHA equ 0x27 ; GPU Render Polygon Commands (GP0): $27 - Textured Triangle, Semi-Transparent, Raw-Texture +.macro TexTriRawAlpha,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($27) - Textured Triangle, Semi-Transparent, Raw-Texture + WRIOW GP0,(0x27<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) +.endmacro +.macro TexTriRawAlphaV,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3 ; GP0($27) - Textured Triangle, Semi-Transparent, Raw-Texture Variable + lui t0,0x2700 ; Textured Triangle, Semi-Transparent, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) +.endmacro + +GPUFILLQUAD equ 0x28 ; GPU Render Polygon Commands (GP0): $28 - Monochrome Quad, Opaque +.macro FillQuad,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($28) - Monochrome Quad, Opaque + WRIOW GP0,(0x28<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) +.endmacro +.macro FillQuadV,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($28) - Monochrome Quad, Opaque Variable + lui t0,0x2800 ; Monochrome Quad, Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) +.endmacro + +GPUFILLQUADALPHA equ 0x2A ; GPU Render Polygon Commands (GP0): $2A - Monochrome Quad, Semi-Transparent +.macro FillQuadAlpha,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($2A) - Monochrome Quad, Semi-Transparent + WRIOW GP0,(0x2A<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) +.endmacro +.macro FillQuadAlphaV,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($2A) - Monochrome Quad, Semi-Transparent Variable + lui t0,0x2A00 ; Monochrome Quad, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) +.endmacro + +GPUTEXQUADBLEND equ 0x2C ; GPU Render Polygon Commands (GP0): $2C - Textured Quad, Opaque, Texture-Blending +.macro TexQuadBlend,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2C) - Textured Quad, Opaque, Texture-Blending + WRIOW GP0,(0x2C<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,((V4&0xFF)<<8)+(U4&0xFF) ; Write GP0 Packet Word (Texcoord4) +.endmacro +.macro TexQuadBlendV,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2C) - Textured Quad, Opaque, Texture-Blending Variable + lui t0,0x2C00 ; Monochrome Quad, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + andi U4,0xFF ; U4 &= 0xFF + andi V4,0xFF ; V4 &= 0xFF + sll V4,8 ; V4 <<= 8 + or U4,V4 ; U4 |= V4 + sw U4,GP0(a0) ; Write GP0 Packet Word (Texcoord4) +.endmacro + +GPUTEXQUADRAW equ 0x2D ; GPU Render Polygon Commands (GP0): $2D - Textured Quad, Opaque, Raw-Texture +.macro TexQuadRaw,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2D) - Textured Quad, Opaque, Raw-Texture + WRIOW GP0,(0x2D<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,((V4&0xFF)<<8)+(U4&0xFF) ; Write GP0 Packet Word (Texcoord4) +.endmacro +.macro TexQuadRawV,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2D) - Textured Quad, Opaque, Raw-Texture Variable + lui t0,0x2D00 ; Textured Quad, Opaque, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + andi U4,0xFF ; U4 &= 0xFF + andi V4,0xFF ; V4 &= 0xFF + sll V4,8 ; V4 <<= 8 + or U4,V4 ; U4 |= V4 + sw U4,GP0(a0) ; Write GP0 Packet Word (Texcoord4) +.endmacro + +GPUTEXQUADBLENDALPHA equ 0x2E ; GPU Render Polygon Commands (GP0): $2E - Textured Quad, Semi-Transparent, Texture-Blending +.macro TexQuadBlendAlpha,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2E) - Textured Quad, Semi-Transparent, Texture-Blending + WRIOW GP0,(0x2E<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,((V4&0xFF)<<8)+(U4&0xFF) ; Write GP0 Packet Word (Texcoord4) +.endmacro +.macro TexQuadBlendAlphaV,COLOR,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2E) - Textured Quad, Semi-Transparent, Texture-Blending Variable + lui t0,0x2E00 ; Textured Quad, Semi-Transparent, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + andi U4,0xFF ; U4 &= 0xFF + andi V4,0xFF ; V4 &= 0xFF + sll V4,8 ; V4 <<= 8 + or U4,V4 ; U4 |= V4 + sw U4,GP0(a0) ; Write GP0 Packet Word (Texcoord4) +.endmacro + +GPUTEXQUADRAWALPHA equ 0x2F ; GPU Render Polygon Commands (GP0): $2F - Textured Quad, Semi-Transparent, Raw-Texture +.macro TexQuadRawAlpha,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2F) - Textured Quad, Semi-Transparent, Raw-Texture + WRIOW GP0,(0x2F<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,((V4&0xFF)<<8)+(U4&0xFF) ; Write GP0 Packet Word (Texcoord4) +.endmacro +.macro TexQuadRawAlphaV,X1,Y1,U1,V1,PAL,X2,Y2,U2,V2,TEX,X3,Y3,U3,V3,X4,Y4,U4,V4 ; GP0($2F) - Textured Quad, Semi-Transparent, Raw-Texture Variable + lui t0,0x2F00 ; Textured Quad, Semi-Transparent, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + andi U4,0xFF ; U4 &= 0xFF + andi V4,0xFF ; V4 &= 0xFF + sll V4,8 ; V4 <<= 8 + or U4,V4 ; U4 |= V4 + sw U4,GP0(a0) ; Write GP0 Packet Word (Texcoord4) +.endmacro + +GPUSHADETRI equ 0x30 ; GPU Render Polygon Commands (GP0): $30 - Shaded Triangle, Opaque +.macro ShadeTri,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($30) - Shaded Triangle, Opaque + WRIOW GP0,(0x30<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) +.endmacro +.macro ShadeTriV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($30) - Shaded Triangle, Opaque Variable + lui t0,0x3000 ; Shaded Triangle, Opaque Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) +.endmacro + +GPUSHADETRIALPHA equ 0x32 ; GPU Render Polygon Commands (GP0): $32 - Shaded Triangle, Semi-Transparent +.macro ShadeTriAlpha,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($32) - Shaded Triangle, Semi-Transparent + WRIOW GP0,(0x32<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) +.endmacro +.macro ShadeTriAlphaV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($32) - Shaded Triangle, Semi-Transparent Variable + lui t0,0x3200 ; Shaded Triangle, Semi-Transparent Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) +.endmacro + +GPUSHADETEXTRI equ 0x34 ; GPU Render Polygon Commands (GP0): $34 - Shaded Textured Triangle, Opaque, Texture-Blending +.macro ShadeTexTri,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3 ; GP0($34) - Shaded Textured Triangle, Opaque, Texture-Blending + WRIOW GP0,(0x34<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) +.endmacro +.macro ShadeTexTriV,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3 ; GP0($34) - Shaded Textured Triangle, Opaque, Texture-Blending Variable + lui t0,0x3400 ; Shaded Textured Triangle, Opaque, Texture-Blending Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) +.endmacro + +GPUSHADETEXTRIALPHA equ 0x36 ; GPU Render Polygon Commands (GP0): $36 - Shaded Textured Triangle, Semi-Transparent, Texture-Blending +.macro ShadeTexTriAlpha,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3 ; GP0($36) - Shaded Textured Triangle, Semi-Transparent, Texture-Blending + WRIOW GP0,(0x36<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) +.endmacro +.macro ShadeTexTriAlphaV,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3 ; GP0($36) - Shaded Textured Triangle, Semi-Transparent, Texture-Blending Variable + lui t0,0x3600 ; Shaded Textured Triangle, Semi-Transparent, Texture-Blending Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) +.endmacro + +GPUSHADEQUAD equ 0x38 ; GPU Render Polygon Commands (GP0): $38 - Shaded Quad, Opaque +.macro ShadeQuad,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($38) - Shaded Quad, Opaque + WRIOW GP0,(0x38<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(COLOR4&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) +.endmacro +.macro ShadeQuadV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($38) - Shaded Quad, Opaque Variable + lui t0,0x3800 ; Shaded Quad, Opaque Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw COLOR4,GP0(a0) ; Write GP0 Packet Word (Color4) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) +.endmacro + +GPUSHADEQUADALPHA equ 0x3A ; GPU Render Polygon Commands (GP0): $3A - Shaded Quad, Semi-Transparent +.macro ShadeQuadAlpha,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($3A) - Shaded Quad, Semi-Transparent + WRIOW GP0,(0x3A<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(COLOR4&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) +.endmacro +.macro ShadeQuadAlphaV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($3A) - Shaded Quad, Semi-Transparent Variable + lui t0,0x3A00 ; Shaded Quad, Semi-Transparent Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw COLOR4,GP0(a0) ; Write GP0 Packet Word (Color4) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) +.endmacro + +GPUSHADETEXQUAD equ 0x3C ; GPU Render Polygon Commands (GP0): $3C - Shaded Textured Quad, Opaque, Texture-Blending +.macro ShadeTexQuad,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3,COLOR4,X4,Y4,U4,V4 ; GP0($3C) - Shaded Textured Quad, Opaque, Texture-Blending + WRIOW GP0,(0x3C<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) + WRIOW GP0,(COLOR4&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,((V4&0xFF)<<8)+(U4&0xFF) ; Write GP0 Packet Word (Texcoord4) +.endmacro +.macro ShadeTexQuadV,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3,COLOR4,X4,Y4,U4,V4 ; GP0($3C) - Shaded Textured Quad, Opaque, Texture-Blending Variable + lui t0,0x3C00 ; Shaded Textured Quad, Opaque, Texture-Blending Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + sw COLOR4,GP0(a0) ; Write GP0 Packet Word (Color4) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + andi U4,0xFF ; U4 &= 0xFF + andi V4,0xFF ; V4 &= 0xFF + sll V4,8 ; V4 <<= 8 + or U4,V4 ; U4 |= V4 + sw U4,GP0(a0) ; Write GP0 Packet Word (Texcoord4) +.endmacro + +GPUSHADETEXQUADALPHA equ 0x3E ; GPU Render Polygon Commands (GP0): $3E - Shaded Textured Quad, Semi-Transparent, Texture-Blending +.macro ShadeTexQuadAlpha,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3,COLOR4,X4,Y4,U4,V4 ; GP0($3E) - Shaded Textured Quad, Semi-Transparent, Texture-Blending + WRIOW GP0,(0x3E<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(PAL<<16)+((V1&0xFF)<<8)+(U1&0xFF) ; Write GP0 Packet Word (Texcoord1+Palette) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(TEX<<16)+((V2&0xFF)<<8)+(U2&0xFF) ; Write GP0 Packet Word (Texcoord2+Texpage) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,((V3&0xFF)<<8)+(U3&0xFF) ; Write GP0 Packet Word (Texcoord3) + WRIOW GP0,(COLOR4&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,((V4&0xFF)<<8)+(U4&0xFF) ; Write GP0 Packet Word (Texcoord4) +.endmacro +.macro ShadeTexQuadAlphaV,COLOR1,X1,Y1,U1,V1,PAL,COLOR2,X2,Y2,U2,V2,TEX,COLOR3,X3,Y3,U3,V3,COLOR4,X4,Y4,U4,V4 ; GP0($3E) - Shaded Textured Quad, Semi-Transparent, Texture-Blending Variable + lui t0,0x3E00 ; Shaded Textured Quad, Semi-Transparent, Texture-Blending Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll PAL,16 ; PAL <<= 16 + andi U1,0xFF ; U1 &= 0xFF + andi V1,0xFF ; V1 &= 0xFF + sll V1,8 ; V1 <<= 8 + or U1,V1 ; U1 |= V1 + or U1,PAL ; U1 |= PAL + sw U1,GP0(a0) ; Write GP0 Packet Word (Texcoord1+Palette) + + sw COLOR2,GP0(a0) ; Write GP0 Packet Word (Color2) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll TEX,16 ; TEX <<= 16 + andi U2,0xFF ; U2 &= 0xFF + andi V2,0xFF ; V2 &= 0xFF + sll V2,8 ; V2 <<= 8 + or U2,V2 ; U2 |= V2 + or U2,TEX ; U2 |= TEX + sw U2,GP0(a0) ; Write GP0 Packet Word (Texcoord2+Texpage) + + sw COLOR3,GP0(a0) ; Write GP0 Packet Word (Color3) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + andi U3,0xFF ; U3 &= 0xFF + andi V3,0xFF ; V3 &= 0xFF + sll V3,8 ; V3 <<= 8 + or U3,V3 ; U3 |= V3 + sw U3,GP0(a0) ; Write GP0 Packet Word (Texcoord3) + + sw COLOR4,GP0(a0) ; Write GP0 Packet Word (Color4) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + andi U4,0xFF ; U4 &= 0xFF + andi V4,0xFF ; V4 &= 0xFF + sll V4,8 ; V4 <<= 8 + or U4,V4 ; U4 |= V4 + sw U4,GP0(a0) ; Write GP0 Packet Word (Texcoord4) +.endmacro + +;================================ +; GPU Render Line Commands (GP0) +;================================ +GPUFILLLINE equ 0x40 ; GPU Render Line Commands (GP0): $40 - Monochrome Line, Opaque +.macro FillLine,COLOR,X1,Y1,X2,Y2 ; GP0($40) - Monochrome Line, Opaque + WRIOW GP0,(0x40<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) +.endmacro +.macro FillLineV,COLOR,X1,Y1,X2,Y2 ; GP0($40) - Monochrome Line, Opaque Variable + lui t0,0x4000 ; Monochrome Line, Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) +.endmacro + +GPUFILLLINEALPHA equ 0x42 ; GPU Render Line Commands (GP0): $42 - Monochrome Line, Semi-Transparent +.macro FillLineAlpha,COLOR,X1,Y1,X2,Y2 ; GP0($42) - Monochrome Line, Semi-Transparent + WRIOW GP0,(0x42<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) +.endmacro +.macro FillLineAlphaV,COLOR,X1,Y1,X2,Y2 ; GP0($42) - Monochrome Line, Semi-Transparent Variable + lui t0,0x4200 ; Monochrome Line, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) +.endmacro + +GPUFILLPOLYLINE equ 0x48 ; GPU Render Line Commands (GP0): $48 - Monochrome Poly-Line, Opaque +.macro FillPolyLine,COLOR,X1,Y1,X2,Y2 ; GP0($48) - Monochrome Poly-Line, Opaque + WRIOW GP0,(0x48<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillPolyLineV,COLOR,X1,Y1,X2,Y2 ; GP0($48) - Monochrome Poly-Line, Opaque Variable + lui t0,0x4800 ; Monochrome Poly-Line, Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro FillTriLine,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($48) - Monochrome Triangle-Line, Opaque + WRIOW GP0,(0x48<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillTriLineV,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($48) - Monochrome Triangle-Line, Opaque Variable + lui t0,0x4800 ; Monochrome Poly-Line, Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro FillQuadLine,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($48) - Monochrome Quad-Line, Opaque + WRIOW GP0,(0x48<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillQuadLineV,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($48) - Monochrome Quad-Line, Opaque Variable + lui t0,0x4800 ; Monochrome Poly-Line, Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex5) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +GPUFILLPOLYLINEALPHA equ 0x4A ; GPU Render Line Commands (GP0): $4A - Monochrome Poly-Line, Semi-Transparent +.macro FillPolyLineAlpha,COLOR,X1,Y1,X2,Y2 ; GP0($4A) - Monochrome Poly-Line, Semi-Transparent + WRIOW GP0,(0x4A<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillPolyLineAlphaV,COLOR,X1,Y1,X2,Y2 ; GP0($4A) - Monochrome Poly-Line, Semi-Transparent Variable + lui t0,0x4A00 ; Monochrome Poly-Line, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro FillTriLineAlpha,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($4A) - Monochrome Triangle-Line, Semi-Transparent + WRIOW GP0,(0x4A<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillTriLineAlphaV,COLOR,X1,Y1,X2,Y2,X3,Y3 ; GP0($4A) - Monochrome Triangle-Line, Semi-Transparent Variable + lui t0,0x4A00 ; Monochrome Poly-Line, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro FillQuadLineAlpha,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($4A) - Monochrome Quad-Line, Semi-Transparent + WRIOW GP0,(0x4A<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillQuadLineAlphaV,COLOR,X1,Y1,X2,Y2,X3,Y3,X4,Y4 ; GP0($4A) - Monochrome Quad-Line, Semi-Transparent Variable + lui t0,0x4A00 ; Monochrome Poly-Line, Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex5) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +GPUSHADELINE equ 0x50 ; GPU Render Line Commands (GP0): $50 - Shaded Line, Opaque +.macro ShadeLine,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($50) - Shaded Line, Opaque + WRIOW GP0,(0x50<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) +.endmacro +.macro ShadeLineV,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($50) - Shaded Line, Opaque Variable + lui t0,0x5000 ; Shaded Line, Opaque Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) +.endmacro + +GPUSHADELINEALPHA equ 0x52 ; GPU Render Line Commands (GP0): $52 - Shaded Line, Semi-Transparent +.macro ShadeLineAlpha,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($52) - Shaded Line, Semi-Transparent + WRIOW GP0,(0x52<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) +.endmacro +.macro ShadeLineAlphaV,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($52) - Shaded Line, Semi-Transparent Variable + lui t0,0x5200 ; Shaded Line, Semi-Transparent Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) +.endmacro + +GPUSHADEPOLYLINE equ 0x58 ; GPU Render Line Commands (GP0): $58 - Shaded Poly-Line, Opaque +.macro ShadePolyLine,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($58) - Shaded Poly-Line, Opaque + WRIOW GP0,(0x58<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (ColorN) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro ShadePolyLineV,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($58) - Shaded Poly-Line, Opaque Variable + lui t0,0x5800 ; Shaded Poly-Line, Opaque Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (ColorN) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro ShadeTriLine,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($58) - Shaded Triangle-Line, Opaque + WRIOW GP0,(0x58<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(COLOR1&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro ShadeTriLineV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($58) - Shaded Triangle-Line, Opaque Variable + lui t0,0x5800 ; Shaded Poly-Line, Opaque Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Command Word (Color3+Command) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color4+Command) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro ShadeQuadLine,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($58) - Shaded Quad-Line, Opaque + WRIOW GP0,(0x58<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(COLOR4&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,(COLOR1&0xFFFFFF) ; Write GP0 Packet Word (Color5) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro ShadeQuadLineV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($58) - Shaded Quad-Line, Opaque Variable + lui t0,0x5800 ; Shaded Poly-Line, Opaque Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Command Word (Color3+Command) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw COLOR4,GP0(a0) ; Write GP0 Command Word (Color4+Command) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color5+Command) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex5) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +GPUSHADEPOLYLINEALPHA equ 0x5A ; GPU Render Line Commands (GP0): $5A - Shaded Poly-Line, Semi-Transparent +.macro ShadePolyLineAlpha,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($5A) - Shaded Poly-Line, Semi-Transparent + WRIOW GP0,(0x5A<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (ColorN) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro ShadePolyLineAlphaV,COLOR1,X1,Y1,COLOR2,X2,Y2 ; GP0($5A) - Shaded Poly-Line, Semi-Transparent Variable + lui t0,0x5A00 ; Shaded Poly-Line, Semi-Transparent Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + ; Write GP0 Packet Word (ColorN) + ; Write GP0 Packet Word (VertexN) + ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro ShadeTriLineAlpha,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($5A) - Shaded Triangle-Line, Semi-Transparent + WRIOW GP0,(0x5A<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(COLOR1&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro ShadeTriLineAlphaV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3 ; GP0($5A) - Shaded Triangle-Line, Semi-Transparent Variable + lui t0,0x5A00 ; Shaded Poly-Line, Semi-Transparent Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Command Word (Color3+Command) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color4+Command) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +.macro ShadeQuadLineAlpha,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($5A) - Shaded Quad-Line, Semi-Transparent + WRIOW GP0,(0x5A<<24)+(COLOR1&0xFFFFFF) ; Write GP0 Command Word (Color1+Command) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex1) + WRIOW GP0,(COLOR2&0xFFFFFF) ; Write GP0 Packet Word (Color2) + WRIOW GP0,(Y2<<16)+(X2&0xFFFF) ; Write GP0 Packet Word (Vertex2) + WRIOW GP0,(COLOR3&0xFFFFFF) ; Write GP0 Packet Word (Color3) + WRIOW GP0,(Y3<<16)+(X3&0xFFFF) ; Write GP0 Packet Word (Vertex3) + WRIOW GP0,(COLOR4&0xFFFFFF) ; Write GP0 Packet Word (Color4) + WRIOW GP0,(Y4<<16)+(X4&0xFFFF) ; Write GP0 Packet Word (Vertex4) + WRIOW GP0,(COLOR1&0xFFFFFF) ; Write GP0 Packet Word (Color5) + WRIOW GP0,(Y1<<16)+(X1&0xFFFF) ; Write GP0 Packet Word (Vertex5) + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro ShadeQuadLineAlphaV,COLOR1,X1,Y1,COLOR2,X2,Y2,COLOR3,X3,Y3,COLOR4,X4,Y4 ; GP0($5A) - Shaded Quad-Line, Semi-Transparent Variable + lui t0,0x5A00 ; Shaded Poly-Line, Semi-Transparent Command + or COLOR1,t0 ; COLOR1 |= Command + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color1+Command) + + sll Y1,16 ; Y1 <<= 16 + andi X1,0xFFFF ; X1 &= 0xFFFF + or X1,Y1 ; X1 |= Y1 + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex1) + + sw COLOR2,GP0(a0) ; Write GP0 Command Word (Color2+Command) + + sll Y2,16 ; Y2 <<= 16 + andi X2,0xFFFF ; X2 &= 0xFFFF + or X2,Y2 ; X2 |= Y2 + sw X2,GP0(a0) ; Write GP0 Packet Word (Vertex2) + + sw COLOR3,GP0(a0) ; Write GP0 Command Word (Color3+Command) + + sll Y3,16 ; Y3 <<= 16 + andi X3,0xFFFF ; X3 &= 0xFFFF + or X3,Y3 ; X3 |= Y3 + sw X3,GP0(a0) ; Write GP0 Packet Word (Vertex3) + + sw COLOR4,GP0(a0) ; Write GP0 Command Word (Color4+Command) + + sll Y4,16 ; Y4 <<= 16 + andi X4,0xFFFF ; X4 &= 0xFFFF + or X4,Y4 ; X4 |= Y4 + sw X4,GP0(a0) ; Write GP0 Packet Word (Vertex4) + + sw COLOR1,GP0(a0) ; Write GP0 Command Word (Color5+Command) + + sw X1,GP0(a0) ; Write GP0 Packet Word (Vertex5) + + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro + +GPUPOLYLINEEND equ 0x55555555 ; GPU Render Line Commands (GP0): $55555555 - Poly-Line, Termination Code +.macro PolyLineEnd ; GP0($55555555) - Poly-Line, Termination Code + WRIOW GP0,0x55555555 ; Write GP0 Packet Word (Termination Code) +.endmacro +.macro FillPolyLineVert,X,Y ; GP0(X,Y) - Monochrome Poly-Line, Vertex + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro ShadePolyLineVert,COLOR,X,Y ; GP0(COL,X,Y) - Shaded Poly-Line, Vertex + WRIOW GP0,(COLOR&0xFFFFFF) ; Write GP0 Packet Word (Color) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro + +;===================================== +; GPU Render Rectangle Commands (GP0) +;===================================== +GPUFILLRECT equ 0x60 ; GPU Render Rectangle Commands (GP0): $60 - Monochrome Rectangle (Variable Size), Opaque +.macro FillRect,COLOR,X,Y,WIDTH,HEIGHT ; GP0($60) - Monochrome Rectangle (Variable Size), Opaque + WRIOW GP0,(0x60<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height) +.endmacro +.macro FillRectV,COLOR,X,Y,WIDTH,HEIGHT ; GP0($60) - Monochrome Rectangle (Variable Size), Opaque Variable + lui t0,0x6000 ; Monochrome Rectangle (Variable Size), Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height) +.endmacro + +GPUFILLRECTALPHA equ 0x62 ; GPU Render Rectangle Commands (GP0): $62 - Monochrome Rectangle (Variable Size), Semi-Transparent +.macro FillRectAlpha,COLOR,X,Y,WIDTH,HEIGHT ; GP0($62) - Monochrome Rectangle (Variable Size), Semi-Transparent + WRIOW GP0,(0x62<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height) +.endmacro +.macro FillRectAlphaV,COLOR,X,Y,WIDTH,HEIGHT ; GP0($62) - Monochrome Rectangle (Variable Size), Semi-Transparent Variable + lui t0,0x6200 ; Monochrome Rectangle (Variable Size), Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height) +.endmacro + +GPUTEXRECTBLEND equ 0x64 ; GPU Render Rectangle Commands (GP0): $64 - Textured Rectangle (Variable Size), Opaque, Texture-Blending +.macro TexRectBlend,COLOR,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($64) - Textured Rectangle (Variable Size), Opaque, Texture-Blending + WRIOW GP0,(0x64<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height) +.endmacro +.macro TexRectBlendV,COLOR,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($64) - Textured Rectangle (Variable Size), Opaque, Texture-Blending Variable + lui t0,0x6400 ; Textured Rectangle (Variable Size), Opaque, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height) +.endmacro + +GPUTEXRECTRAW equ 0x65 ; GPU Render Rectangle Commands (GP0): $65 - Textured Rectangle (Variable Size), Opaque, Raw-Texture +.macro TexRectRaw,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($65) - Textured Rectangle (Variable Size), Opaque, Raw-Texture + WRIOW GP0,(0x65<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height) +.endmacro +.macro TexRectRawV,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($65) - Textured Rectangle (Variable Size), Opaque, Raw-Texture Variable + lui t0,0x6500 ; Textured Rectangle (Variable Size), Opaque, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height) +.endmacro + +GPUTEXRECTBLENDALPHA equ 0x66 ; GPU Render Rectangle Commands (GP0): $66 - Textured Rectangle (Variable Size), Semi-Transparent, Texture-Blending +.macro TexRectBlendAlpha,COLOR,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($66) - Textured Rectangle (Variable Size), Semi-Transparent, Texture-Blending + WRIOW GP0,(0x66<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height) +.endmacro +.macro TexRectBlendAlphaV,COLOR,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($66) - Textured Rectangle (Variable Size), Semi-Transparent, Texture-Blending Variable + lui t0,0x6600 ; Textured Rectangle (Variable Size), Semi-Transparent, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height) +.endmacro + +GPUTEXRECTRAWALPHA equ 0x67 ; GPU Render Rectangle Commands (GP0): $67 - Textured Rectangle (Variable Size), Semi-Transparent, Raw-Texture +.macro TexRectRawAlpha,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($67) - Textured Rectangle (Variable Size), Semi-Transparent, Raw-Texture + WRIOW GP0,(0x67<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) + WRIOW GP0,(HEIGHT<<16)+(WIDTH&0xFFFF) ; Write GP0 Packet Word (Width+Height) +.endmacro +.macro TexRectRawAlphaV,X,Y,U,V,PAL,WIDTH,HEIGHT ; GP0($67) - Textured Rectangle (Variable Size), Semi-Transparent, Raw-Texture Variable + lui t0,0x6700 ; Textured Rectangle (Variable Size), Semi-Transparent, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) + + sll HEIGHT,16 ; HEIGHT <<= 16 + andi WIDTH,0xFFFF ; WIDTH &= 0xFFFF + or WIDTH,HEIGHT ; WIDTH |= HEIGHT + sw WIDTH,GP0(a0) ; Write GP0 Packet Word (Width+Height) +.endmacro + +GPUFILLRECT1X1 equ 0x68 ; GPU Render Rectangle Commands (GP0): $68 - Monochrome Rectangle Dot (1x1), Opaque +.macro FillRect1x1,COLOR,X,Y ; GP0($68) - Monochrome Rectangle Dot (1x1), Opaque + WRIOW GP0,(0x68<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro FillRect1x1V,COLOR,X,Y ; GP0($68) - Monochrome Rectangle Dot (1x1), Opaque Variable + lui t0,0x6800 ; Monochrome Rectangle Dot (1x1), Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) +.endmacro + +GPUFILLRECTALPHA1X1 equ 0x6A ; GPU Render Rectangle Commands (GP0): $6A - Monochrome Rectangle Dot (1x1), Semi-Transparent +.macro FillRectAlpha1x1,COLOR,X,Y ; GP0($6A) - Monochrome Rectangle Dot (1x1), Semi-Transparent + WRIOW GP0,(0x6A<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro FillRectAlpha1x1V,COLOR,X,Y ; GP0($6A) - Monochrome Rectangle Dot (1x1), Semi-Transparent Variable + lui t0,0x6A00 ; Monochrome Rectangle Dot (1x1), Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) +.endmacro + +GPUTEXRECTBLEND1X1 equ 0x6C ; GPU Render Rectangle Commands (GP0): $6C - Textured Rectangle Dot (1x1), Opaque, Texture-Blending +.macro TexRectBlend1x1,COLOR,X,Y,U,V,PAL ; GP0($6C) - Textured Rectangle Dot (1x1), Opaque, Texture-Blending + WRIOW GP0,(0x6C<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectBlend1x1V,COLOR,X,Y,U,V,PAL ; GP0($6C) - Textured Rectangle Dot (1x1), Opaque, Texture-Blending Variable + lui t0,0x6C00 ; Textured Rectangle Dot (1x1), Opaque, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTRAW1X1 equ 0x6D ; GPU Render Rectangle Commands (GP0): $6D - Textured Rectangle Dot (1x1), Opaque, Raw-Texture +.macro TexRectRaw1x1,X,Y,U,V,PAL ; GP0($6D) - Textured Rectangle Dot (1x1), Opaque, Raw-Texture + WRIOW GP0,(0x6D<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectRaw1x1V,X,Y,U,V,PAL ; GP0($6D) - Textured Rectangle Dot (1x1), Opaque, Raw-Texture Variable + lui t0,0x6D00 ; Textured Rectangle Dot (1x1), Opaque, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTBLENDALPHA1X1 equ 0x6E ; GPU Render Rectangle Commands (GP0): $6E - Textured Rectangle Dot (1x1), Semi-Transparent, Texture-Blending +.macro TexRectBlendAlpha1x1,COLOR,X,Y,U,V,PAL ; GP0($6E) - Textured Rectangle Dot (1x1), Semi-Transparent, Texture-Blending + WRIOW GP0,(0x6E<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectBlendAlpha1x1V,COLOR,X,Y,U,V,PAL ; GP0($6E) - Textured Rectangle Dot (1x1), Semi-Transparent, Texture-Blending Variable + lui t0,0x6E00 ; Textured Rectangle Dot (1x1), Semi-Transparent, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTRAWALPHA1X1 equ 0x6F ; GPU Render Rectangle Commands (GP0): $6F - Textured Rectangle Dot (1x1), Semi-Transparent, Raw-Texture +.macro TexRectRawAlpha1x1,X,Y,U,V,PAL ; GP0($6F) - Textured Rectangle Dot (1x1), Semi-Transparent, Raw-Texture + WRIOW GP0,(0x6F<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectRawAlpha1x1V,X,Y,U,V,PAL ; GP0($6F) - Textured Rectangle Dot (1x1), Semi-Transparent, Raw-Texture Variable + lui t0,0x6F00 ; Textured Rectangle Dot (1x1), Semi-Transparent, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUFILLRECT8X8 equ 0x70 ; GPU Render Rectangle Commands (GP0): $70 - Monochrome Rectangle (8x8), Opaque +.macro FillRect8x8,COLOR,X,Y ; GP0($70) - Monochrome Rectangle (8x8), Opaque + WRIOW GP0,(0x70<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro FillRect8x8V,COLOR,X,Y ; GP0($70) - Monochrome Rectangle (8x8), Opaque Variable + lui t0,0x7000 ; Monochrome Rectangle (8x8), Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) +.endmacro + +GPUFILLRECTALPHA8X8 equ 0x72 ; GPU Render Rectangle Commands (GP0): $72 - Monochrome Rectangle (8x8), Semi-Transparent +.macro FillRectAlpha8x8,COLOR,X,Y ; GP0($72) - Monochrome Rectangle (8x8), Semi-Transparent + WRIOW GP0,(0x72<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro FillRectAlpha8x8V,COLOR,X,Y ; GP0($72) - Monochrome Rectangle (8x8), Semi-Transparent Variable + lui t0,0x7200 ; Monochrome Rectangle (8x8), Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) +.endmacro + +GPUTEXRECTBLEND8X8 equ 0x74 ; GPU Render Rectangle Commands (GP0): $74 - Textured Rectangle (8x8), Opaque, Texture-Blending +.macro TexRectBlend8x8,COLOR,X,Y,U,V,PAL ; GP0($74) - Textured Rectangle (8x8), Opaque, Texture-Blending + WRIOW GP0,(0x74<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectBlend8x8V,COLOR,X,Y,U,V,PAL ; GP0($74) - Textured Rectangle (8x8), Opaque, Texture-Blending Variable + lui t0,0x7400 ; Textured Rectangle (8x8), Opaque, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTRAW8X8 equ 0x75 ; GPU Render Rectangle Commands (GP0): $75 - Textured Rectangle (8x8), Opaque, Raw-Texture +.macro TexRectRaw8x8,X,Y,U,V,PAL ; GP0($75) - Textured Rectangle (8x8), Opaque, Raw-Texture + WRIOW GP0,(0x75<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectRaw8x8V,X,Y,U,V,PAL ; GP0($75) - Textured Rectangle (8x8), Opaque, Raw-Texture Variable + lui t0,0x7500 ; Textured Rectangle (8x8), Opaque, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTBLENDALPHA8X8 equ 0x76 ; GPU Render Rectangle Commands (GP0): $76 - Textured Rectangle (8x8), Semi-Transparent, Texture-Blending +.macro TexRectBlendAlpha8x8,COLOR,X,Y,U,V,PAL ; GP0($76) - Textured Rectangle (8x8), Semi-Transparent, Texture-Blending + WRIOW GP0,(0x76<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectBlendAlpha8x8V,COLOR,X,Y,U,V,PAL ; GP0($76) - Textured Rectangle (8x8), Semi-Transparent, Texture-Blending Variable + lui t0,0x7600 ; Textured Rectangle (8x8), Semi-Transparent, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTRAWALPHA8X8 equ 0x77 ; GPU Render Rectangle Commands (GP0): $77 - Textured Rectangle (8x8), Semi-Transparent, Raw-Texture +.macro TexRectRawAlpha8x8,X,Y,U,V,PAL ; GP0($77) - Textured Rectangle (8x8), Semi-Transparent, Raw-Texture + WRIOW GP0,(0x77<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectRawAlpha8x8V,X,Y,U,V,PAL ; GP0($77) - Textured Rectangle (8x8), Semi-Transparent, Raw-Texture Variable + lui t0,0x7700 ; Textured Rectangle (8x8), Semi-Transparent, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUFILLRECT16X16 equ 0x78 ; GPU Render Rectangle Commands (GP0): $78 - Monochrome Rectangle (16x16), Opaque +.macro FillRect16x16,COLOR,X,Y ; GP0($78) - Monochrome Rectangle (16x16), Opaque + WRIOW GP0,(0x78<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro FillRect16x16V,COLOR,X,Y ; GP0($78) - Monochrome Rectangle (16x16), Opaque Variable + lui t0,0x7800 ; Monochrome Rectangle (16x16), Opaque Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) +.endmacro + +GPUFILLRECTALPHA16X16 equ 0x7A ; GPU Render Rectangle Commands (GP0): $7A - Monochrome Rectangle (16x16), Semi-Transparent +.macro FillRectAlpha16x16,COLOR,X,Y ; GP0($7A) - Monochrome Rectangle (16x16), Semi-Transparent + WRIOW GP0,(0x7A<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) +.endmacro +.macro FillRectAlpha16x16V,COLOR,X,Y ; GP0($7A) - Monochrome Rectangle (16x16), Semi-Transparent Variable + lui t0,0x7A00 ; Monochrome Rectangle (16x16), Semi-Transparent Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) +.endmacro + +GPUTEXRECTBLEND16X16 equ 0x7C ; GPU Render Rectangle Commands (GP0): $7C - Textured Rectangle (16x16), Opaque, Texture-Blending +.macro TexRectBlend16x16,COLOR,X,Y,U,V,PAL ; GP0($7C) - Textured Rectangle (16x16), Opaque, Texture-Blending + WRIOW GP0,(0x7C<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectBlend16x16V,COLOR,X,Y,U,V,PAL ; GP0($7C) - Textured Rectangle (16x16), Opaque, Texture-Blending Variable + lui t0,0x7C00 ; Textured Rectangle (16x16), Opaque, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTRAW16X16 equ 0x7D ; GPU Render Rectangle Commands (GP0): $7D - Textured Rectangle (16x16), Opaque, Raw-Texture +.macro TexRectRaw16x16,X,Y,U,V,PAL ; GP0($7D) - Textured Rectangle (16x16), Opaque, Raw-Texture + WRIOW GP0,(0x7D<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectRaw16x16V,X,Y,U,V,PAL ; GP0($7D) - Textured Rectangle (16x16), Opaque, Raw-Texture Variable + lui t0,0x7D00 ; Textured Rectangle (16x16), Opaque, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTBLENDALPHA16X16 equ 0x7E ; GPU Render Rectangle Commands (GP0): $7E - Textured Rectangle (16x16), Semi-Transparent, Texture-Blending +.macro TexRectBlendAlpha16x16,COLOR,X,Y,U,V,PAL ; GP0($7E) - Textured Rectangle (16x16), Semi-Transparent, Texture-Blending + WRIOW GP0,(0x7E<<24)+(COLOR&0xFFFFFF) ; Write GP0 Command Word (Color+Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectBlendAlpha16x16V,COLOR,X,Y,U,V,PAL ; GP0($7E) - Textured Rectangle (16x16), Semi-Transparent, Texture-Blending Variable + lui t0,0x7E00 ; Textured Rectangle (16x16), Semi-Transparent, Texture-Blending Command + or COLOR,t0 ; COLOR |= Command + sw COLOR,GP0(a0) ; Write GP0 Command Word (Color+Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +GPUTEXRECTRAWALPHA16X16 equ 0x7F ; GPU Render Rectangle Commands (GP0): $7F - Textured Rectangle (16x16), Semi-Transparent, Raw-Texture +.macro TexRectRawAlpha16x16,X,Y,U,V,PAL ; GP0($7F) - Textured Rectangle (16x16), Semi-Transparent, Raw-Texture + WRIOW GP0,(0x7F<<24) ; Write GP0 Command Word (Command) + WRIOW GP0,(Y<<16)+(X&0xFFFF) ; Write GP0 Packet Word (Vertex) + WRIOW GP0,(PAL<<16)+((V&0xFF)<<8)+(U&0xFF) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro +.macro TexRectRawAlpha16x16V,X,Y,U,V,PAL ; GP0($7F) - Textured Rectangle (16x16), Semi-Transparent, Raw-Texture Variable + lui t0,0x7F00 ; Textured Rectangle (16x16), Semi-Transparent, Raw-Texture Command + sw t0,GP0(a0) ; Write GP0 Command Word (Command) + + sll Y,16 ; Y <<= 16 + andi X,0xFFFF ; X &= 0xFFFF + or X,Y ; X |= Y + sw X,GP0(a0) ; Write GP0 Packet Word (Vertex) + + sll PAL,16 ; PAL <<= 16 + andi U,0xFF ; U &= 0xFF + andi V,0xFF ; V &= 0xFF + sll V,8 ; V <<= 8 + or U,V ; U |= V + or U,PAL ; U |= PAL + sw U,GP0(a0) ; Write GP0 Packet Word (Texcoord+Palette) +.endmacro + +;================================ +; GPU Rendering Attributes (GP0) +;================================ +GPUDRAWM equ 0xE1 ; GPU Rendering Attributes (GP0): $E1 - Draw Mode Setting (AKA "Texpage") +GPUTEXWIN equ 0xE2 ; GPU Rendering Attributes (GP0): $E2 - Texture Window Setting +GPUDRAWATL equ 0xE3 ; GPU Rendering Attributes (GP0): $E3 - Set Drawing Area Top Left (X1,Y1) +GPUDRAWABR equ 0xE4 ; GPU Rendering Attributes (GP0): $E4 - Set Drawing Area Bottom Right (X2,Y2) +GPUDRAWOFS equ 0xE5 ; GPU Rendering Attributes (GP0): $E5 - Set Drawing Offset (X,Y) +GPUMASKBIT equ 0xE6 ; GPU Rendering Attributes (GP0): $E6 - Mask Bit Setting + +;================================================================================== +; GPU Display Control Commands (GP1) (Command = 8-Bit MSB, Parameter = 24-Bit LSB) +;================================================================================== +GPURESET equ 0x00 ; GPU Display Control Commands (GP1): $00 - Reset GPU +GPURESETCB equ 0x01 ; GPU Display Control Commands (GP1): $01 - Reset Command Buffer +GPUIRQACK equ 0x02 ; GPU Display Control Commands (GP1): $02 - Acknowledge GPU Interrupt (IRQ1) +GPUDISPEN equ 0x03 ; GPU Display Control Commands (GP1): $03 - Display Enable +GPUDMA equ 0x04 ; GPU Display Control Commands (GP1): $04 - DMA Direction / Data Request +GPUVRAM equ 0x05 ; GPU Display Control Commands (GP1): $05 - Start Of Display Area (In VRAM) +GPUDISPH equ 0x06 ; GPU Display Control Commands (GP1): $06 - Horizontal Display Range (On Screen) +GPUDISPV equ 0x07 ; GPU Display Control Commands (GP1): $07 - Vertical Display Range (On Screen) + +GPUDISPM equ 0x08 ; GPU Display Control Commands (GP1): $08 - Display Mode + HRES256 equ 0x00 ; Display Mode: Horizontal Resolution 1 256 (Bit 0..1) + HRES320 equ 0x01 ; Display Mode: Horizontal Resolution 1 320 (Bit 0..1) + HRES512 equ 0x02 ; Display Mode: Horizontal Resolution 1 512 (Bit 0..1) + HRES640 equ 0x03 ; Display Mode: Horizontal Resolution 1 640 (Bit 0..1) + VRES240 equ 0x00 ; Display Mode: Vertical Resolution 240 (Bit 2) + VRES480 equ 0x04 ; Display Mode: Vertical Resolution 480 (When Vertical Interlace Bit 5 = 1) (Bit 2) + VNTSC equ 0x00 ; Display Mode: Video Mode NTSC 60Hz (Bit 3) + VPAL equ 0x08 ; Display Mode: Video Mode PAL 50Hz (Bit 3) + BPP15 equ 0x00 ; Display Mode: Display Area Color Depth 15BPP R5/G5/B5 (Bit 4) + BPP24 equ 0x10 ; Display Mode: Display Area Color Depth 24BPP R8/G8/B8 (Bit 4) + INTERLACE equ 0x20 ; Display Mode: Vertical Interlace (Bit 5) + HRES360 equ 0x40 ; Display Mode: Horizontal Resolution 2 360 (Bit 6) + DISTORT equ 0x80 ; Display Mode: Reverse Flag (Bit 7) + +GPUTEXEN equ 0x09 ; GPU Display Control Commands (GP1): $09 - Texture Disable (Newer GPU) + ; GPU Display Control Commands (GP1): $0A..$0F - N/A +GPUINFO equ 0x10 ; GPU Display Control Commands (GP1): $10 - Get GPU Info + ; GPU Display Control Commands (GP1): $11..$1F - Get GPU Info (Mirror Of $10) +GPUTEXENA equ 0x20 ; GPU Display Control Commands (GP1): $20 - Texture Disable Ancient (Older GPU) + ; GPU Display Control Commands (GP1): $21..$3F - N/A + ; GPU Display Control Commands (GP1): $40..$FF - N/A (Mirrors Of $00..$3F) + +;============ +; GPU Macros +;============ +.macro WRGP0,COMMAND,PARAMETER ; Write GP0 Command/Packet (Rendering & VRAM Access) + WRIOW GP0,(COMMAND<<24)+(PARAMETER&0xFFFFFF) ; Write GP0 Command/Packet Word +.endmacro + +.macro WRGP1,COMMAND,PARAMETER ; Write GP1 Command (Display Control) + WRIOW GP1,(COMMAND<<24)+(PARAMETER&0xFFFFFF) ; Write GP1 Command Word +.endmacro \ No newline at end of file diff --git a/BouncyCubePs1/LIB/PSX_GTE.INC b/BouncyCubePs1/LIB/PSX_GTE.INC new file mode 100644 index 0000000..8a87d3a --- /dev/null +++ b/BouncyCubePs1/LIB/PSX_GTE.INC @@ -0,0 +1,211 @@ +;================ +; PSX GTE (COP2) +;================ +;======================================================================================== +; GTE Registers (Use: Data (R0..R31) lwc2,swc2,mfc2,mtc2 / Control (R32..R63) cfc2,ctc2) +;======================================================================================== +; GTE Registers - 16-Bit Vectors +; VXY0 equ r0 ; GTE R0 - 16-Bit Vectors: Vector XY 0 (V0) - Bit 0..15 = VX0 (S.15.0), Bit 16..31 VY0 (S.15.0) +; VZ0 equ r1 ; GTE R1 - 16-Bit Vectors: Vector Z 0 (V0) - Bit 0..15 = VZ0 (S.15.0) (Returns Sign-Expanded 32-Bit Value) + +; VXY1 equ r2 ; GTE R2 - 16-Bit Vectors: Vector XY 1 (V1) - Bit 0..15 = VX1 (S.15.0), Bit 16..31 VY1 (S.15.0) +; VZ1 equ r3 ; GTE R3 - 16-Bit Vectors: Vector Z 1 (V1) - Bit 0..15 = VZ1 (S.15.0) (Returns Sign-Expanded 32-Bit Value) + +; VXY2 equ r4 ; GTE R4 - 16-Bit Vectors: Vector XY 2 (V2) - Bit 0..15 = VX2 (S.15.0), Bit 16..31 VY2 (S.15.0) +; VZ2 equ r5 ; GTE R5 - 16-Bit Vectors: Vector Z 2 (V2) - Bit 0..15 = VZ2 (S.15.0) (Returns Sign-Expanded 32-Bit Value) + +; IR1 equ r9 ; GTE R9 - 16-Bit Vectors: Vector 3 (IR) - Bit 0..15 = IR1 (S.15.0) (Returns Sign-Expanded 32-Bit Value) +; IR2 equ r10 ; GTE R10 - 16-Bit Vectors: Vector 3 (IR) - Bit 0..15 = IR2 (S.15.0) (Returns Sign-Expanded 32-Bit Value) +; IR3 equ r11 ; GTE R11 - 16-Bit Vectors: Vector 3 (IR) - Bit 0..15 = IR3 (S.15.0) (Returns Sign-Expanded 32-Bit Value) + +; GTE Registers - Interpolation Factor +; IR0 equ r8 ; GTE R8 - Interpolation Factor: Intermediate Value 0 (IR0) - Bit 0..15 = IR0 (S.3.12) (Returns Sign-Expanded 32-Bit Value) + +; GTE Registers - Screen XYZ Coordinate FIFO +; SXY0 equ r12 ; GTE R12 - Screen XYZ Coordinate FIFO: Screen XY 0 FIFO (Older) - Bit 0..15 = SX0 (S.15.0), Bit 16..31 SY0 (S.15.0) +; SXY1 equ r13 ; GTE R13 - Screen XYZ Coordinate FIFO: Screen XY 1 FIFO (Old) - Bit 0..15 = SX1 (S.15.0), Bit 16..31 SY1 (S.15.0) +; SXY2 equ r14 ; GTE R14 - Screen XYZ Coordinate FIFO: Screen XY 2 FIFO (New) - Bit 0..15 = SX2 (S.15.0), Bit 16..31 SY2 (S.15.0) +; SXYP equ r15 ; GTE R15 - Screen XYZ Coordinate FIFO: Screen XY 2 FIFO (Mirror) - Bit 0..15 = SXP (S.15.0), Bit 16..31 SYP (S.15.0) (Move-On-Write) + +; SZ0 equ r16 ; GTE R16 - Screen XYZ Coordinate FIFO: Screen Z 0 FIFO (Oldest) - Bit 0..15 = SZ0 (16.0) +; SZ1 equ r17 ; GTE R17 - Screen XYZ Coordinate FIFO: Screen Z 1 FIFO (Older) - Bit 0..15 = SZ1 (16.0) +; SZ2 equ r18 ; GTE R18 - Screen XYZ Coordinate FIFO: Screen Z 2 FIFO (Old) - Bit 0..15 = SZ2 (16.0) +; SZ3 equ r19 ; GTE R19 - Screen XYZ Coordinate FIFO: Screen Z 3 FIFO (New) - Bit 0..15 = SZ3 (16.0) + +; GTE Registers - Color Register & Color FIFO +; RGBC equ r6 ; GTE R6 - Color Register & Color FIFO: Color/Code Value (RGBC) - Bit 0..7 = R, Bit 8..15 = G, Bit 16..23 = B, Bit 24..31 = CODE + +; RGB0 equ r20 ; GTE R20 - Color Register & Color FIFO: Characteristic Color FIFO 0 (RGB0) - Bit 0..7 = R0, Bit 8..15 = G0, Bit 16..23 = B0, Bit 24..31 = CD0 +; RGB1 equ r21 ; GTE R21 - Color Register & Color FIFO: Characteristic Color FIFO 1 (RGB1) - Bit 0..7 = R1, Bit 8..15 = G1, Bit 16..23 = B1, Bit 24..31 = CD1 +; RGB2 equ r22 ; GTE R22 - Color Register & Color FIFO: Characteristic Color FIFO 2 (RGB2) - Bit 0..7 = R2, Bit 8..15 = G2, Bit 16..23 = B2, Bit 24..31 = CD2 + +; RES1 equ r23 ; GTE R23 - Color Register and Color FIFO: Reserved (R/W) + +; GTE Registers - 32-Bit Maths Accumulator/Sum Of Product +; MAC0 equ r24 ; GTE R24 - Maths Accumulator/Sum Of Product: Value 0 (MAC0) - Bit 0..31 = MAC0 (S.31.0) +; MAC1 equ r25 ; GTE R25 - Maths Accumulator/Sum Of Product: Vector 1 (MAC1) - Bit 0..31 = MAC1 (S.31.0) +; MAC2 equ r26 ; GTE R26 - Maths Accumulator/Sum Of Product: Vector 2 (MAC2) - Bit 0..31 = MAC2 (S.31.0) +; MAC3 equ r27 ; GTE R27 - Maths Accumulator/Sum Of Product: Vector 3 (MAC3) - Bit 0..31 = MAC3 (S.31.0) + +; GTE Registers - Color Conversion R,G,B (48-Bit/15-Bit) +; IRGB equ r28 ; GTE R28 - Color Conversion: Input (IRGB) - Bit 0..4 = Red, Bit 5..9 = Green, Bit 10..14 = Blue, Bit 15-31 = Zero (Not Used) +; ORGB equ r29 ; GTE R29 - Color Conversion: Output (IRGB) - Bit 0..4 = Red, Bit 5..9 = Green, Bit 10..14 = Blue, Bit 15-31 = Zero (Not Used) + +; GTE Registers - Count Leading-Zero/One (Sign Bits) +; LZCS equ r30 ; GTE R30 - Count Leading-Zero/One: Source (LZCS) - Bit 0..31 = LZCS +; LZCR equ r31 ; GTE R31 - Count Leading-Zero/One: Result (LZCR) - Bit 0..31 = LZCR + +; GTE Registers - Matrix (3x3) +; RT0 equ r0 ; GTE R32 - Matrix: Rotation (RT/CNT00) - Bit 0..15 = RT11 (S.3.12), Bit 16..31 RT12 (S.3.12) +; RT1 equ r1 ; GTE R33 - Matrix: Rotation (RT/CNT01) - Bit 0..15 = RT13 (S.3.12), Bit 16..31 RT21 (S.3.12) +; RT2 equ r2 ; GTE R34 - Matrix: Rotation (RT/CNT02) - Bit 0..15 = RT22 (S.3.12), Bit 16..31 RT23 (S.3.12) +; RT3 equ r3 ; GTE R35 - Matrix: Rotation (RT/CNT03) - Bit 0..15 = RT31 (S.3.12), Bit 16..31 RT32 (S.3.12) +; RT4 equ r4 ; GTE R36 - Matrix: Rotation (RT/CNT04) - Bit 0..15 = RT33 (S.3.12) (Returns Sign-Expanded 32-Bit Value) + +; LLM0 equ r8 ; GTE R40 - Matrix: Light Source (LLM/CNT08) - Bit 0..15 = L11 (S.3.12), Bit 16..31 L12 (S.3.12) +; LLM1 equ r9 ; GTE R41 - Matrix: Light Source (LLM/CNT09) - Bit 0..15 = L13 (S.3.12), Bit 16..31 L21 (S.3.12) +; LLM2 equ r10 ; GTE R42 - Matrix: Light Source (LLM/CNT10) - Bit 0..15 = L22 (S.3.12), Bit 16..31 L23 (S.3.12) +; LLM3 equ r11 ; GTE R43 - Matrix: Light Source (LLM/CNT11) - Bit 0..15 = L31 (S.3.12), Bit 16..31 L32 (S.3.12) +; LLM4 equ r12 ; GTE R44 - Matrix: Light Source (LLM/CNT12) - Bit 0..15 = L33 (S.3.12) (Returns Sign-Expanded 32-Bit Value) + +; LCM0 equ r16 ; GTE R48 - Matrix: Light Color (LCM/CNT16) - Bit 0..15 = LR1 (S.3.12), Bit 16..31 LR2 (S.3.12) +; LCM1 equ r17 ; GTE R49 - Matrix: Light Color (LCM/CNT17) - Bit 0..15 = LR3 (S.3.12), Bit 16..31 LG1 (S.3.12) +; LCM2 equ r18 ; GTE R50 - Matrix: Light Color (LCM/CNT18) - Bit 0..15 = LG2 (S.3.12), Bit 16..31 LG3 (S.3.12) +; LCM3 equ r19 ; GTE R51 - Matrix: Light Color (LCM/CNT19) - Bit 0..15 = LB1 (S.3.12), Bit 16..31 LB2 (S.3.12) +; LCM4 equ r20 ; GTE R52 - Matrix: Light Color (LCM/CNT20) - Bit 0..15 = LB3 (S.3.12) (Returns Sign-Expanded 32-Bit Value) + +; GTE Registers - Translation Vector X,Y,Z (TR) +; TRX equ r5 ; GTE R37 - Translation Vector: X (TRX/CNT05) - Bit 0..31 = TRX (S.31.0) +; TRY equ r6 ; GTE R38 - Translation Vector: Y (TRY/CNT06) - Bit 0..31 = TRY (S.31.0) +; TRZ equ r7 ; GTE R39 - Translation Vector: Z (TRZ/CNT07) - Bit 0..31 = TRZ (S.31.0) + +; GTE Registers - Background Color R,G,B (BK) +; RBK equ r13 ; GTE R45 - Background Color: Red Component (RBK/CNT13) - Bit 0..31 = RBK (S.19.12) +; GBK equ r14 ; GTE R46 - Background Color: Green Component (GBK/CNT14) - Bit 0..31 = GBK (S.19.12) +; BBK equ r15 ; GTE R47 - Background Color: Blue Component (BBK/CNT15) - Bit 0..31 = BBK (S.19.12) + +; GTE Registers - Far Color R,G,B (FC) +; RFC equ r21 ; GTE R53 - Far Color: Red Component (RFC/CNT21) - Bit 0..31 = RFC (S.27.4) +; GFC equ r22 ; GTE R54 - Far Color: Green Component (GFC/CNT22) - Bit 0..31 = GFC (S.27.4) +; BFC equ r23 ; GTE R55 - Far Color: Blue Component (BFC/CNT23) - Bit 0..31 = BFC (S.27.4) + +; GTE Registers - Screen Offset & Distance +; OFX equ r24 ; GTE R56 - Screen Offset & Distance: Screen Offset X (OFX/CNT24) - Bit 0..31 = OFX (S.15.16) +; OFY equ r25 ; GTE R57 - Screen Offset & Distance: Screen Offset Y (OFY/CNT25) - Bit 0..31 = OFY (S.15.16) + +; H equ r26 ; GTE R58 - Screen Offset & Distance: Projection Plane Distance (H/CNT26) - Bit 0..15 = H (16.0) (Returns Sign-Expanded 32-Bit Value) + +; DQA equ r27 ; GTE R59 - Screen Offset & Distance: Depth Queing Parameter A. (Coefficient) (DQA/CNT27) - Bit 0..15 = DQA (S.7.8) +; DQB equ r28 ; GTE R60 - Screen Offset & Distance: Depth Queing Parameter A. (Offset) (DQB/CNT28) - Bit 0..31 = DQB (S.7.24) + +; GTE Registers - Average Z Factors +; ZSF3 equ r29 ; GTE R61 - Average Z: Z3 Average Scale Factor (Normally 1/3) (ZSF3/CNT29) - Bit 0..15 = ZSF3 (S.3.12) +; ZSF4 equ r30 ; GTE R62 - Average Z: Z4 Average Scale Factor (Normally 1/4) (ZSF4/CNT30) - Bit 0..15 = ZSF4 (S.3.12) + +; OTZ equ r7 ; GTE R7 - Average Z Registers: Average Z Value (Ordering Table) (OTZ) - Bit 0..15 = OTZ (16.0) + +; GTE Registers - Error Flag +; FLAG equ r31 ; GTE R63 - Error Flag: Returns Calculation Errors (FLAG/CNT31) - Bit 0..31 = FLAG + +;==================================== +; GTE Commands (Use: "cop2 command") +;==================================== +; GTE Coordinate Calculation Commands +RTPS equ 0x0180001 ; GTE Coordinate Calculation Commands: Perspective Transformation (Single) - 15 Cycles +RTPT equ 0x0280030 ; GTE Coordinate Calculation Commands: Perspective Transformation (Triple) - 23 Cycles + +NCLIP equ 0x1400006 ; GTE Coordinate Calculation Commands: Normal Clipping - 8 Cycles + +AVSZ3 equ 0x158002D ; GTE Coordinate Calculation Commands: Average Three Z Values (Triangle) - 5 Cycles +AVSZ4 equ 0x168002E ; GTE Coordinate Calculation Commands: Average Four Z Values (Quad) - 6 Cycles + +; GTE General Purpose Calculation Commands +MVMVA equ 0x0400012 ; GTE General Purpose Calculation Commands: Multiply Vector By Matrix With Vector Addition - 8 Cycles +SQR equ 0x0A00428 ; GTE General Purpose Calculation Commands: Calculate Square Of Vector (Result Always Positive) - 5 Cycles +OP equ 0x170000C ; GTE General Purpose Calculation Commands: Calculate Outer Product Of Two Signed 16-Bit Vectors - 6 Cycles + +; GTE Color Calculation Commands +NCS equ 0x0C8041E ; GTE Color Calculation Commands: Normal Color (Single) - 14 Cycles +NCT equ 0x0D80420 ; GTE Color Calculation Commands: Normal Color (Triple) - 30 Cycles +NCCS equ 0x108041B ; GTE Color Calculation Commands: Normal Color Color (Single Vector) - 17 Cycles +NCCT equ 0x118043F ; GTE Color Calculation Commands: Normal Color Color (Triple Vector) - 39 Cycles +NCDS equ 0x0E80413 ; GTE Color Calculation Commands: Normal Color Depth Cue (Single Vector) - 19 Cycles +NCDT equ 0x0F80416 ; GTE Color Calculation Commands: Normal Color Depth Cue (Triple Vector) - 44 Cycles + +CC equ 0x138041C ; GTE Color Calculation Commands: Color Color - 11 Cycles +CDP equ 0x1280414 ; GTE Color Calculation Commands: Color Depth Cue - 13 Cycles + +DCPL equ 0x0680029 ; GTE Color Calculation Commands: Depth Cue Color Light - 8 Cycles +DPCS equ 0x0780010 ; GTE Color Calculation Commands: Depth Cueing (Single) - 8 Cycles +DPCT equ 0x088002A ; GTE Color Calculation Commands: Depth Cueing (Triple) - 17 Cycles +INTPL equ 0x0980011 ; GTE Color Calculation Commands: Interpolation Of Vector & Far Color - 8 Cycles + +GPF equ 0x190003D ; GTE Color Calculation Commands: General Purpose Interpolation - 5 Cycles +GPL equ 0x1A0003E ; GTE Color Calculation Commands: General Purpose Interpolation With Base - 5 Cycles + +; GTE MVMVA (Multiply Vector By Matrix With Vector Addition) Command Instructions +RTV0 equ 0x0486012 ; GTE MVMVA Command: Vector 0 (V0) * Rotation Matrix (RT) - 8 Cycles +RTV1 equ 0x048E012 ; GTE MVMVA Command: Vector 1 (V1) * Rotation Matrix (RT) - 8 Cycles +RTV2 equ 0x0496012 ; GTE MVMVA Command: Vector 2 (V2) * Rotation Matrix (RT) - 8 Cycles +RTIR12 equ 0x049E012 ; GTE MVMVA Command: Vector 3 (IR) * Rotation Matrix (RT) - 8 Cycles +RTIR0 equ 0x041E012 ; GTE MVMVA Command: Intermediate Value 0 (IR0) * Rotation Matrix (RT) - 8 Cycles + +RTV0TR equ 0x0480012 ; GTE MVMVA Command: Vector 0 (V0) * Rotation Matrix (RT) + Translation Vector (TR) - 8 Cycles +RTV1TR equ 0x0488012 ; GTE MVMVA Command: Vector 1 (V1) * Rotation Matrix (RT) + Translation Vector (TR) - 8 Cycles +RTV2TR equ 0x0490012 ; GTE MVMVA Command: Vector 2 (V2) * Rotation Matrix (RT) + Translation Vector (TR) - 8 Cycles +RTIRTR equ 0x0498012 ; GTE MVMVA Command: Vector 3 (IR) * Rotation Matrix (RT) + Translation Vector (TR) - 8 Cycles + +RTV0BK equ 0x0482012 ; GTE MVMVA Command: Vector 0 (V0) * Rotation Matrix (RT) + Background Color Vector (BK) - 8 Cycles +RTV1BK equ 0x048A012 ; GTE MVMVA Command: Vector 1 (V1) * Rotation Matrix (RT) + Background Color Vector (BK) - 8 Cycles +RTV2BK equ 0x0492012 ; GTE MVMVA Command: Vector 2 (V2) * Rotation Matrix (RT) + Background Color Vector (BK) - 8 Cycles +RTIRBK equ 0x049A012 ; GTE MVMVA Command: Vector 3 (IR) * Rotation Matrix (RT) + Background Color Vector (BK) - 8 Cycles + +LL equ 0x04A6412 ; GTE MVMVA Command: Vector 0 (V0) * Light Source Matrix (LLM) (Lower Limit Result 0) - 8 Cycles + +LLV0 equ 0x04A6012 ; GTE MVMVA Command: Vector 0 (V0) * Light Source Matrix (LLM) - 8 Cycles +LLV1 equ 0x04AE012 ; GTE MVMVA Command: Vector 1 (V1) * Light Source Matrix (LLM) - 8 Cycles +LLV2 equ 0x04B6012 ; GTE MVMVA Command: Vector 2 (V2) * Light Source Matrix (LLM) - 8 Cycles +LLIR equ 0x04BE012 ; GTE MVMVA Command: Vector 3 (IR) * Light Source Matrix (LLM) - 8 Cycles + +LLV0TR equ 0x04A0012 ; GTE MVMVA Command: Vector 0 (V0) * Light Source Matrix (LLM) + Translation Vector (TR) - 8 Cycles +LLV1TR equ 0x04A8012 ; GTE MVMVA Command: Vector 1 (V1) * Light Source Matrix (LLM) + Translation Vector (TR) - 8 Cycles +LLV2TR equ 0x04B0012 ; GTE MVMVA Command: Vector 2 (V2) * Light Source Matrix (LLM) + Translation Vector (TR) - 8 Cycles +LLIRTR equ 0x04B8012 ; GTE MVMVA Command: Vector 3 (IR) * Light Source Matrix (LLM) + Translation Vector (TR) - 8 Cycles + +LLV0BK equ 0x04A2012 ; GTE MVMVA Command: Vector 0 (V0) * Light Source Matrix (LLM) + Background Color Vector (BK) - 8 Cycles +LLV1BK equ 0x04AA012 ; GTE MVMVA Command: Vector 1 (V1) * Light Source Matrix (LLM) + Background Color Vector (BK) - 8 Cycles +LLV2BK equ 0x04B2012 ; GTE MVMVA Command: Vector 2 (V2) * Light Source Matrix (LLM) + Background Color Vector (BK) - 8 Cycles +LLIRBK equ 0x04BA012 ; GTE MVMVA Command: Vector 3 (IR) * Light Source Matrix (LLM) + Background Color Vector (BK) - 8 Cycles + +LC equ 0x04DA412 ; GTE MVMVA Command: Vector 0 (V0) * Light Color Matrix (LCM) (Lower Limit Result 0) - 8 Cycles + +LCV0 equ 0x04C6012 ; GTE MVMVA Command: Vector 0 (V0) * Light Color Matrix (LCM) - 8 Cycles +LCV1 equ 0x04CE012 ; GTE MVMVA Command: Vector 1 (V1) * Light Color Matrix (LCM) - 8 Cycles +LCV2 equ 0x04D6012 ; GTE MVMVA Command: Vector 2 (V2) * Light Color Matrix (LCM) - 8 Cycles +LCIR equ 0x04DE012 ; GTE MVMVA Command: Vector 3 (IR) * Light Color Matrix (LCM) - 8 Cycles + +LCV0TR equ 0x04C0012 ; GTE MVMVA Command: Vector 0 (V0) * Light Color Matrix (LCM) + Translation Vector (TR) - 8 Cycles +LCV1TR equ 0x04C8012 ; GTE MVMVA Command: Vector 1 (V1) * Light Color Matrix (LCM) + Translation Vector (TR) - 8 Cycles +LCV2TR equ 0x04D0012 ; GTE MVMVA Command: Vector 2 (V2) * Light Color Matrix (LCM) + Translation Vector (TR) - 8 Cycles +LCIRTR equ 0x04D8012 ; GTE MVMVA Command: Vector 3 (IR) * Light Color Matrix (LCM) + Translation Vector (TR) - 8 Cycles + +LCV0BK equ 0x04C2012 ; GTE MVMVA Command: Vector 0 (V0) * Light Color Matrix (LCM) + Background Color Vector (BK) - 8 Cycles +LCV1BK equ 0x04CA012 ; GTE MVMVA Command: Vector 1 (V1) * Light Color Matrix (LCM) + Background Color Vector (BK) - 8 Cycles +LCV2BK equ 0x04D2012 ; GTE MVMVA Command: Vector 2 (V2) * Light Color Matrix (LCM) + Background Color Vector (BK) - 8 Cycles +LCIRBK equ 0x04DA012 ; GTE MVMVA Command: Vector 3 (IR) * Light Color Matrix (LCM) + Background Color Vector (BK) - 8 Cycles + +; GTE SQR (Calculate Square Of Vector) Command Instructions +SQR12 equ 0x0A80428 ; GTE SQR Command: Calculate Square Of Vector 3 (IR) (S.19.12) - 5 Cycles +SQR0 equ 0x0A00428 ; GTE SQR Command: Calculate Square Of Intermediate Value 0 (IR0) (S.31.0) - 5 Cycles + +; GTE OP (Calculate Outer Product Of Two Signed 16-Bit Vectors) Command Instructions +OP12 equ 0x178000C ; GTE OP Command: Calculate Outer Product Of Vector 3 (IR) (S.19.12) - 6 Cycles +OP0 equ 0x170000C ; GTE OP Command: Calculate Outer Product Of Intermediate Value 0 (IR0) (S.31.0) - 6 Cycles + +; GTE GPF (General Purpose Interpolation) Command Instructions +GPF12 equ 0x198003D ; GTE OP Command: General Purpose Interpolation Of Vector 3 (IR) (S.19.12) - 5 Cycles +GPF0 equ 0x190003D ; GTE OP Command: General Purpose Interpolation Of Intermediate Value 0 (IR0) (S.31.0) - 5 Cycles + +; GTE GPL (General Purpose Interpolation With Base) Command Instructions +GPL12 equ 0x1A8003E ; GTE OP Command: General Purpose Interpolation With Base Of Vector 3 (IR) (S.19.12) - 6 Cycles +GPL0 equ 0x1A0003E ; GTE OP Command: General Purpose Interpolation With Base Of Intermediate Value 0 (IR0) (S.31.0) - 5 Cycles \ No newline at end of file diff --git a/BouncyCubePs1/LIB/PSX_INPUT.INC b/BouncyCubePs1/LIB/PSX_INPUT.INC new file mode 100644 index 0000000..2e392c4 --- /dev/null +++ b/BouncyCubePs1/LIB/PSX_INPUT.INC @@ -0,0 +1,53 @@ +;=========== +; PSX INPUT +;=========== +;================= +; Digital Buttons +;================= +JOY_L2 equ 0x0001 ; Joypad Input: L2 (Bit 0) +JOY_R2 equ 0x0002 ; Joypad Input: R2 (Bit 1) +JOY_L1 equ 0x0004 ; Joypad Input: L1 (Bit 2) +JOY_R1 equ 0x0008 ; Joypad Input: R1 (Bit 3) +JOY_T equ 0x0010 ; Joypad Input: Triangle (Bit 4) +JOY_C equ 0x0020 ; Joypad Input: Circle (Bit 5) +JOY_X equ 0x0040 ; Joypad Input: X (Bit 6) +JOY_S equ 0x0080 ; Joypad Input: Square (Bit 7) +JOY_SELECT equ 0x0100 ; Joypad Input: Select (Bit 8) +JOY_L3 equ 0x0200 ; Joypad Input: L3 (Bit 9) (Analog Mode Only) +JOY_R3 equ 0x0400 ; Joypad Input: R3 (Bit 10) (Analog Mode Only) +JOY_START equ 0x0800 ; Joypad Input: Start (Bit 11) +JOY_UP equ 0x1000 ; Joypad Input: Up (Bit 12) +JOY_RIGHT equ 0x2000 ; Joypad Input: Right (Bit 13) +JOY_DOWN equ 0x4000 ; Joypad Input: Down (Bit 14) +JOY_LEFT equ 0x8000 ; Joypad Input: Left (Bit 15) + +;============== +; Input Macros +;============== +.macro InitJoy,BUFFER ; Initialise Joypads & Setup VSync Wait Routine Using BIOS: Buffer Address + li t1,0x15 + li a0,0x20000001 + li t2,0xB0 + la a1,BUFFER ; Set Pad Buffer Address To Automatically Update Each Frame + jalr t2 ; Jump To BIOS Routine + nop ; Delay Slot +.endmacro + +.macro WaitVSync,BUFFER,DATA ; Wait For Vertical Retrace Period & Store XOR Pad Data: Buffer Address, Data Address + la a1,BUFFER ; Load Pad Buffer Address + Wait: ; Wait For Vertical Retrace Period & Store XOR Pad Data + lw t0,0(a1) ; Load Pad Buffer + nop ; Delay Slot + beqz t0,Wait ; IF (Pad Buffer == 0) Wait + nor t0,r0 ; NOR Compliment Pad Data Bits (Delay Slot) + sw r0,0(a1) ; Store Zero To Pad Buffer + la a1,DATA ; Load Pad Data Address + sw t0,0(a1) ; Store Pad Data +.endmacro + +.macro IsJoyDown,INPUT,DATA ; Is Joypad Digital Button Pressed Down: Input, Input Data Address + la a1,DATA ; Load Input Data Address + lw t0,0(a1) ; Load Input Data Word + nop ; Delay Slot + andi t0,INPUT ; T0 = Input Status +.endmacro \ No newline at end of file diff --git a/BouncyCubePs1/bin2exe.py b/BouncyCubePs1/bin2exe.py new file mode 100644 index 0000000..d013c37 --- /dev/null +++ b/BouncyCubePs1/bin2exe.py @@ -0,0 +1,69 @@ +#!/usr/bin/env python +from __future__ import print_function +import os +import sys +import struct +import math + +usage = ''' +python bin2exe.py infile outfile +''' + +def main(argv): + if len(argv) != 2: + print(usage, file=sys.stderr) + sys.exit(1) + + max_size = 0x200000 + infile_size = os.path.getsize(argv[0]) + if infile_size > max_size: + print("Error: Input file %s longer than %d bytes" % (argv[0], max_size), file=sys.stderr) + sys.exit(1) + + ofile = open(argv[1], 'wb') + + with open(argv[0], 'rb') as ifile: + # Write header + if sys.version_info >= (3, 0): + ofile.write(bytes('PS-X EXE', 'ascii')) + else: + ofile.write('PS-X EXE') + # Entry point + ofile.seek(0x10) + ofile.write(struct.pack(': + * [BouncyCubePs1](BouncyCubePs1) + +## Related + +Also see other places on the Internet that exist in a way similar to this repo, let's share this common way of doing things... + +* - Collection of config files, and importantly multi-use scripts, that I use on some systems. + * - Small uncategorized programs I made, not necessarily fun, made instead for practical uses. +* (yours here?)