mirror of https://github.com/n64decomp/mk64.git
202 lines
5.3 KiB
C
202 lines
5.3 KiB
C
#include <ultra64.h>
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#include <macros.h>
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#include <defines.h>
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#include "code_800AF9B0.h"
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#include "menu_items.h"
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#include "memory.h"
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#include "main.h"
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#include "math_util.h"
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/*** Data ***/
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Ambient D_800E8680 = { {
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{ 31, 31, 31 },
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0,
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{ 31, 31, 31 },
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0,
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} };
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Light D_800E8688 = { {
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{ 255, 255, 255 },
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0,
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{ 255, 255, 255 },
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0,
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{ 40, 40, 20 },
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0,
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} };
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/*** BSS ****/
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s16 D_8018EDB0;
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s16 D_8018EDB2;
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s16 D_8018EDB4;
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Vtx* D_8018EDB8;
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Vtx* D_8018EDBC;
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void func_800AF9B0(void) {
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D_8018EDB8 = (void*) get_next_available_memory_addr(480 * sizeof(Vtx));
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D_8018EDBC = (void*) get_next_available_memory_addr(480 * sizeof(Vtx));
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}
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// could be a normal vertex, not a color...
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void func_800AF9E4(Vtx* arg0, s32 arg1, s32 arg2, s32 arg3, s16 arg4, s16 arg5, s32 arg6, s32 arg7) {
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s32 r, g, b;
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s32 i;
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for (i = 0; i < 4; i++) {
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(arg0 + i)->v.ob[0] = ((i % 2) * arg7) + arg6 - 504;
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if (i / 2 == 0) {
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(arg0 + i)->v.ob[1] = (arg2 * arg3) - 420;
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} else {
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(arg0 + i)->v.ob[1] = (arg2 * arg3) + arg3 - 420;
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}
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if (i % 2 == 0) {
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(arg0 + i)->v.ob[1] += (f32) SQ(arg1) * -0.07f;
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} else {
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(arg0 + i)->v.ob[1] += (f32) SQ(arg1 + 1) * -0.07f;
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}
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(arg0 + i)->v.cn[0] = 0;
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(arg0 + i)->v.cn[1] = 0;
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(arg0 + i)->v.cn[2] = 120;
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(arg0 + i)->v.cn[3] = 255;
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if (i % 2 == 0) {
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(arg0 + i)->v.ob[2] = arg4;
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} else {
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(arg0 + i)->v.ob[2] = arg5;
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}
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}
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if ((((arg1 / 2) + (arg2 / 2)) & 1) == 0) {
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r = g = b = 0;
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} else {
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r = g = b = 255;
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}
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gDPSetPrimColor(gDisplayListHead++, 0, 0, r, g, b, 255);
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gDPPipeSync(gDisplayListHead++);
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gSPVertex(gDisplayListHead++, VIRTUAL_TO_PHYSICAL2(arg0), 4, 0);
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gSP1Triangle(gDisplayListHead++, 1, 2, 0, 0);
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gSP1Triangle(gDisplayListHead++, 3, 2, 1, 0);
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}
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void func_800AFC54(Vtx* arg0, s32 arg1, s32 arg2, s32 arg3, s16 arg4[3]);
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#ifdef NON_MATCHING
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// guess on Vtx type?
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void func_800AFC54(Vtx* arg0, s32 arg1, s32 arg2, s32 arg3, s16 arg4[3]) {
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Vtx *a1, *a2, *a3;
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s32 saved1, saved2, saved3;
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f32 res;
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s32 a, b, c, d, e, f;
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f32 f14, f16, f18;
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a1 = &arg0[arg1];
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a2 = &arg0[arg2];
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a3 = &arg0[arg3];
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saved1 = a2->v.ob[0];
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saved2 = a2->v.ob[1];
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saved3 = a2->v.ob[2];
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a = saved2 - a1->v.ob[1];
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e = saved3 - a1->v.ob[2];
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d = a3->v.ob[1] - saved2;
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b = a3->v.ob[2] - saved3;
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f = a3->v.ob[0] - saved1;
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c = saved1 - a1->v.ob[0];
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f14 = ((a) * (b)) - ((e) * (d));
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f16 = ((e) * (f)) - ((c) * (b));
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f18 = ((c) * (d)) - ((a) * (f));
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res = sqrtf(SQ(f14) + SQ(f16) + SQ(f18));
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if (res < 0.001) {
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res = 0.001;
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}
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arg4[0] = f14 * (f32) (1.0 / res) * 120.0f;
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arg4[1] = f16 * (f32) (1.0 / res) * 120.0f;
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arg4[2] = f18 * (f32) (1.0 / res) * 120.0f;
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}
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#else
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GLOBAL_ASM("asm/non_matchings/code_800AF9B0/func_800AFC54.s")
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#endif
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void func_800AFE00(Vtx* arg0, Vec3s* arg1, s32 arg2, s32 arg3) {
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s32 idx1;
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s32 idx2;
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s32 i;
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Vtx* vtx;
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s16 sp14[2][3];
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idx1 = (arg2 == 0) ? 0 : arg2 - 1;
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idx2 = (arg2 == arg3) ? arg3 : arg2 + 1;
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for (i = 0; i < 3; i++) {
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sp14[0][i] = (arg1[idx1][i] + arg1[arg2][i]) / 2;
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sp14[1][i] = (arg1[idx2][i] + arg1[arg2][i]) / 2;
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}
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for (idx2 = 0; idx2 < 0x1E0; idx2 += 0x30) {
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for (i = 0; i < 4; i++) {
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vtx = &arg0[i];
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vtx[idx2 / 1].v.cn[0] = sp14[i % 2][0];
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vtx[idx2 / 1].v.cn[1] = sp14[i % 2][1];
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vtx[idx2 / 1].v.cn[2] = sp14[i % 2][2];
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}
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}
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}
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void func_800AFF58(Vtx* arg0) {
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UNUSED u32 pad88[26];
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s32 i, j;
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s16 sp40[12][3];
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for (i = 0, j = 0; i < ARRAY_COUNT(sp40); i++, j += 4) {
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func_800AFC54(&arg0[j], 1, 2, 0, sp40[i]);
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}
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for (i = 0, j = 0; i < ARRAY_COUNT(sp40); i++, j += 4) {
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func_800AFE00(&arg0[j], sp40, i, 11);
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}
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}
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#ifdef NON_MATCHING
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// Credit to SpazzyLemon for the updated and better attempt
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void func_800B0004(void) {
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Vtx* vtxs;
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s32 res1, res2;
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UNUSED u32 pad[0x5];
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s32 i, j;
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gSPLight(gDisplayListHead++, VIRTUAL_TO_PHYSICAL2(&D_800E8688), LIGHT_1);
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gSPLight(gDisplayListHead++, VIRTUAL_TO_PHYSICAL2(&D_800E8680), LIGHT_2);
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gSPNumLights(gDisplayListHead++, NUMLIGHTS_1);
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gSPSetGeometryMode(gDisplayListHead++, G_SHADE | G_SHADING_SMOOTH);
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gDPSetCombineLERP(gDisplayListHead++, PRIMITIVE, 0, SHADE, 0, 0, 0, 0, SHADE, PRIMITIVE, 0, SHADE, 0, 0, 0, 0,
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SHADE);
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gSPClearGeometryMode(gDisplayListHead++, G_CULL_BACK);
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gSPSetGeometryMode(gDisplayListHead++, G_LIGHTING);
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vtxs = D_8018EDB4 % 2 ? D_8018EDB8 : D_8018EDBC;
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D_8018EDB2 = 0x9C0;
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for (i = 0; i < 10; i++) {
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for (j = 0; j < 12; j++) {
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res1 = sins(D_8018EDB0 - (j * D_8018EDB2)) * 84.0f * j * 0.18f;
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res2 = sins(D_8018EDB0 - ((j + 1) * D_8018EDB2)) * 84.0f * (j + 1) * 0.18f;
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func_800AF9E4(&(&vtxs[j * 4])[i * 48], j, i, 84, res1, res2, (j * 84), 84);
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}
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}
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func_800AFF58(vtxs);
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D_8018EDB0 += D_8018EDB2;
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++D_8018EDB4;
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gSPSetGeometryMode(gDisplayListHead++, G_CULL_BACK);
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gSPNumLights(gDisplayListHead++, NUMLIGHTS_1);
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gSPClearGeometryMode(gDisplayListHead++, G_LIGHTING);
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}
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#else
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GLOBAL_ASM("asm/non_matchings/code_800AF9B0/func_800B0004.s")
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#endif
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