#include "global.h" #include "malloc.h" #include "decompress.h" #include "unk_815C980.h" #include "main.h" #include "battle.h" struct UnkStruct2 { bool8 isActive; u8 firstOamId; u8 field_2; u8 oamCount; u8 palTagIndex; u8 size; u8 shape; u8 priority; u8 xDelta; u8 field_9; u16 tileStart; s16 x; s16 y; u16 tileTag; u16 palTag; u32 field_14; s32 field_18; }; struct UnkStruct1 { u32 count; struct UnkStruct2 *array; }; // this file's functions static u8 sub_815D244(u8 arg0);; static void sub_815CC28(struct UnkStruct2 *arg0); static void sub_815CDDC(struct UnkStruct2 *arg0, s32 arg1, bool32 arg2); static void sub_815CE90(struct UnkStruct2 *arg0, s32 arg1, bool32 arg2); static void sub_815CFEC(struct UnkStruct2 *arg0, s32 arg1, bool32 arg2); static bool32 SharesTileWithAnyActive(u32 id); static bool32 SharesPalWithAnyActive(u32 id); static void sub_8035648(void); static u8 sub_815D324(u32 shape, u32 size); // ewram static EWRAM_DATA struct UnkStruct1 *gUnknown_203F454 = {0}; // const rom data static const u8 gUnknown_8479658[][4] = { {0x01, 0x04, 0x10, 0x40}, {0x02, 0x04, 0x08, 0x20}, {0x02, 0x04, 0x08, 0x20}, {0x00, 0x00, 0x00, 0x00} }; // code bool32 sub_815C980(u32 count) { u32 i; if (gUnknown_203F454 != NULL) sub_815C9F4(); gUnknown_203F454 = Alloc(sizeof(*gUnknown_203F454)); if (gUnknown_203F454 == NULL) return FALSE; gUnknown_203F454->array = Alloc(sizeof(struct UnkStruct2) * count); if (gUnknown_203F454->array == NULL) { Free(gUnknown_203F454); return FALSE; } gUnknown_203F454->count = count; for (i = 0; i < count; i++) { gUnknown_203F454->array[i].isActive = FALSE; gUnknown_203F454->array[i].firstOamId = 0xFF; } return TRUE; } void sub_815C9F4(void) { if (gUnknown_203F454 != NULL) { if (gUnknown_203F454->array != NULL) { u32 i; for (i = 0; i < gUnknown_203F454->count; i++) sub_815D108(i); Free(gUnknown_203F454->array); } FREE_AND_SET_NULL(gUnknown_203F454); } } bool32 sub_815CA40(u32 id, s32 arg1, const struct UnkStruct3 *arg2) { u32 i; if (gUnknown_203F454 == NULL) return FALSE; if (gUnknown_203F454->array[id].isActive) return FALSE; gUnknown_203F454->array[id].firstOamId = sub_815D244(arg2->field_1); if (gUnknown_203F454->array[id].firstOamId == 0xFF) return FALSE; gUnknown_203F454->array[id].tileStart = GetSpriteTileStartByTag(arg2->spriteSheet->tag); if (gUnknown_203F454->array[id].tileStart == 0xFFFF) { if (arg2->spriteSheet->size != 0) { gUnknown_203F454->array[id].tileStart = LoadSpriteSheet(arg2->spriteSheet); } else { struct CompressedSpriteSheet compObjectPic; compObjectPic = *(struct CompressedSpriteSheet*)(arg2->spriteSheet); compObjectPic.size = GetDecompressedDataSize(arg2->spriteSheet->data); gUnknown_203F454->array[id].tileStart = LoadCompressedSpriteSheet(&compObjectPic); } if (gUnknown_203F454->array[id].tileStart == 0xFFFF) return FALSE; } gUnknown_203F454->array[id].palTagIndex = IndexOfSpritePaletteTag(arg2->spritePal->tag); if (gUnknown_203F454->array[id].palTagIndex == 0xFF) gUnknown_203F454->array[id].palTagIndex = LoadSpritePalette(arg2->spritePal); gUnknown_203F454->array[id].field_2 = arg2->field_0_0; gUnknown_203F454->array[id].oamCount = arg2->field_1; gUnknown_203F454->array[id].x = arg2->x; gUnknown_203F454->array[id].y = arg2->y; gUnknown_203F454->array[id].shape = arg2->shape; gUnknown_203F454->array[id].size = arg2->size; gUnknown_203F454->array[id].priority = arg2->priority; gUnknown_203F454->array[id].xDelta = arg2->xDelta; gUnknown_203F454->array[id].field_9 = sub_815D324(arg2->shape, arg2->size); gUnknown_203F454->array[id].tileTag = arg2->spriteSheet->tag; gUnknown_203F454->array[id].palTag = arg2->spritePal->tag; gUnknown_203F454->array[id].isActive = TRUE; gUnknown_203F454->array[id].field_14 = 1; for (i = 1; i < arg2->field_1; i++) gUnknown_203F454->array[id].field_14 *= 10; sub_815CC28(&gUnknown_203F454->array[id]); sub_815CD70(id, arg1); return TRUE; } static void sub_815CC28(struct UnkStruct2 *arg0) { u32 i; u32 oamId = arg0->firstOamId; u32 x = arg0->x; u32 oamCount = arg0->oamCount + 1; CpuFill16(0, &gMain.oamBuffer[oamId], sizeof(struct OamData) * oamCount); for (i = 0, oamId = arg0->firstOamId; i < oamCount; i++, oamId++) { gMain.oamBuffer[oamId].y = arg0->y; gMain.oamBuffer[oamId].x = x; gMain.oamBuffer[oamId].shape = arg0->shape; gMain.oamBuffer[oamId].size = arg0->size; gMain.oamBuffer[oamId].tileNum = arg0->tileStart; gMain.oamBuffer[oamId].priority = arg0->priority; gMain.oamBuffer[oamId].paletteNum = arg0->palTagIndex; x += arg0->xDelta; } oamId--; gMain.oamBuffer[oamId].x = arg0->x - arg0->xDelta; gMain.oamBuffer[oamId].affineMode = 2; gMain.oamBuffer[oamId].tileNum = arg0->tileStart + (arg0->field_9 * 10); } void sub_815CD70(u32 id, s32 arg1) { bool32 r2; if (gUnknown_203F454 == NULL) return; if (!gUnknown_203F454->array[id].isActive) return; gUnknown_203F454->array[id].field_18 = arg1; if (arg1 < 0) { r2 = TRUE; arg1 *= -1; } else { r2 = FALSE; } switch (gUnknown_203F454->array[id].field_2) { case 0: default: sub_815CDDC(&gUnknown_203F454->array[id], arg1, r2); break; case 1: sub_815CE90(&gUnknown_203F454->array[id], arg1, r2); break; case 2: sub_815CFEC(&gUnknown_203F454->array[id], arg1, r2); break; } } static void sub_815CDDC(struct UnkStruct2 *arg0, s32 arg1, bool32 arg2) { u32 r5 = arg0->field_14; u32 oamId = arg0->firstOamId; while (r5 != 0) { u32 r4 = arg1 / r5; arg1 -= (r4 * r5); r5 /= 10; gMain.oamBuffer[oamId].tileNum = (r4 * arg0->field_9) + arg0->tileStart; oamId++; } if (arg2) gMain.oamBuffer[oamId].affineMode = 0; else gMain.oamBuffer[oamId].affineMode = 2; } static void sub_815CE90(struct UnkStruct2 *arg0, s32 arg1, bool32 arg2) { u32 r5 = arg0->field_14; static int gUnknown_3002078; static int gUnknown_300207C; static int gUnknown_3002080; gUnknown_3002078 = arg0->firstOamId; gUnknown_300207C = 0; gUnknown_3002080 = -1; while (r5 != 0) { u32 r4 = arg1 / r5; arg1 -= (r4 * r5); r5 /= 10; if (r4 != 0 || gUnknown_3002080 != -1 || r5 == 0) { gMain.oamBuffer[gUnknown_3002078].tileNum = (r4 * arg0->field_9) + arg0->tileStart; gMain.oamBuffer[gUnknown_3002078].affineMode = 0; if (gUnknown_3002080 == -1) gUnknown_3002080 = gUnknown_300207C; } else { gMain.oamBuffer[gUnknown_3002078].affineMode = 2; } gUnknown_3002078++; gUnknown_300207C++; } if (arg2) { gMain.oamBuffer[gUnknown_3002078].affineMode = 0; gMain.oamBuffer[gUnknown_3002078].x = arg0->x + ((gUnknown_3002080 - 1) * arg0->xDelta); } else { gMain.oamBuffer[gUnknown_3002078].affineMode = 2; } } static void sub_815CFEC(struct UnkStruct2 *arg0, s32 arg1, bool32 arg2) { u32 r5 = arg0->field_14; u32 oamId = arg0->firstOamId; u32 var_28 = 0; s32 r9 = 0; while (r5 != 0) { u32 r4 = arg1 / r5; arg1 -= (r4 * r5); r5 /= 10; if (r4 != 0 || var_28 != 0 || r5 == 0) { var_28 = 1; gMain.oamBuffer[oamId].tileNum = (r4 * arg0->field_9) + arg0->tileStart; gMain.oamBuffer[oamId].affineMode = 0; oamId++; r9++; } } while (r9 < arg0->oamCount) { gMain.oamBuffer[oamId].affineMode = 2; oamId++; r9++; } if (arg2) gMain.oamBuffer[oamId].affineMode = 0; else gMain.oamBuffer[oamId].affineMode = 2; } void sub_815D108(u32 id) { s32 oamId, oamCount, i; if (gUnknown_203F454 == NULL) return; if (!gUnknown_203F454->array[id].isActive) return; oamCount = gUnknown_203F454->array[id].oamCount + 1; oamId = gUnknown_203F454->array[id].firstOamId; for (i = 0; i < oamCount; i++, oamId++) gMain.oamBuffer[oamId].affineMode = 2; if (!SharesTileWithAnyActive(id)) FreeSpriteTilesByTag(gUnknown_203F454->array[id].tileTag); if (!SharesPalWithAnyActive(id)) FreeSpritePaletteByTag(gUnknown_203F454->array[id].palTag); gUnknown_203F454->array[id].isActive = FALSE; } void sub_815D1A8(u32 id, bool32 arg1) { s32 oamId, oamCount, i; if (gUnknown_203F454 == NULL) return; if (!gUnknown_203F454->array[id].isActive) return; oamCount = gUnknown_203F454->array[id].oamCount + 1; oamId = gUnknown_203F454->array[id].firstOamId; if (arg1) { for (i = 0; i < oamCount; i++, oamId++) gMain.oamBuffer[oamId].affineMode = 2; } else { for (i = 0; i < oamCount; i++, oamId++) gMain.oamBuffer[oamId].affineMode = 0; sub_815CD70(id, gUnknown_203F454->array[id].field_18); } } static u8 sub_815D244(u8 arg0) { u32 i; u16 oamCount = 64; for (i = 0; i < gUnknown_203F454->count; i++) { if (!gUnknown_203F454->array[i].isActive) { if (gUnknown_203F454->array[i].firstOamId != 0xFF && gUnknown_203F454->array[i].oamCount <= arg0) return gUnknown_203F454->array[i].firstOamId; } else { oamCount += 1 + gUnknown_203F454->array[i].oamCount; } } if (oamCount + arg0 + 1 > 128) return 0xFF; else return oamCount; } static bool32 SharesTileWithAnyActive(u32 id) { u32 i; for (i = 0; i < gUnknown_203F454->count; i++) { if (gUnknown_203F454->array[i].isActive && i != id && gUnknown_203F454->array[i].tileTag == gUnknown_203F454->array[id].tileTag) { return TRUE; } } return FALSE; } static bool32 SharesPalWithAnyActive(u32 id) { u32 i; for (i = 0; i < gUnknown_203F454->count; i++) { if (gUnknown_203F454->array[i].isActive && i != id && gUnknown_203F454->array[i].palTag == gUnknown_203F454->array[id].palTag) { return TRUE; } } return FALSE; } static u8 sub_815D324(u32 shape, u32 size) { return gUnknown_8479658[shape][size]; }