marioparty4/src/game/sprman.c
2023-12-03 17:12:58 -06:00

725 lines
No EOL
21 KiB
C

#include "common.h"
#include "game/sprite.h"
#include "game/memory.h"
#include "game/init.h"
#include "dolphin/mtx.h"
#define SPRITE_DIRTY_ATTR 0x1
#define SPRITE_DIRTY_XFORM 0x2
#define SPRITE_DIRTY_COLOR 0x4
typedef struct sprite_order_data {
unsigned short group;
unsigned short sprite;
unsigned short prio;
unsigned short next;
} SpriteOrderData;
SpriteData HuSprData[SPRITE_MAX];
SpriteGroupData HuSprGrpData[SPRITE_GROUP_MAX];
static SpriteOrderData HuSprOrder[SPRITE_MAX*2];
static short HuSprOrderNum;
static short HuSprOrderNo;
static BOOL HuSprPauseF;
static void HuSprOrderEntry(short group, short sprite);
void mtxTransCat(Mtx matrix, float x, float y, int z); //Last argument should be a float
void HuSprInit(void)
{
short i;
SpriteData *sprite;
SpriteGroupData *group;
for(sprite = &HuSprData[1], i=1; i<SPRITE_MAX; i++, sprite++) {
sprite->data = NULL;
}
for(group = HuSprGrpData, i=0; i<SPRITE_GROUP_MAX; i++, group++) {
group->capacity = 0;
}
sprite = &HuSprData[0];
sprite->prio = 0;
sprite->data = (void *)1;
HuSprPauseF = FALSE;
}
void HuSprClose(void)
{
short i;
SpriteGroupData *group;
SpriteData *sprite;
for(group = HuSprGrpData, i=0; i<SPRITE_GROUP_MAX; i++, group++) {
if(group->capacity != 0) {
HuSprGrpKill(i);
}
}
for(sprite = &HuSprData[1], i=1; i<SPRITE_MAX; i++, sprite++) {
if(sprite->data) {
HuSprKill(i);
}
}
HuSprPauseF = FALSE;
}
void HuSprExec(short draw_no)
{
SpriteData *sprite;
while(sprite = HuSprCall()) {
if(!(sprite->attr & SPRITE_ATTR_HIDDEN) && sprite->draw_no == draw_no) {
HuSprDisp(sprite);
}
}
}
void HuSprBegin(void)
{
Mtx temp, rot;
short i, j;
Vec axis = {0, 0, 1};
SpriteGroupData *group;
group = HuSprGrpData;
HuSprOrderNum = 1;
HuSprOrder[0].next = 0;
HuSprOrder[0].prio = -1;
for(i=0; i<SPRITE_GROUP_MAX; i++, group++) {
if(group->capacity != 0) {
MTXTrans(temp, group->center_x*group->scale_x, group->center_y*group->scale_y, 0.0f);
MTXRotAxisDeg(rot, &axis, group->z_rot);
MTXConcat(rot, temp, group->mtx);
MTXScale(temp, group->scale_x, group->scale_y, 1.0f);
MTXConcat(group->mtx, temp, group->mtx);
mtxTransCat(group->mtx, group->x, group->y, 0);
for(j=0; j<group->capacity; j++) {
if(group->members[j] != -1) {
HuSprOrderEntry(i, group->members[j]);
}
}
}
}
HuSprOrderNo = 0;
}
static void HuSprOrderEntry(short group, short sprite)
{
SpriteOrderData *order = &HuSprOrder[HuSprOrderNum];
short prio = HuSprData[sprite].prio;
short prev, next;
if(HuSprOrderNum >= SPRITE_MAX*2) {
OSReport("Order Max Over!\n");
return;
}
next = HuSprOrder[0].next;
for(prev = 0; next != 0; prev = next, next = HuSprOrder[next].next) {
if(HuSprOrder[next].prio < prio) {
break;
}
}
order->next = HuSprOrder[prev].next;
HuSprOrder[prev].next = HuSprOrderNum;
order->prio = prio;
order->group = group;
order->sprite = sprite;
HuSprOrderNum++;
}
SpriteData *HuSprCall(void)
{
HuSprOrderNo = HuSprOrder[HuSprOrderNo].next;
if(HuSprOrderNo != 0) {
SpriteOrderData *order = &HuSprOrder[HuSprOrderNo];
SpriteData *sprite = &HuSprData[order->sprite];
sprite->group_mtx = &HuSprGrpData[order->group].mtx;
if(sprite->attr & SPRITE_ATTR_FUNC) {
return sprite;
}
sprite->frame_data = &sprite->data->bank[sprite->bank].frame[sprite->frame];
sprite->pat_data = &sprite->data->pat[sprite->frame_data->pat];
return sprite;
} else {
return NULL;
}
}
static inline void SpriteCalcFrame(SpriteData *sprite, AnimBankData *bank, AnimFrameData **frame, short loop)
{
if(sprite->time >= (*frame)->time) {
sprite->frame++;
sprite->time -= (*frame)->time;
if(sprite->frame >= bank->timeNum || (*frame)[1].time == -1) {
if(loop) {
sprite->frame = 0;
} else {
sprite->frame = bank->timeNum-1;
}
}
*frame = &bank->frame[sprite->frame];
} else if(sprite->time < 0) {
sprite->frame--;
if(sprite->frame < 0) {
if(loop) {
sprite->frame = bank->timeNum-1;
} else {
sprite->frame = 0;
}
}
*frame = &bank->frame[sprite->frame];
sprite->time += (*frame)->time;
}
}
void HuSprFinish(void)
{
AnimData *anim;
AnimBankData *bank;
AnimFrameData *frame;
SpriteData *sprite;
short i;
short j;
short loop;
short dir;
for(sprite = &HuSprData[1], i=1; i<SPRITE_MAX; i++, sprite++) {
if(sprite->data && !(sprite->attr & SPRITE_ATTR_FUNC)) {
if(!HuSprPauseF || (sprite->attr & SPRITE_ATTR_NOPAUSE)) {
anim = sprite->data;
bank = &anim->bank[sprite->bank];
frame = &bank->frame[sprite->frame];
loop = (sprite->attr & SPRITE_ATTR_LOOP) ? 0 : 1;
if(!(sprite->attr & SPRITE_ATTR_PAUSED)) {
dir = (sprite->attr & SPRITE_ATTR_REVERSE) ? -1 : 1;
for(j=0; j<(int)sprite->speed*minimumVcount; j++) {
sprite->time += dir;
SpriteCalcFrame(sprite, bank, &frame, loop);
}
sprite->time += (sprite->speed*(float)minimumVcount)-j;
SpriteCalcFrame(sprite, bank, &frame, loop);
}
sprite->dirty_flag = 0;
}
}
}
}
void HuSprPauseSet(BOOL value)
{
HuSprPauseF = value;
}
AnimData *HuSprAnimRead(void *data)
{
short i;
AnimBmpData *bmp;
AnimBankData *bank;
AnimPatData *pat;
AnimData *anim = (AnimData *)data;
if((u32)anim->bank & 0xFFFF0000) {
anim->useNum++;
return anim;
}
bank = (AnimBankData *)((u32)anim->bank+(u32)data);
anim->bank = bank;
pat = (AnimPatData *)((u32)anim->pat+(u32)data);
anim->pat = pat;
bmp = (AnimBmpData *)((u32)anim->bmp+(u32)data);
anim->bmp = bmp;
for(i=0; i<anim->bankNum; i++, bank++) {
bank->frame = (AnimFrameData *)((u32)bank->frame+(u32)data);
}
for(i=0; i<anim->patNum; i++, pat++) {
pat->layer = (AnimLayerData *)((u32)pat->layer+(u32)data);
}
for(i=0; i<anim->bmpNum; i++, bmp++) {
bmp->palData = (void *)((u32)bmp->palData+(u32)data);
bmp->data = (void *)((u32)bmp->data+(u32)data);
}
anim->useNum = 0;
return anim;
}
void HuSprAnimLock(AnimData *anim)
{
anim->useNum++;
}
short HuSprCreate(AnimData *anim, short prio, short bank)
{
SpriteData *sprite;
short i;
for(sprite = &HuSprData[1], i=1; i<SPRITE_MAX; i++, sprite++) {
if(!sprite->data) {
break;
}
}
if(i == SPRITE_MAX) {
return SPRITE_INVALID;
}
sprite->data = anim;
sprite->speed = 1.0f;
sprite->frame = 0;
sprite->bank = bank;
sprite->time = 0.0f;
sprite->attr = 0;
sprite->draw_no = 0;
sprite->r = sprite->g = sprite->b = sprite->a = 255;
sprite->x = sprite->y = sprite->z_rot = 0.0f;
sprite->prio = prio;
sprite->scale_x = sprite->scale_y = 1.0f;
sprite->wrap_s = sprite->wrap_t = GX_CLAMP;
sprite->tex_scale_x = sprite->tex_scale_y = 1;
sprite->bg = NULL;
sprite->scissor_x = sprite->scissor_y = 0;
sprite->scissor_w = 640;
sprite->scissor_h = 480;
if(anim) {
HuSprAnimLock(anim);
}
return i;
}
short HuSprFuncCreate(void (*func)(SpriteData *sprite), short prio)
{
SpriteData *sprite;
short index = HuSprCreate(NULL, prio, 0);
if(index == SPRITE_INVALID) {
return SPRITE_INVALID;
}
sprite = &HuSprData[index];
sprite->func = func;
sprite->attr |= SPRITE_ATTR_FUNC;
return index;
}
short HuSprGrpCreate(short capacity)
{
SpriteGroupData *group;
short i, j;
for(group = HuSprGrpData, i=0; i<SPRITE_GROUP_MAX; i++, group++) {
if(group->capacity == 0) {
break;
}
}
if(i == SPRITE_GROUP_MAX) {
return SPRITE_GROUP_INVALID;
}
group->members = HuMemDirectMalloc(HEAP_SYSTEM, sizeof(short)*capacity);
for(j=0; j<capacity; j++) {
group->members[j] = SPRITE_INVALID;
}
group->capacity = capacity;
group->x = group->y = group->z_rot = group->center_x = group->center_y = 0.0f;
group->scale_x = group->scale_y = 1.0f;
return i;
}
short HuSprGrpCopy(short group)
{
SpriteGroupData *new_group_ptr;
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short new_group = HuSprGrpCreate(group_ptr->capacity);
short i;
if(new_group == SPRITE_GROUP_INVALID) {
return SPRITE_GROUP_INVALID;
}
new_group_ptr = &HuSprGrpData[new_group];
new_group_ptr->x = group_ptr->x;
new_group_ptr->y = group_ptr->y;
new_group_ptr->z_rot = group_ptr->z_rot;
new_group_ptr->scale_x = group_ptr->scale_x;
new_group_ptr->scale_y = group_ptr->scale_y;
new_group_ptr->center_x = group_ptr->center_x;
new_group_ptr->center_y = group_ptr->center_y;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
SpriteData *old_sprite = &HuSprData[group_ptr->members[i]];
short new_sprite = HuSprCreate(old_sprite->data, old_sprite->prio, old_sprite->bank);
HuSprData[new_sprite] = *old_sprite;
HuSprGrpMemberSet(new_group, i, new_sprite);
}
}
return new_group;
}
void HuSprGrpMemberSet(short group, short member, short sprite)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
SpriteData *sprite_ptr = &HuSprData[sprite];
if(group_ptr->capacity == 0 || group_ptr->capacity <= member || group_ptr->members[member] != SPRITE_INVALID) {
return;
}
group_ptr->members[member] = sprite;
}
void HuSprGrpMemberKill(short group, short member)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
if(group_ptr->capacity == 0 || group_ptr->capacity <= member || group_ptr->members[member] == SPRITE_INVALID) {
return;
}
HuSprKill(group_ptr->members[member]);
group_ptr->members[member] = SPRITE_INVALID;
}
void HuSprGrpKill(short group)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprKill(group_ptr->members[i]);
}
}
group_ptr->capacity = 0;
HuMemDirectFree(group_ptr->members);
}
void HuSprKill(short sprite)
{
SpriteData *sprite_ptr = &HuSprData[sprite];
if(!sprite_ptr->data) {
return;
}
if(!(sprite_ptr->attr & SPRITE_ATTR_FUNC)) {
HuSprAnimKill(sprite_ptr->data);
if(sprite_ptr->bg) {
HuSprAnimKill(sprite_ptr->bg);
sprite_ptr->bg = NULL;
}
}
sprite_ptr->data = NULL;
}
void HuSprAnimKill(AnimData *anim)
{
if(--anim->useNum <= 0) {
if(anim->bmpNum & SPRITE_BMP_ALLOC) {
if(anim->bmp->data) {
HuMemDirectFree(anim->bmp->data);
}
if(anim->bmp->palData) {
HuMemDirectFree(anim->bmp->palData);
}
}
HuMemDirectFree(anim);
}
}
void HuSprAttrSet(short group, short member, int attr)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
SpriteData *sprite_ptr;
if(group_ptr->capacity == 0 || group_ptr->capacity <= member || group_ptr->members[member] == SPRITE_INVALID) {
return;
}
sprite_ptr = &HuSprData[group_ptr->members[member]];
sprite_ptr->attr |= attr;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_ATTR;
}
void HuSprAttrReset(short group, short member, int attr)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
SpriteData *sprite_ptr;
if(group_ptr->capacity == 0 || group_ptr->capacity <= member || group_ptr->members[member] == SPRITE_INVALID) {
return;
}
sprite_ptr = &HuSprData[group_ptr->members[member]];
sprite_ptr->attr &= ~attr;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_ATTR;
}
void HuSprPosSet(short group, short member, float x, float y)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->x = x;
sprite_ptr->y = y;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_XFORM;
}
void HuSprZRotSet(short group, short member, float z_rot)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->z_rot = z_rot;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_XFORM;
}
void HuSprScaleSet(short group, short member, float x, float y)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->scale_x = x;
sprite_ptr->scale_y = y;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_XFORM;
}
void HuSprTPLvlSet(short group, short member, float tp_lvl)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->a = tp_lvl*255;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_COLOR;
}
void HuSprColorSet(short group, short member, u8 r, u8 g, u8 b)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->r = r;
sprite_ptr->g = g;
sprite_ptr->b = b;
sprite_ptr->dirty_flag |= SPRITE_DIRTY_COLOR;
}
void HuSprSpeedSet(short group, short member, float speed)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
HuSprData[group_ptr->members[member]].speed = speed;
}
void HuSprBankSet(short group, short member, short bank)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
AnimData *anim = sprite_ptr->data;
AnimBankData *bank_ptr = &anim->bank[sprite_ptr->bank];
AnimFrameData *frame_ptr = &bank_ptr->frame[sprite_ptr->frame];
sprite_ptr->bank = bank;
if(sprite_ptr->attr & SPRITE_ATTR_REVERSE) {
sprite_ptr->frame = bank_ptr->timeNum-1;
frame_ptr = &bank_ptr->frame[sprite_ptr->frame];
sprite_ptr->time = frame_ptr->time;
} else {
sprite_ptr->time = 0;
sprite_ptr->frame = 0;
}
}
void HuSprGrpPosSet(short group, float x, float y)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
group_ptr->x = x;
group_ptr->y = y;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != -1) {
HuSprData[group_ptr->members[i]].dirty_flag |= SPRITE_DIRTY_XFORM;
}
}
}
void HuSprGrpCenterSet(short group, float x, float y)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
group_ptr->center_x = x;
group_ptr->center_y = y;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprData[group_ptr->members[i]].dirty_flag |= SPRITE_DIRTY_XFORM;
}
}
}
void HuSprGrpZRotSet(short group, float z_rot)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
group_ptr->z_rot = z_rot;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprData[group_ptr->members[i]].dirty_flag |= SPRITE_DIRTY_XFORM;
}
}
}
void HuSprGrpScaleSet(short group, float x, float y)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
group_ptr->scale_x = x;
group_ptr->scale_y = y;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprData[group_ptr->members[i]].dirty_flag |= SPRITE_DIRTY_XFORM;
}
}
}
void HuSprGrpTPLvlSet(short group, float tp_lvl)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprData[group_ptr->members[i]].a = tp_lvl*255;
HuSprData[group_ptr->members[i]].dirty_flag |= SPRITE_DIRTY_COLOR;
}
}
}
void HuSprGrpDrawNoSet(short group, int draw_no)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprData[group_ptr->members[i]].draw_no = draw_no;
}
}
}
void HuSprDrawNoSet(short group, short member, int draw_no)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->draw_no = draw_no;
}
void HuSprPriSet(short group, short member, short prio)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->prio = prio;
}
void HuSprGrpScissorSet(short group, short x, short y, short w, short h)
{
SpriteGroupData *group_ptr = &HuSprGrpData[group];
short i;
for(i=0; i<group_ptr->capacity; i++) {
if(group_ptr->members[i] != SPRITE_INVALID) {
HuSprScissorSet(group, i, x, y, w, h);
}
}
}
void HuSprScissorSet(short group, short member, short x, short y, short w, short h)
{
SpriteData *sprite_ptr = &HuSprData[HuSprGrpData[group].members[member]];
sprite_ptr->scissor_x = x;
sprite_ptr->scissor_y = y;
sprite_ptr->scissor_w = w;
sprite_ptr->scissor_h = h;
}
static short bitSizeTbl[11] = { 32, 24, 16, 8, 4, 16, 8, 8, 4, 8, 4 };
AnimData *HuSprAnimMake(short sizeX, short sizeY, short dataFmt)
{
AnimLayerData *layer;
AnimBmpData *bmp;
AnimData *anim;
AnimPatData *pat;
AnimFrameData *frame;
void *temp;
AnimBankData *bank;
AnimData *new_anim;
anim = new_anim = HuMemDirectMalloc(HEAP_DATA, sizeof(AnimData)+sizeof(AnimBankData)+sizeof(AnimFrameData)
+sizeof(AnimPatData)+sizeof(AnimLayerData)+sizeof(AnimBmpData));
bank = temp = &new_anim[1];
anim->bank = bank;
frame = temp = ((char *)temp+sizeof(AnimBankData));
bank->frame = frame;
pat = temp = ((char *)temp+sizeof(AnimFrameData));
anim->pat = pat;
layer = temp = ((char *)temp+sizeof(AnimPatData));
pat->layer = layer;
bmp = temp = ((char *)temp+sizeof(AnimLayerData));
anim->bmp = bmp;
anim->useNum = 0;
anim->bankNum = 1;
anim->patNum = 1;
anim->bmpNum = (1|SPRITE_BMP_ALLOC);
bank->timeNum = 1;
bank->unk = 10;
frame->pat = 0;
frame->time = 10;
frame->shiftX = frame->shiftY = frame->flip = 0;
pat->layerNum = 1;
pat->centerX = sizeX/2;
pat->centerY = sizeY/2;
pat->sizeX = sizeX;
pat->sizeY = sizeY;
layer->alpha = 255;
layer->flip = 0;
layer->bmpNo = 0;
layer->startX = layer->startY = 0;
layer->sizeX = sizeX;
layer->sizeY = sizeY;
layer->shiftX = layer->shiftY = 0;
layer->vtx[0] = layer->vtx[1] = 0;
layer->vtx[2] = sizeX;
layer->vtx[3] = 0;
layer->vtx[4] = sizeX;
layer->vtx[5] = sizeY;
layer->vtx[6] = 0;
layer->vtx[7] = sizeY;
bmp->pixSize = bitSizeTbl[dataFmt];
bmp->dataFmt = dataFmt;
bmp->palNum = 0;
bmp->sizeX = sizeX;
bmp->sizeY = sizeY;
bmp->dataSize = sizeX*sizeY*bitSizeTbl[dataFmt]/8;
bmp->palData = NULL;
bmp->data = NULL;
return anim;
}
void HuSprBGSet(short group, short member, AnimData *bg, short bg_bank)
{
short sprite = HuSprGrpData[group].members[member];
HuSprSprBGSet(sprite, bg, bg_bank);
}
void HuSprSprBGSet(short sprite, AnimData *bg, short bg_bank)
{
SpriteData *sprite_ptr = &HuSprData[sprite];
sprite_ptr->bg = bg;
sprite_ptr->bg_bank = bg_bank;
sprite_ptr->wrap_t = sprite_ptr->wrap_s = GX_REPEAT;
sprite_ptr->attr &= ~SPIRTE_ATTR_BILINEAR;
}
void AnimDebug(AnimData *anim)
{
AnimPatData *pat;
AnimLayerData *layer;
s16 i;
s16 j;
AnimFrameData *frame;
AnimBankData *bank;
AnimBmpData *bmp;
OSReport("patNum %d,bankNum %d,bmpNum %d\n", anim->patNum, anim->bankNum, anim->bmpNum & SPRITE_BMP_NUM_MASK);
pat = anim->pat;
for(i=0; i<anim->patNum; i++) {
OSReport("PATTERN%d:\n", i);
OSReport("\tlayerNum %d,center (%d,%d),size (%d,%d)\n", pat->layerNum, pat->centerX, pat->centerX, pat->sizeX, pat->sizeY);
layer = pat->layer;
for(j=0; j<pat->layerNum; j++) {
OSReport("\t\tfileNo %d,flip %x\n", layer->bmpNo, layer->flip);
OSReport("\t\tstart (%d,%d),size (%d,%d),shift (%d,%d)\n", layer->startX, layer->startY, layer->sizeX, layer->sizeY, layer->shiftX, layer->shiftY);
if(j != pat->layerNum-1) {
OSReport("\n");
}
layer++;
}
pat++;
}
bank = anim->bank;
for(i=0; i<anim->bankNum; i++) {
OSReport("BANK%d:\n", i);
OSReport("\ttimeNum %d\n", bank->timeNum);
frame = bank->frame;
for(j=0; j<bank->timeNum; j++) {
OSReport("\t\tpat %d,time %d,shift(%d,%d),flip %x\n", frame->pat, frame->time, frame->shiftX, frame->shiftY, frame->flip);
frame++;
}
bank++;
}
bmp = anim->bmp;
for(i=0; i<anim->bmpNum & SPRITE_BMP_NUM_MASK; i++) {
OSReport("BMP%d:\n", i);
OSReport("\tpixSize %d,palNum %d,size (%d,%d)\n", bmp->pixSize, bmp->palNum, bmp->sizeX, bmp->sizeY);
bmp++;
}
}