mirror of
https://github.com/pret/pokefirered.git
synced 2026-05-09 21:25:42 -05:00
183 lines
5.0 KiB
C
183 lines
5.0 KiB
C
#include "global.h"
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#include "dma3.h"
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#define MAX_DMA_REQUESTS 128
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static struct {
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/* 0x00 */ const u8 *src;
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/* 0x04 */ u8 *dest;
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/* 0x08 */ u16 size;
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/* 0x0A */ u16 mode;
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/* 0x0C */ u32 value;
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} gDma3Requests[128];
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static volatile bool8 gDma3ManagerLocked;
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static u8 gDma3RequestCursor;
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void ClearDma3Requests(void)
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{
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int i;
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gDma3ManagerLocked = TRUE;
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gDma3RequestCursor = 0;
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for(i = 0; i < (u8)NELEMS(gDma3Requests); i++)
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{
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gDma3Requests[i].size = 0;
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gDma3Requests[i].src = 0;
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gDma3Requests[i].dest = 0;
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}
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gDma3ManagerLocked = FALSE;
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}
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void ProcessDma3Requests(void)
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{
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u16 bytesTransferred;
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if (gDma3ManagerLocked)
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return;
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bytesTransferred = 0;
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// as long as there are DMA requests to process (unless size or vblank is an issue), do not exit
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while (gDma3Requests[gDma3RequestCursor].size != 0)
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{
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bytesTransferred += gDma3Requests[gDma3RequestCursor].size;
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if (bytesTransferred > 40 * 1024)
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return; // don't transfer more than 40 KiB
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if (*(u8 *)REG_ADDR_VCOUNT > 224)
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return; // we're about to leave vblank, stop
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switch (gDma3Requests[gDma3RequestCursor].mode)
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{
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case DMA_REQUEST_COPY32: // regular 32-bit copy
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Dma3CopyLarge32_(gDma3Requests[gDma3RequestCursor].src,
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gDma3Requests[gDma3RequestCursor].dest,
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gDma3Requests[gDma3RequestCursor].size);
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break;
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case DMA_REQUEST_FILL32: // repeat a single 32-bit value across RAM
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Dma3FillLarge32_(gDma3Requests[gDma3RequestCursor].value,
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gDma3Requests[gDma3RequestCursor].dest,
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gDma3Requests[gDma3RequestCursor].size);
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break;
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case DMA_REQUEST_COPY16: // regular 16-bit copy
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Dma3CopyLarge16_(gDma3Requests[gDma3RequestCursor].src,
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gDma3Requests[gDma3RequestCursor].dest,
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gDma3Requests[gDma3RequestCursor].size);
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break;
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case DMA_REQUEST_FILL16: // repeat a single 16-bit value across RAM
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Dma3FillLarge16_(gDma3Requests[gDma3RequestCursor].value,
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gDma3Requests[gDma3RequestCursor].dest,
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gDma3Requests[gDma3RequestCursor].size);
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break;
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}
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// Free the request
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gDma3Requests[gDma3RequestCursor].src = NULL;
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gDma3Requests[gDma3RequestCursor].dest = NULL;
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gDma3Requests[gDma3RequestCursor].size = 0;
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gDma3Requests[gDma3RequestCursor].mode = 0;
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gDma3Requests[gDma3RequestCursor].value = 0;
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gDma3RequestCursor++;
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if (gDma3RequestCursor >= MAX_DMA_REQUESTS) // loop back to the first DMA request
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gDma3RequestCursor = 0;
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}
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}
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s16 RequestDma3Copy(const void *src, void *dest, u16 size, u8 mode)
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{
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int cursor;
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int var = 0;
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gDma3ManagerLocked = 1;
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cursor = gDma3RequestCursor;
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while(1)
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{
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if(!gDma3Requests[cursor].size) // an empty copy was found and the current cursor will be returned.
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{
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gDma3Requests[cursor].src = src;
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gDma3Requests[cursor].dest = dest;
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gDma3Requests[cursor].size = size;
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if(mode == DMA3_32BIT)
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gDma3Requests[cursor].mode = DMA_REQUEST_COPY32;
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else
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gDma3Requests[cursor].mode = DMA_REQUEST_COPY16;
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gDma3ManagerLocked = FALSE;
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return (s16)cursor;
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}
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if(++cursor >= 0x80) // loop back to start.
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{
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cursor = 0;
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}
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if(++var >= 0x80) // max checks were made. all resulted in failure.
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{
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break;
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}
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}
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gDma3ManagerLocked = FALSE;
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return -1;
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}
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s16 RequestDma3Fill(s32 value, void *dest, u16 size, u8 mode)
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{
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int cursor;
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int var = 0;
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cursor = gDma3RequestCursor;
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gDma3ManagerLocked = 1;
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while(1)
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{
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if(!gDma3Requests[cursor].size)
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{
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gDma3Requests[cursor].dest = dest;
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gDma3Requests[cursor].size = size;
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gDma3Requests[cursor].mode = mode;
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gDma3Requests[cursor].value = value;
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if(mode == DMA3_32BIT)
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gDma3Requests[cursor].mode = DMA_REQUEST_FILL32;
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else
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gDma3Requests[cursor].mode = DMA_REQUEST_FILL16;
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gDma3ManagerLocked = FALSE;
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return (s16)cursor;
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}
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if(++cursor >= 0x80) // loop back to start.
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{
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cursor = 0;
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}
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if(++var >= 0x80) // max checks were made. all resulted in failure.
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{
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break;
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}
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}
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gDma3ManagerLocked = FALSE;
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return -1;
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}
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s16 WaitDma3Request(s16 index)
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{
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int current = 0;
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if (index == -1)
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{
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for (; current < 0x80; current ++)
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if (gDma3Requests[current].size)
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return -1;
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return 0;
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}
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if (gDma3Requests[index].size)
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return -1;
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return 0;
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}
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