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[/] [or1k/] [trunk/] [uclinux/] [uClinux-2.0.x/] [include/] [asm-m68knommu/] [m5307dma.h] - Rev 1778
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#ifndef _M5307_DMA_H #define _M5307_DMA_H 1 #include <asm/coldfire.h> #include <asm/mcfsim.h> #include <asm/irq.h> #define MAX_DMA_CHANNELS 4 /* *DMA Address Definitions */ #define MCF5307_DMA_SAR (MCF_MBAR+0x300) /*Source Address Register Channel */ #define MCF5307_DMA_DAR (MCF_MBAR+0x304) /*Destination Address Register Channel*/ #define MCF5307_DMA_DCR (MCF_MBAR+0x308) /*DMA Controll Register Channel*/ #define MCF5307_DMA_BCR (MCF_MBAR+0x30C) /*Byte Count Register Channel*/ #define MCF5307_DMA_SR (MCF_MBAR+0x310) /*Status Register Channel*/ #define MCF5307_DMA_IVR (MCF_MBAR+0x314) /*InterruptVectorRegister Channel*/ /* *DMA Controll Register Definition */ #define MCF5307_DMA_DCR_INT (0x8000) /* Interrupt on Completion */ #define MCF5307_DMA_DCR_EEXT (0x4000) /* Enable External Request */ #define MCF5307_DMA_DCR_CS (0x2000) /* Cycle Steal */ #define MCF5307_DMA_DCR_AA (0x1000) /* Auto Align */ #define MCF5307_DMA_DCR_BWC_DMA (0x0000) /* Bandwidth: DMA Priority */ #define MCF5307_DMA_DCR_BWC_512 (0x0200) /* Bandwidth: 512 Bytes */ #define MCF5307_DMA_DCR_BWC_1024 (0x0400) /* Bandwidth: 1024 Bytes */ #define MCF5307_DMA_DCR_BWC_2048 (0x0600) /* Bandwidth: 2048 Bytes */ #define MCF5307_DMA_DCR_BWC_4096 (0x0800) /* Bandwidth: 4096 Bytes */ #define MCF5307_DMA_DCR_BWC_8192 (0x0a00) /* Bandwidth: 8192 Bytes */ #define MCF5307_DMA_DCR_BWC_16384 (0x0c00) /* Bandwidth: 16384 Bytes */ #define MCF5307_DMA_DCR_BWC_32768 (0x0e00) /* Bandwidth: 32768 Bytes */ #define MCF5307_DMA_DCR_SAA (0x0100) /* Single Address Access */ #define MCF5307_DMA_DCR_SRW (0x0080) /* Forces MRW Signal High */ #define MCF5307_DMA_DCR_SINC (0x0040) /* Source Increment */ #define MCF5307_DMA_DCR_SSIZE_LONG (0x0000) /* Source Size: Longword */ #define MCF5307_DMA_DCR_SSIZE_BYTE (0x0010) /* Source Size: Byte */ #define MCF5307_DMA_DCR_SSIZE_WORD (0x0020) /* Source Size: Word */ #define MCF5307_DMA_DCR_SSIZE_LINE (0x0030) /* Source Size: Line */ #define MCF5307_DMA_DCR_DINC (0x0008) /* Destination Increment */ #define MCF5307_DMA_DCR_DSIZE_LONG (0x0000) /* Destination Size: Longword */ #define MCF5307_DMA_DCR_DSIZE_BYTE (0x0002) /* Destination Size: Byte */ #define MCF5307_DMA_DCR_DSIZE_WORD (0x0004) /* Destination Size: Word */ #define MCF5307_DMA_DCR_DSIZE_LINE (0x0006) /* Destination Size: Line */ #define MCF5307_DMA_DCR_START (0x0001) /* Start Transfer */ /* *DMA Status Register Definitions */ #define MCF5307_DMA_DSR_CE (0x40) /* Configuration Error */ #define MCF5307_DMA_DSR_BES (0x20) /* Bus Error on Source */ #define MCF5307_DMA_DSR_BED (0x10) /* Bus Error on Destination */ #define MCF5307_DMA_DSR_REQ (0x04) /* Request */ #define MCF5307_DMA_DSR_BSY (0x02) /* Busy */ #define MCF5307_DMA_DSR_DONE (0x01) /* Transaction Done */ #define DMA_STATE_BUSY 1 #define DMA_STATE_IDLE 0 #define DMA_STATE_CONFIGURATION_ERROR -1 #define DMA_STATE_SOURCE_ERROR -2 #define DMA_STATE_DESTINATION_ERROR -3 struct dma_mcf { const char *devname; unsigned char* source; unsigned char* dest; unsigned short count; unsigned short creg; /*16 bit controllregister use the defines above*/ void (*handler) (int, void *, struct pt_regs *); unsigned int irq_vector; unsigned int irq_level; unsigned long irq_flags; }; static __inline__ int dma_init(int channel) { int err; if ((err = request_dma(channel, 0)) != 0) return err; *(unsigned char*) (MCF_MBAR + MCFSIM_MPARK) |= 0x80; /* DMA BUS MASTER with highest priority*/ return err; } static __inline__ void dma_set(int channel, struct dma_mcf dma) { *(unsigned int*) (MCF5307_DMA_SAR + (0x40 * channel)) = dma.source; *(unsigned int*) (MCF5307_DMA_DAR + (0x40 * channel)) = dma.dest; *(unsigned short*) (MCF5307_DMA_BCR + (0x40 * channel)) = dma.count; if ((dma.creg & MCF5307_DMA_DCR_INT) !=0) /* DMA generates a Interrupt on complrtion*/ { /* Now configure the Interrupt handler*/ *(unsigned short*) (MCF5307_DMA_IVR + (0x40 * channel)) = dma.irq_vector; if (request_irq(dma.irq_vector,dma.handler,dma.irq_flags, dma.devname, 0) !=0) printk("request irq fail\n"); *(volatile unsigned char*)(MCF_MBAR + 0x52 + channel) = dma.irq_level | MCFSIM_ICR_AUTOVEC; /* set MBUS IRQ-Level and autovector */ mcf_setimr(mcf_getimr() & ~(0x4000 << channel)); printk("maskreg%X\n",mcf_getimr()); } *(unsigned short*) (MCF5307_DMA_DCR + (0x40 * channel)) = dma.creg; } static __inline__ unsigned char dma_busy(unsigned char channel) { if ((*(unsigned char*) (MCF5307_DMA_SR + (0x40 * channel)) & MCF5307_DMA_DSR_BSY)!=0) return(0x1); return 0; } static __inline__ void dma_done(unsigned char channel) { *(unsigned char*) (MCF5307_DMA_SR + (0x40 * channel)) = MCF5307_DMA_DSR_DONE; } static __inline__ void dma_clear(unsigned char channel) { *(unsigned short*) (MCF5307_DMA_DCR + (0x40 * channel)) = 0x0000; } static __inline__ unsigned char dma_get_status(unsigned char dsr) { if ((dsr & MCF5307_DMA_DSR_CE) != 0) return(DMA_STATE_CONFIGURATION_ERROR); if ((dsr & MCF5307_DMA_DSR_BES) !=0) return(DMA_STATE_SOURCE_ERROR); if ((dsr & MCF5307_DMA_DSR_BED) !=0) return(DMA_STATE_DESTINATION_ERROR); return 0; } extern int request_dma(unsigned int dmanr, const char * device_id); /* reserve a DMA channel */ extern void free_dma(unsigned int dmanr); /* release it again */ #endif /* _M5307_DMA_H */
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