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if_snvar.h revision 1.12.22.1
      1 /*	$NetBSD: if_snvar.h,v 1.12.22.1 2010/12/29 08:14:42 matt Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1991   Algorithmics Ltd (http://www.algor.co.uk)
      5  * You may use, copy, and modify this program so long as you retain the
      6  * copyright line.
      7  */
      8 
      9 /*
     10  * if_snvar.h -- National Semiconductor DP8393X (SONIC) NetBSD/newsmips vars
     11  */
     12 
     13 /*
     14  * Memory access macros. Since we handle SONIC in 16 bit mode (PB5X0)
     15  * and 32 bit mode (everything else) using a single GENERIC kernel
     16  * binary, all structures have to be accessed using macros which can
     17  * adjust the offsets appropriately.
     18  */
     19 #define	SWO(m, a, o, x)	(*(uint32_t *)((uint32_t *)(a) + (o)) = (x))
     20 #define	SRO(m, a, o)	(*(uint32_t *)((uint32_t *)(a) + (o)) & 0xffff)
     21 
     22 /*
     23  * Register access macros. We use bus_space_* to talk to the Sonic
     24  * registers. A mapping table is used in case a particular configuration
     25  * hooked the regs up at non-word offsets.
     26  */
     27 #define	NIC_GET(sc, reg)	((sc)->sc_regbase[(reg) * 4 + 3])
     28 #define	NIC_PUT(sc, reg, val)	((sc)->sc_regbase[(reg) * 4 + 3] = val)
     29 
     30 #define	SONIC_GETDMA(p)	((uint32_t)(p))
     31 
     32 #define	SN_REGSIZE	(SN_NREGS * 4)
     33 
     34 #include <mips/locore.h>
     35 
     36 /*
     37  * buffer sizes in 32 bit mode
     38  * 1 TXpkt is 4 hdr words + (3 * FRAGMAX) + 1 link word == 23 words == 92 bytes
     39  *
     40  * 1 RxPkt is 7 words == 28 bytes
     41  * 1 Rda   is 4 words == 16 bytes
     42  *
     43  * The CDA is 17 words == 68 bytes
     44  *
     45  * total space in page 0 = NTDA * 92 + NRRA * 16 + NRDA * 28 + 68
     46  */
     47 
     48 #define NRBA    4		/* # receive buffers < NRRA */
     49 #define RBAMASK (NRBA - 1)
     50 #define NTDA    4		/* # transmit descriptors */
     51 #define NRRA    8		/* # receive resource descriptors */
     52 #define RRAMASK (NRRA - 1)	/* the reason why NRRA must be power of two */
     53 
     54 #define FCSSIZE 4		/* size of FCS appended to packets */
     55 
     56 /*
     57  * maximum receive packet size plus 2 byte pad to make each
     58  * one aligned. 4 byte slop (required for eobc)
     59  */
     60 #define RBASIZE(sc)	(ETHER_HDR_LEN + ETHERMTU + FCSSIZE + 6)
     61 
     62 /*
     63  * transmit buffer area
     64  */
     65 #define TXBSIZE	1536	/* 6*2^8 -- the same size as the 8390 TXBUF */
     66 
     67 #define	SN_NPAGES	2 + NRBA + (NTDA / 2)
     68 
     69 typedef struct mtd {
     70 	void		*mtd_txp;
     71 	uint32_t	mtd_vtxp;
     72 	void 		*mtd_buf;
     73 	uint32_t	mtd_vbuf;
     74 	struct mbuf	*mtd_mbuf;
     75 } mtd_t;
     76 
     77 /*
     78  * The sn_softc for NEWS5000 if_sn.
     79  */
     80 struct sn_softc {
     81 	device_t	sc_dev;
     82 	struct ethercom	sc_ethercom;
     83 #define sc_if	sc_ethercom.ec_if	/* network visible interface */
     84 
     85 	void *		sc_hwbase;	/* hardware base address */
     86 	volatile uint16_t *sc_regbase;	/* register base address */
     87 
     88 	int		bitmode;	/* 32 bit mode == 1, 16 == 0 */
     89 
     90 	uint16_t	snr_dcr;	/* DCR for this instance */
     91 	uint16_t	snr_dcr2;	/* DCR2 for this instance */
     92 	int		slotno;		/* Slot number */
     93 
     94 	int		sc_rramark;	/* index into p_rra of wp */
     95 	void		*p_rra[NRRA];	/* RX resource descs */
     96 	uint32_t	v_rra[NRRA];	/* DMA addresses of p_rra */
     97 	uint32_t	v_rea;		/* ptr to the end of the rra space */
     98 
     99 	int		sc_rxmark;	/* current hw pos in rda ring */
    100 	int		sc_rdamark;	/* current sw pos in rda ring */
    101 	int		sc_nrda;	/* total number of RDAs */
    102 	void		*p_rda;
    103 	uint32_t	v_rda;
    104 
    105 	void 		*rbuf[NRBA];
    106 
    107 	struct mtd	mtda[NTDA];
    108 	int		mtd_hw;		/* idx of first mtd given to hw */
    109 	int		mtd_prev;	/* idx of last mtd given to hardware */
    110 	int		mtd_free;	/* next free mtd to use */
    111 	int		mtd_tlinko;	/*
    112 					 * offset of tlink of last txp given
    113 					 * to SONIC. Need to clear EOL on
    114 					 * this word to add a desc.
    115 					 */
    116 	int		mtd_pint;	/* Counter to set TXP_PINT */
    117 
    118 	void		*p_cda;
    119 	uint32_t	v_cda;
    120 
    121 	unsigned char	*space;
    122 };
    123 
    124 /*
    125  * Accessing SONIC data structures and registers as 32 bit values
    126  * makes code endianess independent.  The SONIC is however always in
    127  * bigendian mode so it is necessary to ensure that data structures shared
    128  * between the CPU and the SONIC are always in bigendian order.
    129  */
    130 
    131 /*
    132  * Receive Resource Descriptor
    133  * This structure describes the buffers into which packets
    134  * will be received.  Note that more than one packet may be
    135  * packed into a single buffer if constraints permit.
    136  */
    137 #define	RXRSRC_PTRLO	0	/* buffer address LO */
    138 #define	RXRSRC_PTRHI	1	/* buffer address HI */
    139 #define	RXRSRC_WCLO	2	/* buffer size (16bit words) LO */
    140 #define	RXRSRC_WCHI	3	/* buffer size (16bit words) HI */
    141 
    142 #define	RXRSRC_SIZE(sc)	(4 * 4)
    143 
    144 /*
    145  * Receive Descriptor
    146  * This structure holds information about packets received.
    147  */
    148 #define	RXPKT_STATUS	0
    149 #define	RXPKT_BYTEC	1
    150 #define	RXPKT_PTRLO	2
    151 #define	RXPKT_PTRHI	3
    152 #define	RXPKT_SEQNO	4
    153 #define	RXPKT_RLINK	5
    154 #define	RXPKT_INUSE	6
    155 #define	RXPKT_SIZE(sc)	(7 * 4)
    156 
    157 #define RBASEQ(x) (((x) >> 8) & 0xff)
    158 #define PSNSEQ(x) ((x) & 0xff)
    159 
    160 /*
    161  * Transmit Descriptor
    162  * This structure holds information about packets to be transmitted.
    163  */
    164 #define FRAGMAX	8		/* maximum number of fragments in a packet */
    165 
    166 #define	TXP_STATUS	0	/* + transmitted packet status */
    167 #define	TXP_CONFIG	1	/* transmission configuration */
    168 #define	TXP_PKTSIZE	2	/* entire packet size in bytes */
    169 #define	TXP_FRAGCNT	3	/* # fragments in packet */
    170 
    171 #define	TXP_FRAGOFF	4	/* offset to first fragment */
    172 #define	TXP_FRAGSIZE	3	/* size of each fragment desc */
    173 #define	TXP_FPTRLO	0	/* ptr to packet fragment LO */
    174 #define	TXP_FPTRHI	1	/* ptr to packet fragment HI */
    175 #define	TXP_FSIZE	2	/* fragment size */
    176 
    177 #define	TXP_WORDS	(TXP_FRAGOFF + (FRAGMAX * TXP_FRAGSIZE) + 1)	/* 1 for tlink */
    178 #define	TXP_SIZE(sc)	(TXP_WORDS*4)
    179 
    180 #define EOL	0x0001		/* end of list marker for link fields */
    181 
    182 /*
    183  * CDA, the CAM descriptor area. The SONIC has a 16 entry CAM to
    184  * match incoming addresses against. It is programmed via DMA
    185  * from a memory region.
    186  */
    187 #define MAXCAM	16	/* number of user entries in CAM */
    188 #define	CDA_CAMDESC	4	/* # words i na descriptor */
    189 #define	CDA_CAMEP	0	/* CAM Address Port 0 xx-xx-xx-xx-YY-YY */
    190 #define	CDA_CAMAP0	1	/* CAM Address Port 1 xx-xx-YY-YY-xx-xx */
    191 #define	CDA_CAMAP1	2	/* CAM Address Port 2 YY-YY-xx-xx-xx-xx */
    192 #define	CDA_CAMAP2	3
    193 #define	CDA_ENABLE	64	/* mask enabling CAM entries */
    194 #define	CDA_SIZE(sc)	((4 * 16 + 1) * ((sc->bitmode) ? 4 : 2))
    195 
    196 int	snsetup(struct sn_softc *sc, uint8_t *);
    197 int	snintr(void *);
    198 void	sn_md_init(struct sn_softc *);
    199