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dma.c revision 1.13.2.1
      1  1.13.2.1   thorpej /*	$NetBSD: dma.c,v 1.13.2.1 1997/01/30 05:36:13 thorpej Exp $	*/
      2       1.1       leo 
      3       1.1       leo /*
      4       1.1       leo  * Copyright (c) 1995 Leo Weppelman.
      5       1.1       leo  * All rights reserved.
      6       1.1       leo  *
      7       1.1       leo  * Redistribution and use in source and binary forms, with or without
      8       1.1       leo  * modification, are permitted provided that the following conditions
      9       1.1       leo  * are met:
     10       1.1       leo  * 1. Redistributions of source code must retain the above copyright
     11       1.1       leo  *    notice, this list of conditions and the following disclaimer.
     12       1.1       leo  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1       leo  *    notice, this list of conditions and the following disclaimer in the
     14       1.1       leo  *    documentation and/or other materials provided with the distribution.
     15       1.1       leo  * 3. All advertising materials mentioning features or use of this software
     16       1.1       leo  *    must display the following acknowledgement:
     17       1.1       leo  *      This product includes software developed by Leo Weppelman.
     18       1.1       leo  * 4. The name of the author may not be used to endorse or promote products
     19       1.1       leo  *    derived from this software without specific prior written permission
     20       1.1       leo  *
     21       1.1       leo  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     22       1.1       leo  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     23       1.1       leo  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     24       1.1       leo  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     25       1.1       leo  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     26       1.1       leo  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     27       1.1       leo  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     28       1.1       leo  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     29       1.1       leo  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     30       1.1       leo  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     31       1.1       leo  */
     32       1.1       leo 
     33       1.1       leo /*
     34       1.1       leo  * This file contains special code dealing with the DMA interface
     35       1.1       leo  * on the Atari ST.
     36       1.1       leo  *
     37       1.1       leo  * The DMA circuitry requires some special treatment for the peripheral
     38       1.1       leo  * devices which make use of the ST's DMA feature (the hard disk and the
     39       1.1       leo  * floppy drive).
     40       1.1       leo  * All devices using DMA need mutually exclusive access and can follow some
     41       1.1       leo  * standard pattern which will be provided in this file.
     42       1.1       leo  *
     43       1.1       leo  * The file contains the following entry points:
     44       1.1       leo  *
     45       1.2       leo  *	st_dmagrab:	ensure exclusive access to the DMA circuitry
     46       1.2       leo  *	st_dmafree:	free exclusive access to the DMA circuitry
     47       1.2       leo  *	st_dmawanted:	somebody is queued waiting for DMA-access
     48       1.1       leo  *	dmaint:		DMA interrupt routine, switches to the current driver
     49       1.4       leo  *	st_dmaaddr_set:	specify 24 bit RAM address
     50       1.4       leo  *	st_dmaaddr_get:	get address of last DMA-op
     51       1.2       leo  *	st_dmacomm:	program DMA, flush FIFO first
     52       1.1       leo  */
     53       1.1       leo 
     54       1.1       leo #include <sys/param.h>
     55       1.1       leo #include <sys/systm.h>
     56       1.1       leo #include <sys/kernel.h>
     57  1.13.2.1   thorpej #include <sys/proc.h>
     58       1.3       leo #include <sys/queue.h>
     59      1.12       leo 
     60       1.1       leo #include <machine/cpu.h>
     61       1.1       leo #include <machine/iomap.h>
     62       1.1       leo #include <machine/dma.h>
     63       1.1       leo 
     64      1.12       leo #include <atari/atari/intr.h>
     65      1.12       leo 
     66       1.1       leo #define	NDMA_DEV	10	/* Max 2 floppy's, 8 hard-disks		*/
     67       1.3       leo typedef struct dma_entry {
     68       1.3       leo 	TAILQ_ENTRY(dma_entry)	entries;	/* List pointers	   */
     69       1.6       leo 	void		(*call_func)(void *);	/* Call when lock granted  */
     70       1.6       leo 	void		(*int_func)(void *);	/* Call on DMA interrupt   */
     71       1.6       leo 	void		*softc;			/* Arg. to int_func	   */
     72       1.6       leo 	int		*lock_stat;		/* status of DMA lock	   */
     73       1.3       leo } DMA_ENTRY;
     74       1.3       leo 
     75       1.3       leo /*
     76       1.3       leo  * Preallocated entries. An allocator seem an overkill here.
     77       1.3       leo  */
     78       1.3       leo static	DMA_ENTRY dmatable[NDMA_DEV];	/* preallocated entries		*/
     79       1.3       leo 
     80       1.3       leo /*
     81       1.3       leo  * Heads of free and active lists:
     82       1.3       leo  */
     83       1.3       leo static  TAILQ_HEAD(freehead, dma_entry)	dma_free;
     84       1.3       leo static  TAILQ_HEAD(acthead, dma_entry)	dma_active;
     85       1.3       leo 
     86       1.3       leo static	int	must_init = 1;		/* Must initialize		*/
     87       1.1       leo 
     88      1.13       leo int	cdmaint __P((void *, int));
     89       1.6       leo 
     90      1.12       leo static	void	st_dma_init __P((void));
     91       1.1       leo 
     92       1.6       leo static void
     93      1.12       leo st_dma_init()
     94       1.3       leo {
     95       1.3       leo 	int	i;
     96       1.3       leo 
     97       1.3       leo 	TAILQ_INIT(&dma_free);
     98       1.3       leo 	TAILQ_INIT(&dma_active);
     99       1.3       leo 
    100       1.3       leo 	for(i = 0; i < NDMA_DEV; i++)
    101       1.3       leo 		TAILQ_INSERT_HEAD(&dma_free, &dmatable[i], entries);
    102      1.12       leo 
    103      1.13       leo 	if (intr_establish(7, USER_VEC, 0, cdmaint, NULL) == NULL)
    104      1.12       leo 		panic("st_dma_init: Can't establish interrupt\n");
    105       1.3       leo }
    106       1.3       leo 
    107       1.6       leo int
    108       1.6       leo st_dmagrab(int_func, call_func, softc, lock_stat, rcaller)
    109       1.6       leo dma_farg	int_func;
    110       1.6       leo dma_farg 	call_func;
    111       1.6       leo void		*softc;
    112       1.6       leo int		*lock_stat;
    113       1.6       leo int		rcaller;
    114       1.1       leo {
    115       1.1       leo 	int		sps;
    116       1.3       leo 	DMA_ENTRY	*req;
    117       1.1       leo 
    118       1.3       leo 	if(must_init) {
    119      1.12       leo 		st_dma_init();
    120       1.3       leo 		must_init = 0;
    121       1.3       leo 	}
    122       1.3       leo 	*lock_stat = DMA_LOCK_REQ;
    123       1.1       leo 
    124       1.3       leo 	sps = splhigh();
    125       1.3       leo 
    126       1.3       leo 	/*
    127       1.3       leo 	 * Create a request...
    128       1.3       leo 	 */
    129       1.3       leo 	if(dma_free.tqh_first == NULL)
    130       1.3       leo 		panic("st_dmagrab: Too many outstanding requests\n");
    131       1.3       leo 	req = dma_free.tqh_first;
    132       1.3       leo 	TAILQ_REMOVE(&dma_free, dma_free.tqh_first, entries);
    133       1.3       leo 	req->call_func = call_func;
    134       1.3       leo 	req->int_func  = int_func;
    135       1.3       leo 	req->softc     = softc;
    136       1.3       leo 	req->lock_stat = lock_stat;
    137       1.3       leo 	TAILQ_INSERT_TAIL(&dma_active, req, entries);
    138       1.3       leo 
    139       1.3       leo 	if(dma_active.tqh_first != req) {
    140  1.13.2.1   thorpej 		if (call_func == NULL) {
    141  1.13.2.1   thorpej 			do {
    142  1.13.2.1   thorpej 				tsleep(&dma_active, PRIBIO, "dmalck", 0);
    143  1.13.2.1   thorpej 			} while (*req->lock_stat != DMA_LOCK_GRANT);
    144  1.13.2.1   thorpej 			splx(sps);
    145  1.13.2.1   thorpej 			return(1);
    146  1.13.2.1   thorpej 		}
    147       1.1       leo 		splx(sps);
    148       1.2       leo 		return(0);
    149       1.1       leo 	}
    150       1.3       leo 	splx(sps);
    151       1.3       leo 
    152       1.3       leo 	/*
    153       1.3       leo 	 * We're at the head of the queue, ergo: we got the lock.
    154       1.3       leo 	 */
    155       1.3       leo 	*lock_stat = DMA_LOCK_GRANT;
    156       1.3       leo 
    157  1.13.2.1   thorpej 	if(rcaller || (call_func == NULL)) {
    158       1.2       leo 		/*
    159       1.2       leo 		 * Just return to caller immediately without going
    160       1.2       leo 		 * through 'call_func' first.
    161       1.2       leo 		 */
    162       1.2       leo 		return(1);
    163       1.2       leo 	}
    164       1.2       leo 
    165       1.1       leo 	(*call_func)(softc);	/* Call followup function		*/
    166       1.2       leo 	return(0);
    167       1.1       leo }
    168       1.1       leo 
    169       1.2       leo void
    170       1.3       leo st_dmafree(softc, lock_stat)
    171       1.3       leo void	*softc;
    172       1.3       leo int	*lock_stat;
    173       1.1       leo {
    174       1.1       leo 	int		sps;
    175       1.3       leo 	DMA_ENTRY	*req;
    176       1.1       leo 
    177       1.3       leo 	sps = splhigh();
    178       1.3       leo 
    179       1.3       leo 	/*
    180       1.3       leo 	 * Some validity checks first.
    181       1.3       leo 	 */
    182       1.3       leo 	if((req = dma_active.tqh_first) == NULL)
    183       1.3       leo 		panic("st_dmafree: empty active queue\n");
    184       1.3       leo 	if(req->softc != softc)
    185      1.11  christos 		printf("Caller of st_dmafree is not lock-owner!\n");
    186       1.3       leo 
    187       1.3       leo 	/*
    188       1.3       leo 	 * Clear lock status, move request from active to free queue.
    189       1.3       leo 	 */
    190       1.3       leo 	*lock_stat = 0;
    191       1.3       leo 	TAILQ_REMOVE(&dma_active, req, entries);
    192       1.3       leo 	TAILQ_INSERT_HEAD(&dma_free, req, entries);
    193       1.3       leo 
    194       1.3       leo 	if((req = dma_active.tqh_first) != NULL) {
    195       1.3       leo 		*req->lock_stat = DMA_LOCK_GRANT;
    196  1.13.2.1   thorpej 
    197  1.13.2.1   thorpej 		if (req->call_func == NULL)
    198  1.13.2.1   thorpej 			wakeup((caddr_t)&dma_active);
    199  1.13.2.1   thorpej 		else {
    200  1.13.2.1   thorpej 		    /*
    201  1.13.2.1   thorpej 		     * Call next request through softint handler. This avoids
    202  1.13.2.1   thorpej 		     * spl-conflicts.
    203  1.13.2.1   thorpej 		     */
    204  1.13.2.1   thorpej 		    add_sicallback((si_farg)req->call_func, req->softc, 0);
    205  1.13.2.1   thorpej 		}
    206       1.1       leo 	}
    207       1.1       leo 	splx(sps);
    208       1.3       leo 	return;
    209       1.1       leo }
    210       1.1       leo 
    211       1.2       leo int
    212       1.2       leo st_dmawanted()
    213       1.2       leo {
    214       1.3       leo 	return(dma_active.tqh_first->entries.tqe_next != NULL);
    215       1.2       leo }
    216       1.2       leo 
    217      1.13       leo int
    218      1.12       leo cdmaint(unused, sr)
    219      1.12       leo void	*unused;
    220       1.6       leo int	sr;	/* sr at time of interrupt */
    221       1.1       leo {
    222       1.6       leo 	dma_farg	int_func;
    223       1.6       leo 	void		*softc;
    224       1.4       leo 
    225       1.4       leo 	if(dma_active.tqh_first != NULL) {
    226      1.13       leo 		/*
    227      1.13       leo 		 * Due to the logic of the ST-DMA chip, it is not possible to
    228      1.13       leo 		 * check for stray interrupts here...
    229      1.13       leo 		 */
    230       1.4       leo 		int_func = dma_active.tqh_first->int_func;
    231       1.4       leo 		softc    = dma_active.tqh_first->softc;
    232       1.8       leo 
    233       1.8       leo 		if(!BASEPRI(sr))
    234       1.8       leo 			add_sicallback((si_farg)int_func, softc, 0);
    235       1.8       leo 		else {
    236       1.8       leo 			spl1();
    237       1.8       leo 			(*int_func)(softc);
    238       1.9       leo 			spl0();
    239       1.8       leo 		}
    240      1.13       leo 		return 1;
    241       1.4       leo 	}
    242      1.13       leo 	return 0;
    243       1.1       leo }
    244       1.1       leo 
    245       1.2       leo /*
    246       1.2       leo  * Setup address for DMA-transfer.
    247       1.2       leo  * Note: The order _is_ important!
    248       1.2       leo  */
    249       1.2       leo void
    250       1.4       leo st_dmaaddr_set(address)
    251       1.1       leo caddr_t	address;
    252       1.1       leo {
    253       1.1       leo 	register u_long ad = (u_long)address;
    254       1.1       leo 
    255       1.1       leo 	DMA->dma_addr[AD_LOW ] = (ad     ) & 0xff;
    256       1.1       leo 	DMA->dma_addr[AD_MID ] = (ad >> 8) & 0xff;
    257       1.1       leo 	DMA->dma_addr[AD_HIGH] = (ad >>16) & 0xff;
    258       1.1       leo }
    259       1.1       leo 
    260       1.2       leo /*
    261       1.4       leo  * Get address from DMA unit.
    262       1.4       leo  */
    263       1.4       leo u_long
    264       1.4       leo st_dmaaddr_get()
    265       1.4       leo {
    266       1.4       leo 	register u_long ad = 0;
    267       1.4       leo 
    268       1.4       leo 	ad  = (DMA->dma_addr[AD_LOW ] & 0xff);
    269       1.4       leo 	ad |= (DMA->dma_addr[AD_MID ] & 0xff) << 8;
    270       1.4       leo 	ad |= (DMA->dma_addr[AD_HIGH] & 0xff) <<16;
    271       1.4       leo 	return(ad);
    272       1.4       leo }
    273       1.4       leo 
    274       1.4       leo /*
    275       1.2       leo  * Program the DMA-controller to transfer 'nblk' blocks of 512 bytes.
    276       1.2       leo  * The DMA_WRBIT trick flushes the FIFO before doing DMA.
    277       1.2       leo  */
    278       1.2       leo void
    279       1.4       leo st_dmacomm(mode, nblk)
    280       1.4       leo int	mode, nblk;
    281       1.1       leo {
    282       1.1       leo 	DMA->dma_mode = mode;
    283       1.2       leo 	DMA->dma_mode = mode ^ DMA_WRBIT;
    284       1.1       leo 	DMA->dma_mode = mode;
    285       1.4       leo 	DMA->dma_data = nblk;
    286       1.5       leo 	delay(2);	/* Needed for Falcon */
    287       1.4       leo 	DMA->dma_mode = DMA_SCREG | (mode & DMA_WRBIT);
    288       1.1       leo }
    289