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1 /* $Id: hfcscard.c,v 1.10.2.4 2004/01/14 16:04:48 keil Exp $
2  *
3  * low level stuff for hfcs based cards (Teles3c, ACER P10)
4  *
5  * Author       Karsten Keil
6  * Copyright    by Karsten Keil      <keil@isdn4linux.de>
7  *
8  * This software may be used and distributed according to the terms
9  * of the GNU General Public License, incorporated herein by reference.
10  *
11  */
12 
13 #include <linux/init.h>
14 #include <linux/isapnp.h>
15 #include "hisax.h"
16 #include "hfc_2bds0.h"
17 #include "isdnl1.h"
18 
19 static const char *hfcs_revision = "$Revision: 1.10.2.4 $";
20 
21 static irqreturn_t
hfcs_interrupt(int intno,void * dev_id)22 hfcs_interrupt(int intno, void *dev_id)
23 {
24 	struct IsdnCardState *cs = dev_id;
25 	u_char val, stat;
26 	u_long flags;
27 
28 	spin_lock_irqsave(&cs->lock, flags);
29 	if ((HFCD_ANYINT | HFCD_BUSY_NBUSY) &
30 	    (stat = cs->BC_Read_Reg(cs, HFCD_DATA, HFCD_STAT))) {
31 		val = cs->BC_Read_Reg(cs, HFCD_DATA, HFCD_INT_S1);
32 		if (cs->debug & L1_DEB_ISAC)
33 			debugl1(cs, "HFCS: stat(%02x) s1(%02x)", stat, val);
34 		hfc2bds0_interrupt(cs, val);
35 	} else {
36 		if (cs->debug & L1_DEB_ISAC)
37 			debugl1(cs, "HFCS: irq_no_irq stat(%02x)", stat);
38 	}
39 	spin_unlock_irqrestore(&cs->lock, flags);
40 	return IRQ_HANDLED;
41 }
42 
43 static void
hfcs_Timer(struct IsdnCardState * cs)44 hfcs_Timer(struct IsdnCardState *cs)
45 {
46 	cs->hw.hfcD.timer.expires = jiffies + 75;
47 	/* WD RESET */
48 /*	WriteReg(cs, HFCD_DATA, HFCD_CTMT, cs->hw.hfcD.ctmt | 0x80);
49 	add_timer(&cs->hw.hfcD.timer);
50 */
51 }
52 
53 static void
release_io_hfcs(struct IsdnCardState * cs)54 release_io_hfcs(struct IsdnCardState *cs)
55 {
56 	release2bds0(cs);
57 	del_timer(&cs->hw.hfcD.timer);
58 	if (cs->hw.hfcD.addr)
59 		release_region(cs->hw.hfcD.addr, 2);
60 }
61 
62 static void
reset_hfcs(struct IsdnCardState * cs)63 reset_hfcs(struct IsdnCardState *cs)
64 {
65 	printk(KERN_INFO "HFCS: resetting card\n");
66 	cs->hw.hfcD.cirm = HFCD_RESET;
67 	if (cs->typ == ISDN_CTYPE_TELES3C)
68 		cs->hw.hfcD.cirm |= HFCD_MEM8K;
69 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_CIRM, cs->hw.hfcD.cirm);	/* Reset On */
70 	mdelay(10);
71 	cs->hw.hfcD.cirm = 0;
72 	if (cs->typ == ISDN_CTYPE_TELES3C)
73 		cs->hw.hfcD.cirm |= HFCD_MEM8K;
74 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_CIRM, cs->hw.hfcD.cirm);	/* Reset Off */
75 	mdelay(10);
76 	if (cs->typ == ISDN_CTYPE_TELES3C)
77 		cs->hw.hfcD.cirm |= HFCD_INTB;
78 	else if (cs->typ == ISDN_CTYPE_ACERP10)
79 		cs->hw.hfcD.cirm |= HFCD_INTA;
80 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_CIRM, cs->hw.hfcD.cirm);
81 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_CLKDEL, 0x0e);
82 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_TEST, HFCD_AUTO_AWAKE); /* S/T Auto awake */
83 	cs->hw.hfcD.ctmt = HFCD_TIM25 | HFCD_AUTO_TIMER;
84 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_CTMT, cs->hw.hfcD.ctmt);
85 	cs->hw.hfcD.int_m2 = HFCD_IRQ_ENABLE;
86 	cs->hw.hfcD.int_m1 = HFCD_INTS_B1TRANS | HFCD_INTS_B2TRANS |
87 		HFCD_INTS_DTRANS | HFCD_INTS_B1REC | HFCD_INTS_B2REC |
88 		HFCD_INTS_DREC | HFCD_INTS_L1STATE;
89 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_INT_M1, cs->hw.hfcD.int_m1);
90 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_INT_M2, cs->hw.hfcD.int_m2);
91 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_STATES, HFCD_LOAD_STATE | 2); /* HFC ST 2 */
92 	udelay(10);
93 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_STATES, 2); /* HFC ST 2 */
94 	cs->hw.hfcD.mst_m = HFCD_MASTER;
95 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_MST_MODE, cs->hw.hfcD.mst_m); /* HFC Master */
96 	cs->hw.hfcD.sctrl = 0;
97 	cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_SCTRL, cs->hw.hfcD.sctrl);
98 }
99 
100 static int
hfcs_card_msg(struct IsdnCardState * cs,int mt,void * arg)101 hfcs_card_msg(struct IsdnCardState *cs, int mt, void *arg)
102 {
103 	u_long flags;
104 	int delay;
105 
106 	if (cs->debug & L1_DEB_ISAC)
107 		debugl1(cs, "HFCS: card_msg %x", mt);
108 	switch (mt) {
109 	case CARD_RESET:
110 		spin_lock_irqsave(&cs->lock, flags);
111 		reset_hfcs(cs);
112 		spin_unlock_irqrestore(&cs->lock, flags);
113 		return (0);
114 	case CARD_RELEASE:
115 		release_io_hfcs(cs);
116 		return (0);
117 	case CARD_INIT:
118 		delay = (75 * HZ) / 100 + 1;
119 		mod_timer(&cs->hw.hfcD.timer, jiffies + delay);
120 		spin_lock_irqsave(&cs->lock, flags);
121 		reset_hfcs(cs);
122 		init2bds0(cs);
123 		spin_unlock_irqrestore(&cs->lock, flags);
124 		delay = (80 * HZ) / 1000 + 1;
125 		msleep(80);
126 		spin_lock_irqsave(&cs->lock, flags);
127 		cs->hw.hfcD.ctmt |= HFCD_TIM800;
128 		cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_CTMT, cs->hw.hfcD.ctmt);
129 		cs->BC_Write_Reg(cs, HFCD_DATA, HFCD_MST_MODE, cs->hw.hfcD.mst_m);
130 		spin_unlock_irqrestore(&cs->lock, flags);
131 		return (0);
132 	case CARD_TEST:
133 		return (0);
134 	}
135 	return (0);
136 }
137 
138 #ifdef __ISAPNP__
139 static struct isapnp_device_id hfc_ids[] = {
140 	{ ISAPNP_VENDOR('A', 'N', 'X'), ISAPNP_FUNCTION(0x1114),
141 	  ISAPNP_VENDOR('A', 'N', 'X'), ISAPNP_FUNCTION(0x1114),
142 	  (unsigned long) "Acer P10" },
143 	{ ISAPNP_VENDOR('B', 'I', 'L'), ISAPNP_FUNCTION(0x0002),
144 	  ISAPNP_VENDOR('B', 'I', 'L'), ISAPNP_FUNCTION(0x0002),
145 	  (unsigned long) "Billion 2" },
146 	{ ISAPNP_VENDOR('B', 'I', 'L'), ISAPNP_FUNCTION(0x0001),
147 	  ISAPNP_VENDOR('B', 'I', 'L'), ISAPNP_FUNCTION(0x0001),
148 	  (unsigned long) "Billion 1" },
149 	{ ISAPNP_VENDOR('T', 'A', 'G'), ISAPNP_FUNCTION(0x7410),
150 	  ISAPNP_VENDOR('T', 'A', 'G'), ISAPNP_FUNCTION(0x7410),
151 	  (unsigned long) "IStar PnP" },
152 	{ ISAPNP_VENDOR('T', 'A', 'G'), ISAPNP_FUNCTION(0x2610),
153 	  ISAPNP_VENDOR('T', 'A', 'G'), ISAPNP_FUNCTION(0x2610),
154 	  (unsigned long) "Teles 16.3c" },
155 	{ ISAPNP_VENDOR('S', 'F', 'M'), ISAPNP_FUNCTION(0x0001),
156 	  ISAPNP_VENDOR('S', 'F', 'M'), ISAPNP_FUNCTION(0x0001),
157 	  (unsigned long) "Tornado Tipa C" },
158 	{ ISAPNP_VENDOR('K', 'Y', 'E'), ISAPNP_FUNCTION(0x0001),
159 	  ISAPNP_VENDOR('K', 'Y', 'E'), ISAPNP_FUNCTION(0x0001),
160 	  (unsigned long) "Genius Speed Surfer" },
161 	{ 0, }
162 };
163 
164 static struct isapnp_device_id *ipid = &hfc_ids[0];
165 static struct pnp_card *pnp_c = NULL;
166 #endif
167 
setup_hfcs(struct IsdnCard * card)168 int setup_hfcs(struct IsdnCard *card)
169 {
170 	struct IsdnCardState *cs = card->cs;
171 	char tmp[64];
172 
173 	strcpy(tmp, hfcs_revision);
174 	printk(KERN_INFO "HiSax: HFC-S driver Rev. %s\n", HiSax_getrev(tmp));
175 
176 #ifdef __ISAPNP__
177 	if (!card->para[1] && isapnp_present()) {
178 		struct pnp_dev *pnp_d;
179 		while (ipid->card_vendor) {
180 			if ((pnp_c = pnp_find_card(ipid->card_vendor,
181 						   ipid->card_device, pnp_c))) {
182 				pnp_d = NULL;
183 				if ((pnp_d = pnp_find_dev(pnp_c,
184 							  ipid->vendor, ipid->function, pnp_d))) {
185 					int err;
186 
187 					printk(KERN_INFO "HiSax: %s detected\n",
188 					       (char *)ipid->driver_data);
189 					pnp_disable_dev(pnp_d);
190 					err = pnp_activate_dev(pnp_d);
191 					if (err < 0) {
192 						printk(KERN_WARNING "%s: pnp_activate_dev ret(%d)\n",
193 						       __func__, err);
194 						return (0);
195 					}
196 					card->para[1] = pnp_port_start(pnp_d, 0);
197 					card->para[0] = pnp_irq(pnp_d, 0);
198 					if (!card->para[0] || !card->para[1]) {
199 						printk(KERN_ERR "HFC PnP:some resources are missing %ld/%lx\n",
200 						       card->para[0], card->para[1]);
201 						pnp_disable_dev(pnp_d);
202 						return (0);
203 					}
204 					break;
205 				} else {
206 					printk(KERN_ERR "HFC PnP: PnP error card found, no device\n");
207 				}
208 			}
209 			ipid++;
210 			pnp_c = NULL;
211 		}
212 		if (!ipid->card_vendor) {
213 			printk(KERN_INFO "HFC PnP: no ISAPnP card found\n");
214 			return (0);
215 		}
216 	}
217 #endif
218 	cs->hw.hfcD.addr = card->para[1] & 0xfffe;
219 	cs->irq = card->para[0];
220 	cs->hw.hfcD.cip = 0;
221 	cs->hw.hfcD.int_s1 = 0;
222 	cs->hw.hfcD.send = NULL;
223 	cs->bcs[0].hw.hfc.send = NULL;
224 	cs->bcs[1].hw.hfc.send = NULL;
225 	cs->hw.hfcD.dfifosize = 512;
226 	cs->dc.hfcd.ph_state = 0;
227 	cs->hw.hfcD.fifo = 255;
228 	if (cs->typ == ISDN_CTYPE_TELES3C) {
229 		cs->hw.hfcD.bfifosize = 1024 + 512;
230 	} else if (cs->typ == ISDN_CTYPE_ACERP10) {
231 		cs->hw.hfcD.bfifosize = 7 * 1024 + 512;
232 	} else
233 		return (0);
234 	if (!request_region(cs->hw.hfcD.addr, 2, "HFCS isdn")) {
235 		printk(KERN_WARNING
236 		       "HiSax: %s config port %x-%x already in use\n",
237 		       CardType[card->typ],
238 		       cs->hw.hfcD.addr,
239 		       cs->hw.hfcD.addr + 2);
240 		return (0);
241 	}
242 	printk(KERN_INFO
243 	       "HFCS: defined at 0x%x IRQ %d HZ %d\n",
244 	       cs->hw.hfcD.addr,
245 	       cs->irq, HZ);
246 	if (cs->typ == ISDN_CTYPE_TELES3C) {
247 		/* Teles 16.3c IO ADR is 0x200 | YY0U (YY Bit 15/14 address) */
248 		outb(0x00, cs->hw.hfcD.addr);
249 		outb(0x56, cs->hw.hfcD.addr | 1);
250 	} else if (cs->typ == ISDN_CTYPE_ACERP10) {
251 		/* Acer P10 IO ADR is 0x300 */
252 		outb(0x00, cs->hw.hfcD.addr);
253 		outb(0x57, cs->hw.hfcD.addr | 1);
254 	}
255 	set_cs_func(cs);
256 	cs->hw.hfcD.timer.function = (void *) hfcs_Timer;
257 	cs->hw.hfcD.timer.data = (long) cs;
258 	init_timer(&cs->hw.hfcD.timer);
259 	cs->cardmsg = &hfcs_card_msg;
260 	cs->irq_func = &hfcs_interrupt;
261 	return (1);
262 }
263