xref: /openbmc/linux/arch/mips/ar7/platform.c (revision 4949009e)
1 /*
2  * Copyright (C) 2006,2007 Felix Fietkau <nbd@openwrt.org>
3  * Copyright (C) 2006,2007 Eugene Konev <ejka@openwrt.org>
4  *
5  * This program is free software; you can redistribute it and/or modify
6  * it under the terms of the GNU General Public License as published by
7  * the Free Software Foundation; either version 2 of the License, or
8  * (at your option) any later version.
9  *
10  * This program is distributed in the hope that it will be useful,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  * GNU General Public License for more details.
14  *
15  * You should have received a copy of the GNU General Public License
16  * along with this program; if not, write to the Free Software
17  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
18  */
19 
20 #include <linux/init.h>
21 #include <linux/types.h>
22 #include <linux/module.h>
23 #include <linux/delay.h>
24 #include <linux/dma-mapping.h>
25 #include <linux/platform_device.h>
26 #include <linux/mtd/physmap.h>
27 #include <linux/serial.h>
28 #include <linux/serial_8250.h>
29 #include <linux/ioport.h>
30 #include <linux/io.h>
31 #include <linux/vlynq.h>
32 #include <linux/leds.h>
33 #include <linux/string.h>
34 #include <linux/etherdevice.h>
35 #include <linux/phy.h>
36 #include <linux/phy_fixed.h>
37 #include <linux/gpio.h>
38 #include <linux/clk.h>
39 
40 #include <asm/addrspace.h>
41 #include <asm/mach-ar7/ar7.h>
42 #include <asm/mach-ar7/gpio.h>
43 #include <asm/mach-ar7/prom.h>
44 
45 /*****************************************************************************
46  * VLYNQ Bus
47  ****************************************************************************/
48 struct plat_vlynq_data {
49 	struct plat_vlynq_ops ops;
50 	int gpio_bit;
51 	int reset_bit;
52 };
53 
54 static int vlynq_on(struct vlynq_device *dev)
55 {
56 	int ret;
57 	struct plat_vlynq_data *pdata = dev->dev.platform_data;
58 
59 	ret = gpio_request(pdata->gpio_bit, "vlynq");
60 	if (ret)
61 		goto out;
62 
63 	ar7_device_reset(pdata->reset_bit);
64 
65 	ret = ar7_gpio_disable(pdata->gpio_bit);
66 	if (ret)
67 		goto out_enabled;
68 
69 	ret = ar7_gpio_enable(pdata->gpio_bit);
70 	if (ret)
71 		goto out_enabled;
72 
73 	ret = gpio_direction_output(pdata->gpio_bit, 0);
74 	if (ret)
75 		goto out_gpio_enabled;
76 
77 	msleep(50);
78 
79 	gpio_set_value(pdata->gpio_bit, 1);
80 
81 	msleep(50);
82 
83 	return 0;
84 
85 out_gpio_enabled:
86 	ar7_gpio_disable(pdata->gpio_bit);
87 out_enabled:
88 	ar7_device_disable(pdata->reset_bit);
89 	gpio_free(pdata->gpio_bit);
90 out:
91 	return ret;
92 }
93 
94 static void vlynq_off(struct vlynq_device *dev)
95 {
96 	struct plat_vlynq_data *pdata = dev->dev.platform_data;
97 
98 	ar7_gpio_disable(pdata->gpio_bit);
99 	gpio_free(pdata->gpio_bit);
100 	ar7_device_disable(pdata->reset_bit);
101 }
102 
103 static struct resource vlynq_low_res[] = {
104 	{
105 		.name	= "regs",
106 		.flags	= IORESOURCE_MEM,
107 		.start	= AR7_REGS_VLYNQ0,
108 		.end	= AR7_REGS_VLYNQ0 + 0xff,
109 	},
110 	{
111 		.name	= "irq",
112 		.flags	= IORESOURCE_IRQ,
113 		.start	= 29,
114 		.end	= 29,
115 	},
116 	{
117 		.name	= "mem",
118 		.flags	= IORESOURCE_MEM,
119 		.start	= 0x04000000,
120 		.end	= 0x04ffffff,
121 	},
122 	{
123 		.name	= "devirq",
124 		.flags	= IORESOURCE_IRQ,
125 		.start	= 80,
126 		.end	= 111,
127 	},
128 };
129 
130 static struct resource vlynq_high_res[] = {
131 	{
132 		.name	= "regs",
133 		.flags	= IORESOURCE_MEM,
134 		.start	= AR7_REGS_VLYNQ1,
135 		.end	= AR7_REGS_VLYNQ1 + 0xff,
136 	},
137 	{
138 		.name	= "irq",
139 		.flags	= IORESOURCE_IRQ,
140 		.start	= 33,
141 		.end	= 33,
142 	},
143 	{
144 		.name	= "mem",
145 		.flags	= IORESOURCE_MEM,
146 		.start	= 0x0c000000,
147 		.end	= 0x0cffffff,
148 	},
149 	{
150 		.name	= "devirq",
151 		.flags	= IORESOURCE_IRQ,
152 		.start	= 112,
153 		.end	= 143,
154 	},
155 };
156 
157 static struct plat_vlynq_data vlynq_low_data = {
158 	.ops = {
159 		.on	= vlynq_on,
160 		.off	= vlynq_off,
161 	},
162 	.reset_bit	= 20,
163 	.gpio_bit	= 18,
164 };
165 
166 static struct plat_vlynq_data vlynq_high_data = {
167 	.ops = {
168 		.on	= vlynq_on,
169 		.off	= vlynq_off,
170 	},
171 	.reset_bit	= 16,
172 	.gpio_bit	= 19,
173 };
174 
175 static struct platform_device vlynq_low = {
176 	.id		= 0,
177 	.name		= "vlynq",
178 	.dev = {
179 		.platform_data	= &vlynq_low_data,
180 	},
181 	.resource	= vlynq_low_res,
182 	.num_resources	= ARRAY_SIZE(vlynq_low_res),
183 };
184 
185 static struct platform_device vlynq_high = {
186 	.id		= 1,
187 	.name		= "vlynq",
188 	.dev = {
189 		.platform_data	= &vlynq_high_data,
190 	},
191 	.resource	= vlynq_high_res,
192 	.num_resources	= ARRAY_SIZE(vlynq_high_res),
193 };
194 
195 /*****************************************************************************
196  * Flash
197  ****************************************************************************/
198 static struct resource physmap_flash_resource = {
199 	.name	= "mem",
200 	.flags	= IORESOURCE_MEM,
201 	.start	= 0x10000000,
202 	.end	= 0x107fffff,
203 };
204 
205 static const char *ar7_probe_types[] = { "ar7part", NULL };
206 
207 static struct physmap_flash_data physmap_flash_data = {
208 	.width	= 2,
209 	.part_probe_types = ar7_probe_types,
210 };
211 
212 static struct platform_device physmap_flash = {
213 	.name		= "physmap-flash",
214 	.dev = {
215 		.platform_data	= &physmap_flash_data,
216 	},
217 	.resource	= &physmap_flash_resource,
218 	.num_resources	= 1,
219 };
220 
221 /*****************************************************************************
222  * Ethernet
223  ****************************************************************************/
224 static struct resource cpmac_low_res[] = {
225 	{
226 		.name	= "regs",
227 		.flags	= IORESOURCE_MEM,
228 		.start	= AR7_REGS_MAC0,
229 		.end	= AR7_REGS_MAC0 + 0x7ff,
230 	},
231 	{
232 		.name	= "irq",
233 		.flags	= IORESOURCE_IRQ,
234 		.start	= 27,
235 		.end	= 27,
236 	},
237 };
238 
239 static struct resource cpmac_high_res[] = {
240 	{
241 		.name	= "regs",
242 		.flags	= IORESOURCE_MEM,
243 		.start	= AR7_REGS_MAC1,
244 		.end	= AR7_REGS_MAC1 + 0x7ff,
245 	},
246 	{
247 		.name	= "irq",
248 		.flags	= IORESOURCE_IRQ,
249 		.start	= 41,
250 		.end	= 41,
251 	},
252 };
253 
254 static struct fixed_phy_status fixed_phy_status __initdata = {
255 	.link		= 1,
256 	.speed		= 100,
257 	.duplex		= 1,
258 };
259 
260 static struct plat_cpmac_data cpmac_low_data = {
261 	.reset_bit	= 17,
262 	.power_bit	= 20,
263 	.phy_mask	= 0x80000000,
264 };
265 
266 static struct plat_cpmac_data cpmac_high_data = {
267 	.reset_bit	= 21,
268 	.power_bit	= 22,
269 	.phy_mask	= 0x7fffffff,
270 };
271 
272 static u64 cpmac_dma_mask = DMA_BIT_MASK(32);
273 
274 static struct platform_device cpmac_low = {
275 	.id		= 0,
276 	.name		= "cpmac",
277 	.dev = {
278 		.dma_mask		= &cpmac_dma_mask,
279 		.coherent_dma_mask	= DMA_BIT_MASK(32),
280 		.platform_data		= &cpmac_low_data,
281 	},
282 	.resource	= cpmac_low_res,
283 	.num_resources	= ARRAY_SIZE(cpmac_low_res),
284 };
285 
286 static struct platform_device cpmac_high = {
287 	.id		= 1,
288 	.name		= "cpmac",
289 	.dev = {
290 		.dma_mask		= &cpmac_dma_mask,
291 		.coherent_dma_mask	= DMA_BIT_MASK(32),
292 		.platform_data		= &cpmac_high_data,
293 	},
294 	.resource	= cpmac_high_res,
295 	.num_resources	= ARRAY_SIZE(cpmac_high_res),
296 };
297 
298 static void __init cpmac_get_mac(int instance, unsigned char *dev_addr)
299 {
300 	char name[5], *mac;
301 
302 	sprintf(name, "mac%c", 'a' + instance);
303 	mac = prom_getenv(name);
304 	if (!mac && instance) {
305 		sprintf(name, "mac%c", 'a');
306 		mac = prom_getenv(name);
307 	}
308 
309 	if (mac) {
310 		if (sscanf(mac, "%hhx:%hhx:%hhx:%hhx:%hhx:%hhx",
311 					&dev_addr[0], &dev_addr[1],
312 					&dev_addr[2], &dev_addr[3],
313 					&dev_addr[4], &dev_addr[5]) != 6) {
314 			pr_warn("cannot parse mac address, using random address\n");
315 			eth_random_addr(dev_addr);
316 		}
317 	} else
318 		eth_random_addr(dev_addr);
319 }
320 
321 /*****************************************************************************
322  * USB
323  ****************************************************************************/
324 static struct resource usb_res[] = {
325 	{
326 		.name	= "regs",
327 		.flags	= IORESOURCE_MEM,
328 		.start	= AR7_REGS_USB,
329 		.end	= AR7_REGS_USB + 0xff,
330 	},
331 	{
332 		.name	= "irq",
333 		.flags	= IORESOURCE_IRQ,
334 		.start	= 32,
335 		.end	= 32,
336 	},
337 	{
338 		.name	= "mem",
339 		.flags	= IORESOURCE_MEM,
340 		.start	= 0x03400000,
341 		.end	= 0x03401fff,
342 	},
343 };
344 
345 static struct platform_device ar7_udc = {
346 	.name		= "ar7_udc",
347 	.resource	= usb_res,
348 	.num_resources	= ARRAY_SIZE(usb_res),
349 };
350 
351 /*****************************************************************************
352  * LEDs
353  ****************************************************************************/
354 static struct gpio_led default_leds[] = {
355 	{
356 		.name			= "status",
357 		.gpio			= 8,
358 		.active_low		= 1,
359 	},
360 };
361 
362 static struct gpio_led titan_leds[] = {
363 	{ .name = "status", .gpio = 8, .active_low = 1, },
364 	{ .name = "wifi", .gpio = 13, .active_low = 1, },
365 };
366 
367 static struct gpio_led dsl502t_leds[] = {
368 	{
369 		.name			= "status",
370 		.gpio			= 9,
371 		.active_low		= 1,
372 	},
373 	{
374 		.name			= "ethernet",
375 		.gpio			= 7,
376 		.active_low		= 1,
377 	},
378 	{
379 		.name			= "usb",
380 		.gpio			= 12,
381 		.active_low		= 1,
382 	},
383 };
384 
385 static struct gpio_led dg834g_leds[] = {
386 	{
387 		.name			= "ppp",
388 		.gpio			= 6,
389 		.active_low		= 1,
390 	},
391 	{
392 		.name			= "status",
393 		.gpio			= 7,
394 		.active_low		= 1,
395 	},
396 	{
397 		.name			= "adsl",
398 		.gpio			= 8,
399 		.active_low		= 1,
400 	},
401 	{
402 		.name			= "wifi",
403 		.gpio			= 12,
404 		.active_low		= 1,
405 	},
406 	{
407 		.name			= "power",
408 		.gpio			= 14,
409 		.active_low		= 1,
410 		.default_trigger	= "default-on",
411 	},
412 };
413 
414 static struct gpio_led fb_sl_leds[] = {
415 	{
416 		.name			= "1",
417 		.gpio			= 7,
418 	},
419 	{
420 		.name			= "2",
421 		.gpio			= 13,
422 		.active_low		= 1,
423 	},
424 	{
425 		.name			= "3",
426 		.gpio			= 10,
427 		.active_low		= 1,
428 	},
429 	{
430 		.name			= "4",
431 		.gpio			= 12,
432 		.active_low		= 1,
433 	},
434 	{
435 		.name			= "5",
436 		.gpio			= 9,
437 		.active_low		= 1,
438 	},
439 };
440 
441 static struct gpio_led fb_fon_leds[] = {
442 	{
443 		.name			= "1",
444 		.gpio			= 8,
445 	},
446 	{
447 		.name			= "2",
448 		.gpio			= 3,
449 		.active_low		= 1,
450 	},
451 	{
452 		.name			= "3",
453 		.gpio			= 5,
454 	},
455 	{
456 		.name			= "4",
457 		.gpio			= 4,
458 		.active_low		= 1,
459 	},
460 	{
461 		.name			= "5",
462 		.gpio			= 11,
463 		.active_low		= 1,
464 	},
465 };
466 
467 static struct gpio_led gt701_leds[] = {
468 	{
469 		.name			= "inet:green",
470 		.gpio			= 13,
471 		.active_low		= 1,
472 	},
473 	{
474 		.name			= "usb",
475 		.gpio			= 12,
476 		.active_low		= 1,
477 	},
478 	{
479 		.name			= "inet:red",
480 		.gpio			= 9,
481 		.active_low		= 1,
482 	},
483 	{
484 		.name			= "power:red",
485 		.gpio			= 7,
486 		.active_low		= 1,
487 	},
488 	{
489 		.name			= "power:green",
490 		.gpio			= 8,
491 		.active_low		= 1,
492 		.default_trigger	= "default-on",
493 	},
494 	{
495 		.name			= "ethernet",
496 		.gpio			= 10,
497 		.active_low		= 1,
498 	},
499 };
500 
501 static struct gpio_led_platform_data ar7_led_data;
502 
503 static struct platform_device ar7_gpio_leds = {
504 	.name = "leds-gpio",
505 	.dev = {
506 		.platform_data = &ar7_led_data,
507 	}
508 };
509 
510 static void __init detect_leds(void)
511 {
512 	char *prid, *usb_prod;
513 
514 	/* Default LEDs */
515 	ar7_led_data.num_leds = ARRAY_SIZE(default_leds);
516 	ar7_led_data.leds = default_leds;
517 
518 	/* FIXME: the whole thing is unreliable */
519 	prid = prom_getenv("ProductID");
520 	usb_prod = prom_getenv("usb_prod");
521 
522 	/* If we can't get the product id from PROM, use the default LEDs */
523 	if (!prid)
524 		return;
525 
526 	if (strstr(prid, "Fritz_Box_FON")) {
527 		ar7_led_data.num_leds = ARRAY_SIZE(fb_fon_leds);
528 		ar7_led_data.leds = fb_fon_leds;
529 	} else if (strstr(prid, "Fritz_Box_")) {
530 		ar7_led_data.num_leds = ARRAY_SIZE(fb_sl_leds);
531 		ar7_led_data.leds = fb_sl_leds;
532 	} else if ((!strcmp(prid, "AR7RD") || !strcmp(prid, "AR7DB"))
533 		&& usb_prod != NULL && strstr(usb_prod, "DSL-502T")) {
534 		ar7_led_data.num_leds = ARRAY_SIZE(dsl502t_leds);
535 		ar7_led_data.leds = dsl502t_leds;
536 	} else if (strstr(prid, "DG834")) {
537 		ar7_led_data.num_leds = ARRAY_SIZE(dg834g_leds);
538 		ar7_led_data.leds = dg834g_leds;
539 	} else if (strstr(prid, "CYWM") || strstr(prid, "CYWL")) {
540 		ar7_led_data.num_leds = ARRAY_SIZE(titan_leds);
541 		ar7_led_data.leds = titan_leds;
542 	} else if (strstr(prid, "GT701")) {
543 		ar7_led_data.num_leds = ARRAY_SIZE(gt701_leds);
544 		ar7_led_data.leds = gt701_leds;
545 	}
546 }
547 
548 /*****************************************************************************
549  * Watchdog
550  ****************************************************************************/
551 static struct resource ar7_wdt_res = {
552 	.name		= "regs",
553 	.flags		= IORESOURCE_MEM,
554 	.start		= -1,	/* Filled at runtime */
555 	.end		= -1,	/* Filled at runtime */
556 };
557 
558 static struct platform_device ar7_wdt = {
559 	.name		= "ar7_wdt",
560 	.resource	= &ar7_wdt_res,
561 	.num_resources	= 1,
562 };
563 
564 /*****************************************************************************
565  * Init
566  ****************************************************************************/
567 static int __init ar7_register_uarts(void)
568 {
569 #ifdef CONFIG_SERIAL_8250
570 	static struct uart_port uart_port __initdata;
571 	struct clk *bus_clk;
572 	int res;
573 
574 	memset(&uart_port, 0, sizeof(struct uart_port));
575 
576 	bus_clk = clk_get(NULL, "bus");
577 	if (IS_ERR(bus_clk))
578 		panic("unable to get bus clk");
579 
580 	uart_port.type		= PORT_AR7;
581 	uart_port.uartclk	= clk_get_rate(bus_clk) / 2;
582 	uart_port.iotype	= UPIO_MEM32;
583 	uart_port.regshift	= 2;
584 
585 	uart_port.line		= 0;
586 	uart_port.irq		= AR7_IRQ_UART0;
587 	uart_port.mapbase	= AR7_REGS_UART0;
588 	uart_port.membase	= ioremap(uart_port.mapbase, 256);
589 
590 	res = early_serial_setup(&uart_port);
591 	if (res)
592 		return res;
593 
594 	/* Only TNETD73xx have a second serial port */
595 	if (ar7_has_second_uart()) {
596 		uart_port.line		= 1;
597 		uart_port.irq		= AR7_IRQ_UART1;
598 		uart_port.mapbase	= UR8_REGS_UART1;
599 		uart_port.membase	= ioremap(uart_port.mapbase, 256);
600 
601 		res = early_serial_setup(&uart_port);
602 		if (res)
603 			return res;
604 	}
605 #endif
606 
607 	return 0;
608 }
609 
610 static void __init titan_fixup_devices(void)
611 {
612 	/* Set vlynq0 data */
613 	vlynq_low_data.reset_bit = 15;
614 	vlynq_low_data.gpio_bit = 14;
615 
616 	/* Set vlynq1 data */
617 	vlynq_high_data.reset_bit = 16;
618 	vlynq_high_data.gpio_bit = 7;
619 
620 	/* Set vlynq0 resources */
621 	vlynq_low_res[0].start = TITAN_REGS_VLYNQ0;
622 	vlynq_low_res[0].end = TITAN_REGS_VLYNQ0 + 0xff;
623 	vlynq_low_res[1].start = 33;
624 	vlynq_low_res[1].end = 33;
625 	vlynq_low_res[2].start = 0x0c000000;
626 	vlynq_low_res[2].end = 0x0fffffff;
627 	vlynq_low_res[3].start = 80;
628 	vlynq_low_res[3].end = 111;
629 
630 	/* Set vlynq1 resources */
631 	vlynq_high_res[0].start = TITAN_REGS_VLYNQ1;
632 	vlynq_high_res[0].end = TITAN_REGS_VLYNQ1 + 0xff;
633 	vlynq_high_res[1].start = 34;
634 	vlynq_high_res[1].end = 34;
635 	vlynq_high_res[2].start = 0x40000000;
636 	vlynq_high_res[2].end = 0x43ffffff;
637 	vlynq_high_res[3].start = 112;
638 	vlynq_high_res[3].end = 143;
639 
640 	/* Set cpmac0 data */
641 	cpmac_low_data.phy_mask = 0x40000000;
642 
643 	/* Set cpmac1 data */
644 	cpmac_high_data.phy_mask = 0x80000000;
645 
646 	/* Set cpmac0 resources */
647 	cpmac_low_res[0].start = TITAN_REGS_MAC0;
648 	cpmac_low_res[0].end = TITAN_REGS_MAC0 + 0x7ff;
649 
650 	/* Set cpmac1 resources */
651 	cpmac_high_res[0].start = TITAN_REGS_MAC1;
652 	cpmac_high_res[0].end = TITAN_REGS_MAC1 + 0x7ff;
653 }
654 
655 static int __init ar7_register_devices(void)
656 {
657 	void __iomem *bootcr;
658 	u32 val;
659 	int res;
660 
661 	res = ar7_register_uarts();
662 	if (res)
663 		pr_err("unable to setup uart(s): %d\n", res);
664 
665 	res = platform_device_register(&physmap_flash);
666 	if (res)
667 		pr_warn("unable to register physmap-flash: %d\n", res);
668 
669 	if (ar7_is_titan())
670 		titan_fixup_devices();
671 
672 	ar7_device_disable(vlynq_low_data.reset_bit);
673 	res = platform_device_register(&vlynq_low);
674 	if (res)
675 		pr_warn("unable to register vlynq-low: %d\n", res);
676 
677 	if (ar7_has_high_vlynq()) {
678 		ar7_device_disable(vlynq_high_data.reset_bit);
679 		res = platform_device_register(&vlynq_high);
680 		if (res)
681 			pr_warn("unable to register vlynq-high: %d\n", res);
682 	}
683 
684 	if (ar7_has_high_cpmac()) {
685 		res = fixed_phy_add(PHY_POLL, cpmac_high.id, &fixed_phy_status);
686 		if (!res) {
687 			cpmac_get_mac(1, cpmac_high_data.dev_addr);
688 
689 			res = platform_device_register(&cpmac_high);
690 			if (res)
691 				pr_warn("unable to register cpmac-high: %d\n",
692 					res);
693 		} else
694 			pr_warn("unable to add cpmac-high phy: %d\n", res);
695 	} else
696 		cpmac_low_data.phy_mask = 0xffffffff;
697 
698 	res = fixed_phy_add(PHY_POLL, cpmac_low.id, &fixed_phy_status);
699 	if (!res) {
700 		cpmac_get_mac(0, cpmac_low_data.dev_addr);
701 		res = platform_device_register(&cpmac_low);
702 		if (res)
703 			pr_warn("unable to register cpmac-low: %d\n", res);
704 	} else
705 		pr_warn("unable to add cpmac-low phy: %d\n", res);
706 
707 	detect_leds();
708 	res = platform_device_register(&ar7_gpio_leds);
709 	if (res)
710 		pr_warn("unable to register leds: %d\n", res);
711 
712 	res = platform_device_register(&ar7_udc);
713 	if (res)
714 		pr_warn("unable to register usb slave: %d\n", res);
715 
716 	/* Register watchdog only if enabled in hardware */
717 	bootcr = ioremap_nocache(AR7_REGS_DCL, 4);
718 	val = readl(bootcr);
719 	iounmap(bootcr);
720 	if (val & AR7_WDT_HW_ENA) {
721 		if (ar7_has_high_vlynq())
722 			ar7_wdt_res.start = UR8_REGS_WDT;
723 		else
724 			ar7_wdt_res.start = AR7_REGS_WDT;
725 
726 		ar7_wdt_res.end = ar7_wdt_res.start + 0x20;
727 		res = platform_device_register(&ar7_wdt);
728 		if (res)
729 			pr_warn("unable to register watchdog: %d\n", res);
730 	}
731 
732 	return 0;
733 }
734 device_initcall(ar7_register_devices);
735