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Merge commit '7185684' into omap-for-v3.10/timer
[karo-tx-linux.git] / arch / arm / mach-integrator / integrator_cp.c
1 /*
2  *  linux/arch/arm/mach-integrator/integrator_cp.c
3  *
4  *  Copyright (C) 2003 Deep Blue Solutions Ltd
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License as published by
8  * the Free Software Foundation; either version 2 of the License.
9  */
10 #include <linux/types.h>
11 #include <linux/kernel.h>
12 #include <linux/init.h>
13 #include <linux/list.h>
14 #include <linux/platform_device.h>
15 #include <linux/dma-mapping.h>
16 #include <linux/string.h>
17 #include <linux/device.h>
18 #include <linux/amba/bus.h>
19 #include <linux/amba/kmi.h>
20 #include <linux/amba/clcd.h>
21 #include <linux/amba/mmci.h>
22 #include <linux/io.h>
23 #include <linux/irqchip/versatile-fpga.h>
24 #include <linux/gfp.h>
25 #include <linux/mtd/physmap.h>
26 #include <linux/platform_data/clk-integrator.h>
27 #include <linux/of_irq.h>
28 #include <linux/of_address.h>
29 #include <linux/of_platform.h>
30 #include <linux/sys_soc.h>
31
32 #include <mach/hardware.h>
33 #include <mach/platform.h>
34 #include <asm/setup.h>
35 #include <asm/mach-types.h>
36 #include <asm/hardware/arm_timer.h>
37 #include <asm/hardware/icst.h>
38
39 #include <mach/cm.h>
40 #include <mach/lm.h>
41 #include <mach/irqs.h>
42
43 #include <asm/mach/arch.h>
44 #include <asm/mach/irq.h>
45 #include <asm/mach/map.h>
46 #include <asm/mach/time.h>
47
48 #include <asm/hardware/timer-sp.h>
49
50 #include <plat/clcd.h>
51 #include <plat/sched_clock.h>
52
53 #include "common.h"
54
55 /* Base address to the CP controller */
56 static void __iomem *intcp_con_base;
57
58 #define INTCP_PA_FLASH_BASE             0x24000000
59
60 #define INTCP_PA_CLCD_BASE              0xc0000000
61
62 #define INTCP_FLASHPROG                 0x04
63 #define CINTEGRATOR_FLASHPROG_FLVPPEN   (1 << 0)
64 #define CINTEGRATOR_FLASHPROG_FLWREN    (1 << 1)
65
66 /*
67  * Logical      Physical
68  * f1000000     10000000        Core module registers
69  * f1100000     11000000        System controller registers
70  * f1200000     12000000        EBI registers
71  * f1300000     13000000        Counter/Timer
72  * f1400000     14000000        Interrupt controller
73  * f1600000     16000000        UART 0
74  * f1700000     17000000        UART 1
75  * f1a00000     1a000000        Debug LEDs
76  * fc900000     c9000000        GPIO
77  * fca00000     ca000000        SIC
78  * fcb00000     cb000000        CP system control
79  */
80
81 static struct map_desc intcp_io_desc[] __initdata __maybe_unused = {
82         {
83                 .virtual        = IO_ADDRESS(INTEGRATOR_HDR_BASE),
84                 .pfn            = __phys_to_pfn(INTEGRATOR_HDR_BASE),
85                 .length         = SZ_4K,
86                 .type           = MT_DEVICE
87         }, {
88                 .virtual        = IO_ADDRESS(INTEGRATOR_EBI_BASE),
89                 .pfn            = __phys_to_pfn(INTEGRATOR_EBI_BASE),
90                 .length         = SZ_4K,
91                 .type           = MT_DEVICE
92         }, {
93                 .virtual        = IO_ADDRESS(INTEGRATOR_CT_BASE),
94                 .pfn            = __phys_to_pfn(INTEGRATOR_CT_BASE),
95                 .length         = SZ_4K,
96                 .type           = MT_DEVICE
97         }, {
98                 .virtual        = IO_ADDRESS(INTEGRATOR_IC_BASE),
99                 .pfn            = __phys_to_pfn(INTEGRATOR_IC_BASE),
100                 .length         = SZ_4K,
101                 .type           = MT_DEVICE
102         }, {
103                 .virtual        = IO_ADDRESS(INTEGRATOR_UART0_BASE),
104                 .pfn            = __phys_to_pfn(INTEGRATOR_UART0_BASE),
105                 .length         = SZ_4K,
106                 .type           = MT_DEVICE
107         }, {
108                 .virtual        = IO_ADDRESS(INTEGRATOR_DBG_BASE),
109                 .pfn            = __phys_to_pfn(INTEGRATOR_DBG_BASE),
110                 .length         = SZ_4K,
111                 .type           = MT_DEVICE
112         }, {
113                 .virtual        = IO_ADDRESS(INTEGRATOR_CP_GPIO_BASE),
114                 .pfn            = __phys_to_pfn(INTEGRATOR_CP_GPIO_BASE),
115                 .length         = SZ_4K,
116                 .type           = MT_DEVICE
117         }, {
118                 .virtual        = IO_ADDRESS(INTEGRATOR_CP_SIC_BASE),
119                 .pfn            = __phys_to_pfn(INTEGRATOR_CP_SIC_BASE),
120                 .length         = SZ_4K,
121                 .type           = MT_DEVICE
122         }
123 };
124
125 static void __init intcp_map_io(void)
126 {
127         iotable_init(intcp_io_desc, ARRAY_SIZE(intcp_io_desc));
128 }
129
130 /*
131  * Flash handling.
132  */
133 static int intcp_flash_init(struct platform_device *dev)
134 {
135         u32 val;
136
137         val = readl(intcp_con_base + INTCP_FLASHPROG);
138         val |= CINTEGRATOR_FLASHPROG_FLWREN;
139         writel(val, intcp_con_base + INTCP_FLASHPROG);
140
141         return 0;
142 }
143
144 static void intcp_flash_exit(struct platform_device *dev)
145 {
146         u32 val;
147
148         val = readl(intcp_con_base + INTCP_FLASHPROG);
149         val &= ~(CINTEGRATOR_FLASHPROG_FLVPPEN|CINTEGRATOR_FLASHPROG_FLWREN);
150         writel(val, intcp_con_base + INTCP_FLASHPROG);
151 }
152
153 static void intcp_flash_set_vpp(struct platform_device *pdev, int on)
154 {
155         u32 val;
156
157         val = readl(intcp_con_base + INTCP_FLASHPROG);
158         if (on)
159                 val |= CINTEGRATOR_FLASHPROG_FLVPPEN;
160         else
161                 val &= ~CINTEGRATOR_FLASHPROG_FLVPPEN;
162         writel(val, intcp_con_base + INTCP_FLASHPROG);
163 }
164
165 static struct physmap_flash_data intcp_flash_data = {
166         .width          = 4,
167         .init           = intcp_flash_init,
168         .exit           = intcp_flash_exit,
169         .set_vpp        = intcp_flash_set_vpp,
170 };
171
172 /*
173  * It seems that the card insertion interrupt remains active after
174  * we've acknowledged it.  We therefore ignore the interrupt, and
175  * rely on reading it from the SIC.  This also means that we must
176  * clear the latched interrupt.
177  */
178 static unsigned int mmc_status(struct device *dev)
179 {
180         unsigned int status = readl(__io_address(0xca000000 + 4));
181         writel(8, intcp_con_base + 8);
182
183         return status & 8;
184 }
185
186 static struct mmci_platform_data mmc_data = {
187         .ocr_mask       = MMC_VDD_32_33|MMC_VDD_33_34,
188         .status         = mmc_status,
189         .gpio_wp        = -1,
190         .gpio_cd        = -1,
191 };
192
193 /*
194  * CLCD support
195  */
196 /*
197  * Ensure VGA is selected.
198  */
199 static void cp_clcd_enable(struct clcd_fb *fb)
200 {
201         struct fb_var_screeninfo *var = &fb->fb.var;
202         u32 val = CM_CTRL_STATIC1 | CM_CTRL_STATIC2;
203
204         if (var->bits_per_pixel <= 8 ||
205             (var->bits_per_pixel == 16 && var->green.length == 5))
206                 /* Pseudocolor, RGB555, BGR555 */
207                 val |= CM_CTRL_LCDMUXSEL_VGA555_TFT555;
208         else if (fb->fb.var.bits_per_pixel <= 16)
209                 /* truecolor RGB565 */
210                 val |= CM_CTRL_LCDMUXSEL_VGA565_TFT555;
211         else
212                 val = 0; /* no idea for this, don't trust the docs */
213
214         cm_control(CM_CTRL_LCDMUXSEL_MASK|
215                    CM_CTRL_LCDEN0|
216                    CM_CTRL_LCDEN1|
217                    CM_CTRL_STATIC1|
218                    CM_CTRL_STATIC2|
219                    CM_CTRL_STATIC|
220                    CM_CTRL_n24BITEN, val);
221 }
222
223 static int cp_clcd_setup(struct clcd_fb *fb)
224 {
225         fb->panel = versatile_clcd_get_panel("VGA");
226         if (!fb->panel)
227                 return -EINVAL;
228
229         return versatile_clcd_setup_dma(fb, SZ_1M);
230 }
231
232 static struct clcd_board clcd_data = {
233         .name           = "Integrator/CP",
234         .caps           = CLCD_CAP_5551 | CLCD_CAP_RGB565 | CLCD_CAP_888,
235         .check          = clcdfb_check,
236         .decode         = clcdfb_decode,
237         .enable         = cp_clcd_enable,
238         .setup          = cp_clcd_setup,
239         .mmap           = versatile_clcd_mmap_dma,
240         .remove         = versatile_clcd_remove_dma,
241 };
242
243 #define REFCOUNTER (__io_address(INTEGRATOR_HDR_BASE) + 0x28)
244
245 static void __init intcp_init_early(void)
246 {
247 #ifdef CONFIG_PLAT_VERSATILE_SCHED_CLOCK
248         versatile_sched_clock_init(REFCOUNTER, 24000000);
249 #endif
250 }
251
252 #ifdef CONFIG_OF
253
254 static void __init cp_of_timer_init(void)
255 {
256         struct device_node *node;
257         const char *path;
258         void __iomem *base;
259         int err;
260         int irq;
261
262         err = of_property_read_string(of_aliases,
263                                 "arm,timer-primary", &path);
264         if (WARN_ON(err))
265                 return;
266         node = of_find_node_by_path(path);
267         base = of_iomap(node, 0);
268         if (WARN_ON(!base))
269                 return;
270         writel(0, base + TIMER_CTRL);
271         sp804_clocksource_init(base, node->name);
272
273         err = of_property_read_string(of_aliases,
274                                 "arm,timer-secondary", &path);
275         if (WARN_ON(err))
276                 return;
277         node = of_find_node_by_path(path);
278         base = of_iomap(node, 0);
279         if (WARN_ON(!base))
280                 return;
281         irq = irq_of_parse_and_map(node, 0);
282         writel(0, base + TIMER_CTRL);
283         sp804_clockevents_init(base, irq, node->name);
284 }
285
286 static const struct of_device_id fpga_irq_of_match[] __initconst = {
287         { .compatible = "arm,versatile-fpga-irq", .data = fpga_irq_of_init, },
288         { /* Sentinel */ }
289 };
290
291 static void __init intcp_init_irq_of(void)
292 {
293         of_irq_init(fpga_irq_of_match);
294         integrator_clk_init(true);
295 }
296
297 /*
298  * For the Device Tree, add in the UART, MMC and CLCD specifics as AUXDATA
299  * and enforce the bus names since these are used for clock lookups.
300  */
301 static struct of_dev_auxdata intcp_auxdata_lookup[] __initdata = {
302         OF_DEV_AUXDATA("arm,primecell", INTEGRATOR_RTC_BASE,
303                 "rtc", NULL),
304         OF_DEV_AUXDATA("arm,primecell", INTEGRATOR_UART0_BASE,
305                 "uart0", NULL),
306         OF_DEV_AUXDATA("arm,primecell", INTEGRATOR_UART1_BASE,
307                 "uart1", NULL),
308         OF_DEV_AUXDATA("arm,primecell", KMI0_BASE,
309                 "kmi0", NULL),
310         OF_DEV_AUXDATA("arm,primecell", KMI1_BASE,
311                 "kmi1", NULL),
312         OF_DEV_AUXDATA("arm,primecell", INTEGRATOR_CP_MMC_BASE,
313                 "mmci", &mmc_data),
314         OF_DEV_AUXDATA("arm,primecell", INTEGRATOR_CP_AACI_BASE,
315                 "aaci", &mmc_data),
316         OF_DEV_AUXDATA("arm,primecell", INTCP_PA_CLCD_BASE,
317                 "clcd", &clcd_data),
318         OF_DEV_AUXDATA("cfi-flash", INTCP_PA_FLASH_BASE,
319                 "physmap-flash", &intcp_flash_data),
320         { /* sentinel */ },
321 };
322
323 static void __init intcp_init_of(void)
324 {
325         struct device_node *root;
326         struct device_node *cpcon;
327         struct device *parent;
328         struct soc_device *soc_dev;
329         struct soc_device_attribute *soc_dev_attr;
330         u32 intcp_sc_id;
331         int err;
332
333         /* Here we create an SoC device for the root node */
334         root = of_find_node_by_path("/");
335         if (!root)
336                 return;
337         cpcon = of_find_node_by_path("/cpcon");
338         if (!cpcon)
339                 return;
340
341         intcp_con_base = of_iomap(cpcon, 0);
342         if (!intcp_con_base)
343                 return;
344
345         intcp_sc_id = readl(intcp_con_base);
346
347         soc_dev_attr = kzalloc(sizeof(*soc_dev_attr), GFP_KERNEL);
348         if (!soc_dev_attr)
349                 return;
350
351         err = of_property_read_string(root, "compatible",
352                                       &soc_dev_attr->soc_id);
353         if (err)
354                 return;
355         err = of_property_read_string(root, "model", &soc_dev_attr->machine);
356         if (err)
357                 return;
358         soc_dev_attr->family = "Integrator";
359         soc_dev_attr->revision = kasprintf(GFP_KERNEL, "%c",
360                                            'A' + (intcp_sc_id & 0x0f));
361
362         soc_dev = soc_device_register(soc_dev_attr);
363         if (IS_ERR(soc_dev)) {
364                 kfree(soc_dev_attr->revision);
365                 kfree(soc_dev_attr);
366                 return;
367         }
368
369         parent = soc_device_to_device(soc_dev);
370         integrator_init_sysfs(parent, intcp_sc_id);
371         of_platform_populate(root, of_default_bus_match_table,
372                         intcp_auxdata_lookup, parent);
373 }
374
375 static const char * intcp_dt_board_compat[] = {
376         "arm,integrator-cp",
377         NULL,
378 };
379
380 DT_MACHINE_START(INTEGRATOR_CP_DT, "ARM Integrator/CP (Device Tree)")
381         .reserve        = integrator_reserve,
382         .map_io         = intcp_map_io,
383         .init_early     = intcp_init_early,
384         .init_irq       = intcp_init_irq_of,
385         .handle_irq     = fpga_handle_irq,
386         .init_time      = cp_of_timer_init,
387         .init_machine   = intcp_init_of,
388         .restart        = integrator_restart,
389         .dt_compat      = intcp_dt_board_compat,
390 MACHINE_END
391
392 #endif
393
394 #ifdef CONFIG_ATAGS
395
396 /*
397  * For the ATAG boot some static mappings are needed. This will
398  * go away with the ATAG support down the road.
399  */
400
401 static struct map_desc intcp_io_desc_atag[] __initdata = {
402         {
403                 .virtual        = IO_ADDRESS(INTEGRATOR_CP_CTL_BASE),
404                 .pfn            = __phys_to_pfn(INTEGRATOR_CP_CTL_BASE),
405                 .length         = SZ_4K,
406                 .type           = MT_DEVICE
407         },
408 };
409
410 static void __init intcp_map_io_atag(void)
411 {
412         iotable_init(intcp_io_desc_atag, ARRAY_SIZE(intcp_io_desc_atag));
413         intcp_con_base = __io_address(INTEGRATOR_CP_CTL_BASE);
414         intcp_map_io();
415 }
416
417
418 /*
419  * This is where non-devicetree initialization code is collected and stashed
420  * for eventual deletion.
421  */
422
423 #define INTCP_FLASH_SIZE                SZ_32M
424
425 static struct resource intcp_flash_resource = {
426         .start          = INTCP_PA_FLASH_BASE,
427         .end            = INTCP_PA_FLASH_BASE + INTCP_FLASH_SIZE - 1,
428         .flags          = IORESOURCE_MEM,
429 };
430
431 static struct platform_device intcp_flash_device = {
432         .name           = "physmap-flash",
433         .id             = 0,
434         .dev            = {
435                 .platform_data  = &intcp_flash_data,
436         },
437         .num_resources  = 1,
438         .resource       = &intcp_flash_resource,
439 };
440
441 #define INTCP_ETH_SIZE                  0x10
442
443 static struct resource smc91x_resources[] = {
444         [0] = {
445                 .start  = INTEGRATOR_CP_ETH_BASE,
446                 .end    = INTEGRATOR_CP_ETH_BASE + INTCP_ETH_SIZE - 1,
447                 .flags  = IORESOURCE_MEM,
448         },
449         [1] = {
450                 .start  = IRQ_CP_ETHINT,
451                 .end    = IRQ_CP_ETHINT,
452                 .flags  = IORESOURCE_IRQ,
453         },
454 };
455
456 static struct platform_device smc91x_device = {
457         .name           = "smc91x",
458         .id             = 0,
459         .num_resources  = ARRAY_SIZE(smc91x_resources),
460         .resource       = smc91x_resources,
461 };
462
463 static struct platform_device *intcp_devs[] __initdata = {
464         &intcp_flash_device,
465         &smc91x_device,
466 };
467
468 #define INTCP_VA_CIC_BASE               __io_address(INTEGRATOR_HDR_BASE + 0x40)
469 #define INTCP_VA_PIC_BASE               __io_address(INTEGRATOR_IC_BASE)
470 #define INTCP_VA_SIC_BASE               __io_address(INTEGRATOR_CP_SIC_BASE)
471
472 static void __init intcp_init_irq(void)
473 {
474         u32 pic_mask, cic_mask, sic_mask;
475
476         /* These masks are for the HW IRQ registers */
477         pic_mask = ~((~0u) << (11 - 0));
478         pic_mask |= (~((~0u) << (29 - 22))) << 22;
479         cic_mask = ~((~0u) << (1 + IRQ_CIC_END - IRQ_CIC_START));
480         sic_mask = ~((~0u) << (1 + IRQ_SIC_END - IRQ_SIC_START));
481
482         /*
483          * Disable all interrupt sources
484          */
485         writel(0xffffffff, INTCP_VA_PIC_BASE + IRQ_ENABLE_CLEAR);
486         writel(0xffffffff, INTCP_VA_PIC_BASE + FIQ_ENABLE_CLEAR);
487         writel(0xffffffff, INTCP_VA_CIC_BASE + IRQ_ENABLE_CLEAR);
488         writel(0xffffffff, INTCP_VA_CIC_BASE + FIQ_ENABLE_CLEAR);
489         writel(sic_mask, INTCP_VA_SIC_BASE + IRQ_ENABLE_CLEAR);
490         writel(sic_mask, INTCP_VA_SIC_BASE + FIQ_ENABLE_CLEAR);
491
492         fpga_irq_init(INTCP_VA_PIC_BASE, "PIC", IRQ_PIC_START,
493                       -1, pic_mask, NULL);
494
495         fpga_irq_init(INTCP_VA_CIC_BASE, "CIC", IRQ_CIC_START,
496                       -1, cic_mask, NULL);
497
498         fpga_irq_init(INTCP_VA_SIC_BASE, "SIC", IRQ_SIC_START,
499                       IRQ_CP_CPPLDINT, sic_mask, NULL);
500
501         integrator_clk_init(true);
502 }
503
504 #define TIMER0_VA_BASE __io_address(INTEGRATOR_TIMER0_BASE)
505 #define TIMER1_VA_BASE __io_address(INTEGRATOR_TIMER1_BASE)
506 #define TIMER2_VA_BASE __io_address(INTEGRATOR_TIMER2_BASE)
507
508 static void __init cp_timer_init(void)
509 {
510         writel(0, TIMER0_VA_BASE + TIMER_CTRL);
511         writel(0, TIMER1_VA_BASE + TIMER_CTRL);
512         writel(0, TIMER2_VA_BASE + TIMER_CTRL);
513
514         sp804_clocksource_init(TIMER2_VA_BASE, "timer2");
515         sp804_clockevents_init(TIMER1_VA_BASE, IRQ_TIMERINT1, "timer1");
516 }
517
518 #define INTEGRATOR_CP_MMC_IRQS  { IRQ_CP_MMCIINT0, IRQ_CP_MMCIINT1 }
519 #define INTEGRATOR_CP_AACI_IRQS { IRQ_CP_AACIINT }
520
521 static AMBA_APB_DEVICE(mmc, "mmci", 0, INTEGRATOR_CP_MMC_BASE,
522         INTEGRATOR_CP_MMC_IRQS, &mmc_data);
523
524 static AMBA_APB_DEVICE(aaci, "aaci", 0, INTEGRATOR_CP_AACI_BASE,
525         INTEGRATOR_CP_AACI_IRQS, NULL);
526
527 static AMBA_AHB_DEVICE(clcd, "clcd", 0, INTCP_PA_CLCD_BASE,
528         { IRQ_CP_CLCDCINT }, &clcd_data);
529
530 static struct amba_device *amba_devs[] __initdata = {
531         &mmc_device,
532         &aaci_device,
533         &clcd_device,
534 };
535
536 static void __init intcp_init(void)
537 {
538         int i;
539
540         platform_add_devices(intcp_devs, ARRAY_SIZE(intcp_devs));
541
542         for (i = 0; i < ARRAY_SIZE(amba_devs); i++) {
543                 struct amba_device *d = amba_devs[i];
544                 amba_device_register(d, &iomem_resource);
545         }
546         integrator_init(true);
547 }
548
549 MACHINE_START(CINTEGRATOR, "ARM-IntegratorCP")
550         /* Maintainer: ARM Ltd/Deep Blue Solutions Ltd */
551         .atag_offset    = 0x100,
552         .reserve        = integrator_reserve,
553         .map_io         = intcp_map_io_atag,
554         .init_early     = intcp_init_early,
555         .init_irq       = intcp_init_irq,
556         .handle_irq     = fpga_handle_irq,
557         .init_time      = cp_timer_init,
558         .init_machine   = intcp_init,
559         .restart        = integrator_restart,
560 MACHINE_END
561
562 #endif