blob: 28499455396546c4de6c72d2c931c2b5979ddd9e [file] [log] [blame]
David Collinsb4558422012-01-05 10:50:49 -08001/* Copyright (c) 2011-2012, Code Aurora Forum. All rights reserved.
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 */
13#include <linux/kernel.h>
14#include <linux/platform_device.h>
15#include <linux/io.h>
16#include <linux/irq.h>
17#include <linux/i2c.h>
18#include <linux/i2c/sx150x.h>
19#include <linux/i2c/isl9519.h>
20#include <linux/gpio.h>
21#include <linux/msm_ssbi.h>
22#include <linux/regulator/gpio-regulator.h>
23#include <linux/mfd/pm8xxx/pm8921.h>
24#include <linux/mfd/pm8xxx/pm8xxx-adc.h>
25#include <linux/regulator/consumer.h>
26#include <linux/spi/spi.h>
27#include <linux/slimbus/slimbus.h>
28#include <linux/bootmem.h>
29#include <linux/msm_kgsl.h>
30#ifdef CONFIG_ANDROID_PMEM
31#include <linux/android_pmem.h>
32#endif
33#include <linux/cyttsp.h>
34#include <linux/dma-mapping.h>
35#include <linux/platform_data/qcom_crypto_device.h>
36#include <linux/platform_data/qcom_wcnss_device.h>
37#include <linux/leds.h>
38#include <linux/leds-pm8xxx.h>
39#include <linux/i2c/atmel_mxt_ts.h>
40#include <linux/msm_tsens.h>
41#include <linux/ks8851.h>
42#include <linux/i2c/isa1200.h>
Anirudh Ghayaleb3af972011-12-13 17:29:06 +053043#include <linux/gpio_keys.h>
Stepan Moskovchenko39236d72011-11-30 17:42:23 -080044
45#include <asm/mach-types.h>
46#include <asm/mach/arch.h>
47#include <asm/setup.h>
48#include <asm/hardware/gic.h>
49#include <asm/mach/mmc.h>
50
51#include <mach/board.h>
52#include <mach/msm_iomap.h>
53#include <mach/msm_spi.h>
54#ifdef CONFIG_USB_MSM_OTG_72K
55#include <mach/msm_hsusb.h>
56#else
57#include <linux/usb/msm_hsusb.h>
58#endif
59#include <linux/usb/android.h>
60#include <mach/usbdiag.h>
61#include <mach/socinfo.h>
62#include <mach/rpm.h>
63#include <mach/gpio.h>
64#include <mach/gpiomux.h>
65#include <mach/msm_bus_board.h>
66#include <mach/msm_memtypes.h>
67#include <mach/dma.h>
Stepan Moskovchenko39236d72011-11-30 17:42:23 -080068#include <mach/msm_xo.h>
69#include <mach/restart.h>
70
71#ifdef CONFIG_WCD9310_CODEC
72#include <linux/slimbus/slimbus.h>
73#include <linux/mfd/wcd9310/core.h>
74#include <linux/mfd/wcd9310/pdata.h>
75#endif
76
77#include <linux/ion.h>
78#include <mach/ion.h>
79#include <mach/mdm2.h>
80
81#include "timer.h"
82#include "devices.h"
83#include "devices-msm8x60.h"
84#include "spm.h"
Abhijeet Dharmapurikarefaca4f2011-12-27 16:24:07 -080085#include <mach/pm.h>
86#include <mach/cpuidle.h>
Stepan Moskovchenko39236d72011-11-30 17:42:23 -080087#include "rpm_resources.h"
88#include "mpm.h"
89#include "acpuclock.h"
90#include "rpm_log.h"
91#include "smd_private.h"
92#include "pm-boot.h"
93#include "msm_watchdog.h"
Jay Chokshi06fa7542011-12-07 13:09:17 -080094#include "board-8930.h"
Stepan Moskovchenko39236d72011-11-30 17:42:23 -080095
Stepan Moskovchenko39236d72011-11-30 17:42:23 -080096static struct platform_device msm_fm_platform_init = {
97 .name = "iris_fm",
98 .id = -1,
99};
100
101#define KS8851_RST_GPIO 89
102#define KS8851_IRQ_GPIO 90
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800103#define HAP_SHIFT_LVL_OE_GPIO 47
104
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800105#if defined(CONFIG_GPIO_SX150X) || defined(CONFIG_GPIO_SX150X_MODULE)
106
107struct sx150x_platform_data msm8930_sx150x_data[] = {
108 [SX150X_CAM] = {
109 .gpio_base = GPIO_CAM_EXPANDER_BASE,
110 .oscio_is_gpo = false,
111 .io_pullup_ena = 0x0,
112 .io_pulldn_ena = 0xc0,
113 .io_open_drain_ena = 0x0,
114 .irq_summary = -1,
115 },
116};
117
118#endif
119
120#define MSM_PMEM_ADSP_SIZE 0x3800000
Ben Romberger3ffcd812011-12-08 19:12:10 -0800121#define MSM_PMEM_AUDIO_SIZE 0x2B4000
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800122#ifdef CONFIG_FB_MSM_HDMI_AS_PRIMARY
123#define MSM_PMEM_SIZE 0x4000000 /* 64 Mbytes */
124#else
125#define MSM_PMEM_SIZE 0x1C00000 /* 28 Mbytes */
126#endif
127
128
129#ifdef CONFIG_MSM_MULTIMEDIA_USE_ION
130#define MSM_PMEM_KERNEL_EBI1_SIZE 0xB0C000
Olav Haugan42ebe712012-01-10 16:30:58 -0800131#define MSM_ION_SF_SIZE 0x2800000 /* 40MB */
132#define MSM_ION_MM_FW_SIZE 0x200000 /* (2MB) */
Olav Hauganb5be7992011-11-18 14:29:02 -0800133#define MSM_ION_MM_SIZE 0x4000000 /* (64MB) */
134#define MSM_ION_MFC_SIZE SZ_8K
Olav Haugan42ebe712012-01-10 16:30:58 -0800135#define MSM_ION_HEAP_NUM 6
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800136#else
137#define MSM_PMEM_KERNEL_EBI1_SIZE 0x110C000
Olav Hauganb5be7992011-11-18 14:29:02 -0800138#define MSM_ION_HEAP_NUM 1
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800139#endif
140
141#ifdef CONFIG_KERNEL_PMEM_EBI_REGION
142static unsigned pmem_kernel_ebi1_size = MSM_PMEM_KERNEL_EBI1_SIZE;
143static int __init pmem_kernel_ebi1_size_setup(char *p)
144{
145 pmem_kernel_ebi1_size = memparse(p, NULL);
146 return 0;
147}
148early_param("pmem_kernel_ebi1_size", pmem_kernel_ebi1_size_setup);
149#endif
150
151#ifdef CONFIG_ANDROID_PMEM
152static unsigned pmem_size = MSM_PMEM_SIZE;
153static int __init pmem_size_setup(char *p)
154{
155 pmem_size = memparse(p, NULL);
156 return 0;
157}
158early_param("pmem_size", pmem_size_setup);
159
160static unsigned pmem_adsp_size = MSM_PMEM_ADSP_SIZE;
161
162static int __init pmem_adsp_size_setup(char *p)
163{
164 pmem_adsp_size = memparse(p, NULL);
165 return 0;
166}
167early_param("pmem_adsp_size", pmem_adsp_size_setup);
168
169static unsigned pmem_audio_size = MSM_PMEM_AUDIO_SIZE;
170
171static int __init pmem_audio_size_setup(char *p)
172{
173 pmem_audio_size = memparse(p, NULL);
174 return 0;
175}
176early_param("pmem_audio_size", pmem_audio_size_setup);
177#endif
178
179#ifdef CONFIG_ANDROID_PMEM
180#ifndef CONFIG_MSM_MULTIMEDIA_USE_ION
181static struct android_pmem_platform_data android_pmem_pdata = {
182 .name = "pmem",
183 .allocator_type = PMEM_ALLOCATORTYPE_ALLORNOTHING,
184 .cached = 1,
185 .memory_type = MEMTYPE_EBI1,
186};
187
188static struct platform_device android_pmem_device = {
189 .name = "android_pmem",
190 .id = 0,
191 .dev = {.platform_data = &android_pmem_pdata},
192};
193
194static struct android_pmem_platform_data android_pmem_adsp_pdata = {
195 .name = "pmem_adsp",
196 .allocator_type = PMEM_ALLOCATORTYPE_BITMAP,
197 .cached = 0,
198 .memory_type = MEMTYPE_EBI1,
199};
200static struct platform_device android_pmem_adsp_device = {
201 .name = "android_pmem",
202 .id = 2,
203 .dev = { .platform_data = &android_pmem_adsp_pdata },
204};
205#endif
206
207static struct android_pmem_platform_data android_pmem_audio_pdata = {
208 .name = "pmem_audio",
209 .allocator_type = PMEM_ALLOCATORTYPE_BITMAP,
210 .cached = 0,
211 .memory_type = MEMTYPE_EBI1,
212};
213
214static struct platform_device android_pmem_audio_device = {
215 .name = "android_pmem",
216 .id = 4,
217 .dev = { .platform_data = &android_pmem_audio_pdata },
218};
219#endif
220
221#define DSP_RAM_BASE_8960 0x8da00000
222#define DSP_RAM_SIZE_8960 0x1800000
223static int dspcrashd_pdata_8960 = 0xDEADDEAD;
224
225static struct resource resources_dspcrashd_8960[] = {
226 {
227 .name = "msm_dspcrashd",
228 .start = DSP_RAM_BASE_8960,
229 .end = DSP_RAM_BASE_8960 + DSP_RAM_SIZE_8960,
230 .flags = IORESOURCE_DMA,
231 },
232};
233
234static struct platform_device msm_device_dspcrashd_8960 = {
235 .name = "msm_dspcrashd",
236 .num_resources = ARRAY_SIZE(resources_dspcrashd_8960),
237 .resource = resources_dspcrashd_8960,
238 .dev = { .platform_data = &dspcrashd_pdata_8960 },
239};
240
241static struct memtype_reserve msm8930_reserve_table[] __initdata = {
242 [MEMTYPE_SMI] = {
243 },
244 [MEMTYPE_EBI0] = {
245 .flags = MEMTYPE_FLAGS_1M_ALIGN,
246 },
247 [MEMTYPE_EBI1] = {
248 .flags = MEMTYPE_FLAGS_1M_ALIGN,
249 },
250};
251
252static void __init size_pmem_devices(void)
253{
254#ifdef CONFIG_ANDROID_PMEM
255#ifndef CONFIG_MSM_MULTIMEDIA_USE_ION
256 android_pmem_adsp_pdata.size = pmem_adsp_size;
257 android_pmem_pdata.size = pmem_size;
258#endif
259 android_pmem_audio_pdata.size = MSM_PMEM_AUDIO_SIZE;
260#endif
261}
262
263static void __init reserve_memory_for(struct android_pmem_platform_data *p)
264{
265 msm8930_reserve_table[p->memory_type].size += p->size;
266}
267
268static void __init reserve_pmem_memory(void)
269{
270#ifdef CONFIG_ANDROID_PMEM
271#ifndef CONFIG_MSM_MULTIMEDIA_USE_ION
272 reserve_memory_for(&android_pmem_adsp_pdata);
273 reserve_memory_for(&android_pmem_pdata);
274#endif
275 reserve_memory_for(&android_pmem_audio_pdata);
276 msm8930_reserve_table[MEMTYPE_EBI1].size += pmem_kernel_ebi1_size;
277#endif
278}
279
280static int msm8930_paddr_to_memtype(unsigned int paddr)
281{
282 return MEMTYPE_EBI1;
283}
284
285#ifdef CONFIG_ION_MSM
Olav Haugan0703dbf2011-12-19 17:53:38 -0800286#ifdef CONFIG_MSM_MULTIMEDIA_USE_ION
287static struct ion_cp_heap_pdata cp_mm_ion_pdata = {
288 .permission_type = IPT_TYPE_MM_CARVEOUT,
Olav Haugan42ebe712012-01-10 16:30:58 -0800289 .align = PAGE_SIZE,
Olav Haugan0703dbf2011-12-19 17:53:38 -0800290};
291
292static struct ion_cp_heap_pdata cp_mfc_ion_pdata = {
293 .permission_type = IPT_TYPE_MFC_SHAREDMEM,
Olav Haugan42ebe712012-01-10 16:30:58 -0800294 .align = PAGE_SIZE,
Olav Haugan0703dbf2011-12-19 17:53:38 -0800295};
296static struct ion_co_heap_pdata co_ion_pdata = {
Olav Haugan42ebe712012-01-10 16:30:58 -0800297 .adjacent_mem_id = INVALID_HEAP_ID,
298 .align = PAGE_SIZE,
299};
300static struct ion_co_heap_pdata fw_co_ion_pdata = {
301 .adjacent_mem_id = ION_CP_MM_HEAP_ID,
302 .align = SZ_128K,
Olav Haugan0703dbf2011-12-19 17:53:38 -0800303};
304#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800305static struct ion_platform_data ion_pdata = {
306 .nr = MSM_ION_HEAP_NUM,
307 .heaps = {
308 {
Olav Hauganb5be7992011-11-18 14:29:02 -0800309 .id = ION_SYSTEM_HEAP_ID,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800310 .type = ION_HEAP_TYPE_SYSTEM,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800311 .name = ION_VMALLOC_HEAP_NAME,
312 },
313#ifdef CONFIG_MSM_MULTIMEDIA_USE_ION
314 {
Olav Hauganb5be7992011-11-18 14:29:02 -0800315 .id = ION_SF_HEAP_ID,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800316 .type = ION_HEAP_TYPE_CARVEOUT,
Olav Hauganb5be7992011-11-18 14:29:02 -0800317 .name = ION_SF_HEAP_NAME,
318 .size = MSM_ION_SF_SIZE,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800319 .memory_type = ION_EBI_TYPE,
Olav Haugan42ebe712012-01-10 16:30:58 -0800320 .extra_data = (void *) &co_ion_pdata,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800321 },
322 {
Olav Hauganb5be7992011-11-18 14:29:02 -0800323 .id = ION_CP_MM_HEAP_ID,
Olav Haugan0a852512012-01-09 10:20:55 -0800324 .type = ION_HEAP_TYPE_CP,
Olav Hauganb5be7992011-11-18 14:29:02 -0800325 .name = ION_MM_HEAP_NAME,
326 .size = MSM_ION_MM_SIZE,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800327 .memory_type = ION_EBI_TYPE,
Olav Haugan0703dbf2011-12-19 17:53:38 -0800328 .extra_data = (void *) &cp_mm_ion_pdata,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800329 },
Olav Hauganb5be7992011-11-18 14:29:02 -0800330 {
Olav Haugan42ebe712012-01-10 16:30:58 -0800331 .id = ION_MM_FIRMWARE_HEAP_ID,
332 .type = ION_HEAP_TYPE_CARVEOUT,
333 .name = ION_MM_FIRMWARE_HEAP_NAME,
334 .size = MSM_ION_MM_FW_SIZE,
335 .memory_type = ION_EBI_TYPE,
336 .extra_data = (void *) &fw_co_ion_pdata,
337 },
338 {
Olav Hauganb5be7992011-11-18 14:29:02 -0800339 .id = ION_CP_MFC_HEAP_ID,
Olav Haugan0a852512012-01-09 10:20:55 -0800340 .type = ION_HEAP_TYPE_CP,
Olav Hauganb5be7992011-11-18 14:29:02 -0800341 .name = ION_MFC_HEAP_NAME,
342 .size = MSM_ION_MFC_SIZE,
343 .memory_type = ION_EBI_TYPE,
Olav Haugan0703dbf2011-12-19 17:53:38 -0800344 .extra_data = (void *) &cp_mfc_ion_pdata,
Olav Hauganb5be7992011-11-18 14:29:02 -0800345 },
346 {
347 .id = ION_IOMMU_HEAP_ID,
348 .type = ION_HEAP_TYPE_IOMMU,
349 .name = ION_IOMMU_HEAP_NAME,
350 },
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800351#endif
352 }
353};
354
355static struct platform_device ion_dev = {
356 .name = "ion-msm",
357 .id = 1,
358 .dev = { .platform_data = &ion_pdata },
359};
360#endif
361
362static void reserve_ion_memory(void)
363{
364#if defined(CONFIG_ION_MSM) && defined(CONFIG_MSM_MULTIMEDIA_USE_ION)
Olav Hauganb5be7992011-11-18 14:29:02 -0800365 msm8930_reserve_table[MEMTYPE_EBI1].size += MSM_ION_SF_SIZE;
366 msm8930_reserve_table[MEMTYPE_EBI1].size += MSM_ION_MM_SIZE;
Olav Haugan42ebe712012-01-10 16:30:58 -0800367 msm8930_reserve_table[MEMTYPE_EBI1].size += MSM_ION_MM_FW_SIZE;
Olav Hauganb5be7992011-11-18 14:29:02 -0800368 msm8930_reserve_table[MEMTYPE_EBI1].size += MSM_ION_MFC_SIZE;
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800369#endif
370}
Huaibin Yanga5419422011-12-08 23:52:10 -0800371
372static void __init reserve_mdp_memory(void)
373{
374 msm8930_mdp_writeback(msm8930_reserve_table);
375}
376
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800377static void __init msm8930_calculate_reserve_sizes(void)
378{
379 size_pmem_devices();
380 reserve_pmem_memory();
381 reserve_ion_memory();
Huaibin Yanga5419422011-12-08 23:52:10 -0800382 reserve_mdp_memory();
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800383}
384
385static struct reserve_info msm8930_reserve_info __initdata = {
386 .memtype_reserve_table = msm8930_reserve_table,
387 .calculate_reserve_sizes = msm8930_calculate_reserve_sizes,
388 .paddr_to_memtype = msm8930_paddr_to_memtype,
389};
390
391static int msm8930_memory_bank_size(void)
392{
393 return 1<<29;
394}
395
396static void __init locate_unstable_memory(void)
397{
398 struct membank *mb = &meminfo.bank[meminfo.nr_banks - 1];
399 unsigned long bank_size;
400 unsigned long low, high;
401
402 bank_size = msm8930_memory_bank_size();
403 low = meminfo.bank[0].start;
404 high = mb->start + mb->size;
405
406 /* Check if 32 bit overflow occured */
407 if (high < mb->start)
408 high = ~0UL;
409
410 low &= ~(bank_size - 1);
411
412 if (high - low <= bank_size)
413 return;
414 msm8930_reserve_info.low_unstable_address = low + bank_size;
415 /* To avoid overflow of u32 compute max_unstable_size
416 * by first subtracting low from mb->start)
417 * */
418 msm8930_reserve_info.max_unstable_size = (mb->start - low) +
419 mb->size - bank_size;
420
421 msm8930_reserve_info.bank_size = bank_size;
422 pr_info("low unstable address %lx max size %lx bank size %lx\n",
423 msm8930_reserve_info.low_unstable_address,
424 msm8930_reserve_info.max_unstable_size,
425 msm8930_reserve_info.bank_size);
426}
427
428static void __init place_movable_zone(void)
429{
430 movable_reserved_start = msm8930_reserve_info.low_unstable_address;
431 movable_reserved_size = msm8930_reserve_info.max_unstable_size;
432 pr_info("movable zone start %lx size %lx\n",
433 movable_reserved_start, movable_reserved_size);
434}
435
436static void __init msm8930_early_memory(void)
437{
438 reserve_info = &msm8930_reserve_info;
439 locate_unstable_memory();
440 place_movable_zone();
441}
442
443static void __init msm8930_reserve(void)
444{
445 msm_reserve();
446}
447
448static int msm8930_change_memory_power(u64 start, u64 size,
449 int change_type)
450{
451 return soc_change_memory_power(start, size, change_type);
452}
453
454static void __init msm8930_allocate_memory_regions(void)
455{
456 msm8930_allocate_fb_region();
457}
458
459#ifdef CONFIG_WCD9310_CODEC
460
461#define TABLA_INTERRUPT_BASE (NR_MSM_IRQS + NR_GPIO_IRQS + NR_PM8921_IRQS)
462
463/* Micbias setting is based on 8660 CDP/MTP/FLUID requirement
464 * 4 micbiases are used to power various analog and digital
465 * microphones operating at 1800 mV. Technically, all micbiases
466 * can source from single cfilter since all microphones operate
467 * at the same voltage level. The arrangement below is to make
468 * sure all cfilters are exercised. LDO_H regulator ouput level
469 * does not need to be as high as 2.85V. It is choosen for
470 * microphone sensitivity purpose.
471 */
472static struct tabla_pdata tabla_platform_data = {
473 .slimbus_slave_device = {
474 .name = "tabla-slave",
475 .e_addr = {0, 0, 0x10, 0, 0x17, 2},
476 },
477 .irq = MSM_GPIO_TO_INT(62),
478 .irq_base = TABLA_INTERRUPT_BASE,
479 .num_irqs = NR_TABLA_IRQS,
Jay Chokshi06fa7542011-12-07 13:09:17 -0800480
481/*TODO: Replace this with right PM8038 gpio */
482#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800483 .reset_gpio = PM8921_GPIO_PM_TO_SYS(34),
Jay Chokshi06fa7542011-12-07 13:09:17 -0800484#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800485 .micbias = {
486 .ldoh_v = TABLA_LDOH_2P85_V,
487 .cfilt1_mv = 1800,
488 .cfilt2_mv = 1800,
489 .cfilt3_mv = 1800,
490 .bias1_cfilt_sel = TABLA_CFILT1_SEL,
491 .bias2_cfilt_sel = TABLA_CFILT2_SEL,
492 .bias3_cfilt_sel = TABLA_CFILT3_SEL,
493 .bias4_cfilt_sel = TABLA_CFILT3_SEL,
494 }
495};
496
497static struct slim_device msm_slim_tabla = {
498 .name = "tabla-slim",
499 .e_addr = {0, 1, 0x10, 0, 0x17, 2},
500 .dev = {
501 .platform_data = &tabla_platform_data,
502 },
503};
504
505static struct tabla_pdata tabla20_platform_data = {
506 .slimbus_slave_device = {
507 .name = "tabla-slave",
508 .e_addr = {0, 0, 0x60, 0, 0x17, 2},
509 },
510 .irq = MSM_GPIO_TO_INT(62),
511 .irq_base = TABLA_INTERRUPT_BASE,
512 .num_irqs = NR_TABLA_IRQS,
Jay Chokshi06fa7542011-12-07 13:09:17 -0800513
514/*TODO: Replace this with right PM8038 gpio */
515#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800516 .reset_gpio = PM8921_GPIO_PM_TO_SYS(34),
Jay Chokshi06fa7542011-12-07 13:09:17 -0800517#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800518 .micbias = {
519 .ldoh_v = TABLA_LDOH_2P85_V,
520 .cfilt1_mv = 1800,
521 .cfilt2_mv = 1800,
522 .cfilt3_mv = 1800,
523 .bias1_cfilt_sel = TABLA_CFILT1_SEL,
524 .bias2_cfilt_sel = TABLA_CFILT2_SEL,
525 .bias3_cfilt_sel = TABLA_CFILT3_SEL,
526 .bias4_cfilt_sel = TABLA_CFILT3_SEL,
527 }
528};
529
530static struct slim_device msm_slim_tabla20 = {
531 .name = "tabla2x-slim",
532 .e_addr = {0, 1, 0x60, 0, 0x17, 2},
533 .dev = {
534 .platform_data = &tabla20_platform_data,
535 },
536};
537#endif
538
539static struct slim_boardinfo msm_slim_devices[] = {
540#ifdef CONFIG_WCD9310_CODEC
541 {
542 .bus_num = 1,
543 .slim_slave = &msm_slim_tabla,
544 },
545 {
546 .bus_num = 1,
547 .slim_slave = &msm_slim_tabla20,
548 },
549#endif
550 /* add more slimbus slaves as needed */
551};
552
553#define MSM_WCNSS_PHYS 0x03000000
554#define MSM_WCNSS_SIZE 0x280000
555
556static struct resource resources_wcnss_wlan[] = {
557 {
558 .start = RIVA_APPS_WLAN_RX_DATA_AVAIL_IRQ,
559 .end = RIVA_APPS_WLAN_RX_DATA_AVAIL_IRQ,
560 .name = "wcnss_wlanrx_irq",
561 .flags = IORESOURCE_IRQ,
562 },
563 {
564 .start = RIVA_APPS_WLAN_DATA_XFER_DONE_IRQ,
565 .end = RIVA_APPS_WLAN_DATA_XFER_DONE_IRQ,
566 .name = "wcnss_wlantx_irq",
567 .flags = IORESOURCE_IRQ,
568 },
569 {
570 .start = MSM_WCNSS_PHYS,
571 .end = MSM_WCNSS_PHYS + MSM_WCNSS_SIZE - 1,
572 .name = "wcnss_mmio",
573 .flags = IORESOURCE_MEM,
574 },
575 {
576 .start = 84,
577 .end = 88,
578 .name = "wcnss_gpios_5wire",
579 .flags = IORESOURCE_IO,
580 },
581};
582
583static struct qcom_wcnss_opts qcom_wcnss_pdata = {
584 .has_48mhz_xo = 1,
585};
586
587static struct platform_device msm_device_wcnss_wlan = {
588 .name = "wcnss_wlan",
589 .id = 0,
590 .num_resources = ARRAY_SIZE(resources_wcnss_wlan),
591 .resource = resources_wcnss_wlan,
592 .dev = {.platform_data = &qcom_wcnss_pdata},
593};
594
595#if defined(CONFIG_CRYPTO_DEV_QCRYPTO) || \
596 defined(CONFIG_CRYPTO_DEV_QCRYPTO_MODULE) || \
597 defined(CONFIG_CRYPTO_DEV_QCEDEV) || \
598 defined(CONFIG_CRYPTO_DEV_QCEDEV_MODULE)
599
600#define QCE_SIZE 0x10000
601#define QCE_0_BASE 0x18500000
602
603#define QCE_HW_KEY_SUPPORT 0
604#define QCE_SHA_HMAC_SUPPORT 1
605#define QCE_SHARE_CE_RESOURCE 1
606#define QCE_CE_SHARED 0
607
608static struct resource qcrypto_resources[] = {
609 [0] = {
610 .start = QCE_0_BASE,
611 .end = QCE_0_BASE + QCE_SIZE - 1,
612 .flags = IORESOURCE_MEM,
613 },
614 [1] = {
615 .name = "crypto_channels",
616 .start = DMOV_CE_IN_CHAN,
617 .end = DMOV_CE_OUT_CHAN,
618 .flags = IORESOURCE_DMA,
619 },
620 [2] = {
621 .name = "crypto_crci_in",
622 .start = DMOV_CE_IN_CRCI,
623 .end = DMOV_CE_IN_CRCI,
624 .flags = IORESOURCE_DMA,
625 },
626 [3] = {
627 .name = "crypto_crci_out",
628 .start = DMOV_CE_OUT_CRCI,
629 .end = DMOV_CE_OUT_CRCI,
630 .flags = IORESOURCE_DMA,
631 },
632};
633
634static struct resource qcedev_resources[] = {
635 [0] = {
636 .start = QCE_0_BASE,
637 .end = QCE_0_BASE + QCE_SIZE - 1,
638 .flags = IORESOURCE_MEM,
639 },
640 [1] = {
641 .name = "crypto_channels",
642 .start = DMOV_CE_IN_CHAN,
643 .end = DMOV_CE_OUT_CHAN,
644 .flags = IORESOURCE_DMA,
645 },
646 [2] = {
647 .name = "crypto_crci_in",
648 .start = DMOV_CE_IN_CRCI,
649 .end = DMOV_CE_IN_CRCI,
650 .flags = IORESOURCE_DMA,
651 },
652 [3] = {
653 .name = "crypto_crci_out",
654 .start = DMOV_CE_OUT_CRCI,
655 .end = DMOV_CE_OUT_CRCI,
656 .flags = IORESOURCE_DMA,
657 },
658};
659
660#endif
661
662#if defined(CONFIG_CRYPTO_DEV_QCRYPTO) || \
663 defined(CONFIG_CRYPTO_DEV_QCRYPTO_MODULE)
664
665static struct msm_ce_hw_support qcrypto_ce_hw_suppport = {
666 .ce_shared = QCE_CE_SHARED,
667 .shared_ce_resource = QCE_SHARE_CE_RESOURCE,
668 .hw_key_support = QCE_HW_KEY_SUPPORT,
669 .sha_hmac = QCE_SHA_HMAC_SUPPORT,
670};
671
672static struct platform_device qcrypto_device = {
673 .name = "qcrypto",
674 .id = 0,
675 .num_resources = ARRAY_SIZE(qcrypto_resources),
676 .resource = qcrypto_resources,
677 .dev = {
678 .coherent_dma_mask = DMA_BIT_MASK(32),
679 .platform_data = &qcrypto_ce_hw_suppport,
680 },
681};
682#endif
683
684#if defined(CONFIG_CRYPTO_DEV_QCEDEV) || \
685 defined(CONFIG_CRYPTO_DEV_QCEDEV_MODULE)
686
687static struct msm_ce_hw_support qcedev_ce_hw_suppport = {
688 .ce_shared = QCE_CE_SHARED,
689 .shared_ce_resource = QCE_SHARE_CE_RESOURCE,
690 .hw_key_support = QCE_HW_KEY_SUPPORT,
691 .sha_hmac = QCE_SHA_HMAC_SUPPORT,
692};
693
694static struct platform_device qcedev_device = {
695 .name = "qce",
696 .id = 0,
697 .num_resources = ARRAY_SIZE(qcedev_resources),
698 .resource = qcedev_resources,
699 .dev = {
700 .coherent_dma_mask = DMA_BIT_MASK(32),
701 .platform_data = &qcedev_ce_hw_suppport,
702 },
703};
704#endif
705
706#define MDM2AP_ERRFATAL 70
707#define AP2MDM_ERRFATAL 95
708#define MDM2AP_STATUS 69
709#define AP2MDM_STATUS 94
710#define AP2MDM_PMIC_RESET_N 80
711#define AP2MDM_KPDPWR_N 81
712
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800713static struct resource mdm_resources[] = {
714 {
715 .start = MDM2AP_ERRFATAL,
716 .end = MDM2AP_ERRFATAL,
717 .name = "MDM2AP_ERRFATAL",
718 .flags = IORESOURCE_IO,
719 },
720 {
721 .start = AP2MDM_ERRFATAL,
722 .end = AP2MDM_ERRFATAL,
723 .name = "AP2MDM_ERRFATAL",
724 .flags = IORESOURCE_IO,
725 },
726 {
727 .start = MDM2AP_STATUS,
728 .end = MDM2AP_STATUS,
729 .name = "MDM2AP_STATUS",
730 .flags = IORESOURCE_IO,
731 },
732 {
733 .start = AP2MDM_STATUS,
734 .end = AP2MDM_STATUS,
735 .name = "AP2MDM_STATUS",
736 .flags = IORESOURCE_IO,
737 },
738 {
739 .start = AP2MDM_PMIC_RESET_N,
740 .end = AP2MDM_PMIC_RESET_N,
741 .name = "AP2MDM_PMIC_RESET_N",
742 .flags = IORESOURCE_IO,
743 },
744 {
745 .start = AP2MDM_KPDPWR_N,
746 .end = AP2MDM_KPDPWR_N,
747 .name = "AP2MDM_KPDPWR_N",
748 .flags = IORESOURCE_IO,
749 },
750};
751
752static struct mdm_platform_data mdm_platform_data = {
753 .mdm_version = "2.5",
754};
755
756static struct platform_device mdm_device = {
757 .name = "mdm2_modem",
758 .id = -1,
759 .num_resources = ARRAY_SIZE(mdm_resources),
760 .resource = mdm_resources,
761 .dev = {
762 .platform_data = &mdm_platform_data,
763 },
764};
765
766static struct platform_device *mdm_devices[] __initdata = {
767 &mdm_device,
768};
769
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800770#define MSM_SHARED_RAM_PHYS 0x80000000
771
772static void __init msm8930_map_io(void)
773{
774 msm_shared_ram_phys = MSM_SHARED_RAM_PHYS;
775 msm_map_msm8930_io();
776
777 if (socinfo_init() < 0)
778 pr_err("socinfo_init() failed!\n");
779}
780
781static void __init msm8930_init_irq(void)
782{
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800783 msm_mpm_irq_extn_init();
784 gic_init(0, GIC_PPI_START, MSM_QGIC_DIST_BASE,
785 (void *)MSM_QGIC_CPU_BASE);
786
787 /* Edge trigger PPIs except AVS_SVICINT and AVS_SVICINTSWDONE */
788 writel_relaxed(0xFFFFD7FF, MSM_QGIC_DIST_BASE + GIC_DIST_CONFIG + 4);
789
790 writel_relaxed(0x0000FFFF, MSM_QGIC_DIST_BASE + GIC_DIST_ENABLE_SET);
791 mb();
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800792}
793
794static void __init msm8930_init_buses(void)
795{
796#ifdef CONFIG_MSM_BUS_SCALING
797 msm_bus_rpm_set_mt_mask();
798 msm_bus_8960_apps_fabric_pdata.rpm_enabled = 1;
799 msm_bus_8960_sys_fabric_pdata.rpm_enabled = 1;
800 msm_bus_8960_mm_fabric_pdata.rpm_enabled = 1;
801 msm_bus_apps_fabric.dev.platform_data =
802 &msm_bus_8960_apps_fabric_pdata;
803 msm_bus_sys_fabric.dev.platform_data = &msm_bus_8960_sys_fabric_pdata;
804 msm_bus_mm_fabric.dev.platform_data = &msm_bus_8960_mm_fabric_pdata;
805 msm_bus_sys_fpb.dev.platform_data = &msm_bus_8960_sys_fpb_pdata;
806 msm_bus_cpss_fpb.dev.platform_data = &msm_bus_8960_cpss_fpb_pdata;
807#endif
808}
809
810static struct msm_spi_platform_data msm8960_qup_spi_gsbi1_pdata = {
811 .max_clock_speed = 15060000,
812};
813
814#ifdef CONFIG_USB_MSM_OTG_72K
815static struct msm_otg_platform_data msm_otg_pdata;
816#else
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800817static struct msm_otg_platform_data msm_otg_pdata = {
818 .mode = USB_OTG,
819 .otg_control = OTG_PMIC_CONTROL,
820 .phy_type = SNPS_28NM_INTEGRATED_PHY,
Jay Chokshi06fa7542011-12-07 13:09:17 -0800821 .pmic_id_irq = PM8038_USB_ID_IN_IRQ(PM8038_IRQ_BASE),
Stepan Moskovchenko39236d72011-11-30 17:42:23 -0800822 .power_budget = 750,
823};
824#endif
825
826#ifdef CONFIG_USB_EHCI_MSM_HSIC
827#define HSIC_HUB_RESET_GPIO 91
828static struct msm_hsic_host_platform_data msm_hsic_pdata = {
829 .strobe = 150,
830 .data = 151,
831};
832#else
833static struct msm_hsic_host_platform_data msm_hsic_pdata;
834#endif
835
836#define PID_MAGIC_ID 0x71432909
837#define SERIAL_NUM_MAGIC_ID 0x61945374
838#define SERIAL_NUMBER_LENGTH 127
839#define DLOAD_USB_BASE_ADD 0x2A03F0C8
840
841struct magic_num_struct {
842 uint32_t pid;
843 uint32_t serial_num;
844};
845
846struct dload_struct {
847 uint32_t reserved1;
848 uint32_t reserved2;
849 uint32_t reserved3;
850 uint16_t reserved4;
851 uint16_t pid;
852 char serial_number[SERIAL_NUMBER_LENGTH];
853 uint16_t reserved5;
854 struct magic_num_struct magic_struct;
855};
856
857static int usb_diag_update_pid_and_serial_num(uint32_t pid, const char *snum)
858{
859 struct dload_struct __iomem *dload = 0;
860
861 dload = ioremap(DLOAD_USB_BASE_ADD, sizeof(*dload));
862 if (!dload) {
863 pr_err("%s: cannot remap I/O memory region: %08x\n",
864 __func__, DLOAD_USB_BASE_ADD);
865 return -ENXIO;
866 }
867
868 pr_debug("%s: dload:%p pid:%x serial_num:%s\n",
869 __func__, dload, pid, snum);
870 /* update pid */
871 dload->magic_struct.pid = PID_MAGIC_ID;
872 dload->pid = pid;
873
874 /* update serial number */
875 dload->magic_struct.serial_num = 0;
876 if (!snum) {
877 memset(dload->serial_number, 0, SERIAL_NUMBER_LENGTH);
878 goto out;
879 }
880
881 dload->magic_struct.serial_num = SERIAL_NUM_MAGIC_ID;
882 strlcpy(dload->serial_number, snum, SERIAL_NUMBER_LENGTH);
883out:
884 iounmap(dload);
885 return 0;
886}
887
888static struct android_usb_platform_data android_usb_pdata = {
889 .update_pid_and_serial_num = usb_diag_update_pid_and_serial_num,
890};
891
892static struct platform_device android_usb_device = {
893 .name = "android_usb",
894 .id = -1,
895 .dev = {
896 .platform_data = &android_usb_pdata,
897 },
898};
899
900static uint8_t spm_wfi_cmd_sequence[] __initdata = {
901 0x03, 0x0f,
902};
903
904static uint8_t spm_power_collapse_without_rpm[] __initdata = {
905 0x00, 0x24, 0x54, 0x10,
906 0x09, 0x03, 0x01,
907 0x10, 0x54, 0x30, 0x0C,
908 0x24, 0x30, 0x0f,
909};
910
911static uint8_t spm_power_collapse_with_rpm[] __initdata = {
912 0x00, 0x24, 0x54, 0x10,
913 0x09, 0x07, 0x01, 0x0B,
914 0x10, 0x54, 0x30, 0x0C,
915 0x24, 0x30, 0x0f,
916};
917
918static struct msm_spm_seq_entry msm_spm_seq_list[] __initdata = {
919 [0] = {
920 .mode = MSM_SPM_MODE_CLOCK_GATING,
921 .notify_rpm = false,
922 .cmd = spm_wfi_cmd_sequence,
923 },
924 [1] = {
925 .mode = MSM_SPM_MODE_POWER_COLLAPSE,
926 .notify_rpm = false,
927 .cmd = spm_power_collapse_without_rpm,
928 },
929 [2] = {
930 .mode = MSM_SPM_MODE_POWER_COLLAPSE,
931 .notify_rpm = true,
932 .cmd = spm_power_collapse_with_rpm,
933 },
934};
935
936static struct msm_spm_platform_data msm_spm_data[] __initdata = {
937 [0] = {
938 .reg_base_addr = MSM_SAW0_BASE,
939 .reg_init_values[MSM_SPM_REG_SAW2_SECURE] = 0x00,
940 .reg_init_values[MSM_SPM_REG_SAW2_CFG] = 0x1F,
941 .reg_init_values[MSM_SPM_REG_SAW2_VCTL] = 0x9C,
942#if defined(CONFIG_MSM_AVS_HW)
943 .reg_init_values[MSM_SPM_REG_SAW2_AVS_CTL] = 0x00,
944 .reg_init_values[MSM_SPM_REG_SAW2_AVS_HYSTERESIS] = 0x00,
945#endif
946 .reg_init_values[MSM_SPM_REG_SAW2_SPM_CTL] = 0x01,
947 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DLY] = 0x02020202,
948 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DATA_0] = 0x0060009C,
949 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DATA_1] = 0x0000001C,
950 .vctl_timeout_us = 50,
951 .num_modes = ARRAY_SIZE(msm_spm_seq_list),
952 .modes = msm_spm_seq_list,
953 },
954 [1] = {
955 .reg_base_addr = MSM_SAW1_BASE,
956 .reg_init_values[MSM_SPM_REG_SAW2_SECURE] = 0x00,
957 .reg_init_values[MSM_SPM_REG_SAW2_CFG] = 0x1F,
958 .reg_init_values[MSM_SPM_REG_SAW2_VCTL] = 0x9C,
959#if defined(CONFIG_MSM_AVS_HW)
960 .reg_init_values[MSM_SPM_REG_SAW2_AVS_CTL] = 0x00,
961 .reg_init_values[MSM_SPM_REG_SAW2_AVS_HYSTERESIS] = 0x00,
962#endif
963 .reg_init_values[MSM_SPM_REG_SAW2_SPM_CTL] = 0x01,
964 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DLY] = 0x02020202,
965 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DATA_0] = 0x0060009C,
966 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DATA_1] = 0x0000001C,
967 .vctl_timeout_us = 50,
968 .num_modes = ARRAY_SIZE(msm_spm_seq_list),
969 .modes = msm_spm_seq_list,
970 },
971};
972
973static uint8_t l2_spm_wfi_cmd_sequence[] __initdata = {
974 0x00, 0x20, 0x03, 0x20,
975 0x00, 0x0f,
976};
977
978static uint8_t l2_spm_gdhs_cmd_sequence[] __initdata = {
979 0x00, 0x20, 0x34, 0x64,
980 0x48, 0x07, 0x48, 0x20,
981 0x50, 0x64, 0x04, 0x34,
982 0x50, 0x0f,
983};
984static uint8_t l2_spm_power_off_cmd_sequence[] __initdata = {
985 0x00, 0x10, 0x34, 0x64,
986 0x48, 0x07, 0x48, 0x10,
987 0x50, 0x64, 0x04, 0x34,
988 0x50, 0x0F,
989};
990
991static struct msm_spm_seq_entry msm_spm_l2_seq_list[] __initdata = {
992 [0] = {
993 .mode = MSM_SPM_L2_MODE_RETENTION,
994 .notify_rpm = false,
995 .cmd = l2_spm_wfi_cmd_sequence,
996 },
997 [1] = {
998 .mode = MSM_SPM_L2_MODE_GDHS,
999 .notify_rpm = true,
1000 .cmd = l2_spm_gdhs_cmd_sequence,
1001 },
1002 [2] = {
1003 .mode = MSM_SPM_L2_MODE_POWER_COLLAPSE,
1004 .notify_rpm = true,
1005 .cmd = l2_spm_power_off_cmd_sequence,
1006 },
1007};
1008
1009static struct msm_spm_platform_data msm_spm_l2_data[] __initdata = {
1010 [0] = {
1011 .reg_base_addr = MSM_SAW_L2_BASE,
1012 .reg_init_values[MSM_SPM_REG_SAW2_SECURE] = 0x00,
1013 .reg_init_values[MSM_SPM_REG_SAW2_SPM_CTL] = 0x00,
1014 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DLY] = 0x02020202,
1015 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DATA_0] = 0x00A000AE,
1016 .reg_init_values[MSM_SPM_REG_SAW2_PMIC_DATA_1] = 0x00A00020,
1017 .modes = msm_spm_l2_seq_list,
1018 .num_modes = ARRAY_SIZE(msm_spm_l2_seq_list),
1019 },
1020};
1021
Jay Chokshi06fa7542011-12-07 13:09:17 -08001022#/* TODO: Remove this once PM8038 physically becomes
1023 * available.
1024 */
1025#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001026#define PM_HAP_EN_GPIO PM8921_GPIO_PM_TO_SYS(33)
1027#define PM_HAP_LEN_GPIO PM8921_GPIO_PM_TO_SYS(20)
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301028#else
1029#define ISA1200_HAP_EN_GPIO 77
1030#define ISA1200_HAP_LEN_GPIO 78
1031#define ISA1200_HAP_CLK PM8038_GPIO_PM_TO_SYS(7)
Jay Chokshi06fa7542011-12-07 13:09:17 -08001032#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001033
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301034#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001035static struct msm_xo_voter *xo_handle_d1;
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301036#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001037
1038static int isa1200_power(int on)
1039{
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301040#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001041 int rc = 0;
1042
1043 gpio_set_value(HAP_SHIFT_LVL_OE_GPIO, !!on);
1044
1045 rc = on ? msm_xo_mode_vote(xo_handle_d1, MSM_XO_MODE_ON) :
1046 msm_xo_mode_vote(xo_handle_d1, MSM_XO_MODE_OFF);
1047 if (rc < 0) {
1048 pr_err("%s: failed to %svote for TCXO D1 buffer%d\n",
1049 __func__, on ? "" : "de-", rc);
1050 goto err_xo_vote;
1051 }
1052
1053 return 0;
1054
1055err_xo_vote:
1056 gpio_set_value(HAP_SHIFT_LVL_OE_GPIO, !on);
1057 return rc;
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301058#else
1059 gpio_set_value_cansleep(ISA1200_HAP_CLK, !!on);
1060
1061 return 0;
1062#endif
1063
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001064}
1065
1066static int isa1200_dev_setup(bool enable)
1067{
1068 int rc = 0;
1069
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301070#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001071 struct pm_gpio hap_gpio_config = {
1072 .direction = PM_GPIO_DIR_OUT,
1073 .pull = PM_GPIO_PULL_NO,
1074 .out_strength = PM_GPIO_STRENGTH_HIGH,
1075 .function = PM_GPIO_FUNC_NORMAL,
1076 .inv_int_pol = 0,
1077 .vin_sel = 2,
1078 .output_buffer = PM_GPIO_OUT_BUF_CMOS,
1079 .output_value = 0,
1080 };
1081
1082 if (enable == true) {
1083 rc = pm8xxx_gpio_config(PM_HAP_EN_GPIO, &hap_gpio_config);
1084 if (rc) {
1085 pr_err("%s: pm8921 gpio %d config failed(%d)\n",
1086 __func__, PM_HAP_EN_GPIO, rc);
1087 return rc;
1088 }
1089
1090 rc = pm8xxx_gpio_config(PM_HAP_LEN_GPIO, &hap_gpio_config);
1091 if (rc) {
1092 pr_err("%s: pm8921 gpio %d config failed(%d)\n",
1093 __func__, PM_HAP_LEN_GPIO, rc);
1094 return rc;
1095 }
1096
1097 rc = gpio_request(HAP_SHIFT_LVL_OE_GPIO, "hap_shft_lvl_oe");
1098 if (rc) {
1099 pr_err("%s: unable to request gpio %d (%d)\n",
1100 __func__, HAP_SHIFT_LVL_OE_GPIO, rc);
1101 return rc;
1102 }
1103
1104 rc = gpio_direction_output(HAP_SHIFT_LVL_OE_GPIO, 0);
1105 if (rc) {
1106 pr_err("%s: Unable to set direction\n", __func__);
1107 goto free_gpio;
1108 }
1109
1110 xo_handle_d1 = msm_xo_get(MSM_XO_TCXO_D1, "isa1200");
1111 if (IS_ERR(xo_handle_d1)) {
1112 rc = PTR_ERR(xo_handle_d1);
1113 pr_err("%s: failed to get the handle for D1(%d)\n",
1114 __func__, rc);
1115 goto gpio_set_dir;
1116 }
1117 } else {
1118 gpio_free(HAP_SHIFT_LVL_OE_GPIO);
1119
1120 msm_xo_put(xo_handle_d1);
1121 }
1122
1123 return 0;
1124
1125gpio_set_dir:
1126 gpio_set_value(HAP_SHIFT_LVL_OE_GPIO, 0);
1127free_gpio:
1128 gpio_free(HAP_SHIFT_LVL_OE_GPIO);
1129 return rc;
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301130#else
1131 struct pm_gpio hap_clk_gpio_config = {
1132 .direction = PM_GPIO_DIR_OUT,
1133 .pull = PM_GPIO_PULL_NO,
1134 .out_strength = PM_GPIO_STRENGTH_HIGH,
1135 .function = PM_GPIO_FUNC_1,
1136 .inv_int_pol = 0,
1137 .vin_sel = PM_GPIO_VIN_S4,
1138 .output_buffer = PM_GPIO_OUT_BUF_CMOS,
1139 .output_value = 0,
1140 };
1141
1142 rc = pm8xxx_gpio_config(ISA1200_HAP_CLK, &hap_clk_gpio_config);
1143 if (rc) {
1144 pr_err("%s: pm8038 gpio %d config failed(%d)\n",
1145 __func__, ISA1200_HAP_CLK, rc);
1146 return rc;
1147 }
1148
1149 rc = gpio_request(ISA1200_HAP_CLK, "haptics_clk");
1150 if (rc) {
1151 pr_err("%s: gpio_request for %d gpio failed rc(%d)\n",
1152 __func__, ISA1200_HAP_CLK, rc);
1153 goto fail_gpio_req;
1154 }
1155
1156 rc = gpio_direction_output(ISA1200_HAP_CLK, 0);
1157 if (rc) {
1158 pr_err("%s: gpio_direction_output failed for %d gpio rc(%d)\n",
1159 __func__, ISA1200_HAP_CLK, rc);
1160 goto fail_gpio_dir;
1161 }
1162
1163 return 0;
1164
1165fail_gpio_dir:
1166 gpio_free(ISA1200_HAP_CLK);
1167fail_gpio_req:
1168 return rc;
1169
1170#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001171}
1172
1173static struct isa1200_regulator isa1200_reg_data[] = {
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301174#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001175 {
1176 .name = "vcc_i2c",
1177 .min_uV = ISA_I2C_VTG_MIN_UV,
1178 .max_uV = ISA_I2C_VTG_MAX_UV,
1179 .load_uA = ISA_I2C_CURR_UA,
1180 },
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301181#else
1182 {
1183 .name = "vddp",
1184 .min_uV = ISA_I2C_VTG_MIN_UV,
1185 .max_uV = ISA_I2C_VTG_MAX_UV,
1186 .load_uA = ISA_I2C_CURR_UA,
1187 },
1188#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001189};
1190
1191static struct isa1200_platform_data isa1200_1_pdata = {
1192 .name = "vibrator",
1193 .dev_setup = isa1200_dev_setup,
1194 .power_on = isa1200_power,
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301195#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001196 .hap_en_gpio = PM_HAP_EN_GPIO,
1197 .hap_len_gpio = PM_HAP_LEN_GPIO,
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05301198#else
1199 .hap_en_gpio = ISA1200_HAP_EN_GPIO,
1200 .hap_len_gpio = ISA1200_HAP_LEN_GPIO,
1201#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001202 .max_timeout = 15000,
1203 .mode_ctrl = PWM_GEN_MODE,
1204 .pwm_fd = {
1205 .pwm_div = 256,
1206 },
1207 .is_erm = false,
1208 .smart_en = true,
1209 .ext_clk_en = true,
1210 .chip_en = 1,
1211 .regulator_info = isa1200_reg_data,
1212 .num_regulators = ARRAY_SIZE(isa1200_reg_data),
1213};
1214
1215static struct i2c_board_info msm_isa1200_board_info[] __initdata = {
1216 {
1217 I2C_BOARD_INFO("isa1200_1", 0x90>>1),
1218 .platform_data = &isa1200_1_pdata,
1219 },
1220};
1221
1222#define CYTTSP_TS_GPIO_IRQ 11
1223#define CYTTSP_TS_SLEEP_GPIO 50
1224#define CYTTSP_TS_RESOUT_N_GPIO 52
1225
1226/*virtual key support */
1227static ssize_t tma340_vkeys_show(struct kobject *kobj,
1228 struct kobj_attribute *attr, char *buf)
1229{
1230 return snprintf(buf, 200,
1231 __stringify(EV_KEY) ":" __stringify(KEY_BACK) ":73:1120:97:97"
1232 ":" __stringify(EV_KEY) ":" __stringify(KEY_MENU) ":230:1120:97:97"
1233 ":" __stringify(EV_KEY) ":" __stringify(KEY_HOME) ":389:1120:97:97"
1234 ":" __stringify(EV_KEY) ":" __stringify(KEY_SEARCH) ":544:1120:97:97"
1235 "\n");
1236}
1237
1238static struct kobj_attribute tma340_vkeys_attr = {
1239 .attr = {
1240 .mode = S_IRUGO,
1241 },
1242 .show = &tma340_vkeys_show,
1243};
1244
1245static struct attribute *tma340_properties_attrs[] = {
1246 &tma340_vkeys_attr.attr,
1247 NULL
1248};
1249
1250static struct attribute_group tma340_properties_attr_group = {
1251 .attrs = tma340_properties_attrs,
1252};
1253
1254
1255static int cyttsp_platform_init(struct i2c_client *client)
1256{
1257 int rc = 0;
1258 static struct kobject *tma340_properties_kobj;
1259
1260 tma340_vkeys_attr.attr.name = "virtualkeys.cyttsp-i2c";
1261 tma340_properties_kobj = kobject_create_and_add("board_properties",
1262 NULL);
1263 if (tma340_properties_kobj)
1264 rc = sysfs_create_group(tma340_properties_kobj,
1265 &tma340_properties_attr_group);
1266 if (!tma340_properties_kobj || rc)
1267 pr_err("%s: failed to create board_properties\n",
1268 __func__);
1269
1270 return 0;
1271}
1272
1273static struct cyttsp_regulator regulator_data[] = {
1274 {
1275 .name = "vdd",
1276 .min_uV = CY_TMA300_VTG_MIN_UV,
1277 .max_uV = CY_TMA300_VTG_MAX_UV,
1278 .hpm_load_uA = CY_TMA300_CURR_24HZ_UA,
1279 .lpm_load_uA = CY_TMA300_SLEEP_CURR_UA,
1280 },
1281 /* TODO: Remove after runtime PM is enabled in I2C driver */
1282 {
1283 .name = "vcc_i2c",
1284 .min_uV = CY_I2C_VTG_MIN_UV,
1285 .max_uV = CY_I2C_VTG_MAX_UV,
1286 .hpm_load_uA = CY_I2C_CURR_UA,
1287 .lpm_load_uA = CY_I2C_SLEEP_CURR_UA,
1288 },
1289};
1290
1291static struct cyttsp_platform_data cyttsp_pdata = {
1292 .panel_maxx = 634,
1293 .panel_maxy = 1166,
1294 .disp_maxx = 616,
1295 .disp_maxy = 1023,
1296 .disp_minx = 0,
1297 .disp_miny = 16,
1298 .flags = 0x01,
1299 .gen = CY_GEN3, /* or */
1300 .use_st = CY_USE_ST,
1301 .use_mt = CY_USE_MT,
1302 .use_hndshk = CY_SEND_HNDSHK,
1303 .use_trk_id = CY_USE_TRACKING_ID,
1304 .use_sleep = CY_USE_DEEP_SLEEP_SEL | CY_USE_LOW_POWER_SEL,
1305 .use_gestures = CY_USE_GESTURES,
1306 .fw_fname = "cyttsp_8960_cdp.hex",
1307 /* activate up to 4 groups
1308 * and set active distance
1309 */
1310 .gest_set = CY_GEST_GRP1 | CY_GEST_GRP2 |
1311 CY_GEST_GRP3 | CY_GEST_GRP4 |
1312 CY_ACT_DIST,
1313 /* change act_intrvl to customize the Active power state
1314 * scanning/processing refresh interval for Operating mode
1315 */
1316 .act_intrvl = CY_ACT_INTRVL_DFLT,
1317 /* change tch_tmout to customize the touch timeout for the
1318 * Active power state for Operating mode
1319 */
1320 .tch_tmout = CY_TCH_TMOUT_DFLT,
1321 /* change lp_intrvl to customize the Low Power power state
1322 * scanning/processing refresh interval for Operating mode
1323 */
1324 .lp_intrvl = CY_LP_INTRVL_DFLT,
1325 .sleep_gpio = CYTTSP_TS_SLEEP_GPIO,
1326 .resout_gpio = CYTTSP_TS_RESOUT_N_GPIO,
1327 .irq_gpio = CYTTSP_TS_GPIO_IRQ,
1328 .regulator_info = regulator_data,
1329 .num_regulators = ARRAY_SIZE(regulator_data),
1330 .init = cyttsp_platform_init,
1331 .correct_fw_ver = 9,
1332};
1333
1334static struct i2c_board_info cyttsp_info[] __initdata = {
1335 {
1336 I2C_BOARD_INFO(CY_I2C_NAME, 0x24),
1337 .platform_data = &cyttsp_pdata,
1338#ifndef CY_USE_TIMER
1339 .irq = MSM_GPIO_TO_INT(CYTTSP_TS_GPIO_IRQ),
1340#endif /* CY_USE_TIMER */
1341 },
1342};
1343
Amy Malochef3c9db42011-12-08 15:17:35 -08001344#define MXT_TS_GPIO_IRQ 11
1345#define MXT_TS_RESET_GPIO 52
1346
1347static const u8 mxt_config_data_8930[] = {
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001348 /* T6 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001349 0, 0, 0, 0, 0, 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001350 /* T38 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001351 15, 1, 0, 15, 12, 11, 0, 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001352 /* T7 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001353 48, 255, 25,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001354 /* T8 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001355 27, 0, 5, 1, 0, 0, 8, 8, 0, 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001356 /* T9 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001357 131, 0, 0, 19, 11, 0, 16, 35, 1, 3,
1358 10, 15, 1, 11, 4, 5, 40, 10, 54, 2,
1359 43, 4, 0, 0, 0, 0, 143, 40, 143, 80,
1360 18, 15, 50, 50, 2,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001361 /* T15 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001362 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1363 0,
1364 /* T18 Object */
1365 0, 0,
1366 /* T19 Object */
1367 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1368 0, 0, 0, 0, 0, 0,
1369 /* T23 Object */
1370 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1371 0, 0, 0, 0, 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001372 /* T25 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001373 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1374 0, 0, 0, 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001375 /* T40 Object */
Amy Malochef3c9db42011-12-08 15:17:35 -08001376 0, 0, 0, 0, 0,
1377 /* T42 Object */
1378 0, 0, 0, 0, 0, 0, 0, 0,
1379 /* T46 Object */
1380 0, 3, 16, 48, 0, 0, 1, 0, 0,
1381 /* T47 Object */
1382 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1383 /* T48 Object */
1384 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1385 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1386 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1387 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1388 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
1389 0, 0, 0, 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001390};
1391
Amy Malochef3c9db42011-12-08 15:17:35 -08001392static ssize_t mxt224e_vkeys_show(struct kobject *kobj,
1393 struct kobj_attribute *attr, char *buf)
1394{
1395 return snprintf(buf, 200,
1396 __stringify(EV_KEY) ":" __stringify(KEY_BACK) ":65:938:90:90"
1397 ":" __stringify(EV_KEY) ":" __stringify(KEY_MENU) ":208:938:90:90"
1398 ":" __stringify(EV_KEY) ":" __stringify(KEY_HOME) ":348:938:90:90"
1399 ":" __stringify(EV_KEY) ":" __stringify(KEY_SEARCH) ":490:938:90:90"
1400 "\n");
1401}
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001402
Amy Malochef3c9db42011-12-08 15:17:35 -08001403static struct kobj_attribute mxt224e_vkeys_attr = {
1404 .attr = {
1405 .mode = S_IRUGO,
1406 },
1407 .show = &mxt224e_vkeys_show,
1408};
1409
1410static struct attribute *mxt224e_properties_attrs[] = {
1411 &mxt224e_vkeys_attr.attr,
1412 NULL
1413};
1414
1415static struct attribute_group mxt224e_properties_attr_group = {
1416 .attrs = mxt224e_properties_attrs,
1417};
1418
1419static void mxt_init_vkeys_8930(void)
1420{
1421 int rc;
1422 static struct kobject *mxt224e_properties_kobj;
1423
1424 mxt224e_vkeys_attr.attr.name = "virtualkeys.atmel_mxt_ts";
1425 mxt224e_properties_kobj = kobject_create_and_add("board_properties",
1426 NULL);
1427 if (mxt224e_properties_kobj)
1428 rc = sysfs_create_group(mxt224e_properties_kobj,
1429 &mxt224e_properties_attr_group);
1430 if (!mxt224e_properties_kobj || rc)
1431 pr_err("%s: failed to create board_properties\n",
1432 __func__);
1433
1434 return;
1435}
1436
1437static struct mxt_platform_data mxt_platform_data_8930 = {
1438 .config = mxt_config_data_8930,
1439 .config_length = ARRAY_SIZE(mxt_config_data_8930),
1440 .x_size = 1067,
1441 .y_size = 566,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001442 .irqflags = IRQF_TRIGGER_FALLING,
Anirudh Ghayald7ad84c2012-01-09 09:17:53 +05301443#ifdef MSM8930_PHASE_2
1444 .digital_pwr_regulator = true,
1445#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001446 .i2c_pull_up = true,
Amy Malochef3c9db42011-12-08 15:17:35 -08001447 .reset_gpio = MXT_TS_RESET_GPIO,
1448 .irq_gpio = MXT_TS_GPIO_IRQ,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001449};
1450
Amy Malochef3c9db42011-12-08 15:17:35 -08001451static struct i2c_board_info mxt_device_info_8930[] __initdata = {
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001452 {
Amy Malochef3c9db42011-12-08 15:17:35 -08001453 I2C_BOARD_INFO("atmel_mxt_ts", 0x4a),
1454 .platform_data = &mxt_platform_data_8930,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001455 .irq = MSM_GPIO_TO_INT(MXT_TS_GPIO_IRQ),
1456 },
1457};
1458
Anirudh Ghayaleb3af972011-12-13 17:29:06 +05301459#ifdef MSM8930_PHASE_2
1460
1461#define GPIO_VOLUME_UP PM8038_GPIO_PM_TO_SYS(3)
1462#define GPIO_VOLUME_DOWN PM8038_GPIO_PM_TO_SYS(8)
1463#define GPIO_CAMERA_SNAPSHOT PM8038_GPIO_PM_TO_SYS(10)
1464#define GPIO_CAMERA_FOCUS PM8038_GPIO_PM_TO_SYS(11)
1465
1466static struct gpio_keys_button keys_8930[] = {
1467 {
1468 .code = KEY_VOLUMEUP,
1469 .type = EV_KEY,
1470 .desc = "volume_up",
1471 .gpio = GPIO_VOLUME_UP,
1472 .wakeup = 1,
1473 .active_low = 1,
1474 },
1475 {
1476 .code = KEY_VOLUMEDOWN,
1477 .type = EV_KEY,
1478 .desc = "volume_down",
1479 .gpio = GPIO_VOLUME_DOWN,
1480 .wakeup = 1,
1481 .active_low = 1,
1482 },
1483 {
1484 .code = KEY_CAMERA_FOCUS,
1485 .type = EV_KEY,
1486 .desc = "camera_focus",
1487 .gpio = GPIO_CAMERA_FOCUS,
1488 .wakeup = 1,
1489 .active_low = 1,
1490 },
1491 {
1492 .code = KEY_CAMERA_SNAPSHOT,
1493 .type = EV_KEY,
1494 .desc = "camera_snapshot",
1495 .gpio = GPIO_CAMERA_SNAPSHOT,
1496 .wakeup = 1,
1497 .active_low = 1,
1498 },
1499};
1500
1501/* Add GPIO keys for 8930 */
1502static struct gpio_keys_platform_data gpio_keys_8930_pdata = {
1503 .buttons = keys_8930,
1504 .nbuttons = 4,
1505};
1506
1507static struct platform_device gpio_keys_8930 = {
1508 .name = "gpio-keys",
1509 .id = -1,
1510 .dev = {
1511 .platform_data = &gpio_keys_8930_pdata,
1512 },
1513};
1514#endif /* MSM8930_PHASE_2 */
1515
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001516static struct msm_i2c_platform_data msm8960_i2c_qup_gsbi4_pdata = {
1517 .clk_freq = 100000,
1518 .src_clk_rate = 24000000,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001519};
1520
1521static struct msm_i2c_platform_data msm8960_i2c_qup_gsbi3_pdata = {
1522 .clk_freq = 100000,
1523 .src_clk_rate = 24000000,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001524};
1525
1526static struct msm_i2c_platform_data msm8960_i2c_qup_gsbi10_pdata = {
1527 .clk_freq = 100000,
1528 .src_clk_rate = 24000000,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001529};
1530
1531static struct msm_i2c_platform_data msm8960_i2c_qup_gsbi12_pdata = {
1532 .clk_freq = 100000,
1533 .src_clk_rate = 24000000,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001534};
1535
1536static struct msm_rpm_platform_data msm_rpm_data = {
1537 .reg_base_addrs = {
1538 [MSM_RPM_PAGE_STATUS] = MSM_RPM_BASE,
1539 [MSM_RPM_PAGE_CTRL] = MSM_RPM_BASE + 0x400,
1540 [MSM_RPM_PAGE_REQ] = MSM_RPM_BASE + 0x600,
1541 [MSM_RPM_PAGE_ACK] = MSM_RPM_BASE + 0xa00,
1542 },
1543
1544 .irq_ack = RPM_APCC_CPU0_GP_HIGH_IRQ,
1545 .irq_err = RPM_APCC_CPU0_GP_LOW_IRQ,
1546 .irq_vmpm = RPM_APCC_CPU0_GP_MEDIUM_IRQ,
1547 .msm_apps_ipc_rpm_reg = MSM_APCS_GCC_BASE + 0x008,
1548 .msm_apps_ipc_rpm_val = 4,
1549};
1550
1551static struct ks8851_pdata spi_eth_pdata = {
1552 .irq_gpio = KS8851_IRQ_GPIO,
1553 .rst_gpio = KS8851_RST_GPIO,
1554};
1555
1556static struct spi_board_info spi_board_info[] __initdata = {
1557 {
1558 .modalias = "ks8851",
1559 .irq = MSM_GPIO_TO_INT(KS8851_IRQ_GPIO),
1560 .max_speed_hz = 19200000,
1561 .bus_num = 0,
1562 .chip_select = 0,
1563 .mode = SPI_MODE_0,
1564 .platform_data = &spi_eth_pdata
1565 },
1566 {
1567 .modalias = "dsi_novatek_3d_panel_spi",
1568 .max_speed_hz = 10800000,
1569 .bus_num = 0,
1570 .chip_select = 1,
1571 .mode = SPI_MODE_0,
1572 },
1573};
1574
1575static struct platform_device msm_device_saw_core0 = {
Jay Chokshi06fa7542011-12-07 13:09:17 -08001576 .name = "saw-regulator",
1577 .id = 0,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001578 .dev = {
David Collinsb4558422012-01-05 10:50:49 -08001579 .platform_data = &msm8930_saw_regulator_core0_pdata,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001580 },
1581};
1582
1583static struct platform_device msm_device_saw_core1 = {
Jay Chokshi06fa7542011-12-07 13:09:17 -08001584 .name = "saw-regulator",
1585 .id = 1,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001586 .dev = {
David Collinsb4558422012-01-05 10:50:49 -08001587 .platform_data = &msm8930_saw_regulator_core1_pdata,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001588 },
1589};
1590
1591static struct tsens_platform_data msm_tsens_pdata = {
Jay Chokshi06fa7542011-12-07 13:09:17 -08001592 .slope = 910,
1593 .tsens_factor = 1000,
1594 .hw_type = MSM_8960,
1595 .tsens_num_sensor = 5,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001596};
1597
1598static struct platform_device msm_tsens_device = {
1599 .name = "tsens8960-tm",
1600 .id = -1,
1601 .dev = {
1602 .platform_data = &msm_tsens_pdata,
1603 },
1604};
1605
1606#ifdef CONFIG_MSM_FAKE_BATTERY
1607static struct platform_device fish_battery_device = {
1608 .name = "fish_battery",
1609};
1610#endif
1611
David Collins1d4061b2011-12-06 15:36:40 -08001612#ifndef MSM8930_PHASE_2
1613
1614/* 8930 Phase 1 */
Jay Chokshi06fa7542011-12-07 13:09:17 -08001615static struct platform_device msm8930_device_ext_5v_vreg __devinitdata = {
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001616 .name = GPIO_REGULATOR_DEV_NAME,
1617 .id = PM8921_MPP_PM_TO_SYS(7),
1618 .dev = {
1619 .platform_data = &msm_gpio_regulator_pdata[GPIO_VREG_ID_EXT_5V],
1620 },
1621};
1622
Jay Chokshi06fa7542011-12-07 13:09:17 -08001623static struct platform_device msm8930_device_ext_l2_vreg __devinitdata = {
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001624 .name = GPIO_REGULATOR_DEV_NAME,
1625 .id = 91,
1626 .dev = {
1627 .platform_data = &msm_gpio_regulator_pdata[GPIO_VREG_ID_EXT_L2],
1628 },
1629};
1630
David Collins1d4061b2011-12-06 15:36:40 -08001631#else
1632
1633/* 8930 Phase 2 */
1634static struct platform_device msm8930_device_ext_5v_vreg __devinitdata = {
1635 .name = GPIO_REGULATOR_DEV_NAME,
1636 .id = 63,
1637 .dev = {
1638 .platform_data =
1639 &msm8930_gpio_regulator_pdata[MSM8930_GPIO_VREG_ID_EXT_5V],
1640 },
1641};
1642
1643static struct platform_device msm8930_device_ext_otg_sw_vreg __devinitdata = {
1644 .name = GPIO_REGULATOR_DEV_NAME,
1645 .id = 97,
1646 .dev = {
1647 .platform_data =
1648 &msm8930_gpio_regulator_pdata[MSM8930_GPIO_VREG_ID_EXT_OTG_SW],
1649 },
1650};
1651
1652#endif
1653
Jay Chokshi06fa7542011-12-07 13:09:17 -08001654static struct platform_device msm8930_device_rpm_regulator __devinitdata = {
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001655 .name = "rpm-regulator",
1656 .id = -1,
1657 .dev = {
Jay Chokshi06fa7542011-12-07 13:09:17 -08001658 /*
1659 * TODO: When physical 8930/PM8038 hardware becomes
1660 * available, replace msm_rpm_regulator_pdata
1661 * with 8930 rpm regulator object.
1662 */
1663#if !defined(MSM8930_PHASE_2)
1664
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001665 .platform_data = &msm_rpm_regulator_pdata,
Jay Chokshi06fa7542011-12-07 13:09:17 -08001666#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001667 },
1668};
1669
1670static struct msm_rpm_log_platform_data msm_rpm_log_pdata = {
1671 .phys_addr_base = 0x0010C000,
1672 .reg_offsets = {
1673 [MSM_RPM_LOG_PAGE_INDICES] = 0x00000080,
1674 [MSM_RPM_LOG_PAGE_BUFFER] = 0x000000A0,
1675 },
1676 .phys_size = SZ_8K,
1677 .log_len = 4096, /* log's buffer length in bytes */
1678 .log_len_mask = (4096 >> 2) - 1, /* length mask in units of u32 */
1679};
1680
1681static struct platform_device msm_rpm_log_device = {
1682 .name = "msm_rpm_log",
1683 .id = -1,
1684 .dev = {
1685 .platform_data = &msm_rpm_log_pdata,
1686 },
1687};
1688
1689static struct platform_device *common_devices[] __initdata = {
1690 &msm8960_device_dmov,
1691 &msm_device_smd,
1692 &msm8960_device_uart_gsbi5,
1693 &msm_device_uart_dm6,
1694 &msm_device_saw_core0,
1695 &msm_device_saw_core1,
Jay Chokshi06fa7542011-12-07 13:09:17 -08001696 &msm8930_device_ext_5v_vreg,
David Collins1d4061b2011-12-06 15:36:40 -08001697#ifndef MSM8930_PHASE_2
Jay Chokshi06fa7542011-12-07 13:09:17 -08001698 &msm8930_device_ext_l2_vreg,
David Collins1d4061b2011-12-06 15:36:40 -08001699#endif
Jay Chokshi33c044a2011-12-07 13:05:40 -08001700 &msm8960_device_ssbi_pmic,
David Collins1d4061b2011-12-06 15:36:40 -08001701#ifdef MSM8930_PHASE_2
1702 &msm8930_device_ext_otg_sw_vreg,
1703#endif
Stephen Boyd28d54952011-12-16 13:19:51 -08001704 &msm_8960_q6_lpass,
1705 &msm_8960_q6_mss_fw,
1706 &msm_8960_q6_mss_sw,
Stephen Boyd322a9922011-09-20 01:05:54 -07001707 &msm_8960_riva,
Stephen Boydd89eebe2011-09-28 23:28:11 -07001708 &msm_pil_tzapps,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001709 &msm8960_device_qup_spi_gsbi1,
1710 &msm8960_device_qup_i2c_gsbi3,
1711 &msm8960_device_qup_i2c_gsbi4,
1712 &msm8960_device_qup_i2c_gsbi10,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001713 &msm8960_device_qup_i2c_gsbi12,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001714 &msm_slim_ctrl,
1715 &msm_device_wcnss_wlan,
1716#if defined(CONFIG_CRYPTO_DEV_QCRYPTO) || \
1717 defined(CONFIG_CRYPTO_DEV_QCRYPTO_MODULE)
1718 &qcrypto_device,
1719#endif
1720
1721#if defined(CONFIG_CRYPTO_DEV_QCEDEV) || \
1722 defined(CONFIG_CRYPTO_DEV_QCEDEV_MODULE)
1723 &qcedev_device,
1724#endif
1725#ifdef CONFIG_MSM_ROTATOR
1726 &msm_rotator_device,
1727#endif
1728 &msm_device_sps,
1729#ifdef CONFIG_MSM_FAKE_BATTERY
1730 &fish_battery_device,
1731#endif
1732#ifdef CONFIG_ANDROID_PMEM
1733#ifndef CONFIG_MSM_MULTIMEDIA_USE_ION
1734 &android_pmem_device,
1735 &android_pmem_adsp_device,
1736#endif
1737 &android_pmem_audio_device,
1738#endif
1739 &msm_device_vidc,
1740 &msm_device_bam_dmux,
1741 &msm_fm_platform_init,
1742
1743#ifdef CONFIG_HW_RANDOM_MSM
1744 &msm_device_rng,
1745#endif
1746 &msm_rpm_device,
1747#ifdef CONFIG_ION_MSM
1748 &ion_dev,
1749#endif
1750 &msm_rpm_log_device,
1751 &msm_rpm_stat_device,
1752 &msm_device_tz_log,
1753
1754#ifdef CONFIG_MSM_QDSS
1755 &msm_etb_device,
1756 &msm_tpiu_device,
1757 &msm_funnel_device,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001758 &msm_ptm_device,
1759#endif
1760 &msm_device_dspcrashd_8960,
1761 &msm8960_device_watchdog,
Anirudh Ghayaleb3af972011-12-13 17:29:06 +05301762#ifdef MSM8930_PHASE_2
1763 &gpio_keys_8930,
1764#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001765};
1766
1767static struct platform_device *cdp_devices[] __initdata = {
1768 &msm8960_device_otg,
1769 &msm8960_device_gadget_peripheral,
1770 &msm_device_hsusb_host,
1771 &android_usb_device,
1772 &msm_pcm,
1773 &msm_pcm_routing,
1774 &msm_cpudai0,
1775 &msm_cpudai1,
1776 &msm_cpudai_hdmi_rx,
1777 &msm_cpudai_bt_rx,
1778 &msm_cpudai_bt_tx,
1779 &msm_cpudai_fm_rx,
1780 &msm_cpudai_fm_tx,
1781 &msm_cpudai_auxpcm_rx,
1782 &msm_cpudai_auxpcm_tx,
1783 &msm_cpu_fe,
1784 &msm_stub_codec,
1785 &msm_kgsl_3d0,
1786#ifdef CONFIG_MSM_KGSL_2D
1787 &msm_kgsl_2d0,
1788 &msm_kgsl_2d1,
1789#endif
1790#ifdef CONFIG_MSM_GEMINI
1791 &msm8960_gemini_device,
1792#endif
1793 &msm_voice,
1794 &msm_voip,
1795 &msm_lpa_pcm,
1796 &msm_cpudai_afe_01_rx,
1797 &msm_cpudai_afe_01_tx,
1798 &msm_cpudai_afe_02_rx,
1799 &msm_cpudai_afe_02_tx,
1800 &msm_pcm_afe,
Ajay Dudani79e268c2011-12-28 13:14:44 -08001801 &msm_compr_dsp,
1802 &msm_cpudai_incall_music_rx,
1803 &msm_cpudai_incall_record_rx,
1804 &msm_cpudai_incall_record_tx,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001805 &msm_pcm_hostless,
1806 &msm_bus_apps_fabric,
1807 &msm_bus_sys_fabric,
1808 &msm_bus_mm_fabric,
1809 &msm_bus_sys_fpb,
1810 &msm_bus_cpss_fpb,
1811 &msm_tsens_device,
1812};
1813
1814static void __init msm8930_i2c_init(void)
1815{
1816 msm8960_device_qup_i2c_gsbi4.dev.platform_data =
1817 &msm8960_i2c_qup_gsbi4_pdata;
1818
1819 msm8960_device_qup_i2c_gsbi3.dev.platform_data =
1820 &msm8960_i2c_qup_gsbi3_pdata;
1821
1822 msm8960_device_qup_i2c_gsbi10.dev.platform_data =
1823 &msm8960_i2c_qup_gsbi10_pdata;
1824
1825 msm8960_device_qup_i2c_gsbi12.dev.platform_data =
1826 &msm8960_i2c_qup_gsbi12_pdata;
1827}
1828
1829static void __init msm8930_gfx_init(void)
1830{
1831 uint32_t soc_platform_version = socinfo_get_version();
1832 if (SOCINFO_VERSION_MAJOR(soc_platform_version) == 1) {
1833 struct kgsl_device_platform_data *kgsl_3d0_pdata =
1834 msm_kgsl_3d0.dev.platform_data;
1835 kgsl_3d0_pdata->pwrlevel[0].gpu_freq = 320000000;
1836 kgsl_3d0_pdata->pwrlevel[1].gpu_freq = 266667000;
1837 }
1838}
1839
1840static struct msm_cpuidle_state msm_cstates[] __initdata = {
1841 {0, 0, "C0", "WFI",
1842 MSM_PM_SLEEP_MODE_WAIT_FOR_INTERRUPT},
1843
1844 {0, 1, "C1", "STANDALONE_POWER_COLLAPSE",
1845 MSM_PM_SLEEP_MODE_POWER_COLLAPSE_STANDALONE},
1846
1847 {0, 2, "C2", "POWER_COLLAPSE",
1848 MSM_PM_SLEEP_MODE_POWER_COLLAPSE},
1849
1850 {1, 0, "C0", "WFI",
1851 MSM_PM_SLEEP_MODE_WAIT_FOR_INTERRUPT},
1852
1853 {1, 1, "C1", "STANDALONE_POWER_COLLAPSE",
1854 MSM_PM_SLEEP_MODE_POWER_COLLAPSE_STANDALONE},
1855};
1856
1857static struct msm_pm_platform_data msm_pm_data[MSM_PM_SLEEP_MODE_NR * 2] = {
1858 [MSM_PM_MODE(0, MSM_PM_SLEEP_MODE_POWER_COLLAPSE)] = {
1859 .idle_supported = 1,
1860 .suspend_supported = 1,
1861 .idle_enabled = 0,
1862 .suspend_enabled = 0,
1863 },
1864
1865 [MSM_PM_MODE(0, MSM_PM_SLEEP_MODE_POWER_COLLAPSE_STANDALONE)] = {
1866 .idle_supported = 1,
1867 .suspend_supported = 1,
1868 .idle_enabled = 0,
1869 .suspend_enabled = 0,
1870 },
1871
1872 [MSM_PM_MODE(0, MSM_PM_SLEEP_MODE_WAIT_FOR_INTERRUPT)] = {
1873 .idle_supported = 1,
1874 .suspend_supported = 1,
1875 .idle_enabled = 1,
1876 .suspend_enabled = 1,
1877 },
1878
1879 [MSM_PM_MODE(1, MSM_PM_SLEEP_MODE_POWER_COLLAPSE)] = {
1880 .idle_supported = 0,
1881 .suspend_supported = 1,
1882 .idle_enabled = 0,
1883 .suspend_enabled = 0,
1884 },
1885
1886 [MSM_PM_MODE(1, MSM_PM_SLEEP_MODE_POWER_COLLAPSE_STANDALONE)] = {
1887 .idle_supported = 1,
1888 .suspend_supported = 1,
1889 .idle_enabled = 0,
1890 .suspend_enabled = 0,
1891 },
1892
1893 [MSM_PM_MODE(1, MSM_PM_SLEEP_MODE_WAIT_FOR_INTERRUPT)] = {
1894 .idle_supported = 1,
1895 .suspend_supported = 0,
1896 .idle_enabled = 1,
1897 .suspend_enabled = 0,
1898 },
1899};
1900
1901static struct msm_rpmrs_level msm_rpmrs_levels[] __initdata = {
1902 {
1903 MSM_PM_SLEEP_MODE_WAIT_FOR_INTERRUPT,
1904 MSM_RPMRS_LIMITS(ON, ACTIVE, MAX, ACTIVE),
1905 true,
1906 100, 8000, 100000, 1,
1907 },
1908
1909 {
1910 MSM_PM_SLEEP_MODE_POWER_COLLAPSE_STANDALONE,
1911 MSM_RPMRS_LIMITS(ON, ACTIVE, MAX, ACTIVE),
1912 true,
1913 2000, 6000, 60100000, 3000,
1914 },
1915
1916 {
1917 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1918 MSM_RPMRS_LIMITS(ON, GDHS, MAX, ACTIVE),
1919 false,
1920 4200, 5000, 60350000, 3500,
1921 },
1922
1923 {
1924 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1925 MSM_RPMRS_LIMITS(ON, HSFS_OPEN, MAX, ACTIVE),
1926 false,
1927 6300, 4500, 65350000, 4800,
1928 },
1929 {
1930 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1931 MSM_RPMRS_LIMITS(ON, HSFS_OPEN, ACTIVE, RET_HIGH),
1932 false,
1933 7000, 3500, 66600000, 5150,
1934 },
1935
1936 {
1937 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1938 MSM_RPMRS_LIMITS(OFF, GDHS, MAX, ACTIVE),
1939 false,
1940 11700, 2500, 67850000, 5500,
1941 },
1942
1943 {
1944 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1945 MSM_RPMRS_LIMITS(OFF, HSFS_OPEN, MAX, ACTIVE),
1946 false,
1947 13800, 2000, 71850000, 6800,
1948 },
1949
1950 {
1951 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1952 MSM_RPMRS_LIMITS(OFF, HSFS_OPEN, ACTIVE, RET_HIGH),
1953 false,
1954 29700, 500, 75850000, 8800,
1955 },
1956
1957 {
1958 MSM_PM_SLEEP_MODE_POWER_COLLAPSE,
1959 MSM_RPMRS_LIMITS(OFF, HSFS_OPEN, RET_HIGH, RET_LOW),
1960 false,
1961 29700, 0, 76350000, 9800,
1962 },
1963};
1964
Maheshkumar Sivasubramanianc6c55032011-10-25 16:01:32 -06001965static struct msm_pm_boot_platform_data msm_pm_boot_pdata __initdata = {
1966 .mode = MSM_PM_BOOT_CONFIG_TZ,
1967};
1968
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001969#ifdef CONFIG_I2C
1970#define I2C_SURF 1
1971#define I2C_FFA (1 << 1)
1972#define I2C_RUMI (1 << 2)
1973#define I2C_SIM (1 << 3)
1974#define I2C_FLUID (1 << 4)
1975#define I2C_LIQUID (1 << 5)
1976
1977struct i2c_registry {
1978 u8 machs;
1979 int bus;
1980 struct i2c_board_info *info;
1981 int len;
1982};
1983
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001984static void __init msm8930_init_hsic(void)
1985{
1986#ifdef CONFIG_USB_EHCI_MSM_HSIC
1987 uint32_t version = socinfo_get_version();
1988
1989 pr_info("%s: version:%d mtp:%d\n", __func__,
1990 SOCINFO_VERSION_MAJOR(version),
1991 machine_is_msm8930_mtp());
1992
1993 if ((SOCINFO_VERSION_MAJOR(version) == 1) ||
1994 machine_is_msm8930_mtp() ||
1995 machine_is_msm8930_fluid())
1996 return;
1997
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08001998 platform_device_register(&msm_device_hsic_host);
1999#endif
2000}
2001
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002002#ifdef CONFIG_ISL9519_CHARGER
2003static struct isl_platform_data isl_data __initdata = {
2004 .valid_n_gpio = 0, /* Not required when notify-by-pmic */
2005 .chg_detection_config = NULL, /* Not required when notify-by-pmic */
2006 .max_system_voltage = 4200,
2007 .min_system_voltage = 3200,
2008 .chgcurrent = 1000, /* 1900, */
2009 .term_current = 400, /* Need fine tuning */
2010 .input_current = 2048,
2011};
2012
2013static struct i2c_board_info isl_charger_i2c_info[] __initdata = {
2014 {
2015 I2C_BOARD_INFO("isl9519q", 0x9),
2016 .irq = 0, /* Not required when notify-by-pmic */
2017 .platform_data = &isl_data,
2018 },
2019};
2020#endif /* CONFIG_ISL9519_CHARGER */
2021
2022static struct i2c_registry msm8960_i2c_devices[] __initdata = {
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002023#ifdef CONFIG_ISL9519_CHARGER
2024 {
2025 I2C_LIQUID,
2026 MSM_8930_GSBI10_QUP_I2C_BUS_ID,
2027 isl_charger_i2c_info,
2028 ARRAY_SIZE(isl_charger_i2c_info),
2029 },
2030#endif /* CONFIG_ISL9519_CHARGER */
2031 {
2032 I2C_SURF | I2C_FFA | I2C_FLUID,
2033 MSM_8930_GSBI3_QUP_I2C_BUS_ID,
2034 cyttsp_info,
2035 ARRAY_SIZE(cyttsp_info),
2036 },
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05302037#ifndef MSM8930_PHASE_2
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002038 {
2039 I2C_LIQUID,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002040 MSM_8930_GSBI10_QUP_I2C_BUS_ID,
2041 msm_isa1200_board_info,
2042 ARRAY_SIZE(msm_isa1200_board_info),
2043 },
Anirudh Ghayal8c15f7f2012-01-09 14:04:02 +05302044#else
2045 {
2046 I2C_FFA | I2C_FLUID,
2047 MSM_8930_GSBI10_QUP_I2C_BUS_ID,
2048 msm_isa1200_board_info,
2049 ARRAY_SIZE(msm_isa1200_board_info),
2050 },
2051#endif
Amy Malochef3c9db42011-12-08 15:17:35 -08002052 {
2053 I2C_SURF,
2054 MSM_8930_GSBI3_QUP_I2C_BUS_ID,
2055 mxt_device_info_8930,
2056 ARRAY_SIZE(mxt_device_info_8930),
2057 },
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002058};
2059#endif /* CONFIG_I2C */
2060
2061static void __init register_i2c_devices(void)
2062{
2063#ifdef CONFIG_I2C
2064 u8 mach_mask = 0;
2065 int i;
Kevin Chan09f4e662011-12-16 08:17:02 -08002066#ifdef CONFIG_MSM_CAMERA
2067 struct i2c_registry msm8930_camera_i2c_devices = {
2068 I2C_SURF | I2C_FFA | I2C_FLUID | I2C_LIQUID | I2C_RUMI,
2069 MSM_8930_GSBI4_QUP_I2C_BUS_ID,
2070 msm8930_camera_board_info.board_info,
2071 msm8930_camera_board_info.num_i2c_board_info,
2072 };
2073#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002074
2075 /* Build the matching 'supported_machs' bitmask */
Stepan Moskovchenko8768eff2011-12-01 18:55:07 -08002076 if (machine_is_msm8930_cdp() || machine_is_msm8627_cdp())
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002077 mach_mask = I2C_SURF;
2078 else if (machine_is_msm8930_fluid())
2079 mach_mask = I2C_FLUID;
Stepan Moskovchenko8768eff2011-12-01 18:55:07 -08002080 else if (machine_is_msm8930_mtp() || machine_is_msm8627_mtp())
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002081 mach_mask = I2C_FFA;
2082 else
2083 pr_err("unmatched machine ID in register_i2c_devices\n");
2084
2085 /* Run the array and install devices as appropriate */
2086 for (i = 0; i < ARRAY_SIZE(msm8960_i2c_devices); ++i) {
2087 if (msm8960_i2c_devices[i].machs & mach_mask)
2088 i2c_register_board_info(msm8960_i2c_devices[i].bus,
2089 msm8960_i2c_devices[i].info,
2090 msm8960_i2c_devices[i].len);
2091 }
Kevin Chan09f4e662011-12-16 08:17:02 -08002092#ifdef CONFIG_MSM_CAMERA
2093 if (msm8930_camera_i2c_devices.machs & mach_mask)
2094 i2c_register_board_info(msm8930_camera_i2c_devices.bus,
2095 msm8930_camera_i2c_devices.info,
2096 msm8930_camera_i2c_devices.len);
2097#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002098#endif
2099}
2100
2101static void __init msm8930_cdp_init(void)
2102{
2103 if (meminfo_init(SYS_MEMORY, SZ_256M) < 0)
2104 pr_err("meminfo_init() failed!\n");
2105
2106 BUG_ON(msm_rpm_init(&msm_rpm_data));
2107 BUG_ON(msm_rpmrs_levels_init(msm_rpmrs_levels,
2108 ARRAY_SIZE(msm_rpmrs_levels)));
2109
2110 regulator_suppress_info_printing();
2111 if (msm_xo_init())
2112 pr_err("Failed to initialize XO votes\n");
Jay Chokshi06fa7542011-12-07 13:09:17 -08002113 platform_device_register(&msm8930_device_rpm_regulator);
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002114 msm_clock_init(&msm8960_clock_init_data);
2115 msm8960_device_otg.dev.platform_data = &msm_otg_pdata;
2116 msm_device_hsic_host.dev.platform_data = &msm_hsic_pdata;
Stepan Moskovchenko3b09bf52011-12-06 20:40:53 -08002117 msm8930_init_gpiomux();
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002118 msm8960_device_qup_spi_gsbi1.dev.platform_data =
2119 &msm8960_qup_spi_gsbi1_pdata;
2120 spi_register_board_info(spi_board_info, ARRAY_SIZE(spi_board_info));
2121
Jay Chokshi06fa7542011-12-07 13:09:17 -08002122 /*
2123 * TODO: When physical 8930/PM8038 hardware becomes
2124 * available, remove this block or add the config
2125 * option.
2126 */
2127#ifndef MSM8930_PHASE_2
2128 msm8960_init_pmic();
2129#else
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002130 msm8930_init_pmic();
Jay Chokshi06fa7542011-12-07 13:09:17 -08002131#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002132 msm8930_i2c_init();
2133 msm8930_gfx_init();
2134 msm_spm_init(msm_spm_data, ARRAY_SIZE(msm_spm_data));
2135 msm_spm_l2_init(msm_spm_l2_data);
2136 msm8930_init_buses();
2137 platform_add_devices(msm_footswitch_devices,
2138 msm_num_footswitch_devices);
2139 platform_add_devices(common_devices, ARRAY_SIZE(common_devices));
Jay Chokshi06fa7542011-12-07 13:09:17 -08002140 /*
2141 * TODO: When physical 8930/PM8038 hardware becomes
2142 * available, remove this block or add the config
2143 * option.
2144 */
2145#ifndef MSM8930_PHASE_2
2146 msm8960_pm8921_gpio_mpp_init();
2147#else
2148 msm8930_pm8038_gpio_mpp_init();
2149#endif
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002150 platform_add_devices(cdp_devices, ARRAY_SIZE(cdp_devices));
2151 msm8930_init_hsic();
2152 msm8930_init_cam();
2153 msm8930_init_mmc();
Tianyi Gou7c6b81f2011-12-07 23:09:08 -08002154 acpuclk_init(&acpuclk_8930_soc_data);
Amy Malochef3c9db42011-12-08 15:17:35 -08002155 if (machine_is_msm8930_cdp() || machine_is_msm8627_cdp())
2156 mxt_init_vkeys_8930();
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002157 register_i2c_devices();
2158 msm8930_init_fb();
2159 slim_register_board_info(msm_slim_devices,
2160 ARRAY_SIZE(msm_slim_devices));
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002161 msm_pm_set_platform_data(msm_pm_data, ARRAY_SIZE(msm_pm_data));
2162 msm_pm_set_rpm_wakeup_irq(RPM_APCC_CPU0_WAKE_UP_IRQ);
2163 msm_cpuidle_set_states(msm_cstates, ARRAY_SIZE(msm_cstates),
2164 msm_pm_data);
2165 change_memory_power = &msm8930_change_memory_power;
Maheshkumar Sivasubramanianc6c55032011-10-25 16:01:32 -06002166 BUG_ON(msm_pm_boot_init(&msm_pm_boot_pdata));
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002167
2168 if (PLATFORM_IS_CHARM25())
2169 platform_add_devices(mdm_devices, ARRAY_SIZE(mdm_devices));
2170}
2171
2172MACHINE_START(MSM8930_CDP, "QCT MSM8930 CDP")
2173 .map_io = msm8930_map_io,
2174 .reserve = msm8930_reserve,
2175 .init_irq = msm8930_init_irq,
Marc Zyngier89bdafd12011-12-22 11:39:20 +05302176 .handle_irq = gic_handle_irq,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002177 .timer = &msm_timer,
2178 .init_machine = msm8930_cdp_init,
2179 .init_early = msm8930_allocate_memory_regions,
2180 .init_very_early = msm8930_early_memory,
2181MACHINE_END
2182
2183MACHINE_START(MSM8930_MTP, "QCT MSM8930 MTP")
2184 .map_io = msm8930_map_io,
2185 .reserve = msm8930_reserve,
2186 .init_irq = msm8930_init_irq,
Marc Zyngier89bdafd12011-12-22 11:39:20 +05302187 .handle_irq = gic_handle_irq,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002188 .timer = &msm_timer,
2189 .init_machine = msm8930_cdp_init,
2190 .init_early = msm8930_allocate_memory_regions,
2191 .init_very_early = msm8930_early_memory,
2192MACHINE_END
2193
2194MACHINE_START(MSM8930_FLUID, "QCT MSM8930 FLUID")
2195 .map_io = msm8930_map_io,
2196 .reserve = msm8930_reserve,
2197 .init_irq = msm8930_init_irq,
Marc Zyngier89bdafd12011-12-22 11:39:20 +05302198 .handle_irq = gic_handle_irq,
Stepan Moskovchenko39236d72011-11-30 17:42:23 -08002199 .timer = &msm_timer,
2200 .init_machine = msm8930_cdp_init,
2201 .init_early = msm8930_allocate_memory_regions,
2202 .init_very_early = msm8930_early_memory,
2203MACHINE_END
Stepan Moskovchenko8768eff2011-12-01 18:55:07 -08002204
2205MACHINE_START(MSM8627_CDP, "QCT MSM8627 CDP")
2206 .map_io = msm8930_map_io,
2207 .reserve = msm8930_reserve,
2208 .init_irq = msm8930_init_irq,
Marc Zyngier89bdafd12011-12-22 11:39:20 +05302209 .handle_irq = gic_handle_irq,
Stepan Moskovchenko8768eff2011-12-01 18:55:07 -08002210 .timer = &msm_timer,
2211 .init_machine = msm8930_cdp_init,
2212 .init_early = msm8930_allocate_memory_regions,
2213 .init_very_early = msm8930_early_memory,
2214MACHINE_END
2215
2216MACHINE_START(MSM8627_MTP, "QCT MSM8627 MTP")
2217 .map_io = msm8930_map_io,
2218 .reserve = msm8930_reserve,
2219 .init_irq = msm8930_init_irq,
Marc Zyngier89bdafd12011-12-22 11:39:20 +05302220 .handle_irq = gic_handle_irq,
Stepan Moskovchenko8768eff2011-12-01 18:55:07 -08002221 .timer = &msm_timer,
2222 .init_machine = msm8930_cdp_init,
2223 .init_early = msm8930_allocate_memory_regions,
2224 .init_very_early = msm8930_early_memory,
2225MACHINE_END