blob: 9729af823eaf3f6663605f76c53cc6a66d79a895 [file] [log] [blame]
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001/*
2 * Copyright (c) 2012, 2013, NVIDIA CORPORATION. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program. If not, see <http://www.gnu.org/licenses/>.
15 */
16
17#include <linux/io.h>
18#include <linux/clk.h>
19#include <linux/clk-provider.h>
20#include <linux/clkdev.h>
21#include <linux/of.h>
22#include <linux/of_address.h>
23#include <linux/delay.h>
Paul Walmsley25c9ded2013-06-07 06:18:58 -060024#include <linux/export.h>
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +030025#include <linux/clk/tegra.h>
Peter De Schrijverc9e2d692013-08-22 15:27:46 +030026#include <dt-bindings/clock/tegra114-car.h>
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +030027
28#include "clk.h"
29
Paul Walmsley1c472d82013-06-07 06:19:09 -060030#define RST_DFLL_DVCO 0x2F4
Paul Walmsley25c9ded2013-06-07 06:18:58 -060031#define CPU_FINETRIM_SELECT 0x4d4 /* override default prop dlys */
32#define CPU_FINETRIM_DR 0x4d8 /* rise->rise prop dly A */
33#define CPU_FINETRIM_R 0x4e4 /* rise->rise prop dly inc A */
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +030034
Paul Walmsley1c472d82013-06-07 06:19:09 -060035/* RST_DFLL_DVCO bitfields */
36#define DVFS_DFLL_RESET_SHIFT 0
37
Paul Walmsley25c9ded2013-06-07 06:18:58 -060038/* CPU_FINETRIM_SELECT and CPU_FINETRIM_DR bitfields */
39#define CPU_FINETRIM_1_FCPU_1 BIT(0) /* fcpu0 */
40#define CPU_FINETRIM_1_FCPU_2 BIT(1) /* fcpu1 */
41#define CPU_FINETRIM_1_FCPU_3 BIT(2) /* fcpu2 */
42#define CPU_FINETRIM_1_FCPU_4 BIT(3) /* fcpu3 */
43#define CPU_FINETRIM_1_FCPU_5 BIT(4) /* fl2 */
44#define CPU_FINETRIM_1_FCPU_6 BIT(5) /* ftop */
45
46/* CPU_FINETRIM_R bitfields */
47#define CPU_FINETRIM_R_FCPU_1_SHIFT 0 /* fcpu0 */
48#define CPU_FINETRIM_R_FCPU_1_MASK (0x3 << CPU_FINETRIM_R_FCPU_1_SHIFT)
49#define CPU_FINETRIM_R_FCPU_2_SHIFT 2 /* fcpu1 */
50#define CPU_FINETRIM_R_FCPU_2_MASK (0x3 << CPU_FINETRIM_R_FCPU_2_SHIFT)
51#define CPU_FINETRIM_R_FCPU_3_SHIFT 4 /* fcpu2 */
52#define CPU_FINETRIM_R_FCPU_3_MASK (0x3 << CPU_FINETRIM_R_FCPU_3_SHIFT)
53#define CPU_FINETRIM_R_FCPU_4_SHIFT 6 /* fcpu3 */
54#define CPU_FINETRIM_R_FCPU_4_MASK (0x3 << CPU_FINETRIM_R_FCPU_4_SHIFT)
55#define CPU_FINETRIM_R_FCPU_5_SHIFT 8 /* fl2 */
56#define CPU_FINETRIM_R_FCPU_5_MASK (0x3 << CPU_FINETRIM_R_FCPU_5_SHIFT)
57#define CPU_FINETRIM_R_FCPU_6_SHIFT 10 /* ftop */
58#define CPU_FINETRIM_R_FCPU_6_MASK (0x3 << CPU_FINETRIM_R_FCPU_6_SHIFT)
59
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +030060#define TEGRA114_CLK_PERIPH_BANKS 5
61
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +030062#define PLLC_BASE 0x80
63#define PLLC_MISC2 0x88
64#define PLLC_MISC 0x8c
65#define PLLC2_BASE 0x4e8
66#define PLLC2_MISC 0x4ec
67#define PLLC3_BASE 0x4fc
68#define PLLC3_MISC 0x500
69#define PLLM_BASE 0x90
70#define PLLM_MISC 0x9c
71#define PLLP_BASE 0xa0
72#define PLLP_MISC 0xac
73#define PLLX_BASE 0xe0
74#define PLLX_MISC 0xe4
75#define PLLX_MISC2 0x514
76#define PLLX_MISC3 0x518
77#define PLLD_BASE 0xd0
78#define PLLD_MISC 0xdc
79#define PLLD2_BASE 0x4b8
80#define PLLD2_MISC 0x4bc
81#define PLLE_BASE 0xe8
82#define PLLE_MISC 0xec
83#define PLLA_BASE 0xb0
84#define PLLA_MISC 0xbc
85#define PLLU_BASE 0xc0
86#define PLLU_MISC 0xcc
87#define PLLRE_BASE 0x4c4
88#define PLLRE_MISC 0x4c8
89
90#define PLL_MISC_LOCK_ENABLE 18
91#define PLLC_MISC_LOCK_ENABLE 24
92#define PLLDU_MISC_LOCK_ENABLE 22
93#define PLLE_MISC_LOCK_ENABLE 9
94#define PLLRE_MISC_LOCK_ENABLE 30
95
96#define PLLC_IDDQ_BIT 26
97#define PLLX_IDDQ_BIT 3
98#define PLLRE_IDDQ_BIT 16
99
100#define PLL_BASE_LOCK BIT(27)
101#define PLLE_MISC_LOCK BIT(11)
102#define PLLRE_MISC_LOCK BIT(24)
103#define PLLCX_BASE_LOCK (BIT(26)|BIT(27))
104
105#define PLLE_AUX 0x48c
106#define PLLC_OUT 0x84
107#define PLLM_OUT 0x94
108#define PLLP_OUTA 0xa4
109#define PLLP_OUTB 0xa8
110#define PLLA_OUT 0xb4
111
112#define AUDIO_SYNC_CLK_I2S0 0x4a0
113#define AUDIO_SYNC_CLK_I2S1 0x4a4
114#define AUDIO_SYNC_CLK_I2S2 0x4a8
115#define AUDIO_SYNC_CLK_I2S3 0x4ac
116#define AUDIO_SYNC_CLK_I2S4 0x4b0
117#define AUDIO_SYNC_CLK_SPDIF 0x4b4
118
119#define AUDIO_SYNC_DOUBLER 0x49c
120
121#define PMC_CLK_OUT_CNTRL 0x1a8
122#define PMC_DPD_PADS_ORIDE 0x1c
123#define PMC_DPD_PADS_ORIDE_BLINK_ENB 20
124#define PMC_CTRL 0
125#define PMC_CTRL_BLINK_ENB 7
Alexandre Courbot91392272013-05-26 11:56:31 +0900126#define PMC_BLINK_TIMER 0x40
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300127
128#define OSC_CTRL 0x50
129#define OSC_CTRL_OSC_FREQ_SHIFT 28
130#define OSC_CTRL_PLL_REF_DIV_SHIFT 26
131
132#define PLLXC_SW_MAX_P 6
133
134#define CCLKG_BURST_POLICY 0x368
135#define CCLKLP_BURST_POLICY 0x370
136#define SCLK_BURST_POLICY 0x028
137#define SYSTEM_CLK_RATE 0x030
138
139#define UTMIP_PLL_CFG2 0x488
140#define UTMIP_PLL_CFG2_STABLE_COUNT(x) (((x) & 0xffff) << 6)
141#define UTMIP_PLL_CFG2_ACTIVE_DLY_COUNT(x) (((x) & 0x3f) << 18)
142#define UTMIP_PLL_CFG2_FORCE_PD_SAMP_A_POWERDOWN BIT(0)
143#define UTMIP_PLL_CFG2_FORCE_PD_SAMP_B_POWERDOWN BIT(2)
144#define UTMIP_PLL_CFG2_FORCE_PD_SAMP_C_POWERDOWN BIT(4)
145
146#define UTMIP_PLL_CFG1 0x484
147#define UTMIP_PLL_CFG1_ENABLE_DLY_COUNT(x) (((x) & 0x1f) << 6)
148#define UTMIP_PLL_CFG1_XTAL_FREQ_COUNT(x) (((x) & 0xfff) << 0)
149#define UTMIP_PLL_CFG1_FORCE_PLLU_POWERUP BIT(17)
150#define UTMIP_PLL_CFG1_FORCE_PLLU_POWERDOWN BIT(16)
151#define UTMIP_PLL_CFG1_FORCE_PLL_ENABLE_POWERUP BIT(15)
152#define UTMIP_PLL_CFG1_FORCE_PLL_ENABLE_POWERDOWN BIT(14)
153#define UTMIP_PLL_CFG1_FORCE_PLL_ACTIVE_POWERDOWN BIT(12)
154
155#define UTMIPLL_HW_PWRDN_CFG0 0x52c
156#define UTMIPLL_HW_PWRDN_CFG0_SEQ_START_STATE BIT(25)
157#define UTMIPLL_HW_PWRDN_CFG0_SEQ_ENABLE BIT(24)
158#define UTMIPLL_HW_PWRDN_CFG0_USE_LOCKDET BIT(6)
159#define UTMIPLL_HW_PWRDN_CFG0_SEQ_RESET_INPUT_VALUE BIT(5)
160#define UTMIPLL_HW_PWRDN_CFG0_SEQ_IN_SWCTL BIT(4)
161#define UTMIPLL_HW_PWRDN_CFG0_CLK_ENABLE_SWCTL BIT(2)
162#define UTMIPLL_HW_PWRDN_CFG0_IDDQ_OVERRIDE BIT(1)
163#define UTMIPLL_HW_PWRDN_CFG0_IDDQ_SWCTL BIT(0)
164
165#define CLK_SOURCE_I2S0 0x1d8
166#define CLK_SOURCE_I2S1 0x100
167#define CLK_SOURCE_I2S2 0x104
168#define CLK_SOURCE_NDFLASH 0x160
169#define CLK_SOURCE_I2S3 0x3bc
170#define CLK_SOURCE_I2S4 0x3c0
171#define CLK_SOURCE_SPDIF_OUT 0x108
172#define CLK_SOURCE_SPDIF_IN 0x10c
173#define CLK_SOURCE_PWM 0x110
174#define CLK_SOURCE_ADX 0x638
175#define CLK_SOURCE_AMX 0x63c
176#define CLK_SOURCE_HDA 0x428
177#define CLK_SOURCE_HDA2CODEC_2X 0x3e4
178#define CLK_SOURCE_SBC1 0x134
179#define CLK_SOURCE_SBC2 0x118
180#define CLK_SOURCE_SBC3 0x11c
181#define CLK_SOURCE_SBC4 0x1b4
182#define CLK_SOURCE_SBC5 0x3c8
183#define CLK_SOURCE_SBC6 0x3cc
184#define CLK_SOURCE_SATA_OOB 0x420
185#define CLK_SOURCE_SATA 0x424
186#define CLK_SOURCE_NDSPEED 0x3f8
187#define CLK_SOURCE_VFIR 0x168
188#define CLK_SOURCE_SDMMC1 0x150
189#define CLK_SOURCE_SDMMC2 0x154
190#define CLK_SOURCE_SDMMC3 0x1bc
191#define CLK_SOURCE_SDMMC4 0x164
192#define CLK_SOURCE_VDE 0x1c8
193#define CLK_SOURCE_CSITE 0x1d4
194#define CLK_SOURCE_LA 0x1f8
195#define CLK_SOURCE_TRACE 0x634
196#define CLK_SOURCE_OWR 0x1cc
197#define CLK_SOURCE_NOR 0x1d0
198#define CLK_SOURCE_MIPI 0x174
199#define CLK_SOURCE_I2C1 0x124
200#define CLK_SOURCE_I2C2 0x198
201#define CLK_SOURCE_I2C3 0x1b8
202#define CLK_SOURCE_I2C4 0x3c4
203#define CLK_SOURCE_I2C5 0x128
204#define CLK_SOURCE_UARTA 0x178
205#define CLK_SOURCE_UARTB 0x17c
206#define CLK_SOURCE_UARTC 0x1a0
207#define CLK_SOURCE_UARTD 0x1c0
208#define CLK_SOURCE_UARTE 0x1c4
209#define CLK_SOURCE_UARTA_DBG 0x178
210#define CLK_SOURCE_UARTB_DBG 0x17c
211#define CLK_SOURCE_UARTC_DBG 0x1a0
212#define CLK_SOURCE_UARTD_DBG 0x1c0
213#define CLK_SOURCE_UARTE_DBG 0x1c4
214#define CLK_SOURCE_3D 0x158
215#define CLK_SOURCE_2D 0x15c
216#define CLK_SOURCE_VI_SENSOR 0x1a8
217#define CLK_SOURCE_VI 0x148
218#define CLK_SOURCE_EPP 0x16c
219#define CLK_SOURCE_MSENC 0x1f0
220#define CLK_SOURCE_TSEC 0x1f4
221#define CLK_SOURCE_HOST1X 0x180
222#define CLK_SOURCE_HDMI 0x18c
223#define CLK_SOURCE_DISP1 0x138
224#define CLK_SOURCE_DISP2 0x13c
225#define CLK_SOURCE_CILAB 0x614
226#define CLK_SOURCE_CILCD 0x618
227#define CLK_SOURCE_CILE 0x61c
228#define CLK_SOURCE_DSIALP 0x620
229#define CLK_SOURCE_DSIBLP 0x624
230#define CLK_SOURCE_TSENSOR 0x3b8
231#define CLK_SOURCE_D_AUDIO 0x3d0
232#define CLK_SOURCE_DAM0 0x3d8
233#define CLK_SOURCE_DAM1 0x3dc
234#define CLK_SOURCE_DAM2 0x3e0
235#define CLK_SOURCE_ACTMON 0x3e8
236#define CLK_SOURCE_EXTERN1 0x3ec
237#define CLK_SOURCE_EXTERN2 0x3f0
238#define CLK_SOURCE_EXTERN3 0x3f4
239#define CLK_SOURCE_I2CSLOW 0x3fc
240#define CLK_SOURCE_SE 0x42c
241#define CLK_SOURCE_MSELECT 0x3b4
Paul Walmsley9e601212013-06-07 06:19:01 -0600242#define CLK_SOURCE_DFLL_REF 0x62c
243#define CLK_SOURCE_DFLL_SOC 0x630
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300244#define CLK_SOURCE_SOC_THERM 0x644
245#define CLK_SOURCE_XUSB_HOST_SRC 0x600
246#define CLK_SOURCE_XUSB_FALCON_SRC 0x604
247#define CLK_SOURCE_XUSB_FS_SRC 0x608
248#define CLK_SOURCE_XUSB_SS_SRC 0x610
249#define CLK_SOURCE_XUSB_DEV_SRC 0x60c
250#define CLK_SOURCE_EMC 0x19c
251
Peter De Schrijverd53442e2013-06-06 13:47:29 +0300252/* PLLM override registers */
253#define PMC_PLLM_WB0_OVERRIDE 0x1dc
254#define PMC_PLLM_WB0_OVERRIDE_2 0x2b0
255
Joseph Lo31972fd2013-05-20 18:39:28 +0800256/* Tegra CPU clock and reset control regs */
257#define CLK_RST_CONTROLLER_CPU_CMPLX_STATUS 0x470
258
Joseph Load7d1142013-07-03 17:50:44 +0800259#ifdef CONFIG_PM_SLEEP
260static struct cpu_clk_suspend_context {
261 u32 clk_csite_src;
Joseph Lo0017f442013-08-12 17:40:02 +0800262 u32 cclkg_burst;
263 u32 cclkg_divider;
Joseph Load7d1142013-07-03 17:50:44 +0800264} tegra114_cpu_clk_sctx;
265#endif
266
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300267static void __iomem *clk_base;
268static void __iomem *pmc_base;
269
270static DEFINE_SPINLOCK(pll_d_lock);
271static DEFINE_SPINLOCK(pll_d2_lock);
272static DEFINE_SPINLOCK(pll_u_lock);
273static DEFINE_SPINLOCK(pll_div_lock);
274static DEFINE_SPINLOCK(pll_re_lock);
275static DEFINE_SPINLOCK(clk_doubler_lock);
276static DEFINE_SPINLOCK(clk_out_lock);
277static DEFINE_SPINLOCK(sysrate_lock);
278
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300279static struct div_nmp pllxc_nmp = {
280 .divm_shift = 0,
281 .divm_width = 8,
282 .divn_shift = 8,
283 .divn_width = 8,
284 .divp_shift = 20,
285 .divp_width = 4,
286};
287
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300288static struct pdiv_map pllxc_p[] = {
289 { .pdiv = 1, .hw_val = 0 },
290 { .pdiv = 2, .hw_val = 1 },
291 { .pdiv = 3, .hw_val = 2 },
292 { .pdiv = 4, .hw_val = 3 },
293 { .pdiv = 5, .hw_val = 4 },
294 { .pdiv = 6, .hw_val = 5 },
295 { .pdiv = 8, .hw_val = 6 },
296 { .pdiv = 10, .hw_val = 7 },
297 { .pdiv = 12, .hw_val = 8 },
298 { .pdiv = 16, .hw_val = 9 },
299 { .pdiv = 12, .hw_val = 10 },
300 { .pdiv = 16, .hw_val = 11 },
301 { .pdiv = 20, .hw_val = 12 },
302 { .pdiv = 24, .hw_val = 13 },
303 { .pdiv = 32, .hw_val = 14 },
304 { .pdiv = 0, .hw_val = 0 },
305};
306
307static struct tegra_clk_pll_freq_table pll_c_freq_table[] = {
308 { 12000000, 624000000, 104, 0, 2},
309 { 12000000, 600000000, 100, 0, 2},
310 { 13000000, 600000000, 92, 0, 2}, /* actual: 598.0 MHz */
311 { 16800000, 600000000, 71, 0, 2}, /* actual: 596.4 MHz */
312 { 19200000, 600000000, 62, 0, 2}, /* actual: 595.2 MHz */
313 { 26000000, 600000000, 92, 1, 2}, /* actual: 598.0 MHz */
314 { 0, 0, 0, 0, 0, 0 },
315};
316
317static struct tegra_clk_pll_params pll_c_params = {
318 .input_min = 12000000,
319 .input_max = 800000000,
320 .cf_min = 12000000,
321 .cf_max = 19200000, /* s/w policy, h/w capability 50 MHz */
322 .vco_min = 600000000,
323 .vco_max = 1400000000,
324 .base_reg = PLLC_BASE,
325 .misc_reg = PLLC_MISC,
326 .lock_mask = PLL_BASE_LOCK,
327 .lock_enable_bit_idx = PLLC_MISC_LOCK_ENABLE,
328 .lock_delay = 300,
329 .iddq_reg = PLLC_MISC,
330 .iddq_bit_idx = PLLC_IDDQ_BIT,
331 .max_p = PLLXC_SW_MAX_P,
332 .dyn_ramp_reg = PLLC_MISC2,
333 .stepa_shift = 17,
334 .stepb_shift = 9,
335 .pdiv_tohw = pllxc_p,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300336 .div_nmp = &pllxc_nmp,
337};
338
339static struct div_nmp pllcx_nmp = {
340 .divm_shift = 0,
341 .divm_width = 2,
342 .divn_shift = 8,
343 .divn_width = 8,
344 .divp_shift = 20,
345 .divp_width = 3,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300346};
347
348static struct pdiv_map pllc_p[] = {
349 { .pdiv = 1, .hw_val = 0 },
350 { .pdiv = 2, .hw_val = 1 },
351 { .pdiv = 4, .hw_val = 3 },
352 { .pdiv = 8, .hw_val = 5 },
353 { .pdiv = 16, .hw_val = 7 },
354 { .pdiv = 0, .hw_val = 0 },
355};
356
357static struct tegra_clk_pll_freq_table pll_cx_freq_table[] = {
358 {12000000, 600000000, 100, 0, 2},
359 {13000000, 600000000, 92, 0, 2}, /* actual: 598.0 MHz */
360 {16800000, 600000000, 71, 0, 2}, /* actual: 596.4 MHz */
361 {19200000, 600000000, 62, 0, 2}, /* actual: 595.2 MHz */
362 {26000000, 600000000, 92, 1, 2}, /* actual: 598.0 MHz */
363 {0, 0, 0, 0, 0, 0},
364};
365
366static struct tegra_clk_pll_params pll_c2_params = {
367 .input_min = 12000000,
368 .input_max = 48000000,
369 .cf_min = 12000000,
370 .cf_max = 19200000,
371 .vco_min = 600000000,
372 .vco_max = 1200000000,
373 .base_reg = PLLC2_BASE,
374 .misc_reg = PLLC2_MISC,
375 .lock_mask = PLL_BASE_LOCK,
376 .lock_enable_bit_idx = PLL_MISC_LOCK_ENABLE,
377 .lock_delay = 300,
378 .pdiv_tohw = pllc_p,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300379 .div_nmp = &pllcx_nmp,
380 .max_p = 7,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300381 .ext_misc_reg[0] = 0x4f0,
382 .ext_misc_reg[1] = 0x4f4,
383 .ext_misc_reg[2] = 0x4f8,
384};
385
386static struct tegra_clk_pll_params pll_c3_params = {
387 .input_min = 12000000,
388 .input_max = 48000000,
389 .cf_min = 12000000,
390 .cf_max = 19200000,
391 .vco_min = 600000000,
392 .vco_max = 1200000000,
393 .base_reg = PLLC3_BASE,
394 .misc_reg = PLLC3_MISC,
395 .lock_mask = PLL_BASE_LOCK,
396 .lock_enable_bit_idx = PLL_MISC_LOCK_ENABLE,
397 .lock_delay = 300,
398 .pdiv_tohw = pllc_p,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300399 .div_nmp = &pllcx_nmp,
400 .max_p = 7,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300401 .ext_misc_reg[0] = 0x504,
402 .ext_misc_reg[1] = 0x508,
403 .ext_misc_reg[2] = 0x50c,
404};
405
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300406static struct div_nmp pllm_nmp = {
407 .divm_shift = 0,
408 .divm_width = 8,
Peter De Schrijverd53442e2013-06-06 13:47:29 +0300409 .override_divm_shift = 0,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300410 .divn_shift = 8,
411 .divn_width = 8,
Peter De Schrijverd53442e2013-06-06 13:47:29 +0300412 .override_divn_shift = 8,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300413 .divp_shift = 20,
414 .divp_width = 1,
Peter De Schrijverd53442e2013-06-06 13:47:29 +0300415 .override_divp_shift = 27,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300416};
417
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300418static struct pdiv_map pllm_p[] = {
419 { .pdiv = 1, .hw_val = 0 },
420 { .pdiv = 2, .hw_val = 1 },
421 { .pdiv = 0, .hw_val = 0 },
422};
423
424static struct tegra_clk_pll_freq_table pll_m_freq_table[] = {
425 {12000000, 800000000, 66, 0, 1}, /* actual: 792.0 MHz */
426 {13000000, 800000000, 61, 0, 1}, /* actual: 793.0 MHz */
427 {16800000, 800000000, 47, 0, 1}, /* actual: 789.6 MHz */
428 {19200000, 800000000, 41, 0, 1}, /* actual: 787.2 MHz */
429 {26000000, 800000000, 61, 1, 1}, /* actual: 793.0 MHz */
430 {0, 0, 0, 0, 0, 0},
431};
432
433static struct tegra_clk_pll_params pll_m_params = {
434 .input_min = 12000000,
435 .input_max = 500000000,
436 .cf_min = 12000000,
437 .cf_max = 19200000, /* s/w policy, h/w capability 50 MHz */
438 .vco_min = 400000000,
439 .vco_max = 1066000000,
440 .base_reg = PLLM_BASE,
441 .misc_reg = PLLM_MISC,
442 .lock_mask = PLL_BASE_LOCK,
443 .lock_enable_bit_idx = PLL_MISC_LOCK_ENABLE,
444 .lock_delay = 300,
445 .max_p = 2,
446 .pdiv_tohw = pllm_p,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300447 .div_nmp = &pllm_nmp,
Peter De Schrijverd53442e2013-06-06 13:47:29 +0300448 .pmc_divnm_reg = PMC_PLLM_WB0_OVERRIDE,
449 .pmc_divp_reg = PMC_PLLM_WB0_OVERRIDE_2,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300450};
451
452static struct div_nmp pllp_nmp = {
453 .divm_shift = 0,
454 .divm_width = 5,
455 .divn_shift = 8,
456 .divn_width = 10,
457 .divp_shift = 20,
458 .divp_width = 3,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300459};
460
461static struct tegra_clk_pll_freq_table pll_p_freq_table[] = {
462 {12000000, 216000000, 432, 12, 1, 8},
463 {13000000, 216000000, 432, 13, 1, 8},
464 {16800000, 216000000, 360, 14, 1, 8},
465 {19200000, 216000000, 360, 16, 1, 8},
466 {26000000, 216000000, 432, 26, 1, 8},
467 {0, 0, 0, 0, 0, 0},
468};
469
470static struct tegra_clk_pll_params pll_p_params = {
471 .input_min = 2000000,
472 .input_max = 31000000,
473 .cf_min = 1000000,
474 .cf_max = 6000000,
475 .vco_min = 200000000,
476 .vco_max = 700000000,
477 .base_reg = PLLP_BASE,
478 .misc_reg = PLLP_MISC,
479 .lock_mask = PLL_BASE_LOCK,
480 .lock_enable_bit_idx = PLL_MISC_LOCK_ENABLE,
481 .lock_delay = 300,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300482 .div_nmp = &pllp_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300483};
484
485static struct tegra_clk_pll_freq_table pll_a_freq_table[] = {
486 {9600000, 282240000, 147, 5, 0, 4},
487 {9600000, 368640000, 192, 5, 0, 4},
488 {9600000, 240000000, 200, 8, 0, 8},
489
490 {28800000, 282240000, 245, 25, 0, 8},
491 {28800000, 368640000, 320, 25, 0, 8},
492 {28800000, 240000000, 200, 24, 0, 8},
493 {0, 0, 0, 0, 0, 0},
494};
495
496
497static struct tegra_clk_pll_params pll_a_params = {
498 .input_min = 2000000,
499 .input_max = 31000000,
500 .cf_min = 1000000,
501 .cf_max = 6000000,
502 .vco_min = 200000000,
503 .vco_max = 700000000,
504 .base_reg = PLLA_BASE,
505 .misc_reg = PLLA_MISC,
506 .lock_mask = PLL_BASE_LOCK,
507 .lock_enable_bit_idx = PLL_MISC_LOCK_ENABLE,
508 .lock_delay = 300,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300509 .div_nmp = &pllp_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300510};
511
512static struct tegra_clk_pll_freq_table pll_d_freq_table[] = {
513 {12000000, 216000000, 864, 12, 2, 12},
514 {13000000, 216000000, 864, 13, 2, 12},
515 {16800000, 216000000, 720, 14, 2, 12},
516 {19200000, 216000000, 720, 16, 2, 12},
517 {26000000, 216000000, 864, 26, 2, 12},
518
519 {12000000, 594000000, 594, 12, 0, 12},
520 {13000000, 594000000, 594, 13, 0, 12},
521 {16800000, 594000000, 495, 14, 0, 12},
522 {19200000, 594000000, 495, 16, 0, 12},
523 {26000000, 594000000, 594, 26, 0, 12},
524
525 {12000000, 1000000000, 1000, 12, 0, 12},
526 {13000000, 1000000000, 1000, 13, 0, 12},
527 {19200000, 1000000000, 625, 12, 0, 12},
528 {26000000, 1000000000, 1000, 26, 0, 12},
529
530 {0, 0, 0, 0, 0, 0},
531};
532
533static struct tegra_clk_pll_params pll_d_params = {
534 .input_min = 2000000,
535 .input_max = 40000000,
536 .cf_min = 1000000,
537 .cf_max = 6000000,
538 .vco_min = 500000000,
539 .vco_max = 1000000000,
540 .base_reg = PLLD_BASE,
541 .misc_reg = PLLD_MISC,
542 .lock_mask = PLL_BASE_LOCK,
543 .lock_enable_bit_idx = PLLDU_MISC_LOCK_ENABLE,
544 .lock_delay = 1000,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300545 .div_nmp = &pllp_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300546};
547
548static struct tegra_clk_pll_params pll_d2_params = {
549 .input_min = 2000000,
550 .input_max = 40000000,
551 .cf_min = 1000000,
552 .cf_max = 6000000,
553 .vco_min = 500000000,
554 .vco_max = 1000000000,
555 .base_reg = PLLD2_BASE,
556 .misc_reg = PLLD2_MISC,
557 .lock_mask = PLL_BASE_LOCK,
558 .lock_enable_bit_idx = PLLDU_MISC_LOCK_ENABLE,
559 .lock_delay = 1000,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300560 .div_nmp = &pllp_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300561};
562
563static struct pdiv_map pllu_p[] = {
564 { .pdiv = 1, .hw_val = 1 },
565 { .pdiv = 2, .hw_val = 0 },
566 { .pdiv = 0, .hw_val = 0 },
567};
568
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300569static struct div_nmp pllu_nmp = {
570 .divm_shift = 0,
571 .divm_width = 5,
572 .divn_shift = 8,
573 .divn_width = 10,
574 .divp_shift = 20,
575 .divp_width = 1,
576};
577
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300578static struct tegra_clk_pll_freq_table pll_u_freq_table[] = {
579 {12000000, 480000000, 960, 12, 0, 12},
580 {13000000, 480000000, 960, 13, 0, 12},
581 {16800000, 480000000, 400, 7, 0, 5},
582 {19200000, 480000000, 200, 4, 0, 3},
583 {26000000, 480000000, 960, 26, 0, 12},
584 {0, 0, 0, 0, 0, 0},
585};
586
587static struct tegra_clk_pll_params pll_u_params = {
588 .input_min = 2000000,
589 .input_max = 40000000,
590 .cf_min = 1000000,
591 .cf_max = 6000000,
592 .vco_min = 480000000,
593 .vco_max = 960000000,
594 .base_reg = PLLU_BASE,
595 .misc_reg = PLLU_MISC,
596 .lock_mask = PLL_BASE_LOCK,
597 .lock_enable_bit_idx = PLLDU_MISC_LOCK_ENABLE,
598 .lock_delay = 1000,
599 .pdiv_tohw = pllu_p,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300600 .div_nmp = &pllu_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300601};
602
603static struct tegra_clk_pll_freq_table pll_x_freq_table[] = {
604 /* 1 GHz */
605 {12000000, 1000000000, 83, 0, 1}, /* actual: 996.0 MHz */
606 {13000000, 1000000000, 76, 0, 1}, /* actual: 988.0 MHz */
607 {16800000, 1000000000, 59, 0, 1}, /* actual: 991.2 MHz */
608 {19200000, 1000000000, 52, 0, 1}, /* actual: 998.4 MHz */
609 {26000000, 1000000000, 76, 1, 1}, /* actual: 988.0 MHz */
610
611 {0, 0, 0, 0, 0, 0},
612};
613
614static struct tegra_clk_pll_params pll_x_params = {
615 .input_min = 12000000,
616 .input_max = 800000000,
617 .cf_min = 12000000,
618 .cf_max = 19200000, /* s/w policy, h/w capability 50 MHz */
619 .vco_min = 700000000,
620 .vco_max = 2400000000U,
621 .base_reg = PLLX_BASE,
622 .misc_reg = PLLX_MISC,
623 .lock_mask = PLL_BASE_LOCK,
624 .lock_enable_bit_idx = PLL_MISC_LOCK_ENABLE,
625 .lock_delay = 300,
626 .iddq_reg = PLLX_MISC3,
627 .iddq_bit_idx = PLLX_IDDQ_BIT,
628 .max_p = PLLXC_SW_MAX_P,
629 .dyn_ramp_reg = PLLX_MISC2,
630 .stepa_shift = 16,
631 .stepb_shift = 24,
632 .pdiv_tohw = pllxc_p,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300633 .div_nmp = &pllxc_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300634};
635
636static struct tegra_clk_pll_freq_table pll_e_freq_table[] = {
637 /* PLLE special case: use cpcon field to store cml divider value */
638 {336000000, 100000000, 100, 21, 16, 11},
639 {312000000, 100000000, 200, 26, 24, 13},
640 {0, 0, 0, 0, 0, 0},
641};
642
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300643static struct div_nmp plle_nmp = {
644 .divm_shift = 0,
645 .divm_width = 8,
646 .divn_shift = 8,
647 .divn_width = 8,
648 .divp_shift = 24,
649 .divp_width = 4,
650};
651
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300652static struct tegra_clk_pll_params pll_e_params = {
653 .input_min = 12000000,
654 .input_max = 1000000000,
655 .cf_min = 12000000,
656 .cf_max = 75000000,
657 .vco_min = 1600000000,
658 .vco_max = 2400000000U,
659 .base_reg = PLLE_BASE,
660 .misc_reg = PLLE_MISC,
661 .aux_reg = PLLE_AUX,
662 .lock_mask = PLLE_MISC_LOCK,
663 .lock_enable_bit_idx = PLLE_MISC_LOCK_ENABLE,
664 .lock_delay = 300,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300665 .div_nmp = &plle_nmp,
666};
667
668static struct div_nmp pllre_nmp = {
669 .divm_shift = 0,
670 .divm_width = 8,
671 .divn_shift = 8,
672 .divn_width = 8,
673 .divp_shift = 16,
674 .divp_width = 4,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300675};
676
677static struct tegra_clk_pll_params pll_re_vco_params = {
678 .input_min = 12000000,
679 .input_max = 1000000000,
680 .cf_min = 12000000,
681 .cf_max = 19200000, /* s/w policy, h/w capability 38 MHz */
682 .vco_min = 300000000,
683 .vco_max = 600000000,
684 .base_reg = PLLRE_BASE,
685 .misc_reg = PLLRE_MISC,
686 .lock_mask = PLLRE_MISC_LOCK,
687 .lock_enable_bit_idx = PLLRE_MISC_LOCK_ENABLE,
688 .lock_delay = 300,
689 .iddq_reg = PLLRE_MISC,
690 .iddq_bit_idx = PLLRE_IDDQ_BIT,
Peter De Schrijverfd428ad2013-06-05 16:51:26 +0300691 .div_nmp = &pllre_nmp,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300692};
693
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300694/* possible OSC frequencies in Hz */
695static unsigned long tegra114_input_freq[] = {
696 [0] = 13000000,
697 [1] = 16800000,
698 [4] = 19200000,
699 [5] = 38400000,
700 [8] = 12000000,
701 [9] = 48000000,
702 [12] = 260000000,
703};
704
705#define MASK(x) (BIT(x) - 1)
706
707#define TEGRA_INIT_DATA_MUX(_name, _con_id, _dev_id, _parents, _offset, \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300708 _clk_num, _gate_flags, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300709 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200710 30, MASK(2), 0, 0, 8, 1, TEGRA_DIVIDER_ROUND_UP, \
Peter De Schrijver343a6072013-09-02 15:22:02 +0300711 _clk_num, _gate_flags, _clk_id, _parents##_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300712
713#define TEGRA_INIT_DATA_MUX_FLAGS(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300714 _clk_num, _gate_flags, _clk_id, flags)\
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300715 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200716 30, MASK(2), 0, 0, 8, 1, TEGRA_DIVIDER_ROUND_UP,\
Peter De Schrijver343a6072013-09-02 15:22:02 +0300717 _clk_num, _gate_flags, _clk_id, _parents##_idx, flags)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300718
719#define TEGRA_INIT_DATA_MUX8(_name, _con_id, _dev_id, _parents, _offset, \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300720 _clk_num, _gate_flags, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300721 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200722 29, MASK(3), 0, 0, 8, 1, TEGRA_DIVIDER_ROUND_UP,\
Peter De Schrijver343a6072013-09-02 15:22:02 +0300723 _clk_num, _gate_flags, _clk_id, _parents##_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300724
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300725#define TEGRA_INIT_DATA_INT_FLAGS(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300726 _clk_num, _gate_flags, _clk_id, flags)\
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300727 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200728 30, MASK(2), 0, 0, 8, 1, TEGRA_DIVIDER_INT | \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300729 TEGRA_DIVIDER_ROUND_UP, _clk_num, \
Peter De Schrijver343a6072013-09-02 15:22:02 +0300730 _gate_flags, _clk_id, _parents##_idx, flags)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300731
732#define TEGRA_INIT_DATA_INT8(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300733 _clk_num, _gate_flags, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300734 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200735 29, MASK(3), 0, 0, 8, 1, TEGRA_DIVIDER_INT | \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300736 TEGRA_DIVIDER_ROUND_UP, _clk_num, \
Peter De Schrijver343a6072013-09-02 15:22:02 +0300737 _gate_flags, _clk_id, _parents##_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300738
739#define TEGRA_INIT_DATA_UART(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300740 _clk_num, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300741 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200742 30, MASK(2), 0, 0, 16, 1, TEGRA_DIVIDER_UART | \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300743 TEGRA_DIVIDER_ROUND_UP, _clk_num, \
Peter De Schrijver343a6072013-09-02 15:22:02 +0300744 0, _clk_id, _parents##_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300745
746#define TEGRA_INIT_DATA_I2C(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300747 _clk_num, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300748 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200749 30, MASK(2), 0, 0, 16, 0, TEGRA_DIVIDER_ROUND_UP,\
Peter De Schrijver343a6072013-09-02 15:22:02 +0300750 _clk_num, 0, _clk_id, _parents##_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300751
752#define TEGRA_INIT_DATA_NODIV(_name, _con_id, _dev_id, _parents, _offset, \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300753 _mux_shift, _mux_mask, _clk_num, \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300754 _gate_flags, _clk_id) \
755 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300756 _mux_shift, _mux_mask, 0, 0, 0, 0, 0,\
Peter De Schrijver343a6072013-09-02 15:22:02 +0300757 _clk_num, _gate_flags, \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300758 _clk_id, _parents##_idx, 0)
759
760#define TEGRA_INIT_DATA_XUSB(_name, _con_id, _dev_id, _parents, _offset, \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300761 _clk_num, _gate_flags, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300762 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, _parents, _offset, \
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200763 29, MASK(3), 0, 0, 8, 1, TEGRA_DIVIDER_INT | \
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300764 TEGRA_DIVIDER_ROUND_UP, _clk_num, \
Peter De Schrijver343a6072013-09-02 15:22:02 +0300765 _gate_flags, _clk_id, _parents##_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300766
767#define TEGRA_INIT_DATA_AUDIO(_name, _con_id, _dev_id, _offset, _clk_num,\
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +0300768 _gate_flags, _clk_id) \
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300769 TEGRA_INIT_DATA_TABLE(_name, _con_id, _dev_id, mux_d_audio_clk, \
Peter De Schrijver252d0d22013-11-26 13:48:09 +0200770 _offset, 16, 0xE01F, 0, 0, 8, 1, \
Peter De Schrijver343a6072013-09-02 15:22:02 +0300771 TEGRA_DIVIDER_ROUND_UP, _clk_num, \
772 _gate_flags , _clk_id, mux_d_audio_clk_idx, 0)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300773
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300774struct utmi_clk_param {
775 /* Oscillator Frequency in KHz */
776 u32 osc_frequency;
777 /* UTMIP PLL Enable Delay Count */
778 u8 enable_delay_count;
779 /* UTMIP PLL Stable count */
780 u8 stable_count;
781 /* UTMIP PLL Active delay count */
782 u8 active_delay_count;
783 /* UTMIP PLL Xtal frequency count */
784 u8 xtal_freq_count;
785};
786
787static const struct utmi_clk_param utmi_parameters[] = {
788 {.osc_frequency = 13000000, .enable_delay_count = 0x02,
789 .stable_count = 0x33, .active_delay_count = 0x05,
790 .xtal_freq_count = 0x7F},
791 {.osc_frequency = 19200000, .enable_delay_count = 0x03,
792 .stable_count = 0x4B, .active_delay_count = 0x06,
793 .xtal_freq_count = 0xBB},
794 {.osc_frequency = 12000000, .enable_delay_count = 0x02,
795 .stable_count = 0x2F, .active_delay_count = 0x04,
796 .xtal_freq_count = 0x76},
797 {.osc_frequency = 26000000, .enable_delay_count = 0x04,
798 .stable_count = 0x66, .active_delay_count = 0x09,
799 .xtal_freq_count = 0xFE},
800 {.osc_frequency = 16800000, .enable_delay_count = 0x03,
801 .stable_count = 0x41, .active_delay_count = 0x0A,
802 .xtal_freq_count = 0xA4},
803};
804
805/* peripheral mux definitions */
806
807#define MUX_I2S_SPDIF(_id) \
808static const char *mux_pllaout0_##_id##_2x_pllp_clkm[] = { "pll_a_out0", \
809 #_id, "pll_p",\
810 "clk_m"};
811MUX_I2S_SPDIF(audio0)
812MUX_I2S_SPDIF(audio1)
813MUX_I2S_SPDIF(audio2)
814MUX_I2S_SPDIF(audio3)
815MUX_I2S_SPDIF(audio4)
816MUX_I2S_SPDIF(audio)
817
818#define mux_pllaout0_audio0_2x_pllp_clkm_idx NULL
819#define mux_pllaout0_audio1_2x_pllp_clkm_idx NULL
820#define mux_pllaout0_audio2_2x_pllp_clkm_idx NULL
821#define mux_pllaout0_audio3_2x_pllp_clkm_idx NULL
822#define mux_pllaout0_audio4_2x_pllp_clkm_idx NULL
823#define mux_pllaout0_audio_2x_pllp_clkm_idx NULL
824
825static const char *mux_pllp_pllc_pllm_clkm[] = {
826 "pll_p", "pll_c", "pll_m", "clk_m"
827};
828#define mux_pllp_pllc_pllm_clkm_idx NULL
829
830static const char *mux_pllp_pllc_pllm[] = { "pll_p", "pll_c", "pll_m" };
831#define mux_pllp_pllc_pllm_idx NULL
832
833static const char *mux_pllp_pllc_clk32_clkm[] = {
834 "pll_p", "pll_c", "clk_32k", "clk_m"
835};
836#define mux_pllp_pllc_clk32_clkm_idx NULL
837
838static const char *mux_plla_pllc_pllp_clkm[] = {
839 "pll_a_out0", "pll_c", "pll_p", "clk_m"
840};
841#define mux_plla_pllc_pllp_clkm_idx mux_pllp_pllc_pllm_clkm_idx
842
843static const char *mux_pllp_pllc2_c_c3_pllm_clkm[] = {
844 "pll_p", "pll_c2", "pll_c", "pll_c3", "pll_m", "clk_m"
845};
846static u32 mux_pllp_pllc2_c_c3_pllm_clkm_idx[] = {
847 [0] = 0, [1] = 1, [2] = 2, [3] = 3, [4] = 4, [5] = 6,
848};
849
850static const char *mux_pllp_clkm[] = {
851 "pll_p", "clk_m"
852};
853static u32 mux_pllp_clkm_idx[] = {
854 [0] = 0, [1] = 3,
855};
856
857static const char *mux_pllm_pllc2_c_c3_pllp_plla[] = {
858 "pll_m", "pll_c2", "pll_c", "pll_c3", "pll_p", "pll_a_out0"
859};
860#define mux_pllm_pllc2_c_c3_pllp_plla_idx mux_pllp_pllc2_c_c3_pllm_clkm_idx
861
862static const char *mux_pllp_pllm_plld_plla_pllc_plld2_clkm[] = {
863 "pll_p", "pll_m", "pll_d_out0", "pll_a_out0", "pll_c",
864 "pll_d2_out0", "clk_m"
865};
866#define mux_pllp_pllm_plld_plla_pllc_plld2_clkm_idx NULL
867
868static const char *mux_pllm_pllc_pllp_plla[] = {
869 "pll_m", "pll_c", "pll_p", "pll_a_out0"
870};
871#define mux_pllm_pllc_pllp_plla_idx mux_pllp_pllc_pllm_clkm_idx
872
873static const char *mux_pllp_pllc_clkm[] = {
874 "pll_p", "pll_c", "pll_m"
875};
876static u32 mux_pllp_pllc_clkm_idx[] = {
877 [0] = 0, [1] = 1, [2] = 3,
878};
879
880static const char *mux_pllp_pllc_clkm_clk32[] = {
881 "pll_p", "pll_c", "clk_m", "clk_32k"
882};
883#define mux_pllp_pllc_clkm_clk32_idx NULL
884
885static const char *mux_plla_clk32_pllp_clkm_plle[] = {
886 "pll_a_out0", "clk_32k", "pll_p", "clk_m", "pll_e_out0"
887};
888#define mux_plla_clk32_pllp_clkm_plle_idx NULL
889
890static const char *mux_clkm_pllp_pllc_pllre[] = {
891 "clk_m", "pll_p", "pll_c", "pll_re_out"
892};
893static u32 mux_clkm_pllp_pllc_pllre_idx[] = {
894 [0] = 0, [1] = 1, [2] = 3, [3] = 5,
895};
896
897static const char *mux_clkm_48M_pllp_480M[] = {
898 "clk_m", "pll_u_48M", "pll_p", "pll_u_480M"
899};
900#define mux_clkm_48M_pllp_480M_idx NULL
901
902static const char *mux_clkm_pllre_clk32_480M_pllc_ref[] = {
903 "clk_m", "pll_re_out", "clk_32k", "pll_u_480M", "pll_c", "pll_ref"
904};
905static u32 mux_clkm_pllre_clk32_480M_pllc_ref_idx[] = {
906 [0] = 0, [1] = 1, [2] = 3, [3] = 3, [4] = 4, [5] = 7,
907};
908
909static const char *mux_plld_out0_plld2_out0[] = {
910 "pll_d_out0", "pll_d2_out0",
911};
912#define mux_plld_out0_plld2_out0_idx NULL
913
914static const char *mux_d_audio_clk[] = {
915 "pll_a_out0", "pll_p", "clk_m", "spdif_in_sync", "i2s0_sync",
916 "i2s1_sync", "i2s2_sync", "i2s3_sync", "i2s4_sync", "vimclk_sync",
917};
918static u32 mux_d_audio_clk_idx[] = {
919 [0] = 0, [1] = 0x8000, [2] = 0xc000, [3] = 0xE000, [4] = 0xE001,
920 [5] = 0xE002, [6] = 0xE003, [7] = 0xE004, [8] = 0xE005, [9] = 0xE007,
921};
922
923static const char *mux_pllmcp_clkm[] = {
924 "pll_m_out0", "pll_c_out0", "pll_p_out0", "clk_m", "pll_m_ud",
925};
926
927static const struct clk_div_table pll_re_div_table[] = {
928 { .val = 0, .div = 1 },
929 { .val = 1, .div = 2 },
930 { .val = 2, .div = 3 },
931 { .val = 3, .div = 4 },
932 { .val = 4, .div = 5 },
933 { .val = 5, .div = 6 },
934 { .val = 0, .div = 0 },
935};
936
Peter De Schrijver343a6072013-09-02 15:22:02 +0300937static struct clk **clks;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300938
939static unsigned long osc_freq;
940static unsigned long pll_ref_freq;
941
942static int __init tegra114_osc_clk_init(void __iomem *clk_base)
943{
944 struct clk *clk;
945 u32 val, pll_ref_div;
946
947 val = readl_relaxed(clk_base + OSC_CTRL);
948
949 osc_freq = tegra114_input_freq[val >> OSC_CTRL_OSC_FREQ_SHIFT];
950 if (!osc_freq) {
951 WARN_ON(1);
952 return -EINVAL;
953 }
954
955 /* clk_m */
956 clk = clk_register_fixed_rate(NULL, "clk_m", NULL, CLK_IS_ROOT,
957 osc_freq);
958 clk_register_clkdev(clk, "clk_m", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +0300959 clks[TEGRA114_CLK_CLK_M] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300960
961 /* pll_ref */
962 val = (val >> OSC_CTRL_PLL_REF_DIV_SHIFT) & 3;
963 pll_ref_div = 1 << val;
964 clk = clk_register_fixed_factor(NULL, "pll_ref", "clk_m",
965 CLK_SET_RATE_PARENT, 1, pll_ref_div);
966 clk_register_clkdev(clk, "pll_ref", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +0300967 clks[TEGRA114_CLK_PLL_REF] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300968
969 pll_ref_freq = osc_freq / pll_ref_div;
970
971 return 0;
972}
973
974static void __init tegra114_fixed_clk_init(void __iomem *clk_base)
975{
976 struct clk *clk;
977
978 /* clk_32k */
979 clk = clk_register_fixed_rate(NULL, "clk_32k", NULL, CLK_IS_ROOT,
980 32768);
981 clk_register_clkdev(clk, "clk_32k", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +0300982 clks[TEGRA114_CLK_CLK_32K] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300983
984 /* clk_m_div2 */
985 clk = clk_register_fixed_factor(NULL, "clk_m_div2", "clk_m",
986 CLK_SET_RATE_PARENT, 1, 2);
987 clk_register_clkdev(clk, "clk_m_div2", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +0300988 clks[TEGRA114_CLK_CLK_M_DIV2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300989
990 /* clk_m_div4 */
991 clk = clk_register_fixed_factor(NULL, "clk_m_div4", "clk_m",
992 CLK_SET_RATE_PARENT, 1, 4);
993 clk_register_clkdev(clk, "clk_m_div4", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +0300994 clks[TEGRA114_CLK_CLK_M_DIV4] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +0300995
996}
997
998static __init void tegra114_utmi_param_configure(void __iomem *clk_base)
999{
1000 u32 reg;
1001 int i;
1002
1003 for (i = 0; i < ARRAY_SIZE(utmi_parameters); i++) {
1004 if (osc_freq == utmi_parameters[i].osc_frequency)
1005 break;
1006 }
1007
1008 if (i >= ARRAY_SIZE(utmi_parameters)) {
1009 pr_err("%s: Unexpected oscillator freq %lu\n", __func__,
1010 osc_freq);
1011 return;
1012 }
1013
1014 reg = readl_relaxed(clk_base + UTMIP_PLL_CFG2);
1015
1016 /* Program UTMIP PLL stable and active counts */
1017 /* [FIXME] arclk_rst.h says WRONG! This should be 1ms -> 0x50 Check! */
1018 reg &= ~UTMIP_PLL_CFG2_STABLE_COUNT(~0);
1019 reg |= UTMIP_PLL_CFG2_STABLE_COUNT(utmi_parameters[i].stable_count);
1020
1021 reg &= ~UTMIP_PLL_CFG2_ACTIVE_DLY_COUNT(~0);
1022
1023 reg |= UTMIP_PLL_CFG2_ACTIVE_DLY_COUNT(utmi_parameters[i].
1024 active_delay_count);
1025
1026 /* Remove power downs from UTMIP PLL control bits */
1027 reg &= ~UTMIP_PLL_CFG2_FORCE_PD_SAMP_A_POWERDOWN;
1028 reg &= ~UTMIP_PLL_CFG2_FORCE_PD_SAMP_B_POWERDOWN;
1029 reg &= ~UTMIP_PLL_CFG2_FORCE_PD_SAMP_C_POWERDOWN;
1030
1031 writel_relaxed(reg, clk_base + UTMIP_PLL_CFG2);
1032
1033 /* Program UTMIP PLL delay and oscillator frequency counts */
1034 reg = readl_relaxed(clk_base + UTMIP_PLL_CFG1);
1035 reg &= ~UTMIP_PLL_CFG1_ENABLE_DLY_COUNT(~0);
1036
1037 reg |= UTMIP_PLL_CFG1_ENABLE_DLY_COUNT(utmi_parameters[i].
1038 enable_delay_count);
1039
1040 reg &= ~UTMIP_PLL_CFG1_XTAL_FREQ_COUNT(~0);
1041 reg |= UTMIP_PLL_CFG1_XTAL_FREQ_COUNT(utmi_parameters[i].
1042 xtal_freq_count);
1043
1044 /* Remove power downs from UTMIP PLL control bits */
1045 reg &= ~UTMIP_PLL_CFG1_FORCE_PLL_ENABLE_POWERDOWN;
1046 reg &= ~UTMIP_PLL_CFG1_FORCE_PLL_ACTIVE_POWERDOWN;
1047 reg &= ~UTMIP_PLL_CFG1_FORCE_PLLU_POWERUP;
1048 reg &= ~UTMIP_PLL_CFG1_FORCE_PLLU_POWERDOWN;
1049 writel_relaxed(reg, clk_base + UTMIP_PLL_CFG1);
1050
1051 /* Setup HW control of UTMIPLL */
1052 reg = readl_relaxed(clk_base + UTMIPLL_HW_PWRDN_CFG0);
1053 reg |= UTMIPLL_HW_PWRDN_CFG0_USE_LOCKDET;
1054 reg &= ~UTMIPLL_HW_PWRDN_CFG0_CLK_ENABLE_SWCTL;
1055 reg |= UTMIPLL_HW_PWRDN_CFG0_SEQ_START_STATE;
1056 writel_relaxed(reg, clk_base + UTMIPLL_HW_PWRDN_CFG0);
1057
1058 reg = readl_relaxed(clk_base + UTMIP_PLL_CFG1);
1059 reg &= ~UTMIP_PLL_CFG1_FORCE_PLL_ENABLE_POWERUP;
1060 reg &= ~UTMIP_PLL_CFG1_FORCE_PLL_ENABLE_POWERDOWN;
1061 writel_relaxed(reg, clk_base + UTMIP_PLL_CFG1);
1062
1063 udelay(1);
1064
1065 /* Setup SW override of UTMIPLL assuming USB2.0
1066 ports are assigned to USB2 */
1067 reg = readl_relaxed(clk_base + UTMIPLL_HW_PWRDN_CFG0);
1068 reg |= UTMIPLL_HW_PWRDN_CFG0_IDDQ_SWCTL;
1069 reg &= ~UTMIPLL_HW_PWRDN_CFG0_IDDQ_OVERRIDE;
1070 writel_relaxed(reg, clk_base + UTMIPLL_HW_PWRDN_CFG0);
1071
1072 udelay(1);
1073
1074 /* Enable HW control UTMIPLL */
1075 reg = readl_relaxed(clk_base + UTMIPLL_HW_PWRDN_CFG0);
1076 reg |= UTMIPLL_HW_PWRDN_CFG0_SEQ_ENABLE;
1077 writel_relaxed(reg, clk_base + UTMIPLL_HW_PWRDN_CFG0);
1078}
1079
1080static void __init _clip_vco_min(struct tegra_clk_pll_params *pll_params)
1081{
1082 pll_params->vco_min =
1083 DIV_ROUND_UP(pll_params->vco_min, pll_ref_freq) * pll_ref_freq;
1084}
1085
1086static int __init _setup_dynamic_ramp(struct tegra_clk_pll_params *pll_params,
1087 void __iomem *clk_base)
1088{
1089 u32 val;
1090 u32 step_a, step_b;
1091
1092 switch (pll_ref_freq) {
1093 case 12000000:
1094 case 13000000:
1095 case 26000000:
1096 step_a = 0x2B;
1097 step_b = 0x0B;
1098 break;
1099 case 16800000:
1100 step_a = 0x1A;
1101 step_b = 0x09;
1102 break;
1103 case 19200000:
1104 step_a = 0x12;
1105 step_b = 0x08;
1106 break;
1107 default:
1108 pr_err("%s: Unexpected reference rate %lu\n",
1109 __func__, pll_ref_freq);
1110 WARN_ON(1);
1111 return -EINVAL;
1112 }
1113
1114 val = step_a << pll_params->stepa_shift;
1115 val |= step_b << pll_params->stepb_shift;
1116 writel_relaxed(val, clk_base + pll_params->dyn_ramp_reg);
1117
1118 return 0;
1119}
1120
1121static void __init _init_iddq(struct tegra_clk_pll_params *pll_params,
1122 void __iomem *clk_base)
1123{
1124 u32 val, val_iddq;
1125
1126 val = readl_relaxed(clk_base + pll_params->base_reg);
1127 val_iddq = readl_relaxed(clk_base + pll_params->iddq_reg);
1128
1129 if (val & BIT(30))
1130 WARN_ON(val_iddq & BIT(pll_params->iddq_bit_idx));
1131 else {
1132 val_iddq |= BIT(pll_params->iddq_bit_idx);
1133 writel_relaxed(val_iddq, clk_base + pll_params->iddq_reg);
1134 }
1135}
1136
1137static void __init tegra114_pll_init(void __iomem *clk_base,
1138 void __iomem *pmc)
1139{
1140 u32 val;
1141 struct clk *clk;
1142
1143 /* PLLC */
1144 _clip_vco_min(&pll_c_params);
1145 if (_setup_dynamic_ramp(&pll_c_params, clk_base) >= 0) {
1146 _init_iddq(&pll_c_params, clk_base);
1147 clk = tegra_clk_register_pllxc("pll_c", "pll_ref", clk_base,
1148 pmc, 0, 0, &pll_c_params, TEGRA_PLL_USE_LOCK,
1149 pll_c_freq_table, NULL);
1150 clk_register_clkdev(clk, "pll_c", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001151 clks[TEGRA114_CLK_PLL_C] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001152
1153 /* PLLC_OUT1 */
1154 clk = tegra_clk_register_divider("pll_c_out1_div", "pll_c",
1155 clk_base + PLLC_OUT, 0, TEGRA_DIVIDER_ROUND_UP,
1156 8, 8, 1, NULL);
1157 clk = tegra_clk_register_pll_out("pll_c_out1", "pll_c_out1_div",
1158 clk_base + PLLC_OUT, 1, 0,
1159 CLK_SET_RATE_PARENT, 0, NULL);
1160 clk_register_clkdev(clk, "pll_c_out1", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001161 clks[TEGRA114_CLK_PLL_C_OUT1] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001162 }
1163
1164 /* PLLC2 */
1165 _clip_vco_min(&pll_c2_params);
1166 clk = tegra_clk_register_pllc("pll_c2", "pll_ref", clk_base, pmc, 0, 0,
1167 &pll_c2_params, TEGRA_PLL_USE_LOCK,
1168 pll_cx_freq_table, NULL);
1169 clk_register_clkdev(clk, "pll_c2", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001170 clks[TEGRA114_CLK_PLL_C2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001171
1172 /* PLLC3 */
1173 _clip_vco_min(&pll_c3_params);
1174 clk = tegra_clk_register_pllc("pll_c3", "pll_ref", clk_base, pmc, 0, 0,
1175 &pll_c3_params, TEGRA_PLL_USE_LOCK,
1176 pll_cx_freq_table, NULL);
1177 clk_register_clkdev(clk, "pll_c3", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001178 clks[TEGRA114_CLK_PLL_C3] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001179
1180 /* PLLP */
1181 clk = tegra_clk_register_pll("pll_p", "pll_ref", clk_base, pmc, 0,
1182 408000000, &pll_p_params,
1183 TEGRA_PLL_FIXED | TEGRA_PLL_USE_LOCK,
1184 pll_p_freq_table, NULL);
1185 clk_register_clkdev(clk, "pll_p", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001186 clks[TEGRA114_CLK_PLL_P] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001187
1188 /* PLLP_OUT1 */
1189 clk = tegra_clk_register_divider("pll_p_out1_div", "pll_p",
1190 clk_base + PLLP_OUTA, 0, TEGRA_DIVIDER_FIXED |
1191 TEGRA_DIVIDER_ROUND_UP, 8, 8, 1, &pll_div_lock);
1192 clk = tegra_clk_register_pll_out("pll_p_out1", "pll_p_out1_div",
1193 clk_base + PLLP_OUTA, 1, 0,
1194 CLK_IGNORE_UNUSED | CLK_SET_RATE_PARENT, 0,
1195 &pll_div_lock);
1196 clk_register_clkdev(clk, "pll_p_out1", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001197 clks[TEGRA114_CLK_PLL_P_OUT1] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001198
1199 /* PLLP_OUT2 */
1200 clk = tegra_clk_register_divider("pll_p_out2_div", "pll_p",
1201 clk_base + PLLP_OUTA, 0, TEGRA_DIVIDER_FIXED |
Peter De Schrijverc388eee2013-06-05 16:37:17 +03001202 TEGRA_DIVIDER_ROUND_UP | TEGRA_DIVIDER_INT, 24,
1203 8, 1, &pll_div_lock);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001204 clk = tegra_clk_register_pll_out("pll_p_out2", "pll_p_out2_div",
1205 clk_base + PLLP_OUTA, 17, 16,
1206 CLK_IGNORE_UNUSED | CLK_SET_RATE_PARENT, 0,
1207 &pll_div_lock);
1208 clk_register_clkdev(clk, "pll_p_out2", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001209 clks[TEGRA114_CLK_PLL_P_OUT2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001210
1211 /* PLLP_OUT3 */
1212 clk = tegra_clk_register_divider("pll_p_out3_div", "pll_p",
1213 clk_base + PLLP_OUTB, 0, TEGRA_DIVIDER_FIXED |
1214 TEGRA_DIVIDER_ROUND_UP, 8, 8, 1, &pll_div_lock);
1215 clk = tegra_clk_register_pll_out("pll_p_out3", "pll_p_out3_div",
1216 clk_base + PLLP_OUTB, 1, 0,
1217 CLK_IGNORE_UNUSED | CLK_SET_RATE_PARENT, 0,
1218 &pll_div_lock);
1219 clk_register_clkdev(clk, "pll_p_out3", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001220 clks[TEGRA114_CLK_PLL_P_OUT3] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001221
1222 /* PLLP_OUT4 */
1223 clk = tegra_clk_register_divider("pll_p_out4_div", "pll_p",
1224 clk_base + PLLP_OUTB, 0, TEGRA_DIVIDER_FIXED |
1225 TEGRA_DIVIDER_ROUND_UP, 24, 8, 1,
1226 &pll_div_lock);
1227 clk = tegra_clk_register_pll_out("pll_p_out4", "pll_p_out4_div",
1228 clk_base + PLLP_OUTB, 17, 16,
1229 CLK_IGNORE_UNUSED | CLK_SET_RATE_PARENT, 0,
1230 &pll_div_lock);
1231 clk_register_clkdev(clk, "pll_p_out4", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001232 clks[TEGRA114_CLK_PLL_P_OUT4] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001233
1234 /* PLLM */
1235 _clip_vco_min(&pll_m_params);
1236 clk = tegra_clk_register_pllm("pll_m", "pll_ref", clk_base, pmc,
1237 CLK_IGNORE_UNUSED | CLK_SET_RATE_GATE, 0,
1238 &pll_m_params, TEGRA_PLL_USE_LOCK,
1239 pll_m_freq_table, NULL);
1240 clk_register_clkdev(clk, "pll_m", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001241 clks[TEGRA114_CLK_PLL_M] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001242
1243 /* PLLM_OUT1 */
1244 clk = tegra_clk_register_divider("pll_m_out1_div", "pll_m",
1245 clk_base + PLLM_OUT, 0, TEGRA_DIVIDER_ROUND_UP,
1246 8, 8, 1, NULL);
1247 clk = tegra_clk_register_pll_out("pll_m_out1", "pll_m_out1_div",
1248 clk_base + PLLM_OUT, 1, 0, CLK_IGNORE_UNUSED |
1249 CLK_SET_RATE_PARENT, 0, NULL);
1250 clk_register_clkdev(clk, "pll_m_out1", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001251 clks[TEGRA114_CLK_PLL_M_OUT1] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001252
1253 /* PLLM_UD */
1254 clk = clk_register_fixed_factor(NULL, "pll_m_ud", "pll_m",
1255 CLK_SET_RATE_PARENT, 1, 1);
1256
1257 /* PLLX */
1258 _clip_vco_min(&pll_x_params);
1259 if (_setup_dynamic_ramp(&pll_x_params, clk_base) >= 0) {
1260 _init_iddq(&pll_x_params, clk_base);
1261 clk = tegra_clk_register_pllxc("pll_x", "pll_ref", clk_base,
1262 pmc, CLK_IGNORE_UNUSED, 0, &pll_x_params,
1263 TEGRA_PLL_USE_LOCK, pll_x_freq_table, NULL);
1264 clk_register_clkdev(clk, "pll_x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001265 clks[TEGRA114_CLK_PLL_X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001266 }
1267
1268 /* PLLX_OUT0 */
1269 clk = clk_register_fixed_factor(NULL, "pll_x_out0", "pll_x",
1270 CLK_SET_RATE_PARENT, 1, 2);
1271 clk_register_clkdev(clk, "pll_x_out0", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001272 clks[TEGRA114_CLK_PLL_X_OUT0] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001273
1274 /* PLLU */
1275 val = readl(clk_base + pll_u_params.base_reg);
1276 val &= ~BIT(24); /* disable PLLU_OVERRIDE */
1277 writel(val, clk_base + pll_u_params.base_reg);
1278
1279 clk = tegra_clk_register_pll("pll_u", "pll_ref", clk_base, pmc, 0,
1280 0, &pll_u_params, TEGRA_PLLU |
1281 TEGRA_PLL_HAS_CPCON | TEGRA_PLL_SET_LFCON |
1282 TEGRA_PLL_USE_LOCK, pll_u_freq_table, &pll_u_lock);
1283 clk_register_clkdev(clk, "pll_u", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001284 clks[TEGRA114_CLK_PLL_U] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001285
1286 tegra114_utmi_param_configure(clk_base);
1287
1288 /* PLLU_480M */
1289 clk = clk_register_gate(NULL, "pll_u_480M", "pll_u",
1290 CLK_SET_RATE_PARENT, clk_base + PLLU_BASE,
1291 22, 0, &pll_u_lock);
1292 clk_register_clkdev(clk, "pll_u_480M", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001293 clks[TEGRA114_CLK_PLL_U_480M] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001294
1295 /* PLLU_60M */
1296 clk = clk_register_fixed_factor(NULL, "pll_u_60M", "pll_u",
1297 CLK_SET_RATE_PARENT, 1, 8);
1298 clk_register_clkdev(clk, "pll_u_60M", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001299 clks[TEGRA114_CLK_PLL_U_60M] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001300
1301 /* PLLU_48M */
1302 clk = clk_register_fixed_factor(NULL, "pll_u_48M", "pll_u",
1303 CLK_SET_RATE_PARENT, 1, 10);
1304 clk_register_clkdev(clk, "pll_u_48M", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001305 clks[TEGRA114_CLK_PLL_U_48M] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001306
1307 /* PLLU_12M */
1308 clk = clk_register_fixed_factor(NULL, "pll_u_12M", "pll_u",
1309 CLK_SET_RATE_PARENT, 1, 40);
1310 clk_register_clkdev(clk, "pll_u_12M", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001311 clks[TEGRA114_CLK_PLL_U_12M] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001312
1313 /* PLLD */
1314 clk = tegra_clk_register_pll("pll_d", "pll_ref", clk_base, pmc, 0,
1315 0, &pll_d_params,
1316 TEGRA_PLL_HAS_CPCON | TEGRA_PLL_SET_LFCON |
1317 TEGRA_PLL_USE_LOCK, pll_d_freq_table, &pll_d_lock);
1318 clk_register_clkdev(clk, "pll_d", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001319 clks[TEGRA114_CLK_PLL_D] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001320
1321 /* PLLD_OUT0 */
1322 clk = clk_register_fixed_factor(NULL, "pll_d_out0", "pll_d",
1323 CLK_SET_RATE_PARENT, 1, 2);
1324 clk_register_clkdev(clk, "pll_d_out0", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001325 clks[TEGRA114_CLK_PLL_D_OUT0] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001326
1327 /* PLLD2 */
1328 clk = tegra_clk_register_pll("pll_d2", "pll_ref", clk_base, pmc, 0,
1329 0, &pll_d2_params,
1330 TEGRA_PLL_HAS_CPCON | TEGRA_PLL_SET_LFCON |
1331 TEGRA_PLL_USE_LOCK, pll_d_freq_table, &pll_d2_lock);
1332 clk_register_clkdev(clk, "pll_d2", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001333 clks[TEGRA114_CLK_PLL_D2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001334
1335 /* PLLD2_OUT0 */
1336 clk = clk_register_fixed_factor(NULL, "pll_d2_out0", "pll_d2",
1337 CLK_SET_RATE_PARENT, 1, 2);
1338 clk_register_clkdev(clk, "pll_d2_out0", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001339 clks[TEGRA114_CLK_PLL_D2_OUT0] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001340
1341 /* PLLA */
1342 clk = tegra_clk_register_pll("pll_a", "pll_p_out1", clk_base, pmc, 0,
1343 0, &pll_a_params, TEGRA_PLL_HAS_CPCON |
1344 TEGRA_PLL_USE_LOCK, pll_a_freq_table, NULL);
1345 clk_register_clkdev(clk, "pll_a", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001346 clks[TEGRA114_CLK_PLL_A] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001347
1348 /* PLLA_OUT0 */
1349 clk = tegra_clk_register_divider("pll_a_out0_div", "pll_a",
1350 clk_base + PLLA_OUT, 0, TEGRA_DIVIDER_ROUND_UP,
1351 8, 8, 1, NULL);
1352 clk = tegra_clk_register_pll_out("pll_a_out0", "pll_a_out0_div",
1353 clk_base + PLLA_OUT, 1, 0, CLK_IGNORE_UNUSED |
1354 CLK_SET_RATE_PARENT, 0, NULL);
1355 clk_register_clkdev(clk, "pll_a_out0", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001356 clks[TEGRA114_CLK_PLL_A_OUT0] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001357
1358 /* PLLRE */
1359 _clip_vco_min(&pll_re_vco_params);
1360 clk = tegra_clk_register_pllre("pll_re_vco", "pll_ref", clk_base, pmc,
1361 0, 0, &pll_re_vco_params, TEGRA_PLL_USE_LOCK,
1362 NULL, &pll_re_lock, pll_ref_freq);
1363 clk_register_clkdev(clk, "pll_re_vco", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001364 clks[TEGRA114_CLK_PLL_RE_VCO] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001365
1366 clk = clk_register_divider_table(NULL, "pll_re_out", "pll_re_vco", 0,
1367 clk_base + PLLRE_BASE, 16, 4, 0,
1368 pll_re_div_table, &pll_re_lock);
1369 clk_register_clkdev(clk, "pll_re_out", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001370 clks[TEGRA114_CLK_PLL_RE_OUT] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001371
1372 /* PLLE */
1373 clk = tegra_clk_register_plle_tegra114("pll_e_out0", "pll_re_vco",
1374 clk_base, 0, 100000000, &pll_e_params,
1375 pll_e_freq_table, NULL);
1376 clk_register_clkdev(clk, "pll_e_out0", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001377 clks[TEGRA114_CLK_PLL_E_OUT0] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001378}
1379
1380static const char *mux_audio_sync_clk[] = { "spdif_in_sync", "i2s0_sync",
1381 "i2s1_sync", "i2s2_sync", "i2s3_sync", "i2s4_sync", "vimclk_sync",
1382};
1383
1384static const char *clk_out1_parents[] = { "clk_m", "clk_m_div2",
1385 "clk_m_div4", "extern1",
1386};
1387
1388static const char *clk_out2_parents[] = { "clk_m", "clk_m_div2",
1389 "clk_m_div4", "extern2",
1390};
1391
1392static const char *clk_out3_parents[] = { "clk_m", "clk_m_div2",
1393 "clk_m_div4", "extern3",
1394};
1395
1396static void __init tegra114_audio_clk_init(void __iomem *clk_base)
1397{
1398 struct clk *clk;
1399
1400 /* spdif_in_sync */
1401 clk = tegra_clk_register_sync_source("spdif_in_sync", 24000000,
1402 24000000);
1403 clk_register_clkdev(clk, "spdif_in_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001404 clks[TEGRA114_CLK_SPDIF_IN_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001405
1406 /* i2s0_sync */
1407 clk = tegra_clk_register_sync_source("i2s0_sync", 24000000, 24000000);
1408 clk_register_clkdev(clk, "i2s0_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001409 clks[TEGRA114_CLK_I2S0_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001410
1411 /* i2s1_sync */
1412 clk = tegra_clk_register_sync_source("i2s1_sync", 24000000, 24000000);
1413 clk_register_clkdev(clk, "i2s1_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001414 clks[TEGRA114_CLK_I2S1_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001415
1416 /* i2s2_sync */
1417 clk = tegra_clk_register_sync_source("i2s2_sync", 24000000, 24000000);
1418 clk_register_clkdev(clk, "i2s2_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001419 clks[TEGRA114_CLK_I2S2_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001420
1421 /* i2s3_sync */
1422 clk = tegra_clk_register_sync_source("i2s3_sync", 24000000, 24000000);
1423 clk_register_clkdev(clk, "i2s3_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001424 clks[TEGRA114_CLK_I2S3_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001425
1426 /* i2s4_sync */
1427 clk = tegra_clk_register_sync_source("i2s4_sync", 24000000, 24000000);
1428 clk_register_clkdev(clk, "i2s4_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001429 clks[TEGRA114_CLK_I2S4_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001430
1431 /* vimclk_sync */
1432 clk = tegra_clk_register_sync_source("vimclk_sync", 24000000, 24000000);
1433 clk_register_clkdev(clk, "vimclk_sync", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001434 clks[TEGRA114_CLK_VIMCLK_SYNC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001435
1436 /* audio0 */
1437 clk = clk_register_mux(NULL, "audio0_mux", mux_audio_sync_clk,
James Hogan819c1de2013-07-29 12:25:01 +01001438 ARRAY_SIZE(mux_audio_sync_clk),
1439 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001440 clk_base + AUDIO_SYNC_CLK_I2S0, 0, 3, 0,
1441 NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001442 clks[TEGRA114_CLK_AUDIO0_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001443 clk = clk_register_gate(NULL, "audio0", "audio0_mux", 0,
1444 clk_base + AUDIO_SYNC_CLK_I2S0, 4,
1445 CLK_GATE_SET_TO_DISABLE, NULL);
1446 clk_register_clkdev(clk, "audio0", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001447 clks[TEGRA114_CLK_AUDIO0] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001448
1449 /* audio1 */
1450 clk = clk_register_mux(NULL, "audio1_mux", mux_audio_sync_clk,
James Hogan819c1de2013-07-29 12:25:01 +01001451 ARRAY_SIZE(mux_audio_sync_clk),
1452 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001453 clk_base + AUDIO_SYNC_CLK_I2S1, 0, 3, 0,
1454 NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001455 clks[TEGRA114_CLK_AUDIO1_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001456 clk = clk_register_gate(NULL, "audio1", "audio1_mux", 0,
1457 clk_base + AUDIO_SYNC_CLK_I2S1, 4,
1458 CLK_GATE_SET_TO_DISABLE, NULL);
1459 clk_register_clkdev(clk, "audio1", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001460 clks[TEGRA114_CLK_AUDIO1] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001461
1462 /* audio2 */
1463 clk = clk_register_mux(NULL, "audio2_mux", mux_audio_sync_clk,
James Hogan819c1de2013-07-29 12:25:01 +01001464 ARRAY_SIZE(mux_audio_sync_clk),
1465 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001466 clk_base + AUDIO_SYNC_CLK_I2S2, 0, 3, 0,
1467 NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001468 clks[TEGRA114_CLK_AUDIO2_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001469 clk = clk_register_gate(NULL, "audio2", "audio2_mux", 0,
1470 clk_base + AUDIO_SYNC_CLK_I2S2, 4,
1471 CLK_GATE_SET_TO_DISABLE, NULL);
1472 clk_register_clkdev(clk, "audio2", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001473 clks[TEGRA114_CLK_AUDIO2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001474
1475 /* audio3 */
1476 clk = clk_register_mux(NULL, "audio3_mux", mux_audio_sync_clk,
James Hogan819c1de2013-07-29 12:25:01 +01001477 ARRAY_SIZE(mux_audio_sync_clk),
1478 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001479 clk_base + AUDIO_SYNC_CLK_I2S3, 0, 3, 0,
1480 NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001481 clks[TEGRA114_CLK_AUDIO3_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001482 clk = clk_register_gate(NULL, "audio3", "audio3_mux", 0,
1483 clk_base + AUDIO_SYNC_CLK_I2S3, 4,
1484 CLK_GATE_SET_TO_DISABLE, NULL);
1485 clk_register_clkdev(clk, "audio3", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001486 clks[TEGRA114_CLK_AUDIO3] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001487
1488 /* audio4 */
1489 clk = clk_register_mux(NULL, "audio4_mux", mux_audio_sync_clk,
James Hogan819c1de2013-07-29 12:25:01 +01001490 ARRAY_SIZE(mux_audio_sync_clk),
1491 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001492 clk_base + AUDIO_SYNC_CLK_I2S4, 0, 3, 0,
1493 NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001494 clks[TEGRA114_CLK_AUDIO4_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001495 clk = clk_register_gate(NULL, "audio4", "audio4_mux", 0,
1496 clk_base + AUDIO_SYNC_CLK_I2S4, 4,
1497 CLK_GATE_SET_TO_DISABLE, NULL);
1498 clk_register_clkdev(clk, "audio4", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001499 clks[TEGRA114_CLK_AUDIO4] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001500
1501 /* spdif */
1502 clk = clk_register_mux(NULL, "spdif_mux", mux_audio_sync_clk,
James Hogan819c1de2013-07-29 12:25:01 +01001503 ARRAY_SIZE(mux_audio_sync_clk),
1504 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001505 clk_base + AUDIO_SYNC_CLK_SPDIF, 0, 3, 0,
1506 NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001507 clks[TEGRA114_CLK_SPDIF_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001508 clk = clk_register_gate(NULL, "spdif", "spdif_mux", 0,
1509 clk_base + AUDIO_SYNC_CLK_SPDIF, 4,
1510 CLK_GATE_SET_TO_DISABLE, NULL);
1511 clk_register_clkdev(clk, "spdif", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001512 clks[TEGRA114_CLK_SPDIF] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001513
1514 /* audio0_2x */
1515 clk = clk_register_fixed_factor(NULL, "audio0_doubler", "audio0",
1516 CLK_SET_RATE_PARENT, 2, 1);
1517 clk = tegra_clk_register_divider("audio0_div", "audio0_doubler",
1518 clk_base + AUDIO_SYNC_DOUBLER, 0, 0, 24, 1,
1519 0, &clk_doubler_lock);
1520 clk = tegra_clk_register_periph_gate("audio0_2x", "audio0_div",
1521 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001522 CLK_SET_RATE_PARENT, 113,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001523 periph_clk_enb_refcnt);
1524 clk_register_clkdev(clk, "audio0_2x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001525 clks[TEGRA114_CLK_AUDIO0_2X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001526
1527 /* audio1_2x */
1528 clk = clk_register_fixed_factor(NULL, "audio1_doubler", "audio1",
1529 CLK_SET_RATE_PARENT, 2, 1);
1530 clk = tegra_clk_register_divider("audio1_div", "audio1_doubler",
1531 clk_base + AUDIO_SYNC_DOUBLER, 0, 0, 25, 1,
1532 0, &clk_doubler_lock);
1533 clk = tegra_clk_register_periph_gate("audio1_2x", "audio1_div",
1534 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001535 CLK_SET_RATE_PARENT, 114,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001536 periph_clk_enb_refcnt);
1537 clk_register_clkdev(clk, "audio1_2x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001538 clks[TEGRA114_CLK_AUDIO1_2X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001539
1540 /* audio2_2x */
1541 clk = clk_register_fixed_factor(NULL, "audio2_doubler", "audio2",
1542 CLK_SET_RATE_PARENT, 2, 1);
1543 clk = tegra_clk_register_divider("audio2_div", "audio2_doubler",
1544 clk_base + AUDIO_SYNC_DOUBLER, 0, 0, 26, 1,
1545 0, &clk_doubler_lock);
1546 clk = tegra_clk_register_periph_gate("audio2_2x", "audio2_div",
1547 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001548 CLK_SET_RATE_PARENT, 115,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001549 periph_clk_enb_refcnt);
1550 clk_register_clkdev(clk, "audio2_2x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001551 clks[TEGRA114_CLK_AUDIO2_2X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001552
1553 /* audio3_2x */
1554 clk = clk_register_fixed_factor(NULL, "audio3_doubler", "audio3",
1555 CLK_SET_RATE_PARENT, 2, 1);
1556 clk = tegra_clk_register_divider("audio3_div", "audio3_doubler",
1557 clk_base + AUDIO_SYNC_DOUBLER, 0, 0, 27, 1,
1558 0, &clk_doubler_lock);
1559 clk = tegra_clk_register_periph_gate("audio3_2x", "audio3_div",
1560 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001561 CLK_SET_RATE_PARENT, 116,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001562 periph_clk_enb_refcnt);
1563 clk_register_clkdev(clk, "audio3_2x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001564 clks[TEGRA114_CLK_AUDIO3_2X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001565
1566 /* audio4_2x */
1567 clk = clk_register_fixed_factor(NULL, "audio4_doubler", "audio4",
1568 CLK_SET_RATE_PARENT, 2, 1);
1569 clk = tegra_clk_register_divider("audio4_div", "audio4_doubler",
1570 clk_base + AUDIO_SYNC_DOUBLER, 0, 0, 28, 1,
1571 0, &clk_doubler_lock);
1572 clk = tegra_clk_register_periph_gate("audio4_2x", "audio4_div",
1573 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001574 CLK_SET_RATE_PARENT, 117,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001575 periph_clk_enb_refcnt);
1576 clk_register_clkdev(clk, "audio4_2x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001577 clks[TEGRA114_CLK_AUDIO4_2X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001578
1579 /* spdif_2x */
1580 clk = clk_register_fixed_factor(NULL, "spdif_doubler", "spdif",
1581 CLK_SET_RATE_PARENT, 2, 1);
1582 clk = tegra_clk_register_divider("spdif_div", "spdif_doubler",
1583 clk_base + AUDIO_SYNC_DOUBLER, 0, 0, 29, 1,
1584 0, &clk_doubler_lock);
1585 clk = tegra_clk_register_periph_gate("spdif_2x", "spdif_div",
1586 TEGRA_PERIPH_NO_RESET, clk_base,
1587 CLK_SET_RATE_PARENT, 118,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001588 periph_clk_enb_refcnt);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001589 clk_register_clkdev(clk, "spdif_2x", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001590 clks[TEGRA114_CLK_SPDIF_2X] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001591}
1592
1593static void __init tegra114_pmc_clk_init(void __iomem *pmc_base)
1594{
1595 struct clk *clk;
1596
1597 /* clk_out_1 */
1598 clk = clk_register_mux(NULL, "clk_out_1_mux", clk_out1_parents,
James Hogan819c1de2013-07-29 12:25:01 +01001599 ARRAY_SIZE(clk_out1_parents),
1600 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001601 pmc_base + PMC_CLK_OUT_CNTRL, 6, 3, 0,
1602 &clk_out_lock);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001603 clks[TEGRA114_CLK_CLK_OUT_1_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001604 clk = clk_register_gate(NULL, "clk_out_1", "clk_out_1_mux", 0,
1605 pmc_base + PMC_CLK_OUT_CNTRL, 2, 0,
1606 &clk_out_lock);
1607 clk_register_clkdev(clk, "extern1", "clk_out_1");
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001608 clks[TEGRA114_CLK_CLK_OUT_1] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001609
1610 /* clk_out_2 */
1611 clk = clk_register_mux(NULL, "clk_out_2_mux", clk_out2_parents,
James Hogan819c1de2013-07-29 12:25:01 +01001612 ARRAY_SIZE(clk_out2_parents),
1613 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001614 pmc_base + PMC_CLK_OUT_CNTRL, 14, 3, 0,
1615 &clk_out_lock);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001616 clks[TEGRA114_CLK_CLK_OUT_2_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001617 clk = clk_register_gate(NULL, "clk_out_2", "clk_out_2_mux", 0,
1618 pmc_base + PMC_CLK_OUT_CNTRL, 10, 0,
1619 &clk_out_lock);
1620 clk_register_clkdev(clk, "extern2", "clk_out_2");
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001621 clks[TEGRA114_CLK_CLK_OUT_2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001622
1623 /* clk_out_3 */
1624 clk = clk_register_mux(NULL, "clk_out_3_mux", clk_out3_parents,
James Hogan819c1de2013-07-29 12:25:01 +01001625 ARRAY_SIZE(clk_out3_parents),
1626 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001627 pmc_base + PMC_CLK_OUT_CNTRL, 22, 3, 0,
1628 &clk_out_lock);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001629 clks[TEGRA114_CLK_CLK_OUT_3_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001630 clk = clk_register_gate(NULL, "clk_out_3", "clk_out_3_mux", 0,
1631 pmc_base + PMC_CLK_OUT_CNTRL, 18, 0,
1632 &clk_out_lock);
1633 clk_register_clkdev(clk, "extern3", "clk_out_3");
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001634 clks[TEGRA114_CLK_CLK_OUT_3] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001635
1636 /* blink */
Alexandre Courbot91392272013-05-26 11:56:31 +09001637 /* clear the blink timer register to directly output clk_32k */
1638 writel_relaxed(0, pmc_base + PMC_BLINK_TIMER);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001639 clk = clk_register_gate(NULL, "blink_override", "clk_32k", 0,
1640 pmc_base + PMC_DPD_PADS_ORIDE,
1641 PMC_DPD_PADS_ORIDE_BLINK_ENB, 0, NULL);
1642 clk = clk_register_gate(NULL, "blink", "blink_override", 0,
1643 pmc_base + PMC_CTRL,
1644 PMC_CTRL_BLINK_ENB, 0, NULL);
1645 clk_register_clkdev(clk, "blink", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001646 clks[TEGRA114_CLK_BLINK] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001647
1648}
1649
1650static const char *sclk_parents[] = { "clk_m", "pll_c_out1", "pll_p_out4",
Peter De Schrijver29b09442013-06-05 17:29:28 +03001651 "pll_p", "pll_p_out2", "unused",
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001652 "clk_32k", "pll_m_out1" };
1653
1654static const char *cclk_g_parents[] = { "clk_m", "pll_c", "clk_32k", "pll_m",
1655 "pll_p", "pll_p_out4", "unused",
1656 "unused", "pll_x" };
1657
1658static const char *cclk_lp_parents[] = { "clk_m", "pll_c", "clk_32k", "pll_m",
1659 "pll_p", "pll_p_out4", "unused",
1660 "unused", "pll_x", "pll_x_out0" };
1661
1662static void __init tegra114_super_clk_init(void __iomem *clk_base)
1663{
1664 struct clk *clk;
1665
1666 /* CCLKG */
1667 clk = tegra_clk_register_super_mux("cclk_g", cclk_g_parents,
1668 ARRAY_SIZE(cclk_g_parents),
1669 CLK_SET_RATE_PARENT,
1670 clk_base + CCLKG_BURST_POLICY,
1671 0, 4, 0, 0, NULL);
1672 clk_register_clkdev(clk, "cclk_g", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001673 clks[TEGRA114_CLK_CCLK_G] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001674
1675 /* CCLKLP */
1676 clk = tegra_clk_register_super_mux("cclk_lp", cclk_lp_parents,
1677 ARRAY_SIZE(cclk_lp_parents),
1678 CLK_SET_RATE_PARENT,
1679 clk_base + CCLKLP_BURST_POLICY,
1680 0, 4, 8, 9, NULL);
1681 clk_register_clkdev(clk, "cclk_lp", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001682 clks[TEGRA114_CLK_CCLK_LP] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001683
1684 /* SCLK */
1685 clk = tegra_clk_register_super_mux("sclk", sclk_parents,
1686 ARRAY_SIZE(sclk_parents),
1687 CLK_SET_RATE_PARENT,
1688 clk_base + SCLK_BURST_POLICY,
1689 0, 4, 0, 0, NULL);
1690 clk_register_clkdev(clk, "sclk", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001691 clks[TEGRA114_CLK_SCLK] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001692
1693 /* HCLK */
1694 clk = clk_register_divider(NULL, "hclk_div", "sclk", 0,
1695 clk_base + SYSTEM_CLK_RATE, 4, 2, 0,
1696 &sysrate_lock);
1697 clk = clk_register_gate(NULL, "hclk", "hclk_div", CLK_SET_RATE_PARENT |
1698 CLK_IGNORE_UNUSED, clk_base + SYSTEM_CLK_RATE,
1699 7, CLK_GATE_SET_TO_DISABLE, &sysrate_lock);
1700 clk_register_clkdev(clk, "hclk", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001701 clks[TEGRA114_CLK_HCLK] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001702
1703 /* PCLK */
1704 clk = clk_register_divider(NULL, "pclk_div", "hclk", 0,
1705 clk_base + SYSTEM_CLK_RATE, 0, 2, 0,
1706 &sysrate_lock);
1707 clk = clk_register_gate(NULL, "pclk", "pclk_div", CLK_SET_RATE_PARENT |
1708 CLK_IGNORE_UNUSED, clk_base + SYSTEM_CLK_RATE,
1709 3, CLK_GATE_SET_TO_DISABLE, &sysrate_lock);
1710 clk_register_clkdev(clk, "pclk", NULL);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001711 clks[TEGRA114_CLK_PCLK] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001712}
1713
1714static struct tegra_periph_init_data tegra_periph_clk_list[] = {
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001715 TEGRA_INIT_DATA_MUX("i2s0", NULL, "tegra30-i2s.0", mux_pllaout0_audio0_2x_pllp_clkm, CLK_SOURCE_I2S0, 30, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_I2S0),
1716 TEGRA_INIT_DATA_MUX("i2s1", NULL, "tegra30-i2s.1", mux_pllaout0_audio1_2x_pllp_clkm, CLK_SOURCE_I2S1, 11, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_I2S1),
1717 TEGRA_INIT_DATA_MUX("i2s2", NULL, "tegra30-i2s.2", mux_pllaout0_audio2_2x_pllp_clkm, CLK_SOURCE_I2S2, 18, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_I2S2),
1718 TEGRA_INIT_DATA_MUX("i2s3", NULL, "tegra30-i2s.3", mux_pllaout0_audio3_2x_pllp_clkm, CLK_SOURCE_I2S3, 101, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_I2S3),
1719 TEGRA_INIT_DATA_MUX("i2s4", NULL, "tegra30-i2s.4", mux_pllaout0_audio4_2x_pllp_clkm, CLK_SOURCE_I2S4, 102, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_I2S4),
1720 TEGRA_INIT_DATA_MUX("spdif_out", "spdif_out", "tegra30-spdif", mux_pllaout0_audio_2x_pllp_clkm, CLK_SOURCE_SPDIF_OUT, 10, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SPDIF_OUT),
1721 TEGRA_INIT_DATA_MUX("spdif_in", "spdif_in", "tegra30-spdif", mux_pllp_pllc_pllm, CLK_SOURCE_SPDIF_IN, 10, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SPDIF_IN),
1722 TEGRA_INIT_DATA_MUX("pwm", NULL, "pwm", mux_pllp_pllc_clk32_clkm, CLK_SOURCE_PWM, 17, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_PWM),
1723 TEGRA_INIT_DATA_MUX("adx", NULL, "adx", mux_plla_pllc_pllp_clkm, CLK_SOURCE_ADX, 154, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_ADX),
1724 TEGRA_INIT_DATA_MUX("amx", NULL, "amx", mux_plla_pllc_pllp_clkm, CLK_SOURCE_AMX, 153, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_AMX),
1725 TEGRA_INIT_DATA_MUX("hda", "hda", "tegra30-hda", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_HDA, 125, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_HDA),
1726 TEGRA_INIT_DATA_MUX("hda2codec_2x", "hda2codec", "tegra30-hda", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_HDA2CODEC_2X, 111, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_HDA2CODEC_2X),
1727 TEGRA_INIT_DATA_MUX8("sbc1", NULL, "tegra11-spi.0", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SBC1, 41, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SBC1),
1728 TEGRA_INIT_DATA_MUX8("sbc2", NULL, "tegra11-spi.1", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SBC2, 44, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SBC2),
1729 TEGRA_INIT_DATA_MUX8("sbc3", NULL, "tegra11-spi.2", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SBC3, 46, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SBC3),
1730 TEGRA_INIT_DATA_MUX8("sbc4", NULL, "tegra11-spi.3", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SBC4, 68, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SBC4),
1731 TEGRA_INIT_DATA_MUX8("sbc5", NULL, "tegra11-spi.4", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SBC5, 104, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SBC5),
1732 TEGRA_INIT_DATA_MUX8("sbc6", NULL, "tegra11-spi.5", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SBC6, 105, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SBC6),
1733 TEGRA_INIT_DATA_MUX8("ndflash", NULL, "tegra_nand", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_NDFLASH, 13, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_NDSPEED),
1734 TEGRA_INIT_DATA_MUX8("ndspeed", NULL, "tegra_nand_speed", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_NDSPEED, 80, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_NDSPEED),
1735 TEGRA_INIT_DATA_MUX("vfir", NULL, "vfir", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_VFIR, 7, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_VFIR),
1736 TEGRA_INIT_DATA_MUX("sdmmc1", NULL, "sdhci-tegra.0", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_SDMMC1, 14, 0, TEGRA114_CLK_SDMMC1),
1737 TEGRA_INIT_DATA_MUX("sdmmc2", NULL, "sdhci-tegra.1", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_SDMMC2, 9, 0, TEGRA114_CLK_SDMMC2),
1738 TEGRA_INIT_DATA_MUX("sdmmc3", NULL, "sdhci-tegra.2", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_SDMMC3, 69, 0, TEGRA114_CLK_SDMMC3),
1739 TEGRA_INIT_DATA_MUX("sdmmc4", NULL, "sdhci-tegra.3", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_SDMMC4, 15, 0, TEGRA114_CLK_SDMMC4),
1740 TEGRA_INIT_DATA_INT8("vde", NULL, "vde", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_VDE, 61, 0, TEGRA114_CLK_VDE),
1741 TEGRA_INIT_DATA_MUX_FLAGS("csite", NULL, "csite", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_CSITE, 73, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_CSITE, CLK_IGNORE_UNUSED),
1742 TEGRA_INIT_DATA_MUX("la", NULL, "la", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_LA, 76, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_LA),
1743 TEGRA_INIT_DATA_MUX("trace", NULL, "trace", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_TRACE, 77, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_TRACE),
1744 TEGRA_INIT_DATA_MUX("owr", NULL, "tegra_w1", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_OWR, 71, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_OWR),
1745 TEGRA_INIT_DATA_MUX("nor", NULL, "tegra-nor", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_NOR, 42, 0, TEGRA114_CLK_NOR),
1746 TEGRA_INIT_DATA_MUX("mipi", NULL, "mipi", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_MIPI, 50, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_MIPI),
1747 TEGRA_INIT_DATA_I2C("i2c1", "div-clk", "tegra11-i2c.0", mux_pllp_clkm, CLK_SOURCE_I2C1, 12, TEGRA114_CLK_I2C1),
1748 TEGRA_INIT_DATA_I2C("i2c2", "div-clk", "tegra11-i2c.1", mux_pllp_clkm, CLK_SOURCE_I2C2, 54, TEGRA114_CLK_I2C2),
1749 TEGRA_INIT_DATA_I2C("i2c3", "div-clk", "tegra11-i2c.2", mux_pllp_clkm, CLK_SOURCE_I2C3, 67, TEGRA114_CLK_I2C3),
1750 TEGRA_INIT_DATA_I2C("i2c4", "div-clk", "tegra11-i2c.3", mux_pllp_clkm, CLK_SOURCE_I2C4, 103, TEGRA114_CLK_I2C4),
1751 TEGRA_INIT_DATA_I2C("i2c5", "div-clk", "tegra11-i2c.4", mux_pllp_clkm, CLK_SOURCE_I2C5, 47, TEGRA114_CLK_I2C5),
1752 TEGRA_INIT_DATA_UART("uarta", NULL, "tegra_uart.0", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_UARTA, 6, TEGRA114_CLK_UARTA),
1753 TEGRA_INIT_DATA_UART("uartb", NULL, "tegra_uart.1", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_UARTB, 7, TEGRA114_CLK_UARTB),
1754 TEGRA_INIT_DATA_UART("uartc", NULL, "tegra_uart.2", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_UARTC, 55, TEGRA114_CLK_UARTC),
1755 TEGRA_INIT_DATA_UART("uartd", NULL, "tegra_uart.3", mux_pllp_pllc_pllm_clkm, CLK_SOURCE_UARTD, 65, TEGRA114_CLK_UARTD),
1756 TEGRA_INIT_DATA_INT8("3d", NULL, "3d", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_3D, 24, 0, TEGRA114_CLK_GR3D),
1757 TEGRA_INIT_DATA_INT8("2d", NULL, "2d", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_2D, 21, 0, TEGRA114_CLK_GR2D),
1758 TEGRA_INIT_DATA_MUX("vi_sensor", "vi_sensor", "tegra_camera", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_VI_SENSOR, 20, TEGRA_PERIPH_NO_RESET, TEGRA114_CLK_VI_SENSOR),
1759 TEGRA_INIT_DATA_INT8("vi", "vi", "tegra_camera", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_VI, 20, 0, TEGRA114_CLK_VI),
1760 TEGRA_INIT_DATA_INT8("epp", NULL, "epp", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_EPP, 19, 0, TEGRA114_CLK_EPP),
1761 TEGRA_INIT_DATA_INT8("msenc", NULL, "msenc", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_MSENC, 91, TEGRA_PERIPH_WAR_1005168, TEGRA114_CLK_MSENC),
1762 TEGRA_INIT_DATA_INT8("tsec", NULL, "tsec", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_TSEC, 83, 0, TEGRA114_CLK_TSEC),
1763 TEGRA_INIT_DATA_INT8("host1x", NULL, "host1x", mux_pllm_pllc2_c_c3_pllp_plla, CLK_SOURCE_HOST1X, 28, 0, TEGRA114_CLK_HOST1X),
1764 TEGRA_INIT_DATA_MUX8("hdmi", NULL, "hdmi", mux_pllp_pllm_plld_plla_pllc_plld2_clkm, CLK_SOURCE_HDMI, 51, 0, TEGRA114_CLK_HDMI),
1765 TEGRA_INIT_DATA_MUX("cilab", "cilab", "tegra_camera", mux_pllp_pllc_clkm, CLK_SOURCE_CILAB, 144, 0, TEGRA114_CLK_CILAB),
1766 TEGRA_INIT_DATA_MUX("cilcd", "cilcd", "tegra_camera", mux_pllp_pllc_clkm, CLK_SOURCE_CILCD, 145, 0, TEGRA114_CLK_CILCD),
1767 TEGRA_INIT_DATA_MUX("cile", "cile", "tegra_camera", mux_pllp_pllc_clkm, CLK_SOURCE_CILE, 146, 0, TEGRA114_CLK_CILE),
1768 TEGRA_INIT_DATA_MUX("dsialp", "dsialp", "tegradc.0", mux_pllp_pllc_clkm, CLK_SOURCE_DSIALP, 147, 0, TEGRA114_CLK_DSIALP),
1769 TEGRA_INIT_DATA_MUX("dsiblp", "dsiblp", "tegradc.1", mux_pllp_pllc_clkm, CLK_SOURCE_DSIBLP, 148, 0, TEGRA114_CLK_DSIBLP),
1770 TEGRA_INIT_DATA_MUX("tsensor", NULL, "tegra-tsensor", mux_pllp_pllc_clkm_clk32, CLK_SOURCE_TSENSOR, 100, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_TSENSOR),
1771 TEGRA_INIT_DATA_MUX("actmon", NULL, "actmon", mux_pllp_pllc_clk32_clkm, CLK_SOURCE_ACTMON, 119, 0, TEGRA114_CLK_ACTMON),
1772 TEGRA_INIT_DATA_MUX8("extern1", NULL, "extern1", mux_plla_clk32_pllp_clkm_plle, CLK_SOURCE_EXTERN1, 120, 0, TEGRA114_CLK_EXTERN1),
1773 TEGRA_INIT_DATA_MUX8("extern2", NULL, "extern2", mux_plla_clk32_pllp_clkm_plle, CLK_SOURCE_EXTERN2, 121, 0, TEGRA114_CLK_EXTERN2),
1774 TEGRA_INIT_DATA_MUX8("extern3", NULL, "extern3", mux_plla_clk32_pllp_clkm_plle, CLK_SOURCE_EXTERN3, 122, 0, TEGRA114_CLK_EXTERN3),
1775 TEGRA_INIT_DATA_MUX("i2cslow", NULL, "i2cslow", mux_pllp_pllc_clk32_clkm, CLK_SOURCE_I2CSLOW, 81, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_I2CSLOW),
1776 TEGRA_INIT_DATA_INT8("se", NULL, "se", mux_pllp_pllc2_c_c3_pllm_clkm, CLK_SOURCE_SE, 127, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SE),
1777 TEGRA_INIT_DATA_INT_FLAGS("mselect", NULL, "mselect", mux_pllp_clkm, CLK_SOURCE_MSELECT, 99, 0, TEGRA114_CLK_MSELECT, CLK_IGNORE_UNUSED),
1778 TEGRA_INIT_DATA_MUX("dfll_ref", "ref", "t114_dfll", mux_pllp_clkm, CLK_SOURCE_DFLL_REF, 155, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_DFLL_REF),
1779 TEGRA_INIT_DATA_MUX("dfll_soc", "soc", "t114_dfll", mux_pllp_clkm, CLK_SOURCE_DFLL_SOC, 155, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_DFLL_SOC),
1780 TEGRA_INIT_DATA_MUX8("soc_therm", NULL, "soc_therm", mux_pllm_pllc_pllp_plla, CLK_SOURCE_SOC_THERM, 78, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_SOC_THERM),
1781 TEGRA_INIT_DATA_XUSB("xusb_host_src", "host_src", "tegra_xhci", mux_clkm_pllp_pllc_pllre, CLK_SOURCE_XUSB_HOST_SRC, 143, TEGRA_PERIPH_ON_APB | TEGRA_PERIPH_NO_RESET, TEGRA114_CLK_XUSB_HOST_SRC),
1782 TEGRA_INIT_DATA_XUSB("xusb_falcon_src", "falcon_src", "tegra_xhci", mux_clkm_pllp_pllc_pllre, CLK_SOURCE_XUSB_FALCON_SRC, 143, TEGRA_PERIPH_NO_RESET, TEGRA114_CLK_XUSB_FALCON_SRC),
1783 TEGRA_INIT_DATA_XUSB("xusb_fs_src", "fs_src", "tegra_xhci", mux_clkm_48M_pllp_480M, CLK_SOURCE_XUSB_FS_SRC, 143, TEGRA_PERIPH_NO_RESET, TEGRA114_CLK_XUSB_FS_SRC),
1784 TEGRA_INIT_DATA_XUSB("xusb_ss_src", "ss_src", "tegra_xhci", mux_clkm_pllre_clk32_480M_pllc_ref, CLK_SOURCE_XUSB_SS_SRC, 143, TEGRA_PERIPH_NO_RESET, TEGRA114_CLK_XUSB_SS_SRC),
1785 TEGRA_INIT_DATA_XUSB("xusb_dev_src", "dev_src", "tegra_xhci", mux_clkm_pllp_pllc_pllre, CLK_SOURCE_XUSB_DEV_SRC, 95, TEGRA_PERIPH_ON_APB | TEGRA_PERIPH_NO_RESET, TEGRA114_CLK_XUSB_DEV_SRC),
1786 TEGRA_INIT_DATA_AUDIO("d_audio", "d_audio", "tegra30-ahub", CLK_SOURCE_D_AUDIO, 106, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_D_AUDIO),
1787 TEGRA_INIT_DATA_AUDIO("dam0", NULL, "tegra30-dam.0", CLK_SOURCE_DAM0, 108, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_DAM0),
1788 TEGRA_INIT_DATA_AUDIO("dam1", NULL, "tegra30-dam.1", CLK_SOURCE_DAM1, 109, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_DAM1),
1789 TEGRA_INIT_DATA_AUDIO("dam2", NULL, "tegra30-dam.2", CLK_SOURCE_DAM2, 110, TEGRA_PERIPH_ON_APB, TEGRA114_CLK_DAM2),
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001790};
1791
1792static struct tegra_periph_init_data tegra_periph_nodiv_clk_list[] = {
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001793 TEGRA_INIT_DATA_NODIV("disp1", NULL, "tegradc.0", mux_pllp_pllm_plld_plla_pllc_plld2_clkm, CLK_SOURCE_DISP1, 29, 7, 27, 0, TEGRA114_CLK_DISP1),
1794 TEGRA_INIT_DATA_NODIV("disp2", NULL, "tegradc.1", mux_pllp_pllm_plld_plla_pllc_plld2_clkm, CLK_SOURCE_DISP2, 29, 7, 26, 0, TEGRA114_CLK_DISP2),
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001795};
1796
1797static __init void tegra114_periph_clk_init(void __iomem *clk_base)
1798{
1799 struct tegra_periph_init_data *data;
1800 struct clk *clk;
1801 int i;
1802 u32 val;
1803
1804 /* apbdma */
1805 clk = tegra_clk_register_periph_gate("apbdma", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001806 0, 34, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001807 clks[TEGRA114_CLK_APBDMA] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001808
1809 /* rtc */
1810 clk = tegra_clk_register_periph_gate("rtc", "clk_32k",
1811 TEGRA_PERIPH_ON_APB |
1812 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001813 0, 4, periph_clk_enb_refcnt);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001814 clk_register_clkdev(clk, NULL, "rtc-tegra");
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001815 clks[TEGRA114_CLK_RTC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001816
1817 /* kbc */
1818 clk = tegra_clk_register_periph_gate("kbc", "clk_32k",
1819 TEGRA_PERIPH_ON_APB |
1820 TEGRA_PERIPH_NO_RESET, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001821 0, 36, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001822 clks[TEGRA114_CLK_KBC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001823
1824 /* timer */
1825 clk = tegra_clk_register_periph_gate("timer", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001826 0, 5, periph_clk_enb_refcnt);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001827 clk_register_clkdev(clk, NULL, "timer");
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001828 clks[TEGRA114_CLK_TIMER] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001829
1830 /* kfuse */
1831 clk = tegra_clk_register_periph_gate("kfuse", "clk_m",
1832 TEGRA_PERIPH_ON_APB, clk_base, 0, 40,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001833 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001834 clks[TEGRA114_CLK_KFUSE] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001835
1836 /* fuse */
1837 clk = tegra_clk_register_periph_gate("fuse", "clk_m",
1838 TEGRA_PERIPH_ON_APB, clk_base, 0, 39,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001839 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001840 clks[TEGRA114_CLK_FUSE] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001841
1842 /* fuse_burn */
1843 clk = tegra_clk_register_periph_gate("fuse_burn", "clk_m",
1844 TEGRA_PERIPH_ON_APB, clk_base, 0, 39,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001845 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001846 clks[TEGRA114_CLK_FUSE_BURN] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001847
1848 /* apbif */
1849 clk = tegra_clk_register_periph_gate("apbif", "clk_m",
1850 TEGRA_PERIPH_ON_APB, clk_base, 0, 107,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001851 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001852 clks[TEGRA114_CLK_APBIF] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001853
1854 /* hda2hdmi */
1855 clk = tegra_clk_register_periph_gate("hda2hdmi", "clk_m",
1856 TEGRA_PERIPH_ON_APB, clk_base, 0, 128,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001857 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001858 clks[TEGRA114_CLK_HDA2HDMI] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001859
1860 /* vcp */
1861 clk = tegra_clk_register_periph_gate("vcp", "clk_m", 0, clk_base, 0,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001862 29, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001863 clks[TEGRA114_CLK_VCP] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001864
1865 /* bsea */
1866 clk = tegra_clk_register_periph_gate("bsea", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001867 0, 62, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001868 clks[TEGRA114_CLK_BSEA] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001869
1870 /* bsev */
1871 clk = tegra_clk_register_periph_gate("bsev", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001872 0, 63, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001873 clks[TEGRA114_CLK_BSEV] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001874
1875 /* mipi-cal */
1876 clk = tegra_clk_register_periph_gate("mipi-cal", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001877 0, 56, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001878 clks[TEGRA114_CLK_MIPI_CAL] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001879
1880 /* usbd */
1881 clk = tegra_clk_register_periph_gate("usbd", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001882 0, 22, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001883 clks[TEGRA114_CLK_USBD] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001884
1885 /* usb2 */
1886 clk = tegra_clk_register_periph_gate("usb2", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001887 0, 58, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001888 clks[TEGRA114_CLK_USB2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001889
1890 /* usb3 */
1891 clk = tegra_clk_register_periph_gate("usb3", "clk_m", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001892 0, 59, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001893 clks[TEGRA114_CLK_USB3] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001894
1895 /* csi */
1896 clk = tegra_clk_register_periph_gate("csi", "pll_p_out3", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001897 0, 52, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001898 clks[TEGRA114_CLK_CSI] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001899
1900 /* isp */
1901 clk = tegra_clk_register_periph_gate("isp", "clk_m", 0, clk_base, 0,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001902 23, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001903 clks[TEGRA114_CLK_ISP] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001904
1905 /* csus */
1906 clk = tegra_clk_register_periph_gate("csus", "clk_m",
1907 TEGRA_PERIPH_NO_RESET, clk_base, 0, 92,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001908 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001909 clks[TEGRA114_CLK_CSUS] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001910
1911 /* dds */
1912 clk = tegra_clk_register_periph_gate("dds", "clk_m",
1913 TEGRA_PERIPH_ON_APB, clk_base, 0, 150,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001914 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001915 clks[TEGRA114_CLK_DDS] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001916
1917 /* dp2 */
1918 clk = tegra_clk_register_periph_gate("dp2", "clk_m",
1919 TEGRA_PERIPH_ON_APB, clk_base, 0, 152,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001920 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001921 clks[TEGRA114_CLK_DP2] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001922
1923 /* dtv */
1924 clk = tegra_clk_register_periph_gate("dtv", "clk_m",
1925 TEGRA_PERIPH_ON_APB, clk_base, 0, 79,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001926 periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001927 clks[TEGRA114_CLK_DTV] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001928
1929 /* dsia */
1930 clk = clk_register_mux(NULL, "dsia_mux", mux_plld_out0_plld2_out0,
James Hogan819c1de2013-07-29 12:25:01 +01001931 ARRAY_SIZE(mux_plld_out0_plld2_out0),
1932 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001933 clk_base + PLLD_BASE, 25, 1, 0, &pll_d_lock);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001934 clks[TEGRA114_CLK_DSIA_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001935 clk = tegra_clk_register_periph_gate("dsia", "dsia_mux", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001936 0, 48, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001937 clks[TEGRA114_CLK_DSIA] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001938
1939 /* dsib */
1940 clk = clk_register_mux(NULL, "dsib_mux", mux_plld_out0_plld2_out0,
James Hogan819c1de2013-07-29 12:25:01 +01001941 ARRAY_SIZE(mux_plld_out0_plld2_out0),
1942 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001943 clk_base + PLLD2_BASE, 25, 1, 0, &pll_d2_lock);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001944 clks[TEGRA114_CLK_DSIB_MUX] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001945 clk = tegra_clk_register_periph_gate("dsib", "dsib_mux", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001946 0, 82, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001947 clks[TEGRA114_CLK_DSIB] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001948
1949 /* xusb_hs_src */
1950 val = readl(clk_base + CLK_SOURCE_XUSB_SS_SRC);
1951 val |= BIT(25); /* always select PLLU_60M */
1952 writel(val, clk_base + CLK_SOURCE_XUSB_SS_SRC);
1953
1954 clk = clk_register_fixed_factor(NULL, "xusb_hs_src", "pll_u_60M", 0,
1955 1, 1);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001956 clks[TEGRA114_CLK_XUSB_HS_SRC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001957
1958 /* xusb_host */
1959 clk = tegra_clk_register_periph_gate("xusb_host", "xusb_host_src", 0,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001960 clk_base, 0, 89, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001961 clks[TEGRA114_CLK_XUSB_HOST] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001962
1963 /* xusb_ss */
1964 clk = tegra_clk_register_periph_gate("xusb_ss", "xusb_ss_src", 0,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001965 clk_base, 0, 156, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001966 clks[TEGRA114_CLK_XUSB_HOST] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001967
1968 /* xusb_dev */
1969 clk = tegra_clk_register_periph_gate("xusb_dev", "xusb_dev_src", 0,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001970 clk_base, 0, 95, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001971 clks[TEGRA114_CLK_XUSB_DEV] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001972
1973 /* emc */
1974 clk = clk_register_mux(NULL, "emc_mux", mux_pllmcp_clkm,
James Hogan819c1de2013-07-29 12:25:01 +01001975 ARRAY_SIZE(mux_pllmcp_clkm),
1976 CLK_SET_RATE_NO_REPARENT,
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001977 clk_base + CLK_SOURCE_EMC,
1978 29, 3, 0, NULL);
1979 clk = tegra_clk_register_periph_gate("emc", "emc_mux", 0, clk_base,
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001980 CLK_IGNORE_UNUSED, 57, periph_clk_enb_refcnt);
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03001981 clks[TEGRA114_CLK_EMC] = clk;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001982
1983 for (i = 0; i < ARRAY_SIZE(tegra_periph_clk_list); i++) {
1984 data = &tegra_periph_clk_list[i];
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001985
1986 clk = tegra_clk_register_periph(data->name,
1987 data->parent_names, data->num_parents, &data->periph,
1988 clk_base, data->offset, data->flags);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001989 clks[data->clk_id] = clk;
1990 }
1991
1992 for (i = 0; i < ARRAY_SIZE(tegra_periph_nodiv_clk_list); i++) {
1993 data = &tegra_periph_nodiv_clk_list[i];
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03001994
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03001995 clk = tegra_clk_register_periph_nodiv(data->name,
1996 data->parent_names, data->num_parents,
1997 &data->periph, clk_base, data->offset);
1998 clks[data->clk_id] = clk;
1999 }
2000}
2001
Joseph Lo31972fd2013-05-20 18:39:28 +08002002/* Tegra114 CPU clock and reset control functions */
2003static void tegra114_wait_cpu_in_reset(u32 cpu)
2004{
2005 unsigned int reg;
2006
2007 do {
2008 reg = readl(clk_base + CLK_RST_CONTROLLER_CPU_CMPLX_STATUS);
2009 cpu_relax();
2010 } while (!(reg & (1 << cpu))); /* check CPU been reset or not */
2011}
2012static void tegra114_disable_cpu_clock(u32 cpu)
2013{
2014 /* flow controller would take care in the power sequence. */
2015}
2016
Joseph Load7d1142013-07-03 17:50:44 +08002017#ifdef CONFIG_PM_SLEEP
2018static void tegra114_cpu_clock_suspend(void)
2019{
2020 /* switch coresite to clk_m, save off original source */
2021 tegra114_cpu_clk_sctx.clk_csite_src =
2022 readl(clk_base + CLK_SOURCE_CSITE);
2023 writel(3 << 30, clk_base + CLK_SOURCE_CSITE);
Joseph Lo0017f442013-08-12 17:40:02 +08002024
2025 tegra114_cpu_clk_sctx.cclkg_burst =
2026 readl(clk_base + CCLKG_BURST_POLICY);
2027 tegra114_cpu_clk_sctx.cclkg_divider =
2028 readl(clk_base + CCLKG_BURST_POLICY + 4);
Joseph Load7d1142013-07-03 17:50:44 +08002029}
2030
2031static void tegra114_cpu_clock_resume(void)
2032{
2033 writel(tegra114_cpu_clk_sctx.clk_csite_src,
2034 clk_base + CLK_SOURCE_CSITE);
Joseph Lo0017f442013-08-12 17:40:02 +08002035
2036 writel(tegra114_cpu_clk_sctx.cclkg_burst,
2037 clk_base + CCLKG_BURST_POLICY);
2038 writel(tegra114_cpu_clk_sctx.cclkg_divider,
2039 clk_base + CCLKG_BURST_POLICY + 4);
Joseph Load7d1142013-07-03 17:50:44 +08002040}
2041#endif
2042
Joseph Lo31972fd2013-05-20 18:39:28 +08002043static struct tegra_cpu_car_ops tegra114_cpu_car_ops = {
2044 .wait_for_reset = tegra114_wait_cpu_in_reset,
2045 .disable_clock = tegra114_disable_cpu_clock,
Joseph Load7d1142013-07-03 17:50:44 +08002046#ifdef CONFIG_PM_SLEEP
2047 .suspend = tegra114_cpu_clock_suspend,
2048 .resume = tegra114_cpu_clock_resume,
2049#endif
Joseph Lo31972fd2013-05-20 18:39:28 +08002050};
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002051
2052static const struct of_device_id pmc_match[] __initconst = {
2053 { .compatible = "nvidia,tegra114-pmc" },
2054 {},
2055};
2056
Paul Walmsley9e601212013-06-07 06:19:01 -06002057/*
2058 * dfll_soc/dfll_ref apparently must be kept enabled, otherwise I2C5
2059 * breaks
2060 */
Sachin Kamat056dfcf2013-08-08 09:55:47 +05302061static struct tegra_clk_init_table init_table[] __initdata = {
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03002062 {TEGRA114_CLK_UARTA, TEGRA114_CLK_PLL_P, 408000000, 0},
2063 {TEGRA114_CLK_UARTB, TEGRA114_CLK_PLL_P, 408000000, 0},
2064 {TEGRA114_CLK_UARTC, TEGRA114_CLK_PLL_P, 408000000, 0},
2065 {TEGRA114_CLK_UARTD, TEGRA114_CLK_PLL_P, 408000000, 0},
2066 {TEGRA114_CLK_PLL_A, TEGRA114_CLK_CLK_MAX, 564480000, 1},
2067 {TEGRA114_CLK_PLL_A_OUT0, TEGRA114_CLK_CLK_MAX, 11289600, 1},
2068 {TEGRA114_CLK_EXTERN1, TEGRA114_CLK_PLL_A_OUT0, 0, 1},
2069 {TEGRA114_CLK_CLK_OUT_1_MUX, TEGRA114_CLK_EXTERN1, 0, 1},
2070 {TEGRA114_CLK_CLK_OUT_1, TEGRA114_CLK_CLK_MAX, 0, 1},
2071 {TEGRA114_CLK_I2S0, TEGRA114_CLK_PLL_A_OUT0, 11289600, 0},
2072 {TEGRA114_CLK_I2S1, TEGRA114_CLK_PLL_A_OUT0, 11289600, 0},
2073 {TEGRA114_CLK_I2S2, TEGRA114_CLK_PLL_A_OUT0, 11289600, 0},
2074 {TEGRA114_CLK_I2S3, TEGRA114_CLK_PLL_A_OUT0, 11289600, 0},
2075 {TEGRA114_CLK_I2S4, TEGRA114_CLK_PLL_A_OUT0, 11289600, 0},
Andrew Chew897e1dd2013-08-07 19:25:09 +08002076 {TEGRA114_CLK_HOST1X, TEGRA114_CLK_PLL_P, 136000000, 0},
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03002077 {TEGRA114_CLK_DFLL_SOC, TEGRA114_CLK_PLL_P, 51000000, 1},
2078 {TEGRA114_CLK_DFLL_REF, TEGRA114_CLK_PLL_P, 51000000, 1},
Thierry Redingf67a8d22013-10-02 23:12:40 +02002079 {TEGRA114_CLK_GR2D, TEGRA114_CLK_PLL_C2, 300000000, 0},
2080 {TEGRA114_CLK_GR3D, TEGRA114_CLK_PLL_C2, 300000000, 0},
Mark Zhangfc20eef2013-08-07 19:25:08 +08002081
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03002082 /* This MUST be the last entry. */
2083 {TEGRA114_CLK_CLK_MAX, TEGRA114_CLK_CLK_MAX, 0, 0},
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002084};
2085
2086static void __init tegra114_clock_apply_init_table(void)
2087{
Peter De Schrijverc9e2d692013-08-22 15:27:46 +03002088 tegra_init_from_table(init_table, clks, TEGRA114_CLK_CLK_MAX);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002089}
2090
Paul Walmsley25c9ded2013-06-07 06:18:58 -06002091
2092/**
2093 * tegra114_car_barrier - wait for pending writes to the CAR to complete
2094 *
2095 * Wait for any outstanding writes to the CAR MMIO space from this CPU
2096 * to complete before continuing execution. No return value.
2097 */
2098static void tegra114_car_barrier(void)
2099{
2100 wmb(); /* probably unnecessary */
2101 readl_relaxed(clk_base + CPU_FINETRIM_SELECT);
2102}
2103
2104/**
2105 * tegra114_clock_tune_cpu_trimmers_high - use high-voltage propagation delays
2106 *
2107 * When the CPU rail voltage is in the high-voltage range, use the
2108 * built-in hardwired clock propagation delays in the CPU clock
2109 * shaper. No return value.
2110 */
2111void tegra114_clock_tune_cpu_trimmers_high(void)
2112{
2113 u32 select = 0;
2114
2115 /* Use hardwired rise->rise & fall->fall clock propagation delays */
2116 select |= ~(CPU_FINETRIM_1_FCPU_1 | CPU_FINETRIM_1_FCPU_2 |
2117 CPU_FINETRIM_1_FCPU_3 | CPU_FINETRIM_1_FCPU_4 |
2118 CPU_FINETRIM_1_FCPU_5 | CPU_FINETRIM_1_FCPU_6);
2119 writel_relaxed(select, clk_base + CPU_FINETRIM_SELECT);
2120
2121 tegra114_car_barrier();
2122}
2123EXPORT_SYMBOL(tegra114_clock_tune_cpu_trimmers_high);
2124
2125/**
2126 * tegra114_clock_tune_cpu_trimmers_low - use low-voltage propagation delays
2127 *
2128 * When the CPU rail voltage is in the low-voltage range, use the
2129 * extended clock propagation delays set by
2130 * tegra114_clock_tune_cpu_trimmers_init(). The intention is to
2131 * maintain the input clock duty cycle that the FCPU subsystem
2132 * expects. No return value.
2133 */
2134void tegra114_clock_tune_cpu_trimmers_low(void)
2135{
2136 u32 select = 0;
2137
2138 /*
2139 * Use software-specified rise->rise & fall->fall clock
2140 * propagation delays (from
2141 * tegra114_clock_tune_cpu_trimmers_init()
2142 */
2143 select |= (CPU_FINETRIM_1_FCPU_1 | CPU_FINETRIM_1_FCPU_2 |
2144 CPU_FINETRIM_1_FCPU_3 | CPU_FINETRIM_1_FCPU_4 |
2145 CPU_FINETRIM_1_FCPU_5 | CPU_FINETRIM_1_FCPU_6);
2146 writel_relaxed(select, clk_base + CPU_FINETRIM_SELECT);
2147
2148 tegra114_car_barrier();
2149}
2150EXPORT_SYMBOL(tegra114_clock_tune_cpu_trimmers_low);
2151
2152/**
2153 * tegra114_clock_tune_cpu_trimmers_init - set up and enable clk prop delays
2154 *
2155 * Program extended clock propagation delays into the FCPU clock
2156 * shaper and enable them. XXX Define the purpose - peak current
2157 * reduction? No return value.
2158 */
2159/* XXX Initial voltage rail state assumption issues? */
2160void tegra114_clock_tune_cpu_trimmers_init(void)
2161{
2162 u32 dr = 0, r = 0;
2163
2164 /* Increment the rise->rise clock delay by four steps */
2165 r |= (CPU_FINETRIM_R_FCPU_1_MASK | CPU_FINETRIM_R_FCPU_2_MASK |
2166 CPU_FINETRIM_R_FCPU_3_MASK | CPU_FINETRIM_R_FCPU_4_MASK |
2167 CPU_FINETRIM_R_FCPU_5_MASK | CPU_FINETRIM_R_FCPU_6_MASK);
2168 writel_relaxed(r, clk_base + CPU_FINETRIM_R);
2169
2170 /*
2171 * Use the rise->rise clock propagation delay specified in the
2172 * r field
2173 */
2174 dr |= (CPU_FINETRIM_1_FCPU_1 | CPU_FINETRIM_1_FCPU_2 |
2175 CPU_FINETRIM_1_FCPU_3 | CPU_FINETRIM_1_FCPU_4 |
2176 CPU_FINETRIM_1_FCPU_5 | CPU_FINETRIM_1_FCPU_6);
2177 writel_relaxed(dr, clk_base + CPU_FINETRIM_DR);
2178
2179 tegra114_clock_tune_cpu_trimmers_low();
2180}
2181EXPORT_SYMBOL(tegra114_clock_tune_cpu_trimmers_init);
2182
Paul Walmsley1c472d82013-06-07 06:19:09 -06002183/**
2184 * tegra114_clock_assert_dfll_dvco_reset - assert the DFLL's DVCO reset
2185 *
2186 * Assert the reset line of the DFLL's DVCO. No return value.
2187 */
2188void tegra114_clock_assert_dfll_dvco_reset(void)
2189{
2190 u32 v;
2191
2192 v = readl_relaxed(clk_base + RST_DFLL_DVCO);
2193 v |= (1 << DVFS_DFLL_RESET_SHIFT);
2194 writel_relaxed(v, clk_base + RST_DFLL_DVCO);
2195 tegra114_car_barrier();
2196}
2197EXPORT_SYMBOL(tegra114_clock_assert_dfll_dvco_reset);
2198
2199/**
2200 * tegra114_clock_deassert_dfll_dvco_reset - deassert the DFLL's DVCO reset
2201 *
2202 * Deassert the reset line of the DFLL's DVCO, allowing the DVCO to
2203 * operate. No return value.
2204 */
2205void tegra114_clock_deassert_dfll_dvco_reset(void)
2206{
2207 u32 v;
2208
2209 v = readl_relaxed(clk_base + RST_DFLL_DVCO);
2210 v &= ~(1 << DVFS_DFLL_RESET_SHIFT);
2211 writel_relaxed(v, clk_base + RST_DFLL_DVCO);
2212 tegra114_car_barrier();
2213}
2214EXPORT_SYMBOL(tegra114_clock_deassert_dfll_dvco_reset);
2215
Prashant Gaikwad061cec92013-05-27 13:10:09 +05302216static void __init tegra114_clock_init(struct device_node *np)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002217{
2218 struct device_node *node;
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002219
2220 clk_base = of_iomap(np, 0);
2221 if (!clk_base) {
2222 pr_err("ioremap tegra114 CAR failed\n");
2223 return;
2224 }
2225
2226 node = of_find_matching_node(NULL, pmc_match);
2227 if (!node) {
2228 pr_err("Failed to find pmc node\n");
2229 WARN_ON(1);
2230 return;
2231 }
2232
2233 pmc_base = of_iomap(node, 0);
2234 if (!pmc_base) {
2235 pr_err("Can't map pmc registers\n");
2236 WARN_ON(1);
2237 return;
2238 }
2239
Peter De Schrijver343a6072013-09-02 15:22:02 +03002240 clks = tegra_clk_init(TEGRA114_CLK_CLK_MAX, TEGRA114_CLK_PERIPH_BANKS);
2241 if (!clks)
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002242 return;
2243
Peter De Schrijver343a6072013-09-02 15:22:02 +03002244 if (tegra114_osc_clk_init(clk_base) < 0)
Peter De Schrijverd5ff89a2013-08-22 18:44:06 +03002245 return;
2246
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002247 tegra114_fixed_clk_init(clk_base);
2248 tegra114_pll_init(clk_base, pmc_base);
2249 tegra114_periph_clk_init(clk_base);
2250 tegra114_audio_clk_init(clk_base);
2251 tegra114_pmc_clk_init(pmc_base);
2252 tegra114_super_clk_init(clk_base);
2253
Peter De Schrijver343a6072013-09-02 15:22:02 +03002254 tegra_add_of_provider(np);
Peter De Schrijver2cb5efe2013-04-03 17:40:45 +03002255
2256 tegra_clk_apply_init_table = tegra114_clock_apply_init_table;
2257
2258 tegra_cpu_car_ops = &tegra114_cpu_car_ops;
2259}
Prashant Gaikwad061cec92013-05-27 13:10:09 +05302260CLK_OF_DECLARE(tegra114, "nvidia,tegra114-car", tegra114_clock_init);