xref: /rk3399_rockchip-uboot/arch/arm/mach-tegra/tegra20/clock.c (revision 90aa625c9a9e1fb7a2f001fd8e50099bacaf92b8)
109f455dcSMasahiro Yamada /*
209f455dcSMasahiro Yamada  * Copyright (c) 2011 The Chromium OS Authors.
3722e000cSTom Warren  * (C) Copyright 2010-2015
4722e000cSTom Warren  * NVIDIA Corporation <www.nvidia.com>
509f455dcSMasahiro Yamada  *
609f455dcSMasahiro Yamada  * SPDX-License-Identifier:	GPL-2.0+
709f455dcSMasahiro Yamada  */
809f455dcSMasahiro Yamada 
909f455dcSMasahiro Yamada /* Tegra20 Clock control functions */
1009f455dcSMasahiro Yamada 
1109f455dcSMasahiro Yamada #include <common.h>
1209f455dcSMasahiro Yamada #include <errno.h>
1309f455dcSMasahiro Yamada #include <asm/io.h>
1409f455dcSMasahiro Yamada #include <asm/arch/clock.h>
1509f455dcSMasahiro Yamada #include <asm/arch/tegra.h>
1609f455dcSMasahiro Yamada #include <asm/arch-tegra/clk_rst.h>
1709f455dcSMasahiro Yamada #include <asm/arch-tegra/timer.h>
1809f455dcSMasahiro Yamada #include <div64.h>
1909f455dcSMasahiro Yamada #include <fdtdec.h>
2009f455dcSMasahiro Yamada 
2109f455dcSMasahiro Yamada /*
2209f455dcSMasahiro Yamada  * Clock types that we can use as a source. The Tegra20 has muxes for the
2309f455dcSMasahiro Yamada  * peripheral clocks, and in most cases there are four options for the clock
2409f455dcSMasahiro Yamada  * source. This gives us a clock 'type' and exploits what commonality exists
2509f455dcSMasahiro Yamada  * in the device.
2609f455dcSMasahiro Yamada  *
2709f455dcSMasahiro Yamada  * Letters are obvious, except for T which means CLK_M, and S which means the
2809f455dcSMasahiro Yamada  * clock derived from 32KHz. Beware that CLK_M (also called OSC in the
2909f455dcSMasahiro Yamada  * datasheet) and PLL_M are different things. The former is the basic
3009f455dcSMasahiro Yamada  * clock supplied to the SOC from an external oscillator. The latter is the
3109f455dcSMasahiro Yamada  * memory clock PLL.
3209f455dcSMasahiro Yamada  *
3309f455dcSMasahiro Yamada  * See definitions in clock_id in the header file.
3409f455dcSMasahiro Yamada  */
3509f455dcSMasahiro Yamada enum clock_type_id {
3609f455dcSMasahiro Yamada 	CLOCK_TYPE_AXPT,	/* PLL_A, PLL_X, PLL_P, CLK_M */
3709f455dcSMasahiro Yamada 	CLOCK_TYPE_MCPA,	/* and so on */
3809f455dcSMasahiro Yamada 	CLOCK_TYPE_MCPT,
3909f455dcSMasahiro Yamada 	CLOCK_TYPE_PCM,
4009f455dcSMasahiro Yamada 	CLOCK_TYPE_PCMT,
4109f455dcSMasahiro Yamada 	CLOCK_TYPE_PCMT16,	/* CLOCK_TYPE_PCMT with 16-bit divider */
4209f455dcSMasahiro Yamada 	CLOCK_TYPE_PCXTS,
4309f455dcSMasahiro Yamada 	CLOCK_TYPE_PDCT,
4409f455dcSMasahiro Yamada 
4509f455dcSMasahiro Yamada 	CLOCK_TYPE_COUNT,
4609f455dcSMasahiro Yamada 	CLOCK_TYPE_NONE = -1,	/* invalid clock type */
4709f455dcSMasahiro Yamada };
4809f455dcSMasahiro Yamada 
4909f455dcSMasahiro Yamada enum {
5009f455dcSMasahiro Yamada 	CLOCK_MAX_MUX	= 4	/* number of source options for each clock */
5109f455dcSMasahiro Yamada };
5209f455dcSMasahiro Yamada 
5309f455dcSMasahiro Yamada /*
5409f455dcSMasahiro Yamada  * Clock source mux for each clock type. This just converts our enum into
5509f455dcSMasahiro Yamada  * a list of mux sources for use by the code. Note that CLOCK_TYPE_PCXTS
5609f455dcSMasahiro Yamada  * is special as it has 5 sources. Since it also has a different number of
5709f455dcSMasahiro Yamada  * bits in its register for the source, we just handle it with a special
5809f455dcSMasahiro Yamada  * case in the code.
5909f455dcSMasahiro Yamada  */
6009f455dcSMasahiro Yamada #define CLK(x) CLOCK_ID_ ## x
6109f455dcSMasahiro Yamada static enum clock_id clock_source[CLOCK_TYPE_COUNT][CLOCK_MAX_MUX] = {
6209f455dcSMasahiro Yamada 	{ CLK(AUDIO),	CLK(XCPU),	CLK(PERIPH),	CLK(OSC)	},
6309f455dcSMasahiro Yamada 	{ CLK(MEMORY),	CLK(CGENERAL),	CLK(PERIPH),	CLK(AUDIO)	},
6409f455dcSMasahiro Yamada 	{ CLK(MEMORY),	CLK(CGENERAL),	CLK(PERIPH),	CLK(OSC)	},
6509f455dcSMasahiro Yamada 	{ CLK(PERIPH),	CLK(CGENERAL),	CLK(MEMORY),	CLK(NONE)	},
6609f455dcSMasahiro Yamada 	{ CLK(PERIPH),	CLK(CGENERAL),	CLK(MEMORY),	CLK(OSC)	},
6709f455dcSMasahiro Yamada 	{ CLK(PERIPH),	CLK(CGENERAL),	CLK(MEMORY),	CLK(OSC)	},
6809f455dcSMasahiro Yamada 	{ CLK(PERIPH),	CLK(CGENERAL),	CLK(XCPU),	CLK(OSC)	},
6909f455dcSMasahiro Yamada 	{ CLK(PERIPH),	CLK(DISPLAY),	CLK(CGENERAL),	CLK(OSC)	},
7009f455dcSMasahiro Yamada };
7109f455dcSMasahiro Yamada 
7209f455dcSMasahiro Yamada /*
7309f455dcSMasahiro Yamada  * Clock peripheral IDs which sadly don't match up with PERIPH_ID. This is
7409f455dcSMasahiro Yamada  * not in the header file since it is for purely internal use - we want
7509f455dcSMasahiro Yamada  * callers to use the PERIPH_ID for all access to peripheral clocks to avoid
7609f455dcSMasahiro Yamada  * confusion bewteen PERIPH_ID_... and PERIPHC_...
7709f455dcSMasahiro Yamada  *
7809f455dcSMasahiro Yamada  * We don't call this CLOCK_PERIPH_ID or PERIPH_CLOCK_ID as it would just be
7909f455dcSMasahiro Yamada  * confusing.
8009f455dcSMasahiro Yamada  *
8109f455dcSMasahiro Yamada  * Note to SOC vendors: perhaps define a unified numbering for peripherals and
8209f455dcSMasahiro Yamada  * use it for reset, clock enable, clock source/divider and even pinmuxing
8309f455dcSMasahiro Yamada  * if you can.
8409f455dcSMasahiro Yamada  */
8509f455dcSMasahiro Yamada enum periphc_internal_id {
8609f455dcSMasahiro Yamada 	/* 0x00 */
8709f455dcSMasahiro Yamada 	PERIPHC_I2S1,
8809f455dcSMasahiro Yamada 	PERIPHC_I2S2,
8909f455dcSMasahiro Yamada 	PERIPHC_SPDIF_OUT,
9009f455dcSMasahiro Yamada 	PERIPHC_SPDIF_IN,
9109f455dcSMasahiro Yamada 	PERIPHC_PWM,
9209f455dcSMasahiro Yamada 	PERIPHC_SPI1,
9309f455dcSMasahiro Yamada 	PERIPHC_SPI2,
9409f455dcSMasahiro Yamada 	PERIPHC_SPI3,
9509f455dcSMasahiro Yamada 
9609f455dcSMasahiro Yamada 	/* 0x08 */
9709f455dcSMasahiro Yamada 	PERIPHC_XIO,
9809f455dcSMasahiro Yamada 	PERIPHC_I2C1,
9909f455dcSMasahiro Yamada 	PERIPHC_DVC_I2C,
10009f455dcSMasahiro Yamada 	PERIPHC_TWC,
10109f455dcSMasahiro Yamada 	PERIPHC_0c,
10209f455dcSMasahiro Yamada 	PERIPHC_10,	/* PERIPHC_SPI1, what is this really? */
10309f455dcSMasahiro Yamada 	PERIPHC_DISP1,
10409f455dcSMasahiro Yamada 	PERIPHC_DISP2,
10509f455dcSMasahiro Yamada 
10609f455dcSMasahiro Yamada 	/* 0x10 */
10709f455dcSMasahiro Yamada 	PERIPHC_CVE,
10809f455dcSMasahiro Yamada 	PERIPHC_IDE0,
10909f455dcSMasahiro Yamada 	PERIPHC_VI,
11009f455dcSMasahiro Yamada 	PERIPHC_1c,
11109f455dcSMasahiro Yamada 	PERIPHC_SDMMC1,
11209f455dcSMasahiro Yamada 	PERIPHC_SDMMC2,
11309f455dcSMasahiro Yamada 	PERIPHC_G3D,
11409f455dcSMasahiro Yamada 	PERIPHC_G2D,
11509f455dcSMasahiro Yamada 
11609f455dcSMasahiro Yamada 	/* 0x18 */
11709f455dcSMasahiro Yamada 	PERIPHC_NDFLASH,
11809f455dcSMasahiro Yamada 	PERIPHC_SDMMC4,
11909f455dcSMasahiro Yamada 	PERIPHC_VFIR,
12009f455dcSMasahiro Yamada 	PERIPHC_EPP,
12109f455dcSMasahiro Yamada 	PERIPHC_MPE,
12209f455dcSMasahiro Yamada 	PERIPHC_MIPI,
12309f455dcSMasahiro Yamada 	PERIPHC_UART1,
12409f455dcSMasahiro Yamada 	PERIPHC_UART2,
12509f455dcSMasahiro Yamada 
12609f455dcSMasahiro Yamada 	/* 0x20 */
12709f455dcSMasahiro Yamada 	PERIPHC_HOST1X,
12809f455dcSMasahiro Yamada 	PERIPHC_21,
12909f455dcSMasahiro Yamada 	PERIPHC_TVO,
13009f455dcSMasahiro Yamada 	PERIPHC_HDMI,
13109f455dcSMasahiro Yamada 	PERIPHC_24,
13209f455dcSMasahiro Yamada 	PERIPHC_TVDAC,
13309f455dcSMasahiro Yamada 	PERIPHC_I2C2,
13409f455dcSMasahiro Yamada 	PERIPHC_EMC,
13509f455dcSMasahiro Yamada 
13609f455dcSMasahiro Yamada 	/* 0x28 */
13709f455dcSMasahiro Yamada 	PERIPHC_UART3,
13809f455dcSMasahiro Yamada 	PERIPHC_29,
13909f455dcSMasahiro Yamada 	PERIPHC_VI_SENSOR,
14009f455dcSMasahiro Yamada 	PERIPHC_2b,
14109f455dcSMasahiro Yamada 	PERIPHC_2c,
14209f455dcSMasahiro Yamada 	PERIPHC_SPI4,
14309f455dcSMasahiro Yamada 	PERIPHC_I2C3,
14409f455dcSMasahiro Yamada 	PERIPHC_SDMMC3,
14509f455dcSMasahiro Yamada 
14609f455dcSMasahiro Yamada 	/* 0x30 */
14709f455dcSMasahiro Yamada 	PERIPHC_UART4,
14809f455dcSMasahiro Yamada 	PERIPHC_UART5,
14909f455dcSMasahiro Yamada 	PERIPHC_VDE,
15009f455dcSMasahiro Yamada 	PERIPHC_OWR,
15109f455dcSMasahiro Yamada 	PERIPHC_NOR,
15209f455dcSMasahiro Yamada 	PERIPHC_CSITE,
15309f455dcSMasahiro Yamada 
15409f455dcSMasahiro Yamada 	PERIPHC_COUNT,
15509f455dcSMasahiro Yamada 
15609f455dcSMasahiro Yamada 	PERIPHC_NONE = -1,
15709f455dcSMasahiro Yamada };
15809f455dcSMasahiro Yamada 
15909f455dcSMasahiro Yamada /*
16009f455dcSMasahiro Yamada  * Clock type for each peripheral clock source. We put the name in each
16109f455dcSMasahiro Yamada  * record just so it is easy to match things up
16209f455dcSMasahiro Yamada  */
16309f455dcSMasahiro Yamada #define TYPE(name, type) type
16409f455dcSMasahiro Yamada static enum clock_type_id clock_periph_type[PERIPHC_COUNT] = {
16509f455dcSMasahiro Yamada 	/* 0x00 */
16609f455dcSMasahiro Yamada 	TYPE(PERIPHC_I2S1,	CLOCK_TYPE_AXPT),
16709f455dcSMasahiro Yamada 	TYPE(PERIPHC_I2S2,	CLOCK_TYPE_AXPT),
16809f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPDIF_OUT,	CLOCK_TYPE_AXPT),
16909f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPDIF_IN,	CLOCK_TYPE_PCM),
17009f455dcSMasahiro Yamada 	TYPE(PERIPHC_PWM,	CLOCK_TYPE_PCXTS),
17109f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPI1,	CLOCK_TYPE_PCMT),
17209f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPI22,	CLOCK_TYPE_PCMT),
17309f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPI3,	CLOCK_TYPE_PCMT),
17409f455dcSMasahiro Yamada 
17509f455dcSMasahiro Yamada 	/* 0x08 */
17609f455dcSMasahiro Yamada 	TYPE(PERIPHC_XIO,	CLOCK_TYPE_PCMT),
17709f455dcSMasahiro Yamada 	TYPE(PERIPHC_I2C1,	CLOCK_TYPE_PCMT16),
17809f455dcSMasahiro Yamada 	TYPE(PERIPHC_DVC_I2C,	CLOCK_TYPE_PCMT16),
17909f455dcSMasahiro Yamada 	TYPE(PERIPHC_TWC,	CLOCK_TYPE_PCMT),
18009f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
18109f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPI1,	CLOCK_TYPE_PCMT),
18209f455dcSMasahiro Yamada 	TYPE(PERIPHC_DISP1,	CLOCK_TYPE_PDCT),
18309f455dcSMasahiro Yamada 	TYPE(PERIPHC_DISP2,	CLOCK_TYPE_PDCT),
18409f455dcSMasahiro Yamada 
18509f455dcSMasahiro Yamada 	/* 0x10 */
18609f455dcSMasahiro Yamada 	TYPE(PERIPHC_CVE,	CLOCK_TYPE_PDCT),
18709f455dcSMasahiro Yamada 	TYPE(PERIPHC_IDE0,	CLOCK_TYPE_PCMT),
18809f455dcSMasahiro Yamada 	TYPE(PERIPHC_VI,	CLOCK_TYPE_MCPA),
18909f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
19009f455dcSMasahiro Yamada 	TYPE(PERIPHC_SDMMC1,	CLOCK_TYPE_PCMT),
19109f455dcSMasahiro Yamada 	TYPE(PERIPHC_SDMMC2,	CLOCK_TYPE_PCMT),
19209f455dcSMasahiro Yamada 	TYPE(PERIPHC_G3D,	CLOCK_TYPE_MCPA),
19309f455dcSMasahiro Yamada 	TYPE(PERIPHC_G2D,	CLOCK_TYPE_MCPA),
19409f455dcSMasahiro Yamada 
19509f455dcSMasahiro Yamada 	/* 0x18 */
19609f455dcSMasahiro Yamada 	TYPE(PERIPHC_NDFLASH,	CLOCK_TYPE_PCMT),
19709f455dcSMasahiro Yamada 	TYPE(PERIPHC_SDMMC4,	CLOCK_TYPE_PCMT),
19809f455dcSMasahiro Yamada 	TYPE(PERIPHC_VFIR,	CLOCK_TYPE_PCMT),
19909f455dcSMasahiro Yamada 	TYPE(PERIPHC_EPP,	CLOCK_TYPE_MCPA),
20009f455dcSMasahiro Yamada 	TYPE(PERIPHC_MPE,	CLOCK_TYPE_MCPA),
20109f455dcSMasahiro Yamada 	TYPE(PERIPHC_MIPI,	CLOCK_TYPE_PCMT),
20209f455dcSMasahiro Yamada 	TYPE(PERIPHC_UART1,	CLOCK_TYPE_PCMT),
20309f455dcSMasahiro Yamada 	TYPE(PERIPHC_UART2,	CLOCK_TYPE_PCMT),
20409f455dcSMasahiro Yamada 
20509f455dcSMasahiro Yamada 	/* 0x20 */
20609f455dcSMasahiro Yamada 	TYPE(PERIPHC_HOST1X,	CLOCK_TYPE_MCPA),
20709f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
20809f455dcSMasahiro Yamada 	TYPE(PERIPHC_TVO,	CLOCK_TYPE_PDCT),
20909f455dcSMasahiro Yamada 	TYPE(PERIPHC_HDMI,	CLOCK_TYPE_PDCT),
21009f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
21109f455dcSMasahiro Yamada 	TYPE(PERIPHC_TVDAC,	CLOCK_TYPE_PDCT),
21209f455dcSMasahiro Yamada 	TYPE(PERIPHC_I2C2,	CLOCK_TYPE_PCMT16),
21309f455dcSMasahiro Yamada 	TYPE(PERIPHC_EMC,	CLOCK_TYPE_MCPT),
21409f455dcSMasahiro Yamada 
21509f455dcSMasahiro Yamada 	/* 0x28 */
21609f455dcSMasahiro Yamada 	TYPE(PERIPHC_UART3,	CLOCK_TYPE_PCMT),
21709f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
21809f455dcSMasahiro Yamada 	TYPE(PERIPHC_VI,	CLOCK_TYPE_MCPA),
21909f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
22009f455dcSMasahiro Yamada 	TYPE(PERIPHC_NONE,	CLOCK_TYPE_NONE),
22109f455dcSMasahiro Yamada 	TYPE(PERIPHC_SPI4,	CLOCK_TYPE_PCMT),
22209f455dcSMasahiro Yamada 	TYPE(PERIPHC_I2C3,	CLOCK_TYPE_PCMT16),
22309f455dcSMasahiro Yamada 	TYPE(PERIPHC_SDMMC3,	CLOCK_TYPE_PCMT),
22409f455dcSMasahiro Yamada 
22509f455dcSMasahiro Yamada 	/* 0x30 */
22609f455dcSMasahiro Yamada 	TYPE(PERIPHC_UART4,	CLOCK_TYPE_PCMT),
22709f455dcSMasahiro Yamada 	TYPE(PERIPHC_UART5,	CLOCK_TYPE_PCMT),
22809f455dcSMasahiro Yamada 	TYPE(PERIPHC_VDE,	CLOCK_TYPE_PCMT),
22909f455dcSMasahiro Yamada 	TYPE(PERIPHC_OWR,	CLOCK_TYPE_PCMT),
23009f455dcSMasahiro Yamada 	TYPE(PERIPHC_NOR,	CLOCK_TYPE_PCMT),
23109f455dcSMasahiro Yamada 	TYPE(PERIPHC_CSITE,	CLOCK_TYPE_PCMT),
23209f455dcSMasahiro Yamada };
23309f455dcSMasahiro Yamada 
23409f455dcSMasahiro Yamada /*
23509f455dcSMasahiro Yamada  * This array translates a periph_id to a periphc_internal_id
23609f455dcSMasahiro Yamada  *
23709f455dcSMasahiro Yamada  * Not present/matched up:
23809f455dcSMasahiro Yamada  *	uint vi_sensor;	 _VI_SENSOR_0,		0x1A8
23909f455dcSMasahiro Yamada  *	SPDIF - which is both 0x08 and 0x0c
24009f455dcSMasahiro Yamada  *
24109f455dcSMasahiro Yamada  */
24209f455dcSMasahiro Yamada #define NONE(name) (-1)
24309f455dcSMasahiro Yamada #define OFFSET(name, value) PERIPHC_ ## name
24409f455dcSMasahiro Yamada static s8 periph_id_to_internal_id[PERIPH_ID_COUNT] = {
24509f455dcSMasahiro Yamada 	/* Low word: 31:0 */
24609f455dcSMasahiro Yamada 	NONE(CPU),
24709f455dcSMasahiro Yamada 	NONE(RESERVED1),
24809f455dcSMasahiro Yamada 	NONE(RESERVED2),
24909f455dcSMasahiro Yamada 	NONE(AC97),
25009f455dcSMasahiro Yamada 	NONE(RTC),
25109f455dcSMasahiro Yamada 	NONE(TMR),
25209f455dcSMasahiro Yamada 	PERIPHC_UART1,
25309f455dcSMasahiro Yamada 	PERIPHC_UART2,	/* and vfir 0x68 */
25409f455dcSMasahiro Yamada 
25509f455dcSMasahiro Yamada 	/* 0x08 */
25609f455dcSMasahiro Yamada 	NONE(GPIO),
25709f455dcSMasahiro Yamada 	PERIPHC_SDMMC2,
25809f455dcSMasahiro Yamada 	NONE(SPDIF),		/* 0x08 and 0x0c, unclear which to use */
25909f455dcSMasahiro Yamada 	PERIPHC_I2S1,
26009f455dcSMasahiro Yamada 	PERIPHC_I2C1,
26109f455dcSMasahiro Yamada 	PERIPHC_NDFLASH,
26209f455dcSMasahiro Yamada 	PERIPHC_SDMMC1,
26309f455dcSMasahiro Yamada 	PERIPHC_SDMMC4,
26409f455dcSMasahiro Yamada 
26509f455dcSMasahiro Yamada 	/* 0x10 */
26609f455dcSMasahiro Yamada 	PERIPHC_TWC,
26709f455dcSMasahiro Yamada 	PERIPHC_PWM,
26809f455dcSMasahiro Yamada 	PERIPHC_I2S2,
26909f455dcSMasahiro Yamada 	PERIPHC_EPP,
27009f455dcSMasahiro Yamada 	PERIPHC_VI,
27109f455dcSMasahiro Yamada 	PERIPHC_G2D,
27209f455dcSMasahiro Yamada 	NONE(USBD),
27309f455dcSMasahiro Yamada 	NONE(ISP),
27409f455dcSMasahiro Yamada 
27509f455dcSMasahiro Yamada 	/* 0x18 */
27609f455dcSMasahiro Yamada 	PERIPHC_G3D,
27709f455dcSMasahiro Yamada 	PERIPHC_IDE0,
27809f455dcSMasahiro Yamada 	PERIPHC_DISP2,
27909f455dcSMasahiro Yamada 	PERIPHC_DISP1,
28009f455dcSMasahiro Yamada 	PERIPHC_HOST1X,
28109f455dcSMasahiro Yamada 	NONE(VCP),
28209f455dcSMasahiro Yamada 	NONE(RESERVED30),
28309f455dcSMasahiro Yamada 	NONE(CACHE2),
28409f455dcSMasahiro Yamada 
28509f455dcSMasahiro Yamada 	/* Middle word: 63:32 */
28609f455dcSMasahiro Yamada 	NONE(MEM),
28709f455dcSMasahiro Yamada 	NONE(AHBDMA),
28809f455dcSMasahiro Yamada 	NONE(APBDMA),
28909f455dcSMasahiro Yamada 	NONE(RESERVED35),
29009f455dcSMasahiro Yamada 	NONE(KBC),
29109f455dcSMasahiro Yamada 	NONE(STAT_MON),
29209f455dcSMasahiro Yamada 	NONE(PMC),
29309f455dcSMasahiro Yamada 	NONE(FUSE),
29409f455dcSMasahiro Yamada 
29509f455dcSMasahiro Yamada 	/* 0x28 */
29609f455dcSMasahiro Yamada 	NONE(KFUSE),
29709f455dcSMasahiro Yamada 	NONE(SBC1),	/* SBC1, 0x34, is this SPI1? */
29809f455dcSMasahiro Yamada 	PERIPHC_NOR,
29909f455dcSMasahiro Yamada 	PERIPHC_SPI1,
30009f455dcSMasahiro Yamada 	PERIPHC_SPI2,
30109f455dcSMasahiro Yamada 	PERIPHC_XIO,
30209f455dcSMasahiro Yamada 	PERIPHC_SPI3,
30309f455dcSMasahiro Yamada 	PERIPHC_DVC_I2C,
30409f455dcSMasahiro Yamada 
30509f455dcSMasahiro Yamada 	/* 0x30 */
30609f455dcSMasahiro Yamada 	NONE(DSI),
30709f455dcSMasahiro Yamada 	PERIPHC_TVO,	/* also CVE 0x40 */
30809f455dcSMasahiro Yamada 	PERIPHC_MIPI,
30909f455dcSMasahiro Yamada 	PERIPHC_HDMI,
31009f455dcSMasahiro Yamada 	PERIPHC_CSITE,
31109f455dcSMasahiro Yamada 	PERIPHC_TVDAC,
31209f455dcSMasahiro Yamada 	PERIPHC_I2C2,
31309f455dcSMasahiro Yamada 	PERIPHC_UART3,
31409f455dcSMasahiro Yamada 
31509f455dcSMasahiro Yamada 	/* 0x38 */
31609f455dcSMasahiro Yamada 	NONE(RESERVED56),
31709f455dcSMasahiro Yamada 	PERIPHC_EMC,
31809f455dcSMasahiro Yamada 	NONE(USB2),
31909f455dcSMasahiro Yamada 	NONE(USB3),
32009f455dcSMasahiro Yamada 	PERIPHC_MPE,
32109f455dcSMasahiro Yamada 	PERIPHC_VDE,
32209f455dcSMasahiro Yamada 	NONE(BSEA),
32309f455dcSMasahiro Yamada 	NONE(BSEV),
32409f455dcSMasahiro Yamada 
32509f455dcSMasahiro Yamada 	/* Upper word 95:64 */
32609f455dcSMasahiro Yamada 	NONE(SPEEDO),
32709f455dcSMasahiro Yamada 	PERIPHC_UART4,
32809f455dcSMasahiro Yamada 	PERIPHC_UART5,
32909f455dcSMasahiro Yamada 	PERIPHC_I2C3,
33009f455dcSMasahiro Yamada 	PERIPHC_SPI4,
33109f455dcSMasahiro Yamada 	PERIPHC_SDMMC3,
33209f455dcSMasahiro Yamada 	NONE(PCIE),
33309f455dcSMasahiro Yamada 	PERIPHC_OWR,
33409f455dcSMasahiro Yamada 
33509f455dcSMasahiro Yamada 	/* 0x48 */
33609f455dcSMasahiro Yamada 	NONE(AFI),
33709f455dcSMasahiro Yamada 	NONE(CORESIGHT),
33809f455dcSMasahiro Yamada 	NONE(PCIEXCLK),
33909f455dcSMasahiro Yamada 	NONE(AVPUCQ),
34009f455dcSMasahiro Yamada 	NONE(RESERVED76),
34109f455dcSMasahiro Yamada 	NONE(RESERVED77),
34209f455dcSMasahiro Yamada 	NONE(RESERVED78),
34309f455dcSMasahiro Yamada 	NONE(RESERVED79),
34409f455dcSMasahiro Yamada 
34509f455dcSMasahiro Yamada 	/* 0x50 */
34609f455dcSMasahiro Yamada 	NONE(RESERVED80),
34709f455dcSMasahiro Yamada 	NONE(RESERVED81),
34809f455dcSMasahiro Yamada 	NONE(RESERVED82),
34909f455dcSMasahiro Yamada 	NONE(RESERVED83),
35009f455dcSMasahiro Yamada 	NONE(IRAMA),
35109f455dcSMasahiro Yamada 	NONE(IRAMB),
35209f455dcSMasahiro Yamada 	NONE(IRAMC),
35309f455dcSMasahiro Yamada 	NONE(IRAMD),
35409f455dcSMasahiro Yamada 
35509f455dcSMasahiro Yamada 	/* 0x58 */
35609f455dcSMasahiro Yamada 	NONE(CRAM2),
35709f455dcSMasahiro Yamada };
35809f455dcSMasahiro Yamada 
35909f455dcSMasahiro Yamada /*
360722e000cSTom Warren  * PLL divider shift/mask tables for all PLL IDs.
361722e000cSTom Warren  */
362722e000cSTom Warren struct clk_pll_info tegra_pll_info_table[CLOCK_ID_PLL_COUNT] = {
363722e000cSTom Warren 	/*
364722e000cSTom Warren 	 * T20 and T25
365722e000cSTom Warren 	 * NOTE: If kcp_mask/kvco_mask == 0, they're not used in that PLL (PLLX, etc.)
366722e000cSTom Warren 	 *       If lock_ena or lock_det are >31, they're not used in that PLL.
367722e000cSTom Warren 	 */
368722e000cSTom Warren 
369722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0xFF, .n_shift = 8, .n_mask = 0x3FF,  .p_shift = 20, .p_mask = 0x0F,
370722e000cSTom Warren 	  .lock_ena = 24, .lock_det = 27, .kcp_shift = 28, .kcp_mask = 3, .kvco_shift = 27, .kvco_mask = 1 },	/* PLLC */
371722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0xFF, .n_shift = 8, .n_mask = 0x3FF,  .p_shift = 0,  .p_mask = 0,
372722e000cSTom Warren 	  .lock_ena = 0,  .lock_det = 27, .kcp_shift = 1, .kcp_mask = 3, .kvco_shift = 0, .kvco_mask = 1 },	/* PLLM */
373722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0x1F, .n_shift = 8, .n_mask = 0x3FF, .p_shift = 20, .p_mask = 0x07,
374722e000cSTom Warren 	  .lock_ena = 18, .lock_det = 27, .kcp_shift = 8, .kcp_mask = 0xF, .kvco_shift = 4, .kvco_mask = 0xF },	/* PLLP */
375722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0x1F, .n_shift = 8, .n_mask = 0x3FF, .p_shift = 20, .p_mask = 0x07,
376722e000cSTom Warren 	  .lock_ena = 18, .lock_det = 27, .kcp_shift = 8, .kcp_mask = 0xF, .kvco_shift = 4, .kvco_mask = 0xF },	/* PLLA */
377722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0x1F, .n_shift = 8, .n_mask = 0x3FF, .p_shift = 20, .p_mask = 0x01,
378722e000cSTom Warren 	  .lock_ena = 22, .lock_det = 27, .kcp_shift = 8, .kcp_mask = 0xF, .kvco_shift = 4, .kvco_mask = 0xF },	/* PLLU */
379722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0x1F, .n_shift = 8, .n_mask = 0x3FF, .p_shift = 20, .p_mask = 0x07,
380722e000cSTom Warren 	  .lock_ena = 22, .lock_det = 27, .kcp_shift = 8, .kcp_mask = 0xF, .kvco_shift = 4, .kvco_mask = 0xF },	/* PLLD */
381722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0x1F, .n_shift = 8, .n_mask = 0x3FF,  .p_shift = 20, .p_mask = 0x0F,
382722e000cSTom Warren 	  .lock_ena = 18, .lock_det = 27, .kcp_shift = 8, .kcp_mask = 0xF, .kvco_shift = 0, .kvco_mask = 0 },	/* PLLX */
383722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0xFF, .n_shift = 8, .n_mask = 0xFF,  .p_shift = 0,  .p_mask = 0,
384722e000cSTom Warren 	  .lock_ena = 9,  .lock_det = 11, .kcp_shift = 6, .kcp_mask = 3, .kvco_shift = 0, .kvco_mask = 1 },	/* PLLE */
385722e000cSTom Warren 	{ .m_shift = 0, .m_mask = 0x0F, .n_shift = 8, .n_mask = 0x3FF, .p_shift = 20, .p_mask = 0x07,
386722e000cSTom Warren 	  .lock_ena = 18, .lock_det = 0, .kcp_shift = 8, .kcp_mask = 0xF, .kvco_shift = 4, .kvco_mask = 0xF },	/* PLLS */
387722e000cSTom Warren };
388722e000cSTom Warren 
389722e000cSTom Warren /*
39009f455dcSMasahiro Yamada  * Get the oscillator frequency, from the corresponding hardware configuration
39109f455dcSMasahiro Yamada  * field. T20 has 4 frequencies that it supports.
39209f455dcSMasahiro Yamada  */
clock_get_osc_freq(void)39309f455dcSMasahiro Yamada enum clock_osc_freq clock_get_osc_freq(void)
39409f455dcSMasahiro Yamada {
39509f455dcSMasahiro Yamada 	struct clk_rst_ctlr *clkrst =
39609f455dcSMasahiro Yamada 			(struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE;
39709f455dcSMasahiro Yamada 	u32 reg;
39809f455dcSMasahiro Yamada 
39909f455dcSMasahiro Yamada 	reg = readl(&clkrst->crc_osc_ctrl);
40009f455dcSMasahiro Yamada 	return (reg & OSC_FREQ_MASK) >> OSC_FREQ_SHIFT;
40109f455dcSMasahiro Yamada }
40209f455dcSMasahiro Yamada 
40309f455dcSMasahiro Yamada /* Returns a pointer to the clock source register for a peripheral */
get_periph_source_reg(enum periph_id periph_id)40409f455dcSMasahiro Yamada u32 *get_periph_source_reg(enum periph_id periph_id)
40509f455dcSMasahiro Yamada {
40609f455dcSMasahiro Yamada 	struct clk_rst_ctlr *clkrst =
40709f455dcSMasahiro Yamada 			(struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE;
40809f455dcSMasahiro Yamada 	enum periphc_internal_id internal_id;
40909f455dcSMasahiro Yamada 
41009f455dcSMasahiro Yamada 	assert(clock_periph_id_isvalid(periph_id));
41109f455dcSMasahiro Yamada 	internal_id = periph_id_to_internal_id[periph_id];
41209f455dcSMasahiro Yamada 	assert(internal_id != -1);
41309f455dcSMasahiro Yamada 	return &clkrst->crc_clk_src[internal_id];
41409f455dcSMasahiro Yamada }
41509f455dcSMasahiro Yamada 
get_periph_clock_info(enum periph_id periph_id,int * mux_bits,int * divider_bits,int * type)416d0ad8a5cSStephen Warren int get_periph_clock_info(enum periph_id periph_id, int *mux_bits,
417d0ad8a5cSStephen Warren 			  int *divider_bits, int *type)
418d0ad8a5cSStephen Warren {
419d0ad8a5cSStephen Warren 	enum periphc_internal_id internal_id;
420d0ad8a5cSStephen Warren 
421d0ad8a5cSStephen Warren 	if (!clock_periph_id_isvalid(periph_id))
422d0ad8a5cSStephen Warren 		return -1;
423d0ad8a5cSStephen Warren 
424d0ad8a5cSStephen Warren 	internal_id = periph_id_to_internal_id[periph_id];
425d0ad8a5cSStephen Warren 	if (!periphc_internal_id_isvalid(internal_id))
426d0ad8a5cSStephen Warren 		return -1;
427d0ad8a5cSStephen Warren 
428d0ad8a5cSStephen Warren 	*type = clock_periph_type[internal_id];
429d0ad8a5cSStephen Warren 	if (!clock_type_id_isvalid(*type))
430d0ad8a5cSStephen Warren 		return -1;
431d0ad8a5cSStephen Warren 
432d0ad8a5cSStephen Warren 	/*
433d0ad8a5cSStephen Warren 	 * Special cases here for the clock with a 4-bit source mux and I2C
434d0ad8a5cSStephen Warren 	 * with its 16-bit divisor
435d0ad8a5cSStephen Warren 	 */
436d0ad8a5cSStephen Warren 	if (*type == CLOCK_TYPE_PCXTS)
437d0ad8a5cSStephen Warren 		*mux_bits = MASK_BITS_31_28;
438d0ad8a5cSStephen Warren 	else
439d0ad8a5cSStephen Warren 		*mux_bits = MASK_BITS_31_30;
440d0ad8a5cSStephen Warren 	if (*type == CLOCK_TYPE_PCMT16)
441d0ad8a5cSStephen Warren 		*divider_bits = 16;
442d0ad8a5cSStephen Warren 	else
443d0ad8a5cSStephen Warren 		*divider_bits = 8;
444d0ad8a5cSStephen Warren 
445d0ad8a5cSStephen Warren 	return 0;
446d0ad8a5cSStephen Warren }
447d0ad8a5cSStephen Warren 
get_periph_clock_id(enum periph_id periph_id,int source)448d0ad8a5cSStephen Warren enum clock_id get_periph_clock_id(enum periph_id periph_id, int source)
449d0ad8a5cSStephen Warren {
450d0ad8a5cSStephen Warren 	enum periphc_internal_id internal_id;
451d0ad8a5cSStephen Warren 	int type;
452d0ad8a5cSStephen Warren 
453d0ad8a5cSStephen Warren 	if (!clock_periph_id_isvalid(periph_id))
454d0ad8a5cSStephen Warren 		return CLOCK_ID_NONE;
455d0ad8a5cSStephen Warren 
456d0ad8a5cSStephen Warren 	internal_id = periph_id_to_internal_id[periph_id];
457d0ad8a5cSStephen Warren 	if (!periphc_internal_id_isvalid(internal_id))
458d0ad8a5cSStephen Warren 		return CLOCK_ID_NONE;
459d0ad8a5cSStephen Warren 
460d0ad8a5cSStephen Warren 	type = clock_periph_type[internal_id];
461d0ad8a5cSStephen Warren 	if (!clock_type_id_isvalid(type))
462d0ad8a5cSStephen Warren 		return CLOCK_ID_NONE;
463d0ad8a5cSStephen Warren 
464d0ad8a5cSStephen Warren 	return clock_source[type][source];
465d0ad8a5cSStephen Warren }
466d0ad8a5cSStephen Warren 
46709f455dcSMasahiro Yamada /**
46809f455dcSMasahiro Yamada  * Given a peripheral ID and the required source clock, this returns which
46909f455dcSMasahiro Yamada  * value should be programmed into the source mux for that peripheral.
47009f455dcSMasahiro Yamada  *
47109f455dcSMasahiro Yamada  * There is special code here to handle the one source type with 5 sources.
47209f455dcSMasahiro Yamada  *
47309f455dcSMasahiro Yamada  * @param periph_id	peripheral to start
47409f455dcSMasahiro Yamada  * @param source	PLL id of required parent clock
47509f455dcSMasahiro Yamada  * @param mux_bits	Set to number of bits in mux register: 2 or 4
47609f455dcSMasahiro Yamada  * @param divider_bits	Set to number of divider bits (8 or 16)
47709f455dcSMasahiro Yamada  * @return mux value (0-4, or -1 if not found)
47809f455dcSMasahiro Yamada  */
get_periph_clock_source(enum periph_id periph_id,enum clock_id parent,int * mux_bits,int * divider_bits)47909f455dcSMasahiro Yamada int get_periph_clock_source(enum periph_id periph_id,
48009f455dcSMasahiro Yamada 		enum clock_id parent, int *mux_bits, int *divider_bits)
48109f455dcSMasahiro Yamada {
48209f455dcSMasahiro Yamada 	enum clock_type_id type;
483d0ad8a5cSStephen Warren 	int mux, err;
48409f455dcSMasahiro Yamada 
485d0ad8a5cSStephen Warren 	err = get_periph_clock_info(periph_id, mux_bits, divider_bits, &type);
486d0ad8a5cSStephen Warren 	assert(!err);
48709f455dcSMasahiro Yamada 
48809f455dcSMasahiro Yamada 	for (mux = 0; mux < CLOCK_MAX_MUX; mux++)
48909f455dcSMasahiro Yamada 		if (clock_source[type][mux] == parent)
49009f455dcSMasahiro Yamada 			return mux;
49109f455dcSMasahiro Yamada 
49209f455dcSMasahiro Yamada 	/*
49309f455dcSMasahiro Yamada 	 * Not found: it might be looking for the 'S' in CLOCK_TYPE_PCXTS
49409f455dcSMasahiro Yamada 	 * which is not in our table. If not, then they are asking for a
49509f455dcSMasahiro Yamada 	 * source which this peripheral can't access through its mux.
49609f455dcSMasahiro Yamada 	 */
49709f455dcSMasahiro Yamada 	assert(type == CLOCK_TYPE_PCXTS);
49809f455dcSMasahiro Yamada 	assert(parent == CLOCK_ID_SFROM32KHZ);
49909f455dcSMasahiro Yamada 	if (type == CLOCK_TYPE_PCXTS && parent == CLOCK_ID_SFROM32KHZ)
50009f455dcSMasahiro Yamada 		return 4;	/* mux value for this clock */
50109f455dcSMasahiro Yamada 
50209f455dcSMasahiro Yamada 	/* if we get here, either us or the caller has made a mistake */
50309f455dcSMasahiro Yamada 	printf("Caller requested bad clock: periph=%d, parent=%d\n", periph_id,
50409f455dcSMasahiro Yamada 		parent);
50509f455dcSMasahiro Yamada 	return -1;
50609f455dcSMasahiro Yamada }
50709f455dcSMasahiro Yamada 
clock_set_enable(enum periph_id periph_id,int enable)50809f455dcSMasahiro Yamada void clock_set_enable(enum periph_id periph_id, int enable)
50909f455dcSMasahiro Yamada {
51009f455dcSMasahiro Yamada 	struct clk_rst_ctlr *clkrst =
51109f455dcSMasahiro Yamada 			(struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE;
51209f455dcSMasahiro Yamada 	u32 *clk = &clkrst->crc_clk_out_enb[PERIPH_REG(periph_id)];
51309f455dcSMasahiro Yamada 	u32 reg;
51409f455dcSMasahiro Yamada 
51509f455dcSMasahiro Yamada 	/* Enable/disable the clock to this peripheral */
51609f455dcSMasahiro Yamada 	assert(clock_periph_id_isvalid(periph_id));
51709f455dcSMasahiro Yamada 	reg = readl(clk);
51809f455dcSMasahiro Yamada 	if (enable)
51909f455dcSMasahiro Yamada 		reg |= PERIPH_MASK(periph_id);
52009f455dcSMasahiro Yamada 	else
52109f455dcSMasahiro Yamada 		reg &= ~PERIPH_MASK(periph_id);
52209f455dcSMasahiro Yamada 	writel(reg, clk);
52309f455dcSMasahiro Yamada }
52409f455dcSMasahiro Yamada 
reset_set_enable(enum periph_id periph_id,int enable)52509f455dcSMasahiro Yamada void reset_set_enable(enum periph_id periph_id, int enable)
52609f455dcSMasahiro Yamada {
52709f455dcSMasahiro Yamada 	struct clk_rst_ctlr *clkrst =
52809f455dcSMasahiro Yamada 			(struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE;
52909f455dcSMasahiro Yamada 	u32 *reset = &clkrst->crc_rst_dev[PERIPH_REG(periph_id)];
53009f455dcSMasahiro Yamada 	u32 reg;
53109f455dcSMasahiro Yamada 
53209f455dcSMasahiro Yamada 	/* Enable/disable reset to the peripheral */
53309f455dcSMasahiro Yamada 	assert(clock_periph_id_isvalid(periph_id));
53409f455dcSMasahiro Yamada 	reg = readl(reset);
53509f455dcSMasahiro Yamada 	if (enable)
53609f455dcSMasahiro Yamada 		reg |= PERIPH_MASK(periph_id);
53709f455dcSMasahiro Yamada 	else
53809f455dcSMasahiro Yamada 		reg &= ~PERIPH_MASK(periph_id);
53909f455dcSMasahiro Yamada 	writel(reg, reset);
54009f455dcSMasahiro Yamada }
54109f455dcSMasahiro Yamada 
5420f925822SMasahiro Yamada #if CONFIG_IS_ENABLED(OF_CONTROL)
54309f455dcSMasahiro Yamada /*
54409f455dcSMasahiro Yamada  * Convert a device tree clock ID to our peripheral ID. They are mostly
54509f455dcSMasahiro Yamada  * the same but we are very cautious so we check that a valid clock ID is
54609f455dcSMasahiro Yamada  * provided.
54709f455dcSMasahiro Yamada  *
54809f455dcSMasahiro Yamada  * @param clk_id	Clock ID according to tegra20 device tree binding
54909f455dcSMasahiro Yamada  * @return peripheral ID, or PERIPH_ID_NONE if the clock ID is invalid
55009f455dcSMasahiro Yamada  */
clk_id_to_periph_id(int clk_id)55109f455dcSMasahiro Yamada enum periph_id clk_id_to_periph_id(int clk_id)
55209f455dcSMasahiro Yamada {
55309f455dcSMasahiro Yamada 	if (clk_id > PERIPH_ID_COUNT)
55409f455dcSMasahiro Yamada 		return PERIPH_ID_NONE;
55509f455dcSMasahiro Yamada 
55609f455dcSMasahiro Yamada 	switch (clk_id) {
55709f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED1:
55809f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED2:
55909f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED30:
56009f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED35:
56109f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED56:
56209f455dcSMasahiro Yamada 	case PERIPH_ID_PCIEXCLK:
56309f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED76:
56409f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED77:
56509f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED78:
56609f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED79:
56709f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED80:
56809f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED81:
56909f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED82:
57009f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED83:
57109f455dcSMasahiro Yamada 	case PERIPH_ID_RESERVED91:
57209f455dcSMasahiro Yamada 		return PERIPH_ID_NONE;
57309f455dcSMasahiro Yamada 	default:
57409f455dcSMasahiro Yamada 		return clk_id;
57509f455dcSMasahiro Yamada 	}
57609f455dcSMasahiro Yamada }
5770f925822SMasahiro Yamada #endif /* CONFIG_IS_ENABLED(OF_CONTROL) */
57809f455dcSMasahiro Yamada 
clock_early_init(void)57909f455dcSMasahiro Yamada void clock_early_init(void)
58009f455dcSMasahiro Yamada {
58109f455dcSMasahiro Yamada 	/*
58209f455dcSMasahiro Yamada 	 * PLLP output frequency set to 216MHz
58309f455dcSMasahiro Yamada 	 * PLLC output frequency set to 600Mhz
58409f455dcSMasahiro Yamada 	 *
58509f455dcSMasahiro Yamada 	 * TODO: Can we calculate these values instead of hard-coding?
58609f455dcSMasahiro Yamada 	 */
58709f455dcSMasahiro Yamada 	switch (clock_get_osc_freq()) {
58809f455dcSMasahiro Yamada 	case CLOCK_OSC_FREQ_12_0: /* OSC is 12Mhz */
58909f455dcSMasahiro Yamada 		clock_set_rate(CLOCK_ID_PERIPH, 432, 12, 1, 8);
59009f455dcSMasahiro Yamada 		clock_set_rate(CLOCK_ID_CGENERAL, 600, 12, 0, 8);
59109f455dcSMasahiro Yamada 		break;
59209f455dcSMasahiro Yamada 
59309f455dcSMasahiro Yamada 	case CLOCK_OSC_FREQ_26_0: /* OSC is 26Mhz */
59409f455dcSMasahiro Yamada 		clock_set_rate(CLOCK_ID_PERIPH, 432, 26, 1, 8);
59509f455dcSMasahiro Yamada 		clock_set_rate(CLOCK_ID_CGENERAL, 600, 26, 0, 8);
59609f455dcSMasahiro Yamada 		break;
59709f455dcSMasahiro Yamada 
59809f455dcSMasahiro Yamada 	case CLOCK_OSC_FREQ_13_0: /* OSC is 13Mhz */
59909f455dcSMasahiro Yamada 		clock_set_rate(CLOCK_ID_PERIPH, 432, 13, 1, 8);
60009f455dcSMasahiro Yamada 		clock_set_rate(CLOCK_ID_CGENERAL, 600, 13, 0, 8);
60109f455dcSMasahiro Yamada 		break;
60209f455dcSMasahiro Yamada 	case CLOCK_OSC_FREQ_19_2:
60309f455dcSMasahiro Yamada 	default:
60409f455dcSMasahiro Yamada 		/*
60509f455dcSMasahiro Yamada 		 * These are not supported. It is too early to print a
60609f455dcSMasahiro Yamada 		 * message and the UART likely won't work anyway due to the
60709f455dcSMasahiro Yamada 		 * oscillator being wrong.
60809f455dcSMasahiro Yamada 		 */
60909f455dcSMasahiro Yamada 		break;
61009f455dcSMasahiro Yamada 	}
61109f455dcSMasahiro Yamada }
61209f455dcSMasahiro Yamada 
arch_timer_init(void)61309f455dcSMasahiro Yamada void arch_timer_init(void)
61409f455dcSMasahiro Yamada {
61509f455dcSMasahiro Yamada }
61609f455dcSMasahiro Yamada 
61709f455dcSMasahiro Yamada #define PMC_SATA_PWRGT 0x1ac
61809f455dcSMasahiro Yamada #define  PMC_SATA_PWRGT_PLLE_IDDQ_OVERRIDE (1 << 5)
61909f455dcSMasahiro Yamada #define  PMC_SATA_PWRGT_PLLE_IDDQ_SWCTL (1 << 4)
62009f455dcSMasahiro Yamada 
62109f455dcSMasahiro Yamada #define PLLE_SS_CNTL 0x68
62209f455dcSMasahiro Yamada #define  PLLE_SS_CNTL_SSCINCINTRV(x) (((x) & 0x3f) << 24)
62309f455dcSMasahiro Yamada #define  PLLE_SS_CNTL_SSCINC(x) (((x) & 0xff) << 16)
62409f455dcSMasahiro Yamada #define  PLLE_SS_CNTL_SSCBYP (1 << 12)
62509f455dcSMasahiro Yamada #define  PLLE_SS_CNTL_INTERP_RESET (1 << 11)
62609f455dcSMasahiro Yamada #define  PLLE_SS_CNTL_BYPASS_SS (1 << 10)
62709f455dcSMasahiro Yamada #define  PLLE_SS_CNTL_SSCMAX(x) (((x) & 0x1ff) << 0)
62809f455dcSMasahiro Yamada 
62909f455dcSMasahiro Yamada #define PLLE_BASE 0x0e8
63009f455dcSMasahiro Yamada #define  PLLE_BASE_ENABLE_CML (1 << 31)
63109f455dcSMasahiro Yamada #define  PLLE_BASE_ENABLE (1 << 30)
63209f455dcSMasahiro Yamada #define  PLLE_BASE_PLDIV_CML(x) (((x) & 0xf) << 24)
63309f455dcSMasahiro Yamada #define  PLLE_BASE_PLDIV(x) (((x) & 0x3f) << 16)
63409f455dcSMasahiro Yamada #define  PLLE_BASE_NDIV(x) (((x) & 0xff) << 8)
63509f455dcSMasahiro Yamada #define  PLLE_BASE_MDIV(x) (((x) & 0xff) << 0)
63609f455dcSMasahiro Yamada 
63709f455dcSMasahiro Yamada #define PLLE_MISC 0x0ec
63809f455dcSMasahiro Yamada #define  PLLE_MISC_SETUP_BASE(x) (((x) & 0xffff) << 16)
63909f455dcSMasahiro Yamada #define  PLLE_MISC_PLL_READY (1 << 15)
64009f455dcSMasahiro Yamada #define  PLLE_MISC_LOCK (1 << 11)
64109f455dcSMasahiro Yamada #define  PLLE_MISC_LOCK_ENABLE (1 << 9)
64209f455dcSMasahiro Yamada #define  PLLE_MISC_SETUP_EXT(x) (((x) & 0x3) << 2)
64309f455dcSMasahiro Yamada 
tegra_plle_train(void)64409f455dcSMasahiro Yamada static int tegra_plle_train(void)
64509f455dcSMasahiro Yamada {
64609f455dcSMasahiro Yamada 	unsigned int timeout = 2000;
64709f455dcSMasahiro Yamada 	unsigned long value;
64809f455dcSMasahiro Yamada 
64909f455dcSMasahiro Yamada 	value = readl(NV_PA_PMC_BASE + PMC_SATA_PWRGT);
65009f455dcSMasahiro Yamada 	value |= PMC_SATA_PWRGT_PLLE_IDDQ_OVERRIDE;
65109f455dcSMasahiro Yamada 	writel(value, NV_PA_PMC_BASE + PMC_SATA_PWRGT);
65209f455dcSMasahiro Yamada 
65309f455dcSMasahiro Yamada 	value = readl(NV_PA_PMC_BASE + PMC_SATA_PWRGT);
65409f455dcSMasahiro Yamada 	value |= PMC_SATA_PWRGT_PLLE_IDDQ_SWCTL;
65509f455dcSMasahiro Yamada 	writel(value, NV_PA_PMC_BASE + PMC_SATA_PWRGT);
65609f455dcSMasahiro Yamada 
65709f455dcSMasahiro Yamada 	value = readl(NV_PA_PMC_BASE + PMC_SATA_PWRGT);
65809f455dcSMasahiro Yamada 	value &= ~PMC_SATA_PWRGT_PLLE_IDDQ_OVERRIDE;
65909f455dcSMasahiro Yamada 	writel(value, NV_PA_PMC_BASE + PMC_SATA_PWRGT);
66009f455dcSMasahiro Yamada 
66109f455dcSMasahiro Yamada 	do {
66209f455dcSMasahiro Yamada 		value = readl(NV_PA_CLK_RST_BASE + PLLE_MISC);
66309f455dcSMasahiro Yamada 		if (value & PLLE_MISC_PLL_READY)
66409f455dcSMasahiro Yamada 			break;
66509f455dcSMasahiro Yamada 
66609f455dcSMasahiro Yamada 		udelay(100);
66709f455dcSMasahiro Yamada 	} while (--timeout);
66809f455dcSMasahiro Yamada 
66909f455dcSMasahiro Yamada 	if (timeout == 0) {
670*90aa625cSMasahiro Yamada 		pr_err("timeout waiting for PLLE to become ready");
67109f455dcSMasahiro Yamada 		return -ETIMEDOUT;
67209f455dcSMasahiro Yamada 	}
67309f455dcSMasahiro Yamada 
67409f455dcSMasahiro Yamada 	return 0;
67509f455dcSMasahiro Yamada }
67609f455dcSMasahiro Yamada 
tegra_plle_enable(void)67709f455dcSMasahiro Yamada int tegra_plle_enable(void)
67809f455dcSMasahiro Yamada {
67909f455dcSMasahiro Yamada 	unsigned int timeout = 1000;
68009f455dcSMasahiro Yamada 	u32 value;
68109f455dcSMasahiro Yamada 	int err;
68209f455dcSMasahiro Yamada 
68309f455dcSMasahiro Yamada 	/* disable PLLE clock */
68409f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_BASE);
68509f455dcSMasahiro Yamada 	value &= ~PLLE_BASE_ENABLE_CML;
68609f455dcSMasahiro Yamada 	value &= ~PLLE_BASE_ENABLE;
68709f455dcSMasahiro Yamada 	writel(value, NV_PA_CLK_RST_BASE + PLLE_BASE);
68809f455dcSMasahiro Yamada 
68909f455dcSMasahiro Yamada 	/* clear lock enable and setup field */
69009f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_MISC);
69109f455dcSMasahiro Yamada 	value &= ~PLLE_MISC_LOCK_ENABLE;
69209f455dcSMasahiro Yamada 	value &= ~PLLE_MISC_SETUP_BASE(0xffff);
69309f455dcSMasahiro Yamada 	value &= ~PLLE_MISC_SETUP_EXT(0x3);
69409f455dcSMasahiro Yamada 	writel(value, NV_PA_CLK_RST_BASE + PLLE_MISC);
69509f455dcSMasahiro Yamada 
69609f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_MISC);
69709f455dcSMasahiro Yamada 	if ((value & PLLE_MISC_PLL_READY) == 0) {
69809f455dcSMasahiro Yamada 		err = tegra_plle_train();
69909f455dcSMasahiro Yamada 		if (err < 0) {
700*90aa625cSMasahiro Yamada 			pr_err("failed to train PLLE: %d", err);
70109f455dcSMasahiro Yamada 			return err;
70209f455dcSMasahiro Yamada 		}
70309f455dcSMasahiro Yamada 	}
70409f455dcSMasahiro Yamada 
70509f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_MISC);
70609f455dcSMasahiro Yamada 	value |= PLLE_MISC_SETUP_BASE(0x7);
70709f455dcSMasahiro Yamada 	value |= PLLE_MISC_LOCK_ENABLE;
70809f455dcSMasahiro Yamada 	value |= PLLE_MISC_SETUP_EXT(0);
70909f455dcSMasahiro Yamada 	writel(value, NV_PA_CLK_RST_BASE + PLLE_MISC);
71009f455dcSMasahiro Yamada 
71109f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_SS_CNTL);
71209f455dcSMasahiro Yamada 	value |= PLLE_SS_CNTL_SSCBYP | PLLE_SS_CNTL_INTERP_RESET |
71309f455dcSMasahiro Yamada 		 PLLE_SS_CNTL_BYPASS_SS;
71409f455dcSMasahiro Yamada 	writel(value, NV_PA_CLK_RST_BASE + PLLE_SS_CNTL);
71509f455dcSMasahiro Yamada 
71609f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_BASE);
71709f455dcSMasahiro Yamada 	value |= PLLE_BASE_ENABLE_CML | PLLE_BASE_ENABLE;
71809f455dcSMasahiro Yamada 	writel(value, NV_PA_CLK_RST_BASE + PLLE_BASE);
71909f455dcSMasahiro Yamada 
72009f455dcSMasahiro Yamada 	do {
72109f455dcSMasahiro Yamada 		value = readl(NV_PA_CLK_RST_BASE + PLLE_MISC);
72209f455dcSMasahiro Yamada 		if (value & PLLE_MISC_LOCK)
72309f455dcSMasahiro Yamada 			break;
72409f455dcSMasahiro Yamada 
72509f455dcSMasahiro Yamada 		udelay(2);
72609f455dcSMasahiro Yamada 	} while (--timeout);
72709f455dcSMasahiro Yamada 
72809f455dcSMasahiro Yamada 	if (timeout == 0) {
729*90aa625cSMasahiro Yamada 		pr_err("timeout waiting for PLLE to lock");
73009f455dcSMasahiro Yamada 		return -ETIMEDOUT;
73109f455dcSMasahiro Yamada 	}
73209f455dcSMasahiro Yamada 
73309f455dcSMasahiro Yamada 	udelay(50);
73409f455dcSMasahiro Yamada 
73509f455dcSMasahiro Yamada 	value = readl(NV_PA_CLK_RST_BASE + PLLE_SS_CNTL);
73609f455dcSMasahiro Yamada 	value &= ~PLLE_SS_CNTL_SSCINCINTRV(0x3f);
73709f455dcSMasahiro Yamada 	value |= PLLE_SS_CNTL_SSCINCINTRV(0x18);
73809f455dcSMasahiro Yamada 
73909f455dcSMasahiro Yamada 	value &= ~PLLE_SS_CNTL_SSCINC(0xff);
74009f455dcSMasahiro Yamada 	value |= PLLE_SS_CNTL_SSCINC(0x01);
74109f455dcSMasahiro Yamada 
74209f455dcSMasahiro Yamada 	value &= ~PLLE_SS_CNTL_SSCBYP;
74309f455dcSMasahiro Yamada 	value &= ~PLLE_SS_CNTL_INTERP_RESET;
74409f455dcSMasahiro Yamada 	value &= ~PLLE_SS_CNTL_BYPASS_SS;
74509f455dcSMasahiro Yamada 
74609f455dcSMasahiro Yamada 	value &= ~PLLE_SS_CNTL_SSCMAX(0x1ff);
74709f455dcSMasahiro Yamada 	value |= PLLE_SS_CNTL_SSCMAX(0x24);
74809f455dcSMasahiro Yamada 	writel(value, NV_PA_CLK_RST_BASE + PLLE_SS_CNTL);
74909f455dcSMasahiro Yamada 
75009f455dcSMasahiro Yamada 	return 0;
75109f455dcSMasahiro Yamada }
7526dbcc962SStephen Warren 
7536dbcc962SStephen Warren struct periph_clk_init periph_clk_init_table[] = {
7546dbcc962SStephen Warren 	{ PERIPH_ID_SPI1, CLOCK_ID_PERIPH },
7556dbcc962SStephen Warren 	{ PERIPH_ID_SBC1, CLOCK_ID_PERIPH },
7566dbcc962SStephen Warren 	{ PERIPH_ID_SBC2, CLOCK_ID_PERIPH },
7576dbcc962SStephen Warren 	{ PERIPH_ID_SBC3, CLOCK_ID_PERIPH },
7586dbcc962SStephen Warren 	{ PERIPH_ID_SBC4, CLOCK_ID_PERIPH },
7596dbcc962SStephen Warren 	{ PERIPH_ID_HOST1X, CLOCK_ID_PERIPH },
7606dbcc962SStephen Warren 	{ PERIPH_ID_DISP1, CLOCK_ID_CGENERAL },
7616dbcc962SStephen Warren 	{ PERIPH_ID_NDFLASH, CLOCK_ID_PERIPH },
7626dbcc962SStephen Warren 	{ PERIPH_ID_SDMMC1, CLOCK_ID_PERIPH },
7636dbcc962SStephen Warren 	{ PERIPH_ID_SDMMC2, CLOCK_ID_PERIPH },
7646dbcc962SStephen Warren 	{ PERIPH_ID_SDMMC3, CLOCK_ID_PERIPH },
7656dbcc962SStephen Warren 	{ PERIPH_ID_SDMMC4, CLOCK_ID_PERIPH },
7666dbcc962SStephen Warren 	{ PERIPH_ID_PWM, CLOCK_ID_SFROM32KHZ },
7676dbcc962SStephen Warren 	{ PERIPH_ID_DVC_I2C, CLOCK_ID_PERIPH },
7686dbcc962SStephen Warren 	{ PERIPH_ID_I2C1, CLOCK_ID_PERIPH },
7696dbcc962SStephen Warren 	{ PERIPH_ID_I2C2, CLOCK_ID_PERIPH },
7706dbcc962SStephen Warren 	{ PERIPH_ID_I2C3, CLOCK_ID_PERIPH },
7716dbcc962SStephen Warren 	{ -1, },
7726dbcc962SStephen Warren };
773