1*09f455dcSMasahiro Yamada /* 2*09f455dcSMasahiro Yamada * Copyright (c) 2010-2014, NVIDIA CORPORATION. All rights reserved. 3*09f455dcSMasahiro Yamada * 4*09f455dcSMasahiro Yamada * This program is free software; you can redistribute it and/or modify it 5*09f455dcSMasahiro Yamada * under the terms and conditions of the GNU General Public License, 6*09f455dcSMasahiro Yamada * version 2, as published by the Free Software Foundation. 7*09f455dcSMasahiro Yamada * 8*09f455dcSMasahiro Yamada * This program is distributed in the hope it will be useful, but WITHOUT 9*09f455dcSMasahiro Yamada * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 10*09f455dcSMasahiro Yamada * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 11*09f455dcSMasahiro Yamada * more details. 12*09f455dcSMasahiro Yamada * 13*09f455dcSMasahiro Yamada * You should have received a copy of the GNU General Public License 14*09f455dcSMasahiro Yamada * along with this program. If not, see <http://www.gnu.org/licenses/>. 15*09f455dcSMasahiro Yamada */ 16*09f455dcSMasahiro Yamada 17*09f455dcSMasahiro Yamada /* Tegra114 Clock control functions */ 18*09f455dcSMasahiro Yamada 19*09f455dcSMasahiro Yamada #include <common.h> 20*09f455dcSMasahiro Yamada #include <asm/io.h> 21*09f455dcSMasahiro Yamada #include <asm/arch/clock.h> 22*09f455dcSMasahiro Yamada #include <asm/arch/sysctr.h> 23*09f455dcSMasahiro Yamada #include <asm/arch/tegra.h> 24*09f455dcSMasahiro Yamada #include <asm/arch-tegra/clk_rst.h> 25*09f455dcSMasahiro Yamada #include <asm/arch-tegra/timer.h> 26*09f455dcSMasahiro Yamada #include <div64.h> 27*09f455dcSMasahiro Yamada #include <fdtdec.h> 28*09f455dcSMasahiro Yamada 29*09f455dcSMasahiro Yamada /* 30*09f455dcSMasahiro Yamada * Clock types that we can use as a source. The Tegra114 has muxes for the 31*09f455dcSMasahiro Yamada * peripheral clocks, and in most cases there are four options for the clock 32*09f455dcSMasahiro Yamada * source. This gives us a clock 'type' and exploits what commonality exists 33*09f455dcSMasahiro Yamada * in the device. 34*09f455dcSMasahiro Yamada * 35*09f455dcSMasahiro Yamada * Letters are obvious, except for T which means CLK_M, and S which means the 36*09f455dcSMasahiro Yamada * clock derived from 32KHz. Beware that CLK_M (also called OSC in the 37*09f455dcSMasahiro Yamada * datasheet) and PLL_M are different things. The former is the basic 38*09f455dcSMasahiro Yamada * clock supplied to the SOC from an external oscillator. The latter is the 39*09f455dcSMasahiro Yamada * memory clock PLL. 40*09f455dcSMasahiro Yamada * 41*09f455dcSMasahiro Yamada * See definitions in clock_id in the header file. 42*09f455dcSMasahiro Yamada */ 43*09f455dcSMasahiro Yamada enum clock_type_id { 44*09f455dcSMasahiro Yamada CLOCK_TYPE_AXPT, /* PLL_A, PLL_X, PLL_P, CLK_M */ 45*09f455dcSMasahiro Yamada CLOCK_TYPE_MCPA, /* and so on */ 46*09f455dcSMasahiro Yamada CLOCK_TYPE_MCPT, 47*09f455dcSMasahiro Yamada CLOCK_TYPE_PCM, 48*09f455dcSMasahiro Yamada CLOCK_TYPE_PCMT, 49*09f455dcSMasahiro Yamada CLOCK_TYPE_PCMT16, 50*09f455dcSMasahiro Yamada CLOCK_TYPE_PDCT, 51*09f455dcSMasahiro Yamada CLOCK_TYPE_ACPT, 52*09f455dcSMasahiro Yamada CLOCK_TYPE_ASPTE, 53*09f455dcSMasahiro Yamada CLOCK_TYPE_PMDACD2T, 54*09f455dcSMasahiro Yamada CLOCK_TYPE_PCST, 55*09f455dcSMasahiro Yamada 56*09f455dcSMasahiro Yamada CLOCK_TYPE_COUNT, 57*09f455dcSMasahiro Yamada CLOCK_TYPE_NONE = -1, /* invalid clock type */ 58*09f455dcSMasahiro Yamada }; 59*09f455dcSMasahiro Yamada 60*09f455dcSMasahiro Yamada enum { 61*09f455dcSMasahiro Yamada CLOCK_MAX_MUX = 8 /* number of source options for each clock */ 62*09f455dcSMasahiro Yamada }; 63*09f455dcSMasahiro Yamada 64*09f455dcSMasahiro Yamada /* 65*09f455dcSMasahiro Yamada * Clock source mux for each clock type. This just converts our enum into 66*09f455dcSMasahiro Yamada * a list of mux sources for use by the code. 67*09f455dcSMasahiro Yamada * 68*09f455dcSMasahiro Yamada * Note: 69*09f455dcSMasahiro Yamada * The extra column in each clock source array is used to store the mask 70*09f455dcSMasahiro Yamada * bits in its register for the source. 71*09f455dcSMasahiro Yamada */ 72*09f455dcSMasahiro Yamada #define CLK(x) CLOCK_ID_ ## x 73*09f455dcSMasahiro Yamada static enum clock_id clock_source[CLOCK_TYPE_COUNT][CLOCK_MAX_MUX+1] = { 74*09f455dcSMasahiro Yamada { CLK(AUDIO), CLK(XCPU), CLK(PERIPH), CLK(OSC), 75*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 76*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 77*09f455dcSMasahiro Yamada { CLK(MEMORY), CLK(CGENERAL), CLK(PERIPH), CLK(AUDIO), 78*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 79*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 80*09f455dcSMasahiro Yamada { CLK(MEMORY), CLK(CGENERAL), CLK(PERIPH), CLK(OSC), 81*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 82*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 83*09f455dcSMasahiro Yamada { CLK(PERIPH), CLK(CGENERAL), CLK(MEMORY), CLK(NONE), 84*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 85*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 86*09f455dcSMasahiro Yamada { CLK(PERIPH), CLK(CGENERAL), CLK(MEMORY), CLK(OSC), 87*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 88*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 89*09f455dcSMasahiro Yamada { CLK(PERIPH), CLK(CGENERAL), CLK(MEMORY), CLK(OSC), 90*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 91*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 92*09f455dcSMasahiro Yamada { CLK(PERIPH), CLK(DISPLAY), CLK(CGENERAL), CLK(OSC), 93*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 94*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 95*09f455dcSMasahiro Yamada { CLK(AUDIO), CLK(CGENERAL), CLK(PERIPH), CLK(OSC), 96*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 97*09f455dcSMasahiro Yamada MASK_BITS_31_30}, 98*09f455dcSMasahiro Yamada { CLK(AUDIO), CLK(SFROM32KHZ), CLK(PERIPH), CLK(OSC), 99*09f455dcSMasahiro Yamada CLK(EPCI), CLK(NONE), CLK(NONE), CLK(NONE), 100*09f455dcSMasahiro Yamada MASK_BITS_31_29}, 101*09f455dcSMasahiro Yamada { CLK(PERIPH), CLK(MEMORY), CLK(DISPLAY), CLK(AUDIO), 102*09f455dcSMasahiro Yamada CLK(CGENERAL), CLK(DISPLAY2), CLK(OSC), CLK(NONE), 103*09f455dcSMasahiro Yamada MASK_BITS_31_29}, 104*09f455dcSMasahiro Yamada { CLK(PERIPH), CLK(CGENERAL), CLK(SFROM32KHZ), CLK(OSC), 105*09f455dcSMasahiro Yamada CLK(NONE), CLK(NONE), CLK(NONE), CLK(NONE), 106*09f455dcSMasahiro Yamada MASK_BITS_31_28} 107*09f455dcSMasahiro Yamada }; 108*09f455dcSMasahiro Yamada 109*09f455dcSMasahiro Yamada /* 110*09f455dcSMasahiro Yamada * Clock type for each peripheral clock source. We put the name in each 111*09f455dcSMasahiro Yamada * record just so it is easy to match things up 112*09f455dcSMasahiro Yamada */ 113*09f455dcSMasahiro Yamada #define TYPE(name, type) type 114*09f455dcSMasahiro Yamada static enum clock_type_id clock_periph_type[PERIPHC_COUNT] = { 115*09f455dcSMasahiro Yamada /* 0x00 */ 116*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2S1, CLOCK_TYPE_AXPT), 117*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2S2, CLOCK_TYPE_AXPT), 118*09f455dcSMasahiro Yamada TYPE(PERIPHC_SPDIF_OUT, CLOCK_TYPE_AXPT), 119*09f455dcSMasahiro Yamada TYPE(PERIPHC_SPDIF_IN, CLOCK_TYPE_PCM), 120*09f455dcSMasahiro Yamada TYPE(PERIPHC_PWM, CLOCK_TYPE_PCST), /* only PWM uses b29:28 */ 121*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 122*09f455dcSMasahiro Yamada TYPE(PERIPHC_SBC2, CLOCK_TYPE_PCMT), 123*09f455dcSMasahiro Yamada TYPE(PERIPHC_SBC3, CLOCK_TYPE_PCMT), 124*09f455dcSMasahiro Yamada 125*09f455dcSMasahiro Yamada /* 0x08 */ 126*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 127*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2C1, CLOCK_TYPE_PCMT16), 128*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2C5, CLOCK_TYPE_PCMT16), 129*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 130*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 131*09f455dcSMasahiro Yamada TYPE(PERIPHC_SBC1, CLOCK_TYPE_PCMT), 132*09f455dcSMasahiro Yamada TYPE(PERIPHC_DISP1, CLOCK_TYPE_PMDACD2T), 133*09f455dcSMasahiro Yamada TYPE(PERIPHC_DISP2, CLOCK_TYPE_PMDACD2T), 134*09f455dcSMasahiro Yamada 135*09f455dcSMasahiro Yamada /* 0x10 */ 136*09f455dcSMasahiro Yamada TYPE(PERIPHC_CVE, CLOCK_TYPE_PDCT), 137*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 138*09f455dcSMasahiro Yamada TYPE(PERIPHC_VI, CLOCK_TYPE_MCPA), 139*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 140*09f455dcSMasahiro Yamada TYPE(PERIPHC_SDMMC1, CLOCK_TYPE_PCMT), 141*09f455dcSMasahiro Yamada TYPE(PERIPHC_SDMMC2, CLOCK_TYPE_PCMT), 142*09f455dcSMasahiro Yamada TYPE(PERIPHC_G3D, CLOCK_TYPE_MCPA), 143*09f455dcSMasahiro Yamada TYPE(PERIPHC_G2D, CLOCK_TYPE_MCPA), 144*09f455dcSMasahiro Yamada 145*09f455dcSMasahiro Yamada /* 0x18 */ 146*09f455dcSMasahiro Yamada TYPE(PERIPHC_NDFLASH, CLOCK_TYPE_PCMT), 147*09f455dcSMasahiro Yamada TYPE(PERIPHC_SDMMC4, CLOCK_TYPE_PCMT), 148*09f455dcSMasahiro Yamada TYPE(PERIPHC_VFIR, CLOCK_TYPE_PCMT), 149*09f455dcSMasahiro Yamada TYPE(PERIPHC_EPP, CLOCK_TYPE_MCPA), 150*09f455dcSMasahiro Yamada TYPE(PERIPHC_MPE, CLOCK_TYPE_MCPA), 151*09f455dcSMasahiro Yamada TYPE(PERIPHC_MIPI, CLOCK_TYPE_PCMT), /* MIPI base-band HSI */ 152*09f455dcSMasahiro Yamada TYPE(PERIPHC_UART1, CLOCK_TYPE_PCMT), 153*09f455dcSMasahiro Yamada TYPE(PERIPHC_UART2, CLOCK_TYPE_PCMT), 154*09f455dcSMasahiro Yamada 155*09f455dcSMasahiro Yamada /* 0x20 */ 156*09f455dcSMasahiro Yamada TYPE(PERIPHC_HOST1X, CLOCK_TYPE_MCPA), 157*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 158*09f455dcSMasahiro Yamada TYPE(PERIPHC_TVO, CLOCK_TYPE_PDCT), 159*09f455dcSMasahiro Yamada TYPE(PERIPHC_HDMI, CLOCK_TYPE_PMDACD2T), 160*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 161*09f455dcSMasahiro Yamada TYPE(PERIPHC_TVDAC, CLOCK_TYPE_PDCT), 162*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2C2, CLOCK_TYPE_PCMT16), 163*09f455dcSMasahiro Yamada TYPE(PERIPHC_EMC, CLOCK_TYPE_MCPT), 164*09f455dcSMasahiro Yamada 165*09f455dcSMasahiro Yamada /* 0x28 */ 166*09f455dcSMasahiro Yamada TYPE(PERIPHC_UART3, CLOCK_TYPE_PCMT), 167*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 168*09f455dcSMasahiro Yamada TYPE(PERIPHC_VI, CLOCK_TYPE_MCPA), 169*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 170*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 171*09f455dcSMasahiro Yamada TYPE(PERIPHC_SBC4, CLOCK_TYPE_PCMT), 172*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2C3, CLOCK_TYPE_PCMT16), 173*09f455dcSMasahiro Yamada TYPE(PERIPHC_SDMMC3, CLOCK_TYPE_PCMT), 174*09f455dcSMasahiro Yamada 175*09f455dcSMasahiro Yamada /* 0x30 */ 176*09f455dcSMasahiro Yamada TYPE(PERIPHC_UART4, CLOCK_TYPE_PCMT), 177*09f455dcSMasahiro Yamada TYPE(PERIPHC_UART5, CLOCK_TYPE_PCMT), 178*09f455dcSMasahiro Yamada TYPE(PERIPHC_VDE, CLOCK_TYPE_PCMT), 179*09f455dcSMasahiro Yamada TYPE(PERIPHC_OWR, CLOCK_TYPE_PCMT), 180*09f455dcSMasahiro Yamada TYPE(PERIPHC_NOR, CLOCK_TYPE_PCMT), 181*09f455dcSMasahiro Yamada TYPE(PERIPHC_CSITE, CLOCK_TYPE_PCMT), 182*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2S0, CLOCK_TYPE_AXPT), 183*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 184*09f455dcSMasahiro Yamada 185*09f455dcSMasahiro Yamada /* 0x38h */ /* Jumps to reg offset 0x3B0h */ 186*09f455dcSMasahiro Yamada TYPE(PERIPHC_G3D2, CLOCK_TYPE_MCPA), 187*09f455dcSMasahiro Yamada TYPE(PERIPHC_MSELECT, CLOCK_TYPE_PCMT), 188*09f455dcSMasahiro Yamada TYPE(PERIPHC_TSENSOR, CLOCK_TYPE_PCST), /* s/b PCTS */ 189*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2S3, CLOCK_TYPE_AXPT), 190*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2S4, CLOCK_TYPE_AXPT), 191*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2C4, CLOCK_TYPE_PCMT16), 192*09f455dcSMasahiro Yamada TYPE(PERIPHC_SBC5, CLOCK_TYPE_PCMT), 193*09f455dcSMasahiro Yamada TYPE(PERIPHC_SBC6, CLOCK_TYPE_PCMT), 194*09f455dcSMasahiro Yamada 195*09f455dcSMasahiro Yamada /* 0x40 */ 196*09f455dcSMasahiro Yamada TYPE(PERIPHC_AUDIO, CLOCK_TYPE_ACPT), 197*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 198*09f455dcSMasahiro Yamada TYPE(PERIPHC_DAM0, CLOCK_TYPE_ACPT), 199*09f455dcSMasahiro Yamada TYPE(PERIPHC_DAM1, CLOCK_TYPE_ACPT), 200*09f455dcSMasahiro Yamada TYPE(PERIPHC_DAM2, CLOCK_TYPE_ACPT), 201*09f455dcSMasahiro Yamada TYPE(PERIPHC_HDA2CODEC2X, CLOCK_TYPE_PCMT), 202*09f455dcSMasahiro Yamada TYPE(PERIPHC_ACTMON, CLOCK_TYPE_PCST), /* MASK 31:30 */ 203*09f455dcSMasahiro Yamada TYPE(PERIPHC_EXTPERIPH1, CLOCK_TYPE_ASPTE), 204*09f455dcSMasahiro Yamada 205*09f455dcSMasahiro Yamada /* 0x48 */ 206*09f455dcSMasahiro Yamada TYPE(PERIPHC_EXTPERIPH2, CLOCK_TYPE_ASPTE), 207*09f455dcSMasahiro Yamada TYPE(PERIPHC_EXTPERIPH3, CLOCK_TYPE_ASPTE), 208*09f455dcSMasahiro Yamada TYPE(PERIPHC_NANDSPEED, CLOCK_TYPE_PCMT), 209*09f455dcSMasahiro Yamada TYPE(PERIPHC_I2CSLOW, CLOCK_TYPE_PCST), /* MASK 31:30 */ 210*09f455dcSMasahiro Yamada TYPE(PERIPHC_SYS, CLOCK_TYPE_NONE), 211*09f455dcSMasahiro Yamada TYPE(PERIPHC_SPEEDO, CLOCK_TYPE_PCMT), 212*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 213*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 214*09f455dcSMasahiro Yamada 215*09f455dcSMasahiro Yamada /* 0x50 */ 216*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 217*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 218*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 219*09f455dcSMasahiro Yamada TYPE(PERIPHC_NONE, CLOCK_TYPE_NONE), 220*09f455dcSMasahiro Yamada TYPE(PERIPHC_SATAOOB, CLOCK_TYPE_PCMT), /* offset 0x420h */ 221*09f455dcSMasahiro Yamada TYPE(PERIPHC_SATA, CLOCK_TYPE_PCMT), 222*09f455dcSMasahiro Yamada TYPE(PERIPHC_HDA, CLOCK_TYPE_PCMT), 223*09f455dcSMasahiro Yamada }; 224*09f455dcSMasahiro Yamada 225*09f455dcSMasahiro Yamada /* 226*09f455dcSMasahiro Yamada * This array translates a periph_id to a periphc_internal_id 227*09f455dcSMasahiro Yamada * 228*09f455dcSMasahiro Yamada * Not present/matched up: 229*09f455dcSMasahiro Yamada * uint vi_sensor; _VI_SENSOR_0, 0x1A8 230*09f455dcSMasahiro Yamada * SPDIF - which is both 0x08 and 0x0c 231*09f455dcSMasahiro Yamada * 232*09f455dcSMasahiro Yamada */ 233*09f455dcSMasahiro Yamada #define NONE(name) (-1) 234*09f455dcSMasahiro Yamada #define OFFSET(name, value) PERIPHC_ ## name 235*09f455dcSMasahiro Yamada static s8 periph_id_to_internal_id[PERIPH_ID_COUNT] = { 236*09f455dcSMasahiro Yamada /* Low word: 31:0 */ 237*09f455dcSMasahiro Yamada NONE(CPU), 238*09f455dcSMasahiro Yamada NONE(COP), 239*09f455dcSMasahiro Yamada NONE(TRIGSYS), 240*09f455dcSMasahiro Yamada NONE(RESERVED3), 241*09f455dcSMasahiro Yamada NONE(RTC), 242*09f455dcSMasahiro Yamada NONE(TMR), 243*09f455dcSMasahiro Yamada PERIPHC_UART1, 244*09f455dcSMasahiro Yamada PERIPHC_UART2, /* and vfir 0x68 */ 245*09f455dcSMasahiro Yamada 246*09f455dcSMasahiro Yamada /* 8 */ 247*09f455dcSMasahiro Yamada NONE(GPIO), 248*09f455dcSMasahiro Yamada PERIPHC_SDMMC2, 249*09f455dcSMasahiro Yamada NONE(SPDIF), /* 0x08 and 0x0c, unclear which to use */ 250*09f455dcSMasahiro Yamada PERIPHC_I2S1, 251*09f455dcSMasahiro Yamada PERIPHC_I2C1, 252*09f455dcSMasahiro Yamada PERIPHC_NDFLASH, 253*09f455dcSMasahiro Yamada PERIPHC_SDMMC1, 254*09f455dcSMasahiro Yamada PERIPHC_SDMMC4, 255*09f455dcSMasahiro Yamada 256*09f455dcSMasahiro Yamada /* 16 */ 257*09f455dcSMasahiro Yamada NONE(RESERVED16), 258*09f455dcSMasahiro Yamada PERIPHC_PWM, 259*09f455dcSMasahiro Yamada PERIPHC_I2S2, 260*09f455dcSMasahiro Yamada PERIPHC_EPP, 261*09f455dcSMasahiro Yamada PERIPHC_VI, 262*09f455dcSMasahiro Yamada PERIPHC_G2D, 263*09f455dcSMasahiro Yamada NONE(USBD), 264*09f455dcSMasahiro Yamada NONE(ISP), 265*09f455dcSMasahiro Yamada 266*09f455dcSMasahiro Yamada /* 24 */ 267*09f455dcSMasahiro Yamada PERIPHC_G3D, 268*09f455dcSMasahiro Yamada NONE(RESERVED25), 269*09f455dcSMasahiro Yamada PERIPHC_DISP2, 270*09f455dcSMasahiro Yamada PERIPHC_DISP1, 271*09f455dcSMasahiro Yamada PERIPHC_HOST1X, 272*09f455dcSMasahiro Yamada NONE(VCP), 273*09f455dcSMasahiro Yamada PERIPHC_I2S0, 274*09f455dcSMasahiro Yamada NONE(CACHE2), 275*09f455dcSMasahiro Yamada 276*09f455dcSMasahiro Yamada /* Middle word: 63:32 */ 277*09f455dcSMasahiro Yamada NONE(MEM), 278*09f455dcSMasahiro Yamada NONE(AHBDMA), 279*09f455dcSMasahiro Yamada NONE(APBDMA), 280*09f455dcSMasahiro Yamada NONE(RESERVED35), 281*09f455dcSMasahiro Yamada NONE(RESERVED36), 282*09f455dcSMasahiro Yamada NONE(STAT_MON), 283*09f455dcSMasahiro Yamada NONE(RESERVED38), 284*09f455dcSMasahiro Yamada NONE(RESERVED39), 285*09f455dcSMasahiro Yamada 286*09f455dcSMasahiro Yamada /* 40 */ 287*09f455dcSMasahiro Yamada NONE(KFUSE), 288*09f455dcSMasahiro Yamada NONE(SBC1), /* SBC1, 0x34, is this SPI1? */ 289*09f455dcSMasahiro Yamada PERIPHC_NOR, 290*09f455dcSMasahiro Yamada NONE(RESERVED43), 291*09f455dcSMasahiro Yamada PERIPHC_SBC2, 292*09f455dcSMasahiro Yamada NONE(RESERVED45), 293*09f455dcSMasahiro Yamada PERIPHC_SBC3, 294*09f455dcSMasahiro Yamada PERIPHC_I2C5, 295*09f455dcSMasahiro Yamada 296*09f455dcSMasahiro Yamada /* 48 */ 297*09f455dcSMasahiro Yamada NONE(DSI), 298*09f455dcSMasahiro Yamada PERIPHC_TVO, /* also CVE 0x40 */ 299*09f455dcSMasahiro Yamada PERIPHC_MIPI, 300*09f455dcSMasahiro Yamada PERIPHC_HDMI, 301*09f455dcSMasahiro Yamada NONE(CSI), 302*09f455dcSMasahiro Yamada PERIPHC_TVDAC, 303*09f455dcSMasahiro Yamada PERIPHC_I2C2, 304*09f455dcSMasahiro Yamada PERIPHC_UART3, 305*09f455dcSMasahiro Yamada 306*09f455dcSMasahiro Yamada /* 56 */ 307*09f455dcSMasahiro Yamada NONE(RESERVED56), 308*09f455dcSMasahiro Yamada PERIPHC_EMC, 309*09f455dcSMasahiro Yamada NONE(USB2), 310*09f455dcSMasahiro Yamada NONE(USB3), 311*09f455dcSMasahiro Yamada PERIPHC_MPE, 312*09f455dcSMasahiro Yamada PERIPHC_VDE, 313*09f455dcSMasahiro Yamada NONE(BSEA), 314*09f455dcSMasahiro Yamada NONE(BSEV), 315*09f455dcSMasahiro Yamada 316*09f455dcSMasahiro Yamada /* Upper word 95:64 */ 317*09f455dcSMasahiro Yamada PERIPHC_SPEEDO, 318*09f455dcSMasahiro Yamada PERIPHC_UART4, 319*09f455dcSMasahiro Yamada PERIPHC_UART5, 320*09f455dcSMasahiro Yamada PERIPHC_I2C3, 321*09f455dcSMasahiro Yamada PERIPHC_SBC4, 322*09f455dcSMasahiro Yamada PERIPHC_SDMMC3, 323*09f455dcSMasahiro Yamada NONE(PCIE), 324*09f455dcSMasahiro Yamada PERIPHC_OWR, 325*09f455dcSMasahiro Yamada 326*09f455dcSMasahiro Yamada /* 72 */ 327*09f455dcSMasahiro Yamada NONE(AFI), 328*09f455dcSMasahiro Yamada PERIPHC_CSITE, 329*09f455dcSMasahiro Yamada NONE(PCIEXCLK), 330*09f455dcSMasahiro Yamada NONE(AVPUCQ), 331*09f455dcSMasahiro Yamada NONE(RESERVED76), 332*09f455dcSMasahiro Yamada NONE(RESERVED77), 333*09f455dcSMasahiro Yamada NONE(RESERVED78), 334*09f455dcSMasahiro Yamada NONE(DTV), 335*09f455dcSMasahiro Yamada 336*09f455dcSMasahiro Yamada /* 80 */ 337*09f455dcSMasahiro Yamada PERIPHC_NANDSPEED, 338*09f455dcSMasahiro Yamada PERIPHC_I2CSLOW, 339*09f455dcSMasahiro Yamada NONE(DSIB), 340*09f455dcSMasahiro Yamada NONE(RESERVED83), 341*09f455dcSMasahiro Yamada NONE(IRAMA), 342*09f455dcSMasahiro Yamada NONE(IRAMB), 343*09f455dcSMasahiro Yamada NONE(IRAMC), 344*09f455dcSMasahiro Yamada NONE(IRAMD), 345*09f455dcSMasahiro Yamada 346*09f455dcSMasahiro Yamada /* 88 */ 347*09f455dcSMasahiro Yamada NONE(CRAM2), 348*09f455dcSMasahiro Yamada NONE(RESERVED89), 349*09f455dcSMasahiro Yamada NONE(MDOUBLER), 350*09f455dcSMasahiro Yamada NONE(RESERVED91), 351*09f455dcSMasahiro Yamada NONE(SUSOUT), 352*09f455dcSMasahiro Yamada NONE(RESERVED93), 353*09f455dcSMasahiro Yamada NONE(RESERVED94), 354*09f455dcSMasahiro Yamada NONE(RESERVED95), 355*09f455dcSMasahiro Yamada 356*09f455dcSMasahiro Yamada /* V word: 31:0 */ 357*09f455dcSMasahiro Yamada NONE(CPUG), 358*09f455dcSMasahiro Yamada NONE(CPULP), 359*09f455dcSMasahiro Yamada PERIPHC_G3D2, 360*09f455dcSMasahiro Yamada PERIPHC_MSELECT, 361*09f455dcSMasahiro Yamada PERIPHC_TSENSOR, 362*09f455dcSMasahiro Yamada PERIPHC_I2S3, 363*09f455dcSMasahiro Yamada PERIPHC_I2S4, 364*09f455dcSMasahiro Yamada PERIPHC_I2C4, 365*09f455dcSMasahiro Yamada 366*09f455dcSMasahiro Yamada /* 08 */ 367*09f455dcSMasahiro Yamada PERIPHC_SBC5, 368*09f455dcSMasahiro Yamada PERIPHC_SBC6, 369*09f455dcSMasahiro Yamada PERIPHC_AUDIO, 370*09f455dcSMasahiro Yamada NONE(APBIF), 371*09f455dcSMasahiro Yamada PERIPHC_DAM0, 372*09f455dcSMasahiro Yamada PERIPHC_DAM1, 373*09f455dcSMasahiro Yamada PERIPHC_DAM2, 374*09f455dcSMasahiro Yamada PERIPHC_HDA2CODEC2X, 375*09f455dcSMasahiro Yamada 376*09f455dcSMasahiro Yamada /* 16 */ 377*09f455dcSMasahiro Yamada NONE(ATOMICS), 378*09f455dcSMasahiro Yamada NONE(RESERVED17), 379*09f455dcSMasahiro Yamada NONE(RESERVED18), 380*09f455dcSMasahiro Yamada NONE(RESERVED19), 381*09f455dcSMasahiro Yamada NONE(RESERVED20), 382*09f455dcSMasahiro Yamada NONE(RESERVED21), 383*09f455dcSMasahiro Yamada NONE(RESERVED22), 384*09f455dcSMasahiro Yamada PERIPHC_ACTMON, 385*09f455dcSMasahiro Yamada 386*09f455dcSMasahiro Yamada /* 24 */ 387*09f455dcSMasahiro Yamada NONE(RESERVED24), 388*09f455dcSMasahiro Yamada NONE(RESERVED25), 389*09f455dcSMasahiro Yamada NONE(RESERVED26), 390*09f455dcSMasahiro Yamada NONE(RESERVED27), 391*09f455dcSMasahiro Yamada PERIPHC_SATA, 392*09f455dcSMasahiro Yamada PERIPHC_HDA, 393*09f455dcSMasahiro Yamada NONE(RESERVED30), 394*09f455dcSMasahiro Yamada NONE(RESERVED31), 395*09f455dcSMasahiro Yamada 396*09f455dcSMasahiro Yamada /* W word: 31:0 */ 397*09f455dcSMasahiro Yamada NONE(HDA2HDMICODEC), 398*09f455dcSMasahiro Yamada NONE(RESERVED1_SATACOLD), 399*09f455dcSMasahiro Yamada NONE(RESERVED2_PCIERX0), 400*09f455dcSMasahiro Yamada NONE(RESERVED3_PCIERX1), 401*09f455dcSMasahiro Yamada NONE(RESERVED4_PCIERX2), 402*09f455dcSMasahiro Yamada NONE(RESERVED5_PCIERX3), 403*09f455dcSMasahiro Yamada NONE(RESERVED6_PCIERX4), 404*09f455dcSMasahiro Yamada NONE(RESERVED7_PCIERX5), 405*09f455dcSMasahiro Yamada 406*09f455dcSMasahiro Yamada /* 40 */ 407*09f455dcSMasahiro Yamada NONE(CEC), 408*09f455dcSMasahiro Yamada NONE(PCIE2_IOBIST), 409*09f455dcSMasahiro Yamada NONE(EMC_IOBIST), 410*09f455dcSMasahiro Yamada NONE(HDMI_IOBIST), 411*09f455dcSMasahiro Yamada NONE(SATA_IOBIST), 412*09f455dcSMasahiro Yamada NONE(MIPI_IOBIST), 413*09f455dcSMasahiro Yamada NONE(EMC1_IOBIST), 414*09f455dcSMasahiro Yamada NONE(XUSB), 415*09f455dcSMasahiro Yamada 416*09f455dcSMasahiro Yamada /* 48 */ 417*09f455dcSMasahiro Yamada NONE(CILAB), 418*09f455dcSMasahiro Yamada NONE(CILCD), 419*09f455dcSMasahiro Yamada NONE(CILE), 420*09f455dcSMasahiro Yamada NONE(DSIA_LP), 421*09f455dcSMasahiro Yamada NONE(DSIB_LP), 422*09f455dcSMasahiro Yamada NONE(RESERVED21_ENTROPY), 423*09f455dcSMasahiro Yamada NONE(RESERVED22_W), 424*09f455dcSMasahiro Yamada NONE(RESERVED23_W), 425*09f455dcSMasahiro Yamada 426*09f455dcSMasahiro Yamada /* 56 */ 427*09f455dcSMasahiro Yamada NONE(RESERVED24_W), 428*09f455dcSMasahiro Yamada NONE(AMX0), 429*09f455dcSMasahiro Yamada NONE(ADX0), 430*09f455dcSMasahiro Yamada NONE(DVFS), 431*09f455dcSMasahiro Yamada NONE(XUSB_SS), 432*09f455dcSMasahiro Yamada NONE(EMC_DLL), 433*09f455dcSMasahiro Yamada NONE(MC1), 434*09f455dcSMasahiro Yamada NONE(EMC1), 435*09f455dcSMasahiro Yamada }; 436*09f455dcSMasahiro Yamada 437*09f455dcSMasahiro Yamada /* 438*09f455dcSMasahiro Yamada * Get the oscillator frequency, from the corresponding hardware configuration 439*09f455dcSMasahiro Yamada * field. Note that T30/T114 support 3 new higher freqs, but we map back 440*09f455dcSMasahiro Yamada * to the old T20 freqs. Support for the higher oscillators is TBD. 441*09f455dcSMasahiro Yamada */ 442*09f455dcSMasahiro Yamada enum clock_osc_freq clock_get_osc_freq(void) 443*09f455dcSMasahiro Yamada { 444*09f455dcSMasahiro Yamada struct clk_rst_ctlr *clkrst = 445*09f455dcSMasahiro Yamada (struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE; 446*09f455dcSMasahiro Yamada u32 reg; 447*09f455dcSMasahiro Yamada 448*09f455dcSMasahiro Yamada reg = readl(&clkrst->crc_osc_ctrl); 449*09f455dcSMasahiro Yamada reg = (reg & OSC_FREQ_MASK) >> OSC_FREQ_SHIFT; 450*09f455dcSMasahiro Yamada 451*09f455dcSMasahiro Yamada if (reg & 1) /* one of the newer freqs */ 452*09f455dcSMasahiro Yamada printf("Warning: OSC_FREQ is unsupported! (%d)\n", reg); 453*09f455dcSMasahiro Yamada 454*09f455dcSMasahiro Yamada return reg >> 2; /* Map to most common (T20) freqs */ 455*09f455dcSMasahiro Yamada } 456*09f455dcSMasahiro Yamada 457*09f455dcSMasahiro Yamada /* Returns a pointer to the clock source register for a peripheral */ 458*09f455dcSMasahiro Yamada u32 *get_periph_source_reg(enum periph_id periph_id) 459*09f455dcSMasahiro Yamada { 460*09f455dcSMasahiro Yamada struct clk_rst_ctlr *clkrst = 461*09f455dcSMasahiro Yamada (struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE; 462*09f455dcSMasahiro Yamada enum periphc_internal_id internal_id; 463*09f455dcSMasahiro Yamada 464*09f455dcSMasahiro Yamada /* Coresight is a special case */ 465*09f455dcSMasahiro Yamada if (periph_id == PERIPH_ID_CSI) 466*09f455dcSMasahiro Yamada return &clkrst->crc_clk_src[PERIPH_ID_CSI+1]; 467*09f455dcSMasahiro Yamada 468*09f455dcSMasahiro Yamada assert(periph_id >= PERIPH_ID_FIRST && periph_id < PERIPH_ID_COUNT); 469*09f455dcSMasahiro Yamada internal_id = periph_id_to_internal_id[periph_id]; 470*09f455dcSMasahiro Yamada assert(internal_id != -1); 471*09f455dcSMasahiro Yamada if (internal_id >= PERIPHC_VW_FIRST) { 472*09f455dcSMasahiro Yamada internal_id -= PERIPHC_VW_FIRST; 473*09f455dcSMasahiro Yamada return &clkrst->crc_clk_src_vw[internal_id]; 474*09f455dcSMasahiro Yamada } else 475*09f455dcSMasahiro Yamada return &clkrst->crc_clk_src[internal_id]; 476*09f455dcSMasahiro Yamada } 477*09f455dcSMasahiro Yamada 478*09f455dcSMasahiro Yamada /** 479*09f455dcSMasahiro Yamada * Given a peripheral ID and the required source clock, this returns which 480*09f455dcSMasahiro Yamada * value should be programmed into the source mux for that peripheral. 481*09f455dcSMasahiro Yamada * 482*09f455dcSMasahiro Yamada * There is special code here to handle the one source type with 5 sources. 483*09f455dcSMasahiro Yamada * 484*09f455dcSMasahiro Yamada * @param periph_id peripheral to start 485*09f455dcSMasahiro Yamada * @param source PLL id of required parent clock 486*09f455dcSMasahiro Yamada * @param mux_bits Set to number of bits in mux register: 2 or 4 487*09f455dcSMasahiro Yamada * @param divider_bits Set to number of divider bits (8 or 16) 488*09f455dcSMasahiro Yamada * @return mux value (0-4, or -1 if not found) 489*09f455dcSMasahiro Yamada */ 490*09f455dcSMasahiro Yamada int get_periph_clock_source(enum periph_id periph_id, 491*09f455dcSMasahiro Yamada enum clock_id parent, int *mux_bits, int *divider_bits) 492*09f455dcSMasahiro Yamada { 493*09f455dcSMasahiro Yamada enum clock_type_id type; 494*09f455dcSMasahiro Yamada enum periphc_internal_id internal_id; 495*09f455dcSMasahiro Yamada int mux; 496*09f455dcSMasahiro Yamada 497*09f455dcSMasahiro Yamada assert(clock_periph_id_isvalid(periph_id)); 498*09f455dcSMasahiro Yamada 499*09f455dcSMasahiro Yamada internal_id = periph_id_to_internal_id[periph_id]; 500*09f455dcSMasahiro Yamada assert(periphc_internal_id_isvalid(internal_id)); 501*09f455dcSMasahiro Yamada 502*09f455dcSMasahiro Yamada type = clock_periph_type[internal_id]; 503*09f455dcSMasahiro Yamada assert(clock_type_id_isvalid(type)); 504*09f455dcSMasahiro Yamada 505*09f455dcSMasahiro Yamada *mux_bits = clock_source[type][CLOCK_MAX_MUX]; 506*09f455dcSMasahiro Yamada 507*09f455dcSMasahiro Yamada if (type == CLOCK_TYPE_PCMT16) 508*09f455dcSMasahiro Yamada *divider_bits = 16; 509*09f455dcSMasahiro Yamada else 510*09f455dcSMasahiro Yamada *divider_bits = 8; 511*09f455dcSMasahiro Yamada 512*09f455dcSMasahiro Yamada for (mux = 0; mux < CLOCK_MAX_MUX; mux++) 513*09f455dcSMasahiro Yamada if (clock_source[type][mux] == parent) 514*09f455dcSMasahiro Yamada return mux; 515*09f455dcSMasahiro Yamada 516*09f455dcSMasahiro Yamada /* if we get here, either us or the caller has made a mistake */ 517*09f455dcSMasahiro Yamada printf("Caller requested bad clock: periph=%d, parent=%d\n", periph_id, 518*09f455dcSMasahiro Yamada parent); 519*09f455dcSMasahiro Yamada return -1; 520*09f455dcSMasahiro Yamada } 521*09f455dcSMasahiro Yamada 522*09f455dcSMasahiro Yamada void clock_set_enable(enum periph_id periph_id, int enable) 523*09f455dcSMasahiro Yamada { 524*09f455dcSMasahiro Yamada struct clk_rst_ctlr *clkrst = 525*09f455dcSMasahiro Yamada (struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE; 526*09f455dcSMasahiro Yamada u32 *clk; 527*09f455dcSMasahiro Yamada u32 reg; 528*09f455dcSMasahiro Yamada 529*09f455dcSMasahiro Yamada /* Enable/disable the clock to this peripheral */ 530*09f455dcSMasahiro Yamada assert(clock_periph_id_isvalid(periph_id)); 531*09f455dcSMasahiro Yamada if ((int)periph_id < (int)PERIPH_ID_VW_FIRST) 532*09f455dcSMasahiro Yamada clk = &clkrst->crc_clk_out_enb[PERIPH_REG(periph_id)]; 533*09f455dcSMasahiro Yamada else 534*09f455dcSMasahiro Yamada clk = &clkrst->crc_clk_out_enb_vw[PERIPH_REG(periph_id)]; 535*09f455dcSMasahiro Yamada reg = readl(clk); 536*09f455dcSMasahiro Yamada if (enable) 537*09f455dcSMasahiro Yamada reg |= PERIPH_MASK(periph_id); 538*09f455dcSMasahiro Yamada else 539*09f455dcSMasahiro Yamada reg &= ~PERIPH_MASK(periph_id); 540*09f455dcSMasahiro Yamada writel(reg, clk); 541*09f455dcSMasahiro Yamada } 542*09f455dcSMasahiro Yamada 543*09f455dcSMasahiro Yamada void reset_set_enable(enum periph_id periph_id, int enable) 544*09f455dcSMasahiro Yamada { 545*09f455dcSMasahiro Yamada struct clk_rst_ctlr *clkrst = 546*09f455dcSMasahiro Yamada (struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE; 547*09f455dcSMasahiro Yamada u32 *reset; 548*09f455dcSMasahiro Yamada u32 reg; 549*09f455dcSMasahiro Yamada 550*09f455dcSMasahiro Yamada /* Enable/disable reset to the peripheral */ 551*09f455dcSMasahiro Yamada assert(clock_periph_id_isvalid(periph_id)); 552*09f455dcSMasahiro Yamada if (periph_id < PERIPH_ID_VW_FIRST) 553*09f455dcSMasahiro Yamada reset = &clkrst->crc_rst_dev[PERIPH_REG(periph_id)]; 554*09f455dcSMasahiro Yamada else 555*09f455dcSMasahiro Yamada reset = &clkrst->crc_rst_dev_vw[PERIPH_REG(periph_id)]; 556*09f455dcSMasahiro Yamada reg = readl(reset); 557*09f455dcSMasahiro Yamada if (enable) 558*09f455dcSMasahiro Yamada reg |= PERIPH_MASK(periph_id); 559*09f455dcSMasahiro Yamada else 560*09f455dcSMasahiro Yamada reg &= ~PERIPH_MASK(periph_id); 561*09f455dcSMasahiro Yamada writel(reg, reset); 562*09f455dcSMasahiro Yamada } 563*09f455dcSMasahiro Yamada 564*09f455dcSMasahiro Yamada #ifdef CONFIG_OF_CONTROL 565*09f455dcSMasahiro Yamada /* 566*09f455dcSMasahiro Yamada * Convert a device tree clock ID to our peripheral ID. They are mostly 567*09f455dcSMasahiro Yamada * the same but we are very cautious so we check that a valid clock ID is 568*09f455dcSMasahiro Yamada * provided. 569*09f455dcSMasahiro Yamada * 570*09f455dcSMasahiro Yamada * @param clk_id Clock ID according to tegra114 device tree binding 571*09f455dcSMasahiro Yamada * @return peripheral ID, or PERIPH_ID_NONE if the clock ID is invalid 572*09f455dcSMasahiro Yamada */ 573*09f455dcSMasahiro Yamada enum periph_id clk_id_to_periph_id(int clk_id) 574*09f455dcSMasahiro Yamada { 575*09f455dcSMasahiro Yamada if (clk_id > PERIPH_ID_COUNT) 576*09f455dcSMasahiro Yamada return PERIPH_ID_NONE; 577*09f455dcSMasahiro Yamada 578*09f455dcSMasahiro Yamada switch (clk_id) { 579*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED3: 580*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED16: 581*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED24: 582*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED35: 583*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED43: 584*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED45: 585*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED56: 586*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED76: 587*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED77: 588*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED78: 589*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED83: 590*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED89: 591*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED91: 592*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED93: 593*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED94: 594*09f455dcSMasahiro Yamada case PERIPH_ID_RESERVED95: 595*09f455dcSMasahiro Yamada return PERIPH_ID_NONE; 596*09f455dcSMasahiro Yamada default: 597*09f455dcSMasahiro Yamada return clk_id; 598*09f455dcSMasahiro Yamada } 599*09f455dcSMasahiro Yamada } 600*09f455dcSMasahiro Yamada #endif /* CONFIG_OF_CONTROL */ 601*09f455dcSMasahiro Yamada 602*09f455dcSMasahiro Yamada void clock_early_init(void) 603*09f455dcSMasahiro Yamada { 604*09f455dcSMasahiro Yamada struct clk_rst_ctlr *clkrst = 605*09f455dcSMasahiro Yamada (struct clk_rst_ctlr *)NV_PA_CLK_RST_BASE; 606*09f455dcSMasahiro Yamada 607*09f455dcSMasahiro Yamada tegra30_set_up_pllp(); 608*09f455dcSMasahiro Yamada 609*09f455dcSMasahiro Yamada /* 610*09f455dcSMasahiro Yamada * PLLC output frequency set to 600Mhz 611*09f455dcSMasahiro Yamada * PLLD output frequency set to 925Mhz 612*09f455dcSMasahiro Yamada */ 613*09f455dcSMasahiro Yamada switch (clock_get_osc_freq()) { 614*09f455dcSMasahiro Yamada case CLOCK_OSC_FREQ_12_0: /* OSC is 12Mhz */ 615*09f455dcSMasahiro Yamada clock_set_rate(CLOCK_ID_CGENERAL, 600, 12, 0, 8); 616*09f455dcSMasahiro Yamada clock_set_rate(CLOCK_ID_DISPLAY, 925, 12, 0, 12); 617*09f455dcSMasahiro Yamada break; 618*09f455dcSMasahiro Yamada 619*09f455dcSMasahiro Yamada case CLOCK_OSC_FREQ_26_0: /* OSC is 26Mhz */ 620*09f455dcSMasahiro Yamada clock_set_rate(CLOCK_ID_CGENERAL, 600, 26, 0, 8); 621*09f455dcSMasahiro Yamada clock_set_rate(CLOCK_ID_DISPLAY, 925, 26, 0, 12); 622*09f455dcSMasahiro Yamada break; 623*09f455dcSMasahiro Yamada 624*09f455dcSMasahiro Yamada case CLOCK_OSC_FREQ_13_0: /* OSC is 13Mhz */ 625*09f455dcSMasahiro Yamada clock_set_rate(CLOCK_ID_CGENERAL, 600, 13, 0, 8); 626*09f455dcSMasahiro Yamada clock_set_rate(CLOCK_ID_DISPLAY, 925, 13, 0, 12); 627*09f455dcSMasahiro Yamada break; 628*09f455dcSMasahiro Yamada case CLOCK_OSC_FREQ_19_2: 629*09f455dcSMasahiro Yamada default: 630*09f455dcSMasahiro Yamada /* 631*09f455dcSMasahiro Yamada * These are not supported. It is too early to print a 632*09f455dcSMasahiro Yamada * message and the UART likely won't work anyway due to the 633*09f455dcSMasahiro Yamada * oscillator being wrong. 634*09f455dcSMasahiro Yamada */ 635*09f455dcSMasahiro Yamada break; 636*09f455dcSMasahiro Yamada } 637*09f455dcSMasahiro Yamada 638*09f455dcSMasahiro Yamada /* PLLC_MISC2: Set dynramp_stepA/B. MISC2 maps to pll_out[1] */ 639*09f455dcSMasahiro Yamada writel(0x00561600, &clkrst->crc_pll[CLOCK_ID_CGENERAL].pll_out[1]); 640*09f455dcSMasahiro Yamada 641*09f455dcSMasahiro Yamada /* PLLC_MISC: Set LOCK_ENABLE */ 642*09f455dcSMasahiro Yamada writel(0x01000000, &clkrst->crc_pll[CLOCK_ID_CGENERAL].pll_misc); 643*09f455dcSMasahiro Yamada udelay(2); 644*09f455dcSMasahiro Yamada 645*09f455dcSMasahiro Yamada /* PLLD_MISC: Set CLKENABLE, CPCON 12, LFCON 1 */ 646*09f455dcSMasahiro Yamada writel(0x40000C10, &clkrst->crc_pll[CLOCK_ID_DISPLAY].pll_misc); 647*09f455dcSMasahiro Yamada udelay(2); 648*09f455dcSMasahiro Yamada } 649*09f455dcSMasahiro Yamada 650*09f455dcSMasahiro Yamada void arch_timer_init(void) 651*09f455dcSMasahiro Yamada { 652*09f455dcSMasahiro Yamada struct sysctr_ctlr *sysctr = (struct sysctr_ctlr *)NV_PA_TSC_BASE; 653*09f455dcSMasahiro Yamada u32 freq, val; 654*09f455dcSMasahiro Yamada 655*09f455dcSMasahiro Yamada freq = clock_get_rate(CLOCK_ID_OSC); 656*09f455dcSMasahiro Yamada debug("%s: osc freq is %dHz [0x%08X]\n", __func__, freq, freq); 657*09f455dcSMasahiro Yamada 658*09f455dcSMasahiro Yamada /* ARM CNTFRQ */ 659*09f455dcSMasahiro Yamada asm("mcr p15, 0, %0, c14, c0, 0\n" : : "r" (freq)); 660*09f455dcSMasahiro Yamada 661*09f455dcSMasahiro Yamada /* Only T114 has the System Counter regs */ 662*09f455dcSMasahiro Yamada debug("%s: setting CNTFID0 to 0x%08X\n", __func__, freq); 663*09f455dcSMasahiro Yamada writel(freq, &sysctr->cntfid0); 664*09f455dcSMasahiro Yamada 665*09f455dcSMasahiro Yamada val = readl(&sysctr->cntcr); 666*09f455dcSMasahiro Yamada val |= TSC_CNTCR_ENABLE | TSC_CNTCR_HDBG; 667*09f455dcSMasahiro Yamada writel(val, &sysctr->cntcr); 668*09f455dcSMasahiro Yamada debug("%s: TSC CNTCR = 0x%08X\n", __func__, val); 669*09f455dcSMasahiro Yamada } 670