GK SDK 源码库: XMIPCLinuxV100R005C00SPC030 (kernel/tools/open_source excluded)

This commit is contained in:
lai
2026-09-06 03:52:57 +08:00
commit b1928b41c0
21813 changed files with 4413081 additions and 0 deletions
@@ -0,0 +1,27 @@
if ARCH_MX7ULP
config SYS_SOC
default "mx7ulp"
config LDO_ENABLED_MODE
bool "i.MX7ULP LDO Enabled Mode"
help
Select this option to enable the PMC1 LDO.
config MX7ULP
bool
choice
prompt "MX7ULP board select"
optional
config TARGET_MX7ULP_EVK
bool "Support mx7ulp EVK board"
select MX7ULP
select SYS_ARCH_TIMER
endchoice
source "board/freescale/mx7ulp_evk/Kconfig"
endif
@@ -0,0 +1,6 @@
# SPDX-License-Identifier: GPL-2.0+
#
# (C) Copyright 2016 Freescale Semiconductor, Inc.
#
obj-y := soc.o clock.o iomux.o pcc.o scg.o
@@ -0,0 +1,368 @@
// SPDX-License-Identifier: GPL-2.0+
/*
* Copyright (C) 2016 Freescale Semiconductor, Inc.
*/
#include <common.h>
#include <div64.h>
#include <asm/io.h>
#include <errno.h>
#include <asm/arch/clock.h>
#include <asm/arch/sys_proto.h>
DECLARE_GLOBAL_DATA_PTR;
int get_clocks(void)
{
#ifdef CONFIG_FSL_ESDHC_IMX
#if CONFIG_SYS_FSL_ESDHC_ADDR == USDHC0_RBASE
gd->arch.sdhc_clk = mxc_get_clock(MXC_ESDHC_CLK);
#elif CONFIG_SYS_FSL_ESDHC_ADDR == USDHC1_RBASE
gd->arch.sdhc_clk = mxc_get_clock(MXC_ESDHC2_CLK);
#endif
#endif
return 0;
}
static u32 get_fast_plat_clk(void)
{
return scg_clk_get_rate(SCG_NIC0_CLK);
}
static u32 get_slow_plat_clk(void)
{
return scg_clk_get_rate(SCG_NIC1_CLK);
}
static u32 get_ipg_clk(void)
{
return scg_clk_get_rate(SCG_NIC1_BUS_CLK);
}
u32 get_lpuart_clk(void)
{
int index = 0;
const u32 lpuart_array[] = {
LPUART0_RBASE,
LPUART1_RBASE,
LPUART2_RBASE,
LPUART3_RBASE,
LPUART4_RBASE,
LPUART5_RBASE,
LPUART6_RBASE,
LPUART7_RBASE,
};
const enum pcc_clk lpuart_pcc_clks[] = {
PER_CLK_LPUART4,
PER_CLK_LPUART5,
PER_CLK_LPUART6,
PER_CLK_LPUART7,
};
for (index = 0; index < 8; index++) {
if (lpuart_array[index] == LPUART_BASE)
break;
}
if (index < 4 || index > 7)
return 0;
return pcc_clock_get_rate(lpuart_pcc_clks[index - 4]);
}
#ifdef CONFIG_SYS_I2C_IMX_LPI2C
int enable_i2c_clk(unsigned char enable, unsigned i2c_num)
{
/* Set parent to FIRC DIV2 clock */
const enum pcc_clk lpi2c_pcc_clks[] = {
PER_CLK_LPI2C4,
PER_CLK_LPI2C5,
PER_CLK_LPI2C6,
PER_CLK_LPI2C7,
};
if (i2c_num < 4 || i2c_num > 7)
return -EINVAL;
if (enable) {
pcc_clock_enable(lpi2c_pcc_clks[i2c_num - 4], false);
pcc_clock_sel(lpi2c_pcc_clks[i2c_num - 4], SCG_FIRC_DIV2_CLK);
pcc_clock_enable(lpi2c_pcc_clks[i2c_num - 4], true);
} else {
pcc_clock_enable(lpi2c_pcc_clks[i2c_num - 4], false);
}
return 0;
}
u32 imx_get_i2cclk(unsigned i2c_num)
{
const enum pcc_clk lpi2c_pcc_clks[] = {
PER_CLK_LPI2C4,
PER_CLK_LPI2C5,
PER_CLK_LPI2C6,
PER_CLK_LPI2C7,
};
if (i2c_num < 4 || i2c_num > 7)
return 0;
return pcc_clock_get_rate(lpi2c_pcc_clks[i2c_num - 4]);
}
#endif
unsigned int mxc_get_clock(enum mxc_clock clk)
{
switch (clk) {
case MXC_ARM_CLK:
return scg_clk_get_rate(SCG_CORE_CLK);
case MXC_AXI_CLK:
return get_fast_plat_clk();
case MXC_AHB_CLK:
return get_slow_plat_clk();
case MXC_IPG_CLK:
return get_ipg_clk();
case MXC_I2C_CLK:
return pcc_clock_get_rate(PER_CLK_LPI2C4);
case MXC_UART_CLK:
return get_lpuart_clk();
case MXC_ESDHC_CLK:
return pcc_clock_get_rate(PER_CLK_USDHC0);
case MXC_ESDHC2_CLK:
return pcc_clock_get_rate(PER_CLK_USDHC1);
case MXC_DDR_CLK:
return scg_clk_get_rate(SCG_DDR_CLK);
default:
printf("Unsupported mxc_clock %d\n", clk);
break;
}
return 0;
}
void init_clk_usdhc(u32 index)
{
switch (index) {
case 0:
/*Disable the clock before configure it */
pcc_clock_enable(PER_CLK_USDHC0, false);
/* 158MHz / 1 = 158MHz */
pcc_clock_sel(PER_CLK_USDHC0, SCG_NIC1_CLK);
pcc_clock_div_config(PER_CLK_USDHC0, false, 1);
pcc_clock_enable(PER_CLK_USDHC0, true);
break;
case 1:
/*Disable the clock before configure it */
pcc_clock_enable(PER_CLK_USDHC1, false);
/* 158MHz / 1 = 158MHz */
pcc_clock_sel(PER_CLK_USDHC1, SCG_NIC1_CLK);
pcc_clock_div_config(PER_CLK_USDHC1, false, 1);
pcc_clock_enable(PER_CLK_USDHC1, true);
break;
default:
printf("Invalid index for USDHC %d\n", index);
break;
}
}
#ifdef CONFIG_MXC_OCOTP
#define OCOTP_CTRL_PCC1_SLOT (38)
#define OCOTP_CTRL_HIGH4K_PCC1_SLOT (39)
void enable_ocotp_clk(unsigned char enable)
{
u32 val;
/*
* Seems the OCOTP CLOCKs have been enabled at default,
* check its inuse flag
*/
val = readl(PCC1_RBASE + 4 * OCOTP_CTRL_PCC1_SLOT);
if (!(val & PCC_INUSE_MASK))
writel(PCC_CGC_MASK, (PCC1_RBASE + 4 * OCOTP_CTRL_PCC1_SLOT));
val = readl(PCC1_RBASE + 4 * OCOTP_CTRL_HIGH4K_PCC1_SLOT);
if (!(val & PCC_INUSE_MASK))
writel(PCC_CGC_MASK,
(PCC1_RBASE + 4 * OCOTP_CTRL_HIGH4K_PCC1_SLOT));
}
#endif
void enable_usboh3_clk(unsigned char enable)
{
if (enable) {
pcc_clock_enable(PER_CLK_USB0, false);
pcc_clock_sel(PER_CLK_USB0, SCG_NIC1_BUS_CLK);
pcc_clock_enable(PER_CLK_USB0, true);
#ifdef CONFIG_USB_MAX_CONTROLLER_COUNT
if (CONFIG_USB_MAX_CONTROLLER_COUNT > 1) {
pcc_clock_enable(PER_CLK_USB1, false);
pcc_clock_sel(PER_CLK_USB1, SCG_NIC1_BUS_CLK);
pcc_clock_enable(PER_CLK_USB1, true);
}
#endif
pcc_clock_enable(PER_CLK_USB_PHY, true);
pcc_clock_enable(PER_CLK_USB_PL301, true);
} else {
pcc_clock_enable(PER_CLK_USB0, false);
pcc_clock_enable(PER_CLK_USB1, false);
pcc_clock_enable(PER_CLK_USB_PHY, false);
pcc_clock_enable(PER_CLK_USB_PL301, false);
}
}
static void lpuart_set_clk(uint32_t index, enum scg_clk clk)
{
const enum pcc_clk lpuart_pcc_clks[] = {
PER_CLK_LPUART4,
PER_CLK_LPUART5,
PER_CLK_LPUART6,
PER_CLK_LPUART7,
};
if (index < 4 || index > 7)
return;
#ifndef CONFIG_CLK_DEBUG
pcc_clock_enable(lpuart_pcc_clks[index - 4], false);
#endif
pcc_clock_sel(lpuart_pcc_clks[index - 4], clk);
pcc_clock_enable(lpuart_pcc_clks[index - 4], true);
}
static void init_clk_lpuart(void)
{
u32 index = 0, i;
const u32 lpuart_array[] = {
LPUART0_RBASE,
LPUART1_RBASE,
LPUART2_RBASE,
LPUART3_RBASE,
LPUART4_RBASE,
LPUART5_RBASE,
LPUART6_RBASE,
LPUART7_RBASE,
};
for (i = 0; i < 8; i++) {
if (lpuart_array[i] == LPUART_BASE) {
index = i;
break;
}
}
lpuart_set_clk(index, SCG_SOSC_DIV2_CLK);
}
static void init_clk_rgpio2p(void)
{
/*Enable RGPIO2P1 clock */
pcc_clock_enable(PER_CLK_RGPIO2P1, true);
/*
* Hard code to enable RGPIO2P0 clock since it is not
* in clock frame for A7 domain
*/
writel(PCC_CGC_MASK, (PCC0_RBASE + 0x3C));
}
/* Configure PLL/PFD freq */
void clock_init(void)
{
/*
* ROM has enabled clocks:
* A4 side: SIRC 16Mhz (DIV1-3 off), FIRC 48Mhz (DIV1-2 on),
* Non-LP-boot: SOSC, SPLL PFD0 (scs selected)
* A7 side: SPLL PFD0 (scs selected, 413Mhz),
* APLL PFD0 (352Mhz), DDRCLK, all NIC clocks
* A7 Plat0 (NIC0) = 176Mhz, Plat1 (NIC1) = 176Mhz,
* IP BUS (NIC1_BUS) = 58.6Mhz
*
* In u-boot:
* 1. Enable PFD1-3 of APLL for A7 side. Enable FIRC and DIVs.
* 2. Enable USB PLL
* 3. Init the clocks of peripherals used in u-boot bu
* without set rate interface.The clocks for these
* peripherals are enabled in this intialization.
* 4.Other peripherals with set clock rate interface
* does not be set in this function.
*/
scg_a7_firc_init();
scg_a7_soscdiv_init();
scg_a7_init_core_clk();
/* APLL PFD1 = 270Mhz, PFD2=345.6Mhz, PFD3=800Mhz */
scg_enable_pll_pfd(SCG_APLL_PFD1_CLK, 35);
scg_enable_pll_pfd(SCG_APLL_PFD2_CLK, 28);
scg_enable_pll_pfd(SCG_APLL_PFD3_CLK, 12);
init_clk_lpuart();
init_clk_rgpio2p();
enable_usboh3_clk(1);
}
#ifdef CONFIG_IMX_HAB
void hab_caam_clock_enable(unsigned char enable)
{
if (enable)
pcc_clock_enable(PER_CLK_CAAM, true);
else
pcc_clock_enable(PER_CLK_CAAM, false);
}
#endif
#ifndef CONFIG_SPL_BUILD
/*
* Dump some core clockes.
*/
int do_mx7_showclocks(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
{
u32 addr = 0;
u32 freq;
freq = decode_pll(PLL_A7_SPLL);
printf("PLL_A7_SPLL %8d MHz\n", freq / 1000000);
freq = decode_pll(PLL_A7_APLL);
printf("PLL_A7_APLL %8d MHz\n", freq / 1000000);
freq = decode_pll(PLL_USB);
printf("PLL_USB %8d MHz\n", freq / 1000000);
printf("\n");
printf("CORE %8d kHz\n", scg_clk_get_rate(SCG_CORE_CLK) / 1000);
printf("IPG %8d kHz\n", mxc_get_clock(MXC_IPG_CLK) / 1000);
printf("UART %8d kHz\n", mxc_get_clock(MXC_UART_CLK) / 1000);
printf("AHB %8d kHz\n", mxc_get_clock(MXC_AHB_CLK) / 1000);
printf("AXI %8d kHz\n", mxc_get_clock(MXC_AXI_CLK) / 1000);
printf("DDR %8d kHz\n", mxc_get_clock(MXC_DDR_CLK) / 1000);
printf("USDHC1 %8d kHz\n", mxc_get_clock(MXC_ESDHC_CLK) / 1000);
printf("USDHC2 %8d kHz\n", mxc_get_clock(MXC_ESDHC2_CLK) / 1000);
printf("I2C4 %8d kHz\n", mxc_get_clock(MXC_I2C_CLK) / 1000);
addr = (u32) clock_init;
printf("[%s] addr = 0x%08X\r\n", __func__, addr);
scg_a7_info();
return 0;
}
U_BOOT_CMD(
clocks, CONFIG_SYS_MAXARGS, 1, do_mx7_showclocks,
"display clocks",
""
);
#endif
@@ -0,0 +1,69 @@
// SPDX-License-Identifier: GPL-2.0+
/*
* Copyright (C) 2016 Freescale Semiconductor, Inc.
*/
#include <common.h>
#include <asm/io.h>
#include <asm/arch/imx-regs.h>
#include <asm/arch/iomux.h>
static void *base = (void *)IOMUXC_BASE_ADDR;
/*
* iomuxc0 base address. In imx7ulp-pins.h,
* the offsets of pins in iomuxc0 are from 0xD000,
* so we set the base address to (0x4103D000 - 0xD000 = 0x41030000)
*/
static void *base_mports = (void *)(AIPS0_BASE + 0x30000);
/*
* configures a single pad in the iomuxer
*/
void mx7ulp_iomux_setup_pad(iomux_cfg_t pad)
{
u32 mux_ctrl_ofs = (pad & MUX_CTRL_OFS_MASK) >> MUX_CTRL_OFS_SHIFT;
u32 mux_mode = (pad & MUX_MODE_MASK) >> MUX_MODE_SHIFT;
u32 sel_input_ofs =
(pad & MUX_SEL_INPUT_OFS_MASK) >> MUX_SEL_INPUT_OFS_SHIFT;
u32 sel_input =
(pad & MUX_SEL_INPUT_MASK) >> MUX_SEL_INPUT_SHIFT;
u32 pad_ctrl_ofs = mux_ctrl_ofs;
u32 pad_ctrl = (pad & MUX_PAD_CTRL_MASK) >> MUX_PAD_CTRL_SHIFT;
debug("[PAD CFG] = 0x%16llX \r\n\tmux_ctl = 0x%X(0x%X) sel_input = 0x%X(0x%X) pad_ctrl = 0x%X(0x%X)\r\n",
pad, mux_ctrl_ofs, mux_mode, sel_input_ofs, sel_input,
pad_ctrl_ofs, pad_ctrl);
if (mux_mode & IOMUX_CONFIG_MPORTS) {
mux_mode &= ~IOMUX_CONFIG_MPORTS;
base = base_mports;
} else {
base = (void *)IOMUXC_BASE_ADDR;
}
__raw_writel(((mux_mode << IOMUXC_PCR_MUX_ALT_SHIFT) &
IOMUXC_PCR_MUX_ALT_MASK), base + mux_ctrl_ofs);
if (sel_input_ofs)
__raw_writel((sel_input << IOMUXC_PSMI_IMUX_ALT_SHIFT),
base + sel_input_ofs);
if (!(pad_ctrl & NO_PAD_CTRL))
__raw_writel(((mux_mode << IOMUXC_PCR_MUX_ALT_SHIFT) &
IOMUXC_PCR_MUX_ALT_MASK) |
(pad_ctrl & (~IOMUXC_PCR_MUX_ALT_MASK)),
base + pad_ctrl_ofs);
}
/* configures a list of pads within declared with IOMUX_PADS macro */
void mx7ulp_iomux_setup_multiple_pads(iomux_cfg_t const *pad_list,
unsigned count)
{
iomux_cfg_t const *p = pad_list;
int i;
for (i = 0; i < count; i++) {
mx7ulp_iomux_setup_pad(*p);
p++;
}
}
@@ -0,0 +1,283 @@
// SPDX-License-Identifier: GPL-2.0+
/*
* Copyright (C) 2016 Freescale Semiconductor, Inc.
*/
#include <common.h>
#include <div64.h>
#include <asm/io.h>
#include <errno.h>
#include <asm/arch/imx-regs.h>
#include <asm/arch/pcc.h>
#include <asm/arch/sys_proto.h>
#define PCC_CLKSRC_TYPES 2
#define PCC_CLKSRC_NUM 7
static enum scg_clk pcc_clksrc[PCC_CLKSRC_TYPES][PCC_CLKSRC_NUM] = {
{ SCG_NIC1_BUS_CLK,
SCG_NIC1_CLK,
SCG_DDR_CLK,
SCG_APLL_PFD2_CLK,
SCG_APLL_PFD1_CLK,
SCG_APLL_PFD0_CLK,
USB_PLL_OUT,
},
{ SCG_SOSC_DIV2_CLK, /* SOSC BUS clock */
MIPI_PLL_OUT,
SCG_FIRC_DIV2_CLK, /* FIRC BUS clock */
SCG_ROSC_CLK,
SCG_NIC1_BUS_CLK,
SCG_NIC1_CLK,
SCG_APLL_PFD3_CLK,
},
};
static struct pcc_entry pcc_arrays[] = {
{PCC2_RBASE, DMA1_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, RGPIO1_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, FLEXBUS0_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, SEMA42_1_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, DMA1_CH_MUX0_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, SNVS_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, CAAM_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, LPTPM4_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPTPM5_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPIT1_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPSPI2_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPSPI3_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPI2C4_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPI2C5_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPUART4_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, LPUART5_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, FLEXIO1_PCC2_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC2_RBASE, USBOTG0_PCC2_SLOT, CLKSRC_PER_PLAT, PCC_HAS_DIV},
{PCC2_RBASE, USBOTG1_PCC2_SLOT, CLKSRC_PER_PLAT, PCC_HAS_DIV},
{PCC2_RBASE, USBPHY_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, USB_PL301_PCC2_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC2_RBASE, USDHC0_PCC2_SLOT, CLKSRC_PER_PLAT, PCC_HAS_DIV},
{PCC2_RBASE, USDHC1_PCC2_SLOT, CLKSRC_PER_PLAT, PCC_HAS_DIV},
{PCC2_RBASE, WDG1_PCC2_SLOT, CLKSRC_PER_BUS, PCC_HAS_DIV},
{PCC2_RBASE, WDG2_PCC2_SLOT, CLKSRC_PER_BUS, PCC_HAS_DIV},
{PCC3_RBASE, LPTPM6_PCC3_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC3_RBASE, LPTPM7_PCC3_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC3_RBASE, LPI2C6_PCC3_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC3_RBASE, LPI2C7_PCC3_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC3_RBASE, LPUART6_PCC3_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC3_RBASE, LPUART7_PCC3_SLOT, CLKSRC_PER_BUS, PCC_NO_DIV},
{PCC3_RBASE, VIU0_PCC3_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC3_RBASE, DSI0_PCC3_SLOT, CLKSRC_PER_BUS, PCC_HAS_DIV},
{PCC3_RBASE, LCDIF0_PCC3_SLOT, CLKSRC_PER_PLAT, PCC_HAS_DIV},
{PCC3_RBASE, MMDC0_PCC3_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC3_RBASE, PORTC_PCC3_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC3_RBASE, PORTD_PCC3_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC3_RBASE, PORTE_PCC3_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC3_RBASE, PORTF_PCC3_SLOT, CLKSRC_NO_PCS, PCC_NO_DIV},
{PCC3_RBASE, GPU3D_PCC3_SLOT, CLKSRC_PER_PLAT, PCC_NO_DIV},
{PCC3_RBASE, GPU2D_PCC3_SLOT, CLKSRC_PER_PLAT, PCC_NO_DIV},
};
int pcc_clock_enable(enum pcc_clk clk, bool enable)
{
u32 reg, val;
if (clk >= ARRAY_SIZE(pcc_arrays))
return -EINVAL;
reg = pcc_arrays[clk].pcc_base + pcc_arrays[clk].pcc_slot * 4;
val = readl(reg);
clk_debug("pcc_clock_enable: clk %d, reg 0x%x, val 0x%x, enable %d\n",
clk, reg, val, enable);
if (!(val & PCC_PR_MASK) || (val & PCC_INUSE_MASK))
return -EPERM;
if (enable)
val |= PCC_CGC_MASK;
else
val &= ~PCC_CGC_MASK;
writel(val, reg);
clk_debug("pcc_clock_enable: val 0x%x\n", val);
return 0;
}
/* The clock source select needs clock is disabled */
int pcc_clock_sel(enum pcc_clk clk, enum scg_clk src)
{
u32 reg, val, i, clksrc_type;
if (clk >= ARRAY_SIZE(pcc_arrays))
return -EINVAL;
clksrc_type = pcc_arrays[clk].clksrc;
if (clksrc_type >= CLKSRC_NO_PCS) {
printf("No PCS field for the PCC %d, clksrc type %d\n",
clk, clksrc_type);
return -EPERM;
}
for (i = 0; i < PCC_CLKSRC_NUM; i++) {
if (pcc_clksrc[clksrc_type][i] == src) {
/* Find the clock src, then set it to PCS */
break;
}
}
if (i == PCC_CLKSRC_NUM) {
printf("Not find the parent scg_clk in PCS of PCC %d, invalid scg_clk %d\n", clk, src);
return -EINVAL;
}
reg = pcc_arrays[clk].pcc_base + pcc_arrays[clk].pcc_slot * 4;
val = readl(reg);
clk_debug("pcc_clock_sel: clk %d, reg 0x%x, val 0x%x, clksrc_type %d\n",
clk, reg, val, clksrc_type);
if (!(val & PCC_PR_MASK) || (val & PCC_INUSE_MASK) ||
(val & PCC_CGC_MASK)) {
printf("Not permit to select clock source val = 0x%x\n", val);
return -EPERM;
}
val &= ~PCC_PCS_MASK;
val |= ((i + 1) << PCC_PCS_OFFSET);
writel(val, reg);
clk_debug("pcc_clock_sel: val 0x%x\n", val);
return 0;
}
int pcc_clock_div_config(enum pcc_clk clk, bool frac, u8 div)
{
u32 reg, val;
if (clk >= ARRAY_SIZE(pcc_arrays) || div > 8 ||
(div == 1 && frac != 0))
return -EINVAL;
if (pcc_arrays[clk].div >= PCC_NO_DIV) {
printf("No DIV/FRAC field for the PCC %d\n", clk);
return -EPERM;
}
reg = pcc_arrays[clk].pcc_base + pcc_arrays[clk].pcc_slot * 4;
val = readl(reg);
if (!(val & PCC_PR_MASK) || (val & PCC_INUSE_MASK) ||
(val & PCC_CGC_MASK)) {
printf("Not permit to set div/frac val = 0x%x\n", val);
return -EPERM;
}
if (frac)
val |= PCC_FRAC_MASK;
else
val &= ~PCC_FRAC_MASK;
val &= ~PCC_PCD_MASK;
val |= (div - 1) & PCC_PCD_MASK;
writel(val, reg);
return 0;
}
bool pcc_clock_is_enable(enum pcc_clk clk)
{
u32 reg, val;
if (clk >= ARRAY_SIZE(pcc_arrays))
return -EINVAL;
reg = pcc_arrays[clk].pcc_base + pcc_arrays[clk].pcc_slot * 4;
val = readl(reg);
if ((val & PCC_INUSE_MASK) || (val & PCC_CGC_MASK))
return true;
return false;
}
int pcc_clock_get_clksrc(enum pcc_clk clk, enum scg_clk *src)
{
u32 reg, val, clksrc_type;
if (clk >= ARRAY_SIZE(pcc_arrays))
return -EINVAL;
clksrc_type = pcc_arrays[clk].clksrc;
if (clksrc_type >= CLKSRC_NO_PCS) {
printf("No PCS field for the PCC %d, clksrc type %d\n",
clk, clksrc_type);
return -EPERM;
}
reg = pcc_arrays[clk].pcc_base + pcc_arrays[clk].pcc_slot * 4;
val = readl(reg);
clk_debug("pcc_clock_get_clksrc: clk %d, reg 0x%x, val 0x%x, type %d\n",
clk, reg, val, clksrc_type);
if (!(val & PCC_PR_MASK)) {
printf("This pcc slot is not present = 0x%x\n", val);
return -EPERM;
}
val &= PCC_PCS_MASK;
val = (val >> PCC_PCS_OFFSET);
if (!val) {
printf("Clock source is off\n");
return -EIO;
}
*src = pcc_clksrc[clksrc_type][val - 1];
clk_debug("pcc_clock_get_clksrc: parent scg clk %d\n", *src);
return 0;
}
u32 pcc_clock_get_rate(enum pcc_clk clk)
{
u32 reg, val, rate, frac, div;
enum scg_clk parent;
int ret;
ret = pcc_clock_get_clksrc(clk, &parent);
if (ret)
return 0;
rate = scg_clk_get_rate(parent);
clk_debug("pcc_clock_get_rate: parent rate %u\n", rate);
if (pcc_arrays[clk].div == PCC_HAS_DIV) {
reg = pcc_arrays[clk].pcc_base + pcc_arrays[clk].pcc_slot * 4;
val = readl(reg);
frac = (val & PCC_FRAC_MASK) >> PCC_FRAC_OFFSET;
div = (val & PCC_PCD_MASK) >> PCC_PCD_OFFSET;
/*
* Theoretically don't have overflow in the calc,
* the rate won't exceed 2G
*/
rate = rate * (frac + 1) / (div + 1);
}
clk_debug("pcc_clock_get_rate: rate %u\n", rate);
return rate;
}
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,359 @@
// SPDX-License-Identifier: GPL-2.0+
/*
* Copyright (C) 2016 Freescale Semiconductor, Inc.
*/
#include <init.h>
#include <asm/io.h>
#include <asm/arch/clock.h>
#include <asm/arch/imx-regs.h>
#include <asm/arch/sys_proto.h>
#include <asm/mach-imx/boot_mode.h>
#include <asm/mach-imx/hab.h>
#define PMC0_BASE_ADDR 0x410a1000
#define PMC0_CTRL 0x28
#define PMC0_CTRL_LDOEN BIT(31)
#define PMC0_CTRL_LDOOKDIS BIT(30)
#define PMC0_CTRL_PMC1ON BIT(24)
#define PMC1_BASE_ADDR 0x40400000
#define PMC1_RUN 0x8
#define PMC1_STOP 0x10
#define PMC1_VLPS 0x14
#define PMC1_LDOVL_SHIFT 16
#define PMC1_LDOVL_MASK (0x3f << PMC1_LDOVL_SHIFT)
#define PMC1_LDOVL_900 0x1e
#define PMC1_LDOVL_950 0x23
#define PMC1_STATUS 0x20
#define PMC1_STATUS_LDOVLF BIT(8)
static char *get_reset_cause(char *);
#if defined(CONFIG_IMX_HAB)
struct imx_sec_config_fuse_t const imx_sec_config_fuse = {
.bank = 29,
.word = 6,
};
#endif
#define ROM_VERSION_ADDR 0x80
u32 get_cpu_rev(void)
{
/* Check the ROM version for cpu revision */
u32 rom_version = readl((void __iomem *)ROM_VERSION_ADDR);
return (MXC_CPU_MX7ULP << 12) | (rom_version & 0xFF);
}
#ifdef CONFIG_REVISION_TAG
u32 __weak get_board_rev(void)
{
return get_cpu_rev();
}
#endif
enum bt_mode get_boot_mode(void)
{
u32 bt0_cfg = 0;
bt0_cfg = readl(CMC0_RBASE + 0x40);
bt0_cfg &= (BT0CFG_LPBOOT_MASK | BT0CFG_DUALBOOT_MASK);
if (!(bt0_cfg & BT0CFG_LPBOOT_MASK)) {
/* No low power boot */
if (bt0_cfg & BT0CFG_DUALBOOT_MASK)
return DUAL_BOOT;
else
return SINGLE_BOOT;
}
return LOW_POWER_BOOT;
}
int arch_cpu_init(void)
{
return 0;
}
#ifdef CONFIG_BOARD_POSTCLK_INIT
int board_postclk_init(void)
{
return 0;
}
#endif
#define UNLOCK_WORD0 0xC520 /* 1st unlock word */
#define UNLOCK_WORD1 0xD928 /* 2nd unlock word */
#define REFRESH_WORD0 0xA602 /* 1st refresh word */
#define REFRESH_WORD1 0xB480 /* 2nd refresh word */
static void disable_wdog(u32 wdog_base)
{
writel(UNLOCK_WORD0, (wdog_base + 0x04));
writel(UNLOCK_WORD1, (wdog_base + 0x04));
writel(0x0, (wdog_base + 0x0C)); /* Set WIN to 0 */
writel(0x400, (wdog_base + 0x08)); /* Set timeout to default 0x400 */
writel(0x120, (wdog_base + 0x00)); /* Disable it and set update */
writel(REFRESH_WORD0, (wdog_base + 0x04)); /* Refresh the CNT */
writel(REFRESH_WORD1, (wdog_base + 0x04));
}
void init_wdog(void)
{
/*
* ROM will configure WDOG1, disable it or enable it
* depending on FUSE. The update bit is set for reconfigurable.
* We have to use unlock sequence to reconfigure it.
* WDOG2 is not touched by ROM, so it will have default value
* which is enabled. We can directly configure it.
* To simplify the codes, we still use same reconfigure
* process as WDOG1. Because the update bit is not set for
* WDOG2, the unlock sequence won't take effect really.
* It actually directly configure the wdog.
* In this function, we will disable both WDOG1 and WDOG2,
* and set update bit for both. So that kernel can reconfigure them.
*/
disable_wdog(WDG1_RBASE);
disable_wdog(WDG2_RBASE);
}
#if defined(CONFIG_LDO_ENABLED_MODE)
static void init_ldo_mode(void)
{
unsigned int reg;
/* Set LDOOKDIS */
setbits_le32(PMC0_BASE_ADDR + PMC0_CTRL, PMC0_CTRL_LDOOKDIS);
/* Set LDOVL to 0.95V in PMC1_RUN */
reg = readl(PMC1_BASE_ADDR + PMC1_RUN);
reg &= ~PMC1_LDOVL_MASK;
reg |= (PMC1_LDOVL_950 << PMC1_LDOVL_SHIFT);
writel(PMC1_BASE_ADDR + PMC1_RUN, reg);
/* Wait for LDOVLF to be cleared */
reg = readl(PMC1_BASE_ADDR + PMC1_STATUS);
while (reg & PMC1_STATUS_LDOVLF)
;
/* Set LDOVL to 0.95V in PMC1_STOP */
reg = readl(PMC1_BASE_ADDR + PMC1_STOP);
reg &= ~PMC1_LDOVL_MASK;
reg |= (PMC1_LDOVL_950 << PMC1_LDOVL_SHIFT);
writel(PMC1_BASE_ADDR + PMC1_STOP, reg);
/* Set LDOVL to 0.90V in PMC1_VLPS */
reg = readl(PMC1_BASE_ADDR + PMC1_VLPS);
reg &= ~PMC1_LDOVL_MASK;
reg |= (PMC1_LDOVL_900 << PMC1_LDOVL_SHIFT);
writel(PMC1_BASE_ADDR + PMC1_VLPS, reg);
/* Set LDOEN bit */
setbits_le32(PMC0_BASE_ADDR + PMC0_CTRL, PMC0_CTRL_LDOEN);
/* Set the PMC1ON bit */
setbits_le32(PMC0_BASE_ADDR + PMC0_CTRL, PMC0_CTRL_PMC1ON);
}
#endif
void s_init(void)
{
/* Disable wdog */
init_wdog();
/* clock configuration. */
clock_init();
if (soc_rev() < CHIP_REV_2_0) {
/* enable dumb pmic */
writel((readl(SNVS_LP_LPCR) | SNVS_LPCR_DPEN), SNVS_LP_LPCR);
}
#if defined(CONFIG_LDO_ENABLED_MODE)
init_ldo_mode();
#endif
return;
}
#ifndef CONFIG_ULP_WATCHDOG
void reset_cpu(ulong addr)
{
setbits_le32(SIM0_RBASE, SIM_SOPT1_A7_SW_RESET);
while (1)
;
}
#endif
#if defined(CONFIG_DISPLAY_CPUINFO)
const char *get_imx_type(u32 imxtype)
{
return "7ULP";
}
#define PMC0_BASE_ADDR 0x410a1000
#define PMC0_CTRL 0x28
#define PMC0_CTRL_LDOEN BIT(31)
static bool ldo_mode_is_enabled(void)
{
unsigned int reg;
reg = readl(PMC0_BASE_ADDR + PMC0_CTRL);
if (reg & PMC0_CTRL_LDOEN)
return true;
else
return false;
}
int print_cpuinfo(void)
{
u32 cpurev;
char cause[18];
cpurev = get_cpu_rev();
printf("CPU: Freescale i.MX%s rev%d.%d at %d MHz\n",
get_imx_type((cpurev & 0xFF000) >> 12),
(cpurev & 0x000F0) >> 4, (cpurev & 0x0000F) >> 0,
mxc_get_clock(MXC_ARM_CLK) / 1000000);
printf("Reset cause: %s\n", get_reset_cause(cause));
printf("Boot mode: ");
switch (get_boot_mode()) {
case LOW_POWER_BOOT:
printf("Low power boot\n");
break;
case DUAL_BOOT:
printf("Dual boot\n");
break;
case SINGLE_BOOT:
default:
printf("Single boot\n");
break;
}
if (ldo_mode_is_enabled())
printf("PMC1: LDO enabled mode\n");
else
printf("PMC1: LDO bypass mode\n");
return 0;
}
#endif
#define CMC_SRS_TAMPER (1 << 31)
#define CMC_SRS_SECURITY (1 << 30)
#define CMC_SRS_TZWDG (1 << 29)
#define CMC_SRS_JTAG_RST (1 << 28)
#define CMC_SRS_CORE1 (1 << 16)
#define CMC_SRS_LOCKUP (1 << 15)
#define CMC_SRS_SW (1 << 14)
#define CMC_SRS_WDG (1 << 13)
#define CMC_SRS_PIN_RESET (1 << 8)
#define CMC_SRS_WARM (1 << 4)
#define CMC_SRS_HVD (1 << 3)
#define CMC_SRS_LVD (1 << 2)
#define CMC_SRS_POR (1 << 1)
#define CMC_SRS_WUP (1 << 0)
static u32 reset_cause = -1;
static char *get_reset_cause(char *ret)
{
u32 cause1, cause = 0, srs = 0;
u32 *reg_ssrs = (u32 *)(SRC_BASE_ADDR + 0x28);
u32 *reg_srs = (u32 *)(SRC_BASE_ADDR + 0x20);
if (!ret)
return "null";
srs = readl(reg_srs);
cause1 = readl(reg_ssrs);
writel(cause1, reg_ssrs);
reset_cause = cause1;
cause = cause1 & (CMC_SRS_POR | CMC_SRS_WUP | CMC_SRS_WARM);
switch (cause) {
case CMC_SRS_POR:
sprintf(ret, "%s", "POR");
break;
case CMC_SRS_WUP:
sprintf(ret, "%s", "WUP");
break;
case CMC_SRS_WARM:
cause = cause1 & (CMC_SRS_WDG | CMC_SRS_SW |
CMC_SRS_JTAG_RST);
switch (cause) {
case CMC_SRS_WDG:
sprintf(ret, "%s", "WARM-WDG");
break;
case CMC_SRS_SW:
sprintf(ret, "%s", "WARM-SW");
break;
case CMC_SRS_JTAG_RST:
sprintf(ret, "%s", "WARM-JTAG");
break;
default:
sprintf(ret, "%s", "WARM-UNKN");
break;
}
break;
default:
sprintf(ret, "%s-%X", "UNKN", cause1);
break;
}
debug("[%X] SRS[%X] %X - ", cause1, srs, srs^cause1);
return ret;
}
#ifdef CONFIG_ENV_IS_IN_MMC
__weak int board_mmc_get_env_dev(int devno)
{
return CONFIG_SYS_MMC_ENV_DEV;
}
int mmc_get_env_dev(void)
{
int devno = 0;
u32 bt1_cfg = 0;
/* If not boot from sd/mmc, use default value */
if (get_boot_mode() == LOW_POWER_BOOT)
return CONFIG_SYS_MMC_ENV_DEV;
bt1_cfg = readl(CMC1_RBASE + 0x40);
devno = (bt1_cfg >> 9) & 0x7;
return board_mmc_get_env_dev(devno);
}
#endif
enum boot_device get_boot_device(void)
{
struct bootrom_sw_info **p =
(struct bootrom_sw_info **)ROM_SW_INFO_ADDR;
enum boot_device boot_dev = SD1_BOOT;
u8 boot_type = (*p)->boot_dev_type;
u8 boot_instance = (*p)->boot_dev_instance;
switch (boot_type) {
case BOOT_TYPE_SD:
boot_dev = boot_instance + SD1_BOOT;
break;
case BOOT_TYPE_MMC:
boot_dev = boot_instance + MMC1_BOOT;
break;
case BOOT_TYPE_USB:
boot_dev = USB_BOOT;
break;
default:
break;
}
return boot_dev;
}