mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
synced 2024-12-18 08:22:04 +00:00
Implement LP0-Entry BPMP Firmware
This commit is contained in:
parent
f7598cb433
commit
5370c7b150
12 changed files with 510 additions and 0 deletions
2
.gitignore
vendored
2
.gitignore
vendored
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@ -52,3 +52,5 @@ Mkfile.old
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dkms.conf
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.*/
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exosphere/bpmpfw/out/*
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66
exosphere/bpmpfw/Makefile
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66
exosphere/bpmpfw/Makefile
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@ -0,0 +1,66 @@
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rwildcard = $(foreach d, $(wildcard $1*), $(filter $(subst *, %, $2), $d) $(call rwildcard, $d/, $2))
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ifeq ($(strip $(DEVKITARM)),)
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$(error "Please set DEVKITARM in your environment. export DEVKITARM=<path to>devkitARM")
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endif
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include $(DEVKITARM)/base_tools
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name := $(shell basename $(CURDIR))
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dir_source := src
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dir_build := build
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dir_out := out
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ASFLAGS :=
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CFLAGS = \
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-Iinclude \
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-Iinclude/compat \
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-march=armv8-a \
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-mlittle-endian \
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-fno-stack-protector \
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-fno-common \
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-fno-builtin \
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-fno-inline \
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-ffreestanding \
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-std=gnu99 \
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-Werror \
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-Wall \
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-Wno-error=unused-variable
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LDFLAGS := -nostartfiles -Wl,--nmagic
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objects = $(patsubst $(dir_source)/%.s, $(dir_build)/%.o, \
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$(patsubst $(dir_source)/%.c, $(dir_build)/%.o, \
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$(call rwildcard, $(dir_source), *.s *.c)))
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define bin2o
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bin2s $< | $(AS) -o $(@)
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endef
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.PHONY: all
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all: $(dir_out)/$(name).bin
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.PHONY: clean
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clean:
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@rm -rf $(dir_build)
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@rm -rf $(dir_out)
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$(dir_out)/$(name).bin: $(dir_build)/$(name).elf
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@mkdir -p "$(@D)"
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$(OBJCOPY) -S -O binary $< $@
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$(dir_build)/$(name).elf: $(bundled) $(objects)
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$(LINK.o) -T linker.ld $(OUTPUT_OPTION) $^
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$(dir_build)/%.bin.o: $(dir_build)/%.bin
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@$(bin2o)
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$(dir_build)/%.o: $(dir_source)/%.c
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@mkdir -p "$(@D)"
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$(COMPILE.c) $(OUTPUT_OPTION) $<
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$(dir_build)/%.o: $(dir_source)/%.s
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@mkdir -p "$(@D)"
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$(COMPILE.s) $(OUTPUT_OPTION) $<
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21
exosphere/bpmpfw/linker.ld
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21
exosphere/bpmpfw/linker.ld
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@ -0,0 +1,21 @@
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OUTPUT_FORMAT("elf32-littlearm", "elf32-bigarm", "elf32-littlearm")
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OUTPUT_ARCH(arm)
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ENTRY(_start)
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SECTIONS
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{
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. = 0x40003000;
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__start__ = ABSOLUTE(.);
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.text : ALIGN(4) { *(.text.start) *(.text*); . = ALIGN(4); }
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.rodata : ALIGN(4) { *(.rodata*); . = ALIGN(4); }
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.bss : ALIGN(8) { __bss_start__ = .; *(.bss* COMMON); . = ALIGN(8); __bss_end__ = .; }
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. = ALIGN(4);
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__end__ = ABSOLUTE(.);
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__stack_top__ = 0x40005000;
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__stack_bottom__ = 0x40004000;
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}
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58
exosphere/bpmpfw/src/emc.c
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58
exosphere/bpmpfw/src/emc.c
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@ -0,0 +1,58 @@
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#include <stdint.h>
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#include "lp0.h"
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#include "emc.h"
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#include "pmc.h"
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#include "timer.h"
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void emc_trigger_timing_update(void) {
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EMC_TIMING_CONTROL_0 = 1;
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while (EMC_EMC_STATUS_0 & 0x800000) {
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/* Wait until TIMING_UPDATE_STALLED is unset. */
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}
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}
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/* Puts DRAM into self refresh mode. */
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void emc_put_dram_in_self_refresh_mode(void) {
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/* Verify CH1_ENABLE [PMC]. */
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if (!(EMC_FBIO_CFG7_0 & 4)) {
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reboot();
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}
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/* Clear config. */
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EMC_CFG_0 = 0;
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emc_trigger_timing_update();
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timer_wait(5);
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/* Set calibration intervals. */
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EMC_ZCAL_INTERVAL_0 = 0;
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EMC_AUTO_CAL_CONFIG_0 = 0x600; /* AUTO_CAL_MEASURE_STALL | AUTO_CAL_UPDATE_STALL */
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/* If EMC0 mirror is set, clear digital DLL. */
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if (EMC0_CFG_DIG_DLL_0 & 1) {
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EMC_CFG_DIG_DLL_0 &= 0xFFFFFFFE;
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emc_trigger_timing_update();
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while (EMC0_CFG_DIG_DLL_0 & 1) { /* Wait for EMC0 to clear. */ }
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while (EMC1_CFG_DIG_DLL_0 & 1) { /* Wait for EMC1 to clear. */ }
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} else {
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emc_trigger_timing_update();
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}
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/* Stall all transactions to DRAM. */
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EMC_REQ_CTRL_0 = 3; /* STALL_ALL_WRITES | STALL_ALL_READS. */
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while (!(EMC0_EMC_STATUS_0 & 4)) { /* Wait for NO_OUTSTANDING_TRANSACTIONS for EMC0. */ }
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while (!(EMC1_EMC_STATUS_0 & 4)) { /* Wait for NO_OUTSTANDING_TRANSACTIONS for EMC1. */ }
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/* Enable Self-Refresh Mode. */
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EMC_SELF_REF_0 |= 1;
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/* Wait until we see the right devices in self refresh mode. */
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uint32_t num_populated_devices = 1;
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if (EMC_ADR_CFG_0) {
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num_populated_devices = 3;
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}
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while (((EMC0_EMC_STATUS_0 >> 8) & 3) != num_populated_devices) { /* Wait for EMC0 DRAM_IN_SELF_REFRESH to be correct. */ }
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while (((EMC1_EMC_STATUS_0 >> 8) & 3) != num_populated_devices) { /* Wait for EMC1 DRAM_IN_SELF_REFRESH to be correct. */ }
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}
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53
exosphere/bpmpfw/src/emc.h
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53
exosphere/bpmpfw/src/emc.h
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#ifndef EXOSPHERE_BPMPFW_EMC_H
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#define EXOSPHERE_BPMPFW_EMC_H
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#include <stdint.h>
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#define EMC_BASE (0x7001B000)
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#define EMC0_BASE (0x7001E000)
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#define EMC1_BASE (0x7001F000)
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#define MAKE_EMC_REG(ofs) ((*((volatile uint32_t *)(EMC_BASE + ofs))))
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#define MAKE_EMC0_REG(ofs) ((*((volatile uint32_t *)(EMC0_BASE + ofs))))
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#define MAKE_EMC1_REG(ofs) ((*((volatile uint32_t *)(EMC1_BASE + ofs))))
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#define EMC_CFG_0 MAKE_EMC_REG(0x00C)
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#define EMC_ADR_CFG_0 MAKE_EMC_REG(0x10)
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#define EMC_TIMING_CONTROL_0 MAKE_EMC_REG(0x028)
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#define EMC_SELF_REF_0 MAKE_EMC_REG(0x0E0)
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#define EMC_MRW_0 MAKE_EMC_REG(0x0E8)
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#define EMC_FBIO_CFG5_0 MAKE_EMC_REG(0x104)
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#define EMC_MRW3_0 MAKE_EMC_REG(0x138)
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#define EMC_AUTO_CAL_CONFIG_0 MAKE_EMC_REG(0x2A4)
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#define EMC_REQ_CTRL_0 MAKE_EMC_REG(0x2B0)
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#define EMC_EMC_STATUS_0 MAKE_EMC_REG(0x2B4)
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#define EMC0_EMC_STATUS_0 MAKE_EMC0_REG(0x2B4)
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#define EMC1_EMC_STATUS_0 MAKE_EMC1_REG(0x2B4)
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#define EMC_CFG_DIG_DLL_0 MAKE_EMC_REG(0x2BC)
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#define EMC0_CFG_DIG_DLL_0 MAKE_EMC0_REG(0x2BC)
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#define EMC1_CFG_DIG_DLL_0 MAKE_EMC1_REG(0x2BC)
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#define EMC_ZCAL_INTERVAL_0 MAKE_EMC_REG(0x2E0)
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#define EMC_PMC_SCRATCH3_0 MAKE_EMC_REG(0x448)
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#define EMC_FBIO_CFG7_0 MAKE_EMC_REG(0x584)
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void emc_put_dram_in_self_refresh_mode(void);
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#endif
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83
exosphere/bpmpfw/src/i2c.c
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83
exosphere/bpmpfw/src/i2c.c
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#include "i2c.h"
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#include "timer.h"
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/* Load hardware config for I2C4. */
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void i2c_load_config(void) {
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/* Set MSTR_CONFIG_LOAD, TIMEOUT_CONFIG_LOAD, undocumented bit. */
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I2C_I2C_CONFIG_LOAD_0 = 0x25;
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/* Wait a bit for master config to be loaded. */
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for (unsigned int i = 0; i < 20; i++) {
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timer_wait(1);
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if (!(I2C_I2C_CONFIG_LOAD_0 & 1)) {
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break;
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}
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}
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}
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/* Initialize I2C4. */
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void i2c_init(void) {
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/* Setup divisor, and clear the bus. */
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I2C_I2C_CLK_DIVISOR_REGISTER_0 = 0x50001;
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I2C_I2C_BUS_CLEAR_CONFIG_0 = 0x90003;
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/* Load hardware configuration. */
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i2c_load_config();
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/* Wait a while until BUS_CLEAR_DONE is set. */
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for (unsigned int i = 0; i < 10; i++) {
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timer_wait(20000);
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if (I2C_INTERRUPT_STATUS_REGISTER_0 & 0x800) {
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break;
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}
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}
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/* Read the BUS_CLEAR_STATUS. Result doesn't matter. */
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uint32_t unused_clear_status = I2C_I2C_BUS_CLEAR_STATUS_0;
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/* Read and set the Interrupt Status. */
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uint32_t int_status = I2C_INTERRUPT_STATUS_REGISTER_0;
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I2C_INTERRUPT_STATUS_REGISTER_0 = int_status;
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}
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/* Writes a value to an i2c device. */
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int i2c_write(unsigned int device, uint32_t val, unsigned int num_bytes) {
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if (num_bytes > 4) {
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return 0;
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}
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/* Set device for 7-bit mode. */
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I2C_I2C_CMD_ADDR0_0 = device << 1;
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/* Load in data to write. */
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I2C_I2C_CMD_DATA1_0 = val;
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/* Set config with LENGTH = num_bytes, NEW_MASTER_FSM, DEBOUNCE_CNT = 4T. */
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I2C_I2C_CNFG_0 = ((num_bytes << 1) - 2) | 0x2800;
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i2c_load_config();
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/* Config |= SEND; */
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I2C_I2C_CNFG_0 |= 0x200;
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while (I2C_I2C_STATUS_0 & 0x100) {
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/* Wait until not busy. */
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}
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/* Return CMD1_STAT == SL1_XFER_SUCCESSFUL. */
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return (I2C_I2C_STATUS_0 & 7) == 0;
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}
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/* Writes a byte val to reg for given device. */
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int i2c_send_byte_command(unsigned int device, unsigned char reg, unsigned char b) {
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uint32_t val = (reg) | (b << 8);
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/* Write 1 byte (reg) + 1 byte (value) */
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return i2c_write(device, val, 2);
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}
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/* Actually reset device 27. This might turn off the screen? */
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int i2c_send_reset_cmd(void) {
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/* Write 00 to Device 27 Reg 00. */
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return i2c_send_byte_command(27, 0, 0);
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}
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34
exosphere/bpmpfw/src/i2c.h
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34
exosphere/bpmpfw/src/i2c.h
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#ifndef EXOSPHERE_BPMPFW_I2C_H
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#define EXOSPHERE_BPMPFW_I2C_H
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#include <stdint.h>
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/* I2C_BASE = I2C4. */
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#define I2C_BASE (0x7000D000)
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#define MAKE_I2C_REG(ofs) ((*((volatile uint32_t *)(I2C_BASE + ofs))))
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#define I2C_I2C_CNFG_0 MAKE_I2C_REG(0x000)
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#define I2C_I2C_CMD_ADDR0_0 MAKE_I2C_REG(0x004)
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#define I2C_I2C_CMD_DATA1_0 MAKE_I2C_REG(0x00C)
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#define I2C_I2C_STATUS_0 MAKE_I2C_REG(0x01C)
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#define I2C_INTERRUPT_STATUS_REGISTER_0 MAKE_I2C_REG(0x068)
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#define I2C_I2C_CLK_DIVISOR_REGISTER_0 MAKE_I2C_REG(0x06C)
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#define I2C_I2C_BUS_CLEAR_CONFIG_0 MAKE_I2C_REG(0x084)
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#define I2C_I2C_BUS_CLEAR_STATUS_0 MAKE_I2C_REG(0x088)
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#define I2C_I2C_CONFIG_LOAD_0 MAKE_I2C_REG(0x08C)
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void i2c_init(void);
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int i2c_send_reset_cmd(void);
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#endif
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105
exosphere/bpmpfw/src/lp0.c
Normal file
105
exosphere/bpmpfw/src/lp0.c
Normal file
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#include <stdint.h>
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#include "lp0.h"
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#include "i2c.h"
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#include "pmc.h"
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#include "emc.h"
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#include "timer.h"
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#define CACHE_CTRL (*((volatile uint32_t *)0x50040000))
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#define PRI_ICTLR_COP_IER_CLR_0 (*((volatile uint32_t *)0x60004038))
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#define SEC_ICTLR_COP_IER_CLR_0 (*((volatile uint32_t *)0x60004138))
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#define TRI_ICTLR_COP_IER_CLR_0 (*((volatile uint32_t *)0x60004238))
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#define QUAD_ICTLR_COP_IER_CLR_0 (*((volatile uint32_t *)0x60004338))
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#define PENTA_ICTLR_COP_IER_CLR_0 (*((volatile uint32_t *)0x60004438))
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#define HEXA_ICTLR_COP_IER_CLR_0 (*((volatile uint32_t *)0x60004538))
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void reboot(void) {
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/* Write MAIN_RST */
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APBDEV_PMC_CNTRL_0 = 0x10;
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while (1) {
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/* Wait for reboot. */
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}
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}
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void set_pmc_dpd_io_pads(void) {
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/* Read val from EMC_PMC scratch, configure accordingly. */
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uint32_t emc_pmc_val = EMC_PMC_SCRATCH3_0;
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APBDEV_PMC_DDR_CNTRL_0 = emc_pmc_val & 0x7FFFF;
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if (emc_pmc_val & 0x40000000) {
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APBDEV_PMC_WEAK_BIAS_0 = 0x7FFF0000;
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}
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/* Request to put pads in Deep Power Down. */
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APBDEV_PMC_IO_DPD3_REQ_0 = 0x8FFFFFFF;
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while (APBDEV_PMC_IO_DPD3_STATUS_0 != 0xFFFFFFF) { /* Wait a while. */ }
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spinlock_wait(32);
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APBDEV_PMC_IO_DPD4_REQ_0 = 0x8FFFFFFF;
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while (APBDEV_PMC_IO_DPD4_STATUS_0 != 0xFFF1FFF) { /* Wait a while. */ }
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spinlock_wait(32);
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}
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void lp0_entry_main(void) {
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/* Disable the BPMP Cache. */
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CACHE_CTRL |= 0xC00;
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/* Wait until the CPU Rail is turned off. */
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while (APBDEV_PMC_PWRGATE_STATUS_0 & 1) { /* Wait for TrustZone to finish. */ }
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/* Clamp the CPU Rail. */
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APBDEV_PMC_SET_SW_CLAMP_0 |= 0x1;
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while (!(APBDEV_PMC_CLAMP_STATUS_0 & 1)) { /* Wait for CPU Rail to be clamped. */ }
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/* Waste some time. */
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spinlock_wait(10);
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/* Reset device 27 over I2C, then wait a while. */
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i2c_init();
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i2c_send_reset_cmd();
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timer_wait(700);
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/* Clear Interrupt Enable for BPMP in all ICTLRs. */
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PRI_ICTLR_COP_IER_CLR_0 = 0xFFFFFFFF;
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SEC_ICTLR_COP_IER_CLR_0 = 0xFFFFFFFF;
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TRI_ICTLR_COP_IER_CLR_0 = 0xFFFFFFFF;
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QUAD_ICTLR_COP_IER_CLR_0 = 0xFFFFFFFF;
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PENTA_ICTLR_COP_IER_CLR_0 = 0xFFFFFFFF;
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HEXA_ICTLR_COP_IER_CLR_0 = 0xFFFFFFFF;
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/* Write EMC's DRAM op into PMC scratch. */
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if ((EMC_FBIO_CFG5_0 & 3) != 1) {
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/* If DRAM_TYPE != LPDDR4, something's gone wrong. Reboot. */
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reboot();
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}
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/* Write MRW3_OP into scratch. */
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APBDEV_PMC_SCRATCH18_0 = (APBDEV_PMC_SCRATCH18_0 & 0xFFFFFF3F) | (EMC_MRW3_0 & 0xC0);
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uint32_t mrw3_op = ((EMC_MRW3_0 & 0xC0) << 8) | (EMC_MRW3_0 & 0xC0);
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APBDEV_PMC_SCRATCH12_0 = (APBDEV_PMC_SCRATCH12_0 & 0xFFFF3F3F) | mrw3_op;
|
||||
APBDEV_PMC_SCRATCH13_0 = (APBDEV_PMC_SCRATCH13_0 & 0xFFFF3F3F) | mrw3_op;
|
||||
|
||||
/* Ready DRAM for deep sleep. */
|
||||
emc_put_dram_in_self_refresh_mode();
|
||||
|
||||
/* Setup LPDDR MRW based on device config. */
|
||||
EMC_MRW_0 = 0x88110000;
|
||||
if (EMC_ADR_CFG_0 & 1) {
|
||||
EMC_MRW_0 = 0x48110000;
|
||||
}
|
||||
|
||||
/* Put IO pads in Deep Power Down. */
|
||||
set_pmc_dpd_io_pads();
|
||||
|
||||
/* Enable pad sampling during deep sleep. */
|
||||
APBDEV_PMC_DPD_SAMPLE_0 |= 1;
|
||||
|
||||
/* Waste some more time. */
|
||||
spinlock_wait(0x128);
|
||||
|
||||
/* Enter deep sleep. */
|
||||
APBDEV_PMC_DPD_ENABLE_0 |= 1;
|
||||
|
||||
while (1) { /* Wait until we're asleep. */ }
|
||||
}
|
||||
|
||||
|
8
exosphere/bpmpfw/src/lp0.h
Normal file
8
exosphere/bpmpfw/src/lp0.h
Normal file
|
@ -0,0 +1,8 @@
|
|||
#ifndef EXOSPHERE_BPMPFW_LP0_H
|
||||
#define EXOSPHERE_BPMPFW_LP0_H
|
||||
|
||||
void lp0_entry_main(void);
|
||||
|
||||
void reboot(void);
|
||||
|
||||
#endif
|
37
exosphere/bpmpfw/src/pmc.h
Normal file
37
exosphere/bpmpfw/src/pmc.h
Normal file
|
@ -0,0 +1,37 @@
|
|||
#ifndef EXOSPHERE_BPMPFW_PMC_H
|
||||
#define EXOSPHERE_BPMPFW_PMC_H
|
||||
|
||||
#include <stdint.h>
|
||||
|
||||
#define PMC_BASE (0x7000E400)
|
||||
|
||||
#define MAKE_PMC_REG(ofs) ((*((volatile uint32_t *)(PMC_BASE + ofs))))
|
||||
|
||||
#define APBDEV_PMC_CNTRL_0 MAKE_PMC_REG(0x000)
|
||||
|
||||
#define APBDEV_PMC_DPD_SAMPLE_0 MAKE_PMC_REG(0x020)
|
||||
|
||||
#define APBDEV_PMC_DPD_ENABLE_0 MAKE_PMC_REG(0x024)
|
||||
|
||||
#define APBDEV_PMC_CLAMP_STATUS_0 MAKE_PMC_REG(0x02C)
|
||||
|
||||
#define APBDEV_PMC_PWRGATE_STATUS_0 MAKE_PMC_REG(0x038)
|
||||
|
||||
#define APBDEV_PMC_SCRATCH12_0 MAKE_PMC_REG(0x080)
|
||||
#define APBDEV_PMC_SCRATCH13_0 MAKE_PMC_REG(0x084)
|
||||
#define APBDEV_PMC_SCRATCH18_0 MAKE_PMC_REG(0x098)
|
||||
|
||||
|
||||
#define APBDEV_PMC_WEAK_BIAS_0 MAKE_PMC_REG(0x2C8)
|
||||
|
||||
#define APBDEV_PMC_IO_DPD3_REQ_0 MAKE_PMC_REG(0x45C)
|
||||
#define APBDEV_PMC_IO_DPD3_STATUS_0 MAKE_PMC_REG(0x460)
|
||||
|
||||
#define APBDEV_PMC_IO_DPD4_REQ_0 MAKE_PMC_REG(0x464)
|
||||
#define APBDEV_PMC_IO_DPD4_STATUS_0 MAKE_PMC_REG(0x468)
|
||||
|
||||
#define APBDEV_PMC_SET_SW_CLAMP_0 MAKE_PMC_REG(0x47C)
|
||||
|
||||
#define APBDEV_PMC_DDR_CNTRL_0 MAKE_PMC_REG(0x4E4)
|
||||
|
||||
#endif
|
28
exosphere/bpmpfw/src/start.s
Normal file
28
exosphere/bpmpfw/src/start.s
Normal file
|
@ -0,0 +1,28 @@
|
|||
.section .text.start
|
||||
.align 4
|
||||
.global _start
|
||||
_start:
|
||||
b crt0
|
||||
.global _reboot
|
||||
b reboot
|
||||
|
||||
.global crt0
|
||||
.type crt0, %function
|
||||
crt0:
|
||||
@ setup to call lp0_entry_main
|
||||
msr cpsr_f, #0xC0
|
||||
msr cpsr_cf, #0xD3
|
||||
ldr sp, =__stack_top__
|
||||
ldr lr, =reboot
|
||||
bl lp0_entry_main
|
||||
infloop:
|
||||
b infloop
|
||||
|
||||
|
||||
.global spinlock_wait
|
||||
.type spinlock_wait, %function
|
||||
spinlock_wait:
|
||||
sub r0, r0, #1
|
||||
cmp r0, #0
|
||||
bgt spinlock_wait
|
||||
bx lr
|
15
exosphere/bpmpfw/src/timer.h
Normal file
15
exosphere/bpmpfw/src/timer.h
Normal file
|
@ -0,0 +1,15 @@
|
|||
#ifndef EXOSPHERE_BPMPFW_TIMER_H
|
||||
#define EXOSPHERE_BPMPFW_TIMER_H
|
||||
|
||||
#define TIMERUS_CNTR_1US_0 (*((volatile uint32_t *)(0x60005010)))
|
||||
|
||||
static inline void timer_wait(uint32_t microseconds) {
|
||||
uint32_t old_time = TIMERUS_CNTR_1US_0;
|
||||
while (TIMERUS_CNTR_1US_0 - old_time <= microseconds) {
|
||||
/* Spin-lock. */
|
||||
}
|
||||
}
|
||||
|
||||
void spinlock_wait(uint32_t count);
|
||||
|
||||
#endif
|
Loading…
Reference in a new issue