wolfBoot/test-app/app_tegra234.c

116 lines
3.6 KiB
C

/* app_tegra234.c
*
* Test bare-metal boot application
*
* Copyright (C) 2026 wolfSSL Inc.
*
* This file is part of wolfBoot.
*
* wolfBoot is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 3 of the License, or
* (at your option) any later version.
*
* wolfBoot is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1335, USA
*/
#include <stdint.h>
#include "wolfboot/wolfboot.h"
#ifdef TARGET_tegra234
#include "hal/tegra234.h"
/* Same TCU console the bootloader chain and wolfBoot use (see hal/tegra234.h).
* The MMU is off here, so the mailbox register is driven directly. One byte
* per message keeps this payload trivial. */
#define TCU_TX_MBOX ((volatile uint32_t*)(uintptr_t)TEGRA_TCU_TX_MBOX)
/* Bounded spin: no timer is set up in this payload, so a plain counter is
* enough to keep a stalled SPE from hanging the PoC mid-message. */
#define TCU_TX_SPIN_MAX 1000000
static void tcu_putc(char c)
{
unsigned int spin = 0;
while ((*TCU_TX_MBOX & TEGRA_TCU_MBOX_FULL) != 0) {
if (++spin > TCU_TX_SPIN_MAX)
return; /* drop the character rather than stall forever */
}
*TCU_TX_MBOX = TEGRA_TCU_MBOX_FULL |
(1u << TEGRA_TCU_MBOX_NBYTES_SHIFT) | (uint8_t)c;
}
static void tcu_puts(const char* s)
{
while (*s != '\0') {
if (*s == '\n')
tcu_putc('\r');
tcu_putc(*s++);
}
}
static void tcu_puthex(uint64_t v)
{
int i;
tcu_puts("0x");
for (i = 60; i >= 0; i -= 4)
tcu_putc("0123456789abcdef"[(v >> i) & 0xF]);
}
/* FDT magic 0xd00dfeed, stored big-endian -> reads as 0xedfe0dd0 here */
#define FDT_MAGIC_LE 0xedfe0dd0u
/* The DTB pointer arrives as the first argument: wolfBoot's el2_to_el1_boot()
* leaves it in x0 per the arm64 boot protocol, and boot_arm64_start.S forwards
* it to main per AAPCS. Taking it as a parameter rather than reading x0 with
* inline asm keeps this correct at any optimization level. */
void __attribute__((section(".boot"))) main(uint64_t dtb) {
uint64_t el;
__asm__ volatile("mrs %0, CurrentEL" : "=r"(el));
el >>= 2;
tcu_puts("\n*** wolfBoot Tegra234 PoC payload: verified + booted ***\n");
/* Prove the EL2->EL1 drop happened, and that a valid FDT arrived in x0:
* the full arm64 boot contract for a signed payload. */
tcu_puts(" CurrentEL = EL");
tcu_putc('0' + (char)(el & 3));
tcu_puts("\n");
tcu_puts(" DTB (x0) = ");
tcu_puthex(dtb);
tcu_puts("\n DTB magic = ");
/* Range- and alignment-check before dereferencing: with the MMU off this
* is Device memory, where an unaligned access faults. A stray pointer
* should be reported, not taken. */
if (dtb < TEGRA234_DRAM_BASE || dtb > (TEGRA234_DRAM_END - 4) ||
(dtb & 0x3) != 0) {
tcu_puts("(pointer not in DRAM or misaligned)\n");
}
else if (*((volatile uint32_t*)(uintptr_t)dtb) == FDT_MAGIC_LE) {
tcu_puts("OK (0xd00dfeed)\n");
}
else {
tcu_puthex(*((volatile uint32_t*)(uintptr_t)dtb));
tcu_puts(" (BAD)\n");
}
tcu_puts("*** PoC complete: parked ***\n");
/* Wait for reboot */
while(1)
;
}
#endif /** TARGET_tegra234 **/