/*
* This file is part of the Pico Keys SDK distribution (https://github.com/polhenarejos/pico-keys-sdk).
* Copyright (c) 2022 Pol Henarejos.
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU Affero General Public License as published by
* the Free Software Foundation, version 3.
*
* This program 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
* Affero General Public License for more details.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see .
*/
#include
#include
#include
#if defined(PICO_PLATFORM)
#include "pico/stdlib.h"
#include "hwrng.h"
#include "bsp/board.h"
#include "pico/rand.h"
#elif defined(ESP_PLATFORM)
#include "bootloader_random.h"
#include "esp_random.h"
#include "esp_compat.h"
#else
#include
#include
#include
#include "board.h"
#endif
void hwrng_start() {
#if defined(ENABLE_EMULATION)
srand(time(0));
#elif defined(ESP_PLATFORM)
bootloader_random_enable();
#endif
}
static uint64_t random_word = 0xcbf29ce484222325;
static uint8_t ep_round = 0;
static void ep_init() {
random_word = 0xcbf29ce484222325;
ep_round = 0;
}
/* Here, we assume a little endian architecture. */
static int ep_process() {
if (ep_round == 0) {
ep_init();
}
uint64_t word = 0x0;
#if defined(PICO_PLATFORM)
word = get_rand_64();
#elif defined(ESP_PLATFORM)
esp_fill_random((uint8_t *)&word, sizeof(word));
#else
word = rand();
word <<= 32;
word |= rand();
#endif
random_word ^= word ^ board_millis();
random_word *= 0x00000100000001B3;
if (++ep_round == 8) {
ep_round = 0;
return 2; //2 words
}
return 0;
}
struct rng_rb {
uint32_t *buf;
uint8_t head, tail;
uint8_t size;
unsigned int full : 1;
unsigned int empty : 1;
};
static void rb_init(struct rng_rb *rb, uint32_t *p, uint8_t size) {
rb->buf = p;
rb->size = size;
rb->head = rb->tail = 0;
rb->full = 0;
rb->empty = 1;
}
static void rb_add(struct rng_rb *rb, uint32_t v) {
rb->buf[rb->tail++] = v;
if (rb->tail == rb->size) {
rb->tail = 0;
}
if (rb->tail == rb->head) {
rb->full = 1;
}
rb->empty = 0;
}
static uint32_t rb_del(struct rng_rb *rb) {
uint32_t v = rb->buf[rb->head++];
if (rb->head == rb->size) {
rb->head = 0;
}
if (rb->head == rb->tail) {
rb->empty = 1;
}
rb->full = 0;
return v;
}
static struct rng_rb the_ring_buffer;
void *neug_task() {
struct rng_rb *rb = &the_ring_buffer;
int n;
if ((n = ep_process())) {
int i;
const uint32_t *vp = (const uint32_t *) &random_word;
for (i = 0; i < n; i++) {
rb_add(rb, *vp++);
if (rb->full) {
break;
}
}
}
return NULL;
}
void neug_init(uint32_t *buf, uint8_t size) {
struct rng_rb *rb = &the_ring_buffer;
rb_init(rb, buf, size);
hwrng_start();
ep_init();
}
void neug_flush(void) {
struct rng_rb *rb = &the_ring_buffer;
while (!rb->empty) {
rb_del(rb);
}
}
uint32_t neug_get() {
struct rng_rb *rb = &the_ring_buffer;
uint32_t v;
while (rb->empty) {
neug_task();
}
v = rb_del(rb);
return v;
}
void neug_wait_full() {
struct rng_rb *rb = &the_ring_buffer;
#ifdef ESP_PLATFORM
uint8_t core = xTaskGetCurrentTaskHandle() == hcore1 ? 1 : 0;
#elif defined(PICO_PLATFORM)
uint core = get_core_num();
#endif
while (!rb->full) {
#if defined(PICO_PLATFORM) || defined(ESP_PLATFORM)
if (core == 1) {
sleep_ms(1);
}
else
#endif
neug_task();
}
}