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__attribute__((always_inline))
static inline void print_int8(volatile char *uart, unsigned x)
{
*uart = ((x >> 4) & 0xf) + '0';
*uart = ((x >> 0) & 0xf) + '0';
}
__attribute__((always_inline))
static inline void print_addr(volatile char *uart, unsigned x, unsigned y,
unsigned z)
{
*uart = '(';
print_int8(uart, x);
*uart = ',';
*uart = ' ';
print_int8(uart, y);
*uart = ',';
*uart = ' ';
print_int8(uart, z);
*uart = ')';
*uart = '\n';
}
__attribute__((always_inline))
static inline unsigned wrap(unsigned x, unsigned X)
{
return x + 1 >= X ? 0 : x + 1;
}
__attribute__((always_inline))
static inline unsigned next_idx(unsigned x, unsigned y, unsigned z, unsigned X,
unsigned Y, unsigned Z)
{
unsigned zi = wrap(z, Z);
unsigned yi = zi < z ? wrap(y, Y) : y;
unsigned xi = yi < y ? wrap(x, X) : x;
return (xi << 16) | (yi << 8) | zi;
}
void _start(unsigned x, unsigned y, unsigned z, unsigned X, unsigned Y,
unsigned Z)
{
volatile char *uart = (char *)4096;
/* x = 1ULL << 32, y = 1ULL << 40, z = 1ULL << 48 I guess */
volatile unsigned *control = (unsigned *)(1ULL << 48);
if (x == 0 && y == 0 && z == 2) {
goto do_work;
} else {
while (*control != ((x << 16) | (y << 8) | z)) {}
}
do_work:
print_addr(uart, x, y, z);
*control = next_idx(x, y, z, X, Y, Z);
if (x == X - 1 && y == Y - 1 && z == Z - 1)
asm ("ebreak");
/* otherwise just loop */
while (1) {}
}
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