82 |
|
// Otherwise, use Direct Addressing mode if NATMEM_OFFSET is set |
83 |
|
#if !defined(EMULATED_PPC) |
84 |
|
#define REAL_ADDRESSING 1 |
85 |
< |
#elif defined(__CYGWIN__) |
86 |
< |
#define DIRECT_ADDRESSING 1 |
87 |
< |
#define DIRECT_ADDRESSING_HACK 1 |
88 |
< |
/* |
89 |
< |
The following address translation functions were empirically |
90 |
< |
determined on a Windows XP system running Cygwin 1.5.12-1 so |
91 |
< |
that RAM size can be maximized (up to 960 MB) and avoiding |
92 |
< |
the use of a TLB. This also takes into account reduced address |
93 |
< |
space available when the Cygwin runtime is used. |
94 |
< |
*/ |
95 |
< |
#define DIRECT_ADDRESSING_VIRT2PHYS(ADDR) \ |
96 |
< |
((ADDR) + (((ADDR) < 0x41000000) ? 0x39000000 : 0xcf800000)) |
97 |
< |
#define DIRECT_ADDRESSING_PHYS2VIRT(ADDR) \ |
98 |
< |
((ADDR) - (((ADDR) >= 0x39000000) ? 0x39000000 : 0xcf800000)) |
85 |
> |
#include "ppc_asm.tmpl" |
86 |
|
#elif defined(NATMEM_OFFSET) |
87 |
|
#define DIRECT_ADDRESSING 1 |
88 |
|
#else |
89 |
|
#define REAL_ADDRESSING 1 |
90 |
|
#endif |
91 |
|
|
92 |
+ |
// Always use the complete non-stubs Ethernet driver |
93 |
+ |
#if DIRECT_ADDRESSING |
94 |
+ |
#define USE_ETHER_FULL_DRIVER 1 |
95 |
+ |
#endif |
96 |
+ |
|
97 |
|
#define POWERPC_ROM 1 |
98 |
|
|
99 |
|
#if EMULATED_PPC |
279 |
|
} |
280 |
|
#endif |
281 |
|
|
282 |
< |
/* FIXME: SheepShaver occasionnally hangs with those locks */ |
291 |
< |
#if 0 && (defined(__i386__) || defined(__x86_64__)) |
282 |
> |
#if defined(__i386__) || defined(__x86_64__) |
283 |
|
#define HAVE_TEST_AND_SET 1 |
284 |
|
static inline int testandset(volatile int *p) |
285 |
|
{ |
362 |
|
|
363 |
|
static const spinlock_t SPIN_LOCK_UNLOCKED = 0; |
364 |
|
|
365 |
< |
#if HAVE_TEST_AND_SET |
365 |
> |
#if defined(HAVE_TEST_AND_SET) && defined(HAVE_PTHREADS) |
366 |
> |
// There is nothing to lock if we are not in an multithreaded environment |
367 |
|
#define HAVE_SPINLOCKS 1 |
368 |
|
static inline void spin_lock(spinlock_t *lock) |
369 |
|
{ |
401 |
|
typedef struct timeval tm_time_t; |
402 |
|
#endif |
403 |
|
|
404 |
+ |
/* Define codes for all the float formats that we know of. |
405 |
+ |
* Though we only handle IEEE format. */ |
406 |
+ |
#define UNKNOWN_FLOAT_FORMAT 0 |
407 |
+ |
#define IEEE_FLOAT_FORMAT 1 |
408 |
+ |
#define VAX_FLOAT_FORMAT 2 |
409 |
+ |
#define IBM_FLOAT_FORMAT 3 |
410 |
+ |
#define C4X_FLOAT_FORMAT 4 |
411 |
+ |
|
412 |
+ |
// High-precision timing |
413 |
+ |
#if defined(HAVE_PTHREADS) && defined(HAVE_CLOCK_NANOSLEEP) |
414 |
+ |
#define PRECISE_TIMING 1 |
415 |
+ |
#define PRECISE_TIMING_POSIX 1 |
416 |
+ |
#endif |
417 |
+ |
|
418 |
|
// Timing functions |
419 |
|
extern uint64 GetTicks_usec(void); |
420 |
|
extern void Delay_usec(uint32 usec); |
421 |
|
|
422 |
< |
#if defined(HAVE_PTHREADS) || (defined(__linux__) && defined(__powerpc__)) |
422 |
> |
#ifdef HAVE_PTHREADS |
423 |
|
// Setup pthread attributes |
424 |
|
extern void Set_pthread_attr(pthread_attr_t *attr, int priority); |
425 |
|
#endif |
433 |
|
} rgb_color; |
434 |
|
|
435 |
|
// X11 display fast locks |
436 |
< |
#ifdef HAVE_SPINLOCKS |
431 |
< |
#define X11_LOCK_TYPE spinlock_t |
432 |
< |
#define X11_LOCK_INIT SPIN_LOCK_UNLOCKED |
433 |
< |
#define XDisplayLock() spin_lock(&x_display_lock) |
434 |
< |
#define XDisplayUnlock() spin_unlock(&x_display_lock) |
435 |
< |
#elif defined(HAVE_PTHREADS) |
436 |
> |
#if defined(HAVE_PTHREADS) |
437 |
|
#define X11_LOCK_TYPE pthread_mutex_t |
438 |
|
#define X11_LOCK_INIT PTHREAD_MUTEX_INITIALIZER |
439 |
|
#define XDisplayLock() pthread_mutex_lock(&x_display_lock); |
440 |
|
#define XDisplayUnlock() pthread_mutex_unlock(&x_display_lock); |
441 |
+ |
#elif defined(HAVE_SPINLOCKS) |
442 |
+ |
#define X11_LOCK_TYPE spinlock_t |
443 |
+ |
#define X11_LOCK_INIT SPIN_LOCK_UNLOCKED |
444 |
+ |
#define XDisplayLock() spin_lock(&x_display_lock) |
445 |
+ |
#define XDisplayUnlock() spin_unlock(&x_display_lock) |
446 |
|
#else |
447 |
|
#define XDisplayLock() |
448 |
|
#define XDisplayUnlock() |