/* TAGS: min c tso */ /* VERIFY_OPTS: --relaxed-memory tso */ /* CC_OPTS: */ /* this test is derived from the paper x86-TSO: A Rigorous and Usable Programmer’s Model for x86 Multiprocessors by Peter Sewell, Susmit Sarkar, Scott Owens, Francesco Zappa Nardelli, and Magnus O. Myreen; URL: https://www.cl.cam.ac.uk/~pes20/weakmemory/ */ #include #include volatile int x, y; volatile int rx, ry; volatile int lrx, lry; // V: x0y0 CC_OPT: -DCHECK=0 // V: x0y1 CC_OPT: -DCHECK=1 // V: x1y0 CC_OPT: -DCHECK=2 // V: x1y1 CC_OPT: -DCHECK=3 #ifndef CHECK #define CHECK 0 #endif #define REACH( X ) assert( !(X) ) void *t1( void *_ ) { x = 1; ry = y; lrx = x; return NULL; } void *t2( void *_ ) { y = 1; rx = x; lry = y; return NULL; } int main() { pthread_t t1t; pthread_create( &t1t, NULL, &t1, NULL ); t2( NULL ); pthread_join( t1t, NULL ); assert( lrx == 1 ); assert( lry == 1 ); switch ( CHECK ) { default: assert( !"please define CHECK to be 0, 1, 2, or 3" ); break; case 0: REACH( rx == 0 && ry == 0 ); /* ERR_x0y0 */ break; case 1: REACH( rx == 0 && ry == 1 ); /* ERR_x0y1 */ break; case 2: REACH( rx == 1 && ry == 0 ); /* ERR_x1y0 */ break; case 3: REACH( rx == 1 && ry == 1 ); /* ERR_x1y1 */ break; } }