1c482cb11SRichard Henderson /* 2c482cb11SRichard Henderson * Atomic helper templates 3c482cb11SRichard Henderson * Included from tcg-runtime.c and cputlb.c. 4c482cb11SRichard Henderson * 5c482cb11SRichard Henderson * Copyright (c) 2016 Red Hat, Inc 6c482cb11SRichard Henderson * 7c482cb11SRichard Henderson * This library is free software; you can redistribute it and/or 8c482cb11SRichard Henderson * modify it under the terms of the GNU Lesser General Public 9c482cb11SRichard Henderson * License as published by the Free Software Foundation; either 10fb0343d5SThomas Huth * version 2.1 of the License, or (at your option) any later version. 11c482cb11SRichard Henderson * 12c482cb11SRichard Henderson * This library is distributed in the hope that it will be useful, 13c482cb11SRichard Henderson * but WITHOUT ANY WARRANTY; without even the implied warranty of 14c482cb11SRichard Henderson * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 15c482cb11SRichard Henderson * Lesser General Public License for more details. 16c482cb11SRichard Henderson * 17c482cb11SRichard Henderson * You should have received a copy of the GNU Lesser General Public 18c482cb11SRichard Henderson * License along with this library; if not, see <http://www.gnu.org/licenses/>. 19c482cb11SRichard Henderson */ 20c482cb11SRichard Henderson 21e6d86bedSEmilio G. Cota #include "qemu/plugin.h" 22d071f4cdSEmilio G. Cota #include "trace/mem.h" 23d071f4cdSEmilio G. Cota 247ebee43eSRichard Henderson #if DATA_SIZE == 16 257ebee43eSRichard Henderson # define SUFFIX o 267ebee43eSRichard Henderson # define DATA_TYPE Int128 277ebee43eSRichard Henderson # define BSWAP bswap128 28d071f4cdSEmilio G. Cota # define SHIFT 4 297ebee43eSRichard Henderson #elif DATA_SIZE == 8 30c482cb11SRichard Henderson # define SUFFIX q 319ef0c6d6SRichard Henderson # define DATA_TYPE aligned_uint64_t 329ef0c6d6SRichard Henderson # define SDATA_TYPE aligned_int64_t 33c482cb11SRichard Henderson # define BSWAP bswap64 34d071f4cdSEmilio G. Cota # define SHIFT 3 35c482cb11SRichard Henderson #elif DATA_SIZE == 4 36c482cb11SRichard Henderson # define SUFFIX l 37c482cb11SRichard Henderson # define DATA_TYPE uint32_t 385507c2bfSRichard Henderson # define SDATA_TYPE int32_t 39c482cb11SRichard Henderson # define BSWAP bswap32 40d071f4cdSEmilio G. Cota # define SHIFT 2 41c482cb11SRichard Henderson #elif DATA_SIZE == 2 42c482cb11SRichard Henderson # define SUFFIX w 43c482cb11SRichard Henderson # define DATA_TYPE uint16_t 445507c2bfSRichard Henderson # define SDATA_TYPE int16_t 45c482cb11SRichard Henderson # define BSWAP bswap16 46d071f4cdSEmilio G. Cota # define SHIFT 1 47c482cb11SRichard Henderson #elif DATA_SIZE == 1 48c482cb11SRichard Henderson # define SUFFIX b 49c482cb11SRichard Henderson # define DATA_TYPE uint8_t 505507c2bfSRichard Henderson # define SDATA_TYPE int8_t 51c482cb11SRichard Henderson # define BSWAP 52d071f4cdSEmilio G. Cota # define SHIFT 0 53c482cb11SRichard Henderson #else 54c482cb11SRichard Henderson # error unsupported data size 55c482cb11SRichard Henderson #endif 56c482cb11SRichard Henderson 57c482cb11SRichard Henderson #if DATA_SIZE >= 4 58c482cb11SRichard Henderson # define ABI_TYPE DATA_TYPE 59c482cb11SRichard Henderson #else 60c482cb11SRichard Henderson # define ABI_TYPE uint32_t 61c482cb11SRichard Henderson #endif 62c482cb11SRichard Henderson 63c482cb11SRichard Henderson /* Define host-endian atomic operations. Note that END is used within 64c482cb11SRichard Henderson the ATOMIC_NAME macro, and redefined below. */ 65c482cb11SRichard Henderson #if DATA_SIZE == 1 66c482cb11SRichard Henderson # define END 67c482cb11SRichard Henderson #elif defined(HOST_WORDS_BIGENDIAN) 68c482cb11SRichard Henderson # define END _be 69c482cb11SRichard Henderson #else 70c482cb11SRichard Henderson # define END _le 71c482cb11SRichard Henderson #endif 72c482cb11SRichard Henderson 73c482cb11SRichard Henderson ABI_TYPE ATOMIC_NAME(cmpxchg)(CPUArchState *env, target_ulong addr, 7448688fafSRichard Henderson ABI_TYPE cmpv, ABI_TYPE newv, 75*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 76c482cb11SRichard Henderson { 77a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 78a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); 79d071f4cdSEmilio G. Cota DATA_TYPE ret; 80f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); 81d071f4cdSEmilio G. Cota 82e6cd4bb5SRichard Henderson #if DATA_SIZE == 16 83e6cd4bb5SRichard Henderson ret = atomic16_cmpxchg(haddr, cmpv, newv); 84e6cd4bb5SRichard Henderson #else 85d73415a3SStefan Hajnoczi ret = qatomic_cmpxchg__nocheck(haddr, cmpv, newv); 86e6cd4bb5SRichard Henderson #endif 87ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 88cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); 89ec603b55SRichard Henderson return ret; 90c482cb11SRichard Henderson } 91c482cb11SRichard Henderson 927ebee43eSRichard Henderson #if DATA_SIZE >= 16 93e6cd4bb5SRichard Henderson #if HAVE_ATOMIC128 9448688fafSRichard Henderson ABI_TYPE ATOMIC_NAME(ld)(CPUArchState *env, target_ulong addr, 95*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 967ebee43eSRichard Henderson { 97a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 98a754f7f3SRichard Henderson PAGE_READ, retaddr); 99a754f7f3SRichard Henderson DATA_TYPE val; 100f3e182b1SRichard Henderson uint16_t info = atomic_trace_ld_pre(env, addr, oi); 101d071f4cdSEmilio G. Cota 102e6cd4bb5SRichard Henderson val = atomic16_read(haddr); 103ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 104cfec3885SEmilio G. Cota atomic_trace_ld_post(env, addr, info); 1057ebee43eSRichard Henderson return val; 1067ebee43eSRichard Henderson } 1077ebee43eSRichard Henderson 10848688fafSRichard Henderson void ATOMIC_NAME(st)(CPUArchState *env, target_ulong addr, ABI_TYPE val, 109*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 1107ebee43eSRichard Henderson { 111a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 112a754f7f3SRichard Henderson PAGE_WRITE, retaddr); 113f3e182b1SRichard Henderson uint16_t info = atomic_trace_st_pre(env, addr, oi); 114d071f4cdSEmilio G. Cota 115e6cd4bb5SRichard Henderson atomic16_set(haddr, val); 116ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 117cfec3885SEmilio G. Cota atomic_trace_st_post(env, addr, info); 1187ebee43eSRichard Henderson } 119e6cd4bb5SRichard Henderson #endif 1207ebee43eSRichard Henderson #else 12148688fafSRichard Henderson ABI_TYPE ATOMIC_NAME(xchg)(CPUArchState *env, target_ulong addr, ABI_TYPE val, 122*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 123c482cb11SRichard Henderson { 124a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 125a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); 126d071f4cdSEmilio G. Cota DATA_TYPE ret; 127f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); 128d071f4cdSEmilio G. Cota 129d73415a3SStefan Hajnoczi ret = qatomic_xchg__nocheck(haddr, val); 130ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 131cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); 132ec603b55SRichard Henderson return ret; 133c482cb11SRichard Henderson } 134c482cb11SRichard Henderson 135c482cb11SRichard Henderson #define GEN_ATOMIC_HELPER(X) \ 136c482cb11SRichard Henderson ABI_TYPE ATOMIC_NAME(X)(CPUArchState *env, target_ulong addr, \ 137*9002ffcbSRichard Henderson ABI_TYPE val, MemOpIdx oi, uintptr_t retaddr) \ 138c482cb11SRichard Henderson { \ 139a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, \ 140a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); \ 141d071f4cdSEmilio G. Cota DATA_TYPE ret; \ 142f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); \ 143d73415a3SStefan Hajnoczi ret = qatomic_##X(haddr, val); \ 144ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; \ 145cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); \ 146ec603b55SRichard Henderson return ret; \ 147ec603b55SRichard Henderson } 148c482cb11SRichard Henderson 149c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_add) 150c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_and) 151c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_or) 152c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_xor) 153c482cb11SRichard Henderson GEN_ATOMIC_HELPER(add_fetch) 154c482cb11SRichard Henderson GEN_ATOMIC_HELPER(and_fetch) 155c482cb11SRichard Henderson GEN_ATOMIC_HELPER(or_fetch) 156c482cb11SRichard Henderson GEN_ATOMIC_HELPER(xor_fetch) 157c482cb11SRichard Henderson 158c482cb11SRichard Henderson #undef GEN_ATOMIC_HELPER 1595507c2bfSRichard Henderson 160a754f7f3SRichard Henderson /* 161a754f7f3SRichard Henderson * These helpers are, as a whole, full barriers. Within the helper, 1625507c2bfSRichard Henderson * the leading barrier is explicit and the trailing barrier is within 1635507c2bfSRichard Henderson * cmpxchg primitive. 164d071f4cdSEmilio G. Cota * 165d071f4cdSEmilio G. Cota * Trace this load + RMW loop as a single RMW op. This way, regardless 166d071f4cdSEmilio G. Cota * of CF_PARALLEL's value, we'll trace just a read and a write. 1675507c2bfSRichard Henderson */ 1685507c2bfSRichard Henderson #define GEN_ATOMIC_HELPER_FN(X, FN, XDATA_TYPE, RET) \ 1695507c2bfSRichard Henderson ABI_TYPE ATOMIC_NAME(X)(CPUArchState *env, target_ulong addr, \ 170*9002ffcbSRichard Henderson ABI_TYPE xval, MemOpIdx oi, uintptr_t retaddr) \ 1715507c2bfSRichard Henderson { \ 172a754f7f3SRichard Henderson XDATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, \ 173a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); \ 1745507c2bfSRichard Henderson XDATA_TYPE cmp, old, new, val = xval; \ 175f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); \ 1765507c2bfSRichard Henderson smp_mb(); \ 177d73415a3SStefan Hajnoczi cmp = qatomic_read__nocheck(haddr); \ 1785507c2bfSRichard Henderson do { \ 1795507c2bfSRichard Henderson old = cmp; new = FN(old, val); \ 180d73415a3SStefan Hajnoczi cmp = qatomic_cmpxchg__nocheck(haddr, old, new); \ 1815507c2bfSRichard Henderson } while (cmp != old); \ 1825507c2bfSRichard Henderson ATOMIC_MMU_CLEANUP; \ 183cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); \ 1845507c2bfSRichard Henderson return RET; \ 1855507c2bfSRichard Henderson } 1865507c2bfSRichard Henderson 1875507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_smin, MIN, SDATA_TYPE, old) 1885507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_umin, MIN, DATA_TYPE, old) 1895507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_smax, MAX, SDATA_TYPE, old) 1905507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_umax, MAX, DATA_TYPE, old) 1915507c2bfSRichard Henderson 1925507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(smin_fetch, MIN, SDATA_TYPE, new) 1935507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(umin_fetch, MIN, DATA_TYPE, new) 1945507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(smax_fetch, MAX, SDATA_TYPE, new) 1955507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(umax_fetch, MAX, DATA_TYPE, new) 1965507c2bfSRichard Henderson 1975507c2bfSRichard Henderson #undef GEN_ATOMIC_HELPER_FN 1987ebee43eSRichard Henderson #endif /* DATA SIZE >= 16 */ 1997ebee43eSRichard Henderson 200c482cb11SRichard Henderson #undef END 201c482cb11SRichard Henderson 202c482cb11SRichard Henderson #if DATA_SIZE > 1 203c482cb11SRichard Henderson 204c482cb11SRichard Henderson /* Define reverse-host-endian atomic operations. Note that END is used 205c482cb11SRichard Henderson within the ATOMIC_NAME macro. */ 206c482cb11SRichard Henderson #ifdef HOST_WORDS_BIGENDIAN 207c482cb11SRichard Henderson # define END _le 208c482cb11SRichard Henderson #else 209c482cb11SRichard Henderson # define END _be 210c482cb11SRichard Henderson #endif 211c482cb11SRichard Henderson 212c482cb11SRichard Henderson ABI_TYPE ATOMIC_NAME(cmpxchg)(CPUArchState *env, target_ulong addr, 21348688fafSRichard Henderson ABI_TYPE cmpv, ABI_TYPE newv, 214*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 215c482cb11SRichard Henderson { 216a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 217a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); 218d071f4cdSEmilio G. Cota DATA_TYPE ret; 219f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); 220d071f4cdSEmilio G. Cota 221e6cd4bb5SRichard Henderson #if DATA_SIZE == 16 222e6cd4bb5SRichard Henderson ret = atomic16_cmpxchg(haddr, BSWAP(cmpv), BSWAP(newv)); 223e6cd4bb5SRichard Henderson #else 224d73415a3SStefan Hajnoczi ret = qatomic_cmpxchg__nocheck(haddr, BSWAP(cmpv), BSWAP(newv)); 225e6cd4bb5SRichard Henderson #endif 226ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 227cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); 228ec603b55SRichard Henderson return BSWAP(ret); 229c482cb11SRichard Henderson } 230c482cb11SRichard Henderson 2317ebee43eSRichard Henderson #if DATA_SIZE >= 16 232e6cd4bb5SRichard Henderson #if HAVE_ATOMIC128 23348688fafSRichard Henderson ABI_TYPE ATOMIC_NAME(ld)(CPUArchState *env, target_ulong addr, 234*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 2357ebee43eSRichard Henderson { 236a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 237a754f7f3SRichard Henderson PAGE_READ, retaddr); 238a754f7f3SRichard Henderson DATA_TYPE val; 239f3e182b1SRichard Henderson uint16_t info = atomic_trace_ld_pre(env, addr, oi); 240d071f4cdSEmilio G. Cota 241e6cd4bb5SRichard Henderson val = atomic16_read(haddr); 242ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 243cfec3885SEmilio G. Cota atomic_trace_ld_post(env, addr, info); 2447ebee43eSRichard Henderson return BSWAP(val); 2457ebee43eSRichard Henderson } 2467ebee43eSRichard Henderson 24748688fafSRichard Henderson void ATOMIC_NAME(st)(CPUArchState *env, target_ulong addr, ABI_TYPE val, 248*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 2497ebee43eSRichard Henderson { 250a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 251a754f7f3SRichard Henderson PAGE_WRITE, retaddr); 252f3e182b1SRichard Henderson uint16_t info = atomic_trace_st_pre(env, addr, oi); 253d071f4cdSEmilio G. Cota 254cfec3885SEmilio G. Cota val = BSWAP(val); 255e6cd4bb5SRichard Henderson atomic16_set(haddr, val); 256ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 257cfec3885SEmilio G. Cota atomic_trace_st_post(env, addr, info); 2587ebee43eSRichard Henderson } 259e6cd4bb5SRichard Henderson #endif 2607ebee43eSRichard Henderson #else 26148688fafSRichard Henderson ABI_TYPE ATOMIC_NAME(xchg)(CPUArchState *env, target_ulong addr, ABI_TYPE val, 262*9002ffcbSRichard Henderson MemOpIdx oi, uintptr_t retaddr) 263c482cb11SRichard Henderson { 264a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, 265a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); 266d071f4cdSEmilio G. Cota ABI_TYPE ret; 267f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); 268d071f4cdSEmilio G. Cota 269d73415a3SStefan Hajnoczi ret = qatomic_xchg__nocheck(haddr, BSWAP(val)); 270ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; 271cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); 272ec603b55SRichard Henderson return BSWAP(ret); 273c482cb11SRichard Henderson } 274c482cb11SRichard Henderson 275c482cb11SRichard Henderson #define GEN_ATOMIC_HELPER(X) \ 276c482cb11SRichard Henderson ABI_TYPE ATOMIC_NAME(X)(CPUArchState *env, target_ulong addr, \ 277*9002ffcbSRichard Henderson ABI_TYPE val, MemOpIdx oi, uintptr_t retaddr) \ 278c482cb11SRichard Henderson { \ 279a754f7f3SRichard Henderson DATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, \ 280a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); \ 281d071f4cdSEmilio G. Cota DATA_TYPE ret; \ 282f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); \ 283d73415a3SStefan Hajnoczi ret = qatomic_##X(haddr, BSWAP(val)); \ 284ec603b55SRichard Henderson ATOMIC_MMU_CLEANUP; \ 285cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); \ 286ec603b55SRichard Henderson return BSWAP(ret); \ 287c482cb11SRichard Henderson } 288c482cb11SRichard Henderson 289c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_and) 290c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_or) 291c482cb11SRichard Henderson GEN_ATOMIC_HELPER(fetch_xor) 292c482cb11SRichard Henderson GEN_ATOMIC_HELPER(and_fetch) 293c482cb11SRichard Henderson GEN_ATOMIC_HELPER(or_fetch) 294c482cb11SRichard Henderson GEN_ATOMIC_HELPER(xor_fetch) 295c482cb11SRichard Henderson 296c482cb11SRichard Henderson #undef GEN_ATOMIC_HELPER 297c482cb11SRichard Henderson 2985507c2bfSRichard Henderson /* These helpers are, as a whole, full barriers. Within the helper, 2995507c2bfSRichard Henderson * the leading barrier is explicit and the trailing barrier is within 3005507c2bfSRichard Henderson * cmpxchg primitive. 301d071f4cdSEmilio G. Cota * 302d071f4cdSEmilio G. Cota * Trace this load + RMW loop as a single RMW op. This way, regardless 303d071f4cdSEmilio G. Cota * of CF_PARALLEL's value, we'll trace just a read and a write. 3045507c2bfSRichard Henderson */ 3055507c2bfSRichard Henderson #define GEN_ATOMIC_HELPER_FN(X, FN, XDATA_TYPE, RET) \ 3065507c2bfSRichard Henderson ABI_TYPE ATOMIC_NAME(X)(CPUArchState *env, target_ulong addr, \ 307*9002ffcbSRichard Henderson ABI_TYPE xval, MemOpIdx oi, uintptr_t retaddr) \ 3085507c2bfSRichard Henderson { \ 309a754f7f3SRichard Henderson XDATA_TYPE *haddr = atomic_mmu_lookup(env, addr, oi, DATA_SIZE, \ 310a754f7f3SRichard Henderson PAGE_READ | PAGE_WRITE, retaddr); \ 3115507c2bfSRichard Henderson XDATA_TYPE ldo, ldn, old, new, val = xval; \ 312f3e182b1SRichard Henderson uint16_t info = atomic_trace_rmw_pre(env, addr, oi); \ 3135507c2bfSRichard Henderson smp_mb(); \ 314d73415a3SStefan Hajnoczi ldn = qatomic_read__nocheck(haddr); \ 3155507c2bfSRichard Henderson do { \ 3165507c2bfSRichard Henderson ldo = ldn; old = BSWAP(ldo); new = FN(old, val); \ 317d73415a3SStefan Hajnoczi ldn = qatomic_cmpxchg__nocheck(haddr, ldo, BSWAP(new)); \ 3185507c2bfSRichard Henderson } while (ldo != ldn); \ 3195507c2bfSRichard Henderson ATOMIC_MMU_CLEANUP; \ 320cfec3885SEmilio G. Cota atomic_trace_rmw_post(env, addr, info); \ 3215507c2bfSRichard Henderson return RET; \ 3225507c2bfSRichard Henderson } 3235507c2bfSRichard Henderson 3245507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_smin, MIN, SDATA_TYPE, old) 3255507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_umin, MIN, DATA_TYPE, old) 3265507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_smax, MAX, SDATA_TYPE, old) 3275507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_umax, MAX, DATA_TYPE, old) 3285507c2bfSRichard Henderson 3295507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(smin_fetch, MIN, SDATA_TYPE, new) 3305507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(umin_fetch, MIN, DATA_TYPE, new) 3315507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(smax_fetch, MAX, SDATA_TYPE, new) 3325507c2bfSRichard Henderson GEN_ATOMIC_HELPER_FN(umax_fetch, MAX, DATA_TYPE, new) 3335507c2bfSRichard Henderson 33458edf9eeSRichard Henderson /* Note that for addition, we need to use a separate cmpxchg loop instead 33558edf9eeSRichard Henderson of bswaps for the reverse-host-endian helpers. */ 33658edf9eeSRichard Henderson #define ADD(X, Y) (X + Y) 33758edf9eeSRichard Henderson GEN_ATOMIC_HELPER_FN(fetch_add, ADD, DATA_TYPE, old) 33858edf9eeSRichard Henderson GEN_ATOMIC_HELPER_FN(add_fetch, ADD, DATA_TYPE, new) 33958edf9eeSRichard Henderson #undef ADD 34058edf9eeSRichard Henderson 3415507c2bfSRichard Henderson #undef GEN_ATOMIC_HELPER_FN 3427ebee43eSRichard Henderson #endif /* DATA_SIZE >= 16 */ 343c482cb11SRichard Henderson 344c482cb11SRichard Henderson #undef END 345c482cb11SRichard Henderson #endif /* DATA_SIZE > 1 */ 346c482cb11SRichard Henderson 347c482cb11SRichard Henderson #undef BSWAP 348c482cb11SRichard Henderson #undef ABI_TYPE 349c482cb11SRichard Henderson #undef DATA_TYPE 3505507c2bfSRichard Henderson #undef SDATA_TYPE 351c482cb11SRichard Henderson #undef SUFFIX 352c482cb11SRichard Henderson #undef DATA_SIZE 353d071f4cdSEmilio G. Cota #undef SHIFT 354