1fc8d72c2SBlue Swirl /* 2fc8d72c2SBlue Swirl * S/390 integer helper routines 3fc8d72c2SBlue Swirl * 4fc8d72c2SBlue Swirl * Copyright (c) 2009 Ulrich Hecht 5fc8d72c2SBlue Swirl * Copyright (c) 2009 Alexander Graf 6fc8d72c2SBlue Swirl * 7fc8d72c2SBlue Swirl * This library is free software; you can redistribute it and/or 8fc8d72c2SBlue Swirl * modify it under the terms of the GNU Lesser General Public 9fc8d72c2SBlue Swirl * License as published by the Free Software Foundation; either 10fc8d72c2SBlue Swirl * version 2 of the License, or (at your option) any later version. 11fc8d72c2SBlue Swirl * 12fc8d72c2SBlue Swirl * This library is distributed in the hope that it will be useful, 13fc8d72c2SBlue Swirl * but WITHOUT ANY WARRANTY; without even the implied warranty of 14fc8d72c2SBlue Swirl * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 15fc8d72c2SBlue Swirl * Lesser General Public License for more details. 16fc8d72c2SBlue Swirl * 17fc8d72c2SBlue Swirl * You should have received a copy of the GNU Lesser General Public 18fc8d72c2SBlue Swirl * License along with this library; if not, see <http://www.gnu.org/licenses/>. 19fc8d72c2SBlue Swirl */ 20fc8d72c2SBlue Swirl 219615495aSPeter Maydell #include "qemu/osdep.h" 22fc8d72c2SBlue Swirl #include "cpu.h" 234e58b838SDavid Hildenbrand #include "internal.h" 2463c91552SPaolo Bonzini #include "exec/exec-all.h" 251de7afc9SPaolo Bonzini #include "qemu/host-utils.h" 262ef6175aSRichard Henderson #include "exec/helper-proto.h" 27fc8d72c2SBlue Swirl 28fc8d72c2SBlue Swirl /* #define DEBUG_HELPER */ 29fc8d72c2SBlue Swirl #ifdef DEBUG_HELPER 30fc8d72c2SBlue Swirl #define HELPER_LOG(x...) qemu_log(x) 31fc8d72c2SBlue Swirl #else 32fc8d72c2SBlue Swirl #define HELPER_LOG(x...) 33fc8d72c2SBlue Swirl #endif 34fc8d72c2SBlue Swirl 35891452e5SRichard Henderson /* 64/32 -> 32 signed division */ 36b4e2bd35SRichard Henderson int64_t HELPER(divs32)(CPUS390XState *env, int64_t a, int64_t b64) 37fc8d72c2SBlue Swirl { 38b4e2bd35SRichard Henderson int32_t ret, b = b64; 39b4e2bd35SRichard Henderson int64_t q; 40b4e2bd35SRichard Henderson 41b4e2bd35SRichard Henderson if (b == 0) { 42*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 43b4e2bd35SRichard Henderson } 44b4e2bd35SRichard Henderson 45b4e2bd35SRichard Henderson ret = q = a / b; 46b4e2bd35SRichard Henderson env->retxl = a % b; 47b4e2bd35SRichard Henderson 48b4e2bd35SRichard Henderson /* Catch non-representable quotient. */ 49b4e2bd35SRichard Henderson if (ret != q) { 50*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 51b4e2bd35SRichard Henderson } 52b4e2bd35SRichard Henderson 53b4e2bd35SRichard Henderson return ret; 54891452e5SRichard Henderson } 55fc8d72c2SBlue Swirl 56891452e5SRichard Henderson /* 64/32 -> 32 unsigned division */ 57b4e2bd35SRichard Henderson uint64_t HELPER(divu32)(CPUS390XState *env, uint64_t a, uint64_t b64) 58891452e5SRichard Henderson { 59b4e2bd35SRichard Henderson uint32_t ret, b = b64; 60b4e2bd35SRichard Henderson uint64_t q; 61b4e2bd35SRichard Henderson 62b4e2bd35SRichard Henderson if (b == 0) { 63*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 64b4e2bd35SRichard Henderson } 65b4e2bd35SRichard Henderson 66b4e2bd35SRichard Henderson ret = q = a / b; 67b4e2bd35SRichard Henderson env->retxl = a % b; 68b4e2bd35SRichard Henderson 69b4e2bd35SRichard Henderson /* Catch non-representable quotient. */ 70b4e2bd35SRichard Henderson if (ret != q) { 71*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 72b4e2bd35SRichard Henderson } 73b4e2bd35SRichard Henderson 74b4e2bd35SRichard Henderson return ret; 75891452e5SRichard Henderson } 76891452e5SRichard Henderson 77891452e5SRichard Henderson /* 64/64 -> 64 signed division */ 78891452e5SRichard Henderson int64_t HELPER(divs64)(CPUS390XState *env, int64_t a, int64_t b) 79891452e5SRichard Henderson { 80b4e2bd35SRichard Henderson /* Catch divide by zero, and non-representable quotient (MIN / -1). */ 81b4e2bd35SRichard Henderson if (b == 0 || (b == -1 && a == (1ll << 63))) { 82*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 83b4e2bd35SRichard Henderson } 84891452e5SRichard Henderson env->retxl = a % b; 85891452e5SRichard Henderson return a / b; 86891452e5SRichard Henderson } 87891452e5SRichard Henderson 88891452e5SRichard Henderson /* 128 -> 64/64 unsigned division */ 89891452e5SRichard Henderson uint64_t HELPER(divu64)(CPUS390XState *env, uint64_t ah, uint64_t al, 90891452e5SRichard Henderson uint64_t b) 91891452e5SRichard Henderson { 92891452e5SRichard Henderson uint64_t ret; 93b4e2bd35SRichard Henderson /* Signal divide by zero. */ 94b4e2bd35SRichard Henderson if (b == 0) { 95*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 96b4e2bd35SRichard Henderson } 97891452e5SRichard Henderson if (ah == 0) { 98fc8d72c2SBlue Swirl /* 64 -> 64/64 case */ 99891452e5SRichard Henderson env->retxl = al % b; 100891452e5SRichard Henderson ret = al / b; 101fc8d72c2SBlue Swirl } else { 102891452e5SRichard Henderson /* ??? Move i386 idivq helper to host-utils. */ 103d49b8e0bSGabriel Kerneis #ifdef CONFIG_INT128 104891452e5SRichard Henderson __uint128_t a = ((__uint128_t)ah << 64) | al; 105891452e5SRichard Henderson __uint128_t q = a / b; 106891452e5SRichard Henderson env->retxl = a % b; 107891452e5SRichard Henderson ret = q; 108b4e2bd35SRichard Henderson if (ret != q) { 109*7693f77aSDavid Hildenbrand s390_program_interrupt(env, PGM_FIXPT_DIVIDE, ILEN_AUTO, GETPC()); 110b4e2bd35SRichard Henderson } 111fc8d72c2SBlue Swirl #else 112a47dddd7SAndreas Färber S390CPU *cpu = s390_env_get_cpu(env); 113fc8d72c2SBlue Swirl /* 32-bit hosts would need special wrapper functionality - just abort if 114fc8d72c2SBlue Swirl we encounter such a case; it's very unlikely anyways. */ 115a47dddd7SAndreas Färber cpu_abort(CPU(cpu), "128 -> 64/64 division not implemented\n"); 116fc8d72c2SBlue Swirl #endif 117fc8d72c2SBlue Swirl } 118891452e5SRichard Henderson return ret; 119fc8d72c2SBlue Swirl } 120fc8d72c2SBlue Swirl 12192f2b4e7SAurelien Jarno uint64_t HELPER(cvd)(int32_t reg) 122fc8d72c2SBlue Swirl { 123fc8d72c2SBlue Swirl /* positive 0 */ 124fc8d72c2SBlue Swirl uint64_t dec = 0x0c; 12592f2b4e7SAurelien Jarno int64_t bin = reg; 12692f2b4e7SAurelien Jarno int shift; 127fc8d72c2SBlue Swirl 128fc8d72c2SBlue Swirl if (bin < 0) { 129fc8d72c2SBlue Swirl bin = -bin; 130fc8d72c2SBlue Swirl dec = 0x0d; 131fc8d72c2SBlue Swirl } 132fc8d72c2SBlue Swirl 133fc8d72c2SBlue Swirl for (shift = 4; (shift < 64) && bin; shift += 4) { 13492f2b4e7SAurelien Jarno dec |= (bin % 10) << shift; 135fc8d72c2SBlue Swirl bin /= 10; 136fc8d72c2SBlue Swirl } 137fc8d72c2SBlue Swirl 138fc8d72c2SBlue Swirl return dec; 139fc8d72c2SBlue Swirl } 14099b4f24bSRichard Henderson 141250a87d5SRichard Henderson uint64_t HELPER(popcnt)(uint64_t val) 14299b4f24bSRichard Henderson { 143250a87d5SRichard Henderson /* Note that we don't fold past bytes. */ 144250a87d5SRichard Henderson val = (val & 0x5555555555555555ULL) + ((val >> 1) & 0x5555555555555555ULL); 145250a87d5SRichard Henderson val = (val & 0x3333333333333333ULL) + ((val >> 2) & 0x3333333333333333ULL); 146250a87d5SRichard Henderson val = (val + (val >> 4)) & 0x0f0f0f0f0f0f0f0fULL; 147250a87d5SRichard Henderson return val; 14899b4f24bSRichard Henderson } 149