1507b6a50SPeter Maydell /* 2507b6a50SPeter Maydell * M-profile MVE Operations 3507b6a50SPeter Maydell * 4507b6a50SPeter Maydell * Copyright (c) 2021 Linaro, Ltd. 5507b6a50SPeter Maydell * 6507b6a50SPeter Maydell * This library is free software; you can redistribute it and/or 7507b6a50SPeter Maydell * modify it under the terms of the GNU Lesser General Public 8507b6a50SPeter Maydell * License as published by the Free Software Foundation; either 9507b6a50SPeter Maydell * version 2.1 of the License, or (at your option) any later version. 10507b6a50SPeter Maydell * 11507b6a50SPeter Maydell * This library is distributed in the hope that it will be useful, 12507b6a50SPeter Maydell * but WITHOUT ANY WARRANTY; without even the implied warranty of 13507b6a50SPeter Maydell * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 14507b6a50SPeter Maydell * Lesser General Public License for more details. 15507b6a50SPeter Maydell * 16507b6a50SPeter Maydell * You should have received a copy of the GNU Lesser General Public 17507b6a50SPeter Maydell * License along with this library; if not, see <http://www.gnu.org/licenses/>. 18507b6a50SPeter Maydell */ 19507b6a50SPeter Maydell 20507b6a50SPeter Maydell #include "qemu/osdep.h" 21507b6a50SPeter Maydell #include "cpu.h" 22507b6a50SPeter Maydell #include "internals.h" 23507b6a50SPeter Maydell #include "vec_internal.h" 24507b6a50SPeter Maydell #include "exec/helper-proto.h" 25507b6a50SPeter Maydell #include "exec/cpu_ldst.h" 26507b6a50SPeter Maydell #include "exec/exec-all.h" 2759c91773SPeter Maydell #include "tcg/tcg.h" 28507b6a50SPeter Maydell 29e0d40070SPeter Maydell static uint16_t mve_eci_mask(CPUARMState *env) 30e0d40070SPeter Maydell { 31e0d40070SPeter Maydell /* 32e0d40070SPeter Maydell * Return the mask of which elements in the MVE vector correspond 33e0d40070SPeter Maydell * to beats being executed. The mask has 1 bits for executed lanes 34e0d40070SPeter Maydell * and 0 bits where ECI says this beat was already executed. 35e0d40070SPeter Maydell */ 36e0d40070SPeter Maydell int eci; 37e0d40070SPeter Maydell 38e0d40070SPeter Maydell if ((env->condexec_bits & 0xf) != 0) { 39e0d40070SPeter Maydell return 0xffff; 40e0d40070SPeter Maydell } 41e0d40070SPeter Maydell 42e0d40070SPeter Maydell eci = env->condexec_bits >> 4; 43e0d40070SPeter Maydell switch (eci) { 44e0d40070SPeter Maydell case ECI_NONE: 45e0d40070SPeter Maydell return 0xffff; 46e0d40070SPeter Maydell case ECI_A0: 47e0d40070SPeter Maydell return 0xfff0; 48e0d40070SPeter Maydell case ECI_A0A1: 49e0d40070SPeter Maydell return 0xff00; 50e0d40070SPeter Maydell case ECI_A0A1A2: 51e0d40070SPeter Maydell case ECI_A0A1A2B0: 52e0d40070SPeter Maydell return 0xf000; 53e0d40070SPeter Maydell default: 54e0d40070SPeter Maydell g_assert_not_reached(); 55e0d40070SPeter Maydell } 56e0d40070SPeter Maydell } 57e0d40070SPeter Maydell 58507b6a50SPeter Maydell static uint16_t mve_element_mask(CPUARMState *env) 59507b6a50SPeter Maydell { 60507b6a50SPeter Maydell /* 61507b6a50SPeter Maydell * Return the mask of which elements in the MVE vector should be 62507b6a50SPeter Maydell * updated. This is a combination of multiple things: 63507b6a50SPeter Maydell * (1) by default, we update every lane in the vector 64507b6a50SPeter Maydell * (2) VPT predication stores its state in the VPR register; 65507b6a50SPeter Maydell * (3) low-overhead-branch tail predication will mask out part 66507b6a50SPeter Maydell * the vector on the final iteration of the loop 67507b6a50SPeter Maydell * (4) if EPSR.ECI is set then we must execute only some beats 68507b6a50SPeter Maydell * of the insn 69507b6a50SPeter Maydell * We combine all these into a 16-bit result with the same semantics 70507b6a50SPeter Maydell * as VPR.P0: 0 to mask the lane, 1 if it is active. 71507b6a50SPeter Maydell * 8-bit vector ops will look at all bits of the result; 72507b6a50SPeter Maydell * 16-bit ops will look at bits 0, 2, 4, ...; 73507b6a50SPeter Maydell * 32-bit ops will look at bits 0, 4, 8 and 12. 74507b6a50SPeter Maydell * Compare pseudocode GetCurInstrBeat(), though that only returns 75507b6a50SPeter Maydell * the 4-bit slice of the mask corresponding to a single beat. 76507b6a50SPeter Maydell */ 77507b6a50SPeter Maydell uint16_t mask = FIELD_EX32(env->v7m.vpr, V7M_VPR, P0); 78507b6a50SPeter Maydell 79507b6a50SPeter Maydell if (!(env->v7m.vpr & R_V7M_VPR_MASK01_MASK)) { 80507b6a50SPeter Maydell mask |= 0xff; 81507b6a50SPeter Maydell } 82507b6a50SPeter Maydell if (!(env->v7m.vpr & R_V7M_VPR_MASK23_MASK)) { 83507b6a50SPeter Maydell mask |= 0xff00; 84507b6a50SPeter Maydell } 85507b6a50SPeter Maydell 86507b6a50SPeter Maydell if (env->v7m.ltpsize < 4 && 87507b6a50SPeter Maydell env->regs[14] <= (1 << (4 - env->v7m.ltpsize))) { 88507b6a50SPeter Maydell /* 89507b6a50SPeter Maydell * Tail predication active, and this is the last loop iteration. 90507b6a50SPeter Maydell * The element size is (1 << ltpsize), and we only want to process 91507b6a50SPeter Maydell * loopcount elements, so we want to retain the least significant 92507b6a50SPeter Maydell * (loopcount * esize) predicate bits and zero out bits above that. 93507b6a50SPeter Maydell */ 94507b6a50SPeter Maydell int masklen = env->regs[14] << env->v7m.ltpsize; 95507b6a50SPeter Maydell assert(masklen <= 16); 963f4f1880SPeter Maydell uint16_t ltpmask = masklen ? MAKE_64BIT_MASK(0, masklen) : 0; 973f4f1880SPeter Maydell mask &= ltpmask; 98507b6a50SPeter Maydell } 99507b6a50SPeter Maydell 100507b6a50SPeter Maydell /* 101507b6a50SPeter Maydell * ECI bits indicate which beats are already executed; 102507b6a50SPeter Maydell * we handle this by effectively predicating them out. 103507b6a50SPeter Maydell */ 104e0d40070SPeter Maydell mask &= mve_eci_mask(env); 105507b6a50SPeter Maydell return mask; 106507b6a50SPeter Maydell } 107507b6a50SPeter Maydell 108507b6a50SPeter Maydell static void mve_advance_vpt(CPUARMState *env) 109507b6a50SPeter Maydell { 110507b6a50SPeter Maydell /* Advance the VPT and ECI state if necessary */ 111507b6a50SPeter Maydell uint32_t vpr = env->v7m.vpr; 112507b6a50SPeter Maydell unsigned mask01, mask23; 113e3152d02SPeter Maydell uint16_t inv_mask; 114e3152d02SPeter Maydell uint16_t eci_mask = mve_eci_mask(env); 115507b6a50SPeter Maydell 116507b6a50SPeter Maydell if ((env->condexec_bits & 0xf) == 0) { 117507b6a50SPeter Maydell env->condexec_bits = (env->condexec_bits == (ECI_A0A1A2B0 << 4)) ? 118507b6a50SPeter Maydell (ECI_A0 << 4) : (ECI_NONE << 4); 119507b6a50SPeter Maydell } 120507b6a50SPeter Maydell 121507b6a50SPeter Maydell if (!(vpr & (R_V7M_VPR_MASK01_MASK | R_V7M_VPR_MASK23_MASK))) { 122507b6a50SPeter Maydell /* VPT not enabled, nothing to do */ 123507b6a50SPeter Maydell return; 124507b6a50SPeter Maydell } 125507b6a50SPeter Maydell 126e3152d02SPeter Maydell /* Invert P0 bits if needed, but only for beats we actually executed */ 127507b6a50SPeter Maydell mask01 = FIELD_EX32(vpr, V7M_VPR, MASK01); 128507b6a50SPeter Maydell mask23 = FIELD_EX32(vpr, V7M_VPR, MASK23); 129e3152d02SPeter Maydell /* Start by assuming we invert all bits corresponding to executed beats */ 130e3152d02SPeter Maydell inv_mask = eci_mask; 131e3152d02SPeter Maydell if (mask01 <= 8) { 132e3152d02SPeter Maydell /* MASK01 says don't invert low half of P0 */ 133e3152d02SPeter Maydell inv_mask &= ~0xff; 134507b6a50SPeter Maydell } 135e3152d02SPeter Maydell if (mask23 <= 8) { 136e3152d02SPeter Maydell /* MASK23 says don't invert high half of P0 */ 137e3152d02SPeter Maydell inv_mask &= ~0xff00; 138507b6a50SPeter Maydell } 139e3152d02SPeter Maydell vpr ^= inv_mask; 140e3152d02SPeter Maydell /* Only update MASK01 if beat 1 executed */ 141e3152d02SPeter Maydell if (eci_mask & 0xf0) { 142507b6a50SPeter Maydell vpr = FIELD_DP32(vpr, V7M_VPR, MASK01, mask01 << 1); 143e3152d02SPeter Maydell } 144e3152d02SPeter Maydell /* Beat 3 always executes, so update MASK23 */ 145507b6a50SPeter Maydell vpr = FIELD_DP32(vpr, V7M_VPR, MASK23, mask23 << 1); 146507b6a50SPeter Maydell env->v7m.vpr = vpr; 147507b6a50SPeter Maydell } 148507b6a50SPeter Maydell 14941704cc2SPeter Maydell /* For loads, predicated lanes are zeroed instead of keeping their old values */ 150507b6a50SPeter Maydell #define DO_VLDR(OP, MSIZE, LDTYPE, ESIZE, TYPE) \ 151507b6a50SPeter Maydell void HELPER(mve_##OP)(CPUARMState *env, void *vd, uint32_t addr) \ 152507b6a50SPeter Maydell { \ 153507b6a50SPeter Maydell TYPE *d = vd; \ 154507b6a50SPeter Maydell uint16_t mask = mve_element_mask(env); \ 15541704cc2SPeter Maydell uint16_t eci_mask = mve_eci_mask(env); \ 156507b6a50SPeter Maydell unsigned b, e; \ 157507b6a50SPeter Maydell /* \ 158507b6a50SPeter Maydell * R_SXTM allows the dest reg to become UNKNOWN for abandoned \ 159507b6a50SPeter Maydell * beats so we don't care if we update part of the dest and \ 160507b6a50SPeter Maydell * then take an exception. \ 161507b6a50SPeter Maydell */ \ 162507b6a50SPeter Maydell for (b = 0, e = 0; b < 16; b += ESIZE, e++) { \ 16341704cc2SPeter Maydell if (eci_mask & (1 << b)) { \ 16441704cc2SPeter Maydell d[H##ESIZE(e)] = (mask & (1 << b)) ? \ 16541704cc2SPeter Maydell cpu_##LDTYPE##_data_ra(env, addr, GETPC()) : 0; \ 166507b6a50SPeter Maydell } \ 167507b6a50SPeter Maydell addr += MSIZE; \ 168507b6a50SPeter Maydell } \ 169507b6a50SPeter Maydell mve_advance_vpt(env); \ 170507b6a50SPeter Maydell } 171507b6a50SPeter Maydell 172507b6a50SPeter Maydell #define DO_VSTR(OP, MSIZE, STTYPE, ESIZE, TYPE) \ 173507b6a50SPeter Maydell void HELPER(mve_##OP)(CPUARMState *env, void *vd, uint32_t addr) \ 174507b6a50SPeter Maydell { \ 175507b6a50SPeter Maydell TYPE *d = vd; \ 176507b6a50SPeter Maydell uint16_t mask = mve_element_mask(env); \ 177507b6a50SPeter Maydell unsigned b, e; \ 178507b6a50SPeter Maydell for (b = 0, e = 0; b < 16; b += ESIZE, e++) { \ 179507b6a50SPeter Maydell if (mask & (1 << b)) { \ 180507b6a50SPeter Maydell cpu_##STTYPE##_data_ra(env, addr, d[H##ESIZE(e)], GETPC()); \ 181507b6a50SPeter Maydell } \ 182507b6a50SPeter Maydell addr += MSIZE; \ 183507b6a50SPeter Maydell } \ 184507b6a50SPeter Maydell mve_advance_vpt(env); \ 185507b6a50SPeter Maydell } 186507b6a50SPeter Maydell 187507b6a50SPeter Maydell DO_VLDR(vldrb, 1, ldub, 1, uint8_t) 188507b6a50SPeter Maydell DO_VLDR(vldrh, 2, lduw, 2, uint16_t) 189507b6a50SPeter Maydell DO_VLDR(vldrw, 4, ldl, 4, uint32_t) 190507b6a50SPeter Maydell 191507b6a50SPeter Maydell DO_VSTR(vstrb, 1, stb, 1, uint8_t) 192507b6a50SPeter Maydell DO_VSTR(vstrh, 2, stw, 2, uint16_t) 193507b6a50SPeter Maydell DO_VSTR(vstrw, 4, stl, 4, uint32_t) 194507b6a50SPeter Maydell 1952fc6b751SPeter Maydell DO_VLDR(vldrb_sh, 1, ldsb, 2, int16_t) 1962fc6b751SPeter Maydell DO_VLDR(vldrb_sw, 1, ldsb, 4, int32_t) 1972fc6b751SPeter Maydell DO_VLDR(vldrb_uh, 1, ldub, 2, uint16_t) 1982fc6b751SPeter Maydell DO_VLDR(vldrb_uw, 1, ldub, 4, uint32_t) 1992fc6b751SPeter Maydell DO_VLDR(vldrh_sw, 2, ldsw, 4, int32_t) 2002fc6b751SPeter Maydell DO_VLDR(vldrh_uw, 2, lduw, 4, uint32_t) 2012fc6b751SPeter Maydell 2022fc6b751SPeter Maydell DO_VSTR(vstrb_h, 1, stb, 2, int16_t) 2032fc6b751SPeter Maydell DO_VSTR(vstrb_w, 1, stb, 4, int32_t) 2042fc6b751SPeter Maydell DO_VSTR(vstrh_w, 2, stw, 4, int32_t) 2052fc6b751SPeter Maydell 206507b6a50SPeter Maydell #undef DO_VLDR 207507b6a50SPeter Maydell #undef DO_VSTR 2080f0f2bd5SPeter Maydell 2090f0f2bd5SPeter Maydell /* 2100f0f2bd5SPeter Maydell * The mergemask(D, R, M) macro performs the operation "*D = R" but 2110f0f2bd5SPeter Maydell * storing only the bytes which correspond to 1 bits in M, 2120f0f2bd5SPeter Maydell * leaving other bytes in *D unchanged. We use _Generic 2130f0f2bd5SPeter Maydell * to select the correct implementation based on the type of D. 2140f0f2bd5SPeter Maydell */ 2150f0f2bd5SPeter Maydell 2160f0f2bd5SPeter Maydell static void mergemask_ub(uint8_t *d, uint8_t r, uint16_t mask) 2170f0f2bd5SPeter Maydell { 2180f0f2bd5SPeter Maydell if (mask & 1) { 2190f0f2bd5SPeter Maydell *d = r; 2200f0f2bd5SPeter Maydell } 2210f0f2bd5SPeter Maydell } 2220f0f2bd5SPeter Maydell 2230f0f2bd5SPeter Maydell static void mergemask_sb(int8_t *d, int8_t r, uint16_t mask) 2240f0f2bd5SPeter Maydell { 2250f0f2bd5SPeter Maydell mergemask_ub((uint8_t *)d, r, mask); 2260f0f2bd5SPeter Maydell } 2270f0f2bd5SPeter Maydell 2280f0f2bd5SPeter Maydell static void mergemask_uh(uint16_t *d, uint16_t r, uint16_t mask) 2290f0f2bd5SPeter Maydell { 2300f0f2bd5SPeter Maydell uint16_t bmask = expand_pred_b_data[mask & 3]; 2310f0f2bd5SPeter Maydell *d = (*d & ~bmask) | (r & bmask); 2320f0f2bd5SPeter Maydell } 2330f0f2bd5SPeter Maydell 2340f0f2bd5SPeter Maydell static void mergemask_sh(int16_t *d, int16_t r, uint16_t mask) 2350f0f2bd5SPeter Maydell { 2360f0f2bd5SPeter Maydell mergemask_uh((uint16_t *)d, r, mask); 2370f0f2bd5SPeter Maydell } 2380f0f2bd5SPeter Maydell 2390f0f2bd5SPeter Maydell static void mergemask_uw(uint32_t *d, uint32_t r, uint16_t mask) 2400f0f2bd5SPeter Maydell { 2410f0f2bd5SPeter Maydell uint32_t bmask = expand_pred_b_data[mask & 0xf]; 2420f0f2bd5SPeter Maydell *d = (*d & ~bmask) | (r & bmask); 2430f0f2bd5SPeter Maydell } 2440f0f2bd5SPeter Maydell 2450f0f2bd5SPeter Maydell static void mergemask_sw(int32_t *d, int32_t r, uint16_t mask) 2460f0f2bd5SPeter Maydell { 2470f0f2bd5SPeter Maydell mergemask_uw((uint32_t *)d, r, mask); 2480f0f2bd5SPeter Maydell } 2490f0f2bd5SPeter Maydell 2500f0f2bd5SPeter Maydell static void mergemask_uq(uint64_t *d, uint64_t r, uint16_t mask) 2510f0f2bd5SPeter Maydell { 2520f0f2bd5SPeter Maydell uint64_t bmask = expand_pred_b_data[mask & 0xff]; 2530f0f2bd5SPeter Maydell *d = (*d & ~bmask) | (r & bmask); 2540f0f2bd5SPeter Maydell } 2550f0f2bd5SPeter Maydell 2560f0f2bd5SPeter Maydell static void mergemask_sq(int64_t *d, int64_t r, uint16_t mask) 2570f0f2bd5SPeter Maydell { 2580f0f2bd5SPeter Maydell mergemask_uq((uint64_t *)d, r, mask); 2590f0f2bd5SPeter Maydell } 2600f0f2bd5SPeter Maydell 2610f0f2bd5SPeter Maydell #define mergemask(D, R, M) \ 2620f0f2bd5SPeter Maydell _Generic(D, \ 2630f0f2bd5SPeter Maydell uint8_t *: mergemask_ub, \ 2640f0f2bd5SPeter Maydell int8_t *: mergemask_sb, \ 2650f0f2bd5SPeter Maydell uint16_t *: mergemask_uh, \ 2660f0f2bd5SPeter Maydell int16_t *: mergemask_sh, \ 2670f0f2bd5SPeter Maydell uint32_t *: mergemask_uw, \ 2680f0f2bd5SPeter Maydell int32_t *: mergemask_sw, \ 2690f0f2bd5SPeter Maydell uint64_t *: mergemask_uq, \ 2700f0f2bd5SPeter Maydell int64_t *: mergemask_sq)(D, R, M) 2710f0f2bd5SPeter Maydell 272ab59362fSPeter Maydell void HELPER(mve_vdup)(CPUARMState *env, void *vd, uint32_t val) 273ab59362fSPeter Maydell { 274ab59362fSPeter Maydell /* 275ab59362fSPeter Maydell * The generated code already replicated an 8 or 16 bit constant 276ab59362fSPeter Maydell * into the 32-bit value, so we only need to write the 32-bit 277ab59362fSPeter Maydell * value to all elements of the Qreg, allowing for predication. 278ab59362fSPeter Maydell */ 279ab59362fSPeter Maydell uint32_t *d = vd; 280ab59362fSPeter Maydell uint16_t mask = mve_element_mask(env); 281ab59362fSPeter Maydell unsigned e; 282ab59362fSPeter Maydell for (e = 0; e < 16 / 4; e++, mask >>= 4) { 283ab59362fSPeter Maydell mergemask(&d[H4(e)], val, mask); 284ab59362fSPeter Maydell } 285ab59362fSPeter Maydell mve_advance_vpt(env); 286ab59362fSPeter Maydell } 287ab59362fSPeter Maydell 2880f0f2bd5SPeter Maydell #define DO_1OP(OP, ESIZE, TYPE, FN) \ 2890f0f2bd5SPeter Maydell void HELPER(mve_##OP)(CPUARMState *env, void *vd, void *vm) \ 2900f0f2bd5SPeter Maydell { \ 2910f0f2bd5SPeter Maydell TYPE *d = vd, *m = vm; \ 2920f0f2bd5SPeter Maydell uint16_t mask = mve_element_mask(env); \ 2930f0f2bd5SPeter Maydell unsigned e; \ 2940f0f2bd5SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 2950f0f2bd5SPeter Maydell mergemask(&d[H##ESIZE(e)], FN(m[H##ESIZE(e)]), mask); \ 2960f0f2bd5SPeter Maydell } \ 2970f0f2bd5SPeter Maydell mve_advance_vpt(env); \ 2980f0f2bd5SPeter Maydell } 2990f0f2bd5SPeter Maydell 3006437f1f7SPeter Maydell #define DO_CLS_B(N) (clrsb32(N) - 24) 3016437f1f7SPeter Maydell #define DO_CLS_H(N) (clrsb32(N) - 16) 3026437f1f7SPeter Maydell 3036437f1f7SPeter Maydell DO_1OP(vclsb, 1, int8_t, DO_CLS_B) 3046437f1f7SPeter Maydell DO_1OP(vclsh, 2, int16_t, DO_CLS_H) 3056437f1f7SPeter Maydell DO_1OP(vclsw, 4, int32_t, clrsb32) 3066437f1f7SPeter Maydell 3070f0f2bd5SPeter Maydell #define DO_CLZ_B(N) (clz32(N) - 24) 3080f0f2bd5SPeter Maydell #define DO_CLZ_H(N) (clz32(N) - 16) 3090f0f2bd5SPeter Maydell 3100f0f2bd5SPeter Maydell DO_1OP(vclzb, 1, uint8_t, DO_CLZ_B) 3110f0f2bd5SPeter Maydell DO_1OP(vclzh, 2, uint16_t, DO_CLZ_H) 3120f0f2bd5SPeter Maydell DO_1OP(vclzw, 4, uint32_t, clz32) 313249b5309SPeter Maydell 314249b5309SPeter Maydell DO_1OP(vrev16b, 2, uint16_t, bswap16) 315249b5309SPeter Maydell DO_1OP(vrev32b, 4, uint32_t, bswap32) 316249b5309SPeter Maydell DO_1OP(vrev32h, 4, uint32_t, hswap32) 317249b5309SPeter Maydell DO_1OP(vrev64b, 8, uint64_t, bswap64) 318249b5309SPeter Maydell DO_1OP(vrev64h, 8, uint64_t, hswap64) 319249b5309SPeter Maydell DO_1OP(vrev64w, 8, uint64_t, wswap64) 3208abd3c80SPeter Maydell 3218abd3c80SPeter Maydell #define DO_NOT(N) (~(N)) 3228abd3c80SPeter Maydell 3238abd3c80SPeter Maydell DO_1OP(vmvn, 8, uint64_t, DO_NOT) 32459c91773SPeter Maydell 32559c91773SPeter Maydell #define DO_ABS(N) ((N) < 0 ? -(N) : (N)) 32659c91773SPeter Maydell #define DO_FABSH(N) ((N) & dup_const(MO_16, 0x7fff)) 32759c91773SPeter Maydell #define DO_FABSS(N) ((N) & dup_const(MO_32, 0x7fffffff)) 32859c91773SPeter Maydell 32959c91773SPeter Maydell DO_1OP(vabsb, 1, int8_t, DO_ABS) 33059c91773SPeter Maydell DO_1OP(vabsh, 2, int16_t, DO_ABS) 33159c91773SPeter Maydell DO_1OP(vabsw, 4, int32_t, DO_ABS) 33259c91773SPeter Maydell 33359c91773SPeter Maydell /* We can do these 64 bits at a time */ 33459c91773SPeter Maydell DO_1OP(vfabsh, 8, uint64_t, DO_FABSH) 33559c91773SPeter Maydell DO_1OP(vfabss, 8, uint64_t, DO_FABSS) 336399a8c76SPeter Maydell 337399a8c76SPeter Maydell #define DO_NEG(N) (-(N)) 338399a8c76SPeter Maydell #define DO_FNEGH(N) ((N) ^ dup_const(MO_16, 0x8000)) 339399a8c76SPeter Maydell #define DO_FNEGS(N) ((N) ^ dup_const(MO_32, 0x80000000)) 340399a8c76SPeter Maydell 341399a8c76SPeter Maydell DO_1OP(vnegb, 1, int8_t, DO_NEG) 342399a8c76SPeter Maydell DO_1OP(vnegh, 2, int16_t, DO_NEG) 343399a8c76SPeter Maydell DO_1OP(vnegw, 4, int32_t, DO_NEG) 344399a8c76SPeter Maydell 345399a8c76SPeter Maydell /* We can do these 64 bits at a time */ 346399a8c76SPeter Maydell DO_1OP(vfnegh, 8, uint64_t, DO_FNEGH) 347399a8c76SPeter Maydell DO_1OP(vfnegs, 8, uint64_t, DO_FNEGS) 34868245e44SPeter Maydell 349eab84139SPeter Maydell /* 350eab84139SPeter Maydell * 1 operand immediates: Vda is destination and possibly also one source. 351eab84139SPeter Maydell * All these insns work at 64-bit widths. 352eab84139SPeter Maydell */ 353eab84139SPeter Maydell #define DO_1OP_IMM(OP, FN) \ 354eab84139SPeter Maydell void HELPER(mve_##OP)(CPUARMState *env, void *vda, uint64_t imm) \ 355eab84139SPeter Maydell { \ 356eab84139SPeter Maydell uint64_t *da = vda; \ 357eab84139SPeter Maydell uint16_t mask = mve_element_mask(env); \ 358eab84139SPeter Maydell unsigned e; \ 359eab84139SPeter Maydell for (e = 0; e < 16 / 8; e++, mask >>= 8) { \ 360eab84139SPeter Maydell mergemask(&da[H8(e)], FN(da[H8(e)], imm), mask); \ 361eab84139SPeter Maydell } \ 362eab84139SPeter Maydell mve_advance_vpt(env); \ 363eab84139SPeter Maydell } 364eab84139SPeter Maydell 365eab84139SPeter Maydell #define DO_MOVI(N, I) (I) 366eab84139SPeter Maydell #define DO_ANDI(N, I) ((N) & (I)) 367eab84139SPeter Maydell #define DO_ORRI(N, I) ((N) | (I)) 368eab84139SPeter Maydell 369eab84139SPeter Maydell DO_1OP_IMM(vmovi, DO_MOVI) 370eab84139SPeter Maydell DO_1OP_IMM(vandi, DO_ANDI) 371eab84139SPeter Maydell DO_1OP_IMM(vorri, DO_ORRI) 372eab84139SPeter Maydell 37368245e44SPeter Maydell #define DO_2OP(OP, ESIZE, TYPE, FN) \ 37468245e44SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, \ 37568245e44SPeter Maydell void *vd, void *vn, void *vm) \ 37668245e44SPeter Maydell { \ 37768245e44SPeter Maydell TYPE *d = vd, *n = vn, *m = vm; \ 37868245e44SPeter Maydell uint16_t mask = mve_element_mask(env); \ 37968245e44SPeter Maydell unsigned e; \ 38068245e44SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 38168245e44SPeter Maydell mergemask(&d[H##ESIZE(e)], \ 38268245e44SPeter Maydell FN(n[H##ESIZE(e)], m[H##ESIZE(e)]), mask); \ 38368245e44SPeter Maydell } \ 38468245e44SPeter Maydell mve_advance_vpt(env); \ 38568245e44SPeter Maydell } 38668245e44SPeter Maydell 3879333fe4dSPeter Maydell /* provide unsigned 2-op helpers for all sizes */ 3889333fe4dSPeter Maydell #define DO_2OP_U(OP, FN) \ 3899333fe4dSPeter Maydell DO_2OP(OP##b, 1, uint8_t, FN) \ 3909333fe4dSPeter Maydell DO_2OP(OP##h, 2, uint16_t, FN) \ 3919333fe4dSPeter Maydell DO_2OP(OP##w, 4, uint32_t, FN) 3929333fe4dSPeter Maydell 393cd367ff3SPeter Maydell /* provide signed 2-op helpers for all sizes */ 394cd367ff3SPeter Maydell #define DO_2OP_S(OP, FN) \ 395cd367ff3SPeter Maydell DO_2OP(OP##b, 1, int8_t, FN) \ 396cd367ff3SPeter Maydell DO_2OP(OP##h, 2, int16_t, FN) \ 397cd367ff3SPeter Maydell DO_2OP(OP##w, 4, int32_t, FN) 398cd367ff3SPeter Maydell 399ac6ad1dcSPeter Maydell /* 400ac6ad1dcSPeter Maydell * "Long" operations where two half-sized inputs (taken from either the 401ac6ad1dcSPeter Maydell * top or the bottom of the input vector) produce a double-width result. 402ac6ad1dcSPeter Maydell * Here ESIZE, TYPE are for the input, and LESIZE, LTYPE for the output. 403ac6ad1dcSPeter Maydell */ 404ac6ad1dcSPeter Maydell #define DO_2OP_L(OP, TOP, ESIZE, TYPE, LESIZE, LTYPE, FN) \ 405ac6ad1dcSPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, void *vm) \ 406ac6ad1dcSPeter Maydell { \ 407ac6ad1dcSPeter Maydell LTYPE *d = vd; \ 408ac6ad1dcSPeter Maydell TYPE *n = vn, *m = vm; \ 409ac6ad1dcSPeter Maydell uint16_t mask = mve_element_mask(env); \ 410ac6ad1dcSPeter Maydell unsigned le; \ 411ac6ad1dcSPeter Maydell for (le = 0; le < 16 / LESIZE; le++, mask >>= LESIZE) { \ 412ac6ad1dcSPeter Maydell LTYPE r = FN((LTYPE)n[H##ESIZE(le * 2 + TOP)], \ 413ac6ad1dcSPeter Maydell m[H##ESIZE(le * 2 + TOP)]); \ 414ac6ad1dcSPeter Maydell mergemask(&d[H##LESIZE(le)], r, mask); \ 415ac6ad1dcSPeter Maydell } \ 416ac6ad1dcSPeter Maydell mve_advance_vpt(env); \ 417ac6ad1dcSPeter Maydell } 418ac6ad1dcSPeter Maydell 419380caf6cSPeter Maydell #define DO_2OP_SAT(OP, ESIZE, TYPE, FN) \ 420380caf6cSPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, void *vm) \ 421380caf6cSPeter Maydell { \ 422380caf6cSPeter Maydell TYPE *d = vd, *n = vn, *m = vm; \ 423380caf6cSPeter Maydell uint16_t mask = mve_element_mask(env); \ 424380caf6cSPeter Maydell unsigned e; \ 425380caf6cSPeter Maydell bool qc = false; \ 426380caf6cSPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 427380caf6cSPeter Maydell bool sat = false; \ 428380caf6cSPeter Maydell TYPE r = FN(n[H##ESIZE(e)], m[H##ESIZE(e)], &sat); \ 429380caf6cSPeter Maydell mergemask(&d[H##ESIZE(e)], r, mask); \ 430380caf6cSPeter Maydell qc |= sat & mask & 1; \ 431380caf6cSPeter Maydell } \ 432380caf6cSPeter Maydell if (qc) { \ 433380caf6cSPeter Maydell env->vfp.qc[0] = qc; \ 434380caf6cSPeter Maydell } \ 435380caf6cSPeter Maydell mve_advance_vpt(env); \ 436380caf6cSPeter Maydell } 437380caf6cSPeter Maydell 438483da661SPeter Maydell /* provide unsigned 2-op helpers for all sizes */ 439483da661SPeter Maydell #define DO_2OP_SAT_U(OP, FN) \ 440483da661SPeter Maydell DO_2OP_SAT(OP##b, 1, uint8_t, FN) \ 441483da661SPeter Maydell DO_2OP_SAT(OP##h, 2, uint16_t, FN) \ 442483da661SPeter Maydell DO_2OP_SAT(OP##w, 4, uint32_t, FN) 443483da661SPeter Maydell 444483da661SPeter Maydell /* provide signed 2-op helpers for all sizes */ 445483da661SPeter Maydell #define DO_2OP_SAT_S(OP, FN) \ 446483da661SPeter Maydell DO_2OP_SAT(OP##b, 1, int8_t, FN) \ 447483da661SPeter Maydell DO_2OP_SAT(OP##h, 2, int16_t, FN) \ 448483da661SPeter Maydell DO_2OP_SAT(OP##w, 4, int32_t, FN) 449483da661SPeter Maydell 45068245e44SPeter Maydell #define DO_AND(N, M) ((N) & (M)) 45168245e44SPeter Maydell #define DO_BIC(N, M) ((N) & ~(M)) 45268245e44SPeter Maydell #define DO_ORR(N, M) ((N) | (M)) 45368245e44SPeter Maydell #define DO_ORN(N, M) ((N) | ~(M)) 45468245e44SPeter Maydell #define DO_EOR(N, M) ((N) ^ (M)) 45568245e44SPeter Maydell 45668245e44SPeter Maydell DO_2OP(vand, 8, uint64_t, DO_AND) 45768245e44SPeter Maydell DO_2OP(vbic, 8, uint64_t, DO_BIC) 45868245e44SPeter Maydell DO_2OP(vorr, 8, uint64_t, DO_ORR) 45968245e44SPeter Maydell DO_2OP(vorn, 8, uint64_t, DO_ORN) 46068245e44SPeter Maydell DO_2OP(veor, 8, uint64_t, DO_EOR) 4619333fe4dSPeter Maydell 4629333fe4dSPeter Maydell #define DO_ADD(N, M) ((N) + (M)) 4639333fe4dSPeter Maydell #define DO_SUB(N, M) ((N) - (M)) 4649333fe4dSPeter Maydell #define DO_MUL(N, M) ((N) * (M)) 4659333fe4dSPeter Maydell 4669333fe4dSPeter Maydell DO_2OP_U(vadd, DO_ADD) 4679333fe4dSPeter Maydell DO_2OP_U(vsub, DO_SUB) 4689333fe4dSPeter Maydell DO_2OP_U(vmul, DO_MUL) 469ba62cc56SPeter Maydell 470ac6ad1dcSPeter Maydell DO_2OP_L(vmullbsb, 0, 1, int8_t, 2, int16_t, DO_MUL) 471ac6ad1dcSPeter Maydell DO_2OP_L(vmullbsh, 0, 2, int16_t, 4, int32_t, DO_MUL) 472ac6ad1dcSPeter Maydell DO_2OP_L(vmullbsw, 0, 4, int32_t, 8, int64_t, DO_MUL) 473ac6ad1dcSPeter Maydell DO_2OP_L(vmullbub, 0, 1, uint8_t, 2, uint16_t, DO_MUL) 474ac6ad1dcSPeter Maydell DO_2OP_L(vmullbuh, 0, 2, uint16_t, 4, uint32_t, DO_MUL) 475ac6ad1dcSPeter Maydell DO_2OP_L(vmullbuw, 0, 4, uint32_t, 8, uint64_t, DO_MUL) 476ac6ad1dcSPeter Maydell 477ac6ad1dcSPeter Maydell DO_2OP_L(vmulltsb, 1, 1, int8_t, 2, int16_t, DO_MUL) 478ac6ad1dcSPeter Maydell DO_2OP_L(vmulltsh, 1, 2, int16_t, 4, int32_t, DO_MUL) 479ac6ad1dcSPeter Maydell DO_2OP_L(vmulltsw, 1, 4, int32_t, 8, int64_t, DO_MUL) 480ac6ad1dcSPeter Maydell DO_2OP_L(vmulltub, 1, 1, uint8_t, 2, uint16_t, DO_MUL) 481ac6ad1dcSPeter Maydell DO_2OP_L(vmulltuh, 1, 2, uint16_t, 4, uint32_t, DO_MUL) 482ac6ad1dcSPeter Maydell DO_2OP_L(vmulltuw, 1, 4, uint32_t, 8, uint64_t, DO_MUL) 483ac6ad1dcSPeter Maydell 484ba62cc56SPeter Maydell /* 485c1bd78cbSPeter Maydell * Polynomial multiply. We can always do this generating 64 bits 486c1bd78cbSPeter Maydell * of the result at a time, so we don't need to use DO_2OP_L. 487c1bd78cbSPeter Maydell */ 488c1bd78cbSPeter Maydell #define VMULLPH_MASK 0x00ff00ff00ff00ffULL 489c1bd78cbSPeter Maydell #define VMULLPW_MASK 0x0000ffff0000ffffULL 490c1bd78cbSPeter Maydell #define DO_VMULLPBH(N, M) pmull_h((N) & VMULLPH_MASK, (M) & VMULLPH_MASK) 491c1bd78cbSPeter Maydell #define DO_VMULLPTH(N, M) DO_VMULLPBH((N) >> 8, (M) >> 8) 492c1bd78cbSPeter Maydell #define DO_VMULLPBW(N, M) pmull_w((N) & VMULLPW_MASK, (M) & VMULLPW_MASK) 493c1bd78cbSPeter Maydell #define DO_VMULLPTW(N, M) DO_VMULLPBW((N) >> 16, (M) >> 16) 494c1bd78cbSPeter Maydell 495c1bd78cbSPeter Maydell DO_2OP(vmullpbh, 8, uint64_t, DO_VMULLPBH) 496c1bd78cbSPeter Maydell DO_2OP(vmullpth, 8, uint64_t, DO_VMULLPTH) 497c1bd78cbSPeter Maydell DO_2OP(vmullpbw, 8, uint64_t, DO_VMULLPBW) 498c1bd78cbSPeter Maydell DO_2OP(vmullptw, 8, uint64_t, DO_VMULLPTW) 499c1bd78cbSPeter Maydell 500c1bd78cbSPeter Maydell /* 501ba62cc56SPeter Maydell * Because the computation type is at least twice as large as required, 502ba62cc56SPeter Maydell * these work for both signed and unsigned source types. 503ba62cc56SPeter Maydell */ 504ba62cc56SPeter Maydell static inline uint8_t do_mulh_b(int32_t n, int32_t m) 505ba62cc56SPeter Maydell { 506ba62cc56SPeter Maydell return (n * m) >> 8; 507ba62cc56SPeter Maydell } 508ba62cc56SPeter Maydell 509ba62cc56SPeter Maydell static inline uint16_t do_mulh_h(int32_t n, int32_t m) 510ba62cc56SPeter Maydell { 511ba62cc56SPeter Maydell return (n * m) >> 16; 512ba62cc56SPeter Maydell } 513ba62cc56SPeter Maydell 514ba62cc56SPeter Maydell static inline uint32_t do_mulh_w(int64_t n, int64_t m) 515ba62cc56SPeter Maydell { 516ba62cc56SPeter Maydell return (n * m) >> 32; 517ba62cc56SPeter Maydell } 518ba62cc56SPeter Maydell 519fca87b78SPeter Maydell static inline uint8_t do_rmulh_b(int32_t n, int32_t m) 520fca87b78SPeter Maydell { 521fca87b78SPeter Maydell return (n * m + (1U << 7)) >> 8; 522fca87b78SPeter Maydell } 523fca87b78SPeter Maydell 524fca87b78SPeter Maydell static inline uint16_t do_rmulh_h(int32_t n, int32_t m) 525fca87b78SPeter Maydell { 526fca87b78SPeter Maydell return (n * m + (1U << 15)) >> 16; 527fca87b78SPeter Maydell } 528fca87b78SPeter Maydell 529fca87b78SPeter Maydell static inline uint32_t do_rmulh_w(int64_t n, int64_t m) 530fca87b78SPeter Maydell { 531fca87b78SPeter Maydell return (n * m + (1U << 31)) >> 32; 532fca87b78SPeter Maydell } 533fca87b78SPeter Maydell 534ba62cc56SPeter Maydell DO_2OP(vmulhsb, 1, int8_t, do_mulh_b) 535ba62cc56SPeter Maydell DO_2OP(vmulhsh, 2, int16_t, do_mulh_h) 536ba62cc56SPeter Maydell DO_2OP(vmulhsw, 4, int32_t, do_mulh_w) 537ba62cc56SPeter Maydell DO_2OP(vmulhub, 1, uint8_t, do_mulh_b) 538ba62cc56SPeter Maydell DO_2OP(vmulhuh, 2, uint16_t, do_mulh_h) 539ba62cc56SPeter Maydell DO_2OP(vmulhuw, 4, uint32_t, do_mulh_w) 540fca87b78SPeter Maydell 541fca87b78SPeter Maydell DO_2OP(vrmulhsb, 1, int8_t, do_rmulh_b) 542fca87b78SPeter Maydell DO_2OP(vrmulhsh, 2, int16_t, do_rmulh_h) 543fca87b78SPeter Maydell DO_2OP(vrmulhsw, 4, int32_t, do_rmulh_w) 544fca87b78SPeter Maydell DO_2OP(vrmulhub, 1, uint8_t, do_rmulh_b) 545fca87b78SPeter Maydell DO_2OP(vrmulhuh, 2, uint16_t, do_rmulh_h) 546fca87b78SPeter Maydell DO_2OP(vrmulhuw, 4, uint32_t, do_rmulh_w) 547cd367ff3SPeter Maydell 548cd367ff3SPeter Maydell #define DO_MAX(N, M) ((N) >= (M) ? (N) : (M)) 549cd367ff3SPeter Maydell #define DO_MIN(N, M) ((N) >= (M) ? (M) : (N)) 550cd367ff3SPeter Maydell 551cd367ff3SPeter Maydell DO_2OP_S(vmaxs, DO_MAX) 552cd367ff3SPeter Maydell DO_2OP_U(vmaxu, DO_MAX) 553cd367ff3SPeter Maydell DO_2OP_S(vmins, DO_MIN) 554cd367ff3SPeter Maydell DO_2OP_U(vminu, DO_MIN) 555bc67aa8dSPeter Maydell 556bc67aa8dSPeter Maydell #define DO_ABD(N, M) ((N) >= (M) ? (N) - (M) : (M) - (N)) 557bc67aa8dSPeter Maydell 558bc67aa8dSPeter Maydell DO_2OP_S(vabds, DO_ABD) 559bc67aa8dSPeter Maydell DO_2OP_U(vabdu, DO_ABD) 560abc48e31SPeter Maydell 561abc48e31SPeter Maydell static inline uint32_t do_vhadd_u(uint32_t n, uint32_t m) 562abc48e31SPeter Maydell { 563abc48e31SPeter Maydell return ((uint64_t)n + m) >> 1; 564abc48e31SPeter Maydell } 565abc48e31SPeter Maydell 566abc48e31SPeter Maydell static inline int32_t do_vhadd_s(int32_t n, int32_t m) 567abc48e31SPeter Maydell { 568abc48e31SPeter Maydell return ((int64_t)n + m) >> 1; 569abc48e31SPeter Maydell } 570abc48e31SPeter Maydell 571abc48e31SPeter Maydell static inline uint32_t do_vhsub_u(uint32_t n, uint32_t m) 572abc48e31SPeter Maydell { 573abc48e31SPeter Maydell return ((uint64_t)n - m) >> 1; 574abc48e31SPeter Maydell } 575abc48e31SPeter Maydell 576abc48e31SPeter Maydell static inline int32_t do_vhsub_s(int32_t n, int32_t m) 577abc48e31SPeter Maydell { 578abc48e31SPeter Maydell return ((int64_t)n - m) >> 1; 579abc48e31SPeter Maydell } 580abc48e31SPeter Maydell 581abc48e31SPeter Maydell DO_2OP_S(vhadds, do_vhadd_s) 582abc48e31SPeter Maydell DO_2OP_U(vhaddu, do_vhadd_u) 583abc48e31SPeter Maydell DO_2OP_S(vhsubs, do_vhsub_s) 584abc48e31SPeter Maydell DO_2OP_U(vhsubu, do_vhsub_u) 5851d2386f7SPeter Maydell 5860372cad8SPeter Maydell #define DO_VSHLS(N, M) do_sqrshl_bhs(N, (int8_t)(M), sizeof(N) * 8, false, NULL) 5870372cad8SPeter Maydell #define DO_VSHLU(N, M) do_uqrshl_bhs(N, (int8_t)(M), sizeof(N) * 8, false, NULL) 588bb002345SPeter Maydell #define DO_VRSHLS(N, M) do_sqrshl_bhs(N, (int8_t)(M), sizeof(N) * 8, true, NULL) 589bb002345SPeter Maydell #define DO_VRSHLU(N, M) do_uqrshl_bhs(N, (int8_t)(M), sizeof(N) * 8, true, NULL) 5900372cad8SPeter Maydell 5910372cad8SPeter Maydell DO_2OP_S(vshls, DO_VSHLS) 5920372cad8SPeter Maydell DO_2OP_U(vshlu, DO_VSHLU) 593bb002345SPeter Maydell DO_2OP_S(vrshls, DO_VRSHLS) 594bb002345SPeter Maydell DO_2OP_U(vrshlu, DO_VRSHLU) 5950372cad8SPeter Maydell 5961eb987a8SPeter Maydell #define DO_RHADD_S(N, M) (((int64_t)(N) + (M) + 1) >> 1) 5971eb987a8SPeter Maydell #define DO_RHADD_U(N, M) (((uint64_t)(N) + (M) + 1) >> 1) 5981eb987a8SPeter Maydell 5991eb987a8SPeter Maydell DO_2OP_S(vrhadds, DO_RHADD_S) 6001eb987a8SPeter Maydell DO_2OP_U(vrhaddu, DO_RHADD_U) 6011eb987a8SPeter Maydell 60289bc4c4fSPeter Maydell static void do_vadc(CPUARMState *env, uint32_t *d, uint32_t *n, uint32_t *m, 60389bc4c4fSPeter Maydell uint32_t inv, uint32_t carry_in, bool update_flags) 60489bc4c4fSPeter Maydell { 60589bc4c4fSPeter Maydell uint16_t mask = mve_element_mask(env); 60689bc4c4fSPeter Maydell unsigned e; 60789bc4c4fSPeter Maydell 60889bc4c4fSPeter Maydell /* If any additions trigger, we will update flags. */ 60989bc4c4fSPeter Maydell if (mask & 0x1111) { 61089bc4c4fSPeter Maydell update_flags = true; 61189bc4c4fSPeter Maydell } 61289bc4c4fSPeter Maydell 61389bc4c4fSPeter Maydell for (e = 0; e < 16 / 4; e++, mask >>= 4) { 61489bc4c4fSPeter Maydell uint64_t r = carry_in; 61589bc4c4fSPeter Maydell r += n[H4(e)]; 61689bc4c4fSPeter Maydell r += m[H4(e)] ^ inv; 61789bc4c4fSPeter Maydell if (mask & 1) { 61889bc4c4fSPeter Maydell carry_in = r >> 32; 61989bc4c4fSPeter Maydell } 62089bc4c4fSPeter Maydell mergemask(&d[H4(e)], r, mask); 62189bc4c4fSPeter Maydell } 62289bc4c4fSPeter Maydell 62389bc4c4fSPeter Maydell if (update_flags) { 62489bc4c4fSPeter Maydell /* Store C, clear NZV. */ 62589bc4c4fSPeter Maydell env->vfp.xregs[ARM_VFP_FPSCR] &= ~FPCR_NZCV_MASK; 62689bc4c4fSPeter Maydell env->vfp.xregs[ARM_VFP_FPSCR] |= carry_in * FPCR_C; 62789bc4c4fSPeter Maydell } 62889bc4c4fSPeter Maydell mve_advance_vpt(env); 62989bc4c4fSPeter Maydell } 63089bc4c4fSPeter Maydell 63189bc4c4fSPeter Maydell void HELPER(mve_vadc)(CPUARMState *env, void *vd, void *vn, void *vm) 63289bc4c4fSPeter Maydell { 63389bc4c4fSPeter Maydell bool carry_in = env->vfp.xregs[ARM_VFP_FPSCR] & FPCR_C; 63489bc4c4fSPeter Maydell do_vadc(env, vd, vn, vm, 0, carry_in, false); 63589bc4c4fSPeter Maydell } 63689bc4c4fSPeter Maydell 63789bc4c4fSPeter Maydell void HELPER(mve_vsbc)(CPUARMState *env, void *vd, void *vn, void *vm) 63889bc4c4fSPeter Maydell { 63989bc4c4fSPeter Maydell bool carry_in = env->vfp.xregs[ARM_VFP_FPSCR] & FPCR_C; 64089bc4c4fSPeter Maydell do_vadc(env, vd, vn, vm, -1, carry_in, false); 64189bc4c4fSPeter Maydell } 64289bc4c4fSPeter Maydell 64389bc4c4fSPeter Maydell 64489bc4c4fSPeter Maydell void HELPER(mve_vadci)(CPUARMState *env, void *vd, void *vn, void *vm) 64589bc4c4fSPeter Maydell { 64689bc4c4fSPeter Maydell do_vadc(env, vd, vn, vm, 0, 0, true); 64789bc4c4fSPeter Maydell } 64889bc4c4fSPeter Maydell 64989bc4c4fSPeter Maydell void HELPER(mve_vsbci)(CPUARMState *env, void *vd, void *vn, void *vm) 65089bc4c4fSPeter Maydell { 65189bc4c4fSPeter Maydell do_vadc(env, vd, vn, vm, -1, 1, true); 65289bc4c4fSPeter Maydell } 65389bc4c4fSPeter Maydell 65467ec113bSPeter Maydell #define DO_VCADD(OP, ESIZE, TYPE, FN0, FN1) \ 65567ec113bSPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, void *vm) \ 65667ec113bSPeter Maydell { \ 65767ec113bSPeter Maydell TYPE *d = vd, *n = vn, *m = vm; \ 65867ec113bSPeter Maydell uint16_t mask = mve_element_mask(env); \ 65967ec113bSPeter Maydell unsigned e; \ 66067ec113bSPeter Maydell TYPE r[16 / ESIZE]; \ 66167ec113bSPeter Maydell /* Calculate all results first to avoid overwriting inputs */ \ 66267ec113bSPeter Maydell for (e = 0; e < 16 / ESIZE; e++) { \ 66367ec113bSPeter Maydell if (!(e & 1)) { \ 66467ec113bSPeter Maydell r[e] = FN0(n[H##ESIZE(e)], m[H##ESIZE(e + 1)]); \ 66567ec113bSPeter Maydell } else { \ 66667ec113bSPeter Maydell r[e] = FN1(n[H##ESIZE(e)], m[H##ESIZE(e - 1)]); \ 66767ec113bSPeter Maydell } \ 66867ec113bSPeter Maydell } \ 66967ec113bSPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 67067ec113bSPeter Maydell mergemask(&d[H##ESIZE(e)], r[e], mask); \ 67167ec113bSPeter Maydell } \ 67267ec113bSPeter Maydell mve_advance_vpt(env); \ 67367ec113bSPeter Maydell } 67467ec113bSPeter Maydell 67567ec113bSPeter Maydell #define DO_VCADD_ALL(OP, FN0, FN1) \ 67667ec113bSPeter Maydell DO_VCADD(OP##b, 1, int8_t, FN0, FN1) \ 67767ec113bSPeter Maydell DO_VCADD(OP##h, 2, int16_t, FN0, FN1) \ 67867ec113bSPeter Maydell DO_VCADD(OP##w, 4, int32_t, FN0, FN1) 67967ec113bSPeter Maydell 68067ec113bSPeter Maydell DO_VCADD_ALL(vcadd90, DO_SUB, DO_ADD) 68167ec113bSPeter Maydell DO_VCADD_ALL(vcadd270, DO_ADD, DO_SUB) 6828625693aSPeter Maydell DO_VCADD_ALL(vhcadd90, do_vhsub_s, do_vhadd_s) 6838625693aSPeter Maydell DO_VCADD_ALL(vhcadd270, do_vhadd_s, do_vhsub_s) 68467ec113bSPeter Maydell 68539f2ec85SPeter Maydell static inline int32_t do_sat_bhw(int64_t val, int64_t min, int64_t max, bool *s) 68639f2ec85SPeter Maydell { 68739f2ec85SPeter Maydell if (val > max) { 68839f2ec85SPeter Maydell *s = true; 68939f2ec85SPeter Maydell return max; 69039f2ec85SPeter Maydell } else if (val < min) { 69139f2ec85SPeter Maydell *s = true; 69239f2ec85SPeter Maydell return min; 69339f2ec85SPeter Maydell } 69439f2ec85SPeter Maydell return val; 69539f2ec85SPeter Maydell } 69639f2ec85SPeter Maydell 69739f2ec85SPeter Maydell #define DO_SQADD_B(n, m, s) do_sat_bhw((int64_t)n + m, INT8_MIN, INT8_MAX, s) 69839f2ec85SPeter Maydell #define DO_SQADD_H(n, m, s) do_sat_bhw((int64_t)n + m, INT16_MIN, INT16_MAX, s) 69939f2ec85SPeter Maydell #define DO_SQADD_W(n, m, s) do_sat_bhw((int64_t)n + m, INT32_MIN, INT32_MAX, s) 70039f2ec85SPeter Maydell 70139f2ec85SPeter Maydell #define DO_UQADD_B(n, m, s) do_sat_bhw((int64_t)n + m, 0, UINT8_MAX, s) 70239f2ec85SPeter Maydell #define DO_UQADD_H(n, m, s) do_sat_bhw((int64_t)n + m, 0, UINT16_MAX, s) 70339f2ec85SPeter Maydell #define DO_UQADD_W(n, m, s) do_sat_bhw((int64_t)n + m, 0, UINT32_MAX, s) 70439f2ec85SPeter Maydell 70539f2ec85SPeter Maydell #define DO_SQSUB_B(n, m, s) do_sat_bhw((int64_t)n - m, INT8_MIN, INT8_MAX, s) 70639f2ec85SPeter Maydell #define DO_SQSUB_H(n, m, s) do_sat_bhw((int64_t)n - m, INT16_MIN, INT16_MAX, s) 70739f2ec85SPeter Maydell #define DO_SQSUB_W(n, m, s) do_sat_bhw((int64_t)n - m, INT32_MIN, INT32_MAX, s) 70839f2ec85SPeter Maydell 70939f2ec85SPeter Maydell #define DO_UQSUB_B(n, m, s) do_sat_bhw((int64_t)n - m, 0, UINT8_MAX, s) 71039f2ec85SPeter Maydell #define DO_UQSUB_H(n, m, s) do_sat_bhw((int64_t)n - m, 0, UINT16_MAX, s) 71139f2ec85SPeter Maydell #define DO_UQSUB_W(n, m, s) do_sat_bhw((int64_t)n - m, 0, UINT32_MAX, s) 7121d2386f7SPeter Maydell 71366c05767SPeter Maydell /* 71466c05767SPeter Maydell * For QDMULH and QRDMULH we simplify "double and shift by esize" into 71566c05767SPeter Maydell * "shift by esize-1", adjusting the QRDMULH rounding constant to match. 71666c05767SPeter Maydell */ 71766c05767SPeter Maydell #define DO_QDMULH_B(n, m, s) do_sat_bhw(((int64_t)n * m) >> 7, \ 71866c05767SPeter Maydell INT8_MIN, INT8_MAX, s) 71966c05767SPeter Maydell #define DO_QDMULH_H(n, m, s) do_sat_bhw(((int64_t)n * m) >> 15, \ 72066c05767SPeter Maydell INT16_MIN, INT16_MAX, s) 72166c05767SPeter Maydell #define DO_QDMULH_W(n, m, s) do_sat_bhw(((int64_t)n * m) >> 31, \ 72266c05767SPeter Maydell INT32_MIN, INT32_MAX, s) 72366c05767SPeter Maydell 72466c05767SPeter Maydell #define DO_QRDMULH_B(n, m, s) do_sat_bhw(((int64_t)n * m + (1 << 6)) >> 7, \ 72566c05767SPeter Maydell INT8_MIN, INT8_MAX, s) 72666c05767SPeter Maydell #define DO_QRDMULH_H(n, m, s) do_sat_bhw(((int64_t)n * m + (1 << 14)) >> 15, \ 72766c05767SPeter Maydell INT16_MIN, INT16_MAX, s) 72866c05767SPeter Maydell #define DO_QRDMULH_W(n, m, s) do_sat_bhw(((int64_t)n * m + (1 << 30)) >> 31, \ 72966c05767SPeter Maydell INT32_MIN, INT32_MAX, s) 73066c05767SPeter Maydell 731380caf6cSPeter Maydell DO_2OP_SAT(vqdmulhb, 1, int8_t, DO_QDMULH_B) 732380caf6cSPeter Maydell DO_2OP_SAT(vqdmulhh, 2, int16_t, DO_QDMULH_H) 733380caf6cSPeter Maydell DO_2OP_SAT(vqdmulhw, 4, int32_t, DO_QDMULH_W) 734380caf6cSPeter Maydell 735380caf6cSPeter Maydell DO_2OP_SAT(vqrdmulhb, 1, int8_t, DO_QRDMULH_B) 736380caf6cSPeter Maydell DO_2OP_SAT(vqrdmulhh, 2, int16_t, DO_QRDMULH_H) 737380caf6cSPeter Maydell DO_2OP_SAT(vqrdmulhw, 4, int32_t, DO_QRDMULH_W) 738380caf6cSPeter Maydell 739f741707bSPeter Maydell DO_2OP_SAT(vqaddub, 1, uint8_t, DO_UQADD_B) 740f741707bSPeter Maydell DO_2OP_SAT(vqadduh, 2, uint16_t, DO_UQADD_H) 741f741707bSPeter Maydell DO_2OP_SAT(vqadduw, 4, uint32_t, DO_UQADD_W) 742f741707bSPeter Maydell DO_2OP_SAT(vqaddsb, 1, int8_t, DO_SQADD_B) 743f741707bSPeter Maydell DO_2OP_SAT(vqaddsh, 2, int16_t, DO_SQADD_H) 744f741707bSPeter Maydell DO_2OP_SAT(vqaddsw, 4, int32_t, DO_SQADD_W) 745f741707bSPeter Maydell 746f741707bSPeter Maydell DO_2OP_SAT(vqsubub, 1, uint8_t, DO_UQSUB_B) 747f741707bSPeter Maydell DO_2OP_SAT(vqsubuh, 2, uint16_t, DO_UQSUB_H) 748f741707bSPeter Maydell DO_2OP_SAT(vqsubuw, 4, uint32_t, DO_UQSUB_W) 749f741707bSPeter Maydell DO_2OP_SAT(vqsubsb, 1, int8_t, DO_SQSUB_B) 750f741707bSPeter Maydell DO_2OP_SAT(vqsubsh, 2, int16_t, DO_SQSUB_H) 751f741707bSPeter Maydell DO_2OP_SAT(vqsubsw, 4, int32_t, DO_SQSUB_W) 752f741707bSPeter Maydell 753483da661SPeter Maydell /* 754483da661SPeter Maydell * This wrapper fixes up the impedance mismatch between do_sqrshl_bhs() 755483da661SPeter Maydell * and friends wanting a uint32_t* sat and our needing a bool*. 756483da661SPeter Maydell */ 757483da661SPeter Maydell #define WRAP_QRSHL_HELPER(FN, N, M, ROUND, satp) \ 758483da661SPeter Maydell ({ \ 759483da661SPeter Maydell uint32_t su32 = 0; \ 760483da661SPeter Maydell typeof(N) r = FN(N, (int8_t)(M), sizeof(N) * 8, ROUND, &su32); \ 761483da661SPeter Maydell if (su32) { \ 762483da661SPeter Maydell *satp = true; \ 763483da661SPeter Maydell } \ 764483da661SPeter Maydell r; \ 765483da661SPeter Maydell }) 766483da661SPeter Maydell 767483da661SPeter Maydell #define DO_SQSHL_OP(N, M, satp) \ 768483da661SPeter Maydell WRAP_QRSHL_HELPER(do_sqrshl_bhs, N, M, false, satp) 769483da661SPeter Maydell #define DO_UQSHL_OP(N, M, satp) \ 770483da661SPeter Maydell WRAP_QRSHL_HELPER(do_uqrshl_bhs, N, M, false, satp) 7719dc868c4SPeter Maydell #define DO_SQRSHL_OP(N, M, satp) \ 7729dc868c4SPeter Maydell WRAP_QRSHL_HELPER(do_sqrshl_bhs, N, M, true, satp) 7739dc868c4SPeter Maydell #define DO_UQRSHL_OP(N, M, satp) \ 7749dc868c4SPeter Maydell WRAP_QRSHL_HELPER(do_uqrshl_bhs, N, M, true, satp) 775f9ed6174SPeter Maydell #define DO_SUQSHL_OP(N, M, satp) \ 776f9ed6174SPeter Maydell WRAP_QRSHL_HELPER(do_suqrshl_bhs, N, M, false, satp) 777483da661SPeter Maydell 778483da661SPeter Maydell DO_2OP_SAT_S(vqshls, DO_SQSHL_OP) 779483da661SPeter Maydell DO_2OP_SAT_U(vqshlu, DO_UQSHL_OP) 7809dc868c4SPeter Maydell DO_2OP_SAT_S(vqrshls, DO_SQRSHL_OP) 7819dc868c4SPeter Maydell DO_2OP_SAT_U(vqrshlu, DO_UQRSHL_OP) 782483da661SPeter Maydell 783fd677f80SPeter Maydell /* 784fd677f80SPeter Maydell * Multiply add dual returning high half 785fd677f80SPeter Maydell * The 'FN' here takes four inputs A, B, C, D, a 0/1 indicator of 786fd677f80SPeter Maydell * whether to add the rounding constant, and the pointer to the 787fd677f80SPeter Maydell * saturation flag, and should do "(A * B + C * D) * 2 + rounding constant", 788fd677f80SPeter Maydell * saturate to twice the input size and return the high half; or 789fd677f80SPeter Maydell * (A * B - C * D) etc for VQDMLSDH. 790fd677f80SPeter Maydell */ 791fd677f80SPeter Maydell #define DO_VQDMLADH_OP(OP, ESIZE, TYPE, XCHG, ROUND, FN) \ 792fd677f80SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, \ 793fd677f80SPeter Maydell void *vm) \ 794fd677f80SPeter Maydell { \ 795fd677f80SPeter Maydell TYPE *d = vd, *n = vn, *m = vm; \ 796fd677f80SPeter Maydell uint16_t mask = mve_element_mask(env); \ 797fd677f80SPeter Maydell unsigned e; \ 798fd677f80SPeter Maydell bool qc = false; \ 799fd677f80SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 800fd677f80SPeter Maydell bool sat = false; \ 801fd677f80SPeter Maydell if ((e & 1) == XCHG) { \ 802fd677f80SPeter Maydell TYPE r = FN(n[H##ESIZE(e)], \ 803fd677f80SPeter Maydell m[H##ESIZE(e - XCHG)], \ 804fd677f80SPeter Maydell n[H##ESIZE(e + (1 - 2 * XCHG))], \ 805fd677f80SPeter Maydell m[H##ESIZE(e + (1 - XCHG))], \ 806fd677f80SPeter Maydell ROUND, &sat); \ 807fd677f80SPeter Maydell mergemask(&d[H##ESIZE(e)], r, mask); \ 808fd677f80SPeter Maydell qc |= sat & mask & 1; \ 809fd677f80SPeter Maydell } \ 810fd677f80SPeter Maydell } \ 811fd677f80SPeter Maydell if (qc) { \ 812fd677f80SPeter Maydell env->vfp.qc[0] = qc; \ 813fd677f80SPeter Maydell } \ 814fd677f80SPeter Maydell mve_advance_vpt(env); \ 815fd677f80SPeter Maydell } 816fd677f80SPeter Maydell 817fd677f80SPeter Maydell static int8_t do_vqdmladh_b(int8_t a, int8_t b, int8_t c, int8_t d, 818fd677f80SPeter Maydell int round, bool *sat) 819fd677f80SPeter Maydell { 820fd677f80SPeter Maydell int64_t r = ((int64_t)a * b + (int64_t)c * d) * 2 + (round << 7); 821fd677f80SPeter Maydell return do_sat_bhw(r, INT16_MIN, INT16_MAX, sat) >> 8; 822fd677f80SPeter Maydell } 823fd677f80SPeter Maydell 824fd677f80SPeter Maydell static int16_t do_vqdmladh_h(int16_t a, int16_t b, int16_t c, int16_t d, 825fd677f80SPeter Maydell int round, bool *sat) 826fd677f80SPeter Maydell { 827fd677f80SPeter Maydell int64_t r = ((int64_t)a * b + (int64_t)c * d) * 2 + (round << 15); 828fd677f80SPeter Maydell return do_sat_bhw(r, INT32_MIN, INT32_MAX, sat) >> 16; 829fd677f80SPeter Maydell } 830fd677f80SPeter Maydell 831fd677f80SPeter Maydell static int32_t do_vqdmladh_w(int32_t a, int32_t b, int32_t c, int32_t d, 832fd677f80SPeter Maydell int round, bool *sat) 833fd677f80SPeter Maydell { 834fd677f80SPeter Maydell int64_t m1 = (int64_t)a * b; 835fd677f80SPeter Maydell int64_t m2 = (int64_t)c * d; 836fd677f80SPeter Maydell int64_t r; 837fd677f80SPeter Maydell /* 838fd677f80SPeter Maydell * Architecturally we should do the entire add, double, round 839fd677f80SPeter Maydell * and then check for saturation. We do three saturating adds, 840fd677f80SPeter Maydell * but we need to be careful about the order. If the first 841fd677f80SPeter Maydell * m1 + m2 saturates then it's impossible for the *2+rc to 842fd677f80SPeter Maydell * bring it back into the non-saturated range. However, if 843fd677f80SPeter Maydell * m1 + m2 is negative then it's possible that doing the doubling 844fd677f80SPeter Maydell * would take the intermediate result below INT64_MAX and the 845fd677f80SPeter Maydell * addition of the rounding constant then brings it back in range. 846fd677f80SPeter Maydell * So we add half the rounding constant before doubling rather 847fd677f80SPeter Maydell * than adding the rounding constant after the doubling. 848fd677f80SPeter Maydell */ 849fd677f80SPeter Maydell if (sadd64_overflow(m1, m2, &r) || 850fd677f80SPeter Maydell sadd64_overflow(r, (round << 30), &r) || 851fd677f80SPeter Maydell sadd64_overflow(r, r, &r)) { 852fd677f80SPeter Maydell *sat = true; 853fd677f80SPeter Maydell return r < 0 ? INT32_MAX : INT32_MIN; 854fd677f80SPeter Maydell } 855fd677f80SPeter Maydell return r >> 32; 856fd677f80SPeter Maydell } 857fd677f80SPeter Maydell 85892f11732SPeter Maydell static int8_t do_vqdmlsdh_b(int8_t a, int8_t b, int8_t c, int8_t d, 85992f11732SPeter Maydell int round, bool *sat) 86092f11732SPeter Maydell { 86192f11732SPeter Maydell int64_t r = ((int64_t)a * b - (int64_t)c * d) * 2 + (round << 7); 86292f11732SPeter Maydell return do_sat_bhw(r, INT16_MIN, INT16_MAX, sat) >> 8; 86392f11732SPeter Maydell } 86492f11732SPeter Maydell 86592f11732SPeter Maydell static int16_t do_vqdmlsdh_h(int16_t a, int16_t b, int16_t c, int16_t d, 86692f11732SPeter Maydell int round, bool *sat) 86792f11732SPeter Maydell { 86892f11732SPeter Maydell int64_t r = ((int64_t)a * b - (int64_t)c * d) * 2 + (round << 15); 86992f11732SPeter Maydell return do_sat_bhw(r, INT32_MIN, INT32_MAX, sat) >> 16; 87092f11732SPeter Maydell } 87192f11732SPeter Maydell 87292f11732SPeter Maydell static int32_t do_vqdmlsdh_w(int32_t a, int32_t b, int32_t c, int32_t d, 87392f11732SPeter Maydell int round, bool *sat) 87492f11732SPeter Maydell { 87592f11732SPeter Maydell int64_t m1 = (int64_t)a * b; 87692f11732SPeter Maydell int64_t m2 = (int64_t)c * d; 87792f11732SPeter Maydell int64_t r; 87892f11732SPeter Maydell /* The same ordering issue as in do_vqdmladh_w applies here too */ 87992f11732SPeter Maydell if (ssub64_overflow(m1, m2, &r) || 88092f11732SPeter Maydell sadd64_overflow(r, (round << 30), &r) || 88192f11732SPeter Maydell sadd64_overflow(r, r, &r)) { 88292f11732SPeter Maydell *sat = true; 88392f11732SPeter Maydell return r < 0 ? INT32_MAX : INT32_MIN; 88492f11732SPeter Maydell } 88592f11732SPeter Maydell return r >> 32; 88692f11732SPeter Maydell } 88792f11732SPeter Maydell 888fd677f80SPeter Maydell DO_VQDMLADH_OP(vqdmladhb, 1, int8_t, 0, 0, do_vqdmladh_b) 889fd677f80SPeter Maydell DO_VQDMLADH_OP(vqdmladhh, 2, int16_t, 0, 0, do_vqdmladh_h) 890fd677f80SPeter Maydell DO_VQDMLADH_OP(vqdmladhw, 4, int32_t, 0, 0, do_vqdmladh_w) 891fd677f80SPeter Maydell DO_VQDMLADH_OP(vqdmladhxb, 1, int8_t, 1, 0, do_vqdmladh_b) 892fd677f80SPeter Maydell DO_VQDMLADH_OP(vqdmladhxh, 2, int16_t, 1, 0, do_vqdmladh_h) 893fd677f80SPeter Maydell DO_VQDMLADH_OP(vqdmladhxw, 4, int32_t, 1, 0, do_vqdmladh_w) 894fd677f80SPeter Maydell 895fd677f80SPeter Maydell DO_VQDMLADH_OP(vqrdmladhb, 1, int8_t, 0, 1, do_vqdmladh_b) 896fd677f80SPeter Maydell DO_VQDMLADH_OP(vqrdmladhh, 2, int16_t, 0, 1, do_vqdmladh_h) 897fd677f80SPeter Maydell DO_VQDMLADH_OP(vqrdmladhw, 4, int32_t, 0, 1, do_vqdmladh_w) 898fd677f80SPeter Maydell DO_VQDMLADH_OP(vqrdmladhxb, 1, int8_t, 1, 1, do_vqdmladh_b) 899fd677f80SPeter Maydell DO_VQDMLADH_OP(vqrdmladhxh, 2, int16_t, 1, 1, do_vqdmladh_h) 900fd677f80SPeter Maydell DO_VQDMLADH_OP(vqrdmladhxw, 4, int32_t, 1, 1, do_vqdmladh_w) 901fd677f80SPeter Maydell 90292f11732SPeter Maydell DO_VQDMLADH_OP(vqdmlsdhb, 1, int8_t, 0, 0, do_vqdmlsdh_b) 90392f11732SPeter Maydell DO_VQDMLADH_OP(vqdmlsdhh, 2, int16_t, 0, 0, do_vqdmlsdh_h) 90492f11732SPeter Maydell DO_VQDMLADH_OP(vqdmlsdhw, 4, int32_t, 0, 0, do_vqdmlsdh_w) 90592f11732SPeter Maydell DO_VQDMLADH_OP(vqdmlsdhxb, 1, int8_t, 1, 0, do_vqdmlsdh_b) 90692f11732SPeter Maydell DO_VQDMLADH_OP(vqdmlsdhxh, 2, int16_t, 1, 0, do_vqdmlsdh_h) 90792f11732SPeter Maydell DO_VQDMLADH_OP(vqdmlsdhxw, 4, int32_t, 1, 0, do_vqdmlsdh_w) 90892f11732SPeter Maydell 90992f11732SPeter Maydell DO_VQDMLADH_OP(vqrdmlsdhb, 1, int8_t, 0, 1, do_vqdmlsdh_b) 91092f11732SPeter Maydell DO_VQDMLADH_OP(vqrdmlsdhh, 2, int16_t, 0, 1, do_vqdmlsdh_h) 91192f11732SPeter Maydell DO_VQDMLADH_OP(vqrdmlsdhw, 4, int32_t, 0, 1, do_vqdmlsdh_w) 91292f11732SPeter Maydell DO_VQDMLADH_OP(vqrdmlsdhxb, 1, int8_t, 1, 1, do_vqdmlsdh_b) 91392f11732SPeter Maydell DO_VQDMLADH_OP(vqrdmlsdhxh, 2, int16_t, 1, 1, do_vqdmlsdh_h) 91492f11732SPeter Maydell DO_VQDMLADH_OP(vqrdmlsdhxw, 4, int32_t, 1, 1, do_vqdmlsdh_w) 91592f11732SPeter Maydell 916e51896b3SPeter Maydell #define DO_2OP_SCALAR(OP, ESIZE, TYPE, FN) \ 917e51896b3SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, \ 918e51896b3SPeter Maydell uint32_t rm) \ 919e51896b3SPeter Maydell { \ 920e51896b3SPeter Maydell TYPE *d = vd, *n = vn; \ 921e51896b3SPeter Maydell TYPE m = rm; \ 922e51896b3SPeter Maydell uint16_t mask = mve_element_mask(env); \ 923e51896b3SPeter Maydell unsigned e; \ 924e51896b3SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 925e51896b3SPeter Maydell mergemask(&d[H##ESIZE(e)], FN(n[H##ESIZE(e)], m), mask); \ 926e51896b3SPeter Maydell } \ 927e51896b3SPeter Maydell mve_advance_vpt(env); \ 928e51896b3SPeter Maydell } 929e51896b3SPeter Maydell 93039f2ec85SPeter Maydell #define DO_2OP_SAT_SCALAR(OP, ESIZE, TYPE, FN) \ 93139f2ec85SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, \ 93239f2ec85SPeter Maydell uint32_t rm) \ 93339f2ec85SPeter Maydell { \ 93439f2ec85SPeter Maydell TYPE *d = vd, *n = vn; \ 93539f2ec85SPeter Maydell TYPE m = rm; \ 93639f2ec85SPeter Maydell uint16_t mask = mve_element_mask(env); \ 93739f2ec85SPeter Maydell unsigned e; \ 93839f2ec85SPeter Maydell bool qc = false; \ 93939f2ec85SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 94039f2ec85SPeter Maydell bool sat = false; \ 94139f2ec85SPeter Maydell mergemask(&d[H##ESIZE(e)], FN(n[H##ESIZE(e)], m, &sat), \ 94239f2ec85SPeter Maydell mask); \ 94339f2ec85SPeter Maydell qc |= sat & mask & 1; \ 94439f2ec85SPeter Maydell } \ 94539f2ec85SPeter Maydell if (qc) { \ 94639f2ec85SPeter Maydell env->vfp.qc[0] = qc; \ 94739f2ec85SPeter Maydell } \ 94839f2ec85SPeter Maydell mve_advance_vpt(env); \ 94939f2ec85SPeter Maydell } 95039f2ec85SPeter Maydell 951e51896b3SPeter Maydell /* provide unsigned 2-op scalar helpers for all sizes */ 952e51896b3SPeter Maydell #define DO_2OP_SCALAR_U(OP, FN) \ 953e51896b3SPeter Maydell DO_2OP_SCALAR(OP##b, 1, uint8_t, FN) \ 954e51896b3SPeter Maydell DO_2OP_SCALAR(OP##h, 2, uint16_t, FN) \ 955e51896b3SPeter Maydell DO_2OP_SCALAR(OP##w, 4, uint32_t, FN) 956644f717cSPeter Maydell #define DO_2OP_SCALAR_S(OP, FN) \ 957644f717cSPeter Maydell DO_2OP_SCALAR(OP##b, 1, int8_t, FN) \ 958644f717cSPeter Maydell DO_2OP_SCALAR(OP##h, 2, int16_t, FN) \ 959644f717cSPeter Maydell DO_2OP_SCALAR(OP##w, 4, int32_t, FN) 960e51896b3SPeter Maydell 961e51896b3SPeter Maydell DO_2OP_SCALAR_U(vadd_scalar, DO_ADD) 96291a358fdSPeter Maydell DO_2OP_SCALAR_U(vsub_scalar, DO_SUB) 96391a358fdSPeter Maydell DO_2OP_SCALAR_U(vmul_scalar, DO_MUL) 964644f717cSPeter Maydell DO_2OP_SCALAR_S(vhadds_scalar, do_vhadd_s) 965644f717cSPeter Maydell DO_2OP_SCALAR_U(vhaddu_scalar, do_vhadd_u) 966644f717cSPeter Maydell DO_2OP_SCALAR_S(vhsubs_scalar, do_vhsub_s) 967644f717cSPeter Maydell DO_2OP_SCALAR_U(vhsubu_scalar, do_vhsub_u) 968e51896b3SPeter Maydell 96939f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqaddu_scalarb, 1, uint8_t, DO_UQADD_B) 97039f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqaddu_scalarh, 2, uint16_t, DO_UQADD_H) 97139f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqaddu_scalarw, 4, uint32_t, DO_UQADD_W) 97239f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqadds_scalarb, 1, int8_t, DO_SQADD_B) 97339f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqadds_scalarh, 2, int16_t, DO_SQADD_H) 97439f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqadds_scalarw, 4, int32_t, DO_SQADD_W) 97539f2ec85SPeter Maydell 97639f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqsubu_scalarb, 1, uint8_t, DO_UQSUB_B) 97739f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqsubu_scalarh, 2, uint16_t, DO_UQSUB_H) 97839f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqsubu_scalarw, 4, uint32_t, DO_UQSUB_W) 97939f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqsubs_scalarb, 1, int8_t, DO_SQSUB_B) 98039f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqsubs_scalarh, 2, int16_t, DO_SQSUB_H) 98139f2ec85SPeter Maydell DO_2OP_SAT_SCALAR(vqsubs_scalarw, 4, int32_t, DO_SQSUB_W) 98239f2ec85SPeter Maydell 98366c05767SPeter Maydell DO_2OP_SAT_SCALAR(vqdmulh_scalarb, 1, int8_t, DO_QDMULH_B) 98466c05767SPeter Maydell DO_2OP_SAT_SCALAR(vqdmulh_scalarh, 2, int16_t, DO_QDMULH_H) 98566c05767SPeter Maydell DO_2OP_SAT_SCALAR(vqdmulh_scalarw, 4, int32_t, DO_QDMULH_W) 98666c05767SPeter Maydell DO_2OP_SAT_SCALAR(vqrdmulh_scalarb, 1, int8_t, DO_QRDMULH_B) 98766c05767SPeter Maydell DO_2OP_SAT_SCALAR(vqrdmulh_scalarh, 2, int16_t, DO_QRDMULH_H) 98866c05767SPeter Maydell DO_2OP_SAT_SCALAR(vqrdmulh_scalarw, 4, int32_t, DO_QRDMULH_W) 98966c05767SPeter Maydell 990a8890353SPeter Maydell /* 991a8890353SPeter Maydell * Long saturating scalar ops. As with DO_2OP_L, TYPE and H are for the 992a8890353SPeter Maydell * input (smaller) type and LESIZE, LTYPE, LH for the output (long) type. 993a8890353SPeter Maydell * SATMASK specifies which bits of the predicate mask matter for determining 994a8890353SPeter Maydell * whether to propagate a saturation indication into FPSCR.QC -- for 995a8890353SPeter Maydell * the 16x16->32 case we must check only the bit corresponding to the T or B 996a8890353SPeter Maydell * half that we used, but for the 32x32->64 case we propagate if the mask 997a8890353SPeter Maydell * bit is set for either half. 998a8890353SPeter Maydell */ 999a8890353SPeter Maydell #define DO_2OP_SAT_SCALAR_L(OP, TOP, ESIZE, TYPE, LESIZE, LTYPE, FN, SATMASK) \ 1000a8890353SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, \ 1001a8890353SPeter Maydell uint32_t rm) \ 1002a8890353SPeter Maydell { \ 1003a8890353SPeter Maydell LTYPE *d = vd; \ 1004a8890353SPeter Maydell TYPE *n = vn; \ 1005a8890353SPeter Maydell TYPE m = rm; \ 1006a8890353SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1007a8890353SPeter Maydell unsigned le; \ 1008a8890353SPeter Maydell bool qc = false; \ 1009a8890353SPeter Maydell for (le = 0; le < 16 / LESIZE; le++, mask >>= LESIZE) { \ 1010a8890353SPeter Maydell bool sat = false; \ 1011a8890353SPeter Maydell LTYPE r = FN((LTYPE)n[H##ESIZE(le * 2 + TOP)], m, &sat); \ 1012a8890353SPeter Maydell mergemask(&d[H##LESIZE(le)], r, mask); \ 1013a8890353SPeter Maydell qc |= sat && (mask & SATMASK); \ 1014a8890353SPeter Maydell } \ 1015a8890353SPeter Maydell if (qc) { \ 1016a8890353SPeter Maydell env->vfp.qc[0] = qc; \ 1017a8890353SPeter Maydell } \ 1018a8890353SPeter Maydell mve_advance_vpt(env); \ 1019a8890353SPeter Maydell } 1020a8890353SPeter Maydell 1021a8890353SPeter Maydell static inline int32_t do_qdmullh(int16_t n, int16_t m, bool *sat) 1022a8890353SPeter Maydell { 1023a8890353SPeter Maydell int64_t r = ((int64_t)n * m) * 2; 1024a8890353SPeter Maydell return do_sat_bhw(r, INT32_MIN, INT32_MAX, sat); 1025a8890353SPeter Maydell } 1026a8890353SPeter Maydell 1027a8890353SPeter Maydell static inline int64_t do_qdmullw(int32_t n, int32_t m, bool *sat) 1028a8890353SPeter Maydell { 1029a8890353SPeter Maydell /* The multiply can't overflow, but the doubling might */ 1030a8890353SPeter Maydell int64_t r = (int64_t)n * m; 1031a8890353SPeter Maydell if (r > INT64_MAX / 2) { 1032a8890353SPeter Maydell *sat = true; 1033a8890353SPeter Maydell return INT64_MAX; 1034a8890353SPeter Maydell } else if (r < INT64_MIN / 2) { 1035a8890353SPeter Maydell *sat = true; 1036a8890353SPeter Maydell return INT64_MIN; 1037a8890353SPeter Maydell } else { 1038a8890353SPeter Maydell return r * 2; 1039a8890353SPeter Maydell } 1040a8890353SPeter Maydell } 1041a8890353SPeter Maydell 1042a8890353SPeter Maydell #define SATMASK16B 1 1043a8890353SPeter Maydell #define SATMASK16T (1 << 2) 1044a8890353SPeter Maydell #define SATMASK32 ((1 << 4) | 1) 1045a8890353SPeter Maydell 1046a8890353SPeter Maydell DO_2OP_SAT_SCALAR_L(vqdmullb_scalarh, 0, 2, int16_t, 4, int32_t, \ 1047a8890353SPeter Maydell do_qdmullh, SATMASK16B) 1048a8890353SPeter Maydell DO_2OP_SAT_SCALAR_L(vqdmullb_scalarw, 0, 4, int32_t, 8, int64_t, \ 1049a8890353SPeter Maydell do_qdmullw, SATMASK32) 1050a8890353SPeter Maydell DO_2OP_SAT_SCALAR_L(vqdmullt_scalarh, 1, 2, int16_t, 4, int32_t, \ 1051a8890353SPeter Maydell do_qdmullh, SATMASK16T) 1052a8890353SPeter Maydell DO_2OP_SAT_SCALAR_L(vqdmullt_scalarw, 1, 4, int32_t, 8, int64_t, \ 1053a8890353SPeter Maydell do_qdmullw, SATMASK32) 1054a8890353SPeter Maydell 105543364321SPeter Maydell /* 105643364321SPeter Maydell * Long saturating ops 105743364321SPeter Maydell */ 105843364321SPeter Maydell #define DO_2OP_SAT_L(OP, TOP, ESIZE, TYPE, LESIZE, LTYPE, FN, SATMASK) \ 105943364321SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, void *vn, \ 106043364321SPeter Maydell void *vm) \ 106143364321SPeter Maydell { \ 106243364321SPeter Maydell LTYPE *d = vd; \ 106343364321SPeter Maydell TYPE *n = vn, *m = vm; \ 106443364321SPeter Maydell uint16_t mask = mve_element_mask(env); \ 106543364321SPeter Maydell unsigned le; \ 106643364321SPeter Maydell bool qc = false; \ 106743364321SPeter Maydell for (le = 0; le < 16 / LESIZE; le++, mask >>= LESIZE) { \ 106843364321SPeter Maydell bool sat = false; \ 106943364321SPeter Maydell LTYPE op1 = n[H##ESIZE(le * 2 + TOP)]; \ 107043364321SPeter Maydell LTYPE op2 = m[H##ESIZE(le * 2 + TOP)]; \ 107143364321SPeter Maydell mergemask(&d[H##LESIZE(le)], FN(op1, op2, &sat), mask); \ 107243364321SPeter Maydell qc |= sat && (mask & SATMASK); \ 107343364321SPeter Maydell } \ 107443364321SPeter Maydell if (qc) { \ 107543364321SPeter Maydell env->vfp.qc[0] = qc; \ 107643364321SPeter Maydell } \ 107743364321SPeter Maydell mve_advance_vpt(env); \ 107843364321SPeter Maydell } 107943364321SPeter Maydell 108043364321SPeter Maydell DO_2OP_SAT_L(vqdmullbh, 0, 2, int16_t, 4, int32_t, do_qdmullh, SATMASK16B) 108143364321SPeter Maydell DO_2OP_SAT_L(vqdmullbw, 0, 4, int32_t, 8, int64_t, do_qdmullw, SATMASK32) 108243364321SPeter Maydell DO_2OP_SAT_L(vqdmullth, 1, 2, int16_t, 4, int32_t, do_qdmullh, SATMASK16T) 108343364321SPeter Maydell DO_2OP_SAT_L(vqdmulltw, 1, 4, int32_t, 8, int64_t, do_qdmullw, SATMASK32) 108443364321SPeter Maydell 1085b050543bSPeter Maydell static inline uint32_t do_vbrsrb(uint32_t n, uint32_t m) 1086b050543bSPeter Maydell { 1087b050543bSPeter Maydell m &= 0xff; 1088b050543bSPeter Maydell if (m == 0) { 1089b050543bSPeter Maydell return 0; 1090b050543bSPeter Maydell } 1091b050543bSPeter Maydell n = revbit8(n); 1092b050543bSPeter Maydell if (m < 8) { 1093b050543bSPeter Maydell n >>= 8 - m; 1094b050543bSPeter Maydell } 1095b050543bSPeter Maydell return n; 1096b050543bSPeter Maydell } 1097b050543bSPeter Maydell 1098b050543bSPeter Maydell static inline uint32_t do_vbrsrh(uint32_t n, uint32_t m) 1099b050543bSPeter Maydell { 1100b050543bSPeter Maydell m &= 0xff; 1101b050543bSPeter Maydell if (m == 0) { 1102b050543bSPeter Maydell return 0; 1103b050543bSPeter Maydell } 1104b050543bSPeter Maydell n = revbit16(n); 1105b050543bSPeter Maydell if (m < 16) { 1106b050543bSPeter Maydell n >>= 16 - m; 1107b050543bSPeter Maydell } 1108b050543bSPeter Maydell return n; 1109b050543bSPeter Maydell } 1110b050543bSPeter Maydell 1111b050543bSPeter Maydell static inline uint32_t do_vbrsrw(uint32_t n, uint32_t m) 1112b050543bSPeter Maydell { 1113b050543bSPeter Maydell m &= 0xff; 1114b050543bSPeter Maydell if (m == 0) { 1115b050543bSPeter Maydell return 0; 1116b050543bSPeter Maydell } 1117b050543bSPeter Maydell n = revbit32(n); 1118b050543bSPeter Maydell if (m < 32) { 1119b050543bSPeter Maydell n >>= 32 - m; 1120b050543bSPeter Maydell } 1121b050543bSPeter Maydell return n; 1122b050543bSPeter Maydell } 1123b050543bSPeter Maydell 1124b050543bSPeter Maydell DO_2OP_SCALAR(vbrsrb, 1, uint8_t, do_vbrsrb) 1125b050543bSPeter Maydell DO_2OP_SCALAR(vbrsrh, 2, uint16_t, do_vbrsrh) 1126b050543bSPeter Maydell DO_2OP_SCALAR(vbrsrw, 4, uint32_t, do_vbrsrw) 1127b050543bSPeter Maydell 11281d2386f7SPeter Maydell /* 11291d2386f7SPeter Maydell * Multiply add long dual accumulate ops. 11301d2386f7SPeter Maydell */ 11311d2386f7SPeter Maydell #define DO_LDAV(OP, ESIZE, TYPE, XCHG, EVENACC, ODDACC) \ 11321d2386f7SPeter Maydell uint64_t HELPER(glue(mve_, OP))(CPUARMState *env, void *vn, \ 11331d2386f7SPeter Maydell void *vm, uint64_t a) \ 11341d2386f7SPeter Maydell { \ 11351d2386f7SPeter Maydell uint16_t mask = mve_element_mask(env); \ 11361d2386f7SPeter Maydell unsigned e; \ 11371d2386f7SPeter Maydell TYPE *n = vn, *m = vm; \ 11381d2386f7SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 11391d2386f7SPeter Maydell if (mask & 1) { \ 11401d2386f7SPeter Maydell if (e & 1) { \ 11411d2386f7SPeter Maydell a ODDACC \ 11421d2386f7SPeter Maydell (int64_t)n[H##ESIZE(e - 1 * XCHG)] * m[H##ESIZE(e)]; \ 11431d2386f7SPeter Maydell } else { \ 11441d2386f7SPeter Maydell a EVENACC \ 11451d2386f7SPeter Maydell (int64_t)n[H##ESIZE(e + 1 * XCHG)] * m[H##ESIZE(e)]; \ 11461d2386f7SPeter Maydell } \ 11471d2386f7SPeter Maydell } \ 11481d2386f7SPeter Maydell } \ 11491d2386f7SPeter Maydell mve_advance_vpt(env); \ 11501d2386f7SPeter Maydell return a; \ 11511d2386f7SPeter Maydell } 11521d2386f7SPeter Maydell 11531d2386f7SPeter Maydell DO_LDAV(vmlaldavsh, 2, int16_t, false, +=, +=) 11541d2386f7SPeter Maydell DO_LDAV(vmlaldavxsh, 2, int16_t, true, +=, +=) 11551d2386f7SPeter Maydell DO_LDAV(vmlaldavsw, 4, int32_t, false, +=, +=) 11561d2386f7SPeter Maydell DO_LDAV(vmlaldavxsw, 4, int32_t, true, +=, +=) 11571d2386f7SPeter Maydell 11581d2386f7SPeter Maydell DO_LDAV(vmlaldavuh, 2, uint16_t, false, +=, +=) 11591d2386f7SPeter Maydell DO_LDAV(vmlaldavuw, 4, uint32_t, false, +=, +=) 1160181cd971SPeter Maydell 1161181cd971SPeter Maydell DO_LDAV(vmlsldavsh, 2, int16_t, false, +=, -=) 1162181cd971SPeter Maydell DO_LDAV(vmlsldavxsh, 2, int16_t, true, +=, -=) 1163181cd971SPeter Maydell DO_LDAV(vmlsldavsw, 4, int32_t, false, +=, -=) 1164181cd971SPeter Maydell DO_LDAV(vmlsldavxsw, 4, int32_t, true, +=, -=) 116538548747SPeter Maydell 116638548747SPeter Maydell /* 1167303db86fSPeter Maydell * Rounding multiply add long dual accumulate high. In the pseudocode 1168303db86fSPeter Maydell * this is implemented with a 72-bit internal accumulator value of which 1169303db86fSPeter Maydell * the top 64 bits are returned. We optimize this to avoid having to 1170303db86fSPeter Maydell * use 128-bit arithmetic -- we can do this because the 74-bit accumulator 1171303db86fSPeter Maydell * is squashed back into 64-bits after each beat. 117238548747SPeter Maydell */ 1173303db86fSPeter Maydell #define DO_LDAVH(OP, TYPE, LTYPE, XCHG, SUB) \ 117438548747SPeter Maydell uint64_t HELPER(glue(mve_, OP))(CPUARMState *env, void *vn, \ 117538548747SPeter Maydell void *vm, uint64_t a) \ 117638548747SPeter Maydell { \ 117738548747SPeter Maydell uint16_t mask = mve_element_mask(env); \ 117838548747SPeter Maydell unsigned e; \ 117938548747SPeter Maydell TYPE *n = vn, *m = vm; \ 1180303db86fSPeter Maydell for (e = 0; e < 16 / 4; e++, mask >>= 4) { \ 118138548747SPeter Maydell if (mask & 1) { \ 1182303db86fSPeter Maydell LTYPE mul; \ 118338548747SPeter Maydell if (e & 1) { \ 1184303db86fSPeter Maydell mul = (LTYPE)n[H4(e - 1 * XCHG)] * m[H4(e)]; \ 1185303db86fSPeter Maydell if (SUB) { \ 1186303db86fSPeter Maydell mul = -mul; \ 118738548747SPeter Maydell } \ 1188303db86fSPeter Maydell } else { \ 1189303db86fSPeter Maydell mul = (LTYPE)n[H4(e + 1 * XCHG)] * m[H4(e)]; \ 1190303db86fSPeter Maydell } \ 1191303db86fSPeter Maydell mul = (mul >> 8) + ((mul >> 7) & 1); \ 1192303db86fSPeter Maydell a += mul; \ 119338548747SPeter Maydell } \ 119438548747SPeter Maydell } \ 119538548747SPeter Maydell mve_advance_vpt(env); \ 1196303db86fSPeter Maydell return a; \ 119738548747SPeter Maydell } 119838548747SPeter Maydell 1199303db86fSPeter Maydell DO_LDAVH(vrmlaldavhsw, int32_t, int64_t, false, false) 1200303db86fSPeter Maydell DO_LDAVH(vrmlaldavhxsw, int32_t, int64_t, true, false) 120138548747SPeter Maydell 1202303db86fSPeter Maydell DO_LDAVH(vrmlaldavhuw, uint32_t, uint64_t, false, false) 120338548747SPeter Maydell 1204303db86fSPeter Maydell DO_LDAVH(vrmlsldavhsw, int32_t, int64_t, false, true) 1205303db86fSPeter Maydell DO_LDAVH(vrmlsldavhxsw, int32_t, int64_t, true, true) 12066f060a63SPeter Maydell 12076f060a63SPeter Maydell /* Vector add across vector */ 12086f060a63SPeter Maydell #define DO_VADDV(OP, ESIZE, TYPE) \ 12096f060a63SPeter Maydell uint32_t HELPER(glue(mve_, OP))(CPUARMState *env, void *vm, \ 12106f060a63SPeter Maydell uint32_t ra) \ 12116f060a63SPeter Maydell { \ 12126f060a63SPeter Maydell uint16_t mask = mve_element_mask(env); \ 12136f060a63SPeter Maydell unsigned e; \ 12146f060a63SPeter Maydell TYPE *m = vm; \ 12156f060a63SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 12166f060a63SPeter Maydell if (mask & 1) { \ 12176f060a63SPeter Maydell ra += m[H##ESIZE(e)]; \ 12186f060a63SPeter Maydell } \ 12196f060a63SPeter Maydell } \ 12206f060a63SPeter Maydell mve_advance_vpt(env); \ 12216f060a63SPeter Maydell return ra; \ 12226f060a63SPeter Maydell } \ 12236f060a63SPeter Maydell 1224ed5a59d6SPeter Maydell DO_VADDV(vaddvsb, 1, int8_t) 1225ed5a59d6SPeter Maydell DO_VADDV(vaddvsh, 2, int16_t) 1226ed5a59d6SPeter Maydell DO_VADDV(vaddvsw, 4, int32_t) 12276f060a63SPeter Maydell DO_VADDV(vaddvub, 1, uint8_t) 12286f060a63SPeter Maydell DO_VADDV(vaddvuh, 2, uint16_t) 12296f060a63SPeter Maydell DO_VADDV(vaddvuw, 4, uint32_t) 1230f9ed6174SPeter Maydell 1231d43ebd9dSPeter Maydell #define DO_VADDLV(OP, TYPE, LTYPE) \ 1232d43ebd9dSPeter Maydell uint64_t HELPER(glue(mve_, OP))(CPUARMState *env, void *vm, \ 1233d43ebd9dSPeter Maydell uint64_t ra) \ 1234d43ebd9dSPeter Maydell { \ 1235d43ebd9dSPeter Maydell uint16_t mask = mve_element_mask(env); \ 1236d43ebd9dSPeter Maydell unsigned e; \ 1237d43ebd9dSPeter Maydell TYPE *m = vm; \ 1238d43ebd9dSPeter Maydell for (e = 0; e < 16 / 4; e++, mask >>= 4) { \ 1239d43ebd9dSPeter Maydell if (mask & 1) { \ 1240d43ebd9dSPeter Maydell ra += (LTYPE)m[H4(e)]; \ 1241d43ebd9dSPeter Maydell } \ 1242d43ebd9dSPeter Maydell } \ 1243d43ebd9dSPeter Maydell mve_advance_vpt(env); \ 1244d43ebd9dSPeter Maydell return ra; \ 1245d43ebd9dSPeter Maydell } \ 1246d43ebd9dSPeter Maydell 1247d43ebd9dSPeter Maydell DO_VADDLV(vaddlv_s, int32_t, int64_t) 1248d43ebd9dSPeter Maydell DO_VADDLV(vaddlv_u, uint32_t, uint64_t) 1249d43ebd9dSPeter Maydell 1250f9ed6174SPeter Maydell /* Shifts by immediate */ 1251f9ed6174SPeter Maydell #define DO_2SHIFT(OP, ESIZE, TYPE, FN) \ 1252f9ed6174SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, \ 1253f9ed6174SPeter Maydell void *vm, uint32_t shift) \ 1254f9ed6174SPeter Maydell { \ 1255f9ed6174SPeter Maydell TYPE *d = vd, *m = vm; \ 1256f9ed6174SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1257f9ed6174SPeter Maydell unsigned e; \ 1258f9ed6174SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 1259f9ed6174SPeter Maydell mergemask(&d[H##ESIZE(e)], \ 1260f9ed6174SPeter Maydell FN(m[H##ESIZE(e)], shift), mask); \ 1261f9ed6174SPeter Maydell } \ 1262f9ed6174SPeter Maydell mve_advance_vpt(env); \ 1263f9ed6174SPeter Maydell } 1264f9ed6174SPeter Maydell 1265f9ed6174SPeter Maydell #define DO_2SHIFT_SAT(OP, ESIZE, TYPE, FN) \ 1266f9ed6174SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, \ 1267f9ed6174SPeter Maydell void *vm, uint32_t shift) \ 1268f9ed6174SPeter Maydell { \ 1269f9ed6174SPeter Maydell TYPE *d = vd, *m = vm; \ 1270f9ed6174SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1271f9ed6174SPeter Maydell unsigned e; \ 1272f9ed6174SPeter Maydell bool qc = false; \ 1273f9ed6174SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 1274f9ed6174SPeter Maydell bool sat = false; \ 1275f9ed6174SPeter Maydell mergemask(&d[H##ESIZE(e)], \ 1276f9ed6174SPeter Maydell FN(m[H##ESIZE(e)], shift, &sat), mask); \ 1277f9ed6174SPeter Maydell qc |= sat & mask & 1; \ 1278f9ed6174SPeter Maydell } \ 1279f9ed6174SPeter Maydell if (qc) { \ 1280f9ed6174SPeter Maydell env->vfp.qc[0] = qc; \ 1281f9ed6174SPeter Maydell } \ 1282f9ed6174SPeter Maydell mve_advance_vpt(env); \ 1283f9ed6174SPeter Maydell } 1284f9ed6174SPeter Maydell 1285f9ed6174SPeter Maydell /* provide unsigned 2-op shift helpers for all sizes */ 1286f9ed6174SPeter Maydell #define DO_2SHIFT_U(OP, FN) \ 1287f9ed6174SPeter Maydell DO_2SHIFT(OP##b, 1, uint8_t, FN) \ 1288f9ed6174SPeter Maydell DO_2SHIFT(OP##h, 2, uint16_t, FN) \ 1289f9ed6174SPeter Maydell DO_2SHIFT(OP##w, 4, uint32_t, FN) 12903394116fSPeter Maydell #define DO_2SHIFT_S(OP, FN) \ 12913394116fSPeter Maydell DO_2SHIFT(OP##b, 1, int8_t, FN) \ 12923394116fSPeter Maydell DO_2SHIFT(OP##h, 2, int16_t, FN) \ 12933394116fSPeter Maydell DO_2SHIFT(OP##w, 4, int32_t, FN) 1294f9ed6174SPeter Maydell 1295f9ed6174SPeter Maydell #define DO_2SHIFT_SAT_U(OP, FN) \ 1296f9ed6174SPeter Maydell DO_2SHIFT_SAT(OP##b, 1, uint8_t, FN) \ 1297f9ed6174SPeter Maydell DO_2SHIFT_SAT(OP##h, 2, uint16_t, FN) \ 1298f9ed6174SPeter Maydell DO_2SHIFT_SAT(OP##w, 4, uint32_t, FN) 1299f9ed6174SPeter Maydell #define DO_2SHIFT_SAT_S(OP, FN) \ 1300f9ed6174SPeter Maydell DO_2SHIFT_SAT(OP##b, 1, int8_t, FN) \ 1301f9ed6174SPeter Maydell DO_2SHIFT_SAT(OP##h, 2, int16_t, FN) \ 1302f9ed6174SPeter Maydell DO_2SHIFT_SAT(OP##w, 4, int32_t, FN) 1303f9ed6174SPeter Maydell 1304f9ed6174SPeter Maydell DO_2SHIFT_U(vshli_u, DO_VSHLU) 13053394116fSPeter Maydell DO_2SHIFT_S(vshli_s, DO_VSHLS) 1306f9ed6174SPeter Maydell DO_2SHIFT_SAT_U(vqshli_u, DO_UQSHL_OP) 1307f9ed6174SPeter Maydell DO_2SHIFT_SAT_S(vqshli_s, DO_SQSHL_OP) 1308f9ed6174SPeter Maydell DO_2SHIFT_SAT_S(vqshlui_s, DO_SUQSHL_OP) 13093394116fSPeter Maydell DO_2SHIFT_U(vrshli_u, DO_VRSHLU) 13103394116fSPeter Maydell DO_2SHIFT_S(vrshli_s, DO_VRSHLS) 1311c2262707SPeter Maydell 1312a78b25faSPeter Maydell /* Shift-and-insert; we always work with 64 bits at a time */ 1313a78b25faSPeter Maydell #define DO_2SHIFT_INSERT(OP, ESIZE, SHIFTFN, MASKFN) \ 1314a78b25faSPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, \ 1315a78b25faSPeter Maydell void *vm, uint32_t shift) \ 1316a78b25faSPeter Maydell { \ 1317a78b25faSPeter Maydell uint64_t *d = vd, *m = vm; \ 1318a78b25faSPeter Maydell uint16_t mask; \ 1319a78b25faSPeter Maydell uint64_t shiftmask; \ 1320a78b25faSPeter Maydell unsigned e; \ 1321c88ff884SPeter Maydell if (shift == ESIZE * 8) { \ 1322a78b25faSPeter Maydell /* \ 1323c88ff884SPeter Maydell * Only VSRI can shift by <dt>; it should mean "don't \ 1324c88ff884SPeter Maydell * update the destination". The generic logic can't handle \ 1325c88ff884SPeter Maydell * this because it would try to shift by an out-of-range \ 1326c88ff884SPeter Maydell * amount, so special case it here. \ 1327a78b25faSPeter Maydell */ \ 1328a78b25faSPeter Maydell goto done; \ 1329a78b25faSPeter Maydell } \ 1330a78b25faSPeter Maydell assert(shift < ESIZE * 8); \ 1331a78b25faSPeter Maydell mask = mve_element_mask(env); \ 1332a78b25faSPeter Maydell /* ESIZE / 2 gives the MO_* value if ESIZE is in [1,2,4] */ \ 1333a78b25faSPeter Maydell shiftmask = dup_const(ESIZE / 2, MASKFN(ESIZE * 8, shift)); \ 1334a78b25faSPeter Maydell for (e = 0; e < 16 / 8; e++, mask >>= 8) { \ 1335a78b25faSPeter Maydell uint64_t r = (SHIFTFN(m[H8(e)], shift) & shiftmask) | \ 1336a78b25faSPeter Maydell (d[H8(e)] & ~shiftmask); \ 1337a78b25faSPeter Maydell mergemask(&d[H8(e)], r, mask); \ 1338a78b25faSPeter Maydell } \ 1339a78b25faSPeter Maydell done: \ 1340a78b25faSPeter Maydell mve_advance_vpt(env); \ 1341a78b25faSPeter Maydell } 1342a78b25faSPeter Maydell 1343a78b25faSPeter Maydell #define DO_SHL(N, SHIFT) ((N) << (SHIFT)) 1344a78b25faSPeter Maydell #define DO_SHR(N, SHIFT) ((N) >> (SHIFT)) 1345a78b25faSPeter Maydell #define SHL_MASK(EBITS, SHIFT) MAKE_64BIT_MASK((SHIFT), (EBITS) - (SHIFT)) 1346a78b25faSPeter Maydell #define SHR_MASK(EBITS, SHIFT) MAKE_64BIT_MASK(0, (EBITS) - (SHIFT)) 1347a78b25faSPeter Maydell 1348a78b25faSPeter Maydell DO_2SHIFT_INSERT(vsrib, 1, DO_SHR, SHR_MASK) 1349a78b25faSPeter Maydell DO_2SHIFT_INSERT(vsrih, 2, DO_SHR, SHR_MASK) 1350a78b25faSPeter Maydell DO_2SHIFT_INSERT(vsriw, 4, DO_SHR, SHR_MASK) 1351a78b25faSPeter Maydell DO_2SHIFT_INSERT(vslib, 1, DO_SHL, SHL_MASK) 1352a78b25faSPeter Maydell DO_2SHIFT_INSERT(vslih, 2, DO_SHL, SHL_MASK) 1353a78b25faSPeter Maydell DO_2SHIFT_INSERT(vsliw, 4, DO_SHL, SHL_MASK) 1354a78b25faSPeter Maydell 1355c2262707SPeter Maydell /* 1356c2262707SPeter Maydell * Long shifts taking half-sized inputs from top or bottom of the input 1357c2262707SPeter Maydell * vector and producing a double-width result. ESIZE, TYPE are for 1358c2262707SPeter Maydell * the input, and LESIZE, LTYPE for the output. 1359c2262707SPeter Maydell * Unlike the normal shift helpers, we do not handle negative shift counts, 1360c2262707SPeter Maydell * because the long shift is strictly left-only. 1361c2262707SPeter Maydell */ 1362c2262707SPeter Maydell #define DO_VSHLL(OP, TOP, ESIZE, TYPE, LESIZE, LTYPE) \ 1363c2262707SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, \ 1364c2262707SPeter Maydell void *vm, uint32_t shift) \ 1365c2262707SPeter Maydell { \ 1366c2262707SPeter Maydell LTYPE *d = vd; \ 1367c2262707SPeter Maydell TYPE *m = vm; \ 1368c2262707SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1369c2262707SPeter Maydell unsigned le; \ 1370c2262707SPeter Maydell assert(shift <= 16); \ 1371c2262707SPeter Maydell for (le = 0; le < 16 / LESIZE; le++, mask >>= LESIZE) { \ 1372c2262707SPeter Maydell LTYPE r = (LTYPE)m[H##ESIZE(le * 2 + TOP)] << shift; \ 1373c2262707SPeter Maydell mergemask(&d[H##LESIZE(le)], r, mask); \ 1374c2262707SPeter Maydell } \ 1375c2262707SPeter Maydell mve_advance_vpt(env); \ 1376c2262707SPeter Maydell } 1377c2262707SPeter Maydell 1378c2262707SPeter Maydell #define DO_VSHLL_ALL(OP, TOP) \ 1379c2262707SPeter Maydell DO_VSHLL(OP##sb, TOP, 1, int8_t, 2, int16_t) \ 1380c2262707SPeter Maydell DO_VSHLL(OP##ub, TOP, 1, uint8_t, 2, uint16_t) \ 1381c2262707SPeter Maydell DO_VSHLL(OP##sh, TOP, 2, int16_t, 4, int32_t) \ 1382c2262707SPeter Maydell DO_VSHLL(OP##uh, TOP, 2, uint16_t, 4, uint32_t) \ 1383c2262707SPeter Maydell 1384c2262707SPeter Maydell DO_VSHLL_ALL(vshllb, false) 1385c2262707SPeter Maydell DO_VSHLL_ALL(vshllt, true) 1386162e2655SPeter Maydell 1387162e2655SPeter Maydell /* 1388162e2655SPeter Maydell * Narrowing right shifts, taking a double sized input, shifting it 1389162e2655SPeter Maydell * and putting the result in either the top or bottom half of the output. 1390162e2655SPeter Maydell * ESIZE, TYPE are the output, and LESIZE, LTYPE the input. 1391162e2655SPeter Maydell */ 1392162e2655SPeter Maydell #define DO_VSHRN(OP, TOP, ESIZE, TYPE, LESIZE, LTYPE, FN) \ 1393162e2655SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, \ 1394162e2655SPeter Maydell void *vm, uint32_t shift) \ 1395162e2655SPeter Maydell { \ 1396162e2655SPeter Maydell LTYPE *m = vm; \ 1397162e2655SPeter Maydell TYPE *d = vd; \ 1398162e2655SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1399162e2655SPeter Maydell unsigned le; \ 1400a5e59e8dSPeter Maydell mask >>= ESIZE * TOP; \ 1401162e2655SPeter Maydell for (le = 0; le < 16 / LESIZE; le++, mask >>= LESIZE) { \ 1402162e2655SPeter Maydell TYPE r = FN(m[H##LESIZE(le)], shift); \ 1403162e2655SPeter Maydell mergemask(&d[H##ESIZE(le * 2 + TOP)], r, mask); \ 1404162e2655SPeter Maydell } \ 1405162e2655SPeter Maydell mve_advance_vpt(env); \ 1406162e2655SPeter Maydell } 1407162e2655SPeter Maydell 1408162e2655SPeter Maydell #define DO_VSHRN_ALL(OP, FN) \ 1409162e2655SPeter Maydell DO_VSHRN(OP##bb, false, 1, uint8_t, 2, uint16_t, FN) \ 1410162e2655SPeter Maydell DO_VSHRN(OP##bh, false, 2, uint16_t, 4, uint32_t, FN) \ 1411162e2655SPeter Maydell DO_VSHRN(OP##tb, true, 1, uint8_t, 2, uint16_t, FN) \ 1412162e2655SPeter Maydell DO_VSHRN(OP##th, true, 2, uint16_t, 4, uint32_t, FN) 1413162e2655SPeter Maydell 1414162e2655SPeter Maydell static inline uint64_t do_urshr(uint64_t x, unsigned sh) 1415162e2655SPeter Maydell { 1416162e2655SPeter Maydell if (likely(sh < 64)) { 1417162e2655SPeter Maydell return (x >> sh) + ((x >> (sh - 1)) & 1); 1418162e2655SPeter Maydell } else if (sh == 64) { 1419162e2655SPeter Maydell return x >> 63; 1420162e2655SPeter Maydell } else { 1421162e2655SPeter Maydell return 0; 1422162e2655SPeter Maydell } 1423162e2655SPeter Maydell } 1424162e2655SPeter Maydell 1425d6f9e011SPeter Maydell static inline int64_t do_srshr(int64_t x, unsigned sh) 1426d6f9e011SPeter Maydell { 1427d6f9e011SPeter Maydell if (likely(sh < 64)) { 1428d6f9e011SPeter Maydell return (x >> sh) + ((x >> (sh - 1)) & 1); 1429d6f9e011SPeter Maydell } else { 1430d6f9e011SPeter Maydell /* Rounding the sign bit always produces 0. */ 1431d6f9e011SPeter Maydell return 0; 1432d6f9e011SPeter Maydell } 1433d6f9e011SPeter Maydell } 1434d6f9e011SPeter Maydell 1435162e2655SPeter Maydell DO_VSHRN_ALL(vshrn, DO_SHR) 1436162e2655SPeter Maydell DO_VSHRN_ALL(vrshrn, do_urshr) 1437d6f9e011SPeter Maydell 1438d6f9e011SPeter Maydell static inline int32_t do_sat_bhs(int64_t val, int64_t min, int64_t max, 1439d6f9e011SPeter Maydell bool *satp) 1440d6f9e011SPeter Maydell { 1441d6f9e011SPeter Maydell if (val > max) { 1442d6f9e011SPeter Maydell *satp = true; 1443d6f9e011SPeter Maydell return max; 1444d6f9e011SPeter Maydell } else if (val < min) { 1445d6f9e011SPeter Maydell *satp = true; 1446d6f9e011SPeter Maydell return min; 1447d6f9e011SPeter Maydell } else { 1448d6f9e011SPeter Maydell return val; 1449d6f9e011SPeter Maydell } 1450d6f9e011SPeter Maydell } 1451d6f9e011SPeter Maydell 1452d6f9e011SPeter Maydell /* Saturating narrowing right shifts */ 1453d6f9e011SPeter Maydell #define DO_VSHRN_SAT(OP, TOP, ESIZE, TYPE, LESIZE, LTYPE, FN) \ 1454d6f9e011SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vd, \ 1455d6f9e011SPeter Maydell void *vm, uint32_t shift) \ 1456d6f9e011SPeter Maydell { \ 1457d6f9e011SPeter Maydell LTYPE *m = vm; \ 1458d6f9e011SPeter Maydell TYPE *d = vd; \ 1459d6f9e011SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1460d6f9e011SPeter Maydell bool qc = false; \ 1461d6f9e011SPeter Maydell unsigned le; \ 1462a5e59e8dSPeter Maydell mask >>= ESIZE * TOP; \ 1463d6f9e011SPeter Maydell for (le = 0; le < 16 / LESIZE; le++, mask >>= LESIZE) { \ 1464d6f9e011SPeter Maydell bool sat = false; \ 1465d6f9e011SPeter Maydell TYPE r = FN(m[H##LESIZE(le)], shift, &sat); \ 1466d6f9e011SPeter Maydell mergemask(&d[H##ESIZE(le * 2 + TOP)], r, mask); \ 1467a5e59e8dSPeter Maydell qc |= sat & mask & 1; \ 1468d6f9e011SPeter Maydell } \ 1469d6f9e011SPeter Maydell if (qc) { \ 1470d6f9e011SPeter Maydell env->vfp.qc[0] = qc; \ 1471d6f9e011SPeter Maydell } \ 1472d6f9e011SPeter Maydell mve_advance_vpt(env); \ 1473d6f9e011SPeter Maydell } 1474d6f9e011SPeter Maydell 1475d6f9e011SPeter Maydell #define DO_VSHRN_SAT_UB(BOP, TOP, FN) \ 1476d6f9e011SPeter Maydell DO_VSHRN_SAT(BOP, false, 1, uint8_t, 2, uint16_t, FN) \ 1477d6f9e011SPeter Maydell DO_VSHRN_SAT(TOP, true, 1, uint8_t, 2, uint16_t, FN) 1478d6f9e011SPeter Maydell 1479d6f9e011SPeter Maydell #define DO_VSHRN_SAT_UH(BOP, TOP, FN) \ 1480d6f9e011SPeter Maydell DO_VSHRN_SAT(BOP, false, 2, uint16_t, 4, uint32_t, FN) \ 1481d6f9e011SPeter Maydell DO_VSHRN_SAT(TOP, true, 2, uint16_t, 4, uint32_t, FN) 1482d6f9e011SPeter Maydell 1483d6f9e011SPeter Maydell #define DO_VSHRN_SAT_SB(BOP, TOP, FN) \ 1484d6f9e011SPeter Maydell DO_VSHRN_SAT(BOP, false, 1, int8_t, 2, int16_t, FN) \ 1485d6f9e011SPeter Maydell DO_VSHRN_SAT(TOP, true, 1, int8_t, 2, int16_t, FN) 1486d6f9e011SPeter Maydell 1487d6f9e011SPeter Maydell #define DO_VSHRN_SAT_SH(BOP, TOP, FN) \ 1488d6f9e011SPeter Maydell DO_VSHRN_SAT(BOP, false, 2, int16_t, 4, int32_t, FN) \ 1489d6f9e011SPeter Maydell DO_VSHRN_SAT(TOP, true, 2, int16_t, 4, int32_t, FN) 1490d6f9e011SPeter Maydell 1491d6f9e011SPeter Maydell #define DO_SHRN_SB(N, M, SATP) \ 1492d6f9e011SPeter Maydell do_sat_bhs((int64_t)(N) >> (M), INT8_MIN, INT8_MAX, SATP) 1493d6f9e011SPeter Maydell #define DO_SHRN_UB(N, M, SATP) \ 1494d6f9e011SPeter Maydell do_sat_bhs((uint64_t)(N) >> (M), 0, UINT8_MAX, SATP) 1495d6f9e011SPeter Maydell #define DO_SHRUN_B(N, M, SATP) \ 1496d6f9e011SPeter Maydell do_sat_bhs((int64_t)(N) >> (M), 0, UINT8_MAX, SATP) 1497d6f9e011SPeter Maydell 1498d6f9e011SPeter Maydell #define DO_SHRN_SH(N, M, SATP) \ 1499d6f9e011SPeter Maydell do_sat_bhs((int64_t)(N) >> (M), INT16_MIN, INT16_MAX, SATP) 1500d6f9e011SPeter Maydell #define DO_SHRN_UH(N, M, SATP) \ 1501d6f9e011SPeter Maydell do_sat_bhs((uint64_t)(N) >> (M), 0, UINT16_MAX, SATP) 1502d6f9e011SPeter Maydell #define DO_SHRUN_H(N, M, SATP) \ 1503d6f9e011SPeter Maydell do_sat_bhs((int64_t)(N) >> (M), 0, UINT16_MAX, SATP) 1504d6f9e011SPeter Maydell 1505d6f9e011SPeter Maydell #define DO_RSHRN_SB(N, M, SATP) \ 1506d6f9e011SPeter Maydell do_sat_bhs(do_srshr(N, M), INT8_MIN, INT8_MAX, SATP) 1507d6f9e011SPeter Maydell #define DO_RSHRN_UB(N, M, SATP) \ 1508d6f9e011SPeter Maydell do_sat_bhs(do_urshr(N, M), 0, UINT8_MAX, SATP) 1509d6f9e011SPeter Maydell #define DO_RSHRUN_B(N, M, SATP) \ 1510d6f9e011SPeter Maydell do_sat_bhs(do_srshr(N, M), 0, UINT8_MAX, SATP) 1511d6f9e011SPeter Maydell 1512d6f9e011SPeter Maydell #define DO_RSHRN_SH(N, M, SATP) \ 1513d6f9e011SPeter Maydell do_sat_bhs(do_srshr(N, M), INT16_MIN, INT16_MAX, SATP) 1514d6f9e011SPeter Maydell #define DO_RSHRN_UH(N, M, SATP) \ 1515d6f9e011SPeter Maydell do_sat_bhs(do_urshr(N, M), 0, UINT16_MAX, SATP) 1516d6f9e011SPeter Maydell #define DO_RSHRUN_H(N, M, SATP) \ 1517d6f9e011SPeter Maydell do_sat_bhs(do_srshr(N, M), 0, UINT16_MAX, SATP) 1518d6f9e011SPeter Maydell 1519d6f9e011SPeter Maydell DO_VSHRN_SAT_SB(vqshrnb_sb, vqshrnt_sb, DO_SHRN_SB) 1520d6f9e011SPeter Maydell DO_VSHRN_SAT_SH(vqshrnb_sh, vqshrnt_sh, DO_SHRN_SH) 1521d6f9e011SPeter Maydell DO_VSHRN_SAT_UB(vqshrnb_ub, vqshrnt_ub, DO_SHRN_UB) 1522d6f9e011SPeter Maydell DO_VSHRN_SAT_UH(vqshrnb_uh, vqshrnt_uh, DO_SHRN_UH) 1523d6f9e011SPeter Maydell DO_VSHRN_SAT_SB(vqshrunbb, vqshruntb, DO_SHRUN_B) 1524d6f9e011SPeter Maydell DO_VSHRN_SAT_SH(vqshrunbh, vqshrunth, DO_SHRUN_H) 1525d6f9e011SPeter Maydell 1526d6f9e011SPeter Maydell DO_VSHRN_SAT_SB(vqrshrnb_sb, vqrshrnt_sb, DO_RSHRN_SB) 1527d6f9e011SPeter Maydell DO_VSHRN_SAT_SH(vqrshrnb_sh, vqrshrnt_sh, DO_RSHRN_SH) 1528d6f9e011SPeter Maydell DO_VSHRN_SAT_UB(vqrshrnb_ub, vqrshrnt_ub, DO_RSHRN_UB) 1529d6f9e011SPeter Maydell DO_VSHRN_SAT_UH(vqrshrnb_uh, vqrshrnt_uh, DO_RSHRN_UH) 1530d6f9e011SPeter Maydell DO_VSHRN_SAT_SB(vqrshrunbb, vqrshruntb, DO_RSHRUN_B) 1531d6f9e011SPeter Maydell DO_VSHRN_SAT_SH(vqrshrunbh, vqrshrunth, DO_RSHRUN_H) 15322e6a4ce0SPeter Maydell 15332e6a4ce0SPeter Maydell uint32_t HELPER(mve_vshlc)(CPUARMState *env, void *vd, uint32_t rdm, 15342e6a4ce0SPeter Maydell uint32_t shift) 15352e6a4ce0SPeter Maydell { 15362e6a4ce0SPeter Maydell uint32_t *d = vd; 15372e6a4ce0SPeter Maydell uint16_t mask = mve_element_mask(env); 15382e6a4ce0SPeter Maydell unsigned e; 15392e6a4ce0SPeter Maydell uint32_t r; 15402e6a4ce0SPeter Maydell 15412e6a4ce0SPeter Maydell /* 15422e6a4ce0SPeter Maydell * For each 32-bit element, we shift it left, bringing in the 15432e6a4ce0SPeter Maydell * low 'shift' bits of rdm at the bottom. Bits shifted out at 15442e6a4ce0SPeter Maydell * the top become the new rdm, if the predicate mask permits. 15452e6a4ce0SPeter Maydell * The final rdm value is returned to update the register. 15462e6a4ce0SPeter Maydell * shift == 0 here means "shift by 32 bits". 15472e6a4ce0SPeter Maydell */ 15482e6a4ce0SPeter Maydell if (shift == 0) { 15492e6a4ce0SPeter Maydell for (e = 0; e < 16 / 4; e++, mask >>= 4) { 15502e6a4ce0SPeter Maydell r = rdm; 15512e6a4ce0SPeter Maydell if (mask & 1) { 15522e6a4ce0SPeter Maydell rdm = d[H4(e)]; 15532e6a4ce0SPeter Maydell } 15542e6a4ce0SPeter Maydell mergemask(&d[H4(e)], r, mask); 15552e6a4ce0SPeter Maydell } 15562e6a4ce0SPeter Maydell } else { 15572e6a4ce0SPeter Maydell uint32_t shiftmask = MAKE_64BIT_MASK(0, shift); 15582e6a4ce0SPeter Maydell 15592e6a4ce0SPeter Maydell for (e = 0; e < 16 / 4; e++, mask >>= 4) { 15602e6a4ce0SPeter Maydell r = (d[H4(e)] << shift) | (rdm & shiftmask); 15612e6a4ce0SPeter Maydell if (mask & 1) { 15622e6a4ce0SPeter Maydell rdm = d[H4(e)] >> (32 - shift); 15632e6a4ce0SPeter Maydell } 15642e6a4ce0SPeter Maydell mergemask(&d[H4(e)], r, mask); 15652e6a4ce0SPeter Maydell } 15662e6a4ce0SPeter Maydell } 15672e6a4ce0SPeter Maydell mve_advance_vpt(env); 15682e6a4ce0SPeter Maydell return rdm; 15692e6a4ce0SPeter Maydell } 1570f4ae6c8cSPeter Maydell 15710aa4b4c3SPeter Maydell uint64_t HELPER(mve_sshrl)(CPUARMState *env, uint64_t n, uint32_t shift) 15720aa4b4c3SPeter Maydell { 15730aa4b4c3SPeter Maydell return do_sqrshl_d(n, -(int8_t)shift, false, NULL); 15740aa4b4c3SPeter Maydell } 15750aa4b4c3SPeter Maydell 15760aa4b4c3SPeter Maydell uint64_t HELPER(mve_ushll)(CPUARMState *env, uint64_t n, uint32_t shift) 15770aa4b4c3SPeter Maydell { 15780aa4b4c3SPeter Maydell return do_uqrshl_d(n, (int8_t)shift, false, NULL); 15790aa4b4c3SPeter Maydell } 15800aa4b4c3SPeter Maydell 1581f4ae6c8cSPeter Maydell uint64_t HELPER(mve_sqshll)(CPUARMState *env, uint64_t n, uint32_t shift) 1582f4ae6c8cSPeter Maydell { 1583f4ae6c8cSPeter Maydell return do_sqrshl_d(n, (int8_t)shift, false, &env->QF); 1584f4ae6c8cSPeter Maydell } 1585f4ae6c8cSPeter Maydell 1586f4ae6c8cSPeter Maydell uint64_t HELPER(mve_uqshll)(CPUARMState *env, uint64_t n, uint32_t shift) 1587f4ae6c8cSPeter Maydell { 1588f4ae6c8cSPeter Maydell return do_uqrshl_d(n, (int8_t)shift, false, &env->QF); 1589f4ae6c8cSPeter Maydell } 15900aa4b4c3SPeter Maydell 15910aa4b4c3SPeter Maydell uint64_t HELPER(mve_sqrshrl)(CPUARMState *env, uint64_t n, uint32_t shift) 15920aa4b4c3SPeter Maydell { 15930aa4b4c3SPeter Maydell return do_sqrshl_d(n, -(int8_t)shift, true, &env->QF); 15940aa4b4c3SPeter Maydell } 15950aa4b4c3SPeter Maydell 15960aa4b4c3SPeter Maydell uint64_t HELPER(mve_uqrshll)(CPUARMState *env, uint64_t n, uint32_t shift) 15970aa4b4c3SPeter Maydell { 15980aa4b4c3SPeter Maydell return do_uqrshl_d(n, (int8_t)shift, true, &env->QF); 15990aa4b4c3SPeter Maydell } 16000aa4b4c3SPeter Maydell 16010aa4b4c3SPeter Maydell /* Operate on 64-bit values, but saturate at 48 bits */ 16020aa4b4c3SPeter Maydell static inline int64_t do_sqrshl48_d(int64_t src, int64_t shift, 16030aa4b4c3SPeter Maydell bool round, uint32_t *sat) 16040aa4b4c3SPeter Maydell { 1605fdcf2269SPeter Maydell int64_t val, extval; 1606fdcf2269SPeter Maydell 16070aa4b4c3SPeter Maydell if (shift <= -48) { 16080aa4b4c3SPeter Maydell /* Rounding the sign bit always produces 0. */ 16090aa4b4c3SPeter Maydell if (round) { 16100aa4b4c3SPeter Maydell return 0; 16110aa4b4c3SPeter Maydell } 16120aa4b4c3SPeter Maydell return src >> 63; 16130aa4b4c3SPeter Maydell } else if (shift < 0) { 16140aa4b4c3SPeter Maydell if (round) { 16150aa4b4c3SPeter Maydell src >>= -shift - 1; 1616fdcf2269SPeter Maydell val = (src >> 1) + (src & 1); 1617fdcf2269SPeter Maydell } else { 1618fdcf2269SPeter Maydell val = src >> -shift; 16190aa4b4c3SPeter Maydell } 1620fdcf2269SPeter Maydell extval = sextract64(val, 0, 48); 1621fdcf2269SPeter Maydell if (!sat || val == extval) { 1622fdcf2269SPeter Maydell return extval; 1623fdcf2269SPeter Maydell } 16240aa4b4c3SPeter Maydell } else if (shift < 48) { 162595351aa7SPeter Maydell int64_t extval = sextract64(src << shift, 0, 48); 162695351aa7SPeter Maydell if (!sat || src == (extval >> shift)) { 16270aa4b4c3SPeter Maydell return extval; 16280aa4b4c3SPeter Maydell } 16290aa4b4c3SPeter Maydell } else if (!sat || src == 0) { 16300aa4b4c3SPeter Maydell return 0; 16310aa4b4c3SPeter Maydell } 16320aa4b4c3SPeter Maydell 16330aa4b4c3SPeter Maydell *sat = 1; 163495351aa7SPeter Maydell return src >= 0 ? MAKE_64BIT_MASK(0, 47) : MAKE_64BIT_MASK(47, 17); 16350aa4b4c3SPeter Maydell } 16360aa4b4c3SPeter Maydell 16370aa4b4c3SPeter Maydell /* Operate on 64-bit values, but saturate at 48 bits */ 16380aa4b4c3SPeter Maydell static inline uint64_t do_uqrshl48_d(uint64_t src, int64_t shift, 16390aa4b4c3SPeter Maydell bool round, uint32_t *sat) 16400aa4b4c3SPeter Maydell { 16410aa4b4c3SPeter Maydell uint64_t val, extval; 16420aa4b4c3SPeter Maydell 16430aa4b4c3SPeter Maydell if (shift <= -(48 + round)) { 16440aa4b4c3SPeter Maydell return 0; 16450aa4b4c3SPeter Maydell } else if (shift < 0) { 16460aa4b4c3SPeter Maydell if (round) { 16470aa4b4c3SPeter Maydell val = src >> (-shift - 1); 16480aa4b4c3SPeter Maydell val = (val >> 1) + (val & 1); 16490aa4b4c3SPeter Maydell } else { 16500aa4b4c3SPeter Maydell val = src >> -shift; 16510aa4b4c3SPeter Maydell } 16520aa4b4c3SPeter Maydell extval = extract64(val, 0, 48); 16530aa4b4c3SPeter Maydell if (!sat || val == extval) { 16540aa4b4c3SPeter Maydell return extval; 16550aa4b4c3SPeter Maydell } 16560aa4b4c3SPeter Maydell } else if (shift < 48) { 165795351aa7SPeter Maydell uint64_t extval = extract64(src << shift, 0, 48); 165895351aa7SPeter Maydell if (!sat || src == (extval >> shift)) { 16590aa4b4c3SPeter Maydell return extval; 16600aa4b4c3SPeter Maydell } 16610aa4b4c3SPeter Maydell } else if (!sat || src == 0) { 16620aa4b4c3SPeter Maydell return 0; 16630aa4b4c3SPeter Maydell } 16640aa4b4c3SPeter Maydell 16650aa4b4c3SPeter Maydell *sat = 1; 16660aa4b4c3SPeter Maydell return MAKE_64BIT_MASK(0, 48); 16670aa4b4c3SPeter Maydell } 16680aa4b4c3SPeter Maydell 16690aa4b4c3SPeter Maydell uint64_t HELPER(mve_sqrshrl48)(CPUARMState *env, uint64_t n, uint32_t shift) 16700aa4b4c3SPeter Maydell { 16710aa4b4c3SPeter Maydell return do_sqrshl48_d(n, -(int8_t)shift, true, &env->QF); 16720aa4b4c3SPeter Maydell } 16730aa4b4c3SPeter Maydell 16740aa4b4c3SPeter Maydell uint64_t HELPER(mve_uqrshll48)(CPUARMState *env, uint64_t n, uint32_t shift) 16750aa4b4c3SPeter Maydell { 16760aa4b4c3SPeter Maydell return do_uqrshl48_d(n, (int8_t)shift, true, &env->QF); 16770aa4b4c3SPeter Maydell } 167846321d47SPeter Maydell 167946321d47SPeter Maydell uint32_t HELPER(mve_uqshl)(CPUARMState *env, uint32_t n, uint32_t shift) 168046321d47SPeter Maydell { 168146321d47SPeter Maydell return do_uqrshl_bhs(n, (int8_t)shift, 32, false, &env->QF); 168246321d47SPeter Maydell } 168346321d47SPeter Maydell 168446321d47SPeter Maydell uint32_t HELPER(mve_sqshl)(CPUARMState *env, uint32_t n, uint32_t shift) 168546321d47SPeter Maydell { 168646321d47SPeter Maydell return do_sqrshl_bhs(n, (int8_t)shift, 32, false, &env->QF); 168746321d47SPeter Maydell } 168804ea4d3cSPeter Maydell 168904ea4d3cSPeter Maydell uint32_t HELPER(mve_uqrshl)(CPUARMState *env, uint32_t n, uint32_t shift) 169004ea4d3cSPeter Maydell { 169104ea4d3cSPeter Maydell return do_uqrshl_bhs(n, (int8_t)shift, 32, true, &env->QF); 169204ea4d3cSPeter Maydell } 169304ea4d3cSPeter Maydell 169404ea4d3cSPeter Maydell uint32_t HELPER(mve_sqrshr)(CPUARMState *env, uint32_t n, uint32_t shift) 169504ea4d3cSPeter Maydell { 169604ea4d3cSPeter Maydell return do_sqrshl_bhs(n, -(int8_t)shift, 32, true, &env->QF); 169704ea4d3cSPeter Maydell } 1698395b92d5SPeter Maydell 1699395b92d5SPeter Maydell #define DO_VIDUP(OP, ESIZE, TYPE, FN) \ 1700395b92d5SPeter Maydell uint32_t HELPER(mve_##OP)(CPUARMState *env, void *vd, \ 1701395b92d5SPeter Maydell uint32_t offset, uint32_t imm) \ 1702395b92d5SPeter Maydell { \ 1703395b92d5SPeter Maydell TYPE *d = vd; \ 1704395b92d5SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1705395b92d5SPeter Maydell unsigned e; \ 1706395b92d5SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 1707395b92d5SPeter Maydell mergemask(&d[H##ESIZE(e)], offset, mask); \ 1708395b92d5SPeter Maydell offset = FN(offset, imm); \ 1709395b92d5SPeter Maydell } \ 1710395b92d5SPeter Maydell mve_advance_vpt(env); \ 1711395b92d5SPeter Maydell return offset; \ 1712395b92d5SPeter Maydell } 1713395b92d5SPeter Maydell 1714395b92d5SPeter Maydell #define DO_VIWDUP(OP, ESIZE, TYPE, FN) \ 1715395b92d5SPeter Maydell uint32_t HELPER(mve_##OP)(CPUARMState *env, void *vd, \ 1716395b92d5SPeter Maydell uint32_t offset, uint32_t wrap, \ 1717395b92d5SPeter Maydell uint32_t imm) \ 1718395b92d5SPeter Maydell { \ 1719395b92d5SPeter Maydell TYPE *d = vd; \ 1720395b92d5SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1721395b92d5SPeter Maydell unsigned e; \ 1722395b92d5SPeter Maydell for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE) { \ 1723395b92d5SPeter Maydell mergemask(&d[H##ESIZE(e)], offset, mask); \ 1724395b92d5SPeter Maydell offset = FN(offset, wrap, imm); \ 1725395b92d5SPeter Maydell } \ 1726395b92d5SPeter Maydell mve_advance_vpt(env); \ 1727395b92d5SPeter Maydell return offset; \ 1728395b92d5SPeter Maydell } 1729395b92d5SPeter Maydell 1730395b92d5SPeter Maydell #define DO_VIDUP_ALL(OP, FN) \ 1731395b92d5SPeter Maydell DO_VIDUP(OP##b, 1, int8_t, FN) \ 1732395b92d5SPeter Maydell DO_VIDUP(OP##h, 2, int16_t, FN) \ 1733395b92d5SPeter Maydell DO_VIDUP(OP##w, 4, int32_t, FN) 1734395b92d5SPeter Maydell 1735395b92d5SPeter Maydell #define DO_VIWDUP_ALL(OP, FN) \ 1736395b92d5SPeter Maydell DO_VIWDUP(OP##b, 1, int8_t, FN) \ 1737395b92d5SPeter Maydell DO_VIWDUP(OP##h, 2, int16_t, FN) \ 1738395b92d5SPeter Maydell DO_VIWDUP(OP##w, 4, int32_t, FN) 1739395b92d5SPeter Maydell 1740395b92d5SPeter Maydell static uint32_t do_add_wrap(uint32_t offset, uint32_t wrap, uint32_t imm) 1741395b92d5SPeter Maydell { 1742395b92d5SPeter Maydell offset += imm; 1743395b92d5SPeter Maydell if (offset == wrap) { 1744395b92d5SPeter Maydell offset = 0; 1745395b92d5SPeter Maydell } 1746395b92d5SPeter Maydell return offset; 1747395b92d5SPeter Maydell } 1748395b92d5SPeter Maydell 1749395b92d5SPeter Maydell static uint32_t do_sub_wrap(uint32_t offset, uint32_t wrap, uint32_t imm) 1750395b92d5SPeter Maydell { 1751395b92d5SPeter Maydell if (offset == 0) { 1752395b92d5SPeter Maydell offset = wrap; 1753395b92d5SPeter Maydell } 1754395b92d5SPeter Maydell offset -= imm; 1755395b92d5SPeter Maydell return offset; 1756395b92d5SPeter Maydell } 1757395b92d5SPeter Maydell 1758395b92d5SPeter Maydell DO_VIDUP_ALL(vidup, DO_ADD) 1759395b92d5SPeter Maydell DO_VIWDUP_ALL(viwdup, do_add_wrap) 1760395b92d5SPeter Maydell DO_VIWDUP_ALL(vdwdup, do_sub_wrap) 1761*eff5d9a9SPeter Maydell 1762*eff5d9a9SPeter Maydell /* 1763*eff5d9a9SPeter Maydell * Vector comparison. 1764*eff5d9a9SPeter Maydell * P0 bits for non-executed beats (where eci_mask is 0) are unchanged. 1765*eff5d9a9SPeter Maydell * P0 bits for predicated lanes in executed beats (where mask is 0) are 0. 1766*eff5d9a9SPeter Maydell * P0 bits otherwise are updated with the results of the comparisons. 1767*eff5d9a9SPeter Maydell * We must also keep unchanged the MASK fields at the top of v7m.vpr. 1768*eff5d9a9SPeter Maydell */ 1769*eff5d9a9SPeter Maydell #define DO_VCMP(OP, ESIZE, TYPE, FN) \ 1770*eff5d9a9SPeter Maydell void HELPER(glue(mve_, OP))(CPUARMState *env, void *vn, void *vm) \ 1771*eff5d9a9SPeter Maydell { \ 1772*eff5d9a9SPeter Maydell TYPE *n = vn, *m = vm; \ 1773*eff5d9a9SPeter Maydell uint16_t mask = mve_element_mask(env); \ 1774*eff5d9a9SPeter Maydell uint16_t eci_mask = mve_eci_mask(env); \ 1775*eff5d9a9SPeter Maydell uint16_t beatpred = 0; \ 1776*eff5d9a9SPeter Maydell uint16_t emask = MAKE_64BIT_MASK(0, ESIZE); \ 1777*eff5d9a9SPeter Maydell unsigned e; \ 1778*eff5d9a9SPeter Maydell for (e = 0; e < 16 / ESIZE; e++) { \ 1779*eff5d9a9SPeter Maydell bool r = FN(n[H##ESIZE(e)], m[H##ESIZE(e)]); \ 1780*eff5d9a9SPeter Maydell /* Comparison sets 0/1 bits for each byte in the element */ \ 1781*eff5d9a9SPeter Maydell beatpred |= r * emask; \ 1782*eff5d9a9SPeter Maydell emask <<= ESIZE; \ 1783*eff5d9a9SPeter Maydell } \ 1784*eff5d9a9SPeter Maydell beatpred &= mask; \ 1785*eff5d9a9SPeter Maydell env->v7m.vpr = (env->v7m.vpr & ~(uint32_t)eci_mask) | \ 1786*eff5d9a9SPeter Maydell (beatpred & eci_mask); \ 1787*eff5d9a9SPeter Maydell mve_advance_vpt(env); \ 1788*eff5d9a9SPeter Maydell } 1789*eff5d9a9SPeter Maydell 1790*eff5d9a9SPeter Maydell #define DO_VCMP_S(OP, FN) \ 1791*eff5d9a9SPeter Maydell DO_VCMP(OP##b, 1, int8_t, FN) \ 1792*eff5d9a9SPeter Maydell DO_VCMP(OP##h, 2, int16_t, FN) \ 1793*eff5d9a9SPeter Maydell DO_VCMP(OP##w, 4, int32_t, FN) 1794*eff5d9a9SPeter Maydell 1795*eff5d9a9SPeter Maydell #define DO_VCMP_U(OP, FN) \ 1796*eff5d9a9SPeter Maydell DO_VCMP(OP##b, 1, uint8_t, FN) \ 1797*eff5d9a9SPeter Maydell DO_VCMP(OP##h, 2, uint16_t, FN) \ 1798*eff5d9a9SPeter Maydell DO_VCMP(OP##w, 4, uint32_t, FN) 1799*eff5d9a9SPeter Maydell 1800*eff5d9a9SPeter Maydell #define DO_EQ(N, M) ((N) == (M)) 1801*eff5d9a9SPeter Maydell #define DO_NE(N, M) ((N) != (M)) 1802*eff5d9a9SPeter Maydell #define DO_EQ(N, M) ((N) == (M)) 1803*eff5d9a9SPeter Maydell #define DO_EQ(N, M) ((N) == (M)) 1804*eff5d9a9SPeter Maydell #define DO_GE(N, M) ((N) >= (M)) 1805*eff5d9a9SPeter Maydell #define DO_LT(N, M) ((N) < (M)) 1806*eff5d9a9SPeter Maydell #define DO_GT(N, M) ((N) > (M)) 1807*eff5d9a9SPeter Maydell #define DO_LE(N, M) ((N) <= (M)) 1808*eff5d9a9SPeter Maydell 1809*eff5d9a9SPeter Maydell DO_VCMP_U(vcmpeq, DO_EQ) 1810*eff5d9a9SPeter Maydell DO_VCMP_U(vcmpne, DO_NE) 1811*eff5d9a9SPeter Maydell DO_VCMP_U(vcmpcs, DO_GE) 1812*eff5d9a9SPeter Maydell DO_VCMP_U(vcmphi, DO_GT) 1813*eff5d9a9SPeter Maydell DO_VCMP_S(vcmpge, DO_GE) 1814*eff5d9a9SPeter Maydell DO_VCMP_S(vcmplt, DO_LT) 1815*eff5d9a9SPeter Maydell DO_VCMP_S(vcmpgt, DO_GT) 1816*eff5d9a9SPeter Maydell DO_VCMP_S(vcmple, DO_LE) 1817