xref: /openbmc/qemu/target/hexagon/macros.h (revision 593aab332f048347bd19893071caf44e1fb742ff)
1a646e99cSTaylor Simpson /*
2850d0622STaylor Simpson  *  Copyright(c) 2019-2024 Qualcomm Innovation Center, Inc. All Rights Reserved.
3a646e99cSTaylor Simpson  *
4a646e99cSTaylor Simpson  *  This program is free software; you can redistribute it and/or modify
5a646e99cSTaylor Simpson  *  it under the terms of the GNU General Public License as published by
6a646e99cSTaylor Simpson  *  the Free Software Foundation; either version 2 of the License, or
7a646e99cSTaylor Simpson  *  (at your option) any later version.
8a646e99cSTaylor Simpson  *
9a646e99cSTaylor Simpson  *  This program is distributed in the hope that it will be useful,
10a646e99cSTaylor Simpson  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
11a646e99cSTaylor Simpson  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12a646e99cSTaylor Simpson  *  GNU General Public License for more details.
13a646e99cSTaylor Simpson  *
14a646e99cSTaylor Simpson  *  You should have received a copy of the GNU General Public License
15a646e99cSTaylor Simpson  *  along with this program; if not, see <http://www.gnu.org/licenses/>.
16a646e99cSTaylor Simpson  */
17a646e99cSTaylor Simpson 
18a646e99cSTaylor Simpson #ifndef HEXAGON_MACROS_H
19a646e99cSTaylor Simpson #define HEXAGON_MACROS_H
20a646e99cSTaylor Simpson 
21a646e99cSTaylor Simpson #include "cpu.h"
22a646e99cSTaylor Simpson #include "hex_regs.h"
23a646e99cSTaylor Simpson #include "reg_fields.h"
24a646e99cSTaylor Simpson 
25a646e99cSTaylor Simpson #define GET_FIELD(FIELD, REGIN) \
26a646e99cSTaylor Simpson     fEXTRACTU_BITS(REGIN, reg_field_info[FIELD].width, \
27a646e99cSTaylor Simpson                    reg_field_info[FIELD].offset)
28a646e99cSTaylor Simpson 
29a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
30a646e99cSTaylor Simpson #define GET_USR_FIELD(FIELD, DST) \
31a646e99cSTaylor Simpson     tcg_gen_extract_tl(DST, hex_gpr[HEX_REG_USR], \
32a646e99cSTaylor Simpson                        reg_field_info[FIELD].offset, \
33a646e99cSTaylor Simpson                        reg_field_info[FIELD].width)
34a646e99cSTaylor Simpson 
35a646e99cSTaylor Simpson #define TYPE_INT(X)          __builtin_types_compatible_p(typeof(X), int)
36a646e99cSTaylor Simpson #define TYPE_TCGV(X)         __builtin_types_compatible_p(typeof(X), TCGv)
37a646e99cSTaylor Simpson #define TYPE_TCGV_I64(X)     __builtin_types_compatible_p(typeof(X), TCGv_i64)
38a646e99cSTaylor Simpson #else
39a646e99cSTaylor Simpson #define GET_USR_FIELD(FIELD) \
40a646e99cSTaylor Simpson     fEXTRACTU_BITS(env->gpr[HEX_REG_USR], reg_field_info[FIELD].width, \
41a646e99cSTaylor Simpson                    reg_field_info[FIELD].offset)
42a646e99cSTaylor Simpson 
43a646e99cSTaylor Simpson #define SET_USR_FIELD(FIELD, VAL) \
44d54c5615STaylor Simpson     do { \
45d54c5615STaylor Simpson         if (pkt_need_commit) { \
466aa4f1d1STaylor Simpson             fINSERT_BITS(env->new_value_usr, \
47d54c5615STaylor Simpson                         reg_field_info[FIELD].width, \
48d54c5615STaylor Simpson                         reg_field_info[FIELD].offset, (VAL)); \
49d54c5615STaylor Simpson         } else { \
50d54c5615STaylor Simpson             fINSERT_BITS(env->gpr[HEX_REG_USR], \
51d54c5615STaylor Simpson                         reg_field_info[FIELD].width, \
52d54c5615STaylor Simpson                         reg_field_info[FIELD].offset, (VAL)); \
53d54c5615STaylor Simpson         } \
54d54c5615STaylor Simpson     } while (0)
55a646e99cSTaylor Simpson #endif
56a646e99cSTaylor Simpson 
57a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
58a646e99cSTaylor Simpson /*
59a646e99cSTaylor Simpson  * Section 5.5 of the Hexagon V67 Programmer's Reference Manual
60a646e99cSTaylor Simpson  *
61a646e99cSTaylor Simpson  * Slot 1 store with slot 0 load
62a646e99cSTaylor Simpson  * A slot 1 store operation with a slot 0 load operation can appear in a packet.
63a646e99cSTaylor Simpson  * The packet attribute :mem_noshuf inhibits the instruction reordering that
64a646e99cSTaylor Simpson  * would otherwise be done by the assembler. For example:
65a646e99cSTaylor Simpson  *     {
66a646e99cSTaylor Simpson  *         memw(R5) = R2 // slot 1 store
67a646e99cSTaylor Simpson  *         R3 = memh(R6) // slot 0 load
68a646e99cSTaylor Simpson  *     }:mem_noshuf
69a646e99cSTaylor Simpson  * Unlike most packetized operations, these memory operations are not executed
70a646e99cSTaylor Simpson  * in parallel (Section 3.3.1). Instead, the store instruction in Slot 1
71a646e99cSTaylor Simpson  * effectively executes first, followed by the load instruction in Slot 0. If
72a646e99cSTaylor Simpson  * the addresses of the two operations are overlapping, the load will receive
73a646e99cSTaylor Simpson  * the newly stored data. This feature is supported in processor versions
74a646e99cSTaylor Simpson  * V65 or greater.
75a646e99cSTaylor Simpson  *
76a646e99cSTaylor Simpson  *
77a646e99cSTaylor Simpson  * For qemu, we look for a load in slot 0 when there is  a store in slot 1
7815fc6badSTaylor Simpson  * in the same packet.  When we see this, we call a helper that probes the
7915fc6badSTaylor Simpson  * load to make sure it doesn't fault.  Then, we process the store ahead of
8015fc6badSTaylor Simpson  * the actual load.
8115fc6badSTaylor Simpson 
82a646e99cSTaylor Simpson  */
8315fc6badSTaylor Simpson #define CHECK_NOSHUF(VA, SIZE) \
84a646e99cSTaylor Simpson     do { \
851e536334STaylor Simpson         if (insn->slot == 0 && ctx->pkt->pkt_has_store_s1) { \
8615fc6badSTaylor Simpson             probe_noshuf_load(VA, SIZE, ctx->mem_idx); \
871e536334STaylor Simpson             process_store(ctx, 1); \
8815fc6badSTaylor Simpson         } \
8915fc6badSTaylor Simpson     } while (0)
9015fc6badSTaylor Simpson 
9115fc6badSTaylor Simpson #define CHECK_NOSHUF_PRED(GET_EA, SIZE, PRED) \
9215fc6badSTaylor Simpson     do { \
93ccdae09aSTaylor Simpson         TCGLabel *noshuf_label = gen_new_label(); \
94ccdae09aSTaylor Simpson         tcg_gen_brcondi_tl(TCG_COND_EQ, PRED, 0, noshuf_label); \
9515fc6badSTaylor Simpson         GET_EA; \
961e536334STaylor Simpson         if (insn->slot == 0 && ctx->pkt->pkt_has_store_s1) { \
9715fc6badSTaylor Simpson             probe_noshuf_load(EA, SIZE, ctx->mem_idx); \
9815fc6badSTaylor Simpson         } \
99ccdae09aSTaylor Simpson         gen_set_label(noshuf_label); \
1001e536334STaylor Simpson         if (insn->slot == 0 && ctx->pkt->pkt_has_store_s1) { \
1011e536334STaylor Simpson             process_store(ctx, 1); \
102a646e99cSTaylor Simpson         } \
103a646e99cSTaylor Simpson     } while (0)
104a646e99cSTaylor Simpson 
105a646e99cSTaylor Simpson #define MEM_LOAD1s(DST, VA) \
106a646e99cSTaylor Simpson     do { \
10715fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 1); \
10853b26d25SRichard Henderson         tcg_gen_qemu_ld_tl(DST, VA, ctx->mem_idx, MO_SB); \
109a646e99cSTaylor Simpson     } while (0)
110a646e99cSTaylor Simpson #define MEM_LOAD1u(DST, VA) \
111a646e99cSTaylor Simpson     do { \
11215fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 1); \
11353b26d25SRichard Henderson         tcg_gen_qemu_ld_tl(DST, VA, ctx->mem_idx, MO_UB); \
114a646e99cSTaylor Simpson     } while (0)
115a646e99cSTaylor Simpson #define MEM_LOAD2s(DST, VA) \
116a646e99cSTaylor Simpson     do { \
11715fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 2); \
11853b26d25SRichard Henderson         tcg_gen_qemu_ld_tl(DST, VA, ctx->mem_idx, MO_TESW); \
119a646e99cSTaylor Simpson     } while (0)
120a646e99cSTaylor Simpson #define MEM_LOAD2u(DST, VA) \
121a646e99cSTaylor Simpson     do { \
12215fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 2); \
12353b26d25SRichard Henderson         tcg_gen_qemu_ld_tl(DST, VA, ctx->mem_idx, MO_TEUW); \
124a646e99cSTaylor Simpson     } while (0)
125a646e99cSTaylor Simpson #define MEM_LOAD4s(DST, VA) \
126a646e99cSTaylor Simpson     do { \
12715fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 4); \
12853b26d25SRichard Henderson         tcg_gen_qemu_ld_tl(DST, VA, ctx->mem_idx, MO_TESL); \
129a646e99cSTaylor Simpson     } while (0)
130a646e99cSTaylor Simpson #define MEM_LOAD4u(DST, VA) \
131a646e99cSTaylor Simpson     do { \
13215fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 4); \
13353b26d25SRichard Henderson         tcg_gen_qemu_ld_tl(DST, VA, ctx->mem_idx, MO_TEUL); \
134a646e99cSTaylor Simpson     } while (0)
135a646e99cSTaylor Simpson #define MEM_LOAD8u(DST, VA) \
136a646e99cSTaylor Simpson     do { \
13715fc6badSTaylor Simpson         CHECK_NOSHUF(VA, 8); \
13853b26d25SRichard Henderson         tcg_gen_qemu_ld_i64(DST, VA, ctx->mem_idx, MO_TEUQ); \
139a646e99cSTaylor Simpson     } while (0)
14046ef47e2STaylor Simpson 
14146ef47e2STaylor Simpson #define MEM_STORE1_FUNC(X) \
14246ef47e2STaylor Simpson     __builtin_choose_expr(TYPE_INT(X), \
14346ef47e2STaylor Simpson         gen_store1i, \
14446ef47e2STaylor Simpson         __builtin_choose_expr(TYPE_TCGV(X), \
14546ef47e2STaylor Simpson             gen_store1, (void)0))
14646ef47e2STaylor Simpson #define MEM_STORE1(VA, DATA, SLOT) \
147ad75a51eSRichard Henderson     MEM_STORE1_FUNC(DATA)(tcg_env, VA, DATA, SLOT)
14846ef47e2STaylor Simpson 
14946ef47e2STaylor Simpson #define MEM_STORE2_FUNC(X) \
15046ef47e2STaylor Simpson     __builtin_choose_expr(TYPE_INT(X), \
15146ef47e2STaylor Simpson         gen_store2i, \
15246ef47e2STaylor Simpson         __builtin_choose_expr(TYPE_TCGV(X), \
15346ef47e2STaylor Simpson             gen_store2, (void)0))
15446ef47e2STaylor Simpson #define MEM_STORE2(VA, DATA, SLOT) \
155ad75a51eSRichard Henderson     MEM_STORE2_FUNC(DATA)(tcg_env, VA, DATA, SLOT)
15646ef47e2STaylor Simpson 
15746ef47e2STaylor Simpson #define MEM_STORE4_FUNC(X) \
15846ef47e2STaylor Simpson     __builtin_choose_expr(TYPE_INT(X), \
15946ef47e2STaylor Simpson         gen_store4i, \
16046ef47e2STaylor Simpson         __builtin_choose_expr(TYPE_TCGV(X), \
16146ef47e2STaylor Simpson             gen_store4, (void)0))
16246ef47e2STaylor Simpson #define MEM_STORE4(VA, DATA, SLOT) \
163ad75a51eSRichard Henderson     MEM_STORE4_FUNC(DATA)(tcg_env, VA, DATA, SLOT)
16446ef47e2STaylor Simpson 
16546ef47e2STaylor Simpson #define MEM_STORE8_FUNC(X) \
16646ef47e2STaylor Simpson     __builtin_choose_expr(TYPE_INT(X), \
16746ef47e2STaylor Simpson         gen_store8i, \
16846ef47e2STaylor Simpson         __builtin_choose_expr(TYPE_TCGV_I64(X), \
16946ef47e2STaylor Simpson             gen_store8, (void)0))
17046ef47e2STaylor Simpson #define MEM_STORE8(VA, DATA, SLOT) \
171ad75a51eSRichard Henderson     MEM_STORE8_FUNC(DATA)(tcg_env, VA, DATA, SLOT)
172a646e99cSTaylor Simpson #else
173a646e99cSTaylor Simpson #define MEM_STORE1(VA, DATA, SLOT) log_store32(env, VA, DATA, 1, SLOT)
174a646e99cSTaylor Simpson #define MEM_STORE2(VA, DATA, SLOT) log_store32(env, VA, DATA, 2, SLOT)
175a646e99cSTaylor Simpson #define MEM_STORE4(VA, DATA, SLOT) log_store32(env, VA, DATA, 4, SLOT)
176a646e99cSTaylor Simpson #define MEM_STORE8(VA, DATA, SLOT) log_store64(env, VA, DATA, 8, SLOT)
177a646e99cSTaylor Simpson #endif
178a646e99cSTaylor Simpson 
17942659e04SNiccolò Izzo #ifdef QEMU_GENERATE
gen_cancel(uint32_t slot)18042659e04SNiccolò Izzo static inline void gen_cancel(uint32_t slot)
18142659e04SNiccolò Izzo {
18242659e04SNiccolò Izzo     tcg_gen_ori_tl(hex_slot_cancelled, hex_slot_cancelled, 1 << slot);
18342659e04SNiccolò Izzo }
18442659e04SNiccolò Izzo 
18542659e04SNiccolò Izzo #define CANCEL gen_cancel(slot);
18642659e04SNiccolò Izzo #else
1877b84fd04STaylor Simpson #define CANCEL do { } while (0)
18842659e04SNiccolò Izzo #endif
189a646e99cSTaylor Simpson 
190a646e99cSTaylor Simpson #define LOAD_CANCEL(EA) do { CANCEL; } while (0)
191a646e99cSTaylor Simpson 
192a646e99cSTaylor Simpson #define STORE_CANCEL(EA) { env->slot_cancelled |= (1 << slot); }
193a646e99cSTaylor Simpson 
194a646e99cSTaylor Simpson #define fMAX(A, B) (((A) > (B)) ? (A) : (B))
195a646e99cSTaylor Simpson 
196a646e99cSTaylor Simpson #define fMIN(A, B) (((A) < (B)) ? (A) : (B))
197a646e99cSTaylor Simpson 
198a646e99cSTaylor Simpson #define fABS(A) (((A) < 0) ? (-(A)) : (A))
199a646e99cSTaylor Simpson #define fINSERT_BITS(REG, WIDTH, OFFSET, INVAL) \
200a646e99cSTaylor Simpson     REG = ((WIDTH) ? deposit64(REG, (OFFSET), (WIDTH), (INVAL)) : REG)
201a646e99cSTaylor Simpson #define fEXTRACTU_BITS(INREG, WIDTH, OFFSET) \
202a646e99cSTaylor Simpson     ((WIDTH) ? extract64((INREG), (OFFSET), (WIDTH)) : 0LL)
203a646e99cSTaylor Simpson #define fEXTRACTU_BIDIR(INREG, WIDTH, OFFSET) \
204a646e99cSTaylor Simpson     (fZXTN(WIDTH, 32, fBIDIR_LSHIFTR((INREG), (OFFSET), 4_8)))
205a646e99cSTaylor Simpson #define fEXTRACTU_RANGE(INREG, HIBIT, LOWBIT) \
206a646e99cSTaylor Simpson     (((HIBIT) - (LOWBIT) + 1) ? \
207a646e99cSTaylor Simpson         extract64((INREG), (LOWBIT), ((HIBIT) - (LOWBIT) + 1)) : \
208a646e99cSTaylor Simpson         0LL)
209e628c015STaylor Simpson #define fINSERT_RANGE(INREG, HIBIT, LOWBIT, INVAL) \
210e628c015STaylor Simpson     do { \
211e628c015STaylor Simpson         int width = ((HIBIT) - (LOWBIT) + 1); \
212e628c015STaylor Simpson         INREG = (width >= 0 ? \
213e628c015STaylor Simpson             deposit64((INREG), (LOWBIT), width, (INVAL)) : \
214e628c015STaylor Simpson             INREG); \
215e628c015STaylor Simpson     } while (0)
216a646e99cSTaylor Simpson 
217a646e99cSTaylor Simpson #define f8BITSOF(VAL) ((VAL) ? 0xff : 0x00)
218a646e99cSTaylor Simpson 
219a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
220a646e99cSTaylor Simpson #define fLSBOLD(VAL) tcg_gen_andi_tl(LSB, (VAL), 1)
221a646e99cSTaylor Simpson #else
222a646e99cSTaylor Simpson #define fLSBOLD(VAL)  ((VAL) & 1)
223a646e99cSTaylor Simpson #endif
224a646e99cSTaylor Simpson 
225a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
22607c0f653STaylor Simpson #define fLSBNEW(PVAL)   tcg_gen_andi_tl(LSB, (PVAL), 1)
227a646e99cSTaylor Simpson #else
22807c0f653STaylor Simpson #define fLSBNEW(PVAL)   ((PVAL) & 1)
229a646e99cSTaylor Simpson #endif
230a646e99cSTaylor Simpson 
231a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
232a646e99cSTaylor Simpson #define fLSBOLDNOT(VAL) \
233a646e99cSTaylor Simpson     do { \
234a646e99cSTaylor Simpson         tcg_gen_andi_tl(LSB, (VAL), 1); \
235a646e99cSTaylor Simpson         tcg_gen_xori_tl(LSB, LSB, 1); \
236a646e99cSTaylor Simpson     } while (0)
237a646e99cSTaylor Simpson #define fLSBNEWNOT(PNUM) \
23807c0f653STaylor Simpson     do { \
23907c0f653STaylor Simpson         tcg_gen_andi_tl(LSB, (PNUM), 1); \
24007c0f653STaylor Simpson         tcg_gen_xori_tl(LSB, LSB, 1); \
24107c0f653STaylor Simpson     } while (0)
242a646e99cSTaylor Simpson #else
243a646e99cSTaylor Simpson #define fLSBNEWNOT(PNUM) (!fLSBNEW(PNUM))
244a646e99cSTaylor Simpson #define fLSBOLDNOT(VAL) (!fLSBOLD(VAL))
245a646e99cSTaylor Simpson #define fLSBNEW0NOT (!fLSBNEW0)
246a646e99cSTaylor Simpson #define fLSBNEW1NOT (!fLSBNEW1)
247a646e99cSTaylor Simpson #endif
248a646e99cSTaylor Simpson 
249a646e99cSTaylor Simpson #define fNEWREG(VAL) ((int32_t)(VAL))
250a646e99cSTaylor Simpson 
251a646e99cSTaylor Simpson #define fNEWREG_ST(VAL) (VAL)
252a646e99cSTaylor Simpson 
25364458f48STaylor Simpson #define fVSATUVALN(N, VAL) \
25464458f48STaylor Simpson     ({ \
2555b0043c6STaylor Simpson         (((int64_t)(VAL)) < 0) ? 0 : ((1LL << (N)) - 1); \
25664458f48STaylor Simpson     })
257a646e99cSTaylor Simpson #define fSATUVALN(N, VAL) \
258a646e99cSTaylor Simpson     ({ \
259a646e99cSTaylor Simpson         fSET_OVERFLOW(); \
260a646e99cSTaylor Simpson         ((VAL) < 0) ? 0 : ((1LL << (N)) - 1); \
261a646e99cSTaylor Simpson     })
262a646e99cSTaylor Simpson #define fSATVALN(N, VAL) \
263a646e99cSTaylor Simpson     ({ \
264a646e99cSTaylor Simpson         fSET_OVERFLOW(); \
265a646e99cSTaylor Simpson         ((VAL) < 0) ? (-(1LL << ((N) - 1))) : ((1LL << ((N) - 1)) - 1); \
266a646e99cSTaylor Simpson     })
26764458f48STaylor Simpson #define fVSATVALN(N, VAL) \
26864458f48STaylor Simpson     ({ \
26964458f48STaylor Simpson         ((VAL) < 0) ? (-(1LL << ((N) - 1))) : ((1LL << ((N) - 1)) - 1); \
27064458f48STaylor Simpson     })
271a646e99cSTaylor Simpson #define fZXTN(N, M, VAL) (((N) != 0) ? extract64((VAL), 0, (N)) : 0LL)
272a646e99cSTaylor Simpson #define fSXTN(N, M, VAL) (((N) != 0) ? sextract64((VAL), 0, (N)) : 0LL)
273a646e99cSTaylor Simpson #define fSATN(N, VAL) \
274a646e99cSTaylor Simpson     ((fSXTN(N, 64, VAL) == (VAL)) ? (VAL) : fSATVALN(N, VAL))
27564458f48STaylor Simpson #define fVSATN(N, VAL) \
27664458f48STaylor Simpson     ((fSXTN(N, 64, VAL) == (VAL)) ? (VAL) : fVSATVALN(N, VAL))
277a646e99cSTaylor Simpson #define fADDSAT64(DST, A, B) \
278a646e99cSTaylor Simpson     do { \
279a646e99cSTaylor Simpson         uint64_t __a = fCAST8u(A); \
280a646e99cSTaylor Simpson         uint64_t __b = fCAST8u(B); \
281a646e99cSTaylor Simpson         uint64_t __sum = __a + __b; \
282a646e99cSTaylor Simpson         uint64_t __xor = __a ^ __b; \
283a646e99cSTaylor Simpson         const uint64_t __mask = 0x8000000000000000ULL; \
284a646e99cSTaylor Simpson         if (__xor & __mask) { \
285a646e99cSTaylor Simpson             DST = __sum; \
286a646e99cSTaylor Simpson         } \
287a646e99cSTaylor Simpson         else if ((__a ^ __sum) & __mask) { \
288a646e99cSTaylor Simpson             if (__sum & __mask) { \
289a646e99cSTaylor Simpson                 DST = 0x7FFFFFFFFFFFFFFFLL; \
290a646e99cSTaylor Simpson                 fSET_OVERFLOW(); \
291a646e99cSTaylor Simpson             } else { \
292a646e99cSTaylor Simpson                 DST = 0x8000000000000000LL; \
293a646e99cSTaylor Simpson                 fSET_OVERFLOW(); \
294a646e99cSTaylor Simpson             } \
295a646e99cSTaylor Simpson         } else { \
296a646e99cSTaylor Simpson             DST = __sum; \
297a646e99cSTaylor Simpson         } \
298a646e99cSTaylor Simpson     } while (0)
29964458f48STaylor Simpson #define fVSATUN(N, VAL) \
30064458f48STaylor Simpson     ((fZXTN(N, 64, VAL) == (VAL)) ? (VAL) : fVSATUVALN(N, VAL))
301a646e99cSTaylor Simpson #define fSATUN(N, VAL) \
302a646e99cSTaylor Simpson     ((fZXTN(N, 64, VAL) == (VAL)) ? (VAL) : fSATUVALN(N, VAL))
303a646e99cSTaylor Simpson #define fSATH(VAL) (fSATN(16, VAL))
304a646e99cSTaylor Simpson #define fSATUH(VAL) (fSATUN(16, VAL))
30564458f48STaylor Simpson #define fVSATH(VAL) (fVSATN(16, VAL))
30664458f48STaylor Simpson #define fVSATUH(VAL) (fVSATUN(16, VAL))
307a646e99cSTaylor Simpson #define fSATUB(VAL) (fSATUN(8, VAL))
308a646e99cSTaylor Simpson #define fSATB(VAL) (fSATN(8, VAL))
30964458f48STaylor Simpson #define fVSATUB(VAL) (fVSATUN(8, VAL))
31064458f48STaylor Simpson #define fVSATB(VAL) (fVSATN(8, VAL))
311a646e99cSTaylor Simpson #define fIMMEXT(IMM) (IMM = IMM)
312a646e99cSTaylor Simpson #define fMUST_IMMEXT(IMM) fIMMEXT(IMM)
313a646e99cSTaylor Simpson 
314a646e99cSTaylor Simpson #define fPCALIGN(IMM) IMM = (IMM & ~PCALIGN_MASK)
315a646e99cSTaylor Simpson 
31646ef47e2STaylor Simpson #ifdef QEMU_GENERATE
gen_read_ireg(TCGv result,TCGv val,int shift)31746ef47e2STaylor Simpson static inline TCGv gen_read_ireg(TCGv result, TCGv val, int shift)
31846ef47e2STaylor Simpson {
31946ef47e2STaylor Simpson     /*
32046ef47e2STaylor Simpson      * Section 2.2.4 of the Hexagon V67 Programmer's Reference Manual
32146ef47e2STaylor Simpson      *
32246ef47e2STaylor Simpson      *  The "I" value from a modifier register is divided into two pieces
32346ef47e2STaylor Simpson      *      LSB         bits 23:17
32446ef47e2STaylor Simpson      *      MSB         bits 31:28
32546ef47e2STaylor Simpson      * The value is signed
32646ef47e2STaylor Simpson      *
32746ef47e2STaylor Simpson      * At the end we shift the result according to the shift argument
32846ef47e2STaylor Simpson      */
32946ef47e2STaylor Simpson     TCGv msb = tcg_temp_new();
33046ef47e2STaylor Simpson     TCGv lsb = tcg_temp_new();
33146ef47e2STaylor Simpson 
33246ef47e2STaylor Simpson     tcg_gen_extract_tl(lsb, val, 17, 7);
33346ef47e2STaylor Simpson     tcg_gen_sari_tl(msb, val, 21);
33446ef47e2STaylor Simpson     tcg_gen_deposit_tl(result, msb, lsb, 0, 7);
33546ef47e2STaylor Simpson 
33646ef47e2STaylor Simpson     tcg_gen_shli_tl(result, result, shift);
33746ef47e2STaylor Simpson     return result;
33846ef47e2STaylor Simpson }
33946ef47e2STaylor Simpson #endif
34046ef47e2STaylor Simpson 
34193550aebSTaylor Simpson #define fREAD_LR() (env->gpr[HEX_REG_LR])
342a646e99cSTaylor Simpson 
343*f7be65fbSTaylor Simpson #define fREAD_SP() (SP)
34493550aebSTaylor Simpson #define fREAD_LC0 (env->gpr[HEX_REG_LC0])
34593550aebSTaylor Simpson #define fREAD_LC1 (env->gpr[HEX_REG_LC1])
34693550aebSTaylor Simpson #define fREAD_SA0 (env->gpr[HEX_REG_SA0])
34793550aebSTaylor Simpson #define fREAD_SA1 (env->gpr[HEX_REG_SA1])
34893550aebSTaylor Simpson #define fREAD_FP() (env->gpr[HEX_REG_FP])
349a646e99cSTaylor Simpson #ifdef FIXME
350a646e99cSTaylor Simpson /* Figure out how to get insn->extension_valid to helper */
351a646e99cSTaylor Simpson #define fREAD_GP() \
35293550aebSTaylor Simpson     (insn->extension_valid ? 0 : env->gpr[HEX_REG_GP])
353a646e99cSTaylor Simpson #else
35493550aebSTaylor Simpson #define fREAD_GP() (env->gpr[HEX_REG_GP])
355a646e99cSTaylor Simpson #endif
35640085901STaylor Simpson #define fREAD_PC() (PC)
357a646e99cSTaylor Simpson 
358850d0622STaylor Simpson #define fREAD_P0() (P0)
359a646e99cSTaylor Simpson 
360a646e99cSTaylor Simpson #define fCHECK_PCALIGN(A)
361a646e99cSTaylor Simpson 
362fb67c2bfSTaylor Simpson #define fWRITE_NPC(A) write_new_pc(env, pkt_has_multi_cof != 0, A)
363a646e99cSTaylor Simpson 
364a646e99cSTaylor Simpson #define fBRANCH(LOC, TYPE)          fWRITE_NPC(LOC)
365a646e99cSTaylor Simpson #define fJUMPR(REGNO, TARGET, TYPE) fBRANCH(TARGET, COF_TYPE_JUMPR)
366a646e99cSTaylor Simpson #define fHINTJR(TARGET) { /* Not modelled in qemu */}
367a646e99cSTaylor Simpson 
368a646e99cSTaylor Simpson #define fSET_OVERFLOW() SET_USR_FIELD(USR_OVF, 1)
369a646e99cSTaylor Simpson #define fSET_LPCFG(VAL) SET_USR_FIELD(USR_LPCFG, (VAL))
370a646e99cSTaylor Simpson #define fGET_LPCFG (GET_USR_FIELD(USR_LPCFG))
371a646e99cSTaylor Simpson #define fPART1(WORK) if (part1) { WORK; return; }
372a646e99cSTaylor Simpson #define fCAST4u(A) ((uint32_t)(A))
373a646e99cSTaylor Simpson #define fCAST4s(A) ((int32_t)(A))
374a646e99cSTaylor Simpson #define fCAST8u(A) ((uint64_t)(A))
375a646e99cSTaylor Simpson #define fCAST8s(A) ((int64_t)(A))
37664458f48STaylor Simpson #define fCAST2_2s(A) ((int16_t)(A))
37764458f48STaylor Simpson #define fCAST2_2u(A) ((uint16_t)(A))
378a646e99cSTaylor Simpson #define fCAST4_4s(A) ((int32_t)(A))
379a646e99cSTaylor Simpson #define fCAST4_4u(A) ((uint32_t)(A))
380a646e99cSTaylor Simpson #define fCAST4_8s(A) ((int64_t)((int32_t)(A)))
381a646e99cSTaylor Simpson #define fCAST4_8u(A) ((uint64_t)((uint32_t)(A)))
382a646e99cSTaylor Simpson #define fCAST8_8s(A) ((int64_t)(A))
383a646e99cSTaylor Simpson #define fCAST8_8u(A) ((uint64_t)(A))
384a646e99cSTaylor Simpson #define fCAST2_8s(A) ((int64_t)((int16_t)(A)))
385a646e99cSTaylor Simpson #define fCAST2_8u(A) ((uint64_t)((uint16_t)(A)))
386a646e99cSTaylor Simpson #define fZE8_16(A) ((int16_t)((uint8_t)(A)))
387a646e99cSTaylor Simpson #define fSE8_16(A) ((int16_t)((int8_t)(A)))
388a646e99cSTaylor Simpson #define fSE16_32(A) ((int32_t)((int16_t)(A)))
389a646e99cSTaylor Simpson #define fZE16_32(A) ((uint32_t)((uint16_t)(A)))
390a646e99cSTaylor Simpson #define fSE32_64(A) ((int64_t)((int32_t)(A)))
391a646e99cSTaylor Simpson #define fZE32_64(A) ((uint64_t)((uint32_t)(A)))
392a646e99cSTaylor Simpson #define fSE8_32(A) ((int32_t)((int8_t)(A)))
393a646e99cSTaylor Simpson #define fZE8_32(A) ((int32_t)((uint8_t)(A)))
394a646e99cSTaylor Simpson #define fMPY8UU(A, B) (int)(fZE8_16(A) * fZE8_16(B))
395a646e99cSTaylor Simpson #define fMPY8US(A, B) (int)(fZE8_16(A) * fSE8_16(B))
396a646e99cSTaylor Simpson #define fMPY8SU(A, B) (int)(fSE8_16(A) * fZE8_16(B))
397a646e99cSTaylor Simpson #define fMPY8SS(A, B) (int)((short)(A) * (short)(B))
398a646e99cSTaylor Simpson #define fMPY16SS(A, B) fSE32_64(fSE16_32(A) * fSE16_32(B))
399a646e99cSTaylor Simpson #define fMPY16UU(A, B) fZE32_64(fZE16_32(A) * fZE16_32(B))
400a646e99cSTaylor Simpson #define fMPY16SU(A, B) fSE32_64(fSE16_32(A) * fZE16_32(B))
401a646e99cSTaylor Simpson #define fMPY16US(A, B) fMPY16SU(B, A)
402a646e99cSTaylor Simpson #define fMPY32SS(A, B) (fSE32_64(A) * fSE32_64(B))
403a646e99cSTaylor Simpson #define fMPY32UU(A, B) (fZE32_64(A) * fZE32_64(B))
404a646e99cSTaylor Simpson #define fMPY32SU(A, B) (fSE32_64(A) * fZE32_64(B))
405a646e99cSTaylor Simpson #define fMPY3216SS(A, B) (fSE32_64(A) * fSXTN(16, 64, B))
406a646e99cSTaylor Simpson #define fMPY3216SU(A, B) (fSE32_64(A) * fZXTN(16, 64, B))
407a646e99cSTaylor Simpson #define fROUND(A) (A + 0x8000)
408a646e99cSTaylor Simpson #define fCLIP(DST, SRC, U) \
409a646e99cSTaylor Simpson     do { \
410a646e99cSTaylor Simpson         int32_t maxv = (1 << U) - 1; \
411a646e99cSTaylor Simpson         int32_t minv = -(1 << U); \
412a646e99cSTaylor Simpson         DST = fMIN(maxv, fMAX(SRC, minv)); \
413a646e99cSTaylor Simpson     } while (0)
414a646e99cSTaylor Simpson #define fCRND(A) ((((A) & 0x3) == 0x3) ? ((A) + 1) : ((A)))
415a646e99cSTaylor Simpson #define fRNDN(A, N) ((((N) == 0) ? (A) : (((fSE32_64(A)) + (1 << ((N) - 1))))))
416a646e99cSTaylor Simpson #define fCRNDN(A, N) (conv_round(A, N))
417a646e99cSTaylor Simpson #define fADD128(A, B) (int128_add(A, B))
418a646e99cSTaylor Simpson #define fSUB128(A, B) (int128_sub(A, B))
419a646e99cSTaylor Simpson #define fSHIFTR128(A, B) (int128_rshift(A, B))
420a646e99cSTaylor Simpson #define fSHIFTL128(A, B) (int128_lshift(A, B))
421a646e99cSTaylor Simpson #define fAND128(A, B) (int128_and(A, B))
422a646e99cSTaylor Simpson #define fCAST8S_16S(A) (int128_exts64(A))
423a646e99cSTaylor Simpson #define fCAST16S_8S(A) (int128_getlo(A))
424a646e99cSTaylor Simpson 
4250d0b91a8STaylor Simpson #ifdef QEMU_GENERATE
4260d0b91a8STaylor Simpson #define fEA_RI(REG, IMM) tcg_gen_addi_tl(EA, REG, IMM)
4270d0b91a8STaylor Simpson #define fEA_RRs(REG, REG2, SCALE) \
4280d0b91a8STaylor Simpson     do { \
4290d0b91a8STaylor Simpson         TCGv tmp = tcg_temp_new(); \
4300d0b91a8STaylor Simpson         tcg_gen_shli_tl(tmp, REG2, SCALE); \
4310d0b91a8STaylor Simpson         tcg_gen_add_tl(EA, REG, tmp); \
4320d0b91a8STaylor Simpson     } while (0)
4330d0b91a8STaylor Simpson #define fEA_IRs(IMM, REG, SCALE) \
4340d0b91a8STaylor Simpson     do { \
4350d0b91a8STaylor Simpson         tcg_gen_shli_tl(EA, REG, SCALE); \
4360d0b91a8STaylor Simpson         tcg_gen_addi_tl(EA, EA, IMM); \
4370d0b91a8STaylor Simpson     } while (0)
4380d0b91a8STaylor Simpson #else
439a646e99cSTaylor Simpson #define fEA_RI(REG, IMM) \
440a646e99cSTaylor Simpson     do { \
441a646e99cSTaylor Simpson         EA = REG + IMM; \
442a646e99cSTaylor Simpson     } while (0)
443a646e99cSTaylor Simpson #define fEA_RRs(REG, REG2, SCALE) \
444a646e99cSTaylor Simpson     do { \
445a646e99cSTaylor Simpson         EA = REG + (REG2 << SCALE); \
446a646e99cSTaylor Simpson     } while (0)
447a646e99cSTaylor Simpson #define fEA_IRs(IMM, REG, SCALE) \
448a646e99cSTaylor Simpson     do { \
449a646e99cSTaylor Simpson         EA = IMM + (REG << SCALE); \
450a646e99cSTaylor Simpson     } while (0)
4510d0b91a8STaylor Simpson #endif
452a646e99cSTaylor Simpson 
453a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
454a646e99cSTaylor Simpson #define fEA_IMM(IMM) tcg_gen_movi_tl(EA, IMM)
455a646e99cSTaylor Simpson #define fEA_REG(REG) tcg_gen_mov_tl(EA, REG)
456af7f1821STaylor Simpson #define fEA_BREVR(REG)      gen_helper_fbrev(EA, REG)
457a646e99cSTaylor Simpson #define fPM_I(REG, IMM)     tcg_gen_addi_tl(REG, REG, IMM)
458a646e99cSTaylor Simpson #define fPM_M(REG, MVAL)    tcg_gen_add_tl(REG, REG, MVAL)
45946ef47e2STaylor Simpson #define fPM_CIRI(REG, IMM, MVAL) \
46046ef47e2STaylor Simpson     do { \
461f448397aSTaylor Simpson         TCGv tcgv_siV = tcg_constant_tl(siV); \
462421b53d5STaylor Simpson         gen_helper_fcircadd(REG, REG, tcgv_siV, MuV, CS); \
46346ef47e2STaylor Simpson     } while (0)
464a646e99cSTaylor Simpson #else
465a646e99cSTaylor Simpson #define fEA_IMM(IMM)        do { EA = (IMM); } while (0)
466a646e99cSTaylor Simpson #define fEA_REG(REG)        do { EA = (REG); } while (0)
467a646e99cSTaylor Simpson #define fEA_GPI(IMM)        do { EA = (fREAD_GP() + (IMM)); } while (0)
468a646e99cSTaylor Simpson #define fPM_I(REG, IMM)     do { REG = REG + (IMM); } while (0)
469a646e99cSTaylor Simpson #define fPM_M(REG, MVAL)    do { REG = REG + (MVAL); } while (0)
470a646e99cSTaylor Simpson #endif
471a646e99cSTaylor Simpson #define fSCALE(N, A) (((int64_t)(A)) << N)
47264458f48STaylor Simpson #define fVSATW(A) fVSATN(32, ((long long)A))
473a646e99cSTaylor Simpson #define fSATW(A) fSATN(32, ((long long)A))
47464458f48STaylor Simpson #define fVSAT(A) fVSATN(32, (A))
475a646e99cSTaylor Simpson #define fSAT(A) fSATN(32, (A))
476a646e99cSTaylor Simpson #define fSAT_ORIG_SHL(A, ORIG_REG) \
477a646e99cSTaylor Simpson     ((((int32_t)((fSAT(A)) ^ ((int32_t)(ORIG_REG)))) < 0) \
478a646e99cSTaylor Simpson         ? fSATVALN(32, ((int32_t)(ORIG_REG))) \
479a646e99cSTaylor Simpson         : ((((ORIG_REG) > 0) && ((A) == 0)) ? fSATVALN(32, (ORIG_REG)) \
480a646e99cSTaylor Simpson                                             : fSAT(A)))
481a646e99cSTaylor Simpson #define fPASS(A) A
482a646e99cSTaylor Simpson #define fBIDIR_SHIFTL(SRC, SHAMT, REGSTYPE) \
483a646e99cSTaylor Simpson     (((SHAMT) < 0) ? ((fCAST##REGSTYPE(SRC) >> ((-(SHAMT)) - 1)) >> 1) \
484a646e99cSTaylor Simpson                    : (fCAST##REGSTYPE(SRC) << (SHAMT)))
485a646e99cSTaylor Simpson #define fBIDIR_ASHIFTL(SRC, SHAMT, REGSTYPE) \
486a646e99cSTaylor Simpson     fBIDIR_SHIFTL(SRC, SHAMT, REGSTYPE##s)
487a646e99cSTaylor Simpson #define fBIDIR_LSHIFTL(SRC, SHAMT, REGSTYPE) \
488a646e99cSTaylor Simpson     fBIDIR_SHIFTL(SRC, SHAMT, REGSTYPE##u)
489a646e99cSTaylor Simpson #define fBIDIR_ASHIFTL_SAT(SRC, SHAMT, REGSTYPE) \
490a646e99cSTaylor Simpson     (((SHAMT) < 0) ? ((fCAST##REGSTYPE##s(SRC) >> ((-(SHAMT)) - 1)) >> 1) \
491a646e99cSTaylor Simpson                    : fSAT_ORIG_SHL(fCAST##REGSTYPE##s(SRC) << (SHAMT), (SRC)))
492a646e99cSTaylor Simpson #define fBIDIR_SHIFTR(SRC, SHAMT, REGSTYPE) \
493a646e99cSTaylor Simpson     (((SHAMT) < 0) ? ((fCAST##REGSTYPE(SRC) << ((-(SHAMT)) - 1)) << 1) \
494a646e99cSTaylor Simpson                    : (fCAST##REGSTYPE(SRC) >> (SHAMT)))
495a646e99cSTaylor Simpson #define fBIDIR_ASHIFTR(SRC, SHAMT, REGSTYPE) \
496a646e99cSTaylor Simpson     fBIDIR_SHIFTR(SRC, SHAMT, REGSTYPE##s)
497a646e99cSTaylor Simpson #define fBIDIR_LSHIFTR(SRC, SHAMT, REGSTYPE) \
498a646e99cSTaylor Simpson     fBIDIR_SHIFTR(SRC, SHAMT, REGSTYPE##u)
499a646e99cSTaylor Simpson #define fBIDIR_ASHIFTR_SAT(SRC, SHAMT, REGSTYPE) \
500a646e99cSTaylor Simpson     (((SHAMT) < 0) ? fSAT_ORIG_SHL((fCAST##REGSTYPE##s(SRC) \
501a646e99cSTaylor Simpson                         << ((-(SHAMT)) - 1)) << 1, (SRC)) \
502a646e99cSTaylor Simpson                    : (fCAST##REGSTYPE##s(SRC) >> (SHAMT)))
503a646e99cSTaylor Simpson #define fASHIFTR(SRC, SHAMT, REGSTYPE) (fCAST##REGSTYPE##s(SRC) >> (SHAMT))
504a646e99cSTaylor Simpson #define fLSHIFTR(SRC, SHAMT, REGSTYPE) \
50566a1807bSTaylor Simpson     (((SHAMT) >= (sizeof(SRC) * 8)) ? 0 : (fCAST##REGSTYPE##u(SRC) >> (SHAMT)))
506a646e99cSTaylor Simpson #define fROTL(SRC, SHAMT, REGSTYPE) \
507a646e99cSTaylor Simpson     (((SHAMT) == 0) ? (SRC) : ((fCAST##REGSTYPE##u(SRC) << (SHAMT)) | \
508a646e99cSTaylor Simpson                               ((fCAST##REGSTYPE##u(SRC) >> \
509a646e99cSTaylor Simpson                                  ((sizeof(SRC) * 8) - (SHAMT))))))
510a646e99cSTaylor Simpson #define fROTR(SRC, SHAMT, REGSTYPE) \
511a646e99cSTaylor Simpson     (((SHAMT) == 0) ? (SRC) : ((fCAST##REGSTYPE##u(SRC) >> (SHAMT)) | \
512a646e99cSTaylor Simpson                               ((fCAST##REGSTYPE##u(SRC) << \
513a646e99cSTaylor Simpson                                  ((sizeof(SRC) * 8) - (SHAMT))))))
514a646e99cSTaylor Simpson #define fASHIFTL(SRC, SHAMT, REGSTYPE) \
51566a1807bSTaylor Simpson     (((SHAMT) >= (sizeof(SRC) * 8)) ? 0 : (fCAST##REGSTYPE##s(SRC) << (SHAMT)))
516a646e99cSTaylor Simpson 
517a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
518a646e99cSTaylor Simpson #define fLOAD(NUM, SIZE, SIGN, EA, DST) MEM_LOAD##SIZE##SIGN(DST, EA)
519a646e99cSTaylor Simpson #else
5203bd83593SMatheus Tavares Bernardino #define MEM_LOAD1 cpu_ldub_data_ra
5213bd83593SMatheus Tavares Bernardino #define MEM_LOAD2 cpu_lduw_data_ra
5223bd83593SMatheus Tavares Bernardino #define MEM_LOAD4 cpu_ldl_data_ra
5233bd83593SMatheus Tavares Bernardino #define MEM_LOAD8 cpu_ldq_data_ra
5243bd83593SMatheus Tavares Bernardino 
525a646e99cSTaylor Simpson #define fLOAD(NUM, SIZE, SIGN, EA, DST) \
5263bd83593SMatheus Tavares Bernardino     do { \
5273bd83593SMatheus Tavares Bernardino         check_noshuf(env, pkt_has_store_s1, slot, EA, SIZE, GETPC()); \
5283bd83593SMatheus Tavares Bernardino         DST = (size##SIZE##SIGN##_t)MEM_LOAD##SIZE(env, EA, GETPC()); \
5293bd83593SMatheus Tavares Bernardino     } while (0)
530a646e99cSTaylor Simpson #endif
531a646e99cSTaylor Simpson 
532a646e99cSTaylor Simpson #define fMEMOP(NUM, SIZE, SIGN, EA, FNTYPE, VALUE)
533a646e99cSTaylor Simpson 
53493550aebSTaylor Simpson #define fGET_FRAMEKEY() (env->gpr[HEX_REG_FRAMEKEY])
535a646e99cSTaylor Simpson #define fFRAME_SCRAMBLE(VAL) ((VAL) ^ (fCAST8u(fGET_FRAMEKEY()) << 32))
536a646e99cSTaylor Simpson #define fFRAME_UNSCRAMBLE(VAL) fFRAME_SCRAMBLE(VAL)
537a646e99cSTaylor Simpson 
538a646e99cSTaylor Simpson #ifdef CONFIG_USER_ONLY
539a646e99cSTaylor Simpson #define fFRAMECHECK(ADDR, EA) do { } while (0) /* Not modelled in linux-user */
540a646e99cSTaylor Simpson #else
541a646e99cSTaylor Simpson /* System mode not implemented yet */
542a646e99cSTaylor Simpson #define fFRAMECHECK(ADDR, EA)  g_assert_not_reached();
543a646e99cSTaylor Simpson #endif
544a646e99cSTaylor Simpson 
545a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
546a646e99cSTaylor Simpson #define fLOAD_LOCKED(NUM, SIZE, SIGN, EA, DST) \
547a646e99cSTaylor Simpson     gen_load_locked##SIZE##SIGN(DST, EA, ctx->mem_idx);
548a646e99cSTaylor Simpson #endif
549a646e99cSTaylor Simpson 
55046ef47e2STaylor Simpson #ifdef QEMU_GENERATE
55146ef47e2STaylor Simpson #define fSTORE(NUM, SIZE, EA, SRC) MEM_STORE##SIZE(EA, SRC, insn->slot)
55246ef47e2STaylor Simpson #else
553a646e99cSTaylor Simpson #define fSTORE(NUM, SIZE, EA, SRC) MEM_STORE##SIZE(EA, SRC, slot)
55446ef47e2STaylor Simpson #endif
555a646e99cSTaylor Simpson 
556a646e99cSTaylor Simpson #ifdef QEMU_GENERATE
557a646e99cSTaylor Simpson #define fSTORE_LOCKED(NUM, SIZE, EA, SRC, PRED) \
55888725336STaylor Simpson     gen_store_conditional##SIZE(ctx, PRED, EA, SRC);
559a646e99cSTaylor Simpson #endif
560a646e99cSTaylor Simpson 
56146ef47e2STaylor Simpson #ifdef QEMU_GENERATE
56246ef47e2STaylor Simpson #define GETBYTE_FUNC(X) \
56346ef47e2STaylor Simpson     __builtin_choose_expr(TYPE_TCGV(X), \
56446ef47e2STaylor Simpson         gen_get_byte, \
56546ef47e2STaylor Simpson         __builtin_choose_expr(TYPE_TCGV_I64(X), \
56646ef47e2STaylor Simpson             gen_get_byte_i64, (void)0))
56746ef47e2STaylor Simpson #define fGETBYTE(N, SRC) GETBYTE_FUNC(SRC)(BYTE, N, SRC, true)
56846ef47e2STaylor Simpson #define fGETUBYTE(N, SRC) GETBYTE_FUNC(SRC)(BYTE, N, SRC, false)
56946ef47e2STaylor Simpson #else
570a646e99cSTaylor Simpson #define fGETBYTE(N, SRC) ((int8_t)((SRC >> ((N) * 8)) & 0xff))
571a646e99cSTaylor Simpson #define fGETUBYTE(N, SRC) ((uint8_t)((SRC >> ((N) * 8)) & 0xff))
57246ef47e2STaylor Simpson #endif
573a646e99cSTaylor Simpson 
574a646e99cSTaylor Simpson #define fSETBYTE(N, DST, VAL) \
575a646e99cSTaylor Simpson     do { \
576a646e99cSTaylor Simpson         DST = (DST & ~(0x0ffLL << ((N) * 8))) | \
577a646e99cSTaylor Simpson         (((uint64_t)((VAL) & 0x0ffLL)) << ((N) * 8)); \
578a646e99cSTaylor Simpson     } while (0)
57946ef47e2STaylor Simpson 
58046ef47e2STaylor Simpson #ifdef QEMU_GENERATE
58146ef47e2STaylor Simpson #define fGETHALF(N, SRC)  gen_get_half(HALF, N, SRC, true)
58246ef47e2STaylor Simpson #define fGETUHALF(N, SRC) gen_get_half(HALF, N, SRC, false)
58346ef47e2STaylor Simpson #else
584a646e99cSTaylor Simpson #define fGETHALF(N, SRC) ((int16_t)((SRC >> ((N) * 16)) & 0xffff))
585a646e99cSTaylor Simpson #define fGETUHALF(N, SRC) ((uint16_t)((SRC >> ((N) * 16)) & 0xffff))
58646ef47e2STaylor Simpson #endif
587a646e99cSTaylor Simpson #define fSETHALF(N, DST, VAL) \
588a646e99cSTaylor Simpson     do { \
589a646e99cSTaylor Simpson         DST = (DST & ~(0x0ffffLL << ((N) * 16))) | \
590a646e99cSTaylor Simpson         (((uint64_t)((VAL) & 0x0ffff)) << ((N) * 16)); \
591a646e99cSTaylor Simpson     } while (0)
592a646e99cSTaylor Simpson #define fSETHALFw fSETHALF
593a646e99cSTaylor Simpson #define fSETHALFd fSETHALF
594a646e99cSTaylor Simpson 
595a646e99cSTaylor Simpson #define fGETWORD(N, SRC) \
596a646e99cSTaylor Simpson     ((int64_t)((int32_t)((SRC >> ((N) * 32)) & 0x0ffffffffLL)))
597a646e99cSTaylor Simpson #define fGETUWORD(N, SRC) \
598a646e99cSTaylor Simpson     ((uint64_t)((uint32_t)((SRC >> ((N) * 32)) & 0x0ffffffffLL)))
599a646e99cSTaylor Simpson 
600a646e99cSTaylor Simpson #define fSETWORD(N, DST, VAL) \
601a646e99cSTaylor Simpson     do { \
602a646e99cSTaylor Simpson         DST = (DST & ~(0x0ffffffffLL << ((N) * 32))) | \
603a646e99cSTaylor Simpson               (((VAL) & 0x0ffffffffLL) << ((N) * 32)); \
604a646e99cSTaylor Simpson     } while (0)
605a646e99cSTaylor Simpson 
606a646e99cSTaylor Simpson #define fSETBIT(N, DST, VAL) \
607a646e99cSTaylor Simpson     do { \
608a646e99cSTaylor Simpson         DST = (DST & ~(1ULL << (N))) | (((uint64_t)(VAL)) << (N)); \
609a646e99cSTaylor Simpson     } while (0)
610a646e99cSTaylor Simpson 
611a646e99cSTaylor Simpson #define fGETBIT(N, SRC) (((SRC) >> N) & 1)
612a646e99cSTaylor Simpson #define fSETBITS(HI, LO, DST, VAL) \
613a646e99cSTaylor Simpson     do { \
614a646e99cSTaylor Simpson         int j; \
615a646e99cSTaylor Simpson         for (j = LO; j <= HI; j++) { \
616a646e99cSTaylor Simpson             fSETBIT(j, DST, VAL); \
617a646e99cSTaylor Simpson         } \
618a646e99cSTaylor Simpson     } while (0)
61964458f48STaylor Simpson #define fCOUNTONES_2(VAL) ctpop16(VAL)
620a646e99cSTaylor Simpson #define fCOUNTONES_4(VAL) ctpop32(VAL)
621a646e99cSTaylor Simpson #define fCOUNTONES_8(VAL) ctpop64(VAL)
622a646e99cSTaylor Simpson #define fBREV_8(VAL) revbit64(VAL)
623a646e99cSTaylor Simpson #define fBREV_4(VAL) revbit32(VAL)
624a646e99cSTaylor Simpson #define fCL1_8(VAL) clo64(VAL)
625a646e99cSTaylor Simpson #define fCL1_4(VAL) clo32(VAL)
62664458f48STaylor Simpson #define fCL1_2(VAL) (clz32(~(uint16_t)(VAL) & 0xffff) - 16)
627a646e99cSTaylor Simpson #define fINTERLEAVE(ODD, EVEN) interleave(ODD, EVEN)
628a646e99cSTaylor Simpson #define fDEINTERLEAVE(MIXED) deinterleave(MIXED)
629a646e99cSTaylor Simpson #define fHIDE(A) A
630a646e99cSTaylor Simpson #define fCONSTLL(A) A##LL
631a646e99cSTaylor Simpson #define fECHO(A) (A)
632a646e99cSTaylor Simpson 
633a646e99cSTaylor Simpson #define fTRAP(TRAPTYPE, IMM) helper_raise_exception(env, HEX_EXCP_TRAP0)
634a646e99cSTaylor Simpson #define fPAUSE(IMM)
635a646e99cSTaylor Simpson 
636a646e99cSTaylor Simpson #define fALIGN_REG_FIELD_VALUE(FIELD, VAL) \
637a646e99cSTaylor Simpson     ((VAL) << reg_field_info[FIELD].offset)
638a646e99cSTaylor Simpson #define fGET_REG_FIELD_MASK(FIELD) \
639a646e99cSTaylor Simpson     (((1 << reg_field_info[FIELD].width) - 1) << reg_field_info[FIELD].offset)
640a646e99cSTaylor Simpson #define fREAD_REG_FIELD(REG, FIELD) \
641a646e99cSTaylor Simpson     fEXTRACTU_BITS(env->gpr[HEX_REG_##REG], \
642a646e99cSTaylor Simpson                    reg_field_info[FIELD].width, \
643a646e99cSTaylor Simpson                    reg_field_info[FIELD].offset)
644a646e99cSTaylor Simpson 
645a305a170STaylor Simpson #ifdef QEMU_GENERATE
6460fc56c43STaylor Simpson #define fDCZEROA(REG) \
6470fc56c43STaylor Simpson     do { \
6480fc56c43STaylor Simpson         ctx->dczero_addr = tcg_temp_new(); \
6490fc56c43STaylor Simpson         tcg_gen_mov_tl(ctx->dczero_addr, (REG)); \
6500fc56c43STaylor Simpson     } while (0)
651a305a170STaylor Simpson #endif
652a646e99cSTaylor Simpson 
653a646e99cSTaylor Simpson #define fBRANCH_SPECULATE_STALL(DOTNEWVAL, JUMP_COND, SPEC_DIR, HINTBITNUM, \
654a646e99cSTaylor Simpson                                 STRBITNUM) /* Nothing */
655a646e99cSTaylor Simpson 
656a646e99cSTaylor Simpson 
657a646e99cSTaylor Simpson #endif
658