xref: /openbmc/qemu/tcg/s390x/tcg-target.c.inc (revision 6971358747d8998a5770d1bf997495d3061d6c6a)
1/*
2 * Tiny Code Generator for QEMU
3 *
4 * Copyright (c) 2009 Ulrich Hecht <uli@suse.de>
5 * Copyright (c) 2009 Alexander Graf <agraf@suse.de>
6 * Copyright (c) 2010 Richard Henderson <rth@twiddle.net>
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a copy
9 * of this software and associated documentation files (the "Software"), to deal
10 * in the Software without restriction, including without limitation the rights
11 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
12 * copies of the Software, and to permit persons to whom the Software is
13 * furnished to do so, subject to the following conditions:
14 *
15 * The above copyright notice and this permission notice shall be included in
16 * all copies or substantial portions of the Software.
17 *
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
21 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
22 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
23 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24 * THE SOFTWARE.
25 */
26
27#include "elf.h"
28
29/* Used for function call generation. */
30#define TCG_TARGET_STACK_ALIGN          8
31#define TCG_TARGET_CALL_STACK_OFFSET    160
32#define TCG_TARGET_CALL_ARG_I32         TCG_CALL_ARG_EXTEND
33#define TCG_TARGET_CALL_ARG_I64         TCG_CALL_ARG_NORMAL
34#define TCG_TARGET_CALL_ARG_I128        TCG_CALL_ARG_BY_REF
35#define TCG_TARGET_CALL_RET_I128        TCG_CALL_RET_BY_REF
36
37#define TCG_CT_CONST_S16        (1 << 8)
38#define TCG_CT_CONST_S32        (1 << 9)
39#define TCG_CT_CONST_U32        (1 << 10)
40#define TCG_CT_CONST_ZERO       (1 << 11)
41#define TCG_CT_CONST_P32        (1 << 12)
42#define TCG_CT_CONST_INV        (1 << 13)
43#define TCG_CT_CONST_INVRISBG   (1 << 14)
44#define TCG_CT_CONST_CMP        (1 << 15)
45#define TCG_CT_CONST_M1         (1 << 16)
46
47#define ALL_GENERAL_REGS     MAKE_64BIT_MASK(0, 16)
48#define ALL_VECTOR_REGS      MAKE_64BIT_MASK(32, 32)
49
50/* Several places within the instruction set 0 means "no register"
51   rather than TCG_REG_R0.  */
52#define TCG_REG_NONE    0
53
54/* A scratch register that may be be used throughout the backend.  */
55#define TCG_TMP0        TCG_REG_R1
56#define TCG_VEC_TMP0    TCG_REG_V31
57
58#define TCG_GUEST_BASE_REG TCG_REG_R13
59
60/* All of the following instructions are prefixed with their instruction
61   format, and are defined as 8- or 16-bit quantities, even when the two
62   halves of the 16-bit quantity may appear 32 bits apart in the insn.
63   This makes it easy to copy the values from the tables in Appendix B.  */
64typedef enum S390Opcode {
65    RIL_AFI     = 0xc209,
66    RIL_AGFI    = 0xc208,
67    RIL_ALFI    = 0xc20b,
68    RIL_ALGFI   = 0xc20a,
69    RIL_BRASL   = 0xc005,
70    RIL_BRCL    = 0xc004,
71    RIL_CFI     = 0xc20d,
72    RIL_CGFI    = 0xc20c,
73    RIL_CLFI    = 0xc20f,
74    RIL_CLGFI   = 0xc20e,
75    RIL_CLRL    = 0xc60f,
76    RIL_CLGRL   = 0xc60a,
77    RIL_CRL     = 0xc60d,
78    RIL_CGRL    = 0xc608,
79    RIL_IIHF    = 0xc008,
80    RIL_IILF    = 0xc009,
81    RIL_LARL    = 0xc000,
82    RIL_LGFI    = 0xc001,
83    RIL_LGRL    = 0xc408,
84    RIL_LLIHF   = 0xc00e,
85    RIL_LLILF   = 0xc00f,
86    RIL_LRL     = 0xc40d,
87    RIL_MSFI    = 0xc201,
88    RIL_MSGFI   = 0xc200,
89    RIL_NIHF    = 0xc00a,
90    RIL_NILF    = 0xc00b,
91    RIL_OIHF    = 0xc00c,
92    RIL_OILF    = 0xc00d,
93    RIL_SLFI    = 0xc205,
94    RIL_SLGFI   = 0xc204,
95    RIL_XIHF    = 0xc006,
96    RIL_XILF    = 0xc007,
97
98    RI_AGHI     = 0xa70b,
99    RI_AHI      = 0xa70a,
100    RI_BRC      = 0xa704,
101    RI_CHI      = 0xa70e,
102    RI_CGHI     = 0xa70f,
103    RI_IIHH     = 0xa500,
104    RI_IIHL     = 0xa501,
105    RI_IILH     = 0xa502,
106    RI_IILL     = 0xa503,
107    RI_LGHI     = 0xa709,
108    RI_LLIHH    = 0xa50c,
109    RI_LLIHL    = 0xa50d,
110    RI_LLILH    = 0xa50e,
111    RI_LLILL    = 0xa50f,
112    RI_MGHI     = 0xa70d,
113    RI_MHI      = 0xa70c,
114    RI_NIHH     = 0xa504,
115    RI_NIHL     = 0xa505,
116    RI_NILH     = 0xa506,
117    RI_NILL     = 0xa507,
118    RI_OIHH     = 0xa508,
119    RI_OIHL     = 0xa509,
120    RI_OILH     = 0xa50a,
121    RI_OILL     = 0xa50b,
122    RI_TMLL     = 0xa701,
123    RI_TMLH     = 0xa700,
124    RI_TMHL     = 0xa703,
125    RI_TMHH     = 0xa702,
126
127    RIEb_CGRJ    = 0xec64,
128    RIEb_CLGRJ   = 0xec65,
129    RIEb_CLRJ    = 0xec77,
130    RIEb_CRJ     = 0xec76,
131
132    RIEc_CGIJ    = 0xec7c,
133    RIEc_CIJ     = 0xec7e,
134    RIEc_CLGIJ   = 0xec7d,
135    RIEc_CLIJ    = 0xec7f,
136
137    RIEf_RISBG   = 0xec55,
138
139    RIEg_LOCGHI  = 0xec46,
140
141    RRE_AGR     = 0xb908,
142    RRE_ALGR    = 0xb90a,
143    RRE_ALCR    = 0xb998,
144    RRE_ALCGR   = 0xb988,
145    RRE_ALGFR   = 0xb91a,
146    RRE_CGR     = 0xb920,
147    RRE_CLGR    = 0xb921,
148    RRE_DLGR    = 0xb987,
149    RRE_DLR     = 0xb997,
150    RRE_DSGFR   = 0xb91d,
151    RRE_DSGR    = 0xb90d,
152    RRE_FLOGR   = 0xb983,
153    RRE_LGBR    = 0xb906,
154    RRE_LCGR    = 0xb903,
155    RRE_LGFR    = 0xb914,
156    RRE_LGHR    = 0xb907,
157    RRE_LGR     = 0xb904,
158    RRE_LLGCR   = 0xb984,
159    RRE_LLGFR   = 0xb916,
160    RRE_LLGHR   = 0xb985,
161    RRE_LRVR    = 0xb91f,
162    RRE_LRVGR   = 0xb90f,
163    RRE_LTGR    = 0xb902,
164    RRE_MLGR    = 0xb986,
165    RRE_MSGR    = 0xb90c,
166    RRE_MSR     = 0xb252,
167    RRE_NGR     = 0xb980,
168    RRE_OGR     = 0xb981,
169    RRE_SGR     = 0xb909,
170    RRE_SLGR    = 0xb90b,
171    RRE_SLBR    = 0xb999,
172    RRE_SLBGR   = 0xb989,
173    RRE_XGR     = 0xb982,
174
175    RRFa_MGRK   = 0xb9ec,
176    RRFa_MSRKC  = 0xb9fd,
177    RRFa_MSGRKC = 0xb9ed,
178    RRFa_NCRK   = 0xb9f5,
179    RRFa_NCGRK  = 0xb9e5,
180    RRFa_NNRK   = 0xb974,
181    RRFa_NNGRK  = 0xb964,
182    RRFa_NORK   = 0xb976,
183    RRFa_NOGRK  = 0xb966,
184    RRFa_NRK    = 0xb9f4,
185    RRFa_NGRK   = 0xb9e4,
186    RRFa_NXRK   = 0xb977,
187    RRFa_NXGRK  = 0xb967,
188    RRFa_OCRK   = 0xb975,
189    RRFa_OCGRK  = 0xb965,
190    RRFa_ORK    = 0xb9f6,
191    RRFa_OGRK   = 0xb9e6,
192    RRFa_SRK    = 0xb9f9,
193    RRFa_SGRK   = 0xb9e9,
194    RRFa_SLRK   = 0xb9fb,
195    RRFa_SLGRK  = 0xb9eb,
196    RRFa_XRK    = 0xb9f7,
197    RRFa_XGRK   = 0xb9e7,
198
199    RRFam_SELGR = 0xb9e3,
200
201    RRFc_LOCR   = 0xb9f2,
202    RRFc_LOCGR  = 0xb9e2,
203    RRFc_POPCNT = 0xb9e1,
204
205    RR_AR       = 0x1a,
206    RR_ALR      = 0x1e,
207    RR_BASR     = 0x0d,
208    RR_BCR      = 0x07,
209    RR_CLR      = 0x15,
210    RR_CR       = 0x19,
211    RR_DR       = 0x1d,
212    RR_LCR      = 0x13,
213    RR_LR       = 0x18,
214    RR_LTR      = 0x12,
215    RR_NR       = 0x14,
216    RR_OR       = 0x16,
217    RR_SR       = 0x1b,
218    RR_SLR      = 0x1f,
219    RR_XR       = 0x17,
220
221    RSY_RLL     = 0xeb1d,
222    RSY_RLLG    = 0xeb1c,
223    RSY_SLLG    = 0xeb0d,
224    RSY_SLLK    = 0xebdf,
225    RSY_SRAG    = 0xeb0a,
226    RSY_SRAK    = 0xebdc,
227    RSY_SRLG    = 0xeb0c,
228    RSY_SRLK    = 0xebde,
229
230    RS_SLL      = 0x89,
231    RS_SRA      = 0x8a,
232    RS_SRL      = 0x88,
233
234    RXY_AG      = 0xe308,
235    RXY_AY      = 0xe35a,
236    RXY_CG      = 0xe320,
237    RXY_CLG     = 0xe321,
238    RXY_CLY     = 0xe355,
239    RXY_CY      = 0xe359,
240    RXY_LAY     = 0xe371,
241    RXY_LB      = 0xe376,
242    RXY_LG      = 0xe304,
243    RXY_LGB     = 0xe377,
244    RXY_LGF     = 0xe314,
245    RXY_LGH     = 0xe315,
246    RXY_LHY     = 0xe378,
247    RXY_LLGC    = 0xe390,
248    RXY_LLGF    = 0xe316,
249    RXY_LLGH    = 0xe391,
250    RXY_LMG     = 0xeb04,
251    RXY_LPQ     = 0xe38f,
252    RXY_LRV     = 0xe31e,
253    RXY_LRVG    = 0xe30f,
254    RXY_LRVH    = 0xe31f,
255    RXY_LY      = 0xe358,
256    RXY_NG      = 0xe380,
257    RXY_OG      = 0xe381,
258    RXY_STCY    = 0xe372,
259    RXY_STG     = 0xe324,
260    RXY_STHY    = 0xe370,
261    RXY_STMG    = 0xeb24,
262    RXY_STPQ    = 0xe38e,
263    RXY_STRV    = 0xe33e,
264    RXY_STRVG   = 0xe32f,
265    RXY_STRVH   = 0xe33f,
266    RXY_STY     = 0xe350,
267    RXY_XG      = 0xe382,
268
269    RX_A        = 0x5a,
270    RX_C        = 0x59,
271    RX_L        = 0x58,
272    RX_LA       = 0x41,
273    RX_LH       = 0x48,
274    RX_ST       = 0x50,
275    RX_STC      = 0x42,
276    RX_STH      = 0x40,
277
278    VRIa_VGBM   = 0xe744,
279    VRIa_VREPI  = 0xe745,
280    VRIb_VGM    = 0xe746,
281    VRIc_VREP   = 0xe74d,
282
283    VRRa_VLC    = 0xe7de,
284    VRRa_VLP    = 0xe7df,
285    VRRa_VLR    = 0xe756,
286    VRRc_VA     = 0xe7f3,
287    VRRc_VCEQ   = 0xe7f8,   /* we leave the m5 cs field 0 */
288    VRRc_VCH    = 0xe7fb,   /* " */
289    VRRc_VCHL   = 0xe7f9,   /* " */
290    VRRc_VERLLV = 0xe773,
291    VRRc_VESLV  = 0xe770,
292    VRRc_VESRAV = 0xe77a,
293    VRRc_VESRLV = 0xe778,
294    VRRc_VML    = 0xe7a2,
295    VRRc_VMN    = 0xe7fe,
296    VRRc_VMNL   = 0xe7fc,
297    VRRc_VMX    = 0xe7ff,
298    VRRc_VMXL   = 0xe7fd,
299    VRRc_VN     = 0xe768,
300    VRRc_VNC    = 0xe769,
301    VRRc_VNN    = 0xe76e,
302    VRRc_VNO    = 0xe76b,
303    VRRc_VNX    = 0xe76c,
304    VRRc_VO     = 0xe76a,
305    VRRc_VOC    = 0xe76f,
306    VRRc_VPKS   = 0xe797,   /* we leave the m5 cs field 0 */
307    VRRc_VS     = 0xe7f7,
308    VRRa_VUPH   = 0xe7d7,
309    VRRa_VUPL   = 0xe7d6,
310    VRRc_VX     = 0xe76d,
311    VRRe_VSEL   = 0xe78d,
312    VRRf_VLVGP  = 0xe762,
313
314    VRSa_VERLL  = 0xe733,
315    VRSa_VESL   = 0xe730,
316    VRSa_VESRA  = 0xe73a,
317    VRSa_VESRL  = 0xe738,
318    VRSb_VLVG   = 0xe722,
319    VRSc_VLGV   = 0xe721,
320
321    VRX_VL      = 0xe706,
322    VRX_VLLEZ   = 0xe704,
323    VRX_VLREP   = 0xe705,
324    VRX_VST     = 0xe70e,
325    VRX_VSTEF   = 0xe70b,
326    VRX_VSTEG   = 0xe70a,
327
328    NOP         = 0x0707,
329} S390Opcode;
330
331#ifdef CONFIG_DEBUG_TCG
332static const char * const tcg_target_reg_names[TCG_TARGET_NB_REGS] = {
333    "%r0",  "%r1",  "%r2",  "%r3",  "%r4",  "%r5",  "%r6",  "%r7",
334    "%r8",  "%r9",  "%r10", "%r11", "%r12", "%r13", "%r14", "%r15",
335    0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
336    "%v0",  "%v1",  "%v2",  "%v3",  "%v4",  "%v5",  "%v6",  "%v7",
337    "%v8",  "%v9",  "%v10", "%v11", "%v12", "%v13", "%v14", "%v15",
338    "%v16", "%v17", "%v18", "%v19", "%v20", "%v21", "%v22", "%v23",
339    "%v24", "%v25", "%v26", "%v27", "%v28", "%v29", "%v30", "%v31",
340};
341#endif
342
343/* Since R6 is a potential argument register, choose it last of the
344   call-saved registers.  Likewise prefer the call-clobbered registers
345   in reverse order to maximize the chance of avoiding the arguments.  */
346static const int tcg_target_reg_alloc_order[] = {
347    /* Call saved registers.  */
348    TCG_REG_R13,
349    TCG_REG_R12,
350    TCG_REG_R11,
351    TCG_REG_R10,
352    TCG_REG_R9,
353    TCG_REG_R8,
354    TCG_REG_R7,
355    TCG_REG_R6,
356    /* Call clobbered registers.  */
357    TCG_REG_R14,
358    TCG_REG_R0,
359    TCG_REG_R1,
360    /* Argument registers, in reverse order of allocation.  */
361    TCG_REG_R5,
362    TCG_REG_R4,
363    TCG_REG_R3,
364    TCG_REG_R2,
365
366    /* V8-V15 are call saved, and omitted. */
367    TCG_REG_V0,
368    TCG_REG_V1,
369    TCG_REG_V2,
370    TCG_REG_V3,
371    TCG_REG_V4,
372    TCG_REG_V5,
373    TCG_REG_V6,
374    TCG_REG_V7,
375    TCG_REG_V16,
376    TCG_REG_V17,
377    TCG_REG_V18,
378    TCG_REG_V19,
379    TCG_REG_V20,
380    TCG_REG_V21,
381    TCG_REG_V22,
382    TCG_REG_V23,
383    TCG_REG_V24,
384    TCG_REG_V25,
385    TCG_REG_V26,
386    TCG_REG_V27,
387    TCG_REG_V28,
388    TCG_REG_V29,
389    TCG_REG_V30,
390    TCG_REG_V31,
391};
392
393static const int tcg_target_call_iarg_regs[] = {
394    TCG_REG_R2,
395    TCG_REG_R3,
396    TCG_REG_R4,
397    TCG_REG_R5,
398    TCG_REG_R6,
399};
400
401static TCGReg tcg_target_call_oarg_reg(TCGCallReturnKind kind, int slot)
402{
403    tcg_debug_assert(kind == TCG_CALL_RET_NORMAL);
404    tcg_debug_assert(slot == 0);
405    return TCG_REG_R2;
406}
407
408#define S390_CC_EQ      8
409#define S390_CC_LT      4
410#define S390_CC_GT      2
411#define S390_CC_OV      1
412#define S390_CC_NE      (S390_CC_LT | S390_CC_GT)
413#define S390_CC_LE      (S390_CC_LT | S390_CC_EQ)
414#define S390_CC_GE      (S390_CC_GT | S390_CC_EQ)
415#define S390_CC_NEVER   0
416#define S390_CC_ALWAYS  15
417
418#define S390_TM_EQ      8  /* CC == 0 */
419#define S390_TM_NE      7  /* CC in {1,2,3} */
420
421/* Condition codes that result from a COMPARE and COMPARE LOGICAL.  */
422static const uint8_t tcg_cond_to_s390_cond[16] = {
423    [TCG_COND_EQ]  = S390_CC_EQ,
424    [TCG_COND_NE]  = S390_CC_NE,
425    [TCG_COND_TSTEQ] = S390_CC_EQ,
426    [TCG_COND_TSTNE] = S390_CC_NE,
427    [TCG_COND_LT]  = S390_CC_LT,
428    [TCG_COND_LE]  = S390_CC_LE,
429    [TCG_COND_GT]  = S390_CC_GT,
430    [TCG_COND_GE]  = S390_CC_GE,
431    [TCG_COND_LTU] = S390_CC_LT,
432    [TCG_COND_LEU] = S390_CC_LE,
433    [TCG_COND_GTU] = S390_CC_GT,
434    [TCG_COND_GEU] = S390_CC_GE,
435};
436
437/* Condition codes that result from a LOAD AND TEST.  Here, we have no
438   unsigned instruction variation, however since the test is vs zero we
439   can re-map the outcomes appropriately.  */
440static const uint8_t tcg_cond_to_ltr_cond[16] = {
441    [TCG_COND_EQ]  = S390_CC_EQ,
442    [TCG_COND_NE]  = S390_CC_NE,
443    [TCG_COND_TSTEQ] = S390_CC_ALWAYS,
444    [TCG_COND_TSTNE] = S390_CC_NEVER,
445    [TCG_COND_LT]  = S390_CC_LT,
446    [TCG_COND_LE]  = S390_CC_LE,
447    [TCG_COND_GT]  = S390_CC_GT,
448    [TCG_COND_GE]  = S390_CC_GE,
449    [TCG_COND_LTU] = S390_CC_NEVER,
450    [TCG_COND_LEU] = S390_CC_EQ,
451    [TCG_COND_GTU] = S390_CC_NE,
452    [TCG_COND_GEU] = S390_CC_ALWAYS,
453};
454
455static const tcg_insn_unit *tb_ret_addr;
456uint64_t s390_facilities[3];
457
458static inline bool is_general_reg(TCGReg r)
459{
460    return r <= TCG_REG_R15;
461}
462
463static inline bool is_vector_reg(TCGReg r)
464{
465    return r >= TCG_REG_V0 && r <= TCG_REG_V31;
466}
467
468static bool patch_reloc(tcg_insn_unit *src_rw, int type,
469                        intptr_t value, intptr_t addend)
470{
471    const tcg_insn_unit *src_rx = tcg_splitwx_to_rx(src_rw);
472    intptr_t pcrel2;
473    uint32_t old;
474
475    value += addend;
476    pcrel2 = (tcg_insn_unit *)value - src_rx;
477
478    switch (type) {
479    case R_390_PC16DBL:
480        if (pcrel2 == (int16_t)pcrel2) {
481            tcg_patch16(src_rw, pcrel2);
482            return true;
483        }
484        break;
485    case R_390_PC32DBL:
486        if (pcrel2 == (int32_t)pcrel2) {
487            tcg_patch32(src_rw, pcrel2);
488            return true;
489        }
490        break;
491    case R_390_20:
492        if (value == sextract64(value, 0, 20)) {
493            old = *(uint32_t *)src_rw & 0xf00000ff;
494            old |= ((value & 0xfff) << 16) | ((value & 0xff000) >> 4);
495            tcg_patch32(src_rw, old);
496            return true;
497        }
498        break;
499    default:
500        g_assert_not_reached();
501    }
502    return false;
503}
504
505static int is_const_p16(uint64_t val)
506{
507    for (int i = 0; i < 4; ++i) {
508        uint64_t mask = 0xffffull << (i * 16);
509        if ((val & ~mask) == 0) {
510            return i;
511        }
512    }
513    return -1;
514}
515
516static int is_const_p32(uint64_t val)
517{
518    if ((val & 0xffffffff00000000ull) == 0) {
519        return 0;
520    }
521    if ((val & 0x00000000ffffffffull) == 0) {
522        return 1;
523    }
524    return -1;
525}
526
527/*
528 * Accept bit patterns like these:
529 *  0....01....1
530 *  1....10....0
531 *  1..10..01..1
532 *  0..01..10..0
533 * Copied from gcc sources.
534 */
535static bool risbg_mask(uint64_t c)
536{
537    uint64_t lsb;
538    /* We don't change the number of transitions by inverting,
539       so make sure we start with the LSB zero.  */
540    if (c & 1) {
541        c = ~c;
542    }
543    /* Reject all zeros or all ones.  */
544    if (c == 0) {
545        return false;
546    }
547    /* Find the first transition.  */
548    lsb = c & -c;
549    /* Invert to look for a second transition.  */
550    c = ~c;
551    /* Erase the first transition.  */
552    c &= -lsb;
553    /* Find the second transition, if any.  */
554    lsb = c & -c;
555    /* Match if all the bits are 1's, or if c is zero.  */
556    return c == -lsb;
557}
558
559/* Test if a constant matches the constraint. */
560static bool tcg_target_const_match(int64_t val, int ct,
561                                   TCGType type, TCGCond cond, int vece)
562{
563    uint64_t uval = val;
564
565    if (ct & TCG_CT_CONST) {
566        return true;
567    }
568    if (type == TCG_TYPE_I32) {
569        uval = (uint32_t)val;
570        val = (int32_t)val;
571    }
572
573    if (ct & TCG_CT_CONST_CMP) {
574        if (is_tst_cond(cond)) {
575            if (is_const_p16(uval) >= 0) {
576                return true;  /* TMxx */
577            }
578            if (risbg_mask(uval)) {
579                return true;  /* RISBG */
580            }
581            return false;
582        }
583
584        if (type == TCG_TYPE_I32) {
585            return true;
586        }
587
588        switch (cond) {
589        case TCG_COND_EQ:
590        case TCG_COND_NE:
591            ct |= TCG_CT_CONST_S32 | TCG_CT_CONST_U32;  /* CGFI or CLGFI */
592            break;
593        case TCG_COND_LT:
594        case TCG_COND_GE:
595        case TCG_COND_LE:
596        case TCG_COND_GT:
597            ct |= TCG_CT_CONST_S32;  /* CGFI */
598            break;
599        case TCG_COND_LTU:
600        case TCG_COND_GEU:
601        case TCG_COND_LEU:
602        case TCG_COND_GTU:
603            ct |= TCG_CT_CONST_U32;  /* CLGFI */
604            break;
605        case TCG_COND_TSTNE:
606        case TCG_COND_TSTEQ:
607            /* checked above, fallthru */
608        default:
609            g_assert_not_reached();
610        }
611    }
612
613    if ((ct & TCG_CT_CONST_S32) && val == (int32_t)val) {
614        return true;
615    }
616    if ((ct & TCG_CT_CONST_U32) && val == (uint32_t)val) {
617        return true;
618    }
619    if ((ct & TCG_CT_CONST_S16) && val == (int16_t)val) {
620        return true;
621    }
622    if ((ct & TCG_CT_CONST_ZERO) && val == 0) {
623        return true;
624    }
625    if ((ct & TCG_CT_CONST_M1) && val == -1) {
626        return true;
627    }
628
629    if (ct & TCG_CT_CONST_INV) {
630        val = ~val;
631    }
632    if ((ct & TCG_CT_CONST_P32) && is_const_p32(val) >= 0) {
633        return true;
634    }
635    if ((ct & TCG_CT_CONST_INVRISBG) && risbg_mask(~val)) {
636        return true;
637    }
638    return false;
639}
640
641/* Emit instructions according to the given instruction format.  */
642
643static void tcg_out_insn_RR(TCGContext *s, S390Opcode op, TCGReg r1, TCGReg r2)
644{
645    tcg_out16(s, (op << 8) | (r1 << 4) | r2);
646}
647
648static void tcg_out_insn_RRE(TCGContext *s, S390Opcode op,
649                             TCGReg r1, TCGReg r2)
650{
651    tcg_out32(s, (op << 16) | (r1 << 4) | r2);
652}
653
654/* RRF-a without the m4 field */
655static void tcg_out_insn_RRFa(TCGContext *s, S390Opcode op,
656                              TCGReg r1, TCGReg r2, TCGReg r3)
657{
658    tcg_out32(s, (op << 16) | (r3 << 12) | (r1 << 4) | r2);
659}
660
661/* RRF-a with the m4 field */
662static void tcg_out_insn_RRFam(TCGContext *s, S390Opcode op,
663                               TCGReg r1, TCGReg r2, TCGReg r3, int m4)
664{
665    tcg_out32(s, (op << 16) | (r3 << 12) | (m4 << 8) | (r1 << 4) | r2);
666}
667
668static void tcg_out_insn_RRFc(TCGContext *s, S390Opcode op,
669                              TCGReg r1, TCGReg r2, int m3)
670{
671    tcg_out32(s, (op << 16) | (m3 << 12) | (r1 << 4) | r2);
672}
673
674static void tcg_out_insn_RI(TCGContext *s, S390Opcode op, TCGReg r1, int i2)
675{
676    tcg_out32(s, (op << 16) | (r1 << 20) | (i2 & 0xffff));
677}
678
679static void tcg_out_insn_RIEg(TCGContext *s, S390Opcode op, TCGReg r1,
680                             int i2, int m3)
681{
682    tcg_out16(s, (op & 0xff00) | (r1 << 4) | m3);
683    tcg_out32(s, (i2 << 16) | (op & 0xff));
684}
685
686static void tcg_out_insn_RIL(TCGContext *s, S390Opcode op, TCGReg r1, int i2)
687{
688    tcg_out16(s, op | (r1 << 4));
689    tcg_out32(s, i2);
690}
691
692static void tcg_out_insn_RS(TCGContext *s, S390Opcode op, TCGReg r1,
693                            TCGReg b2, TCGReg r3, int disp)
694{
695    tcg_out32(s, (op << 24) | (r1 << 20) | (r3 << 16) | (b2 << 12)
696              | (disp & 0xfff));
697}
698
699static void tcg_out_insn_RSY(TCGContext *s, S390Opcode op, TCGReg r1,
700                             TCGReg b2, TCGReg r3, int disp)
701{
702    tcg_out16(s, (op & 0xff00) | (r1 << 4) | r3);
703    tcg_out32(s, (op & 0xff) | (b2 << 28)
704              | ((disp & 0xfff) << 16) | ((disp & 0xff000) >> 4));
705}
706
707#define tcg_out_insn_RX   tcg_out_insn_RS
708#define tcg_out_insn_RXY  tcg_out_insn_RSY
709
710static int RXB(TCGReg v1, TCGReg v2, TCGReg v3, TCGReg v4)
711{
712    /*
713     * Shift bit 4 of each regno to its corresponding bit of RXB.
714     * RXB itself begins at bit 8 of the instruction so 8 - 4 = 4
715     * is the left-shift of the 4th operand.
716     */
717    return ((v1 & 0x10) << (4 + 3))
718         | ((v2 & 0x10) << (4 + 2))
719         | ((v3 & 0x10) << (4 + 1))
720         | ((v4 & 0x10) << (4 + 0));
721}
722
723static void tcg_out_insn_VRIa(TCGContext *s, S390Opcode op,
724                              TCGReg v1, uint16_t i2, int m3)
725{
726    tcg_debug_assert(is_vector_reg(v1));
727    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4));
728    tcg_out16(s, i2);
729    tcg_out16(s, (op & 0x00ff) | RXB(v1, 0, 0, 0) | (m3 << 12));
730}
731
732static void tcg_out_insn_VRIb(TCGContext *s, S390Opcode op,
733                              TCGReg v1, uint8_t i2, uint8_t i3, int m4)
734{
735    tcg_debug_assert(is_vector_reg(v1));
736    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4));
737    tcg_out16(s, (i2 << 8) | (i3 & 0xff));
738    tcg_out16(s, (op & 0x00ff) | RXB(v1, 0, 0, 0) | (m4 << 12));
739}
740
741static void tcg_out_insn_VRIc(TCGContext *s, S390Opcode op,
742                              TCGReg v1, uint16_t i2, TCGReg v3, int m4)
743{
744    tcg_debug_assert(is_vector_reg(v1));
745    tcg_debug_assert(is_vector_reg(v3));
746    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | (v3 & 0xf));
747    tcg_out16(s, i2);
748    tcg_out16(s, (op & 0x00ff) | RXB(v1, v3, 0, 0) | (m4 << 12));
749}
750
751static void tcg_out_insn_VRRa(TCGContext *s, S390Opcode op,
752                              TCGReg v1, TCGReg v2, int m3)
753{
754    tcg_debug_assert(is_vector_reg(v1));
755    tcg_debug_assert(is_vector_reg(v2));
756    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | (v2 & 0xf));
757    tcg_out32(s, (op & 0x00ff) | RXB(v1, v2, 0, 0) | (m3 << 12));
758}
759
760static void tcg_out_insn_VRRc(TCGContext *s, S390Opcode op,
761                              TCGReg v1, TCGReg v2, TCGReg v3, int m4)
762{
763    tcg_debug_assert(is_vector_reg(v1));
764    tcg_debug_assert(is_vector_reg(v2));
765    tcg_debug_assert(is_vector_reg(v3));
766    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | (v2 & 0xf));
767    tcg_out16(s, v3 << 12);
768    tcg_out16(s, (op & 0x00ff) | RXB(v1, v2, v3, 0) | (m4 << 12));
769}
770
771static void tcg_out_insn_VRRe(TCGContext *s, S390Opcode op,
772                              TCGReg v1, TCGReg v2, TCGReg v3, TCGReg v4)
773{
774    tcg_debug_assert(is_vector_reg(v1));
775    tcg_debug_assert(is_vector_reg(v2));
776    tcg_debug_assert(is_vector_reg(v3));
777    tcg_debug_assert(is_vector_reg(v4));
778    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | (v2 & 0xf));
779    tcg_out16(s, v3 << 12);
780    tcg_out16(s, (op & 0x00ff) | RXB(v1, v2, v3, v4) | (v4 << 12));
781}
782
783static void tcg_out_insn_VRRf(TCGContext *s, S390Opcode op,
784                              TCGReg v1, TCGReg r2, TCGReg r3)
785{
786    tcg_debug_assert(is_vector_reg(v1));
787    tcg_debug_assert(is_general_reg(r2));
788    tcg_debug_assert(is_general_reg(r3));
789    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | r2);
790    tcg_out16(s, r3 << 12);
791    tcg_out16(s, (op & 0x00ff) | RXB(v1, 0, 0, 0));
792}
793
794static void tcg_out_insn_VRSa(TCGContext *s, S390Opcode op, TCGReg v1,
795                              intptr_t d2, TCGReg b2, TCGReg v3, int m4)
796{
797    tcg_debug_assert(is_vector_reg(v1));
798    tcg_debug_assert(d2 >= 0 && d2 <= 0xfff);
799    tcg_debug_assert(is_general_reg(b2));
800    tcg_debug_assert(is_vector_reg(v3));
801    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | (v3 & 0xf));
802    tcg_out16(s, b2 << 12 | d2);
803    tcg_out16(s, (op & 0x00ff) | RXB(v1, v3, 0, 0) | (m4 << 12));
804}
805
806static void tcg_out_insn_VRSb(TCGContext *s, S390Opcode op, TCGReg v1,
807                              intptr_t d2, TCGReg b2, TCGReg r3, int m4)
808{
809    tcg_debug_assert(is_vector_reg(v1));
810    tcg_debug_assert(d2 >= 0 && d2 <= 0xfff);
811    tcg_debug_assert(is_general_reg(b2));
812    tcg_debug_assert(is_general_reg(r3));
813    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | r3);
814    tcg_out16(s, b2 << 12 | d2);
815    tcg_out16(s, (op & 0x00ff) | RXB(v1, 0, 0, 0) | (m4 << 12));
816}
817
818static void tcg_out_insn_VRSc(TCGContext *s, S390Opcode op, TCGReg r1,
819                              intptr_t d2, TCGReg b2, TCGReg v3, int m4)
820{
821    tcg_debug_assert(is_general_reg(r1));
822    tcg_debug_assert(d2 >= 0 && d2 <= 0xfff);
823    tcg_debug_assert(is_general_reg(b2));
824    tcg_debug_assert(is_vector_reg(v3));
825    tcg_out16(s, (op & 0xff00) | (r1 << 4) | (v3 & 0xf));
826    tcg_out16(s, b2 << 12 | d2);
827    tcg_out16(s, (op & 0x00ff) | RXB(0, v3, 0, 0) | (m4 << 12));
828}
829
830static void tcg_out_insn_VRX(TCGContext *s, S390Opcode op, TCGReg v1,
831                             TCGReg b2, TCGReg x2, intptr_t d2, int m3)
832{
833    tcg_debug_assert(is_vector_reg(v1));
834    tcg_debug_assert(d2 >= 0 && d2 <= 0xfff);
835    tcg_debug_assert(is_general_reg(x2));
836    tcg_debug_assert(is_general_reg(b2));
837    tcg_out16(s, (op & 0xff00) | ((v1 & 0xf) << 4) | x2);
838    tcg_out16(s, (b2 << 12) | d2);
839    tcg_out16(s, (op & 0x00ff) | RXB(v1, 0, 0, 0) | (m3 << 12));
840}
841
842/* Emit an opcode with "type-checking" of the format.  */
843#define tcg_out_insn(S, FMT, OP, ...) \
844    glue(tcg_out_insn_,FMT)(S, glue(glue(FMT,_),OP), ## __VA_ARGS__)
845
846
847/* emit 64-bit shifts */
848static void tcg_out_sh64(TCGContext* s, S390Opcode op, TCGReg dest,
849                         TCGReg src, TCGReg sh_reg, int sh_imm)
850{
851    tcg_out_insn_RSY(s, op, dest, sh_reg, src, sh_imm);
852}
853
854/* emit 32-bit shifts */
855static void tcg_out_sh32(TCGContext* s, S390Opcode op, TCGReg dest,
856                         TCGReg sh_reg, int sh_imm)
857{
858    tcg_out_insn_RS(s, op, dest, sh_reg, 0, sh_imm);
859}
860
861static bool tcg_out_mov(TCGContext *s, TCGType type, TCGReg dst, TCGReg src)
862{
863    if (src == dst) {
864        return true;
865    }
866    switch (type) {
867    case TCG_TYPE_I32:
868        if (likely(is_general_reg(dst) && is_general_reg(src))) {
869            tcg_out_insn(s, RR, LR, dst, src);
870            break;
871        }
872        /* fallthru */
873
874    case TCG_TYPE_I64:
875        if (likely(is_general_reg(dst))) {
876            if (likely(is_general_reg(src))) {
877                tcg_out_insn(s, RRE, LGR, dst, src);
878            } else {
879                tcg_out_insn(s, VRSc, VLGV, dst, 0, 0, src, 3);
880            }
881            break;
882        } else if (is_general_reg(src)) {
883            tcg_out_insn(s, VRSb, VLVG, dst, 0, 0, src, 3);
884            break;
885        }
886        /* fallthru */
887
888    case TCG_TYPE_V64:
889    case TCG_TYPE_V128:
890        tcg_out_insn(s, VRRa, VLR, dst, src, 0);
891        break;
892
893    default:
894        g_assert_not_reached();
895    }
896    return true;
897}
898
899static const S390Opcode li_insns[4] = {
900    RI_LLILL, RI_LLILH, RI_LLIHL, RI_LLIHH
901};
902static const S390Opcode oi_insns[4] = {
903    RI_OILL, RI_OILH, RI_OIHL, RI_OIHH
904};
905static const S390Opcode lif_insns[2] = {
906    RIL_LLILF, RIL_LLIHF,
907};
908static const S390Opcode tm_insns[4] = {
909    RI_TMLL, RI_TMLH, RI_TMHL, RI_TMHH
910};
911
912/* load a register with an immediate value */
913static void tcg_out_movi(TCGContext *s, TCGType type,
914                         TCGReg ret, tcg_target_long sval)
915{
916    tcg_target_ulong uval = sval;
917    ptrdiff_t pc_off;
918    int i;
919
920    if (type == TCG_TYPE_I32) {
921        uval = (uint32_t)sval;
922        sval = (int32_t)sval;
923    }
924
925    /* Try all 32-bit insns that can load it in one go.  */
926    if (sval >= -0x8000 && sval < 0x8000) {
927        tcg_out_insn(s, RI, LGHI, ret, sval);
928        return;
929    }
930
931    i = is_const_p16(uval);
932    if (i >= 0) {
933        tcg_out_insn_RI(s, li_insns[i], ret, uval >> (i * 16));
934        return;
935    }
936
937    /* Try all 48-bit insns that can load it in one go.  */
938    if (sval == (int32_t)sval) {
939        tcg_out_insn(s, RIL, LGFI, ret, sval);
940        return;
941    }
942
943    i = is_const_p32(uval);
944    if (i >= 0) {
945        tcg_out_insn_RIL(s, lif_insns[i], ret, uval >> (i * 32));
946        return;
947    }
948
949    /* Try for PC-relative address load.  For odd addresses, add one. */
950    pc_off = tcg_pcrel_diff(s, (void *)sval) >> 1;
951    if (pc_off == (int32_t)pc_off) {
952        tcg_out_insn(s, RIL, LARL, ret, pc_off);
953        if (sval & 1) {
954            tcg_out_insn(s, RI, AGHI, ret, 1);
955        }
956        return;
957    }
958
959    /* Otherwise, load it by parts. */
960    i = is_const_p16((uint32_t)uval);
961    if (i >= 0) {
962        tcg_out_insn_RI(s, li_insns[i], ret, uval >> (i * 16));
963    } else {
964        tcg_out_insn(s, RIL, LLILF, ret, uval);
965    }
966    uval >>= 32;
967    i = is_const_p16(uval);
968    if (i >= 0) {
969        tcg_out_insn_RI(s, oi_insns[i + 2], ret, uval >> (i * 16));
970    } else {
971        tcg_out_insn(s, RIL, OIHF, ret, uval);
972    }
973}
974
975/* Emit a load/store type instruction.  Inputs are:
976   DATA:     The register to be loaded or stored.
977   BASE+OFS: The effective address.
978   OPC_RX:   If the operation has an RX format opcode (e.g. STC), otherwise 0.
979   OPC_RXY:  The RXY format opcode for the operation (e.g. STCY).  */
980
981static void tcg_out_mem(TCGContext *s, S390Opcode opc_rx, S390Opcode opc_rxy,
982                        TCGReg data, TCGReg base, TCGReg index,
983                        tcg_target_long ofs)
984{
985    if (ofs < -0x80000 || ofs >= 0x80000) {
986        /* Combine the low 20 bits of the offset with the actual load insn;
987           the high 44 bits must come from an immediate load.  */
988        tcg_target_long low = ((ofs & 0xfffff) ^ 0x80000) - 0x80000;
989        tcg_out_movi(s, TCG_TYPE_PTR, TCG_TMP0, ofs - low);
990        ofs = low;
991
992        /* If we were already given an index register, add it in.  */
993        if (index != TCG_REG_NONE) {
994            tcg_out_insn(s, RRE, AGR, TCG_TMP0, index);
995        }
996        index = TCG_TMP0;
997    }
998
999    if (opc_rx && ofs >= 0 && ofs < 0x1000) {
1000        tcg_out_insn_RX(s, opc_rx, data, base, index, ofs);
1001    } else {
1002        tcg_out_insn_RXY(s, opc_rxy, data, base, index, ofs);
1003    }
1004}
1005
1006static void tcg_out_vrx_mem(TCGContext *s, S390Opcode opc_vrx,
1007                            TCGReg data, TCGReg base, TCGReg index,
1008                            tcg_target_long ofs, int m3)
1009{
1010    if (ofs < 0 || ofs >= 0x1000) {
1011        if (ofs >= -0x80000 && ofs < 0x80000) {
1012            tcg_out_insn(s, RXY, LAY, TCG_TMP0, base, index, ofs);
1013            base = TCG_TMP0;
1014            index = TCG_REG_NONE;
1015            ofs = 0;
1016        } else {
1017            tcg_out_movi(s, TCG_TYPE_PTR, TCG_TMP0, ofs);
1018            if (index != TCG_REG_NONE) {
1019                tcg_out_insn(s, RRE, AGR, TCG_TMP0, index);
1020            }
1021            index = TCG_TMP0;
1022            ofs = 0;
1023        }
1024    }
1025    tcg_out_insn_VRX(s, opc_vrx, data, base, index, ofs, m3);
1026}
1027
1028/* load data without address translation or endianness conversion */
1029static void tcg_out_ld(TCGContext *s, TCGType type, TCGReg data,
1030                       TCGReg base, intptr_t ofs)
1031{
1032    switch (type) {
1033    case TCG_TYPE_I32:
1034        if (likely(is_general_reg(data))) {
1035            tcg_out_mem(s, RX_L, RXY_LY, data, base, TCG_REG_NONE, ofs);
1036            break;
1037        }
1038        tcg_out_vrx_mem(s, VRX_VLLEZ, data, base, TCG_REG_NONE, ofs, MO_32);
1039        break;
1040
1041    case TCG_TYPE_I64:
1042        if (likely(is_general_reg(data))) {
1043            tcg_out_mem(s, 0, RXY_LG, data, base, TCG_REG_NONE, ofs);
1044            break;
1045        }
1046        /* fallthru */
1047
1048    case TCG_TYPE_V64:
1049        tcg_out_vrx_mem(s, VRX_VLLEZ, data, base, TCG_REG_NONE, ofs, MO_64);
1050        break;
1051
1052    case TCG_TYPE_V128:
1053        /* Hint quadword aligned.  */
1054        tcg_out_vrx_mem(s, VRX_VL, data, base, TCG_REG_NONE, ofs, 4);
1055        break;
1056
1057    default:
1058        g_assert_not_reached();
1059    }
1060}
1061
1062static void tcg_out_st(TCGContext *s, TCGType type, TCGReg data,
1063                       TCGReg base, intptr_t ofs)
1064{
1065    switch (type) {
1066    case TCG_TYPE_I32:
1067        if (likely(is_general_reg(data))) {
1068            tcg_out_mem(s, RX_ST, RXY_STY, data, base, TCG_REG_NONE, ofs);
1069        } else {
1070            tcg_out_vrx_mem(s, VRX_VSTEF, data, base, TCG_REG_NONE, ofs, 1);
1071        }
1072        break;
1073
1074    case TCG_TYPE_I64:
1075        if (likely(is_general_reg(data))) {
1076            tcg_out_mem(s, 0, RXY_STG, data, base, TCG_REG_NONE, ofs);
1077            break;
1078        }
1079        /* fallthru */
1080
1081    case TCG_TYPE_V64:
1082        tcg_out_vrx_mem(s, VRX_VSTEG, data, base, TCG_REG_NONE, ofs, 0);
1083        break;
1084
1085    case TCG_TYPE_V128:
1086        /* Hint quadword aligned.  */
1087        tcg_out_vrx_mem(s, VRX_VST, data, base, TCG_REG_NONE, ofs, 4);
1088        break;
1089
1090    default:
1091        g_assert_not_reached();
1092    }
1093}
1094
1095static inline bool tcg_out_sti(TCGContext *s, TCGType type, TCGArg val,
1096                               TCGReg base, intptr_t ofs)
1097{
1098    return false;
1099}
1100
1101static bool tcg_out_xchg(TCGContext *s, TCGType type, TCGReg r1, TCGReg r2)
1102{
1103    return false;
1104}
1105
1106static void tcg_out_addi_ptr(TCGContext *s, TCGReg rd, TCGReg rs,
1107                             tcg_target_long imm)
1108{
1109    /* This function is only used for passing structs by reference. */
1110    tcg_out_mem(s, RX_LA, RXY_LAY, rd, rs, TCG_REG_NONE, imm);
1111}
1112
1113static inline void tcg_out_risbg(TCGContext *s, TCGReg dest, TCGReg src,
1114                                 int msb, int lsb, int ofs, int z)
1115{
1116    /* Format RIE-f */
1117    tcg_out16(s, (RIEf_RISBG & 0xff00) | (dest << 4) | src);
1118    tcg_out16(s, (msb << 8) | (z << 7) | lsb);
1119    tcg_out16(s, (ofs << 8) | (RIEf_RISBG & 0xff));
1120}
1121
1122static void tcg_out_ext8s(TCGContext *s, TCGType type, TCGReg dest, TCGReg src)
1123{
1124    tcg_out_insn(s, RRE, LGBR, dest, src);
1125}
1126
1127static void tcg_out_ext8u(TCGContext *s, TCGReg dest, TCGReg src)
1128{
1129    tcg_out_insn(s, RRE, LLGCR, dest, src);
1130}
1131
1132static void tcg_out_ext16s(TCGContext *s, TCGType type, TCGReg dest, TCGReg src)
1133{
1134    tcg_out_insn(s, RRE, LGHR, dest, src);
1135}
1136
1137static void tcg_out_ext16u(TCGContext *s, TCGReg dest, TCGReg src)
1138{
1139    tcg_out_insn(s, RRE, LLGHR, dest, src);
1140}
1141
1142static void tcg_out_ext32s(TCGContext *s, TCGReg dest, TCGReg src)
1143{
1144    tcg_out_insn(s, RRE, LGFR, dest, src);
1145}
1146
1147static void tcg_out_ext32u(TCGContext *s, TCGReg dest, TCGReg src)
1148{
1149    tcg_out_insn(s, RRE, LLGFR, dest, src);
1150}
1151
1152static void tcg_out_exts_i32_i64(TCGContext *s, TCGReg dest, TCGReg src)
1153{
1154    tcg_out_ext32s(s, dest, src);
1155}
1156
1157static void tcg_out_extu_i32_i64(TCGContext *s, TCGReg dest, TCGReg src)
1158{
1159    tcg_out_ext32u(s, dest, src);
1160}
1161
1162static void tcg_out_extrl_i64_i32(TCGContext *s, TCGReg dest, TCGReg src)
1163{
1164    tcg_out_mov(s, TCG_TYPE_I32, dest, src);
1165}
1166
1167static void tgen_andi_risbg(TCGContext *s, TCGReg out, TCGReg in, uint64_t val)
1168{
1169    int msb, lsb;
1170    if ((val & 0x8000000000000001ull) == 0x8000000000000001ull) {
1171        /* Achieve wraparound by swapping msb and lsb.  */
1172        msb = 64 - ctz64(~val);
1173        lsb = clz64(~val) - 1;
1174    } else {
1175        msb = clz64(val);
1176        lsb = 63 - ctz64(val);
1177    }
1178    tcg_out_risbg(s, out, in, msb, lsb, 0, 1);
1179}
1180
1181static void tgen_andi(TCGContext *s, TCGType type, TCGReg dest, uint64_t val)
1182{
1183    static const S390Opcode ni_insns[4] = {
1184        RI_NILL, RI_NILH, RI_NIHL, RI_NIHH
1185    };
1186    static const S390Opcode nif_insns[2] = {
1187        RIL_NILF, RIL_NIHF
1188    };
1189    uint64_t valid = (type == TCG_TYPE_I32 ? 0xffffffffull : -1ull);
1190    int i;
1191
1192    /* Look for the zero-extensions.  */
1193    if ((val & valid) == 0xffffffff) {
1194        tcg_out_ext32u(s, dest, dest);
1195        return;
1196    }
1197    if ((val & valid) == 0xff) {
1198        tcg_out_ext8u(s, dest, dest);
1199        return;
1200    }
1201    if ((val & valid) == 0xffff) {
1202        tcg_out_ext16u(s, dest, dest);
1203        return;
1204    }
1205
1206    i = is_const_p16(~val & valid);
1207    if (i >= 0) {
1208        tcg_out_insn_RI(s, ni_insns[i], dest, val >> (i * 16));
1209        return;
1210    }
1211
1212    i = is_const_p32(~val & valid);
1213    tcg_debug_assert(i == 0 || type != TCG_TYPE_I32);
1214    if (i >= 0) {
1215        tcg_out_insn_RIL(s, nif_insns[i], dest, val >> (i * 32));
1216        return;
1217    }
1218
1219    if (risbg_mask(val)) {
1220        tgen_andi_risbg(s, dest, dest, val);
1221        return;
1222    }
1223
1224    g_assert_not_reached();
1225}
1226
1227static void tgen_ori(TCGContext *s, TCGReg dest, uint64_t val)
1228{
1229    static const S390Opcode oif_insns[2] = {
1230        RIL_OILF, RIL_OIHF
1231    };
1232
1233    int i;
1234
1235    i = is_const_p16(val);
1236    if (i >= 0) {
1237        tcg_out_insn_RI(s, oi_insns[i], dest, val >> (i * 16));
1238        return;
1239    }
1240
1241    i = is_const_p32(val);
1242    if (i >= 0) {
1243        tcg_out_insn_RIL(s, oif_insns[i], dest, val >> (i * 32));
1244        return;
1245    }
1246
1247    g_assert_not_reached();
1248}
1249
1250static void tgen_xori(TCGContext *s, TCGReg dest, uint64_t val)
1251{
1252    switch (is_const_p32(val)) {
1253    case 0:
1254        tcg_out_insn(s, RIL, XILF, dest, val);
1255        break;
1256    case 1:
1257        tcg_out_insn(s, RIL, XIHF, dest, val >> 32);
1258        break;
1259    default:
1260        g_assert_not_reached();
1261    }
1262}
1263
1264static int tgen_cmp2(TCGContext *s, TCGType type, TCGCond c, TCGReg r1,
1265                     TCGArg c2, bool c2const, bool need_carry, int *inv_cc)
1266{
1267    bool is_unsigned = is_unsigned_cond(c);
1268    TCGCond inv_c = tcg_invert_cond(c);
1269    S390Opcode op;
1270
1271    if (is_tst_cond(c)) {
1272        tcg_debug_assert(!need_carry);
1273
1274        if (!c2const) {
1275            if (type == TCG_TYPE_I32) {
1276                tcg_out_insn(s, RRFa, NRK, TCG_REG_R0, r1, c2);
1277            } else {
1278                tcg_out_insn(s, RRFa, NGRK, TCG_REG_R0, r1, c2);
1279            }
1280            goto exit;
1281        }
1282
1283        if (type == TCG_TYPE_I32) {
1284            c2 = (uint32_t)c2;
1285        }
1286
1287        int i = is_const_p16(c2);
1288        if (i >= 0) {
1289            tcg_out_insn_RI(s, tm_insns[i], r1, c2 >> (i * 16));
1290            *inv_cc = c == TCG_COND_TSTEQ ? S390_TM_NE : S390_TM_EQ;
1291            return *inv_cc ^ 15;
1292        }
1293
1294        if (risbg_mask(c2)) {
1295            tgen_andi_risbg(s, TCG_REG_R0, r1, c2);
1296            goto exit;
1297        }
1298        g_assert_not_reached();
1299    }
1300
1301    if (c2const) {
1302        if (c2 == 0) {
1303            if (!(is_unsigned && need_carry)) {
1304                if (type == TCG_TYPE_I32) {
1305                    tcg_out_insn(s, RR, LTR, r1, r1);
1306                } else {
1307                    tcg_out_insn(s, RRE, LTGR, r1, r1);
1308                }
1309                *inv_cc = tcg_cond_to_ltr_cond[inv_c];
1310                return tcg_cond_to_ltr_cond[c];
1311            }
1312        }
1313
1314        if (!is_unsigned && c2 == (int16_t)c2) {
1315            op = (type == TCG_TYPE_I32 ? RI_CHI : RI_CGHI);
1316            tcg_out_insn_RI(s, op, r1, c2);
1317            goto exit;
1318        }
1319
1320        if (type == TCG_TYPE_I32) {
1321            op = (is_unsigned ? RIL_CLFI : RIL_CFI);
1322            tcg_out_insn_RIL(s, op, r1, c2);
1323            goto exit;
1324        }
1325
1326        /* Should match TCG_CT_CONST_CMP. */
1327        switch (c) {
1328        case TCG_COND_LT:
1329        case TCG_COND_GE:
1330        case TCG_COND_LE:
1331        case TCG_COND_GT:
1332            tcg_debug_assert(c2 == (int32_t)c2);
1333            op = RIL_CGFI;
1334            break;
1335        case TCG_COND_EQ:
1336        case TCG_COND_NE:
1337            if (c2 == (int32_t)c2) {
1338                op = RIL_CGFI;
1339                break;
1340            }
1341            /* fall through */
1342        case TCG_COND_LTU:
1343        case TCG_COND_GEU:
1344        case TCG_COND_LEU:
1345        case TCG_COND_GTU:
1346            tcg_debug_assert(c2 == (uint32_t)c2);
1347            op = RIL_CLGFI;
1348            break;
1349        default:
1350            g_assert_not_reached();
1351        }
1352        tcg_out_insn_RIL(s, op, r1, c2);
1353    } else if (type == TCG_TYPE_I32) {
1354        op = (is_unsigned ? RR_CLR : RR_CR);
1355        tcg_out_insn_RR(s, op, r1, c2);
1356    } else {
1357        op = (is_unsigned ? RRE_CLGR : RRE_CGR);
1358        tcg_out_insn_RRE(s, op, r1, c2);
1359    }
1360
1361 exit:
1362    *inv_cc = tcg_cond_to_s390_cond[inv_c];
1363    return tcg_cond_to_s390_cond[c];
1364}
1365
1366static int tgen_cmp(TCGContext *s, TCGType type, TCGCond c, TCGReg r1,
1367                    TCGArg c2, bool c2const, bool need_carry)
1368{
1369    int inv_cc;
1370    return tgen_cmp2(s, type, c, r1, c2, c2const, need_carry, &inv_cc);
1371}
1372
1373static void tgen_setcond(TCGContext *s, TCGType type, TCGCond cond,
1374                         TCGReg dest, TCGReg c1, TCGArg c2,
1375                         bool c2const, bool neg)
1376{
1377    int cc;
1378
1379    /* With LOC2, we can always emit the minimum 3 insns.  */
1380    if (HAVE_FACILITY(LOAD_ON_COND2)) {
1381        /* Emit: d = 0, d = (cc ? 1 : d).  */
1382        cc = tgen_cmp(s, type, cond, c1, c2, c2const, false);
1383        tcg_out_movi(s, TCG_TYPE_I64, dest, 0);
1384        tcg_out_insn(s, RIEg, LOCGHI, dest, neg ? -1 : 1, cc);
1385        return;
1386    }
1387
1388    switch (cond) {
1389    case TCG_COND_GEU:
1390    case TCG_COND_LTU:
1391    case TCG_COND_LT:
1392    case TCG_COND_GE:
1393        /* Swap operands so that we can use LEU/GTU/GT/LE.  */
1394        if (!c2const) {
1395            TCGReg t = c1;
1396            c1 = c2;
1397            c2 = t;
1398            cond = tcg_swap_cond(cond);
1399        }
1400        break;
1401    default:
1402        break;
1403    }
1404
1405    switch (cond) {
1406    case TCG_COND_NE:
1407        /* X != 0 is X > 0.  */
1408        if (c2const && c2 == 0) {
1409            cond = TCG_COND_GTU;
1410        } else {
1411            break;
1412        }
1413        /* fallthru */
1414
1415    case TCG_COND_GTU:
1416    case TCG_COND_GT:
1417        /*
1418         * The result of a compare has CC=2 for GT and CC=3 unused.
1419         * ADD LOGICAL WITH CARRY considers (CC & 2) the carry bit.
1420         */
1421        tgen_cmp(s, type, cond, c1, c2, c2const, true);
1422        tcg_out_movi(s, type, dest, 0);
1423        tcg_out_insn(s, RRE, ALCGR, dest, dest);
1424        if (neg) {
1425            if (type == TCG_TYPE_I32) {
1426                tcg_out_insn(s, RR, LCR, dest, dest);
1427            } else {
1428                tcg_out_insn(s, RRE, LCGR, dest, dest);
1429            }
1430        }
1431        return;
1432
1433    case TCG_COND_EQ:
1434        /* X == 0 is X <= 0.  */
1435        if (c2const && c2 == 0) {
1436            cond = TCG_COND_LEU;
1437        } else {
1438            break;
1439        }
1440        /* fallthru */
1441
1442    case TCG_COND_LEU:
1443    case TCG_COND_LE:
1444        /*
1445         * As above, but we're looking for borrow, or !carry.
1446         * The second insn computes d - d - borrow, or -1 for true
1447         * and 0 for false.  So we must mask to 1 bit afterward.
1448         */
1449        tgen_cmp(s, type, cond, c1, c2, c2const, true);
1450        tcg_out_insn(s, RRE, SLBGR, dest, dest);
1451        if (!neg) {
1452            tgen_andi(s, type, dest, 1);
1453        }
1454        return;
1455
1456    default:
1457        g_assert_not_reached();
1458    }
1459
1460    cc = tgen_cmp(s, type, cond, c1, c2, c2const, false);
1461    /* Emit: d = 0, t = 1, d = (cc ? t : d).  */
1462    tcg_out_movi(s, TCG_TYPE_I64, dest, 0);
1463    tcg_out_movi(s, TCG_TYPE_I64, TCG_TMP0, neg ? -1 : 1);
1464    tcg_out_insn(s, RRFc, LOCGR, dest, TCG_TMP0, cc);
1465}
1466
1467static void tgen_movcond_int(TCGContext *s, TCGType type, TCGReg dest,
1468                             TCGArg v3, int v3const, TCGReg v4,
1469                             int cc, int inv_cc)
1470{
1471    TCGReg src;
1472
1473    if (v3const) {
1474        if (dest == v4) {
1475            if (HAVE_FACILITY(LOAD_ON_COND2)) {
1476                /* Emit: if (cc) dest = v3. */
1477                tcg_out_insn(s, RIEg, LOCGHI, dest, v3, cc);
1478                return;
1479            }
1480            tcg_out_insn(s, RI, LGHI, TCG_TMP0, v3);
1481            src = TCG_TMP0;
1482        } else {
1483            /* LGR+LOCGHI is larger than LGHI+LOCGR. */
1484            tcg_out_insn(s, RI, LGHI, dest, v3);
1485            cc = inv_cc;
1486            src = v4;
1487        }
1488    } else {
1489        if (HAVE_FACILITY(MISC_INSN_EXT3)) {
1490            /* Emit: dest = cc ? v3 : v4. */
1491            tcg_out_insn(s, RRFam, SELGR, dest, v3, v4, cc);
1492            return;
1493        }
1494        if (dest == v4) {
1495            src = v3;
1496        } else {
1497            tcg_out_mov(s, type, dest, v3);
1498            cc = inv_cc;
1499            src = v4;
1500        }
1501    }
1502
1503    /* Emit: if (cc) dest = src. */
1504    tcg_out_insn(s, RRFc, LOCGR, dest, src, cc);
1505}
1506
1507static void tgen_movcond(TCGContext *s, TCGType type, TCGCond c, TCGReg dest,
1508                         TCGReg c1, TCGArg c2, int c2const,
1509                         TCGArg v3, int v3const, TCGReg v4)
1510{
1511    int cc, inv_cc;
1512
1513    cc = tgen_cmp2(s, type, c, c1, c2, c2const, false, &inv_cc);
1514    tgen_movcond_int(s, type, dest, v3, v3const, v4, cc, inv_cc);
1515}
1516
1517static void tgen_clz(TCGContext *s, TCGReg dest, TCGReg a1,
1518                     TCGArg a2, int a2const)
1519{
1520    /* Since this sets both R and R+1, we have no choice but to store the
1521       result into R0, allowing R1 == TCG_TMP0 to be clobbered as well.  */
1522    QEMU_BUILD_BUG_ON(TCG_TMP0 != TCG_REG_R1);
1523    tcg_out_insn(s, RRE, FLOGR, TCG_REG_R0, a1);
1524
1525    if (a2const && a2 == 64) {
1526        tcg_out_mov(s, TCG_TYPE_I64, dest, TCG_REG_R0);
1527        return;
1528    }
1529
1530    /*
1531     * Conditions from FLOGR are:
1532     *   2 -> one bit found
1533     *   8 -> no one bit found
1534     */
1535    tgen_movcond_int(s, TCG_TYPE_I64, dest, a2, a2const, TCG_REG_R0, 8, 2);
1536}
1537
1538static void tgen_ctpop(TCGContext *s, TCGType type, TCGReg dest, TCGReg src)
1539{
1540    /* With MIE3, and bit 0 of m4 set, we get the complete result. */
1541    if (HAVE_FACILITY(MISC_INSN_EXT3)) {
1542        if (type == TCG_TYPE_I32) {
1543            tcg_out_ext32u(s, dest, src);
1544            src = dest;
1545        }
1546        tcg_out_insn(s, RRFc, POPCNT, dest, src, 8);
1547        return;
1548    }
1549
1550    /* Without MIE3, each byte gets the count of bits for the byte. */
1551    tcg_out_insn(s, RRFc, POPCNT, dest, src, 0);
1552
1553    /* Multiply to sum each byte at the top of the word. */
1554    if (type == TCG_TYPE_I32) {
1555        tcg_out_insn(s, RIL, MSFI, dest, 0x01010101);
1556        tcg_out_sh32(s, RS_SRL, dest, TCG_REG_NONE, 24);
1557    } else {
1558        tcg_out_movi(s, TCG_TYPE_I64, TCG_TMP0, 0x0101010101010101ull);
1559        tcg_out_insn(s, RRE, MSGR, dest, TCG_TMP0);
1560        tcg_out_sh64(s, RSY_SRLG, dest, dest, TCG_REG_NONE, 56);
1561    }
1562}
1563
1564static void tgen_deposit(TCGContext *s, TCGReg dest, TCGReg src,
1565                         int ofs, int len, int z)
1566{
1567    int lsb = (63 - ofs);
1568    int msb = lsb - (len - 1);
1569    tcg_out_risbg(s, dest, src, msb, lsb, ofs, z);
1570}
1571
1572static void tgen_extract(TCGContext *s, TCGReg dest, TCGReg src,
1573                         int ofs, int len)
1574{
1575    if (ofs == 0) {
1576        switch (len) {
1577        case 8:
1578            tcg_out_ext8u(s, dest, src);
1579            return;
1580        case 16:
1581            tcg_out_ext16u(s, dest, src);
1582            return;
1583        case 32:
1584            tcg_out_ext32u(s, dest, src);
1585            return;
1586        }
1587    }
1588    tcg_out_risbg(s, dest, src, 64 - len, 63, 64 - ofs, 1);
1589}
1590
1591static void tgen_sextract(TCGContext *s, TCGReg dest, TCGReg src,
1592                          int ofs, int len)
1593{
1594    if (ofs == 0) {
1595        switch (len) {
1596        case 8:
1597            tcg_out_ext8s(s, TCG_TYPE_REG, dest, src);
1598            return;
1599        case 16:
1600            tcg_out_ext16s(s, TCG_TYPE_REG, dest, src);
1601            return;
1602        case 32:
1603            tcg_out_ext32s(s, dest, src);
1604            return;
1605        }
1606    }
1607    g_assert_not_reached();
1608}
1609
1610static void tgen_gotoi(TCGContext *s, int cc, const tcg_insn_unit *dest)
1611{
1612    ptrdiff_t off = tcg_pcrel_diff(s, dest) >> 1;
1613    if (off == (int16_t)off) {
1614        tcg_out_insn(s, RI, BRC, cc, off);
1615    } else if (off == (int32_t)off) {
1616        tcg_out_insn(s, RIL, BRCL, cc, off);
1617    } else {
1618        tcg_out_movi(s, TCG_TYPE_PTR, TCG_TMP0, (uintptr_t)dest);
1619        tcg_out_insn(s, RR, BCR, cc, TCG_TMP0);
1620    }
1621}
1622
1623static void tgen_branch(TCGContext *s, int cc, TCGLabel *l)
1624{
1625    if (l->has_value) {
1626        tgen_gotoi(s, cc, l->u.value_ptr);
1627    } else {
1628        tcg_out16(s, RI_BRC | (cc << 4));
1629        tcg_out_reloc(s, s->code_ptr, R_390_PC16DBL, l, 2);
1630        s->code_ptr += 1;
1631    }
1632}
1633
1634static void tgen_compare_branch(TCGContext *s, S390Opcode opc, int cc,
1635                                TCGReg r1, TCGReg r2, TCGLabel *l)
1636{
1637    tcg_out_reloc(s, s->code_ptr + 1, R_390_PC16DBL, l, 2);
1638    /* Format RIE-b */
1639    tcg_out16(s, (opc & 0xff00) | (r1 << 4) | r2);
1640    tcg_out16(s, 0);
1641    tcg_out16(s, cc << 12 | (opc & 0xff));
1642}
1643
1644static void tgen_compare_imm_branch(TCGContext *s, S390Opcode opc, int cc,
1645                                    TCGReg r1, int i2, TCGLabel *l)
1646{
1647    tcg_out_reloc(s, s->code_ptr + 1, R_390_PC16DBL, l, 2);
1648    /* Format RIE-c */
1649    tcg_out16(s, (opc & 0xff00) | (r1 << 4) | cc);
1650    tcg_out16(s, 0);
1651    tcg_out16(s, (i2 << 8) | (opc & 0xff));
1652}
1653
1654static void tgen_brcond(TCGContext *s, TCGType type, TCGCond c,
1655                        TCGReg r1, TCGArg c2, int c2const, TCGLabel *l)
1656{
1657    int cc;
1658
1659    if (!is_tst_cond(c)) {
1660        bool is_unsigned = is_unsigned_cond(c);
1661        bool in_range;
1662        S390Opcode opc;
1663
1664        cc = tcg_cond_to_s390_cond[c];
1665
1666        if (!c2const) {
1667            opc = (type == TCG_TYPE_I32
1668                   ? (is_unsigned ? RIEb_CLRJ : RIEb_CRJ)
1669                   : (is_unsigned ? RIEb_CLGRJ : RIEb_CGRJ));
1670            tgen_compare_branch(s, opc, cc, r1, c2, l);
1671            return;
1672        }
1673
1674        /*
1675         * COMPARE IMMEDIATE AND BRANCH RELATIVE has an 8-bit immediate field.
1676         * If the immediate we've been given does not fit that range, we'll
1677         * fall back to separate compare and branch instructions using the
1678         * larger comparison range afforded by COMPARE IMMEDIATE.
1679         */
1680        if (type == TCG_TYPE_I32) {
1681            if (is_unsigned) {
1682                opc = RIEc_CLIJ;
1683                in_range = (uint32_t)c2 == (uint8_t)c2;
1684            } else {
1685                opc = RIEc_CIJ;
1686                in_range = (int32_t)c2 == (int8_t)c2;
1687            }
1688        } else {
1689            if (is_unsigned) {
1690                opc = RIEc_CLGIJ;
1691                in_range = (uint64_t)c2 == (uint8_t)c2;
1692            } else {
1693                opc = RIEc_CGIJ;
1694                in_range = (int64_t)c2 == (int8_t)c2;
1695            }
1696        }
1697        if (in_range) {
1698            tgen_compare_imm_branch(s, opc, cc, r1, c2, l);
1699            return;
1700        }
1701    }
1702
1703    cc = tgen_cmp(s, type, c, r1, c2, c2const, false);
1704    tgen_branch(s, cc, l);
1705}
1706
1707static void tcg_out_call_int(TCGContext *s, const tcg_insn_unit *dest)
1708{
1709    ptrdiff_t off = tcg_pcrel_diff(s, dest) >> 1;
1710    if (off == (int32_t)off) {
1711        tcg_out_insn(s, RIL, BRASL, TCG_REG_R14, off);
1712    } else {
1713        tcg_out_movi(s, TCG_TYPE_PTR, TCG_TMP0, (uintptr_t)dest);
1714        tcg_out_insn(s, RR, BASR, TCG_REG_R14, TCG_TMP0);
1715    }
1716}
1717
1718static void tcg_out_call(TCGContext *s, const tcg_insn_unit *dest,
1719                         const TCGHelperInfo *info)
1720{
1721    tcg_out_call_int(s, dest);
1722}
1723
1724typedef struct {
1725    TCGReg base;
1726    TCGReg index;
1727    int disp;
1728    TCGAtomAlign aa;
1729} HostAddress;
1730
1731bool tcg_target_has_memory_bswap(MemOp memop)
1732{
1733    TCGAtomAlign aa;
1734
1735    if ((memop & MO_SIZE) <= MO_64) {
1736        return true;
1737    }
1738
1739    /*
1740     * Reject 16-byte memop with 16-byte atomicity,
1741     * but do allow a pair of 64-bit operations.
1742     */
1743    aa = atom_and_align_for_opc(tcg_ctx, memop, MO_ATOM_IFALIGN, true);
1744    return aa.atom <= MO_64;
1745}
1746
1747static void tcg_out_qemu_ld_direct(TCGContext *s, MemOp opc, TCGReg data,
1748                                   HostAddress h)
1749{
1750    switch (opc & (MO_SSIZE | MO_BSWAP)) {
1751    case MO_UB:
1752        tcg_out_insn(s, RXY, LLGC, data, h.base, h.index, h.disp);
1753        break;
1754    case MO_SB:
1755        tcg_out_insn(s, RXY, LGB, data, h.base, h.index, h.disp);
1756        break;
1757
1758    case MO_UW | MO_BSWAP:
1759        /* swapped unsigned halfword load with upper bits zeroed */
1760        tcg_out_insn(s, RXY, LRVH, data, h.base, h.index, h.disp);
1761        tcg_out_ext16u(s, data, data);
1762        break;
1763    case MO_UW:
1764        tcg_out_insn(s, RXY, LLGH, data, h.base, h.index, h.disp);
1765        break;
1766
1767    case MO_SW | MO_BSWAP:
1768        /* swapped sign-extended halfword load */
1769        tcg_out_insn(s, RXY, LRVH, data, h.base, h.index, h.disp);
1770        tcg_out_ext16s(s, TCG_TYPE_REG, data, data);
1771        break;
1772    case MO_SW:
1773        tcg_out_insn(s, RXY, LGH, data, h.base, h.index, h.disp);
1774        break;
1775
1776    case MO_UL | MO_BSWAP:
1777        /* swapped unsigned int load with upper bits zeroed */
1778        tcg_out_insn(s, RXY, LRV, data, h.base, h.index, h.disp);
1779        tcg_out_ext32u(s, data, data);
1780        break;
1781    case MO_UL:
1782        tcg_out_insn(s, RXY, LLGF, data, h.base, h.index, h.disp);
1783        break;
1784
1785    case MO_SL | MO_BSWAP:
1786        /* swapped sign-extended int load */
1787        tcg_out_insn(s, RXY, LRV, data, h.base, h.index, h.disp);
1788        tcg_out_ext32s(s, data, data);
1789        break;
1790    case MO_SL:
1791        tcg_out_insn(s, RXY, LGF, data, h.base, h.index, h.disp);
1792        break;
1793
1794    case MO_UQ | MO_BSWAP:
1795        tcg_out_insn(s, RXY, LRVG, data, h.base, h.index, h.disp);
1796        break;
1797    case MO_UQ:
1798        tcg_out_insn(s, RXY, LG, data, h.base, h.index, h.disp);
1799        break;
1800
1801    default:
1802        g_assert_not_reached();
1803    }
1804}
1805
1806static void tcg_out_qemu_st_direct(TCGContext *s, MemOp opc, TCGReg data,
1807                                   HostAddress h)
1808{
1809    switch (opc & (MO_SIZE | MO_BSWAP)) {
1810    case MO_UB:
1811        if (h.disp >= 0 && h.disp < 0x1000) {
1812            tcg_out_insn(s, RX, STC, data, h.base, h.index, h.disp);
1813        } else {
1814            tcg_out_insn(s, RXY, STCY, data, h.base, h.index, h.disp);
1815        }
1816        break;
1817
1818    case MO_UW | MO_BSWAP:
1819        tcg_out_insn(s, RXY, STRVH, data, h.base, h.index, h.disp);
1820        break;
1821    case MO_UW:
1822        if (h.disp >= 0 && h.disp < 0x1000) {
1823            tcg_out_insn(s, RX, STH, data, h.base, h.index, h.disp);
1824        } else {
1825            tcg_out_insn(s, RXY, STHY, data, h.base, h.index, h.disp);
1826        }
1827        break;
1828
1829    case MO_UL | MO_BSWAP:
1830        tcg_out_insn(s, RXY, STRV, data, h.base, h.index, h.disp);
1831        break;
1832    case MO_UL:
1833        if (h.disp >= 0 && h.disp < 0x1000) {
1834            tcg_out_insn(s, RX, ST, data, h.base, h.index, h.disp);
1835        } else {
1836            tcg_out_insn(s, RXY, STY, data, h.base, h.index, h.disp);
1837        }
1838        break;
1839
1840    case MO_UQ | MO_BSWAP:
1841        tcg_out_insn(s, RXY, STRVG, data, h.base, h.index, h.disp);
1842        break;
1843    case MO_UQ:
1844        tcg_out_insn(s, RXY, STG, data, h.base, h.index, h.disp);
1845        break;
1846
1847    default:
1848        g_assert_not_reached();
1849    }
1850}
1851
1852static const TCGLdstHelperParam ldst_helper_param = {
1853    .ntmp = 1, .tmp = { TCG_TMP0 }
1854};
1855
1856static bool tcg_out_qemu_ld_slow_path(TCGContext *s, TCGLabelQemuLdst *lb)
1857{
1858    MemOp opc = get_memop(lb->oi);
1859
1860    if (!patch_reloc(lb->label_ptr[0], R_390_PC16DBL,
1861                     (intptr_t)tcg_splitwx_to_rx(s->code_ptr), 2)) {
1862        return false;
1863    }
1864
1865    tcg_out_ld_helper_args(s, lb, &ldst_helper_param);
1866    tcg_out_call_int(s, qemu_ld_helpers[opc & MO_SIZE]);
1867    tcg_out_ld_helper_ret(s, lb, false, &ldst_helper_param);
1868
1869    tgen_gotoi(s, S390_CC_ALWAYS, lb->raddr);
1870    return true;
1871}
1872
1873static bool tcg_out_qemu_st_slow_path(TCGContext *s, TCGLabelQemuLdst *lb)
1874{
1875    MemOp opc = get_memop(lb->oi);
1876
1877    if (!patch_reloc(lb->label_ptr[0], R_390_PC16DBL,
1878                     (intptr_t)tcg_splitwx_to_rx(s->code_ptr), 2)) {
1879        return false;
1880    }
1881
1882    tcg_out_st_helper_args(s, lb, &ldst_helper_param);
1883    tcg_out_call_int(s, qemu_st_helpers[opc & MO_SIZE]);
1884
1885    tgen_gotoi(s, S390_CC_ALWAYS, lb->raddr);
1886    return true;
1887}
1888
1889/* We're expecting to use a 20-bit negative offset on the tlb memory ops.  */
1890#define MIN_TLB_MASK_TABLE_OFS  -(1 << 19)
1891
1892/*
1893 * For system-mode, perform the TLB load and compare.
1894 * For user-mode, perform any required alignment tests.
1895 * In both cases, return a TCGLabelQemuLdst structure if the slow path
1896 * is required and fill in @h with the host address for the fast path.
1897 */
1898static TCGLabelQemuLdst *prepare_host_addr(TCGContext *s, HostAddress *h,
1899                                           TCGReg addr_reg, MemOpIdx oi,
1900                                           bool is_ld)
1901{
1902    TCGType addr_type = s->addr_type;
1903    TCGLabelQemuLdst *ldst = NULL;
1904    MemOp opc = get_memop(oi);
1905    MemOp s_bits = opc & MO_SIZE;
1906    unsigned a_mask;
1907
1908    h->aa = atom_and_align_for_opc(s, opc, MO_ATOM_IFALIGN, s_bits == MO_128);
1909    a_mask = (1 << h->aa.align) - 1;
1910
1911    if (tcg_use_softmmu) {
1912        unsigned s_mask = (1 << s_bits) - 1;
1913        int mem_index = get_mmuidx(oi);
1914        int fast_off = tlb_mask_table_ofs(s, mem_index);
1915        int mask_off = fast_off + offsetof(CPUTLBDescFast, mask);
1916        int table_off = fast_off + offsetof(CPUTLBDescFast, table);
1917        int ofs, a_off;
1918        uint64_t tlb_mask;
1919
1920        ldst = new_ldst_label(s);
1921        ldst->is_ld = is_ld;
1922        ldst->oi = oi;
1923        ldst->addr_reg = addr_reg;
1924
1925        tcg_out_sh64(s, RSY_SRLG, TCG_TMP0, addr_reg, TCG_REG_NONE,
1926                     s->page_bits - CPU_TLB_ENTRY_BITS);
1927
1928        tcg_out_insn(s, RXY, NG, TCG_TMP0, TCG_AREG0, TCG_REG_NONE, mask_off);
1929        tcg_out_insn(s, RXY, AG, TCG_TMP0, TCG_AREG0, TCG_REG_NONE, table_off);
1930
1931        /*
1932         * For aligned accesses, we check the first byte and include the
1933         * alignment bits within the address.  For unaligned access, we
1934         * check that we don't cross pages using the address of the last
1935         * byte of the access.
1936         */
1937        a_off = (a_mask >= s_mask ? 0 : s_mask - a_mask);
1938        tlb_mask = (uint64_t)s->page_mask | a_mask;
1939        if (a_off == 0) {
1940            tgen_andi_risbg(s, TCG_REG_R0, addr_reg, tlb_mask);
1941        } else {
1942            tcg_out_insn(s, RX, LA, TCG_REG_R0, addr_reg, TCG_REG_NONE, a_off);
1943            tgen_andi(s, addr_type, TCG_REG_R0, tlb_mask);
1944        }
1945
1946        if (is_ld) {
1947            ofs = offsetof(CPUTLBEntry, addr_read);
1948        } else {
1949            ofs = offsetof(CPUTLBEntry, addr_write);
1950        }
1951        if (addr_type == TCG_TYPE_I32) {
1952            ofs += HOST_BIG_ENDIAN * 4;
1953            tcg_out_insn(s, RX, C, TCG_REG_R0, TCG_TMP0, TCG_REG_NONE, ofs);
1954        } else {
1955            tcg_out_insn(s, RXY, CG, TCG_REG_R0, TCG_TMP0, TCG_REG_NONE, ofs);
1956        }
1957
1958        tcg_out16(s, RI_BRC | (S390_CC_NE << 4));
1959        ldst->label_ptr[0] = s->code_ptr++;
1960
1961        h->index = TCG_TMP0;
1962        tcg_out_insn(s, RXY, LG, h->index, TCG_TMP0, TCG_REG_NONE,
1963                     offsetof(CPUTLBEntry, addend));
1964
1965        if (addr_type == TCG_TYPE_I32) {
1966            tcg_out_insn(s, RRE, ALGFR, h->index, addr_reg);
1967            h->base = TCG_REG_NONE;
1968        } else {
1969            h->base = addr_reg;
1970        }
1971        h->disp = 0;
1972    } else {
1973        if (a_mask) {
1974            ldst = new_ldst_label(s);
1975            ldst->is_ld = is_ld;
1976            ldst->oi = oi;
1977            ldst->addr_reg = addr_reg;
1978
1979            tcg_debug_assert(a_mask <= 0xffff);
1980            tcg_out_insn(s, RI, TMLL, addr_reg, a_mask);
1981
1982            tcg_out16(s, RI_BRC | (S390_TM_NE << 4));
1983            ldst->label_ptr[0] = s->code_ptr++;
1984        }
1985
1986        h->base = addr_reg;
1987        if (addr_type == TCG_TYPE_I32) {
1988            tcg_out_ext32u(s, TCG_TMP0, addr_reg);
1989            h->base = TCG_TMP0;
1990        }
1991        if (guest_base < 0x80000) {
1992            h->index = TCG_REG_NONE;
1993            h->disp = guest_base;
1994        } else {
1995            h->index = TCG_GUEST_BASE_REG;
1996            h->disp = 0;
1997        }
1998    }
1999
2000    return ldst;
2001}
2002
2003static void tcg_out_qemu_ld(TCGContext* s, TCGReg data_reg, TCGReg addr_reg,
2004                            MemOpIdx oi, TCGType data_type)
2005{
2006    TCGLabelQemuLdst *ldst;
2007    HostAddress h;
2008
2009    ldst = prepare_host_addr(s, &h, addr_reg, oi, true);
2010    tcg_out_qemu_ld_direct(s, get_memop(oi), data_reg, h);
2011
2012    if (ldst) {
2013        ldst->type = data_type;
2014        ldst->datalo_reg = data_reg;
2015        ldst->raddr = tcg_splitwx_to_rx(s->code_ptr);
2016    }
2017}
2018
2019static void tcg_out_qemu_st(TCGContext* s, TCGReg data_reg, TCGReg addr_reg,
2020                            MemOpIdx oi, TCGType data_type)
2021{
2022    TCGLabelQemuLdst *ldst;
2023    HostAddress h;
2024
2025    ldst = prepare_host_addr(s, &h, addr_reg, oi, false);
2026    tcg_out_qemu_st_direct(s, get_memop(oi), data_reg, h);
2027
2028    if (ldst) {
2029        ldst->type = data_type;
2030        ldst->datalo_reg = data_reg;
2031        ldst->raddr = tcg_splitwx_to_rx(s->code_ptr);
2032    }
2033}
2034
2035static void tcg_out_qemu_ldst_i128(TCGContext *s, TCGReg datalo, TCGReg datahi,
2036                                   TCGReg addr_reg, MemOpIdx oi, bool is_ld)
2037{
2038    TCGLabel *l1 = NULL, *l2 = NULL;
2039    TCGLabelQemuLdst *ldst;
2040    HostAddress h;
2041    bool need_bswap;
2042    bool use_pair;
2043    S390Opcode insn;
2044
2045    ldst = prepare_host_addr(s, &h, addr_reg, oi, is_ld);
2046
2047    use_pair = h.aa.atom < MO_128;
2048    need_bswap = get_memop(oi) & MO_BSWAP;
2049
2050    if (!use_pair) {
2051        /*
2052         * Atomicity requires we use LPQ.  If we've already checked for
2053         * 16-byte alignment, that's all we need.  If we arrive with
2054         * lesser alignment, we have determined that less than 16-byte
2055         * alignment can be satisfied with two 8-byte loads.
2056         */
2057        if (h.aa.align < MO_128) {
2058            use_pair = true;
2059            l1 = gen_new_label();
2060            l2 = gen_new_label();
2061
2062            tcg_out_insn(s, RI, TMLL, addr_reg, 15);
2063            tgen_branch(s, S390_TM_NE, l1);
2064        }
2065
2066        tcg_debug_assert(!need_bswap);
2067        tcg_debug_assert(datalo & 1);
2068        tcg_debug_assert(datahi == datalo - 1);
2069        insn = is_ld ? RXY_LPQ : RXY_STPQ;
2070        tcg_out_insn_RXY(s, insn, datahi, h.base, h.index, h.disp);
2071
2072        if (use_pair) {
2073            tgen_branch(s, S390_CC_ALWAYS, l2);
2074            tcg_out_label(s, l1);
2075        }
2076    }
2077    if (use_pair) {
2078        TCGReg d1, d2;
2079
2080        if (need_bswap) {
2081            d1 = datalo, d2 = datahi;
2082            insn = is_ld ? RXY_LRVG : RXY_STRVG;
2083        } else {
2084            d1 = datahi, d2 = datalo;
2085            insn = is_ld ? RXY_LG : RXY_STG;
2086        }
2087
2088        if (h.base == d1 || h.index == d1) {
2089            tcg_out_insn(s, RXY, LAY, TCG_TMP0, h.base, h.index, h.disp);
2090            h.base = TCG_TMP0;
2091            h.index = TCG_REG_NONE;
2092            h.disp = 0;
2093        }
2094        tcg_out_insn_RXY(s, insn, d1, h.base, h.index, h.disp);
2095        tcg_out_insn_RXY(s, insn, d2, h.base, h.index, h.disp + 8);
2096    }
2097    if (l2) {
2098        tcg_out_label(s, l2);
2099    }
2100
2101    if (ldst) {
2102        ldst->type = TCG_TYPE_I128;
2103        ldst->datalo_reg = datalo;
2104        ldst->datahi_reg = datahi;
2105        ldst->raddr = tcg_splitwx_to_rx(s->code_ptr);
2106    }
2107}
2108
2109static void tcg_out_exit_tb(TCGContext *s, uintptr_t a0)
2110{
2111    /* Reuse the zeroing that exists for goto_ptr.  */
2112    if (a0 == 0) {
2113        tgen_gotoi(s, S390_CC_ALWAYS, tcg_code_gen_epilogue);
2114    } else {
2115        tcg_out_movi(s, TCG_TYPE_PTR, TCG_REG_R2, a0);
2116        tgen_gotoi(s, S390_CC_ALWAYS, tb_ret_addr);
2117    }
2118}
2119
2120static void tcg_out_goto_tb(TCGContext *s, int which)
2121{
2122    /*
2123     * Branch displacement must be aligned for atomic patching;
2124     * see if we need to add extra nop before branch
2125     */
2126    if (!QEMU_PTR_IS_ALIGNED(s->code_ptr + 1, 4)) {
2127        tcg_out16(s, NOP);
2128    }
2129    tcg_out16(s, RIL_BRCL | (S390_CC_ALWAYS << 4));
2130    set_jmp_insn_offset(s, which);
2131    s->code_ptr += 2;
2132    set_jmp_reset_offset(s, which);
2133}
2134
2135void tb_target_set_jmp_target(const TranslationBlock *tb, int n,
2136                              uintptr_t jmp_rx, uintptr_t jmp_rw)
2137{
2138    if (!HAVE_FACILITY(GEN_INST_EXT)) {
2139        return;
2140    }
2141    /* patch the branch destination */
2142    uintptr_t addr = tb->jmp_target_addr[n];
2143    intptr_t disp = addr - (jmp_rx - 2);
2144    qatomic_set((int32_t *)jmp_rw, disp / 2);
2145    /* no need to flush icache explicitly */
2146}
2147
2148
2149static void tgen_add(TCGContext *s, TCGType type,
2150                     TCGReg a0, TCGReg a1, TCGReg a2)
2151{
2152    if (a0 != a1) {
2153        tcg_out_insn(s, RX, LA, a0, a1, a2, 0);
2154    } else if (type == TCG_TYPE_I32) {
2155        tcg_out_insn(s, RR, AR, a0, a2);
2156    } else {
2157        tcg_out_insn(s, RRE, AGR, a0, a2);
2158    }
2159}
2160
2161static void tgen_addi(TCGContext *s, TCGType type,
2162                      TCGReg a0, TCGReg a1, tcg_target_long a2)
2163{
2164    if (a0 == a1) {
2165        if (type == TCG_TYPE_I32) {
2166            if (a2 == (int16_t)a2) {
2167                tcg_out_insn(s, RI, AHI, a0, a2);
2168            } else {
2169                tcg_out_insn(s, RIL, AFI, a0, a2);
2170            }
2171            return;
2172        }
2173        if (a2 == (int16_t)a2) {
2174            tcg_out_insn(s, RI, AGHI, a0, a2);
2175            return;
2176        }
2177        if (a2 == (int32_t)a2) {
2178            tcg_out_insn(s, RIL, AGFI, a0, a2);
2179            return;
2180        }
2181        if (a2 == (uint32_t)a2) {
2182            tcg_out_insn(s, RIL, ALGFI, a0, a2);
2183            return;
2184        }
2185        if (-a2 == (uint32_t)-a2) {
2186            tcg_out_insn(s, RIL, SLGFI, a0, -a2);
2187            return;
2188        }
2189    }
2190    tcg_out_mem(s, RX_LA, RXY_LAY, a0, a1, TCG_REG_NONE, a2);
2191}
2192
2193static const TCGOutOpBinary outop_add = {
2194    .base.static_constraint = C_O1_I2(r, r, ri),
2195    .out_rrr = tgen_add,
2196    .out_rri = tgen_addi,
2197};
2198
2199static void tgen_and(TCGContext *s, TCGType type,
2200                     TCGReg a0, TCGReg a1, TCGReg a2)
2201{
2202    if (type != TCG_TYPE_I32) {
2203        tcg_out_insn(s, RRFa, NGRK, a0, a1, a2);
2204    } else if (a0 == a1) {
2205        tcg_out_insn(s, RR, NR, a0, a2);
2206    } else {
2207        tcg_out_insn(s, RRFa, NRK, a0, a1, a2);
2208    }
2209}
2210
2211static void tgen_andi_3(TCGContext *s, TCGType type,
2212                        TCGReg a0, TCGReg a1, tcg_target_long a2)
2213{
2214    tcg_out_mov(s, type, a0, a1);
2215    tgen_andi(s, type, a0, a2);
2216}
2217
2218static const TCGOutOpBinary outop_and = {
2219    .base.static_constraint = C_O1_I2(r, r, rNKR),
2220    .out_rrr = tgen_and,
2221    .out_rri = tgen_andi_3,
2222};
2223
2224static void tgen_andc(TCGContext *s, TCGType type,
2225                      TCGReg a0, TCGReg a1, TCGReg a2)
2226{
2227    if (type == TCG_TYPE_I32) {
2228        tcg_out_insn(s, RRFa, NCRK, a0, a1, a2);
2229    } else {
2230        tcg_out_insn(s, RRFa, NCGRK, a0, a1, a2);
2231    }
2232}
2233
2234static TCGConstraintSetIndex cset_misc3_rrr(TCGType type, unsigned flags)
2235{
2236    return HAVE_FACILITY(MISC_INSN_EXT3) ? C_O1_I2(r, r, r) : C_NotImplemented;
2237}
2238
2239static const TCGOutOpBinary outop_andc = {
2240    .base.static_constraint = C_Dynamic,
2241    .base.dynamic_constraint = cset_misc3_rrr,
2242    .out_rrr = tgen_andc,
2243};
2244
2245static void tgen_eqv(TCGContext *s, TCGType type,
2246                      TCGReg a0, TCGReg a1, TCGReg a2)
2247{
2248    if (type == TCG_TYPE_I32) {
2249        tcg_out_insn(s, RRFa, NXRK, a0, a1, a2);
2250    } else {
2251        tcg_out_insn(s, RRFa, NXGRK, a0, a1, a2);
2252    }
2253}
2254
2255static const TCGOutOpBinary outop_eqv = {
2256    .base.static_constraint = C_Dynamic,
2257    .base.dynamic_constraint = cset_misc3_rrr,
2258    .out_rrr = tgen_eqv,
2259};
2260
2261static void tgen_nand(TCGContext *s, TCGType type,
2262                      TCGReg a0, TCGReg a1, TCGReg a2)
2263{
2264    if (type == TCG_TYPE_I32) {
2265        tcg_out_insn(s, RRFa, NNRK, a0, a1, a2);
2266    } else {
2267        tcg_out_insn(s, RRFa, NNGRK, a0, a1, a2);
2268    }
2269}
2270
2271static const TCGOutOpBinary outop_nand = {
2272    .base.static_constraint = C_Dynamic,
2273    .base.dynamic_constraint = cset_misc3_rrr,
2274    .out_rrr = tgen_nand,
2275};
2276
2277static void tgen_nor(TCGContext *s, TCGType type,
2278                      TCGReg a0, TCGReg a1, TCGReg a2)
2279{
2280    if (type == TCG_TYPE_I32) {
2281        tcg_out_insn(s, RRFa, NORK, a0, a1, a2);
2282    } else {
2283        tcg_out_insn(s, RRFa, NOGRK, a0, a1, a2);
2284    }
2285}
2286
2287static const TCGOutOpBinary outop_nor = {
2288    .base.static_constraint = C_Dynamic,
2289    .base.dynamic_constraint = cset_misc3_rrr,
2290    .out_rrr = tgen_nor,
2291};
2292
2293static void tgen_or(TCGContext *s, TCGType type,
2294                     TCGReg a0, TCGReg a1, TCGReg a2)
2295{
2296    if (type != TCG_TYPE_I32) {
2297        tcg_out_insn(s, RRFa, OGRK, a0, a1, a2);
2298    } else if (a0 == a1) {
2299        tcg_out_insn(s, RR, OR, a0, a2);
2300    } else {
2301        tcg_out_insn(s, RRFa, ORK, a0, a1, a2);
2302    }
2303}
2304
2305static void tgen_ori_3(TCGContext *s, TCGType type,
2306                        TCGReg a0, TCGReg a1, tcg_target_long a2)
2307{
2308    tcg_out_mov(s, type, a0, a1);
2309    tgen_ori(s, a0, type == TCG_TYPE_I32 ? (uint32_t)a2 : a2);
2310}
2311
2312static const TCGOutOpBinary outop_or = {
2313    .base.static_constraint = C_O1_I2(r, r, rK),
2314    .out_rrr = tgen_or,
2315    .out_rri = tgen_ori_3,
2316};
2317
2318static void tgen_orc(TCGContext *s, TCGType type,
2319                     TCGReg a0, TCGReg a1, TCGReg a2)
2320{
2321    if (type == TCG_TYPE_I32) {
2322        tcg_out_insn(s, RRFa, OCRK, a0, a1, a2);
2323    } else {
2324        tcg_out_insn(s, RRFa, OCGRK, a0, a1, a2);
2325    }
2326}
2327
2328static const TCGOutOpBinary outop_orc = {
2329    .base.static_constraint = C_Dynamic,
2330    .base.dynamic_constraint = cset_misc3_rrr,
2331    .out_rrr = tgen_orc,
2332};
2333
2334static void tgen_sub(TCGContext *s, TCGType type,
2335                     TCGReg a0, TCGReg a1, TCGReg a2)
2336{
2337    if (type != TCG_TYPE_I32) {
2338        tcg_out_insn(s, RRFa, SGRK, a0, a1, a2);
2339    } else if (a0 == a1) {
2340        tcg_out_insn(s, RR, SR, a0, a2);
2341    } else {
2342        tcg_out_insn(s, RRFa, SRK, a0, a1, a2);
2343    }
2344}
2345
2346static const TCGOutOpSubtract outop_sub = {
2347    .base.static_constraint = C_O1_I2(r, r, r),
2348    .out_rrr = tgen_sub,
2349};
2350
2351static void tgen_xor(TCGContext *s, TCGType type,
2352                     TCGReg a0, TCGReg a1, TCGReg a2)
2353{
2354    if (type != TCG_TYPE_I32) {
2355        tcg_out_insn(s, RRFa, XGRK, a0, a1, a2);
2356    } else if (a0 == a1) {
2357        tcg_out_insn(s, RR, XR, a0, a2);
2358    } else {
2359        tcg_out_insn(s, RRFa, XRK, a0, a1, a2);
2360    }
2361}
2362
2363static void tgen_xori_3(TCGContext *s, TCGType type,
2364                        TCGReg a0, TCGReg a1, tcg_target_long a2)
2365{
2366    tcg_out_mov(s, type, a0, a1);
2367    tgen_xori(s, a0, type == TCG_TYPE_I32 ? (uint32_t)a2 : a2);
2368}
2369
2370static const TCGOutOpBinary outop_xor = {
2371    .base.static_constraint = C_O1_I2(r, r, rK),
2372    .out_rrr = tgen_xor,
2373    .out_rri = tgen_xori_3,
2374};
2375
2376static void tgen_neg(TCGContext *s, TCGType type, TCGReg a0, TCGReg a1)
2377{
2378    if (type == TCG_TYPE_I32) {
2379        tcg_out_insn(s, RR, LCR, a0, a1);
2380    } else {
2381        tcg_out_insn(s, RRE, LCGR, a0, a1);
2382    }
2383}
2384
2385static const TCGOutOpUnary outop_neg = {
2386    .base.static_constraint = C_O1_I1(r, r),
2387    .out_rr = tgen_neg,
2388};
2389
2390
2391# define OP_32_64(x) \
2392        case glue(glue(INDEX_op_,x),_i32): \
2393        case glue(glue(INDEX_op_,x),_i64)
2394
2395static void tcg_out_op(TCGContext *s, TCGOpcode opc, TCGType type,
2396                       const TCGArg args[TCG_MAX_OP_ARGS],
2397                       const int const_args[TCG_MAX_OP_ARGS])
2398{
2399    S390Opcode op, op2;
2400    TCGArg a0, a1, a2;
2401
2402    switch (opc) {
2403    case INDEX_op_goto_ptr:
2404        a0 = args[0];
2405        tcg_out_insn(s, RR, BCR, S390_CC_ALWAYS, a0);
2406        break;
2407
2408    OP_32_64(ld8u):
2409        /* ??? LLC (RXY format) is only present with the extended-immediate
2410           facility, whereas LLGC is always present.  */
2411        tcg_out_mem(s, 0, RXY_LLGC, args[0], args[1], TCG_REG_NONE, args[2]);
2412        break;
2413
2414    OP_32_64(ld8s):
2415        /* ??? LB is no smaller than LGB, so no point to using it.  */
2416        tcg_out_mem(s, 0, RXY_LGB, args[0], args[1], TCG_REG_NONE, args[2]);
2417        break;
2418
2419    OP_32_64(ld16u):
2420        /* ??? LLH (RXY format) is only present with the extended-immediate
2421           facility, whereas LLGH is always present.  */
2422        tcg_out_mem(s, 0, RXY_LLGH, args[0], args[1], TCG_REG_NONE, args[2]);
2423        break;
2424
2425    case INDEX_op_ld16s_i32:
2426        tcg_out_mem(s, RX_LH, RXY_LHY, args[0], args[1], TCG_REG_NONE, args[2]);
2427        break;
2428
2429    case INDEX_op_ld_i32:
2430        tcg_out_ld(s, TCG_TYPE_I32, args[0], args[1], args[2]);
2431        break;
2432
2433    OP_32_64(st8):
2434        tcg_out_mem(s, RX_STC, RXY_STCY, args[0], args[1],
2435                    TCG_REG_NONE, args[2]);
2436        break;
2437
2438    OP_32_64(st16):
2439        tcg_out_mem(s, RX_STH, RXY_STHY, args[0], args[1],
2440                    TCG_REG_NONE, args[2]);
2441        break;
2442
2443    case INDEX_op_st_i32:
2444        tcg_out_st(s, TCG_TYPE_I32, args[0], args[1], args[2]);
2445        break;
2446
2447    case INDEX_op_not_i32:
2448        tcg_out_insn(s, RRFa, NORK, args[0], args[1], args[1]);
2449        break;
2450
2451    case INDEX_op_mul_i32:
2452        a0 = args[0], a1 = args[1], a2 = (int32_t)args[2];
2453        if (const_args[2]) {
2454            tcg_out_mov(s, TCG_TYPE_I32, a0, a1);
2455            if (a2 == (int16_t)a2) {
2456                tcg_out_insn(s, RI, MHI, a0, a2);
2457            } else {
2458                tcg_out_insn(s, RIL, MSFI, a0, a2);
2459            }
2460        } else if (a0 == a1) {
2461            tcg_out_insn(s, RRE, MSR, a0, a2);
2462        } else {
2463            tcg_out_insn(s, RRFa, MSRKC, a0, a1, a2);
2464        }
2465        break;
2466
2467    case INDEX_op_div2_i32:
2468        tcg_debug_assert(args[0] == args[2]);
2469        tcg_debug_assert(args[1] == args[3]);
2470        tcg_debug_assert((args[1] & 1) == 0);
2471        tcg_debug_assert(args[0] == args[1] + 1);
2472        tcg_out_insn(s, RR, DR, args[1], args[4]);
2473        break;
2474    case INDEX_op_divu2_i32:
2475        tcg_debug_assert(args[0] == args[2]);
2476        tcg_debug_assert(args[1] == args[3]);
2477        tcg_debug_assert((args[1] & 1) == 0);
2478        tcg_debug_assert(args[0] == args[1] + 1);
2479        tcg_out_insn(s, RRE, DLR, args[1], args[4]);
2480        break;
2481
2482    case INDEX_op_shl_i32:
2483        op = RS_SLL;
2484        op2 = RSY_SLLK;
2485    do_shift32:
2486        a0 = args[0], a1 = args[1], a2 = (int32_t)args[2];
2487        if (a0 == a1) {
2488            if (const_args[2]) {
2489                tcg_out_sh32(s, op, a0, TCG_REG_NONE, a2);
2490            } else {
2491                tcg_out_sh32(s, op, a0, a2, 0);
2492            }
2493        } else {
2494            /* Using tcg_out_sh64 here for the format; it is a 32-bit shift.  */
2495            if (const_args[2]) {
2496                tcg_out_sh64(s, op2, a0, a1, TCG_REG_NONE, a2);
2497            } else {
2498                tcg_out_sh64(s, op2, a0, a1, a2, 0);
2499            }
2500        }
2501        break;
2502    case INDEX_op_shr_i32:
2503        op = RS_SRL;
2504        op2 = RSY_SRLK;
2505        goto do_shift32;
2506    case INDEX_op_sar_i32:
2507        op = RS_SRA;
2508        op2 = RSY_SRAK;
2509        goto do_shift32;
2510
2511    case INDEX_op_rotl_i32:
2512        /* ??? Using tcg_out_sh64 here for the format; it is a 32-bit rol.  */
2513        if (const_args[2]) {
2514            tcg_out_sh64(s, RSY_RLL, args[0], args[1], TCG_REG_NONE, args[2]);
2515        } else {
2516            tcg_out_sh64(s, RSY_RLL, args[0], args[1], args[2], 0);
2517        }
2518        break;
2519    case INDEX_op_rotr_i32:
2520        if (const_args[2]) {
2521            tcg_out_sh64(s, RSY_RLL, args[0], args[1],
2522                         TCG_REG_NONE, (32 - args[2]) & 31);
2523        } else {
2524            tcg_out_insn(s, RR, LCR, TCG_TMP0, args[2]);
2525            tcg_out_sh64(s, RSY_RLL, args[0], args[1], TCG_TMP0, 0);
2526        }
2527        break;
2528
2529    case INDEX_op_bswap16_i32:
2530        a0 = args[0], a1 = args[1], a2 = args[2];
2531        tcg_out_insn(s, RRE, LRVR, a0, a1);
2532        if (a2 & TCG_BSWAP_OS) {
2533            tcg_out_sh32(s, RS_SRA, a0, TCG_REG_NONE, 16);
2534        } else {
2535            tcg_out_sh32(s, RS_SRL, a0, TCG_REG_NONE, 16);
2536        }
2537        break;
2538    case INDEX_op_bswap16_i64:
2539        a0 = args[0], a1 = args[1], a2 = args[2];
2540        tcg_out_insn(s, RRE, LRVGR, a0, a1);
2541        if (a2 & TCG_BSWAP_OS) {
2542            tcg_out_sh64(s, RSY_SRAG, a0, a0, TCG_REG_NONE, 48);
2543        } else {
2544            tcg_out_sh64(s, RSY_SRLG, a0, a0, TCG_REG_NONE, 48);
2545        }
2546        break;
2547
2548    case INDEX_op_bswap32_i32:
2549        tcg_out_insn(s, RRE, LRVR, args[0], args[1]);
2550        break;
2551    case INDEX_op_bswap32_i64:
2552        a0 = args[0], a1 = args[1], a2 = args[2];
2553        tcg_out_insn(s, RRE, LRVR, a0, a1);
2554        if (a2 & TCG_BSWAP_OS) {
2555            tcg_out_ext32s(s, a0, a0);
2556        } else if ((a2 & (TCG_BSWAP_IZ | TCG_BSWAP_OZ)) == TCG_BSWAP_OZ) {
2557            tcg_out_ext32u(s, a0, a0);
2558        }
2559        break;
2560
2561    case INDEX_op_add2_i32:
2562        if (const_args[4]) {
2563            tcg_out_insn(s, RIL, ALFI, args[0], args[4]);
2564        } else {
2565            tcg_out_insn(s, RR, ALR, args[0], args[4]);
2566        }
2567        tcg_out_insn(s, RRE, ALCR, args[1], args[5]);
2568        break;
2569    case INDEX_op_sub2_i32:
2570        if (const_args[4]) {
2571            tcg_out_insn(s, RIL, SLFI, args[0], args[4]);
2572        } else {
2573            tcg_out_insn(s, RR, SLR, args[0], args[4]);
2574        }
2575        tcg_out_insn(s, RRE, SLBR, args[1], args[5]);
2576        break;
2577
2578    case INDEX_op_br:
2579        tgen_branch(s, S390_CC_ALWAYS, arg_label(args[0]));
2580        break;
2581
2582    case INDEX_op_brcond_i32:
2583        tgen_brcond(s, TCG_TYPE_I32, args[2], args[0],
2584                    args[1], const_args[1], arg_label(args[3]));
2585        break;
2586    case INDEX_op_setcond_i32:
2587        tgen_setcond(s, TCG_TYPE_I32, args[3], args[0], args[1],
2588                     args[2], const_args[2], false);
2589        break;
2590    case INDEX_op_negsetcond_i32:
2591        tgen_setcond(s, TCG_TYPE_I32, args[3], args[0], args[1],
2592                     args[2], const_args[2], true);
2593        break;
2594    case INDEX_op_movcond_i32:
2595        tgen_movcond(s, TCG_TYPE_I32, args[5], args[0], args[1],
2596                     args[2], const_args[2], args[3], const_args[3], args[4]);
2597        break;
2598
2599    case INDEX_op_qemu_ld_i32:
2600        tcg_out_qemu_ld(s, args[0], args[1], args[2], TCG_TYPE_I32);
2601        break;
2602    case INDEX_op_qemu_ld_i64:
2603        tcg_out_qemu_ld(s, args[0], args[1], args[2], TCG_TYPE_I64);
2604        break;
2605    case INDEX_op_qemu_st_i32:
2606        tcg_out_qemu_st(s, args[0], args[1], args[2], TCG_TYPE_I32);
2607        break;
2608    case INDEX_op_qemu_st_i64:
2609        tcg_out_qemu_st(s, args[0], args[1], args[2], TCG_TYPE_I64);
2610        break;
2611    case INDEX_op_qemu_ld_i128:
2612        tcg_out_qemu_ldst_i128(s, args[0], args[1], args[2], args[3], true);
2613        break;
2614    case INDEX_op_qemu_st_i128:
2615        tcg_out_qemu_ldst_i128(s, args[0], args[1], args[2], args[3], false);
2616        break;
2617
2618    case INDEX_op_ld16s_i64:
2619        tcg_out_mem(s, 0, RXY_LGH, args[0], args[1], TCG_REG_NONE, args[2]);
2620        break;
2621    case INDEX_op_ld32u_i64:
2622        tcg_out_mem(s, 0, RXY_LLGF, args[0], args[1], TCG_REG_NONE, args[2]);
2623        break;
2624    case INDEX_op_ld32s_i64:
2625        tcg_out_mem(s, 0, RXY_LGF, args[0], args[1], TCG_REG_NONE, args[2]);
2626        break;
2627    case INDEX_op_ld_i64:
2628        tcg_out_ld(s, TCG_TYPE_I64, args[0], args[1], args[2]);
2629        break;
2630
2631    case INDEX_op_st32_i64:
2632        tcg_out_st(s, TCG_TYPE_I32, args[0], args[1], args[2]);
2633        break;
2634    case INDEX_op_st_i64:
2635        tcg_out_st(s, TCG_TYPE_I64, args[0], args[1], args[2]);
2636        break;
2637
2638    case INDEX_op_not_i64:
2639        tcg_out_insn(s, RRFa, NOGRK, args[0], args[1], args[1]);
2640        break;
2641    case INDEX_op_bswap64_i64:
2642        tcg_out_insn(s, RRE, LRVGR, args[0], args[1]);
2643        break;
2644
2645    case INDEX_op_mul_i64:
2646        a0 = args[0], a1 = args[1], a2 = args[2];
2647        if (const_args[2]) {
2648            tcg_out_mov(s, TCG_TYPE_I64, a0, a1);
2649            if (a2 == (int16_t)a2) {
2650                tcg_out_insn(s, RI, MGHI, a0, a2);
2651            } else {
2652                tcg_out_insn(s, RIL, MSGFI, a0, a2);
2653            }
2654        } else if (a0 == a1) {
2655            tcg_out_insn(s, RRE, MSGR, a0, a2);
2656        } else {
2657            tcg_out_insn(s, RRFa, MSGRKC, a0, a1, a2);
2658        }
2659        break;
2660
2661    case INDEX_op_div2_i64:
2662        /*
2663         * ??? We get an unnecessary sign-extension of the dividend
2664         * into op0 with this definition, but as we do in fact always
2665         * produce both quotient and remainder using INDEX_op_div_i64
2666         * instead requires jumping through even more hoops.
2667         */
2668        tcg_debug_assert(args[0] == args[2]);
2669        tcg_debug_assert(args[1] == args[3]);
2670        tcg_debug_assert((args[1] & 1) == 0);
2671        tcg_debug_assert(args[0] == args[1] + 1);
2672        tcg_out_insn(s, RRE, DSGR, args[1], args[4]);
2673        break;
2674    case INDEX_op_divu2_i64:
2675        tcg_debug_assert(args[0] == args[2]);
2676        tcg_debug_assert(args[1] == args[3]);
2677        tcg_debug_assert((args[1] & 1) == 0);
2678        tcg_debug_assert(args[0] == args[1] + 1);
2679        tcg_out_insn(s, RRE, DLGR, args[1], args[4]);
2680        break;
2681    case INDEX_op_mulu2_i64:
2682        tcg_debug_assert(args[0] == args[2]);
2683        tcg_debug_assert((args[1] & 1) == 0);
2684        tcg_debug_assert(args[0] == args[1] + 1);
2685        tcg_out_insn(s, RRE, MLGR, args[1], args[3]);
2686        break;
2687    case INDEX_op_muls2_i64:
2688        tcg_debug_assert((args[1] & 1) == 0);
2689        tcg_debug_assert(args[0] == args[1] + 1);
2690        tcg_out_insn(s, RRFa, MGRK, args[1], args[2], args[3]);
2691        break;
2692
2693    case INDEX_op_shl_i64:
2694        op = RSY_SLLG;
2695    do_shift64:
2696        if (const_args[2]) {
2697            tcg_out_sh64(s, op, args[0], args[1], TCG_REG_NONE, args[2]);
2698        } else {
2699            tcg_out_sh64(s, op, args[0], args[1], args[2], 0);
2700        }
2701        break;
2702    case INDEX_op_shr_i64:
2703        op = RSY_SRLG;
2704        goto do_shift64;
2705    case INDEX_op_sar_i64:
2706        op = RSY_SRAG;
2707        goto do_shift64;
2708
2709    case INDEX_op_rotl_i64:
2710        if (const_args[2]) {
2711            tcg_out_sh64(s, RSY_RLLG, args[0], args[1],
2712                         TCG_REG_NONE, args[2]);
2713        } else {
2714            tcg_out_sh64(s, RSY_RLLG, args[0], args[1], args[2], 0);
2715        }
2716        break;
2717    case INDEX_op_rotr_i64:
2718        if (const_args[2]) {
2719            tcg_out_sh64(s, RSY_RLLG, args[0], args[1],
2720                         TCG_REG_NONE, (64 - args[2]) & 63);
2721        } else {
2722            /* We can use the smaller 32-bit negate because only the
2723               low 6 bits are examined for the rotate.  */
2724            tcg_out_insn(s, RR, LCR, TCG_TMP0, args[2]);
2725            tcg_out_sh64(s, RSY_RLLG, args[0], args[1], TCG_TMP0, 0);
2726        }
2727        break;
2728
2729    case INDEX_op_add2_i64:
2730        if (const_args[4]) {
2731            if ((int64_t)args[4] >= 0) {
2732                tcg_out_insn(s, RIL, ALGFI, args[0], args[4]);
2733            } else {
2734                tcg_out_insn(s, RIL, SLGFI, args[0], -args[4]);
2735            }
2736        } else {
2737            tcg_out_insn(s, RRE, ALGR, args[0], args[4]);
2738        }
2739        tcg_out_insn(s, RRE, ALCGR, args[1], args[5]);
2740        break;
2741    case INDEX_op_sub2_i64:
2742        if (const_args[4]) {
2743            if ((int64_t)args[4] >= 0) {
2744                tcg_out_insn(s, RIL, SLGFI, args[0], args[4]);
2745            } else {
2746                tcg_out_insn(s, RIL, ALGFI, args[0], -args[4]);
2747            }
2748        } else {
2749            tcg_out_insn(s, RRE, SLGR, args[0], args[4]);
2750        }
2751        tcg_out_insn(s, RRE, SLBGR, args[1], args[5]);
2752        break;
2753
2754    case INDEX_op_brcond_i64:
2755        tgen_brcond(s, TCG_TYPE_I64, args[2], args[0],
2756                    args[1], const_args[1], arg_label(args[3]));
2757        break;
2758    case INDEX_op_setcond_i64:
2759        tgen_setcond(s, TCG_TYPE_I64, args[3], args[0], args[1],
2760                     args[2], const_args[2], false);
2761        break;
2762    case INDEX_op_negsetcond_i64:
2763        tgen_setcond(s, TCG_TYPE_I64, args[3], args[0], args[1],
2764                     args[2], const_args[2], true);
2765        break;
2766    case INDEX_op_movcond_i64:
2767        tgen_movcond(s, TCG_TYPE_I64, args[5], args[0], args[1],
2768                     args[2], const_args[2], args[3], const_args[3], args[4]);
2769        break;
2770
2771    OP_32_64(deposit):
2772        a0 = args[0], a1 = args[1], a2 = args[2];
2773        if (const_args[1]) {
2774            tgen_deposit(s, a0, a2, args[3], args[4], 1);
2775        } else {
2776            /* Since we can't support "0Z" as a constraint, we allow a1 in
2777               any register.  Fix things up as if a matching constraint.  */
2778            if (a0 != a1) {
2779                if (a0 == a2) {
2780                    tcg_out_mov(s, type, TCG_TMP0, a2);
2781                    a2 = TCG_TMP0;
2782                }
2783                tcg_out_mov(s, type, a0, a1);
2784            }
2785            tgen_deposit(s, a0, a2, args[3], args[4], 0);
2786        }
2787        break;
2788
2789    OP_32_64(extract):
2790        tgen_extract(s, args[0], args[1], args[2], args[3]);
2791        break;
2792    OP_32_64(sextract):
2793        tgen_sextract(s, args[0], args[1], args[2], args[3]);
2794        break;
2795
2796    case INDEX_op_clz_i64:
2797        tgen_clz(s, args[0], args[1], args[2], const_args[2]);
2798        break;
2799
2800    case INDEX_op_ctpop_i32:
2801        tgen_ctpop(s, TCG_TYPE_I32, args[0], args[1]);
2802        break;
2803    case INDEX_op_ctpop_i64:
2804        tgen_ctpop(s, TCG_TYPE_I64, args[0], args[1]);
2805        break;
2806
2807    case INDEX_op_mb:
2808        /* The host memory model is quite strong, we simply need to
2809           serialize the instruction stream.  */
2810        if (args[0] & TCG_MO_ST_LD) {
2811            /* fast-bcr-serialization facility (45) is present */
2812            tcg_out_insn(s, RR, BCR, 14, 0);
2813        }
2814        break;
2815
2816    case INDEX_op_call:     /* Always emitted via tcg_out_call.  */
2817    case INDEX_op_exit_tb:  /* Always emitted via tcg_out_exit_tb.  */
2818    case INDEX_op_goto_tb:  /* Always emitted via tcg_out_goto_tb.  */
2819    case INDEX_op_ext_i32_i64:  /* Always emitted via tcg_reg_alloc_op.  */
2820    case INDEX_op_extu_i32_i64:
2821    case INDEX_op_extrl_i64_i32:
2822    default:
2823        g_assert_not_reached();
2824    }
2825}
2826
2827static bool tcg_out_dup_vec(TCGContext *s, TCGType type, unsigned vece,
2828                            TCGReg dst, TCGReg src)
2829{
2830    if (is_general_reg(src)) {
2831        /* Replicate general register into two MO_64. */
2832        tcg_out_insn(s, VRRf, VLVGP, dst, src, src);
2833        if (vece == MO_64) {
2834            return true;
2835        }
2836        src = dst;
2837    }
2838
2839    /*
2840     * Recall that the "standard" integer, within a vector, is the
2841     * rightmost element of the leftmost doubleword, a-la VLLEZ.
2842     */
2843    tcg_out_insn(s, VRIc, VREP, dst, (8 >> vece) - 1, src, vece);
2844    return true;
2845}
2846
2847static bool tcg_out_dupm_vec(TCGContext *s, TCGType type, unsigned vece,
2848                             TCGReg dst, TCGReg base, intptr_t offset)
2849{
2850    tcg_out_vrx_mem(s, VRX_VLREP, dst, base, TCG_REG_NONE, offset, vece);
2851    return true;
2852}
2853
2854static void tcg_out_dupi_vec(TCGContext *s, TCGType type, unsigned vece,
2855                             TCGReg dst, int64_t val)
2856{
2857    int i, mask, msb, lsb;
2858
2859    /* Look for int16_t elements.  */
2860    if (vece <= MO_16 ||
2861        (vece == MO_32 ? (int32_t)val : val) == (int16_t)val) {
2862        tcg_out_insn(s, VRIa, VREPI, dst, val, vece);
2863        return;
2864    }
2865
2866    /* Look for bit masks.  */
2867    if (vece == MO_32) {
2868        if (risbg_mask((int32_t)val)) {
2869            /* Handle wraparound by swapping msb and lsb.  */
2870            if ((val & 0x80000001u) == 0x80000001u) {
2871                msb = 32 - ctz32(~val);
2872                lsb = clz32(~val) - 1;
2873            } else {
2874                msb = clz32(val);
2875                lsb = 31 - ctz32(val);
2876            }
2877            tcg_out_insn(s, VRIb, VGM, dst, msb, lsb, MO_32);
2878            return;
2879        }
2880    } else {
2881        if (risbg_mask(val)) {
2882            /* Handle wraparound by swapping msb and lsb.  */
2883            if ((val & 0x8000000000000001ull) == 0x8000000000000001ull) {
2884                /* Handle wraparound by swapping msb and lsb.  */
2885                msb = 64 - ctz64(~val);
2886                lsb = clz64(~val) - 1;
2887            } else {
2888                msb = clz64(val);
2889                lsb = 63 - ctz64(val);
2890            }
2891            tcg_out_insn(s, VRIb, VGM, dst, msb, lsb, MO_64);
2892            return;
2893        }
2894    }
2895
2896    /* Look for all bytes 0x00 or 0xff.  */
2897    for (i = mask = 0; i < 8; i++) {
2898        uint8_t byte = val >> (i * 8);
2899        if (byte == 0xff) {
2900            mask |= 1 << i;
2901        } else if (byte != 0) {
2902            break;
2903        }
2904    }
2905    if (i == 8) {
2906        tcg_out_insn(s, VRIa, VGBM, dst, mask * 0x0101, 0);
2907        return;
2908    }
2909
2910    /* Otherwise, stuff it in the constant pool.  */
2911    tcg_out_insn(s, RIL, LARL, TCG_TMP0, 0);
2912    new_pool_label(s, val, R_390_PC32DBL, s->code_ptr - 2, 2);
2913    tcg_out_insn(s, VRX, VLREP, dst, TCG_TMP0, TCG_REG_NONE, 0, MO_64);
2914}
2915
2916static bool tcg_out_cmp_vec_noinv(TCGContext *s, unsigned vece, TCGReg a0,
2917                                  TCGReg a1, TCGReg a2, TCGCond cond)
2918{
2919    bool need_swap = false, need_inv = false;
2920
2921    switch (cond) {
2922    case TCG_COND_EQ:
2923    case TCG_COND_GT:
2924    case TCG_COND_GTU:
2925        break;
2926    case TCG_COND_NE:
2927    case TCG_COND_LE:
2928    case TCG_COND_LEU:
2929        need_inv = true;
2930        break;
2931    case TCG_COND_LT:
2932    case TCG_COND_LTU:
2933        need_swap = true;
2934        break;
2935    case TCG_COND_GE:
2936    case TCG_COND_GEU:
2937        need_swap = need_inv = true;
2938        break;
2939    default:
2940        g_assert_not_reached();
2941    }
2942
2943    if (need_inv) {
2944        cond = tcg_invert_cond(cond);
2945    }
2946    if (need_swap) {
2947        TCGReg swap = a1;
2948        a1 = a2;
2949        a2 = swap;
2950        cond = tcg_swap_cond(cond);
2951    }
2952
2953    switch (cond) {
2954    case TCG_COND_EQ:
2955        tcg_out_insn(s, VRRc, VCEQ, a0, a1, a2, vece);
2956        break;
2957    case TCG_COND_GT:
2958        tcg_out_insn(s, VRRc, VCH, a0, a1, a2, vece);
2959        break;
2960    case TCG_COND_GTU:
2961        tcg_out_insn(s, VRRc, VCHL, a0, a1, a2, vece);
2962        break;
2963    default:
2964        g_assert_not_reached();
2965    }
2966    return need_inv;
2967}
2968
2969static void tcg_out_cmp_vec(TCGContext *s, unsigned vece, TCGReg a0,
2970                            TCGReg a1, TCGReg a2, TCGCond cond)
2971{
2972    if (tcg_out_cmp_vec_noinv(s, vece, a0, a1, a2, cond)) {
2973        tcg_out_insn(s, VRRc, VNO, a0, a0, a0, 0);
2974    }
2975}
2976
2977static void tcg_out_cmpsel_vec(TCGContext *s, unsigned vece, TCGReg a0,
2978                               TCGReg c1, TCGReg c2, TCGArg v3,
2979                               int const_v3, TCGReg v4, TCGCond cond)
2980{
2981    bool inv = tcg_out_cmp_vec_noinv(s, vece, TCG_VEC_TMP0, c1, c2, cond);
2982
2983    if (!const_v3) {
2984        if (inv) {
2985            tcg_out_insn(s, VRRe, VSEL, a0, v4, v3, TCG_VEC_TMP0);
2986        } else {
2987            tcg_out_insn(s, VRRe, VSEL, a0, v3, v4, TCG_VEC_TMP0);
2988        }
2989    } else if (v3) {
2990        if (inv) {
2991            tcg_out_insn(s, VRRc, VOC, a0, v4, TCG_VEC_TMP0, 0);
2992        } else {
2993            tcg_out_insn(s, VRRc, VO, a0, v4, TCG_VEC_TMP0, 0);
2994        }
2995    } else {
2996        if (inv) {
2997            tcg_out_insn(s, VRRc, VN, a0, v4, TCG_VEC_TMP0, 0);
2998        } else {
2999            tcg_out_insn(s, VRRc, VNC, a0, v4, TCG_VEC_TMP0, 0);
3000        }
3001    }
3002}
3003
3004static void tcg_out_vec_op(TCGContext *s, TCGOpcode opc,
3005                           unsigned vecl, unsigned vece,
3006                           const TCGArg args[TCG_MAX_OP_ARGS],
3007                           const int const_args[TCG_MAX_OP_ARGS])
3008{
3009    TCGType type = vecl + TCG_TYPE_V64;
3010    TCGArg a0 = args[0], a1 = args[1], a2 = args[2];
3011
3012    switch (opc) {
3013    case INDEX_op_ld_vec:
3014        tcg_out_ld(s, type, a0, a1, a2);
3015        break;
3016    case INDEX_op_st_vec:
3017        tcg_out_st(s, type, a0, a1, a2);
3018        break;
3019    case INDEX_op_dupm_vec:
3020        tcg_out_dupm_vec(s, type, vece, a0, a1, a2);
3021        break;
3022
3023    case INDEX_op_abs_vec:
3024        tcg_out_insn(s, VRRa, VLP, a0, a1, vece);
3025        break;
3026    case INDEX_op_neg_vec:
3027        tcg_out_insn(s, VRRa, VLC, a0, a1, vece);
3028        break;
3029    case INDEX_op_not_vec:
3030        tcg_out_insn(s, VRRc, VNO, a0, a1, a1, 0);
3031        break;
3032
3033    case INDEX_op_add_vec:
3034        tcg_out_insn(s, VRRc, VA, a0, a1, a2, vece);
3035        break;
3036    case INDEX_op_sub_vec:
3037        tcg_out_insn(s, VRRc, VS, a0, a1, a2, vece);
3038        break;
3039    case INDEX_op_and_vec:
3040        tcg_out_insn(s, VRRc, VN, a0, a1, a2, 0);
3041        break;
3042    case INDEX_op_andc_vec:
3043        tcg_out_insn(s, VRRc, VNC, a0, a1, a2, 0);
3044        break;
3045    case INDEX_op_mul_vec:
3046        tcg_out_insn(s, VRRc, VML, a0, a1, a2, vece);
3047        break;
3048    case INDEX_op_or_vec:
3049        tcg_out_insn(s, VRRc, VO, a0, a1, a2, 0);
3050        break;
3051    case INDEX_op_orc_vec:
3052        tcg_out_insn(s, VRRc, VOC, a0, a1, a2, 0);
3053        break;
3054    case INDEX_op_xor_vec:
3055        tcg_out_insn(s, VRRc, VX, a0, a1, a2, 0);
3056        break;
3057    case INDEX_op_nand_vec:
3058        tcg_out_insn(s, VRRc, VNN, a0, a1, a2, 0);
3059        break;
3060    case INDEX_op_nor_vec:
3061        tcg_out_insn(s, VRRc, VNO, a0, a1, a2, 0);
3062        break;
3063    case INDEX_op_eqv_vec:
3064        tcg_out_insn(s, VRRc, VNX, a0, a1, a2, 0);
3065        break;
3066
3067    case INDEX_op_shli_vec:
3068        tcg_out_insn(s, VRSa, VESL, a0, a2, TCG_REG_NONE, a1, vece);
3069        break;
3070    case INDEX_op_shri_vec:
3071        tcg_out_insn(s, VRSa, VESRL, a0, a2, TCG_REG_NONE, a1, vece);
3072        break;
3073    case INDEX_op_sari_vec:
3074        tcg_out_insn(s, VRSa, VESRA, a0, a2, TCG_REG_NONE, a1, vece);
3075        break;
3076    case INDEX_op_rotli_vec:
3077        tcg_out_insn(s, VRSa, VERLL, a0, a2, TCG_REG_NONE, a1, vece);
3078        break;
3079    case INDEX_op_shls_vec:
3080        tcg_out_insn(s, VRSa, VESL, a0, 0, a2, a1, vece);
3081        break;
3082    case INDEX_op_shrs_vec:
3083        tcg_out_insn(s, VRSa, VESRL, a0, 0, a2, a1, vece);
3084        break;
3085    case INDEX_op_sars_vec:
3086        tcg_out_insn(s, VRSa, VESRA, a0, 0, a2, a1, vece);
3087        break;
3088    case INDEX_op_rotls_vec:
3089        tcg_out_insn(s, VRSa, VERLL, a0, 0, a2, a1, vece);
3090        break;
3091    case INDEX_op_shlv_vec:
3092        tcg_out_insn(s, VRRc, VESLV, a0, a1, a2, vece);
3093        break;
3094    case INDEX_op_shrv_vec:
3095        tcg_out_insn(s, VRRc, VESRLV, a0, a1, a2, vece);
3096        break;
3097    case INDEX_op_sarv_vec:
3098        tcg_out_insn(s, VRRc, VESRAV, a0, a1, a2, vece);
3099        break;
3100    case INDEX_op_rotlv_vec:
3101        tcg_out_insn(s, VRRc, VERLLV, a0, a1, a2, vece);
3102        break;
3103
3104    case INDEX_op_smin_vec:
3105        tcg_out_insn(s, VRRc, VMN, a0, a1, a2, vece);
3106        break;
3107    case INDEX_op_smax_vec:
3108        tcg_out_insn(s, VRRc, VMX, a0, a1, a2, vece);
3109        break;
3110    case INDEX_op_umin_vec:
3111        tcg_out_insn(s, VRRc, VMNL, a0, a1, a2, vece);
3112        break;
3113    case INDEX_op_umax_vec:
3114        tcg_out_insn(s, VRRc, VMXL, a0, a1, a2, vece);
3115        break;
3116
3117    case INDEX_op_bitsel_vec:
3118        tcg_out_insn(s, VRRe, VSEL, a0, a2, args[3], a1);
3119        break;
3120
3121    case INDEX_op_cmp_vec:
3122        tcg_out_cmp_vec(s, vece, a0, a1, a2, args[3]);
3123        break;
3124    case INDEX_op_cmpsel_vec:
3125        tcg_out_cmpsel_vec(s, vece, a0, a1, a2, args[3], const_args[3],
3126                           args[4], args[5]);
3127        break;
3128
3129    case INDEX_op_s390_vuph_vec:
3130        tcg_out_insn(s, VRRa, VUPH, a0, a1, vece);
3131        break;
3132    case INDEX_op_s390_vupl_vec:
3133        tcg_out_insn(s, VRRa, VUPL, a0, a1, vece);
3134        break;
3135    case INDEX_op_s390_vpks_vec:
3136        tcg_out_insn(s, VRRc, VPKS, a0, a1, a2, vece);
3137        break;
3138
3139    case INDEX_op_mov_vec:   /* Always emitted via tcg_out_mov.  */
3140    case INDEX_op_dup_vec:   /* Always emitted via tcg_out_dup_vec.  */
3141    default:
3142        g_assert_not_reached();
3143    }
3144}
3145
3146int tcg_can_emit_vec_op(TCGOpcode opc, TCGType type, unsigned vece)
3147{
3148    switch (opc) {
3149    case INDEX_op_abs_vec:
3150    case INDEX_op_add_vec:
3151    case INDEX_op_and_vec:
3152    case INDEX_op_andc_vec:
3153    case INDEX_op_bitsel_vec:
3154    case INDEX_op_eqv_vec:
3155    case INDEX_op_nand_vec:
3156    case INDEX_op_neg_vec:
3157    case INDEX_op_nor_vec:
3158    case INDEX_op_not_vec:
3159    case INDEX_op_or_vec:
3160    case INDEX_op_orc_vec:
3161    case INDEX_op_rotli_vec:
3162    case INDEX_op_rotls_vec:
3163    case INDEX_op_rotlv_vec:
3164    case INDEX_op_sari_vec:
3165    case INDEX_op_sars_vec:
3166    case INDEX_op_sarv_vec:
3167    case INDEX_op_shli_vec:
3168    case INDEX_op_shls_vec:
3169    case INDEX_op_shlv_vec:
3170    case INDEX_op_shri_vec:
3171    case INDEX_op_shrs_vec:
3172    case INDEX_op_shrv_vec:
3173    case INDEX_op_smax_vec:
3174    case INDEX_op_smin_vec:
3175    case INDEX_op_sub_vec:
3176    case INDEX_op_umax_vec:
3177    case INDEX_op_umin_vec:
3178    case INDEX_op_xor_vec:
3179    case INDEX_op_cmp_vec:
3180    case INDEX_op_cmpsel_vec:
3181        return 1;
3182    case INDEX_op_rotrv_vec:
3183        return -1;
3184    case INDEX_op_mul_vec:
3185        return vece < MO_64;
3186    case INDEX_op_ssadd_vec:
3187    case INDEX_op_sssub_vec:
3188        return vece < MO_64 ? -1 : 0;
3189    default:
3190        return 0;
3191    }
3192}
3193
3194static void expand_vec_sat(TCGType type, unsigned vece, TCGv_vec v0,
3195                           TCGv_vec v1, TCGv_vec v2, TCGOpcode add_sub_opc)
3196{
3197    TCGv_vec h1 = tcg_temp_new_vec(type);
3198    TCGv_vec h2 = tcg_temp_new_vec(type);
3199    TCGv_vec l1 = tcg_temp_new_vec(type);
3200    TCGv_vec l2 = tcg_temp_new_vec(type);
3201
3202    tcg_debug_assert (vece < MO_64);
3203
3204    /* Unpack with sign-extension. */
3205    vec_gen_2(INDEX_op_s390_vuph_vec, type, vece,
3206              tcgv_vec_arg(h1), tcgv_vec_arg(v1));
3207    vec_gen_2(INDEX_op_s390_vuph_vec, type, vece,
3208              tcgv_vec_arg(h2), tcgv_vec_arg(v2));
3209
3210    vec_gen_2(INDEX_op_s390_vupl_vec, type, vece,
3211              tcgv_vec_arg(l1), tcgv_vec_arg(v1));
3212    vec_gen_2(INDEX_op_s390_vupl_vec, type, vece,
3213              tcgv_vec_arg(l2), tcgv_vec_arg(v2));
3214
3215    /* Arithmetic on a wider element size. */
3216    vec_gen_3(add_sub_opc, type, vece + 1, tcgv_vec_arg(h1),
3217              tcgv_vec_arg(h1), tcgv_vec_arg(h2));
3218    vec_gen_3(add_sub_opc, type, vece + 1, tcgv_vec_arg(l1),
3219              tcgv_vec_arg(l1), tcgv_vec_arg(l2));
3220
3221    /* Pack with saturation. */
3222    vec_gen_3(INDEX_op_s390_vpks_vec, type, vece + 1,
3223              tcgv_vec_arg(v0), tcgv_vec_arg(h1), tcgv_vec_arg(l1));
3224
3225    tcg_temp_free_vec(h1);
3226    tcg_temp_free_vec(h2);
3227    tcg_temp_free_vec(l1);
3228    tcg_temp_free_vec(l2);
3229}
3230
3231void tcg_expand_vec_op(TCGOpcode opc, TCGType type, unsigned vece,
3232                       TCGArg a0, ...)
3233{
3234    va_list va;
3235    TCGv_vec v0, v1, v2, t0;
3236
3237    va_start(va, a0);
3238    v0 = temp_tcgv_vec(arg_temp(a0));
3239    v1 = temp_tcgv_vec(arg_temp(va_arg(va, TCGArg)));
3240    v2 = temp_tcgv_vec(arg_temp(va_arg(va, TCGArg)));
3241
3242    switch (opc) {
3243    case INDEX_op_rotrv_vec:
3244        t0 = tcg_temp_new_vec(type);
3245        tcg_gen_neg_vec(vece, t0, v2);
3246        tcg_gen_rotlv_vec(vece, v0, v1, t0);
3247        tcg_temp_free_vec(t0);
3248        break;
3249
3250    case INDEX_op_ssadd_vec:
3251        expand_vec_sat(type, vece, v0, v1, v2, INDEX_op_add_vec);
3252        break;
3253    case INDEX_op_sssub_vec:
3254        expand_vec_sat(type, vece, v0, v1, v2, INDEX_op_sub_vec);
3255        break;
3256
3257    default:
3258        g_assert_not_reached();
3259    }
3260    va_end(va);
3261}
3262
3263static TCGConstraintSetIndex
3264tcg_target_op_def(TCGOpcode op, TCGType type, unsigned flags)
3265{
3266    switch (op) {
3267    case INDEX_op_goto_ptr:
3268        return C_O0_I1(r);
3269
3270    case INDEX_op_ld8u_i32:
3271    case INDEX_op_ld8u_i64:
3272    case INDEX_op_ld8s_i32:
3273    case INDEX_op_ld8s_i64:
3274    case INDEX_op_ld16u_i32:
3275    case INDEX_op_ld16u_i64:
3276    case INDEX_op_ld16s_i32:
3277    case INDEX_op_ld16s_i64:
3278    case INDEX_op_ld_i32:
3279    case INDEX_op_ld32u_i64:
3280    case INDEX_op_ld32s_i64:
3281    case INDEX_op_ld_i64:
3282        return C_O1_I1(r, r);
3283
3284    case INDEX_op_st8_i32:
3285    case INDEX_op_st8_i64:
3286    case INDEX_op_st16_i32:
3287    case INDEX_op_st16_i64:
3288    case INDEX_op_st_i32:
3289    case INDEX_op_st32_i64:
3290    case INDEX_op_st_i64:
3291        return C_O0_I2(r, r);
3292
3293    case INDEX_op_shl_i64:
3294    case INDEX_op_shr_i64:
3295    case INDEX_op_sar_i64:
3296    case INDEX_op_rotl_i32:
3297    case INDEX_op_rotl_i64:
3298    case INDEX_op_rotr_i32:
3299    case INDEX_op_rotr_i64:
3300        return C_O1_I2(r, r, ri);
3301    case INDEX_op_setcond_i32:
3302    case INDEX_op_negsetcond_i32:
3303    case INDEX_op_setcond_i64:
3304    case INDEX_op_negsetcond_i64:
3305        return C_O1_I2(r, r, rC);
3306
3307    case INDEX_op_clz_i64:
3308        return C_O1_I2(r, r, rI);
3309
3310    case INDEX_op_mul_i32:
3311        return (HAVE_FACILITY(MISC_INSN_EXT2)
3312                ? C_O1_I2(r, r, ri)
3313                : C_O1_I2(r, 0, ri));
3314    case INDEX_op_mul_i64:
3315        return (HAVE_FACILITY(MISC_INSN_EXT2)
3316                ? C_O1_I2(r, r, rJ)
3317                : C_O1_I2(r, 0, rJ));
3318
3319    case INDEX_op_shl_i32:
3320    case INDEX_op_shr_i32:
3321    case INDEX_op_sar_i32:
3322        return C_O1_I2(r, r, ri);
3323
3324    case INDEX_op_brcond_i32:
3325        return C_O0_I2(r, ri);
3326    case INDEX_op_brcond_i64:
3327        return C_O0_I2(r, rC);
3328
3329    case INDEX_op_bswap16_i32:
3330    case INDEX_op_bswap16_i64:
3331    case INDEX_op_bswap32_i32:
3332    case INDEX_op_bswap32_i64:
3333    case INDEX_op_bswap64_i64:
3334    case INDEX_op_not_i32:
3335    case INDEX_op_not_i64:
3336    case INDEX_op_ext_i32_i64:
3337    case INDEX_op_extu_i32_i64:
3338    case INDEX_op_extract_i32:
3339    case INDEX_op_extract_i64:
3340    case INDEX_op_sextract_i32:
3341    case INDEX_op_sextract_i64:
3342    case INDEX_op_ctpop_i32:
3343    case INDEX_op_ctpop_i64:
3344        return C_O1_I1(r, r);
3345
3346    case INDEX_op_qemu_ld_i32:
3347    case INDEX_op_qemu_ld_i64:
3348        return C_O1_I1(r, r);
3349    case INDEX_op_qemu_st_i64:
3350    case INDEX_op_qemu_st_i32:
3351        return C_O0_I2(r, r);
3352    case INDEX_op_qemu_ld_i128:
3353        return C_O2_I1(o, m, r);
3354    case INDEX_op_qemu_st_i128:
3355        return C_O0_I3(o, m, r);
3356
3357    case INDEX_op_deposit_i32:
3358    case INDEX_op_deposit_i64:
3359        return C_O1_I2(r, rZ, r);
3360
3361    case INDEX_op_movcond_i32:
3362        return C_O1_I4(r, r, ri, rI, r);
3363    case INDEX_op_movcond_i64:
3364        return C_O1_I4(r, r, rC, rI, r);
3365
3366    case INDEX_op_div2_i32:
3367    case INDEX_op_div2_i64:
3368    case INDEX_op_divu2_i32:
3369    case INDEX_op_divu2_i64:
3370        return C_O2_I3(o, m, 0, 1, r);
3371
3372    case INDEX_op_mulu2_i64:
3373        return C_O2_I2(o, m, 0, r);
3374    case INDEX_op_muls2_i64:
3375        return C_O2_I2(o, m, r, r);
3376
3377    case INDEX_op_add2_i32:
3378    case INDEX_op_sub2_i32:
3379        return C_N1_O1_I4(r, r, 0, 1, ri, r);
3380
3381    case INDEX_op_add2_i64:
3382    case INDEX_op_sub2_i64:
3383        return C_N1_O1_I4(r, r, 0, 1, rJU, r);
3384
3385    case INDEX_op_st_vec:
3386        return C_O0_I2(v, r);
3387    case INDEX_op_ld_vec:
3388    case INDEX_op_dupm_vec:
3389        return C_O1_I1(v, r);
3390    case INDEX_op_dup_vec:
3391        return C_O1_I1(v, vr);
3392    case INDEX_op_abs_vec:
3393    case INDEX_op_neg_vec:
3394    case INDEX_op_not_vec:
3395    case INDEX_op_rotli_vec:
3396    case INDEX_op_sari_vec:
3397    case INDEX_op_shli_vec:
3398    case INDEX_op_shri_vec:
3399    case INDEX_op_s390_vuph_vec:
3400    case INDEX_op_s390_vupl_vec:
3401        return C_O1_I1(v, v);
3402    case INDEX_op_add_vec:
3403    case INDEX_op_sub_vec:
3404    case INDEX_op_and_vec:
3405    case INDEX_op_andc_vec:
3406    case INDEX_op_or_vec:
3407    case INDEX_op_orc_vec:
3408    case INDEX_op_xor_vec:
3409    case INDEX_op_nand_vec:
3410    case INDEX_op_nor_vec:
3411    case INDEX_op_eqv_vec:
3412    case INDEX_op_cmp_vec:
3413    case INDEX_op_mul_vec:
3414    case INDEX_op_rotlv_vec:
3415    case INDEX_op_rotrv_vec:
3416    case INDEX_op_shlv_vec:
3417    case INDEX_op_shrv_vec:
3418    case INDEX_op_sarv_vec:
3419    case INDEX_op_smax_vec:
3420    case INDEX_op_smin_vec:
3421    case INDEX_op_umax_vec:
3422    case INDEX_op_umin_vec:
3423    case INDEX_op_s390_vpks_vec:
3424        return C_O1_I2(v, v, v);
3425    case INDEX_op_rotls_vec:
3426    case INDEX_op_shls_vec:
3427    case INDEX_op_shrs_vec:
3428    case INDEX_op_sars_vec:
3429        return C_O1_I2(v, v, r);
3430    case INDEX_op_bitsel_vec:
3431        return C_O1_I3(v, v, v, v);
3432    case INDEX_op_cmpsel_vec:
3433        return (TCG_TARGET_HAS_orc_vec
3434                ? C_O1_I4(v, v, v, vZM, v)
3435                : C_O1_I4(v, v, v, vZ, v));
3436
3437    default:
3438        return C_NotImplemented;
3439    }
3440}
3441
3442/*
3443 * Mainline glibc added HWCAP_S390_VX before it was kernel abi.
3444 * Some distros have fixed this up locally, others have not.
3445 */
3446#ifndef HWCAP_S390_VXRS
3447#define HWCAP_S390_VXRS 2048
3448#endif
3449
3450static void query_s390_facilities(void)
3451{
3452    unsigned long hwcap = qemu_getauxval(AT_HWCAP);
3453    const char *which;
3454
3455    /* Is STORE FACILITY LIST EXTENDED available?  Honestly, I believe this
3456       is present on all 64-bit systems, but let's check for it anyway.  */
3457    if (hwcap & HWCAP_S390_STFLE) {
3458        register int r0 __asm__("0") = ARRAY_SIZE(s390_facilities) - 1;
3459        register void *r1 __asm__("1") = s390_facilities;
3460
3461        /* stfle 0(%r1) */
3462        asm volatile(".word 0xb2b0,0x1000"
3463                     : "=r"(r0) : "r"(r0), "r"(r1) : "memory", "cc");
3464    }
3465
3466    /*
3467     * Use of vector registers requires os support beyond the facility bit.
3468     * If the kernel does not advertise support, disable the facility bits.
3469     * There is nothing else we currently care about in the 3rd word, so
3470     * disable VECTOR with one store.
3471     */
3472    if (!(hwcap & HWCAP_S390_VXRS)) {
3473        s390_facilities[2] = 0;
3474    }
3475
3476    /*
3477     * Minimum supported cpu revision is z196.
3478     * Check for all required facilities.
3479     * ZARCH_ACTIVE is done via preprocessor check for 64-bit.
3480     */
3481    if (!HAVE_FACILITY(LONG_DISP)) {
3482        which = "long-displacement";
3483        goto fail;
3484    }
3485    if (!HAVE_FACILITY(EXT_IMM)) {
3486        which = "extended-immediate";
3487        goto fail;
3488    }
3489    if (!HAVE_FACILITY(GEN_INST_EXT)) {
3490        which = "general-instructions-extension";
3491        goto fail;
3492    }
3493    /*
3494     * Facility 45 is a big bin that contains: distinct-operands,
3495     * fast-BCR-serialization, high-word, population-count,
3496     * interlocked-access-1, and load/store-on-condition-1
3497     */
3498    if (!HAVE_FACILITY(45)) {
3499        which = "45";
3500        goto fail;
3501    }
3502    return;
3503
3504 fail:
3505    error_report("%s: missing required facility %s", __func__, which);
3506    exit(EXIT_FAILURE);
3507}
3508
3509static void tcg_target_init(TCGContext *s)
3510{
3511    query_s390_facilities();
3512
3513    tcg_target_available_regs[TCG_TYPE_I32] = 0xffff;
3514    tcg_target_available_regs[TCG_TYPE_I64] = 0xffff;
3515    if (HAVE_FACILITY(VECTOR)) {
3516        tcg_target_available_regs[TCG_TYPE_V64] = 0xffffffff00000000ull;
3517        tcg_target_available_regs[TCG_TYPE_V128] = 0xffffffff00000000ull;
3518    }
3519
3520    tcg_target_call_clobber_regs = 0;
3521    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R0);
3522    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R1);
3523    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R2);
3524    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R3);
3525    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R4);
3526    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R5);
3527    /* The r6 register is technically call-saved, but it's also a parameter
3528       register, so it can get killed by setup for the qemu_st helper.  */
3529    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R6);
3530    /* The return register can be considered call-clobbered.  */
3531    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_R14);
3532
3533    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V0);
3534    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V1);
3535    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V2);
3536    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V3);
3537    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V4);
3538    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V5);
3539    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V6);
3540    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V7);
3541    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V16);
3542    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V17);
3543    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V18);
3544    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V19);
3545    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V20);
3546    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V21);
3547    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V22);
3548    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V23);
3549    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V24);
3550    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V25);
3551    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V26);
3552    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V27);
3553    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V28);
3554    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V29);
3555    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V30);
3556    tcg_regset_set_reg(tcg_target_call_clobber_regs, TCG_REG_V31);
3557
3558    s->reserved_regs = 0;
3559    tcg_regset_set_reg(s->reserved_regs, TCG_TMP0);
3560    tcg_regset_set_reg(s->reserved_regs, TCG_VEC_TMP0);
3561    /* XXX many insns can't be used with R0, so we better avoid it for now */
3562    tcg_regset_set_reg(s->reserved_regs, TCG_REG_R0);
3563    tcg_regset_set_reg(s->reserved_regs, TCG_REG_CALL_STACK);
3564}
3565
3566#define FRAME_SIZE  ((int)(TCG_TARGET_CALL_STACK_OFFSET          \
3567                           + TCG_STATIC_CALL_ARGS_SIZE           \
3568                           + CPU_TEMP_BUF_NLONGS * sizeof(long)))
3569
3570static void tcg_target_qemu_prologue(TCGContext *s)
3571{
3572    /* stmg %r6,%r15,48(%r15) (save registers) */
3573    tcg_out_insn(s, RXY, STMG, TCG_REG_R6, TCG_REG_R15, TCG_REG_R15, 48);
3574
3575    /* aghi %r15,-frame_size */
3576    tcg_out_insn(s, RI, AGHI, TCG_REG_R15, -FRAME_SIZE);
3577
3578    tcg_set_frame(s, TCG_REG_CALL_STACK,
3579                  TCG_STATIC_CALL_ARGS_SIZE + TCG_TARGET_CALL_STACK_OFFSET,
3580                  CPU_TEMP_BUF_NLONGS * sizeof(long));
3581
3582    if (!tcg_use_softmmu && guest_base >= 0x80000) {
3583        tcg_out_movi(s, TCG_TYPE_PTR, TCG_GUEST_BASE_REG, guest_base);
3584        tcg_regset_set_reg(s->reserved_regs, TCG_GUEST_BASE_REG);
3585    }
3586
3587    tcg_out_mov(s, TCG_TYPE_PTR, TCG_AREG0, tcg_target_call_iarg_regs[0]);
3588
3589    /* br %r3 (go to TB) */
3590    tcg_out_insn(s, RR, BCR, S390_CC_ALWAYS, tcg_target_call_iarg_regs[1]);
3591
3592    /*
3593     * Return path for goto_ptr. Set return value to 0, a-la exit_tb,
3594     * and fall through to the rest of the epilogue.
3595     */
3596    tcg_code_gen_epilogue = tcg_splitwx_to_rx(s->code_ptr);
3597    tcg_out_movi(s, TCG_TYPE_PTR, TCG_REG_R2, 0);
3598
3599    /* TB epilogue */
3600    tb_ret_addr = tcg_splitwx_to_rx(s->code_ptr);
3601
3602    /* lmg %r6,%r15,fs+48(%r15) (restore registers) */
3603    tcg_out_insn(s, RXY, LMG, TCG_REG_R6, TCG_REG_R15, TCG_REG_R15,
3604                 FRAME_SIZE + 48);
3605
3606    /* br %r14 (return) */
3607    tcg_out_insn(s, RR, BCR, S390_CC_ALWAYS, TCG_REG_R14);
3608}
3609
3610static void tcg_out_tb_start(TCGContext *s)
3611{
3612    /* nothing to do */
3613}
3614
3615static void tcg_out_nop_fill(tcg_insn_unit *p, int count)
3616{
3617    memset(p, 0x07, count * sizeof(tcg_insn_unit));
3618}
3619
3620typedef struct {
3621    DebugFrameHeader h;
3622    uint8_t fde_def_cfa[4];
3623    uint8_t fde_reg_ofs[18];
3624} DebugFrame;
3625
3626/* We're expecting a 2 byte uleb128 encoded value.  */
3627QEMU_BUILD_BUG_ON(FRAME_SIZE >= (1 << 14));
3628
3629#define ELF_HOST_MACHINE  EM_S390
3630
3631static const DebugFrame debug_frame = {
3632    .h.cie.len = sizeof(DebugFrameCIE)-4, /* length after .len member */
3633    .h.cie.id = -1,
3634    .h.cie.version = 1,
3635    .h.cie.code_align = 1,
3636    .h.cie.data_align = 8,                /* sleb128 8 */
3637    .h.cie.return_column = TCG_REG_R14,
3638
3639    /* Total FDE size does not include the "len" member.  */
3640    .h.fde.len = sizeof(DebugFrame) - offsetof(DebugFrame, h.fde.cie_offset),
3641
3642    .fde_def_cfa = {
3643        12, TCG_REG_CALL_STACK,         /* DW_CFA_def_cfa %r15, ... */
3644        (FRAME_SIZE & 0x7f) | 0x80,     /* ... uleb128 FRAME_SIZE */
3645        (FRAME_SIZE >> 7)
3646    },
3647    .fde_reg_ofs = {
3648        0x86, 6,                        /* DW_CFA_offset, %r6, 48 */
3649        0x87, 7,                        /* DW_CFA_offset, %r7, 56 */
3650        0x88, 8,                        /* DW_CFA_offset, %r8, 64 */
3651        0x89, 9,                        /* DW_CFA_offset, %r92, 72 */
3652        0x8a, 10,                       /* DW_CFA_offset, %r10, 80 */
3653        0x8b, 11,                       /* DW_CFA_offset, %r11, 88 */
3654        0x8c, 12,                       /* DW_CFA_offset, %r12, 96 */
3655        0x8d, 13,                       /* DW_CFA_offset, %r13, 104 */
3656        0x8e, 14,                       /* DW_CFA_offset, %r14, 112 */
3657    }
3658};
3659
3660void tcg_register_jit(const void *buf, size_t buf_size)
3661{
3662    tcg_register_jit_int(buf, buf_size, &debug_frame, sizeof(debug_frame));
3663}
3664