1 /* Target-dependent code for s390.
3 Copyright (C) 2001-2018 Free Software Foundation, Inc.
5 This file is part of GDB.
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
22 #include "arch-utils.h"
24 #include "dwarf2-frame.h"
27 #include "frame-base.h"
28 #include "frame-unwind.h"
32 #include "linux-tdep.h"
35 #include "record-full.h"
37 #include "reggroups.h"
38 #include "s390-tdep.h"
39 #include "target-descriptions.h"
40 #include "trad-frame.h"
43 #include "features/s390-linux32.c"
44 #include "features/s390x-linux64.c"
46 /* Holds the current set of options to be passed to the disassembler. */
47 static char *s390_disassembler_options;
51 constexpr gdb_byte s390_break_insn[] = { 0x0, 0x1 };
53 typedef BP_MANIPULATION (s390_break_insn) s390_breakpoint;
55 /* Decoding S/390 instructions. */
57 /* Read a single instruction from address AT. */
60 s390_readinstruction (bfd_byte instr[], CORE_ADDR at)
62 static int s390_instrlen[] = { 2, 4, 4, 6 };
65 if (target_read_memory (at, &instr[0], 2))
67 instrlen = s390_instrlen[instr[0] >> 6];
70 if (target_read_memory (at + 2, &instr[2], instrlen - 2))
76 /* The functions below are for recognizing and decoding S/390
77 instructions of various formats. Each of them checks whether INSN
78 is an instruction of the given format, with the specified opcodes.
79 If it is, it sets the remaining arguments to the values of the
80 instruction's fields, and returns a non-zero value; otherwise, it
83 These functions' arguments appear in the order they appear in the
84 instruction, not in the machine-language form. So, opcodes always
85 come first, even though they're sometimes scattered around the
86 instructions. And displacements appear before base and extension
87 registers, as they do in the assembly syntax, not at the end, as
88 they do in the machine language.
90 Test for RI instruction format. */
93 is_ri (bfd_byte *insn, int op1, int op2, unsigned int *r1, int *i2)
95 if (insn[0] == op1 && (insn[1] & 0xf) == op2)
97 *r1 = (insn[1] >> 4) & 0xf;
98 /* i2 is a 16-bit signed quantity. */
99 *i2 = (((insn[2] << 8) | insn[3]) ^ 0x8000) - 0x8000;
106 /* Test for RIL instruction format. See comment on is_ri for details. */
109 is_ril (bfd_byte *insn, int op1, int op2,
110 unsigned int *r1, int *i2)
112 if (insn[0] == op1 && (insn[1] & 0xf) == op2)
114 *r1 = (insn[1] >> 4) & 0xf;
115 /* i2 is a signed quantity. If the host 'int' is 32 bits long,
116 no sign extension is necessary, but we don't want to assume
118 *i2 = (((insn[2] << 24)
121 | (insn[5])) ^ 0x80000000) - 0x80000000;
128 /* Test for RR instruction format. See comment on is_ri for details. */
131 is_rr (bfd_byte *insn, int op, unsigned int *r1, unsigned int *r2)
135 *r1 = (insn[1] >> 4) & 0xf;
143 /* Test for RRE instruction format. See comment on is_ri for details. */
146 is_rre (bfd_byte *insn, int op, unsigned int *r1, unsigned int *r2)
148 if (((insn[0] << 8) | insn[1]) == op)
150 /* Yes, insn[3]. insn[2] is unused in RRE format. */
151 *r1 = (insn[3] >> 4) & 0xf;
159 /* Test for RS instruction format. See comment on is_ri for details. */
162 is_rs (bfd_byte *insn, int op,
163 unsigned int *r1, unsigned int *r3, int *d2, unsigned int *b2)
167 *r1 = (insn[1] >> 4) & 0xf;
169 *b2 = (insn[2] >> 4) & 0xf;
170 *d2 = ((insn[2] & 0xf) << 8) | insn[3];
177 /* Test for RSY instruction format. See comment on is_ri for details. */
180 is_rsy (bfd_byte *insn, int op1, int op2,
181 unsigned int *r1, unsigned int *r3, int *d2, unsigned int *b2)
186 *r1 = (insn[1] >> 4) & 0xf;
188 *b2 = (insn[2] >> 4) & 0xf;
189 /* The 'long displacement' is a 20-bit signed integer. */
190 *d2 = ((((insn[2] & 0xf) << 8) | insn[3] | (insn[4] << 12))
191 ^ 0x80000) - 0x80000;
198 /* Test for RX instruction format. See comment on is_ri for details. */
201 is_rx (bfd_byte *insn, int op,
202 unsigned int *r1, int *d2, unsigned int *x2, unsigned int *b2)
206 *r1 = (insn[1] >> 4) & 0xf;
208 *b2 = (insn[2] >> 4) & 0xf;
209 *d2 = ((insn[2] & 0xf) << 8) | insn[3];
216 /* Test for RXY instruction format. See comment on is_ri for details. */
219 is_rxy (bfd_byte *insn, int op1, int op2,
220 unsigned int *r1, int *d2, unsigned int *x2, unsigned int *b2)
225 *r1 = (insn[1] >> 4) & 0xf;
227 *b2 = (insn[2] >> 4) & 0xf;
228 /* The 'long displacement' is a 20-bit signed integer. */
229 *d2 = ((((insn[2] & 0xf) << 8) | insn[3] | (insn[4] << 12))
230 ^ 0x80000) - 0x80000;
237 /* A helper for s390_software_single_step, decides if an instruction
238 is a partial-execution instruction that needs to be executed until
239 completion when in record mode. If it is, returns 1 and writes
240 instruction length to a pointer. */
243 s390_is_partial_instruction (struct gdbarch *gdbarch, CORE_ADDR loc, int *len)
245 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
248 insn = read_memory_integer (loc, 2, byte_order);
252 case 0xa8: /* MVCLE */
258 insn = read_memory_integer (loc + 4, 2, byte_order);
259 if ((insn & 0xff) == 0x8e)
271 case 0xb255: /* MVST */
272 case 0xb263: /* CMPSC */
273 case 0xb2a5: /* TRE */
274 case 0xb2a6: /* CU21 */
275 case 0xb2a7: /* CU12 */
276 case 0xb9b0: /* CU14 */
277 case 0xb9b1: /* CU24 */
278 case 0xb9b2: /* CU41 */
279 case 0xb9b3: /* CU42 */
280 case 0xb92a: /* KMF */
281 case 0xb92b: /* KMO */
282 case 0xb92f: /* KMC */
283 case 0xb92d: /* KMCTR */
284 case 0xb92e: /* KM */
285 case 0xb93c: /* PPNO */
286 case 0xb990: /* TRTT */
287 case 0xb991: /* TRTO */
288 case 0xb992: /* TROT */
289 case 0xb993: /* TROO */
297 /* Implement the "software_single_step" gdbarch method, needed to single step
298 through instructions like MVCLE in record mode, to make sure they are
299 executed to completion. Without that, record will save the full length
300 of destination buffer on every iteration, even though the CPU will only
301 process about 4kiB of it each time, leading to O(n**2) memory and time
304 static std::vector<CORE_ADDR>
305 s390_software_single_step (struct regcache *regcache)
307 struct gdbarch *gdbarch = regcache->arch ();
308 CORE_ADDR loc = regcache_read_pc (regcache);
309 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
313 /* Special handling only if recording. */
314 if (!record_full_is_used ())
317 /* First, match a partial instruction. */
318 if (!s390_is_partial_instruction (gdbarch, loc, &len))
323 /* Second, look for a branch back to it. */
324 insn = read_memory_integer (loc, 2, byte_order);
325 if (insn != 0xa714) /* BRC with mask 1 */
328 insn = read_memory_integer (loc + 2, 2, byte_order);
329 if (insn != (uint16_t) -(len / 2))
334 /* Found it, step past the whole thing. */
338 /* Displaced stepping. */
340 /* Return true if INSN is a non-branch RIL-b or RIL-c format
344 is_non_branch_ril (gdb_byte *insn)
346 gdb_byte op1 = insn[0];
350 gdb_byte op2 = insn[1] & 0x0f;
354 case 0x02: /* llhrl */
355 case 0x04: /* lghrl */
356 case 0x05: /* lhrl */
357 case 0x06: /* llghrl */
358 case 0x07: /* sthrl */
359 case 0x08: /* lgrl */
360 case 0x0b: /* stgrl */
361 case 0x0c: /* lgfrl */
363 case 0x0e: /* llgfrl */
364 case 0x0f: /* strl */
368 else if (op1 == 0xc6)
370 gdb_byte op2 = insn[1] & 0x0f;
374 case 0x00: /* exrl */
375 case 0x02: /* pfdrl */
376 case 0x04: /* cghrl */
377 case 0x05: /* chrl */
378 case 0x06: /* clghrl */
379 case 0x07: /* clhrl */
380 case 0x08: /* cgrl */
381 case 0x0a: /* clgrl */
382 case 0x0c: /* cgfrl */
384 case 0x0e: /* clgfrl */
385 case 0x0f: /* clrl */
393 typedef buf_displaced_step_closure s390_displaced_step_closure;
395 /* Implementation of gdbarch_displaced_step_copy_insn. */
397 static struct displaced_step_closure *
398 s390_displaced_step_copy_insn (struct gdbarch *gdbarch,
399 CORE_ADDR from, CORE_ADDR to,
400 struct regcache *regs)
402 size_t len = gdbarch_max_insn_length (gdbarch);
403 std::unique_ptr<s390_displaced_step_closure> closure
404 (new s390_displaced_step_closure (len));
405 gdb_byte *buf = closure->buf.data ();
407 read_memory (from, buf, len);
409 /* Adjust the displacement field of PC-relative RIL instructions,
410 except branches. The latter are handled in the fixup hook. */
411 if (is_non_branch_ril (buf))
415 offset = extract_signed_integer (buf + 2, 4, BFD_ENDIAN_BIG);
416 offset = (from - to + offset * 2) / 2;
418 /* If the instruction is too far from the jump pad, punt. This
419 will usually happen with instructions in shared libraries.
420 We could probably support these by rewriting them to be
421 absolute or fully emulating them. */
422 if (offset < INT32_MIN || offset > INT32_MAX)
424 /* Let the core fall back to stepping over the breakpoint
428 fprintf_unfiltered (gdb_stdlog,
429 "displaced: can't displaced step "
430 "RIL instruction: offset %s out of range\n",
437 store_signed_integer (buf + 2, 4, BFD_ENDIAN_BIG, offset);
440 write_memory (to, buf, len);
444 fprintf_unfiltered (gdb_stdlog, "displaced: copy %s->%s: ",
445 paddress (gdbarch, from), paddress (gdbarch, to));
446 displaced_step_dump_bytes (gdb_stdlog, buf, len);
449 return closure.release ();
452 /* Fix up the state of registers and memory after having single-stepped
453 a displaced instruction. */
456 s390_displaced_step_fixup (struct gdbarch *gdbarch,
457 struct displaced_step_closure *closure_,
458 CORE_ADDR from, CORE_ADDR to,
459 struct regcache *regs)
461 /* Our closure is a copy of the instruction. */
462 s390_displaced_step_closure *closure
463 = (s390_displaced_step_closure *) closure_;
464 gdb_byte *insn = closure->buf.data ();
465 static int s390_instrlen[] = { 2, 4, 4, 6 };
466 int insnlen = s390_instrlen[insn[0] >> 6];
468 /* Fields for various kinds of instructions. */
469 unsigned int b2, r1, r2, x2, r3;
472 /* Get current PC and addressing mode bit. */
473 CORE_ADDR pc = regcache_read_pc (regs);
476 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
478 regcache_cooked_read_unsigned (regs, S390_PSWA_REGNUM, &amode);
483 fprintf_unfiltered (gdb_stdlog,
484 "displaced: (s390) fixup (%s, %s) pc %s len %d amode 0x%x\n",
485 paddress (gdbarch, from), paddress (gdbarch, to),
486 paddress (gdbarch, pc), insnlen, (int) amode);
488 /* Handle absolute branch and save instructions. */
489 if (is_rr (insn, op_basr, &r1, &r2)
490 || is_rx (insn, op_bas, &r1, &d2, &x2, &b2))
492 /* Recompute saved return address in R1. */
493 regcache_cooked_write_unsigned (regs, S390_R0_REGNUM + r1,
494 amode | (from + insnlen));
497 /* Handle absolute branch instructions. */
498 else if (is_rr (insn, op_bcr, &r1, &r2)
499 || is_rx (insn, op_bc, &r1, &d2, &x2, &b2)
500 || is_rr (insn, op_bctr, &r1, &r2)
501 || is_rre (insn, op_bctgr, &r1, &r2)
502 || is_rx (insn, op_bct, &r1, &d2, &x2, &b2)
503 || is_rxy (insn, op1_bctg, op2_brctg, &r1, &d2, &x2, &b2)
504 || is_rs (insn, op_bxh, &r1, &r3, &d2, &b2)
505 || is_rsy (insn, op1_bxhg, op2_bxhg, &r1, &r3, &d2, &b2)
506 || is_rs (insn, op_bxle, &r1, &r3, &d2, &b2)
507 || is_rsy (insn, op1_bxleg, op2_bxleg, &r1, &r3, &d2, &b2))
509 /* Update PC iff branch was *not* taken. */
510 if (pc == to + insnlen)
511 regcache_write_pc (regs, from + insnlen);
514 /* Handle PC-relative branch and save instructions. */
515 else if (is_ri (insn, op1_bras, op2_bras, &r1, &i2)
516 || is_ril (insn, op1_brasl, op2_brasl, &r1, &i2))
519 regcache_write_pc (regs, pc - to + from);
520 /* Recompute saved return address in R1. */
521 regcache_cooked_write_unsigned (regs, S390_R0_REGNUM + r1,
522 amode | (from + insnlen));
525 /* Handle LOAD ADDRESS RELATIVE LONG. */
526 else if (is_ril (insn, op1_larl, op2_larl, &r1, &i2))
529 regcache_write_pc (regs, from + insnlen);
530 /* Recompute output address in R1. */
531 regcache_cooked_write_unsigned (regs, S390_R0_REGNUM + r1,
532 amode | (from + i2 * 2));
535 /* If we executed a breakpoint instruction, point PC right back at it. */
536 else if (insn[0] == 0x0 && insn[1] == 0x1)
537 regcache_write_pc (regs, from);
539 /* For any other insn, adjust PC by negated displacement. PC then
540 points right after the original instruction, except for PC-relative
541 branches, where it points to the adjusted branch target. */
543 regcache_write_pc (regs, pc - to + from);
546 fprintf_unfiltered (gdb_stdlog,
547 "displaced: (s390) pc is now %s\n",
548 paddress (gdbarch, regcache_read_pc (regs)));
551 /* Implement displaced_step_hw_singlestep gdbarch method. */
554 s390_displaced_step_hw_singlestep (struct gdbarch *gdbarch,
555 struct displaced_step_closure *closure)
560 /* Prologue analysis. */
562 struct s390_prologue_data {
565 struct pv_area *stack;
567 /* The size and byte-order of a GPR or FPR. */
570 enum bfd_endian byte_order;
572 /* The general-purpose registers. */
573 pv_t gpr[S390_NUM_GPRS];
575 /* The floating-point registers. */
576 pv_t fpr[S390_NUM_FPRS];
578 /* The offset relative to the CFA where the incoming GPR N was saved
579 by the function prologue. 0 if not saved or unknown. */
580 int gpr_slot[S390_NUM_GPRS];
582 /* Likewise for FPRs. */
583 int fpr_slot[S390_NUM_FPRS];
585 /* Nonzero if the backchain was saved. This is assumed to be the
586 case when the incoming SP is saved at the current SP location. */
587 int back_chain_saved_p;
590 /* Return the effective address for an X-style instruction, like:
594 Here, X2 and B2 are registers, and D2 is a signed 20-bit
595 constant; the effective address is the sum of all three. If either
596 X2 or B2 are zero, then it doesn't contribute to the sum --- this
597 means that r0 can't be used as either X2 or B2. */
600 s390_addr (struct s390_prologue_data *data,
601 int d2, unsigned int x2, unsigned int b2)
605 result = pv_constant (d2);
607 result = pv_add (result, data->gpr[x2]);
609 result = pv_add (result, data->gpr[b2]);
614 /* Do a SIZE-byte store of VALUE to D2(X2,B2). */
617 s390_store (struct s390_prologue_data *data,
618 int d2, unsigned int x2, unsigned int b2, CORE_ADDR size,
621 pv_t addr = s390_addr (data, d2, x2, b2);
624 /* Check whether we are storing the backchain. */
625 offset = pv_subtract (data->gpr[S390_SP_REGNUM - S390_R0_REGNUM], addr);
627 if (pv_is_constant (offset) && offset.k == 0)
628 if (size == data->gpr_size
629 && pv_is_register_k (value, S390_SP_REGNUM, 0))
631 data->back_chain_saved_p = 1;
635 /* Check whether we are storing a register into the stack. */
636 if (!data->stack->store_would_trash (addr))
637 data->stack->store (addr, size, value);
639 /* Note: If this is some store we cannot identify, you might think we
640 should forget our cached values, as any of those might have been hit.
642 However, we make the assumption that the register save areas are only
643 ever stored to once in any given function, and we do recognize these
644 stores. Thus every store we cannot recognize does not hit our data. */
647 /* Do a SIZE-byte load from D2(X2,B2). */
650 s390_load (struct s390_prologue_data *data,
651 int d2, unsigned int x2, unsigned int b2, CORE_ADDR size)
654 pv_t addr = s390_addr (data, d2, x2, b2);
656 /* If it's a load from an in-line constant pool, then we can
657 simulate that, under the assumption that the code isn't
658 going to change between the time the processor actually
659 executed it creating the current frame, and the time when
660 we're analyzing the code to unwind past that frame. */
661 if (pv_is_constant (addr))
663 struct target_section *secp;
664 secp = target_section_by_addr (current_top_target (), addr.k);
666 && (bfd_get_section_flags (secp->the_bfd_section->owner,
667 secp->the_bfd_section)
669 return pv_constant (read_memory_integer (addr.k, size,
673 /* Check whether we are accessing one of our save slots. */
674 return data->stack->fetch (addr, size);
677 /* Function for finding saved registers in a 'struct pv_area'; we pass
678 this to pv_area::scan.
680 If VALUE is a saved register, ADDR says it was saved at a constant
681 offset from the frame base, and SIZE indicates that the whole
682 register was saved, record its offset in the reg_offset table in
686 s390_check_for_saved (void *data_untyped, pv_t addr,
687 CORE_ADDR size, pv_t value)
689 struct s390_prologue_data *data = (struct s390_prologue_data *) data_untyped;
692 if (!pv_is_register (addr, S390_SP_REGNUM))
695 offset = 16 * data->gpr_size + 32 - addr.k;
697 /* If we are storing the original value of a register, we want to
698 record the CFA offset. If the same register is stored multiple
699 times, the stack slot with the highest address counts. */
701 for (i = 0; i < S390_NUM_GPRS; i++)
702 if (size == data->gpr_size
703 && pv_is_register_k (value, S390_R0_REGNUM + i, 0))
704 if (data->gpr_slot[i] == 0
705 || data->gpr_slot[i] > offset)
707 data->gpr_slot[i] = offset;
711 for (i = 0; i < S390_NUM_FPRS; i++)
712 if (size == data->fpr_size
713 && pv_is_register_k (value, S390_F0_REGNUM + i, 0))
714 if (data->fpr_slot[i] == 0
715 || data->fpr_slot[i] > offset)
717 data->fpr_slot[i] = offset;
722 /* Analyze the prologue of the function starting at START_PC, continuing at
723 most until CURRENT_PC. Initialize DATA to hold all information we find
724 out about the state of the registers and stack slots. Return the address
725 of the instruction after the last one that changed the SP, FP, or back
726 chain; or zero on error. */
729 s390_analyze_prologue (struct gdbarch *gdbarch,
731 CORE_ADDR current_pc,
732 struct s390_prologue_data *data)
734 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
737 The address of the instruction after the last one that changed
738 the SP, FP, or back chain; zero if we got an error trying to
740 CORE_ADDR result = start_pc;
742 /* The current PC for our abstract interpretation. */
745 /* The address of the next instruction after that. */
748 pv_area stack (S390_SP_REGNUM, gdbarch_addr_bit (gdbarch));
749 scoped_restore restore_stack = make_scoped_restore (&data->stack, &stack);
751 /* Set up everything's initial value. */
755 /* For the purpose of prologue tracking, we consider the GPR size to
756 be equal to the ABI word size, even if it is actually larger
757 (i.e. when running a 32-bit binary under a 64-bit kernel). */
758 data->gpr_size = word_size;
760 data->byte_order = gdbarch_byte_order (gdbarch);
762 for (i = 0; i < S390_NUM_GPRS; i++)
763 data->gpr[i] = pv_register (S390_R0_REGNUM + i, 0);
765 for (i = 0; i < S390_NUM_FPRS; i++)
766 data->fpr[i] = pv_register (S390_F0_REGNUM + i, 0);
768 for (i = 0; i < S390_NUM_GPRS; i++)
769 data->gpr_slot[i] = 0;
771 for (i = 0; i < S390_NUM_FPRS; i++)
772 data->fpr_slot[i] = 0;
774 data->back_chain_saved_p = 0;
777 /* Start interpreting instructions, until we hit the frame's
778 current PC or the first branch instruction. */
779 for (pc = start_pc; pc > 0 && pc < current_pc; pc = next_pc)
781 bfd_byte insn[S390_MAX_INSTR_SIZE];
782 int insn_len = s390_readinstruction (insn, pc);
784 bfd_byte dummy[S390_MAX_INSTR_SIZE] = { 0 };
785 bfd_byte *insn32 = word_size == 4 ? insn : dummy;
786 bfd_byte *insn64 = word_size == 8 ? insn : dummy;
788 /* Fields for various kinds of instructions. */
789 unsigned int b2, r1, r2, x2, r3;
792 /* The values of SP and FP before this instruction,
793 for detecting instructions that change them. */
794 pv_t pre_insn_sp, pre_insn_fp;
795 /* Likewise for the flag whether the back chain was saved. */
796 int pre_insn_back_chain_saved_p;
798 /* If we got an error trying to read the instruction, report it. */
805 next_pc = pc + insn_len;
807 pre_insn_sp = data->gpr[S390_SP_REGNUM - S390_R0_REGNUM];
808 pre_insn_fp = data->gpr[S390_FRAME_REGNUM - S390_R0_REGNUM];
809 pre_insn_back_chain_saved_p = data->back_chain_saved_p;
811 /* LHI r1, i2 --- load halfword immediate. */
812 /* LGHI r1, i2 --- load halfword immediate (64-bit version). */
813 /* LGFI r1, i2 --- load fullword immediate. */
814 if (is_ri (insn32, op1_lhi, op2_lhi, &r1, &i2)
815 || is_ri (insn64, op1_lghi, op2_lghi, &r1, &i2)
816 || is_ril (insn, op1_lgfi, op2_lgfi, &r1, &i2))
817 data->gpr[r1] = pv_constant (i2);
819 /* LR r1, r2 --- load from register. */
820 /* LGR r1, r2 --- load from register (64-bit version). */
821 else if (is_rr (insn32, op_lr, &r1, &r2)
822 || is_rre (insn64, op_lgr, &r1, &r2))
823 data->gpr[r1] = data->gpr[r2];
825 /* L r1, d2(x2, b2) --- load. */
826 /* LY r1, d2(x2, b2) --- load (long-displacement version). */
827 /* LG r1, d2(x2, b2) --- load (64-bit version). */
828 else if (is_rx (insn32, op_l, &r1, &d2, &x2, &b2)
829 || is_rxy (insn32, op1_ly, op2_ly, &r1, &d2, &x2, &b2)
830 || is_rxy (insn64, op1_lg, op2_lg, &r1, &d2, &x2, &b2))
831 data->gpr[r1] = s390_load (data, d2, x2, b2, data->gpr_size);
833 /* ST r1, d2(x2, b2) --- store. */
834 /* STY r1, d2(x2, b2) --- store (long-displacement version). */
835 /* STG r1, d2(x2, b2) --- store (64-bit version). */
836 else if (is_rx (insn32, op_st, &r1, &d2, &x2, &b2)
837 || is_rxy (insn32, op1_sty, op2_sty, &r1, &d2, &x2, &b2)
838 || is_rxy (insn64, op1_stg, op2_stg, &r1, &d2, &x2, &b2))
839 s390_store (data, d2, x2, b2, data->gpr_size, data->gpr[r1]);
841 /* STD r1, d2(x2,b2) --- store floating-point register. */
842 else if (is_rx (insn, op_std, &r1, &d2, &x2, &b2))
843 s390_store (data, d2, x2, b2, data->fpr_size, data->fpr[r1]);
845 /* STM r1, r3, d2(b2) --- store multiple. */
846 /* STMY r1, r3, d2(b2) --- store multiple (long-displacement
848 /* STMG r1, r3, d2(b2) --- store multiple (64-bit version). */
849 else if (is_rs (insn32, op_stm, &r1, &r3, &d2, &b2)
850 || is_rsy (insn32, op1_stmy, op2_stmy, &r1, &r3, &d2, &b2)
851 || is_rsy (insn64, op1_stmg, op2_stmg, &r1, &r3, &d2, &b2))
853 for (; r1 <= r3; r1++, d2 += data->gpr_size)
854 s390_store (data, d2, 0, b2, data->gpr_size, data->gpr[r1]);
857 /* AHI r1, i2 --- add halfword immediate. */
858 /* AGHI r1, i2 --- add halfword immediate (64-bit version). */
859 /* AFI r1, i2 --- add fullword immediate. */
860 /* AGFI r1, i2 --- add fullword immediate (64-bit version). */
861 else if (is_ri (insn32, op1_ahi, op2_ahi, &r1, &i2)
862 || is_ri (insn64, op1_aghi, op2_aghi, &r1, &i2)
863 || is_ril (insn32, op1_afi, op2_afi, &r1, &i2)
864 || is_ril (insn64, op1_agfi, op2_agfi, &r1, &i2))
865 data->gpr[r1] = pv_add_constant (data->gpr[r1], i2);
867 /* ALFI r1, i2 --- add logical immediate. */
868 /* ALGFI r1, i2 --- add logical immediate (64-bit version). */
869 else if (is_ril (insn32, op1_alfi, op2_alfi, &r1, &i2)
870 || is_ril (insn64, op1_algfi, op2_algfi, &r1, &i2))
871 data->gpr[r1] = pv_add_constant (data->gpr[r1],
872 (CORE_ADDR)i2 & 0xffffffff);
874 /* AR r1, r2 -- add register. */
875 /* AGR r1, r2 -- add register (64-bit version). */
876 else if (is_rr (insn32, op_ar, &r1, &r2)
877 || is_rre (insn64, op_agr, &r1, &r2))
878 data->gpr[r1] = pv_add (data->gpr[r1], data->gpr[r2]);
880 /* A r1, d2(x2, b2) -- add. */
881 /* AY r1, d2(x2, b2) -- add (long-displacement version). */
882 /* AG r1, d2(x2, b2) -- add (64-bit version). */
883 else if (is_rx (insn32, op_a, &r1, &d2, &x2, &b2)
884 || is_rxy (insn32, op1_ay, op2_ay, &r1, &d2, &x2, &b2)
885 || is_rxy (insn64, op1_ag, op2_ag, &r1, &d2, &x2, &b2))
886 data->gpr[r1] = pv_add (data->gpr[r1],
887 s390_load (data, d2, x2, b2, data->gpr_size));
889 /* SLFI r1, i2 --- subtract logical immediate. */
890 /* SLGFI r1, i2 --- subtract logical immediate (64-bit version). */
891 else if (is_ril (insn32, op1_slfi, op2_slfi, &r1, &i2)
892 || is_ril (insn64, op1_slgfi, op2_slgfi, &r1, &i2))
893 data->gpr[r1] = pv_add_constant (data->gpr[r1],
894 -((CORE_ADDR)i2 & 0xffffffff));
896 /* SR r1, r2 -- subtract register. */
897 /* SGR r1, r2 -- subtract register (64-bit version). */
898 else if (is_rr (insn32, op_sr, &r1, &r2)
899 || is_rre (insn64, op_sgr, &r1, &r2))
900 data->gpr[r1] = pv_subtract (data->gpr[r1], data->gpr[r2]);
902 /* S r1, d2(x2, b2) -- subtract. */
903 /* SY r1, d2(x2, b2) -- subtract (long-displacement version). */
904 /* SG r1, d2(x2, b2) -- subtract (64-bit version). */
905 else if (is_rx (insn32, op_s, &r1, &d2, &x2, &b2)
906 || is_rxy (insn32, op1_sy, op2_sy, &r1, &d2, &x2, &b2)
907 || is_rxy (insn64, op1_sg, op2_sg, &r1, &d2, &x2, &b2))
908 data->gpr[r1] = pv_subtract (data->gpr[r1],
909 s390_load (data, d2, x2, b2, data->gpr_size));
911 /* LA r1, d2(x2, b2) --- load address. */
912 /* LAY r1, d2(x2, b2) --- load address (long-displacement version). */
913 else if (is_rx (insn, op_la, &r1, &d2, &x2, &b2)
914 || is_rxy (insn, op1_lay, op2_lay, &r1, &d2, &x2, &b2))
915 data->gpr[r1] = s390_addr (data, d2, x2, b2);
917 /* LARL r1, i2 --- load address relative long. */
918 else if (is_ril (insn, op1_larl, op2_larl, &r1, &i2))
919 data->gpr[r1] = pv_constant (pc + i2 * 2);
921 /* BASR r1, 0 --- branch and save.
922 Since r2 is zero, this saves the PC in r1, but doesn't branch. */
923 else if (is_rr (insn, op_basr, &r1, &r2)
925 data->gpr[r1] = pv_constant (next_pc);
927 /* BRAS r1, i2 --- branch relative and save. */
928 else if (is_ri (insn, op1_bras, op2_bras, &r1, &i2))
930 data->gpr[r1] = pv_constant (next_pc);
931 next_pc = pc + i2 * 2;
933 /* We'd better not interpret any backward branches. We'll
939 /* BRC/BRCL -- branch relative on condition. Ignore "branch
940 never", branch to following instruction, and "conditional
941 trap" (BRC +2). Otherwise terminate search. */
942 else if (is_ri (insn, op1_brc, op2_brc, &r1, &i2))
944 if (r1 != 0 && i2 != 1 && i2 != 2)
947 else if (is_ril (insn, op1_brcl, op2_brcl, &r1, &i2))
949 if (r1 != 0 && i2 != 3)
953 /* Terminate search when hitting any other branch instruction. */
954 else if (is_rr (insn, op_basr, &r1, &r2)
955 || is_rx (insn, op_bas, &r1, &d2, &x2, &b2)
956 || is_rr (insn, op_bcr, &r1, &r2)
957 || is_rx (insn, op_bc, &r1, &d2, &x2, &b2)
958 || is_ril (insn, op1_brasl, op2_brasl, &r2, &i2))
963 /* An instruction we don't know how to simulate. The only
964 safe thing to do would be to set every value we're tracking
965 to 'unknown'. Instead, we'll be optimistic: we assume that
966 we *can* interpret every instruction that the compiler uses
967 to manipulate any of the data we're interested in here --
968 then we can just ignore anything else. */
971 /* Record the address after the last instruction that changed
972 the FP, SP, or backlink. Ignore instructions that changed
973 them back to their original values --- those are probably
974 restore instructions. (The back chain is never restored,
977 pv_t sp = data->gpr[S390_SP_REGNUM - S390_R0_REGNUM];
978 pv_t fp = data->gpr[S390_FRAME_REGNUM - S390_R0_REGNUM];
980 if ((! pv_is_identical (pre_insn_sp, sp)
981 && ! pv_is_register_k (sp, S390_SP_REGNUM, 0)
982 && sp.kind != pvk_unknown)
983 || (! pv_is_identical (pre_insn_fp, fp)
984 && ! pv_is_register_k (fp, S390_FRAME_REGNUM, 0)
985 && fp.kind != pvk_unknown)
986 || pre_insn_back_chain_saved_p != data->back_chain_saved_p)
991 /* Record where all the registers were saved. */
992 data->stack->scan (s390_check_for_saved, data);
997 /* Advance PC across any function entry prologue instructions to reach
1001 s390_skip_prologue (struct gdbarch *gdbarch, CORE_ADDR pc)
1003 struct s390_prologue_data data;
1004 CORE_ADDR skip_pc, func_addr;
1006 if (find_pc_partial_function (pc, NULL, &func_addr, NULL))
1008 CORE_ADDR post_prologue_pc
1009 = skip_prologue_using_sal (gdbarch, func_addr);
1010 if (post_prologue_pc != 0)
1011 return std::max (pc, post_prologue_pc);
1014 skip_pc = s390_analyze_prologue (gdbarch, pc, (CORE_ADDR)-1, &data);
1015 return skip_pc ? skip_pc : pc;
1018 /* Register handling. */
1020 /* ABI call-saved register information. */
1023 s390_register_call_saved (struct gdbarch *gdbarch, int regnum)
1025 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1029 case ABI_LINUX_S390:
1030 if ((regnum >= S390_R6_REGNUM && regnum <= S390_R15_REGNUM)
1031 || regnum == S390_F4_REGNUM || regnum == S390_F6_REGNUM
1032 || regnum == S390_A0_REGNUM)
1037 case ABI_LINUX_ZSERIES:
1038 if ((regnum >= S390_R6_REGNUM && regnum <= S390_R15_REGNUM)
1039 || (regnum >= S390_F8_REGNUM && regnum <= S390_F15_REGNUM)
1040 || (regnum >= S390_A0_REGNUM && regnum <= S390_A1_REGNUM))
1049 /* The "guess_tracepoint_registers" gdbarch method. */
1052 s390_guess_tracepoint_registers (struct gdbarch *gdbarch,
1053 struct regcache *regcache,
1056 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1057 int sz = register_size (gdbarch, S390_PSWA_REGNUM);
1058 gdb_byte *reg = (gdb_byte *) alloca (sz);
1059 ULONGEST pswm, pswa;
1061 /* Set PSWA from the location and a default PSWM (the only part we're
1062 unlikely to get right is the CC). */
1063 if (tdep->abi == ABI_LINUX_S390)
1065 /* 31-bit PSWA needs high bit set (it's very unlikely the target
1066 was in 24-bit mode). */
1067 pswa = addr | 0x80000000UL;
1068 pswm = 0x070d0000UL;
1073 pswm = 0x0705000180000000ULL;
1076 store_unsigned_integer (reg, sz, gdbarch_byte_order (gdbarch), pswa);
1077 regcache->raw_supply (S390_PSWA_REGNUM, reg);
1079 store_unsigned_integer (reg, sz, gdbarch_byte_order (gdbarch), pswm);
1080 regcache->raw_supply (S390_PSWM_REGNUM, reg);
1083 /* Return the name of register REGNO. Return the empty string for
1084 registers that shouldn't be visible. */
1087 s390_register_name (struct gdbarch *gdbarch, int regnum)
1089 if (regnum >= S390_V0_LOWER_REGNUM
1090 && regnum <= S390_V15_LOWER_REGNUM)
1092 return tdesc_register_name (gdbarch, regnum);
1095 /* DWARF Register Mapping. */
1097 static const short s390_dwarf_regmap[] =
1099 /* 0-15: General Purpose Registers. */
1100 S390_R0_REGNUM, S390_R1_REGNUM, S390_R2_REGNUM, S390_R3_REGNUM,
1101 S390_R4_REGNUM, S390_R5_REGNUM, S390_R6_REGNUM, S390_R7_REGNUM,
1102 S390_R8_REGNUM, S390_R9_REGNUM, S390_R10_REGNUM, S390_R11_REGNUM,
1103 S390_R12_REGNUM, S390_R13_REGNUM, S390_R14_REGNUM, S390_R15_REGNUM,
1105 /* 16-31: Floating Point Registers / Vector Registers 0-15. */
1106 S390_F0_REGNUM, S390_F2_REGNUM, S390_F4_REGNUM, S390_F6_REGNUM,
1107 S390_F1_REGNUM, S390_F3_REGNUM, S390_F5_REGNUM, S390_F7_REGNUM,
1108 S390_F8_REGNUM, S390_F10_REGNUM, S390_F12_REGNUM, S390_F14_REGNUM,
1109 S390_F9_REGNUM, S390_F11_REGNUM, S390_F13_REGNUM, S390_F15_REGNUM,
1111 /* 32-47: Control Registers (not mapped). */
1112 -1, -1, -1, -1, -1, -1, -1, -1,
1113 -1, -1, -1, -1, -1, -1, -1, -1,
1115 /* 48-63: Access Registers. */
1116 S390_A0_REGNUM, S390_A1_REGNUM, S390_A2_REGNUM, S390_A3_REGNUM,
1117 S390_A4_REGNUM, S390_A5_REGNUM, S390_A6_REGNUM, S390_A7_REGNUM,
1118 S390_A8_REGNUM, S390_A9_REGNUM, S390_A10_REGNUM, S390_A11_REGNUM,
1119 S390_A12_REGNUM, S390_A13_REGNUM, S390_A14_REGNUM, S390_A15_REGNUM,
1121 /* 64-65: Program Status Word. */
1125 /* 66-67: Reserved. */
1128 /* 68-83: Vector Registers 16-31. */
1129 S390_V16_REGNUM, S390_V18_REGNUM, S390_V20_REGNUM, S390_V22_REGNUM,
1130 S390_V17_REGNUM, S390_V19_REGNUM, S390_V21_REGNUM, S390_V23_REGNUM,
1131 S390_V24_REGNUM, S390_V26_REGNUM, S390_V28_REGNUM, S390_V30_REGNUM,
1132 S390_V25_REGNUM, S390_V27_REGNUM, S390_V29_REGNUM, S390_V31_REGNUM,
1134 /* End of "official" DWARF registers. The remainder of the map is
1135 for GDB internal use only. */
1137 /* GPR Lower Half Access. */
1138 S390_R0_REGNUM, S390_R1_REGNUM, S390_R2_REGNUM, S390_R3_REGNUM,
1139 S390_R4_REGNUM, S390_R5_REGNUM, S390_R6_REGNUM, S390_R7_REGNUM,
1140 S390_R8_REGNUM, S390_R9_REGNUM, S390_R10_REGNUM, S390_R11_REGNUM,
1141 S390_R12_REGNUM, S390_R13_REGNUM, S390_R14_REGNUM, S390_R15_REGNUM,
1144 enum { s390_dwarf_reg_r0l = ARRAY_SIZE (s390_dwarf_regmap) - 16 };
1146 /* Convert DWARF register number REG to the appropriate register
1147 number used by GDB. */
1150 s390_dwarf_reg_to_regnum (struct gdbarch *gdbarch, int reg)
1152 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1155 /* In a 32-on-64 debug scenario, debug info refers to the full
1156 64-bit GPRs. Note that call frame information still refers to
1157 the 32-bit lower halves, because s390_adjust_frame_regnum uses
1158 special register numbers to access GPRs. */
1159 if (tdep->gpr_full_regnum != -1 && reg >= 0 && reg < 16)
1160 return tdep->gpr_full_regnum + reg;
1162 if (reg >= 0 && reg < ARRAY_SIZE (s390_dwarf_regmap))
1163 gdb_reg = s390_dwarf_regmap[reg];
1165 if (tdep->v0_full_regnum == -1)
1167 if (gdb_reg >= S390_V16_REGNUM && gdb_reg <= S390_V31_REGNUM)
1172 if (gdb_reg >= S390_F0_REGNUM && gdb_reg <= S390_F15_REGNUM)
1173 gdb_reg = gdb_reg - S390_F0_REGNUM + tdep->v0_full_regnum;
1179 /* Pseudo registers. */
1181 /* Check whether REGNUM indicates a coupled general purpose register.
1182 These pseudo-registers are composed of two adjacent gprs. */
1185 regnum_is_gpr_full (struct gdbarch_tdep *tdep, int regnum)
1187 return (tdep->gpr_full_regnum != -1
1188 && regnum >= tdep->gpr_full_regnum
1189 && regnum <= tdep->gpr_full_regnum + 15);
1192 /* Check whether REGNUM indicates a full vector register (v0-v15).
1193 These pseudo-registers are composed of f0-f15 and v0l-v15l. */
1196 regnum_is_vxr_full (struct gdbarch_tdep *tdep, int regnum)
1198 return (tdep->v0_full_regnum != -1
1199 && regnum >= tdep->v0_full_regnum
1200 && regnum <= tdep->v0_full_regnum + 15);
1203 /* 'float' values are stored in the upper half of floating-point
1204 registers, even though we are otherwise a big-endian platform. The
1205 same applies to a 'float' value within a vector. */
1207 static struct value *
1208 s390_value_from_register (struct gdbarch *gdbarch, struct type *type,
1209 int regnum, struct frame_id frame_id)
1211 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1212 struct value *value = default_value_from_register (gdbarch, type,
1214 check_typedef (type);
1216 if ((regnum >= S390_F0_REGNUM && regnum <= S390_F15_REGNUM
1217 && TYPE_LENGTH (type) < 8)
1218 || regnum_is_vxr_full (tdep, regnum)
1219 || (regnum >= S390_V16_REGNUM && regnum <= S390_V31_REGNUM))
1220 set_value_offset (value, 0);
1225 /* Implement pseudo_register_name tdesc method. */
1228 s390_pseudo_register_name (struct gdbarch *gdbarch, int regnum)
1230 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1232 if (regnum == tdep->pc_regnum)
1235 if (regnum == tdep->cc_regnum)
1238 if (regnum_is_gpr_full (tdep, regnum))
1240 static const char *full_name[] = {
1241 "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
1242 "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15"
1244 return full_name[regnum - tdep->gpr_full_regnum];
1247 if (regnum_is_vxr_full (tdep, regnum))
1249 static const char *full_name[] = {
1250 "v0", "v1", "v2", "v3", "v4", "v5", "v6", "v7",
1251 "v8", "v9", "v10", "v11", "v12", "v13", "v14", "v15"
1253 return full_name[regnum - tdep->v0_full_regnum];
1256 internal_error (__FILE__, __LINE__, _("invalid regnum"));
1259 /* Implement pseudo_register_type tdesc method. */
1261 static struct type *
1262 s390_pseudo_register_type (struct gdbarch *gdbarch, int regnum)
1264 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1266 if (regnum == tdep->pc_regnum)
1267 return builtin_type (gdbarch)->builtin_func_ptr;
1269 if (regnum == tdep->cc_regnum)
1270 return builtin_type (gdbarch)->builtin_int;
1272 if (regnum_is_gpr_full (tdep, regnum))
1273 return builtin_type (gdbarch)->builtin_uint64;
1275 if (regnum_is_vxr_full (tdep, regnum))
1276 return tdesc_find_type (gdbarch, "vec128");
1278 internal_error (__FILE__, __LINE__, _("invalid regnum"));
1281 /* Implement pseudo_register_read gdbarch method. */
1283 static enum register_status
1284 s390_pseudo_register_read (struct gdbarch *gdbarch, readable_regcache *regcache,
1285 int regnum, gdb_byte *buf)
1287 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1288 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1289 int regsize = register_size (gdbarch, regnum);
1292 if (regnum == tdep->pc_regnum)
1294 enum register_status status;
1296 status = regcache->raw_read (S390_PSWA_REGNUM, &val);
1297 if (status == REG_VALID)
1299 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
1301 store_unsigned_integer (buf, regsize, byte_order, val);
1306 if (regnum == tdep->cc_regnum)
1308 enum register_status status;
1310 status = regcache->raw_read (S390_PSWM_REGNUM, &val);
1311 if (status == REG_VALID)
1313 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
1314 val = (val >> 12) & 3;
1316 val = (val >> 44) & 3;
1317 store_unsigned_integer (buf, regsize, byte_order, val);
1322 if (regnum_is_gpr_full (tdep, regnum))
1324 enum register_status status;
1327 regnum -= tdep->gpr_full_regnum;
1329 status = regcache->raw_read (S390_R0_REGNUM + regnum, &val);
1330 if (status == REG_VALID)
1331 status = regcache->raw_read (S390_R0_UPPER_REGNUM + regnum,
1333 if (status == REG_VALID)
1335 val |= val_upper << 32;
1336 store_unsigned_integer (buf, regsize, byte_order, val);
1341 if (regnum_is_vxr_full (tdep, regnum))
1343 enum register_status status;
1345 regnum -= tdep->v0_full_regnum;
1347 status = regcache->raw_read (S390_F0_REGNUM + regnum, buf);
1348 if (status == REG_VALID)
1349 status = regcache->raw_read (S390_V0_LOWER_REGNUM + regnum, buf + 8);
1353 internal_error (__FILE__, __LINE__, _("invalid regnum"));
1356 /* Implement pseudo_register_write gdbarch method. */
1359 s390_pseudo_register_write (struct gdbarch *gdbarch, struct regcache *regcache,
1360 int regnum, const gdb_byte *buf)
1362 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1363 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1364 int regsize = register_size (gdbarch, regnum);
1367 if (regnum == tdep->pc_regnum)
1369 val = extract_unsigned_integer (buf, regsize, byte_order);
1370 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
1372 regcache_raw_read_unsigned (regcache, S390_PSWA_REGNUM, &psw);
1373 val = (psw & 0x80000000) | (val & 0x7fffffff);
1375 regcache_raw_write_unsigned (regcache, S390_PSWA_REGNUM, val);
1379 if (regnum == tdep->cc_regnum)
1381 val = extract_unsigned_integer (buf, regsize, byte_order);
1382 regcache_raw_read_unsigned (regcache, S390_PSWM_REGNUM, &psw);
1383 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
1384 val = (psw & ~((ULONGEST)3 << 12)) | ((val & 3) << 12);
1386 val = (psw & ~((ULONGEST)3 << 44)) | ((val & 3) << 44);
1387 regcache_raw_write_unsigned (regcache, S390_PSWM_REGNUM, val);
1391 if (regnum_is_gpr_full (tdep, regnum))
1393 regnum -= tdep->gpr_full_regnum;
1394 val = extract_unsigned_integer (buf, regsize, byte_order);
1395 regcache_raw_write_unsigned (regcache, S390_R0_REGNUM + regnum,
1397 regcache_raw_write_unsigned (regcache, S390_R0_UPPER_REGNUM + regnum,
1402 if (regnum_is_vxr_full (tdep, regnum))
1404 regnum -= tdep->v0_full_regnum;
1405 regcache->raw_write (S390_F0_REGNUM + regnum, buf);
1406 regcache->raw_write (S390_V0_LOWER_REGNUM + regnum, buf + 8);
1410 internal_error (__FILE__, __LINE__, _("invalid regnum"));
1413 /* Register groups. */
1415 /* Implement pseudo_register_reggroup_p tdesc method. */
1418 s390_pseudo_register_reggroup_p (struct gdbarch *gdbarch, int regnum,
1419 struct reggroup *group)
1421 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1423 /* We usually save/restore the whole PSW, which includes PC and CC.
1424 However, some older gdbservers may not support saving/restoring
1425 the whole PSW yet, and will return an XML register description
1426 excluding those from the save/restore register groups. In those
1427 cases, we still need to explicitly save/restore PC and CC in order
1428 to push or pop frames. Since this doesn't hurt anything if we
1429 already save/restore the whole PSW (it's just redundant), we add
1430 PC and CC at this point unconditionally. */
1431 if (group == save_reggroup || group == restore_reggroup)
1432 return regnum == tdep->pc_regnum || regnum == tdep->cc_regnum;
1434 if (group == vector_reggroup)
1435 return regnum_is_vxr_full (tdep, regnum);
1437 if (group == general_reggroup && regnum_is_vxr_full (tdep, regnum))
1440 return default_register_reggroup_p (gdbarch, regnum, group);
1443 /* The "ax_pseudo_register_collect" gdbarch method. */
1446 s390_ax_pseudo_register_collect (struct gdbarch *gdbarch,
1447 struct agent_expr *ax, int regnum)
1449 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1450 if (regnum == tdep->pc_regnum)
1452 ax_reg_mask (ax, S390_PSWA_REGNUM);
1454 else if (regnum == tdep->cc_regnum)
1456 ax_reg_mask (ax, S390_PSWM_REGNUM);
1458 else if (regnum_is_gpr_full (tdep, regnum))
1460 regnum -= tdep->gpr_full_regnum;
1461 ax_reg_mask (ax, S390_R0_REGNUM + regnum);
1462 ax_reg_mask (ax, S390_R0_UPPER_REGNUM + regnum);
1464 else if (regnum_is_vxr_full (tdep, regnum))
1466 regnum -= tdep->v0_full_regnum;
1467 ax_reg_mask (ax, S390_F0_REGNUM + regnum);
1468 ax_reg_mask (ax, S390_V0_LOWER_REGNUM + regnum);
1472 internal_error (__FILE__, __LINE__, _("invalid regnum"));
1477 /* The "ax_pseudo_register_push_stack" gdbarch method. */
1480 s390_ax_pseudo_register_push_stack (struct gdbarch *gdbarch,
1481 struct agent_expr *ax, int regnum)
1483 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1484 if (regnum == tdep->pc_regnum)
1486 ax_reg (ax, S390_PSWA_REGNUM);
1487 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
1489 ax_zero_ext (ax, 31);
1492 else if (regnum == tdep->cc_regnum)
1494 ax_reg (ax, S390_PSWM_REGNUM);
1495 if (register_size (gdbarch, S390_PSWA_REGNUM) == 4)
1496 ax_const_l (ax, 12);
1498 ax_const_l (ax, 44);
1499 ax_simple (ax, aop_rsh_unsigned);
1500 ax_zero_ext (ax, 2);
1502 else if (regnum_is_gpr_full (tdep, regnum))
1504 regnum -= tdep->gpr_full_regnum;
1505 ax_reg (ax, S390_R0_REGNUM + regnum);
1506 ax_reg (ax, S390_R0_UPPER_REGNUM + regnum);
1507 ax_const_l (ax, 32);
1508 ax_simple (ax, aop_lsh);
1509 ax_simple (ax, aop_bit_or);
1511 else if (regnum_is_vxr_full (tdep, regnum))
1513 /* Too large to stuff on the stack. */
1518 internal_error (__FILE__, __LINE__, _("invalid regnum"));
1523 /* The "gen_return_address" gdbarch method. Since this is supposed to be
1524 just a best-effort method, and we don't really have the means to run
1525 the full unwinder here, just collect the link register. */
1528 s390_gen_return_address (struct gdbarch *gdbarch,
1529 struct agent_expr *ax, struct axs_value *value,
1532 value->type = register_type (gdbarch, S390_R14_REGNUM);
1533 value->kind = axs_lvalue_register;
1534 value->u.reg = S390_R14_REGNUM;
1537 /* Address handling. */
1539 /* Implement addr_bits_remove gdbarch method.
1540 Only used for ABI_LINUX_S390. */
1543 s390_addr_bits_remove (struct gdbarch *gdbarch, CORE_ADDR addr)
1545 return addr & 0x7fffffff;
1548 /* Implement addr_class_type_flags gdbarch method.
1549 Only used for ABI_LINUX_ZSERIES. */
1552 s390_address_class_type_flags (int byte_size, int dwarf2_addr_class)
1555 return TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1;
1560 /* Implement addr_class_type_flags_to_name gdbarch method.
1561 Only used for ABI_LINUX_ZSERIES. */
1564 s390_address_class_type_flags_to_name (struct gdbarch *gdbarch, int type_flags)
1566 if (type_flags & TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1)
1572 /* Implement addr_class_name_to_type_flags gdbarch method.
1573 Only used for ABI_LINUX_ZSERIES. */
1576 s390_address_class_name_to_type_flags (struct gdbarch *gdbarch,
1578 int *type_flags_ptr)
1580 if (strcmp (name, "mode32") == 0)
1582 *type_flags_ptr = TYPE_INSTANCE_FLAG_ADDRESS_CLASS_1;
1589 /* Inferior function calls. */
1591 /* Dummy function calls. */
1593 /* Unwrap any single-field structs in TYPE and return the effective
1594 "inner" type. E.g., yield "float" for all these cases:
1598 struct { struct { float x; } x; };
1599 struct { struct { struct { float x; } x; } x; };
1601 However, if an inner type is smaller than MIN_SIZE, abort the
1604 static struct type *
1605 s390_effective_inner_type (struct type *type, unsigned int min_size)
1607 while (TYPE_CODE (type) == TYPE_CODE_STRUCT
1608 && TYPE_NFIELDS (type) == 1)
1610 struct type *inner = check_typedef (TYPE_FIELD_TYPE (type, 0));
1612 if (TYPE_LENGTH (inner) < min_size)
1620 /* Return non-zero if TYPE should be passed like "float" or
1624 s390_function_arg_float (struct type *type)
1626 /* Note that long double as well as complex types are intentionally
1628 if (TYPE_LENGTH (type) > 8)
1631 /* A struct containing just a float or double is passed like a float
1633 type = s390_effective_inner_type (type, 0);
1635 return (TYPE_CODE (type) == TYPE_CODE_FLT
1636 || TYPE_CODE (type) == TYPE_CODE_DECFLOAT);
1639 /* Return non-zero if TYPE should be passed like a vector. */
1642 s390_function_arg_vector (struct type *type)
1644 if (TYPE_LENGTH (type) > 16)
1647 /* Structs containing just a vector are passed like a vector. */
1648 type = s390_effective_inner_type (type, TYPE_LENGTH (type));
1650 return TYPE_CODE (type) == TYPE_CODE_ARRAY && TYPE_VECTOR (type);
1653 /* Determine whether N is a power of two. */
1656 is_power_of_two (unsigned int n)
1658 return n && ((n & (n - 1)) == 0);
1661 /* For an argument whose type is TYPE and which is not passed like a
1662 float or vector, return non-zero if it should be passed like "int"
1666 s390_function_arg_integer (struct type *type)
1668 enum type_code code = TYPE_CODE (type);
1670 if (TYPE_LENGTH (type) > 8)
1673 if (code == TYPE_CODE_INT
1674 || code == TYPE_CODE_ENUM
1675 || code == TYPE_CODE_RANGE
1676 || code == TYPE_CODE_CHAR
1677 || code == TYPE_CODE_BOOL
1678 || code == TYPE_CODE_PTR
1679 || TYPE_IS_REFERENCE (type))
1682 return ((code == TYPE_CODE_UNION || code == TYPE_CODE_STRUCT)
1683 && is_power_of_two (TYPE_LENGTH (type)));
1686 /* Argument passing state: Internal data structure passed to helper
1687 routines of s390_push_dummy_call. */
1689 struct s390_arg_state
1691 /* Register cache, or NULL, if we are in "preparation mode". */
1692 struct regcache *regcache;
1693 /* Next available general/floating-point/vector register for
1694 argument passing. */
1696 /* Current pointer to copy area (grows downwards). */
1698 /* Current pointer to parameter area (grows upwards). */
1702 /* Prepare one argument ARG for a dummy call and update the argument
1703 passing state AS accordingly. If the regcache field in AS is set,
1704 operate in "write mode" and write ARG into the inferior. Otherwise
1705 run "preparation mode" and skip all updates to the inferior. */
1708 s390_handle_arg (struct s390_arg_state *as, struct value *arg,
1709 struct gdbarch_tdep *tdep, int word_size,
1710 enum bfd_endian byte_order, int is_unnamed)
1712 struct type *type = check_typedef (value_type (arg));
1713 unsigned int length = TYPE_LENGTH (type);
1714 int write_mode = as->regcache != NULL;
1716 if (s390_function_arg_float (type))
1718 /* The GNU/Linux for S/390 ABI uses FPRs 0 and 2 to pass
1719 arguments. The GNU/Linux for zSeries ABI uses 0, 2, 4, and
1721 if (as->fr <= (tdep->abi == ABI_LINUX_S390 ? 2 : 6))
1723 /* When we store a single-precision value in an FP register,
1724 it occupies the leftmost bits. */
1726 as->regcache->cooked_write_part (S390_F0_REGNUM + as->fr, 0, length,
1727 value_contents (arg));
1732 /* When we store a single-precision value in a stack slot,
1733 it occupies the rightmost bits. */
1734 as->argp = align_up (as->argp + length, word_size);
1736 write_memory (as->argp - length, value_contents (arg),
1740 else if (tdep->vector_abi == S390_VECTOR_ABI_128
1741 && s390_function_arg_vector (type))
1743 static const char use_vr[] = {24, 26, 28, 30, 25, 27, 29, 31};
1745 if (!is_unnamed && as->vr < ARRAY_SIZE (use_vr))
1747 int regnum = S390_V24_REGNUM + use_vr[as->vr] - 24;
1750 as->regcache->cooked_write_part (regnum, 0, length,
1751 value_contents (arg));
1757 write_memory (as->argp, value_contents (arg), length);
1758 as->argp = align_up (as->argp + length, word_size);
1761 else if (s390_function_arg_integer (type) && length <= word_size)
1763 /* Initialize it just to avoid a GCC false warning. */
1768 /* Place value in least significant bits of the register or
1769 memory word and sign- or zero-extend to full word size.
1770 This also applies to a struct or union. */
1771 val = TYPE_UNSIGNED (type)
1772 ? extract_unsigned_integer (value_contents (arg),
1774 : extract_signed_integer (value_contents (arg),
1775 length, byte_order);
1781 regcache_cooked_write_unsigned (as->regcache,
1782 S390_R0_REGNUM + as->gr,
1789 write_memory_unsigned_integer (as->argp, word_size,
1791 as->argp += word_size;
1794 else if (s390_function_arg_integer (type) && length == 8)
1800 as->regcache->cooked_write (S390_R0_REGNUM + as->gr,
1801 value_contents (arg));
1802 as->regcache->cooked_write (S390_R0_REGNUM + as->gr + 1,
1803 value_contents (arg) + word_size);
1809 /* If we skipped r6 because we couldn't fit a DOUBLE_ARG
1810 in it, then don't go back and use it again later. */
1814 write_memory (as->argp, value_contents (arg), length);
1820 /* This argument type is never passed in registers. Place the
1821 value in the copy area and pass a pointer to it. Use 8-byte
1822 alignment as a conservative assumption. */
1823 as->copy = align_down (as->copy - length, 8);
1825 write_memory (as->copy, value_contents (arg), length);
1830 regcache_cooked_write_unsigned (as->regcache,
1831 S390_R0_REGNUM + as->gr,
1838 write_memory_unsigned_integer (as->argp, word_size,
1839 byte_order, as->copy);
1840 as->argp += word_size;
1845 /* Put the actual parameter values pointed to by ARGS[0..NARGS-1] in
1846 place to be passed to a function, as specified by the "GNU/Linux
1847 for S/390 ELF Application Binary Interface Supplement".
1849 SP is the current stack pointer. We must put arguments, links,
1850 padding, etc. whereever they belong, and return the new stack
1853 If STRUCT_RETURN is non-zero, then the function we're calling is
1854 going to return a structure by value; STRUCT_ADDR is the address of
1855 a block we've allocated for it on the stack.
1857 Our caller has taken care of any type promotions needed to satisfy
1858 prototypes or the old K&R argument-passing rules. */
1861 s390_push_dummy_call (struct gdbarch *gdbarch, struct value *function,
1862 struct regcache *regcache, CORE_ADDR bp_addr,
1863 int nargs, struct value **args, CORE_ADDR sp,
1864 int struct_return, CORE_ADDR struct_addr)
1866 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
1867 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
1868 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1870 struct s390_arg_state arg_state, arg_prep;
1871 CORE_ADDR param_area_start, new_sp;
1872 struct type *ftype = check_typedef (value_type (function));
1874 if (TYPE_CODE (ftype) == TYPE_CODE_PTR)
1875 ftype = check_typedef (TYPE_TARGET_TYPE (ftype));
1878 arg_prep.gr = struct_return ? 3 : 2;
1882 arg_prep.regcache = NULL;
1884 /* Initialize arg_state for "preparation mode". */
1885 arg_state = arg_prep;
1887 /* Update arg_state.copy with the start of the reference-to-copy area
1888 and arg_state.argp with the size of the parameter area. */
1889 for (i = 0; i < nargs; i++)
1890 s390_handle_arg (&arg_state, args[i], tdep, word_size, byte_order,
1891 TYPE_VARARGS (ftype) && i >= TYPE_NFIELDS (ftype));
1893 param_area_start = align_down (arg_state.copy - arg_state.argp, 8);
1895 /* Allocate the standard frame areas: the register save area, the
1896 word reserved for the compiler, and the back chain pointer. */
1897 new_sp = param_area_start - (16 * word_size + 32);
1899 /* Now we have the final stack pointer. Make sure we didn't
1900 underflow; on 31-bit, this would result in addresses with the
1901 high bit set, which causes confusion elsewhere. Note that if we
1902 error out here, stack and registers remain untouched. */
1903 if (gdbarch_addr_bits_remove (gdbarch, new_sp) != new_sp)
1904 error (_("Stack overflow"));
1906 /* Pass the structure return address in general register 2. */
1908 regcache_cooked_write_unsigned (regcache, S390_R2_REGNUM, struct_addr);
1910 /* Initialize arg_state for "write mode". */
1911 arg_state = arg_prep;
1912 arg_state.argp = param_area_start;
1913 arg_state.regcache = regcache;
1915 /* Write all parameters. */
1916 for (i = 0; i < nargs; i++)
1917 s390_handle_arg (&arg_state, args[i], tdep, word_size, byte_order,
1918 TYPE_VARARGS (ftype) && i >= TYPE_NFIELDS (ftype));
1920 /* Store return PSWA. In 31-bit mode, keep addressing mode bit. */
1924 regcache_cooked_read_unsigned (regcache, S390_PSWA_REGNUM, &pswa);
1925 bp_addr = (bp_addr & 0x7fffffff) | (pswa & 0x80000000);
1927 regcache_cooked_write_unsigned (regcache, S390_RETADDR_REGNUM, bp_addr);
1929 /* Store updated stack pointer. */
1930 regcache_cooked_write_unsigned (regcache, S390_SP_REGNUM, new_sp);
1932 /* We need to return the 'stack part' of the frame ID,
1933 which is actually the top of the register save area. */
1934 return param_area_start;
1937 /* Assuming THIS_FRAME is a dummy, return the frame ID of that
1938 dummy frame. The frame ID's base needs to match the TOS value
1939 returned by push_dummy_call, and the PC match the dummy frame's
1942 static struct frame_id
1943 s390_dummy_id (struct gdbarch *gdbarch, struct frame_info *this_frame)
1945 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
1946 CORE_ADDR sp = get_frame_register_unsigned (this_frame, S390_SP_REGNUM);
1947 sp = gdbarch_addr_bits_remove (gdbarch, sp);
1949 return frame_id_build (sp + 16*word_size + 32,
1950 get_frame_pc (this_frame));
1953 /* Implement frame_align gdbarch method. */
1956 s390_frame_align (struct gdbarch *gdbarch, CORE_ADDR addr)
1958 /* Both the 32- and 64-bit ABI's say that the stack pointer should
1959 always be aligned on an eight-byte boundary. */
1963 /* Helper for s390_return_value: Set or retrieve a function return
1964 value if it resides in a register. */
1967 s390_register_return_value (struct gdbarch *gdbarch, struct type *type,
1968 struct regcache *regcache,
1969 gdb_byte *out, const gdb_byte *in)
1971 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1972 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
1973 int length = TYPE_LENGTH (type);
1974 int code = TYPE_CODE (type);
1976 if (code == TYPE_CODE_FLT || code == TYPE_CODE_DECFLOAT)
1978 /* Float-like value: left-aligned in f0. */
1980 regcache->cooked_write_part (S390_F0_REGNUM, 0, length, in);
1982 regcache->cooked_read_part (S390_F0_REGNUM, 0, length, out);
1984 else if (code == TYPE_CODE_ARRAY)
1986 /* Vector: left-aligned in v24. */
1988 regcache->cooked_write_part (S390_V24_REGNUM, 0, length, in);
1990 regcache->cooked_read_part (S390_V24_REGNUM, 0, length, out);
1992 else if (length <= word_size)
1994 /* Integer: zero- or sign-extended in r2. */
1996 regcache->cooked_read_part (S390_R2_REGNUM, word_size - length, length,
1998 else if (TYPE_UNSIGNED (type))
1999 regcache_cooked_write_unsigned
2000 (regcache, S390_R2_REGNUM,
2001 extract_unsigned_integer (in, length, byte_order));
2003 regcache_cooked_write_signed
2004 (regcache, S390_R2_REGNUM,
2005 extract_signed_integer (in, length, byte_order));
2007 else if (length == 2 * word_size)
2009 /* Double word: in r2 and r3. */
2012 regcache->cooked_write (S390_R2_REGNUM, in);
2013 regcache->cooked_write (S390_R3_REGNUM, in + word_size);
2017 regcache->cooked_read (S390_R2_REGNUM, out);
2018 regcache->cooked_read (S390_R3_REGNUM, out + word_size);
2022 internal_error (__FILE__, __LINE__, _("invalid return type"));
2025 /* Implement the 'return_value' gdbarch method. */
2027 static enum return_value_convention
2028 s390_return_value (struct gdbarch *gdbarch, struct value *function,
2029 struct type *type, struct regcache *regcache,
2030 gdb_byte *out, const gdb_byte *in)
2032 enum return_value_convention rvc;
2034 type = check_typedef (type);
2036 switch (TYPE_CODE (type))
2038 case TYPE_CODE_STRUCT:
2039 case TYPE_CODE_UNION:
2040 case TYPE_CODE_COMPLEX:
2041 rvc = RETURN_VALUE_STRUCT_CONVENTION;
2043 case TYPE_CODE_ARRAY:
2044 rvc = (gdbarch_tdep (gdbarch)->vector_abi == S390_VECTOR_ABI_128
2045 && TYPE_LENGTH (type) <= 16 && TYPE_VECTOR (type))
2046 ? RETURN_VALUE_REGISTER_CONVENTION
2047 : RETURN_VALUE_STRUCT_CONVENTION;
2050 rvc = TYPE_LENGTH (type) <= 8
2051 ? RETURN_VALUE_REGISTER_CONVENTION
2052 : RETURN_VALUE_STRUCT_CONVENTION;
2055 if (in != NULL || out != NULL)
2057 if (rvc == RETURN_VALUE_REGISTER_CONVENTION)
2058 s390_register_return_value (gdbarch, type, regcache, out, in);
2059 else if (in != NULL)
2060 error (_("Cannot set function return value."));
2062 error (_("Function return value unknown."));
2068 /* Frame unwinding. */
2070 /* Implmement the stack_frame_destroyed_p gdbarch method. */
2073 s390_stack_frame_destroyed_p (struct gdbarch *gdbarch, CORE_ADDR pc)
2075 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
2077 /* In frameless functions, there's no frame to destroy and thus
2078 we don't care about the epilogue.
2080 In functions with frame, the epilogue sequence is a pair of
2081 a LM-type instruction that restores (amongst others) the
2082 return register %r14 and the stack pointer %r15, followed
2083 by a branch 'br %r14' --or equivalent-- that effects the
2086 In that situation, this function needs to return 'true' in
2087 exactly one case: when pc points to that branch instruction.
2089 Thus we try to disassemble the one instructions immediately
2090 preceding pc and check whether it is an LM-type instruction
2091 modifying the stack pointer.
2093 Note that disassembling backwards is not reliable, so there
2094 is a slight chance of false positives here ... */
2097 unsigned int r1, r3, b2;
2101 && !target_read_memory (pc - 4, insn, 4)
2102 && is_rs (insn, op_lm, &r1, &r3, &d2, &b2)
2103 && r3 == S390_SP_REGNUM - S390_R0_REGNUM)
2107 && !target_read_memory (pc - 6, insn, 6)
2108 && is_rsy (insn, op1_lmy, op2_lmy, &r1, &r3, &d2, &b2)
2109 && r3 == S390_SP_REGNUM - S390_R0_REGNUM)
2113 && !target_read_memory (pc - 6, insn, 6)
2114 && is_rsy (insn, op1_lmg, op2_lmg, &r1, &r3, &d2, &b2)
2115 && r3 == S390_SP_REGNUM - S390_R0_REGNUM)
2121 /* Implement unwind_pc gdbarch method. */
2124 s390_unwind_pc (struct gdbarch *gdbarch, struct frame_info *next_frame)
2126 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2128 pc = frame_unwind_register_unsigned (next_frame, tdep->pc_regnum);
2129 return gdbarch_addr_bits_remove (gdbarch, pc);
2132 /* Implement unwind_sp gdbarch method. */
2135 s390_unwind_sp (struct gdbarch *gdbarch, struct frame_info *next_frame)
2138 sp = frame_unwind_register_unsigned (next_frame, S390_SP_REGNUM);
2139 return gdbarch_addr_bits_remove (gdbarch, sp);
2142 /* Helper routine to unwind pseudo registers. */
2144 static struct value *
2145 s390_unwind_pseudo_register (struct frame_info *this_frame, int regnum)
2147 struct gdbarch *gdbarch = get_frame_arch (this_frame);
2148 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2149 struct type *type = register_type (gdbarch, regnum);
2151 /* Unwind PC via PSW address. */
2152 if (regnum == tdep->pc_regnum)
2156 val = frame_unwind_register_value (this_frame, S390_PSWA_REGNUM);
2157 if (!value_optimized_out (val))
2159 LONGEST pswa = value_as_long (val);
2161 if (TYPE_LENGTH (type) == 4)
2162 return value_from_pointer (type, pswa & 0x7fffffff);
2164 return value_from_pointer (type, pswa);
2168 /* Unwind CC via PSW mask. */
2169 if (regnum == tdep->cc_regnum)
2173 val = frame_unwind_register_value (this_frame, S390_PSWM_REGNUM);
2174 if (!value_optimized_out (val))
2176 LONGEST pswm = value_as_long (val);
2178 if (TYPE_LENGTH (type) == 4)
2179 return value_from_longest (type, (pswm >> 12) & 3);
2181 return value_from_longest (type, (pswm >> 44) & 3);
2185 /* Unwind full GPRs to show at least the lower halves (as the
2186 upper halves are undefined). */
2187 if (regnum_is_gpr_full (tdep, regnum))
2189 int reg = regnum - tdep->gpr_full_regnum;
2192 val = frame_unwind_register_value (this_frame, S390_R0_REGNUM + reg);
2193 if (!value_optimized_out (val))
2194 return value_cast (type, val);
2197 return allocate_optimized_out_value (type);
2200 /* Translate a .eh_frame register to DWARF register, or adjust a
2201 .debug_frame register. */
2204 s390_adjust_frame_regnum (struct gdbarch *gdbarch, int num, int eh_frame_p)
2206 /* See s390_dwarf_reg_to_regnum for comments. */
2207 return (num >= 0 && num < 16) ? num + s390_dwarf_reg_r0l : num;
2210 /* DWARF-2 frame unwinding. */
2212 /* Function to unwind a pseudo-register in dwarf2_frame unwinder. Used by
2213 s390_dwarf2_frame_init_reg. */
2215 static struct value *
2216 s390_dwarf2_prev_register (struct frame_info *this_frame, void **this_cache,
2219 return s390_unwind_pseudo_register (this_frame, regnum);
2222 /* Implement init_reg dwarf2_frame method. */
2225 s390_dwarf2_frame_init_reg (struct gdbarch *gdbarch, int regnum,
2226 struct dwarf2_frame_state_reg *reg,
2227 struct frame_info *this_frame)
2229 /* The condition code (and thus PSW mask) is call-clobbered. */
2230 if (regnum == S390_PSWM_REGNUM)
2231 reg->how = DWARF2_FRAME_REG_UNDEFINED;
2233 /* The PSW address unwinds to the return address. */
2234 else if (regnum == S390_PSWA_REGNUM)
2235 reg->how = DWARF2_FRAME_REG_RA;
2237 /* Fixed registers are call-saved or call-clobbered
2238 depending on the ABI in use. */
2239 else if (regnum < S390_NUM_REGS)
2241 if (s390_register_call_saved (gdbarch, regnum))
2242 reg->how = DWARF2_FRAME_REG_SAME_VALUE;
2244 reg->how = DWARF2_FRAME_REG_UNDEFINED;
2247 /* We install a special function to unwind pseudos. */
2250 reg->how = DWARF2_FRAME_REG_FN;
2251 reg->loc.fn = s390_dwarf2_prev_register;
2255 /* Frame unwinding. */
2257 /* Wrapper for trad_frame_get_prev_register to allow for s390 pseudo
2258 register translation. */
2261 s390_trad_frame_prev_register (struct frame_info *this_frame,
2262 struct trad_frame_saved_reg saved_regs[],
2265 if (regnum < S390_NUM_REGS)
2266 return trad_frame_get_prev_register (this_frame, saved_regs, regnum);
2268 return s390_unwind_pseudo_register (this_frame, regnum);
2271 /* Normal stack frames. */
2273 struct s390_unwind_cache {
2276 CORE_ADDR frame_base;
2277 CORE_ADDR local_base;
2279 struct trad_frame_saved_reg *saved_regs;
2282 /* Unwind THIS_FRAME and write the information into unwind cache INFO using
2283 prologue analysis. Helper for s390_frame_unwind_cache. */
2286 s390_prologue_frame_unwind_cache (struct frame_info *this_frame,
2287 struct s390_unwind_cache *info)
2289 struct gdbarch *gdbarch = get_frame_arch (this_frame);
2290 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
2291 struct s390_prologue_data data;
2292 pv_t *fp = &data.gpr[S390_FRAME_REGNUM - S390_R0_REGNUM];
2293 pv_t *sp = &data.gpr[S390_SP_REGNUM - S390_R0_REGNUM];
2302 struct frame_info *next_frame;
2304 /* Try to find the function start address. If we can't find it, we don't
2305 bother searching for it -- with modern compilers this would be mostly
2306 pointless anyway. Trust that we'll either have valid DWARF-2 CFI data
2307 or else a valid backchain ... */
2308 if (!get_frame_func_if_available (this_frame, &info->func))
2315 /* Try to analyze the prologue. */
2316 result = s390_analyze_prologue (gdbarch, func,
2317 get_frame_pc (this_frame), &data);
2321 /* If this was successful, we should have found the instruction that
2322 sets the stack pointer register to the previous value of the stack
2323 pointer minus the frame size. */
2324 if (!pv_is_register (*sp, S390_SP_REGNUM))
2327 /* A frame size of zero at this point can mean either a real
2328 frameless function, or else a failure to find the prologue.
2329 Perform some sanity checks to verify we really have a
2330 frameless function. */
2333 /* If the next frame is a NORMAL_FRAME, this frame *cannot* have frame
2334 size zero. This is only possible if the next frame is a sentinel
2335 frame, a dummy frame, or a signal trampoline frame. */
2336 /* FIXME: cagney/2004-05-01: This sanity check shouldn't be
2337 needed, instead the code should simpliy rely on its
2339 next_frame = get_next_frame (this_frame);
2340 while (next_frame && get_frame_type (next_frame) == INLINE_FRAME)
2341 next_frame = get_next_frame (next_frame);
2343 && get_frame_type (get_next_frame (this_frame)) == NORMAL_FRAME)
2346 /* If we really have a frameless function, %r14 must be valid
2347 -- in particular, it must point to a different function. */
2348 reg = get_frame_register_unsigned (this_frame, S390_RETADDR_REGNUM);
2349 reg = gdbarch_addr_bits_remove (gdbarch, reg) - 1;
2350 if (get_pc_function_start (reg) == func)
2352 /* However, there is one case where it *is* valid for %r14
2353 to point to the same function -- if this is a recursive
2354 call, and we have stopped in the prologue *before* the
2355 stack frame was allocated.
2357 Recognize this case by looking ahead a bit ... */
2359 struct s390_prologue_data data2;
2360 pv_t *sp = &data2.gpr[S390_SP_REGNUM - S390_R0_REGNUM];
2362 if (!(s390_analyze_prologue (gdbarch, func, (CORE_ADDR)-1, &data2)
2363 && pv_is_register (*sp, S390_SP_REGNUM)
2369 /* OK, we've found valid prologue data. */
2372 /* If the frame pointer originally also holds the same value
2373 as the stack pointer, we're probably using it. If it holds
2374 some other value -- even a constant offset -- it is most
2375 likely used as temp register. */
2376 if (pv_is_identical (*sp, *fp))
2377 frame_pointer = S390_FRAME_REGNUM;
2379 frame_pointer = S390_SP_REGNUM;
2381 /* If we've detected a function with stack frame, we'll still have to
2382 treat it as frameless if we're currently within the function epilog
2383 code at a point where the frame pointer has already been restored.
2384 This can only happen in an innermost frame. */
2385 /* FIXME: cagney/2004-05-01: This sanity check shouldn't be needed,
2386 instead the code should simpliy rely on its analysis. */
2387 next_frame = get_next_frame (this_frame);
2388 while (next_frame && get_frame_type (next_frame) == INLINE_FRAME)
2389 next_frame = get_next_frame (next_frame);
2391 && (next_frame == NULL
2392 || get_frame_type (get_next_frame (this_frame)) != NORMAL_FRAME))
2394 /* See the comment in s390_stack_frame_destroyed_p on why this is
2395 not completely reliable ... */
2396 if (s390_stack_frame_destroyed_p (gdbarch, get_frame_pc (this_frame)))
2398 memset (&data, 0, sizeof (data));
2400 frame_pointer = S390_SP_REGNUM;
2404 /* Once we know the frame register and the frame size, we can unwind
2405 the current value of the frame register from the next frame, and
2406 add back the frame size to arrive that the previous frame's
2407 stack pointer value. */
2408 prev_sp = get_frame_register_unsigned (this_frame, frame_pointer) + size;
2409 cfa = prev_sp + 16*word_size + 32;
2411 /* Set up ABI call-saved/call-clobbered registers. */
2412 for (i = 0; i < S390_NUM_REGS; i++)
2413 if (!s390_register_call_saved (gdbarch, i))
2414 trad_frame_set_unknown (info->saved_regs, i);
2416 /* CC is always call-clobbered. */
2417 trad_frame_set_unknown (info->saved_regs, S390_PSWM_REGNUM);
2419 /* Record the addresses of all register spill slots the prologue parser
2420 has recognized. Consider only registers defined as call-saved by the
2421 ABI; for call-clobbered registers the parser may have recognized
2424 for (i = 0; i < 16; i++)
2425 if (s390_register_call_saved (gdbarch, S390_R0_REGNUM + i)
2426 && data.gpr_slot[i] != 0)
2427 info->saved_regs[S390_R0_REGNUM + i].addr = cfa - data.gpr_slot[i];
2429 for (i = 0; i < 16; i++)
2430 if (s390_register_call_saved (gdbarch, S390_F0_REGNUM + i)
2431 && data.fpr_slot[i] != 0)
2432 info->saved_regs[S390_F0_REGNUM + i].addr = cfa - data.fpr_slot[i];
2434 /* Function return will set PC to %r14. */
2435 info->saved_regs[S390_PSWA_REGNUM] = info->saved_regs[S390_RETADDR_REGNUM];
2437 /* In frameless functions, we unwind simply by moving the return
2438 address to the PC. However, if we actually stored to the
2439 save area, use that -- we might only think the function frameless
2440 because we're in the middle of the prologue ... */
2442 && !trad_frame_addr_p (info->saved_regs, S390_PSWA_REGNUM))
2444 info->saved_regs[S390_PSWA_REGNUM].realreg = S390_RETADDR_REGNUM;
2447 /* Another sanity check: unless this is a frameless function,
2448 we should have found spill slots for SP and PC.
2449 If not, we cannot unwind further -- this happens e.g. in
2450 libc's thread_start routine. */
2453 if (!trad_frame_addr_p (info->saved_regs, S390_SP_REGNUM)
2454 || !trad_frame_addr_p (info->saved_regs, S390_PSWA_REGNUM))
2458 /* We use the current value of the frame register as local_base,
2459 and the top of the register save area as frame_base. */
2462 info->frame_base = prev_sp + 16*word_size + 32;
2463 info->local_base = prev_sp - size;
2469 /* Unwind THIS_FRAME and write the information into unwind cache INFO using
2470 back chain unwinding. Helper for s390_frame_unwind_cache. */
2473 s390_backchain_frame_unwind_cache (struct frame_info *this_frame,
2474 struct s390_unwind_cache *info)
2476 struct gdbarch *gdbarch = get_frame_arch (this_frame);
2477 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
2478 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
2479 CORE_ADDR backchain;
2484 /* Set up ABI call-saved/call-clobbered registers. */
2485 for (i = 0; i < S390_NUM_REGS; i++)
2486 if (!s390_register_call_saved (gdbarch, i))
2487 trad_frame_set_unknown (info->saved_regs, i);
2489 /* CC is always call-clobbered. */
2490 trad_frame_set_unknown (info->saved_regs, S390_PSWM_REGNUM);
2492 /* Get the backchain. */
2493 reg = get_frame_register_unsigned (this_frame, S390_SP_REGNUM);
2494 if (!safe_read_memory_integer (reg, word_size, byte_order, &tmp))
2496 backchain = (CORE_ADDR) tmp;
2498 /* A zero backchain terminates the frame chain. As additional
2499 sanity check, let's verify that the spill slot for SP in the
2500 save area pointed to by the backchain in fact links back to
2503 && safe_read_memory_integer (backchain + 15*word_size,
2504 word_size, byte_order, &sp)
2505 && (CORE_ADDR)sp == backchain)
2507 /* We don't know which registers were saved, but it will have
2508 to be at least %r14 and %r15. This will allow us to continue
2509 unwinding, but other prev-frame registers may be incorrect ... */
2510 info->saved_regs[S390_SP_REGNUM].addr = backchain + 15*word_size;
2511 info->saved_regs[S390_RETADDR_REGNUM].addr = backchain + 14*word_size;
2513 /* Function return will set PC to %r14. */
2514 info->saved_regs[S390_PSWA_REGNUM]
2515 = info->saved_regs[S390_RETADDR_REGNUM];
2517 /* We use the current value of the frame register as local_base,
2518 and the top of the register save area as frame_base. */
2519 info->frame_base = backchain + 16*word_size + 32;
2520 info->local_base = reg;
2523 info->func = get_frame_pc (this_frame);
2526 /* Unwind THIS_FRAME and return the corresponding unwind cache for
2527 s390_frame_unwind and s390_frame_base. */
2529 static struct s390_unwind_cache *
2530 s390_frame_unwind_cache (struct frame_info *this_frame,
2531 void **this_prologue_cache)
2533 struct s390_unwind_cache *info;
2535 if (*this_prologue_cache)
2536 return (struct s390_unwind_cache *) *this_prologue_cache;
2538 info = FRAME_OBSTACK_ZALLOC (struct s390_unwind_cache);
2539 *this_prologue_cache = info;
2540 info->saved_regs = trad_frame_alloc_saved_regs (this_frame);
2542 info->frame_base = -1;
2543 info->local_base = -1;
2547 /* Try to use prologue analysis to fill the unwind cache.
2548 If this fails, fall back to reading the stack backchain. */
2549 if (!s390_prologue_frame_unwind_cache (this_frame, info))
2550 s390_backchain_frame_unwind_cache (this_frame, info);
2552 CATCH (ex, RETURN_MASK_ERROR)
2554 if (ex.error != NOT_AVAILABLE_ERROR)
2555 throw_exception (ex);
2562 /* Implement this_id frame_unwind method for s390_frame_unwind. */
2565 s390_frame_this_id (struct frame_info *this_frame,
2566 void **this_prologue_cache,
2567 struct frame_id *this_id)
2569 struct s390_unwind_cache *info
2570 = s390_frame_unwind_cache (this_frame, this_prologue_cache);
2572 if (info->frame_base == -1)
2574 if (info->func != -1)
2575 *this_id = frame_id_build_unavailable_stack (info->func);
2579 *this_id = frame_id_build (info->frame_base, info->func);
2582 /* Implement prev_register frame_unwind method for s390_frame_unwind. */
2584 static struct value *
2585 s390_frame_prev_register (struct frame_info *this_frame,
2586 void **this_prologue_cache, int regnum)
2588 struct s390_unwind_cache *info
2589 = s390_frame_unwind_cache (this_frame, this_prologue_cache);
2591 return s390_trad_frame_prev_register (this_frame, info->saved_regs, regnum);
2594 /* Default S390 frame unwinder. */
2596 static const struct frame_unwind s390_frame_unwind = {
2598 default_frame_unwind_stop_reason,
2600 s390_frame_prev_register,
2602 default_frame_sniffer
2605 /* Code stubs and their stack frames. For things like PLTs and NULL
2606 function calls (where there is no true frame and the return address
2607 is in the RETADDR register). */
2609 struct s390_stub_unwind_cache
2611 CORE_ADDR frame_base;
2612 struct trad_frame_saved_reg *saved_regs;
2615 /* Unwind THIS_FRAME and return the corresponding unwind cache for
2616 s390_stub_frame_unwind. */
2618 static struct s390_stub_unwind_cache *
2619 s390_stub_frame_unwind_cache (struct frame_info *this_frame,
2620 void **this_prologue_cache)
2622 struct gdbarch *gdbarch = get_frame_arch (this_frame);
2623 int word_size = gdbarch_ptr_bit (gdbarch) / 8;
2624 struct s390_stub_unwind_cache *info;
2627 if (*this_prologue_cache)
2628 return (struct s390_stub_unwind_cache *) *this_prologue_cache;
2630 info = FRAME_OBSTACK_ZALLOC (struct s390_stub_unwind_cache);
2631 *this_prologue_cache = info;
2632 info->saved_regs = trad_frame_alloc_saved_regs (this_frame);
2634 /* The return address is in register %r14. */
2635 info->saved_regs[S390_PSWA_REGNUM].realreg = S390_RETADDR_REGNUM;
2637 /* Retrieve stack pointer and determine our frame base. */
2638 reg = get_frame_register_unsigned (this_frame, S390_SP_REGNUM);
2639 info->frame_base = reg + 16*word_size + 32;
2644 /* Implement this_id frame_unwind method for s390_stub_frame_unwind. */
2647 s390_stub_frame_this_id (struct frame_info *this_frame,
2648 void **this_prologue_cache,
2649 struct frame_id *this_id)
2651 struct s390_stub_unwind_cache *info
2652 = s390_stub_frame_unwind_cache (this_frame, this_prologue_cache);
2653 *this_id = frame_id_build (info->frame_base, get_frame_pc (this_frame));
2656 /* Implement prev_register frame_unwind method for s390_stub_frame_unwind. */
2658 static struct value *
2659 s390_stub_frame_prev_register (struct frame_info *this_frame,
2660 void **this_prologue_cache, int regnum)
2662 struct s390_stub_unwind_cache *info
2663 = s390_stub_frame_unwind_cache (this_frame, this_prologue_cache);
2664 return s390_trad_frame_prev_register (this_frame, info->saved_regs, regnum);
2667 /* Implement sniffer frame_unwind method for s390_stub_frame_unwind. */
2670 s390_stub_frame_sniffer (const struct frame_unwind *self,
2671 struct frame_info *this_frame,
2672 void **this_prologue_cache)
2674 CORE_ADDR addr_in_block;
2675 bfd_byte insn[S390_MAX_INSTR_SIZE];
2677 /* If the current PC points to non-readable memory, we assume we
2678 have trapped due to an invalid function pointer call. We handle
2679 the non-existing current function like a PLT stub. */
2680 addr_in_block = get_frame_address_in_block (this_frame);
2681 if (in_plt_section (addr_in_block)
2682 || s390_readinstruction (insn, get_frame_pc (this_frame)) < 0)
2687 /* S390 stub frame unwinder. */
2689 static const struct frame_unwind s390_stub_frame_unwind = {
2691 default_frame_unwind_stop_reason,
2692 s390_stub_frame_this_id,
2693 s390_stub_frame_prev_register,
2695 s390_stub_frame_sniffer
2698 /* Frame base handling. */
2701 s390_frame_base_address (struct frame_info *this_frame, void **this_cache)
2703 struct s390_unwind_cache *info
2704 = s390_frame_unwind_cache (this_frame, this_cache);
2705 return info->frame_base;
2709 s390_local_base_address (struct frame_info *this_frame, void **this_cache)
2711 struct s390_unwind_cache *info
2712 = s390_frame_unwind_cache (this_frame, this_cache);
2713 return info->local_base;
2716 static const struct frame_base s390_frame_base = {
2718 s390_frame_base_address,
2719 s390_local_base_address,
2720 s390_local_base_address
2723 /* Process record-replay */
2725 /* Takes the intermediate sum of address calculations and masks off upper
2726 bits according to current addressing mode. */
2729 s390_record_address_mask (struct gdbarch *gdbarch, struct regcache *regcache,
2732 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2733 ULONGEST pswm, pswa;
2735 if (tdep->abi == ABI_LINUX_S390)
2737 regcache_raw_read_unsigned (regcache, S390_PSWA_REGNUM, &pswa);
2738 am = pswa >> 31 & 1;
2742 regcache_raw_read_unsigned (regcache, S390_PSWM_REGNUM, &pswm);
2743 am = pswm >> 31 & 3;
2748 return val & 0xffffff;
2750 return val & 0x7fffffff;
2754 fprintf_unfiltered (gdb_stdlog, "Warning: Addressing mode %d used.", am);
2759 /* Calculates memory address using pre-calculated index, raw instruction word
2760 with b and d/dl fields, and raw instruction byte with dh field. Index and
2761 dh should be set to 0 if unused. */
2764 s390_record_calc_disp_common (struct gdbarch *gdbarch, struct regcache *regcache,
2765 ULONGEST x, uint16_t bd, int8_t dh)
2767 uint8_t rb = bd >> 12 & 0xf;
2768 int32_t d = (bd & 0xfff) | ((int32_t)dh << 12);
2770 CORE_ADDR res = d + x;
2773 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + rb, &b);
2776 return s390_record_address_mask (gdbarch, regcache, res);
2779 /* Calculates memory address using raw x, b + d/dl, dh fields from
2780 instruction. rx and dh should be set to 0 if unused. */
2783 s390_record_calc_disp (struct gdbarch *gdbarch, struct regcache *regcache,
2784 uint8_t rx, uint16_t bd, int8_t dh)
2788 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + rx, &x);
2789 return s390_record_calc_disp_common (gdbarch, regcache, x, bd, dh);
2792 /* Calculates memory address for VSCE[GF] instructions. */
2795 s390_record_calc_disp_vsce (struct gdbarch *gdbarch, struct regcache *regcache,
2796 uint8_t vx, uint8_t el, uint8_t es, uint16_t bd,
2797 int8_t dh, CORE_ADDR *res)
2799 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2800 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
2803 if (tdep->v0_full_regnum == -1 || el * es >= 16)
2806 regcache->cooked_read (tdep->v0_full_regnum + vx, buf);
2808 regcache->raw_read (S390_V16_REGNUM + vx - 16, buf);
2809 x = extract_unsigned_integer (buf + el * es, es, byte_order);
2810 *res = s390_record_calc_disp_common (gdbarch, regcache, x, bd, dh);
2814 /* Calculates memory address for instructions with relative long addressing. */
2817 s390_record_calc_rl (struct gdbarch *gdbarch, struct regcache *regcache,
2818 CORE_ADDR addr, uint16_t i1, uint16_t i2)
2820 int32_t ri = i1 << 16 | i2;
2821 return s390_record_address_mask (gdbarch, regcache, addr + (LONGEST)ri * 2);
2824 /* Population count helper. */
2826 static int s390_popcnt (unsigned int x) {
2837 /* Record 64-bit register. */
2840 s390_record_gpr_g (struct gdbarch *gdbarch, struct regcache *regcache, int i)
2842 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2843 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + i))
2845 if (tdep->abi == ABI_LINUX_S390)
2846 if (record_full_arch_list_add_reg (regcache, S390_R0_UPPER_REGNUM + i))
2851 /* Record high 32 bits of a register. */
2854 s390_record_gpr_h (struct gdbarch *gdbarch, struct regcache *regcache, int i)
2856 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2857 if (tdep->abi == ABI_LINUX_S390)
2859 if (record_full_arch_list_add_reg (regcache, S390_R0_UPPER_REGNUM + i))
2864 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + i))
2870 /* Record vector register. */
2873 s390_record_vr (struct gdbarch *gdbarch, struct regcache *regcache, int i)
2877 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + i))
2879 if (record_full_arch_list_add_reg (regcache, S390_V0_LOWER_REGNUM + i))
2884 if (record_full_arch_list_add_reg (regcache, S390_V16_REGNUM + i - 16))
2890 /* Implement process_record gdbarch method. */
2893 s390_process_record (struct gdbarch *gdbarch, struct regcache *regcache,
2896 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
2897 uint16_t insn[3] = {0};
2898 /* Instruction as bytes. */
2900 /* Instruction as nibbles. */
2902 /* Instruction vector registers. */
2904 CORE_ADDR oaddr, oaddr2, oaddr3;
2907 /* if EX/EXRL instruction used, here's the reg parameter */
2909 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
2911 /* Attempting to use EX or EXRL jumps back here */
2914 /* Read instruction. */
2915 insn[0] = read_memory_unsigned_integer (addr, 2, byte_order);
2916 /* If execute was involved, do the adjustment. */
2918 insn[0] |= ex & 0xff;
2919 /* Two highest bits determine instruction size. */
2920 if (insn[0] >= 0x4000)
2921 insn[1] = read_memory_unsigned_integer (addr+2, 2, byte_order);
2923 /* Not necessary, but avoids uninitialized variable warnings. */
2925 if (insn[0] >= 0xc000)
2926 insn[2] = read_memory_unsigned_integer (addr+4, 2, byte_order);
2929 /* Split instruction into bytes and nibbles. */
2930 for (i = 0; i < 3; i++)
2932 ibyte[i*2] = insn[i] >> 8 & 0xff;
2933 ibyte[i*2+1] = insn[i] & 0xff;
2935 for (i = 0; i < 6; i++)
2937 inib[i*2] = ibyte[i] >> 4 & 0xf;
2938 inib[i*2+1] = ibyte[i] & 0xf;
2940 /* Compute vector registers, if applicable. */
2941 ivec[0] = (inib[9] >> 3 & 1) << 4 | inib[2];
2942 ivec[1] = (inib[9] >> 2 & 1) << 4 | inib[3];
2943 ivec[2] = (inib[9] >> 1 & 1) << 4 | inib[4];
2944 ivec[3] = (inib[9] >> 0 & 1) << 4 | inib[8];
2948 /* 0x00 undefined */
2951 /* E-format instruction */
2954 /* 0x00 undefined */
2955 /* 0x01 unsupported: PR - program return */
2956 /* 0x02 unsupported: UPT */
2957 /* 0x03 undefined */
2958 /* 0x04 privileged: PTFF - perform timing facility function */
2959 /* 0x05-0x06 undefined */
2960 /* 0x07 privileged: SCKPF - set clock programmable field */
2961 /* 0x08-0x09 undefined */
2963 case 0x0a: /* PFPO - perform floating point operation */
2964 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
2965 if (!(tmp & 0x80000000u))
2967 uint8_t ofc = tmp >> 16 & 0xff;
2970 case 0x00: /* HFP32 */
2971 case 0x01: /* HFP64 */
2972 case 0x05: /* BFP32 */
2973 case 0x06: /* BFP64 */
2974 case 0x08: /* DFP32 */
2975 case 0x09: /* DFP64 */
2976 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM))
2979 case 0x02: /* HFP128 */
2980 case 0x07: /* BFP128 */
2981 case 0x0a: /* DFP128 */
2982 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM))
2984 if (record_full_arch_list_add_reg (regcache, S390_F2_REGNUM))
2988 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown PFPO OFC %02x at %s.\n",
2989 ofc, paddress (gdbarch, addr));
2993 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
2996 if (record_full_arch_list_add_reg (regcache, S390_R1_REGNUM))
2998 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3002 case 0x0b: /* TAM - test address mode */
3003 case 0x0c: /* SAM24 - set address mode 24 */
3004 case 0x0d: /* SAM31 - set address mode 31 */
3005 case 0x0e: /* SAM64 - set address mode 64 */
3006 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3010 /* 0x0f-0xfe undefined */
3012 /* 0xff unsupported: TRAP */
3019 /* 0x02 undefined */
3020 /* 0x03 undefined */
3022 case 0x04: /* SPM - set program mask */
3023 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3027 case 0x05: /* BALR - branch and link */
3028 case 0x45: /* BAL - branch and link */
3029 case 0x06: /* BCTR - branch on count */
3030 case 0x46: /* BCT - branch on count */
3031 case 0x0d: /* BASR - branch and save */
3032 case 0x4d: /* BAS - branch and save */
3033 case 0x84: /* BRXH - branch relative on index high */
3034 case 0x85: /* BRXLE - branch relative on index low or equal */
3035 case 0x86: /* BXH - branch on index high */
3036 case 0x87: /* BXLE - branch on index low or equal */
3037 /* BA[SL]* use native-size destination for linkage info, BCT*, BRX*, BX*
3038 use 32-bit destination as counter. */
3039 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3043 case 0x07: /* BCR - branch on condition */
3044 case 0x47: /* BC - branch on condition */
3045 /* No effect other than PC transfer. */
3048 /* 0x08 undefined */
3049 /* 0x09 undefined */
3052 /* SVC - supervisor call */
3053 if (tdep->s390_syscall_record != NULL)
3055 if (tdep->s390_syscall_record (regcache, ibyte[1]))
3060 printf_unfiltered (_("no syscall record support\n"));
3065 case 0x0b: /* BSM - branch and set mode */
3067 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3069 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3073 case 0x0c: /* BASSM - branch and save and set mode */
3074 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3076 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3080 case 0x0e: /* MVCL - move long [interruptible] */
3081 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[2], &tmp);
3082 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3083 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[2] | 1), &tmp);
3085 if (record_full_arch_list_add_mem (oaddr, tmp))
3087 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3089 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
3091 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
3093 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[3] | 1)))
3095 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3099 case 0x0f: /* CLCL - compare logical long [interruptible] */
3100 case 0xa9: /* CLCLE - compare logical long extended [partial] */
3101 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3103 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
3105 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
3107 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[3] | 1)))
3109 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3113 case 0x10: /* LPR - load positive */
3114 case 0x11: /* LNR - load negative */
3115 case 0x12: /* LTR - load and test */
3116 case 0x13: /* LCR - load complement */
3117 case 0x14: /* NR - and */
3118 case 0x16: /* OR - or */
3119 case 0x17: /* XR - xor */
3120 case 0x1a: /* AR - add */
3121 case 0x1b: /* SR - subtract */
3122 case 0x1e: /* ALR - add logical */
3123 case 0x1f: /* SLR - subtract logical */
3124 case 0x54: /* N - and */
3125 case 0x56: /* O - or */
3126 case 0x57: /* X - xor */
3127 case 0x5a: /* A - add */
3128 case 0x5b: /* S - subtract */
3129 case 0x5e: /* AL - add logical */
3130 case 0x5f: /* SL - subtract logical */
3131 case 0x4a: /* AH - add halfword */
3132 case 0x4b: /* SH - subtract halfword */
3133 case 0x8a: /* SRA - shift right single */
3134 case 0x8b: /* SLA - shift left single */
3135 case 0xbf: /* ICM - insert characters under mask */
3136 /* 32-bit destination + flags */
3137 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3139 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3143 case 0x15: /* CLR - compare logical */
3144 case 0x55: /* CL - compare logical */
3145 case 0x19: /* CR - compare */
3146 case 0x29: /* CDR - compare */
3147 case 0x39: /* CER - compare */
3148 case 0x49: /* CH - compare halfword */
3149 case 0x59: /* C - compare */
3150 case 0x69: /* CD - compare */
3151 case 0x79: /* CE - compare */
3152 case 0x91: /* TM - test under mask */
3153 case 0x95: /* CLI - compare logical */
3154 case 0xbd: /* CLM - compare logical under mask */
3155 case 0xd5: /* CLC - compare logical */
3156 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3160 case 0x18: /* LR - load */
3161 case 0x48: /* LH - load halfword */
3162 case 0x58: /* L - load */
3163 case 0x41: /* LA - load address */
3164 case 0x43: /* IC - insert character */
3165 case 0x4c: /* MH - multiply halfword */
3166 case 0x71: /* MS - multiply single */
3167 case 0x88: /* SRL - shift right single logical */
3168 case 0x89: /* SLL - shift left single logical */
3169 /* 32-bit, 8-bit (IC), or native width (LA) destination, no flags */
3170 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3174 case 0x1c: /* MR - multiply */
3175 case 0x5c: /* M - multiply */
3176 case 0x1d: /* DR - divide */
3177 case 0x5d: /* D - divide */
3178 case 0x8c: /* SRDL - shift right double logical */
3179 case 0x8d: /* SLDL - shift left double logical */
3180 /* 32-bit pair destination, no flags */
3181 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3183 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
3187 case 0x20: /* LPDR - load positive */
3188 case 0x30: /* LPER - load positive */
3189 case 0x21: /* LNDR - load negative */
3190 case 0x31: /* LNER - load negative */
3191 case 0x22: /* LTDR - load and test */
3192 case 0x32: /* LTER - load and test */
3193 case 0x23: /* LCDR - load complement */
3194 case 0x33: /* LCER - load complement */
3195 case 0x2a: /* ADR - add */
3196 case 0x3a: /* AER - add */
3197 case 0x6a: /* AD - add */
3198 case 0x7a: /* AE - add */
3199 case 0x2b: /* SDR - subtract */
3200 case 0x3b: /* SER - subtract */
3201 case 0x6b: /* SD - subtract */
3202 case 0x7b: /* SE - subtract */
3203 case 0x2e: /* AWR - add unnormalized */
3204 case 0x3e: /* AUR - add unnormalized */
3205 case 0x6e: /* AW - add unnormalized */
3206 case 0x7e: /* AU - add unnormalized */
3207 case 0x2f: /* SWR - subtract unnormalized */
3208 case 0x3f: /* SUR - subtract unnormalized */
3209 case 0x6f: /* SW - subtract unnormalized */
3210 case 0x7f: /* SU - subtract unnormalized */
3211 /* float destination + flags */
3212 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
3214 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3218 case 0x24: /* HDR - halve */
3219 case 0x34: /* HER - halve */
3220 case 0x25: /* LDXR - load rounded */
3221 case 0x35: /* LEDR - load rounded */
3222 case 0x28: /* LDR - load */
3223 case 0x38: /* LER - load */
3224 case 0x68: /* LD - load */
3225 case 0x78: /* LE - load */
3226 case 0x2c: /* MDR - multiply */
3227 case 0x3c: /* MDER - multiply */
3228 case 0x6c: /* MD - multiply */
3229 case 0x7c: /* MDE - multiply */
3230 case 0x2d: /* DDR - divide */
3231 case 0x3d: /* DER - divide */
3232 case 0x6d: /* DD - divide */
3233 case 0x7d: /* DE - divide */
3234 /* float destination, no flags */
3235 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
3239 case 0x26: /* MXR - multiply */
3240 case 0x27: /* MXDR - multiply */
3241 case 0x67: /* MXD - multiply */
3242 /* float pair destination, no flags */
3243 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
3245 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[2] | 2)))
3249 case 0x36: /* AXR - add */
3250 case 0x37: /* SXR - subtract */
3251 /* float pair destination + flags */
3252 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
3254 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[2] | 2)))
3256 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3260 case 0x40: /* STH - store halfword */
3261 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
3262 if (record_full_arch_list_add_mem (oaddr, 2))
3266 case 0x42: /* STC - store character */
3267 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
3268 if (record_full_arch_list_add_mem (oaddr, 1))
3272 case 0x44: /* EX - execute */
3275 fprintf_unfiltered (gdb_stdlog, "Warning: Double execute at %s.\n",
3276 paddress (gdbarch, addr));
3279 addr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
3282 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[2], &tmp);
3291 case 0x4e: /* CVD - convert to decimal */
3292 case 0x60: /* STD - store */
3293 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
3294 if (record_full_arch_list_add_mem (oaddr, 8))
3298 case 0x4f: /* CVB - convert to binary */
3299 /* 32-bit gpr destination + FPC (DXC write) */
3300 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3302 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3306 case 0x50: /* ST - store */
3307 case 0x70: /* STE - store */
3308 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
3309 if (record_full_arch_list_add_mem (oaddr, 4))
3313 case 0x51: /* LAE - load address extended */
3314 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3316 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + inib[2]))
3320 /* 0x52 undefined */
3321 /* 0x53 undefined */
3323 /* 0x61-0x66 undefined */
3325 /* 0x72-0x77 undefined */
3327 /* 0x80 privileged: SSM - set system mask */
3328 /* 0x81 undefined */
3329 /* 0x82 privileged: LPSW - load PSW */
3330 /* 0x83 privileged: diagnose */
3332 case 0x8e: /* SRDA - shift right double */
3333 case 0x8f: /* SLDA - shift left double */
3334 /* 32-bit pair destination + flags */
3335 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3337 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
3339 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3343 case 0x90: /* STM - store multiple */
3344 case 0x9b: /* STAM - store access multiple */
3345 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3346 if (inib[2] <= inib[3])
3347 n = inib[3] - inib[2] + 1;
3349 n = inib[3] + 0x10 - inib[2] + 1;
3350 if (record_full_arch_list_add_mem (oaddr, n * 4))
3354 case 0x92: /* MVI - move */
3355 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3356 if (record_full_arch_list_add_mem (oaddr, 1))
3360 case 0x93: /* TS - test and set */
3361 case 0x94: /* NI - and */
3362 case 0x96: /* OI - or */
3363 case 0x97: /* XI - xor */
3364 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3365 if (record_full_arch_list_add_mem (oaddr, 1))
3367 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3371 case 0x98: /* LM - load multiple */
3372 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
3373 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + i))
3375 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
3379 /* 0x99 privileged: TRACE */
3381 case 0x9a: /* LAM - load access multiple */
3382 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
3383 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + i))
3385 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + inib[3]))
3389 /* 0x9c-0x9f privileged and obsolete (old I/O) */
3390 /* 0xa0-0xa4 undefined */
3394 /* RI-format instruction */
3395 switch (ibyte[0] << 4 | inib[3])
3397 case 0xa50: /* IIHH - insert immediate */
3398 case 0xa51: /* IIHL - insert immediate */
3399 /* high 32-bit destination */
3400 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
3404 case 0xa52: /* IILH - insert immediate */
3405 case 0xa53: /* IILL - insert immediate */
3406 case 0xa75: /* BRAS - branch relative and save */
3407 case 0xa76: /* BRCT - branch relative on count */
3408 case 0xa78: /* LHI - load halfword immediate */
3409 case 0xa7c: /* MHI - multiply halfword immediate */
3410 /* 32-bit or native destination */
3411 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3415 case 0xa54: /* NIHH - and immediate */
3416 case 0xa55: /* NIHL - and immediate */
3417 case 0xa58: /* OIHH - or immediate */
3418 case 0xa59: /* OIHL - or immediate */
3419 /* high 32-bit destination + flags */
3420 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
3422 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3426 case 0xa56: /* NILH - and immediate */
3427 case 0xa57: /* NILL - and immediate */
3428 case 0xa5a: /* OILH - or immediate */
3429 case 0xa5b: /* OILL - or immediate */
3430 case 0xa7a: /* AHI - add halfword immediate */
3431 /* 32-bit destination + flags */
3432 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3434 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3438 case 0xa5c: /* LLIHH - load logical immediate */
3439 case 0xa5d: /* LLIHL - load logical immediate */
3440 case 0xa5e: /* LLILH - load logical immediate */
3441 case 0xa5f: /* LLILL - load logical immediate */
3442 case 0xa77: /* BRCTG - branch relative on count */
3443 case 0xa79: /* LGHI - load halfword immediate */
3444 case 0xa7d: /* MGHI - multiply halfword immediate */
3445 /* 64-bit destination */
3446 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
3450 case 0xa70: /* TMLH - test under mask */
3451 case 0xa71: /* TMLL - test under mask */
3452 case 0xa72: /* TMHH - test under mask */
3453 case 0xa73: /* TMHL - test under mask */
3454 case 0xa7e: /* CHI - compare halfword immediate */
3455 case 0xa7f: /* CGHI - compare halfword immediate */
3457 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3461 case 0xa74: /* BRC - branch relative on condition */
3462 /* no register change */
3465 case 0xa7b: /* AGHI - add halfword immediate */
3466 /* 64-bit destination + flags */
3467 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
3469 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3478 /* 0xa6 undefined */
3480 case 0xa8: /* MVCLE - move long extended [partial] */
3481 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[2], &tmp);
3482 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3483 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[2] | 1), &tmp);
3484 if (record_full_arch_list_add_mem (oaddr, tmp))
3486 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
3488 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
3490 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
3492 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[3] | 1)))
3494 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3498 /* 0xaa-0xab undefined */
3499 /* 0xac privileged: STNSM - store then and system mask */
3500 /* 0xad privileged: STOSM - store then or system mask */
3501 /* 0xae privileged: SIGP - signal processor */
3502 /* 0xaf unsupported: MC - monitor call */
3503 /* 0xb0 undefined */
3504 /* 0xb1 privileged: LRA - load real address */
3509 /* S/RRD/RRE/RRF/IE-format instruction */
3512 /* 0xb200-0xb204 undefined or privileged */
3514 case 0xb205: /* STCK - store clock */
3515 case 0xb27c: /* STCKF - store clock fast */
3516 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3517 if (record_full_arch_list_add_mem (oaddr, 8))
3519 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3523 /* 0xb206-0xb219 undefined, privileged, or unsupported */
3524 /* 0xb21a unsupported: CFC */
3525 /* 0xb21b-0xb221 undefined or privileged */
3527 case 0xb222: /* IPM - insert program mask */
3528 case 0xb24f: /* EAR - extract access */
3529 case 0xb252: /* MSR - multiply single */
3530 case 0xb2ec: /* ETND - extract transaction nesting depth */
3531 case 0xb38c: /* EFPC - extract fpc */
3532 case 0xb91f: /* LRVR - load reversed */
3533 case 0xb926: /* LBR - load byte */
3534 case 0xb927: /* LHR - load halfword */
3535 case 0xb994: /* LLCR - load logical character */
3536 case 0xb995: /* LLHR - load logical halfword */
3537 case 0xb9f2: /* LOCR - load on condition */
3538 /* 32-bit gpr destination */
3539 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3543 /* 0xb223-0xb22c privileged or unsupported */
3545 case 0xb22d: /* DXR - divide */
3546 case 0xb325: /* LXDR - load lengthened */
3547 case 0xb326: /* LXER - load lengthened */
3548 case 0xb336: /* SQXR - square root */
3549 case 0xb365: /* LXR - load */
3550 case 0xb367: /* FIXR - load fp integer */
3551 case 0xb376: /* LZXR - load zero */
3552 case 0xb3b6: /* CXFR - convert from fixed */
3553 case 0xb3c6: /* CXGR - convert from fixed */
3554 case 0xb3fe: /* IEXTR - insert biased exponent */
3555 /* float pair destination */
3556 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3558 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[6] | 2)))
3562 /* 0xb22e-0xb240 undefined, privileged, or unsupported */
3564 case 0xb241: /* CKSM - checksum [partial] */
3565 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3567 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
3569 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
3571 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3575 /* 0xb242-0xb243 undefined */
3577 case 0xb244: /* SQDR - square root */
3578 case 0xb245: /* SQER - square root */
3579 case 0xb324: /* LDER - load lengthened */
3580 case 0xb337: /* MEER - multiply */
3581 case 0xb366: /* LEXR - load rounded */
3582 case 0xb370: /* LPDFR - load positive */
3583 case 0xb371: /* LNDFR - load negative */
3584 case 0xb372: /* CSDFR - copy sign */
3585 case 0xb373: /* LCDFR - load complement */
3586 case 0xb374: /* LZER - load zero */
3587 case 0xb375: /* LZDR - load zero */
3588 case 0xb377: /* FIER - load fp integer */
3589 case 0xb37f: /* FIDR - load fp integer */
3590 case 0xb3b4: /* CEFR - convert from fixed */
3591 case 0xb3b5: /* CDFR - convert from fixed */
3592 case 0xb3c1: /* LDGR - load fpr from gr */
3593 case 0xb3c4: /* CEGR - convert from fixed */
3594 case 0xb3c5: /* CDGR - convert from fixed */
3595 case 0xb3f6: /* IEDTR - insert biased exponent */
3596 /* float destination */
3597 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3601 /* 0xb246-0xb24c: privileged or unsupported */
3603 case 0xb24d: /* CPYA - copy access */
3604 case 0xb24e: /* SAR - set access */
3605 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + inib[6]))
3609 /* 0xb250-0xb251 undefined or privileged */
3610 /* 0xb253-0xb254 undefined or privileged */
3612 case 0xb255: /* MVST - move string [partial] */
3617 /* Read ending byte. */
3618 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
3620 /* Get address of second operand. */
3621 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[7], &tmp);
3622 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3623 /* Search for ending byte and compute length. */
3626 if (target_read_memory (oaddr, &cur, 1))
3629 } while (cur != end);
3630 /* Get address of first operand and record it. */
3631 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
3632 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3633 if (record_full_arch_list_add_mem (oaddr, num))
3635 /* Record the registers. */
3636 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3638 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
3640 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3645 /* 0xb256 undefined */
3647 case 0xb257: /* CUSE - compare until substring equal [interruptible] */
3648 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3650 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
3652 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
3654 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
3656 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3660 /* 0xb258-0xb25c undefined, privileged, or unsupported */
3662 case 0xb25d: /* CLST - compare logical string [partial] */
3663 case 0xb25e: /* SRST - search string [partial] */
3664 case 0xb9be: /* SRSTU - search string unicode [partial] */
3665 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3667 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
3669 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3673 /* 0xb25f-0xb262 undefined */
3675 case 0xb263: /* CMPSC - compression call [interruptible] */
3676 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
3677 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3678 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[6] | 1), &tmp);
3679 if (record_full_arch_list_add_mem (oaddr, tmp))
3681 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3683 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
3685 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
3687 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
3689 if (record_full_arch_list_add_reg (regcache, S390_R1_REGNUM))
3691 /* DXC may be written */
3692 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3694 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3698 /* 0xb264-0xb277 undefined, privileged, or unsupported */
3700 case 0xb278: /* STCKE - store clock extended */
3701 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3702 if (record_full_arch_list_add_mem (oaddr, 16))
3704 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3708 /* 0xb279-0xb27b undefined or unsupported */
3709 /* 0xb27d-0xb298 undefined or privileged */
3711 case 0xb299: /* SRNM - set rounding mode */
3712 case 0xb2b8: /* SRNMB - set bfp rounding mode */
3713 case 0xb2b9: /* SRNMT - set dfp rounding mode */
3714 case 0xb29d: /* LFPC - load fpc */
3715 case 0xb2bd: /* LFAS - load fpc and signal */
3716 case 0xb384: /* SFPC - set fpc */
3717 case 0xb385: /* SFASR - set fpc and signal */
3718 case 0xb960: /* CGRT - compare and trap */
3719 case 0xb961: /* CLGRT - compare logical and trap */
3720 case 0xb972: /* CRT - compare and trap */
3721 case 0xb973: /* CLRT - compare logical and trap */
3722 /* fpc only - including possible DXC write for trapping insns */
3723 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3727 /* 0xb29a-0xb29b undefined */
3729 case 0xb29c: /* STFPC - store fpc */
3730 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3731 if (record_full_arch_list_add_mem (oaddr, 4))
3735 /* 0xb29e-0xb2a4 undefined */
3737 case 0xb2a5: /* TRE - translate extended [partial] */
3738 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
3739 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3740 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[6] | 1), &tmp);
3741 if (record_full_arch_list_add_mem (oaddr, tmp))
3743 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3745 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
3747 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3751 case 0xb2a6: /* CU21 - convert UTF-16 to UTF-8 [partial] */
3752 case 0xb2a7: /* CU12 - convert UTF-8 to UTF-16 [partial] */
3753 case 0xb9b0: /* CU14 - convert UTF-8 to UTF-32 [partial] */
3754 case 0xb9b1: /* CU24 - convert UTF-16 to UTF-32 [partial] */
3755 case 0xb9b2: /* CU41 - convert UTF-32 to UTF-8 [partial] */
3756 case 0xb9b3: /* CU42 - convert UTF-32 to UTF-16 [partial] */
3757 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
3758 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
3759 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[6] | 1), &tmp);
3760 if (record_full_arch_list_add_mem (oaddr, tmp))
3762 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
3764 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
3766 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
3768 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
3770 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3774 /* 0xb2a8-0xb2af undefined */
3776 case 0xb2b0: /* STFLE - store facility list extended */
3777 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
3778 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
3780 if (record_full_arch_list_add_mem (oaddr, 8 * (tmp + 1)))
3782 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM))
3784 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3788 /* 0xb2b1-0xb2b7 undefined or privileged */
3789 /* 0xb2ba-0xb2bc undefined */
3790 /* 0xb2be-0xb2e7 undefined */
3791 /* 0xb2e9-0xb2eb undefined */
3792 /* 0xb2ed-0xb2f7 undefined */
3793 /* 0xb2f8 unsupported: TEND */
3794 /* 0xb2f9 undefined */
3796 case 0xb2e8: /* PPA - perform processor assist */
3797 case 0xb2fa: /* NIAI - next instruction access intent */
3798 /* no visible effects */
3801 /* 0xb2fb undefined */
3802 /* 0xb2fc unsupported: TABORT */
3803 /* 0xb2fd-0xb2fe undefined */
3804 /* 0xb2ff unsupported: TRAP */
3806 case 0xb300: /* LPEBR - load positive */
3807 case 0xb301: /* LNEBR - load negative */
3808 case 0xb303: /* LCEBR - load complement */
3809 case 0xb310: /* LPDBR - load positive */
3810 case 0xb311: /* LNDBR - load negative */
3811 case 0xb313: /* LCDBR - load complement */
3812 case 0xb350: /* TBEDR - convert hfp to bfp */
3813 case 0xb351: /* TBDR - convert hfp to bfp */
3814 case 0xb358: /* THDER - convert bfp to hfp */
3815 case 0xb359: /* THDR - convert bfp to hfp */
3816 /* float destination + flags */
3817 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3819 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3823 case 0xb304: /* LDEBR - load lengthened */
3824 case 0xb30c: /* MDEBR - multiply */
3825 case 0xb30d: /* DEBR - divide */
3826 case 0xb314: /* SQEBR - square root */
3827 case 0xb315: /* SQDBR - square root */
3828 case 0xb317: /* MEEBR - multiply */
3829 case 0xb31c: /* MDBR - multiply */
3830 case 0xb31d: /* DDBR - divide */
3831 case 0xb344: /* LEDBRA - load rounded */
3832 case 0xb345: /* LDXBRA - load rounded */
3833 case 0xb346: /* LEXBRA - load rounded */
3834 case 0xb357: /* FIEBRA - load fp integer */
3835 case 0xb35f: /* FIDBRA - load fp integer */
3836 case 0xb390: /* CELFBR - convert from logical */
3837 case 0xb391: /* CDLFBR - convert from logical */
3838 case 0xb394: /* CEFBR - convert from fixed */
3839 case 0xb395: /* CDFBR - convert from fixed */
3840 case 0xb3a0: /* CELGBR - convert from logical */
3841 case 0xb3a1: /* CDLGBR - convert from logical */
3842 case 0xb3a4: /* CEGBR - convert from fixed */
3843 case 0xb3a5: /* CDGBR - convert from fixed */
3844 case 0xb3d0: /* MDTR - multiply */
3845 case 0xb3d1: /* DDTR - divide */
3846 case 0xb3d4: /* LDETR - load lengthened */
3847 case 0xb3d5: /* LEDTR - load lengthened */
3848 case 0xb3d7: /* FIDTR - load fp integer */
3849 case 0xb3dd: /* LDXTR - load lengthened */
3850 case 0xb3f1: /* CDGTR - convert from fixed */
3851 case 0xb3f2: /* CDUTR - convert from unsigned packed */
3852 case 0xb3f3: /* CDSTR - convert from signed packed */
3853 case 0xb3f5: /* QADTR - quantize */
3854 case 0xb3f7: /* RRDTR - reround */
3855 case 0xb951: /* CDFTR - convert from fixed */
3856 case 0xb952: /* CDLGTR - convert from logical */
3857 case 0xb953: /* CDLFTR - convert from logical */
3858 /* float destination + fpc */
3859 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3861 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3865 case 0xb305: /* LXDBR - load lengthened */
3866 case 0xb306: /* LXEBR - load lengthened */
3867 case 0xb307: /* MXDBR - multiply */
3868 case 0xb316: /* SQXBR - square root */
3869 case 0xb34c: /* MXBR - multiply */
3870 case 0xb34d: /* DXBR - divide */
3871 case 0xb347: /* FIXBRA - load fp integer */
3872 case 0xb392: /* CXLFBR - convert from logical */
3873 case 0xb396: /* CXFBR - convert from fixed */
3874 case 0xb3a2: /* CXLGBR - convert from logical */
3875 case 0xb3a6: /* CXGBR - convert from fixed */
3876 case 0xb3d8: /* MXTR - multiply */
3877 case 0xb3d9: /* DXTR - divide */
3878 case 0xb3dc: /* LXDTR - load lengthened */
3879 case 0xb3df: /* FIXTR - load fp integer */
3880 case 0xb3f9: /* CXGTR - convert from fixed */
3881 case 0xb3fa: /* CXUTR - convert from unsigned packed */
3882 case 0xb3fb: /* CXSTR - convert from signed packed */
3883 case 0xb3fd: /* QAXTR - quantize */
3884 case 0xb3ff: /* RRXTR - reround */
3885 case 0xb959: /* CXFTR - convert from fixed */
3886 case 0xb95a: /* CXLGTR - convert from logical */
3887 case 0xb95b: /* CXLFTR - convert from logical */
3888 /* float pair destination + fpc */
3889 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3891 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[6] | 2)))
3893 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3897 case 0xb308: /* KEBR - compare and signal */
3898 case 0xb309: /* CEBR - compare */
3899 case 0xb318: /* KDBR - compare and signal */
3900 case 0xb319: /* CDBR - compare */
3901 case 0xb348: /* KXBR - compare and signal */
3902 case 0xb349: /* CXBR - compare */
3903 case 0xb3e0: /* KDTR - compare and signal */
3904 case 0xb3e4: /* CDTR - compare */
3905 case 0xb3e8: /* KXTR - compare and signal */
3906 case 0xb3ec: /* CXTR - compare */
3907 /* flags + fpc only */
3908 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3910 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3914 case 0xb302: /* LTEBR - load and test */
3915 case 0xb312: /* LTDBR - load and test */
3916 case 0xb30a: /* AEBR - add */
3917 case 0xb30b: /* SEBR - subtract */
3918 case 0xb31a: /* ADBR - add */
3919 case 0xb31b: /* SDBR - subtract */
3920 case 0xb3d2: /* ADTR - add */
3921 case 0xb3d3: /* SDTR - subtract */
3922 case 0xb3d6: /* LTDTR - load and test */
3923 /* float destination + flags + fpc */
3924 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3926 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3928 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3932 case 0xb30e: /* MAEBR - multiply and add */
3933 case 0xb30f: /* MSEBR - multiply and subtract */
3934 case 0xb31e: /* MADBR - multiply and add */
3935 case 0xb31f: /* MSDBR - multiply and subtract */
3936 /* float destination [RRD] + fpc */
3937 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[4]))
3939 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
3943 /* 0xb320-0xb323 undefined */
3944 /* 0xb327-0xb32d undefined */
3946 case 0xb32e: /* MAER - multiply and add */
3947 case 0xb32f: /* MSER - multiply and subtract */
3948 case 0xb338: /* MAYLR - multiply and add unnormalized */
3949 case 0xb339: /* MYLR - multiply unnormalized */
3950 case 0xb33c: /* MAYHR - multiply and add unnormalized */
3951 case 0xb33d: /* MYHR - multiply unnormalized */
3952 case 0xb33e: /* MADR - multiply and add */
3953 case 0xb33f: /* MSDR - multiply and subtract */
3954 /* float destination [RRD] */
3955 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[4]))
3959 /* 0xb330-0xb335 undefined */
3961 case 0xb33a: /* MAYR - multiply and add unnormalized */
3962 case 0xb33b: /* MYR - multiply unnormalized */
3963 /* float pair destination [RRD] */
3964 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[4]))
3966 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[4] | 2)))
3970 case 0xb340: /* LPXBR - load positive */
3971 case 0xb341: /* LNXBR - load negative */
3972 case 0xb343: /* LCXBR - load complement */
3973 case 0xb360: /* LPXR - load positive */
3974 case 0xb361: /* LNXR - load negative */
3975 case 0xb362: /* LTXR - load and test */
3976 case 0xb363: /* LCXR - load complement */
3977 /* float pair destination + flags */
3978 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3980 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[6] | 2)))
3982 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3986 case 0xb342: /* LTXBR - load and test */
3987 case 0xb34a: /* AXBR - add */
3988 case 0xb34b: /* SXBR - subtract */
3989 case 0xb3da: /* AXTR - add */
3990 case 0xb3db: /* SXTR - subtract */
3991 case 0xb3de: /* LTXTR - load and test */
3992 /* float pair destination + flags + fpc */
3993 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
3995 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[6] | 2)))
3997 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
3999 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
4003 /* 0xb34e-0xb34f undefined */
4004 /* 0xb352 undefined */
4006 case 0xb353: /* DIEBR - divide to integer */
4007 case 0xb35b: /* DIDBR - divide to integer */
4008 /* two float destinations + flags + fpc */
4009 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[4]))
4011 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[6]))
4013 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4015 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
4019 /* 0xb354-0xb356 undefined */
4020 /* 0xb35a undefined */
4022 /* 0xb35c-0xb35e undefined */
4023 /* 0xb364 undefined */
4024 /* 0xb368 undefined */
4026 case 0xb369: /* CXR - compare */
4027 case 0xb3f4: /* CEDTR - compare biased exponent */
4028 case 0xb3fc: /* CEXTR - compare biased exponent */
4029 case 0xb920: /* CGR - compare */
4030 case 0xb921: /* CLGR - compare logical */
4031 case 0xb930: /* CGFR - compare */
4032 case 0xb931: /* CLGFR - compare logical */
4033 case 0xb9cd: /* CHHR - compare high */
4034 case 0xb9cf: /* CLHHR - compare logical high */
4035 case 0xb9dd: /* CHLR - compare high */
4036 case 0xb9df: /* CLHLR - compare logical high */
4038 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4042 /* 0xb36a-0xb36f undefined */
4043 /* 0xb377-0xb37e undefined */
4044 /* 0xb380-0xb383 undefined */
4045 /* 0xb386-0xb38b undefined */
4046 /* 0xb38d-0xb38f undefined */
4047 /* 0xb393 undefined */
4048 /* 0xb397 undefined */
4050 case 0xb398: /* CFEBR - convert to fixed */
4051 case 0xb399: /* CFDBR - convert to fixed */
4052 case 0xb39a: /* CFXBR - convert to fixed */
4053 case 0xb39c: /* CLFEBR - convert to logical */
4054 case 0xb39d: /* CLFDBR - convert to logical */
4055 case 0xb39e: /* CLFXBR - convert to logical */
4056 case 0xb941: /* CFDTR - convert to fixed */
4057 case 0xb949: /* CFXTR - convert to fixed */
4058 case 0xb943: /* CLFDTR - convert to logical */
4059 case 0xb94b: /* CLFXTR - convert to logical */
4060 /* 32-bit gpr destination + flags + fpc */
4061 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4063 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4065 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
4069 /* 0xb39b undefined */
4070 /* 0xb39f undefined */
4072 /* 0xb3a3 undefined */
4073 /* 0xb3a7 undefined */
4075 case 0xb3a8: /* CGEBR - convert to fixed */
4076 case 0xb3a9: /* CGDBR - convert to fixed */
4077 case 0xb3aa: /* CGXBR - convert to fixed */
4078 case 0xb3ac: /* CLGEBR - convert to logical */
4079 case 0xb3ad: /* CLGDBR - convert to logical */
4080 case 0xb3ae: /* CLGXBR - convert to logical */
4081 case 0xb3e1: /* CGDTR - convert to fixed */
4082 case 0xb3e9: /* CGXTR - convert to fixed */
4083 case 0xb942: /* CLGDTR - convert to logical */
4084 case 0xb94a: /* CLGXTR - convert to logical */
4085 /* 64-bit gpr destination + flags + fpc */
4086 if (s390_record_gpr_g (gdbarch, regcache, inib[6]))
4088 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4090 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
4094 /* 0xb3ab undefined */
4095 /* 0xb3af-0xb3b3 undefined */
4096 /* 0xb3b7 undefined */
4098 case 0xb3b8: /* CFER - convert to fixed */
4099 case 0xb3b9: /* CFDR - convert to fixed */
4100 case 0xb3ba: /* CFXR - convert to fixed */
4101 case 0xb998: /* ALCR - add logical with carry */
4102 case 0xb999: /* SLBR - subtract logical with borrow */
4103 case 0xb9f4: /* NRK - and */
4104 case 0xb9f6: /* ORK - or */
4105 case 0xb9f7: /* XRK - xor */
4106 case 0xb9f8: /* ARK - add */
4107 case 0xb9f9: /* SRK - subtract */
4108 case 0xb9fa: /* ALRK - add logical */
4109 case 0xb9fb: /* SLRK - subtract logical */
4110 /* 32-bit gpr destination + flags */
4111 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4113 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4117 case 0xb3c8: /* CGER - convert to fixed */
4118 case 0xb3c9: /* CGDR - convert to fixed */
4119 case 0xb3ca: /* CGXR - convert to fixed */
4120 case 0xb900: /* LPGR - load positive */
4121 case 0xb901: /* LNGR - load negative */
4122 case 0xb902: /* LTGR - load and test */
4123 case 0xb903: /* LCGR - load complement */
4124 case 0xb908: /* AGR - add */
4125 case 0xb909: /* SGR - subtract */
4126 case 0xb90a: /* ALGR - add logical */
4127 case 0xb90b: /* SLGR - subtract logical */
4128 case 0xb910: /* LPGFR - load positive */
4129 case 0xb911: /* LNGFR - load negative */
4130 case 0xb912: /* LTGFR - load and test */
4131 case 0xb913: /* LCGFR - load complement */
4132 case 0xb918: /* AGFR - add */
4133 case 0xb919: /* SGFR - subtract */
4134 case 0xb91a: /* ALGFR - add logical */
4135 case 0xb91b: /* SLGFR - subtract logical */
4136 case 0xb980: /* NGR - and */
4137 case 0xb981: /* OGR - or */
4138 case 0xb982: /* XGR - xor */
4139 case 0xb988: /* ALCGR - add logical with carry */
4140 case 0xb989: /* SLBGR - subtract logical with borrow */
4141 case 0xb9e1: /* POPCNT - population count */
4142 case 0xb9e4: /* NGRK - and */
4143 case 0xb9e6: /* OGRK - or */
4144 case 0xb9e7: /* XGRK - xor */
4145 case 0xb9e8: /* AGRK - add */
4146 case 0xb9e9: /* SGRK - subtract */
4147 case 0xb9ea: /* ALGRK - add logical */
4148 case 0xb9eb: /* SLGRK - subtract logical */
4149 case 0xb9ed: /* MSGRKC - multiply single 64x64 -> 64 */
4150 case 0xb9fd: /* MSRKC - multiply single 32x32 -> 32 */
4151 /* 64-bit gpr destination + flags */
4152 if (s390_record_gpr_g (gdbarch, regcache, inib[6]))
4154 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4158 /* 0xb3bb-0xb3c0 undefined */
4159 /* 0xb3c2-0xb3c3 undefined */
4160 /* 0xb3c7 undefined */
4161 /* 0xb3cb-0xb3cc undefined */
4163 case 0xb3cd: /* LGDR - load gr from fpr */
4164 case 0xb3e2: /* CUDTR - convert to unsigned packed */
4165 case 0xb3e3: /* CSDTR - convert to signed packed */
4166 case 0xb3e5: /* EEDTR - extract biased exponent */
4167 case 0xb3e7: /* ESDTR - extract significance */
4168 case 0xb3ed: /* EEXTR - extract biased exponent */
4169 case 0xb3ef: /* ESXTR - extract significance */
4170 case 0xb904: /* LGR - load */
4171 case 0xb906: /* LGBR - load byte */
4172 case 0xb907: /* LGHR - load halfword */
4173 case 0xb90c: /* MSGR - multiply single */
4174 case 0xb90f: /* LRVGR - load reversed */
4175 case 0xb914: /* LGFR - load */
4176 case 0xb916: /* LLGFR - load logical */
4177 case 0xb917: /* LLGTR - load logical thirty one bits */
4178 case 0xb91c: /* MSGFR - multiply single 64<32 */
4179 case 0xb946: /* BCTGR - branch on count */
4180 case 0xb984: /* LLGCR - load logical character */
4181 case 0xb985: /* LLGHR - load logical halfword */
4182 case 0xb9e2: /* LOCGR - load on condition */
4183 /* 64-bit gpr destination */
4184 if (s390_record_gpr_g (gdbarch, regcache, inib[6]))
4188 /* 0xb3ce-0xb3cf undefined */
4189 /* 0xb3e6 undefined */
4191 case 0xb3ea: /* CUXTR - convert to unsigned packed */
4192 case 0xb3eb: /* CSXTR - convert to signed packed */
4193 case 0xb90d: /* DSGR - divide single */
4194 case 0xb91d: /* DSGFR - divide single */
4195 case 0xb986: /* MLGR - multiply logical */
4196 case 0xb987: /* DLGR - divide logical */
4197 case 0xb9ec: /* MGRK - multiply 64x64 -> 128 */
4198 /* 64-bit gpr pair destination */
4199 if (s390_record_gpr_g (gdbarch, regcache, inib[6]))
4201 if (s390_record_gpr_g (gdbarch, regcache, inib[6] | 1))
4205 /* 0xb3ee undefined */
4206 /* 0xb3f0 undefined */
4207 /* 0xb3f8 undefined */
4209 /* 0xb905 privileged */
4211 /* 0xb90e unsupported: EREGG */
4213 /* 0xb915 undefined */
4215 case 0xb91e: /* KMAC - compute message authentication code [partial] */
4216 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4217 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4218 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4222 case 0x00: /* KMAC-Query */
4223 if (record_full_arch_list_add_mem (oaddr, 16))
4227 case 0x01: /* KMAC-DEA */
4228 case 0x02: /* KMAC-TDEA-128 */
4229 case 0x03: /* KMAC-TDEA-192 */
4230 case 0x09: /* KMAC-Encrypted-DEA */
4231 case 0x0a: /* KMAC-Encrypted-TDEA-128 */
4232 case 0x0b: /* KMAC-Encrypted-TDEA-192 */
4233 if (record_full_arch_list_add_mem (oaddr, 8))
4237 case 0x12: /* KMAC-AES-128 */
4238 case 0x13: /* KMAC-AES-192 */
4239 case 0x14: /* KMAC-AES-256 */
4240 case 0x1a: /* KMAC-Encrypted-AES-128 */
4241 case 0x1b: /* KMAC-Encrypted-AES-192 */
4242 case 0x1c: /* KMAC-Encrypted-AES-256 */
4243 if (record_full_arch_list_add_mem (oaddr, 16))
4248 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown KMAC function %02x at %s.\n",
4249 (int)tmp, paddress (gdbarch, addr));
4254 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4256 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
4259 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4263 /* 0xb922-0xb924 undefined */
4264 /* 0xb925 privileged */
4265 /* 0xb928 privileged */
4267 case 0xb929: /* KMA - cipher message with authentication */
4268 case 0xb92a: /* KMF - cipher message with cipher feedback [partial] */
4269 case 0xb92b: /* KMO - cipher message with output feedback [partial] */
4270 case 0xb92f: /* KMC - cipher message with chaining [partial] */
4271 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4272 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4273 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4277 case 0x00: /* KM*-Query */
4278 if (record_full_arch_list_add_mem (oaddr, 16))
4282 case 0x01: /* KM*-DEA */
4283 case 0x02: /* KM*-TDEA-128 */
4284 case 0x03: /* KM*-TDEA-192 */
4285 case 0x09: /* KM*-Encrypted-DEA */
4286 case 0x0a: /* KM*-Encrypted-TDEA-128 */
4287 case 0x0b: /* KM*-Encrypted-TDEA-192 */
4288 if (record_full_arch_list_add_mem (oaddr, 8))
4292 case 0x12: /* KM*-AES-128 */
4293 case 0x13: /* KM*-AES-192 */
4294 case 0x14: /* KM*-AES-256 */
4295 case 0x1a: /* KM*-Encrypted-AES-128 */
4296 case 0x1b: /* KM*-Encrypted-AES-192 */
4297 case 0x1c: /* KM*-Encrypted-AES-256 */
4298 if (record_full_arch_list_add_mem (oaddr, 16))
4302 case 0x43: /* KMC-PRNG */
4303 /* Only valid for KMC. */
4304 if (insn[0] == 0xb92f)
4306 if (record_full_arch_list_add_mem (oaddr, 8))
4310 /* For other instructions... */
4313 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown KM* function %02x at %s.\n",
4314 (int)tmp, paddress (gdbarch, addr));
4319 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
4320 oaddr2 = s390_record_address_mask (gdbarch, regcache, tmp);
4321 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[7] | 1), &tmp);
4322 if (record_full_arch_list_add_mem (oaddr2, tmp))
4324 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4326 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4328 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
4331 if (tmp != 0 && insn[0] == 0xb929)
4333 if (record_full_arch_list_add_reg (regcache,
4334 S390_R0_REGNUM + inib[4]))
4336 if (record_full_arch_list_add_reg (regcache,
4337 S390_R0_REGNUM + (inib[4] | 1)))
4340 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4344 case 0xb92c: /* PCC - perform cryptographic computation [partial] */
4345 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4346 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4347 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4351 case 0x00: /* PCC-Query */
4352 if (record_full_arch_list_add_mem (oaddr, 16))
4356 case 0x01: /* PCC-Compute-Last-Block-CMAC-Using-DEA */
4357 case 0x02: /* PCC-Compute-Last-Block-CMAC-Using-TDEA-128 */
4358 case 0x03: /* PCC-Compute-Last-Block-CMAC-Using-TDEA-192 */
4359 case 0x09: /* PCC-Compute-Last-Block-CMAC-Using-Encrypted-DEA */
4360 case 0x0a: /* PCC-Compute-Last-Block-CMAC-Using-Encrypted-TDEA-128 */
4361 case 0x0b: /* PCC-Compute-Last-Block-CMAC-Using-Encrypted-TDEA-192 */
4362 if (record_full_arch_list_add_mem (oaddr + 0x10, 8))
4366 case 0x12: /* PCC-Compute-Last-Block-CMAC-Using-AES-128 */
4367 case 0x13: /* PCC-Compute-Last-Block-CMAC-Using-AES-192 */
4368 case 0x14: /* PCC-Compute-Last-Block-CMAC-Using-AES-256 */
4369 case 0x1a: /* PCC-Compute-Last-Block-CMAC-Using-Encrypted-AES-128 */
4370 case 0x1b: /* PCC-Compute-Last-Block-CMAC-Using-Encrypted-AES-192 */
4371 case 0x1c: /* PCC-Compute-Last-Block-CMAC-Using-Encrypted-AES-256 */
4372 if (record_full_arch_list_add_mem (oaddr + 0x18, 16))
4376 case 0x32: /* PCC-Compute-XTS-Parameter-Using-AES-128 */
4377 if (record_full_arch_list_add_mem (oaddr + 0x30, 32))
4381 case 0x34: /* PCC-Compute-XTS-Parameter-Using-AES-256 */
4382 if (record_full_arch_list_add_mem (oaddr + 0x40, 32))
4386 case 0x3a: /* PCC-Compute-XTS-Parameter-Using-Encrypted-AES-128 */
4387 if (record_full_arch_list_add_mem (oaddr + 0x50, 32))
4391 case 0x3c: /* PCC-Compute-XTS-Parameter-Using-Encrypted-AES-256 */
4392 if (record_full_arch_list_add_mem (oaddr + 0x60, 32))
4397 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown PCC function %02x at %s.\n",
4398 (int)tmp, paddress (gdbarch, addr));
4401 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4405 case 0xb92d: /* KMCTR - cipher message with counter [partial] */
4406 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4407 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4408 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4412 case 0x00: /* KMCTR-Query */
4413 if (record_full_arch_list_add_mem (oaddr, 16))
4417 case 0x01: /* KMCTR-DEA */
4418 case 0x02: /* KMCTR-TDEA-128 */
4419 case 0x03: /* KMCTR-TDEA-192 */
4420 case 0x09: /* KMCTR-Encrypted-DEA */
4421 case 0x0a: /* KMCTR-Encrypted-TDEA-128 */
4422 case 0x0b: /* KMCTR-Encrypted-TDEA-192 */
4423 case 0x12: /* KMCTR-AES-128 */
4424 case 0x13: /* KMCTR-AES-192 */
4425 case 0x14: /* KMCTR-AES-256 */
4426 case 0x1a: /* KMCTR-Encrypted-AES-128 */
4427 case 0x1b: /* KMCTR-Encrypted-AES-192 */
4428 case 0x1c: /* KMCTR-Encrypted-AES-256 */
4432 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown KMCTR function %02x at %s.\n",
4433 (int)tmp, paddress (gdbarch, addr));
4438 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
4439 oaddr2 = s390_record_address_mask (gdbarch, regcache, tmp);
4440 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[7] | 1), &tmp);
4441 if (record_full_arch_list_add_mem (oaddr2, tmp))
4443 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4445 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4447 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
4449 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[4]))
4452 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4456 case 0xb92e: /* KM - cipher message [partial] */
4457 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4458 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4459 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4463 case 0x00: /* KM-Query */
4464 if (record_full_arch_list_add_mem (oaddr, 16))
4468 case 0x01: /* KM-DEA */
4469 case 0x02: /* KM-TDEA-128 */
4470 case 0x03: /* KM-TDEA-192 */
4471 case 0x09: /* KM-Encrypted-DEA */
4472 case 0x0a: /* KM-Encrypted-TDEA-128 */
4473 case 0x0b: /* KM-Encrypted-TDEA-192 */
4474 case 0x12: /* KM-AES-128 */
4475 case 0x13: /* KM-AES-192 */
4476 case 0x14: /* KM-AES-256 */
4477 case 0x1a: /* KM-Encrypted-AES-128 */
4478 case 0x1b: /* KM-Encrypted-AES-192 */
4479 case 0x1c: /* KM-Encrypted-AES-256 */
4482 case 0x32: /* KM-XTS-AES-128 */
4483 if (record_full_arch_list_add_mem (oaddr + 0x10, 16))
4487 case 0x34: /* KM-XTS-AES-256 */
4488 if (record_full_arch_list_add_mem (oaddr + 0x20, 16))
4492 case 0x3a: /* KM-XTS-Encrypted-AES-128 */
4493 if (record_full_arch_list_add_mem (oaddr + 0x30, 16))
4497 case 0x3c: /* KM-XTS-Encrypted-AES-256 */
4498 if (record_full_arch_list_add_mem (oaddr + 0x40, 16))
4503 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown KM function %02x at %s.\n",
4504 (int)tmp, paddress (gdbarch, addr));
4509 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
4510 oaddr2 = s390_record_address_mask (gdbarch, regcache, tmp);
4511 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[7] | 1), &tmp);
4512 if (record_full_arch_list_add_mem (oaddr2, tmp))
4514 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4516 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4518 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
4521 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4525 /* 0xb932-0xb93b undefined */
4527 case 0xb93c: /* PPNO - perform pseudorandom number operation [partial] */
4528 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4529 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4530 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4534 case 0x00: /* PPNO-Query */
4535 case 0x80: /* PPNO-Query */
4536 if (record_full_arch_list_add_mem (oaddr, 16))
4540 case 0x03: /* PPNO-SHA-512-DRNG - generate */
4541 if (record_full_arch_list_add_mem (oaddr, 240))
4543 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
4544 oaddr2 = s390_record_address_mask (gdbarch, regcache, tmp);
4545 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[6] | 1), &tmp);
4546 if (record_full_arch_list_add_mem (oaddr2, tmp))
4548 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4550 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
4554 case 0x83: /* PPNO-SHA-512-DRNG - seed */
4555 if (record_full_arch_list_add_mem (oaddr, 240))
4557 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4559 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
4564 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown PPNO function %02x at %s.\n",
4565 (int)tmp, paddress (gdbarch, addr));
4568 /* DXC may be written */
4569 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
4571 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4575 /* 0xb93d undefined */
4577 case 0xb93e: /* KIMD - compute intermediate message digest [partial] */
4578 case 0xb93f: /* KLMD - compute last message digest [partial] */
4579 regcache_raw_read_unsigned (regcache, S390_R1_REGNUM, &tmp);
4580 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4581 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4585 case 0x00: /* K*MD-Query */
4586 if (record_full_arch_list_add_mem (oaddr, 16))
4590 case 0x01: /* K*MD-SHA-1 */
4591 if (record_full_arch_list_add_mem (oaddr, 20))
4595 case 0x02: /* K*MD-SHA-256 */
4596 if (record_full_arch_list_add_mem (oaddr, 32))
4600 case 0x03: /* K*MD-SHA-512 */
4601 if (record_full_arch_list_add_mem (oaddr, 64))
4605 case 0x41: /* KIMD-GHASH */
4606 /* Only valid for KIMD. */
4607 if (insn[0] == 0xb93e)
4609 if (record_full_arch_list_add_mem (oaddr, 16))
4616 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown KMAC function %02x at %s.\n",
4617 (int)tmp, paddress (gdbarch, addr));
4622 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4624 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[7] | 1)))
4627 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4631 /* 0xb940 undefined */
4632 /* 0xb944-0xb945 undefined */
4633 /* 0xb947-0xb948 undefined */
4634 /* 0xb94c-0xb950 undefined */
4635 /* 0xb954-0xb958 undefined */
4636 /* 0xb95c-0xb95f undefined */
4637 /* 0xb962-0xb971 undefined */
4638 /* 0xb974-0xb97f undefined */
4640 case 0xb983: /* FLOGR - find leftmost one */
4641 /* 64-bit gpr pair destination + flags */
4642 if (s390_record_gpr_g (gdbarch, regcache, inib[6]))
4644 if (s390_record_gpr_g (gdbarch, regcache, inib[6] | 1))
4646 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4650 /* 0xb98a privileged */
4651 /* 0xb98b-0xb98c undefined */
4653 case 0xb98d: /* EPSW - extract psw */
4654 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4657 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4661 /* 0xb98e-0xb98f privileged */
4663 case 0xb990: /* TRTT - translate two to two [partial] */
4664 case 0xb991: /* TRTO - translate two to one [partial] */
4665 case 0xb992: /* TROT - translate one to two [partial] */
4666 case 0xb993: /* TROO - translate one to one [partial] */
4667 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[6], &tmp);
4668 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
4669 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[6] | 1), &tmp);
4670 /* tmp is source length, we want destination length. Adjust. */
4671 if (insn[0] == 0xb991)
4673 if (insn[0] == 0xb992)
4675 if (record_full_arch_list_add_mem (oaddr, tmp))
4677 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4679 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
4681 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4683 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4687 case 0xb996: /* MLR - multiply logical */
4688 case 0xb997: /* DLR - divide logical */
4689 /* 32-bit gpr pair destination */
4690 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4692 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
4696 /* 0xb99a-0xb9af unsupported, privileged, or undefined */
4697 /* 0xb9b4-0xb9bc undefined */
4699 case 0xb9bd: /* TRTRE - translate and test reverse extended [partial] */
4700 case 0xb9bf: /* TRTE - translate and test extended [partial] */
4701 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[6]))
4703 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[6] | 1)))
4705 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[7]))
4707 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4711 /* 0xb9c0-0xb9c7 undefined */
4713 case 0xb9c8: /* AHHHR - add high */
4714 case 0xb9c9: /* SHHHR - subtract high */
4715 case 0xb9ca: /* ALHHHR - add logical high */
4716 case 0xb9cb: /* SLHHHR - subtract logical high */
4717 case 0xb9d8: /* AHHLR - add high */
4718 case 0xb9d9: /* SHHLR - subtract high */
4719 case 0xb9da: /* ALHHLR - add logical high */
4720 case 0xb9db: /* SLHHLR - subtract logical high */
4721 /* 32-bit high gpr destination + flags */
4722 if (s390_record_gpr_h (gdbarch, regcache, inib[6]))
4724 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4728 /* 0xb9cc undefined */
4729 /* 0xb9ce undefined */
4730 /* 0xb9d0-0xb9d7 undefined */
4731 /* 0xb9dc undefined */
4732 /* 0xb9de undefined */
4734 case 0xb9e0: /* LOCFHR - load high on condition */
4735 /* 32-bit high gpr destination */
4736 if (s390_record_gpr_h (gdbarch, regcache, inib[6]))
4740 /* 0xb9e3 undefined */
4741 /* 0xb9e5 undefined */
4742 /* 0xb9ee-0xb9f1 undefined */
4743 /* 0xb9f3 undefined */
4744 /* 0xb9f5 undefined */
4745 /* 0xb9fc undefined */
4746 /* 0xb9fe -0xb9ff undefined */
4753 /* 0xb4-0xb5 undefined */
4754 /* 0xb6 privileged: STCTL - store control */
4755 /* 0xb7 privileged: LCTL - load control */
4756 /* 0xb8 undefined */
4758 case 0xba: /* CS - compare and swap */
4759 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
4760 if (record_full_arch_list_add_mem (oaddr, 4))
4762 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
4764 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4768 case 0xbb: /* CDS - compare double and swap */
4769 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
4770 if (record_full_arch_list_add_mem (oaddr, 8))
4772 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
4774 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
4776 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4780 /* 0xbc undefined */
4782 case 0xbe: /* STCM - store characters under mask */
4783 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
4784 if (record_full_arch_list_add_mem (oaddr, s390_popcnt (inib[3])))
4793 /* RIL-format instruction */
4794 switch (ibyte[0] << 4 | inib[3])
4796 case 0xc00: /* LARL - load address relative long */
4797 case 0xc05: /* BRASL - branch relative and save long */
4798 case 0xc09: /* IILF - insert immediate */
4799 case 0xc21: /* MSFI - multiply single immediate */
4800 case 0xc42: /* LLHRL - load logical halfword relative long */
4801 case 0xc45: /* LHRL - load halfword relative long */
4802 case 0xc4d: /* LRL - load relative long */
4803 /* 32-bit or native gpr destination */
4804 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
4808 case 0xc01: /* LGFI - load immediate */
4809 case 0xc0e: /* LLIHF - load logical immediate */
4810 case 0xc0f: /* LLILF - load logical immediate */
4811 case 0xc20: /* MSGFI - multiply single immediate */
4812 case 0xc44: /* LGHRL - load halfword relative long */
4813 case 0xc46: /* LLGHRL - load logical halfword relative long */
4814 case 0xc48: /* LGRL - load relative long */
4815 case 0xc4c: /* LGFRL - load relative long */
4816 case 0xc4e: /* LLGFRL - load logical relative long */
4817 /* 64-bit gpr destination */
4818 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
4822 /* 0xc02-0xc03 undefined */
4824 case 0xc04: /* BRCL - branch relative on condition long */
4825 case 0xc62: /* PFDRL - prefetch data relative long */
4828 case 0xc06: /* XIHF - xor immediate */
4829 case 0xc0a: /* NIHF - and immediate */
4830 case 0xc0c: /* OIHF - or immediate */
4831 case 0xcc8: /* AIH - add immediate high */
4832 case 0xcca: /* ALSIH - add logical with signed immediate high */
4833 /* 32-bit high gpr destination + flags */
4834 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
4836 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4840 case 0xc07: /* XILF - xor immediate */
4841 case 0xc0b: /* NILF - and immediate */
4842 case 0xc0d: /* OILF - or immediate */
4843 case 0xc25: /* SLFI - subtract logical immediate */
4844 case 0xc29: /* AFI - add immediate */
4845 case 0xc2b: /* ALFI - add logical immediate */
4846 /* 32-bit gpr destination + flags */
4847 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
4849 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4853 case 0xc08: /* IIHF - insert immediate */
4854 case 0xcc6: /* BRCTH - branch relative on count high */
4855 case 0xccb: /* ALSIHN - add logical with signed immediate high */
4856 /* 32-bit high gpr destination */
4857 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
4861 /* 0xc22-0xc23 undefined */
4863 case 0xc24: /* SLGFI - subtract logical immediate */
4864 case 0xc28: /* AGFI - add immediate */
4865 case 0xc2a: /* ALGFI - add logical immediate */
4866 /* 64-bit gpr destination + flags */
4867 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
4869 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4873 /* 0xc26-0xc27 undefined */
4875 case 0xc2c: /* CGFI - compare immediate */
4876 case 0xc2d: /* CFI - compare immediate */
4877 case 0xc2e: /* CLGFI - compare logical immediate */
4878 case 0xc2f: /* CLFI - compare logical immediate */
4879 case 0xc64: /* CGHRL - compare halfword relative long */
4880 case 0xc65: /* CHRL - compare halfword relative long */
4881 case 0xc66: /* CLGHRL - compare logical halfword relative long */
4882 case 0xc67: /* CLHRL - compare logical halfword relative long */
4883 case 0xc68: /* CGRL - compare relative long */
4884 case 0xc6a: /* CLGRL - compare logical relative long */
4885 case 0xc6c: /* CGFRL - compare relative long */
4886 case 0xc6d: /* CRL - compare relative long */
4887 case 0xc6e: /* CLGFRL - compare logical relative long */
4888 case 0xc6f: /* CLRL - compare logical relative long */
4889 case 0xccd: /* CIH - compare immediate high */
4890 case 0xccf: /* CLIH - compare logical immediate high */
4892 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
4896 /* 0xc40-0xc41 undefined */
4897 /* 0xc43 undefined */
4899 case 0xc47: /* STHRL - store halfword relative long */
4900 oaddr = s390_record_calc_rl (gdbarch, regcache, addr, insn[1], insn[2]);
4901 if (record_full_arch_list_add_mem (oaddr, 2))
4905 /* 0xc49-0xc4a undefined */
4907 case 0xc4b: /* STGRL - store relative long */
4908 oaddr = s390_record_calc_rl (gdbarch, regcache, addr, insn[1], insn[2]);
4909 if (record_full_arch_list_add_mem (oaddr, 8))
4913 case 0xc4f: /* STRL - store relative long */
4914 oaddr = s390_record_calc_rl (gdbarch, regcache, addr, insn[1], insn[2]);
4915 if (record_full_arch_list_add_mem (oaddr, 4))
4919 case 0xc60: /* EXRL - execute relative long */
4922 fprintf_unfiltered (gdb_stdlog, "Warning: Double execute at %s.\n",
4923 paddress (gdbarch, addr));
4926 addr = s390_record_calc_rl (gdbarch, regcache, addr, insn[1], insn[2]);
4929 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[2], &tmp);
4938 /* 0xc61 undefined */
4939 /* 0xc63 undefined */
4940 /* 0xc69 undefined */
4941 /* 0xc6b undefined */
4942 /* 0xcc0-0xcc5 undefined */
4943 /* 0xcc7 undefined */
4944 /* 0xcc9 undefined */
4945 /* 0xccc undefined */
4946 /* 0xcce undefined */
4953 /* 0xc1 undefined */
4954 /* 0xc3 undefined */
4956 case 0xc5: /* BPRP - branch prediction relative preload */
4957 case 0xc7: /* BPP - branch prediction preload */
4958 /* no visible effect */
4962 /* SSF-format instruction */
4963 switch (ibyte[0] << 4 | inib[3])
4965 /* 0xc80 unsupported */
4967 case 0xc81: /* ECTG - extract cpu time */
4968 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
4970 if (s390_record_gpr_g (gdbarch, regcache, 0))
4972 if (s390_record_gpr_g (gdbarch, regcache, 1))
4976 case 0xc82: /* CSST - compare and swap and store */
4979 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
4981 sc = tmp >> 8 & 0xff;
4983 /* First and third operands. */
4984 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
4987 case 0x00: /* 32-bit */
4988 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
4990 if (record_full_arch_list_add_mem (oaddr, 4))
4994 case 0x01: /* 64-bit */
4995 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
4997 if (record_full_arch_list_add_mem (oaddr, 8))
5001 case 0x02: /* 128-bit */
5002 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5004 if (s390_record_gpr_g (gdbarch, regcache, inib[2] | 1))
5006 if (record_full_arch_list_add_mem (oaddr, 16))
5011 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown CSST FC %02x at %s.\n",
5012 fc, paddress (gdbarch, addr));
5016 /* Second operand. */
5017 oaddr2 = s390_record_calc_disp (gdbarch, regcache, 0, insn[2], 0);
5020 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown CSST FC %02x at %s.\n",
5021 sc, paddress (gdbarch, addr));
5025 if (record_full_arch_list_add_mem (oaddr2, 1 << sc))
5029 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5034 /* 0xc83 undefined */
5036 case 0xc84: /* LPD - load pair disjoint */
5037 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5039 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
5041 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5045 case 0xc85: /* LPDG - load pair disjoint */
5046 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5048 if (s390_record_gpr_g (gdbarch, regcache, inib[2] | 1))
5050 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5054 /* 0xc86-0xc8f undefined */
5061 /* 0xc9-0xcb undefined */
5062 /* 0xcd-0xcf undefined */
5064 case 0xd0: /* TRTR - translate and test reversed */
5065 case 0xdd: /* TRT - translate and test */
5066 if (record_full_arch_list_add_reg (regcache, S390_R1_REGNUM))
5068 if (record_full_arch_list_add_reg (regcache, S390_R2_REGNUM))
5070 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5074 case 0xd1: /* MVN - move numbers */
5075 case 0xd2: /* MVC - move */
5076 case 0xd3: /* MVZ - move zones */
5077 case 0xdc: /* TR - translate */
5078 case 0xe8: /* MVCIN - move inverse */
5079 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5080 if (record_full_arch_list_add_mem (oaddr, ibyte[1] + 1))
5084 case 0xd4: /* NC - and */
5085 case 0xd6: /* OC - or*/
5086 case 0xd7: /* XC - xor */
5087 case 0xe2: /* UNPKU - unpack unicode */
5088 case 0xea: /* UNPKA - unpack ASCII */
5089 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5090 if (record_full_arch_list_add_mem (oaddr, ibyte[1] + 1))
5092 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5096 case 0xde: /* ED - edit */
5097 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5098 if (record_full_arch_list_add_mem (oaddr, ibyte[1] + 1))
5100 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5102 /* DXC may be written */
5103 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5107 case 0xdf: /* EDMK - edit and mark */
5108 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5109 if (record_full_arch_list_add_mem (oaddr, ibyte[1] + 1))
5111 if (record_full_arch_list_add_reg (regcache, S390_R1_REGNUM))
5113 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5115 /* DXC may be written */
5116 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5120 /* 0xd8 undefined */
5121 /* 0xd9 unsupported: MVCK - move with key */
5122 /* 0xda unsupported: MVCP - move to primary */
5123 /* 0xdb unsupported: MVCS - move to secondary */
5124 /* 0xe0 undefined */
5126 case 0xe1: /* PKU - pack unicode */
5127 case 0xe9: /* PKA - pack ASCII */
5128 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5129 if (record_full_arch_list_add_mem (oaddr, 16))
5138 /* RXY/RXE/RXF/RSL/RSY/SIY/V*-format instruction */
5139 switch (ibyte[0] << 8 | ibyte[5])
5141 /* 0xe300-0xe301 undefined */
5143 case 0xe302: /* LTG - load and test */
5144 case 0xe308: /* AG - add */
5145 case 0xe309: /* SG - subtract */
5146 case 0xe30a: /* ALG - add logical */
5147 case 0xe30b: /* SLG - subtract logical */
5148 case 0xe318: /* AGF - add */
5149 case 0xe319: /* SGF - subtract */
5150 case 0xe31a: /* ALGF - add logical */
5151 case 0xe31b: /* SLGF - subtract logical */
5152 case 0xe332: /* LTGF - load and test */
5153 case 0xe380: /* NG - and */
5154 case 0xe381: /* OG - or */
5155 case 0xe382: /* XG - xor */
5156 case 0xe388: /* ALCG - add logical with carry */
5157 case 0xe389: /* SLBG - subtract logical with borrow */
5158 case 0xeb0a: /* SRAG - shift right single */
5159 case 0xeb0b: /* SLAG - shift left single */
5160 /* 64-bit gpr destination + flags */
5161 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5163 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5167 /* 0xe303 privileged */
5169 case 0xe304: /* LG - load */
5170 case 0xe30c: /* MSG - multiply single */
5171 case 0xe30f: /* LRVG - load reversed */
5172 case 0xe314: /* LGF - load */
5173 case 0xe315: /* LGH - load halfword */
5174 case 0xe316: /* LLGF - load logical */
5175 case 0xe317: /* LLGT - load logical thirty one bits */
5176 case 0xe31c: /* MSGF - multiply single */
5177 case 0xe32a: /* LZRG - load and zero rightmost byte */
5178 case 0xe33a: /* LLZRGF - load logical and zero rightmost byte */
5179 case 0xe33c: /* MGH - multiply halfword 64x16mem -> 64 */
5180 case 0xe346: /* BCTG - branch on count */
5181 case 0xe377: /* LGB - load byte */
5182 case 0xe390: /* LLGC - load logical character */
5183 case 0xe391: /* LLGH - load logical halfword */
5184 case 0xeb0c: /* SRLG - shift right single logical */
5185 case 0xeb0d: /* SLLG - shift left single logical */
5186 case 0xeb1c: /* RLLG - rotate left single logical */
5187 case 0xeb44: /* BXHG - branch on index high */
5188 case 0xeb45: /* BXLEG - branch on index low or equal */
5189 case 0xeb4c: /* ECAG - extract cpu attribute */
5190 case 0xebe2: /* LOCG - load on condition */
5191 /* 64-bit gpr destination */
5192 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5196 /* 0xe305 undefined */
5198 case 0xe306: /* CVBY - convert to binary */
5199 /* 32-bit or native gpr destination + FPC (DXC write) */
5200 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5202 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5206 /* 0xe307 undefined */
5208 case 0xe30d: /* DSG - divide single */
5209 case 0xe31d: /* DSGF - divide single */
5210 case 0xe384: /* MG - multiply 64x64mem -> 128 */
5211 case 0xe386: /* MLG - multiply logical */
5212 case 0xe387: /* DLG - divide logical */
5213 case 0xe38f: /* LPQ - load pair from quadword */
5214 /* 64-bit gpr pair destination */
5215 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5217 if (s390_record_gpr_g (gdbarch, regcache, inib[2] | 1))
5221 case 0xe30e: /* CVBG - convert to binary */
5222 /* 64-bit gpr destination + FPC (DXC write) */
5223 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5225 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5229 /* 0xe310-0xe311 undefined */
5231 case 0xe312: /* LT - load and test */
5232 case 0xe338: /* AGH - add halfword to 64 bit value */
5233 case 0xe339: /* SGH - subtract halfword from 64 bit value */
5234 case 0xe353: /* MSC - multiply single 32x32mem -> 32 */
5235 case 0xe354: /* NY - and */
5236 case 0xe356: /* OY - or */
5237 case 0xe357: /* XY - xor */
5238 case 0xe35a: /* AY - add */
5239 case 0xe35b: /* SY - subtract */
5240 case 0xe35e: /* ALY - add logical */
5241 case 0xe35f: /* SLY - subtract logical */
5242 case 0xe37a: /* AHY - add halfword */
5243 case 0xe37b: /* SHY - subtract halfword */
5244 case 0xe383: /* MSGC - multiply single 64x64mem -> 64 */
5245 case 0xe398: /* ALC - add logical with carry */
5246 case 0xe399: /* SLB - subtract logical with borrow */
5247 case 0xe727: /* LCBB - load count to block bounduary */
5248 case 0xeb81: /* ICMY - insert characters under mask */
5249 case 0xebdc: /* SRAK - shift left single */
5250 case 0xebdd: /* SLAK - shift left single */
5251 /* 32/64-bit gpr destination + flags */
5252 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5254 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5258 /* 0xe313 privileged */
5260 case 0xe31e: /* LRV - load reversed */
5261 case 0xe31f: /* LRVH - load reversed */
5262 case 0xe33b: /* LZRF - load and zero rightmost byte */
5263 case 0xe351: /* MSY - multiply single */
5264 case 0xe358: /* LY - load */
5265 case 0xe371: /* LAY - load address */
5266 case 0xe373: /* ICY - insert character */
5267 case 0xe376: /* LB - load byte */
5268 case 0xe378: /* LHY - load */
5269 case 0xe37c: /* MHY - multiply halfword */
5270 case 0xe394: /* LLC - load logical character */
5271 case 0xe395: /* LLH - load logical halfword */
5272 case 0xeb1d: /* RLL - rotate left single logical */
5273 case 0xebde: /* SRLK - shift left single logical */
5274 case 0xebdf: /* SLLK - shift left single logical */
5275 case 0xebf2: /* LOC - load on condition */
5276 /* 32-bit or native gpr destination */
5277 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5281 case 0xe320: /* CG - compare */
5282 case 0xe321: /* CLG - compare logical */
5283 case 0xe330: /* CGF - compare */
5284 case 0xe331: /* CLGF - compare logical */
5285 case 0xe334: /* CGH - compare halfword */
5286 case 0xe355: /* CLY - compare logical */
5287 case 0xe359: /* CY - compare */
5288 case 0xe379: /* CHY - compare halfword */
5289 case 0xe3cd: /* CHF - compare high */
5290 case 0xe3cf: /* CLHF - compare logical high */
5291 case 0xeb20: /* CLMH - compare logical under mask high */
5292 case 0xeb21: /* CLMY - compare logical under mask */
5293 case 0xeb51: /* TMY - test under mask */
5294 case 0xeb55: /* CLIY - compare logical */
5295 case 0xebc0: /* TP - test decimal */
5296 case 0xed10: /* TCEB - test data class */
5297 case 0xed11: /* TCDB - test data class */
5298 case 0xed12: /* TCXB - test data class */
5299 case 0xed50: /* TDCET - test data class */
5300 case 0xed51: /* TDGET - test data group */
5301 case 0xed54: /* TDCDT - test data class */
5302 case 0xed55: /* TDGDT - test data group */
5303 case 0xed58: /* TDCXT - test data class */
5304 case 0xed59: /* TDGXT - test data group */
5306 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5310 /* 0xe322-0xe323 undefined */
5312 case 0xe324: /* STG - store */
5313 case 0xe325: /* NTSTG - nontransactional store */
5314 case 0xe326: /* CVDY - convert to decimal */
5315 case 0xe32f: /* STRVG - store reversed */
5316 case 0xebe3: /* STOCG - store on condition */
5317 case 0xed67: /* STDY - store */
5318 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], ibyte[4]);
5319 if (record_full_arch_list_add_mem (oaddr, 8))
5323 /* 0xe327-0xe329 undefined */
5324 /* 0xe32b-0xe32d undefined */
5326 case 0xe32e: /* CVDG - convert to decimal */
5327 case 0xe38e: /* STPQ - store pair to quadword */
5328 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], ibyte[4]);
5329 if (record_full_arch_list_add_mem (oaddr, 16))
5333 /* 0xe333 undefined */
5334 /* 0xe335 undefined */
5336 case 0xe336: /* PFD - prefetch data */
5339 /* 0xe337 undefined */
5340 /* 0xe33c-0xe33d undefined */
5342 case 0xe33e: /* STRV - store reversed */
5343 case 0xe350: /* STY - store */
5344 case 0xe3cb: /* STFH - store high */
5345 case 0xebe1: /* STOCFH - store high on condition */
5346 case 0xebf3: /* STOC - store on condition */
5347 case 0xed66: /* STEY - store */
5348 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], ibyte[4]);
5349 if (record_full_arch_list_add_mem (oaddr, 4))
5353 case 0xe33f: /* STRVH - store reversed */
5354 case 0xe370: /* STHY - store halfword */
5355 case 0xe3c7: /* STHH - store halfword high */
5356 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], ibyte[4]);
5357 if (record_full_arch_list_add_mem (oaddr, 2))
5361 /* 0xe340-0xe345 undefined */
5363 case 0xe347: /* BIC - branch indirect on condition */
5366 /* 0xe348-0xe34f undefined */
5367 /* 0xe352 undefined */
5369 case 0xe35c: /* MFY - multiply */
5370 case 0xe396: /* ML - multiply logical */
5371 case 0xe397: /* DL - divide logical */
5372 /* 32-bit gpr pair destination */
5373 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5375 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
5379 /* 0xe35d undefined */
5380 /* 0xe360-0xe36f undefined */
5382 case 0xe372: /* STCY - store character */
5383 case 0xe3c3: /* STCH - store character high */
5384 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], ibyte[4]);
5385 if (record_full_arch_list_add_mem (oaddr, 1))
5389 /* 0xe374 undefined */
5391 case 0xe375: /* LAEY - load address extended */
5392 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5394 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + inib[2]))
5398 /* 0xe37d-0xe37f undefined */
5400 case 0xe385: /* LGAT - load and trap */
5401 case 0xe39c: /* LLGTAT - load logical thirty one bits and trap */
5402 case 0xe39d: /* LLGFAT - load logical and trap */
5403 case 0xe650: /* VCVB - vector convert to binary 32 bit*/
5404 case 0xe652: /* VCVBG - vector convert to binary 64 bit*/
5405 case 0xe721: /* VLGV - vector load gr from vr element */
5406 /* 64-bit gpr destination + fpc for possible DXC write */
5407 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5409 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5413 /* 0xe38a-0xe38d undefined */
5414 /* 0xe392-0xe393 undefined */
5415 /* 0xe39a-0xe39b undefined */
5416 /* 0xe39e undefined */
5418 case 0xe39f: /* LAT - load and trap */
5419 /* 32-bit gpr destination + fpc for possible DXC write */
5420 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5422 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5426 /* 0xe3a0-0xe3bf undefined */
5428 case 0xe3c0: /* LBH - load byte high */
5429 case 0xe3c2: /* LLCH - load logical character high */
5430 case 0xe3c4: /* LHH - load halfword high */
5431 case 0xe3c6: /* LLHH - load logical halfword high */
5432 case 0xe3ca: /* LFH - load high */
5433 case 0xebe0: /* LOCFH - load high on condition */
5434 /* 32-bit high gpr destination */
5435 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
5439 /* 0xe3c1 undefined */
5440 /* 0xe3c5 undefined */
5442 case 0xe3c8: /* LFHAT - load high and trap */
5443 /* 32-bit high gpr destination + fpc for possible DXC write */
5444 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
5446 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5450 /* 0xe3c9 undefined */
5451 /* 0xe3cc undefined */
5452 /* 0xe3ce undefined */
5453 /* 0xe3d0-0xe3ff undefined */
5455 case 0xe634: /* VPKZ - vector pack zoned */
5456 case 0xe635: /* VLRL - vector load rightmost with immed. length */
5457 case 0xe637: /* VLRLR - vector load rightmost with length */
5458 case 0xe649: /* VLIP - vector load immediate decimal */
5459 case 0xe700: /* VLEB - vector load element */
5460 case 0xe701: /* VLEH - vector load element */
5461 case 0xe702: /* VLEG - vector load element */
5462 case 0xe703: /* VLEF - vector load element */
5463 case 0xe704: /* VLLEZ - vector load logical element and zero */
5464 case 0xe705: /* VLREP - vector load and replicate */
5465 case 0xe706: /* VL - vector load */
5466 case 0xe707: /* VLBB - vector load to block bounduary */
5467 case 0xe712: /* VGEG - vector gather element */
5468 case 0xe713: /* VGEF - vector gather element */
5469 case 0xe722: /* VLVG - vector load vr element from gr */
5470 case 0xe730: /* VESL - vector element shift left */
5471 case 0xe733: /* VERLL - vector element rotate left logical */
5472 case 0xe737: /* VLL - vector load with length */
5473 case 0xe738: /* VESRL - vector element shift right logical */
5474 case 0xe73a: /* VESRA - vector element shift right arithmetic */
5475 case 0xe740: /* VLEIB - vector load element immediate */
5476 case 0xe741: /* VLEIH - vector load element immediate */
5477 case 0xe742: /* VLEIG - vector load element immediate */
5478 case 0xe743: /* VLEIF - vector load element immediate */
5479 case 0xe744: /* VGBM - vector generate byte mask */
5480 case 0xe745: /* VREPI - vector replicate immediate */
5481 case 0xe746: /* VGM - vector generate mask */
5482 case 0xe74d: /* VREP - vector replicate */
5483 case 0xe750: /* VPOPCT - vector population count */
5484 case 0xe752: /* VCTZ - vector count trailing zeros */
5485 case 0xe753: /* VCLZ - vector count leading zeros */
5486 case 0xe756: /* VLR - vector load */
5487 case 0xe75f: /* VSEG -vector sign extend to doubleword */
5488 case 0xe760: /* VMRL - vector merge low */
5489 case 0xe761: /* VMRH - vector merge high */
5490 case 0xe762: /* VLVGP - vector load vr from grs disjoint */
5491 case 0xe764: /* VSUM - vector sum across word */
5492 case 0xe765: /* VSUMG - vector sum across doubleword */
5493 case 0xe766: /* VCKSM - vector checksum */
5494 case 0xe767: /* VSUMQ - vector sum across quadword */
5495 case 0xe768: /* VN - vector and */
5496 case 0xe769: /* VNC - vector and with complement */
5497 case 0xe76a: /* VO - vector or */
5498 case 0xe76b: /* VNO - vector nor */
5499 case 0xe76c: /* VNX - vector not exclusive or */
5500 case 0xe76d: /* VX - vector xor */
5501 case 0xe76e: /* VNN - vector nand */
5502 case 0xe76f: /* VOC - vector or with complement */
5503 case 0xe770: /* VESLV - vector element shift left */
5504 case 0xe772: /* VERIM - vector element rotate and insert under mask */
5505 case 0xe773: /* VERLLV - vector element rotate left logical */
5506 case 0xe774: /* VSL - vector shift left */
5507 case 0xe775: /* VSLB - vector shift left by byte */
5508 case 0xe777: /* VSLDB - vector shift left double by byte */
5509 case 0xe778: /* VESRLV - vector element shift right logical */
5510 case 0xe77a: /* VESRAV - vector element shift right arithmetic */
5511 case 0xe77c: /* VSRL - vector shift right logical */
5512 case 0xe77d: /* VSRLB - vector shift right logical by byte */
5513 case 0xe77e: /* VSRA - vector shift right arithmetic */
5514 case 0xe77f: /* VSRAB - vector shift right arithmetic by byte */
5515 case 0xe784: /* VPDI - vector permute doubleword immediate */
5516 case 0xe785: /* VBPERM - vector bit permute */
5517 case 0xe78c: /* VPERM - vector permute */
5518 case 0xe78d: /* VSEL - vector select */
5519 case 0xe78e: /* VFMS - vector fp multiply and subtract */
5520 case 0xe78f: /* VFMA - vector fp multiply and add */
5521 case 0xe794: /* VPK - vector pack */
5522 case 0xe79e: /* VFNMS - vector fp negative multiply and subtract */
5523 case 0xe79f: /* VFNMA - vector fp negative multiply and add */
5524 case 0xe7a1: /* VMLH - vector multiply logical high */
5525 case 0xe7a2: /* VML - vector multiply low */
5526 case 0xe7a3: /* VMH - vector multiply high */
5527 case 0xe7a4: /* VMLE - vector multiply logical even */
5528 case 0xe7a5: /* VMLO - vector multiply logical odd */
5529 case 0xe7a6: /* VME - vector multiply even */
5530 case 0xe7a7: /* VMO - vector multiply odd */
5531 case 0xe7a9: /* VMALH - vector multiply and add logical high */
5532 case 0xe7aa: /* VMAL - vector multiply and add low */
5533 case 0xe7ab: /* VMAH - vector multiply and add high */
5534 case 0xe7ac: /* VMALE - vector multiply and add logical even */
5535 case 0xe7ad: /* VMALO - vector multiply and add logical odd */
5536 case 0xe7ae: /* VMAE - vector multiply and add even */
5537 case 0xe7af: /* VMAO - vector multiply and add odd */
5538 case 0xe7b4: /* VGFM - vector Galois field multiply sum */
5539 case 0xe7b8: /* VMSL - vector multiply sum logical */
5540 case 0xe7b9: /* VACCC - vector add with carry compute carry */
5541 case 0xe7bb: /* VAC - vector add with carry */
5542 case 0xe7bc: /* VGFMA - vector Galois field multiply sum and accumulate */
5543 case 0xe7bd: /* VSBCBI - vector subtract with borrow compute borrow indication */
5544 case 0xe7bf: /* VSBI - vector subtract with borrow indication */
5545 case 0xe7c0: /* VCLGD - vector convert to logical 64-bit */
5546 case 0xe7c1: /* VCDLG - vector convert from logical 64-bit */
5547 case 0xe7c2: /* VCGD - vector convert to fixed 64-bit */
5548 case 0xe7c3: /* VCDG - vector convert from fixed 64-bit */
5549 case 0xe7c4: /* VLDE/VFLL - vector fp load lengthened */
5550 case 0xe7c5: /* VLED/VFLR - vector fp load rounded */
5551 case 0xe7c7: /* VFI - vector load fp integer */
5552 case 0xe7cc: /* VFPSO - vector fp perform sign operation */
5553 case 0xe7ce: /* VFSQ - vector fp square root */
5554 case 0xe7d4: /* VUPLL - vector unpack logical low */
5555 case 0xe7d6: /* VUPL - vector unpack low */
5556 case 0xe7d5: /* VUPLH - vector unpack logical high */
5557 case 0xe7d7: /* VUPH - vector unpack high */
5558 case 0xe7de: /* VLC - vector load complement */
5559 case 0xe7df: /* VLP - vector load positive */
5560 case 0xe7e2: /* VFA - vector fp subtract */
5561 case 0xe7e3: /* VFA - vector fp add */
5562 case 0xe7e5: /* VFD - vector fp divide */
5563 case 0xe7e7: /* VFM - vector fp multiply */
5564 case 0xe7ee: /* VFMIN - vector fp minimum */
5565 case 0xe7ef: /* VFMAX - vector fp maximum */
5566 case 0xe7f0: /* VAVGL - vector average logical */
5567 case 0xe7f1: /* VACC - vector add and compute carry */
5568 case 0xe7f2: /* VAVG - vector average */
5569 case 0xe7f3: /* VA - vector add */
5570 case 0xe7f5: /* VSCBI - vector subtract compute borrow indication */
5571 case 0xe7f7: /* VS - vector subtract */
5572 case 0xe7fc: /* VMNL - vector minimum logical */
5573 case 0xe7fd: /* VMXL - vector maximum logical */
5574 case 0xe7fe: /* VMN - vector minimum */
5575 case 0xe7ff: /* VMX - vector maximum */
5576 /* vector destination + FPC */
5577 if (s390_record_vr (gdbarch, regcache, ivec[0]))
5579 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5583 case 0xe63d: /* VSTRL - vector store rightmost with immed. length */
5584 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5585 if (record_full_arch_list_add_mem (oaddr, inib[3] + 1))
5587 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5591 case 0xe708: /* VSTEB - vector store element */
5592 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
5593 if (record_full_arch_list_add_mem (oaddr, 1))
5595 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5599 case 0xe709: /* VSTEH - vector store element */
5600 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
5601 if (record_full_arch_list_add_mem (oaddr, 2))
5603 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5607 case 0xe70a: /* VSTEG - vector store element */
5608 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
5609 if (record_full_arch_list_add_mem (oaddr, 8))
5611 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5615 case 0xe70b: /* VSTEF - vector store element */
5616 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
5617 if (record_full_arch_list_add_mem (oaddr, 4))
5619 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5623 /* 0xe70c-0xe70d undefined */
5625 case 0xe70e: /* VST - vector store */
5626 oaddr = s390_record_calc_disp (gdbarch, regcache, inib[3], insn[1], 0);
5627 if (record_full_arch_list_add_mem (oaddr, 16))
5629 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5633 /* 0xe70f-0xe711 undefined */
5634 /* 0xe714-0xe719 undefined */
5636 case 0xe71a: /* VSCEG - vector scatter element */
5637 if (s390_record_calc_disp_vsce (gdbarch, regcache, ivec[1], inib[8], 8, insn[1], 0, &oaddr))
5639 if (record_full_arch_list_add_mem (oaddr, 8))
5641 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5645 case 0xe71b: /* VSCEF - vector scatter element */
5646 if (s390_record_calc_disp_vsce (gdbarch, regcache, ivec[1], inib[8], 4, insn[1], 0, &oaddr))
5648 if (record_full_arch_list_add_mem (oaddr, 4))
5650 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5654 /* 0xe71c-0xe720 undefined */
5655 /* 0xe723-0xe726 undefined */
5656 /* 0xe728-0xe72f undefined */
5657 /* 0xe731-0xe732 undefined */
5658 /* 0xe734-0xe735 undefined */
5660 case 0xe736: /* VLM - vector load multiple */
5661 for (i = ivec[0]; i != ivec[1]; i++, i &= 0x1f)
5662 if (s390_record_vr (gdbarch, regcache, i))
5664 if (s390_record_vr (gdbarch, regcache, ivec[1]))
5666 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5670 /* 0xe739 undefined */
5671 /* 0xe73b-0xe73d undefined */
5673 case 0xe73e: /* VSTM - vector store multiple */
5674 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5675 if (ivec[0] <= ivec[1])
5676 n = ivec[1] - ivec[0] + 1;
5678 n = ivec[1] + 0x20 - ivec[0] + 1;
5679 if (record_full_arch_list_add_mem (oaddr, n * 16))
5681 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5685 case 0xe63c: /* VUPKZ - vector unpack zoned */
5686 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5687 if (record_full_arch_list_add_mem (oaddr, (ibyte[1] + 1) & 31))
5689 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5693 case 0xe63f: /* VSTRLR - vector store rightmost with length */
5694 case 0xe73f: /* VSTL - vector store with length */
5695 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
5696 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[3], &tmp);
5700 if (record_full_arch_list_add_mem (oaddr, tmp + 1))
5702 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5706 /* 0xe747-0xe749 undefined */
5708 case 0xe658: /* VCVD - vector convert to decimal 32 bit */
5709 case 0xe659: /* VSRP - vector shift and round decimal */
5710 case 0xe65a: /* VCVDG - vector convert to decimal 64 bit*/
5711 case 0xe65b: /* VPSOP - vector perform sign operation decimal */
5712 case 0xe671: /* VAP - vector add decimal */
5713 case 0xe673: /* VSP - vector subtract decimal */
5714 case 0xe678: /* VMP - vector multiply decimal */
5715 case 0xe679: /* VMSP - vector multiply decimal */
5716 case 0xe67a: /* VDP - vector divide decimal */
5717 case 0xe67b: /* VRP - vector remainder decimal */
5718 case 0xe67e: /* VSDP - vector shift and divide decimal */
5719 case 0xe74a: /* VFTCI - vector fp test data class immediate */
5720 case 0xe75c: /* VISTR - vector isolate string */
5721 case 0xe780: /* VFEE - vector find element equal */
5722 case 0xe781: /* VFENE - vector find element not equal */
5723 case 0xe782: /* VFA - vector find any element equal */
5724 case 0xe78a: /* VSTRC - vector string range compare */
5725 case 0xe795: /* VPKLS - vector pack logical saturate */
5726 case 0xe797: /* VPKS - vector pack saturate */
5727 case 0xe7e8: /* VFCE - vector fp compare equal */
5728 case 0xe7ea: /* VFCHE - vector fp compare high or equal */
5729 case 0xe7eb: /* VFCH - vector fp compare high */
5730 case 0xe7f8: /* VCEQ - vector compare equal */
5731 case 0xe7f9: /* VCHL - vector compare high logical */
5732 case 0xe7fb: /* VCH - vector compare high */
5733 /* vector destination + flags + FPC */
5734 if (s390_record_vr (gdbarch, regcache, ivec[0]))
5736 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5738 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5742 case 0xe65f: /* VTP - vector test decimal */
5744 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5746 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5750 /* 0xe74b-0xe74c undefined */
5751 /* 0xe74e-0xe74f undefined */
5752 /* 0xe751 undefined */
5753 /* 0xe754-0xe755 undefined */
5754 /* 0xe757-0xe75b undefined */
5755 /* 0xe75d-0xe75e undefined */
5756 /* 0xe763 undefined */
5757 /* 0xe771 undefined */
5758 /* 0xe776 undefined */
5759 /* 0xe779 undefined */
5760 /* 0xe77b undefined */
5761 /* 0xe783 undefined */
5762 /* 0xe786-0xe789 undefined */
5763 /* 0xe78b undefined */
5764 /* 0xe790-0xe793 undefined */
5765 /* 0xe796 undefined */
5766 /* 0xe798-0xe79d undefined */
5767 /* 0xe7a0 undefined */
5768 /* 0xe7a8 undefined */
5769 /* 0xe7b0-0xe7b3 undefined */
5770 /* 0xe7b5-0xe7b7 undefined */
5771 /* 0xe7ba undefined */
5772 /* 0xe7be undefined */
5773 /* 0xe7c6 undefined */
5774 /* 0xe7c8-0xe7c9 undefined */
5776 case 0xe677: /* VCP - vector compare decimal */
5777 case 0xe7ca: /* WFK - vector fp compare and signal scalar */
5778 case 0xe7cb: /* WFC - vector fp compare scalar */
5779 case 0xe7d8: /* VTM - vector test under mask */
5780 case 0xe7d9: /* VECL - vector element compare logical */
5781 case 0xe7db: /* VEC - vector element compare */
5782 case 0xed08: /* KEB - compare and signal */
5783 case 0xed09: /* CEB - compare */
5784 case 0xed18: /* KDB - compare and signal */
5785 case 0xed19: /* CDB - compare */
5786 /* flags + fpc only */
5787 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5789 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5793 /* 0xe7cd undefined */
5794 /* 0xe7cf-0xe7d3 undefined */
5795 /* 0xe7da undefined */
5796 /* 0xe7dc-0xe7dd undefined */
5797 /* 0xe7e0-0xe7e1 undefined */
5798 /* 0xe7e4 undefined */
5799 /* 0xe7e6 undefined */
5800 /* 0xe7e9 undefined */
5801 /* 0xe7ec-0xe7ed undefined */
5802 /* 0xe7f4 undefined */
5803 /* 0xe7f6 undefined */
5804 /* 0xe7fa undefined */
5806 /* 0xeb00-0xeb03 undefined */
5808 case 0xeb04: /* LMG - load multiple */
5809 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
5810 if (s390_record_gpr_g (gdbarch, regcache, i))
5812 if (s390_record_gpr_g (gdbarch, regcache, inib[3]))
5816 /* 0xeb05-0xeb09 undefined */
5817 /* 0xeb0e undefined */
5818 /* 0xeb0f privileged: TRACG */
5819 /* 0xeb10-0xeb13 undefined */
5821 case 0xeb14: /* CSY - compare and swap */
5822 case 0xebf4: /* LAN - load and and */
5823 case 0xebf6: /* LAO - load and or */
5824 case 0xebf7: /* LAX - load and xor */
5825 case 0xebf8: /* LAA - load and add */
5826 case 0xebfa: /* LAAL - load and add logical */
5827 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5828 if (record_full_arch_list_add_mem (oaddr, 4))
5830 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5832 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5836 /* 0xeb15-0xeb1b undefined */
5837 /* 0xeb1e-0xeb1f undefined */
5838 /* 0xeb22 undefined */
5840 case 0xeb23: /* CLT - compare logical and trap */
5841 case 0xeb2b: /* CLGT - compare logical and trap */
5842 /* fpc only - including possible DXC write for trapping insns */
5843 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
5847 case 0xeb24: /* STMG - store multiple */
5848 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5849 if (inib[2] <= inib[3])
5850 n = inib[3] - inib[2] + 1;
5852 n = inib[3] + 0x10 - inib[2] + 1;
5853 if (record_full_arch_list_add_mem (oaddr, n * 8))
5857 /* 0xeb25 privileged */
5859 case 0xeb26: /* STMH - store multiple high */
5860 case 0xeb90: /* STMY - store multiple */
5861 case 0xeb9b: /* STAMY - store access multiple */
5862 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5863 if (inib[2] <= inib[3])
5864 n = inib[3] - inib[2] + 1;
5866 n = inib[3] + 0x10 - inib[2] + 1;
5867 if (record_full_arch_list_add_mem (oaddr, n * 4))
5871 /* 0xeb27-0xeb2a undefined */
5873 case 0xeb2c: /* STCMH - store characters under mask */
5874 case 0xeb2d: /* STCMY - store characters under mask */
5875 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5876 if (record_full_arch_list_add_mem (oaddr, s390_popcnt (inib[3])))
5880 /* 0xeb2e undefined */
5881 /* 0xeb2f privileged */
5883 case 0xeb30: /* CSG - compare and swap */
5884 case 0xebe4: /* LANG - load and and */
5885 case 0xebe6: /* LAOG - load and or */
5886 case 0xebe7: /* LAXG - load and xor */
5887 case 0xebe8: /* LAAG - load and add */
5888 case 0xebea: /* LAALG - load and add logical */
5889 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5890 if (record_full_arch_list_add_mem (oaddr, 8))
5892 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5894 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5898 case 0xeb31: /* CDSY - compare double and swap */
5899 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5900 if (record_full_arch_list_add_mem (oaddr, 8))
5902 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5904 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
5906 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5910 /* 0xeb32-0xeb3d undefined */
5912 case 0xeb3e: /* CDSG - compare double and swap */
5913 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5914 if (record_full_arch_list_add_mem (oaddr, 16))
5916 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
5918 if (s390_record_gpr_g (gdbarch, regcache, inib[2] | 1))
5920 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5924 /* 0xeb3f-0xeb43 undefined */
5925 /* 0xeb46-0xeb4b undefined */
5926 /* 0xeb4d-0xeb50 undefined */
5928 case 0xeb52: /* MVIY - move */
5929 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5930 if (record_full_arch_list_add_mem (oaddr, 1))
5934 case 0xeb54: /* NIY - and */
5935 case 0xeb56: /* OIY - or */
5936 case 0xeb57: /* XIY - xor */
5937 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5938 if (record_full_arch_list_add_mem (oaddr, 1))
5940 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5944 /* 0xeb53 undefined */
5945 /* 0xeb58-0xeb69 undefined */
5947 case 0xeb6a: /* ASI - add immediate */
5948 case 0xeb6e: /* ALSI - add immediate */
5949 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5950 if (record_full_arch_list_add_mem (oaddr, 4))
5952 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5956 /* 0xeb6b-0xeb6d undefined */
5957 /* 0xeb6f-0xeb79 undefined */
5959 case 0xeb7a: /* AGSI - add immediate */
5960 case 0xeb7e: /* ALGSI - add immediate */
5961 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], ibyte[4]);
5962 if (record_full_arch_list_add_mem (oaddr, 8))
5964 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5968 /* 0xeb7b-0xeb7d undefined */
5969 /* 0xeb7f undefined */
5971 case 0xeb80: /* ICMH - insert characters under mask */
5972 /* 32-bit high gpr destination + flags */
5973 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
5975 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5979 /* 0xeb82-0xeb8d undefined */
5981 case 0xeb8e: /* MVCLU - move long unicode [partial] */
5982 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + inib[2], &tmp);
5983 oaddr = s390_record_address_mask (gdbarch, regcache, tmp);
5984 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM + (inib[2] | 1), &tmp);
5985 if (record_full_arch_list_add_mem (oaddr, tmp))
5987 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
5989 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
5991 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
5993 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[3] | 1)))
5995 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
5999 case 0xeb8f: /* CLCLU - compare logical long unicode [partial] */
6000 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
6002 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[2] | 1)))
6004 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
6006 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + (inib[3] | 1)))
6008 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6012 /* 0xeb91-0xeb95 undefined */
6014 case 0xeb96: /* LMH - load multiple high */
6015 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
6016 if (s390_record_gpr_h (gdbarch, regcache, i))
6018 if (s390_record_gpr_h (gdbarch, regcache, inib[3]))
6022 /* 0xeb97 undefined */
6024 case 0xeb98: /* LMY - load multiple */
6025 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
6026 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + i))
6028 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
6032 /* 0xeb99 undefined */
6034 case 0xeb9a: /* LAMY - load access multiple */
6035 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
6036 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + i))
6038 if (record_full_arch_list_add_reg (regcache, S390_A0_REGNUM + inib[3]))
6042 /* 0xeb9c-0xebbf undefined */
6043 /* 0xebc1-0xebdb undefined */
6044 /* 0xebe5 undefined */
6045 /* 0xebe9 undefined */
6046 /* 0xebeb-0xebf1 undefined */
6047 /* 0xebf5 undefined */
6048 /* 0xebf9 undefined */
6049 /* 0xebfb-0xebff undefined */
6051 /* 0xed00-0xed03 undefined */
6053 case 0xed04: /* LDEB - load lengthened */
6054 case 0xed0c: /* MDEB - multiply */
6055 case 0xed0d: /* DEB - divide */
6056 case 0xed14: /* SQEB - square root */
6057 case 0xed15: /* SQDB - square root */
6058 case 0xed17: /* MEEB - multiply */
6059 case 0xed1c: /* MDB - multiply */
6060 case 0xed1d: /* DDB - divide */
6061 /* float destination + fpc */
6062 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
6064 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6068 case 0xed05: /* LXDB - load lengthened */
6069 case 0xed06: /* LXEB - load lengthened */
6070 case 0xed07: /* MXDB - multiply */
6071 /* float pair destination + fpc */
6072 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
6074 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[2] | 2)))
6076 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6080 case 0xed0a: /* AEB - add */
6081 case 0xed0b: /* SEB - subtract */
6082 case 0xed1a: /* ADB - add */
6083 case 0xed1b: /* SDB - subtract */
6084 /* float destination + flags + fpc */
6085 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
6087 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6089 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6093 case 0xed0e: /* MAEB - multiply and add */
6094 case 0xed0f: /* MSEB - multiply and subtract */
6095 case 0xed1e: /* MADB - multiply and add */
6096 case 0xed1f: /* MSDB - multiply and subtract */
6097 case 0xed40: /* SLDT - shift significand left */
6098 case 0xed41: /* SRDT - shift significand right */
6099 case 0xedaa: /* CDZT - convert from zoned */
6100 case 0xedae: /* CDPT - convert from packed */
6101 /* float destination [RXF] + fpc */
6102 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[8]))
6104 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6108 /* 0xed13 undefined */
6109 /* 0xed16 undefined */
6110 /* 0xed20-0xed23 undefined */
6112 case 0xed24: /* LDE - load lengthened */
6113 case 0xed34: /* SQE - square root */
6114 case 0xed35: /* SQD - square root */
6115 case 0xed37: /* MEE - multiply */
6116 case 0xed64: /* LEY - load */
6117 case 0xed65: /* LDY - load */
6118 /* float destination */
6119 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
6123 case 0xed25: /* LXD - load lengthened */
6124 case 0xed26: /* LXE - load lengthened */
6125 /* float pair destination */
6126 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[2]))
6128 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[2] | 2)))
6132 /* 0xed27-0xed2d undefined */
6134 case 0xed2e: /* MAE - multiply and add */
6135 case 0xed2f: /* MSE - multiply and subtract */
6136 case 0xed38: /* MAYL - multiply and add unnormalized */
6137 case 0xed39: /* MYL - multiply unnormalized */
6138 case 0xed3c: /* MAYH - multiply and add unnormalized */
6139 case 0xed3d: /* MYH - multiply unnormalized */
6140 case 0xed3e: /* MAD - multiply and add */
6141 case 0xed3f: /* MSD - multiply and subtract */
6142 /* float destination [RXF] */
6143 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[8]))
6147 /* 0xed30-0xed33 undefined */
6148 /* 0xed36 undefined */
6150 case 0xed3a: /* MAY - multiply and add unnormalized */
6151 case 0xed3b: /* MY - multiply unnormalized */
6152 /* float pair destination [RXF] */
6153 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[8]))
6155 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[8] | 2)))
6159 /* 0xed42-0xed47 undefind */
6161 case 0xed48: /* SLXT - shift significand left */
6162 case 0xed49: /* SRXT - shift significand right */
6163 case 0xedab: /* CXZT - convert from zoned */
6164 case 0xedaf: /* CXPT - convert from packed */
6165 /* float pair destination [RXF] + fpc */
6166 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + inib[8]))
6168 if (record_full_arch_list_add_reg (regcache, S390_F0_REGNUM + (inib[8] | 2)))
6170 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6174 /* 0xed4a-0xed4f undefind */
6175 /* 0xed52-0xed53 undefind */
6176 /* 0xed56-0xed57 undefind */
6177 /* 0xed5a-0xed63 undefind */
6178 /* 0xed68-0xeda7 undefined */
6180 case 0xeda8: /* CZDT - convert to zoned */
6181 case 0xeda9: /* CZXT - convert to zoned */
6182 case 0xedac: /* CPDT - convert to packed */
6183 case 0xedad: /* CPXT - convert to packed */
6184 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6185 if (record_full_arch_list_add_mem (oaddr, ibyte[1] + 1))
6187 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6191 /* 0xedb0-0xedff undefined */
6198 /* 0xe4 undefined */
6201 /* SSE/SIL-format instruction */
6204 /* 0xe500-0xe543 undefined, privileged, or unsupported */
6206 case 0xe544: /* MVHHI - move */
6207 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6208 if (record_full_arch_list_add_mem (oaddr, 2))
6212 /* 0xe545-0xe547 undefined */
6214 case 0xe548: /* MVGHI - move */
6215 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6216 if (record_full_arch_list_add_mem (oaddr, 8))
6220 /* 0xe549-0xe54b undefined */
6222 case 0xe54c: /* MVHI - move */
6223 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6224 if (record_full_arch_list_add_mem (oaddr, 4))
6228 /* 0xe54d-0xe553 undefined */
6230 case 0xe554: /* CHHSI - compare halfword immediate */
6231 case 0xe555: /* CLHHSI - compare logical immediate */
6232 case 0xe558: /* CGHSI - compare halfword immediate */
6233 case 0xe559: /* CLGHSI - compare logical immediate */
6234 case 0xe55c: /* CHSI - compare halfword immediate */
6235 case 0xe55d: /* CLFHSI - compare logical immediate */
6236 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6240 /* 0xe556-0xe557 undefined */
6241 /* 0xe55a-0xe55b undefined */
6242 /* 0xe55e-0xe55f undefined */
6244 case 0xe560: /* TBEGIN - transaction begin */
6245 /* The transaction will be immediately aborted after this
6246 instruction, due to single-stepping. This instruction is
6247 only supported so that the program can fail a few times
6248 and go to the non-transactional fallback. */
6251 /* Transaction diagnostic block - user. */
6252 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6253 if (record_full_arch_list_add_mem (oaddr, 256))
6256 /* Transaction diagnostic block - supervisor. */
6257 if (record_full_arch_list_add_reg (regcache, S390_TDB_DWORD0_REGNUM))
6259 if (record_full_arch_list_add_reg (regcache, S390_TDB_ABORT_CODE_REGNUM))
6261 if (record_full_arch_list_add_reg (regcache, S390_TDB_CONFLICT_TOKEN_REGNUM))
6263 if (record_full_arch_list_add_reg (regcache, S390_TDB_ATIA_REGNUM))
6265 for (i = 0; i < 16; i++)
6266 if (record_full_arch_list_add_reg (regcache, S390_TDB_R0_REGNUM + i))
6269 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6273 /* 0xe561 unsupported: TBEGINC */
6274 /* 0xe562-0xe5ff undefined */
6282 /* RIE/RIS/RRS-format instruction */
6283 switch (ibyte[0] << 8 | ibyte[5])
6285 /* 0xec00-0xec41 undefined */
6287 case 0xec42: /* LOCHI - load halfword immediate on condition */
6288 case 0xec51: /* RISBLG - rotate then insert selected bits low */
6289 /* 32-bit or native gpr destination */
6290 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
6294 /* 0xec43 undefined */
6296 case 0xec44: /* BRXHG - branch relative on index high */
6297 case 0xec45: /* BRXLG - branch relative on index low or equal */
6298 case 0xec46: /* LOCGHI - load halfword immediate on condition */
6299 case 0xec59: /* RISBGN - rotate then insert selected bits */
6300 /* 64-bit gpr destination */
6301 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
6305 /* 0xec47-0xec4d undefined */
6307 case 0xec4e: /* LOCHHI - load halfword immediate on condition */
6308 case 0xec5d: /* RISBHG - rotate then insert selected bits high */
6309 /* 32-bit high gpr destination */
6310 if (s390_record_gpr_h (gdbarch, regcache, inib[2]))
6314 /* 0xec4f-0xec50 undefined */
6315 /* 0xec52-0xec53 undefined */
6317 case 0xec54: /* RNSBG - rotate then and selected bits */
6318 case 0xec55: /* RISBG - rotate then insert selected bits */
6319 case 0xec56: /* ROSBG - rotate then or selected bits */
6320 case 0xec57: /* RXSBG - rotate then xor selected bits */
6321 case 0xecd9: /* AGHIK - add immediate */
6322 case 0xecdb: /* ALGHSIK - add logical immediate */
6323 /* 64-bit gpr destination + flags */
6324 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
6326 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6330 /* 0xec58 undefined */
6331 /* 0xec5a-0xec5c undefined */
6332 /* 0xec5e-0xec63 undefined */
6334 case 0xec64: /* CGRJ - compare and branch relative */
6335 case 0xec65: /* CLGRJ - compare logical and branch relative */
6336 case 0xec76: /* CRJ - compare and branch relative */
6337 case 0xec77: /* CLRJ - compare logical and branch relative */
6338 case 0xec7c: /* CGIJ - compare immediate and branch relative */
6339 case 0xec7d: /* CLGIJ - compare logical immediate and branch relative */
6340 case 0xec7e: /* CIJ - compare immediate and branch relative */
6341 case 0xec7f: /* CLIJ - compare logical immediate and branch relative */
6342 case 0xece4: /* CGRB - compare and branch */
6343 case 0xece5: /* CLGRB - compare logical and branch */
6344 case 0xecf6: /* CRB - compare and branch */
6345 case 0xecf7: /* CLRB - compare logical and branch */
6346 case 0xecfc: /* CGIB - compare immediate and branch */
6347 case 0xecfd: /* CLGIB - compare logical immediate and branch */
6348 case 0xecfe: /* CIB - compare immediate and branch */
6349 case 0xecff: /* CLIB - compare logical immediate and branch */
6352 /* 0xec66-0xec6f undefined */
6354 case 0xec70: /* CGIT - compare immediate and trap */
6355 case 0xec71: /* CLGIT - compare logical immediate and trap */
6356 case 0xec72: /* CIT - compare immediate and trap */
6357 case 0xec73: /* CLFIT - compare logical immediate and trap */
6358 /* fpc only - including possible DXC write for trapping insns */
6359 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6363 /* 0xec74-0xec75 undefined */
6364 /* 0xec78-0xec7b undefined */
6366 /* 0xec80-0xecd7 undefined */
6368 case 0xecd8: /* AHIK - add immediate */
6369 case 0xecda: /* ALHSIK - add logical immediate */
6370 /* 32-bit gpr destination + flags */
6371 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
6373 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6377 /* 0xecdc-0xece3 undefined */
6378 /* 0xece6-0xecf5 undefined */
6379 /* 0xecf8-0xecfb undefined */
6386 case 0xee: /* PLO - perform locked operation */
6387 regcache_raw_read_unsigned (regcache, S390_R0_REGNUM, &tmp);
6388 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6389 oaddr2 = s390_record_calc_disp (gdbarch, regcache, 0, insn[2], 0);
6392 uint8_t fc = tmp & 0xff;
6398 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
6401 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
6405 case 0x01: /* CLG */
6407 if (record_full_arch_list_add_mem (oaddr2 + 0x08, 8))
6410 if (record_full_arch_list_add_mem (oaddr2 + 0x28, 8))
6414 case 0x02: /* CLGR */
6416 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
6419 if (s390_record_gpr_g (gdbarch, regcache, inib[3]))
6423 case 0x03: /* CLX */
6425 if (record_full_arch_list_add_mem (oaddr2 + 0x00, 16))
6428 if (record_full_arch_list_add_mem (oaddr2 + 0x20, 16))
6432 case 0x08: /* DCS */
6434 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[3]))
6437 case 0x0c: /* CSST */
6439 if (record_full_arch_list_add_mem (oaddr2, 4))
6443 case 0x14: /* CSTST */
6445 if (target_read_memory (oaddr2 + 0x88, buf, 8))
6447 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6448 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6449 if (record_full_arch_list_add_mem (oaddr3, 4))
6452 case 0x10: /* CSDST */
6454 if (target_read_memory (oaddr2 + 0x68, buf, 8))
6456 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6457 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6458 if (record_full_arch_list_add_mem (oaddr3, 4))
6461 if (target_read_memory (oaddr2 + 0x48, buf, 8))
6463 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6464 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6465 if (record_full_arch_list_add_mem (oaddr3, 4))
6471 if (record_full_arch_list_add_reg (regcache, S390_R0_REGNUM + inib[2]))
6474 if (record_full_arch_list_add_mem (oaddr, 4))
6478 case 0x09: /* DCSG */
6480 if (record_full_arch_list_add_mem (oaddr2 + 0x28, 8))
6484 case 0x15: /* CSTSTG */
6486 if (target_read_memory (oaddr2 + 0x88, buf, 8))
6488 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6489 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6490 if (record_full_arch_list_add_mem (oaddr3, 8))
6493 case 0x11: /* CSDSTG */
6495 if (target_read_memory (oaddr2 + 0x68, buf, 8))
6497 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6498 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6499 if (record_full_arch_list_add_mem (oaddr3, 8))
6502 case 0x0d: /* CSSTG */
6505 if (target_read_memory (oaddr2 + 0x48, buf, 8))
6507 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6508 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6509 if (record_full_arch_list_add_mem (oaddr3, 8))
6512 case 0x05: /* CSG */
6514 if (record_full_arch_list_add_mem (oaddr2 + 0x08, 8))
6517 if (record_full_arch_list_add_mem (oaddr, 8))
6521 case 0x0a: /* DCSGR */
6523 if (s390_record_gpr_g (gdbarch, regcache, inib[3]))
6526 case 0x0e: /* CSSTGR */
6528 if (record_full_arch_list_add_mem (oaddr2, 8))
6532 case 0x16: /* CSTSTGR */
6534 if (target_read_memory (oaddr2 + 0x88, buf, 8))
6536 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6537 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6538 if (record_full_arch_list_add_mem (oaddr3, 8))
6541 case 0x12: /* CSDSTGR */
6543 if (target_read_memory (oaddr2 + 0x68, buf, 8))
6545 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6546 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6547 if (record_full_arch_list_add_mem (oaddr3, 8))
6550 if (target_read_memory (oaddr2 + 0x48, buf, 8))
6552 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6553 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6554 if (record_full_arch_list_add_mem (oaddr3, 8))
6557 case 0x06: /* CSGR */
6560 if (s390_record_gpr_g (gdbarch, regcache, inib[2]))
6563 if (record_full_arch_list_add_mem (oaddr, 8))
6567 case 0x0b: /* DCSX */
6569 if (record_full_arch_list_add_mem (oaddr2 + 0x20, 16))
6573 case 0x17: /* CSTSTX */
6575 if (target_read_memory (oaddr2 + 0x88, buf, 8))
6577 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6578 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6579 if (record_full_arch_list_add_mem (oaddr3, 16))
6582 case 0x13: /* CSDSTX */
6584 if (target_read_memory (oaddr2 + 0x68, buf, 8))
6586 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6587 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6588 if (record_full_arch_list_add_mem (oaddr3, 16))
6591 case 0x0f: /* CSSTX */
6594 if (target_read_memory (oaddr2 + 0x48, buf, 8))
6596 oaddr3 = extract_unsigned_integer (buf, 8, byte_order);
6597 oaddr3 = s390_record_address_mask (gdbarch, regcache, oaddr3);
6598 if (record_full_arch_list_add_mem (oaddr3, 16))
6601 case 0x07: /* CSX */
6603 if (record_full_arch_list_add_mem (oaddr2 + 0x00, 16))
6606 if (record_full_arch_list_add_mem (oaddr, 16))
6611 fprintf_unfiltered (gdb_stdlog, "Warning: Unknown PLO FC %02x at %s.\n",
6612 fc, paddress (gdbarch, addr));
6616 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6620 case 0xef: /* LMD - load multiple disjoint */
6621 for (i = inib[2]; i != inib[3]; i++, i &= 0xf)
6622 if (s390_record_gpr_g (gdbarch, regcache, i))
6624 if (s390_record_gpr_g (gdbarch, regcache, inib[3]))
6628 case 0xf0: /* SRP - shift and round decimal */
6629 case 0xf8: /* ZAP - zero and add */
6630 case 0xfa: /* AP - add decimal */
6631 case 0xfb: /* SP - subtract decimal */
6632 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6633 if (record_full_arch_list_add_mem (oaddr, inib[2] + 1))
6635 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6637 /* DXC may be written */
6638 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6642 case 0xf1: /* MVO - move with offset */
6643 case 0xf2: /* PACK - pack */
6644 case 0xf3: /* UNPK - unpack */
6645 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6646 if (record_full_arch_list_add_mem (oaddr, inib[2] + 1))
6650 /* 0xf4-0xf7 undefined */
6652 case 0xf9: /* CP - compare decimal */
6653 if (record_full_arch_list_add_reg (regcache, S390_PSWM_REGNUM))
6655 /* DXC may be written */
6656 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6660 case 0xfc: /* MP - multiply decimal */
6661 case 0xfd: /* DP - divide decimal */
6662 oaddr = s390_record_calc_disp (gdbarch, regcache, 0, insn[1], 0);
6663 if (record_full_arch_list_add_mem (oaddr, inib[2] + 1))
6665 /* DXC may be written */
6666 if (record_full_arch_list_add_reg (regcache, S390_FPC_REGNUM))
6670 /* 0xfe-0xff undefined */
6674 fprintf_unfiltered (gdb_stdlog, "Warning: Don't know how to record %04x "
6675 "at %s.\n", insn[0], paddress (gdbarch, addr));
6679 if (record_full_arch_list_add_reg (regcache, S390_PSWA_REGNUM))
6681 if (record_full_arch_list_add_end ())
6686 /* Miscellaneous. */
6688 /* Implement gdbarch_gcc_target_options. GCC does not know "-m32" or
6689 "-mcmodel=large". */
6692 s390_gcc_target_options (struct gdbarch *gdbarch)
6694 return xstrdup (gdbarch_ptr_bit (gdbarch) == 64 ? "-m64" : "-m31");
6697 /* Implement gdbarch_gnu_triplet_regexp. Target triplets are "s390-*"
6698 for 31-bit and "s390x-*" for 64-bit, while the BFD arch name is
6699 always "s390". Note that an s390x compiler supports "-m31" as
6703 s390_gnu_triplet_regexp (struct gdbarch *gdbarch)
6708 /* Implementation of `gdbarch_stap_is_single_operand', as defined in
6712 s390_stap_is_single_operand (struct gdbarch *gdbarch, const char *s)
6714 return ((isdigit (*s) && s[1] == '(' && s[2] == '%') /* Displacement
6716 || *s == '%' /* Register access. */
6717 || isdigit (*s)); /* Literal number. */
6722 /* Validate the range of registers. NAMES must be known at compile time. */
6724 #define s390_validate_reg_range(feature, tdesc_data, start, names) \
6727 for (int i = 0; i < ARRAY_SIZE (names); i++) \
6728 if (!tdesc_numbered_register (feature, tdesc_data, start + i, names[i])) \
6733 /* Validate the target description. Also numbers registers contained in
6737 s390_tdesc_valid (struct gdbarch_tdep *tdep,
6738 struct tdesc_arch_data *tdesc_data)
6740 static const char *const psw[] = {
6743 static const char *const gprs[] = {
6744 "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
6745 "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15"
6747 static const char *const fprs[] = {
6748 "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7",
6749 "f8", "f9", "f10", "f11", "f12", "f13", "f14", "f15"
6751 static const char *const acrs[] = {
6752 "acr0", "acr1", "acr2", "acr3", "acr4", "acr5", "acr6", "acr7",
6753 "acr8", "acr9", "acr10", "acr11", "acr12", "acr13", "acr14", "acr15"
6755 static const char *const gprs_lower[] = {
6756 "r0l", "r1l", "r2l", "r3l", "r4l", "r5l", "r6l", "r7l",
6757 "r8l", "r9l", "r10l", "r11l", "r12l", "r13l", "r14l", "r15l"
6759 static const char *const gprs_upper[] = {
6760 "r0h", "r1h", "r2h", "r3h", "r4h", "r5h", "r6h", "r7h",
6761 "r8h", "r9h", "r10h", "r11h", "r12h", "r13h", "r14h", "r15h"
6763 static const char *const tdb_regs[] = {
6764 "tdb0", "tac", "tct", "atia",
6765 "tr0", "tr1", "tr2", "tr3", "tr4", "tr5", "tr6", "tr7",
6766 "tr8", "tr9", "tr10", "tr11", "tr12", "tr13", "tr14", "tr15"
6768 static const char *const vxrs_low[] = {
6769 "v0l", "v1l", "v2l", "v3l", "v4l", "v5l", "v6l", "v7l", "v8l",
6770 "v9l", "v10l", "v11l", "v12l", "v13l", "v14l", "v15l",
6772 static const char *const vxrs_high[] = {
6773 "v16", "v17", "v18", "v19", "v20", "v21", "v22", "v23", "v24",
6774 "v25", "v26", "v27", "v28", "v29", "v30", "v31",
6776 static const char *const gs_cb[] = {
6777 "gsd", "gssm", "gsepla",
6779 static const char *const gs_bc[] = {
6780 "bc_gsd", "bc_gssm", "bc_gsepla",
6783 const struct target_desc *tdesc = tdep->tdesc;
6784 const struct tdesc_feature *feature;
6786 if (!tdesc_has_registers (tdesc))
6789 /* Core registers, i.e. general purpose and PSW. */
6790 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.core");
6791 if (feature == NULL)
6794 s390_validate_reg_range (feature, tdesc_data, S390_PSWM_REGNUM, psw);
6796 if (tdesc_unnumbered_register (feature, "r0"))
6798 s390_validate_reg_range (feature, tdesc_data, S390_R0_REGNUM, gprs);
6802 tdep->have_upper = true;
6803 s390_validate_reg_range (feature, tdesc_data, S390_R0_REGNUM,
6805 s390_validate_reg_range (feature, tdesc_data, S390_R0_UPPER_REGNUM,
6809 /* Floating point registers. */
6810 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.fpr");
6811 if (feature == NULL)
6814 if (!tdesc_numbered_register (feature, tdesc_data, S390_FPC_REGNUM, "fpc"))
6817 s390_validate_reg_range (feature, tdesc_data, S390_F0_REGNUM, fprs);
6819 /* Access control registers. */
6820 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.acr");
6821 if (feature == NULL)
6824 s390_validate_reg_range (feature, tdesc_data, S390_A0_REGNUM, acrs);
6826 /* Optional GNU/Linux-specific "registers". */
6827 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.linux");
6830 tdesc_numbered_register (feature, tdesc_data,
6831 S390_ORIG_R2_REGNUM, "orig_r2");
6833 if (tdesc_numbered_register (feature, tdesc_data,
6834 S390_LAST_BREAK_REGNUM, "last_break"))
6835 tdep->have_linux_v1 = true;
6837 if (tdesc_numbered_register (feature, tdesc_data,
6838 S390_SYSTEM_CALL_REGNUM, "system_call"))
6839 tdep->have_linux_v2 = true;
6841 if (tdep->have_linux_v2 && !tdep->have_linux_v1)
6845 /* Transaction diagnostic block. */
6846 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.tdb");
6849 s390_validate_reg_range (feature, tdesc_data, S390_TDB_DWORD0_REGNUM,
6851 tdep->have_tdb = true;
6854 /* Vector registers. */
6855 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.vx");
6858 s390_validate_reg_range (feature, tdesc_data, S390_V0_LOWER_REGNUM,
6860 s390_validate_reg_range (feature, tdesc_data, S390_V16_REGNUM,
6862 tdep->have_vx = true;
6865 /* Guarded-storage registers. */
6866 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.gs");
6869 s390_validate_reg_range (feature, tdesc_data, S390_GSD_REGNUM, gs_cb);
6870 tdep->have_gs = true;
6873 /* Guarded-storage broadcast control. */
6874 feature = tdesc_find_feature (tdesc, "org.gnu.gdb.s390.gsbc");
6879 s390_validate_reg_range (feature, tdesc_data, S390_BC_GSD_REGNUM,
6886 /* Allocate and initialize new gdbarch_tdep. Caller is responsible to free
6887 memory after use. */
6889 static struct gdbarch_tdep *
6890 s390_gdbarch_tdep_alloc ()
6892 struct gdbarch_tdep *tdep = XCNEW (struct gdbarch_tdep);
6896 tdep->abi = ABI_NONE;
6897 tdep->vector_abi = S390_VECTOR_ABI_NONE;
6899 tdep->gpr_full_regnum = -1;
6900 tdep->v0_full_regnum = -1;
6901 tdep->pc_regnum = -1;
6902 tdep->cc_regnum = -1;
6904 tdep->have_upper = false;
6905 tdep->have_linux_v1 = false;
6906 tdep->have_linux_v2 = false;
6907 tdep->have_tdb = false;
6908 tdep->have_vx = false;
6909 tdep->have_gs = false;
6911 tdep->s390_syscall_record = NULL;
6916 /* Set up gdbarch struct. */
6918 static struct gdbarch *
6919 s390_gdbarch_init (struct gdbarch_info info, struct gdbarch_list *arches)
6921 const struct target_desc *tdesc = info.target_desc;
6922 int first_pseudo_reg, last_pseudo_reg;
6923 static const char *const stap_register_prefixes[] = { "%", NULL };
6924 static const char *const stap_register_indirection_prefixes[] = { "(",
6926 static const char *const stap_register_indirection_suffixes[] = { ")",
6929 struct gdbarch_tdep *tdep = s390_gdbarch_tdep_alloc ();
6930 struct gdbarch *gdbarch = gdbarch_alloc (&info, tdep);
6931 struct tdesc_arch_data *tdesc_data = tdesc_data_alloc ();
6932 info.tdesc_data = tdesc_data;
6934 set_gdbarch_believe_pcc_promotion (gdbarch, 0);
6935 set_gdbarch_char_signed (gdbarch, 0);
6937 /* S/390 GNU/Linux uses either 64-bit or 128-bit long doubles.
6938 We can safely let them default to 128-bit, since the debug info
6939 will give the size of type actually used in each case. */
6940 set_gdbarch_long_double_bit (gdbarch, 128);
6941 set_gdbarch_long_double_format (gdbarch, floatformats_ia64_quad);
6944 /* Amount PC must be decremented by after a breakpoint. This is
6945 often the number of bytes returned by gdbarch_breakpoint_from_pc but not
6947 set_gdbarch_decr_pc_after_break (gdbarch, 2);
6948 set_gdbarch_breakpoint_kind_from_pc (gdbarch, s390_breakpoint::kind_from_pc);
6949 set_gdbarch_sw_breakpoint_from_kind (gdbarch, s390_breakpoint::bp_from_kind);
6951 /* Displaced stepping. */
6952 set_gdbarch_displaced_step_copy_insn (gdbarch,
6953 s390_displaced_step_copy_insn);
6954 set_gdbarch_displaced_step_fixup (gdbarch, s390_displaced_step_fixup);
6955 set_gdbarch_displaced_step_location (gdbarch, linux_displaced_step_location);
6956 set_gdbarch_displaced_step_hw_singlestep (gdbarch, s390_displaced_step_hw_singlestep);
6957 set_gdbarch_software_single_step (gdbarch, s390_software_single_step);
6958 set_gdbarch_max_insn_length (gdbarch, S390_MAX_INSTR_SIZE);
6960 /* Prologue analysis. */
6961 set_gdbarch_skip_prologue (gdbarch, s390_skip_prologue);
6963 /* Register handling. */
6964 set_gdbarch_num_regs (gdbarch, S390_NUM_REGS);
6965 set_gdbarch_sp_regnum (gdbarch, S390_SP_REGNUM);
6966 set_gdbarch_fp0_regnum (gdbarch, S390_F0_REGNUM);
6967 set_gdbarch_guess_tracepoint_registers (gdbarch,
6968 s390_guess_tracepoint_registers);
6969 set_gdbarch_stab_reg_to_regnum (gdbarch, s390_dwarf_reg_to_regnum);
6970 set_gdbarch_dwarf2_reg_to_regnum (gdbarch, s390_dwarf_reg_to_regnum);
6971 set_gdbarch_value_from_register (gdbarch, s390_value_from_register);
6973 /* Pseudo registers. */
6974 set_gdbarch_pseudo_register_read (gdbarch, s390_pseudo_register_read);
6975 set_gdbarch_pseudo_register_write (gdbarch, s390_pseudo_register_write);
6976 set_tdesc_pseudo_register_name (gdbarch, s390_pseudo_register_name);
6977 set_tdesc_pseudo_register_type (gdbarch, s390_pseudo_register_type);
6978 set_tdesc_pseudo_register_reggroup_p (gdbarch,
6979 s390_pseudo_register_reggroup_p);
6980 set_gdbarch_ax_pseudo_register_collect (gdbarch,
6981 s390_ax_pseudo_register_collect);
6982 set_gdbarch_ax_pseudo_register_push_stack
6983 (gdbarch, s390_ax_pseudo_register_push_stack);
6984 set_gdbarch_gen_return_address (gdbarch, s390_gen_return_address);
6986 /* Inferior function calls. */
6987 set_gdbarch_push_dummy_call (gdbarch, s390_push_dummy_call);
6988 set_gdbarch_dummy_id (gdbarch, s390_dummy_id);
6989 set_gdbarch_frame_align (gdbarch, s390_frame_align);
6990 set_gdbarch_return_value (gdbarch, s390_return_value);
6992 /* Frame handling. */
6993 /* Stack grows downward. */
6994 set_gdbarch_inner_than (gdbarch, core_addr_lessthan);
6995 set_gdbarch_stack_frame_destroyed_p (gdbarch, s390_stack_frame_destroyed_p);
6996 dwarf2_frame_set_init_reg (gdbarch, s390_dwarf2_frame_init_reg);
6997 dwarf2_frame_set_adjust_regnum (gdbarch, s390_adjust_frame_regnum);
6998 dwarf2_append_unwinders (gdbarch);
6999 set_gdbarch_unwind_pc (gdbarch, s390_unwind_pc);
7000 set_gdbarch_unwind_sp (gdbarch, s390_unwind_sp);
7002 switch (info.bfd_arch_info->mach)
7004 case bfd_mach_s390_31:
7005 set_gdbarch_addr_bits_remove (gdbarch, s390_addr_bits_remove);
7008 case bfd_mach_s390_64:
7009 set_gdbarch_long_bit (gdbarch, 64);
7010 set_gdbarch_long_long_bit (gdbarch, 64);
7011 set_gdbarch_ptr_bit (gdbarch, 64);
7012 set_gdbarch_address_class_type_flags (gdbarch,
7013 s390_address_class_type_flags);
7014 set_gdbarch_address_class_type_flags_to_name (gdbarch,
7015 s390_address_class_type_flags_to_name);
7016 set_gdbarch_address_class_name_to_type_flags (gdbarch,
7017 s390_address_class_name_to_type_flags);
7021 /* SystemTap functions. */
7022 set_gdbarch_stap_register_prefixes (gdbarch, stap_register_prefixes);
7023 set_gdbarch_stap_register_indirection_prefixes (gdbarch,
7024 stap_register_indirection_prefixes);
7025 set_gdbarch_stap_register_indirection_suffixes (gdbarch,
7026 stap_register_indirection_suffixes);
7028 set_gdbarch_disassembler_options (gdbarch, &s390_disassembler_options);
7029 set_gdbarch_valid_disassembler_options (gdbarch,
7030 disassembler_options_s390 ());
7032 /* Process record-replay */
7033 set_gdbarch_process_record (gdbarch, s390_process_record);
7035 /* Miscellaneous. */
7036 set_gdbarch_stap_is_single_operand (gdbarch, s390_stap_is_single_operand);
7037 set_gdbarch_gcc_target_options (gdbarch, s390_gcc_target_options);
7038 set_gdbarch_gnu_triplet_regexp (gdbarch, s390_gnu_triplet_regexp);
7040 /* Initialize the OSABI. */
7041 gdbarch_init_osabi (info, gdbarch);
7043 /* Always create a default tdesc. Otherwise commands like 'set osabi'
7044 cause GDB to crash with an internal error when the user tries to set
7045 an unsupported OSABI. */
7046 if (!tdesc_has_registers (tdesc))
7048 if (info.bfd_arch_info->mach == bfd_mach_s390_31)
7049 tdesc = tdesc_s390_linux32;
7051 tdesc = tdesc_s390x_linux64;
7053 tdep->tdesc = tdesc;
7055 /* Check any target description for validity. */
7056 if (!s390_tdesc_valid (tdep, tdesc_data))
7058 tdesc_data_cleanup (tdesc_data);
7060 gdbarch_free (gdbarch);
7064 /* Determine vector ABI. */
7067 && info.abfd != NULL
7068 && info.abfd->format == bfd_object
7069 && bfd_get_flavour (info.abfd) == bfd_target_elf_flavour
7070 && bfd_elf_get_obj_attr_int (info.abfd, OBJ_ATTR_GNU,
7071 Tag_GNU_S390_ABI_Vector) == 2)
7072 tdep->vector_abi = S390_VECTOR_ABI_128;
7075 /* Find a candidate among extant architectures. */
7076 for (arches = gdbarch_list_lookup_by_info (arches, &info);
7078 arches = gdbarch_list_lookup_by_info (arches->next, &info))
7080 struct gdbarch_tdep *tmp = gdbarch_tdep (arches->gdbarch);
7083 /* A program can 'choose' not to use the vector registers when they
7084 are present. Leading to the same tdesc but different tdep and
7085 thereby a different gdbarch. */
7086 if (tmp->vector_abi != tdep->vector_abi)
7089 tdesc_data_cleanup (tdesc_data);
7091 gdbarch_free (gdbarch);
7092 return arches->gdbarch;
7095 tdesc_use_registers (gdbarch, tdep->tdesc, tdesc_data);
7096 set_gdbarch_register_name (gdbarch, s390_register_name);
7098 /* Assign pseudo register numbers. */
7099 first_pseudo_reg = gdbarch_num_regs (gdbarch);
7100 last_pseudo_reg = first_pseudo_reg;
7101 if (tdep->have_upper)
7103 tdep->gpr_full_regnum = last_pseudo_reg;
7104 last_pseudo_reg += 16;
7108 tdep->v0_full_regnum = last_pseudo_reg;
7109 last_pseudo_reg += 16;
7111 tdep->pc_regnum = last_pseudo_reg++;
7112 tdep->cc_regnum = last_pseudo_reg++;
7113 set_gdbarch_pc_regnum (gdbarch, tdep->pc_regnum);
7114 set_gdbarch_num_pseudo_regs (gdbarch, last_pseudo_reg - first_pseudo_reg);
7116 /* Frame handling. */
7117 frame_base_append_sniffer (gdbarch, dwarf2_frame_base_sniffer);
7118 frame_unwind_append_unwinder (gdbarch, &s390_stub_frame_unwind);
7119 frame_unwind_append_unwinder (gdbarch, &s390_frame_unwind);
7120 frame_base_set_default (gdbarch, &s390_frame_base);
7126 _initialize_s390_tdep (void)
7128 /* Hook us into the gdbarch mechanism. */
7129 register_gdbarch_init (bfd_arch_s390, s390_gdbarch_init);
7131 initialize_tdesc_s390_linux32 ();
7132 initialize_tdesc_s390x_linux64 ();