sparc-nat.c 10 KB

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  1. /* Native-dependent code for SPARC.
  2. Copyright (C) 2003-2022 Free Software Foundation, Inc.
  3. This file is part of GDB.
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 3 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program. If not, see <http://www.gnu.org/licenses/>. */
  14. #include "defs.h"
  15. #include "inferior.h"
  16. #include "regcache.h"
  17. #include "target.h"
  18. #include <signal.h>
  19. #include <sys/ptrace.h>
  20. #include "gdbsupport/gdb_wait.h"
  21. #ifdef HAVE_MACHINE_REG_H
  22. #include <machine/reg.h>
  23. #endif
  24. #include "sparc-tdep.h"
  25. #include "sparc-nat.h"
  26. #include "inf-ptrace.h"
  27. /* With some trickery we can use the code in this file for most (if
  28. not all) ptrace(2) based SPARC systems, which includes SunOS 4,
  29. GNU/Linux and the various SPARC BSD's.
  30. First, we need a data structure for use with ptrace(2). SunOS has
  31. `struct regs' and `struct fp_status' in <machine/reg.h>. BSD's
  32. have `struct reg' and `struct fpreg' in <machine/reg.h>. GNU/Linux
  33. has the same structures as SunOS 4, but they're in <asm/reg.h>,
  34. which is a kernel header. As a general rule we avoid including
  35. GNU/Linux kernel headers. Fortunately GNU/Linux has a `gregset_t'
  36. and a `fpregset_t' that are equivalent to `struct regs' and `struct
  37. fp_status' in <sys/ucontext.h>, which is automatically included by
  38. <signal.h>. Settling on using the `gregset_t' and `fpregset_t'
  39. typedefs, providing them for the other systems, therefore solves
  40. the puzzle. */
  41. #ifdef HAVE_MACHINE_REG_H
  42. #ifdef HAVE_STRUCT_REG
  43. typedef struct reg gregset_t;
  44. typedef struct fpreg fpregset_t;
  45. #else
  46. typedef struct regs gregset_t;
  47. typedef struct fp_status fpregset_t;
  48. #endif
  49. #endif
  50. /* Second, we need to remap the BSD ptrace(2) requests to their SunOS
  51. equivalents. GNU/Linux already follows SunOS here. */
  52. #ifndef PTRACE_GETREGS
  53. #define PTRACE_GETREGS PT_GETREGS
  54. #endif
  55. #ifndef PTRACE_SETREGS
  56. #define PTRACE_SETREGS PT_SETREGS
  57. #endif
  58. #ifndef PTRACE_GETFPREGS
  59. #define PTRACE_GETFPREGS PT_GETFPREGS
  60. #endif
  61. #ifndef PTRACE_SETFPREGS
  62. #define PTRACE_SETFPREGS PT_SETFPREGS
  63. #endif
  64. static PTRACE_TYPE_RET
  65. gdb_ptrace (PTRACE_TYPE_ARG1 request, ptid_t ptid, PTRACE_TYPE_ARG3 addr)
  66. {
  67. #ifdef __NetBSD__
  68. /* Support for NetBSD threads: unlike other ptrace implementations in this
  69. file, NetBSD requires that we pass both the pid and lwp. */
  70. return ptrace (request, ptid.pid (), addr, ptid.lwp ());
  71. #else
  72. pid_t pid = get_ptrace_pid (ptid);
  73. return ptrace (request, pid, addr, 0);
  74. #endif
  75. }
  76. /* Register set description. */
  77. const struct sparc_gregmap *sparc_gregmap;
  78. const struct sparc_fpregmap *sparc_fpregmap;
  79. void (*sparc_supply_gregset) (const struct sparc_gregmap *,
  80. struct regcache *, int , const void *);
  81. void (*sparc_collect_gregset) (const struct sparc_gregmap *,
  82. const struct regcache *, int, void *);
  83. void (*sparc_supply_fpregset) (const struct sparc_fpregmap *,
  84. struct regcache *, int , const void *);
  85. void (*sparc_collect_fpregset) (const struct sparc_fpregmap *,
  86. const struct regcache *, int , void *);
  87. int (*sparc_gregset_supplies_p) (struct gdbarch *, int);
  88. int (*sparc_fpregset_supplies_p) (struct gdbarch *, int);
  89. /* Determine whether `gregset_t' contains register REGNUM. */
  90. int
  91. sparc32_gregset_supplies_p (struct gdbarch *gdbarch, int regnum)
  92. {
  93. /* Integer registers. */
  94. if ((regnum >= SPARC_G1_REGNUM && regnum <= SPARC_G7_REGNUM)
  95. || (regnum >= SPARC_O0_REGNUM && regnum <= SPARC_O7_REGNUM)
  96. || (regnum >= SPARC_L0_REGNUM && regnum <= SPARC_L7_REGNUM)
  97. || (regnum >= SPARC_I0_REGNUM && regnum <= SPARC_I7_REGNUM))
  98. return 1;
  99. /* Control registers. */
  100. if (regnum == SPARC32_PC_REGNUM
  101. || regnum == SPARC32_NPC_REGNUM
  102. || regnum == SPARC32_PSR_REGNUM
  103. || regnum == SPARC32_Y_REGNUM)
  104. return 1;
  105. return 0;
  106. }
  107. /* Determine whether `fpregset_t' contains register REGNUM. */
  108. int
  109. sparc32_fpregset_supplies_p (struct gdbarch *gdbarch, int regnum)
  110. {
  111. /* Floating-point registers. */
  112. if (regnum >= SPARC_F0_REGNUM && regnum <= SPARC_F31_REGNUM)
  113. return 1;
  114. /* Control registers. */
  115. if (regnum == SPARC32_FSR_REGNUM)
  116. return 1;
  117. return 0;
  118. }
  119. /* Fetch register REGNUM from the inferior. If REGNUM is -1, do this
  120. for all registers (including the floating-point registers). */
  121. void
  122. sparc_fetch_inferior_registers (process_stratum_target *proc_target,
  123. regcache *regcache, int regnum)
  124. {
  125. struct gdbarch *gdbarch = regcache->arch ();
  126. ptid_t ptid = regcache->ptid ();
  127. if (regnum == SPARC_G0_REGNUM)
  128. {
  129. gdb_byte zero[8] = { 0 };
  130. regcache->raw_supply (SPARC_G0_REGNUM, &zero);
  131. return;
  132. }
  133. if (regnum == -1 || sparc_gregset_supplies_p (gdbarch, regnum))
  134. {
  135. gregset_t regs;
  136. if (gdb_ptrace (PTRACE_GETREGS, ptid, (PTRACE_TYPE_ARG3) &regs) == -1)
  137. perror_with_name (_("Couldn't get registers"));
  138. /* Deep down, sparc_supply_rwindow reads memory, so needs the global
  139. thread context to be set. */
  140. scoped_restore restore_inferior_ptid
  141. = make_scoped_restore (&inferior_ptid, ptid);
  142. sparc_supply_gregset (sparc_gregmap, regcache, -1, &regs);
  143. if (regnum != -1)
  144. return;
  145. }
  146. if (regnum == -1 || sparc_fpregset_supplies_p (gdbarch, regnum))
  147. {
  148. fpregset_t fpregs;
  149. if (gdb_ptrace (PTRACE_GETFPREGS, ptid, (PTRACE_TYPE_ARG3) &fpregs) == -1)
  150. perror_with_name (_("Couldn't get floating point status"));
  151. sparc_supply_fpregset (sparc_fpregmap, regcache, -1, &fpregs);
  152. }
  153. }
  154. void
  155. sparc_store_inferior_registers (process_stratum_target *proc_target,
  156. regcache *regcache, int regnum)
  157. {
  158. struct gdbarch *gdbarch = regcache->arch ();
  159. ptid_t ptid = regcache->ptid ();
  160. if (regnum == -1 || sparc_gregset_supplies_p (gdbarch, regnum))
  161. {
  162. gregset_t regs;
  163. if (gdb_ptrace (PTRACE_GETREGS, ptid, (PTRACE_TYPE_ARG3) &regs) == -1)
  164. perror_with_name (_("Couldn't get registers"));
  165. sparc_collect_gregset (sparc_gregmap, regcache, regnum, &regs);
  166. if (gdb_ptrace (PTRACE_SETREGS, ptid, (PTRACE_TYPE_ARG3) &regs) == -1)
  167. perror_with_name (_("Couldn't write registers"));
  168. /* Deal with the stack regs. */
  169. if (regnum == -1 || regnum == SPARC_SP_REGNUM
  170. || (regnum >= SPARC_L0_REGNUM && regnum <= SPARC_I7_REGNUM))
  171. {
  172. ULONGEST sp;
  173. regcache_cooked_read_unsigned (regcache, SPARC_SP_REGNUM, &sp);
  174. /* Deep down, sparc_collect_rwindow writes memory, so needs the global
  175. thread context to be set. */
  176. scoped_restore restore_inferior_ptid
  177. = make_scoped_restore (&inferior_ptid, ptid);
  178. sparc_collect_rwindow (regcache, sp, regnum);
  179. }
  180. if (regnum != -1)
  181. return;
  182. }
  183. if (regnum == -1 || sparc_fpregset_supplies_p (gdbarch, regnum))
  184. {
  185. fpregset_t fpregs, saved_fpregs;
  186. if (gdb_ptrace (PTRACE_GETFPREGS, ptid, (PTRACE_TYPE_ARG3) &fpregs) == -1)
  187. perror_with_name (_("Couldn't get floating-point registers"));
  188. memcpy (&saved_fpregs, &fpregs, sizeof (fpregs));
  189. sparc_collect_fpregset (sparc_fpregmap, regcache, regnum, &fpregs);
  190. /* Writing the floating-point registers will fail on NetBSD with
  191. EINVAL if the inferior process doesn't have an FPU state
  192. (i.e. if it didn't use the FPU yet). Therefore we don't try
  193. to write the registers if nothing changed. */
  194. if (memcmp (&saved_fpregs, &fpregs, sizeof (fpregs)) != 0)
  195. {
  196. if (gdb_ptrace (PTRACE_SETFPREGS, ptid,
  197. (PTRACE_TYPE_ARG3) &fpregs) == -1)
  198. perror_with_name (_("Couldn't write floating-point registers"));
  199. }
  200. if (regnum != -1)
  201. return;
  202. }
  203. }
  204. /* Implement the to_xfer_partial target_ops method for
  205. TARGET_OBJECT_WCOOKIE. Fetch StackGhost Per-Process XOR cookie. */
  206. enum target_xfer_status
  207. sparc_xfer_wcookie (enum target_object object,
  208. const char *annex, gdb_byte *readbuf,
  209. const gdb_byte *writebuf, ULONGEST offset, ULONGEST len,
  210. ULONGEST *xfered_len)
  211. {
  212. unsigned long wcookie = 0;
  213. char *buf = (char *)&wcookie;
  214. gdb_assert (object == TARGET_OBJECT_WCOOKIE);
  215. gdb_assert (readbuf && writebuf == NULL);
  216. if (offset == sizeof (unsigned long))
  217. return TARGET_XFER_EOF; /* Signal EOF. */
  218. if (offset > sizeof (unsigned long))
  219. return TARGET_XFER_E_IO;
  220. #ifdef PT_WCOOKIE
  221. /* If PT_WCOOKIE is defined (by <sys/ptrace.h>), assume we're
  222. running on an OpenBSD release that uses StackGhost (3.1 or
  223. later). Since release 3.6, OpenBSD uses a fully randomized
  224. cookie. */
  225. {
  226. int pid = inferior_ptid.pid ();
  227. /* Sanity check. The proper type for a cookie is register_t, but
  228. we can't assume that this type exists on all systems supported
  229. by the code in this file. */
  230. gdb_assert (sizeof (wcookie) == sizeof (register_t));
  231. /* Fetch the cookie. */
  232. if (ptrace (PT_WCOOKIE, pid, (PTRACE_TYPE_ARG3) &wcookie, 0) == -1)
  233. {
  234. if (errno != EINVAL)
  235. perror_with_name (_("Couldn't get StackGhost cookie"));
  236. /* Although PT_WCOOKIE is defined on OpenBSD 3.1 and later,
  237. the request wasn't implemented until after OpenBSD 3.4. If
  238. the kernel doesn't support the PT_WCOOKIE request, assume
  239. we're running on a kernel that uses non-randomized cookies. */
  240. wcookie = 0x3;
  241. }
  242. }
  243. #endif /* PT_WCOOKIE */
  244. if (len > sizeof (unsigned long) - offset)
  245. len = sizeof (unsigned long) - offset;
  246. memcpy (readbuf, buf + offset, len);
  247. *xfered_len = (ULONGEST) len;
  248. return TARGET_XFER_OK;
  249. }
  250. void _initialize_sparc_nat ();
  251. void
  252. _initialize_sparc_nat ()
  253. {
  254. /* Default to using SunOS 4 register sets. */
  255. if (sparc_gregmap == NULL)
  256. sparc_gregmap = &sparc32_sunos4_gregmap;
  257. if (sparc_fpregmap == NULL)
  258. sparc_fpregmap = &sparc32_sunos4_fpregmap;
  259. if (sparc_supply_gregset == NULL)
  260. sparc_supply_gregset = sparc32_supply_gregset;
  261. if (sparc_collect_gregset == NULL)
  262. sparc_collect_gregset = sparc32_collect_gregset;
  263. if (sparc_supply_fpregset == NULL)
  264. sparc_supply_fpregset = sparc32_supply_fpregset;
  265. if (sparc_collect_fpregset == NULL)
  266. sparc_collect_fpregset = sparc32_collect_fpregset;
  267. if (sparc_gregset_supplies_p == NULL)
  268. sparc_gregset_supplies_p = sparc32_gregset_supplies_p;
  269. if (sparc_fpregset_supplies_p == NULL)
  270. sparc_fpregset_supplies_p = sparc32_fpregset_supplies_p;
  271. }