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@ -32,11 +32,16 @@ |
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#include <sys/param.h> |
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#include <sys/dir.h> |
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#include <signal.h> |
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#include <sys/ptrace.h> |
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#include <sys/user.h> |
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#include <sys/ioctl.h> |
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#include <fcntl.h> |
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#include <sys/procfs.h> |
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#ifdef HAVE_SYS_REG_H |
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#include <sys/reg.h> |
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#endif |
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#include <sys/file.h> |
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#include "gdb_stat.h" |
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@ -57,6 +62,34 @@ static const int regmap[] = |
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45, 46, 47 |
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}; |
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/* Which ptrace request retrieves which registers?
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These apply to the corresponding SET requests as well. */ |
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#define NUM_GREGS (18) |
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#define MAX_NUM_REGS (NUM_GREGS + 11) |
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int |
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getregs_supplies (int regno) |
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{ |
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return 0 <= regno && regno < NUM_GREGS; |
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} |
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int |
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getfpregs_supplies (int regno) |
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{ |
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return FP0_REGNUM <= regno && regno <= FPI_REGNUM; |
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} |
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/* Does the current host support the GETREGS request? */ |
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int have_ptrace_getregs = |
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#ifdef HAVE_PTRACE_GETREGS |
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1 |
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#else |
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0 |
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#endif |
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; |
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/* BLOCKEND is the value of u.u_ar0, and points to the place where GS
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is stored. */ |
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@ -65,7 +98,151 @@ m68k_linux_register_u_addr (int blockend, int regnum) |
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{ |
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return (blockend + 4 * regmap[regnum]); |
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} |
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/* Fetching registers directly from the U area, one at a time. */ |
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/* FIXME: This duplicates code from `inptrace.c'. The problem is that we
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define FETCH_INFERIOR_REGISTERS since we want to use our own versions |
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of {fetch,store}_inferior_registers that use the GETREGS request. This |
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means that the code in `infptrace.c' is #ifdef'd out. But we need to |
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fall back on that code when GDB is running on top of a kernel that |
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doesn't support the GETREGS request. */ |
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#ifndef PT_READ_U |
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#define PT_READ_U PTRACE_PEEKUSR |
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#endif |
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#ifndef PT_WRITE_U |
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#define PT_WRITE_U PTRACE_POKEUSR |
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#endif |
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/* Default the type of the ptrace transfer to int. */ |
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#ifndef PTRACE_XFER_TYPE |
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#define PTRACE_XFER_TYPE int |
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#endif |
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/* Fetch one register. */ |
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static void |
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fetch_register (int regno) |
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{ |
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/* This isn't really an address. But ptrace thinks of it as one. */ |
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CORE_ADDR regaddr; |
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char mess[128]; /* For messages */ |
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register int i; |
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unsigned int offset; /* Offset of registers within the u area. */ |
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char buf[MAX_REGISTER_RAW_SIZE]; |
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int tid; |
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if (CANNOT_FETCH_REGISTER (regno)) |
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{ |
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memset (buf, '\0', REGISTER_RAW_SIZE (regno)); /* Supply zeroes */ |
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supply_register (regno, buf); |
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return; |
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} |
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/* Overload thread id onto process id */ |
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if ((tid = TIDGET (inferior_ptid)) == 0) |
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tid = PIDGET (inferior_ptid); /* no thread id, just use process id */ |
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offset = U_REGS_OFFSET; |
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regaddr = register_addr (regno, offset); |
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for (i = 0; i < REGISTER_RAW_SIZE (regno); i += sizeof (PTRACE_XFER_TYPE)) |
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{ |
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errno = 0; |
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*(PTRACE_XFER_TYPE *) & buf[i] = ptrace (PT_READ_U, tid, |
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(PTRACE_ARG3_TYPE) regaddr, 0); |
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regaddr += sizeof (PTRACE_XFER_TYPE); |
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if (errno != 0) |
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{ |
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sprintf (mess, "reading register %s (#%d)", |
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REGISTER_NAME (regno), regno); |
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perror_with_name (mess); |
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} |
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} |
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supply_register (regno, buf); |
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} |
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/* Fetch register values from the inferior.
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If REGNO is negative, do this for all registers. |
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Otherwise, REGNO specifies which register (so we can save time). */ |
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void |
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old_fetch_inferior_registers (int regno) |
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{ |
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if (regno >= 0) |
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{ |
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fetch_register (regno); |
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} |
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else |
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{ |
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for (regno = 0; regno < NUM_REGS; regno++) |
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{ |
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fetch_register (regno); |
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} |
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} |
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} |
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/* Store one register. */ |
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static void |
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store_register (int regno) |
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{ |
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/* This isn't really an address. But ptrace thinks of it as one. */ |
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CORE_ADDR regaddr; |
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char mess[128]; /* For messages */ |
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register int i; |
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unsigned int offset; /* Offset of registers within the u area. */ |
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int tid; |
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if (CANNOT_STORE_REGISTER (regno)) |
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{ |
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return; |
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} |
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/* Overload thread id onto process id */ |
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if ((tid = TIDGET (inferior_ptid)) == 0) |
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tid = PIDGET (inferior_ptid); /* no thread id, just use process id */ |
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offset = U_REGS_OFFSET; |
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regaddr = register_addr (regno, offset); |
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for (i = 0; i < REGISTER_RAW_SIZE (regno); i += sizeof (PTRACE_XFER_TYPE)) |
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{ |
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errno = 0; |
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ptrace (PT_WRITE_U, tid, (PTRACE_ARG3_TYPE) regaddr, |
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*(PTRACE_XFER_TYPE *) & registers[REGISTER_BYTE (regno) + i]); |
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regaddr += sizeof (PTRACE_XFER_TYPE); |
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if (errno != 0) |
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{ |
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sprintf (mess, "writing register %s (#%d)", |
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REGISTER_NAME (regno), regno); |
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perror_with_name (mess); |
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} |
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} |
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} |
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/* Store our register values back into the inferior.
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If REGNO is negative, do this for all registers. |
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Otherwise, REGNO specifies which register (so we can save time). */ |
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void |
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old_store_inferior_registers (int regno) |
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{ |
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if (regno >= 0) |
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{ |
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store_register (regno); |
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} |
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else |
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{ |
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for (regno = 0; regno < NUM_REGS; regno++) |
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{ |
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store_register (regno); |
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} |
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} |
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} |
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/* Given a pointer to a general register set in /proc format
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(elf_gregset_t *), unpack the register contents and supply |
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them as gdb's idea of the current register values. */ |
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@ -87,17 +264,87 @@ m68k_linux_register_u_addr (int blockend, int regnum) |
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void |
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supply_gregset (elf_gregset_t *gregsetp) |
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{ |
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elf_greg_t *regp = (elf_greg_t *) gregsetp; |
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int regi; |
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for (regi = D0_REGNUM; regi <= SP_REGNUM; regi++) |
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supply_register (regi, (char *) (*gregsetp + regmap[regi])); |
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supply_register (PS_REGNUM, (char *) (*gregsetp + PT_SR)); |
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supply_register (PC_REGNUM, (char *) (*gregsetp + PT_PC)); |
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supply_register (regi, (char *) ®p[regmap[regi]]); |
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supply_register (PS_REGNUM, (char *) ®p[PT_SR]); |
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supply_register (PC_REGNUM, (char *) ®p[PT_PC]); |
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} |
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/* Fill register REGNO (if it is a general-purpose register) in
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*GREGSETPS with the value in GDB's register array. If REGNO is -1, |
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do this for all registers. */ |
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void |
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fill_gregset (elf_gregset_t *gregsetp, int regno) |
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{ |
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elf_greg_t *regp = (elf_greg_t *) gregsetp; |
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int i; |
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for (i = 0; i < NUM_GREGS; i++) |
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if ((regno == -1 || regno == i)) |
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regcache_collect (i, regp + regmap[i]); |
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} |
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#ifdef HAVE_PTRACE_GETREGS |
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/* Fetch all general-purpose registers from process/thread TID and
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store their values in GDB's register array. */ |
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static void |
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fetch_regs (int tid) |
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{ |
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elf_gregset_t regs; |
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if (ptrace (PTRACE_GETREGS, tid, 0, (int) ®s) < 0) |
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{ |
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if (errno == EIO) |
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{ |
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/* The kernel we're running on doesn't support the GETREGS
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request. Reset `have_ptrace_getregs'. */ |
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have_ptrace_getregs = 0; |
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return; |
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} |
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perror_with_name ("Couldn't get registers"); |
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} |
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supply_gregset (®s); |
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} |
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/* Store all valid general-purpose registers in GDB's register array
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into the process/thread specified by TID. */ |
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static void |
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store_regs (int tid, int regno) |
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{ |
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elf_gregset_t regs; |
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if (ptrace (PTRACE_GETREGS, tid, 0, (int) ®s) < 0) |
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perror_with_name ("Couldn't get registers"); |
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fill_gregset (®s, regno); |
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if (ptrace (PTRACE_SETREGS, tid, 0, (int) ®s) < 0) |
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perror_with_name ("Couldn't write registers"); |
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} |
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/* Given a pointer to a floating point register set in /proc format
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(fpregset_t *), unpack the register contents and supply them as gdb's |
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idea of the current floating point register values. */ |
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#else |
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static void fetch_regs (int tid) {} |
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static void store_regs (int tid, int regno) {} |
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#endif |
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/* Transfering floating-point registers between GDB, inferiors and cores. */ |
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/* What is the address of fpN within the floating-point register set F? */ |
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#define FPREG_ADDR(f, n) ((char *) &(f)->fpregs[(n) * 3]) |
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/* Fill GDB's register array with the floating-point register values in
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*FPREGSETP. */ |
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void |
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supply_fpregset (elf_fpregset_t *fpregsetp) |
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@ -105,14 +352,180 @@ supply_fpregset (elf_fpregset_t *fpregsetp) |
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int regi; |
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for (regi = FP0_REGNUM; regi < FPC_REGNUM; regi++) |
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supply_register (regi, (char *) &fpregsetp->fpregs[(regi - FP0_REGNUM) * 3]); |
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supply_register (regi, FPREG_ADDR (fpregsetp, regi - FP0_REGNUM)); |
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supply_register (FPC_REGNUM, (char *) &fpregsetp->fpcntl[0]); |
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supply_register (FPS_REGNUM, (char *) &fpregsetp->fpcntl[1]); |
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supply_register (FPI_REGNUM, (char *) &fpregsetp->fpcntl[2]); |
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} |
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/* Fill register REGNO (if it is a floating-point register) in
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*FPREGSETP with the value in GDB's register array. If REGNO is -1, |
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do this for all registers. */ |
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void |
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fill_fpregset (elf_fpregset_t *fpregsetp, int regno) |
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{ |
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int i; |
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/* Fill in the floating-point registers. */ |
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for (i = FP0_REGNUM; i < FP0_REGNUM + 8; i++) |
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if (regno == -1 || regno == i) |
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memcpy (FPREG_ADDR (fpregsetp, regno - FP0_REGNUM), |
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®isters[REGISTER_BYTE (regno)], |
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REGISTER_RAW_SIZE(regno)); |
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/* Fill in the floating-point control registers. */ |
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for (i = FPC_REGNUM; i <= FPI_REGNUM; i++) |
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if (regno == -1 || regno == i) |
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fpregsetp->fpcntl[regno - FPC_REGNUM] |
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= *(int *) ®isters[REGISTER_BYTE (regno)]; |
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} |
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#ifdef HAVE_PTRACE_GETREGS |
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/* Fetch all floating-point registers from process/thread TID and store
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thier values in GDB's register array. */ |
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static void |
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fetch_fpregs (int tid) |
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{ |
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elf_fpregset_t fpregs; |
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if (ptrace (PTRACE_GETFPREGS, tid, 0, (int) &fpregs) < 0) |
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perror_with_name ("Couldn't get floating point status"); |
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supply_fpregset (&fpregs); |
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} |
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/* Store all valid floating-point registers in GDB's register array
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into the process/thread specified by TID. */ |
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static void |
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store_fpregs (int tid, int regno) |
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{ |
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elf_fpregset_t fpregs; |
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if (ptrace (PTRACE_GETFPREGS, tid, 0, (int) &fpregs) < 0) |
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perror_with_name ("Couldn't get floating point status"); |
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fill_fpregset (&fpregs, regno); |
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if (ptrace (PTRACE_SETFPREGS, tid, 0, (int) &fpregs) < 0) |
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perror_with_name ("Couldn't write floating point status"); |
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} |
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#else |
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static void fetch_fpregs (int tid) {} |
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static void store_fpregs (int tid, int regno) {} |
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#endif |
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#endif |
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/* Transferring arbitrary registers between GDB and inferior. */ |
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/* Fetch register REGNO from the child process. If REGNO is -1, do
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this for all registers (including the floating point and SSE |
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registers). */ |
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void |
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fetch_inferior_registers (int regno) |
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{ |
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int tid; |
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/* Use the old method of peeking around in `struct user' if the
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GETREGS request isn't available. */ |
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if (! have_ptrace_getregs) |
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{ |
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old_fetch_inferior_registers (regno); |
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return; |
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} |
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/* Linux LWP ID's are process ID's. */ |
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if ((tid = TIDGET (inferior_ptid)) == 0) |
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tid = PIDGET (inferior_ptid); /* Not a threaded program. */ |
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/* Use the PTRACE_GETFPXREGS request whenever possible, since it
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transfers more registers in one system call, and we'll cache the |
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results. But remember that fetch_fpxregs can fail, and return |
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zero. */ |
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if (regno == -1) |
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{ |
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fetch_regs (tid); |
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/* The call above might reset `have_ptrace_getregs'. */ |
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if (! have_ptrace_getregs) |
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{ |
|
|
|
old_fetch_inferior_registers (-1); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
fetch_fpregs (tid); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
if (getregs_supplies (regno)) |
|
|
|
{ |
|
|
|
fetch_regs (tid); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
if (getfpregs_supplies (regno)) |
|
|
|
{ |
|
|
|
fetch_fpregs (tid); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
internal_error (__FILE__, __LINE__, |
|
|
|
"Got request for bad register number %d.", regno); |
|
|
|
} |
|
|
|
|
|
|
|
/* Store register REGNO back into the child process. If REGNO is -1,
|
|
|
|
do this for all registers (including the floating point and SSE |
|
|
|
registers). */ |
|
|
|
void |
|
|
|
store_inferior_registers (int regno) |
|
|
|
{ |
|
|
|
int tid; |
|
|
|
|
|
|
|
/* Use the old method of poking around in `struct user' if the
|
|
|
|
SETREGS request isn't available. */ |
|
|
|
if (! have_ptrace_getregs) |
|
|
|
{ |
|
|
|
old_store_inferior_registers (regno); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
/* Linux LWP ID's are process ID's. */ |
|
|
|
if ((tid = TIDGET (inferior_ptid)) == 0) |
|
|
|
tid = PIDGET (inferior_ptid); /* Not a threaded program. */ |
|
|
|
|
|
|
|
/* Use the PTRACE_SETFPREGS requests whenever possible, since it
|
|
|
|
transfers more registers in one system call. But remember that |
|
|
|
store_fpregs can fail, and return zero. */ |
|
|
|
if (regno == -1) |
|
|
|
{ |
|
|
|
store_regs (tid, regno); |
|
|
|
store_fpregs (tid, regno); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
if (getregs_supplies (regno)) |
|
|
|
{ |
|
|
|
store_regs (tid, regno); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
if (getfpregs_supplies (regno)) |
|
|
|
{ |
|
|
|
store_fpregs (tid, regno); |
|
|
|
return; |
|
|
|
} |
|
|
|
|
|
|
|
internal_error (__FILE__, __LINE__, |
|
|
|
"Got request to store bad register number %d.", regno); |
|
|
|
} |
|
|
|
|
|
|
|
/* Interpreting register set info found in core files. */ |
|
|
|
|
|
|
|
|