/* DWARF 2 location expression support for GDB.
- Copyright (C) 2003-2013 Free Software Foundation, Inc.
+ Copyright (C) 2003-2014 Free Software Foundation, Inc.
Contributed by Daniel Jacobowitz, MontaVista Software, Inc.
#include "dwarf2loc.h"
#include "dwarf2-frame.h"
-#include "gdb_string.h"
+#include <string.h>
#include "gdb_assert.h"
extern int dwarf2_always_disassemble;
/* Using the frame specified in BATON, return the value of register
REGNUM, treated as a pointer. */
static CORE_ADDR
-dwarf_expr_read_reg (void *baton, int dwarf_regnum)
+dwarf_expr_read_addr_from_reg (void *baton, int dwarf_regnum)
{
struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
struct gdbarch *gdbarch = get_frame_arch (debaton->frame);
return result;
}
+/* Implement struct dwarf_expr_context_funcs' "get_reg_value" callback. */
+
+static struct value *
+dwarf_expr_get_reg_value (void *baton, struct type *type, int dwarf_regnum)
+{
+ struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
+ struct gdbarch *gdbarch = get_frame_arch (debaton->frame);
+ int regnum = gdbarch_dwarf2_reg_to_regnum (gdbarch, dwarf_regnum);
+
+ return value_from_register (type, regnum, debaton->frame);
+}
+
/* Read memory at ADDR (length LEN) into BUF. */
static void
* (length - 1));
result->length = length;
result->callers = result->callees = length;
- memcpy (result->call_site, VEC_address (call_sitep, chain),
- sizeof (*result->call_site) * length);
+ if (!VEC_empty (call_sitep, chain))
+ memcpy (result->call_site, VEC_address (call_sitep, chain),
+ sizeof (*result->call_site) * length);
*resultp = result;
if (entry_values_debug)
int n_pieces, struct dwarf_expr_piece *pieces,
int addr_size)
{
- struct piece_closure *c = XZALLOC (struct piece_closure);
+ struct piece_closure *c = XCNEW (struct piece_closure);
int i;
c->refc = 1;
c->per_cu = per_cu;
c->n_pieces = n_pieces;
c->addr_size = addr_size;
- c->pieces = XCALLOC (n_pieces, struct dwarf_expr_piece);
+ c->pieces = XCNEWVEC (struct dwarf_expr_piece, n_pieces);
memcpy (c->pieces, pieces, n_pieces * sizeof (struct dwarf_expr_piece));
for (i = 0; i < n_pieces; ++i)
if (optim)
set_value_optimized_out (v, 1);
if (unavail)
- mark_value_bytes_unavailable (v, offset, this_size);
+ mark_value_bits_unavailable (v, offset, this_size_bits);
}
}
else
&optim, &unavail))
{
if (optim)
- error (_("Can't do read-modify-write to "
- "update bitfield; containing word has been "
- "optimized out"));
+ throw_error (OPTIMIZED_OUT_ERROR,
+ _("Can't do read-modify-write to "
+ "update bitfield; containing word "
+ "has been optimized out"));
if (unavail)
throw_error (NOT_AVAILABLE_ERROR,
_("Can't do read-modify-write to update "
static const struct dwarf_expr_context_funcs dwarf_expr_ctx_funcs =
{
- dwarf_expr_read_reg,
+ dwarf_expr_read_addr_from_reg,
+ dwarf_expr_get_reg_value,
dwarf_expr_read_mem,
dwarf_expr_frame_base,
dwarf_expr_frame_cfa,
case DWARF_VALUE_REGISTER:
{
struct gdbarch *arch = get_frame_arch (frame);
- ULONGEST dwarf_regnum = value_as_long (dwarf_expr_fetch (ctx, 0));
+ int dwarf_regnum
+ = longest_to_int (value_as_long (dwarf_expr_fetch (ctx, 0)));
int gdb_regnum = gdbarch_dwarf2_reg_to_regnum (arch, dwarf_regnum);
if (byte_offset != 0)
error (_("cannot use offset on synthetic pointer to register"));
do_cleanups (value_chain);
- if (gdb_regnum != -1)
- retval = value_from_register (type, gdb_regnum, frame);
- else
- error (_("Unable to access DWARF register number %s"),
- paddress (arch, dwarf_regnum));
+ if (gdb_regnum == -1)
+ error (_("Unable to access DWARF register number %d"),
+ dwarf_regnum);
+ retval = value_from_register (type, gdb_regnum, frame);
+ if (value_optimized_out (retval))
+ {
+ /* This means the register has undefined value / was
+ not saved. As we're computing the location of some
+ variable etc. in the program, not a value for
+ inspecting a register ($pc, $sp, etc.), return a
+ generic optimized out value instead, so that we show
+ <optimized out> instead of <not saved>. */
+ do_cleanups (value_chain);
+ retval = allocate_optimized_out_value (type);
+ }
}
break;
/* Reads from registers do require a frame. */
static CORE_ADDR
-needs_frame_read_reg (void *baton, int regnum)
+needs_frame_read_addr_from_reg (void *baton, int regnum)
{
struct needs_frame_baton *nf_baton = baton;
return 1;
}
+/* struct dwarf_expr_context_funcs' "get_reg_value" callback:
+ Reads from registers do require a frame. */
+
+static struct value *
+needs_frame_get_reg_value (void *baton, struct type *type, int regnum)
+{
+ struct needs_frame_baton *nf_baton = baton;
+
+ nf_baton->needs_frame = 1;
+ return value_zero (type, not_lval);
+}
+
/* Reads from memory do not require a frame. */
static void
needs_frame_read_mem (void *baton, gdb_byte *buf, CORE_ADDR addr, size_t len)
static const struct dwarf_expr_context_funcs needs_frame_ctx_funcs =
{
- needs_frame_read_reg,
+ needs_frame_read_addr_from_reg,
+ needs_frame_get_reg_value,
needs_frame_read_mem,
needs_frame_frame_base,
needs_frame_frame_cfa,
fprintf_filtered (stream,
_("a thread-local variable at offset 0x%s "
"in the thread-local storage for `%s'"),
- phex_nz (offset, addr_size), objfile->name);
+ phex_nz (offset, addr_size), objfile_name (objfile));
data += 1 + addr_size + 1;
}
fprintf_filtered (stream,
_("a thread-local variable at offset 0x%s "
"in the thread-local storage for `%s'"),
- phex_nz (offset, addr_size), objfile->name);
+ phex_nz (offset, addr_size), objfile_name (objfile));
++data;
}