/* Frame unwinder for frames with DWARF Call Frame Information.
- Copyright (C) 2003-2013 Free Software Foundation, Inc.
+ Copyright (C) 2003-2015 Free Software Foundation, Inc.
Contributed by Mark Kettenis.
#include "objfiles.h"
#include "regcache.h"
#include "value.h"
-
-#include "gdb_assert.h"
-#include "gdb_string.h"
+#include "record.h"
#include "complaints.h"
#include "dwarf2-frame.h"
#include "ax.h"
#include "dwarf2loc.h"
-#include "exceptions.h"
#include "dwarf2-frame-tailcall.h"
struct comp_unit;
struct objfile *objfile;
/* Pointer to the .debug_frame section loaded into memory. */
- gdb_byte *dwarf_frame_buffer;
+ const gdb_byte *dwarf_frame_buffer;
/* Length of the loaded .debug_frame section. */
bfd_size_type dwarf_frame_size;
CORE_ADDR func_base);
\f
+enum cfa_how_kind
+{
+ CFA_UNSET,
+ CFA_REG_OFFSET,
+ CFA_EXP
+};
+
+struct dwarf2_frame_state_reg_info
+{
+ struct dwarf2_frame_state_reg *reg;
+ int num_regs;
+
+ LONGEST cfa_offset;
+ ULONGEST cfa_reg;
+ enum cfa_how_kind cfa_how;
+ const gdb_byte *cfa_exp;
+
+ /* Used to implement DW_CFA_remember_state. */
+ struct dwarf2_frame_state_reg_info *prev;
+};
+
/* Structure describing a frame state. */
struct dwarf2_frame_state
{
/* Each register save state can be described in terms of a CFA slot,
another register, or a location expression. */
- struct dwarf2_frame_state_reg_info
- {
- struct dwarf2_frame_state_reg *reg;
- int num_regs;
-
- LONGEST cfa_offset;
- ULONGEST cfa_reg;
- enum {
- CFA_UNSET,
- CFA_REG_OFFSET,
- CFA_EXP
- } cfa_how;
- const gdb_byte *cfa_exp;
-
- /* Used to implement DW_CFA_remember_state. */
- struct dwarf2_frame_state_reg_info *prev;
- } regs;
+ struct dwarf2_frame_state_reg_info regs;
/* The PC described by the current frame state. */
CORE_ADDR pc;
/* Helper functions for execute_stack_op. */
static CORE_ADDR
-read_reg (void *baton, int reg)
+read_addr_from_reg (void *baton, int reg)
{
struct frame_info *this_frame = (struct frame_info *) baton;
struct gdbarch *gdbarch = get_frame_arch (this_frame);
- int regnum;
- gdb_byte *buf;
+ int regnum = gdbarch_dwarf2_reg_to_regnum (gdbarch, reg);
- regnum = gdbarch_dwarf2_reg_to_regnum (gdbarch, reg);
+ return address_from_register (regnum, this_frame);
+}
- buf = alloca (register_size (gdbarch, regnum));
- get_frame_register (this_frame, regnum, buf);
+/* Implement struct dwarf_expr_context_funcs' "get_reg_value" callback. */
- /* Convert the register to an integer. This returns a LONGEST
- rather than a CORE_ADDR, but unpack_pointer does the same thing
- under the covers, and this makes more sense for non-pointer
- registers. Maybe read_reg and the associated interfaces should
- deal with "struct value" instead of CORE_ADDR. */
- return unpack_long (register_type (gdbarch, regnum), buf);
+static struct value *
+get_reg_value (void *baton, struct type *type, int reg)
+{
+ struct frame_info *this_frame = (struct frame_info *) baton;
+ struct gdbarch *gdbarch = get_frame_arch (this_frame);
+ int regnum = gdbarch_dwarf2_reg_to_regnum (gdbarch, reg);
+
+ return value_from_register (type, regnum, this_frame);
}
static void
static const struct dwarf_expr_context_funcs dwarf2_frame_ctx_funcs =
{
- read_reg,
+ read_addr_from_reg,
+ get_reg_value,
read_mem,
ctx_no_get_frame_base,
ctx_no_get_frame_cfa,
if (ctx->location == DWARF_VALUE_MEMORY)
result = dwarf_expr_fetch_address (ctx, 0);
else if (ctx->location == DWARF_VALUE_REGISTER)
- result = read_reg (this_frame, value_as_long (dwarf_expr_fetch (ctx, 0)));
+ result = read_addr_from_reg (this_frame,
+ value_as_long (dwarf_expr_fetch (ctx, 0)));
else
{
/* This is actually invalid DWARF, but if we ever do run across
CORE_ADDR pc, struct dwarf2_frame_state *fs)
{
int eh_frame_p = fde->eh_frame_p;
- int bytes_read;
+ unsigned int bytes_read;
enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
while (insn_ptr < insn_end && fs->pc <= pc)
{
struct dwarf2_frame_state_reg_info *new_rs;
- new_rs = XMALLOC (struct dwarf2_frame_state_reg_info);
+ new_rs = XNEW (struct dwarf2_frame_state_reg_info);
*new_rs = fs->regs;
fs->regs.reg = dwarf2_frame_state_copy_regs (&fs->regs);
fs->regs.prev = new_rs;
case DW_CFA_GNU_negative_offset_extended:
insn_ptr = safe_read_uleb128 (insn_ptr, insn_end, ®);
reg = dwarf2_frame_adjust_regnum (gdbarch, reg, eh_frame_p);
- insn_ptr = safe_read_uleb128 (insn_ptr, insn_end, &offset);
- offset *= fs->data_align;
+ insn_ptr = safe_read_uleb128 (insn_ptr, insn_end, &utmp);
+ offset = utmp * fs->data_align;
dwarf2_frame_state_alloc_regs (&fs->regs, reg + 1);
fs->regs.reg[reg].how = DWARF2_FRAME_REG_SAVED_OFFSET;
fs->regs.reg[reg].loc.offset = -offset;
dwarf2_frame_find_quirks (struct dwarf2_frame_state *fs,
struct dwarf2_fde *fde)
{
- struct symtab *s;
+ struct compunit_symtab *cust;
- s = find_pc_symtab (fs->pc);
- if (s == NULL)
+ cust = find_pc_compunit_symtab (fs->pc);
+ if (cust == NULL)
return;
- if (producer_is_realview (s->producer))
+ if (producer_is_realview (COMPUNIT_PRODUCER (cust)))
{
if (fde->cie->version == 1)
fs->armcc_cfa_offsets_sf = 1;
this problem is fixed (no quirk needed). If the armcc
augmentation is missing, the quirk is needed. */
if (fde->cie->version == 3
- && (strncmp (fde->cie->augmentation, "armcc", 5) != 0
+ && (!startswith (fde->cie->augmentation, "armcc")
|| strchr (fde->cie->augmentation + 5, '+') == NULL))
fs->armcc_cfa_offsets_reversed = 1;
}
\f
-void
-dwarf2_compile_cfa_to_ax (struct agent_expr *expr, struct axs_value *loc,
- struct gdbarch *gdbarch,
- CORE_ADDR pc,
- struct dwarf2_per_cu_data *data)
+/* See dwarf2-frame.h. */
+
+int
+dwarf2_fetch_cfa_info (struct gdbarch *gdbarch, CORE_ADDR pc,
+ struct dwarf2_per_cu_data *data,
+ int *regnum_out, LONGEST *offset_out,
+ CORE_ADDR *text_offset_out,
+ const gdb_byte **cfa_start_out,
+ const gdb_byte **cfa_end_out)
{
struct dwarf2_fde *fde;
CORE_ADDR text_offset;
if (regnum == -1)
error (_("Unable to access DWARF register number %d"),
(int) fs.regs.cfa_reg); /* FIXME */
- ax_reg (expr, regnum);
- if (fs.regs.cfa_offset != 0)
- {
- if (fs.armcc_cfa_offsets_reversed)
- ax_const_l (expr, -fs.regs.cfa_offset);
- else
- ax_const_l (expr, fs.regs.cfa_offset);
- ax_simple (expr, aop_add);
- }
+ *regnum_out = regnum;
+ if (fs.armcc_cfa_offsets_reversed)
+ *offset_out = -fs.regs.cfa_offset;
+ else
+ *offset_out = fs.regs.cfa_offset;
+ return 1;
}
- break;
case CFA_EXP:
- ax_const_l (expr, text_offset);
- dwarf2_compile_expr_to_ax (expr, loc, gdbarch, addr_size,
- fs.regs.cfa_exp,
- fs.regs.cfa_exp + fs.regs.cfa_exp_len,
- data);
- break;
+ *text_offset_out = text_offset;
+ *cfa_start_out = fs.regs.cfa_exp;
+ *cfa_end_out = fs.regs.cfa_exp + fs.regs.cfa_exp_len;
+ return 0;
default:
internal_error (__FILE__, __LINE__, _("Unknown CFA rule."));
/* The .text offset. */
CORE_ADDR text_offset;
+ /* True if we already checked whether this frame is the bottom frame
+ of a virtual tail call frame chain. */
+ int checked_tailcall_bottom;
+
/* If not NULL then this frame is the bottom frame of a TAILCALL_FRAME
sequence. If NULL then it is a normal case with no TAILCALL_FRAME
involved. Non-bottom frames of a virtual tail call frames chain use
dwarf2_tailcall_frame_unwind unwinder so this field does not apply for
them. */
void *tailcall_cache;
+
+ /* The number of bytes to subtract from TAILCALL_FRAME frames frame
+ base to get the SP, to simulate the return address pushed on the
+ stack. */
+ LONGEST entry_cfa_sp_offset;
+ int entry_cfa_sp_offset_p;
};
/* A cleanup that sets a pointer to NULL. */
struct dwarf2_frame_cache *cache;
struct dwarf2_frame_state *fs;
struct dwarf2_fde *fde;
- volatile struct gdb_exception ex;
CORE_ADDR entry_pc;
- LONGEST entry_cfa_sp_offset;
- int entry_cfa_sp_offset_p = 0;
const gdb_byte *instr;
if (*this_cache)
reset_cache_cleanup = make_cleanup (clear_pointer_cleanup, this_cache);
/* Allocate and initialize the frame state. */
- fs = XZALLOC (struct dwarf2_frame_state);
+ fs = XCNEW (struct dwarf2_frame_state);
old_chain = make_cleanup (dwarf2_frame_state_free, fs);
/* Unwind the PC.
&& (gdbarch_dwarf2_reg_to_regnum (gdbarch, fs->regs.cfa_reg)
== gdbarch_sp_regnum (gdbarch)))
{
- entry_cfa_sp_offset = fs->regs.cfa_offset;
- entry_cfa_sp_offset_p = 1;
+ cache->entry_cfa_sp_offset = fs->regs.cfa_offset;
+ cache->entry_cfa_sp_offset_p = 1;
}
}
else
execute_cfa_program (fde, instr, fde->end, gdbarch,
get_frame_address_in_block (this_frame), fs);
- TRY_CATCH (ex, RETURN_MASK_ERROR)
+ TRY
{
/* Calculate the CFA. */
switch (fs->regs.cfa_how)
{
case CFA_REG_OFFSET:
- cache->cfa = read_reg (this_frame, fs->regs.cfa_reg);
+ cache->cfa = read_addr_from_reg (this_frame, fs->regs.cfa_reg);
if (fs->armcc_cfa_offsets_reversed)
cache->cfa -= fs->regs.cfa_offset;
else
internal_error (__FILE__, __LINE__, _("Unknown CFA rule."));
}
}
- if (ex.reason < 0)
+ CATCH (ex, RETURN_MASK_ERROR)
{
if (ex.error == NOT_AVAILABLE_ERROR)
{
throw_exception (ex);
}
+ END_CATCH
/* Initialize the register state. */
{
cache->undefined_retaddr = 1;
do_cleanups (old_chain);
-
- /* Try to find a virtual tail call frames chain with bottom (callee) frame
- starting at THIS_FRAME. */
- dwarf2_tailcall_sniffer_first (this_frame, &cache->tailcall_cache,
- (entry_cfa_sp_offset_p
- ? &entry_cfa_sp_offset : NULL));
-
discard_cleanups (reset_cache_cleanup);
return cache;
}
dwarf2_frame_cache (this_frame, this_cache);
if (cache->unavailable_retaddr)
+ (*this_id) = frame_id_build_unavailable_stack (get_frame_func (this_frame));
+ else if (cache->undefined_retaddr)
return;
-
- if (cache->undefined_retaddr)
- return;
-
- (*this_id) = frame_id_build (cache->cfa, get_frame_func (this_frame));
+ else
+ (*this_id) = frame_id_build (cache->cfa, get_frame_func (this_frame));
}
static struct value *
CORE_ADDR addr;
int realnum;
+ /* Check whether THIS_FRAME is the bottom frame of a virtual tail
+ call frame chain. */
+ if (!cache->checked_tailcall_bottom)
+ {
+ cache->checked_tailcall_bottom = 1;
+ dwarf2_tailcall_sniffer_first (this_frame, &cache->tailcall_cache,
+ (cache->entry_cfa_sp_offset_p
+ ? &cache->entry_cfa_sp_offset : NULL));
+ }
+
/* Non-bottom frames of a virtual tail call frames chain use
dwarf2_tailcall_frame_unwind unwinder so this code does not apply for
them. If dwarf2_tailcall_prev_register_first does not have specific value
if (self->type != NORMAL_FRAME)
return 0;
- /* Preinitializa the cache so that TAILCALL_FRAME can find the record by
- dwarf2_tailcall_sniffer_first. */
- dwarf2_frame_cache (this_frame, this_cache);
-
return 1;
}
CORE_ADDR
dwarf2_frame_cfa (struct frame_info *this_frame)
{
+ if (frame_unwinder_is (this_frame, &record_btrace_tailcall_frame_unwind)
+ || frame_unwinder_is (this_frame, &record_btrace_frame_unwind))
+ throw_error (NOT_AVAILABLE_ERROR,
+ _("cfa not available for record btrace target"));
+
while (get_frame_type (this_frame) == INLINE_FRAME)
this_frame = get_prev_frame (this_frame);
- /* This restriction could be lifted if other unwinders are known to
- compute the frame base in a way compatible with the DWARF
- unwinder. */
- if (!frame_unwinder_is (this_frame, &dwarf2_frame_unwind)
- && !frame_unwinder_is (this_frame, &dwarf2_tailcall_frame_unwind))
- error (_("can't compute CFA for this frame"));
if (get_frame_unwind_stop_reason (this_frame) == UNWIND_UNAVAILABLE)
throw_error (NOT_AVAILABLE_ERROR,
- _("can't compute CFA for this frame: "
- "required registers or memory are unavailable"));
+ _("can't compute CFA for this frame: "
+ "required registers or memory are unavailable"));
+
+ if (get_frame_id (this_frame).stack_status != FID_STACK_VALID)
+ throw_error (NOT_AVAILABLE_ERROR,
+ _("can't compute CFA for this frame: "
+ "frame base not available"));
+
return get_frame_base (this_frame);
}
\f
if (find_cie (cie_table, cie_pointer))
return end;
- cie = (struct dwarf2_cie *)
- obstack_alloc (&unit->objfile->objfile_obstack,
- sizeof (struct dwarf2_cie));
+ cie = XOBNEW (&unit->objfile->objfile_obstack, struct dwarf2_cie);
cie->initial_instructions = NULL;
cie->cie_pointer = cie_pointer;
/* Ignore armcc augmentations. We only use them for quirks,
and that doesn't happen until later. */
- if (strncmp (augmentation, "armcc", 5) == 0)
+ if (startswith (augmentation, "armcc"))
augmentation += strlen (augmentation);
/* The GCC 2.x "eh" augmentation has a pointer immediately
{
/* This is a FDE. */
struct dwarf2_fde *fde;
+ CORE_ADDR addr;
/* Check that an FDE was expected. */
if ((entry_type & EH_FDE_TYPE_ID) == 0)
if (cie_pointer >= unit->dwarf_frame_size)
return NULL;
- fde = (struct dwarf2_fde *)
- obstack_alloc (&unit->objfile->objfile_obstack,
- sizeof (struct dwarf2_fde));
+ fde = XOBNEW (&unit->objfile->objfile_obstack, struct dwarf2_fde);
fde->cie = find_cie (cie_table, cie_pointer);
if (fde->cie == NULL)
{
gdb_assert (fde->cie != NULL);
- fde->initial_location =
- read_encoded_value (unit, fde->cie->encoding, fde->cie->ptr_size,
- buf, &bytes_read, 0);
+ addr = read_encoded_value (unit, fde->cie->encoding, fde->cie->ptr_size,
+ buf, &bytes_read, 0);
+ fde->initial_location = gdbarch_adjust_dwarf2_addr (gdbarch, addr);
buf += bytes_read;
fde->address_range =
read_encoded_value (unit, fde->cie->encoding & 0x0f,
fde->cie->ptr_size, buf, &bytes_read, 0);
+ addr = gdbarch_adjust_dwarf2_addr (gdbarch, addr + fde->address_range);
+ fde->address_range = addr - fde->initial_location;
buf += bytes_read;
/* A 'z' augmentation in the CIE implies the presence of an
struct dwarf2_cie_table cie_table;
struct dwarf2_fde_table fde_table;
struct dwarf2_fde_table *fde_table2;
- volatile struct gdb_exception e;
cie_table.num_entries = 0;
cie_table.entries = NULL;
if (txt)
unit->tbase = txt->vma;
- TRY_CATCH (e, RETURN_MASK_ERROR)
+ TRY
{
frame_ptr = unit->dwarf_frame_buffer;
while (frame_ptr < unit->dwarf_frame_buffer + unit->dwarf_frame_size)
EH_CIE_OR_FDE_TYPE_ID);
}
- if (e.reason < 0)
+ CATCH (e, RETURN_MASK_ERROR)
{
warning (_("skipping .eh_frame info of %s: %s"),
- objfile->name, e.message);
+ objfile_name (objfile), e.message);
if (fde_table.num_entries != 0)
{
}
/* The cie_table is discarded by the next if. */
}
+ END_CATCH
if (cie_table.num_entries != 0)
{
{
int num_old_fde_entries = fde_table.num_entries;
- TRY_CATCH (e, RETURN_MASK_ERROR)
+ TRY
{
frame_ptr = unit->dwarf_frame_buffer;
while (frame_ptr < unit->dwarf_frame_buffer + unit->dwarf_frame_size)
&cie_table, &fde_table,
EH_CIE_OR_FDE_TYPE_ID);
}
- if (e.reason < 0)
+ CATCH (e, RETURN_MASK_ERROR)
{
warning (_("skipping .debug_frame info of %s: %s"),
- objfile->name, e.message);
+ objfile_name (objfile), e.message);
if (fde_table.num_entries != 0)
{
fde_table.num_entries = num_old_fde_entries;
/* The cie_table is discarded by the next if. */
}
+ END_CATCH
}
/* Discard the cie_table, it is no longer needed. */
}
/* Copy fde_table to obstack: it is needed at runtime. */
- fde_table2 = (struct dwarf2_fde_table *)
- obstack_alloc (&objfile->objfile_obstack, sizeof (*fde_table2));
+ fde_table2 = XOBNEW (&objfile->objfile_obstack, struct dwarf2_fde_table);
if (fde_table.num_entries == 0)
{