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a55cc764ae
* ax-gdb.c (gen_var_ref): Handle LOC_COMPUTED and LOC_COMPUTED_ARG. * dwarf2expr.c (read_uleb128, read_sleb128): Make non-static. * dwarf2expr.h (read_uleb128, read_sleb128): Add prototypes. * dwarf2loc.c: Include "ax.h" and "ax-gdb.h". (locexpr_tracepoint_var_ref): New function. (dwarf2_locexpr_funcs): Add locexpr_tracepoint_var_ref.
352 lines
9.8 KiB
C
352 lines
9.8 KiB
C
/* DWARF 2 location expression support for GDB.
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Copyright 2003 Free Software Foundation, Inc.
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Contributed by Daniel Jacobowitz, MontaVista Software, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or (at
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your option) any later version.
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This program is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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#include "defs.h"
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#include "ui-out.h"
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#include "value.h"
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#include "frame.h"
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#include "gdbcore.h"
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#include "target.h"
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#include "inferior.h"
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#include "ax.h"
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#include "ax-gdb.h"
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#include "elf/dwarf2.h"
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#include "dwarf2expr.h"
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#include "dwarf2loc.h"
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#include "gdb_string.h"
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#ifndef DWARF2_REG_TO_REGNUM
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#define DWARF2_REG_TO_REGNUM(REG) (REG)
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#endif
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/* This is the baton used when performing dwarf2 expression
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evaluation. */
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struct dwarf_expr_baton
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{
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struct frame_info *frame;
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struct objfile *objfile;
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};
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/* Helper functions for dwarf2_evaluate_loc_desc. */
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/* Using the frame specified in BATON, read register REGNUM. The lval
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type will be returned in LVALP, and for lval_memory the register
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save address will be returned in ADDRP. */
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static CORE_ADDR
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dwarf_expr_read_reg (void *baton, int regnum, enum lval_type *lvalp,
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CORE_ADDR *addrp)
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{
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CORE_ADDR result;
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struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
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char *buf = (char *) alloca (MAX_REGISTER_RAW_SIZE);
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int optimized, realnum;
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frame_register (debaton->frame, DWARF2_REG_TO_REGNUM (regnum),
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&optimized, lvalp, addrp, &realnum, buf);
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result = extract_address (buf, REGISTER_RAW_SIZE (regnum));
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return result;
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}
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/* Read memory at ADDR (length LEN) into BUF. */
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static void
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dwarf_expr_read_mem (void *baton, char *buf, CORE_ADDR addr, size_t len)
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{
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read_memory (addr, buf, len);
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}
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/* Using the frame specified in BATON, find the location expression
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describing the frame base. Return a pointer to it in START and
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its length in LENGTH. */
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static void
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dwarf_expr_frame_base (void *baton, unsigned char **start, size_t * length)
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{
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struct symbol *framefunc;
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struct dwarf2_locexpr_baton *symbaton;
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struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
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framefunc = get_frame_function (debaton->frame);
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symbaton = SYMBOL_LOCATION_BATON (framefunc);
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*start = symbaton->data;
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*length = symbaton->size;
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}
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/* Using the objfile specified in BATON, find the address for the
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current thread's thread-local storage with offset OFFSET. */
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static CORE_ADDR
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dwarf_expr_tls_address (void *baton, CORE_ADDR offset)
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{
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struct dwarf_expr_baton *debaton = (struct dwarf_expr_baton *) baton;
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CORE_ADDR addr;
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if (target_get_thread_local_address_p ())
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addr = target_get_thread_local_address (inferior_ptid,
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debaton->objfile,
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offset);
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else
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error ("Cannot find thread-local variables on this target");
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return addr;
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}
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/* Evaluate a location description, starting at DATA and with length
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SIZE, to find the current location of variable VAR in the context
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of FRAME. */
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static struct value *
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dwarf2_evaluate_loc_desc (struct symbol *var, struct frame_info *frame,
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unsigned char *data, unsigned short size,
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struct objfile *objfile)
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{
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CORE_ADDR result;
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struct value *retval;
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struct dwarf_expr_baton baton;
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struct dwarf_expr_context *ctx;
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baton.frame = frame;
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baton.objfile = objfile;
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ctx = new_dwarf_expr_context ();
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ctx->baton = &baton;
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ctx->read_reg = dwarf_expr_read_reg;
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ctx->read_mem = dwarf_expr_read_mem;
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ctx->get_frame_base = dwarf_expr_frame_base;
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ctx->get_tls_address = dwarf_expr_tls_address;
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dwarf_expr_eval (ctx, data, size);
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retval = allocate_value (SYMBOL_TYPE (var));
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VALUE_BFD_SECTION (retval) = SYMBOL_BFD_SECTION (var);
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if (ctx->in_reg)
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{
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store_unsigned_integer (VALUE_CONTENTS_RAW (retval),
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TYPE_LENGTH (SYMBOL_TYPE (var)),
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dwarf_expr_fetch (ctx, 0));
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VALUE_LVAL (retval) = lval_register;
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VALUE_REGNO (retval) = ctx->regnum;
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}
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else
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{
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result = dwarf_expr_fetch (ctx, 0);
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VALUE_LVAL (retval) = lval_memory;
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VALUE_LAZY (retval) = 1;
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VALUE_ADDRESS (retval) = result;
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}
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free_dwarf_expr_context (ctx);
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return retval;
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}
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/* Helper functions and baton for dwarf2_loc_desc_needs_frame. */
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struct needs_frame_baton
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{
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int needs_frame;
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};
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/* Reads from registers do require a frame. */
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static CORE_ADDR
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needs_frame_read_reg (void *baton, int regnum, enum lval_type *lvalp,
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CORE_ADDR *addrp)
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{
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struct needs_frame_baton *nf_baton = baton;
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nf_baton->needs_frame = 1;
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return 1;
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}
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/* Reads from memory do not require a frame. */
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static void
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needs_frame_read_mem (void *baton, char *buf, CORE_ADDR addr, size_t len)
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{
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memset (buf, 0, len);
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}
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/* Frame-relative accesses do require a frame. */
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static void
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needs_frame_frame_base (void *baton, unsigned char **start, size_t * length)
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{
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static char lit0 = DW_OP_lit0;
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struct needs_frame_baton *nf_baton = baton;
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*start = &lit0;
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*length = 1;
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nf_baton->needs_frame = 1;
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}
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/* Thread-local accesses do require a frame. */
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static CORE_ADDR
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needs_frame_tls_address (void *baton, CORE_ADDR offset)
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{
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struct needs_frame_baton *nf_baton = baton;
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nf_baton->needs_frame = 1;
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return 1;
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}
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/* Return non-zero iff the location expression at DATA (length SIZE)
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requires a frame to evaluate. */
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static int
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dwarf2_loc_desc_needs_frame (unsigned char *data, unsigned short size)
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{
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struct needs_frame_baton baton;
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struct dwarf_expr_context *ctx;
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baton.needs_frame = 0;
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ctx = new_dwarf_expr_context ();
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ctx->baton = &baton;
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ctx->read_reg = needs_frame_read_reg;
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ctx->read_mem = needs_frame_read_mem;
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ctx->get_frame_base = needs_frame_frame_base;
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ctx->get_tls_address = needs_frame_tls_address;
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dwarf_expr_eval (ctx, data, size);
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free_dwarf_expr_context (ctx);
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return baton.needs_frame;
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}
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/* Return the value of SYMBOL in FRAME using the DWARF-2 expression
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evaluator to calculate the location. */
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static struct value *
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locexpr_read_variable (struct symbol *symbol, struct frame_info *frame)
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{
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struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
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struct value *val;
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val = dwarf2_evaluate_loc_desc (symbol, frame, dlbaton->data, dlbaton->size,
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dlbaton->objfile);
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return val;
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}
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/* Return non-zero iff we need a frame to evaluate SYMBOL. */
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static int
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locexpr_read_needs_frame (struct symbol *symbol)
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{
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struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
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return dwarf2_loc_desc_needs_frame (dlbaton->data, dlbaton->size);
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}
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/* Print a natural-language description of SYMBOL to STREAM. */
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static int
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locexpr_describe_location (struct symbol *symbol, struct ui_file *stream)
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{
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/* FIXME: be more extensive. */
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struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
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if (dlbaton->size == 1
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&& dlbaton->data[0] >= DW_OP_reg0
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&& dlbaton->data[0] <= DW_OP_reg31)
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{
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int regno = DWARF2_REG_TO_REGNUM (dlbaton->data[0] - DW_OP_reg0);
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fprintf_filtered (stream,
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"a variable in register %s", REGISTER_NAME (regno));
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return 1;
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}
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fprintf_filtered (stream,
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"a variable with complex or multiple locations (DWARF2)");
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return 1;
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}
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/* Describe the location of SYMBOL as an agent value in VALUE, generating
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any necessary bytecode in AX.
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NOTE drow/2003-02-26: This function is extremely minimal, because
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doing it correctly is extremely complicated and there is no
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publicly available stub with tracepoint support for me to test
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against. When there is one this function should be revisited. */
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void
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locexpr_tracepoint_var_ref (struct symbol * symbol, struct agent_expr * ax,
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struct axs_value * value)
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{
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struct dwarf2_locexpr_baton *dlbaton = SYMBOL_LOCATION_BATON (symbol);
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if (dlbaton->size == 0)
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error ("Symbol \"%s\" has been optimized out.",
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SYMBOL_PRINT_NAME (symbol));
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if (dlbaton->size == 1
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&& dlbaton->data[0] >= DW_OP_reg0
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&& dlbaton->data[0] <= DW_OP_reg31)
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{
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value->kind = axs_lvalue_register;
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value->u.reg = dlbaton->data[0] - DW_OP_reg0;
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}
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else if (dlbaton->data[0] == DW_OP_regx)
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{
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ULONGEST reg;
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read_uleb128 (dlbaton->data + 1, dlbaton->data + dlbaton->size,
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®);
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value->kind = axs_lvalue_register;
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value->u.reg = reg;
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}
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else if (dlbaton->data[0] == DW_OP_fbreg)
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{
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/* And this is worse than just minimal; we should honor the frame base
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as above. */
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int frame_reg;
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LONGEST frame_offset;
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unsigned char *buf_end;
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buf_end = read_sleb128 (dlbaton->data + 1, dlbaton->data + dlbaton->size,
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&frame_offset);
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if (buf_end != dlbaton->data + dlbaton->size)
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error ("Unexpected opcode after DW_OP_fbreg for symbol \"%s\".",
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SYMBOL_PRINT_NAME (symbol));
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TARGET_VIRTUAL_FRAME_POINTER (ax->scope, &frame_reg, &frame_offset);
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ax_reg (ax, frame_reg);
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ax_const_l (ax, frame_offset);
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ax_simple (ax, aop_add);
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ax_const_l (ax, frame_offset);
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ax_simple (ax, aop_add);
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value->kind = axs_lvalue_memory;
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}
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else
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error ("Unsupported DWARF opcode in the location of \"%s\".",
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SYMBOL_PRINT_NAME (symbol));
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}
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/* The set of location functions used with the DWARF-2 expression
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evaluator. */
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struct location_funcs dwarf2_locexpr_funcs = {
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locexpr_read_variable,
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locexpr_read_needs_frame,
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locexpr_describe_location,
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locexpr_tracepoint_var_ref
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};
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