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950 lines
26 KiB
950 lines
26 KiB
/* Return line number information of CU. |
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Copyright (C) 2004-2010, 2013, 2014, 2015 Red Hat, Inc. |
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This file is part of elfutils. |
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Written by Ulrich Drepper <drepper@redhat.com>, 2004. |
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|
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This file is free software; you can redistribute it and/or modify |
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it under the terms of either |
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|
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* the GNU Lesser General Public License as published by the Free |
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Software Foundation; either version 3 of the License, or (at |
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your option) any later version |
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or |
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* the GNU General Public License as published by the Free |
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Software Foundation; either version 2 of the License, or (at |
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your option) any later version |
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|
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or both in parallel, as here. |
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|
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elfutils 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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|
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You should have received copies of the GNU General Public License and |
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the GNU Lesser General Public License along with this program. If |
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not, see <http://www.gnu.org/licenses/>. */ |
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#ifdef HAVE_CONFIG_H |
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# include <config.h> |
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#endif |
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#include <assert.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <search.h> |
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#include "dwarf.h" |
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#include "libdwP.h" |
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struct filelist |
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{ |
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Dwarf_Fileinfo info; |
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struct filelist *next; |
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}; |
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struct linelist |
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{ |
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Dwarf_Line line; |
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struct linelist *next; |
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size_t sequence; |
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}; |
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/* Compare by Dwarf_Line.addr, given pointers into an array of pointers. */ |
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static int |
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compare_lines (const void *a, const void *b) |
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{ |
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struct linelist *const *p1 = a; |
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struct linelist *const *p2 = b; |
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struct linelist *list1 = *p1; |
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struct linelist *list2 = *p2; |
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Dwarf_Line *line1 = &list1->line; |
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Dwarf_Line *line2 = &list2->line; |
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if (line1->addr != line2->addr) |
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return (line1->addr < line2->addr) ? -1 : 1; |
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/* An end_sequence marker precedes a normal record at the same address. */ |
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if (line1->end_sequence != line2->end_sequence) |
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return line2->end_sequence - line1->end_sequence; |
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/* Otherwise, the linelist sequence maintains a stable sort. */ |
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return (list1->sequence < list2->sequence) ? -1 |
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: (list1->sequence > list2->sequence) ? 1 |
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: 0; |
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} |
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struct line_state |
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{ |
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Dwarf_Word addr; |
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unsigned int op_index; |
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unsigned int file; |
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int64_t line; |
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unsigned int column; |
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uint_fast8_t is_stmt; |
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bool basic_block; |
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bool prologue_end; |
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bool epilogue_begin; |
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unsigned int isa; |
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unsigned int discriminator; |
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struct linelist *linelist; |
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size_t nlinelist; |
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unsigned int end_sequence; |
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}; |
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static inline void |
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run_advance_pc (struct line_state *state, unsigned int op_advance, |
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uint_fast8_t minimum_instr_len, uint_fast8_t max_ops_per_instr) |
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{ |
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state->addr += minimum_instr_len * ((state->op_index + op_advance) |
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/ max_ops_per_instr); |
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state->op_index = (state->op_index + op_advance) % max_ops_per_instr; |
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} |
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static inline bool |
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add_new_line (struct line_state *state, struct linelist *new_line) |
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{ |
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/* Set the line information. For some fields we use bitfields, |
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so we would lose information if the encoded values are too large. |
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Check just for paranoia, and call the data "invalid" if it |
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violates our assumptions on reasonable limits for the values. */ |
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new_line->next = state->linelist; |
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new_line->sequence = state->nlinelist; |
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state->linelist = new_line; |
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++(state->nlinelist); |
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|
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/* Set the line information. For some fields we use bitfields, |
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so we would lose information if the encoded values are too large. |
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Check just for paranoia, and call the data "invalid" if it |
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violates our assumptions on reasonable limits for the values. */ |
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#define SET(field) \ |
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do { \ |
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new_line->line.field = state->field; \ |
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if (unlikely (new_line->line.field != state->field)) \ |
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return true; \ |
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} while (0) |
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SET (addr); |
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SET (op_index); |
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SET (file); |
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SET (line); |
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SET (column); |
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SET (is_stmt); |
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SET (basic_block); |
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SET (end_sequence); |
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SET (prologue_end); |
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SET (epilogue_begin); |
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SET (isa); |
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SET (discriminator); |
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#undef SET |
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return false; |
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} |
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static int |
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read_srclines (Dwarf *dbg, |
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const unsigned char *linep, const unsigned char *lineendp, |
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const char *comp_dir, unsigned address_size, |
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Dwarf_Lines **linesp, Dwarf_Files **filesp) |
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{ |
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int res = -1; |
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size_t nfilelist = 0; |
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unsigned int ndirlist = 0; |
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struct filelist null_file = |
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{ |
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.info = |
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{ |
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.name = "???", |
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.mtime = 0, |
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.length = 0 |
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}, |
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.next = NULL |
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}; |
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struct filelist *filelist = &null_file; |
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/* If there are a large number of lines, files or dirs don't blow up |
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the stack. Stack allocate some entries, only dynamically malloc |
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when more than MAX. */ |
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#define MAX_STACK_ALLOC 4096 |
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#define MAX_STACK_LINES MAX_STACK_ALLOC |
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#define MAX_STACK_FILES (MAX_STACK_ALLOC / 4) |
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#define MAX_STACK_DIRS (MAX_STACK_ALLOC / 16) |
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struct dirlist |
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{ |
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const char *dir; |
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size_t len; |
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}; |
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struct dirlist dirstack[MAX_STACK_DIRS]; |
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struct dirlist *dirarray = dirstack; |
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/* We are about to process the statement program. Initialize the |
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state machine registers (see 6.2.2 in the v2.1 specification). */ |
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struct line_state state = |
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{ |
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.linelist = NULL, |
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.nlinelist = 0, |
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.addr = 0, |
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.op_index = 0, |
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.file = 1, |
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/* We only store int but want to check for overflow (see SET above). */ |
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.line = 1, |
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.column = 0, |
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.basic_block = false, |
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.prologue_end = false, |
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.epilogue_begin = false, |
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.isa = 0, |
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.discriminator = 0 |
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}; |
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if (unlikely (linep + 4 > lineendp)) |
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{ |
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invalid_data: |
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__libdw_seterrno (DWARF_E_INVALID_DEBUG_LINE); |
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goto out; |
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} |
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Dwarf_Word unit_length = read_4ubyte_unaligned_inc (dbg, linep); |
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unsigned int length = 4; |
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if (unlikely (unit_length == DWARF3_LENGTH_64_BIT)) |
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{ |
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if (unlikely (linep + 8 > lineendp)) |
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goto invalid_data; |
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unit_length = read_8ubyte_unaligned_inc (dbg, linep); |
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length = 8; |
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} |
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/* Check whether we have enough room in the section. */ |
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if (unlikely (unit_length > (size_t) (lineendp - linep) |
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|| unit_length < 2 + length + 5 * 1)) |
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goto invalid_data; |
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lineendp = linep + unit_length; |
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|
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/* The next element of the header is the version identifier. */ |
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uint_fast16_t version = read_2ubyte_unaligned_inc (dbg, linep); |
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if (unlikely (version < 2) || unlikely (version > 4)) |
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{ |
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__libdw_seterrno (DWARF_E_VERSION); |
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goto out; |
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} |
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/* Next comes the header length. */ |
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Dwarf_Word header_length; |
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if (length == 4) |
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header_length = read_4ubyte_unaligned_inc (dbg, linep); |
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else |
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header_length = read_8ubyte_unaligned_inc (dbg, linep); |
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const unsigned char *header_start = linep; |
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|
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/* Next the minimum instruction length. */ |
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uint_fast8_t minimum_instr_len = *linep++; |
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|
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/* Next the maximum operations per instruction, in version 4 format. */ |
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uint_fast8_t max_ops_per_instr = 1; |
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if (version >= 4) |
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{ |
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if (unlikely (lineendp - linep < 5)) |
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goto invalid_data; |
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max_ops_per_instr = *linep++; |
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if (unlikely (max_ops_per_instr == 0)) |
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goto invalid_data; |
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} |
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/* Then the flag determining the default value of the is_stmt |
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register. */ |
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uint_fast8_t default_is_stmt = *linep++; |
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/* Now the line base. */ |
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int_fast8_t line_base = (int8_t) *linep++; |
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/* And the line range. */ |
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uint_fast8_t line_range = *linep++; |
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/* The opcode base. */ |
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uint_fast8_t opcode_base = *linep++; |
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/* Remember array with the standard opcode length (-1 to account for |
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the opcode with value zero not being mentioned). */ |
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const uint8_t *standard_opcode_lengths = linep - 1; |
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if (unlikely (lineendp - linep < opcode_base - 1)) |
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goto invalid_data; |
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linep += opcode_base - 1; |
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/* First comes the list of directories. Add the compilation |
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directory first since the index zero is used for it. */ |
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struct dirlist comp_dir_elem = |
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{ |
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.dir = comp_dir, |
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.len = comp_dir ? strlen (comp_dir) : 0, |
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}; |
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ndirlist = 1; |
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/* First count the entries. */ |
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const unsigned char *dirp = linep; |
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while (*dirp != 0) |
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{ |
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uint8_t *endp = memchr (dirp, '\0', lineendp - dirp); |
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if (endp == NULL) |
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goto invalid_data; |
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++ndirlist; |
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dirp = endp + 1; |
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} |
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/* Arrange the list in array form. */ |
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if (ndirlist >= MAX_STACK_DIRS) |
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{ |
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dirarray = (struct dirlist *) malloc (ndirlist * sizeof (*dirarray)); |
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if (unlikely (dirarray == NULL)) |
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{ |
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no_mem: |
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__libdw_seterrno (DWARF_E_NOMEM); |
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goto out; |
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} |
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} |
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dirarray[0] = comp_dir_elem; |
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for (unsigned int n = 1; n < ndirlist; n++) |
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{ |
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dirarray[n].dir = (char *) linep; |
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uint8_t *endp = memchr (linep, '\0', lineendp - linep); |
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assert (endp != NULL); |
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dirarray[n].len = endp - linep; |
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linep = endp + 1; |
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} |
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/* Skip the final NUL byte. */ |
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++linep; |
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/* Allocate memory for a new file. For the first MAX_STACK_FILES |
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entries just return a slot in the preallocated stack array. */ |
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struct filelist flstack[MAX_STACK_FILES]; |
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#define NEW_FILE() ({ \ |
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struct filelist *fl = (nfilelist < MAX_STACK_FILES \ |
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? &flstack[nfilelist] \ |
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: malloc (sizeof (struct filelist))); \ |
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if (unlikely (fl == NULL)) \ |
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goto no_mem; \ |
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++nfilelist; \ |
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fl->next = filelist; \ |
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filelist = fl; \ |
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fl; }) |
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/* Now read the files. */ |
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nfilelist = 1; |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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while (*linep != 0) |
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{ |
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struct filelist *new_file = NEW_FILE (); |
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|
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/* First comes the file name. */ |
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char *fname = (char *) linep; |
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uint8_t *endp = memchr (fname, '\0', lineendp - linep); |
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if (endp == NULL) |
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goto invalid_data; |
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size_t fnamelen = endp - (uint8_t *) fname; |
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linep = endp + 1; |
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/* Then the index. */ |
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Dwarf_Word diridx; |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (diridx, linep, lineendp); |
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if (unlikely (diridx >= ndirlist)) |
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{ |
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__libdw_seterrno (DWARF_E_INVALID_DIR_IDX); |
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goto out; |
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} |
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|
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if (*fname == '/') |
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/* It's an absolute path. */ |
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new_file->info.name = fname; |
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else |
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{ |
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new_file->info.name = libdw_alloc (dbg, char, 1, |
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dirarray[diridx].len + 1 |
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+ fnamelen + 1); |
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char *cp = new_file->info.name; |
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|
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if (dirarray[diridx].dir != NULL) |
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{ |
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/* This value could be NULL in case the DW_AT_comp_dir |
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was not present. We cannot do much in this case. |
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The easiest thing is to convert the path in an |
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absolute path. */ |
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cp = stpcpy (cp, dirarray[diridx].dir); |
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} |
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*cp++ = '/'; |
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strcpy (cp, fname); |
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assert (strlen (new_file->info.name) |
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< dirarray[diridx].len + 1 + fnamelen + 1); |
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} |
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|
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/* Next comes the modification time. */ |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (new_file->info.mtime, linep, lineendp); |
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/* Finally the length of the file. */ |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (new_file->info.length, linep, lineendp); |
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} |
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/* Skip the final NUL byte. */ |
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++linep; |
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|
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/* Consistency check. */ |
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if (unlikely (linep != header_start + header_length)) |
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{ |
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__libdw_seterrno (DWARF_E_INVALID_DWARF); |
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goto out; |
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} |
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state.is_stmt = default_is_stmt; |
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|
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/* Apply the "operation advance" from a special opcode or |
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DW_LNS_advance_pc (as per DWARF4 6.2.5.1). */ |
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#define advance_pc(op_advance) \ |
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run_advance_pc (&state, op_advance, minimum_instr_len, max_ops_per_instr) |
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|
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/* Process the instructions. */ |
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|
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/* Adds a new line to the matrix. For the first MAX_STACK_LINES |
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entries just return a slot in the preallocated stack array. */ |
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struct linelist llstack[MAX_STACK_LINES]; |
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#define NEW_LINE(end_seq) \ |
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do { \ |
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struct linelist *ll = (state.nlinelist < MAX_STACK_LINES \ |
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? &llstack[state.nlinelist] \ |
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: malloc (sizeof (struct linelist))); \ |
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if (unlikely (ll == NULL)) \ |
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goto no_mem; \ |
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state.end_sequence = end_seq; \ |
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if (unlikely (add_new_line (&state, ll))) \ |
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goto invalid_data; \ |
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} while (0) |
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while (linep < lineendp) |
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{ |
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unsigned int opcode; |
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unsigned int u128; |
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int s128; |
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|
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/* Read the opcode. */ |
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opcode = *linep++; |
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|
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/* Is this a special opcode? */ |
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if (likely (opcode >= opcode_base)) |
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{ |
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if (unlikely (line_range == 0)) |
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goto invalid_data; |
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|
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/* Yes. Handling this is quite easy since the opcode value |
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is computed with |
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|
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opcode = (desired line increment - line_base) |
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+ (line_range * address advance) + opcode_base |
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*/ |
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int line_increment = (line_base |
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+ (opcode - opcode_base) % line_range); |
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|
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/* Perform the increments. */ |
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state.line += line_increment; |
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advance_pc ((opcode - opcode_base) / line_range); |
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|
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/* Add a new line with the current state machine values. */ |
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NEW_LINE (0); |
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|
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/* Reset the flags. */ |
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state.basic_block = false; |
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state.prologue_end = false; |
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state.epilogue_begin = false; |
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state.discriminator = 0; |
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} |
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else if (opcode == 0) |
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{ |
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/* This an extended opcode. */ |
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if (unlikely (lineendp - linep < 2)) |
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goto invalid_data; |
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|
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/* The length. */ |
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uint_fast8_t len = *linep++; |
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|
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if (unlikely ((size_t) (lineendp - linep) < len)) |
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goto invalid_data; |
|
|
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/* The sub-opcode. */ |
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opcode = *linep++; |
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|
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switch (opcode) |
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{ |
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case DW_LNE_end_sequence: |
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/* Add a new line with the current state machine values. |
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The is the end of the sequence. */ |
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NEW_LINE (1); |
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|
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/* Reset the registers. */ |
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state.addr = 0; |
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state.op_index = 0; |
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state.file = 1; |
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state.line = 1; |
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state.column = 0; |
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state.is_stmt = default_is_stmt; |
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state.basic_block = false; |
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state.prologue_end = false; |
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state.epilogue_begin = false; |
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state.isa = 0; |
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state.discriminator = 0; |
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break; |
|
|
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case DW_LNE_set_address: |
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/* The value is an address. The size is defined as |
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apporiate for the target machine. We use the |
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address size field from the CU header. */ |
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state.op_index = 0; |
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if (unlikely (lineendp - linep < (uint8_t) address_size)) |
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goto invalid_data; |
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if (__libdw_read_address_inc (dbg, IDX_debug_line, &linep, |
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address_size, &state.addr)) |
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goto out; |
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break; |
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|
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case DW_LNE_define_file: |
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{ |
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char *fname = (char *) linep; |
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uint8_t *endp = memchr (linep, '\0', lineendp - linep); |
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if (endp == NULL) |
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goto invalid_data; |
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size_t fnamelen = endp - linep; |
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linep = endp + 1; |
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|
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unsigned int diridx; |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (diridx, linep, lineendp); |
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if (unlikely (diridx >= ndirlist)) |
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{ |
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__libdw_seterrno (DWARF_E_INVALID_DIR_IDX); |
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goto invalid_data; |
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} |
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Dwarf_Word mtime; |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (mtime, linep, lineendp); |
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Dwarf_Word filelength; |
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (filelength, linep, lineendp); |
|
|
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struct filelist *new_file = NEW_FILE (); |
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if (fname[0] == '/') |
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new_file->info.name = fname; |
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else |
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{ |
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new_file->info.name = |
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libdw_alloc (dbg, char, 1, (dirarray[diridx].len + 1 |
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+ fnamelen + 1)); |
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char *cp = new_file->info.name; |
|
|
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if (dirarray[diridx].dir != NULL) |
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/* This value could be NULL in case the |
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DW_AT_comp_dir was not present. We |
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cannot do much in this case. The easiest |
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thing is to convert the path in an |
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absolute path. */ |
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cp = stpcpy (cp, dirarray[diridx].dir); |
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*cp++ = '/'; |
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strcpy (cp, fname); |
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} |
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|
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new_file->info.mtime = mtime; |
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new_file->info.length = filelength; |
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} |
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break; |
|
|
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case DW_LNE_set_discriminator: |
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/* Takes one ULEB128 parameter, the discriminator. */ |
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if (unlikely (standard_opcode_lengths[opcode] != 1)) |
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goto invalid_data; |
|
|
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if (unlikely (linep >= lineendp)) |
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goto invalid_data; |
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get_uleb128 (state.discriminator, linep, lineendp); |
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break; |
|
|
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default: |
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/* Unknown, ignore it. */ |
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if (unlikely ((size_t) (lineendp - (linep - 1)) < len)) |
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goto invalid_data; |
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linep += len - 1; |
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break; |
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} |
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} |
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else if (opcode <= DW_LNS_set_isa) |
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{ |
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/* This is a known standard opcode. */ |
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switch (opcode) |
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{ |
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case DW_LNS_copy: |
|
/* Takes no argument. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 0)) |
|
goto invalid_data; |
|
|
|
/* Add a new line with the current state machine values. */ |
|
NEW_LINE (0); |
|
|
|
/* Reset the flags. */ |
|
state.basic_block = false; |
|
state.prologue_end = false; |
|
state.epilogue_begin = false; |
|
state.discriminator = 0; |
|
break; |
|
|
|
case DW_LNS_advance_pc: |
|
/* Takes one uleb128 parameter which is added to the |
|
address. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 1)) |
|
goto invalid_data; |
|
|
|
if (unlikely (linep >= lineendp)) |
|
goto invalid_data; |
|
get_uleb128 (u128, linep, lineendp); |
|
advance_pc (u128); |
|
break; |
|
|
|
case DW_LNS_advance_line: |
|
/* Takes one sleb128 parameter which is added to the |
|
line. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 1)) |
|
goto invalid_data; |
|
|
|
if (unlikely (linep >= lineendp)) |
|
goto invalid_data; |
|
get_sleb128 (s128, linep, lineendp); |
|
state.line += s128; |
|
break; |
|
|
|
case DW_LNS_set_file: |
|
/* Takes one uleb128 parameter which is stored in file. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 1)) |
|
goto invalid_data; |
|
|
|
if (unlikely (linep >= lineendp)) |
|
goto invalid_data; |
|
get_uleb128 (u128, linep, lineendp); |
|
state.file = u128; |
|
break; |
|
|
|
case DW_LNS_set_column: |
|
/* Takes one uleb128 parameter which is stored in column. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 1)) |
|
goto invalid_data; |
|
|
|
if (unlikely (linep >= lineendp)) |
|
goto invalid_data; |
|
get_uleb128 (u128, linep, lineendp); |
|
state.column = u128; |
|
break; |
|
|
|
case DW_LNS_negate_stmt: |
|
/* Takes no argument. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 0)) |
|
goto invalid_data; |
|
|
|
state.is_stmt = 1 - state.is_stmt; |
|
break; |
|
|
|
case DW_LNS_set_basic_block: |
|
/* Takes no argument. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 0)) |
|
goto invalid_data; |
|
|
|
state.basic_block = true; |
|
break; |
|
|
|
case DW_LNS_const_add_pc: |
|
/* Takes no argument. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 0)) |
|
goto invalid_data; |
|
|
|
if (unlikely (line_range == 0)) |
|
goto invalid_data; |
|
|
|
advance_pc ((255 - opcode_base) / line_range); |
|
break; |
|
|
|
case DW_LNS_fixed_advance_pc: |
|
/* Takes one 16 bit parameter which is added to the |
|
address. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 1) |
|
|| unlikely (lineendp - linep < 2)) |
|
goto invalid_data; |
|
|
|
state.addr += read_2ubyte_unaligned_inc (dbg, linep); |
|
state.op_index = 0; |
|
break; |
|
|
|
case DW_LNS_set_prologue_end: |
|
/* Takes no argument. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 0)) |
|
goto invalid_data; |
|
|
|
state.prologue_end = true; |
|
break; |
|
|
|
case DW_LNS_set_epilogue_begin: |
|
/* Takes no argument. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 0)) |
|
goto invalid_data; |
|
|
|
state.epilogue_begin = true; |
|
break; |
|
|
|
case DW_LNS_set_isa: |
|
/* Takes one uleb128 parameter which is stored in isa. */ |
|
if (unlikely (standard_opcode_lengths[opcode] != 1)) |
|
goto invalid_data; |
|
|
|
if (unlikely (linep >= lineendp)) |
|
goto invalid_data; |
|
get_uleb128 (state.isa, linep, lineendp); |
|
break; |
|
} |
|
} |
|
else |
|
{ |
|
/* This is a new opcode the generator but not we know about. |
|
Read the parameters associated with it but then discard |
|
everything. Read all the parameters for this opcode. */ |
|
for (int n = standard_opcode_lengths[opcode]; n > 0; --n) |
|
{ |
|
if (unlikely (linep >= lineendp)) |
|
goto invalid_data; |
|
get_uleb128 (u128, linep, lineendp); |
|
} |
|
|
|
/* Next round, ignore this opcode. */ |
|
continue; |
|
} |
|
} |
|
|
|
/* Put all the files in an array. */ |
|
Dwarf_Files *files = libdw_alloc (dbg, Dwarf_Files, |
|
sizeof (Dwarf_Files) |
|
+ nfilelist * sizeof (Dwarf_Fileinfo) |
|
+ (ndirlist + 1) * sizeof (char *), |
|
1); |
|
const char **dirs = (void *) &files->info[nfilelist]; |
|
|
|
struct filelist *fileslist = filelist; |
|
files->nfiles = nfilelist; |
|
for (size_t n = nfilelist; n > 0; n--) |
|
{ |
|
files->info[n - 1] = fileslist->info; |
|
fileslist = fileslist->next; |
|
} |
|
assert (fileslist == NULL); |
|
|
|
/* Put all the directory strings in an array. */ |
|
files->ndirs = ndirlist; |
|
for (unsigned int i = 0; i < ndirlist; ++i) |
|
dirs[i] = dirarray[i].dir; |
|
dirs[ndirlist] = NULL; |
|
|
|
/* Pass the file data structure to the caller. */ |
|
if (filesp != NULL) |
|
*filesp = files; |
|
|
|
size_t buf_size = (sizeof (Dwarf_Lines) |
|
+ (sizeof (Dwarf_Line) * state.nlinelist)); |
|
void *buf = libdw_alloc (dbg, Dwarf_Lines, buf_size, 1); |
|
|
|
/* First use the buffer for the pointers, and sort the entries. |
|
We'll write the pointers in the end of the buffer, and then |
|
copy into the buffer from the beginning so the overlap works. */ |
|
assert (sizeof (Dwarf_Line) >= sizeof (struct linelist *)); |
|
struct linelist **sortlines = (buf + buf_size |
|
- sizeof (struct linelist **) * state.nlinelist); |
|
|
|
/* The list is in LIFO order and usually they come in clumps with |
|
ascending addresses. So fill from the back to probably start with |
|
runs already in order before we sort. */ |
|
struct linelist *lineslist = state.linelist; |
|
for (size_t i = state.nlinelist; i-- > 0; ) |
|
{ |
|
sortlines[i] = lineslist; |
|
lineslist = lineslist->next; |
|
} |
|
assert (lineslist == NULL); |
|
|
|
/* Sort by ascending address. */ |
|
qsort (sortlines, state.nlinelist, sizeof sortlines[0], &compare_lines); |
|
|
|
/* Now that they are sorted, put them in the final array. |
|
The buffers overlap, so we've clobbered the early elements |
|
of SORTLINES by the time we're reading the later ones. */ |
|
Dwarf_Lines *lines = buf; |
|
lines->nlines = state.nlinelist; |
|
for (size_t i = 0; i < state.nlinelist; ++i) |
|
{ |
|
lines->info[i] = sortlines[i]->line; |
|
lines->info[i].files = files; |
|
} |
|
|
|
/* Make sure the highest address for the CU is marked as end_sequence. |
|
This is required by the DWARF spec, but some compilers forget and |
|
dwfl_module_getsrc depends on it. */ |
|
if (state.nlinelist > 0) |
|
lines->info[state.nlinelist - 1].end_sequence = 1; |
|
|
|
/* Pass the line structure back to the caller. */ |
|
if (linesp != NULL) |
|
*linesp = lines; |
|
|
|
/* Success. */ |
|
res = 0; |
|
|
|
out: |
|
/* Free malloced line records, if any. */ |
|
for (size_t i = MAX_STACK_LINES; i < state.nlinelist; i++) |
|
{ |
|
struct linelist *ll = state.linelist->next; |
|
free (state.linelist); |
|
state.linelist = ll; |
|
} |
|
if (ndirlist >= MAX_STACK_DIRS) |
|
free (dirarray); |
|
for (size_t i = MAX_STACK_FILES; i < nfilelist; i++) |
|
{ |
|
struct filelist *fl = filelist->next; |
|
free (filelist); |
|
filelist = fl; |
|
} |
|
|
|
return res; |
|
} |
|
|
|
static int |
|
files_lines_compare (const void *p1, const void *p2) |
|
{ |
|
const struct files_lines_s *t1 = p1; |
|
const struct files_lines_s *t2 = p2; |
|
|
|
if (t1->debug_line_offset < t2->debug_line_offset) |
|
return -1; |
|
if (t1->debug_line_offset > t2->debug_line_offset) |
|
return 1; |
|
|
|
return 0; |
|
} |
|
|
|
int |
|
internal_function |
|
__libdw_getsrclines (Dwarf *dbg, Dwarf_Off debug_line_offset, |
|
const char *comp_dir, unsigned address_size, |
|
Dwarf_Lines **linesp, Dwarf_Files **filesp) |
|
{ |
|
struct files_lines_s fake = { .debug_line_offset = debug_line_offset }; |
|
struct files_lines_s **found = tfind (&fake, &dbg->files_lines, |
|
files_lines_compare); |
|
if (found == NULL) |
|
{ |
|
Elf_Data *data = __libdw_checked_get_data (dbg, IDX_debug_line); |
|
if (data == NULL |
|
|| __libdw_offset_in_section (dbg, IDX_debug_line, |
|
debug_line_offset, 1) != 0) |
|
return -1; |
|
|
|
const unsigned char *linep = data->d_buf + debug_line_offset; |
|
const unsigned char *lineendp = data->d_buf + data->d_size; |
|
|
|
struct files_lines_s *node = libdw_alloc (dbg, struct files_lines_s, |
|
sizeof *node, 1); |
|
|
|
if (read_srclines (dbg, linep, lineendp, comp_dir, address_size, |
|
&node->lines, &node->files) != 0) |
|
return -1; |
|
|
|
node->debug_line_offset = debug_line_offset; |
|
|
|
found = tsearch (node, &dbg->files_lines, files_lines_compare); |
|
if (found == NULL) |
|
{ |
|
__libdw_seterrno (DWARF_E_NOMEM); |
|
return -1; |
|
} |
|
} |
|
|
|
if (linesp != NULL) |
|
*linesp = (*found)->lines; |
|
|
|
if (filesp != NULL) |
|
*filesp = (*found)->files; |
|
|
|
return 0; |
|
} |
|
|
|
/* Get the compilation directory, if any is set. */ |
|
const char * |
|
__libdw_getcompdir (Dwarf_Die *cudie) |
|
{ |
|
Dwarf_Attribute compdir_attr_mem; |
|
Dwarf_Attribute *compdir_attr = INTUSE(dwarf_attr) (cudie, |
|
DW_AT_comp_dir, |
|
&compdir_attr_mem); |
|
return INTUSE(dwarf_formstring) (compdir_attr); |
|
} |
|
|
|
int |
|
dwarf_getsrclines (Dwarf_Die *cudie, Dwarf_Lines **lines, size_t *nlines) |
|
{ |
|
if (cudie == NULL) |
|
return -1; |
|
if (! is_cudie (cudie)) |
|
{ |
|
__libdw_seterrno (DWARF_E_NOT_CUDIE); |
|
return -1; |
|
} |
|
|
|
/* Get the information if it is not already known. */ |
|
struct Dwarf_CU *const cu = cudie->cu; |
|
if (cu->lines == NULL) |
|
{ |
|
/* Failsafe mode: no data found. */ |
|
cu->lines = (void *) -1l; |
|
cu->files = (void *) -1l; |
|
|
|
/* The die must have a statement list associated. */ |
|
Dwarf_Attribute stmt_list_mem; |
|
Dwarf_Attribute *stmt_list = INTUSE(dwarf_attr) (cudie, DW_AT_stmt_list, |
|
&stmt_list_mem); |
|
|
|
/* Get the offset into the .debug_line section. NB: this call |
|
also checks whether the previous dwarf_attr call failed. */ |
|
Dwarf_Off debug_line_offset; |
|
if (__libdw_formptr (stmt_list, IDX_debug_line, DWARF_E_NO_DEBUG_LINE, |
|
NULL, &debug_line_offset) == NULL) |
|
return -1; |
|
|
|
if (__libdw_getsrclines (cu->dbg, debug_line_offset, |
|
__libdw_getcompdir (cudie), |
|
cu->address_size, &cu->lines, &cu->files) < 0) |
|
return -1; |
|
} |
|
else if (cu->lines == (void *) -1l) |
|
return -1; |
|
|
|
*lines = cu->lines; |
|
*nlines = cu->lines->nlines; |
|
|
|
// XXX Eventually: unlocking here. |
|
|
|
return 0; |
|
} |
|
INTDEF(dwarf_getsrclines)
|
|
|