Files
binutils-gdb/libctf/ctf-dump.c
Nick Alcock 139633c307 libctf, include, binutils, gdb, ld: rename ctf_file_t to ctf_dict_t
The naming of the ctf_file_t type in libctf is a historical curiosity.
Back in the Solaris days, CTF dictionaries were originally generated as
a separate file and then (sometimes) merged into objects: hence the
datatype was named ctf_file_t, and known as a "CTF file".  Nowadays, raw
CTF is essentially never written to a file on its own, and the datatype
changed name to a "CTF dictionary" years ago.  So the term "CTF file"
refers to something that is never a file!  This is at best confusing.

The type has also historically been known as a 'CTF container", which is
even more confusing now that we have CTF archives which are *also* a
sort of container (they contain CTF dictionaries), but which are never
referred to as containers in the source code.

So fix this by completing the renaming, renaming ctf_file_t to
ctf_dict_t throughout, and renaming those few functions that refer to
CTF files by name (keeping compatibility aliases) to refer to dicts
instead.  Old users who still refer to ctf_file_t will see (harmless)
pointer-compatibility warnings at compile time, but the ABI is unchanged
(since C doesn't mangle names, and ctf_file_t was always an opaque type)
and things will still compile fine as long as -Werror is not specified.
All references to CTF containers and CTF files in the source code are
fixed to refer to CTF dicts instead.

Further (smaller) renamings of annoyingly-named functions to come, as
part of the process of souping up queries across whole archives at once
(needed for the function info and data object sections).

binutils/ChangeLog
2020-11-20  Nick Alcock  <nick.alcock@oracle.com>

	* objdump.c (dump_ctf_errs): Rename ctf_file_t to ctf_dict_t.
	(dump_ctf_archive_member): Likewise.
	(dump_ctf): Likewise. Use ctf_dict_close, not ctf_file_close.
	* readelf.c (dump_ctf_errs): Rename ctf_file_t to ctf_dict_t.
	(dump_ctf_archive_member): Likewise.
	(dump_section_as_ctf): Likewise.  Use ctf_dict_close, not
	ctf_file_close.

gdb/ChangeLog
2020-11-20  Nick Alcock  <nick.alcock@oracle.com>

	* ctfread.c: Change uses of ctf_file_t to ctf_dict_t.
	(ctf_fp_info::~ctf_fp_info): Call ctf_dict_close, not ctf_file_close.

include/ChangeLog
2020-11-20  Nick Alcock  <nick.alcock@oracle.com>

	* ctf-api.h (ctf_file_t): Rename to...
	(ctf_dict_t): ... this.  Keep ctf_file_t around for compatibility.
	(struct ctf_file): Likewise rename to...
	(struct ctf_dict): ... this.
	(ctf_file_close): Rename to...
	(ctf_dict_close): ... this, keeping compatibility function.
	(ctf_parent_file): Rename to...
	(ctf_parent_dict): ... this, keeping compatibility function.
	All callers adjusted.
	* ctf.h: Rename references to ctf_file_t to ctf_dict_t.
	(struct ctf_archive) <ctfa_nfiles>: Rename to...
	<ctfa_ndicts>: ... this.

ld/ChangeLog
2020-11-20  Nick Alcock  <nick.alcock@oracle.com>

	* ldlang.c (ctf_output): This is a ctf_dict_t now.
	(lang_ctf_errs_warnings): Rename ctf_file_t to ctf_dict_t.
	(ldlang_open_ctf): Adjust comment.
	(lang_merge_ctf): Use ctf_dict_close, not ctf_file_close.
	* ldelfgen.h (ldelf_examine_strtab_for_ctf): Rename ctf_file_t to
	ctf_dict_t.  Change opaque declaration accordingly.
	* ldelfgen.c (ldelf_examine_strtab_for_ctf): Adjust.
	* ldemul.h (examine_strtab_for_ctf): Likewise.
	(ldemul_examine_strtab_for_ctf): Likewise.
	* ldeuml.c (ldemul_examine_strtab_for_ctf): Likewise.

libctf/ChangeLog
2020-11-20  Nick Alcock  <nick.alcock@oracle.com>

	* ctf-impl.h: Rename ctf_file_t to ctf_dict_t: all declarations
	adjusted.
	(ctf_fileops): Rename to...
	(ctf_dictops): ... this.
	(ctf_dedup_t) <cd_id_to_file_t>: Rename to...
	<cd_id_to_dict_t>: ... this.
	(ctf_file_t): Fix outdated comment.
	<ctf_fileops>: Rename to...
	<ctf_dictops>: ... this.
	(struct ctf_archive_internal) <ctfi_file>: Rename to...
	<ctfi_dict>: ... this.
	* ctf-archive.c: Rename ctf_file_t to ctf_dict_t.
	Rename ctf_archive.ctfa_nfiles to ctfa_ndicts.
	Rename ctf_file_close to ctf_dict_close.  All users adjusted.
	* ctf-create.c: Likewise.  Refer to CTF dicts, not CTF containers.
	(ctf_bundle_t) <ctb_file>: Rename to...
	<ctb_dict): ... this.
	* ctf-decl.c: Rename ctf_file_t to ctf_dict_t.
	* ctf-dedup.c: Likewise.  Rename ctf_file_close to
	ctf_dict_close. Refer to CTF dicts, not CTF containers.
	* ctf-dump.c: Likewise.
	* ctf-error.c: Likewise.
	* ctf-hash.c: Likewise.
	* ctf-inlines.h: Likewise.
	* ctf-labels.c: Likewise.
	* ctf-link.c: Likewise.
	* ctf-lookup.c: Likewise.
	* ctf-open-bfd.c: Likewise.
	* ctf-string.c: Likewise.
	* ctf-subr.c: Likewise.
	* ctf-types.c: Likewise.
	* ctf-util.c: Likewise.
	* ctf-open.c: Likewise.
	(ctf_file_close): Rename to...
	(ctf_dict_close): ...this.
	(ctf_file_close): New trivial wrapper around ctf_dict_close, for
	compatibility.
	(ctf_parent_file): Rename to...
	(ctf_parent_dict): ... this.
	(ctf_parent_file): New trivial wrapper around ctf_parent_dict, for
	compatibility.
	* libctf.ver: Add ctf_dict_close and ctf_parent_dict.
2020-11-20 13:34:04 +00:00

798 lines
19 KiB
C

/* Textual dumping of CTF data.
Copyright (C) 2019-2020 Free Software Foundation, Inc.
This file is part of libctf.
libctf is free software; you can redistribute it and/or modify it under
the terms of the GNU General Public License as published by the Free
Software Foundation; either version 3, or (at your option) any later
version.
This program is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; see the file COPYING. If not see
<http://www.gnu.org/licenses/>. */
#include <ctf-impl.h>
#include <string.h>
#define str_append(s, a) ctf_str_append_noerr (s, a)
/* One item to be dumped, in string form. */
typedef struct ctf_dump_item
{
ctf_list_t cdi_list;
char *cdi_item;
} ctf_dump_item_t;
/* Cross-call state for dumping. Basically just enough to track the section in
use and a list of return strings. */
struct ctf_dump_state
{
ctf_sect_names_t cds_sect;
ctf_dict_t *cds_fp;
ctf_dump_item_t *cds_current;
ctf_list_t cds_items;
};
/* Cross-call state for ctf_dump_member. */
typedef struct ctf_dump_membstate
{
char **cdm_str;
ctf_dict_t *cdm_fp;
} ctf_dump_membstate_t;
static int
ctf_dump_append (ctf_dump_state_t *state, char *str)
{
ctf_dump_item_t *cdi;
if ((cdi = malloc (sizeof (struct ctf_dump_item))) == NULL)
return (ctf_set_errno (state->cds_fp, ENOMEM));
cdi->cdi_item = str;
ctf_list_append (&state->cds_items, cdi);
return 0;
}
static void
ctf_dump_free (ctf_dump_state_t *state)
{
ctf_dump_item_t *cdi, *next_cdi;
if (state == NULL)
return;
for (cdi = ctf_list_next (&state->cds_items); cdi != NULL;
cdi = next_cdi)
{
free (cdi->cdi_item);
next_cdi = ctf_list_next (cdi);
free (cdi);
}
}
/* Return a dump for a single type, without member info: but do show the
type's references. */
static char *
ctf_dump_format_type (ctf_dict_t *fp, ctf_id_t id, int flag)
{
ctf_id_t new_id;
char *str = NULL, *bit = NULL, *buf = NULL;
new_id = id;
do
{
ctf_encoding_t enc;
const char *nonroot_leader = "";
const char *nonroot_trailer = "";
id = new_id;
if (flag == CTF_ADD_NONROOT)
{
nonroot_leader = "{";
nonroot_trailer = "}";
}
buf = ctf_type_aname (fp, id);
if (!buf)
{
if (id == 0 || ctf_errno (fp) == ECTF_NONREPRESENTABLE)
{
str = str_append (str, " (type not represented in CTF)");
ctf_set_errno (fp, ECTF_NOTREF);
break;
}
goto err;
}
if (asprintf (&bit, " %s%lx: ", nonroot_leader, id) < 0)
goto oom;
str = str_append (str, bit);
free (bit);
bit = NULL;
if (buf[0] != '\0')
{
str = str_append (str, buf);
str = str_append (str, " ");
}
free (buf);
buf = NULL;
/* Slices get a different print representation. */
if (ctf_type_kind_unsliced (fp, id) == CTF_K_SLICE)
{
ctf_type_encoding (fp, id, &enc);
if (asprintf (&bit, "[slice 0x%x:0x%x] ",
enc.cte_offset, enc.cte_bits) < 0)
goto oom;
}
else if (ctf_type_kind (fp, id) == CTF_K_INTEGER)
{
ctf_type_encoding (fp, id, &enc);
if (asprintf (&bit, "[0x%x:0x%x] ",
enc.cte_offset, enc.cte_bits) < 0)
goto oom;
}
str = str_append (str, bit);
free (bit);
bit = NULL;
if (asprintf (&bit, "(size 0x%lx)%s",
(unsigned long) ctf_type_size (fp, id),
nonroot_trailer) < 0)
goto oom;
str = str_append (str, bit);
free (bit);
bit = NULL;
new_id = ctf_type_reference (fp, id);
if (new_id != CTF_ERR)
str = str_append (str, " ->");
} while (new_id != CTF_ERR);
if (ctf_errno (fp) != ECTF_NOTREF)
{
free (str);
return NULL;
}
return str;
oom:
ctf_set_errno (fp, errno);
err:
ctf_err_warn (fp, 1, 0, _("cannot format name dumping type 0x%lx"), id);
free (buf);
free (str);
free (bit);
return NULL;
}
/* Dump one string field from the file header into the cds_items. */
static int
ctf_dump_header_strfield (ctf_dict_t *fp, ctf_dump_state_t *state,
const char *name, uint32_t value)
{
char *str;
if (value)
{
if (asprintf (&str, "%s: %s\n", name, ctf_strptr (fp, value)) < 0)
goto err;
ctf_dump_append (state, str);
}
return 0;
err:
return (ctf_set_errno (fp, errno));
}
/* Dump one section-offset field from the file header into the cds_items. */
static int
ctf_dump_header_sectfield (ctf_dict_t *fp, ctf_dump_state_t *state,
const char *sect, uint32_t off, uint32_t nextoff)
{
char *str;
if (nextoff - off)
{
if (asprintf (&str, "%s:\t0x%lx -- 0x%lx (0x%lx bytes)\n", sect,
(unsigned long) off, (unsigned long) (nextoff - 1),
(unsigned long) (nextoff - off)) < 0)
goto err;
ctf_dump_append (state, str);
}
return 0;
err:
return (ctf_set_errno (fp, errno));
}
/* Dump the file header into the cds_items. */
static int
ctf_dump_header (ctf_dict_t *fp, ctf_dump_state_t *state)
{
char *str;
const ctf_header_t *hp = fp->ctf_header;
const char *vertab[] =
{
NULL, "CTF_VERSION_1",
"CTF_VERSION_1_UPGRADED_3 (latest format, version 1 type "
"boundaries)",
"CTF_VERSION_2",
"CTF_VERSION_3", NULL
};
const char *verstr = NULL;
if (asprintf (&str, "Magic number: %x\n", hp->cth_magic) < 0)
goto err;
ctf_dump_append (state, str);
if (hp->cth_version <= CTF_VERSION)
verstr = vertab[hp->cth_version];
if (verstr == NULL)
verstr = "(not a valid version)";
if (asprintf (&str, "Version: %i (%s)\n", hp->cth_version,
verstr) < 0)
goto err;
ctf_dump_append (state, str);
/* Everything else is only printed if present. */
/* The flags are unusual in that they represent the ctf_dict_t *in memory*:
flags representing compression, etc, are turned off as the file is
decompressed. So we store a copy of the flags before they are changed, for
the dumper. */
if (fp->ctf_openflags > 0)
{
if (fp->ctf_openflags)
if (asprintf (&str, "Flags: 0x%x (%s)", fp->ctf_openflags,
fp->ctf_openflags & CTF_F_COMPRESS ? "CTF_F_COMPRESS"
: "") < 0)
goto err;
ctf_dump_append (state, str);
}
if (ctf_dump_header_strfield (fp, state, "Parent label",
hp->cth_parlabel) < 0)
goto err;
if (ctf_dump_header_strfield (fp, state, "Parent name", hp->cth_parname) < 0)
goto err;
if (ctf_dump_header_strfield (fp, state, "Compilation unit name",
hp->cth_cuname) < 0)
goto err;
if (ctf_dump_header_sectfield (fp, state, "Label section", hp->cth_lbloff,
hp->cth_objtoff) < 0)
goto err;
if (ctf_dump_header_sectfield (fp, state, "Data object section",
hp->cth_objtoff, hp->cth_funcoff) < 0)
goto err;
if (ctf_dump_header_sectfield (fp, state, "Function info section",
hp->cth_funcoff, hp->cth_varoff) < 0)
goto err;
if (ctf_dump_header_sectfield (fp, state, "Variable section",
hp->cth_varoff, hp->cth_typeoff) < 0)
goto err;
if (ctf_dump_header_sectfield (fp, state, "Type section",
hp->cth_typeoff, hp->cth_stroff) < 0)
goto err;
if (ctf_dump_header_sectfield (fp, state, "String section", hp->cth_stroff,
hp->cth_stroff + hp->cth_strlen + 1) < 0)
goto err;
return 0;
err:
return (ctf_set_errno (fp, errno));
}
/* Dump a single label into the cds_items. */
static int
ctf_dump_label (const char *name, const ctf_lblinfo_t *info,
void *arg)
{
char *str;
char *typestr;
ctf_dump_state_t *state = arg;
if (asprintf (&str, "%s -> ", name) < 0)
return (ctf_set_errno (state->cds_fp, errno));
if ((typestr = ctf_dump_format_type (state->cds_fp, info->ctb_type,
CTF_ADD_ROOT)) == NULL)
{
free (str);
return 0; /* Swallow the error. */
}
str = str_append (str, typestr);
free (typestr);
ctf_dump_append (state, str);
return 0;
}
/* Dump all the object entries into the cds_items. (There is no iterator for
this section, so we just do it in a loop, and this function handles all of
them, rather than only one. */
static int
ctf_dump_objts (ctf_dict_t *fp, ctf_dump_state_t *state)
{
size_t i;
for (i = 0; i < fp->ctf_nsyms; i++)
{
char *str;
char *typestr;
const char *sym_name;
ctf_id_t type;
if ((type = ctf_lookup_by_symbol (state->cds_fp, i)) == CTF_ERR)
switch (ctf_errno (state->cds_fp))
{
/* Most errors are just an indication that this symbol is not a data
symbol, but this one indicates that we were called wrong, on a
CTF file with no associated symbol table. */
case ECTF_NOSYMTAB:
return -1;
case ECTF_NOTDATA:
case ECTF_NOTYPEDAT:
continue;
}
/* Variable name. */
sym_name = ctf_lookup_symbol_name (fp, i);
if (sym_name[0] == '\0')
{
if (asprintf (&str, "%lx -> ", (unsigned long) i) < 0)
return (ctf_set_errno (fp, errno));
}
else
{
if (asprintf (&str, "%s (%lx) -> ", sym_name, (unsigned long) i) < 0)
return (ctf_set_errno (fp, errno));
}
/* Variable type. */
if ((typestr = ctf_dump_format_type (state->cds_fp, type,
CTF_ADD_ROOT)) == NULL)
{
free (str);
return 0; /* Swallow the error. */
}
str = str_append (str, typestr);
free (typestr);
ctf_dump_append (state, str);
}
return 0;
}
/* Dump all the function entries into the cds_items. (As above, there is no
iterator for this section.) */
static int
ctf_dump_funcs (ctf_dict_t *fp, ctf_dump_state_t *state)
{
size_t i;
for (i = 0; i < fp->ctf_nsyms; i++)
{
char *str;
char *bit = NULL;
const char *sym_name;
ctf_funcinfo_t fi;
ctf_id_t type;
if ((type = ctf_func_info (state->cds_fp, i, &fi)) == CTF_ERR)
switch (ctf_errno (state->cds_fp))
{
/* Most errors are just an indication that this symbol is not a data
symbol, but this one indicates that we were called wrong, on a
CTF file with no associated symbol table. */
case ECTF_NOSYMTAB:
return -1;
case ECTF_NOTDATA:
case ECTF_NOTFUNC:
case ECTF_NOFUNCDAT:
continue;
}
/* Return type and all args. */
if ((bit = ctf_type_aname (state->cds_fp, type)) == NULL)
{
ctf_err_warn (fp, 1, ctf_errno (state->cds_fp),
_("cannot look up return type dumping function type "
"for symbol 0x%li"), (unsigned long) i);
free (bit);
return -1; /* errno is set for us. */
}
/* Replace in the returned string, dropping in the function name. */
sym_name = ctf_lookup_symbol_name (fp, i);
if (sym_name[0] != '\0')
{
char *retstar;
char *new_bit;
char *walk;
new_bit = malloc (strlen (bit) + 1 + strlen (sym_name));
if (!new_bit)
goto oom;
/* See ctf_type_aname. */
retstar = strstr (bit, "(*) (");
if (!ctf_assert (fp, retstar))
goto assert_err;
retstar += 2; /* After the '*' */
/* C is not good at search-and-replace. */
walk = new_bit;
memcpy (walk, bit, retstar - bit);
walk += (retstar - bit);
strcpy (walk, sym_name);
walk += strlen (sym_name);
strcpy (walk, retstar);
free (bit);
bit = new_bit;
}
if (asprintf (&str, "Symbol 0x%lx: %s", (unsigned long) i, bit) < 0)
goto oom;
free (bit);
ctf_dump_append (state, str);
continue;
oom:
free (bit);
return (ctf_set_errno (fp, errno));
assert_err:
free (bit);
return -1; /* errno is set for us. */
}
return 0;
}
/* Dump a single variable into the cds_items. */
static int
ctf_dump_var (const char *name, ctf_id_t type, void *arg)
{
char *str;
char *typestr;
ctf_dump_state_t *state = arg;
if (asprintf (&str, "%s -> ", name) < 0)
return (ctf_set_errno (state->cds_fp, errno));
if ((typestr = ctf_dump_format_type (state->cds_fp, type,
CTF_ADD_ROOT)) == NULL)
{
free (str);
return 0; /* Swallow the error. */
}
str = str_append (str, typestr);
free (typestr);
ctf_dump_append (state, str);
return 0;
}
/* Dump a single member into the string in the membstate. */
static int
ctf_dump_member (const char *name, ctf_id_t id, unsigned long offset,
int depth, void *arg)
{
ctf_dump_membstate_t *state = arg;
char *typestr = NULL;
char *bit = NULL;
ctf_encoding_t ep;
int has_encoding = 0;
ssize_t i;
for (i = 0; i < depth; i++)
*state->cdm_str = str_append (*state->cdm_str, " ");
if ((typestr = ctf_type_aname (state->cdm_fp, id)) == NULL)
{
if (id == 0 || ctf_errno (state->cdm_fp) == ECTF_NONREPRESENTABLE)
{
if (asprintf (&bit, " [0x%lx] (type not represented in CTF)",
offset) < 0)
goto oom;
*state->cdm_str = str_append (*state->cdm_str, bit);
free (typestr);
free (bit);
return 0;
}
return -1; /* errno is set for us. */
}
if (ctf_type_encoding (state->cdm_fp, id, &ep) == 0)
{
has_encoding = 1;
ctf_type_encoding (state->cdm_fp, id, &ep);
if (asprintf (&bit, " [0x%lx] (ID 0x%lx) (kind %i) %s%s%s:%i "
"(aligned at 0x%lx", offset, id,
ctf_type_kind (state->cdm_fp, id), typestr,
(name[0] != 0 && typestr[0] != 0) ? " " : "", name,
ep.cte_bits, (unsigned long) ctf_type_align (state->cdm_fp,
id)) < 0)
goto oom;
}
else
{
if (asprintf (&bit, " [0x%lx] (ID 0x%lx) (kind %i) %s%s%s "
"(aligned at 0x%lx", offset, id,
ctf_type_kind (state->cdm_fp, id), typestr,
(name[0] != 0 && typestr[0] != 0) ? " " : "", name,
(unsigned long) ctf_type_align (state->cdm_fp, id)) < 0)
goto oom;
}
*state->cdm_str = str_append (*state->cdm_str, bit);
free (typestr);
free (bit);
typestr = NULL;
bit = NULL;
if (has_encoding)
{
if (asprintf (&bit, ", format 0x%x, offset:bits 0x%x:0x%x", ep.cte_format,
ep.cte_offset, ep.cte_bits) < 0)
goto oom;
*state->cdm_str = str_append (*state->cdm_str, bit);
free (bit);
bit = NULL;
}
*state->cdm_str = str_append (*state->cdm_str, ")\n");
return 0;
oom:
free (typestr);
free (bit);
return (ctf_set_errno (state->cdm_fp, errno));
}
/* Dump a single type into the cds_items. */
static int
ctf_dump_type (ctf_id_t id, int flag, void *arg)
{
char *str;
ctf_dump_state_t *state = arg;
ctf_dump_membstate_t membstate = { &str, state->cds_fp };
size_t len;
if ((str = ctf_dump_format_type (state->cds_fp, id, flag)) == NULL)
goto err;
str = str_append (str, "\n");
if ((ctf_type_visit (state->cds_fp, id, ctf_dump_member, &membstate)) < 0)
{
if (id == 0 || ctf_errno (state->cds_fp) == ECTF_NONREPRESENTABLE)
{
ctf_dump_append (state, str);
return 0;
}
ctf_err_warn (state->cds_fp, 1, ctf_errno (state->cds_fp),
_("cannot visit members dumping type 0x%lx"), id);
goto err;
}
/* Trim off the last linefeed added by ctf_dump_member(). */
len = strlen (str);
if (str[len-1] == '\n')
str[len-1] = '\0';
ctf_dump_append (state, str);
return 0;
err:
free (str);
return 0; /* Swallow the error. */
}
/* Dump the string table into the cds_items. */
static int
ctf_dump_str (ctf_dict_t *fp, ctf_dump_state_t *state)
{
const char *s = fp->ctf_str[CTF_STRTAB_0].cts_strs;
for (; s < fp->ctf_str[CTF_STRTAB_0].cts_strs +
fp->ctf_str[CTF_STRTAB_0].cts_len;)
{
char *str;
if (asprintf (&str, "%lx: %s",
(unsigned long) (s - fp->ctf_str[CTF_STRTAB_0].cts_strs),
s) < 0)
return (ctf_set_errno (fp, errno));
ctf_dump_append (state, str);
s += strlen (s) + 1;
}
return 0;
}
/* Dump a particular section of a CTF file, in textual form. Call with a
pointer to a NULL STATE: each call emits a dynamically allocated string
containing a description of one entity in the specified section, in order.
Only the first call (with a NULL state) may vary SECT. Once the CTF section
has been entirely dumped, the call returns NULL and frees and annuls the
STATE, ready for another section to be dumped. The returned textual content
may span multiple lines: between each call the FUNC is called with one
textual line at a time, and should return a suitably decorated line (it can
allocate a new one and return it if it likes). */
char *
ctf_dump (ctf_dict_t *fp, ctf_dump_state_t **statep, ctf_sect_names_t sect,
ctf_dump_decorate_f *func, void *arg)
{
char *str;
char *line;
ctf_dump_state_t *state = NULL;
if (*statep == NULL)
{
/* Data collection. Transforming a call-at-a-time iterator into a
return-at-a-time iterator in a language without call/cc is annoying. It
is easiest to simply collect everything at once and then return it bit
by bit. The first call will take (much) longer than otherwise, but the
amortized time needed is the same. */
if ((*statep = malloc (sizeof (struct ctf_dump_state))) == NULL)
{
ctf_set_errno (fp, ENOMEM);
goto end;
}
state = *statep;
memset (state, 0, sizeof (struct ctf_dump_state));
state->cds_fp = fp;
state->cds_sect = sect;
switch (sect)
{
case CTF_SECT_HEADER:
ctf_dump_header (fp, state);
break;
case CTF_SECT_LABEL:
if (ctf_label_iter (fp, ctf_dump_label, state) < 0)
{
if (ctf_errno (fp) != ECTF_NOLABELDATA)
goto end; /* errno is set for us. */
ctf_set_errno (fp, 0);
}
break;
case CTF_SECT_OBJT:
if (ctf_dump_objts (fp, state) < 0)
goto end; /* errno is set for us. */
break;
case CTF_SECT_FUNC:
if (ctf_dump_funcs (fp, state) < 0)
goto end; /* errno is set for us. */
break;
case CTF_SECT_VAR:
if (ctf_variable_iter (fp, ctf_dump_var, state) < 0)
goto end; /* errno is set for us. */
break;
case CTF_SECT_TYPE:
if (ctf_type_iter_all (fp, ctf_dump_type, state) < 0)
goto end; /* errno is set for us. */
break;
case CTF_SECT_STR:
ctf_dump_str (fp, state);
break;
default:
ctf_set_errno (fp, ECTF_DUMPSECTUNKNOWN);
goto end;
}
}
else
{
state = *statep;
if (state->cds_sect != sect)
{
ctf_set_errno (fp, ECTF_DUMPSECTCHANGED);
goto end;
}
}
if (state->cds_current == NULL)
state->cds_current = ctf_list_next (&state->cds_items);
else
state->cds_current = ctf_list_next (state->cds_current);
if (state->cds_current == NULL)
goto end;
/* Hookery. There is some extra complexity to preserve linefeeds within each
item while removing linefeeds at the end. */
if (func)
{
size_t len;
str = NULL;
for (line = state->cds_current->cdi_item; line && *line; )
{
char *nline = line;
char *ret;
nline = strchr (line, '\n');
if (nline)
nline[0] = '\0';
ret = func (sect, line, arg);
str = str_append (str, ret);
str = str_append (str, "\n");
if (ret != line)
free (ret);
if (nline)
{
nline[0] = '\n';
nline++;
}
line = nline;
}
len = strlen (str);
if (str[len-1] == '\n')
str[len-1] = '\0';
}
else
{
str = strdup (state->cds_current->cdi_item);
if (!str)
{
ctf_set_errno (fp, ENOMEM);
return str;
}
}
ctf_set_errno (fp, 0);
return str;
end:
ctf_dump_free (state);
free (state);
ctf_set_errno (fp, 0);
*statep = NULL;
return NULL;
}