version 1.82, 2009/06/16 19:45:51 |
version 1.118, 2010/03/31 07:42:04 |
|
|
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF |
* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF |
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. |
* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. |
*/ |
*/ |
|
#ifdef HAVE_CONFIG_H |
|
#include "config.h" |
|
#endif |
|
|
|
#include <sys/types.h> |
|
|
#include <assert.h> |
#include <assert.h> |
#include <ctype.h> |
#include <ctype.h> |
#include <stdarg.h> |
#include <stdarg.h> |
|
|
#include <string.h> |
#include <string.h> |
|
|
#include "libmdoc.h" |
#include "libmdoc.h" |
|
#include "libmandoc.h" |
|
|
enum merr { |
const char *const __mdoc_merrnames[MERRMAX] = { |
ENOCALL, |
"trailing whitespace", /* ETAILWS */ |
EBODYPROL, |
"unexpected quoted parameter", /* EQUOTPARM */ |
EPROLBODY, |
"unterminated quoted parameter", /* EQUOTTERM */ |
ESPACE, |
"argument parameter suggested", /* EARGVAL */ |
ETEXTPROL, |
"macro disallowed in prologue", /* EBODYPROL */ |
ENOBLANK, |
"macro disallowed in body", /* EPROLBODY */ |
EMALLOC |
"text disallowed in prologue", /* ETEXTPROL */ |
|
"blank line disallowed", /* ENOBLANK */ |
|
"text parameter too long", /* ETOOLONG */ |
|
"invalid escape sequence", /* EESCAPE */ |
|
"invalid character", /* EPRINT */ |
|
"document has no body", /* ENODAT */ |
|
"document has no prologue", /* ENOPROLOGUE */ |
|
"expected line arguments", /* ELINE */ |
|
"invalid AT&T argument", /* EATT */ |
|
"default name not yet set", /* ENAME */ |
|
"missing list type", /* ELISTTYPE */ |
|
"missing display type", /* EDISPTYPE */ |
|
"too many display types", /* EMULTIDISP */ |
|
"too many list types", /* EMULTILIST */ |
|
"NAME section must be first", /* ESECNAME */ |
|
"badly-formed NAME section", /* ENAMESECINC */ |
|
"argument repeated", /* EARGREP */ |
|
"expected boolean parameter", /* EBOOL */ |
|
"inconsistent column syntax", /* ECOLMIS */ |
|
"nested display invalid", /* ENESTDISP */ |
|
"width argument missing", /* EMISSWIDTH */ |
|
"invalid section for this manual section", /* EWRONGMSEC */ |
|
"section out of conventional order", /* ESECOOO */ |
|
"section repeated", /* ESECREP */ |
|
"invalid standard argument", /* EBADSTAND */ |
|
"multi-line arguments discouraged", /* ENOMULTILINE */ |
|
"multi-line arguments suggested", /* EMULTILINE */ |
|
"line arguments discouraged", /* ENOLINE */ |
|
"prologue macro out of conventional order", /* EPROLOOO */ |
|
"prologue macro repeated", /* EPROLREP */ |
|
"invalid manual section", /* EBADMSEC */ |
|
"invalid section", /* EBADSEC */ |
|
"invalid font mode", /* EFONT */ |
|
"invalid date syntax", /* EBADDATE */ |
|
"invalid number format", /* ENUMFMT */ |
|
"superfluous width argument", /* ENOWIDTH */ |
|
"system: utsname error", /* EUTSNAME */ |
|
"obsolete macro", /* EOBS */ |
|
"end-of-line scope violation", /* EIMPBRK */ |
|
"empty macro ignored", /* EIGNE */ |
|
"unclosed explicit scope", /* EOPEN */ |
|
"unterminated quoted phrase", /* EQUOTPHR */ |
|
"closure macro without prior context", /* ENOCTX */ |
|
"no description found for library", /* ELIB */ |
|
"bad child for parent context", /* EBADCHILD */ |
|
"list arguments preceding type", /* ENOTYPE */ |
}; |
}; |
|
|
const char *const __mdoc_macronames[MDOC_MAX] = { |
const char *const __mdoc_macronames[MDOC_MAX] = { |
Line 45 const char *const __mdoc_macronames[MDOC_MAX] = { |
|
Line 97 const char *const __mdoc_macronames[MDOC_MAX] = { |
|
"Nm", "Op", "Ot", "Pa", |
"Nm", "Op", "Ot", "Pa", |
"Rv", "St", "Va", "Vt", |
"Rv", "St", "Va", "Vt", |
/* LINTED */ |
/* LINTED */ |
"Xr", "\%A", "\%B", "\%D", |
"Xr", "%A", "%B", "%D", |
/* LINTED */ |
/* LINTED */ |
"\%I", "\%J", "\%N", "\%O", |
"%I", "%J", "%N", "%O", |
/* LINTED */ |
/* LINTED */ |
"\%P", "\%R", "\%T", "\%V", |
"%P", "%R", "%T", "%V", |
"Ac", "Ao", "Aq", "At", |
"Ac", "Ao", "Aq", "At", |
"Bc", "Bf", "Bo", "Bq", |
"Bc", "Bf", "Bo", "Bq", |
"Bsx", "Bx", "Db", "Dc", |
"Bsx", "Bx", "Db", "Dc", |
Line 66 const char *const __mdoc_macronames[MDOC_MAX] = { |
|
Line 118 const char *const __mdoc_macronames[MDOC_MAX] = { |
|
"Fr", "Ud", "Lb", "Lp", |
"Fr", "Ud", "Lb", "Lp", |
"Lk", "Mt", "Brq", "Bro", |
"Lk", "Mt", "Brq", "Bro", |
/* LINTED */ |
/* LINTED */ |
"Brc", "\%C", "Es", "En", |
"Brc", "%C", "Es", "En", |
/* LINTED */ |
/* LINTED */ |
"Dx", "\%Q" |
"Dx", "%Q", "br", "sp", |
|
/* LINTED */ |
|
"%U" |
}; |
}; |
|
|
const char *const __mdoc_argnames[MDOC_ARG_MAX] = { |
const char *const __mdoc_argnames[MDOC_ARG_MAX] = { |
Line 80 const char *const __mdoc_argnames[MDOC_ARG_MAX] = { |
|
Line 134 const char *const __mdoc_argnames[MDOC_ARG_MAX] = { |
|
"ohang", "inset", "column", |
"ohang", "inset", "column", |
"width", "compact", "std", |
"width", "compact", "std", |
"filled", "words", "emphasis", |
"filled", "words", "emphasis", |
"symbolic", "nested" |
"symbolic", "nested", "centered" |
}; |
}; |
|
|
const char * const *mdoc_macronames = __mdoc_macronames; |
const char * const *mdoc_macronames = __mdoc_macronames; |
const char * const *mdoc_argnames = __mdoc_argnames; |
const char * const *mdoc_argnames = __mdoc_argnames; |
|
|
static void mdoc_free1(struct mdoc *); |
static void mdoc_free1(struct mdoc *); |
static int mdoc_alloc1(struct mdoc *); |
static void mdoc_alloc1(struct mdoc *); |
static struct mdoc_node *node_alloc(struct mdoc *, int, int, |
static struct mdoc_node *node_alloc(struct mdoc *, int, int, |
int, enum mdoc_type); |
enum mdoct, enum mdoc_type); |
static int node_append(struct mdoc *, |
static int node_append(struct mdoc *, |
struct mdoc_node *); |
struct mdoc_node *); |
static int parsetext(struct mdoc *, int, char *); |
static int parsetext(struct mdoc *, int, char *); |
static int parsemacro(struct mdoc *, int, char *); |
static int parsemacro(struct mdoc *, int, char *); |
static int macrowarn(struct mdoc *, int, const char *); |
static int macrowarn(struct mdoc *, int, const char *); |
static int perr(struct mdoc *, int, int, enum merr); |
static int pstring(struct mdoc *, int, int, |
|
const char *, size_t); |
|
|
#define verr(m, t) perr((m), (m)->last->line, (m)->last->pos, (t)) |
|
|
|
/* |
|
* Get the first (root) node of the parse tree. |
|
*/ |
|
const struct mdoc_node * |
const struct mdoc_node * |
mdoc_node(const struct mdoc *m) |
mdoc_node(const struct mdoc *m) |
{ |
{ |
Line 118 mdoc_meta(const struct mdoc *m) |
|
Line 168 mdoc_meta(const struct mdoc *m) |
|
} |
} |
|
|
|
|
|
/* |
|
* Frees volatile resources (parse tree, meta-data, fields). |
|
*/ |
static void |
static void |
mdoc_free1(struct mdoc *mdoc) |
mdoc_free1(struct mdoc *mdoc) |
{ |
{ |
Line 137 mdoc_free1(struct mdoc *mdoc) |
|
Line 190 mdoc_free1(struct mdoc *mdoc) |
|
} |
} |
|
|
|
|
static int |
/* |
|
* Allocate all volatile resources (parse tree, meta-data, fields). |
|
*/ |
|
static void |
mdoc_alloc1(struct mdoc *mdoc) |
mdoc_alloc1(struct mdoc *mdoc) |
{ |
{ |
|
|
bzero(&mdoc->meta, sizeof(struct mdoc_meta)); |
memset(&mdoc->meta, 0, sizeof(struct mdoc_meta)); |
mdoc->flags = 0; |
mdoc->flags = 0; |
mdoc->lastnamed = mdoc->lastsec = 0; |
mdoc->lastnamed = mdoc->lastsec = SEC_NONE; |
mdoc->last = calloc(1, sizeof(struct mdoc_node)); |
mdoc->last = mandoc_calloc(1, sizeof(struct mdoc_node)); |
if (NULL == mdoc->last) |
|
return(0); |
|
|
|
mdoc->first = mdoc->last; |
mdoc->first = mdoc->last; |
mdoc->last->type = MDOC_ROOT; |
mdoc->last->type = MDOC_ROOT; |
mdoc->next = MDOC_NEXT_CHILD; |
mdoc->next = MDOC_NEXT_CHILD; |
return(1); |
|
} |
} |
|
|
|
|
/* |
/* |
* Free up all resources contributed by a parse: the node tree, |
* Free up volatile resources (see mdoc_free1()) then re-initialises the |
* meta-data and so on. Then reallocate the root node for another |
* data with mdoc_alloc1(). After invocation, parse data has been reset |
* parse. |
* and the parser is ready for re-invocation on a new tree; however, |
|
* cross-parse non-volatile data is kept intact. |
*/ |
*/ |
int |
void |
mdoc_reset(struct mdoc *mdoc) |
mdoc_reset(struct mdoc *mdoc) |
{ |
{ |
|
|
mdoc_free1(mdoc); |
mdoc_free1(mdoc); |
return(mdoc_alloc1(mdoc)); |
mdoc_alloc1(mdoc); |
} |
} |
|
|
|
|
/* |
/* |
* Completely free up all resources. |
* Completely free up all volatile and non-volatile parse resources. |
|
* After invocation, the pointer is no longer usable. |
*/ |
*/ |
void |
void |
mdoc_free(struct mdoc *mdoc) |
mdoc_free(struct mdoc *mdoc) |
{ |
{ |
|
|
mdoc_free1(mdoc); |
mdoc_free1(mdoc); |
if (mdoc->htab) |
|
mdoc_hash_free(mdoc->htab); |
|
free(mdoc); |
free(mdoc); |
} |
} |
|
|
|
|
|
/* |
|
* Allocate volatile and non-volatile parse resources. |
|
*/ |
struct mdoc * |
struct mdoc * |
mdoc_alloc(void *data, int pflags, const struct mdoc_cb *cb) |
mdoc_alloc(void *data, int pflags, const struct mdoc_cb *cb) |
{ |
{ |
struct mdoc *p; |
struct mdoc *p; |
|
|
if (NULL == (p = calloc(1, sizeof(struct mdoc)))) |
p = mandoc_calloc(1, sizeof(struct mdoc)); |
return(NULL); |
|
if (cb) |
if (cb) |
(void)memcpy(&p->cb, cb, sizeof(struct mdoc_cb)); |
memcpy(&p->cb, cb, sizeof(struct mdoc_cb)); |
|
|
p->data = data; |
p->data = data; |
p->pflags = pflags; |
p->pflags = pflags; |
|
|
if (NULL == (p->htab = mdoc_hash_alloc())) { |
mdoc_hash_init(); |
free(p); |
mdoc_alloc1(p); |
return(NULL); |
return(p); |
} else if (mdoc_alloc1(p)) |
|
return(p); |
|
|
|
free(p); |
|
return(NULL); |
|
} |
} |
|
|
|
|
/* |
/* |
* Climb back up the parse tree, validating open scopes. Mostly calls |
* Climb back up the parse tree, validating open scopes. Mostly calls |
* through to macro_end in macro.c. |
* through to macro_end() in macro.c. |
*/ |
*/ |
int |
int |
mdoc_endparse(struct mdoc *m) |
mdoc_endparse(struct mdoc *m) |
Line 226 mdoc_endparse(struct mdoc *m) |
|
Line 276 mdoc_endparse(struct mdoc *m) |
|
|
|
/* |
/* |
* Main parse routine. Parses a single line -- really just hands off to |
* Main parse routine. Parses a single line -- really just hands off to |
* the macro or text parser. |
* the macro (parsemacro()) or text parser (parsetext()). |
*/ |
*/ |
int |
int |
mdoc_parseln(struct mdoc *m, int ln, char *buf) |
mdoc_parseln(struct mdoc *m, int ln, char *buf) |
{ |
{ |
|
|
/* If in error-mode, then we parse no more. */ |
|
|
|
if (MDOC_HALT & m->flags) |
if (MDOC_HALT & m->flags) |
return(0); |
return(0); |
|
|
Line 255 mdoc_verr(struct mdoc *mdoc, int ln, int pos, |
|
Line 303 mdoc_verr(struct mdoc *mdoc, int ln, int pos, |
|
va_start(ap, fmt); |
va_start(ap, fmt); |
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
va_end(ap); |
va_end(ap); |
|
|
return((*mdoc->cb.mdoc_err)(mdoc->data, ln, pos, buf)); |
return((*mdoc->cb.mdoc_err)(mdoc->data, ln, pos, buf)); |
} |
} |
|
|
|
|
int |
int |
mdoc_vwarn(struct mdoc *mdoc, int ln, int pos, |
mdoc_vwarn(struct mdoc *mdoc, int ln, int pos, const char *fmt, ...) |
enum mdoc_warn type, const char *fmt, ...) |
|
{ |
{ |
char buf[256]; |
char buf[256]; |
va_list ap; |
va_list ap; |
Line 272 mdoc_vwarn(struct mdoc *mdoc, int ln, int pos, |
|
Line 320 mdoc_vwarn(struct mdoc *mdoc, int ln, int pos, |
|
va_start(ap, fmt); |
va_start(ap, fmt); |
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
va_end(ap); |
va_end(ap); |
return((*mdoc->cb.mdoc_warn)(mdoc->data, ln, pos, type, buf)); |
|
} |
|
|
|
|
return((*mdoc->cb.mdoc_warn)(mdoc->data, ln, pos, buf)); |
int |
|
mdoc_nerr(struct mdoc *mdoc, const struct mdoc_node *node, const char *fmt, ...) |
|
{ |
|
char buf[256]; |
|
va_list ap; |
|
|
|
if (NULL == mdoc->cb.mdoc_err) |
|
return(0); |
|
|
|
va_start(ap, fmt); |
|
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
|
va_end(ap); |
|
return((*mdoc->cb.mdoc_err)(mdoc->data, node->line, node->pos, buf)); |
|
} |
} |
|
|
|
|
int |
int |
mdoc_warn(struct mdoc *mdoc, enum mdoc_warn type, const char *fmt, ...) |
mdoc_err(struct mdoc *m, int line, int pos, int iserr, enum merr type) |
{ |
{ |
char buf[256]; |
const char *p; |
va_list ap; |
|
|
|
if (NULL == mdoc->cb.mdoc_warn) |
p = __mdoc_merrnames[(int)type]; |
return(0); |
assert(p); |
|
|
va_start(ap, fmt); |
if (iserr) |
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
return(mdoc_verr(m, line, pos, p)); |
va_end(ap); |
|
return((*mdoc->cb.mdoc_warn)(mdoc->data, mdoc->last->line, |
|
mdoc->last->pos, type, buf)); |
|
} |
|
|
|
|
return(mdoc_vwarn(m, line, pos, p)); |
int |
|
mdoc_err(struct mdoc *mdoc, const char *fmt, ...) |
|
{ |
|
char buf[256]; |
|
va_list ap; |
|
|
|
if (NULL == mdoc->cb.mdoc_err) |
|
return(0); |
|
|
|
va_start(ap, fmt); |
|
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
|
va_end(ap); |
|
return((*mdoc->cb.mdoc_err)(mdoc->data, mdoc->last->line, |
|
mdoc->last->pos, buf)); |
|
} |
} |
|
|
|
|
int |
int |
mdoc_pwarn(struct mdoc *mdoc, int line, int pos, enum mdoc_warn type, |
mdoc_macro(struct mdoc *m, enum mdoct tok, |
const char *fmt, ...) |
|
{ |
|
char buf[256]; |
|
va_list ap; |
|
|
|
if (NULL == mdoc->cb.mdoc_warn) |
|
return(0); |
|
|
|
va_start(ap, fmt); |
|
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
|
va_end(ap); |
|
return((*mdoc->cb.mdoc_warn)(mdoc->data, line, pos, type, buf)); |
|
} |
|
|
|
int |
|
mdoc_perr(struct mdoc *mdoc, int line, int pos, const char *fmt, ...) |
|
{ |
|
char buf[256]; |
|
va_list ap; |
|
|
|
if (NULL == mdoc->cb.mdoc_err) |
|
return(0); |
|
|
|
va_start(ap, fmt); |
|
(void)vsnprintf(buf, sizeof(buf) - 1, fmt, ap); |
|
va_end(ap); |
|
return((*mdoc->cb.mdoc_err)(mdoc->data, line, pos, buf)); |
|
} |
|
|
|
|
|
int |
|
mdoc_macro(struct mdoc *m, int tok, |
|
int ln, int pp, int *pos, char *buf) |
int ln, int pp, int *pos, char *buf) |
{ |
{ |
|
|
/* FIXME - these should happen during validation. */ |
assert(tok < MDOC_MAX); |
|
/* |
|
* If we're in the prologue, deny "body" macros. Similarly, if |
|
* we're in the body, deny prologue calls. |
|
*/ |
if (MDOC_PROLOGUE & mdoc_macros[tok].flags && |
if (MDOC_PROLOGUE & mdoc_macros[tok].flags && |
SEC_PROLOGUE != m->lastnamed) |
MDOC_PBODY & m->flags) |
return(perr(m, ln, pp, EPROLBODY)); |
return(mdoc_perr(m, ln, pp, EPROLBODY)); |
|
|
if ( ! (MDOC_PROLOGUE & mdoc_macros[tok].flags) && |
if ( ! (MDOC_PROLOGUE & mdoc_macros[tok].flags) && |
SEC_PROLOGUE == m->lastnamed) |
! (MDOC_PBODY & m->flags)) |
return(perr(m, ln, pp, EBODYPROL)); |
return(mdoc_perr(m, ln, pp, EBODYPROL)); |
|
|
if (1 != pp && ! (MDOC_CALLABLE & mdoc_macros[tok].flags)) |
|
return(perr(m, ln, pp, ENOCALL)); |
|
|
|
return((*mdoc_macros[tok].fp)(m, tok, ln, pp, pos, buf)); |
return((*mdoc_macros[tok].fp)(m, tok, ln, pp, pos, buf)); |
} |
} |
|
|
|
|
static int |
static int |
perr(struct mdoc *m, int line, int pos, enum merr type) |
|
{ |
|
char *p; |
|
|
|
p = NULL; |
|
switch (type) { |
|
case (ENOCALL): |
|
p = "not callable"; |
|
break; |
|
case (EPROLBODY): |
|
p = "macro disallowed in document body"; |
|
break; |
|
case (EBODYPROL): |
|
p = "macro disallowed in document prologue"; |
|
break; |
|
case (EMALLOC): |
|
p = "memory exhausted"; |
|
break; |
|
case (ETEXTPROL): |
|
p = "text disallowed in document prologue"; |
|
break; |
|
case (ENOBLANK): |
|
p = "blank lines disallowed in non-literal contexts"; |
|
break; |
|
case (ESPACE): |
|
p = "whitespace disallowed after delimiter"; |
|
break; |
|
} |
|
assert(p); |
|
return(mdoc_perr(m, line, pos, p)); |
|
} |
|
|
|
|
|
static int |
|
node_append(struct mdoc *mdoc, struct mdoc_node *p) |
node_append(struct mdoc *mdoc, struct mdoc_node *p) |
{ |
{ |
|
|
Line 437 node_append(struct mdoc *mdoc, struct mdoc_node *p) |
|
Line 384 node_append(struct mdoc *mdoc, struct mdoc_node *p) |
|
/* NOTREACHED */ |
/* NOTREACHED */ |
} |
} |
|
|
|
p->parent->nchild++; |
|
|
if ( ! mdoc_valid_pre(mdoc, p)) |
if ( ! mdoc_valid_pre(mdoc, p)) |
return(0); |
return(0); |
if ( ! mdoc_action_pre(mdoc, p)) |
if ( ! mdoc_action_pre(mdoc, p)) |
Line 477 node_append(struct mdoc *mdoc, struct mdoc_node *p) |
|
Line 426 node_append(struct mdoc *mdoc, struct mdoc_node *p) |
|
|
|
|
|
static struct mdoc_node * |
static struct mdoc_node * |
node_alloc(struct mdoc *mdoc, int line, |
node_alloc(struct mdoc *m, int line, int pos, |
int pos, int tok, enum mdoc_type type) |
enum mdoct tok, enum mdoc_type type) |
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *p; |
|
|
if (NULL == (p = calloc(1, sizeof(struct mdoc_node)))) { |
p = mandoc_calloc(1, sizeof(struct mdoc_node)); |
(void)verr(mdoc, EMALLOC); |
p->sec = m->lastsec; |
return(NULL); |
|
} |
|
|
|
p->sec = mdoc->lastsec; |
|
p->line = line; |
p->line = line; |
p->pos = pos; |
p->pos = pos; |
p->tok = tok; |
p->tok = tok; |
if (MDOC_TEXT != (p->type = type)) |
p->type = type; |
assert(p->tok >= 0); |
|
|
|
return(p); |
return(p); |
} |
} |
|
|
|
|
int |
int |
mdoc_tail_alloc(struct mdoc *mdoc, int line, int pos, int tok) |
mdoc_tail_alloc(struct mdoc *m, int line, int pos, enum mdoct tok) |
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *p; |
|
|
p = node_alloc(mdoc, line, pos, tok, MDOC_TAIL); |
p = node_alloc(m, line, pos, tok, MDOC_TAIL); |
if (NULL == p) |
if ( ! node_append(m, p)) |
return(0); |
return(0); |
return(node_append(mdoc, p)); |
m->next = MDOC_NEXT_CHILD; |
|
return(1); |
} |
} |
|
|
|
|
int |
int |
mdoc_head_alloc(struct mdoc *mdoc, int line, int pos, int tok) |
mdoc_head_alloc(struct mdoc *m, int line, int pos, enum mdoct tok) |
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *p; |
|
|
assert(mdoc->first); |
assert(m->first); |
assert(mdoc->last); |
assert(m->last); |
|
|
p = node_alloc(mdoc, line, pos, tok, MDOC_HEAD); |
p = node_alloc(m, line, pos, tok, MDOC_HEAD); |
if (NULL == p) |
if ( ! node_append(m, p)) |
return(0); |
return(0); |
return(node_append(mdoc, p)); |
m->next = MDOC_NEXT_CHILD; |
|
return(1); |
} |
} |
|
|
|
|
int |
int |
mdoc_body_alloc(struct mdoc *mdoc, int line, int pos, int tok) |
mdoc_body_alloc(struct mdoc *m, int line, int pos, enum mdoct tok) |
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *p; |
|
|
p = node_alloc(mdoc, line, pos, tok, MDOC_BODY); |
p = node_alloc(m, line, pos, tok, MDOC_BODY); |
if (NULL == p) |
if ( ! node_append(m, p)) |
return(0); |
return(0); |
return(node_append(mdoc, p)); |
m->next = MDOC_NEXT_CHILD; |
|
return(1); |
} |
} |
|
|
|
|
int |
int |
mdoc_block_alloc(struct mdoc *mdoc, int line, int pos, |
mdoc_block_alloc(struct mdoc *m, int line, int pos, |
int tok, struct mdoc_arg *args) |
enum mdoct tok, struct mdoc_arg *args) |
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *p; |
|
|
p = node_alloc(mdoc, line, pos, tok, MDOC_BLOCK); |
p = node_alloc(m, line, pos, tok, MDOC_BLOCK); |
if (NULL == p) |
|
return(0); |
|
p->args = args; |
p->args = args; |
if (p->args) |
if (p->args) |
(args->refcnt)++; |
(args->refcnt)++; |
return(node_append(mdoc, p)); |
if ( ! node_append(m, p)) |
|
return(0); |
|
m->next = MDOC_NEXT_CHILD; |
|
return(1); |
} |
} |
|
|
|
|
int |
int |
mdoc_elem_alloc(struct mdoc *mdoc, int line, int pos, |
mdoc_elem_alloc(struct mdoc *m, int line, int pos, |
int tok, struct mdoc_arg *args) |
enum mdoct tok, struct mdoc_arg *args) |
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *p; |
|
|
p = node_alloc(mdoc, line, pos, tok, MDOC_ELEM); |
p = node_alloc(m, line, pos, tok, MDOC_ELEM); |
if (NULL == p) |
|
return(0); |
|
p->args = args; |
p->args = args; |
if (p->args) |
if (p->args) |
(args->refcnt)++; |
(args->refcnt)++; |
return(node_append(mdoc, p)); |
if ( ! node_append(m, p)) |
|
return(0); |
|
m->next = MDOC_NEXT_CHILD; |
|
return(1); |
} |
} |
|
|
|
|
int |
static int |
mdoc_word_alloc(struct mdoc *mdoc, |
pstring(struct mdoc *m, int line, int pos, const char *p, size_t len) |
int line, int pos, const char *word) |
|
{ |
{ |
struct mdoc_node *p; |
struct mdoc_node *n; |
|
size_t sv; |
|
|
p = node_alloc(mdoc, line, pos, -1, MDOC_TEXT); |
n = node_alloc(m, line, pos, -1, MDOC_TEXT); |
if (NULL == p) |
n->string = mandoc_malloc(len + 1); |
|
sv = strlcpy(n->string, p, len + 1); |
|
|
|
/* Prohibit truncation. */ |
|
assert(sv < len + 1); |
|
|
|
if ( ! node_append(m, n)) |
return(0); |
return(0); |
if (NULL == (p->string = strdup(word))) { |
m->next = MDOC_NEXT_SIBLING; |
(void)verr(mdoc, EMALLOC); |
return(1); |
return(0); |
|
} |
|
return(node_append(mdoc, p)); |
|
} |
} |
|
|
|
|
|
int |
|
mdoc_word_alloc(struct mdoc *m, int line, int pos, const char *p) |
|
{ |
|
|
|
return(pstring(m, line, pos, p, strlen(p))); |
|
} |
|
|
|
|
void |
void |
mdoc_node_free(struct mdoc_node *p) |
mdoc_node_free(struct mdoc_node *p) |
{ |
{ |
|
|
|
if (p->parent) |
|
p->parent->nchild--; |
if (p->string) |
if (p->string) |
free(p->string); |
free(p->string); |
if (p->args) |
if (p->args) |
Line 607 mdoc_node_freelist(struct mdoc_node *p) |
|
Line 569 mdoc_node_freelist(struct mdoc_node *p) |
|
if (p->next) |
if (p->next) |
mdoc_node_freelist(p->next); |
mdoc_node_freelist(p->next); |
|
|
|
assert(0 == p->nchild); |
mdoc_node_free(p); |
mdoc_node_free(p); |
} |
} |
|
|
Line 618 mdoc_node_freelist(struct mdoc_node *p) |
|
Line 581 mdoc_node_freelist(struct mdoc_node *p) |
|
static int |
static int |
parsetext(struct mdoc *m, int line, char *buf) |
parsetext(struct mdoc *m, int line, char *buf) |
{ |
{ |
|
int i, j; |
|
char sv; |
|
|
if (SEC_PROLOGUE == m->lastnamed) |
if (SEC_NONE == m->lastnamed) |
return(perr(m, line, 0, ETEXTPROL)); |
return(mdoc_perr(m, line, 0, ETEXTPROL)); |
|
|
|
/* |
|
* If in literal mode, then pass the buffer directly to the |
|
* back-end, as it should be preserved as a single term. |
|
*/ |
|
|
if (0 == buf[0] && ! (MDOC_LITERAL & m->flags)) |
if (MDOC_LITERAL & m->flags) |
return(perr(m, line, 0, ENOBLANK)); |
return(mdoc_word_alloc(m, line, 0, buf)); |
|
|
if ( ! mdoc_word_alloc(m, line, 0, buf)) |
/* Disallow blank/white-space lines in non-literal mode. */ |
|
|
|
for (i = 0; ' ' == buf[i]; i++) |
|
/* Skip leading whitespace. */ ; |
|
|
|
if ('\0' == buf[i]) |
|
return(mdoc_perr(m, line, 0, ENOBLANK)); |
|
|
|
/* |
|
* Break apart a free-form line into tokens. Spaces are |
|
* stripped out of the input. |
|
*/ |
|
|
|
for (j = i; buf[i]; i++) { |
|
if (' ' != buf[i]) |
|
continue; |
|
|
|
/* Escaped whitespace. */ |
|
if (i && ' ' == buf[i] && '\\' == buf[i - 1]) |
|
continue; |
|
|
|
sv = buf[i]; |
|
buf[i++] = '\0'; |
|
|
|
if ( ! pstring(m, line, j, &buf[j], (size_t)(i - j))) |
|
return(0); |
|
|
|
/* Trailing whitespace? Check at overwritten byte. */ |
|
|
|
if (' ' == sv && '\0' == buf[i]) |
|
if ( ! mdoc_pwarn(m, line, i - 1, ETAILWS)) |
|
return(0); |
|
|
|
for ( ; ' ' == buf[i]; i++) |
|
/* Skip trailing whitespace. */ ; |
|
|
|
j = i; |
|
|
|
/* Trailing whitespace? */ |
|
|
|
if (' ' == buf[i - 1] && '\0' == buf[i]) |
|
if ( ! mdoc_pwarn(m, line, i - 1, ETAILWS)) |
|
return(0); |
|
|
|
if ('\0' == buf[i]) |
|
break; |
|
} |
|
|
|
if (j != i && ! pstring(m, line, j, &buf[j], (size_t)(i - j))) |
return(0); |
return(0); |
|
|
m->next = MDOC_NEXT_SIBLING; |
m->next = MDOC_NEXT_SIBLING; |
Line 633 parsetext(struct mdoc *m, int line, char *buf) |
|
Line 651 parsetext(struct mdoc *m, int line, char *buf) |
|
} |
} |
|
|
|
|
|
|
static int |
static int |
macrowarn(struct mdoc *m, int ln, const char *buf) |
macrowarn(struct mdoc *m, int ln, const char *buf) |
{ |
{ |
if ( ! (MDOC_IGN_MACRO & m->pflags)) |
if ( ! (MDOC_IGN_MACRO & m->pflags)) |
return(mdoc_perr(m, ln, 1, |
return(mdoc_verr(m, ln, 0, |
"unknown macro: %s%s", |
"unknown macro: %s%s", |
buf, strlen(buf) > 3 ? "..." : "")); |
buf, strlen(buf) > 3 ? "..." : "")); |
return(mdoc_pwarn(m, ln, 1, WARN_SYNTAX, |
return(mdoc_vwarn(m, ln, 0, "unknown macro: %s%s", |
"unknown macro: %s%s", |
|
buf, strlen(buf) > 3 ? "..." : "")); |
buf, strlen(buf) > 3 ? "..." : "")); |
} |
} |
|
|
|
|
|
|
/* |
/* |
* Parse a macro line, that is, a line beginning with the control |
* Parse a macro line, that is, a line beginning with the control |
* character. |
* character. |
Line 654 macrowarn(struct mdoc *m, int ln, const char *buf) |
|
Line 671 macrowarn(struct mdoc *m, int ln, const char *buf) |
|
int |
int |
parsemacro(struct mdoc *m, int ln, char *buf) |
parsemacro(struct mdoc *m, int ln, char *buf) |
{ |
{ |
int i, c; |
int i, j, c; |
char mac[5]; |
char mac[5]; |
|
|
/* Empty lines are ignored. */ |
/* Empty lines are ignored. */ |
|
|
if (0 == buf[1]) |
if ('\0' == buf[1]) |
return(1); |
return(1); |
|
|
if (' ' == buf[1]) { |
i = 1; |
i = 2; |
|
|
/* Accept whitespace after the initial control char. */ |
|
|
|
if (' ' == buf[i]) { |
|
i++; |
while (buf[i] && ' ' == buf[i]) |
while (buf[i] && ' ' == buf[i]) |
i++; |
i++; |
if (0 == buf[i]) |
if ('\0' == buf[i]) |
return(1); |
return(1); |
return(perr(m, ln, 1, ESPACE)); |
|
} |
} |
|
|
/* Copy the first word into a nil-terminated buffer. */ |
/* Copy the first word into a nil-terminated buffer. */ |
|
|
for (i = 1; i < 5; i++) { |
for (j = 0; j < 4; j++, i++) { |
if (0 == (mac[i - 1] = buf[i])) |
if ('\0' == (mac[j] = buf[i])) |
break; |
break; |
else if (' ' == buf[i]) |
else if (' ' == buf[i]) |
break; |
break; |
|
|
|
/* Check for invalid characters. */ |
|
|
|
if (isgraph((u_char)buf[i])) |
|
continue; |
|
return(mdoc_perr(m, ln, i, EPRINT)); |
} |
} |
|
|
mac[i - 1] = 0; |
mac[j] = 0; |
|
|
if (i == 5 || i <= 2) { |
if (j == 4 || j < 2) { |
if ( ! macrowarn(m, ln, mac)) |
if ( ! macrowarn(m, ln, mac)) |
goto err; |
goto err; |
return(1); |
return(1); |
} |
} |
|
|
if (MDOC_MAX == (c = mdoc_hash_find(m->htab, mac))) { |
if (MDOC_MAX == (c = mdoc_hash_find(mac))) { |
if ( ! macrowarn(m, ln, mac)) |
if ( ! macrowarn(m, ln, mac)) |
goto err; |
goto err; |
return(1); |
return(1); |
Line 699 parsemacro(struct mdoc *m, int ln, char *buf) |
|
Line 725 parsemacro(struct mdoc *m, int ln, char *buf) |
|
while (buf[i] && ' ' == buf[i]) |
while (buf[i] && ' ' == buf[i]) |
i++; |
i++; |
|
|
/* Begin recursive parse sequence. */ |
/* Trailing whitespace? */ |
|
|
|
if ('\0' == buf[i] && ' ' == buf[i - 1]) |
|
if ( ! mdoc_pwarn(m, ln, i - 1, ETAILWS)) |
|
goto err; |
|
|
|
/* |
|
* Begin recursive parse sequence. Since we're at the start of |
|
* the line, we don't need to do callable/parseable checks. |
|
*/ |
if ( ! mdoc_macro(m, c, ln, 1, &i, buf)) |
if ( ! mdoc_macro(m, c, ln, 1, &i, buf)) |
goto err; |
goto err; |
|
|
Line 711 err: /* Error out. */ |
|
Line 745 err: /* Error out. */ |
|
m->flags |= MDOC_HALT; |
m->flags |= MDOC_HALT; |
return(0); |
return(0); |
} |
} |
|
|
|
|