xref: /illumos-gate/usr/src/lib/libdtrace/common/dt_cc.c (revision 2aa8db5932a99c01d32f2aea7dbbf15b4898169b)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 
22 /*
23  * Copyright (c) 2003, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Copyright (c) 2011, 2016 by Delphix. All rights reserved.
25  * Copyright (c) 2013, Joyent Inc. All rights reserved.
26  * Copyright 2015 Gary Mills
27  */
28 
29 /*
30  * DTrace D Language Compiler
31  *
32  * The code in this source file implements the main engine for the D language
33  * compiler.  The driver routine for the compiler is dt_compile(), below.  The
34  * compiler operates on either stdio FILEs or in-memory strings as its input
35  * and can produce either dtrace_prog_t structures from a D program or a single
36  * dtrace_difo_t structure from a D expression.  Multiple entry points are
37  * provided as wrappers around dt_compile() for the various input/output pairs.
38  * The compiler itself is implemented across the following source files:
39  *
40  * dt_lex.l - lex scanner
41  * dt_grammar.y - yacc grammar
42  * dt_parser.c - parse tree creation and semantic checking
43  * dt_decl.c - declaration stack processing
44  * dt_xlator.c - D translator lookup and creation
45  * dt_ident.c - identifier and symbol table routines
46  * dt_pragma.c - #pragma processing and D pragmas
47  * dt_printf.c - D printf() and printa() argument checking and processing
48  * dt_cc.c - compiler driver and dtrace_prog_t construction
49  * dt_cg.c - DIF code generator
50  * dt_as.c - DIF assembler
51  * dt_dof.c - dtrace_prog_t -> DOF conversion
52  *
53  * Several other source files provide collections of utility routines used by
54  * these major files.  The compiler itself is implemented in multiple passes:
55  *
56  * (1) The input program is scanned and parsed by dt_lex.l and dt_grammar.y
57  *     and parse tree nodes are constructed using the routines in dt_parser.c.
58  *     This node construction pass is described further in dt_parser.c.
59  *
60  * (2) The parse tree is "cooked" by assigning each clause a context (see the
61  *     routine dt_setcontext(), below) based on its probe description and then
62  *     recursively descending the tree performing semantic checking.  The cook
63  *     routines are also implemented in dt_parser.c and described there.
64  *
65  * (3) For actions that are DIF expression statements, the DIF code generator
66  *     and assembler are invoked to create a finished DIFO for the statement.
67  *
68  * (4) The dtrace_prog_t data structures for the program clauses and actions
69  *     are built, containing pointers to any DIFOs created in step (3).
70  *
71  * (5) The caller invokes a routine in dt_dof.c to convert the finished program
72  *     into DOF format for use in anonymous tracing or enabling in the kernel.
73  *
74  * In the implementation, steps 2-4 are intertwined in that they are performed
75  * in order for each clause as part of a loop that executes over the clauses.
76  *
77  * The D compiler currently implements nearly no optimization.  The compiler
78  * implements integer constant folding as part of pass (1), and a set of very
79  * simple peephole optimizations as part of pass (3).  As with any C compiler,
80  * a large number of optimizations are possible on both the intermediate data
81  * structures and the generated DIF code.  These possibilities should be
82  * investigated in the context of whether they will have any substantive effect
83  * on the overall DTrace probe effect before they are undertaken.
84  */
85 
86 #include <sys/types.h>
87 #include <sys/wait.h>
88 #include <sys/sysmacros.h>
89 
90 #include <assert.h>
91 #include <strings.h>
92 #include <signal.h>
93 #include <unistd.h>
94 #include <stdlib.h>
95 #include <stdio.h>
96 #include <errno.h>
97 #include <ucontext.h>
98 #include <limits.h>
99 #include <ctype.h>
100 #include <dirent.h>
101 #include <dt_module.h>
102 #include <dt_program.h>
103 #include <dt_provider.h>
104 #include <dt_printf.h>
105 #include <dt_pid.h>
106 #include <dt_grammar.h>
107 #include <dt_ident.h>
108 #include <dt_string.h>
109 #include <dt_impl.h>
110 
111 static const dtrace_diftype_t dt_void_rtype = {
112 	DIF_TYPE_CTF, CTF_K_INTEGER, 0, 0, 0
113 };
114 
115 static const dtrace_diftype_t dt_int_rtype = {
116 	DIF_TYPE_CTF, CTF_K_INTEGER, 0, 0, sizeof (uint64_t)
117 };
118 
119 static void *dt_compile(dtrace_hdl_t *, int, dtrace_probespec_t, void *,
120     uint_t, int, char *const[], FILE *, const char *);
121 
122 /*ARGSUSED*/
123 static int
124 dt_idreset(dt_idhash_t *dhp, dt_ident_t *idp, void *ignored)
125 {
126 	idp->di_flags &= ~(DT_IDFLG_REF | DT_IDFLG_MOD |
127 	    DT_IDFLG_DIFR | DT_IDFLG_DIFW);
128 	return (0);
129 }
130 
131 /*ARGSUSED*/
132 static int
133 dt_idpragma(dt_idhash_t *dhp, dt_ident_t *idp, void *ignored)
134 {
135 	yylineno = idp->di_lineno;
136 	xyerror(D_PRAGMA_UNUSED, "unused #pragma %s\n", (char *)idp->di_iarg);
137 	return (0);
138 }
139 
140 static dtrace_stmtdesc_t *
141 dt_stmt_create(dtrace_hdl_t *dtp, dtrace_ecbdesc_t *edp,
142     dtrace_attribute_t descattr, dtrace_attribute_t stmtattr)
143 {
144 	dtrace_stmtdesc_t *sdp = dtrace_stmt_create(dtp, edp);
145 
146 	if (sdp == NULL)
147 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
148 
149 	assert(yypcb->pcb_stmt == NULL);
150 	yypcb->pcb_stmt = sdp;
151 
152 	sdp->dtsd_descattr = descattr;
153 	sdp->dtsd_stmtattr = stmtattr;
154 
155 	return (sdp);
156 }
157 
158 static dtrace_actdesc_t *
159 dt_stmt_action(dtrace_hdl_t *dtp, dtrace_stmtdesc_t *sdp)
160 {
161 	dtrace_actdesc_t *new;
162 
163 	if ((new = dtrace_stmt_action(dtp, sdp)) == NULL)
164 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
165 
166 	return (new);
167 }
168 
169 /*
170  * Utility function to determine if a given action description is destructive.
171  * The dtdo_destructive bit is set for us by the DIF assembler (see dt_as.c).
172  */
173 static int
174 dt_action_destructive(const dtrace_actdesc_t *ap)
175 {
176 	return (DTRACEACT_ISDESTRUCTIVE(ap->dtad_kind) || (ap->dtad_kind ==
177 	    DTRACEACT_DIFEXPR && ap->dtad_difo->dtdo_destructive));
178 }
179 
180 static void
181 dt_stmt_append(dtrace_stmtdesc_t *sdp, const dt_node_t *dnp)
182 {
183 	dtrace_ecbdesc_t *edp = sdp->dtsd_ecbdesc;
184 	dtrace_actdesc_t *ap, *tap;
185 	int commit = 0;
186 	int speculate = 0;
187 	int datarec = 0;
188 
189 	/*
190 	 * Make sure that the new statement jibes with the rest of the ECB.
191 	 */
192 	for (ap = edp->dted_action; ap != NULL; ap = ap->dtad_next) {
193 		if (ap->dtad_kind == DTRACEACT_COMMIT) {
194 			if (commit) {
195 				dnerror(dnp, D_COMM_COMM, "commit( ) may "
196 				    "not follow commit( )\n");
197 			}
198 
199 			if (datarec) {
200 				dnerror(dnp, D_COMM_DREC, "commit( ) may "
201 				    "not follow data-recording action(s)\n");
202 			}
203 
204 			for (tap = ap; tap != NULL; tap = tap->dtad_next) {
205 				if (!DTRACEACT_ISAGG(tap->dtad_kind))
206 					continue;
207 
208 				dnerror(dnp, D_AGG_COMM, "aggregating actions "
209 				    "may not follow commit( )\n");
210 			}
211 
212 			commit = 1;
213 			continue;
214 		}
215 
216 		if (ap->dtad_kind == DTRACEACT_SPECULATE) {
217 			if (speculate) {
218 				dnerror(dnp, D_SPEC_SPEC, "speculate( ) may "
219 				    "not follow speculate( )\n");
220 			}
221 
222 			if (commit) {
223 				dnerror(dnp, D_SPEC_COMM, "speculate( ) may "
224 				    "not follow commit( )\n");
225 			}
226 
227 			if (datarec) {
228 				dnerror(dnp, D_SPEC_DREC, "speculate( ) may "
229 				    "not follow data-recording action(s)\n");
230 			}
231 
232 			speculate = 1;
233 			continue;
234 		}
235 
236 		if (DTRACEACT_ISAGG(ap->dtad_kind)) {
237 			if (speculate) {
238 				dnerror(dnp, D_AGG_SPEC, "aggregating actions "
239 				    "may not follow speculate( )\n");
240 			}
241 
242 			datarec = 1;
243 			continue;
244 		}
245 
246 		if (speculate) {
247 			if (dt_action_destructive(ap)) {
248 				dnerror(dnp, D_ACT_SPEC, "destructive actions "
249 				    "may not follow speculate( )\n");
250 			}
251 
252 			if (ap->dtad_kind == DTRACEACT_EXIT) {
253 				dnerror(dnp, D_EXIT_SPEC, "exit( ) may not "
254 				    "follow speculate( )\n");
255 			}
256 		}
257 
258 		/*
259 		 * Exclude all non data-recording actions.
260 		 */
261 		if (dt_action_destructive(ap) ||
262 		    ap->dtad_kind == DTRACEACT_DISCARD)
263 			continue;
264 
265 		if (ap->dtad_kind == DTRACEACT_DIFEXPR &&
266 		    ap->dtad_difo->dtdo_rtype.dtdt_kind == DIF_TYPE_CTF &&
267 		    ap->dtad_difo->dtdo_rtype.dtdt_size == 0)
268 			continue;
269 
270 		if (commit) {
271 			dnerror(dnp, D_DREC_COMM, "data-recording actions "
272 			    "may not follow commit( )\n");
273 		}
274 
275 		if (!speculate)
276 			datarec = 1;
277 	}
278 
279 	if (dtrace_stmt_add(yypcb->pcb_hdl, yypcb->pcb_prog, sdp) != 0)
280 		longjmp(yypcb->pcb_jmpbuf, dtrace_errno(yypcb->pcb_hdl));
281 
282 	if (yypcb->pcb_stmt == sdp)
283 		yypcb->pcb_stmt = NULL;
284 }
285 
286 /*
287  * For the first element of an aggregation tuple or for printa(), we create a
288  * simple DIF program that simply returns the immediate value that is the ID
289  * of the aggregation itself.  This could be optimized in the future by
290  * creating a new in-kernel dtad_kind that just returns an integer.
291  */
292 static void
293 dt_action_difconst(dtrace_actdesc_t *ap, uint_t id, dtrace_actkind_t kind)
294 {
295 	dtrace_hdl_t *dtp = yypcb->pcb_hdl;
296 	dtrace_difo_t *dp = dt_zalloc(dtp, sizeof (dtrace_difo_t));
297 
298 	if (dp == NULL)
299 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
300 
301 	dp->dtdo_buf = dt_alloc(dtp, sizeof (dif_instr_t) * 2);
302 	dp->dtdo_inttab = dt_alloc(dtp, sizeof (uint64_t));
303 
304 	if (dp->dtdo_buf == NULL || dp->dtdo_inttab == NULL) {
305 		dt_difo_free(dtp, dp);
306 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
307 	}
308 
309 	dp->dtdo_buf[0] = DIF_INSTR_SETX(0, 1); /* setx	DIF_INTEGER[0], %r1 */
310 	dp->dtdo_buf[1] = DIF_INSTR_RET(1);	/* ret	%r1 */
311 	dp->dtdo_len = 2;
312 	dp->dtdo_inttab[0] = id;
313 	dp->dtdo_intlen = 1;
314 	dp->dtdo_rtype = dt_int_rtype;
315 
316 	ap->dtad_difo = dp;
317 	ap->dtad_kind = kind;
318 }
319 
320 static void
321 dt_action_clear(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
322 {
323 	dt_ident_t *aid;
324 	dtrace_actdesc_t *ap;
325 	dt_node_t *anp;
326 
327 	char n[DT_TYPE_NAMELEN];
328 	int argc = 0;
329 
330 	for (anp = dnp->dn_args; anp != NULL; anp = anp->dn_list)
331 		argc++; /* count up arguments for error messages below */
332 
333 	if (argc != 1) {
334 		dnerror(dnp, D_CLEAR_PROTO,
335 		    "%s( ) prototype mismatch: %d args passed, 1 expected\n",
336 		    dnp->dn_ident->di_name, argc);
337 	}
338 
339 	anp = dnp->dn_args;
340 	assert(anp != NULL);
341 
342 	if (anp->dn_kind != DT_NODE_AGG) {
343 		dnerror(dnp, D_CLEAR_AGGARG,
344 		    "%s( ) argument #1 is incompatible with prototype:\n"
345 		    "\tprototype: aggregation\n\t argument: %s\n",
346 		    dnp->dn_ident->di_name,
347 		    dt_node_type_name(anp, n, sizeof (n)));
348 	}
349 
350 	aid = anp->dn_ident;
351 
352 	if (aid->di_gen == dtp->dt_gen && !(aid->di_flags & DT_IDFLG_MOD)) {
353 		dnerror(dnp, D_CLEAR_AGGBAD,
354 		    "undefined aggregation: @%s\n", aid->di_name);
355 	}
356 
357 	ap = dt_stmt_action(dtp, sdp);
358 	dt_action_difconst(ap, anp->dn_ident->di_id, DTRACEACT_LIBACT);
359 	ap->dtad_arg = DT_ACT_CLEAR;
360 }
361 
362 static void
363 dt_action_normalize(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
364 {
365 	dt_ident_t *aid;
366 	dtrace_actdesc_t *ap;
367 	dt_node_t *anp, *normal;
368 	int denormal = (strcmp(dnp->dn_ident->di_name, "denormalize") == 0);
369 
370 	char n[DT_TYPE_NAMELEN];
371 	int argc = 0;
372 
373 	for (anp = dnp->dn_args; anp != NULL; anp = anp->dn_list)
374 		argc++; /* count up arguments for error messages below */
375 
376 	if ((denormal && argc != 1) || (!denormal && argc != 2)) {
377 		dnerror(dnp, D_NORMALIZE_PROTO,
378 		    "%s( ) prototype mismatch: %d args passed, %d expected\n",
379 		    dnp->dn_ident->di_name, argc, denormal ? 1 : 2);
380 	}
381 
382 	anp = dnp->dn_args;
383 	assert(anp != NULL);
384 
385 	if (anp->dn_kind != DT_NODE_AGG) {
386 		dnerror(dnp, D_NORMALIZE_AGGARG,
387 		    "%s( ) argument #1 is incompatible with prototype:\n"
388 		    "\tprototype: aggregation\n\t argument: %s\n",
389 		    dnp->dn_ident->di_name,
390 		    dt_node_type_name(anp, n, sizeof (n)));
391 	}
392 
393 	if ((normal = anp->dn_list) != NULL && !dt_node_is_scalar(normal)) {
394 		dnerror(dnp, D_NORMALIZE_SCALAR,
395 		    "%s( ) argument #2 must be of scalar type\n",
396 		    dnp->dn_ident->di_name);
397 	}
398 
399 	aid = anp->dn_ident;
400 
401 	if (aid->di_gen == dtp->dt_gen && !(aid->di_flags & DT_IDFLG_MOD)) {
402 		dnerror(dnp, D_NORMALIZE_AGGBAD,
403 		    "undefined aggregation: @%s\n", aid->di_name);
404 	}
405 
406 	ap = dt_stmt_action(dtp, sdp);
407 	dt_action_difconst(ap, anp->dn_ident->di_id, DTRACEACT_LIBACT);
408 
409 	if (denormal) {
410 		ap->dtad_arg = DT_ACT_DENORMALIZE;
411 		return;
412 	}
413 
414 	ap->dtad_arg = DT_ACT_NORMALIZE;
415 
416 	assert(normal != NULL);
417 	ap = dt_stmt_action(dtp, sdp);
418 	dt_cg(yypcb, normal);
419 
420 	ap->dtad_difo = dt_as(yypcb);
421 	ap->dtad_kind = DTRACEACT_LIBACT;
422 	ap->dtad_arg = DT_ACT_NORMALIZE;
423 }
424 
425 static void
426 dt_action_trunc(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
427 {
428 	dt_ident_t *aid;
429 	dtrace_actdesc_t *ap;
430 	dt_node_t *anp, *trunc;
431 
432 	char n[DT_TYPE_NAMELEN];
433 	int argc = 0;
434 
435 	for (anp = dnp->dn_args; anp != NULL; anp = anp->dn_list)
436 		argc++; /* count up arguments for error messages below */
437 
438 	if (argc > 2 || argc < 1) {
439 		dnerror(dnp, D_TRUNC_PROTO,
440 		    "%s( ) prototype mismatch: %d args passed, %s expected\n",
441 		    dnp->dn_ident->di_name, argc,
442 		    argc < 1 ? "at least 1" : "no more than 2");
443 	}
444 
445 	anp = dnp->dn_args;
446 	assert(anp != NULL);
447 	trunc = anp->dn_list;
448 
449 	if (anp->dn_kind != DT_NODE_AGG) {
450 		dnerror(dnp, D_TRUNC_AGGARG,
451 		    "%s( ) argument #1 is incompatible with prototype:\n"
452 		    "\tprototype: aggregation\n\t argument: %s\n",
453 		    dnp->dn_ident->di_name,
454 		    dt_node_type_name(anp, n, sizeof (n)));
455 	}
456 
457 	if (argc == 2) {
458 		assert(trunc != NULL);
459 		if (!dt_node_is_scalar(trunc)) {
460 			dnerror(dnp, D_TRUNC_SCALAR,
461 			    "%s( ) argument #2 must be of scalar type\n",
462 			    dnp->dn_ident->di_name);
463 		}
464 	}
465 
466 	aid = anp->dn_ident;
467 
468 	if (aid->di_gen == dtp->dt_gen && !(aid->di_flags & DT_IDFLG_MOD)) {
469 		dnerror(dnp, D_TRUNC_AGGBAD,
470 		    "undefined aggregation: @%s\n", aid->di_name);
471 	}
472 
473 	ap = dt_stmt_action(dtp, sdp);
474 	dt_action_difconst(ap, anp->dn_ident->di_id, DTRACEACT_LIBACT);
475 	ap->dtad_arg = DT_ACT_TRUNC;
476 
477 	ap = dt_stmt_action(dtp, sdp);
478 
479 	if (argc == 1) {
480 		dt_action_difconst(ap, 0, DTRACEACT_LIBACT);
481 	} else {
482 		assert(trunc != NULL);
483 		dt_cg(yypcb, trunc);
484 		ap->dtad_difo = dt_as(yypcb);
485 		ap->dtad_kind = DTRACEACT_LIBACT;
486 	}
487 
488 	ap->dtad_arg = DT_ACT_TRUNC;
489 }
490 
491 static void
492 dt_action_printa(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
493 {
494 	dt_ident_t *aid, *fid;
495 	dtrace_actdesc_t *ap;
496 	const char *format;
497 	dt_node_t *anp, *proto = NULL;
498 
499 	char n[DT_TYPE_NAMELEN];
500 	int argc = 0, argr = 0;
501 
502 	for (anp = dnp->dn_args; anp != NULL; anp = anp->dn_list)
503 		argc++; /* count up arguments for error messages below */
504 
505 	if (dnp->dn_args != NULL) {
506 		switch (dnp->dn_args->dn_kind) {
507 		case DT_NODE_STRING:
508 			format = dnp->dn_args->dn_string;
509 			anp = dnp->dn_args->dn_list;
510 			argr = 2;
511 			break;
512 		case DT_NODE_AGG:
513 			format = NULL;
514 			anp = dnp->dn_args;
515 			argr = 1;
516 			break;
517 		default:
518 			format = NULL;
519 			anp = dnp->dn_args;
520 			argr = 1;
521 		}
522 	}
523 
524 	if (argc < argr) {
525 		dnerror(dnp, D_PRINTA_PROTO,
526 		    "%s( ) prototype mismatch: %d args passed, %d expected\n",
527 		    dnp->dn_ident->di_name, argc, argr);
528 	}
529 
530 	assert(anp != NULL);
531 
532 	while (anp != NULL) {
533 		if (anp->dn_kind != DT_NODE_AGG) {
534 			dnerror(dnp, D_PRINTA_AGGARG,
535 			    "%s( ) argument #%d is incompatible with "
536 			    "prototype:\n\tprototype: aggregation\n"
537 			    "\t argument: %s\n", dnp->dn_ident->di_name, argr,
538 			    dt_node_type_name(anp, n, sizeof (n)));
539 		}
540 
541 		aid = anp->dn_ident;
542 		fid = aid->di_iarg;
543 
544 		if (aid->di_gen == dtp->dt_gen &&
545 		    !(aid->di_flags & DT_IDFLG_MOD)) {
546 			dnerror(dnp, D_PRINTA_AGGBAD,
547 			    "undefined aggregation: @%s\n", aid->di_name);
548 		}
549 
550 		/*
551 		 * If we have multiple aggregations, we must be sure that
552 		 * their key signatures match.
553 		 */
554 		if (proto != NULL) {
555 			dt_printa_validate(proto, anp);
556 		} else {
557 			proto = anp;
558 		}
559 
560 		if (format != NULL) {
561 			yylineno = dnp->dn_line;
562 
563 			sdp->dtsd_fmtdata =
564 			    dt_printf_create(yypcb->pcb_hdl, format);
565 			dt_printf_validate(sdp->dtsd_fmtdata,
566 			    DT_PRINTF_AGGREGATION, dnp->dn_ident, 1,
567 			    fid->di_id, ((dt_idsig_t *)aid->di_data)->dis_args);
568 			format = NULL;
569 		}
570 
571 		ap = dt_stmt_action(dtp, sdp);
572 		dt_action_difconst(ap, anp->dn_ident->di_id, DTRACEACT_PRINTA);
573 
574 		anp = anp->dn_list;
575 		argr++;
576 	}
577 }
578 
579 static void
580 dt_action_printflike(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp,
581     dtrace_actkind_t kind)
582 {
583 	dt_node_t *anp, *arg1;
584 	dtrace_actdesc_t *ap = NULL;
585 	char n[DT_TYPE_NAMELEN], *str;
586 
587 	assert(DTRACEACT_ISPRINTFLIKE(kind));
588 
589 	if (dnp->dn_args->dn_kind != DT_NODE_STRING) {
590 		dnerror(dnp, D_PRINTF_ARG_FMT,
591 		    "%s( ) argument #1 is incompatible with prototype:\n"
592 		    "\tprototype: string constant\n\t argument: %s\n",
593 		    dnp->dn_ident->di_name,
594 		    dt_node_type_name(dnp->dn_args, n, sizeof (n)));
595 	}
596 
597 	arg1 = dnp->dn_args->dn_list;
598 	yylineno = dnp->dn_line;
599 	str = dnp->dn_args->dn_string;
600 
601 
602 	/*
603 	 * If this is an freopen(), we use an empty string to denote that
604 	 * stdout should be restored.  For other printf()-like actions, an
605 	 * empty format string is illegal:  an empty format string would
606 	 * result in malformed DOF, and the compiler thus flags an empty
607 	 * format string as a compile-time error.  To avoid propagating the
608 	 * freopen() special case throughout the system, we simply transpose
609 	 * an empty string into a sentinel string (DT_FREOPEN_RESTORE) that
610 	 * denotes that stdout should be restored.
611 	 */
612 	if (kind == DTRACEACT_FREOPEN) {
613 		if (strcmp(str, DT_FREOPEN_RESTORE) == 0) {
614 			/*
615 			 * Our sentinel is always an invalid argument to
616 			 * freopen(), but if it's been manually specified, we
617 			 * must fail now instead of when the freopen() is
618 			 * actually evaluated.
619 			 */
620 			dnerror(dnp, D_FREOPEN_INVALID,
621 			    "%s( ) argument #1 cannot be \"%s\"\n",
622 			    dnp->dn_ident->di_name, DT_FREOPEN_RESTORE);
623 		}
624 
625 		if (str[0] == '\0')
626 			str = DT_FREOPEN_RESTORE;
627 	}
628 
629 	sdp->dtsd_fmtdata = dt_printf_create(dtp, str);
630 
631 	dt_printf_validate(sdp->dtsd_fmtdata, DT_PRINTF_EXACTLEN,
632 	    dnp->dn_ident, 1, DTRACEACT_AGGREGATION, arg1);
633 
634 	if (arg1 == NULL) {
635 		dif_instr_t *dbuf;
636 		dtrace_difo_t *dp;
637 
638 		if ((dbuf = dt_alloc(dtp, sizeof (dif_instr_t))) == NULL ||
639 		    (dp = dt_zalloc(dtp, sizeof (dtrace_difo_t))) == NULL) {
640 			dt_free(dtp, dbuf);
641 			longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
642 		}
643 
644 		dbuf[0] = DIF_INSTR_RET(DIF_REG_R0); /* ret %r0 */
645 
646 		dp->dtdo_buf = dbuf;
647 		dp->dtdo_len = 1;
648 		dp->dtdo_rtype = dt_int_rtype;
649 
650 		ap = dt_stmt_action(dtp, sdp);
651 		ap->dtad_difo = dp;
652 		ap->dtad_kind = kind;
653 		return;
654 	}
655 
656 	for (anp = arg1; anp != NULL; anp = anp->dn_list) {
657 		ap = dt_stmt_action(dtp, sdp);
658 		dt_cg(yypcb, anp);
659 		ap->dtad_difo = dt_as(yypcb);
660 		ap->dtad_kind = kind;
661 	}
662 }
663 
664 static void
665 dt_action_trace(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
666 {
667 	int ctflib;
668 
669 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
670 	boolean_t istrace = (dnp->dn_ident->di_id == DT_ACT_TRACE);
671 	const char *act = istrace ?  "trace" : "print";
672 
673 	if (dt_node_is_void(dnp->dn_args)) {
674 		dnerror(dnp->dn_args, istrace ? D_TRACE_VOID : D_PRINT_VOID,
675 		    "%s( ) may not be applied to a void expression\n", act);
676 	}
677 
678 	if (dt_node_resolve(dnp->dn_args, DT_IDENT_XLPTR) != NULL) {
679 		dnerror(dnp->dn_args, istrace ? D_TRACE_DYN : D_PRINT_DYN,
680 		    "%s( ) may not be applied to a translated pointer\n", act);
681 	}
682 
683 	if (dnp->dn_args->dn_kind == DT_NODE_AGG) {
684 		dnerror(dnp->dn_args, istrace ? D_TRACE_AGG : D_PRINT_AGG,
685 		    "%s( ) may not be applied to an aggregation%s\n", act,
686 		    istrace ? "" : " -- did you mean printa()?");
687 	}
688 
689 	dt_cg(yypcb, dnp->dn_args);
690 
691 	/*
692 	 * The print() action behaves identically to trace(), except that it
693 	 * stores the CTF type of the argument (if present) within the DOF for
694 	 * the DIFEXPR action.  To do this, we set the 'dtsd_strdata' to point
695 	 * to the fully-qualified CTF type ID for the result of the DIF
696 	 * action.  We use the ID instead of the name to handles complex types
697 	 * like arrays and function pointers that can't be resolved by
698 	 * ctf_type_lookup().  This is later processed by dtrace_dof_create()
699 	 * and turned into a reference into the string table so that we can
700 	 * get the type information when we process the data after the fact.  In
701 	 * the case where we are referring to userland CTF data, we also need to
702 	 * to identify which ctf container in question we care about and encode
703 	 * that within the name.
704 	 */
705 	if (dnp->dn_ident->di_id == DT_ACT_PRINT) {
706 		dt_node_t *dret;
707 		size_t n;
708 		dt_module_t *dmp;
709 
710 		dret = yypcb->pcb_dret;
711 		dmp = dt_module_lookup_by_ctf(dtp, dret->dn_ctfp);
712 
713 		if (dmp->dm_pid != 0) {
714 			ctflib = dt_module_getlibid(dtp, dmp, dret->dn_ctfp);
715 			assert(ctflib >= 0);
716 			n = snprintf(NULL, 0, "%s`%d`%d", dmp->dm_name,
717 			    ctflib, dret->dn_type) + 1;
718 		} else {
719 			n = snprintf(NULL, 0, "%s`%d", dmp->dm_name,
720 			    dret->dn_type) + 1;
721 		}
722 		sdp->dtsd_strdata = dt_alloc(dtp, n);
723 		if (sdp->dtsd_strdata == NULL)
724 			longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
725 		if (dmp->dm_pid != 0) {
726 			(void) snprintf(sdp->dtsd_strdata, n, "%s`%d`%d",
727 			    dmp->dm_name, ctflib, dret->dn_type);
728 		} else {
729 			(void) snprintf(sdp->dtsd_strdata, n, "%s`%d",
730 			    dmp->dm_name, dret->dn_type);
731 		}
732 	}
733 
734 	ap->dtad_difo = dt_as(yypcb);
735 	ap->dtad_kind = DTRACEACT_DIFEXPR;
736 }
737 
738 static void
739 dt_action_tracemem(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
740 {
741 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
742 
743 	dt_node_t *addr = dnp->dn_args;
744 	dt_node_t *max = dnp->dn_args->dn_list;
745 	dt_node_t *size;
746 
747 	char n[DT_TYPE_NAMELEN];
748 
749 	if (dt_node_is_integer(addr) == 0 && dt_node_is_pointer(addr) == 0) {
750 		dnerror(addr, D_TRACEMEM_ADDR,
751 		    "tracemem( ) argument #1 is incompatible with "
752 		    "prototype:\n\tprototype: pointer or integer\n"
753 		    "\t argument: %s\n",
754 		    dt_node_type_name(addr, n, sizeof (n)));
755 	}
756 
757 	if (dt_node_is_posconst(max) == 0) {
758 		dnerror(max, D_TRACEMEM_SIZE, "tracemem( ) argument #2 must "
759 		    "be a non-zero positive integral constant expression\n");
760 	}
761 
762 	if ((size = max->dn_list) != NULL) {
763 		if (size->dn_list != NULL) {
764 			dnerror(size, D_TRACEMEM_ARGS, "tracemem ( ) prototype "
765 			    "mismatch: expected at most 3 args\n");
766 		}
767 
768 		if (!dt_node_is_scalar(size)) {
769 			dnerror(size, D_TRACEMEM_DYNSIZE, "tracemem ( ) "
770 			    "dynamic size (argument #3) must be of "
771 			    "scalar type\n");
772 		}
773 
774 		dt_cg(yypcb, size);
775 		ap->dtad_difo = dt_as(yypcb);
776 		ap->dtad_difo->dtdo_rtype = dt_int_rtype;
777 		ap->dtad_kind = DTRACEACT_TRACEMEM_DYNSIZE;
778 
779 		ap = dt_stmt_action(dtp, sdp);
780 	}
781 
782 	dt_cg(yypcb, addr);
783 	ap->dtad_difo = dt_as(yypcb);
784 	ap->dtad_kind = DTRACEACT_TRACEMEM;
785 
786 	ap->dtad_difo->dtdo_rtype.dtdt_flags |= DIF_TF_BYREF;
787 	ap->dtad_difo->dtdo_rtype.dtdt_size = max->dn_value;
788 }
789 
790 static void
791 dt_action_stack_args(dtrace_hdl_t *dtp, dtrace_actdesc_t *ap, dt_node_t *arg0)
792 {
793 	ap->dtad_kind = DTRACEACT_STACK;
794 
795 	if (dtp->dt_options[DTRACEOPT_STACKFRAMES] != DTRACEOPT_UNSET) {
796 		ap->dtad_arg = dtp->dt_options[DTRACEOPT_STACKFRAMES];
797 	} else {
798 		ap->dtad_arg = 0;
799 	}
800 
801 	if (arg0 != NULL) {
802 		if (arg0->dn_list != NULL) {
803 			dnerror(arg0, D_STACK_PROTO, "stack( ) prototype "
804 			    "mismatch: too many arguments\n");
805 		}
806 
807 		if (dt_node_is_posconst(arg0) == 0) {
808 			dnerror(arg0, D_STACK_SIZE, "stack( ) size must be a "
809 			    "non-zero positive integral constant expression\n");
810 		}
811 
812 		ap->dtad_arg = arg0->dn_value;
813 	}
814 }
815 
816 static void
817 dt_action_stack(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
818 {
819 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
820 	dt_action_stack_args(dtp, ap, dnp->dn_args);
821 }
822 
823 static void
824 dt_action_ustack_args(dtrace_hdl_t *dtp, dtrace_actdesc_t *ap, dt_node_t *dnp)
825 {
826 	uint32_t nframes = 0;
827 	uint32_t strsize = 0;	/* default string table size */
828 	dt_node_t *arg0 = dnp->dn_args;
829 	dt_node_t *arg1 = arg0 != NULL ? arg0->dn_list : NULL;
830 
831 	assert(dnp->dn_ident->di_id == DT_ACT_JSTACK ||
832 	    dnp->dn_ident->di_id == DT_ACT_USTACK);
833 
834 	if (dnp->dn_ident->di_id == DT_ACT_JSTACK) {
835 		if (dtp->dt_options[DTRACEOPT_JSTACKFRAMES] != DTRACEOPT_UNSET)
836 			nframes = dtp->dt_options[DTRACEOPT_JSTACKFRAMES];
837 
838 		if (dtp->dt_options[DTRACEOPT_JSTACKSTRSIZE] != DTRACEOPT_UNSET)
839 			strsize = dtp->dt_options[DTRACEOPT_JSTACKSTRSIZE];
840 
841 		ap->dtad_kind = DTRACEACT_JSTACK;
842 	} else {
843 		assert(dnp->dn_ident->di_id == DT_ACT_USTACK);
844 
845 		if (dtp->dt_options[DTRACEOPT_USTACKFRAMES] != DTRACEOPT_UNSET)
846 			nframes = dtp->dt_options[DTRACEOPT_USTACKFRAMES];
847 
848 		ap->dtad_kind = DTRACEACT_USTACK;
849 	}
850 
851 	if (arg0 != NULL) {
852 		if (!dt_node_is_posconst(arg0)) {
853 			dnerror(arg0, D_USTACK_FRAMES, "ustack( ) argument #1 "
854 			    "must be a non-zero positive integer constant\n");
855 		}
856 		nframes = (uint32_t)arg0->dn_value;
857 	}
858 
859 	if (arg1 != NULL) {
860 		if (arg1->dn_kind != DT_NODE_INT ||
861 		    ((arg1->dn_flags & DT_NF_SIGNED) &&
862 		    (int64_t)arg1->dn_value < 0)) {
863 			dnerror(arg1, D_USTACK_STRSIZE, "ustack( ) argument #2 "
864 			    "must be a positive integer constant\n");
865 		}
866 
867 		if (arg1->dn_list != NULL) {
868 			dnerror(arg1, D_USTACK_PROTO, "ustack( ) prototype "
869 			    "mismatch: too many arguments\n");
870 		}
871 
872 		strsize = (uint32_t)arg1->dn_value;
873 	}
874 
875 	ap->dtad_arg = DTRACE_USTACK_ARG(nframes, strsize);
876 }
877 
878 static void
879 dt_action_ustack(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
880 {
881 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
882 	dt_action_ustack_args(dtp, ap, dnp);
883 }
884 
885 static void
886 dt_action_setopt(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
887 {
888 	dtrace_actdesc_t *ap;
889 	dt_node_t *arg0, *arg1;
890 
891 	/*
892 	 * The prototype guarantees that we are called with either one or
893 	 * two arguments, and that any arguments that are present are strings.
894 	 */
895 	arg0 = dnp->dn_args;
896 	arg1 = arg0->dn_list;
897 
898 	ap = dt_stmt_action(dtp, sdp);
899 	dt_cg(yypcb, arg0);
900 	ap->dtad_difo = dt_as(yypcb);
901 	ap->dtad_kind = DTRACEACT_LIBACT;
902 	ap->dtad_arg = DT_ACT_SETOPT;
903 
904 	ap = dt_stmt_action(dtp, sdp);
905 
906 	if (arg1 == NULL) {
907 		dt_action_difconst(ap, 0, DTRACEACT_LIBACT);
908 	} else {
909 		dt_cg(yypcb, arg1);
910 		ap->dtad_difo = dt_as(yypcb);
911 		ap->dtad_kind = DTRACEACT_LIBACT;
912 	}
913 
914 	ap->dtad_arg = DT_ACT_SETOPT;
915 }
916 
917 /*ARGSUSED*/
918 static void
919 dt_action_symmod_args(dtrace_hdl_t *dtp, dtrace_actdesc_t *ap,
920     dt_node_t *dnp, dtrace_actkind_t kind)
921 {
922 	assert(kind == DTRACEACT_SYM || kind == DTRACEACT_MOD ||
923 	    kind == DTRACEACT_USYM || kind == DTRACEACT_UMOD ||
924 	    kind == DTRACEACT_UADDR);
925 
926 	dt_cg(yypcb, dnp);
927 	ap->dtad_difo = dt_as(yypcb);
928 	ap->dtad_kind = kind;
929 	ap->dtad_difo->dtdo_rtype.dtdt_size = sizeof (uint64_t);
930 }
931 
932 static void
933 dt_action_symmod(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp,
934     dtrace_actkind_t kind)
935 {
936 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
937 	dt_action_symmod_args(dtp, ap, dnp->dn_args, kind);
938 }
939 
940 /*ARGSUSED*/
941 static void
942 dt_action_ftruncate(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
943 {
944 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
945 
946 	/*
947 	 * Library actions need a DIFO that serves as an argument.  As
948 	 * ftruncate() doesn't take an argument, we generate the constant 0
949 	 * in a DIFO; this constant will be ignored when the ftruncate() is
950 	 * processed.
951 	 */
952 	dt_action_difconst(ap, 0, DTRACEACT_LIBACT);
953 	ap->dtad_arg = DT_ACT_FTRUNCATE;
954 }
955 
956 /*ARGSUSED*/
957 static void
958 dt_action_stop(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
959 {
960 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
961 
962 	ap->dtad_kind = DTRACEACT_STOP;
963 	ap->dtad_arg = 0;
964 }
965 
966 /*ARGSUSED*/
967 static void
968 dt_action_breakpoint(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
969 {
970 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
971 
972 	ap->dtad_kind = DTRACEACT_BREAKPOINT;
973 	ap->dtad_arg = 0;
974 }
975 
976 /*ARGSUSED*/
977 static void
978 dt_action_panic(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
979 {
980 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
981 
982 	ap->dtad_kind = DTRACEACT_PANIC;
983 	ap->dtad_arg = 0;
984 }
985 
986 static void
987 dt_action_chill(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
988 {
989 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
990 
991 	dt_cg(yypcb, dnp->dn_args);
992 	ap->dtad_difo = dt_as(yypcb);
993 	ap->dtad_kind = DTRACEACT_CHILL;
994 }
995 
996 static void
997 dt_action_raise(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
998 {
999 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
1000 
1001 	dt_cg(yypcb, dnp->dn_args);
1002 	ap->dtad_difo = dt_as(yypcb);
1003 	ap->dtad_kind = DTRACEACT_RAISE;
1004 }
1005 
1006 static void
1007 dt_action_exit(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1008 {
1009 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
1010 
1011 	dt_cg(yypcb, dnp->dn_args);
1012 	ap->dtad_difo = dt_as(yypcb);
1013 	ap->dtad_kind = DTRACEACT_EXIT;
1014 	ap->dtad_difo->dtdo_rtype.dtdt_size = sizeof (int);
1015 }
1016 
1017 static void
1018 dt_action_speculate(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1019 {
1020 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
1021 
1022 	dt_cg(yypcb, dnp->dn_args);
1023 	ap->dtad_difo = dt_as(yypcb);
1024 	ap->dtad_kind = DTRACEACT_SPECULATE;
1025 }
1026 
1027 static void
1028 dt_action_commit(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1029 {
1030 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
1031 
1032 	dt_cg(yypcb, dnp->dn_args);
1033 	ap->dtad_difo = dt_as(yypcb);
1034 	ap->dtad_kind = DTRACEACT_COMMIT;
1035 }
1036 
1037 static void
1038 dt_action_discard(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1039 {
1040 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
1041 
1042 	dt_cg(yypcb, dnp->dn_args);
1043 	ap->dtad_difo = dt_as(yypcb);
1044 	ap->dtad_kind = DTRACEACT_DISCARD;
1045 }
1046 
1047 static void
1048 dt_compile_fun(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1049 {
1050 	switch (dnp->dn_expr->dn_ident->di_id) {
1051 	case DT_ACT_BREAKPOINT:
1052 		dt_action_breakpoint(dtp, dnp->dn_expr, sdp);
1053 		break;
1054 	case DT_ACT_CHILL:
1055 		dt_action_chill(dtp, dnp->dn_expr, sdp);
1056 		break;
1057 	case DT_ACT_CLEAR:
1058 		dt_action_clear(dtp, dnp->dn_expr, sdp);
1059 		break;
1060 	case DT_ACT_COMMIT:
1061 		dt_action_commit(dtp, dnp->dn_expr, sdp);
1062 		break;
1063 	case DT_ACT_DENORMALIZE:
1064 		dt_action_normalize(dtp, dnp->dn_expr, sdp);
1065 		break;
1066 	case DT_ACT_DISCARD:
1067 		dt_action_discard(dtp, dnp->dn_expr, sdp);
1068 		break;
1069 	case DT_ACT_EXIT:
1070 		dt_action_exit(dtp, dnp->dn_expr, sdp);
1071 		break;
1072 	case DT_ACT_FREOPEN:
1073 		dt_action_printflike(dtp, dnp->dn_expr, sdp, DTRACEACT_FREOPEN);
1074 		break;
1075 	case DT_ACT_FTRUNCATE:
1076 		dt_action_ftruncate(dtp, dnp->dn_expr, sdp);
1077 		break;
1078 	case DT_ACT_MOD:
1079 		dt_action_symmod(dtp, dnp->dn_expr, sdp, DTRACEACT_MOD);
1080 		break;
1081 	case DT_ACT_NORMALIZE:
1082 		dt_action_normalize(dtp, dnp->dn_expr, sdp);
1083 		break;
1084 	case DT_ACT_PANIC:
1085 		dt_action_panic(dtp, dnp->dn_expr, sdp);
1086 		break;
1087 	case DT_ACT_PRINT:
1088 		dt_action_trace(dtp, dnp->dn_expr, sdp);
1089 		break;
1090 	case DT_ACT_PRINTA:
1091 		dt_action_printa(dtp, dnp->dn_expr, sdp);
1092 		break;
1093 	case DT_ACT_PRINTF:
1094 		dt_action_printflike(dtp, dnp->dn_expr, sdp, DTRACEACT_PRINTF);
1095 		break;
1096 	case DT_ACT_RAISE:
1097 		dt_action_raise(dtp, dnp->dn_expr, sdp);
1098 		break;
1099 	case DT_ACT_SETOPT:
1100 		dt_action_setopt(dtp, dnp->dn_expr, sdp);
1101 		break;
1102 	case DT_ACT_SPECULATE:
1103 		dt_action_speculate(dtp, dnp->dn_expr, sdp);
1104 		break;
1105 	case DT_ACT_STACK:
1106 		dt_action_stack(dtp, dnp->dn_expr, sdp);
1107 		break;
1108 	case DT_ACT_STOP:
1109 		dt_action_stop(dtp, dnp->dn_expr, sdp);
1110 		break;
1111 	case DT_ACT_SYM:
1112 		dt_action_symmod(dtp, dnp->dn_expr, sdp, DTRACEACT_SYM);
1113 		break;
1114 	case DT_ACT_SYSTEM:
1115 		dt_action_printflike(dtp, dnp->dn_expr, sdp, DTRACEACT_SYSTEM);
1116 		break;
1117 	case DT_ACT_TRACE:
1118 		dt_action_trace(dtp, dnp->dn_expr, sdp);
1119 		break;
1120 	case DT_ACT_TRACEMEM:
1121 		dt_action_tracemem(dtp, dnp->dn_expr, sdp);
1122 		break;
1123 	case DT_ACT_TRUNC:
1124 		dt_action_trunc(dtp, dnp->dn_expr, sdp);
1125 		break;
1126 	case DT_ACT_UADDR:
1127 		dt_action_symmod(dtp, dnp->dn_expr, sdp, DTRACEACT_UADDR);
1128 		break;
1129 	case DT_ACT_UMOD:
1130 		dt_action_symmod(dtp, dnp->dn_expr, sdp, DTRACEACT_UMOD);
1131 		break;
1132 	case DT_ACT_USYM:
1133 		dt_action_symmod(dtp, dnp->dn_expr, sdp, DTRACEACT_USYM);
1134 		break;
1135 	case DT_ACT_USTACK:
1136 	case DT_ACT_JSTACK:
1137 		dt_action_ustack(dtp, dnp->dn_expr, sdp);
1138 		break;
1139 	default:
1140 		dnerror(dnp->dn_expr, D_UNKNOWN, "tracing function %s( ) is "
1141 		    "not yet supported\n", dnp->dn_expr->dn_ident->di_name);
1142 	}
1143 }
1144 
1145 static void
1146 dt_compile_exp(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1147 {
1148 	dtrace_actdesc_t *ap = dt_stmt_action(dtp, sdp);
1149 
1150 	dt_cg(yypcb, dnp->dn_expr);
1151 	ap->dtad_difo = dt_as(yypcb);
1152 	ap->dtad_difo->dtdo_rtype = dt_void_rtype;
1153 	ap->dtad_kind = DTRACEACT_DIFEXPR;
1154 }
1155 
1156 static void
1157 dt_compile_agg(dtrace_hdl_t *dtp, dt_node_t *dnp, dtrace_stmtdesc_t *sdp)
1158 {
1159 	dt_ident_t *aid, *fid;
1160 	dt_node_t *anp, *incr = NULL;
1161 	dtrace_actdesc_t *ap;
1162 	uint_t n = 1, argmax;
1163 	uint64_t arg = 0;
1164 
1165 	/*
1166 	 * If the aggregation has no aggregating function applied to it, then
1167 	 * this statement has no effect.  Flag this as a programming error.
1168 	 */
1169 	if (dnp->dn_aggfun == NULL) {
1170 		dnerror(dnp, D_AGG_NULL, "expression has null effect: @%s\n",
1171 		    dnp->dn_ident->di_name);
1172 	}
1173 
1174 	aid = dnp->dn_ident;
1175 	fid = dnp->dn_aggfun->dn_ident;
1176 
1177 	if (dnp->dn_aggfun->dn_args != NULL &&
1178 	    dt_node_is_scalar(dnp->dn_aggfun->dn_args) == 0) {
1179 		dnerror(dnp->dn_aggfun, D_AGG_SCALAR, "%s( ) argument #1 must "
1180 		    "be of scalar type\n", fid->di_name);
1181 	}
1182 
1183 	/*
1184 	 * The ID of the aggregation itself is implicitly recorded as the first
1185 	 * member of each aggregation tuple so we can distinguish them later.
1186 	 */
1187 	ap = dt_stmt_action(dtp, sdp);
1188 	dt_action_difconst(ap, aid->di_id, DTRACEACT_DIFEXPR);
1189 
1190 	for (anp = dnp->dn_aggtup; anp != NULL; anp = anp->dn_list) {
1191 		ap = dt_stmt_action(dtp, sdp);
1192 		n++;
1193 
1194 		if (anp->dn_kind == DT_NODE_FUNC) {
1195 			if (anp->dn_ident->di_id == DT_ACT_STACK) {
1196 				dt_action_stack_args(dtp, ap, anp->dn_args);
1197 				continue;
1198 			}
1199 
1200 			if (anp->dn_ident->di_id == DT_ACT_USTACK ||
1201 			    anp->dn_ident->di_id == DT_ACT_JSTACK) {
1202 				dt_action_ustack_args(dtp, ap, anp);
1203 				continue;
1204 			}
1205 
1206 			switch (anp->dn_ident->di_id) {
1207 			case DT_ACT_UADDR:
1208 				dt_action_symmod_args(dtp, ap,
1209 				    anp->dn_args, DTRACEACT_UADDR);
1210 				continue;
1211 
1212 			case DT_ACT_USYM:
1213 				dt_action_symmod_args(dtp, ap,
1214 				    anp->dn_args, DTRACEACT_USYM);
1215 				continue;
1216 
1217 			case DT_ACT_UMOD:
1218 				dt_action_symmod_args(dtp, ap,
1219 				    anp->dn_args, DTRACEACT_UMOD);
1220 				continue;
1221 
1222 			case DT_ACT_SYM:
1223 				dt_action_symmod_args(dtp, ap,
1224 				    anp->dn_args, DTRACEACT_SYM);
1225 				continue;
1226 
1227 			case DT_ACT_MOD:
1228 				dt_action_symmod_args(dtp, ap,
1229 				    anp->dn_args, DTRACEACT_MOD);
1230 				continue;
1231 
1232 			default:
1233 				break;
1234 			}
1235 		}
1236 
1237 		dt_cg(yypcb, anp);
1238 		ap->dtad_difo = dt_as(yypcb);
1239 		ap->dtad_kind = DTRACEACT_DIFEXPR;
1240 	}
1241 
1242 	if (fid->di_id == DTRACEAGG_LQUANTIZE) {
1243 		/*
1244 		 * For linear quantization, we have between two and four
1245 		 * arguments in addition to the expression:
1246 		 *
1247 		 *    arg1 => Base value
1248 		 *    arg2 => Limit value
1249 		 *    arg3 => Quantization level step size (defaults to 1)
1250 		 *    arg4 => Quantization increment value (defaults to 1)
1251 		 */
1252 		dt_node_t *arg1 = dnp->dn_aggfun->dn_args->dn_list;
1253 		dt_node_t *arg2 = arg1->dn_list;
1254 		dt_node_t *arg3 = arg2->dn_list;
1255 		dt_idsig_t *isp;
1256 		uint64_t nlevels, step = 1, oarg;
1257 		int64_t baseval, limitval;
1258 
1259 		if (arg1->dn_kind != DT_NODE_INT) {
1260 			dnerror(arg1, D_LQUANT_BASETYPE, "lquantize( ) "
1261 			    "argument #1 must be an integer constant\n");
1262 		}
1263 
1264 		baseval = (int64_t)arg1->dn_value;
1265 
1266 		if (baseval < INT32_MIN || baseval > INT32_MAX) {
1267 			dnerror(arg1, D_LQUANT_BASEVAL, "lquantize( ) "
1268 			    "argument #1 must be a 32-bit quantity\n");
1269 		}
1270 
1271 		if (arg2->dn_kind != DT_NODE_INT) {
1272 			dnerror(arg2, D_LQUANT_LIMTYPE, "lquantize( ) "
1273 			    "argument #2 must be an integer constant\n");
1274 		}
1275 
1276 		limitval = (int64_t)arg2->dn_value;
1277 
1278 		if (limitval < INT32_MIN || limitval > INT32_MAX) {
1279 			dnerror(arg2, D_LQUANT_LIMVAL, "lquantize( ) "
1280 			    "argument #2 must be a 32-bit quantity\n");
1281 		}
1282 
1283 		if (limitval < baseval) {
1284 			dnerror(dnp, D_LQUANT_MISMATCH,
1285 			    "lquantize( ) base (argument #1) must be less "
1286 			    "than limit (argument #2)\n");
1287 		}
1288 
1289 		if (arg3 != NULL) {
1290 			if (!dt_node_is_posconst(arg3)) {
1291 				dnerror(arg3, D_LQUANT_STEPTYPE, "lquantize( ) "
1292 				    "argument #3 must be a non-zero positive "
1293 				    "integer constant\n");
1294 			}
1295 
1296 			if ((step = arg3->dn_value) > UINT16_MAX) {
1297 				dnerror(arg3, D_LQUANT_STEPVAL, "lquantize( ) "
1298 				    "argument #3 must be a 16-bit quantity\n");
1299 			}
1300 		}
1301 
1302 		nlevels = (limitval - baseval) / step;
1303 
1304 		if (nlevels == 0) {
1305 			dnerror(dnp, D_LQUANT_STEPLARGE,
1306 			    "lquantize( ) step (argument #3) too large: must "
1307 			    "have at least one quantization level\n");
1308 		}
1309 
1310 		if (nlevels > UINT16_MAX) {
1311 			dnerror(dnp, D_LQUANT_STEPSMALL, "lquantize( ) step "
1312 			    "(argument #3) too small: number of quantization "
1313 			    "levels must be a 16-bit quantity\n");
1314 		}
1315 
1316 		arg = (step << DTRACE_LQUANTIZE_STEPSHIFT) |
1317 		    (nlevels << DTRACE_LQUANTIZE_LEVELSHIFT) |
1318 		    ((baseval << DTRACE_LQUANTIZE_BASESHIFT) &
1319 		    DTRACE_LQUANTIZE_BASEMASK);
1320 
1321 		assert(arg != 0);
1322 
1323 		isp = (dt_idsig_t *)aid->di_data;
1324 
1325 		if (isp->dis_auxinfo == 0) {
1326 			/*
1327 			 * This is the first time we've seen an lquantize()
1328 			 * for this aggregation; we'll store our argument
1329 			 * as the auxiliary signature information.
1330 			 */
1331 			isp->dis_auxinfo = arg;
1332 		} else if ((oarg = isp->dis_auxinfo) != arg) {
1333 			/*
1334 			 * If we have seen this lquantize() before and the
1335 			 * argument doesn't match the original argument, pick
1336 			 * the original argument apart to concisely report the
1337 			 * mismatch.
1338 			 */
1339 			int obaseval = DTRACE_LQUANTIZE_BASE(oarg);
1340 			int onlevels = DTRACE_LQUANTIZE_LEVELS(oarg);
1341 			int ostep = DTRACE_LQUANTIZE_STEP(oarg);
1342 
1343 			if (obaseval != baseval) {
1344 				dnerror(dnp, D_LQUANT_MATCHBASE, "lquantize( ) "
1345 				    "base (argument #1) doesn't match previous "
1346 				    "declaration: expected %d, found %d\n",
1347 				    obaseval, (int)baseval);
1348 			}
1349 
1350 			if (onlevels * ostep != nlevels * step) {
1351 				dnerror(dnp, D_LQUANT_MATCHLIM, "lquantize( ) "
1352 				    "limit (argument #2) doesn't match previous"
1353 				    " declaration: expected %d, found %d\n",
1354 				    obaseval + onlevels * ostep,
1355 				    (int)baseval + (int)nlevels * (int)step);
1356 			}
1357 
1358 			if (ostep != step) {
1359 				dnerror(dnp, D_LQUANT_MATCHSTEP, "lquantize( ) "
1360 				    "step (argument #3) doesn't match previous "
1361 				    "declaration: expected %d, found %d\n",
1362 				    ostep, (int)step);
1363 			}
1364 
1365 			/*
1366 			 * We shouldn't be able to get here -- one of the
1367 			 * parameters must be mismatched if the arguments
1368 			 * didn't match.
1369 			 */
1370 			assert(0);
1371 		}
1372 
1373 		incr = arg3 != NULL ? arg3->dn_list : NULL;
1374 		argmax = 5;
1375 	}
1376 
1377 	if (fid->di_id == DTRACEAGG_LLQUANTIZE) {
1378 		/*
1379 		 * For log/linear quantizations, we have between one and five
1380 		 * arguments in addition to the expression:
1381 		 *
1382 		 *    arg1 => Factor
1383 		 *    arg2 => Low magnitude
1384 		 *    arg3 => High magnitude
1385 		 *    arg4 => Number of steps per magnitude
1386 		 *    arg5 => Quantization increment value (defaults to 1)
1387 		 */
1388 		dt_node_t *llarg = dnp->dn_aggfun->dn_args->dn_list;
1389 		uint64_t oarg, order, v;
1390 		dt_idsig_t *isp;
1391 		int i;
1392 
1393 		struct {
1394 			char *str;		/* string identifier */
1395 			int badtype;		/* error on bad type */
1396 			int badval;		/* error on bad value */
1397 			int mismatch;		/* error on bad match */
1398 			int shift;		/* shift value */
1399 			uint16_t value;		/* value itself */
1400 		} args[] = {
1401 			{ "factor", D_LLQUANT_FACTORTYPE,
1402 			    D_LLQUANT_FACTORVAL, D_LLQUANT_FACTORMATCH,
1403 			    DTRACE_LLQUANTIZE_FACTORSHIFT },
1404 			{ "low magnitude", D_LLQUANT_LOWTYPE,
1405 			    D_LLQUANT_LOWVAL, D_LLQUANT_LOWMATCH,
1406 			    DTRACE_LLQUANTIZE_LOWSHIFT },
1407 			{ "high magnitude", D_LLQUANT_HIGHTYPE,
1408 			    D_LLQUANT_HIGHVAL, D_LLQUANT_HIGHMATCH,
1409 			    DTRACE_LLQUANTIZE_HIGHSHIFT },
1410 			{ "linear steps per magnitude", D_LLQUANT_NSTEPTYPE,
1411 			    D_LLQUANT_NSTEPVAL, D_LLQUANT_NSTEPMATCH,
1412 			    DTRACE_LLQUANTIZE_NSTEPSHIFT },
1413 			{ NULL }
1414 		};
1415 
1416 		assert(arg == 0);
1417 
1418 		for (i = 0; args[i].str != NULL; i++) {
1419 			if (llarg->dn_kind != DT_NODE_INT) {
1420 				dnerror(llarg, args[i].badtype, "llquantize( ) "
1421 				    "argument #%d (%s) must be an "
1422 				    "integer constant\n", i + 1, args[i].str);
1423 			}
1424 
1425 			if ((uint64_t)llarg->dn_value > UINT16_MAX) {
1426 				dnerror(llarg, args[i].badval, "llquantize( ) "
1427 				    "argument #%d (%s) must be an unsigned "
1428 				    "16-bit quantity\n", i + 1, args[i].str);
1429 			}
1430 
1431 			args[i].value = (uint16_t)llarg->dn_value;
1432 
1433 			assert(!(arg & (UINT16_MAX << args[i].shift)));
1434 			arg |= ((uint64_t)args[i].value << args[i].shift);
1435 			llarg = llarg->dn_list;
1436 		}
1437 
1438 		assert(arg != 0);
1439 
1440 		if (args[0].value < 2) {
1441 			dnerror(dnp, D_LLQUANT_FACTORSMALL, "llquantize( ) "
1442 			    "factor (argument #1) must be two or more\n");
1443 		}
1444 
1445 		if (args[1].value >= args[2].value) {
1446 			dnerror(dnp, D_LLQUANT_MAGRANGE, "llquantize( ) "
1447 			    "high magnitude (argument #3) must be greater "
1448 			    "than low magnitude (argument #2)\n");
1449 		}
1450 
1451 		if (args[3].value < args[0].value) {
1452 			dnerror(dnp, D_LLQUANT_FACTORNSTEPS, "llquantize( ) "
1453 			    "factor (argument #1) must be less than or "
1454 			    "equal to the number of linear steps per "
1455 			    "magnitude (argument #4)\n");
1456 		}
1457 
1458 		for (v = args[0].value; v < args[3].value; v *= args[0].value)
1459 			continue;
1460 
1461 		if ((args[3].value % args[0].value) || (v % args[3].value)) {
1462 			dnerror(dnp, D_LLQUANT_FACTOREVEN, "llquantize( ) "
1463 			    "factor (argument #1) must evenly divide the "
1464 			    "number of steps per magnitude (argument #4), "
1465 			    "and the number of steps per magnitude must evenly "
1466 			    "divide a power of the factor\n");
1467 		}
1468 
1469 		for (i = 0, order = 1; i < args[2].value; i++) {
1470 			if (order * args[0].value > order) {
1471 				order *= args[0].value;
1472 				continue;
1473 			}
1474 
1475 			dnerror(dnp, D_LLQUANT_MAGTOOBIG, "llquantize( ) "
1476 			    "factor (%d) raised to power of high magnitude "
1477 			    "(%d) overflows 64-bits\n", args[0].value,
1478 			    args[2].value);
1479 		}
1480 
1481 		isp = (dt_idsig_t *)aid->di_data;
1482 
1483 		if (isp->dis_auxinfo == 0) {
1484 			/*
1485 			 * This is the first time we've seen an llquantize()
1486 			 * for this aggregation; we'll store our argument
1487 			 * as the auxiliary signature information.
1488 			 */
1489 			isp->dis_auxinfo = arg;
1490 		} else if ((oarg = isp->dis_auxinfo) != arg) {
1491 			/*
1492 			 * If we have seen this llquantize() before and the
1493 			 * argument doesn't match the original argument, pick
1494 			 * the original argument apart to concisely report the
1495 			 * mismatch.
1496 			 */
1497 			int expected = 0, found = 0;
1498 
1499 			for (i = 0; expected == found; i++) {
1500 				assert(args[i].str != NULL);
1501 
1502 				expected = (oarg >> args[i].shift) & UINT16_MAX;
1503 				found = (arg >> args[i].shift) & UINT16_MAX;
1504 			}
1505 
1506 			dnerror(dnp, args[i - 1].mismatch, "llquantize( ) "
1507 			    "%s (argument #%d) doesn't match previous "
1508 			    "declaration: expected %d, found %d\n",
1509 			    args[i - 1].str, i, expected, found);
1510 		}
1511 
1512 		incr = llarg;
1513 		argmax = 6;
1514 	}
1515 
1516 	if (fid->di_id == DTRACEAGG_QUANTIZE) {
1517 		incr = dnp->dn_aggfun->dn_args->dn_list;
1518 		argmax = 2;
1519 	}
1520 
1521 	if (incr != NULL) {
1522 		if (!dt_node_is_scalar(incr)) {
1523 			dnerror(dnp, D_PROTO_ARG, "%s( ) increment value "
1524 			    "(argument #%d) must be of scalar type\n",
1525 			    fid->di_name, argmax);
1526 		}
1527 
1528 		if ((anp = incr->dn_list) != NULL) {
1529 			int argc = argmax;
1530 
1531 			for (; anp != NULL; anp = anp->dn_list)
1532 				argc++;
1533 
1534 			dnerror(incr, D_PROTO_LEN, "%s( ) prototype "
1535 			    "mismatch: %d args passed, at most %d expected",
1536 			    fid->di_name, argc, argmax);
1537 		}
1538 
1539 		ap = dt_stmt_action(dtp, sdp);
1540 		n++;
1541 
1542 		dt_cg(yypcb, incr);
1543 		ap->dtad_difo = dt_as(yypcb);
1544 		ap->dtad_difo->dtdo_rtype = dt_void_rtype;
1545 		ap->dtad_kind = DTRACEACT_DIFEXPR;
1546 	}
1547 
1548 	assert(sdp->dtsd_aggdata == NULL);
1549 	sdp->dtsd_aggdata = aid;
1550 
1551 	ap = dt_stmt_action(dtp, sdp);
1552 	assert(fid->di_kind == DT_IDENT_AGGFUNC);
1553 	assert(DTRACEACT_ISAGG(fid->di_id));
1554 	ap->dtad_kind = fid->di_id;
1555 	ap->dtad_ntuple = n;
1556 	ap->dtad_arg = arg;
1557 
1558 	if (dnp->dn_aggfun->dn_args != NULL) {
1559 		dt_cg(yypcb, dnp->dn_aggfun->dn_args);
1560 		ap->dtad_difo = dt_as(yypcb);
1561 	}
1562 }
1563 
1564 static void
1565 dt_compile_one_clause(dtrace_hdl_t *dtp, dt_node_t *cnp, dt_node_t *pnp)
1566 {
1567 	dtrace_ecbdesc_t *edp;
1568 	dtrace_stmtdesc_t *sdp;
1569 	dt_node_t *dnp;
1570 
1571 	yylineno = pnp->dn_line;
1572 	dt_setcontext(dtp, pnp->dn_desc);
1573 	(void) dt_node_cook(cnp, DT_IDFLG_REF);
1574 
1575 	if (DT_TREEDUMP_PASS(dtp, 2))
1576 		dt_node_printr(cnp, stderr, 0);
1577 
1578 	if ((edp = dt_ecbdesc_create(dtp, pnp->dn_desc)) == NULL)
1579 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
1580 
1581 	assert(yypcb->pcb_ecbdesc == NULL);
1582 	yypcb->pcb_ecbdesc = edp;
1583 
1584 	if (cnp->dn_pred != NULL) {
1585 		dt_cg(yypcb, cnp->dn_pred);
1586 		edp->dted_pred.dtpdd_difo = dt_as(yypcb);
1587 	}
1588 
1589 	if (cnp->dn_acts == NULL) {
1590 		dt_stmt_append(dt_stmt_create(dtp, edp,
1591 		    cnp->dn_ctxattr, _dtrace_defattr), cnp);
1592 	}
1593 
1594 	for (dnp = cnp->dn_acts; dnp != NULL; dnp = dnp->dn_list) {
1595 		assert(yypcb->pcb_stmt == NULL);
1596 		sdp = dt_stmt_create(dtp, edp, cnp->dn_ctxattr, cnp->dn_attr);
1597 
1598 		switch (dnp->dn_kind) {
1599 		case DT_NODE_DEXPR:
1600 			if (dnp->dn_expr->dn_kind == DT_NODE_AGG)
1601 				dt_compile_agg(dtp, dnp->dn_expr, sdp);
1602 			else
1603 				dt_compile_exp(dtp, dnp, sdp);
1604 			break;
1605 		case DT_NODE_DFUNC:
1606 			dt_compile_fun(dtp, dnp, sdp);
1607 			break;
1608 		case DT_NODE_AGG:
1609 			dt_compile_agg(dtp, dnp, sdp);
1610 			break;
1611 		default:
1612 			dnerror(dnp, D_UNKNOWN, "internal error -- node kind "
1613 			    "%u is not a valid statement\n", dnp->dn_kind);
1614 		}
1615 
1616 		assert(yypcb->pcb_stmt == sdp);
1617 		dt_stmt_append(sdp, dnp);
1618 	}
1619 
1620 	assert(yypcb->pcb_ecbdesc == edp);
1621 	dt_ecbdesc_release(dtp, edp);
1622 	dt_endcontext(dtp);
1623 	yypcb->pcb_ecbdesc = NULL;
1624 }
1625 
1626 static void
1627 dt_compile_clause(dtrace_hdl_t *dtp, dt_node_t *cnp)
1628 {
1629 	dt_node_t *pnp;
1630 
1631 	for (pnp = cnp->dn_pdescs; pnp != NULL; pnp = pnp->dn_list)
1632 		dt_compile_one_clause(dtp, cnp, pnp);
1633 }
1634 
1635 static void
1636 dt_compile_xlator(dt_node_t *dnp)
1637 {
1638 	dt_xlator_t *dxp = dnp->dn_xlator;
1639 	dt_node_t *mnp;
1640 
1641 	for (mnp = dnp->dn_members; mnp != NULL; mnp = mnp->dn_list) {
1642 		assert(dxp->dx_membdif[mnp->dn_membid] == NULL);
1643 		dt_cg(yypcb, mnp);
1644 		dxp->dx_membdif[mnp->dn_membid] = dt_as(yypcb);
1645 	}
1646 }
1647 
1648 void
1649 dt_setcontext(dtrace_hdl_t *dtp, dtrace_probedesc_t *pdp)
1650 {
1651 	const dtrace_pattr_t *pap;
1652 	dt_probe_t *prp;
1653 	dt_provider_t *pvp;
1654 	dt_ident_t *idp;
1655 	char attrstr[8];
1656 	int err;
1657 
1658 	/*
1659 	 * Both kernel and pid based providers are allowed to have names
1660 	 * ending with what could be interpreted as a number. We assume it's
1661 	 * a pid and that we may need to dynamically create probes for
1662 	 * that process if:
1663 	 *
1664 	 * (1) The provider doesn't exist, or,
1665 	 * (2) The provider exists and has DTRACE_PRIV_PROC privilege.
1666 	 *
1667 	 * On an error, dt_pid_create_probes() will set the error message
1668 	 * and tag -- we just have to longjmp() out of here.
1669 	 */
1670 	if (isdigit(pdp->dtpd_provider[strlen(pdp->dtpd_provider) - 1]) &&
1671 	    ((pvp = dt_provider_lookup(dtp, pdp->dtpd_provider)) == NULL ||
1672 	    pvp->pv_desc.dtvd_priv.dtpp_flags & DTRACE_PRIV_PROC) &&
1673 	    dt_pid_create_probes(pdp, dtp, yypcb) != 0) {
1674 		longjmp(yypcb->pcb_jmpbuf, EDT_COMPILER);
1675 	}
1676 
1677 	/*
1678 	 * Call dt_probe_info() to get the probe arguments and attributes.  If
1679 	 * a representative probe is found, set 'pap' to the probe provider's
1680 	 * attributes.  Otherwise set 'pap' to default Unstable attributes.
1681 	 */
1682 	if ((prp = dt_probe_info(dtp, pdp, &yypcb->pcb_pinfo)) == NULL) {
1683 		pap = &_dtrace_prvdesc;
1684 		err = dtrace_errno(dtp);
1685 		bzero(&yypcb->pcb_pinfo, sizeof (dtrace_probeinfo_t));
1686 		yypcb->pcb_pinfo.dtp_attr = pap->dtpa_provider;
1687 		yypcb->pcb_pinfo.dtp_arga = pap->dtpa_args;
1688 	} else {
1689 		pap = &prp->pr_pvp->pv_desc.dtvd_attr;
1690 		err = 0;
1691 	}
1692 
1693 	if (err == EDT_NOPROBE && !(yypcb->pcb_cflags & DTRACE_C_ZDEFS)) {
1694 		xyerror(D_PDESC_ZERO, "probe description %s:%s:%s:%s does not "
1695 		    "match any probes\n", pdp->dtpd_provider, pdp->dtpd_mod,
1696 		    pdp->dtpd_func, pdp->dtpd_name);
1697 	}
1698 
1699 	if (err != EDT_NOPROBE && err != EDT_UNSTABLE && err != 0)
1700 		xyerror(D_PDESC_INVAL, "%s\n", dtrace_errmsg(dtp, err));
1701 
1702 	dt_dprintf("set context to %s:%s:%s:%s [%u] prp=%p attr=%s argc=%d\n",
1703 	    pdp->dtpd_provider, pdp->dtpd_mod, pdp->dtpd_func, pdp->dtpd_name,
1704 	    pdp->dtpd_id, (void *)prp, dt_attr_str(yypcb->pcb_pinfo.dtp_attr,
1705 	    attrstr, sizeof (attrstr)), yypcb->pcb_pinfo.dtp_argc);
1706 
1707 	/*
1708 	 * Reset the stability attributes of D global variables that vary
1709 	 * based on the attributes of the provider and context itself.
1710 	 */
1711 	if ((idp = dt_idhash_lookup(dtp->dt_globals, "probeprov")) != NULL)
1712 		idp->di_attr = pap->dtpa_provider;
1713 	if ((idp = dt_idhash_lookup(dtp->dt_globals, "probemod")) != NULL)
1714 		idp->di_attr = pap->dtpa_mod;
1715 	if ((idp = dt_idhash_lookup(dtp->dt_globals, "probefunc")) != NULL)
1716 		idp->di_attr = pap->dtpa_func;
1717 	if ((idp = dt_idhash_lookup(dtp->dt_globals, "probename")) != NULL)
1718 		idp->di_attr = pap->dtpa_name;
1719 	if ((idp = dt_idhash_lookup(dtp->dt_globals, "args")) != NULL)
1720 		idp->di_attr = pap->dtpa_args;
1721 
1722 	yypcb->pcb_pdesc = pdp;
1723 	yypcb->pcb_probe = prp;
1724 }
1725 
1726 /*
1727  * Reset context-dependent variables and state at the end of cooking a D probe
1728  * definition clause.  This ensures that external declarations between clauses
1729  * do not reference any stale context-dependent data from the previous clause.
1730  */
1731 void
1732 dt_endcontext(dtrace_hdl_t *dtp)
1733 {
1734 	static const char *const cvars[] = {
1735 		"probeprov", "probemod", "probefunc", "probename", "args", NULL
1736 	};
1737 
1738 	dt_ident_t *idp;
1739 	int i;
1740 
1741 	for (i = 0; cvars[i] != NULL; i++) {
1742 		if ((idp = dt_idhash_lookup(dtp->dt_globals, cvars[i])) != NULL)
1743 			idp->di_attr = _dtrace_defattr;
1744 	}
1745 
1746 	yypcb->pcb_pdesc = NULL;
1747 	yypcb->pcb_probe = NULL;
1748 }
1749 
1750 static int
1751 dt_reduceid(dt_idhash_t *dhp, dt_ident_t *idp, dtrace_hdl_t *dtp)
1752 {
1753 	if (idp->di_vers != 0 && idp->di_vers > dtp->dt_vmax)
1754 		dt_idhash_delete(dhp, idp);
1755 
1756 	return (0);
1757 }
1758 
1759 /*
1760  * When dtrace_setopt() is called for "version", it calls dt_reduce() to remove
1761  * any identifiers or translators that have been previously defined as bound to
1762  * a version greater than the specified version.  Therefore, in our current
1763  * version implementation, establishing a binding is a one-way transformation.
1764  * In addition, no versioning is currently provided for types as our .d library
1765  * files do not define any types and we reserve prefixes DTRACE_ and dtrace_
1766  * for our exclusive use.  If required, type versioning will require more work.
1767  */
1768 int
1769 dt_reduce(dtrace_hdl_t *dtp, dt_version_t v)
1770 {
1771 	char s[DT_VERSION_STRMAX];
1772 	dt_xlator_t *dxp, *nxp;
1773 
1774 	if (v > dtp->dt_vmax)
1775 		return (dt_set_errno(dtp, EDT_VERSREDUCED));
1776 	else if (v == dtp->dt_vmax)
1777 		return (0); /* no reduction necessary */
1778 
1779 	dt_dprintf("reducing api version to %s\n",
1780 	    dt_version_num2str(v, s, sizeof (s)));
1781 
1782 	dtp->dt_vmax = v;
1783 
1784 	for (dxp = dt_list_next(&dtp->dt_xlators); dxp != NULL; dxp = nxp) {
1785 		nxp = dt_list_next(dxp);
1786 		if ((dxp->dx_souid.di_vers != 0 && dxp->dx_souid.di_vers > v) ||
1787 		    (dxp->dx_ptrid.di_vers != 0 && dxp->dx_ptrid.di_vers > v))
1788 			dt_list_delete(&dtp->dt_xlators, dxp);
1789 	}
1790 
1791 	(void) dt_idhash_iter(dtp->dt_macros, (dt_idhash_f *)dt_reduceid, dtp);
1792 	(void) dt_idhash_iter(dtp->dt_aggs, (dt_idhash_f *)dt_reduceid, dtp);
1793 	(void) dt_idhash_iter(dtp->dt_globals, (dt_idhash_f *)dt_reduceid, dtp);
1794 	(void) dt_idhash_iter(dtp->dt_tls, (dt_idhash_f *)dt_reduceid, dtp);
1795 
1796 	return (0);
1797 }
1798 
1799 /*
1800  * Fork and exec the cpp(1) preprocessor to run over the specified input file,
1801  * and return a FILE handle for the cpp output.  We use the /dev/fd filesystem
1802  * here to simplify the code by leveraging file descriptor inheritance.
1803  */
1804 static FILE *
1805 dt_preproc(dtrace_hdl_t *dtp, FILE *ifp)
1806 {
1807 	int argc = dtp->dt_cpp_argc;
1808 	char **argv = malloc(sizeof (char *) * (argc + 5));
1809 	FILE *ofp = tmpfile();
1810 
1811 	char ipath[20], opath[20]; /* big enough for /dev/fd/ + INT_MAX + \0 */
1812 	char verdef[32]; /* big enough for -D__SUNW_D_VERSION=0x%08x + \0 */
1813 
1814 	struct sigaction act, oact;
1815 	sigset_t mask, omask;
1816 
1817 	int wstat, estat;
1818 	pid_t pid;
1819 	off64_t off;
1820 	int c;
1821 
1822 	if (argv == NULL || ofp == NULL) {
1823 		(void) dt_set_errno(dtp, errno);
1824 		goto err;
1825 	}
1826 
1827 	/*
1828 	 * If the input is a seekable file, see if it is an interpreter file.
1829 	 * If we see #!, seek past the first line because cpp will choke on it.
1830 	 * We start cpp just prior to the \n at the end of this line so that
1831 	 * it still sees the newline, ensuring that #line values are correct.
1832 	 */
1833 	if (isatty(fileno(ifp)) == 0 && (off = ftello64(ifp)) != -1) {
1834 		if ((c = fgetc(ifp)) == '#' && (c = fgetc(ifp)) == '!') {
1835 			for (off += 2; c != '\n'; off++) {
1836 				if ((c = fgetc(ifp)) == EOF)
1837 					break;
1838 			}
1839 			if (c == '\n')
1840 				off--; /* start cpp just prior to \n */
1841 		}
1842 		(void) fflush(ifp);
1843 		(void) fseeko64(ifp, off, SEEK_SET);
1844 	}
1845 
1846 	(void) snprintf(ipath, sizeof (ipath), "/dev/fd/%d", fileno(ifp));
1847 	(void) snprintf(opath, sizeof (opath), "/dev/fd/%d", fileno(ofp));
1848 
1849 	bcopy(dtp->dt_cpp_argv, argv, sizeof (char *) * argc);
1850 
1851 	(void) snprintf(verdef, sizeof (verdef),
1852 	    "-D__SUNW_D_VERSION=0x%08x", dtp->dt_vmax);
1853 	argv[argc++] = verdef;
1854 
1855 	switch (dtp->dt_stdcmode) {
1856 	case DT_STDC_XA:
1857 	case DT_STDC_XT:
1858 		argv[argc++] = "-D__STDC__=0";
1859 		break;
1860 	case DT_STDC_XC:
1861 		argv[argc++] = "-D__STDC__=1";
1862 		break;
1863 	}
1864 
1865 	argv[argc++] = ipath;
1866 	argv[argc++] = opath;
1867 	argv[argc] = NULL;
1868 
1869 	/*
1870 	 * libdtrace must be able to be embedded in other programs that may
1871 	 * include application-specific signal handlers.  Therefore, if we
1872 	 * need to fork to run cpp(1), we must avoid generating a SIGCHLD
1873 	 * that could confuse the containing application.  To do this,
1874 	 * we block SIGCHLD and reset its disposition to SIG_DFL.
1875 	 * We restore our signal state once we are done.
1876 	 */
1877 	(void) sigemptyset(&mask);
1878 	(void) sigaddset(&mask, SIGCHLD);
1879 	(void) sigprocmask(SIG_BLOCK, &mask, &omask);
1880 
1881 	bzero(&act, sizeof (act));
1882 	act.sa_handler = SIG_DFL;
1883 	(void) sigaction(SIGCHLD, &act, &oact);
1884 
1885 	if ((pid = fork1()) == -1) {
1886 		(void) sigaction(SIGCHLD, &oact, NULL);
1887 		(void) sigprocmask(SIG_SETMASK, &omask, NULL);
1888 		(void) dt_set_errno(dtp, EDT_CPPFORK);
1889 		goto err;
1890 	}
1891 
1892 	if (pid == 0) {
1893 		(void) execvp(dtp->dt_cpp_path, argv);
1894 		_exit(errno == ENOENT ? 127 : 126);
1895 	}
1896 
1897 	do {
1898 		dt_dprintf("waiting for %s (PID %d)\n", dtp->dt_cpp_path,
1899 		    (int)pid);
1900 	} while (waitpid(pid, &wstat, 0) == -1 && errno == EINTR);
1901 
1902 	(void) sigaction(SIGCHLD, &oact, NULL);
1903 	(void) sigprocmask(SIG_SETMASK, &omask, NULL);
1904 
1905 	dt_dprintf("%s returned exit status 0x%x\n", dtp->dt_cpp_path, wstat);
1906 	estat = WIFEXITED(wstat) ? WEXITSTATUS(wstat) : -1;
1907 
1908 	if (estat != 0) {
1909 		switch (estat) {
1910 		case 126:
1911 			(void) dt_set_errno(dtp, EDT_CPPEXEC);
1912 			break;
1913 		case 127:
1914 			(void) dt_set_errno(dtp, EDT_CPPENT);
1915 			break;
1916 		default:
1917 			(void) dt_set_errno(dtp, EDT_CPPERR);
1918 		}
1919 		goto err;
1920 	}
1921 
1922 	free(argv);
1923 	(void) fflush(ofp);
1924 	(void) fseek(ofp, 0, SEEK_SET);
1925 	return (ofp);
1926 
1927 err:
1928 	free(argv);
1929 	(void) fclose(ofp);
1930 	return (NULL);
1931 }
1932 
1933 static void
1934 dt_lib_depend_error(dtrace_hdl_t *dtp, const char *format, ...)
1935 {
1936 	va_list ap;
1937 
1938 	va_start(ap, format);
1939 	dt_set_errmsg(dtp, NULL, NULL, NULL, 0, format, ap);
1940 	va_end(ap);
1941 }
1942 
1943 int
1944 dt_lib_depend_add(dtrace_hdl_t *dtp, dt_list_t *dlp, const char *arg)
1945 {
1946 	dt_lib_depend_t *dld;
1947 	const char *end;
1948 
1949 	assert(arg != NULL);
1950 
1951 	if ((end = strrchr(arg, '/')) == NULL)
1952 		return (dt_set_errno(dtp, EINVAL));
1953 
1954 	if ((dld = dt_zalloc(dtp, sizeof (dt_lib_depend_t))) == NULL)
1955 		return (-1);
1956 
1957 	if ((dld->dtld_libpath = dt_alloc(dtp, MAXPATHLEN)) == NULL) {
1958 		dt_free(dtp, dld);
1959 		return (-1);
1960 	}
1961 
1962 	(void) strlcpy(dld->dtld_libpath, arg, end - arg + 2);
1963 	if ((dld->dtld_library = strdup(arg)) == NULL) {
1964 		dt_free(dtp, dld->dtld_libpath);
1965 		dt_free(dtp, dld);
1966 		return (dt_set_errno(dtp, EDT_NOMEM));
1967 	}
1968 
1969 	dt_list_append(dlp, dld);
1970 	return (0);
1971 }
1972 
1973 dt_lib_depend_t *
1974 dt_lib_depend_lookup(dt_list_t *dld, const char *arg)
1975 {
1976 	dt_lib_depend_t *dldn;
1977 
1978 	for (dldn = dt_list_next(dld); dldn != NULL;
1979 	    dldn = dt_list_next(dldn)) {
1980 		if (strcmp(dldn->dtld_library, arg) == 0)
1981 			return (dldn);
1982 	}
1983 
1984 	return (NULL);
1985 }
1986 
1987 /*
1988  * Go through all the library files, and, if any library dependencies exist for
1989  * that file, add it to that node's list of dependents. The result of this
1990  * will be a graph which can then be topologically sorted to produce a
1991  * compilation order.
1992  */
1993 static int
1994 dt_lib_build_graph(dtrace_hdl_t *dtp)
1995 {
1996 	dt_lib_depend_t *dld, *dpld;
1997 
1998 	for (dld = dt_list_next(&dtp->dt_lib_dep); dld != NULL;
1999 	    dld = dt_list_next(dld)) {
2000 		char *library = dld->dtld_library;
2001 
2002 		for (dpld = dt_list_next(&dld->dtld_dependencies); dpld != NULL;
2003 		    dpld = dt_list_next(dpld)) {
2004 			dt_lib_depend_t *dlda;
2005 
2006 			if ((dlda = dt_lib_depend_lookup(&dtp->dt_lib_dep,
2007 			    dpld->dtld_library)) == NULL) {
2008 				dt_lib_depend_error(dtp,
2009 				    "Invalid library dependency in %s: %s\n",
2010 				    dld->dtld_library, dpld->dtld_library);
2011 
2012 				return (dt_set_errno(dtp, EDT_COMPILER));
2013 			}
2014 
2015 			if ((dt_lib_depend_add(dtp, &dlda->dtld_dependents,
2016 			    library)) != 0) {
2017 				return (-1); /* preserve dt_errno */
2018 			}
2019 		}
2020 	}
2021 	return (0);
2022 }
2023 
2024 static int
2025 dt_topo_sort(dtrace_hdl_t *dtp, dt_lib_depend_t *dld, int *count)
2026 {
2027 	dt_lib_depend_t *dpld, *dlda, *new;
2028 
2029 	dld->dtld_start = ++(*count);
2030 
2031 	for (dpld = dt_list_next(&dld->dtld_dependents); dpld != NULL;
2032 	    dpld = dt_list_next(dpld)) {
2033 		dlda = dt_lib_depend_lookup(&dtp->dt_lib_dep,
2034 		    dpld->dtld_library);
2035 		assert(dlda != NULL);
2036 
2037 		if (dlda->dtld_start == 0 &&
2038 		    dt_topo_sort(dtp, dlda, count) == -1)
2039 			return (-1);
2040 	}
2041 
2042 	if ((new = dt_zalloc(dtp, sizeof (dt_lib_depend_t))) == NULL)
2043 		return (-1);
2044 
2045 	if ((new->dtld_library = strdup(dld->dtld_library)) == NULL) {
2046 		dt_free(dtp, new);
2047 		return (dt_set_errno(dtp, EDT_NOMEM));
2048 	}
2049 
2050 	new->dtld_start = dld->dtld_start;
2051 	new->dtld_finish = dld->dtld_finish = ++(*count);
2052 	dt_list_prepend(&dtp->dt_lib_dep_sorted, new);
2053 
2054 	dt_dprintf("library %s sorted (%d/%d)\n", new->dtld_library,
2055 	    new->dtld_start, new->dtld_finish);
2056 
2057 	return (0);
2058 }
2059 
2060 static int
2061 dt_lib_depend_sort(dtrace_hdl_t *dtp)
2062 {
2063 	dt_lib_depend_t *dld, *dpld, *dlda;
2064 	int count = 0;
2065 
2066 	if (dt_lib_build_graph(dtp) == -1)
2067 		return (-1); /* preserve dt_errno */
2068 
2069 	/*
2070 	 * Perform a topological sort of the graph that hangs off
2071 	 * dtp->dt_lib_dep. The result of this process will be a
2072 	 * dependency ordered list located at dtp->dt_lib_dep_sorted.
2073 	 */
2074 	for (dld = dt_list_next(&dtp->dt_lib_dep); dld != NULL;
2075 	    dld = dt_list_next(dld)) {
2076 		if (dld->dtld_start == 0 &&
2077 		    dt_topo_sort(dtp, dld, &count) == -1)
2078 			return (-1); /* preserve dt_errno */;
2079 	}
2080 
2081 	/*
2082 	 * Check the graph for cycles. If an ancestor's finishing time is
2083 	 * less than any of its dependent's finishing times then a back edge
2084 	 * exists in the graph and this is a cycle.
2085 	 */
2086 	for (dld = dt_list_next(&dtp->dt_lib_dep); dld != NULL;
2087 	    dld = dt_list_next(dld)) {
2088 		for (dpld = dt_list_next(&dld->dtld_dependents); dpld != NULL;
2089 		    dpld = dt_list_next(dpld)) {
2090 			dlda = dt_lib_depend_lookup(&dtp->dt_lib_dep_sorted,
2091 			    dpld->dtld_library);
2092 			assert(dlda != NULL);
2093 
2094 			if (dlda->dtld_finish > dld->dtld_finish) {
2095 				dt_lib_depend_error(dtp,
2096 				    "Cyclic dependency detected: %s => %s\n",
2097 				    dld->dtld_library, dpld->dtld_library);
2098 
2099 				return (dt_set_errno(dtp, EDT_COMPILER));
2100 			}
2101 		}
2102 	}
2103 
2104 	return (0);
2105 }
2106 
2107 static void
2108 dt_lib_depend_free(dtrace_hdl_t *dtp)
2109 {
2110 	dt_lib_depend_t *dld, *dlda;
2111 
2112 	while ((dld = dt_list_next(&dtp->dt_lib_dep)) != NULL) {
2113 		while ((dlda = dt_list_next(&dld->dtld_dependencies)) != NULL) {
2114 			dt_list_delete(&dld->dtld_dependencies, dlda);
2115 			dt_free(dtp, dlda->dtld_library);
2116 			dt_free(dtp, dlda->dtld_libpath);
2117 			dt_free(dtp, dlda);
2118 		}
2119 		while ((dlda = dt_list_next(&dld->dtld_dependents)) != NULL) {
2120 			dt_list_delete(&dld->dtld_dependents, dlda);
2121 			dt_free(dtp, dlda->dtld_library);
2122 			dt_free(dtp, dlda->dtld_libpath);
2123 			dt_free(dtp, dlda);
2124 		}
2125 		dt_list_delete(&dtp->dt_lib_dep, dld);
2126 		dt_free(dtp, dld->dtld_library);
2127 		dt_free(dtp, dld->dtld_libpath);
2128 		dt_free(dtp, dld);
2129 	}
2130 
2131 	while ((dld = dt_list_next(&dtp->dt_lib_dep_sorted)) != NULL) {
2132 		dt_list_delete(&dtp->dt_lib_dep_sorted, dld);
2133 		dt_free(dtp, dld->dtld_library);
2134 		dt_free(dtp, dld);
2135 	}
2136 }
2137 
2138 /*
2139  * Open all the .d library files found in the specified directory and
2140  * compile each one of them.  We silently ignore any missing directories and
2141  * other files found therein.  We only fail (and thereby fail dt_load_libs()) if
2142  * we fail to compile a library and the error is something other than #pragma D
2143  * depends_on.  Dependency errors are silently ignored to permit a library
2144  * directory to contain libraries which may not be accessible depending on our
2145  * privileges.
2146  */
2147 static int
2148 dt_load_libs_dir(dtrace_hdl_t *dtp, const char *path)
2149 {
2150 	struct dirent *dp;
2151 	const char *p, *end;
2152 	DIR *dirp;
2153 
2154 	char fname[PATH_MAX];
2155 	FILE *fp;
2156 	void *rv;
2157 	dt_lib_depend_t *dld;
2158 
2159 	if ((dirp = opendir(path)) == NULL) {
2160 		dt_dprintf("skipping lib dir %s: %s\n", path, strerror(errno));
2161 		return (0);
2162 	}
2163 
2164 	/* First, parse each file for library dependencies. */
2165 	while ((dp = readdir(dirp)) != NULL) {
2166 		if ((p = strrchr(dp->d_name, '.')) == NULL || strcmp(p, ".d"))
2167 			continue; /* skip any filename not ending in .d */
2168 
2169 		(void) snprintf(fname, sizeof (fname),
2170 		    "%s/%s", path, dp->d_name);
2171 
2172 		if ((fp = fopen(fname, "rF")) == NULL) {
2173 			dt_dprintf("skipping library %s: %s\n",
2174 			    fname, strerror(errno));
2175 			continue;
2176 		}
2177 
2178 		/*
2179 		 * Skip files whose name match an already processed library
2180 		 */
2181 		for (dld = dt_list_next(&dtp->dt_lib_dep); dld != NULL;
2182 		    dld = dt_list_next(dld)) {
2183 			end = strrchr(dld->dtld_library, '/');
2184 			/* dt_lib_depend_add ensures this */
2185 			assert(end != NULL);
2186 			if (strcmp(end + 1, dp->d_name) == 0)
2187 				break;
2188 		}
2189 
2190 		if (dld != NULL) {
2191 			dt_dprintf("skipping library %s, already processed "
2192 			    "library with the same name: %s", dp->d_name,
2193 			    dld->dtld_library);
2194 			(void) fclose(fp);
2195 			continue;
2196 		}
2197 
2198 		dtp->dt_filetag = fname;
2199 		if (dt_lib_depend_add(dtp, &dtp->dt_lib_dep, fname) != 0) {
2200 			(void) fclose(fp);
2201 			return (-1); /* preserve dt_errno */
2202 		}
2203 
2204 		rv = dt_compile(dtp, DT_CTX_DPROG,
2205 		    DTRACE_PROBESPEC_NAME, NULL,
2206 		    DTRACE_C_EMPTY | DTRACE_C_CTL, 0, NULL, fp, NULL);
2207 
2208 		if (rv != NULL && dtp->dt_errno &&
2209 		    (dtp->dt_errno != EDT_COMPILER ||
2210 		    dtp->dt_errtag != dt_errtag(D_PRAGMA_DEPEND))) {
2211 			(void) fclose(fp);
2212 			return (-1); /* preserve dt_errno */
2213 		}
2214 
2215 		if (dtp->dt_errno)
2216 			dt_dprintf("error parsing library %s: %s\n",
2217 			    fname, dtrace_errmsg(dtp, dtrace_errno(dtp)));
2218 
2219 		(void) fclose(fp);
2220 		dtp->dt_filetag = NULL;
2221 	}
2222 
2223 	(void) closedir(dirp);
2224 
2225 	return (0);
2226 }
2227 
2228 /*
2229  * Perform a topological sorting of all the libraries found across the entire
2230  * dt_lib_path.  Once sorted, compile each one in topological order to cache its
2231  * inlines and translators, etc.  We silently ignore any missing directories and
2232  * other files found therein. We only fail (and thereby fail dt_load_libs()) if
2233  * we fail to compile a library and the error is something other than #pragma D
2234  * depends_on.  Dependency errors are silently ignored to permit a library
2235  * directory to contain libraries which may not be accessible depending on our
2236  * privileges.
2237  */
2238 static int
2239 dt_load_libs_sort(dtrace_hdl_t *dtp)
2240 {
2241 	dtrace_prog_t *pgp;
2242 	FILE *fp;
2243 	dt_lib_depend_t *dld;
2244 
2245 	/*
2246 	 * Finish building the graph containing the library dependencies
2247 	 * and perform a topological sort to generate an ordered list
2248 	 * for compilation.
2249 	 */
2250 	if (dt_lib_depend_sort(dtp) == -1)
2251 		goto err;
2252 
2253 	for (dld = dt_list_next(&dtp->dt_lib_dep_sorted); dld != NULL;
2254 	    dld = dt_list_next(dld)) {
2255 
2256 		if ((fp = fopen(dld->dtld_library, "r")) == NULL) {
2257 			dt_dprintf("skipping library %s: %s\n",
2258 			    dld->dtld_library, strerror(errno));
2259 			continue;
2260 		}
2261 
2262 		dtp->dt_filetag = dld->dtld_library;
2263 		pgp = dtrace_program_fcompile(dtp, fp, DTRACE_C_EMPTY, 0, NULL);
2264 		(void) fclose(fp);
2265 		dtp->dt_filetag = NULL;
2266 
2267 		if (pgp == NULL && (dtp->dt_errno != EDT_COMPILER ||
2268 		    dtp->dt_errtag != dt_errtag(D_PRAGMA_DEPEND)))
2269 			goto err;
2270 
2271 		if (pgp == NULL) {
2272 			dt_dprintf("skipping library %s: %s\n",
2273 			    dld->dtld_library,
2274 			    dtrace_errmsg(dtp, dtrace_errno(dtp)));
2275 		} else {
2276 			dld->dtld_loaded = B_TRUE;
2277 			dt_program_destroy(dtp, pgp);
2278 		}
2279 	}
2280 
2281 	dt_lib_depend_free(dtp);
2282 	return (0);
2283 
2284 err:
2285 	dt_lib_depend_free(dtp);
2286 	return (-1); /* preserve dt_errno */
2287 }
2288 
2289 /*
2290  * Load the contents of any appropriate DTrace .d library files.  These files
2291  * contain inlines and translators that will be cached by the compiler.  We
2292  * defer this activity until the first compile to permit libdtrace clients to
2293  * add their own library directories and so that we can properly report errors.
2294  */
2295 static int
2296 dt_load_libs(dtrace_hdl_t *dtp)
2297 {
2298 	dt_dirpath_t *dirp;
2299 
2300 	if (dtp->dt_cflags & DTRACE_C_NOLIBS)
2301 		return (0); /* libraries already processed */
2302 
2303 	dtp->dt_cflags |= DTRACE_C_NOLIBS;
2304 
2305 	/*
2306 	 * /usr/lib/dtrace is always at the head of the list. The rest of the
2307 	 * list is specified in the precedence order the user requested. Process
2308 	 * everything other than the head first. DTRACE_C_NOLIBS has already
2309 	 * been spcified so dt_vopen will ensure that there is always one entry
2310 	 * in dt_lib_path.
2311 	 */
2312 	for (dirp = dt_list_next(dt_list_next(&dtp->dt_lib_path));
2313 	    dirp != NULL; dirp = dt_list_next(dirp)) {
2314 		if (dt_load_libs_dir(dtp, dirp->dir_path) != 0) {
2315 			dtp->dt_cflags &= ~DTRACE_C_NOLIBS;
2316 			return (-1); /* errno is set for us */
2317 		}
2318 	}
2319 
2320 	/* Handle /usr/lib/dtrace */
2321 	dirp = dt_list_next(&dtp->dt_lib_path);
2322 	if (dt_load_libs_dir(dtp, dirp->dir_path) != 0) {
2323 		dtp->dt_cflags &= ~DTRACE_C_NOLIBS;
2324 		return (-1); /* errno is set for us */
2325 	}
2326 
2327 	if (dt_load_libs_sort(dtp) < 0)
2328 		return (-1); /* errno is set for us */
2329 
2330 	return (0);
2331 }
2332 
2333 static void *
2334 dt_compile(dtrace_hdl_t *dtp, int context, dtrace_probespec_t pspec, void *arg,
2335     uint_t cflags, int argc, char *const argv[], FILE *fp, const char *s)
2336 {
2337 	dt_node_t *dnp;
2338 	dt_decl_t *ddp;
2339 	dt_pcb_t pcb;
2340 	void *volatile rv;
2341 	int err;
2342 
2343 	if ((fp == NULL && s == NULL) || (cflags & ~DTRACE_C_MASK) != 0) {
2344 		(void) dt_set_errno(dtp, EINVAL);
2345 		return (NULL);
2346 	}
2347 
2348 	if (dt_list_next(&dtp->dt_lib_path) != NULL && dt_load_libs(dtp) != 0)
2349 		return (NULL); /* errno is set for us */
2350 
2351 	if (dtp->dt_globals->dh_nelems != 0)
2352 		(void) dt_idhash_iter(dtp->dt_globals, dt_idreset, NULL);
2353 
2354 	if (dtp->dt_tls->dh_nelems != 0)
2355 		(void) dt_idhash_iter(dtp->dt_tls, dt_idreset, NULL);
2356 
2357 	if (fp && (cflags & DTRACE_C_CPP) && (fp = dt_preproc(dtp, fp)) == NULL)
2358 		return (NULL); /* errno is set for us */
2359 
2360 	dt_pcb_push(dtp, &pcb);
2361 
2362 	pcb.pcb_fileptr = fp;
2363 	pcb.pcb_string = s;
2364 	pcb.pcb_strptr = s;
2365 	pcb.pcb_strlen = s ? strlen(s) : 0;
2366 	pcb.pcb_sargc = argc;
2367 	pcb.pcb_sargv = argv;
2368 	pcb.pcb_sflagv = argc ? calloc(argc, sizeof (ushort_t)) : NULL;
2369 	pcb.pcb_pspec = pspec;
2370 	pcb.pcb_cflags = dtp->dt_cflags | cflags;
2371 	pcb.pcb_amin = dtp->dt_amin;
2372 	pcb.pcb_yystate = -1;
2373 	pcb.pcb_context = context;
2374 	pcb.pcb_token = context;
2375 
2376 	if (context != DT_CTX_DPROG)
2377 		yybegin(YYS_EXPR);
2378 	else if (cflags & DTRACE_C_CTL)
2379 		yybegin(YYS_CONTROL);
2380 	else
2381 		yybegin(YYS_CLAUSE);
2382 
2383 	if ((err = setjmp(yypcb->pcb_jmpbuf)) != 0)
2384 		goto out;
2385 
2386 	if (yypcb->pcb_sargc != 0 && yypcb->pcb_sflagv == NULL)
2387 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
2388 
2389 	yypcb->pcb_idents = dt_idhash_create("ambiguous", NULL, 0, 0);
2390 	yypcb->pcb_locals = dt_idhash_create("clause local", NULL,
2391 	    DIF_VAR_OTHER_UBASE, DIF_VAR_OTHER_MAX);
2392 
2393 	if (yypcb->pcb_idents == NULL || yypcb->pcb_locals == NULL)
2394 		longjmp(yypcb->pcb_jmpbuf, EDT_NOMEM);
2395 
2396 	/*
2397 	 * Invoke the parser to evaluate the D source code.  If any errors
2398 	 * occur during parsing, an error function will be called and we
2399 	 * will longjmp back to pcb_jmpbuf to abort.  If parsing succeeds,
2400 	 * we optionally display the parse tree if debugging is enabled.
2401 	 */
2402 	if (yyparse() != 0 || yypcb->pcb_root == NULL)
2403 		xyerror(D_EMPTY, "empty D program translation unit\n");
2404 
2405 	yybegin(YYS_DONE);
2406 
2407 	if (cflags & DTRACE_C_CTL)
2408 		goto out;
2409 
2410 	if (context != DT_CTX_DTYPE && DT_TREEDUMP_PASS(dtp, 1))
2411 		dt_node_printr(yypcb->pcb_root, stderr, 0);
2412 
2413 	if (yypcb->pcb_pragmas != NULL)
2414 		(void) dt_idhash_iter(yypcb->pcb_pragmas, dt_idpragma, NULL);
2415 
2416 	if (argc > 1 && !(yypcb->pcb_cflags & DTRACE_C_ARGREF) &&
2417 	    !(yypcb->pcb_sflagv[argc - 1] & DT_IDFLG_REF)) {
2418 		xyerror(D_MACRO_UNUSED, "extraneous argument '%s' ($%d is "
2419 		    "not referenced)\n", yypcb->pcb_sargv[argc - 1], argc - 1);
2420 	}
2421 
2422 	/*
2423 	 * Perform sugar transformations (for "if" / "else") and replace the
2424 	 * existing clause chain with the new one.
2425 	 */
2426 	if (context == DT_CTX_DPROG) {
2427 		dt_node_t *dnp, *next_dnp;
2428 		dt_node_t *new_list = NULL;
2429 
2430 		for (dnp = yypcb->pcb_root->dn_list;
2431 		    dnp != NULL; dnp = next_dnp) {
2432 			/* remove this node from the list */
2433 			next_dnp = dnp->dn_list;
2434 			dnp->dn_list = NULL;
2435 
2436 			if (dnp->dn_kind == DT_NODE_CLAUSE)
2437 				dnp = dt_compile_sugar(dtp, dnp);
2438 			/* append node to the new list */
2439 			new_list = dt_node_link(new_list, dnp);
2440 		}
2441 		yypcb->pcb_root->dn_list = new_list;
2442 	}
2443 
2444 	/*
2445 	 * If we have successfully created a parse tree for a D program, loop
2446 	 * over the clauses and actions and instantiate the corresponding
2447 	 * libdtrace program.  If we are parsing a D expression, then we
2448 	 * simply run the code generator and assembler on the resulting tree.
2449 	 */
2450 	switch (context) {
2451 	case DT_CTX_DPROG:
2452 		assert(yypcb->pcb_root->dn_kind == DT_NODE_PROG);
2453 
2454 		if ((dnp = yypcb->pcb_root->dn_list) == NULL &&
2455 		    !(yypcb->pcb_cflags & DTRACE_C_EMPTY))
2456 			xyerror(D_EMPTY, "empty D program translation unit\n");
2457 
2458 		if ((yypcb->pcb_prog = dt_program_create(dtp)) == NULL)
2459 			longjmp(yypcb->pcb_jmpbuf, dtrace_errno(dtp));
2460 
2461 		for (; dnp != NULL; dnp = dnp->dn_list) {
2462 			switch (dnp->dn_kind) {
2463 			case DT_NODE_CLAUSE:
2464 				if (DT_TREEDUMP_PASS(dtp, 4))
2465 					dt_printd(dnp, stderr, 0);
2466 				dt_compile_clause(dtp, dnp);
2467 				break;
2468 			case DT_NODE_XLATOR:
2469 				if (dtp->dt_xlatemode == DT_XL_DYNAMIC)
2470 					dt_compile_xlator(dnp);
2471 				break;
2472 			case DT_NODE_PROVIDER:
2473 				(void) dt_node_cook(dnp, DT_IDFLG_REF);
2474 				break;
2475 			}
2476 		}
2477 
2478 		yypcb->pcb_prog->dp_xrefs = yypcb->pcb_asxrefs;
2479 		yypcb->pcb_prog->dp_xrefslen = yypcb->pcb_asxreflen;
2480 		yypcb->pcb_asxrefs = NULL;
2481 		yypcb->pcb_asxreflen = 0;
2482 
2483 		rv = yypcb->pcb_prog;
2484 		break;
2485 
2486 	case DT_CTX_DEXPR:
2487 		(void) dt_node_cook(yypcb->pcb_root, DT_IDFLG_REF);
2488 		dt_cg(yypcb, yypcb->pcb_root);
2489 		rv = dt_as(yypcb);
2490 		break;
2491 
2492 	case DT_CTX_DTYPE:
2493 		ddp = (dt_decl_t *)yypcb->pcb_root; /* root is really a decl */
2494 		err = dt_decl_type(ddp, arg);
2495 		dt_decl_free(ddp);
2496 
2497 		if (err != 0)
2498 			longjmp(yypcb->pcb_jmpbuf, EDT_COMPILER);
2499 
2500 		rv = NULL;
2501 		break;
2502 	}
2503 
2504 out:
2505 	if (context != DT_CTX_DTYPE && yypcb->pcb_root != NULL &&
2506 	    DT_TREEDUMP_PASS(dtp, 3))
2507 		dt_node_printr(yypcb->pcb_root, stderr, 0);
2508 
2509 	if (dtp->dt_cdefs_fd != -1 && (ftruncate64(dtp->dt_cdefs_fd, 0) == -1 ||
2510 	    lseek64(dtp->dt_cdefs_fd, 0, SEEK_SET) == -1 ||
2511 	    ctf_write(dtp->dt_cdefs->dm_ctfp, dtp->dt_cdefs_fd) == CTF_ERR))
2512 		dt_dprintf("failed to update CTF cache: %s\n", strerror(errno));
2513 
2514 	if (dtp->dt_ddefs_fd != -1 && (ftruncate64(dtp->dt_ddefs_fd, 0) == -1 ||
2515 	    lseek64(dtp->dt_ddefs_fd, 0, SEEK_SET) == -1 ||
2516 	    ctf_write(dtp->dt_ddefs->dm_ctfp, dtp->dt_ddefs_fd) == CTF_ERR))
2517 		dt_dprintf("failed to update CTF cache: %s\n", strerror(errno));
2518 
2519 	if (yypcb->pcb_fileptr && (cflags & DTRACE_C_CPP))
2520 		(void) fclose(yypcb->pcb_fileptr); /* close dt_preproc() file */
2521 
2522 	dt_pcb_pop(dtp, err);
2523 	(void) dt_set_errno(dtp, err);
2524 	return (err ? NULL : rv);
2525 }
2526 
2527 dtrace_prog_t *
2528 dtrace_program_strcompile(dtrace_hdl_t *dtp, const char *s,
2529     dtrace_probespec_t spec, uint_t cflags, int argc, char *const argv[])
2530 {
2531 	return (dt_compile(dtp, DT_CTX_DPROG,
2532 	    spec, NULL, cflags, argc, argv, NULL, s));
2533 }
2534 
2535 dtrace_prog_t *
2536 dtrace_program_fcompile(dtrace_hdl_t *dtp, FILE *fp,
2537     uint_t cflags, int argc, char *const argv[])
2538 {
2539 	return (dt_compile(dtp, DT_CTX_DPROG,
2540 	    DTRACE_PROBESPEC_NAME, NULL, cflags, argc, argv, fp, NULL));
2541 }
2542 
2543 int
2544 dtrace_type_strcompile(dtrace_hdl_t *dtp, const char *s, dtrace_typeinfo_t *dtt)
2545 {
2546 	(void) dt_compile(dtp, DT_CTX_DTYPE,
2547 	    DTRACE_PROBESPEC_NONE, dtt, 0, 0, NULL, NULL, s);
2548 	return (dtp->dt_errno ? -1 : 0);
2549 }
2550 
2551 int
2552 dtrace_type_fcompile(dtrace_hdl_t *dtp, FILE *fp, dtrace_typeinfo_t *dtt)
2553 {
2554 	(void) dt_compile(dtp, DT_CTX_DTYPE,
2555 	    DTRACE_PROBESPEC_NONE, dtt, 0, 0, NULL, fp, NULL);
2556 	return (dtp->dt_errno ? -1 : 0);
2557 }
2558