xref: /qemu/accel/tcg/plugin-gen.c (revision 7de77d37880d7267a491cb32a1b2232017d1e545)
1 /*
2  * plugin-gen.c - TCG-related bits of plugin infrastructure
3  *
4  * Copyright (C) 2018, Emilio G. Cota <cota@braap.org>
5  * License: GNU GPL, version 2 or later.
6  *   See the COPYING file in the top-level directory.
7  *
8  * We support instrumentation at an instruction granularity. That is,
9  * if a plugin wants to instrument the memory accesses performed by a
10  * particular instruction, it can just do that instead of instrumenting
11  * all memory accesses. Thus, in order to do this we first have to
12  * translate a TB, so that plugins can decide what/where to instrument.
13  *
14  * Injecting the desired instrumentation could be done with a second
15  * translation pass that combined the instrumentation requests, but that
16  * would be ugly and inefficient since we would decode the guest code twice.
17  * Instead, during TB translation we add "plugin_cb" marker opcodes
18  * for all possible instrumentation events, and then once we collect the
19  * instrumentation requests from plugins, we generate code for those markers
20  * or remove them if they have no requests.
21  */
22 #include "qemu/osdep.h"
23 #include "qemu/plugin.h"
24 #include "qemu/log.h"
25 #include "cpu.h"
26 #include "tcg/tcg.h"
27 #include "tcg/tcg-temp-internal.h"
28 #include "tcg/tcg-op.h"
29 #include "exec/exec-all.h"
30 #include "exec/plugin-gen.h"
31 #include "exec/translator.h"
32 
33 enum plugin_gen_from {
34     PLUGIN_GEN_FROM_TB,
35     PLUGIN_GEN_FROM_INSN,
36     PLUGIN_GEN_AFTER_INSN,
37     PLUGIN_GEN_AFTER_TB,
38 };
39 
40 /* called before finishing a TB with exit_tb, goto_tb or goto_ptr */
41 void plugin_gen_disable_mem_helpers(void)
42 {
43     if (tcg_ctx->plugin_insn) {
44         tcg_gen_plugin_cb(PLUGIN_GEN_AFTER_TB);
45     }
46 }
47 
48 static void gen_enable_mem_helper(struct qemu_plugin_tb *ptb,
49                                   struct qemu_plugin_insn *insn)
50 {
51     GArray *arr;
52     size_t len;
53 
54     /*
55      * Tracking memory accesses performed from helpers requires extra work.
56      * If an instruction is emulated with helpers, we do two things:
57      * (1) copy the CB descriptors, and keep track of it so that they can be
58      * freed later on, and (2) point CPUState.neg.plugin_mem_cbs to the
59      * descriptors, so that we can read them at run-time
60      * (i.e. when the helper executes).
61      * This run-time access is performed from qemu_plugin_vcpu_mem_cb.
62      *
63      * Note that plugin_gen_disable_mem_helpers undoes (2). Since it
64      * is possible that the code we generate after the instruction is
65      * dead, we also add checks before generating tb_exit etc.
66      */
67     if (!insn->calls_helpers) {
68         return;
69     }
70 
71     if (!insn->mem_cbs || !insn->mem_cbs->len) {
72         insn->mem_helper = false;
73         return;
74     }
75     insn->mem_helper = true;
76     ptb->mem_helper = true;
77 
78     /*
79      * TODO: It seems like we should be able to use ref/unref
80      * to avoid needing to actually copy this array.
81      * Alternately, perhaps we could allocate new memory adjacent
82      * to the TranslationBlock itself, so that we do not have to
83      * actively manage the lifetime after this.
84      */
85     len = insn->mem_cbs->len;
86     arr = g_array_sized_new(false, false,
87                             sizeof(struct qemu_plugin_dyn_cb), len);
88     memcpy(arr->data, insn->mem_cbs->data,
89            len * sizeof(struct qemu_plugin_dyn_cb));
90     qemu_plugin_add_dyn_cb_arr(arr);
91 
92     tcg_gen_st_ptr(tcg_constant_ptr((intptr_t)arr), tcg_env,
93                    offsetof(CPUState, neg.plugin_mem_cbs) -
94                    offsetof(ArchCPU, env));
95 }
96 
97 static void gen_disable_mem_helper(void)
98 {
99     tcg_gen_st_ptr(tcg_constant_ptr(0), tcg_env,
100                    offsetof(CPUState, neg.plugin_mem_cbs) -
101                    offsetof(ArchCPU, env));
102 }
103 
104 static void gen_udata_cb(struct qemu_plugin_dyn_cb *cb)
105 {
106     TCGv_i32 cpu_index = tcg_temp_ebb_new_i32();
107 
108     tcg_gen_ld_i32(cpu_index, tcg_env,
109                    -offsetof(ArchCPU, env) + offsetof(CPUState, cpu_index));
110     tcg_gen_call2(cb->regular.f.vcpu_udata, cb->regular.info, NULL,
111                   tcgv_i32_temp(cpu_index),
112                   tcgv_ptr_temp(tcg_constant_ptr(cb->userp)));
113     tcg_temp_free_i32(cpu_index);
114 }
115 
116 static TCGv_ptr gen_plugin_u64_ptr(qemu_plugin_u64 entry)
117 {
118     TCGv_ptr ptr = tcg_temp_ebb_new_ptr();
119 
120     GArray *arr = entry.score->data;
121     char *base_ptr = arr->data + entry.offset;
122     size_t entry_size = g_array_get_element_size(arr);
123 
124     TCGv_i32 cpu_index = tcg_temp_ebb_new_i32();
125     tcg_gen_ld_i32(cpu_index, tcg_env,
126                    -offsetof(ArchCPU, env) + offsetof(CPUState, cpu_index));
127     tcg_gen_muli_i32(cpu_index, cpu_index, entry_size);
128     tcg_gen_ext_i32_ptr(ptr, cpu_index);
129     tcg_temp_free_i32(cpu_index);
130     tcg_gen_addi_ptr(ptr, ptr, (intptr_t) base_ptr);
131 
132     return ptr;
133 }
134 
135 static TCGCond plugin_cond_to_tcgcond(enum qemu_plugin_cond cond)
136 {
137     switch (cond) {
138     case QEMU_PLUGIN_COND_EQ:
139         return TCG_COND_EQ;
140     case QEMU_PLUGIN_COND_NE:
141         return TCG_COND_NE;
142     case QEMU_PLUGIN_COND_LT:
143         return TCG_COND_LTU;
144     case QEMU_PLUGIN_COND_LE:
145         return TCG_COND_LEU;
146     case QEMU_PLUGIN_COND_GT:
147         return TCG_COND_GTU;
148     case QEMU_PLUGIN_COND_GE:
149         return TCG_COND_GEU;
150     default:
151         /* ALWAYS and NEVER conditions should never reach */
152         g_assert_not_reached();
153     }
154 }
155 
156 static void gen_udata_cond_cb(struct qemu_plugin_dyn_cb *cb)
157 {
158     TCGv_ptr ptr = gen_plugin_u64_ptr(cb->cond.entry);
159     TCGv_i32 cpu_index = tcg_temp_ebb_new_i32();
160     TCGv_i64 val = tcg_temp_ebb_new_i64();
161     TCGLabel *after_cb = gen_new_label();
162 
163     /* Condition should be negated, as calling the cb is the "else" path */
164     TCGCond cond = tcg_invert_cond(plugin_cond_to_tcgcond(cb->cond.cond));
165 
166     tcg_gen_ld_i64(val, ptr, 0);
167     tcg_gen_brcondi_i64(cond, val, cb->cond.imm, after_cb);
168     tcg_gen_ld_i32(cpu_index, tcg_env,
169                    -offsetof(ArchCPU, env) + offsetof(CPUState, cpu_index));
170     tcg_gen_call2(cb->cond.f.vcpu_udata, cb->cond.info, NULL,
171                   tcgv_i32_temp(cpu_index),
172                   tcgv_ptr_temp(tcg_constant_ptr(cb->userp)));
173     gen_set_label(after_cb);
174 
175     tcg_temp_free_i64(val);
176     tcg_temp_free_i32(cpu_index);
177     tcg_temp_free_ptr(ptr);
178 }
179 
180 static void gen_inline_add_u64_cb(struct qemu_plugin_dyn_cb *cb)
181 {
182     TCGv_ptr ptr = gen_plugin_u64_ptr(cb->inline_insn.entry);
183     TCGv_i64 val = tcg_temp_ebb_new_i64();
184 
185     tcg_gen_ld_i64(val, ptr, 0);
186     tcg_gen_addi_i64(val, val, cb->inline_insn.imm);
187     tcg_gen_st_i64(val, ptr, 0);
188 
189     tcg_temp_free_i64(val);
190     tcg_temp_free_ptr(ptr);
191 }
192 
193 static void gen_inline_store_u64_cb(struct qemu_plugin_dyn_cb *cb)
194 {
195     TCGv_ptr ptr = gen_plugin_u64_ptr(cb->inline_insn.entry);
196     TCGv_i64 val = tcg_constant_i64(cb->inline_insn.imm);
197 
198     tcg_gen_st_i64(val, ptr, 0);
199 
200     tcg_temp_free_ptr(ptr);
201 }
202 
203 static void gen_mem_cb(struct qemu_plugin_dyn_cb *cb,
204                        qemu_plugin_meminfo_t meminfo, TCGv_i64 addr)
205 {
206     TCGv_i32 cpu_index = tcg_temp_ebb_new_i32();
207 
208     tcg_gen_ld_i32(cpu_index, tcg_env,
209                    -offsetof(ArchCPU, env) + offsetof(CPUState, cpu_index));
210     tcg_gen_call4(cb->regular.f.vcpu_mem, cb->regular.info, NULL,
211                   tcgv_i32_temp(cpu_index),
212                   tcgv_i32_temp(tcg_constant_i32(meminfo)),
213                   tcgv_i64_temp(addr),
214                   tcgv_ptr_temp(tcg_constant_ptr(cb->userp)));
215     tcg_temp_free_i32(cpu_index);
216 }
217 
218 static void inject_cb(struct qemu_plugin_dyn_cb *cb)
219 
220 {
221     switch (cb->type) {
222     case PLUGIN_CB_REGULAR:
223         gen_udata_cb(cb);
224         break;
225     case PLUGIN_CB_COND:
226         gen_udata_cond_cb(cb);
227         break;
228     case PLUGIN_CB_INLINE_ADD_U64:
229         gen_inline_add_u64_cb(cb);
230         break;
231     case PLUGIN_CB_INLINE_STORE_U64:
232         gen_inline_store_u64_cb(cb);
233         break;
234     default:
235         g_assert_not_reached();
236     }
237 }
238 
239 static void inject_mem_cb(struct qemu_plugin_dyn_cb *cb,
240                           enum qemu_plugin_mem_rw rw,
241                           qemu_plugin_meminfo_t meminfo, TCGv_i64 addr)
242 {
243     if (cb->rw & rw) {
244         switch (cb->type) {
245         case PLUGIN_CB_MEM_REGULAR:
246             gen_mem_cb(cb, meminfo, addr);
247             break;
248         default:
249             inject_cb(cb);
250             break;
251         }
252     }
253 }
254 
255 static void plugin_gen_inject(struct qemu_plugin_tb *plugin_tb)
256 {
257     TCGOp *op, *next;
258     int insn_idx = -1;
259 
260     if (unlikely(qemu_loglevel_mask(LOG_TB_OP_PLUGIN)
261                  && qemu_log_in_addr_range(tcg_ctx->plugin_db->pc_first))) {
262         FILE *logfile = qemu_log_trylock();
263         if (logfile) {
264             fprintf(logfile, "OP before plugin injection:\n");
265             tcg_dump_ops(tcg_ctx, logfile, false);
266             fprintf(logfile, "\n");
267             qemu_log_unlock(logfile);
268         }
269     }
270 
271     /*
272      * While injecting code, we cannot afford to reuse any ebb temps
273      * that might be live within the existing opcode stream.
274      * The simplest solution is to release them all and create new.
275      */
276     memset(tcg_ctx->free_temps, 0, sizeof(tcg_ctx->free_temps));
277 
278     QTAILQ_FOREACH_SAFE(op, &tcg_ctx->ops, link, next) {
279         switch (op->opc) {
280         case INDEX_op_insn_start:
281             insn_idx++;
282             break;
283 
284         case INDEX_op_plugin_cb:
285         {
286             enum plugin_gen_from from = op->args[0];
287             struct qemu_plugin_insn *insn = NULL;
288             const GArray *cbs;
289             int i, n;
290 
291             if (insn_idx >= 0) {
292                 insn = g_ptr_array_index(plugin_tb->insns, insn_idx);
293             }
294 
295             tcg_ctx->emit_before_op = op;
296 
297             switch (from) {
298             case PLUGIN_GEN_AFTER_TB:
299                 if (plugin_tb->mem_helper) {
300                     gen_disable_mem_helper();
301                 }
302                 break;
303 
304             case PLUGIN_GEN_AFTER_INSN:
305                 assert(insn != NULL);
306                 if (insn->mem_helper) {
307                     gen_disable_mem_helper();
308                 }
309                 break;
310 
311             case PLUGIN_GEN_FROM_TB:
312                 assert(insn == NULL);
313 
314                 cbs = plugin_tb->cbs;
315                 for (i = 0, n = (cbs ? cbs->len : 0); i < n; i++) {
316                     inject_cb(
317                         &g_array_index(cbs, struct qemu_plugin_dyn_cb, i));
318                 }
319                 break;
320 
321             case PLUGIN_GEN_FROM_INSN:
322                 assert(insn != NULL);
323 
324                 gen_enable_mem_helper(plugin_tb, insn);
325 
326                 cbs = insn->insn_cbs;
327                 for (i = 0, n = (cbs ? cbs->len : 0); i < n; i++) {
328                     inject_cb(
329                         &g_array_index(cbs, struct qemu_plugin_dyn_cb, i));
330                 }
331                 break;
332 
333             default:
334                 g_assert_not_reached();
335             }
336 
337             tcg_ctx->emit_before_op = NULL;
338             tcg_op_remove(tcg_ctx, op);
339             break;
340         }
341 
342         case INDEX_op_plugin_mem_cb:
343         {
344             TCGv_i64 addr = temp_tcgv_i64(arg_temp(op->args[0]));
345             qemu_plugin_meminfo_t meminfo = op->args[1];
346             enum qemu_plugin_mem_rw rw =
347                 (qemu_plugin_mem_is_store(meminfo)
348                  ? QEMU_PLUGIN_MEM_W : QEMU_PLUGIN_MEM_R);
349             struct qemu_plugin_insn *insn;
350             const GArray *cbs;
351             int i, n;
352 
353             assert(insn_idx >= 0);
354             insn = g_ptr_array_index(plugin_tb->insns, insn_idx);
355 
356             tcg_ctx->emit_before_op = op;
357 
358             cbs = insn->mem_cbs;
359             for (i = 0, n = (cbs ? cbs->len : 0); i < n; i++) {
360                 inject_mem_cb(&g_array_index(cbs, struct qemu_plugin_dyn_cb, i),
361                               rw, meminfo, addr);
362             }
363 
364             tcg_ctx->emit_before_op = NULL;
365             tcg_op_remove(tcg_ctx, op);
366             break;
367         }
368 
369         default:
370             /* plugins don't care about any other ops */
371             break;
372         }
373     }
374 }
375 
376 bool plugin_gen_tb_start(CPUState *cpu, const DisasContextBase *db)
377 {
378     struct qemu_plugin_tb *ptb;
379 
380     if (!test_bit(QEMU_PLUGIN_EV_VCPU_TB_TRANS,
381                   cpu->plugin_state->event_mask)) {
382         return false;
383     }
384 
385     tcg_ctx->plugin_db = db;
386     tcg_ctx->plugin_insn = NULL;
387     ptb = tcg_ctx->plugin_tb;
388 
389     if (ptb) {
390         /* Reset callbacks */
391         if (ptb->cbs) {
392             g_array_set_size(ptb->cbs, 0);
393         }
394         ptb->n = 0;
395         ptb->mem_helper = false;
396     } else {
397         ptb = g_new0(struct qemu_plugin_tb, 1);
398         tcg_ctx->plugin_tb = ptb;
399         ptb->insns = g_ptr_array_new();
400     }
401 
402     tcg_gen_plugin_cb(PLUGIN_GEN_FROM_TB);
403     return true;
404 }
405 
406 void plugin_gen_insn_start(CPUState *cpu, const DisasContextBase *db)
407 {
408     struct qemu_plugin_tb *ptb = tcg_ctx->plugin_tb;
409     struct qemu_plugin_insn *insn;
410     size_t n = db->num_insns;
411     vaddr pc;
412 
413     assert(n >= 1);
414     ptb->n = n;
415     if (n <= ptb->insns->len) {
416         insn = g_ptr_array_index(ptb->insns, n - 1);
417     } else {
418         assert(n - 1 == ptb->insns->len);
419         insn = g_new0(struct qemu_plugin_insn, 1);
420         g_ptr_array_add(ptb->insns, insn);
421     }
422 
423     tcg_ctx->plugin_insn = insn;
424     insn->calls_helpers = false;
425     insn->mem_helper = false;
426     if (insn->insn_cbs) {
427         g_array_set_size(insn->insn_cbs, 0);
428     }
429     if (insn->mem_cbs) {
430         g_array_set_size(insn->mem_cbs, 0);
431     }
432 
433     pc = db->pc_next;
434     insn->vaddr = pc;
435 
436     tcg_gen_plugin_cb(PLUGIN_GEN_FROM_INSN);
437 }
438 
439 void plugin_gen_insn_end(void)
440 {
441     const DisasContextBase *db = tcg_ctx->plugin_db;
442     struct qemu_plugin_insn *pinsn = tcg_ctx->plugin_insn;
443 
444     pinsn->len = db->fake_insn ? db->record_len : db->pc_next - pinsn->vaddr;
445 
446     tcg_gen_plugin_cb(PLUGIN_GEN_AFTER_INSN);
447 }
448 
449 /*
450  * There are cases where we never get to finalise a translation - for
451  * example a page fault during translation. As a result we shouldn't
452  * do any clean-up here and make sure things are reset in
453  * plugin_gen_tb_start.
454  */
455 void plugin_gen_tb_end(CPUState *cpu, size_t num_insns)
456 {
457     struct qemu_plugin_tb *ptb = tcg_ctx->plugin_tb;
458 
459     /* translator may have removed instructions, update final count */
460     g_assert(num_insns <= ptb->n);
461     ptb->n = num_insns;
462 
463     /* collect instrumentation requests */
464     qemu_plugin_tb_trans_cb(cpu, ptb);
465 
466     /* inject the instrumentation at the appropriate places */
467     plugin_gen_inject(ptb);
468 }
469