xref: /openbmc/qemu/include/qemu/plugin.h (revision 853c685e)
1 /*
2  * Copyright (C) 2017, Emilio G. Cota <cota@braap.org>
3  *
4  * License: GNU GPL, version 2 or later.
5  *   See the COPYING file in the top-level directory.
6  */
7 #ifndef QEMU_PLUGIN_H
8 #define QEMU_PLUGIN_H
9 
10 #include "qemu/config-file.h"
11 #include "qemu/qemu-plugin.h"
12 #include "qemu/error-report.h"
13 #include "qemu/queue.h"
14 #include "qemu/option.h"
15 #include "qemu/plugin-event.h"
16 #include "qemu/bitmap.h"
17 #include "exec/memopidx.h"
18 #include "hw/core/cpu.h"
19 
20 /*
21  * Option parsing/processing.
22  * Note that we can load an arbitrary number of plugins.
23  */
24 struct qemu_plugin_desc;
25 typedef QTAILQ_HEAD(, qemu_plugin_desc) QemuPluginList;
26 
27 /*
28  * Construct a qemu_plugin_meminfo_t.
29  */
30 static inline qemu_plugin_meminfo_t
make_plugin_meminfo(MemOpIdx oi,enum qemu_plugin_mem_rw rw)31 make_plugin_meminfo(MemOpIdx oi, enum qemu_plugin_mem_rw rw)
32 {
33     return oi | (rw << 16);
34 }
35 
36 /*
37  * Extract the memory operation direction from a qemu_plugin_meminfo_t.
38  * Other portions may be extracted via get_memop and get_mmuidx.
39  */
40 static inline enum qemu_plugin_mem_rw
get_plugin_meminfo_rw(qemu_plugin_meminfo_t i)41 get_plugin_meminfo_rw(qemu_plugin_meminfo_t i)
42 {
43     return i >> 16;
44 }
45 
46 #ifdef CONFIG_PLUGIN
47 extern QemuOptsList qemu_plugin_opts;
48 
qemu_plugin_add_opts(void)49 static inline void qemu_plugin_add_opts(void)
50 {
51     qemu_add_opts(&qemu_plugin_opts);
52 }
53 
54 void qemu_plugin_opt_parse(const char *optstr, QemuPluginList *head);
55 int qemu_plugin_load_list(QemuPluginList *head, Error **errp);
56 
57 union qemu_plugin_cb_sig {
58     qemu_plugin_simple_cb_t          simple;
59     qemu_plugin_udata_cb_t           udata;
60     qemu_plugin_vcpu_simple_cb_t     vcpu_simple;
61     qemu_plugin_vcpu_udata_cb_t      vcpu_udata;
62     qemu_plugin_vcpu_tb_trans_cb_t   vcpu_tb_trans;
63     qemu_plugin_vcpu_mem_cb_t        vcpu_mem;
64     qemu_plugin_vcpu_syscall_cb_t    vcpu_syscall;
65     qemu_plugin_vcpu_syscall_ret_cb_t vcpu_syscall_ret;
66     void *generic;
67 };
68 
69 enum plugin_dyn_cb_type {
70     PLUGIN_CB_REGULAR,
71     PLUGIN_CB_COND,
72     PLUGIN_CB_MEM_REGULAR,
73     PLUGIN_CB_INLINE_ADD_U64,
74     PLUGIN_CB_INLINE_STORE_U64,
75 };
76 
77 struct qemu_plugin_regular_cb {
78     union qemu_plugin_cb_sig f;
79     TCGHelperInfo *info;
80     void *userp;
81     enum qemu_plugin_mem_rw rw;
82 };
83 
84 struct qemu_plugin_inline_cb {
85     qemu_plugin_u64 entry;
86     uint64_t imm;
87     enum qemu_plugin_mem_rw rw;
88 };
89 
90 struct qemu_plugin_conditional_cb {
91     union qemu_plugin_cb_sig f;
92     TCGHelperInfo *info;
93     void *userp;
94     qemu_plugin_u64 entry;
95     enum qemu_plugin_cond cond;
96     uint64_t imm;
97 };
98 
99 /*
100  * A dynamic callback has an insertion point that is determined at run-time.
101  * Usually the insertion point is somewhere in the code cache; think for
102  * instance of a callback to be called upon the execution of a particular TB.
103  */
104 struct qemu_plugin_dyn_cb {
105     enum plugin_dyn_cb_type type;
106     union {
107         struct qemu_plugin_regular_cb regular;
108         struct qemu_plugin_conditional_cb cond;
109         struct qemu_plugin_inline_cb inline_insn;
110     };
111 };
112 
113 /* Internal context for instrumenting an instruction */
114 struct qemu_plugin_insn {
115     uint64_t vaddr;
116     GArray *insn_cbs;
117     GArray *mem_cbs;
118     uint8_t len;
119     bool calls_helpers;
120 
121     /* if set, the instruction calls helpers that might access guest memory */
122     bool mem_helper;
123 };
124 
125 /* A scoreboard is an array of values, indexed by vcpu_index */
126 struct qemu_plugin_scoreboard {
127     GArray *data;
128     QLIST_ENTRY(qemu_plugin_scoreboard) entry;
129 };
130 
131 /* Internal context for this TranslationBlock */
132 struct qemu_plugin_tb {
133     GPtrArray *insns;
134     size_t n;
135 
136     /* if set, the TB calls helpers that might access guest memory */
137     bool mem_helper;
138 
139     GArray *cbs;
140 };
141 
142 /**
143  * struct CPUPluginState - per-CPU state for plugins
144  * @event_mask: plugin event bitmap. Modified only via async work.
145  */
146 struct CPUPluginState {
147     DECLARE_BITMAP(event_mask, QEMU_PLUGIN_EV_MAX);
148 };
149 
150 /**
151  * qemu_plugin_create_vcpu_state: allocate plugin state
152  *
153  * The returned data must be released with g_free()
154  * when no longer required.
155  */
156 CPUPluginState *qemu_plugin_create_vcpu_state(void);
157 
158 void qemu_plugin_vcpu_init_hook(CPUState *cpu);
159 void qemu_plugin_vcpu_exit_hook(CPUState *cpu);
160 void qemu_plugin_tb_trans_cb(CPUState *cpu, struct qemu_plugin_tb *tb);
161 void qemu_plugin_vcpu_idle_cb(CPUState *cpu);
162 void qemu_plugin_vcpu_resume_cb(CPUState *cpu);
163 void
164 qemu_plugin_vcpu_syscall(CPUState *cpu, int64_t num, uint64_t a1,
165                          uint64_t a2, uint64_t a3, uint64_t a4, uint64_t a5,
166                          uint64_t a6, uint64_t a7, uint64_t a8);
167 void qemu_plugin_vcpu_syscall_ret(CPUState *cpu, int64_t num, int64_t ret);
168 
169 void qemu_plugin_vcpu_mem_cb(CPUState *cpu, uint64_t vaddr,
170                              MemOpIdx oi, enum qemu_plugin_mem_rw rw);
171 
172 void qemu_plugin_flush_cb(void);
173 
174 void qemu_plugin_atexit_cb(void);
175 
176 void qemu_plugin_add_dyn_cb_arr(GArray *arr);
177 
qemu_plugin_disable_mem_helpers(CPUState * cpu)178 static inline void qemu_plugin_disable_mem_helpers(CPUState *cpu)
179 {
180     cpu->neg.plugin_mem_cbs = NULL;
181 }
182 
183 /**
184  * qemu_plugin_user_exit(): clean-up callbacks before calling exit callbacks
185  *
186  * This is a user-mode only helper that ensure we have fully cleared
187  * callbacks from all threads before calling the exit callbacks. This
188  * is so the plugins themselves don't have to jump through hoops to
189  * guard against race conditions.
190  */
191 void qemu_plugin_user_exit(void);
192 
193 /**
194  * qemu_plugin_user_prefork_lock(): take plugin lock before forking
195  *
196  * This is a user-mode only helper to take the internal plugin lock
197  * before a fork event. This is ensure a consistent lock state
198  */
199 void qemu_plugin_user_prefork_lock(void);
200 
201 /**
202  * qemu_plugin_user_postfork(): reset the plugin lock
203  * @is_child: is this thread the child
204  *
205  * This user-mode only helper resets the lock state after a fork so we
206  * can continue using the plugin interface.
207  */
208 void qemu_plugin_user_postfork(bool is_child);
209 
210 #else /* !CONFIG_PLUGIN */
211 
qemu_plugin_add_opts(void)212 static inline void qemu_plugin_add_opts(void)
213 { }
214 
qemu_plugin_opt_parse(const char * optstr,QemuPluginList * head)215 static inline void qemu_plugin_opt_parse(const char *optstr,
216                                          QemuPluginList *head)
217 {
218     error_report("plugin interface not enabled in this build");
219     exit(1);
220 }
221 
qemu_plugin_load_list(QemuPluginList * head,Error ** errp)222 static inline int qemu_plugin_load_list(QemuPluginList *head, Error **errp)
223 {
224     return 0;
225 }
226 
qemu_plugin_vcpu_init_hook(CPUState * cpu)227 static inline void qemu_plugin_vcpu_init_hook(CPUState *cpu)
228 { }
229 
qemu_plugin_vcpu_exit_hook(CPUState * cpu)230 static inline void qemu_plugin_vcpu_exit_hook(CPUState *cpu)
231 { }
232 
qemu_plugin_tb_trans_cb(CPUState * cpu,struct qemu_plugin_tb * tb)233 static inline void qemu_plugin_tb_trans_cb(CPUState *cpu,
234                                            struct qemu_plugin_tb *tb)
235 { }
236 
qemu_plugin_vcpu_idle_cb(CPUState * cpu)237 static inline void qemu_plugin_vcpu_idle_cb(CPUState *cpu)
238 { }
239 
qemu_plugin_vcpu_resume_cb(CPUState * cpu)240 static inline void qemu_plugin_vcpu_resume_cb(CPUState *cpu)
241 { }
242 
243 static inline void
qemu_plugin_vcpu_syscall(CPUState * cpu,int64_t num,uint64_t a1,uint64_t a2,uint64_t a3,uint64_t a4,uint64_t a5,uint64_t a6,uint64_t a7,uint64_t a8)244 qemu_plugin_vcpu_syscall(CPUState *cpu, int64_t num, uint64_t a1, uint64_t a2,
245                          uint64_t a3, uint64_t a4, uint64_t a5, uint64_t a6,
246                          uint64_t a7, uint64_t a8)
247 { }
248 
249 static inline
qemu_plugin_vcpu_syscall_ret(CPUState * cpu,int64_t num,int64_t ret)250 void qemu_plugin_vcpu_syscall_ret(CPUState *cpu, int64_t num, int64_t ret)
251 { }
252 
qemu_plugin_vcpu_mem_cb(CPUState * cpu,uint64_t vaddr,MemOpIdx oi,enum qemu_plugin_mem_rw rw)253 static inline void qemu_plugin_vcpu_mem_cb(CPUState *cpu, uint64_t vaddr,
254                                            MemOpIdx oi,
255                                            enum qemu_plugin_mem_rw rw)
256 { }
257 
qemu_plugin_flush_cb(void)258 static inline void qemu_plugin_flush_cb(void)
259 { }
260 
qemu_plugin_atexit_cb(void)261 static inline void qemu_plugin_atexit_cb(void)
262 { }
263 
264 static inline
qemu_plugin_add_dyn_cb_arr(GArray * arr)265 void qemu_plugin_add_dyn_cb_arr(GArray *arr)
266 { }
267 
qemu_plugin_disable_mem_helpers(CPUState * cpu)268 static inline void qemu_plugin_disable_mem_helpers(CPUState *cpu)
269 { }
270 
qemu_plugin_user_exit(void)271 static inline void qemu_plugin_user_exit(void)
272 { }
273 
qemu_plugin_user_prefork_lock(void)274 static inline void qemu_plugin_user_prefork_lock(void)
275 { }
276 
qemu_plugin_user_postfork(bool is_child)277 static inline void qemu_plugin_user_postfork(bool is_child)
278 { }
279 
280 #endif /* !CONFIG_PLUGIN */
281 
282 #endif /* QEMU_PLUGIN_H */
283