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authorLai Jiangshan <laijs@cn.fujitsu.com>2009-03-18 04:42:57 -0400
committerSteven Rostedt <srostedt@redhat.com>2009-03-18 20:36:59 -0400
commite9d9df44736d116726f4596f7e2f9ce2764ffc0a (patch)
treebca129639885fa7288b925e5053f3787fa7e625a /arch/x86/kernel/ftrace.c
parent4acd4d00f716873e27e7b60ae292cbdbfae674dd (diff)
ftrace: protect running nmi (V3)
When I review the sensitive code ftrace_nmi_enter(), I found the atomic variable nmi_running does protect NMI VS do_ftrace_mod_code(), but it can not protects NMI(entered nmi) VS NMI(ftrace_nmi_enter()). cpu#1 | cpu#2 | cpu#3 ftrace_nmi_enter() | do_ftrace_mod_code() | not modify | | ------------------------|-----------------------|-- executing | set mod_code_write = 1| executing --|-----------------------|-------------------- executing | | ftrace_nmi_enter() executing | | do modify ------------------------|-----------------------|----------------- ftrace_nmi_exit() | | cpu#3 may be being modified the code which is still being executed on cpu#1, it will have undefined results and possibly take a GPF, this patch prevents it occurred. Signed-off-by: Lai Jiangshan <laijs@cn.fujitsu.com> LKML-Reference: <49C0B411.30003@cn.fujitsu.com> Signed-off-by: Steven Rostedt <srostedt@redhat.com>
Diffstat (limited to 'arch/x86/kernel/ftrace.c')
-rw-r--r--arch/x86/kernel/ftrace.c63
1 files changed, 40 insertions, 23 deletions
diff --git a/arch/x86/kernel/ftrace.c b/arch/x86/kernel/ftrace.c
index 1d0d7f42efe3..57b33edb7ce3 100644
--- a/arch/x86/kernel/ftrace.c
+++ b/arch/x86/kernel/ftrace.c
@@ -79,11 +79,11 @@ static unsigned char *ftrace_call_replace(unsigned long ip, unsigned long addr)
79 * 79 *
80 * 1) Put the instruction pointer into the IP buffer 80 * 1) Put the instruction pointer into the IP buffer
81 * and the new code into the "code" buffer. 81 * and the new code into the "code" buffer.
82 * 2) Set a flag that says we are modifying code 82 * 2) Wait for any running NMIs to finish and set a flag that says
83 * 3) Wait for any running NMIs to finish. 83 * we are modifying code, it is done in an atomic operation.
84 * 4) Write the code 84 * 3) Write the code
85 * 5) clear the flag. 85 * 4) clear the flag.
86 * 6) Wait for any running NMIs to finish. 86 * 5) Wait for any running NMIs to finish.
87 * 87 *
88 * If an NMI is executed, the first thing it does is to call 88 * If an NMI is executed, the first thing it does is to call
89 * "ftrace_nmi_enter". This will check if the flag is set to write 89 * "ftrace_nmi_enter". This will check if the flag is set to write
@@ -95,9 +95,9 @@ static unsigned char *ftrace_call_replace(unsigned long ip, unsigned long addr)
95 * are the same as what exists. 95 * are the same as what exists.
96 */ 96 */
97 97
98#define MOD_CODE_WRITE_FLAG (1 << 31) /* set when NMI should do the write */
98static atomic_t nmi_running = ATOMIC_INIT(0); 99static atomic_t nmi_running = ATOMIC_INIT(0);
99static int mod_code_status; /* holds return value of text write */ 100static int mod_code_status; /* holds return value of text write */
100static int mod_code_write; /* set when NMI should do the write */
101static void *mod_code_ip; /* holds the IP to write to */ 101static void *mod_code_ip; /* holds the IP to write to */
102static void *mod_code_newcode; /* holds the text to write to the IP */ 102static void *mod_code_newcode; /* holds the text to write to the IP */
103 103
@@ -114,6 +114,20 @@ int ftrace_arch_read_dyn_info(char *buf, int size)
114 return r; 114 return r;
115} 115}
116 116
117static void clear_mod_flag(void)
118{
119 int old = atomic_read(&nmi_running);
120
121 for (;;) {
122 int new = old & ~MOD_CODE_WRITE_FLAG;
123
124 if (old == new)
125 break;
126
127 old = atomic_cmpxchg(&nmi_running, old, new);
128 }
129}
130
117static void ftrace_mod_code(void) 131static void ftrace_mod_code(void)
118{ 132{
119 /* 133 /*
@@ -127,27 +141,39 @@ static void ftrace_mod_code(void)
127 141
128 /* if we fail, then kill any new writers */ 142 /* if we fail, then kill any new writers */
129 if (mod_code_status) 143 if (mod_code_status)
130 mod_code_write = 0; 144 clear_mod_flag();
131} 145}
132 146
133void ftrace_nmi_enter(void) 147void ftrace_nmi_enter(void)
134{ 148{
135 atomic_inc(&nmi_running); 149 if (atomic_inc_return(&nmi_running) & MOD_CODE_WRITE_FLAG) {
136 /* Must have nmi_running seen before reading write flag */ 150 smp_rmb();
137 smp_mb();
138 if (mod_code_write) {
139 ftrace_mod_code(); 151 ftrace_mod_code();
140 atomic_inc(&nmi_update_count); 152 atomic_inc(&nmi_update_count);
141 } 153 }
154 /* Must have previous changes seen before executions */
155 smp_mb();
142} 156}
143 157
144void ftrace_nmi_exit(void) 158void ftrace_nmi_exit(void)
145{ 159{
146 /* Finish all executions before clearing nmi_running */ 160 /* Finish all executions before clearing nmi_running */
147 smp_wmb(); 161 smp_mb();
148 atomic_dec(&nmi_running); 162 atomic_dec(&nmi_running);
149} 163}
150 164
165static void wait_for_nmi_and_set_mod_flag(void)
166{
167 if (!atomic_cmpxchg(&nmi_running, 0, MOD_CODE_WRITE_FLAG))
168 return;
169
170 do {
171 cpu_relax();
172 } while (atomic_cmpxchg(&nmi_running, 0, MOD_CODE_WRITE_FLAG));
173
174 nmi_wait_count++;
175}
176
151static void wait_for_nmi(void) 177static void wait_for_nmi(void)
152{ 178{
153 if (!atomic_read(&nmi_running)) 179 if (!atomic_read(&nmi_running))
@@ -167,14 +193,9 @@ do_ftrace_mod_code(unsigned long ip, void *new_code)
167 mod_code_newcode = new_code; 193 mod_code_newcode = new_code;
168 194
169 /* The buffers need to be visible before we let NMIs write them */ 195 /* The buffers need to be visible before we let NMIs write them */
170 smp_wmb();
171
172 mod_code_write = 1;
173
174 /* Make sure write bit is visible before we wait on NMIs */
175 smp_mb(); 196 smp_mb();
176 197
177 wait_for_nmi(); 198 wait_for_nmi_and_set_mod_flag();
178 199
179 /* Make sure all running NMIs have finished before we write the code */ 200 /* Make sure all running NMIs have finished before we write the code */
180 smp_mb(); 201 smp_mb();
@@ -182,13 +203,9 @@ do_ftrace_mod_code(unsigned long ip, void *new_code)
182 ftrace_mod_code(); 203 ftrace_mod_code();
183 204
184 /* Make sure the write happens before clearing the bit */ 205 /* Make sure the write happens before clearing the bit */
185 smp_wmb();
186
187 mod_code_write = 0;
188
189 /* make sure NMIs see the cleared bit */
190 smp_mb(); 206 smp_mb();
191 207
208 clear_mod_flag();
192 wait_for_nmi(); 209 wait_for_nmi();
193 210
194 return mod_code_status; 211 return mod_code_status;