Add the rt linux 4.1.3-rt3 as base
[kvmfornfv.git] / kernel / tools / testing / selftests / powerpc / pmu / ebb / instruction_count_test.c
1 /*
2  * Copyright 2014, Michael Ellerman, IBM Corp.
3  * Licensed under GPLv2.
4  */
5
6 #define _GNU_SOURCE
7
8 #include <stdio.h>
9 #include <stdbool.h>
10 #include <string.h>
11 #include <sys/prctl.h>
12
13 #include "ebb.h"
14
15
16 /*
17  * Run a calibrated instruction loop and count instructions executed using
18  * EBBs. Make sure the counts look right.
19  */
20
21 extern void thirty_two_instruction_loop(uint64_t loops);
22
23 static bool counters_frozen = true;
24
25 static int do_count_loop(struct event *event, uint64_t instructions,
26                          uint64_t overhead, bool report)
27 {
28         int64_t difference, expected;
29         double percentage;
30
31         clear_ebb_stats();
32
33         counters_frozen = false;
34         mb();
35         mtspr(SPRN_MMCR0, mfspr(SPRN_MMCR0) & ~MMCR0_FC);
36
37         thirty_two_instruction_loop(instructions >> 5);
38
39         counters_frozen = true;
40         mb();
41         mtspr(SPRN_MMCR0, mfspr(SPRN_MMCR0) | MMCR0_FC);
42
43         count_pmc(4, sample_period);
44
45         event->result.value = ebb_state.stats.pmc_count[4-1];
46         expected = instructions + overhead;
47         difference = event->result.value - expected;
48         percentage = (double)difference / event->result.value * 100;
49
50         if (report) {
51                 printf("Looped for %lu instructions, overhead %lu\n", instructions, overhead);
52                 printf("Expected %lu\n", expected);
53                 printf("Actual   %llu\n", event->result.value);
54                 printf("Error    %ld, %f%%\n", difference, percentage);
55                 printf("Took %d EBBs\n", ebb_state.stats.ebb_count);
56         }
57
58         if (difference < 0)
59                 difference = -difference;
60
61         /* Tolerate a difference of up to 0.0001 % */
62         difference *= 10000 * 100;
63         if (difference / event->result.value)
64                 return -1;
65
66         return 0;
67 }
68
69 /* Count how many instructions it takes to do a null loop */
70 static uint64_t determine_overhead(struct event *event)
71 {
72         uint64_t current, overhead;
73         int i;
74
75         do_count_loop(event, 0, 0, false);
76         overhead = event->result.value;
77
78         for (i = 0; i < 100; i++) {
79                 do_count_loop(event, 0, 0, false);
80                 current = event->result.value;
81                 if (current < overhead) {
82                         printf("Replacing overhead %lu with %lu\n", overhead, current);
83                         overhead = current;
84                 }
85         }
86
87         return overhead;
88 }
89
90 static void pmc4_ebb_callee(void)
91 {
92         uint64_t val;
93
94         val = mfspr(SPRN_BESCR);
95         if (!(val & BESCR_PMEO)) {
96                 ebb_state.stats.spurious++;
97                 goto out;
98         }
99
100         ebb_state.stats.ebb_count++;
101         count_pmc(4, sample_period);
102 out:
103         if (counters_frozen)
104                 reset_ebb_with_clear_mask(MMCR0_PMAO);
105         else
106                 reset_ebb();
107 }
108
109 int instruction_count(void)
110 {
111         struct event event;
112         uint64_t overhead;
113
114         event_init_named(&event, 0x400FA, "PM_RUN_INST_CMPL");
115         event_leader_ebb_init(&event);
116         event.attr.exclude_kernel = 1;
117         event.attr.exclude_hv = 1;
118         event.attr.exclude_idle = 1;
119
120         FAIL_IF(event_open(&event));
121         FAIL_IF(ebb_event_enable(&event));
122
123         sample_period = COUNTER_OVERFLOW;
124
125         setup_ebb_handler(pmc4_ebb_callee);
126         mtspr(SPRN_MMCR0, mfspr(SPRN_MMCR0) & ~MMCR0_FC);
127         ebb_global_enable();
128
129         overhead = determine_overhead(&event);
130         printf("Overhead of null loop: %lu instructions\n", overhead);
131
132         /* Run for 1M instructions */
133         FAIL_IF(do_count_loop(&event, 0x100000, overhead, true));
134
135         /* Run for 10M instructions */
136         FAIL_IF(do_count_loop(&event, 0xa00000, overhead, true));
137
138         /* Run for 100M instructions */
139         FAIL_IF(do_count_loop(&event, 0x6400000, overhead, true));
140
141         /* Run for 1G instructions */
142         FAIL_IF(do_count_loop(&event, 0x40000000, overhead, true));
143
144         /* Run for 16G instructions */
145         FAIL_IF(do_count_loop(&event, 0x400000000, overhead, true));
146
147         /* Run for 64G instructions */
148         FAIL_IF(do_count_loop(&event, 0x1000000000, overhead, true));
149
150         /* Run for 128G instructions */
151         FAIL_IF(do_count_loop(&event, 0x2000000000, overhead, true));
152
153         ebb_global_disable();
154         event_close(&event);
155
156         printf("Finished OK\n");
157
158         return 0;
159 }
160
161 int main(void)
162 {
163         return test_harness(instruction_count, "instruction_count");
164 }