perf_counter tools: Enable kernel module symbol loading in tools
[deliverable/linux.git] / tools / perf / util / callchain.c
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1/*
2 * Copyright (C) 2009, Frederic Weisbecker <fweisbec@gmail.com>
3 *
4 * Handle the callchains from the stream in an ad-hoc radix tree and then
5 * sort them in an rbtree.
6 *
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7 * Using a radix for code path provides a fast retrieval and factorizes
8 * memory use. Also that lets us use the paths in a hierarchical graph view.
9 *
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10 */
11
12#include <stdlib.h>
13#include <stdio.h>
14#include <stdbool.h>
15#include <errno.h>
16
17#include "callchain.h"
18
19
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20static void
21rb_insert_callchain(struct rb_root *root, struct callchain_node *chain)
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22{
23 struct rb_node **p = &root->rb_node;
24 struct rb_node *parent = NULL;
25 struct callchain_node *rnode;
26
27 while (*p) {
28 parent = *p;
29 rnode = rb_entry(parent, struct callchain_node, rb_node);
30
31 if (rnode->hit < chain->hit)
32 p = &(*p)->rb_left;
33 else
34 p = &(*p)->rb_right;
35 }
36
37 rb_link_node(&chain->rb_node, parent, p);
38 rb_insert_color(&chain->rb_node, root);
39}
40
41/*
42 * Once we get every callchains from the stream, we can now
43 * sort them by hit
44 */
45void sort_chain_to_rbtree(struct rb_root *rb_root, struct callchain_node *node)
46{
47 struct callchain_node *child;
48
49 list_for_each_entry(child, &node->children, brothers)
50 sort_chain_to_rbtree(rb_root, child);
51
52 if (node->hit)
53 rb_insert_callchain(rb_root, node);
54}
55
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56/*
57 * Create a child for a parent. If inherit_children, then the new child
58 * will become the new parent of it's parent children
59 */
60static struct callchain_node *
61create_child(struct callchain_node *parent, bool inherit_children)
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62{
63 struct callchain_node *new;
64
65 new = malloc(sizeof(*new));
66 if (!new) {
67 perror("not enough memory to create child for code path tree");
68 return NULL;
69 }
70 new->parent = parent;
71 INIT_LIST_HEAD(&new->children);
72 INIT_LIST_HEAD(&new->val);
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73
74 if (inherit_children) {
75 struct callchain_node *next;
76
77 list_splice(&parent->children, &new->children);
78 INIT_LIST_HEAD(&parent->children);
79
80 list_for_each_entry(next, &new->children, brothers)
81 next->parent = new;
82 }
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83 list_add_tail(&new->brothers, &parent->children);
84
85 return new;
86}
87
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88/*
89 * Fill the node with callchain values
90 */
8cb76d99 91static void
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92fill_node(struct callchain_node *node, struct ip_callchain *chain,
93 int start, struct symbol **syms)
8cb76d99 94{
f37a291c 95 unsigned int i;
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96
97 for (i = start; i < chain->nr; i++) {
98 struct callchain_list *call;
99
9198aa77 100 call = malloc(sizeof(*call));
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101 if (!call) {
102 perror("not enough memory for the code path tree");
103 return;
104 }
105 call->ip = chain->ips[i];
4424961a 106 call->sym = syms[i];
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107 list_add_tail(&call->list, &node->val);
108 }
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109 node->val_nr = chain->nr - start;
110 if (!node->val_nr)
111 printf("Warning: empty node in callchain tree\n");
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112}
113
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114static void
115add_child(struct callchain_node *parent, struct ip_callchain *chain,
116 int start, struct symbol **syms)
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117{
118 struct callchain_node *new;
119
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120 new = create_child(parent, false);
121 fill_node(new, chain, start, syms);
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122
123 new->hit = 1;
124}
125
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126/*
127 * Split the parent in two parts (a new child is created) and
128 * give a part of its callchain to the created child.
129 * Then create another child to host the given callchain of new branch
130 */
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131static void
132split_add_child(struct callchain_node *parent, struct ip_callchain *chain,
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133 struct callchain_list *to_split, int idx_parents, int idx_local,
134 struct symbol **syms)
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135{
136 struct callchain_node *new;
deac911c 137 struct list_head *old_tail;
f37a291c 138 unsigned int idx_total = idx_parents + idx_local;
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139
140 /* split */
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141 new = create_child(parent, true);
142
143 /* split the callchain and move a part to the new child */
144 old_tail = parent->val.prev;
145 list_del_range(&to_split->list, old_tail);
146 new->val.next = &to_split->list;
147 new->val.prev = old_tail;
148 to_split->list.prev = &new->val;
149 old_tail->next = &new->val;
8cb76d99 150
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151 /* split the hits */
152 new->hit = parent->hit;
153 new->val_nr = parent->val_nr - idx_local;
154 parent->val_nr = idx_local;
155
156 /* create a new child for the new branch if any */
157 if (idx_total < chain->nr) {
158 parent->hit = 0;
159 add_child(parent, chain, idx_total, syms);
160 } else {
161 parent->hit = 1;
162 }
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163}
164
165static int
166__append_chain(struct callchain_node *root, struct ip_callchain *chain,
f37a291c 167 unsigned int start, struct symbol **syms);
8cb76d99 168
deac911c 169static void
4424961a 170__append_chain_children(struct callchain_node *root, struct ip_callchain *chain,
f37a291c 171 struct symbol **syms, unsigned int start)
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172{
173 struct callchain_node *rnode;
174
175 /* lookup in childrens */
176 list_for_each_entry(rnode, &root->children, brothers) {
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177 unsigned int ret = __append_chain(rnode, chain, start, syms);
178
8cb76d99 179 if (!ret)
deac911c 180 return;
8cb76d99 181 }
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182 /* nothing in children, add to the current node */
183 add_child(root, chain, start, syms);
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184}
185
186static int
187__append_chain(struct callchain_node *root, struct ip_callchain *chain,
f37a291c 188 unsigned int start, struct symbol **syms)
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189{
190 struct callchain_list *cnode;
f37a291c 191 unsigned int i = start;
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192 bool found = false;
193
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194 /*
195 * Lookup in the current node
196 * If we have a symbol, then compare the start to match
197 * anywhere inside a function.
198 */
8cb76d99 199 list_for_each_entry(cnode, &root->val, list) {
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200 if (i == chain->nr)
201 break;
202 if (cnode->sym && syms[i]) {
203 if (cnode->sym->start != syms[i]->start)
204 break;
205 } else if (cnode->ip != chain->ips[i])
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206 break;
207 if (!found)
208 found = true;
deac911c 209 i++;
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210 }
211
212 /* matches not, relay on the parent */
213 if (!found)
214 return -1;
215
216 /* we match only a part of the node. Split it and add the new chain */
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217 if (i - start < root->val_nr) {
218 split_add_child(root, chain, cnode, start, i - start, syms);
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219 return 0;
220 }
221
222 /* we match 100% of the path, increment the hit */
deac911c 223 if (i - start == root->val_nr && i == chain->nr) {
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224 root->hit++;
225 return 0;
226 }
227
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228 /* We match the node and still have a part remaining */
229 __append_chain_children(root, chain, syms, i);
230
231 return 0;
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232}
233
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234void append_chain(struct callchain_node *root, struct ip_callchain *chain,
235 struct symbol **syms)
8cb76d99 236{
deac911c 237 __append_chain_children(root, chain, syms, 0);
8cb76d99 238}
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