v8/tools/codemap.js
jgruber 384a51da42 [prof] Attribute ticks in embedded builtins correctly
When attributing ticks to a function, we first check if the current pc
matches a section within the dynamic library. If we find a match here,
then we don't continue looking within dynamically generated range
information, e.g. for JS functions and builtins.

This logic breaks when embedded builtins come into play. They live
within the libv8.so shared library, and are found when looking up
statics. But what we really want is to look up the dynamically
generated code-range, which contains more precise information.

In this CL, this case is detected by matching the found symbol name.
If it's the embedded blob, then we continue to dynamic lookup.

Bug: v8:6666
Change-Id: I7cea2cd4898f5a08381a071bdbc2f862b9c80880
Reviewed-on: https://chromium-review.googlesource.com/1023422
Commit-Queue: Jakob Gruber <jgruber@chromium.org>
Reviewed-by: Jaroslav Sevcik <jarin@chromium.org>
Cr-Commit-Position: refs/heads/master@{#52723}
2018-04-23 10:18:26 +00:00

333 lines
8.9 KiB
JavaScript

// Copyright 2009 the V8 project authors. All rights reserved.
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above
// copyright notice, this list of conditions and the following
// disclaimer in the documentation and/or other materials provided
// with the distribution.
// * Neither the name of Google Inc. nor the names of its
// contributors may be used to endorse or promote products derived
// from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
/**
* Constructs a mapper that maps addresses into code entries.
*
* @constructor
*/
function CodeMap() {
/**
* Dynamic code entries. Used for JIT compiled code.
*/
this.dynamics_ = new SplayTree();
/**
* Name generator for entries having duplicate names.
*/
this.dynamicsNameGen_ = new CodeMap.NameGenerator();
/**
* Static code entries. Used for statically compiled code.
*/
this.statics_ = new SplayTree();
/**
* Libraries entries. Used for the whole static code libraries.
*/
this.libraries_ = new SplayTree();
/**
* Map of memory pages occupied with static code.
*/
this.pages_ = [];
};
/**
* The number of alignment bits in a page address.
*/
CodeMap.PAGE_ALIGNMENT = 12;
/**
* Page size in bytes.
*/
CodeMap.PAGE_SIZE =
1 << CodeMap.PAGE_ALIGNMENT;
/**
* Adds a dynamic (i.e. moveable and discardable) code entry.
*
* @param {number} start The starting address.
* @param {CodeMap.CodeEntry} codeEntry Code entry object.
*/
CodeMap.prototype.addCode = function(start, codeEntry) {
this.deleteAllCoveredNodes_(this.dynamics_, start, start + codeEntry.size);
this.dynamics_.insert(start, codeEntry);
};
/**
* Moves a dynamic code entry. Throws an exception if there is no dynamic
* code entry with the specified starting address.
*
* @param {number} from The starting address of the entry being moved.
* @param {number} to The destination address.
*/
CodeMap.prototype.moveCode = function(from, to) {
var removedNode = this.dynamics_.remove(from);
this.deleteAllCoveredNodes_(this.dynamics_, to, to + removedNode.value.size);
this.dynamics_.insert(to, removedNode.value);
};
/**
* Discards a dynamic code entry. Throws an exception if there is no dynamic
* code entry with the specified starting address.
*
* @param {number} start The starting address of the entry being deleted.
*/
CodeMap.prototype.deleteCode = function(start) {
var removedNode = this.dynamics_.remove(start);
};
/**
* Adds a library entry.
*
* @param {number} start The starting address.
* @param {CodeMap.CodeEntry} codeEntry Code entry object.
*/
CodeMap.prototype.addLibrary = function(
start, codeEntry) {
this.markPages_(start, start + codeEntry.size);
this.libraries_.insert(start, codeEntry);
};
/**
* Adds a static code entry.
*
* @param {number} start The starting address.
* @param {CodeMap.CodeEntry} codeEntry Code entry object.
*/
CodeMap.prototype.addStaticCode = function(
start, codeEntry) {
this.statics_.insert(start, codeEntry);
};
/**
* @private
*/
CodeMap.prototype.markPages_ = function(start, end) {
for (var addr = start; addr <= end;
addr += CodeMap.PAGE_SIZE) {
this.pages_[addr >>> CodeMap.PAGE_ALIGNMENT] = 1;
}
};
/**
* @private
*/
CodeMap.prototype.deleteAllCoveredNodes_ = function(tree, start, end) {
var to_delete = [];
var addr = end - 1;
while (addr >= start) {
var node = tree.findGreatestLessThan(addr);
if (!node) break;
var start2 = node.key, end2 = start2 + node.value.size;
if (start2 < end && start < end2) to_delete.push(start2);
addr = start2 - 1;
}
for (var i = 0, l = to_delete.length; i < l; ++i) tree.remove(to_delete[i]);
};
/**
* @private
*/
CodeMap.prototype.isAddressBelongsTo_ = function(addr, node) {
return addr >= node.key && addr < (node.key + node.value.size);
};
/**
* @private
*/
CodeMap.prototype.findInTree_ = function(tree, addr) {
var node = tree.findGreatestLessThan(addr);
return node && this.isAddressBelongsTo_(addr, node) ? node : null;
};
/**
* Embedded builtins are located in the shared library but should be attributed
* according to the dynamically generated code-create events.
*
* @private
*/
CodeMap.prototype.isEmbeddedBuiltin_ = function(entry) {
return entry.type == "CPP" && /v8_\w*embedded_blob_/.test(entry.name);
};
/**
* Finds a code entry that contains the specified address. Both static and
* dynamic code entries are considered. Returns the code entry and the offset
* within the entry.
*
* @param {number} addr Address.
*/
CodeMap.prototype.findAddress = function(addr) {
var pageAddr = addr >>> CodeMap.PAGE_ALIGNMENT;
if (pageAddr in this.pages_) {
// Static code entries can contain "holes" of unnamed code.
// In this case, the whole library is assigned to this address.
var result = this.findInTree_(this.statics_, addr);
if (!result) {
result = this.findInTree_(this.libraries_, addr);
if (!result) return null;
}
if (!this.isEmbeddedBuiltin_(result.value)) {
// Embedded builtins are handled in the following dynamic section.
return { entry : result.value, offset : addr - result.key };
}
}
var min = this.dynamics_.findMin();
var max = this.dynamics_.findMax();
if (max != null && addr < (max.key + max.value.size) && addr >= min.key) {
var dynaEntry = this.findInTree_(this.dynamics_, addr);
if (dynaEntry == null) return null;
// Dedupe entry name.
var entry = dynaEntry.value;
if (!entry.nameUpdated_) {
entry.name = this.dynamicsNameGen_.getName(entry.name);
entry.nameUpdated_ = true;
}
return { entry : entry, offset : addr - dynaEntry.key };
}
return null;
};
/**
* Finds a code entry that contains the specified address. Both static and
* dynamic code entries are considered.
*
* @param {number} addr Address.
*/
CodeMap.prototype.findEntry = function(addr) {
var result = this.findAddress(addr);
return result ? result.entry : null;
};
/**
* Returns a dynamic code entry using its starting address.
*
* @param {number} addr Address.
*/
CodeMap.prototype.findDynamicEntryByStartAddress =
function(addr) {
var node = this.dynamics_.find(addr);
return node ? node.value : null;
};
/**
* Returns an array of all dynamic code entries.
*/
CodeMap.prototype.getAllDynamicEntries = function() {
return this.dynamics_.exportValues();
};
/**
* Returns an array of pairs of all dynamic code entries and their addresses.
*/
CodeMap.prototype.getAllDynamicEntriesWithAddresses = function() {
return this.dynamics_.exportKeysAndValues();
};
/**
* Returns an array of all static code entries.
*/
CodeMap.prototype.getAllStaticEntries = function() {
return this.statics_.exportValues();
};
/**
* Returns an array of pairs of all static code entries and their addresses.
*/
CodeMap.prototype.getAllStaticEntriesWithAddresses = function() {
return this.statics_.exportKeysAndValues();
};
/**
* Returns an array of all libraries entries.
*/
CodeMap.prototype.getAllLibrariesEntries = function() {
return this.libraries_.exportValues();
};
/**
* Creates a code entry object.
*
* @param {number} size Code entry size in bytes.
* @param {string} opt_name Code entry name.
* @param {string} opt_type Code entry type, e.g. SHARED_LIB, CPP.
* @constructor
*/
CodeMap.CodeEntry = function(size, opt_name, opt_type) {
this.size = size;
this.name = opt_name || '';
this.type = opt_type || '';
this.nameUpdated_ = false;
};
CodeMap.CodeEntry.prototype.getName = function() {
return this.name;
};
CodeMap.CodeEntry.prototype.toString = function() {
return this.name + ': ' + this.size.toString(16);
};
CodeMap.NameGenerator = function() {
this.knownNames_ = {};
};
CodeMap.NameGenerator.prototype.getName = function(name) {
if (!(name in this.knownNames_)) {
this.knownNames_[name] = 0;
return name;
}
var count = ++this.knownNames_[name];
return name + ' {' + count + '}';
};