| Index: chrome/browser/private_working_set_snapshot_win.cc
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| diff --git a/chrome/browser/private_working_set_snapshot_win.cc b/chrome/browser/private_working_set_snapshot_win.cc
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| new file mode 100644
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| index 0000000000000000000000000000000000000000..a3955a43da8dd99b06b717348fa3e4169be8a3f6
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| --- /dev/null
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| +++ b/chrome/browser/private_working_set_snapshot_win.cc
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| @@ -0,0 +1,161 @@
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| +// Copyright 2015 The Chromium Authors. All rights reserved.
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| +// Use of this source code is governed by a BSD-style license that can be
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| +// found in the LICENSE file.
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| +
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| +#include "chrome/browser/private_working_set_snapshot.h"
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| +
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| +#include <pdh.h>
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| +#include <pdhmsg.h>
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| +
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| +#include <algorithm>
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| +
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| +#include "base/numerics/safe_conversions.h"
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| +#include "base/win/windows_version.h"
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| +
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| +// Link pdh.lib (import library for pdh.dll) whenever this file is linked in.
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| +#pragma comment(lib, "pdh.lib")
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| +
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| +PrivateWorkingSetSnapshot::PrivateWorkingSetSnapshot() {
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| +  // The Pdh APIs are supported on Windows XP and above, but the "Working Set -
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| +  // Private" counter that PrivateWorkingSetSnapshot depends on is not defined
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| +  // until Windows Vista and is not reliable until Windows 7. Early-out to avoid
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| +  // wasted effort. All queries will return zero and will have to use the
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| +  // fallback calculations.
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| +  if (base::win::GetVersion() <= base::win::VERSION_VISTA)
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| +    return;
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| +
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| +  // Create a Pdh query
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| +  PDH_HQUERY query_handle;
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| +  if (PdhOpenQuery(NULL, NULL, &query_handle) != ERROR_SUCCESS) {
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| +    return;
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| +  }
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| +
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| +  query_handle_.Set(query_handle);
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| +}
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| +
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| +PrivateWorkingSetSnapshot::~PrivateWorkingSetSnapshot() {
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| +}
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| +
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| +void PrivateWorkingSetSnapshot::AddToMonitorList(
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| +    const std::string& process_name) {
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| +  if (!query_handle_.IsValid())
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| +    return;
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| +
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| +  // Create the magic strings that will return a list of process IDs and a list
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| +  // of private working sets. The 'process_name' variable should be something
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| +  // like "chrome". The '*' character indicates that we want records for all
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| +  // processes whose names start with process_name - all chrome processes, but
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| +  // also all 'chrome_editor.exe' processes or other matching names. The excess
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| +  // information is unavoidable but harmless.
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| +  std::string process_id_query = "\\Process(" + process_name + "*)\\ID Process";
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| +  std::string private_ws_query =
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| +      "\\Process(" + process_name + "*)\\Working Set - Private";
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| +
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| +  // Add the two counters to the query.
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| +  PdhCounterPair new_counters;
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| +  if (PdhAddCounterA(query_handle_.Get(), process_id_query.c_str(), NULL,
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| +                     &new_counters.process_id_handle) != ERROR_SUCCESS) {
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| +    return;
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| +  }
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| +
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| +  // If adding the second counter fails then we should remove the first one.
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| +  if (PdhAddCounterA(query_handle_.Get(), private_ws_query.c_str(), NULL,
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| +                     &new_counters.private_ws_handle) != ERROR_SUCCESS) {
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| +    PdhRemoveCounter(new_counters.process_id_handle);
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| +  }
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| +
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| +  // Record the pair of counter query handles so that we can query them later.
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| +  counter_pairs_.push_back(new_counters);
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| +}
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| +
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| +void PrivateWorkingSetSnapshot::Sample() {
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| +  if (counter_pairs_.empty())
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| +    return;
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| +
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| +  // Destroy all previous data.
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| +  records_.resize(0);
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| +  // Record the requested data into PDH's internal buffers.
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| +  if (PdhCollectQueryData(query_handle_.Get()) != ERROR_SUCCESS)
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| +    return;
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| +
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| +  for (auto& counter_pair : counter_pairs_) {
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| +    // Find out how much space is required for the two counter arrays.
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| +    // A return code of PDH_MORE_DATA indicates that we should call again with
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| +    // the buffer size returned.
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| +    DWORD buffer_size1 = 0;
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| +    DWORD item_count1 = 0;
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| +    // Process IDs should be retrieved as PDH_FMT_LONG
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| +    if (PdhGetFormattedCounterArray(counter_pair.process_id_handle,
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| +                                    PDH_FMT_LONG, &buffer_size1, &item_count1,
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| +                                    nullptr) != PDH_MORE_DATA)
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| +      continue;
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| +    if (buffer_size1 == 0 || item_count1 == 0)
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| +      continue;
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| +
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| +    DWORD buffer_size2 = 0;
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| +    DWORD item_count2 = 0;
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| +    // Working sets should be retrieved as PDH_FMT_LARGE (LONGLONG)
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| +    // Note that if this second call to PdhGetFormattedCounterArray with the
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| +    // buffer size and count variables being zero is omitted then the PID and
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| +    // working-set results are not reliably correlated.
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| +    if (PdhGetFormattedCounterArray(counter_pair.private_ws_handle,
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| +                                    PDH_FMT_LARGE, &buffer_size2, &item_count2,
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| +                                    nullptr) != PDH_MORE_DATA)
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| +      continue;
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| +
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| +    // It is not clear whether Pdh guarantees that the two counters in the same
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| +    // query will execute atomically - if they will see the same set of
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| +    // processes. If they do not then the correspondence between "ID Process"
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| +    // and "Working Set - Private" is lost and we have to discard these results.
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| +    // In testing these values have always matched. If this check fails then
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| +    // the old per-process memory calculations will be used instead.
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| +    if (buffer_size1 != buffer_size2 || item_count1 != item_count2)
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| +      continue;
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| +
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| +    // Allocate enough space for the results of both queries.
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| +    std::vector<char> buffer(buffer_size1 * 2);
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| +    // Retrieve the process ID data.
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| +    auto process_id_data =
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| +        reinterpret_cast<PDH_FMT_COUNTERVALUE_ITEM*>(&buffer[0]);
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| +    if (PdhGetFormattedCounterArray(counter_pair.process_id_handle,
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| +                                    PDH_FMT_LONG, &buffer_size1, &item_count1,
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| +                                    process_id_data) != ERROR_SUCCESS)
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| +      continue;
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| +    // Retrieve the private working set data.
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| +    auto private_ws_data =
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| +        reinterpret_cast<PDH_FMT_COUNTERVALUE_ITEM*>(&buffer[buffer_size1]);
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| +    if (PdhGetFormattedCounterArray(counter_pair.private_ws_handle,
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| +                                    PDH_FMT_LARGE, &buffer_size1, &item_count1,
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| +                                    private_ws_data) != ERROR_SUCCESS)
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| +      continue;
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| +
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| +    // Make room for the new set of records.
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| +    size_t start_offset = records_.size();
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| +    records_.resize(start_offset + item_count1);
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| +
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| +    for (DWORD i = 0; i < item_count1; ++i) {
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| +      records_[start_offset + i].process_id =
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| +          process_id_data[i].FmtValue.longValue;
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| +      // Integer overflow can happen here if a 32-bit process is monitoring a
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| +      // 64-bit process so we do a saturated_cast.
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| +      records_[start_offset + i].private_ws =
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| +          base::saturated_cast<size_t>(private_ws_data[i].FmtValue.largeValue);
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| +    }
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| +  }
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| +
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| +  // The results will include all processes that match the passed in name,
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| +  // regardless of whether they are spawned by the calling process.
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| +  // The results must be sorted by process ID for efficient lookup.
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| +  std::sort(records_.begin(), records_.end());
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| +}
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| +
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| +size_t PrivateWorkingSetSnapshot::GetPrivateWorkingSet(
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| +    base::ProcessId process_id) const {
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| +  // Do a binary search for the requested process ID and return the working set
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| +  // if found.
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| +  auto p = std::lower_bound(records_.begin(), records_.end(), process_id);
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| +  if (p != records_.end() && p->process_id == process_id)
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| +    return p->private_ws;
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| +
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| +  return 0;
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| +}
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| 
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