| Index: net/base/backoff_entry.cc | 
| diff --git a/net/base/backoff_entry.cc b/net/base/backoff_entry.cc | 
| index 0b3a06f1d559e181aa5fdd1157834b0384482ee6..90b4b7e8125e8accd033107e199c867b15a6724c 100644 | 
| --- a/net/base/backoff_entry.cc | 
| +++ b/net/base/backoff_entry.cc | 
| @@ -52,8 +52,8 @@ void BackoffEntry::InformOfRequest(bool succeeded) { | 
| base::TimeDelta delay; | 
| if (policy_->always_use_initial_delay) | 
| delay = base::TimeDelta::FromMilliseconds(policy_->initial_delay_ms); | 
| -    exponential_backoff_release_time_ = std::max( | 
| -        ImplGetTimeNow() + delay, exponential_backoff_release_time_); | 
| +    exponential_backoff_release_time_ = | 
| +        std::max(ImplGetTimeNow() + delay, exponential_backoff_release_time_); | 
| } | 
| } | 
|  | 
| @@ -92,8 +92,8 @@ bool BackoffEntry::CanDiscard() const { | 
| if (failure_count_ > 0) { | 
| // Need to keep track of failures until maximum back-off period | 
| // has passed (since further failures can add to back-off). | 
| -    return unused_since_ms >= std::max(policy_->maximum_backoff_ms, | 
| -                                       policy_->entry_lifetime_ms); | 
| +    return unused_since_ms >= | 
| +           std::max(policy_->maximum_backoff_ms, policy_->entry_lifetime_ms); | 
| } | 
|  | 
| // Otherwise, consider the entry is outdated if it hasn't been used for the | 
| @@ -159,9 +159,9 @@ base::TimeTicks BackoffEntry::CalculateReleaseTime() const { | 
|  | 
| // Decide between maximum release time and calculated release time, accounting | 
| // for overflow with both. | 
| -  int64 release_time_us = std::min( | 
| -      calculated_release_time_us.ValueOrDefault(kint64max), | 
| -      maximum_release_time_us.ValueOrDefault(kint64max)); | 
| +  int64 release_time_us = | 
| +      std::min(calculated_release_time_us.ValueOrDefault(kint64max), | 
| +               maximum_release_time_us.ValueOrDefault(kint64max)); | 
|  | 
| // Never reduce previously set release horizon, e.g. due to Retry-After | 
| // header. | 
|  |