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| 1 // Copyright 2014 The Chromium Authors. All rights reserved. | 1 // Copyright 2014 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "net/quic/quic_flags.h" | 5 #include "net/quic/quic_flags.h" |
| 6 | 6 |
| 7 bool FLAGS_quic_allow_oversized_packets_for_test = false; | 7 bool FLAGS_quic_allow_oversized_packets_for_test = false; |
| 8 | 8 |
| 9 // When true, the use time based loss detection instead of nack. | 9 // When true, the use time based loss detection instead of nack. |
| 10 bool FLAGS_quic_use_time_loss_detection = false; | 10 bool FLAGS_quic_use_time_loss_detection = false; |
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| 44 // If true, the silent close option will be honored. | 44 // If true, the silent close option will be honored. |
| 45 bool FLAGS_quic_allow_silent_close = true; | 45 bool FLAGS_quic_allow_silent_close = true; |
| 46 | 46 |
| 47 // If true, use std::cbrt instead of custom cube root. | 47 // If true, use std::cbrt instead of custom cube root. |
| 48 bool FLAGS_quic_use_std_cbrt = true; | 48 bool FLAGS_quic_use_std_cbrt = true; |
| 49 | 49 |
| 50 // If true, then the source address tokens generated for QUIC connects will | 50 // If true, then the source address tokens generated for QUIC connects will |
| 51 // store multiple addresses. | 51 // store multiple addresses. |
| 52 bool FLAGS_quic_use_multiple_address_in_source_tokens = false; | 52 bool FLAGS_quic_use_multiple_address_in_source_tokens = false; |
| 53 | 53 |
| 54 // If true, if min RTT and/or SRTT have not yet been set then initial RTT is |
| 55 // used to initialize them in a call to QuicConnection::GetStats. |
| 56 bool FLAGS_quic_use_initial_rtt_for_stats = true; |
| 57 |
| 54 // If true, uses the last sent packet for the RTO timer instead of the earliest. | 58 // If true, uses the last sent packet for the RTO timer instead of the earliest. |
| 55 bool FLAGS_quic_rto_uses_last_sent = true; | 59 bool FLAGS_quic_rto_uses_last_sent = true; |
| 56 | 60 |
| 57 // If true, attach QuicAckNotifiers to packets rather than individual stream | 61 // If true, attach QuicAckNotifiers to packets rather than individual stream |
| 58 // frames. | 62 // frames. |
| 59 bool FLAGS_quic_attach_ack_notifiers_to_packets = true; | 63 bool FLAGS_quic_attach_ack_notifiers_to_packets = true; |
| 60 | 64 |
| 61 // If true, the AckNotifierManager is informed about new packets as soon as they | 65 // If true, the AckNotifierManager is informed about new packets as soon as they |
| 62 // are serialized. | 66 // are serialized. |
| 63 bool FLAGS_quic_ack_notifier_informed_on_serialized = true; | 67 bool FLAGS_quic_ack_notifier_informed_on_serialized = true; |
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| 76 // longest time-wait list we should see is 5 seconds * 1000 qps = 5000. If we | 80 // longest time-wait list we should see is 5 seconds * 1000 qps = 5000. If we |
| 77 // allow for an order of magnitude leeway, we have 50000. | 81 // allow for an order of magnitude leeway, we have 50000. |
| 78 // | 82 // |
| 79 // Maximum number of connections on the time-wait list. A negative value implies | 83 // Maximum number of connections on the time-wait list. A negative value implies |
| 80 // no configured limit. | 84 // no configured limit. |
| 81 int64 FLAGS_quic_time_wait_list_max_connections = 50000; | 85 int64 FLAGS_quic_time_wait_list_max_connections = 50000; |
| 82 | 86 |
| 83 // If true, limit the number of connections on the quic time-wait list using a | 87 // If true, limit the number of connections on the quic time-wait list using a |
| 84 // flag. | 88 // flag. |
| 85 bool FLAGS_quic_limit_time_wait_list_size = true; | 89 bool FLAGS_quic_limit_time_wait_list_size = true; |
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