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.. This work is licensed under a Creative Commons Attribution 4.0 International
.. License.
.. http://creativecommons.org/licenses/by/4.0
.. (c) OPNFV, Huawei Technologies Co.,Ltd and others.

*************************************
Yardstick Test Case Description TC071
*************************************

.. _cirros: https://download.cirros-cloud.net
.. _pktgen: https://www.kernel.org/doc/Documentation/networking/pktgen.txt
.. _cachestat: https://github.com/brendangregg/perf-tools/tree/master/fs

+-----------------------------------------------------------------------------+
|Latency, Cache Utilization, Throughput, Packet Loss                          |
|                                                                             |
+--------------+--------------------------------------------------------------+
|test case id  | OPNFV_YARDSTICK_TC071_Latency, Cache Utilization,            |
|              | Throughput,Packet Loss                                       |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|metric        | Number of flows, latency, throughput, Cache Utilization,     |
|              | packet loss                                                  |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|test purpose  | To evaluate the IaaS network performance with regards to     |
|              | flows and throughput, such as if and how different amounts   |
|              | of flows matter for the throughput between hosts on different|
|              | compute blades. Typically e.g. the performance of a vSwitch  |
|              | depends on the number of flows running through it. Also      |
|              | performance of other equipment or entities can depend        |
|              | on the number of flows or the packet sizes used.             |
|              | The purpose is also to be able to spot trends.               |
|              | Test results, graphs and similar shall be stored for         |
|              | comparison reasons and product evolution understanding       |
|              | between different OPNFV versions and/or configurations.      |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|configuration | file: opnfv_yardstick_tc071.yaml                             |
|              |                                                              |
|              | Packet size: 64 bytes                                        |
|              | Number of ports: 1, 10, 50, 100, 300, 500, 750 and 1000.     |
|              | The amount configured ports map from 2 up to 1001000 flows,  |
|              | respectively. Each port amount is run two times, for 20      |
|              | seconds each. Then the next port_amount is run, and so on.   |
|              | During the test Cache Utilization on both client and server, |
|              | and the network latency between the client and server are    |
|              | measured.                                                    |
|              | The client and server are distributed on different HW.       |
|              | For SLA max_ppm is set to 1000.                              |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|test tool     | pktgen                                                       |
|              |                                                              |
|              | Pktgen is not always part of a Linux distribution, hence it  |
|              | needs to be installed. It is part of the Yardstick Glance    |
|              | image.                                                       |
|              | (As an example see the /yardstick/tools/ directory for how   |
|              | to generate a Linux image with pktgen included.)             |
|              |                                                              |
|              | ping                                                         |
|              |                                                              |
|              | Ping is normally part of any Linux distribution, hence it    |
|              | doesn't need to be installed. It is also part of the         |
|              | Yardstick Glance image.                                      |
|              | (For example also a cirros_ image can be downloaded, it      |
|              | includes ping)                                               |
|              |                                                              |
|              | cachestat                                                    |
|              |                                                              |
|              | cachestat is not always part of a Linux distribution, hence  |
|              | it needs to be installed.                                    |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|references    | Ping man pages                                               |
|              |                                                              |
|              | pktgen_                                                      |
|              |                                                              |
|              | cachestat_                                                   |
|              |                                                              |
|              | ETSI-NFV-TST001                                              |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|applicability | Test can be configured with different packet sizes, amount   |
|              | of flows and test duration. Default values exist.            |
|              |                                                              |
|              | SLA (optional): max_ppm: The number of packets per million   |
|              | packets sent that are acceptable to lose, not received.      |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|pre-test      | The test case image needs to be installed into Glance        |
|conditions    | with pktgen included in it.                                  |
|              |                                                              |
|              | No POD specific requirements have been identified.           |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|test sequence | description and expected result                              |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|step 1        | The hosts are installed, as server and client. pktgen is     |
|              | invoked and logs are produced and stored.                    |
|              |                                                              |
|              | Result: Logs are stored.                                     |
|              |                                                              |
+--------------+--------------------------------------------------------------+
|test verdict  | Fails only if SLA is not passed, or if there is a test case  |
|              | execution problem.                                           |
|              |                                                              |
+--------------+--------------------------------------------------------------+
udio->resource[id].mask; else val &= ~audio->resource[id].mask; twl_i2c_write_u8(TWL4030_MODULE_AUDIO_VOICE, val, audio->resource[id].reg); return val; } static inline int twl4030_audio_get_resource(enum twl4030_audio_res id) { struct twl4030_audio *audio = platform_get_drvdata(twl4030_audio_dev); u8 val; twl_i2c_read_u8(TWL4030_MODULE_AUDIO_VOICE, &val, audio->resource[id].reg); return val; } /* * Enable the resource. * The function returns with error or the content of the register */ int twl4030_audio_enable_resource(enum twl4030_audio_res id) { struct twl4030_audio *audio = platform_get_drvdata(twl4030_audio_dev); int val; if (id >= TWL4030_AUDIO_RES_MAX) { dev_err(&twl4030_audio_dev->dev, "Invalid resource ID (%u)\n", id); return -EINVAL; } mutex_lock(&audio->mutex); if (!audio->resource[id].request_count) /* Resource was disabled, enable it */ val = twl4030_audio_set_resource(id, 1); else val = twl4030_audio_get_resource(id); audio->resource[id].request_count++; mutex_unlock(&audio->mutex); return val; } EXPORT_SYMBOL_GPL(twl4030_audio_enable_resource); /* * Disable the resource. * The function returns with error or the content of the register */ int twl4030_audio_disable_resource(enum twl4030_audio_res id) { struct twl4030_audio *audio = platform_get_drvdata(twl4030_audio_dev); int val; if (id >= TWL4030_AUDIO_RES_MAX) { dev_err(&twl4030_audio_dev->dev, "Invalid resource ID (%u)\n", id); return -EINVAL; } mutex_lock(&audio->mutex); if (!audio->resource[id].request_count) { dev_err(&twl4030_audio_dev->dev, "Resource has been disabled already (%u)\n", id); mutex_unlock(&audio->mutex); return -EPERM; } audio->resource[id].request_count--; if (!audio->resource[id].request_count) /* Resource can be disabled now */ val = twl4030_audio_set_resource(id, 0); else val = twl4030_audio_get_resource(id); mutex_unlock(&audio->mutex); return val; } EXPORT_SYMBOL_GPL(twl4030_audio_disable_resource); unsigned int twl4030_audio_get_mclk(void) { struct twl4030_audio *audio = platform_get_drvdata(twl4030_audio_dev); return audio->audio_mclk; } EXPORT_SYMBOL_GPL(twl4030_audio_get_mclk); static bool twl4030_audio_has_codec(struct twl4030_audio_data *pdata, struct device_node *node) { if (pdata && pdata->codec) return true; if (of_find_node_by_name(node, "codec")) return true; return false; } static bool twl4030_audio_has_vibra(struct twl4030_audio_data *pdata, struct device_node *node) { int vibra; if (pdata && pdata->vibra) return true; if (!of_property_read_u32(node, "ti,enable-vibra", &vibra) && vibra) return true; return false; } static int twl4030_audio_probe(struct platform_device *pdev) { struct twl4030_audio *audio; struct twl4030_audio_data *pdata = dev_get_platdata(&pdev->dev); struct device_node *node = pdev->dev.of_node; struct mfd_cell *cell = NULL; int ret, childs = 0; u8 val; if (!pdata && !node) { dev_err(&pdev->dev, "Platform data is missing\n"); return -EINVAL; } audio = devm_kzalloc(&pdev->dev, sizeof(struct twl4030_audio), GFP_KERNEL); if (!audio) return -ENOMEM; mutex_init(&audio->mutex); audio->audio_mclk = twl_get_hfclk_rate(); /* Configure APLL_INFREQ and disable APLL if enabled */ switch (audio->audio_mclk) { case 19200000: val = TWL4030_APLL_INFREQ_19200KHZ; break; case 26000000: val = TWL4030_APLL_INFREQ_26000KHZ; break; case 38400000: val = TWL4030_APLL_INFREQ_38400KHZ; break; default: dev_err(&pdev->dev, "Invalid audio_mclk\n"); return -EINVAL; } twl_i2c_write_u8(TWL4030_MODULE_AUDIO_VOICE, val, TWL4030_REG_APLL_CTL); /* Codec power */ audio->resource[TWL4030_AUDIO_RES_POWER].reg = TWL4030_REG_CODEC_MODE; audio->resource[TWL4030_AUDIO_RES_POWER].mask = TWL4030_CODECPDZ; /* PLL */ audio->resource[TWL4030_AUDIO_RES_APLL].reg = TWL4030_REG_APLL_CTL; audio->resource[TWL4030_AUDIO_RES_APLL].mask = TWL4030_APLL_EN; if (twl4030_audio_has_codec(pdata, node)) { cell = &audio->cells[childs]; cell->name = "twl4030-codec"; if (pdata) { cell->platform_data = pdata->codec; cell->pdata_size = sizeof(*pdata->codec); } childs++; } if (twl4030_audio_has_vibra(pdata, node)) { cell = &audio->cells[childs]; cell->name = "twl4030-vibra"; if (pdata) { cell->platform_data = pdata->vibra; cell->pdata_size = sizeof(*pdata->vibra); } childs++; } platform_set_drvdata(pdev, audio); twl4030_audio_dev = pdev; if (childs) ret = mfd_add_devices(&pdev->dev, pdev->id, audio->cells, childs, NULL, 0, NULL); else { dev_err(&pdev->dev, "No platform data found for childs\n"); ret = -ENODEV; } if (ret) twl4030_audio_dev = NULL; return ret; } static int twl4030_audio_remove(struct platform_device *pdev) { mfd_remove_devices(&pdev->dev); twl4030_audio_dev = NULL; return 0; } static const struct of_device_id twl4030_audio_of_match[] = { {.compatible = "ti,twl4030-audio", }, { }, }; MODULE_DEVICE_TABLE(of, twl4030_audio_of_match); static struct platform_driver twl4030_audio_driver = { .driver = { .name = "twl4030-audio", .of_match_table = twl4030_audio_of_match, }, .probe = twl4030_audio_probe, .remove = twl4030_audio_remove, }; module_platform_driver(twl4030_audio_driver); MODULE_AUTHOR("Peter Ujfalusi <peter.ujfalusi@ti.com>"); MODULE_DESCRIPTION("TWL4030 audio block MFD driver"); MODULE_LICENSE("GPL"); MODULE_ALIAS("platform:twl4030-audio");