[ffmpeg] x264 配置参数解析

背景

创建 x264 编码器后,其有一组默认的编码器配置参数,也可以根据需要修改参数,来满足编码要求。

具体参数

可修改的参数,比较多,这边只列举一些常用的。

获取可以配置的参数

方式1

查看 ffmpeg源码 libx264.c,其中
static const AVOption options[] = {xx};这表示其可修改的参数,其他编码器类似。

static const AVOption options[] = {{ "preset",        "Set the encoding preset (cf. x264 --fullhelp)",   OFFSET(preset),        AV_OPT_TYPE_STRING, { .str = "medium" }, 0, 0, VE},{ "tune",          "Tune the encoding params (cf. x264 --fullhelp)",  OFFSET(tune),          AV_OPT_TYPE_STRING, { 0 }, 0, 0, VE},{ "profile",       "Set profile restrictions (cf. x264 --fullhelp)",  OFFSET(profile_opt),       AV_OPT_TYPE_STRING, { 0 }, 0, 0, VE},{ "fastfirstpass", "Use fast settings when encoding first pass",      OFFSET(fastfirstpass), AV_OPT_TYPE_BOOL, { .i64 = 1 }, 0, 1, VE},{"level", "Specify level (as defined by Annex A)", OFFSET(level), AV_OPT_TYPE_STRING, {.str=NULL}, 0, 0, VE},{"passlogfile", "Filename for 2 pass stats", OFFSET(stats), AV_OPT_TYPE_STRING, {.str=NULL}, 0, 0, VE},{"wpredp", "Weighted prediction for P-frames", OFFSET(wpredp), AV_OPT_TYPE_STRING, {.str=NULL}, 0, 0, VE},{"a53cc",          "Use A53 Closed Captions (if available)",          OFFSET(a53_cc),        AV_OPT_TYPE_BOOL,   {.i64 = 1}, 0, 1, VE},{"x264opts", "x264 options", OFFSET(x264opts), AV_OPT_TYPE_STRING, {.str=NULL}, 0, 0, VE},{ "crf",           "Select the quality for constant quality mode",    OFFSET(crf),           AV_OPT_TYPE_FLOAT,  {.dbl = -1 }, -1, FLT_MAX, VE },{ "crf_max",       "In CRF mode, prevents VBV from lowering quality beyond this point.",OFFSET(crf_max), AV_OPT_TYPE_FLOAT, {.dbl = -1 }, -1, FLT_MAX, VE },{ "qp",            "Constant quantization parameter rate control method",OFFSET(cqp),        AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE },{ "aq-mode",       "AQ method",                                       OFFSET(aq_mode),       AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE, "aq_mode"},{ "none",          NULL,                              0, AV_OPT_TYPE_CONST, {.i64 = X264_AQ_NONE},         INT_MIN, INT_MAX, VE, "aq_mode" },{ "variance",      "Variance AQ (complexity mask)",   0, AV_OPT_TYPE_CONST, {.i64 = X264_AQ_VARIANCE},     INT_MIN, INT_MAX, VE, "aq_mode" },{ "autovariance",  "Auto-variance AQ",                0, AV_OPT_TYPE_CONST, {.i64 = X264_AQ_AUTOVARIANCE}, INT_MIN, INT_MAX, VE, "aq_mode" },
#if X264_BUILD >= 144{ "autovariance-biased", "Auto-variance AQ with bias to dark scenes", 0, AV_OPT_TYPE_CONST, {.i64 = X264_AQ_AUTOVARIANCE_BIASED}, INT_MIN, INT_MAX, VE, "aq_mode" },
#endif{ "aq-strength",   "AQ strength. Reduces blocking and blurring in flat and textured areas.", OFFSET(aq_strength), AV_OPT_TYPE_FLOAT, {.dbl = -1}, -1, FLT_MAX, VE},{ "psy",           "Use psychovisual optimizations.",                 OFFSET(psy),           AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE },{ "psy-rd",        "Strength of psychovisual optimization, in <psy-rd>:<psy-trellis> format.", OFFSET(psy_rd), AV_OPT_TYPE_STRING,  {0 }, 0, 0, VE},{ "rc-lookahead",  "Number of frames to look ahead for frametype and ratecontrol", OFFSET(rc_lookahead), AV_OPT_TYPE_INT, { .i64 = -1 }, -1, INT_MAX, VE },{ "weightb",       "Weighted prediction for B-frames.",               OFFSET(weightb),       AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE },{ "weightp",       "Weighted prediction analysis method.",            OFFSET(weightp),       AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE, "weightp" },{ "none",          NULL, 0, AV_OPT_TYPE_CONST, {.i64 = X264_WEIGHTP_NONE},   INT_MIN, INT_MAX, VE, "weightp" },{ "simple",        NULL, 0, AV_OPT_TYPE_CONST, {.i64 = X264_WEIGHTP_SIMPLE}, INT_MIN, INT_MAX, VE, "weightp" },{ "smart",         NULL, 0, AV_OPT_TYPE_CONST, {.i64 = X264_WEIGHTP_SMART},  INT_MIN, INT_MAX, VE, "weightp" },{ "ssim",          "Calculate and print SSIM stats.",                 OFFSET(ssim),          AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE },{ "intra-refresh", "Use Periodic Intra Refresh instead of IDR frames.",OFFSET(intra_refresh),AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE },{ "bluray-compat", "Bluray compatibility workarounds.",               OFFSET(bluray_compat) ,AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE },{ "b-bias",        "Influences how often B-frames are used",          OFFSET(b_bias),        AV_OPT_TYPE_INT,    { .i64 = INT_MIN}, INT_MIN, INT_MAX, VE },{ "b-pyramid",     "Keep some B-frames as references.",               OFFSET(b_pyramid),     AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE, "b_pyramid" },{ "none",          NULL,                                  0, AV_OPT_TYPE_CONST, {.i64 = X264_B_PYRAMID_NONE},   INT_MIN, INT_MAX, VE, "b_pyramid" },{ "strict",        "Strictly hierarchical pyramid",       0, AV_OPT_TYPE_CONST, {.i64 = X264_B_PYRAMID_STRICT}, INT_MIN, INT_MAX, VE, "b_pyramid" },{ "normal",        "Non-strict (not Blu-ray compatible)", 0, AV_OPT_TYPE_CONST, {.i64 = X264_B_PYRAMID_NORMAL}, INT_MIN, INT_MAX, VE, "b_pyramid" },{ "mixed-refs",    "One reference per partition, as opposed to one reference per macroblock", OFFSET(mixed_refs), AV_OPT_TYPE_BOOL, { .i64 = -1}, -1, 1, VE },{ "8x8dct",        "High profile 8x8 transform.",                     OFFSET(dct8x8),        AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE},{ "fast-pskip",    NULL,                                              OFFSET(fast_pskip),    AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE},{ "aud",           "Use access unit delimiters.",                     OFFSET(aud),           AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE},{ "mbtree",        "Use macroblock tree ratecontrol.",                OFFSET(mbtree),        AV_OPT_TYPE_BOOL,   { .i64 = -1 }, -1, 1, VE},{ "deblock",       "Loop filter parameters, in <alpha:beta> form.",   OFFSET(deblock),       AV_OPT_TYPE_STRING, { 0 },  0, 0, VE},{ "cplxblur",      "Reduce fluctuations in QP (before curve compression)", OFFSET(cplxblur), AV_OPT_TYPE_FLOAT,  {.dbl = -1 }, -1, FLT_MAX, VE},{ "partitions",    "A comma-separated list of partitions to consider. ""Possible values: p8x8, p4x4, b8x8, i8x8, i4x4, none, all", OFFSET(partitions), AV_OPT_TYPE_STRING, { 0 }, 0, 0, VE},{ "direct-pred",   "Direct MV prediction mode",                       OFFSET(direct_pred),   AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE, "direct-pred" },{ "none",          NULL,      0,    AV_OPT_TYPE_CONST, { .i64 = X264_DIRECT_PRED_NONE },     0, 0, VE, "direct-pred" },{ "spatial",       NULL,      0,    AV_OPT_TYPE_CONST, { .i64 = X264_DIRECT_PRED_SPATIAL },  0, 0, VE, "direct-pred" },{ "temporal",      NULL,      0,    AV_OPT_TYPE_CONST, { .i64 = X264_DIRECT_PRED_TEMPORAL }, 0, 0, VE, "direct-pred" },{ "auto",          NULL,      0,    AV_OPT_TYPE_CONST, { .i64 = X264_DIRECT_PRED_AUTO },     0, 0, VE, "direct-pred" },{ "slice-max-size","Limit the size of each slice in bytes",           OFFSET(slice_max_size),AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE },{ "stats",         "Filename for 2 pass stats",                       OFFSET(stats),         AV_OPT_TYPE_STRING, { 0 },  0,       0, VE },{ "nal-hrd",       "Signal HRD information (requires vbv-bufsize; ""cbr not allowed in .mp4)",                        OFFSET(nal_hrd),       AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, INT_MAX, VE, "nal-hrd" },{ "none",          NULL, 0, AV_OPT_TYPE_CONST, {.i64 = X264_NAL_HRD_NONE}, INT_MIN, INT_MAX, VE, "nal-hrd" },{ "vbr",           NULL, 0, AV_OPT_TYPE_CONST, {.i64 = X264_NAL_HRD_VBR},  INT_MIN, INT_MAX, VE, "nal-hrd" },{ "cbr",           NULL, 0, AV_OPT_TYPE_CONST, {.i64 = X264_NAL_HRD_CBR},  INT_MIN, INT_MAX, VE, "nal-hrd" },{ "avcintra-class","AVC-Intra class 50/100/200/300/480",              OFFSET(avcintra_class),AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, 480   , VE},{ "me_method",    "Set motion estimation method",                     OFFSET(motion_est),    AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, X264_ME_TESA, VE, "motion-est"},{ "motion-est",   "Set motion estimation method",                     OFFSET(motion_est),    AV_OPT_TYPE_INT,    { .i64 = -1 }, -1, X264_ME_TESA, VE, "motion-est"},{ "dia",           NULL, 0, AV_OPT_TYPE_CONST, { .i64 = X264_ME_DIA },  INT_MIN, INT_MAX, VE, "motion-est" },{ "hex",           NULL, 0, AV_OPT_TYPE_CONST, { .i64 = X264_ME_HEX },  INT_MIN, INT_MAX, VE, "motion-est" },{ "umh",           NULL, 0, AV_OPT_TYPE_CONST, { .i64 = X264_ME_UMH },  INT_MIN, INT_MAX, VE, "motion-est" },{ "esa",           NULL, 0, AV_OPT_TYPE_CONST, { .i64 = X264_ME_ESA },  INT_MIN, INT_MAX, VE, "motion-est" },{ "tesa",          NULL, 0, AV_OPT_TYPE_CONST, { .i64 = X264_ME_TESA }, INT_MIN, INT_MAX, VE, "motion-est" },{ "forced-idr",   "If forcing keyframes, force them as IDR frames.",                                  OFFSET(forced_idr),  AV_OPT_TYPE_BOOL,   { .i64 = 0 }, -1, 1, VE },{ "coder",    "Coder type",                                           OFFSET(coder), AV_OPT_TYPE_INT, { .i64 = -1 }, -1, 1, VE, "coder" },{ "default",          NULL, 0, AV_OPT_TYPE_CONST, { .i64 = -1 }, INT_MIN, INT_MAX, VE, "coder" },{ "cavlc",            NULL, 0, AV_OPT_TYPE_CONST, { .i64 = 0 },  INT_MIN, INT_MAX, VE, "coder" },{ "cabac",            NULL, 0, AV_OPT_TYPE_CONST, { .i64 = 1 },  INT_MIN, INT_MAX, VE, "coder" },{ "vlc",              NULL, 0, AV_OPT_TYPE_CONST, { .i64 = 0 },  INT_MIN, INT_MAX, VE, "coder" },{ "ac",               NULL, 0, AV_OPT_TYPE_CONST, { .i64 = 1 },  INT_MIN, INT_MAX, VE, "coder" },{ "b_strategy",   "Strategy to choose between I/P/B-frames",          OFFSET(b_frame_strategy), AV_OPT_TYPE_INT, { .i64 = -1 }, -1, 2, VE },{ "chromaoffset", "QP difference between chroma and luma",            OFFSET(chroma_offset), AV_OPT_TYPE_INT, { .i64 = 0 }, INT_MIN, INT_MAX, VE },{ "sc_threshold", "Scene change threshold",                           OFFSET(scenechange_threshold), AV_OPT_TYPE_INT, { .i64 = -1 }, INT_MIN, INT_MAX, VE },{ "noise_reduction", "Noise reduction",                               OFFSET(noise_reduction), AV_OPT_TYPE_INT, { .i64 = -1 }, INT_MIN, INT_MAX, VE },{ "udu_sei",      "Use user data unregistered SEI if available",      OFFSET(udu_sei),  AV_OPT_TYPE_BOOL,   { .i64 = 0 }, 0, 1, VE },{ "x264-params",  "Override the x264 configuration using a :-separated list of key=value parameters", OFFSET(x264_params), AV_OPT_TYPE_DICT, { 0 }, 0, 0, VE },{ NULL },
};

方式2

通过 ffmpeg 命令行查找
ffmpeg -h encoder=libx264
在这里插入图片描述

常用参数讲解

preset

主要调节编码速度和质量的平衡
可以设置的值,{ “ultrafast”, “superfast”, “veryfast”, “faster”, “fast”, “medium”, “slow”, “slower”, “veryslow”, “placebo”, 0 };
如何获取可以设置哪些值,看注释是编译 x264,然后运行 x264 --fullhelp 可以看到。我这边嫌麻烦没有编译,看 x264 源码获取的

tune

主要配合视频类型和视觉优化的参数
可以设置的值,{ “film”, “animation”, “grain”, “stillimage”, “psnr”, “ssim”, “fastdecode”, “zerolatency”, 0 };
film: 电影、真人类型;
animation: 动画;
grain: 需要保留大量的grain时用;
psnr: 为提高psnr做了优化的参数;
ssim: 为提高ssim做了优化的参数;
fastdecode: 可以快速解码的参数;
zerolatency:零延迟,用在需要非常低的延迟的情况下,比如电视电话会议的编码。

profile

支持一组特定的编码功能,并支持一类特定的应用
x264_profile_names[] = { “baseline”, “main”, “high”, “high10”, “high422”, “high444”, 0 };
baseline:基本画质。支持I/P 帧,只支持无交错(Progressive)和CAVLC;   
main:主流画质。提供I/P/B 帧,支持无交错(Progressive)和交错(Interlaced),也支持CAVLC 和CABAC 的支持;
high:高级画质。在main Profile 的基础上增加了8x8内部预测、自定义量化、 无损视频编码和更多的YUV 格式;

level

每个profile 都规定了一个算法特征和限制的子集,任何遵守某个profile 的解码器都应该支持与其相应的子集。
每个level都规定了一组对标准中语法成员(syntax element)所采用的各种参数值的限制。

nal-hrd

码率控制方式 。
none —— 不使用 hrd
vbr —— 可变码率
cbr —— 稳定码率

crf

qp

psy

rc-lookahead

参考文献

https://blog.csdn.net/liuzehn/article/details/124995312
https://www.cnblogs.com/poissonnotes/p/6904728.html
https://blog.csdn.net/A199222/article/details/85785198

本文来自互联网用户投稿,该文观点仅代表作者本人,不代表本站立场。本站仅提供信息存储空间服务,不拥有所有权,不承担相关法律责任。如若转载,请注明出处:http://www.hqwc.cn/news/498690.html

如若内容造成侵权/违法违规/事实不符,请联系编程知识网进行投诉反馈email:809451989@qq.com,一经查实,立即删除!

相关文章

动态规划|【斐波那契数列模型 】|面试题08.01三步问题

目录 题目 思路 普通思路 动态规划思路 1.状态表示 2.状态转移方程 3.初始化 4.填表顺序 5.返回值 代码 空间优化 题目 题目链接 面试题 08.01. 三步问题https://leetcode.cn/problems/three-steps-problem-lcci/ 三步问题。有个小孩正在上楼梯&#xff0c;楼梯有n…

【软考高项】【计算专题】- 6 - 成本类 - 挣值管理

目录 一、知识点 1、基础概念 1.1 教材定义 1.2 理解方式 方式一&#xff1a;使用公式理解 方式二&#xff1a;使用语言描述 2、总结 2.1 三个参数 2.2 四个指标 2.3 其他关键参数 二、真题举例 高级2014年下半年案例分析试题 【问题1】 【问题2】 【问题3】 一…

Java反射机制底层原理

反射机制 这篇文章我是参考了Java 中的反射机制&#xff08;两万字超全详解&#xff09;_java反射-CSDN博客 然后我在这里做一下总结&#xff0c;因为原文章真的很好&#xff0c;我才疏学浅没什么进行补充&#xff0c;只能做出自己的总结并且写一下自己对这个的理解。 原理&…

吴恩达机器学习全课程笔记第四篇

目录 前言 P61-P68 激活函数 Softmax算法 P69-P73 Adam算法 更多类型的层 模型评估 P74-P79 偏差和方差 建立表现基准 学习曲线 偏差和方差与神经网络 前言 这是吴恩达机器学习笔记的第四篇&#xff0c;第三篇笔记请见&#xff1a; 吴恩达机器学习全课程笔记第…

android开发电子书,android基础编程

内存泄漏是什么&#xff1f; 内存泄漏即 ML &#xff08;Memory Leak&#xff09; 指 程序在申请内存后&#xff0c;当该内存不需再使用 但 却无法被释放 & 归还给 程序的现象 内存泄漏有哪些情况&#xff0c;对应的解决方案&#xff1f; 内存泄漏的原因归根到底就是当需…

fastAdmin表格列表的功能

更多文章&#xff0c;请关注&#xff1a;fastAdmin后台功能详解 | 夜空中最亮的星 FastAdmin是一款基于ThinkPHP5Bootstrap的极速后台开发框架。优点见开发文档 介绍 - FastAdmin框架文档 - FastAdmin开发文档 在这里上传几张优秀的快速入门图: 一张图解析FastAdmin中的表格列…

1688代采系统一键下单到1688|代购系统自动对接1688货源一键下单采购

在国外有很多商家和客户&#xff0c;想要从中国批发或者购买商品。因此国内的代采商应运而生&#xff0c;国外商家给他们提供自己需要购买商品清单&#xff0c;他们帮助国外客户在中国购买商品&#xff0c;并且邮寄到国外。国外商家给代采商提供商品清单后&#xff0c;代采商去…

【多模态】28、LLaVA 第一版 | Visual Instruction Tuning 多模态模型的指令微调

论文&#xff1a;Visual Instruction Tuning 代码&#xff1a;https://llava-vl.github.io/ 出处&#xff1a;NeurIPS 2023 Oral 系列工作&#xff1a;LLaVA-1.5、LLaVA-PLUS、LLaVA-Interactive、Video-LLaVA、LLaVA-Med 等&#xff0c;LLaVA 也是首次将指令学习引入多模态…

机器学习:原理、应用与未来展望

第一章 是什么 机器学习&#xff08;Machine Learning&#xff09;是一门跨学科的学科&#xff0c;它使用计算机模拟或实现人类学习行为&#xff0c;通过不断地获取新的知识和技能&#xff0c;重新组织已有的知识结构&#xff0c;从而提高自身的性能。机器学习涉及多个学科&am…

(C语言)二分查找

在⼀个升序的数组中查找指定的数字n&#xff0c;很容易想到的⽅法就是遍历数组&#xff0c;但是这种⽅法效率⽐较低。⽐如我买了⼀双鞋&#xff0c;你好奇问我多少钱&#xff0c;我说不超过300元。你还是好奇&#xff0c;你想知道到底多少&#xff0c;我就让你猜&#xff0c;你…

threejs 大场景下,对小模型进行贴图处理

接上篇小模型的删除☞threeJS 大模型中对小模型进行删除-CSDN博客 针对已有模型&#xff0c;根据数据状态进行贴图处理&#xff0c;例如&#xff1a;机房内电脑告警状态、电脑开关机状态下的不同状态贴图等 示例模型还是以丛林小屋为例&#xff1a;针对该模型中的树干进行贴图…

一个具有强大PDF处理能力的.Net开源项目

PDF具有跨平台、可读性强、不可修改性、无需特定阅读软件、内容安全等好处&#xff0c;在工作中经常都会用到。 所以&#xff0c;我们在项目开发中&#xff0c;经常需要生成PDF的文件&#xff0c;或者把Html、Xml等文件转化为PDF格式。 今天给大家推荐一个具有PDF处理能力的.…