In return for this slightly greater coding complexity , you can create a list that is not only safer than 雖然這稍微增加了些編碼的復(fù)雜性,但好處是您可以創(chuàng)建一個(gè)比
By reducing code complexity , less test cases are required to exercise all basis paths through the subprogram 通過降低代碼的復(fù)雜性,檢驗(yàn)子程序中所有基本路徑所需的測試實(shí)例減少。
This will demonstrate that although the user s experience does not change in either case , the code complexity varies a lot 這將說明,雖然在任何一個(gè)應(yīng)用程序中用戶的體驗(yàn)沒有變化,但代碼復(fù)雜性發(fā)生了很大變化。
The number of paths identified equals the code complexity , which corresponds to the number of test cases that must be developed to exercise the subprogram 所示別的路徑數(shù)相當(dāng)于代碼復(fù)雜性,與必須開發(fā)以檢驗(yàn)子程序的測試實(shí)例數(shù)相對應(yīng)。
In his last column , kevin williams explained how component - level reuse in xml designs can decrease code complexity and shorten maintenance cycles 在上一篇專欄文章中, kevin williams說明了xml設(shè)計(jì)中的組件級重用如何減少代碼復(fù)雜性以及如何縮短維護(hù)周期。
This paper concerns the source code complexity metric and quality controlling according with the project which developed by our institute and hitachi company 本文結(jié)合我校與日本日立公司合作開發(fā)的實(shí)際項(xiàng)目進(jìn)行了源代碼復(fù)雜度度量和質(zhì)量控制及相關(guān)理論的研究。
Namespace to create a dynamic assembly , module , type , and method , but this can result in a larger working set and greater code complexity System . reflection . emit命名空間的成員創(chuàng)建動態(tài)程序集、模塊、類型和方法可提高性能,但這樣會導(dǎo)致工作集增大,代碼復(fù)雜性增加。
Software quality guarantee is a huge system . dues to the limit of my energy , the main work is focused on the source code complexity metric and quality controlling , and more work was expected to be done in the future 軟件質(zhì)量保證是一個(gè)龐大的體系,它涉及軟件生命周期的各個(gè)階段以及軟件質(zhì)量評價(jià)的各個(gè)方面,由于本人精力有限,僅從源代碼的質(zhì)量分析與控制入手進(jìn)行了一些研究和探索,期望在以后的工作中逐步進(jìn)行完善。
The source code complexity metric and quality controlling [ 2 ] is a important part of software quality guarantee system . it bases on source code and runs through the phase of software developing , code examination , unit testing , integration testing , system testing and software maintenance 源代碼的復(fù)雜度度量和質(zhì)量控制[ 2 ]是軟件質(zhì)量保證體系中的一個(gè)重要環(huán)節(jié),它是面向源代碼進(jìn)行工作的,貫穿于軟件開發(fā)、代碼評審、單元測試、集成測試、系統(tǒng)測試、以及軟件維護(hù)階段。
The ldpc code ’ s parity check matrix generated by this scheme has high girth and can be used to coding directly , the coding complexity is lower . as to the decoding algorithm , i modify the message passing algorithm based on the girth that i can get in the structure of parity check matrix to improve the decoding performance . what is more , the new structure of the parity check matrix is easy to implement with the hardware 接著著重圍繞ldpc碼的校驗(yàn)矩陣構(gòu)造方法和譯碼算法展開討論,在比特填充算法的基礎(chǔ)上提出了一種ldpc碼聯(lián)合編譯碼方案,通過該方案構(gòu)造的校驗(yàn)矩陣不僅具有良好的girth分布,而且能直接用于編碼,編碼的計(jì)算復(fù)雜度低;在譯碼方面,利用構(gòu)造奇偶矩陣過程中g(shù)irth分布信息,優(yōu)化解碼迭代過程,能有效提高系統(tǒng)性能;并且該方案構(gòu)造的校驗(yàn)矩陣更易于實(shí)際的編譯碼硬件實(shí)現(xiàn)。