Virtual Machine technology applies the concept of virtualization to an entire machine, circumventing real machine compatibility constraints and hardware resource constraints to enable a higher degree of software portability and flexibility. Virtual machines are rapidly becoming an essential element in computer system design. They provide system security, flexibility, cross-platform compatibility, reliability, and resource efficiency. Designed to solve problems in combining and using major computer system components, virtual machine technologies play a key role in many disciplines, including operating systems, programming languages, and computer architecture. For example, at the process level, virtualizing technologies support dynamic program translation and platform-independent network computing. At the system level, they support multiple operating system environments on the same hardware platform and in servers. Historically, individual virtual machine techniques have been developed within the specific disciplines that employ them (in some cases they aren't even referred to as 'virtual machines'), making it difficult to see their common underlying relationships in a cohesive way. In this text, Smith and Nair take a new approach by examining virtual machines as a unified discipline. Pulling together cross-cutting technologies allows virtual machine implementations to be studied and engineered in a well-structured manner. Topics include instruction set emulation, dynamic program translation and optimization, high level virtual machines (including Java and CLI), and system virtual machines for both single-user systems and servers. The book examines virtual machine technologies across the disciplines that use them-operating systems, programming languages and computer architecture-defining a new and unified discipline. It is reviewed by principle researchers at Microsoft, HP, and by other industry research groups; and written by two authors who combine several decades of expertise in computer system research and development, both in academia and industry.
虛擬機,理想很優美,現實很無奈。 虛擬機在一定程度上是理想與現實摺衷的結果。 Java 虛擬機很好。 .Net 至少有一點不好,就是對變量的操作需要 track 變量類型,強大 JIT 的支撐下,這沒什麼不好,但是基本上不可能解釋執行,在解釋執行的時候,比 Java 虛擬機要慢得多!這...
評分虛擬機,理想很優美,現實很無奈。 虛擬機在一定程度上是理想與現實摺衷的結果。 Java 虛擬機很好。 .Net 至少有一點不好,就是對變量的操作需要 track 變量類型,強大 JIT 的支撐下,這沒什麼不好,但是基本上不可能解釋執行,在解釋執行的時候,比 Java 虛擬機要慢得多!這...
評分A new processor architecture poses significant financial risk to hardware and software developers alike, so both have a vested interest in easily porting code from one processor to another. Binary translation offers solutions for automatically convertin...
評分虛擬機,理想很優美,現實很無奈。 虛擬機在一定程度上是理想與現實摺衷的結果。 Java 虛擬機很好。 .Net 至少有一點不好,就是對變量的操作需要 track 變量類型,強大 JIT 的支撐下,這沒什麼不好,但是基本上不可能解釋執行,在解釋執行的時候,比 Java 虛擬機要慢得多!這...
評分應該是入門的標準讀物吧。 反正我寫一個玩具虛擬保護機時瀏覽看瞭一遍。 曆史介紹,技術現狀,未來預測,都有。並且講得不錯。
學習x86 CPU虛擬化原理的天書!力薦!
评分兩位作者都是有N年實踐經驗的人, 加上尤其這本書來的是時候, 看看現在各種virtualization技術多麼火熱...
评分學習x86 CPU虛擬化原理的天書!力薦!
评分關於虛擬機最全麵的一本書瞭。
评分關於虛擬機最全麵的一本書瞭。
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