<samp id="e4iaa"><tbody id="e4iaa"></tbody></samp>
<ul id="e4iaa"></ul>
<blockquote id="e4iaa"><tfoot id="e4iaa"></tfoot></blockquote>
    • <samp id="e4iaa"><tbody id="e4iaa"></tbody></samp>
      <ul id="e4iaa"></ul>
      <samp id="e4iaa"><tbody id="e4iaa"></tbody></samp><ul id="e4iaa"></ul>
      <ul id="e4iaa"></ul>
      <th id="e4iaa"><menu id="e4iaa"></menu></th>

      代寫CISC221、Java/Python設計編程代做

      時間:2024-03-13  來源:  作者: 我要糾錯



      CISC221: The Bomb Lab
      This lab serves as a newly added experiential learning module within CISC221, offering
      hands-on exposure to binary files and assembly code debugging at the instruction set
      level of the x86 processor. Understanding debugging at this level is crucial for grasping
      computer architecture and gaining reverse engineering proficiency. Such skills are vital
      to fields like code optimization, embedded systems, and cybersecurity. Furthermore, it
      fosters essential debugging skills applicable across diverse programming domains. By
      emphasizing the lab's hands-on approach, its challenging yet rewarding nature, and the
      career prospects it offers, students are motivated to engage actively, deepening their
      comprehension of low-level computing and laying a foundation for advanced learning in
      related subjects.
      Good luck, and welcome to the bomb squad!
      I. Description
      This lab is for a digital binary bomb, with the schematic shown below.
      2
      As illustrated in the diagram, the binary bomb is composed of four distinct phases, each
      requiring a specific input string, set of numbers, or combination thereof for successful
      defusal. Correctly entering the required input disarms the phase, allowing the bomb to
      advance to the next stage. Failure to provide accurate input triggers an explosion,
      signaled by the display of "BOOM!!!" before termination. The entire bomb is considered
      defused only when all four phases have been disarmed. Each student will receive their
      own bomb to defuse as part of this mini-project. Your objective is to successfully
      disarm your assigned bomb before the designated due date.
      The executable binary file is the bomb is called “bomb_lab” and is located at the
      CASLAB machines in the following directory linux>cas/course/cisc221. To access the
      bomb_lab file, you should first go up to root directory by typing (cd ..) twice, then
      navigate to the following folder linux>cas/course/cisc221 as shown below
      You can then run the bomb by (./bomb_lab) or debug the bomb by (gdb bomb_lab).
      II. Overview
      The Bomb consists of four phases (sub-problems):
      1) Phase 1: Requires a textual input, for example, "Hello world."
      2) Phase 2: Requires an array of six numbers, for example, 12 34 81 23 10 22.
      3) Phase 3: Requires three inputs in the order of integer, character, and integer, with
      the first integer falling within the range of 0 to 7, for example, 3 Z 1.
      4) Phase 4: Requires a textual input, for example, "Goodbye!"
      You should work on the gdb debugger to trace clues, disassemble functions, investigate
      the contents of the registers/stack to find the defusal passcodes for each phase. The
      most important registers that you should keep track of their content are
      • %rax: return value
      • %rsp: stack pointer
      • %rdi: 1st argument
      • %rsi: 2nd argument
      • %rdx: 3rd argument
      • %rbp: base pointer
      3
      Please note that registers are typed in the gdb debugger preceded by a dollar sign
      ($rax) not a percentage sign. For instance to check the data in %rax, you type (info
      registers $rax)
      To help you find some clues, Table 1 highlights the most important labels for each phase
      and Table 2 lists all the debugging commands that you will need to defuse your bomb
      Table 1. most important labels
      Table 2. gdb common commands
      command desc example
      run runs the loaded executable program run
      break
      [func_name]
      breaks once you call a specific function break phase_1
      break *
      mem_loc
      breaks when you execute the instruction at
      a certain address
      break * 0x0000555555555ef9
      info
      breakpoints
      displays information about all breakpoints
      currently set
      info breakpoints
      deletel
      breakpoints
      delete a specific breakpoint delete breakpoints 10 //delete
      breakpoint number 10
      continue continue to the next breakpoint continue
      stepi steps through a single x86 instruction.
      Steps into calls.
      stepi
      nexti steps through a single x86 instruction.
      Steps over calls.
      nexti
      Phase Important functions/labels
      Phase_1 ● strings_not_equal
      ● string_length
      Phase_2 ● generatedValues
      Phase_3 -
      Phase_4 ● generateRandomChars
      ● validateOccurrence
      4
      disassemble views assembly code while debugging disassemble or disassemble
      “label”
      info registers prints the names and values of all
      registers
      info registers
      info register
      $reg
      prints the name and value for specific
      register
      info register $rax
      set $reg = val assign value to a certain register set $rdi = 0x80
      x command prints values stored in a certain address
      with a specific format
      1) x/s 140737488227040
      #display values in string format
      2) x/d 140737488341111
      #display values in decimal
      format
      III. Goal & Guidelines
      The ultimate goal for each phase is to determine the registers containing the correct
      input by navigating through “stepi” or over “nexti” the assembly code, inspecting the
      values of the registers using "info register $reg" and then updating the registers that
      hold your input with the correct value through "set $reg = val" to defuse the phase.
      There are several tips for deactivating the bomb:
      ● Once on the correct directory (cas/course/cisc221), you can begin debugging
      by using the gdb command: gdb bomb_lab.
      ● Set breakpoints on all phases, i.e., break phase_1, break phase_2, break
      phase_3, and break phase_4., you can also add more breakpoints on crucial
      parts.
      5
      ● Start the bomb program by prompting the run command and enter you student
      ID.
      Phase#1
      Desc: The input text will be compared against a predefined string.
      ● The program anticipates a string input for the first phase. It is advisable to
      employ a concise and memorable text, e.g., test, similar to the example below.
      ● It should hit the phase_1 breakpoint (added previously), disassemble
      command can be utilized to show the assembly code for the current block. The
      small arrow in the left of the screen (see below) indicates the command at which
      the program is executing next.
      6
      ● If you defuse phase_1 successfully, you will get “Phase 1 defused. How about
      the next one?”
      ● Otherwise, the bomb will explode and return
      Phase#2
      Desc: The input is an array of six numbers with a space separator, for example, 12 34
      81 23 10 22, that will be compared against a predefined array.
      ● The program anticipates an input of 6 numbers for the second phase. It is
      advisable to employ concise and memorable integers, similar to the example
      below.
      ● If you defuse phase_2 successfully, you will get “Halfway there!”
      ● Otherwise, the bomb will explode and return
      Phase#3
      Desc: The input is three values in the following order, separated by spaces: an integer
      (should be within the range of 0 to 7), a character, and another integer, e.g., 3 z 44.
      ● The program anticipates an input of three values for the third phase. It is
      advisable to employ concise and memorable values, similar to the example
      below.
      ● If you defuse phase_3 successfully, you will get “That's number 3. Keep
      going!”
      ● Otherwise, the bomb will explode and return
      Phase#4
      Desc: In the final phase, an input of text is anticipated, and the provided text should
      satisfy the occurrence of some random characters.
      7
      For instance, If the last phase generates random characters such as {l:3, x: 0, d: 1},
      your input string should resemble something like "Hello world!"
      Considering that the phase 4 characters are limited to only three random characters.
      ● The program anticipates an input of textual form (e.g., Have a Nice Day!). It is
      advisable to employ concise and memorable text, similar to the example below.
      ● If you defuse phase_4 successfully, you will get “Congratulations! You've
      defused the bomb!”
      ● Otherwise, the bomb will explode and return
      IV. Hints
      1. The input for each phase is entirely deterministic for every student, based on
      the ID
      2. Ensure constant attention and focus on the segment of code preceding the
      explode_bomb function. In case you miss the correct input for any phase, you
      can bypass the explosion by manipulating the flags register
      https://en.wikipedia.org/wiki/FLAGS_register and setting or resetting the zero flag
      based on the phase condition. It implies that there is consistently a condition or
      validation check before the execution of the explode_bomb function.
      E.g.,
      The cmp instruction subtracts the value in the %edx register from the value in
      the %eax register, but it doesn't store the result. It only updates the flags
      register based on the outcome of the subtraction.
      If the values in %eax and %edx are equal, It will result in zero, setting the Zero
      Flag (ZF) in the flags register. In this case, the je instruction will jump to the
      specified label or location. But, If the values in %eax and %edx are not equal,
      resulting in ZF being set to zero, then the explode_bomb will be called.
      3. To inspect the content stored at a particular memory location, you can employ the
      x command, such as x/s for strings or x/d for integers,
      8
      E.g., cmpl $0x5,-0x30(%rbp)
      This command compares the immediate value 5 with the value stored in memory
      at an address calculated as 0x30 bytes before the address stored in the base
      pointer %rbp. So, to get the value stored in this location:
      I. gets $rbp value through info register command
      II. subtracts 0x30 from 0x7fffb96afc90 = 0x7fffb96afc60. (you can also type
      the address directly as 0x7fffb96afc90-0x30 and let the computer do the
      computation for you)
      III. checks memory location “0x7fffb96afc60” value via x/d as it translates it to
      integers
      V. Deliverables
      Upload only your answers “correct inputs” for all defused phases. It is recommended to
      use computer-based tools like “MS Word” instead of handwritten notes to minimize
      readability mistakes.
      VI. Acknowledgement
      Special thanks for Hesham Elabd for importing and customizing this lab to CISC221 and
      for Doug Martin for assistance in implementing and hosting the lab on Caslab machines.
      請加QQ:99515681  郵箱:99515681@qq.com   WX:codehelp 

      標簽:

      掃一掃在手機打開當前頁
    • 上一篇:代做CSCI 2525、c/c++,Java程序語言代寫
    • 下一篇:代寫COMP3411/9814 Bridge Puzzle編程代做
    • 無相關信息
      昆明生活資訊

      昆明圖文信息
      蝴蝶泉(4A)-大理旅游
      蝴蝶泉(4A)-大理旅游
      油炸竹蟲
      油炸竹蟲
      酸筍煮魚(雞)
      酸筍煮魚(雞)
      竹筒飯
      竹筒飯
      香茅草烤魚
      香茅草烤魚
      檸檬烤魚
      檸檬烤魚
      昆明西山國家級風景名勝區
      昆明西山國家級風景名勝區
      昆明旅游索道攻略
      昆明旅游索道攻略
    • 福建中專招生網 NBA直播 短信驗證碼平臺 WPS下載

      關于我們 | 打賞支持 | 廣告服務 | 聯系我們 | 網站地圖 | 免責聲明 | 幫助中心 | 友情鏈接 |

      Copyright © 2025 kmw.cc Inc. All Rights Reserved. 昆明網 版權所有
      ICP備06013414號-3 公安備 42010502001045

      主站蜘蛛池模板: 国产成人A亚洲精V品无码| 亚洲av日韩aⅴ无码色老头| 亚洲熟妇无码八V在线播放| 日韩AV无码中文无码不卡电影| 人妻丰满AV无码久久不卡| AV无码久久久久不卡蜜桃| 国产成人麻豆亚洲综合无码精品| 色噜噜综合亚洲av中文无码| 亚洲中文字幕久久精品无码APP| 国模无码视频一区| 人妻中文字系列无码专区| 老子午夜精品无码| 亚洲Av永久无码精品三区在线| 人妻丰满熟妞av无码区| 国产精品无码一二区免费| 伊人久久大香线蕉无码| 办公室丝袜激情无码播放| 无码精品A∨在线观看十八禁 | 无码AV片在线观看免费| 亚洲精品av无码喷奶水糖心| 中文字幕有码无码AV| 免费无码又爽又高潮视频| 91久久九九无码成人网站| 中文字幕av无码不卡| 精品久久久久久中文字幕无码| 日韩精品无码一区二区三区免费| 99久无码中文字幕一本久道| 亚洲av专区无码观看精品天堂| 久久无码AV中文出轨人妻 | 亚洲精品久久无码| 免费无码VA一区二区三区| 亚洲成a人片在线观看无码| 亚洲人成人无码网www国产| 亚洲精品无码鲁网中文电影| 中文无码亚洲精品字幕| 少妇人妻无码精品视频app| 国产亚洲3p无码一区二区| 八戒理论片午影院无码爱恋| 丰满少妇人妻无码| 日韩精品无码一区二区三区四区| 五月天无码在线观看|