finish up
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4 changed files with 31 additions and 46 deletions
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复习资料/A.aux
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复习资料/A.aux
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\relax
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\providecommand\hyper@newdestlabel[2]{}
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\providecommand*\HyPL@Entry[1]{}
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\HyPL@Entry{0<</S/D>>}
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\gdef \@abspage@last{3}
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复习资料/A.pdf
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复习资料/A.pdf
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复习资料/A.synctex(busy)
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复习资料/A.synctex(busy)
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复习资料/A.tex
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复习资料/A.tex
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\pagestyle{myfancypagestyle}
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\pagestyle{myfancypagestyle}
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\tcbuselibrary{listings}
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\tcbuselibrary{listings}
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\tcbset{colback=white,boxrule=0.3mm,enhanced}
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\tcbset{colback=white,boxrule=0.3mm,enhanced,size=small}
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\lstset{basicstyle=\ttfamily,columns=fullflexible}
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\lstset{basicstyle=\ttfamily,columns=fullflexible}
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@ -45,7 +45,6 @@
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\section{数据表示与存储}
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\section{数据表示与存储}
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\subsection{数据的类型及大小}
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\subsection{数据的类型及大小}
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\begin{table}[h]
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\begin{table}[h]
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\caption{数据的类型及大小}
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\begin{tabular}{|c|c|c|c|c|}
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\begin{tabular}{|c|c|c|c|c|}
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\hline
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\hline
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类型 & 字节数 & 最小值 & 最大值(signed) & 最大值(unsigned) \\ \hline
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类型 & 字节数 & 最小值 & 最大值(signed) & 最大值(unsigned) \\ \hline
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@ -140,7 +139,7 @@ T: 用 $n$ 位表示数字
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$\text{(unsigned)} \ \text{exp} \ = \ E \ + \text{Bias}$
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$\text{(unsigned)} \ \text{exp} \ = \ E \ + \text{Bias}$
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$\text{Bias (偏置值)} = 2^{k-1}-1$ , k 为 $exp$ 的二进制位数
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$\text{Bias (偏置值)} = 2^{k-1}-1$ , \(k\) 为 exp 的二进制位数
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\begin{multicols}{2}
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\begin{multicols}{2}
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例1:十进制整数$\rightarrow$二进制浮点数
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例1:十进制整数$\rightarrow$二进制浮点数
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@ -240,7 +239,15 @@ frac \(\ne 00\dots0\) 表示 NaN
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\end{table}
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\end{table}
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\pagebreak
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\pagebreak
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\vspace{-0.5em}
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\InsertBoxR{0}{\tcboxmath{\begin{matrix}
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\text{寻址模式} & \text{p. 121} \\
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\text{栈帧结构} & \text{p. 164} \\
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\text{gdb 操作} & \text{p. 194} \\
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\end{matrix}}\hspace{2cm}}
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\vspace{-1.5em}
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\section{程序的机器级表示}
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\section{程序的机器级表示}
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\subsection{计算数组元素的地址}
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\subsection{计算数组元素的地址}
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@ -256,29 +263,17 @@ frac \(\ne 00\dots0\) 表示 NaN
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2 \ leaq (\%rdi,\%rax,\$k), \%rax \\
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2 \ leaq (\%rdi,\%rax,\$k), \%rax \\
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3 \ movl (\%rax,\%rdx,\$k), \%rax \\
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3 \ movl (\%rax,\%rdx,\$k), \%rax \\
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}
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}
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结果为 \texttt{D+ k $\cdot$ C $\cdot$ i + k $\cdot$ j} \\
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结果为 \texttt{D + k $\cdot$ C $\cdot$ i + k $\cdot$ j} \\
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即 \texttt{D + sizeof(T) $\times$ (C $\cdot$ i + j)}
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即 \texttt{D + sizeof(T) $\times$ (C $\cdot$ i + j)}
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\end{multicols}
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\end{multicols}
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\vspace{-1cm}
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\vspace{-2.5em}
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\subsection{其他内容}
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\vspace{-2mm}
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\begin{table}[h]
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\begin{tabular}{c|c|c|c} \hline
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内容 & 操作数计算方式& 栈&gdb常用操作\\ \hline
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页码 & P121&P164&P194 \\
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\hline
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\end{tabular}
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\end{table}
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\vspace{-2em}
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\section{链接}
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\section{链接}
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\vspace{-1em}
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\vspace{-1.5em}
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\subsection{符号表 (.symtab)}
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\subsection{符号表 (.symtab)}
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\vspace{-1em}
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\vspace{-1em}
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\begin{table}[h]
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\begin{table}[h]
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\begin{tabular}{l|c|c|c|l}
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\begin{tabular}{l|c|c|c|l}
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\hline
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\hline
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& --- & --- & --- & \makecell[l]{链接不涉及静态函数\\链接不涉及非静态局部变量} \\ \hline
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& --- & --- & --- & \makecell[l]{链接不涉及静态函数\\链接不涉及非静态局部变量} \\ \hline
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\end{tabular}
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\end{tabular}
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\end{table}
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\end{table}
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\vspace{-2em}
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\vspace{-2em}
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\subsection{链接顺序}
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\subsection{链接顺序}
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\vspace{-0.5em}
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\vspace{-0.5em}
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\texttt{\$ gcc -static -o prog2c main2.o ./libvector.a} \\
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\texttt{\$ gcc -static -o prog2c main2.o ./libvector.a} \\
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E 将被合并以组成可执行文件的所有目标文件集合\\
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E 将被合并以组成可执行文件的所有目标文件集合\\
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U 当前所有未解析的引用符号的集合\\
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U 当前所有未解析的引用符号的集合\\
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@ -318,12 +315,23 @@ D 当前所有定义符号的集合\\
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开始 E、U、D为空,首先扫描 \texttt{main2.o},将其加入 E,将未找到的符号加入 U, 定义的符号加入 D。 \\
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开始 E、U、D为空,首先扫描 \texttt{main2.o},将其加入 E,将未找到的符号加入 U, 定义的符号加入 D。 \\
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再扫描 \texttt{./libvector.a},将匹配到的 U 中的符号转移到 D 并加入到 E, 同时将未找到的符号加入 U。 \\
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再扫描 \texttt{./libvector.a},将匹配到的 U 中的符号转移到 D 并加入到 E, 同时将未找到的符号加入 U。 \\
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最后搜索标准库 \texttt{libc.a},处理完\texttt{libc.a}时,U一定是空的,D中符号唯一,否则错误。
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最后搜索标准库 \texttt{libc.a},处理完\texttt{libc.a}时,U一定是空的,D中符号唯一,否则错误。
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\vspace{-1em}
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\vspace{-1em}
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\subsection{重定位}
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\subsection{重定位}
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\vspace{-0.5em}
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\vspace{-0.5em}
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PC相对地址下重定位值计算公式:\\
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\texttt{ADDR(r.symbol)-((ADDR(.text)+r.offset)-r.addend)}\\
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\begin{itemize}
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在asm中表示为 \texttt{4004de: e8 \underbar{05 00 00 00} \quad callq 4004e8 <sum>}
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\item 重定位 PC 相对引用(\texttt{R\_X86\_64\_PC32}): \\
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重定位值 \( =\texttt{ADDR(r.symbol)} - \underbrace{\left(\texttt{ADDR(.text)} + \texttt{r.offset}\right)}_{\text{重定位值的地址}} + \texttt{r.addend}\)
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在asm中表示为 \texttt{4004de: e8 \underbar{05 00 00 00} \quad callq 4004e8 <sum>}
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\item 重定位绝对引用(\texttt{R\_X86\_64\_32}): \\
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重定位值 = \(\texttt{ADDR(r.symbol)} + \texttt{r.addend}\) \\
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在asm中直接以其绝对地址表示\texttt{4004d9: bf \underbar{18 10 60 00} \quad mov \$0x601018 \%edi}
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\end{itemize}
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\newpage
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\newpage
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