b46e53ef38610f5cd2750a2fac9b8a57c21e95b7
[phd-thesis.git] / appendix / bytecode.tex
1 \documentclass[../thesis.tex]{subfiles}
2
3 \begin{document}
4 \ifSubfilesClassLoaded{
5 \pagenumbering{arabic}
6 }{}
7
8 \myappendix{chp:bytecode_instruction_set}{Bytecode instruction set}%
9 \todo[inline]{formatting}
10
11 \begin{tabular}{ll}
12 $l$ & label\\
13 $w_r$ & return width\\
14 $w_a$ & argument width\\
15 $fp$ & frame pointer\\
16 $sp$ & stack pointer\\
17 $pc$ & program counter\\
18 \end{tabular}
19
20 Bytecode is byte encoded, stack has 16-bit cells.
21 Longs and reals are stored with the MSB first.
22
23 \footnotesize
24 \begin{longtable}{lllll}
25 \caption{\normalsize Semantics for the bytecode instructions\label{tbl:instr_task}}
26 \endfirsthead%
27 \caption{\normalsize Semantics for the bytecode instructions (cont.)}
28 \endhead%
29 \endfoot%
30 \endlastfoot%
31 \toprule
32 Instr. & Args & Semantics & sp & pc\\
33
34 \midrule
35 \texttt{return} & $w_r~w_a$ & $st[fp\shortminus{}w_a\shortminus{}3+i] = st[fp+1]$ & $st[fp\shortminus{}w_a\shortminus{}3+w_r]$ & $st[fp\shortminus{}w_a\shortminus{}1]$\\
36 & & {\bf for all} $i\in\{0..w_r\}$\\
37 & & $fp = st[fp\shortminus{}w_a\shortminus{}2]$\\
38 \texttt{jumpF} & $l$ & & $sp\shortminus{}1$ & $\left\{\begin{array}{ll} pc+1 & \textrm{\bf if } st[sp\shortminus{}1]\\l & \textrm{\bf otherwise}\end{array}\right.$\\
39 \texttt{jump} & $l$ & & $sp\shortminus{}1$ & $l$\\
40 \texttt{jumpSR} & $w_a~l$ & $st[sp\shortminus{}w_a\shortminus{}1]=pc+2$ & & $l$\\
41 \texttt{tailCall} & $w_{a_1}~w_{a_2}~l$ & $rotate\:(w_{a_1}+3+w_{a_2},w_{a_2})$ & $fp$ & $jl$\\
42 & & $fp = fp-w_{a_1}+w_{a_2}$\\
43 & & \multicolumn{3}{l}{{\bf where} $w_{a_1}$ is the width of the current function and $w_{a_2}$ the width of the called function}\\
44 \texttt{arg} & $i$ & $st[sp] = st[fp-1-i]$ & $sp+1$\\
45 \texttt{push} & $n~b_0\ldots b_n$ & $st[sp+i] = s[i]$ & $sp+n$ & $pc+2+n$\\
46 & & {\bf for all} $i\in\{0..n\}$\\
47 % \midrule
48 \texttt{pop} & $n$ & & $sp-n$ & $pc+2$\\
49 % \midrule
50 \texttt{rot} & $d~n$ & $rotate\:(d, n)$ & $sp$ & $pc+3$\\
51 % \midrule
52 \texttt{dup} & & $st[sp] = st[sp-1]$ & $sp+1$ & $pc+1$\\
53 % \midrule
54 \texttt{pushPtrs} & & $st[sp] = sp$ & $sp+3$ & $pc+1$\\
55 & & $st[sp+1] = fp$\\
56 & & $st[sp+2] = 0$\\
57 % \midrule
58 \texttt{unOp} & & $st[sp-1] = \diamond{}st[sp-1]$ & $sp$ & $pc+1$\\
59 & & \multicolumn{3}{l}{{\bf for all} $\diamond\in\{\neg\}$}\\
60 % \midrule
61 \texttt{binOp} & & $st[sp-2] = st[sp-2] \mathbin{\oplus} st[sp-1]$ & $sp-1$ & $pc+1$\\
62 & & \multicolumn{3}{l}{{\bf for all} $\oplus\in\{+, -, *, /, \wedge, \vee, \equiv, \not\equiv, \leq, \geq, <, >\}$}\\
63 % \midrule
64 \texttt{mkTask} & \texttt{Stable\textsubscript{n}} & $st[sp-n-1] = node (stable,$ & $sp-n+1$ & $pc+2$\\
65 & & $\qquad\qquad st[sp-1], \ldots, st[sp-n-1])$\\
66 \texttt{mkTask} & \texttt{Unstable\textsubscript{n}} & $st[sp-n-1] = node (unstable,$ & $sp-n+1$ & $pc+2$\\
67 & & $\qquad\qquad st[sp-1], \ldots, st[sp-n-1])$\\
68 % \midrule
69 % & \multicolumn{3}{l}{Unstable\textsubscript{n}} & st[sp-n-1] = node (unstable, & sp-n+1 & pc+2\\
70 % & \multicolumn{3}{l}{} & \qquad\qquad st[sp-1], \textrm{\ldots}, st[sp-n-1])\\
71 % \midrule
72 %
73 % & \multicolumn{3}{l}{ReadD } & st[sp-1] \ \ = node (readd, st[sp-1]) & & pc+2\\
74 % \midrule
75 % & \multicolumn{3}{l}{ReadA } & st[sp-1] \ \ = node (reada, st[sp-1]) & & pc+2\\
76 % \midrule
77 % & \multicolumn{3}{l}{Repeat } & st[sp-1] \ \ = node (repeat, st[sp-1]) & & pc+2\\
78 % \midrule
79 % & \multicolumn{3}{l}{Delay } & st[sp-1] \ \ = node (delay, st[sp-1]) & & pc+2\\
80 % \midrule
81 %
82 % & \multicolumn{3}{l}{WriteD } & st[sp-2] \ \ = node (writed, st[sp-1], st[sp-2]) & sp-1 & pc+2\\
83 % \midrule
84 % & \multicolumn{3}{l}{WriteA } & st[sp-2] \ \ = node (writea, st[sp-1], st[sp-2]) & sp-1 & pc+2\\
85 % \midrule
86 % & \multicolumn{3}{l}{And } & st[sp-2] \ \ = node (and, st[sp-1], st[sp-2]) & sp-1 & pc+2\\
87 % \midrule
88 % & \multicolumn{3}{l}{Or } & st[sp-2] \ \ = node (or, st[sp-1], st[sp-2]) & sp-1 & pc+2\\
89 % \midrule
90 %
91 % & \multicolumn{3}{l}{SdsSet i } & st[sp-1] \ \ = node (sdsset,i, st[sp-1]) & & pc+3\\
92 % \midrule
93 %
94 % & \multicolumn{3}{l}{SdsGet i } & st[sp]\ \ \ \ \ = node (sdsget, i) & sp+1 & pc+3\\
95 % \midrule
96 % & \multicolumn{3}{l}{DHTTemp i } & st[sp-1] \ \ = node (dhttemp, i) & sp+1 & pc+3\\
97 % \midrule
98 % & \multicolumn{3}{l}{DHTHumid i } & st[sp-1] \ \ = node (dhthumid, i) & sp+1 & pc+3\\
99 % \midrule
100 %
101 % & \multicolumn{3}{l}{Step aw jl } & st[sp-1] \ \ = node (step, aw, jl, st[sp-1]) & sp-1 & pc+5\\
102 \bottomrule
103 \end{longtable}
104
105 \input{subfilepostamble}
106 \end{document}