1 Opcodes currently supported by SubX:
2 01: add r32 to rm32 (add)
3 03: add rm32 to r32 (add)
4 05: add imm32 to EAX (add)
5 09: rm32 = bitwise OR of r32 with rm32 (or)
6 0b: r32 = bitwise OR of r32 with rm32 (or)
7 0d: EAX = bitwise OR of imm32 with EAX (or)
8 21: rm32 = bitwise AND of r32 with rm32 (and)
9 23: r32 = bitwise AND of r32 with rm32 (and)
10 25: EAX = bitwise AND of imm32 with EAX (and)
11 29: subtract r32 from rm32 (sub)
12 2b: subtract rm32 from r32 (sub)
13 2d: subtract imm32 from EAX (sub)
14 31: rm32 = bitwise XOR of r32 with rm32 (xor)
15 33: r32 = bitwise XOR of r32 with rm32 (xor)
16 35: EAX = bitwise XOR of imm32 with EAX (xor)
17 39: compare: set SF if rm32 < r32 (cmp)
18 3b: compare: set SF if r32 < rm32 (cmp)
19 3d: compare: set SF if EAX < imm32 (cmp)
20 40: increment EAX (inc)
21 41: increment ECX (inc)
22 42: increment EDX (inc)
23 43: increment EBX (inc)
24 44: increment ESP (inc)
25 45: increment EBP (inc)
26 46: increment ESI (inc)
27 47: increment EDI (inc)
28 48: decrement EAX (dec)
29 49: decrement ECX (dec)
30 4a: decrement EDX (dec)
31 4b: decrement EBX (dec)
32 4c: decrement ESP (dec)
33 4d: decrement EBP (dec)
34 4e: decrement ESI (dec)
35 4f: decrement EDI (dec)
36 50: push EAX to stack (push)
37 51: push ECX to stack (push)
38 52: push EDX to stack (push)
39 53: push EBX to stack (push)
40 54: push ESP to stack (push)
41 55: push EBP to stack (push)
42 56: push ESI to stack (push)
43 57: push EDI to stack (push)
44 58: pop top of stack to EAX (pop)
45 59: pop top of stack to ECX (pop)
46 5a: pop top of stack to EDX (pop)
47 5b: pop top of stack to EBX (pop)
48 5c: pop top of stack to ESP (pop)
49 5d: pop top of stack to EBP (pop)
50 5e: pop top of stack to ESI (pop)
51 5f: pop top of stack to EDI (pop)
52 68: push imm32 to stack (push)
53 69: multiply rm32 by imm32 and store result in r32 (imul)
54 70: jump disp8 bytes away if OF is set (jcc/jo)
55 71: jump disp8 bytes away if OF is unset (jcc/jno)
56 72: jump disp8 bytes away if lesser (addr, float), if CF is set (jcc/jb/jnae)
57 73: jump disp8 bytes away if greater or equal (addr, float), if CF is unset (jcc/jae/jnb)
58 74: jump disp8 bytes away if equal, if ZF is set (jcc/jz/je)
59 75: jump disp8 bytes away if not equal, if ZF is not set (jcc/jnz/jne)
60 76: jump disp8 bytes away if lesser or equal (addr, float), if ZF is set or CF is set (jcc/jbe/jna)
61 77: jump disp8 bytes away if greater (addr, float), if ZF is unset and CF is unset (jcc/ja/jnbe)
62 7c: jump disp8 bytes away if lesser, if SF != OF (jcc/jl/jnge)
63 7d: jump disp8 bytes away if greater or equal, if SF == OF (jcc/jge/jnl)
64 7e: jump disp8 bytes away if lesser or equal, if ZF is set or SF != OF (jcc/jle/jng)
65 7f: jump disp8 bytes away if greater, if ZF is unset and SF == OF (jcc/jg/jnle)
66 81: combine rm32 with imm32 based on subop (add/sub/and/or/xor/cmp)
67 87: swap the contents of r32 and rm32 (xchg)
68 88: copy r8 to r8/m8-at-r32
69 89: copy r32 to rm32 (mov)
70 8a: copy r8/m8-at-r32 to r8
71 8b: copy rm32 to r32 (mov)
72 8d: copy address in rm32 into r32 (lea)
73 8f: pop top of stack to rm32 (pop)
74 99: sign-extend EAX into EDX (cdq)
75 b8: copy imm32 to EAX (mov)
76 b9: copy imm32 to ECX (mov)
77 ba: copy imm32 to EDX (mov)
78 bb: copy imm32 to EBX (mov)
79 bc: copy imm32 to ESP (mov)
80 bd: copy imm32 to EBP (mov)
81 be: copy imm32 to ESI (mov)
82 bf: copy imm32 to EDI (mov)
83 c1: shift rm32 by imm8 bits depending on subop (sal/sar/shl/shr)
84 c3: return from most recent unfinished call (ret)
85 c6: copy imm8 to r8/m8-at-r32 with subop 0 (mov)
86 c7: copy imm32 to rm32 with subop 0 (mov)
87 cd: software interrupt (int)
88 d3: shift rm32 by CL bits depending on subop (sal/sar/shl/shr)
89 e8: call disp32 (call)
90 e9: jump disp32 bytes away (jmp)
91 eb: jump disp8 bytes away (jmp)
93 f7: negate/multiply/divide rm32 (with EAX and EDX if necessary) depending on subop (neg/mul/idiv)
94 ff: increment/decrement/jump/push/call rm32 based on subop (inc/dec/jmp/push/call)
95 0f 2f: compare: set CF if x32 < xm32 (comiss)
96 0f 80: jump disp32 bytes away if OF is set (jcc/jo)
97 0f 81: jump disp32 bytes away if OF is unset (jcc/jno)
98 0f 82: jump disp32 bytes away if lesser (addr, float), if CF is set (jcc/jb/jnae)
99 0f 83: jump disp32 bytes away if greater or equal (addr, float), if CF is unset (jcc/jae/jnb)
100 0f 84: jump disp32 bytes away if equal, if ZF is set (jcc/jz/je)
101 0f 85: jump disp32 bytes away if not equal, if ZF is not set (jcc/jnz/jne)
102 0f 86: jump disp32 bytes away if lesser or equal (addr, float), if ZF is set or CF is set (jcc/jbe/jna)
103 0f 87: jump disp32 bytes away if greater (addr, float), if ZF is unset and CF is unset (jcc/ja/jnbe)
104 0f 8c: jump disp32 bytes away if lesser, if SF != OF (jcc/jl/jnge)
105 0f 8d: jump disp32 bytes away if greater or equal, if SF == OF (jcc/jge/jnl)
106 0f 8e: jump disp32 bytes away if lesser or equal, if ZF is set or SF != OF (jcc/jle/jng)
107 0f 8f: jump disp32 bytes away if greater, if ZF is unset and SF == OF (jcc/jg/jnle)
108 0f 92: set r8/m8-at-rm32 to 1 if lesser (addr, float), if CF is set, 0 otherwise (setcc/setb/setnae)
109 0f 93: set r8/m8-at-rm32 to 1 if greater or equal (addr, float), if CF is unset, 0 otherwise (setcc/setae/setnb)
110 0f 94: set r8/m8-at-rm32 to 1 if equal, if ZF is set, 0 otherwise (setcc/setz/sete)
111 0f 95: set r8/m8-at-rm32 to 1 if not equal, if ZF is not set, 0 otherwise (setcc/setnz/setne)
112 0f 96: set r8/m8-at-rm32 to 1 if lesser or equal (addr, float), if ZF is set or CF is set, 0 otherwise (setcc/setbe/setna)
113 0f 97: set r8/m8-at-rm32 to 1 if greater (addr, float), if ZF is unset and CF is unset, 0 otherwise (setcc/seta/setnbe)
114 0f 9c: set r8/m8-at-rm32 to 1 if lesser, if SF != OF, 0 otherwise (setcc/setl/setnge)
115 0f 9d: set r8/m8-at-rm32 to 1 if greater or equal, if SF == OF, 0 otherwise (setcc/setge/setnl)
116 0f 9e: set r8/m8-at-rm32 to 1 if lesser or equal, if ZF is set or SF != OF, 0 otherwise (setcc/setle/setng)
117 0f 9f: set r8/m8-at-rm32 to 1 if greater, if ZF is unset and SF == OF, 0 otherwise (setcc/setg/setnle)
118 0f af: multiply rm32 into r32 (imul)
119 f3 0f 10: copy xm32 to x32 (movss)
120 f3 0f 11: copy x32 to xm32 (movss)
121 f3 0f 2a: convert integer to floating-point (cvtsi2ss)
122 f3 0f 2c: truncate floating-point to int (cvttss2si)
123 f3 0f 2d: convert floating-point to int (cvtss2si)
124 f3 0f 51: square root of float (sqrtss)
125 f3 0f 52: inverse square root of float (rsqrtss)
126 f3 0f 53: reciprocal of float (rcpss)
127 f3 0f 58: add floats (addss)
128 f3 0f 59: multiply floats (mulss)
129 f3 0f 5c: subtract floats (subss)
130 f3 0f 5d: minimum of two floats (minss)
131 f3 0f 5e: divide floats (divss)
132 f3 0f 5f: maximum of two floats (maxss)
133 Run `bootstrap help instructions` for details on words like 'r32' and 'disp8'.
134 For complete details on these instructions, consult the IA-32 manual (volume 2).
135 There's various versions of it online, such as https://c9x.me/x86.
136 The mnemonics in brackets will help you locate each instruction.