rev-symbol - Symbol Recovery
Analyze function code characteristics to recover/identify function symbols and names.
Pre-check
Determine which IDA access method is available:
Option A — IDA Pro MCP (preferred if connected):
Check if the IDA Pro MCP server is connected (look for an active ida-pro or equivalent MCP connection). If connected, you can query IDA directly via MCP tools — no exported files needed. Proceed with the analysis using MCP.
Option B — IDA-NO-MCP exported data:
If MCP is not connected, check if IDA-NO-MCP exported data exists in the current directory:
- Check if
decompile/ directory exists
- Check if there are
.c files inside
If neither MCP nor exported data is available, prompt the user:
No IDA access method detected. Choose one of the following:
Option A — IDA Pro MCP (recommended):
Connect the IDA Pro MCP server so Claude can query IDA directly.
Option B — IDA-NO-MCP export:
1. Download plugin: https://github.com/P4nda0s/IDA-NO-MCP
2. Copy INP.py to IDA plugins directory
3. Press Ctrl-Shift-E in IDA to export
4. Open the exported directory with Claude Code
Export Directory Structure
./
├── decompile/ # Decompiled C code directory
│ ├── 0x401000.c # One file per function, named by hex address
│ ├── 0x401234.c
│ └── ...
├── decompile_failed.txt # Failed decompilation list
├── decompile_skipped.txt # Skipped functions list
├── strings.txt # String table (address, length, type, content)
├── imports.txt # Import table (address:function_name)
├── exports.txt # Export table (address:function_name)
└── memory/ # Memory hexdump (1MB chunks)
Function File Format (decompile/*.c)
Each .c file contains function metadata comments and decompiled code:
/*
* func-name: sub_401000
* func-address: 0x401000
* callers: 0x402000, 0x403000 // List of functions that call this function
* callees: 0x404000, 0x405000 // List of functions called by this function
*/
int __fastcall sub_401000(int a1, int a2)
{
// Decompiled code...
}
Symbol Recovery Steps
Step 1: Analyze Internal Characteristics
Carefully examine the target function for:
- String constants: Strings used in the function may reveal its purpose
- Numeric constants / Magic Numbers:
- MD5:
0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476
- CRC32:
0xEDB88320
- Base64 charset:
ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/
- AES S-Box:
0x63, 0x7C, 0x77, 0x7B...
- Zlib:
0x78, 0x9C (compression header)
- other constants/magic numbers...
- Code structure: Loop patterns, bitwise operations, specific algorithm flows
If you can identify a known algorithm through constants/structure, tell the user directly.
Step 2: Analyze Cross-References
Analyze Callees (called functions):
Read functions in the callees list
For each callee, check if its address exists in imports.txt
Recognize call patterns even when symbols are missing:
Paired function patterns (identify by matching call pairs):
// malloc/free, new/delete, alloc/dealloc
xx = sub_A(0x100); // alloc: takes size, returns pointer
...
sub_B(xx); // free: takes the same pointer
// mutex_lock/mutex_unlock, pthread_mutex_lock/unlock
sub_A(lock_ptr); // lock
... // critical section
sub_B(lock_ptr); // unlock (same lock object)
// open/close, fopen/fclose, CreateFile/CloseHandle
fd = sub_A("/path", 0); // open: path + flags, returns handle
...
sub_B(fd); // close: takes the handle
// pthread_create/pthread_join
sub_A(&tid, 0, func, arg); // create: out param, attr, func, arg
...
sub_B(tid, &ret); // join: tid, out param
**Argument pattern recognition:**
```c
// socket(AF_INET, SOCK_STREAM, 0) - fixed constants
sub_XXX(2, 1, 0); // socket: domain=2, type=1, protocol=0
// connect/bind(sockfd, addr, addrlen)
sub_XXX(fd, &var, 16); // addr struct, len=16 for IPv4
// memcpy/memmove(dst, src, size)
sub_XXX(dst, src, n); // 3 params: dst, src, count
// memset(ptr, value, size)
sub_XXX(ptr, 0, 0x100); // 3 params: ptr, byte value, count
// read/write(fd, buf, count)
ret = sub_XXX(fd, buf, n); // returns bytes read/written
// strcmp/strncmp(s1, s2) or (s1, s2, n)
if (sub_XXX(s1, s2) == 0) // returns 0 on equal
Return value patterns:
// file/socket operations: -1 on error
if ((fd = sub_XXX(...)) == -1) goto error;
// allocation: NULL on failure
if (!(ptr = sub_XXX(size))) goto error;
// success/error: 0 = success
if (sub_XXX(...) != 0) goto error;
// strlen: returns size_t
len = sub_XXX(str);
sub_YYY(dst, src, len); // len used in memcpy
Analyze Callers (calling functions):
- Read functions in the callers list
- If a caller has a symbol (check exports.txt), infer the callee's purpose from context
- Recursive check: trace up the call chain until you find a function with a symbol
- Analyze how the return value is used by callers
Step 3: Information Gathering and Search
Collect the following information:
- Strings in the function (check
strings.txt for addresses used in the function)
- Magic Numbers / constants
- Known imports called (cross-reference callees with
imports.txt)
- Caller/callee symbols from
exports.txt
- Paired function patterns identified
Based on collected information:
First attempt local reasoning based on:
- Function signature (number and types of parameters)
- Paired call patterns (alloc/free, lock/unlock)
- Known imports in the call chain
- Code structure similarity to known algorithms
If uncertain, use Web Search to search:
- Search Magic Numbers:
0x67452301 0xEFCDAB89 algorithm
- Search code patterns:
rotate left xor constant algorithm
- Search unique strings found in the function
- Search parameter patterns:
function(int, int, 0) socket
Output Format
## Symbol Recovery Analysis: <function_address>
### Function Characteristics
- Strings: <list discovered strings>
- Constants: <list key constants>
- Called imports: <list>
### Cross-Reference Analysis
- Callers: <callers and their symbols>
- Callees: <callees and their symbols>
### Inference Result
- **Suggested symbol name**: <suggested_name>
- **Confidence**: High / Medium / Low
- **Reasoning**: <explain why this name is suggested>
### Similar Open Source Implementation
- <if similar open source code is found, provide link>
1---2name: rev-symbol3description: Restore function symbols by analyzing code patterns, strings, constants, and cross-references4---56# rev-symbol - Symbol Recovery78Analyze function code characteristics to recover/identify function symbols and names.910## Pre-check1112**Determine which IDA access method is available:**1314**Option A — IDA Pro MCP (preferred if connected):**15Check if the IDA Pro MCP server is connected (look for an active `ida-pro` or equivalent MCP connection). If connected, you can query IDA directly via MCP tools — no exported files needed. Proceed with the analysis using MCP.1617**Option B — IDA-NO-MCP exported data:**18If MCP is not connected, check if IDA-NO-MCP exported data exists in the current directory:19201. Check if `decompile/` directory exists212. Check if there are `.c` files inside2223If neither MCP nor exported data is available, prompt the user:24```25No IDA access method detected. Choose one of the following:2627Option A — IDA Pro MCP (recommended):28 Connect the IDA Pro MCP server so Claude can query IDA directly.2930Option B — IDA-NO-MCP export:31 1. Download plugin: https://github.com/P4nda0s/IDA-NO-MCP32 2. Copy INP.py to IDA plugins directory33 3. Press Ctrl-Shift-E in IDA to export34 4. Open the exported directory with Claude Code35```3637---3839## Export Directory Structure4041```42./43├── decompile/ # Decompiled C code directory44│ ├── 0x401000.c # One file per function, named by hex address45│ ├── 0x401234.c46│ └── ...47├── decompile_failed.txt # Failed decompilation list48├── decompile_skipped.txt # Skipped functions list49├── strings.txt # String table (address, length, type, content)50├── imports.txt # Import table (address:function_name)51├── exports.txt # Export table (address:function_name)52└── memory/ # Memory hexdump (1MB chunks)53```5455## Function File Format (decompile/*.c)5657Each `.c` file contains function metadata comments and decompiled code:5859```c60/*61 * func-name: sub_40100062 * func-address: 0x40100063 * callers: 0x402000, 0x403000 // List of functions that call this function64 * callees: 0x404000, 0x405000 // List of functions called by this function65 */6667int __fastcall sub_401000(int a1, int a2)68{69 // Decompiled code...70}71```7273---7475## Symbol Recovery Steps7677### Step 1: Analyze Internal Characteristics7879Carefully examine the target function for:8081- **String constants**: Strings used in the function may reveal its purpose82- **Numeric constants / Magic Numbers**: 83 - MD5: `0x67452301`, `0xEFCDAB89`, `0x98BADCFE`, `0x10325476`84 - CRC32: `0xEDB88320`85 - Base64 charset: `ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/`86 - AES S-Box: `0x63, 0x7C, 0x77, 0x7B...`87 - Zlib: `0x78`, `0x9C` (compression header)88 - other constants/magic numbers...89- **Code structure**: Loop patterns, bitwise operations, specific algorithm flows9091If you can identify a known algorithm through constants/structure, tell the user directly.9293### Step 2: Analyze Cross-References9495**Analyze Callees (called functions):**96- Read functions in the callees list97- For each callee, check if its address exists in `imports.txt`98- Recognize call patterns even when symbols are missing:99100 **Paired function patterns (identify by matching call pairs):**101 ```c102 // malloc/free, new/delete, alloc/dealloc103 xx = sub_A(0x100); // alloc: takes size, returns pointer104 ...105 sub_B(xx); // free: takes the same pointer106 107 // mutex_lock/mutex_unlock, pthread_mutex_lock/unlock108 sub_A(lock_ptr); // lock109 ... // critical section110 sub_B(lock_ptr); // unlock (same lock object)111 112 // open/close, fopen/fclose, CreateFile/CloseHandle113 fd = sub_A("/path", 0); // open: path + flags, returns handle114 ...115 sub_B(fd); // close: takes the handle116 117 // pthread_create/pthread_join118 sub_A(&tid, 0, func, arg); // create: out param, attr, func, arg119 ...120 sub_B(tid, &ret); // join: tid, out param121 122123 **Argument pattern recognition:**124 ```c125 // socket(AF_INET, SOCK_STREAM, 0) - fixed constants126 sub_XXX(2, 1, 0); // socket: domain=2, type=1, protocol=0127 128 // connect/bind(sockfd, addr, addrlen)129 sub_XXX(fd, &var, 16); // addr struct, len=16 for IPv4130 131 // memcpy/memmove(dst, src, size)132 sub_XXX(dst, src, n); // 3 params: dst, src, count133 134 // memset(ptr, value, size)135 sub_XXX(ptr, 0, 0x100); // 3 params: ptr, byte value, count136 137 // read/write(fd, buf, count)138 ret = sub_XXX(fd, buf, n); // returns bytes read/written139 140 // strcmp/strncmp(s1, s2) or (s1, s2, n)141 if (sub_XXX(s1, s2) == 0) // returns 0 on equal142 ```143144 **Return value patterns:**145 ```c146 // file/socket operations: -1 on error147 if ((fd = sub_XXX(...)) == -1) goto error;148 149 // allocation: NULL on failure150 if (!(ptr = sub_XXX(size))) goto error;151 152 // success/error: 0 = success153 if (sub_XXX(...) != 0) goto error;154 155 // strlen: returns size_t156 len = sub_XXX(str);157 sub_YYY(dst, src, len); // len used in memcpy158 ```159160**Analyze Callers (calling functions):**161- Read functions in the callers list162- If a caller has a symbol (check exports.txt), infer the callee's purpose from context163- Recursive check: trace up the call chain until you find a function with a symbol164- Analyze how the return value is used by callers165166### Step 3: Information Gathering and Search167168Collect the following information:169- Strings in the function (check `strings.txt` for addresses used in the function)170- Magic Numbers / constants171- Known imports called (cross-reference callees with `imports.txt`)172- Caller/callee symbols from `exports.txt`173- Paired function patterns identified174175Based on collected information:1761. First attempt local reasoning based on:177 - Function signature (number and types of parameters)178 - Paired call patterns (alloc/free, lock/unlock)179 - Known imports in the call chain180 - Code structure similarity to known algorithms1811822. If uncertain, use **Web Search** to search:183 - Search Magic Numbers: `0x67452301 0xEFCDAB89 algorithm`184 - Search code patterns: `rotate left xor constant algorithm`185 - Search unique strings found in the function186 - Search parameter patterns: `function(int, int, 0) socket`187188---189190## Output Format191192```193## Symbol Recovery Analysis: <function_address>194195### Function Characteristics196- Strings: <list discovered strings>197- Constants: <list key constants>198- Called imports: <list>199200### Cross-Reference Analysis201- Callers: <callers and their symbols>202- Callees: <callees and their symbols>203204### Inference Result205- **Suggested symbol name**: <suggested_name>206- **Confidence**: High / Medium / Low207- **Reasoning**: <explain why this name is suggested>208209### Similar Open Source Implementation210- <if similar open source code is found, provide link>211```