1use memf_core::object_reader::ObjectReader;
7use memf_format::PhysicalMemoryProvider;
8
9use crate::{Error, Result, VmaFlags, VmaInfo};
10
11pub fn walk_maps<P: PhysicalMemoryProvider>(reader: &ObjectReader<P>) -> Result<Vec<VmaInfo>> {
16 let init_task_addr = reader
17 .symbols()
18 .symbol_address("init_task")
19 .ok_or_else(|| Error::MissingKernelSymbol {
20 name: "init_task".into(),
21 })?;
22
23 let tasks_offset = reader
24 .symbols()
25 .field_offset("task_struct", "tasks")
26 .ok_or_else(|| Error::MissingField {
27 struct_name: "task_struct".into(),
28 field_name: "tasks".into(),
29 })?;
30
31 let head_vaddr = init_task_addr + tasks_offset;
32 let task_addrs = reader.walk_list(head_vaddr, "task_struct", "tasks")?;
33
34 let mut all_vmas = Vec::new();
35
36 collect_process_vmas(reader, init_task_addr, &mut all_vmas);
38
39 for &task_addr in &task_addrs {
40 collect_process_vmas(reader, task_addr, &mut all_vmas);
41 }
42
43 Ok(all_vmas)
44}
45
46fn collect_process_vmas<P: PhysicalMemoryProvider>(
48 reader: &ObjectReader<P>,
49 task_addr: u64,
50 out: &mut Vec<VmaInfo>,
51) {
52 let mm_ptr: u64 = match reader.read_field(task_addr, "task_struct", "mm") {
53 Ok(v) => v,
54 Err(_) => return,
55 };
56 if mm_ptr == 0 {
57 return; }
59
60 if let Ok(vmas) = walk_process_maps(reader, task_addr) {
61 out.extend(vmas);
62 }
63}
64
65pub fn walk_process_maps<P: PhysicalMemoryProvider>(
67 reader: &ObjectReader<P>,
68 task_addr: u64,
69) -> Result<Vec<VmaInfo>> {
70 let pid: u32 = reader.read_field(task_addr, "task_struct", "pid")?;
71 let comm = reader.read_field_string(task_addr, "task_struct", "comm", 16)?;
72 let mm_ptr: u64 = reader.read_field(task_addr, "task_struct", "mm")?;
73
74 if mm_ptr == 0 {
75 return Err(Error::WalkFailed {
76 walker: "walk_process_maps",
77 reason: format!("task {comm} (PID {pid}) has NULL mm (kernel thread)"),
78 });
79 }
80
81 let mmap_ptr: u64 = reader.read_field(mm_ptr, "mm_struct", "mmap")?;
82
83 let mut vmas = Vec::new();
84 let mut vma_addr = mmap_ptr;
85
86 while vma_addr != 0 {
88 let vm_start: u64 = reader.read_field(vma_addr, "vm_area_struct", "vm_start")?;
89 let vm_end: u64 = reader.read_field(vma_addr, "vm_area_struct", "vm_end")?;
90 let vm_flags: u64 = reader.read_field(vma_addr, "vm_area_struct", "vm_flags")?;
91 let vm_pgoff: u64 = reader.read_field(vma_addr, "vm_area_struct", "vm_pgoff")?;
92 let vm_file: u64 = reader.read_field(vma_addr, "vm_area_struct", "vm_file")?;
93
94 vmas.push(VmaInfo {
95 pid: u64::from(pid),
96 comm: comm.clone(),
97 start: vm_start,
98 end: vm_end,
99 flags: VmaFlags::from_raw(vm_flags),
100 pgoff: vm_pgoff,
101 file_backed: vm_file != 0,
102 });
103
104 vma_addr = reader.read_field(vma_addr, "vm_area_struct", "vm_next")?;
105 }
106
107 Ok(vmas)
108}
109
110#[cfg(test)]
111mod tests {
112 use super::*;
113 use memf_core::test_builders::{flags, PageTableBuilder, SyntheticPhysMem};
114 use memf_core::vas::{TranslationMode, VirtualAddressSpace};
115 use memf_symbols::isf::IsfResolver;
116 use memf_symbols::test_builders::IsfBuilder;
117
118 fn make_test_reader(data: &[u8], vaddr: u64, paddr: u64) -> ObjectReader<SyntheticPhysMem> {
119 let isf = IsfBuilder::new()
120 .add_struct("task_struct", 128)
122 .add_field("task_struct", "pid", 0, "int")
123 .add_field("task_struct", "state", 4, "long")
124 .add_field("task_struct", "tasks", 16, "list_head")
125 .add_field("task_struct", "comm", 32, "char")
126 .add_field("task_struct", "mm", 48, "pointer")
127 .add_field("task_struct", "real_parent", 56, "pointer")
128 .add_struct("list_head", 16)
130 .add_field("list_head", "next", 0, "pointer")
131 .add_field("list_head", "prev", 8, "pointer")
132 .add_struct("mm_struct", 128)
134 .add_field("mm_struct", "pgd", 0, "pointer")
135 .add_field("mm_struct", "mmap", 8, "pointer")
136 .add_struct("vm_area_struct", 64)
138 .add_field("vm_area_struct", "vm_start", 0, "unsigned long")
139 .add_field("vm_area_struct", "vm_end", 8, "unsigned long")
140 .add_field("vm_area_struct", "vm_next", 16, "pointer")
141 .add_field("vm_area_struct", "vm_flags", 24, "unsigned long")
142 .add_field("vm_area_struct", "vm_pgoff", 32, "unsigned long")
143 .add_field("vm_area_struct", "vm_file", 40, "pointer")
144 .add_symbol("init_task", vaddr)
146 .build_json();
147
148 let resolver = IsfResolver::from_value(&isf).unwrap();
149 let (cr3, mem) = PageTableBuilder::new()
150 .map_4k(vaddr, paddr, flags::WRITABLE)
151 .write_phys(paddr, data)
152 .build();
153 let vas = VirtualAddressSpace::new(mem, cr3, TranslationMode::X86_64FourLevel);
154 ObjectReader::new(vas, Box::new(resolver))
155 }
156
157 #[test]
158 fn walk_single_process_two_vmas() {
159 let vaddr: u64 = 0xFFFF_8000_0010_0000;
160 let paddr: u64 = 0x0080_0000;
161 let mut data = vec![0u8; 4096];
162
163 data[0..4].copy_from_slice(&1u32.to_le_bytes()); data[4..12].copy_from_slice(&0i64.to_le_bytes()); let tasks_addr = vaddr + 16;
167 data[16..24].copy_from_slice(&tasks_addr.to_le_bytes()); data[24..32].copy_from_slice(&tasks_addr.to_le_bytes()); data[32..39].copy_from_slice(b"systemd"); let mm_addr = vaddr + 0x200;
171 data[48..56].copy_from_slice(&mm_addr.to_le_bytes()); data[0x200..0x208].copy_from_slice(&0x1000u64.to_le_bytes()); let vma1_addr = vaddr + 0x300;
176 data[0x208..0x210].copy_from_slice(&vma1_addr.to_le_bytes()); data[0x300..0x308].copy_from_slice(&0x0040_0000u64.to_le_bytes()); data[0x308..0x310].copy_from_slice(&0x0040_1000u64.to_le_bytes()); let vma2_addr = vaddr + 0x400;
182 data[0x310..0x318].copy_from_slice(&vma2_addr.to_le_bytes()); data[0x318..0x320].copy_from_slice(&0x5u64.to_le_bytes()); data[0x320..0x328].copy_from_slice(&0u64.to_le_bytes()); data[0x328..0x330].copy_from_slice(&0x9999u64.to_le_bytes()); data[0x400..0x408].copy_from_slice(&0x7FFF_0000u64.to_le_bytes()); data[0x408..0x410].copy_from_slice(&0x7FFF_2000u64.to_le_bytes()); data[0x410..0x418].copy_from_slice(&0u64.to_le_bytes()); data[0x418..0x420].copy_from_slice(&0x3u64.to_le_bytes()); data[0x420..0x428].copy_from_slice(&0u64.to_le_bytes()); data[0x428..0x430].copy_from_slice(&0u64.to_le_bytes()); let reader = make_test_reader(&data, vaddr, paddr);
196 let vmas = walk_maps(&reader).unwrap();
197
198 assert_eq!(vmas.len(), 2);
199
200 assert_eq!(vmas[0].pid, 1);
201 assert_eq!(vmas[0].comm, "systemd");
202 assert_eq!(vmas[0].start, 0x0040_0000);
203 assert_eq!(vmas[0].end, 0x0040_1000);
204 assert!(vmas[0].flags.read);
205 assert!(!vmas[0].flags.write);
206 assert!(vmas[0].flags.exec);
207 assert!(vmas[0].file_backed);
208
209 assert_eq!(vmas[1].start, 0x7FFF_0000);
210 assert_eq!(vmas[1].end, 0x7FFF_2000);
211 assert!(vmas[1].flags.read);
212 assert!(vmas[1].flags.write);
213 assert!(!vmas[1].flags.exec);
214 assert!(!vmas[1].file_backed);
215 }
216
217 #[test]
218 fn walk_maps_skips_kernel_threads() {
219 let vaddr: u64 = 0xFFFF_8000_0010_0000;
221 let paddr: u64 = 0x0080_0000;
222 let mut data = vec![0u8; 4096];
223
224 data[0..4].copy_from_slice(&0u32.to_le_bytes());
226 let tasks_addr = vaddr + 16;
227 data[16..24].copy_from_slice(&tasks_addr.to_le_bytes());
228 data[24..32].copy_from_slice(&tasks_addr.to_le_bytes());
229 data[32..41].copy_from_slice(b"swapper/0");
230 data[48..56].copy_from_slice(&0u64.to_le_bytes()); let reader = make_test_reader(&data, vaddr, paddr);
233 let vmas = walk_maps(&reader).unwrap();
234
235 assert!(vmas.is_empty());
236 }
237
238 #[test]
239 fn walk_process_maps_returns_error_for_missing_mm() {
240 let vaddr: u64 = 0xFFFF_8000_0010_0000;
241 let paddr: u64 = 0x0080_0000;
242 let mut data = vec![0u8; 4096];
243
244 data[48..56].copy_from_slice(&0u64.to_le_bytes()); let reader = make_test_reader(&data, vaddr, paddr);
247 let result = walk_process_maps(&reader, vaddr);
248 assert!(result.is_err());
249 }
250
251 #[test]
252 fn missing_init_task_symbol() {
253 let isf = IsfBuilder::new()
254 .add_struct("task_struct", 64)
255 .add_field("task_struct", "pid", 0, "int")
256 .add_field("task_struct", "tasks", 8, "list_head")
257 .add_struct("list_head", 16)
258 .add_field("list_head", "next", 0, "pointer")
259 .add_field("list_head", "prev", 8, "pointer")
260 .build_json();
261
262 let resolver = IsfResolver::from_value(&isf).unwrap();
263 let (cr3, mem) = PageTableBuilder::new().build();
264 let vas = VirtualAddressSpace::new(mem, cr3, TranslationMode::X86_64FourLevel);
265 let reader = ObjectReader::new(vas, Box::new(resolver));
266
267 let result = walk_maps(&reader);
268 assert!(
269 matches!(result, Err(crate::Error::MissingKernelSymbol { ref name }) if name == "init_task"),
270 "expected MissingKernelSymbol {{name: \"init_task\"}}, got {result:?}"
271 );
272 }
273
274 #[test]
275 fn missing_tasks_field_returns_missing_field() {
276 let isf = IsfBuilder::new()
277 .add_struct("task_struct", 64)
278 .add_field("task_struct", "pid", 0, "int")
279 .add_struct("list_head", 16)
281 .add_field("list_head", "next", 0, "pointer")
282 .add_field("list_head", "prev", 8, "pointer")
283 .add_symbol("init_task", 0xFFFF_8000_0010_0000)
284 .build_json();
285 let resolver = IsfResolver::from_value(&isf).unwrap();
286 let (cr3, mem) = PageTableBuilder::new().build();
287 let vas = VirtualAddressSpace::new(mem, cr3, TranslationMode::X86_64FourLevel);
288 let reader: ObjectReader<SyntheticPhysMem> = ObjectReader::new(vas, Box::new(resolver));
289 let result = walk_maps(&reader);
290 assert!(
291 matches!(result, Err(crate::Error::MissingField { ref struct_name, ref field_name }) if struct_name == "task_struct" && field_name == "tasks"),
292 "expected MissingField task_struct.tasks, got {result:?}"
293 );
294 }
295}