sqlite_graphrag/
memory_guard.rs1use sysinfo::{
13 get_current_pid, MemoryRefreshKind, ProcessRefreshKind, ProcessesToUpdate, RefreshKind, System,
14 UpdateKind,
15};
16
17use crate::errors::AppError;
18
19pub fn available_memory_mb() -> u64 {
21 let sys =
22 System::new_with_specifics(RefreshKind::new().with_memory(MemoryRefreshKind::everything()));
23 let available_bytes = sys.available_memory();
24 available_bytes / (1024 * 1024)
25}
26
27pub fn current_process_memory_mb() -> Option<u64> {
29 let pid = get_current_pid().ok()?;
30 let mut sys =
31 System::new_with_specifics(RefreshKind::new().with_memory(MemoryRefreshKind::everything()));
32 sys.refresh_processes_specifics(
33 ProcessesToUpdate::Some(&[pid]),
34 true,
35 ProcessRefreshKind::new()
36 .with_memory()
37 .with_exe(UpdateKind::OnlyIfNotSet),
38 );
39 sys.process(pid).map(|p| p.memory() / (1024 * 1024))
40}
41
42pub fn calculate_safe_concurrency(
49 available_mb: u64,
50 cpu_count: usize,
51 ram_per_task_mb: u64,
52 max_concurrency: usize,
53) -> usize {
54 let cpu_count = cpu_count.max(1);
55 let max_concurrency = max_concurrency.max(1);
56 let ram_per_task_mb = ram_per_task_mb.max(1);
57
58 let memory_bound = (available_mb / ram_per_task_mb) as usize;
59 let resource_bound = cpu_count.min(memory_bound).max(1);
60 let safe_with_margin = (resource_bound / 2).max(1);
61
62 safe_with_margin.min(max_concurrency)
63}
64
65pub fn check_available_memory(min_mb: u64) -> Result<u64, AppError> {
77 let available_mb = available_memory_mb();
78
79 if available_mb < min_mb {
80 return Err(AppError::LowMemory {
81 available_mb,
82 required_mb: min_mb,
83 });
84 }
85
86 Ok(available_mb)
87}
88
89#[cfg(test)]
90mod tests {
91 use super::*;
92
93 #[test]
94 fn check_available_memory_with_zero_always_passes() {
95 let result = check_available_memory(0);
96 assert!(result.is_ok(), "min_mb=0 must always pass, got: {result:?}");
97 let mb = result.unwrap();
98 assert!(mb > 0, "system must report positive memory");
99 }
100
101 #[test]
102 fn check_available_memory_with_huge_value_fails() {
103 let result = check_available_memory(u64::MAX);
104 assert!(
105 matches!(result, Err(AppError::LowMemory { .. })),
106 "u64::MAX MiB must fail with LowMemory, got: {result:?}"
107 );
108 }
109
110 #[test]
111 fn low_memory_error_contains_correct_values() {
112 match check_available_memory(u64::MAX) {
113 Err(AppError::LowMemory {
114 available_mb,
115 required_mb,
116 }) => {
117 assert_eq!(required_mb, u64::MAX);
118 assert!(available_mb < u64::MAX);
119 }
120 outro => unreachable!("esperado LowMemory, got: {outro:?}"),
121 }
122 }
123
124 #[test]
125 fn calculate_safe_concurrency_respects_half_margin() {
126 let permits = calculate_safe_concurrency(8_000, 8, 1_000, 4);
127 assert_eq!(permits, 4);
128 }
129
130 #[test]
131 fn calculate_safe_concurrency_never_returns_zero() {
132 let permits = calculate_safe_concurrency(100, 1, 10_000, 4);
133 assert_eq!(permits, 1);
134 }
135
136 #[test]
137 fn calculate_safe_concurrency_respects_max_ceiling() {
138 let permits = calculate_safe_concurrency(128_000, 64, 500, 4);
139 assert_eq!(permits, 4);
140 }
141
142 #[test]
143 fn current_process_memory_mb_returns_some_value() {
144 let rss = current_process_memory_mb();
145 assert!(rss.is_some());
146 }
147}