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grafeo_core/execution/
memory.rs

1//! Execution memory context for memory-aware query execution.
2
3use grafeo_common::memory::buffer::{BufferManager, MemoryGrant, MemoryRegion, PressureLevel};
4use std::sync::Arc;
5
6/// Default chunk size for execution buffers.
7pub const DEFAULT_CHUNK_SIZE: usize = 2048;
8
9/// Chunk size under moderate memory pressure.
10pub const MODERATE_PRESSURE_CHUNK_SIZE: usize = 1024;
11
12/// Chunk size under high memory pressure.
13pub const HIGH_PRESSURE_CHUNK_SIZE: usize = 512;
14
15/// Chunk size under critical memory pressure.
16pub const CRITICAL_PRESSURE_CHUNK_SIZE: usize = 256;
17
18/// Execution context with memory awareness.
19///
20/// This context provides memory allocation for query execution operators
21/// and adjusts chunk sizes based on memory pressure.
22pub struct ExecutionMemoryContext {
23    /// Reference to the buffer manager.
24    manager: Arc<BufferManager>,
25    /// Total bytes allocated for this execution context.
26    allocated: usize,
27    /// Grants held by this context.
28    grants: Vec<MemoryGrant>,
29}
30
31impl ExecutionMemoryContext {
32    /// Creates a new execution memory context.
33    #[must_use]
34    pub fn new(manager: Arc<BufferManager>) -> Self {
35        Self {
36            manager,
37            allocated: 0,
38            grants: Vec::new(),
39        }
40    }
41
42    /// Requests memory for execution buffers.
43    ///
44    /// Returns `None` if the allocation cannot be satisfied.
45    pub fn allocate(&mut self, size: usize) -> Option<MemoryGrant> {
46        let grant = self
47            .manager
48            .try_allocate(size, MemoryRegion::ExecutionBuffers)?;
49        self.allocated += size;
50        Some(grant)
51    }
52
53    /// Allocates and stores a grant internally.
54    ///
55    /// The grant will be released when this context is dropped.
56    pub fn allocate_tracked(&mut self, size: usize) -> bool {
57        if let Some(grant) = self
58            .manager
59            .try_allocate(size, MemoryRegion::ExecutionBuffers)
60        {
61            self.allocated += size;
62            self.grants.push(grant);
63            true
64        } else {
65            false
66        }
67    }
68
69    /// Returns the current pressure level.
70    #[must_use]
71    pub fn pressure_level(&self) -> PressureLevel {
72        self.manager.pressure_level()
73    }
74
75    /// Returns whether chunk size should be reduced due to memory pressure.
76    #[must_use]
77    pub fn should_reduce_chunk_size(&self) -> bool {
78        matches!(
79            self.pressure_level(),
80            PressureLevel::High | PressureLevel::Critical
81        )
82    }
83
84    /// Computes adjusted chunk size based on memory pressure.
85    #[must_use]
86    pub fn adjusted_chunk_size(&self, requested: usize) -> usize {
87        match self.pressure_level() {
88            PressureLevel::Normal => requested,
89            PressureLevel::Moderate => requested.min(MODERATE_PRESSURE_CHUNK_SIZE),
90            PressureLevel::High => requested.min(HIGH_PRESSURE_CHUNK_SIZE),
91            PressureLevel::Critical => requested.min(CRITICAL_PRESSURE_CHUNK_SIZE),
92            _ => requested.min(CRITICAL_PRESSURE_CHUNK_SIZE),
93        }
94    }
95
96    /// Returns the optimal chunk size for the current memory state.
97    #[must_use]
98    pub fn optimal_chunk_size(&self) -> usize {
99        self.adjusted_chunk_size(DEFAULT_CHUNK_SIZE)
100    }
101
102    /// Returns total bytes allocated through this context.
103    #[must_use]
104    pub fn total_allocated(&self) -> usize {
105        self.allocated
106    }
107
108    /// Returns the buffer manager.
109    #[must_use]
110    pub fn manager(&self) -> &Arc<BufferManager> {
111        &self.manager
112    }
113
114    /// Releases all tracked grants.
115    pub fn release_all(&mut self) {
116        self.grants.clear();
117        self.allocated = 0;
118    }
119}
120
121impl Drop for ExecutionMemoryContext {
122    fn drop(&mut self) {
123        // Grants are automatically released when dropped
124        self.grants.clear();
125    }
126}
127
128/// Builder for execution memory contexts with pre-allocation.
129pub struct ExecutionMemoryContextBuilder {
130    manager: Arc<BufferManager>,
131    initial_allocation: usize,
132}
133
134impl ExecutionMemoryContextBuilder {
135    /// Creates a new builder with the given buffer manager.
136    #[must_use]
137    pub fn new(manager: Arc<BufferManager>) -> Self {
138        Self {
139            manager,
140            initial_allocation: 0,
141        }
142    }
143
144    /// Sets the initial allocation size.
145    #[must_use]
146    pub fn with_initial_allocation(mut self, size: usize) -> Self {
147        self.initial_allocation = size;
148        self
149    }
150
151    /// Builds the execution memory context.
152    ///
153    /// Returns `None` if the initial allocation cannot be satisfied.
154    pub fn build(self) -> Option<ExecutionMemoryContext> {
155        let mut ctx = ExecutionMemoryContext::new(self.manager);
156
157        if self.initial_allocation > 0 && !ctx.allocate_tracked(self.initial_allocation) {
158            return None;
159        }
160
161        Some(ctx)
162    }
163}
164
165#[cfg(test)]
166mod tests {
167    use super::*;
168    use grafeo_common::memory::buffer::BufferManagerConfig;
169
170    #[test]
171    fn test_execution_context_creation() {
172        let manager = BufferManager::with_budget(1024 * 1024);
173        let ctx = ExecutionMemoryContext::new(manager);
174
175        assert_eq!(ctx.total_allocated(), 0);
176        assert_eq!(ctx.pressure_level(), PressureLevel::Normal);
177    }
178
179    #[test]
180    fn test_execution_context_allocation() {
181        let manager = BufferManager::with_budget(1024 * 1024);
182        let mut ctx = ExecutionMemoryContext::new(manager);
183
184        let grant = ctx.allocate(1024);
185        assert!(grant.is_some());
186        assert_eq!(ctx.total_allocated(), 1024);
187    }
188
189    #[test]
190    fn test_execution_context_tracked_allocation() {
191        let manager = BufferManager::with_budget(1024 * 1024);
192        let mut ctx = ExecutionMemoryContext::new(manager);
193
194        assert!(ctx.allocate_tracked(1024));
195        assert_eq!(ctx.total_allocated(), 1024);
196
197        ctx.release_all();
198        assert_eq!(ctx.total_allocated(), 0);
199    }
200
201    #[test]
202    fn test_adjusted_chunk_size_normal() {
203        let manager = BufferManager::with_budget(1024 * 1024);
204        let ctx = ExecutionMemoryContext::new(manager);
205
206        assert_eq!(ctx.adjusted_chunk_size(2048), 2048);
207        assert_eq!(ctx.optimal_chunk_size(), 2048);
208    }
209
210    #[test]
211    fn test_adjusted_chunk_size_under_pressure() {
212        let config = BufferManagerConfig {
213            budget: 1000,
214            soft_limit_fraction: 0.70,
215            evict_limit_fraction: 0.85,
216            hard_limit_fraction: 0.95,
217            background_eviction: false,
218            spill_path: None,
219        };
220        let manager = BufferManager::new(config);
221
222        // Allocate to reach high pressure (>85%)
223        let _g = manager.try_allocate(860, MemoryRegion::ExecutionBuffers);
224
225        let ctx = ExecutionMemoryContext::new(manager);
226        assert_eq!(ctx.pressure_level(), PressureLevel::High);
227        assert_eq!(ctx.adjusted_chunk_size(2048), HIGH_PRESSURE_CHUNK_SIZE);
228        assert!(ctx.should_reduce_chunk_size());
229    }
230
231    #[test]
232    fn test_builder() {
233        let manager = BufferManager::with_budget(1024 * 1024);
234
235        let ctx = ExecutionMemoryContextBuilder::new(manager)
236            .with_initial_allocation(4096)
237            .build();
238
239        assert!(ctx.is_some());
240        let ctx = ctx.unwrap();
241        assert_eq!(ctx.total_allocated(), 4096);
242    }
243
244    #[test]
245    fn test_builder_insufficient_memory() {
246        let manager = BufferManager::with_budget(1000);
247
248        // Try to allocate more than available
249        let ctx = ExecutionMemoryContextBuilder::new(manager)
250            .with_initial_allocation(10000)
251            .build();
252
253        assert!(ctx.is_none());
254    }
255}