| name | debugging-instruments |
| description | Debug iOS apps and profile performance using LLDB, the interactive Memory Graph Debugger, and Instruments. Use for crashes, retain-cycle inspection, hangs, build failures, and generic CPU, memory, energy, or network profiling. Use ios-memgraph-analysis for .memgraph capture, leaks CLI ownership paths, or persistent heap growth; use ios-ettrace-performance for ETTrace capture and JSON. |
Debugging and Instruments
Keep interactive graph and Instruments triage here. Route detailed .memgraph
command-line ownership/growth analysis and ETTrace work to their focused skills.
Contents
LLDB Debugging
Start with a small, repeatable workflow:
- Reproduce in a Debug build and stop at the narrowest useful breakpoint.
- Inspect locals without executing code, then capture the current stack.
- Move to the relevant frame or thread and verify the failing state.
- Add a condition or watchpoint only when the bad transition is still unclear.
(lldb) br set -f ViewModel.swift -l 42 # Stop at file and line
(lldb) v myLocal # Inspect without executing code
(lldb) po myObject # Use debugDescription when needed
(lldb) bt all # Capture every thread's backtrace
(lldb) frame select 3 # Inspect a relevant frame
(lldb) br modify 1 -c "count > 10" # Narrow a noisy breakpoint
(lldb) w set v self.score # Stop on an unexpected write
Use v over po when you only need a local variable value — it does not
execute code and cannot trigger side effects. Expression evaluation can execute
or mutate program state, and hardware watchpoints are scarce, so use both
deliberately.
Load references/lldb-patterns.md for the complete
inspection, breakpoint/logpoint, expression, watchpoint, thread navigation, and
symbolic-breakpoint command tables.
Memory Debugging
Memory Graph Debugger Workflow
- Run the app in Debug configuration.
- Reproduce the suspected leak (navigate to a screen, then back).
- Tap the Memory Graph button in Xcode's debug bar.
- Look for purple warning icons — these indicate leaked objects.
- Select a leaked object to see its reference graph and backtrace.
Enable Malloc Stack Logging (Scheme > Diagnostics) before running so
the Memory Graph shows allocation backtraces.
Common Retain Cycle Patterns
Closure capturing self strongly:
class ProfileViewModel {
var onUpdate: (() -> Void)?
func startObserving() {
onUpdate = {
self.refresh()
}
}
}
func startObserving() {
onUpdate = { [weak self] in
self?.refresh()
}
}
Strong delegate reference:
protocol DataDelegate: AnyObject {
func didUpdate()
}
class DataManager {
var delegate: DataDelegate?
}
class DataManager {
weak var delegate: DataDelegate?
}
Timer retaining target:
timer = Timer.scheduledTimer(
timeInterval: 1.0, target: self,
selector: #selector(tick), userInfo: nil, repeats: true
)
timer = Timer.scheduledTimer(withTimeInterval: 1.0, repeats: true) { [weak self] _ in
self?.tick()
}
Instruments: Allocations and Leaks
- Allocations template: Track memory growth over time. Use the
"Mark Generation" feature to isolate allocations created between
user actions (e.g., open/close a screen).
- Leaks template: Detects leaked allocations, including isolated retain
cycles the process can no longer reach. Run alongside Allocations for a
complete picture.
- Filter by your app's module name to exclude system allocations.
For leak or memory-growth triage, pair the tools: use Allocations Mark
Generation before and after the reproduction step to prove retained growth,
then use Memory Graph Debugger to inspect object ownership and Malloc Stack
Logging to recover allocation call stacks.
Malloc Stack Logging
Enable in Scheme > Run > Diagnostics > Malloc Stack Logging. This records
allocation backtraces so the Memory Graph Debugger, Allocations instrument,
and exported .memgraph files can show where objects were created.
leaks MyApp.memgraph
Hang Diagnostics
Identifying Main Thread Hangs
For discrete interactions, delays under 100 ms are rarely noticeable. Apple
developer tools commonly report main-run-loop busy periods over 250 ms, but
that reporting threshold is not a product target: a few hundred milliseconds
can still feel unresponsive. Common detection tools:
- Thread Checker (Xcode Diagnostics): warns about non-main-thread UI calls
- Thread Performance Checker: reports priority inversions while debugging
- On-device Hang Detection: Developer Settings reports hangs from device use
- Time Profiler / CPU Profiler / Hitches: profile reproducible hangs
- os_signpost and
OSSignposter: mark intervals for Instruments
- MetricKit hang diagnostics: production hang detection (see
metrickit skill for HangDiagnostic and iOS 26 compatibility)
import os
let signposter = OSSignposter(subsystem: "com.example.app", category: "DataLoad")
func loadData() async {
let state = signposter.beginInterval("loadData")
let result = await fetchFromNetwork()
signposter.endInterval("loadData", state)
process(result)
}
Using the Time Profiler
- Product > Profile (Cmd+I) to launch Instruments.
- Select the Time Profiler template.
- Record while reproducing the slow interaction.
- Focus on the main thread — sort by "Weight" to find hot paths.
- Check "Hide System Libraries" to see only your code.
- Double-click a heavy frame to jump to source.
Common Hang Causes
| Cause | Symptom | Fix |
|---|
| Synchronous I/O on main thread | Network/file reads block UI | Move to Task { } or background actor |
| Lock contention | Main thread waiting on a lock held by background work | Use actors or reduce lock scope |
| Layout thrashing | Repeated layoutSubviews calls | Batch layout changes, avoid forced layout |
| JSON parsing large payloads | UI freezes during data load | Parse on a background thread |
| Synchronous image decoding | Scroll jank on image-heavy lists | Use AsyncImage or decode off main thread |
Build Failure Triage
Reading Compiler Diagnostics
- Start from the first error — subsequent errors are often cascading.
- Search for the error code (e.g.,
error: cannot convert) in the build log.
- Use Report Navigator (Cmd+9) for the full build log with timestamps.
SPM Dependency Resolution
# Common: version conflict
error: Dependencies could not be resolved because root depends on 'Package' 1.0.0..<2.0.0
# Fix: check Package.resolved and update version ranges
# Reset package caches if needed:
rm -rf ~/Library/Caches/org.swift.swiftpm
rm -rf .build
swift package resolve
Module Not Found / Linker Errors
| Error | Check |
|---|
No such module 'Foo' | Target membership, import paths, framework search paths |
Undefined symbol | Linking phase missing framework, wrong architecture |
duplicate symbol | Two targets define same symbol; check for ObjC naming collisions |
Build settings to inspect first:
FRAMEWORK_SEARCH_PATHS
OTHER_LDFLAGS
SWIFT_INCLUDE_PATHS
BUILD_LIBRARY_FOR_DISTRIBUTION (for XCFrameworks)
Instruments Overview
Template Selection Guide
| Template | Use When |
|---|
| Time Profiler | CPU is high, UI feels slow, need to find hot code paths |
| Allocations | Memory grows over time, need to track object lifetimes |
| Leaks | Suspect retain cycles or abandoned objects |
| Network | Inspecting HTTP request/response timing and payloads |
| SwiftUI | Profiling view body evaluations and update frequency |
| Animation Hitches / Core Animation instruments | Frame drops, hitches, blending, and commit/render work |
| Power Profiler | Battery drain, thermal pressure, background energy impact |
| File Activity | Excessive disk I/O, slow file operations |
| System Trace | Thread scheduling, syscalls, virtual memory faults |
xctrace CLI for CI Profiling
xcrun xctrace record --device "My iPhone" \
--template "Time Profiler" \
--instrument "Allocations" \
--output profile.trace \
--launch -- /path/to/MyApp.app
xcrun xctrace export --input profile.trace --xpath '/trace-toc/run/data/table'
xcrun xctrace list templates
xcrun xctrace list devices
Use one --template per recording; add extra instruments with
--instrument. Use xctrace in CI pipelines to catch performance regressions
automatically. Compare exported metrics between builds.
Common Mistakes
DON'T: Use print() for debugging instead of os.Logger
Use Logger for levels, privacy metadata, and subsystem/category filtering;
.debug remains in memory and is not persisted in release builds.
print("user tapped button, state: \(viewModel.state)")
print("network response: \(data)")
import os
let logger = Logger(subsystem: "com.example.app", category: "UI")
logger.debug("Button tapped, state: \(viewModel.state, privacy: .public)")
logger.info("Network response received, bytes: \(data.count)")
DON'T: Forget to enable Malloc Stack Logging before memory debugging
DON'T: Debug optimized code expecting full variable visibility
DON'T: Stop on every loop iteration without conditional breakpoints
for item in items {
process(item)
}
DON'T: Ignore Thread Sanitizer warnings
Thread Sanitizer (TSan) warnings indicate data races that may only crash
intermittently. Treat them as real bugs unless you have isolated a tool issue.
var cache: [String: Data] = [:]
actor CacheActor {
var cache: [String: Data] = [:]
func get(_ key: String) -> Data? { cache[key] }
func set(_ key: String, _ value: Data) { cache[key] = value }
}
Enable TSan: Scheme > Run > Diagnostics > Thread Sanitizer. For iOS, iPadOS,
tvOS, visionOS, and watchOS apps, run TSan in Simulator; Apple documents device
support only for 64-bit macOS apps.
Review Checklist
References