1*1031c584SApple OSS Distributions# Recount 2*1031c584SApple OSS Distributions 3*1031c584SApple OSS DistributionsRecount is a resource accounting subsystem in the kernel that tracks the CPU resources consumed by threads, tasks, coalitions, and processors. 4*1031c584SApple OSS DistributionsIt supports attributing counts to a specific level of the CPU topology (per-CPU and per-CPU kind). 5*1031c584SApple OSS DistributionsARM64 devices with a fast timebase read and Intel devices can track time spent in the kernel (system) separately from user space. 6*1031c584SApple OSS Distributions64-bit, non-virtualized (e.g. _not_ running under a hypervisor) devices also accumulate instructions and cycles at each context switch. 7*1031c584SApple OSS DistributionsThese two metrics are abbreviated to cycles-per-instruction, or CPI, for brevity. 8*1031c584SApple OSS DistributionsARM64 devices can also track task and thread energy in nanojoules. 9*1031c584SApple OSS Distributions 10*1031c584SApple OSS DistributionsBy default, Recount tracks its counters per-CPU kind (e.g. performance or efficiency) for threads, per-CPU for tasks, and per-CPU kind for coalitions. 11*1031c584SApple OSS Distributions 12*1031c584SApple OSS Distributions## High-Level Interfaces 13*1031c584SApple OSS Distributions 14*1031c584SApple OSS DistributionsThese interfaces report counter data to user space and are backed by Recount. 15*1031c584SApple OSS Distributions 16*1031c584SApple OSS Distributions| Interface | Entity | Target | Tests | Time | CPI | Energy | Perf Levels | 17*1031c584SApple OSS Distributions| --------------------------: | ----------- | ------------- | :---: | :--: | :-: | :----: | :---------: | 18*1031c584SApple OSS Distributions| `getrusage` | task | self/children | FP | ✓¹ | | | | 19*1031c584SApple OSS Distributions| `prod_pid_rusage` | task | pid | FP | ✓ | ✓ | ✓ | ✓² | 20*1031c584SApple OSS Distributions| `PROC_PIDTASKINFO` | task | pid | FP | ✓ | ✓ | | ✓² | 21*1031c584SApple OSS Distributions| `TASK_BASIC_INFO` | task | task port | FP | ✓¹ | | | | 22*1031c584SApple OSS Distributions| `TASK_ABSOLUTETIME_INFO` | task | task port | FP | ✓ | | | | 23*1031c584SApple OSS Distributions| `TASK_POWER_INFO` | task | task port | FP | ✓ | | | | 24*1031c584SApple OSS Distributions| `TASK_INSPECT_BASIC_COUNTS` | task | task inspect | P | | ✓ | | | 25*1031c584SApple OSS Distributions| `THREAD_BASIC_INFO` | thread | thread port | P | ✓ | | | | 26*1031c584SApple OSS Distributions| `THREAD_EXTENDED_INFO` | thread | thread port | | ✓ | | | | 27*1031c584SApple OSS Distributions| `proc_threadinfo` | thread | thread ID | | ✓ | | | | 28*1031c584SApple OSS Distributions| `proc_threadcounts` | thread | thread ID | F | ✓ | ✓ | ✓ | ✓ | 29*1031c584SApple OSS Distributions| `thread_selfcounts` | thread | self | FP | ✓ | ✓ | ✓ | ✓ | 30*1031c584SApple OSS Distributions| `thread_selfusage` | thread | self | FP | ✓ | | | | 31*1031c584SApple OSS Distributions| `coalition_info` | coalition | coalition ID | F | ✓ | ✓ | ✓ | ✓² | 32*1031c584SApple OSS Distributions| `HOST_CPU_LOAD_INFO` | system | all | | ✓ | | | | 33*1031c584SApple OSS Distributions| `PROCESSOR_CPU_LOAD_INFO` | processor | port | | ✓ | | | | 34*1031c584SApple OSS Distributions| `stackshot` | task/thread | all | P | ✓ | ✓ | | ✓² | 35*1031c584SApple OSS Distributions| DTrace | thread | any | | ✓ | ✓ | | | 36*1031c584SApple OSS Distributions| kperf | task/thread | any | | ✓ | ✓ | | ✓² | 37*1031c584SApple OSS Distributions 38*1031c584SApple OSS Distributions- Under Tests, "F" is functional and "P" is performance. 39*1031c584SApple OSS Distributions- ¹ Time precision is microseconds. 40*1031c584SApple OSS Distributions- ² These return overall totals and hard-code a separate, P-core-only value. 41*1031c584SApple OSS Distributions 42*1031c584SApple OSS Distributions## LLDB 43*1031c584SApple OSS Distributions 44*1031c584SApple OSS DistributionsThe `recount` macro inspects counters in an LLDB session and is generally useful for retrospective analysis of CPU usage. 45*1031c584SApple OSS DistributionsIts subcommands print each metric as a column and then uses rows for the groupings, like per-CPU or per-CPU kind values. 46*1031c584SApple OSS DistributionsTables also include formulaic columns that can be derived from two metrics, like CPI or power. 47*1031c584SApple OSS DistributionsBy default, it prints the times in seconds, but the `-M` flag switches the output to Mach time values. 48*1031c584SApple OSS Distributions 49*1031c584SApple OSS Distributions- `recount thread <thread-ptr> [...]` prints a table of per-CPU kind counts for threads. 50*1031c584SApple OSS Distributions 51*1031c584SApple OSS Distributions- `recount task <task-ptr> [...]` prints a table of per-CPU counts for tasks. 52*1031c584SApple OSS Distributions - `-T` prints the task's active thread counters in additional tables. 53*1031c584SApple OSS Distributions - `-F <name>` finds the task matching the provided name instead of using a task pointer. 54*1031c584SApple OSS Distributions 55*1031c584SApple OSS Distributions- `recount coalition <coalition-ptr>` prints a table of per-CPU kind counts for each coalition, not including the currently-active tasks. 56*1031c584SApple OSS DistributionsCoalition pointers can be found with the `showtaskcoalitions` macro, and should be _resource_ coalitions. 57*1031c584SApple OSS Distributions 58*1031c584SApple OSS Distributions- `recount processor <processor-ptr-or-cpu-id>` prints a table of counts for a processor. 59*1031c584SApple OSS Distributions - `-T` prints the processor's active thread counters in an additional table. 60*1031c584SApple OSS Distributions - `-A` includes all processors in the output. 61*1031c584SApple OSS Distributions 62*1031c584SApple OSS Distributions- `recount diagnose` prints information useful for debugging the Recount subsystem itself. 63*1031c584SApple OSS Distributions 64*1031c584SApple OSS Distributions- `recount triage` is meant to be used by the automated panic debug scripts. 65*1031c584SApple OSS Distributions 66*1031c584SApple OSS Distributions## Internals 67*1031c584SApple OSS Distributions 68*1031c584SApple OSS DistributionsAccounting for groups of entities like threads and tasks starts with a `recount_plan_t`, declared using `RECOUNT_PLAN_DECLARE` and defined with `RECOUNT_PLAN_DEFINE`, which takes the topology, or granularity, of the counting. 69*1031c584SApple OSS DistributionsThe plan topology defines how many `recount_usage` structures are needed. 70*1031c584SApple OSS DistributionsTo count CPU resource usage, a `struct recount_usage` has the following fields: 71*1031c584SApple OSS Distributions 72*1031c584SApple OSS Distributions- `ru_system_time_mach`: the total time spent in the kernel consumed, in Mach time units 73*1031c584SApple OSS Distributions- `ru_user_time_mach`: the total time spent in user space consumed, in Mach time units 74*1031c584SApple OSS Distributions- `ru_cycles`: the cycles run by a CPU with `CONFIG_PERVASIVE_CPI` 75*1031c584SApple OSS Distributions- `ru_instructions`: the instructions retired by a CPU with `CONFIG_PERVASIVE_CPI` 76*1031c584SApple OSS Distributions- `ru_energy_nj`: the energy consumed by a CPU, in nano-Joules with `CONFIG_PERVASIVE_ENERGY` 77*1031c584SApple OSS Distributions 78*1031c584SApple OSS DistributionsAt context switch, `recount_switch_thread` captures the hardware counters with `recount_snapshot` into a `struct recount_snap`. 79*1031c584SApple OSS DistributionsThe CPU's previous snapshot, stored in the `_snaps_percpu` per-CPU variable, is subtracted from the new one to get a delta to add to the currently-executing entity's usage structure. 80*1031c584SApple OSS DistributionsThe per-CPU variable is then updated with the current snapshot for the next switch. 81*1031c584SApple OSS DistributionsThe user/kernel transition code calls `recount_leave_user` or `recount_enter_user`, which performs the same operation, except with `recount_snapshot_speculative`. 82*1031c584SApple OSS DistributionsIt relies on other synchronization barriers in the transition code to provide keep the snapshot precise. 83*1031c584SApple OSS Distributions 84*1031c584SApple OSS DistributionsProcessors also track their idle time separately from the usage structure with paired calls to `recount_processor_idle` and `recount_processor_run`. 85*1031c584SApple OSS DistributionsIdle time has no user component and doesn't consume instructions or cycles, so a full usage structure isn't necessary. 86*1031c584SApple OSS DistributionsIt stores the last update time in a 64-bit value combined with a state stored in the top two bits to determine whether the processor is currently idle or active. 87*1031c584SApple OSS Distributions 88*1031c584SApple OSS DistributionsA `struct recount_track` is the primary data structure found in threads, tasks, and processors. 89*1031c584SApple OSS DistributionsTracks include a `recount_usage` structure but ensures that each is updated atomically with respect to readers. 90*1031c584SApple OSS Distributions 91*1031c584SApple OSS Distributions### Track Atomicity 92*1031c584SApple OSS Distributions 93*1031c584SApple OSS DistributionsTo ensure the accuracy of formulas involving multiple metrics, like CPI, all metrics must be updated atomically from the perspective of the reader. 94*1031c584SApple OSS DistributionsA traditional locking mechanism would prevent the writer from updating the counts while readers are present, so Recount uses a sequence lock instead. 95*1031c584SApple OSS DistributionsWriters make a generation count odd before updating any of the values and then set it back to even when all values are updated. 96*1031c584SApple OSS DistributionsReaders wait until the generation count becomes even before trying to read the values, and if the counter changes by the time they're done reading them, it retries the read. 97*1031c584SApple OSS DistributionsSince three entities need to be updated at once (thread, task, and processor), only the last update has a release barrier to publish the writes. 98*1031c584SApple OSS DistributionsWhen reporting just user and system time, taking the sequence lock as a reader introduced unacceptable overhead. 99*1031c584SApple OSS DistributionsThe sequence lock doesn't need to be taken for these metrics since they're never updated simultaneously. 100*1031c584SApple OSS Distributions 101*1031c584SApple OSS DistributionsThe coalition counters are not updated by threads switching off-CPU and are instead protected by the coalition lock while a task exits and rolls up its counters to the coalition. 102*1031c584SApple OSS DistributionsReading the counters requires holding the lock and iterating the constituent tasks, grouping their per-CPU counters into per-CPU kind ones. 103*1031c584SApple OSS Distributions 104*1031c584SApple OSS Distributions### Energy 105*1031c584SApple OSS Distributions 106*1031c584SApple OSS DistributionsThe energy counters on ARM systems count a custom unit of energy that needs to be scaled to nanojoules. 107*1031c584SApple OSS DistributionsBecause this unit can be very small and may overflow a 64-bit counter, it's scaled to nanojoules during context-switch. 108*1031c584SApple OSS Distributions 109*1031c584SApple OSS Distributions## See Also 110*1031c584SApple OSS Distributions 111*1031c584SApple OSS Distributions- `doc/cpu_counters.md` 112