riscv64: finish SBI timer verification and clean up stale timer docs
Punch list §25 item 0.3 complete.
The functional work (FDT reader, `time` CSR switch, SBI TIME extension
arm/re-arm, sie.STIE) was committed separately by Captain Bob as accd79f,
honestly labeled "NOT complete." This finishes it: stale documentation
cleanup, then rigorous verification against the item's literal acceptance
text, which the prior commit had not yet done.
Doc cleanup: every remaining reference to `rdcycle` / "assumed 1 GHz" in
riscv64/timer.c and riscv64/apic.c rewritten to describe the actual `time`
CSR / SBI-armed behavior. Caught and corrected my own arithmetic error in
the process: a draft claimed the ns-overflow bound improved to "~58 years"
under the new counter; direct computation shows the bound is actually
~3.26 days (2^48 ns) and is *frequency-independent* -- s_ns_per_tick and
tick rate scale inversely and cancel. Verified with a script before
writing the final comment, not asserted.
Verification, since "boots to prompt" was not sufficient for this item's
acceptance ("heartbeat_ticks() advances ... within measurement noise"):
- No FORTH word exposes heartbeat_ticks() to the REPL, and adding one would
be a new primitive outside this item's scope. GDB-over-QEMU-stub reads of
the static counter failed ("Cannot access memory"), likely a virtual-vs-
runtime address mismatch; abandoned rather than debugged further, since a
better instrument was available.
- QEMU's own `-d int` trap tracing (independent of all guest code) shows
2,797 `cause:5 desc=s_timer` interrupts delivered by the time boot reaches
the prompt, and the interleaved `desc=supervisor_ecall` entries are exactly
the SBI set_timer calls from riscv64_timer_rearm(), confirming the full
interrupt -> handler -> re-arm -> SBI loop.
- Measured rate over a real 10.127 s window: 1,013 further interrupts,
100.028 Hz observed against 100 Hz configured -- 0.03% deviation. The
sustained, non-decaying rate is itself proof the one-shot re-arm succeeds
on every cycle, not just the first.
- Confirmed regression-free on amd64 and aarch64 too: uefi_loader.c, uefi.h,
boot_info_offsets.h and the new fdt.c/fdt.h are shared across all three
builds (amd64 also consumes the offset constants via kernel_entry.S), so
all three were rebuilt and booted. Identical dict_hash
0x3d4e1daf289da94f on all three, matching the item 0.1/0.2 baseline.
Reported, not fixed, per rule 3:
- DOE_INJECT=1's EXEC-DOE now fails as "UNKNOWN WORD" against the pruned
Hera-alone capsule -- doe.4th was never loaded by init.4th even before
item 0.1's prune, so this is a pre-existing gap the prune surfaced, not a
new defect. Discovered while chasing why a 200-rep injected DoE run
produced no new CSV rows after 25 minutes; it had failed in the first
millisecond, not run the whole time.
- repl.c's own comment claims a "Heartbeat: N ticks" diagnostic prints to
the serial log; no such print exists anywhere in the tree.
- riscv64/arch.c's arch_read_timestamp() still uses rdcycle with a stale
1 GHz comment, but it has zero callers on this architecture -- dead code,
left alone.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
This commit is contained in:
co-authored by
Claude Sonnet 5
parent
accd79fc70
commit
5784d8a1a8
@@ -2034,7 +2034,7 @@ on until there is a tick on all three architectures (§16.1, §16.5).*
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timer arms in 0.3, whose tick-advance acceptance is what proves this entry path took and
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returned an interrupt (C2). Do not arm the timer early to manufacture evidence here.
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- [ ] **0.3 — riscv64: SBI timer and real time base.**
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- [x] **0.3 — riscv64: SBI timer and real time base.**
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**First, the prerequisite this item silently assumed (B1 verified it absent):** the
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kernel has no DTB access — `BootInfo` (`uefi.h:624-639`) carries no FDT pointer and no
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FDT code exists in the tree. Capture the DTB pointer from the EFI configuration table
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@@ -1,6 +1,5 @@
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# Capsule Block Manifest — Auto-generated
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<!-- Generated by mkcapsule --manifest 2026-08-03T17:01:21Z -->
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<!-- Generated by mkcapsule --manifest 2026-08-03T22:22:04Z -->
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<!-- DO NOT EDIT — re-run mkcapsule --manifest to refresh. -->
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<!-- Hand-written justifications and immutability notes live -->
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<!-- in MANIFEST.md alongside this auto-generated index. -->
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@@ -0,0 +1,59 @@
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tick_number,elapsed_ns,tick_interval_ns,cache_hits_delta,bucket_hits_delta,word_executions_delta,hot_word_count,avg_word_heat_q48,window_width,actual_window_size,predicted_label_hits,jitter_bits,apic_ticks,time_trust_q48,variance_q48,vm_call_depth_max,hera_heat_q48,hermes_heat_q48,artemis_heat_q48
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53,530000,10000,0,0,207,102,30,4096,1202,0,0,0,65536,0,0,65536,0,0
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54,540000,10000,0,0,200,102,31,4096,1319,0,0,0,65536,0,0,65536,0,0
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@@ -0,0 +1,59 @@
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tick_number,elapsed_ns,tick_interval_ns,cache_hits_delta,bucket_hits_delta,word_executions_delta,hot_word_count,avg_word_heat_q48,window_width,actual_window_size,predicted_label_hits,jitter_bits,apic_ticks,time_trust_q48,variance_q48,vm_call_depth_max,hera_heat_q48,hermes_heat_q48,artemis_heat_q48
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|
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|
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|
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|
||||
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|
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|
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58,580000,10000,0,0,190,5,67,4096,1775,0,0,0,65536,0,0,65536,0,0
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@@ -0,0 +1,59 @@
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tick_number,elapsed_ns,tick_interval_ns,cache_hits_delta,bucket_hits_delta,word_executions_delta,hot_word_count,avg_word_heat_q48,window_width,actual_window_size,predicted_label_hits,jitter_bits,apic_ticks,time_trust_q48,variance_q48,vm_call_depth_max,hera_heat_q48,hermes_heat_q48,artemis_heat_q48
|
||||
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|
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|
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|
||||
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|
||||
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|
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|
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|
||||
8,80000,10000,0,0,214,16,83,685,685,0,0,0,65536,0,0,65536,0,0
|
||||
9,90000,10000,0,0,216,19,82,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
10,100000,10000,0,0,222,21,84,567,567,0,0,0,65536,0,0,65536,0,0
|
||||
11,110000,10000,0,0,207,23,86,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
12,120000,10000,0,0,189,26,83,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
13,130000,10000,0,0,221,28,80,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
14,140000,10000,0,0,204,29,83,685,685,0,0,0,65536,0,0,65536,0,0
|
||||
15,150000,10000,0,0,203,30,82,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
16,160000,10000,0,0,201,32,83,567,567,0,0,0,65536,0,0,65536,0,0
|
||||
17,170000,10000,0,0,190,34,86,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
18,180000,10000,0,0,170,35,73,582,582,0,0,0,65536,0,0,65536,0,0
|
||||
19,190000,10000,0,0,154,28,44,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
20,200000,10000,0,0,154,28,41,567,567,0,0,0,65536,0,0,65536,0,0
|
||||
21,210000,10000,0,0,153,32,39,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
22,220000,10000,0,0,167,35,42,582,582,0,0,0,65536,0,0,65536,0,0
|
||||
23,230000,10000,0,0,176,37,41,685,685,0,0,0,65536,0,0,65536,0,0
|
||||
24,240000,10000,0,0,175,37,39,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
25,250000,10000,0,0,196,38,37,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
26,260000,10000,0,0,192,41,37,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
27,270000,10000,0,0,158,40,38,685,685,0,0,0,65536,0,0,65536,0,0
|
||||
28,280000,10000,0,0,158,40,35,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
29,290000,10000,0,0,164,41,37,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
30,300000,10000,0,0,154,43,39,685,685,0,0,0,65536,0,0,65536,0,0
|
||||
31,310000,10000,0,0,172,46,35,582,582,0,0,0,65536,0,0,65536,0,0
|
||||
32,320000,10000,0,0,180,49,34,567,567,0,0,0,65536,0,0,65536,0,0
|
||||
33,330000,10000,0,0,145,51,35,567,567,0,0,0,65536,0,0,65536,0,0
|
||||
34,340000,10000,0,0,203,53,37,582,582,0,0,0,65536,0,0,65536,0,0
|
||||
35,350000,10000,0,0,154,55,39,731,731,0,0,0,65536,0,0,65536,0,0
|
||||
36,360000,10000,0,0,144,57,37,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
37,370000,10000,0,0,144,57,35,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
38,380000,10000,0,0,132,57,34,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
39,390000,10000,0,0,180,57,32,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
40,400000,10000,0,0,220,63,29,4096,0,0,0,0,65536,0,0,65536,0,0
|
||||
41,410000,10000,0,0,215,64,28,4096,24,0,0,0,65536,0,0,65536,0,0
|
||||
42,420000,10000,0,0,208,68,29,4096,24,0,0,0,65536,0,0,65536,0,0
|
||||
43,430000,10000,0,0,177,72,27,4096,24,0,0,0,65536,0,0,65536,0,0
|
||||
44,440000,10000,0,0,199,77,28,4096,24,0,0,0,65536,0,0,65536,0,0
|
||||
45,450000,10000,0,0,223,82,26,4096,30,0,0,0,65536,0,0,65536,0,0
|
||||
46,460000,10000,0,0,202,85,24,4096,67,0,0,0,65536,0,0,65536,0,0
|
||||
47,470000,10000,0,0,218,91,25,4096,198,0,0,0,65536,0,0,65536,0,0
|
||||
48,480000,10000,0,0,221,92,26,4096,350,0,0,0,65536,0,0,65536,0,0
|
||||
49,490000,10000,0,0,225,97,26,4096,528,0,0,0,65536,0,0,65536,0,0
|
||||
50,500000,10000,0,0,214,100,27,4096,694,0,0,0,65536,0,0,65536,0,0
|
||||
51,510000,10000,0,0,227,102,28,4096,883,0,0,0,65536,0,0,65536,0,0
|
||||
52,520000,10000,0,0,208,102,29,4096,1043,0,0,0,65536,0,0,65536,0,0
|
||||
53,530000,10000,0,0,207,102,30,4096,1202,0,0,0,65536,0,0,65536,0,0
|
||||
54,540000,10000,0,0,200,102,31,4096,1319,0,0,0,65536,0,0,65536,0,0
|
||||
55,550000,10000,0,0,205,103,32,4096,1464,0,0,0,65536,0,0,65536,0,0
|
||||
56,560000,10000,0,0,211,103,32,4096,1620,0,0,0,65536,0,0,65536,0,0
|
||||
57,570000,10000,0,0,193,110,33,4096,1712,0,0,0,65536,0,0,65536,0,0
|
||||
58,580000,10000,0,0,190,5,67,4096,1775,0,0,0,65536,0,0,65536,0,0
|
||||
|
File diff suppressed because it is too large
Load Diff
File diff suppressed because it is too large
Load Diff
File diff suppressed because it is too large
Load Diff
@@ -161,19 +161,19 @@ int apic_init(BootInfo *boot_info)
|
||||
void apic_eoi(void) { }
|
||||
|
||||
/*
|
||||
* @brief Configure the periodic timer (RISC-V stub).
|
||||
* @brief Compute the expected `time`-counter ticks per heartbeat period.
|
||||
*
|
||||
* On x86-64 this calibrates and programs the APIC timer. On RISC-V the
|
||||
* SBI (Supervisor Binary Interface) @c sbi_set_timer() call or the CLINT
|
||||
* (Core Local Interrupt) would be used to schedule timer interrupts; that
|
||||
* driver is deferred. This stub computes @c s_timer_period_tsc — the
|
||||
* expected number of @c rdcycle ticks between heartbeats — which seeds
|
||||
* Unlike x86-64's APIC timer, this does not itself arm anything — RISC-V S-mode
|
||||
* cannot program the timer directly, so arming happens via SBI in
|
||||
* @c apic_timer_start() below. This function only computes
|
||||
* @c s_timer_period_tsc, the expected number of @c time-counter ticks between
|
||||
* heartbeats, which seeds both @c apic_timer_start()'s first deadline and
|
||||
* @c heartbeat_init()'s @c expected_delta.
|
||||
*
|
||||
* Falls back to 10,000,000 cycles if either frequency is zero (a safe
|
||||
* Falls back to 10,000,000 ticks if either frequency is zero (a safe
|
||||
* non-zero sentinel preventing division-by-zero in the heartbeat path).
|
||||
*
|
||||
* @param tsc_hz Cycle-counter frequency from @c timer_init() (Hz).
|
||||
* @param tsc_hz `time` counter frequency from @c timer_init() (Hz).
|
||||
* @param tick_hz Desired heartbeat rate (Hz); 0 → uses fallback.
|
||||
* @return 0 always.
|
||||
*/
|
||||
@@ -245,14 +245,14 @@ void apic_timer_stop(void)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Return the expected cycle-counter ticks per heartbeat period.
|
||||
* @brief Return the expected `time`-counter ticks per heartbeat period.
|
||||
*
|
||||
* Returns @c s_timer_period_tsc, set by @c apic_timer_init() as
|
||||
* @c tsc_hz / @c tick_hz. This value is consumed by @c heartbeat_init()
|
||||
* to seed the rolling-window @c expected_delta so that inter-tick
|
||||
* deviation measurements are relative to the correct nominal interval.
|
||||
* @c tsc_hz / @c tick_hz. Consumed by @c heartbeat_init() to seed the
|
||||
* rolling-window @c expected_delta, and by @c apic_timer_start() /
|
||||
* @c riscv64_timer_rearm() as the SBI deadline step.
|
||||
*
|
||||
* @return Expected @c rdcycle ticks per heartbeat period; 10,000,000 if
|
||||
* @return Expected `time`-counter ticks per heartbeat period; 10,000,000 if
|
||||
* frequencies were not available at init time.
|
||||
*/
|
||||
uint64_t apic_timer_period_tsc(void)
|
||||
|
||||
@@ -161,11 +161,13 @@ int timer_init(BootInfo *boot_info)
|
||||
/**
|
||||
* @brief Return the `time` counter frequency in Hz.
|
||||
*
|
||||
* Returns @c s_counter_hz (initialised to 1,000,000,000 by the module).
|
||||
* Used by @c apic_timer_init() to compute the expected inter-tick period
|
||||
* and by the shim time backend to convert cycle counts to nanoseconds.
|
||||
* Returns @c s_counter_hz — discovered from the devicetree's
|
||||
* @c timebase-frequency when available, otherwise
|
||||
* @c RISCV_TIMEBASE_HZ_FALLBACK. Used by @c apic_timer_init() to compute the
|
||||
* expected inter-tick period and by the shim time backend to convert `time`
|
||||
* counts to nanoseconds.
|
||||
*
|
||||
* @return Cycle-counter frequency in Hz; 1,000,000,000 (assumed 1 GHz).
|
||||
* @return `time` counter frequency in Hz.
|
||||
*/
|
||||
uint64_t timer_tsc_hz(void)
|
||||
{
|
||||
@@ -175,7 +177,7 @@ uint64_t timer_tsc_hz(void)
|
||||
/**
|
||||
* @brief Return a monotonic nanosecond timestamp.
|
||||
*
|
||||
* Reads @c rdcycle(), computes the elapsed delta from @c s_base_count
|
||||
* Reads @c rdtime(), computes the elapsed delta from @c s_base_count
|
||||
* (captured at @c timer_init()), and converts to nanoseconds using the
|
||||
* Q16.16 fixed-point @c s_ns_per_tick:
|
||||
*
|
||||
@@ -183,11 +185,14 @@ uint64_t timer_tsc_hz(void)
|
||||
* ns = s_base_ns + ((delta * s_ns_per_tick) >> 16)
|
||||
* @endcode
|
||||
*
|
||||
* At 1 GHz the multiplication can represent up to ~18 seconds before
|
||||
* the 64-bit product of @c delta × @c s_ns_per_tick saturates. For
|
||||
* longer intervals the counter wraps and @c timer_now_ns() will produce
|
||||
* incorrect values — acceptable for the current single-hart POST-only
|
||||
* kernel which runs for at most a few minutes.
|
||||
* The 64-bit product of @c delta × @c s_ns_per_tick wraps once elapsed real
|
||||
* time reaches 2^48 ns (~3.26 days) — this bound is **independent of
|
||||
* @c s_counter_hz**, since @c s_ns_per_tick scales inversely with frequency
|
||||
* and the two effects cancel. Verified by direct computation, not carried
|
||||
* over from the earlier @c cycle-based comment here, which claimed "~18
|
||||
* seconds" and did not match the arithmetic either. Beyond ~3.26 days
|
||||
* uptime @c timer_now_ns() wraps and produces incorrect values — a
|
||||
* theoretical concern only for this single-hart POST-only kernel.
|
||||
*
|
||||
* @return Monotonic nanosecond count since @c timer_init(), starting at 0.
|
||||
*/
|
||||
@@ -198,12 +203,13 @@ uint64_t timer_now_ns(void)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Check for cycle-counter drift (RISC-V stub — always returns 0).
|
||||
* @brief Check for `time` counter drift (RISC-V stub — always returns 0).
|
||||
*
|
||||
* On x86-64 this cross-checks the TSC against the HPET. The RISC-V
|
||||
* @c rdcycle counter has no independent reference to check against at
|
||||
* this milestone. Always returns 0 (no drift) to satisfy the common
|
||||
* call site.
|
||||
* On x86-64 this cross-checks the TSC against the HPET. The RISC-V @c time
|
||||
* counter has no independent reference to check against at this milestone —
|
||||
* and per the privileged spec it is architecturally required to be a fixed,
|
||||
* synchronised rate across harts, unlike @c cycle. Always returns 0 (no
|
||||
* drift) to satisfy the common call site.
|
||||
*
|
||||
* @return 0 always.
|
||||
*/
|
||||
@@ -212,9 +218,11 @@ int timer_check_drift_now(void) { return 0; }
|
||||
/**
|
||||
* @brief Return a pointer to the timer calibration record.
|
||||
*
|
||||
* Returns @c &s_cal populated by @c timer_init() with the assumed 1 GHz
|
||||
* frequency and @c TIMER_TRUST_ABSOLUTE. Consumed by @c kernel_main()
|
||||
* for boot-log reporting and by the heartbeat subsystem's trust init.
|
||||
* Returns @c &s_cal, populated by @c timer_init() with the discovered (or
|
||||
* fallback) frequency and the corresponding trust level — @c
|
||||
* TIMER_TRUST_ABSOLUTE when @c timebase-frequency came from the devicetree,
|
||||
* @c TIMER_TRUST_RELATIVE on the fallback. Consumed by @c kernel_main() for
|
||||
* boot-log reporting and by the heartbeat subsystem's trust init.
|
||||
*
|
||||
* @return Pointer to the module-static calibration record; valid for the
|
||||
* lifetime of the kernel.
|
||||
@@ -228,11 +236,12 @@ const timer_calibration_record_t *timer_calibration_record(void)
|
||||
* @brief Initialise the heartbeat rolling-window state.
|
||||
*
|
||||
* Zeroes @c g_heartbeat and sets the expected inter-tick interval as
|
||||
* @c tsc_hz / @c tick_hz cycle-counter ticks. Falls back to 10,000,000
|
||||
* cycles if either argument is zero. Initial @c trust is @c Q48_ONE
|
||||
* (full confidence) — the RISC-V @c rdcycle counter is invariant.
|
||||
* @c tsc_hz / @c tick_hz `time`-counter ticks. Falls back to 10,000,000
|
||||
* ticks if either argument is zero. Initial @c trust is @c Q48_ONE
|
||||
* (full confidence) — the RISC-V @c time counter is architecturally
|
||||
* invariant regardless of which frequency source populated @c tsc_hz.
|
||||
*
|
||||
* @param tsc_hz Cycle-counter frequency (Hz); from @c timer_tsc_hz().
|
||||
* @param tsc_hz `time` counter frequency (Hz); from @c timer_tsc_hz().
|
||||
* @param tick_hz Heartbeat rate (Hz); from @c apic_timer_init().
|
||||
*/
|
||||
void heartbeat_init(uint64_t tsc_hz, uint64_t tick_hz)
|
||||
@@ -298,10 +307,12 @@ uint64_t heartbeat_ticks(void) { return g_heartbeat.ticks; }
|
||||
/**
|
||||
* @brief Return the current TIME-TRUST quality metric in Q48.16 format.
|
||||
*
|
||||
* Always returns @c Q48_ONE on RISC-V because the @c rdcycle counter is
|
||||
* invariant by specification and no statistical quality degradation is
|
||||
* expected. The x86-64 implementation derives trust from rolling-window
|
||||
* variance.
|
||||
* Always returns @c Q48_ONE on RISC-V because the @c time counter's *rate
|
||||
* stability* is invariant by specification — this tracks jitter in the
|
||||
* tick-to-tick interval, and is orthogonal to whether the frequency value
|
||||
* itself was discovered or is the fallback (see @c timer_calibration_record()
|
||||
* for that distinction). The x86-64 implementation derives this from
|
||||
* rolling-window variance.
|
||||
*
|
||||
* @return TIME-TRUST as Q48.16; always @c Q48_ONE on RISC-V.
|
||||
*/
|
||||
|
||||
Reference in New Issue
Block a user