G.2 (v2.0.0): unified rng_get_bytes() entropy entry point; virtio-rng sole backend
The QEMU-verifiable slice of the real-hardware RNG driver (per FABRIC-3.md §G.2). New include/starkernel/rng.h + src/starkernel/rng/rng.c provide the single entropy entry point: rng_init() probes the backend set (v2.0.0: virtio-rng only) and, on no backend, prints a loud boot-time warning while rng_get_bytes() returns RNG_ERR_NO_BACKEND - never silently degrading to a deterministic seed. The backend-selection switch in rng.c is the exact seam v2.5.0's per-arch drivers (amd64 RDRAND, riscv64 Zkr, aarch64 peripheral) plug into without touching the call path. Consumers route through the unified layer instead of virtio-rng directly: capsule_mint.c (identity seed + drive_uuid) and kernel_main.c phase 8 (rng_init()). virtio_rng.c stays as the sole backend. Built clean on amd64/aarch64/riscv64. QEMU amd64 boot: POST 1012/0/0 + ok>, "rng: backend = virtio-rng" + "entropy: ready", Zuse identity confirmed from thumbdrive - mint/cert behavior unchanged. FABRIC-3.md §G.2 v2.0.0 slice marked BUILT+VERIFIED.
This commit is contained in:
+13
@@ -3362,6 +3362,19 @@ redesign of the call path.
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loudly (boot-time message, safe fallback to this-boot-only cert) if no backend is present,
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and the pre-existing Zuse mint/cert behavior is unchanged on all three arches. The
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per-arch backends themselves are parked, explicitly, for v2.5.0.
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- **v2.0.0 slice — BUILT and VERIFIED 2026-08-29.** `include/starkernel/rng.h` +
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`src/starkernel/rng/rng.c` provide the single `rng_get_bytes()` entry point; `rng_init()`
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probes the backend set (v2.0.0: virtio-rng only) and, on no backend, prints a loud
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boot-time warning and `rng_get_bytes()` returns `RNG_ERR_NO_BACKEND` — it never silently
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degrades to a deterministic seed. The backend-selection switch in `rng.c` is the exact seam
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the v2.5.0 real per-arch drivers (amd64 RDRAND, riscv64 Zkr, aarch64 peripheral RNG) plug
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into without touching the call path. Kernel consumers no longer touch `virtio_rng_*`
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directly: `capsule_mint.c` (identity seed + `drive_uuid`) and `kernel_main.c` phase 8
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(`rng_init()`) route through the unified layer; `virtio_rng.c` stays as the sole backend.
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Built clean on all three arches (`make -f Makefile.starkernel ARCH={amd64,aarch64,riscv64}`).
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QEMU amd64 boot: POST `1012/0/0` + `ok>`, `rng: backend = virtio-rng` + `entropy: ready`
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printed by the unified layer, and Zuse attach/identity confirmed from the thumbdrive —
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Zuse mint/cert behavior unchanged.
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- **Exit criterion (v2.5.0 completion, for reference):** on each real board `rng_get_bytes()`
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returns genuinely non-deterministic bytes (two boots differ) and the Zuse mint path seeded
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from it produces a valid distinct cert per boot when bleached.
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@@ -431,6 +431,7 @@ LOADER_SRCS_BASE := \
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$(wildcard $(KERNEL_SRC)/capsule/*.c) \
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$(wildcard $(KERNEL_SRC)/pci/*.c) \
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$(wildcard $(KERNEL_SRC)/virtio/*.c) \
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$(wildcard $(KERNEL_SRC)/rng/*.c) \
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$(wildcard $(KERNEL_SRC)/usb/*.c) \
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$(KERNEL_SRC)/repl.c \
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$(KERNEL_SRC)/doe_log.c \
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@@ -483,6 +484,7 @@ KERNEL_SRCS_BASE := \
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$(wildcard $(KERNEL_SRC)/capsule/*.c) \
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$(wildcard $(KERNEL_SRC)/pci/*.c) \
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$(wildcard $(KERNEL_SRC)/virtio/*.c) \
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$(wildcard $(KERNEL_SRC)/rng/*.c) \
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$(wildcard $(KERNEL_SRC)/usb/*.c) \
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$(wildcard $(KERNEL_SRC)/arch/$(ARCH)/*.c) \
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$(KERNEL_SRC)/repl.c \
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@@ -1,5 +1,5 @@
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# Capsule Block Manifest — Auto-generated
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<!-- Generated by mkcapsule --manifest 2026-08-29T13:48:09Z -->
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<!-- Generated by mkcapsule --manifest 2026-08-29T13:51:54Z -->
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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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Binary file not shown.
@@ -0,0 +1,65 @@
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/*
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* rng.h — Unified entropy entry point for StarKernel
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*
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* The single place any kernel consumer (keygen, identity mint, drive_uuid,
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* certificate serials, ...) asks for entropy. All entropy flows through
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* rng_get_bytes() and never touches a backend directly.
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*
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* The set of active backends is determined at rng_init() time by probing,
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* in order, until one (or more) come up:
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* - v2.0.0 (QEMU): virtio-rng is the sole backend — there is no virtio-rng
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* on real hardware, but QEMU exposes it uniformly on all three arches
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* (amd64/aarch64/riscv64), and the paravirtualized device sidesteps the
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* per-ISA gap where no single CPU RNG covers all three models (amd64 has
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* RDRAND, riscv64 has Zkr, but QEMU's aarch64 CPU models expose neither —
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* see virtio_rng.h / vm_uuid.h for the identical finding).
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* - v2.5.0 (real hardware): real per-arch backends are inserted here without
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* touching the call path — amd64 RDRAND, riscv64 Zkr (RNDR), aarch64
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* peripheral RNG — each handled by a case in rng_init() and rng_get_bytes()
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* (grid §G.4). On QEMU all three arches stay on virtio-rng; nothing changes.
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*
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* Probe-and-refuse-loudly contract (§G.2): if no backend comes up at
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* rng_init(), the kernel prints a loud boot-time message. A later
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* rng_get_bytes() call with no backend returns -1 (RNG_ERR_NO_BACKEND) rather
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* than ever silently degrading to a deterministic throwaway — the exact failure
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* Phases A/G call out as unacceptable. Callers (e.g. capsule_mint_identity)
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* must surface that refusal as an explicit no-entropy error, never proceed with
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* a deterministic seed.
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*
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* Important ordering: rng_init() must run before any rng_get_bytes()/mint call
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* (it already does in kernel_main phase 8, ahead of Zuse boot attach, which is
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* the only mint path in v2.0.0). rng_get_bytes() with rng_init() never
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* successful returns RNG_ERR_NO_BACKEND, never blocks.
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*/
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#ifndef STARKERNEL_RNG_H
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#define STARKERNEL_RNG_H
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#include <stddef.h>
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#include <stdint.h>
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/* Return codes (negative = failure). */
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#define RNG_ERR_NO_BACKEND (-1) /* rng_init() found no working entropy source */
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/*
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* rng_init — probe and bring up the entropy backends. Returns 0 if at least
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* one backend is active (rng_get_bytes() will succeed), nonzero otherwise.
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* Prints a loud boot-time message when no backend comes up. Call once, early.
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*/
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int rng_init(void);
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/*
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* rng_ready — 1 if at least one backend is active, 0 otherwise.
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*/
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int rng_ready(void);
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/*
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* rng_get_bytes — fill buf with n bytes of real entropy, blocking until all
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* n bytes are obtained.
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*
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* Returns 0 on success (buf fully filled).
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* Returns RNG_ERR_NO_BACKEND (-1) if no backend is active.
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*/
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int rng_get_bytes(uint8_t *buf, size_t n);
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#endif /* STARKERNEL_RNG_H */
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@@ -16,7 +16,7 @@
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#include "starkernel/user_identity_seed.h"
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#include "starkernel/x509_ed25519.h"
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#include "starkernel/ed25519.h"
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#include "starkernel/virtio_rng.h"
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#include "starkernel/rng.h"
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#include "block_subsystem.h" /* compute_crc64() */
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#include "blkio.h"
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#include <string.h>
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@@ -101,11 +101,11 @@ MintResult capsule_mint_identity(struct blkio_dev *dev, VM *issuer_vm,
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/* issuer_vm==NULL is genesis mode (§F.21) -- no existing Zuse to
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* require a cert from. */
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if (issuer_vm && !issuer_vm->zuse_cert_installed) return MINT_ERR_NO_ZUSE_CERT;
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if (!virtio_rng_ready()) return MINT_ERR_NO_ENTROPY;
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if (!rng_ready()) return MINT_ERR_NO_ENTROPY;
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/* Fresh identity keypair. */
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uint8_t seed[32], pubkey[32];
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if (virtio_rng_get_bytes(seed, sizeof(seed)) != 0) return MINT_ERR_NO_ENTROPY;
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if (rng_get_bytes(seed, sizeof(seed)) != 0) return MINT_ERR_NO_ENTROPY;
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ed25519_keygen(seed, pubkey);
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if (out_pubkey) memcpy(out_pubkey, pubkey, 32);
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if (out_seed) memcpy(out_seed, seed, 32);
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@@ -114,7 +114,7 @@ MintResult capsule_mint_identity(struct blkio_dev *dev, VM *issuer_vm,
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* the identity seed (§F.8 decision 3: "which physical drive," not
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* "whose identity"). */
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uint8_t drive_uuid[16];
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if (virtio_rng_get_bytes(drive_uuid, sizeof(drive_uuid)) != 0)
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if (rng_get_bytes(drive_uuid, sizeof(drive_uuid)) != 0)
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return MINT_ERR_NO_ENTROPY;
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uint32_t cert_devblock = 0;
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@@ -65,7 +65,7 @@ EFI_RUNTIME_SERVICES *g_sk_runtime_services = NULL;
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#include "starkernel/repl.h"
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#include "starkernel/pci.h"
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#include "starkernel/virtio_blk.h"
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#include "starkernel/virtio_rng.h"
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#include "starkernel/rng.h"
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#include "starkernel/virtio_input.h"
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#include "starkernel/xhci_driver.h"
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#include "block_subsystem.h"
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@@ -590,20 +590,20 @@ static void kernel_main_deep(BootInfo *boot_info) {
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}
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}
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/* Phase 8: virtio-rng entropy source. Real per-arch RNG doesn't cover
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* all three architectures (amd64 RDRAND, riscv64 Zkr, but aarch64 has
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* neither in QEMU's CPU models -- see vm_uuid.h's identical finding),
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* so signing/keygen entropy comes from this paravirtualized device
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* instead. Unconditional call site, same graceful-noop precedent as
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* virtio_blk_find_artemis() above -- boot proceeds either way, the
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* device is only required once something actually calls
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* virtio_rng_get_bytes(). */
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/* Phase 8: entropy. Real per-arch RNG doesn't cover all three
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* architectures (amd64 RDRAND, riscv64 Zkr, but aarch64 has neither in
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* QEMU's CPU models -- see vm_uuid.h's identical finding), so signing/
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* keygen entropy comes from the unified rng_get_bytes() layer, whose
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* v2.0.0 backend is the paravirtualized virtio-rng device. Unconditional
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* call site, same graceful-noop precedent as virtio_blk_find_artemis()
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* above -- boot proceeds either way, the device is only required once
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* something actually calls rng_get_bytes(). */
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{
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int rrc = virtio_rng_init();
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int rrc = rng_init();
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if (rrc == 0) {
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console_println("virtio-rng: ready");
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console_println("entropy: ready");
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} else {
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console_println("virtio-rng: not available (continuing without)");
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console_println("entropy: not available (continuing without)");
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}
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}
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@@ -0,0 +1,60 @@
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/*
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StarKernel — Unified entropy layer (rng_get_bytes)
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Single entropy entry point for the kernel; see include/starkernel/rng.h for
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the contract and the probe-and-refuse-loudly discipline this implements.
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v2.0.0: virtio-rng is the sole active backend (QEMU-only, uniform across all
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three arches). The backend-selection switch in rng_get_bytes() is the exact
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seam where the v2.5.0 real per-arch drivers (amd64 RDRAND, riscv64 Zkr,
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aarch64 peripheral RNG) plug in without touching the call path.
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*/
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#ifndef __STARKERNEL__
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#error "rng.c is kernel-only"
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#endif
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#include "starkernel/rng.h"
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#include "starkernel/virtio_rng.h"
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#include "starkernel/console.h"
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/* Number of entropy backends known to this build. Each maps to one case in
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* rng_init() and rng_get_bytes(). v2.0.0 has exactly one: virtio-rng. */
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enum {
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RNG_BACKEND_NONE = 0,
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RNG_BACKEND_VIRTIO, /* virtio-rng (QEMU, all three arches) */
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};
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static int g_rng_backend = RNG_BACKEND_NONE;
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int rng_init(void) {
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/* Probe backends in priority order; first success wins. virtio-rng is
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* the sole backend at v2.0.0; v2.5.0 adds real per-arch drivers here. */
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if (virtio_rng_init() == 0) {
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g_rng_backend = RNG_BACKEND_VIRTIO;
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console_println("rng: backend = virtio-rng");
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return 0;
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}
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/* Refuse loudly: never fall through to a deterministic seed. */
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g_rng_backend = RNG_BACKEND_NONE;
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console_println(
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"rng: WARNING — no entropy backend available; rng_get_bytes() "
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"will refuse (no deterministic seed fallback)");
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return -1;
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}
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int rng_ready(void) {
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return g_rng_backend != RNG_BACKEND_NONE;
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}
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int rng_get_bytes(uint8_t *buf, size_t n) {
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switch (g_rng_backend) {
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case RNG_BACKEND_VIRTIO:
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return virtio_rng_get_bytes(buf, n);
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default:
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/* v2.5.0 real per-arch cases land here. No backend: refuse loudly,
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* never return a deterministic throwaway. */
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return RNG_ERR_NO_BACKEND;
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}
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}
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