From mboxrd@z Thu Jan 1 00:00:00 1970 Received: from mta0.migadu.com (out-198.mta0.migadu.com [91.218.175.198]) (using TLSv1.2 with cipher ECDHE-RSA-AES128-GCM-SHA256 (128/128 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id DFD504AB1C2 for ; Thu, 10 Sep 2026 16:46:59 +0000 (UTC) Authentication-Results: smtp.subspace.kernel.org; arc=none smtp.client-ip=91.218.175.198 ARC-Seal:i=1; a=rsa-sha256; d=subspace.kernel.org; s=arc-20240116; t=1789058824; cv=none; b=M0EhN5BYG75mRe3qBlVe9ukjqwIsNzPplFDaQGOUL22o5wfvL9ay1Adxwd/UM7WA4RMX3PTrSLiX0jX4wmaG5ey8PfjzOeP0mzPMcB9sYDkuOcroJcEuOufkWKcGQ+wZXcyqndqwobSTtlzM4giMJ9c9aVYdi0x3mjv1qAc/gH4= ARC-Message-Signature:i=1; a=rsa-sha256; d=subspace.kernel.org; s=arc-20240116; t=1789058824; c=relaxed/simple; bh=nqFQ9oxsGrAj7hA8jLiWqmOy+bWh5bP0VEzW3mMQKO0=; h=From:To:Cc:Subject:Date:Message-ID:In-Reply-To:References: MIME-Version; b=DoKBrVYdUyUHpWcJtU2XZBX1fTxAoPWQHJBuuHjQLyXlnHl1d/Tatl5dfc2xVWVZvxIl9XukhntvCSu49yQAZntSYoIFA4Sx6r+LO41Ovl8bW25fykBrhC1HJC4VzHAPvlVC7JtmWGMzjCTwnPUecCaWGg0VW/4+MgKHBkRx3mE= ARC-Authentication-Results:i=1; smtp.subspace.kernel.org; dmarc=pass (p=none dis=none) header.from=linux.dev; spf=pass smtp.mailfrom=linux.dev; dkim=pass (1024-bit key) header.d=linux.dev header.i=@linux.dev header.b=SdEaH6Ms; arc=none smtp.client-ip=91.218.175.198 Authentication-Results: smtp.subspace.kernel.org; dmarc=pass (p=none dis=none) header.from=linux.dev Authentication-Results: smtp.subspace.kernel.org; spf=pass smtp.mailfrom=linux.dev Authentication-Results: smtp.subspace.kernel.org; dkim=pass (1024-bit key) header.d=linux.dev header.i=@linux.dev header.b="SdEaH6Ms" X-Envelope-To: linux-kernel@vger.kernel.org DKIM-Signature: a=rsa-sha256; bh=nqFQ9oxsGrAj7hA8jLiWqmOy+bWh5bP0VEzW3mMQKO0=; c=simple/simple; d=linux.dev; h=from:to:subject:date:message-id:mime-version:content-type; s=key1; t=1789058815; v=1; x=1789663615; b=SdEaH6Ms+TFgPEIXCdBVWNLAzNXYNdSm//u7+C2QqJ31PYU8nfpGehMttvrYRMdnLrRQ89Xn tedDGKOSSkOMWBW/hOxlm8cjgi9W+g0zt1cxBPFT10SoKLgii7XuYotx7HlFi/7GF0kUddZSI/p myovJYmPYdO7l6B8Ct34KkY4= X-Envelope-To: linux-kernel@vger.kernel.org Received: by smtp.migadu.com with ESMTPS id c5233e1d0dae7e4e; Thu, 10 Sep 2026 16:46:54 +0000 X-Mizu-Trace-ID: c5233e1d0dae7e4e X-Migadu-Flow: FLOW_OUT From: Vineet Gupta To: ast@kernel.org, daniel@iogearbox.net, andrii@kernel.org, eddyz87@gmail.com, memxor@gmail.com Cc: martin.lau@linux.dev, song@kernel.org, yonghong.song@linux.dev, jolsa@kernel.org, emil@etsalapatis.com, ihor.solodrai@linux.dev, john.fastabend@gmail.com, shuah@kernel.org, bpf@vger.kernel.org, linux-kernel@vger.kernel.org, linux-kselftest@vger.kernel.org, Vineet Gupta Subject: [PATCH bpf-next v2 01/13] bpf: move linked-scalar flags out of bpf_reg_state->id [NFC] Date: Thu, 10 Sep 2026 22:16:23 +0530 Message-ID: <20260910164635.459558-2-vineet.gupta@linux.dev> X-Mailer: git-send-email 2.55.0 In-Reply-To: <20260910164635.459558-1-vineet.gupta@linux.dev> References: <20260910164635.459558-1-vineet.gupta@linux.dev> Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: 8bit bpf_reg_state->id doubles as a linked-register id and, in its top two bits, as a record of how the register relates to that set: #define BPF_ADD_CONST64 (1U << 31) #define BPF_ADD_CONST32 (1U << 30) Every user of ->id therefore has to mask, and more link kinds are coming. Move the two bits into a bitfield next to ->precise, which is the last field of the struct and outside every memcmp() window used for state comparison, so the layout and all byte-wise comparisons are unchanged. The two kinds are mutually exclusive, so a 2-bit enum captures them and makes ADD_CONST_32 vs ADD_CONST_64 explicit at each use. ->id becomes a plain 32-bit identifier: no masking anywhere, and check_scalar_ids() loses its two-level "check the compound id, then the base id" dance in favour of a single check_ids(). While here, use regs_exact() for the explore_alu_limits case in regsafe(): it is what that open-coded memcmp+check_scalar_ids pair amounts to, and it picks up the add_const comparison for free (parent_id is 0 for SCALAR_VALUE). check_stack_write_fixed_off() cleared ->id directly on a narrowing spill, which would now leave ->add_const set without an id; use clear_scalar_id(). Moving the kind out of ->id also drops an incidental comparison in regs_exact(), which used to see it as part of the idmap key; the next patch restores it. Otherwise no functional change intended. Suggested-by: Eduard Zingerman Signed-off-by: Vineet Gupta --- v2: was RFC 2/6. - kinds are a 2-bit enum bitfield, not a byte of flags; RFC 1/6, which turned ->precise into that byte, is dropped (Eduard) - use regs_exact() for the explore_alu_limits case - clear_scalar_id() on the narrowing spill, which would otherwise leave ->add_const set without an id include/linux/bpf_verifier.h | 25 ++++++++----- kernel/bpf/log.c | 4 +-- kernel/bpf/states.c | 35 +++++-------------- kernel/bpf/verifier.c | 35 +++++++++++-------- .../bpf/progs/verifier_linked_scalars.c | 34 +++++++++--------- 5 files changed, 65 insertions(+), 68 deletions(-) diff --git a/include/linux/bpf_verifier.h b/include/linux/bpf_verifier.h index 9727df5af83a..afb1e5628698 100644 --- a/include/linux/bpf_verifier.h +++ b/include/linux/bpf_verifier.h @@ -35,6 +35,17 @@ enum bpf_iter_state { BPF_ITER_STATE_DRAINED, }; +/* + * Records that a register is (base + ->delta) within its ->id set: + * r1 += 10; r1 gets ADD_CONST_64 delta + * w3 += 10; r3 gets ADD_CONST_32 delta + */ +enum bpf_add_const { + ADD_CONST_NONE = 0, + ADD_CONST_32, /* delta was added with a 32-bit ALU op */ + ADD_CONST_64, /* ... with a 64-bit ALU op */ +}; + struct bpf_reg_state { /* Ordering of fields matters. See states_equal() */ enum bpf_reg_type type; @@ -136,16 +147,9 @@ struct bpf_reg_state { * to a specific instance of bpf_iter. */ /* - * Upper bit of ID is used to remember relationship between "linked" - * registers. Example: + * Registers sharing an ->id are "linked": * r1 = r2; both will have r1->id == r2->id == N - * r1 += 10; r1->id == N | BPF_ADD_CONST and r1->delta == 10 - * r3 = r2; both will have r3->id == r2->id == N - * w3 += 10; r3->id == N | BPF_ADD_CONST32 and r3->delta == 10 */ -#define BPF_ADD_CONST64 (1U << 31) -#define BPF_ADD_CONST32 (1U << 30) -#define BPF_ADD_CONST (BPF_ADD_CONST64 | BPF_ADD_CONST32) u32 id; /* * Tracks the parent object this register was derived from. @@ -164,6 +168,11 @@ struct bpf_reg_state { u32 frameno; /* if (!precise && SCALAR_VALUE) min/max/tnum don't affect safety */ bool precise; + /* + * How this register relates to the others sharing its ->id. + * Non-zero only if ->id is. + */ + enum bpf_add_const add_const:2; }; static inline s64 reg_smin(const struct bpf_reg_state *reg) diff --git a/kernel/bpf/log.c b/kernel/bpf/log.c index fb032dfdc0de..f8d7a5c8052f 100644 --- a/kernel/bpf/log.c +++ b/kernel/bpf/log.c @@ -651,8 +651,8 @@ static void print_reg_state(struct bpf_verifier_env *env, verbose(env, "%s", btf_type_name(reg->btf, reg->btf_id)); verbose(env, "("); if (reg->id) - verbose_a("id=%d", reg->id & ~BPF_ADD_CONST); - if (reg->id & BPF_ADD_CONST) + verbose_a("id=%d", reg->id); + if (reg->add_const) verbose(env, "%+d", reg->delta); if (reg->parent_id) verbose_a("parent_id=%d", reg->parent_id); diff --git a/kernel/bpf/states.c b/kernel/bpf/states.c index 66fb11b6c6a7..d974baad37ee 100644 --- a/kernel/bpf/states.c +++ b/kernel/bpf/states.c @@ -369,13 +369,6 @@ static bool check_ids(u32 old_id, u32 cur_id, struct bpf_idmap *idmap) * and r7.id=0 (both independent), without temp IDs both would map old_id=X * to cur_id=0 and pass. With temp IDs: r6 maps X->temp1, r7 tries to map * X->temp2, but X is already mapped to temp1, so the check fails correctly. - * - * When old_id has BPF_ADD_CONST set, the compound id (base | flag) and the - * base id (flag stripped) must both map consistently. Example: old has - * r2.id=A, r3.id=A|flag (r3 = r2 + delta), cur has r2.id=B, r3.id=C|flag - * (r3 derived from unrelated r4). Without the base check, idmap gets two - * independent entries A->B and A|flag->C|flag, missing that A->C conflicts - * with A->B. The base ID cross-check catches this. */ static bool check_scalar_ids(u32 old_id, u32 cur_id, struct bpf_idmap *idmap) { @@ -384,15 +377,7 @@ static bool check_scalar_ids(u32 old_id, u32 cur_id, struct bpf_idmap *idmap) cur_id = cur_id ? cur_id : ++idmap->tmp_id_gen; - if (!check_ids(old_id, cur_id, idmap)) - return false; - if (old_id & BPF_ADD_CONST) { - old_id &= ~BPF_ADD_CONST; - cur_id &= ~BPF_ADD_CONST; - if (!check_ids(old_id, cur_id, idmap)) - return false; - } - return true; + return check_ids(old_id, cur_id, idmap); } static void __clean_func_state(struct bpf_verifier_env *env, @@ -542,8 +527,7 @@ static bool regsafe(struct bpf_verifier_env *env, struct bpf_reg_state *rold, /* explore_alu_limits disables tnum_in() and range_within() * logic and requires everything to be strict */ - return memcmp(rold, rcur, offsetof(struct bpf_reg_state, id)) == 0 && - check_scalar_ids(rold->id, rcur->id, idmap); + return regs_exact(rold, rcur, idmap); } if (!rold->precise && exact == NOT_EXACT) return true; @@ -551,7 +535,8 @@ static bool regsafe(struct bpf_verifier_env *env, struct bpf_reg_state *rold, * Linked register tracking uses rold->id to detect relationships. * When rold->id == 0, the register is independent and any linking * in rcur only adds constraints. When rold->id != 0, we must verify - * id mapping and (for BPF_ADD_CONST) offset consistency. + * id mapping and that the link kinds agree, along with any delta + * they carry. * * +------------------+-----------+------------------+---------------+ * | | rold->id | rold + ADD_CONST | rold->id == 0 | @@ -587,17 +572,15 @@ static bool regsafe(struct bpf_verifier_env *env, struct bpf_reg_state *rold, */ /* - * ADD_CONST flags must match exactly: BPF_ADD_CONST32 and - * BPF_ADD_CONST64 have different linking semantics in - * sync_linked_regs() (alu32 zero-extends, alu64 does not), - * so pruning across different flag types is unsafe. + * The link kinds must match: alu32 and alu64 adds have different + * linking semantics in sync_linked_regs() (alu32 zero-extends, + * alu64 does not), so pruning across them is unsafe. */ - if (rold->id && - (rold->id & BPF_ADD_CONST) != (rcur->id & BPF_ADD_CONST)) + if (rold->id && rold->add_const != rcur->add_const) return false; /* Both have offset linkage: offsets must match */ - if ((rold->id & BPF_ADD_CONST) && rold->delta != rcur->delta) + if (rold->add_const && rold->delta != rcur->delta) return false; if (!check_scalar_ids(rold->id, rcur->id, idmap)) diff --git a/kernel/bpf/verifier.c b/kernel/bpf/verifier.c index 9e79750e2480..0ca229f6e7ac 100644 --- a/kernel/bpf/verifier.c +++ b/kernel/bpf/verifier.c @@ -1907,6 +1907,7 @@ static void __mark_reg_known(struct bpf_reg_state *reg, u64 imm) offsetof(struct bpf_reg_state, var_off) - sizeof(reg->type)); reg->id = 0; reg->parent_id = 0; + reg->add_const = ADD_CONST_NONE; ___mark_reg_known(reg, imm); } @@ -3480,6 +3481,7 @@ static void clear_scalar_id(struct bpf_reg_state *reg) { reg->id = 0; reg->delta = 0; + reg->add_const = ADD_CONST_NONE; } static void assign_scalar_id_before_mov(struct bpf_verifier_env *env, @@ -3492,7 +3494,7 @@ static void assign_scalar_id_before_mov(struct bpf_verifier_env *env, * rY->id has special linked register already. * Cleared it, since multiple rX += const are not supported. */ - if (src_reg->id & BPF_ADD_CONST) + if (src_reg->add_const) clear_scalar_id(src_reg); /* * Ensure that src_reg has a valid ID that will be copied to @@ -3642,7 +3644,7 @@ static int check_stack_write_fixed_off(struct bpf_verifier_env *env, save_register_state(env, state, spi, reg, size); /* Break the relation on a narrowing spill. */ if (!reg_value_fits) - state->stack[spi].spilled_ptr.id = 0; + clear_scalar_id(&state->stack[spi].spilled_ptr); } else if (!reg && !(off % BPF_REG_SIZE) && is_bpf_st_mem(insn) && env->bpf_capable) { struct bpf_reg_state *tmp_reg = &env->fake_reg[0]; @@ -16117,7 +16119,7 @@ static int adjust_reg_min_max_vals(struct bpf_verifier_env *env, off = -off; } - if (dst_reg->id & BPF_ADD_CONST) { + if (dst_reg->add_const) { /* * If the register already went through rX += val * we cannot accumulate another val into rx->off. @@ -16126,9 +16128,9 @@ static int adjust_reg_min_max_vals(struct bpf_verifier_env *env, clear_scalar_id(dst_reg); } else { if (alu32) - dst_reg->id |= BPF_ADD_CONST32; + dst_reg->add_const = ADD_CONST_32; else - dst_reg->id |= BPF_ADD_CONST64; + dst_reg->add_const = ADD_CONST_64; dst_reg->delta = off; } } else { @@ -17067,7 +17069,7 @@ static void __collect_linked_regs(struct linked_regs *reg_set, struct bpf_reg_st { struct linked_reg *e; - if (reg->type != SCALAR_VALUE || (reg->id & ~BPF_ADD_CONST) != id) + if (reg->type != SCALAR_VALUE || reg->id != id) return; e = linked_regs_push(reg_set); @@ -17095,7 +17097,6 @@ static void collect_linked_regs(struct bpf_verifier_env *env, u16 live_regs; int i, j; - id = id & ~BPF_ADD_CONST; for (i = vstate->curframe; i >= 0; i--) { live_regs = aux[bpf_frame_insn_idx(vstate, i)].live_regs_before; func = vstate->frame[i]; @@ -17131,18 +17132,20 @@ static void sync_linked_regs(struct bpf_verifier_env *env, struct bpf_verifier_s : &vstate->frame[e->frameno]->stack[e->spi].spilled_ptr; if (reg->type != SCALAR_VALUE || reg == known_reg) continue; - if ((reg->id & ~BPF_ADD_CONST) != (known_reg->id & ~BPF_ADD_CONST)) + if (reg->id != known_reg->id) continue; /* * Skip mixed 32/64-bit links: the delta relationship doesn't * hold across different ALU widths. */ - if (((reg->id ^ known_reg->id) & BPF_ADD_CONST) == BPF_ADD_CONST) + if (reg->add_const && known_reg->add_const && + reg->add_const != known_reg->add_const) continue; - if ((!(reg->id & BPF_ADD_CONST) && !(known_reg->id & BPF_ADD_CONST)) || + if ((!reg->add_const && !known_reg->add_const) || reg->delta == known_reg->delta) { *reg = *known_reg; } else { + enum bpf_add_const saved_add_const = reg->add_const; s32 saved_off = reg->delta; u32 saved_id = reg->id; @@ -17152,16 +17155,18 @@ static void sync_linked_regs(struct bpf_verifier_env *env, struct bpf_verifier_s /* reg = known_reg; reg += delta */ *reg = *known_reg; /* - * Must preserve off and id, otherwise another sync_linked_regs() - * will be incorrect. + * Must preserve off, id and add_const, otherwise another + * sync_linked_regs() will be incorrect. */ reg->delta = saved_off; reg->id = saved_id; + reg->add_const = saved_add_const; scalar32_min_max_add(reg, &fake_reg); scalar_min_max_add(reg, &fake_reg); reg->var_off = tnum_add(reg->var_off, fake_reg.var_off); - if ((reg->id | known_reg->id) & BPF_ADD_CONST32) + if (reg->add_const == ADD_CONST_32 || + known_reg->add_const == ADD_CONST_32) zext_32_to_64(reg); reg_bounds_sync(reg); } @@ -18255,7 +18260,7 @@ void bpf_clear_singular_ids(struct bpf_verifier_env *env, continue; if (!reg->id) continue; - idset_cnt_inc(idset, reg->id & ~BPF_ADD_CONST); + idset_cnt_inc(idset, reg->id); })); bpf_for_each_reg_in_vstate(st, func, reg, ({ @@ -18263,7 +18268,7 @@ void bpf_clear_singular_ids(struct bpf_verifier_env *env, continue; if (!reg->id) continue; - if (idset_cnt_get(idset, reg->id & ~BPF_ADD_CONST) == 1) + if (idset_cnt_get(idset, reg->id) == 1) clear_scalar_id(reg); })); } diff --git a/tools/testing/selftests/bpf/progs/verifier_linked_scalars.c b/tools/testing/selftests/bpf/progs/verifier_linked_scalars.c index d571fbfc86a3..da6cb961a520 100644 --- a/tools/testing/selftests/bpf/progs/verifier_linked_scalars.c +++ b/tools/testing/selftests/bpf/progs/verifier_linked_scalars.c @@ -349,8 +349,8 @@ l0_%=: \ } /* - * Test that sync_linked_regs() checks reg->id (the linked target register) - * for BPF_ADD_CONST32 rather than known_reg->id (the branch register). + * Test that sync_linked_regs() checks the linked target register (reg) for + * ADD_CONST_32 rather than the branch register (known_reg). */ SEC("socket") __success @@ -360,7 +360,7 @@ __naked void scalars_alu32_zext_linked_reg(void) call %[bpf_get_prandom_u32]; \ w6 = w0; /* r6 in [0, 0xFFFFFFFF] */ \ r7 = r6; /* linked: same id as r6 */ \ - w7 += 1; /* alu32: r7.id |= BPF_ADD_CONST32 */ \ + w7 += 1; /* ADD_CONST_32 delta */ \ r8 = 0xFFFFffff ll; \ if r6 < r8 goto l0_%=; \ /* r6 in [0xFFFFFFFF, 0xFFFFFFFF] */ \ @@ -381,7 +381,7 @@ l0_%=: \ /* * Test that sync_linked_regs() skips propagation when one register used - * alu32 (BPF_ADD_CONST32) and the other used alu64 (BPF_ADD_CONST64). + * alu32 (ADD_CONST_32) and the other used alu64 (ADD_CONST_64). * The delta relationship doesn't hold across different ALU widths. */ SEC("socket") @@ -392,13 +392,13 @@ __naked void scalars_alu32_alu64_cross_type(void) call %[bpf_get_prandom_u32]; \ w6 = w0; /* r6 in [0, 0xFFFFFFFF] */ \ r7 = r6; /* linked: same id as r6 */ \ - w7 += 1; /* alu32: BPF_ADD_CONST32, delta = 1 */ \ + w7 += 1; /* ADD_CONST_32 delta */ \ r8 = r6; /* linked: same id as r6 */ \ - r8 += 2; /* alu64: BPF_ADD_CONST64, delta = 2 */ \ + r8 += 2; /* ADD_CONST_64 delta */ \ r9 = 0xFFFFffff ll; \ if r7 < r9 goto l0_%=; \ /* r7 = 0xFFFFFFFF */ \ - /* sync: known_reg=r7 (ADD_CONST32), reg=r8 (ADD_CONST64) */ \ + /* sync: known_reg=r7 (ADD_CONST_32), reg=r8 (ADD_CONST_64) */ \ /* Without fix: r8 = zext(0xFFFFFFFF + 1) = 0 */ \ /* With fix: r8 stays [2, 0x100000001] (r8 >= 2) */ \ if r8 > 0 goto l1_%=; \ @@ -416,7 +416,7 @@ l0_%=: \ /* * Test that regsafe() prevents pruning when two paths reach the same program * point with linked registers carrying different ADD_CONST flags (one - * BPF_ADD_CONST32 from alu32, another BPF_ADD_CONST64 from alu64). + * ADD_CONST_32 from alu32, another ADD_CONST_64 from alu64). */ SEC("socket") __failure __msg("div by zero") @@ -431,11 +431,11 @@ __naked void scalars_alu32_alu64_regsafe_pruning(void) call %[bpf_get_prandom_u32]; \ if r0 > 0 goto l_pathb_%=; \ /* Path A: alu32 */ \ - w7 += 1; /* BPF_ADD_CONST32, delta = 1 */\ + w7 += 1; /* ADD_CONST_32 delta */\ goto l_merge_%=; \ l_pathb_%=: \ /* Path B: alu64 */ \ - r7 += 1; /* BPF_ADD_CONST64, delta = 1 */\ + r7 += 1; /* ADD_CONST_64 delta */\ l_merge_%=: \ /* Merge point: regsafe() compares path B against cached path A. */ \ /* Narrow r6 to trigger sync_linked_regs for r7 */ \ @@ -593,7 +593,7 @@ l_exit_%=: \ } /* - * Test that stale delta from a cleared BPF_ADD_CONST does not leak + * Test that stale delta from a cleared ADD_CONST_* does not leak * through assign_scalar_id_before_mov() into a new id, causing * sync_linked_regs() to compute an incorrect offset. */ @@ -605,10 +605,10 @@ __naked void scalars_stale_delta_from_cleared_id(void) asm volatile (" \ call %[bpf_get_prandom_u32]; \ r6 = r0; /* r6 unknown, gets id A */ \ - r6 += 5; /* id A|ADD_CONST, delta 5 */ \ + r6 += 5; /* id A, ADD_CONST_64 delta */ \ r6 ^= 0; /* id cleared; delta stays 5 */ \ r8 = r6; /* new id B, stale delta 5 */ \ - r8 += 3; /* id B|ADD_CONST, delta 3 */ \ + r8 += 3; /* id B, ADD_CONST_64 delta */ \ r9 = r6; /* id B, stale delta 5 */ \ if r9 != 10 goto l_exit_%=; \ /* Bug: r8 = 10+(3-5) = 8; Fix: r8 = 10+(3-0) = 13 */ \ @@ -648,10 +648,10 @@ l_exit_%=: \ } /* - * Test that regsafe() verifies base_id consistency for BPF_ADD_CONST + * Test that regsafe() verifies base_id consistency for ADD_CONST_* * linked scalars during state pruning. * - * The false branch (explored first) links R3 to R2 via ADD_CONST. + * The false branch (explored first) links R3 to R2 via ADD_CONST_64. * The true branch (runtime path) links R3 to R4 (unrelated base_id). * At the merge point, pruning must fail because the linkage topology * differs. @@ -675,7 +675,7 @@ __naked void add_const_base_id_pruning(void) r2 = r0; \ r2 &= 0xff; /* R2 = scalar(id=A) [0,255] */ \ r3 = r2; /* R3 linked to R2 (id=A) */ \ - r3 += 10; /* R3 id=A|ADD_CONST, delta=10 */\ + r3 += 10; /* ADD_CONST_64 delta */\ r6 = 0; \ goto l_merge_%=; \ \ @@ -687,7 +687,7 @@ l_true_%=: \ r4 = r0; \ r4 &= 0xff; /* R4 = scalar [0,255], id=0 */ \ r3 = r4; /* R3 linked to R4 (new id=C) */\ - r3 += 10; /* R3 id=C|ADD_CONST, delta=10 */\ + r3 += 10; /* ADD_CONST_64 delta */\ r6 = 0; \ \ l_merge_%=: \ -- 2.53.0-Meta