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[2620:137:e000::1:20]) by mx.google.com with ESMTP id n10-20020a654cca000000b003aa32965dcesi14413955pgt.721.2022.05.16.18.10.23; Mon, 16 May 2022 18:10:36 -0700 (PDT) Received-SPF: pass (google.com: domain of linux-kernel-owner@vger.kernel.org designates 2620:137:e000::1:20 as permitted sender) client-ip=2620:137:e000::1:20; Authentication-Results: mx.google.com; spf=pass (google.com: domain of linux-kernel-owner@vger.kernel.org designates 2620:137:e000::1:20 as permitted sender) smtp.mailfrom=linux-kernel-owner@vger.kernel.org; dmarc=pass (p=NONE sp=NONE dis=NONE) header.from=kernel.org Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S239864AbiEPFln convert rfc822-to-8bit (ORCPT + 99 others); Mon, 16 May 2022 01:41:43 -0400 Received: from lindbergh.monkeyblade.net ([23.128.96.19]:57006 "EHLO lindbergh.monkeyblade.net" rhost-flags-OK-OK-OK-OK) by vger.kernel.org with ESMTP id S239802AbiEPFlR (ORCPT ); Mon, 16 May 2022 01:41:17 -0400 Received: from mx0b-00082601.pphosted.com (mx0b-00082601.pphosted.com [67.231.153.30]) by lindbergh.monkeyblade.net (Postfix) with ESMTPS id 4BC32DF48 for ; Sun, 15 May 2022 22:41:16 -0700 (PDT) Received: from pps.filterd (m0148460.ppops.net [127.0.0.1]) by mx0a-00082601.pphosted.com (8.17.1.5/8.17.1.5) with ESMTP id 24FGukFT022042 for ; Sun, 15 May 2022 22:41:15 -0700 Received: from maileast.thefacebook.com ([163.114.130.16]) by mx0a-00082601.pphosted.com (PPS) with ESMTPS id 3g29xxf5en-2 (version=TLSv1.2 cipher=ECDHE-RSA-AES128-GCM-SHA256 bits=128 verify=NOT) for ; Sun, 15 May 2022 22:41:15 -0700 Received: from twshared8307.18.frc3.facebook.com (2620:10d:c0a8:1b::d) by mail.thefacebook.com (2620:10d:c0a8:82::c) with Microsoft SMTP Server (version=TLS1_2, cipher=TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256) id 15.1.2375.24; Sun, 15 May 2022 22:41:09 -0700 Received: by devbig932.frc1.facebook.com (Postfix, from userid 4523) id D36787AEBCA2; Sun, 15 May 2022 22:41:04 -0700 (PDT) From: Song Liu To: , CC: , , , , , , , Song Liu Subject: [PATCH bpf-next 5/5] bpf: use module_alloc_huge for bpf_prog_pack Date: Sun, 15 May 2022 22:40:51 -0700 Message-ID: <20220516054051.114490-6-song@kernel.org> X-Mailer: git-send-email 2.30.2 In-Reply-To: <20220516054051.114490-1-song@kernel.org> References: <20220516054051.114490-1-song@kernel.org> X-FB-Internal: Safe Content-Type: text/plain X-Proofpoint-GUID: f1iCgb4j8qCen5Wa1I7FbUw-e3i3W7jz X-Proofpoint-ORIG-GUID: f1iCgb4j8qCen5Wa1I7FbUw-e3i3W7jz Content-Transfer-Encoding: 8BIT X-Proofpoint-UnRewURL: 0 URL was un-rewritten MIME-Version: 1.0 X-Proofpoint-Virus-Version: vendor=baseguard engine=ICAP:2.0.205,Aquarius:18.0.858,Hydra:6.0.486,FMLib:17.11.64.514 definitions=2022-05-15_11,2022-05-13_01,2022-02-23_01 X-Spam-Status: No, score=-2.4 required=5.0 tests=BAYES_00, HEADER_FROM_DIFFERENT_DOMAINS,RCVD_IN_DNSWL_LOW,RCVD_IN_MSPIKE_H3, RCVD_IN_MSPIKE_WL,SPF_HELO_NONE,SPF_NONE,T_SCC_BODY_TEXT_LINE autolearn=unavailable autolearn_force=no version=3.4.6 X-Spam-Checker-Version: SpamAssassin 3.4.6 (2021-04-09) on lindbergh.monkeyblade.net Precedence: bulk List-ID: X-Mailing-List: linux-kernel@vger.kernel.org Use module_alloc_huge for bpf_prog_pack so that BPF programs sit on PMD_SIZE pages. This benefits system performance by reducing iTLB miss rate. Benchmark of a real web service workload shows this change gives another ~0.2% performance boost on top of PAGE_SIZE bpf_prog_pack (which improve system throughput by ~0.5%). Also, remove set_vm_flush_reset_perms() from alloc_new_pack() and use set_memory_[nx|rw] in bpf_prog_pack_free(). This is because VM_FLUSH_RESET_PERMS does not work with huge pages yet. [1] [1] https://lore.kernel.org/bpf/aeeeaf0b7ec63fdba55d4834d2f524d8bf05b71b.camel@intel.com/ Suggested-by: Rick Edgecombe Signed-off-by: Song Liu --- kernel/bpf/core.c | 12 +++++++----- 1 file changed, 7 insertions(+), 5 deletions(-) diff --git a/kernel/bpf/core.c b/kernel/bpf/core.c index cacd8684c3c4..b64d91fcb0ba 100644 --- a/kernel/bpf/core.c +++ b/kernel/bpf/core.c @@ -857,7 +857,7 @@ static size_t select_bpf_prog_pack_size(void) void *ptr; size = BPF_HPAGE_SIZE * num_online_nodes(); - ptr = module_alloc(size); + ptr = module_alloc_huge(size); /* Test whether we can get huge pages. If not just use PAGE_SIZE * packs. @@ -881,7 +881,7 @@ static struct bpf_prog_pack *alloc_new_pack(bpf_jit_fill_hole_t bpf_fill_ill_ins GFP_KERNEL); if (!pack) return NULL; - pack->ptr = module_alloc(bpf_prog_pack_size); + pack->ptr = module_alloc_huge(bpf_prog_pack_size); if (!pack->ptr) { kfree(pack); return NULL; @@ -890,7 +890,6 @@ static struct bpf_prog_pack *alloc_new_pack(bpf_jit_fill_hole_t bpf_fill_ill_ins bitmap_zero(pack->bitmap, bpf_prog_pack_size / BPF_PROG_CHUNK_SIZE); list_add_tail(&pack->list, &pack_list); - set_vm_flush_reset_perms(pack->ptr); set_memory_ro((unsigned long)pack->ptr, bpf_prog_pack_size / PAGE_SIZE); set_memory_x((unsigned long)pack->ptr, bpf_prog_pack_size / PAGE_SIZE); return pack; @@ -909,10 +908,9 @@ static void *bpf_prog_pack_alloc(u32 size, bpf_jit_fill_hole_t bpf_fill_ill_insn if (size > bpf_prog_pack_size) { size = round_up(size, PAGE_SIZE); - ptr = module_alloc(size); + ptr = module_alloc_huge(size); if (ptr) { bpf_fill_ill_insns(ptr, size); - set_vm_flush_reset_perms(ptr); set_memory_ro((unsigned long)ptr, size / PAGE_SIZE); set_memory_x((unsigned long)ptr, size / PAGE_SIZE); } @@ -949,6 +947,8 @@ static void bpf_prog_pack_free(struct bpf_binary_header *hdr) mutex_lock(&pack_mutex); if (hdr->size > bpf_prog_pack_size) { + set_memory_nx((unsigned long)hdr, hdr->size / PAGE_SIZE); + set_memory_rw((unsigned long)hdr, hdr->size / PAGE_SIZE); module_memfree(hdr); goto out; } @@ -975,6 +975,8 @@ static void bpf_prog_pack_free(struct bpf_binary_header *hdr) if (bitmap_find_next_zero_area(pack->bitmap, bpf_prog_chunk_count(), 0, bpf_prog_chunk_count(), 0) == 0) { list_del(&pack->list); + set_memory_nx((unsigned long)pack->ptr, bpf_prog_pack_size / PAGE_SIZE); + set_memory_rw((unsigned long)pack->ptr, bpf_prog_pack_size / PAGE_SIZE); module_memfree(pack->ptr); kfree(pack); } -- 2.30.2