From mboxrd@z Thu Jan 1 00:00:00 1970 Return-Path: X-Spam-Checker-Version: SpamAssassin 3.4.0 (2014-02-07) on aws-us-west-2-korg-lkml-1.web.codeaurora.org X-Spam-Level: X-Spam-Status: No, score=-7.2 required=3.0 tests=HEADER_FROM_DIFFERENT_DOMAINS, MAILING_LIST_MULTI,MENTIONS_GIT_HOSTING,SPF_HELO_NONE,SPF_PASS,URIBL_BLOCKED, USER_AGENT_SANE_1 autolearn=ham autolearn_force=no version=3.4.0 Received: from mail.kernel.org (mail.kernel.org [198.145.29.99]) by smtp.lore.kernel.org (Postfix) with ESMTP id 40023C433DF for ; Wed, 3 Jun 2020 12:33:23 +0000 (UTC) Received: from vger.kernel.org (vger.kernel.org [23.128.96.18]) by mail.kernel.org (Postfix) with ESMTP id 0358220679 for ; Wed, 3 Jun 2020 12:33:23 +0000 (UTC) Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S1726202AbgFCMdW (ORCPT ); Wed, 3 Jun 2020 08:33:22 -0400 Received: from mga18.intel.com ([134.134.136.126]:41973 "EHLO mga18.intel.com" rhost-flags-OK-OK-OK-OK) by vger.kernel.org with ESMTP id S1725936AbgFCMdV (ORCPT ); Wed, 3 Jun 2020 08:33:21 -0400 IronPort-SDR: EvX3REKNbizwY0c231G6JvXwpc7Cq55eJfH7ogYcz3UcI3/p1AG5TThiKWNQrQEmqd+crcmVfg UvhN5R6IQksw== X-Amp-Result: UNKNOWN X-Amp-Original-Verdict: FILE UNKNOWN X-Amp-File-Uploaded: False Received: from fmsmga006.fm.intel.com ([10.253.24.20]) by orsmga106.jf.intel.com with ESMTP/TLS/ECDHE-RSA-AES256-GCM-SHA384; 03 Jun 2020 05:33:19 -0700 IronPort-SDR: XwbZkdJJO8yqjBWhEXUd/tlzJX4ypM/h8/wUYhscUO8jT1GRfuwdThejxib6z5J33fJu6ByWzm 4HO/ftETilTw== X-ExtLoop1: 1 X-IronPort-AV: E=Sophos;i="5.73,467,1583222400"; d="gz'50?scan'50,208,50";a="471057708" Received: from lkp-server01.sh.intel.com (HELO dad89584b564) ([10.239.97.150]) by fmsmga006.fm.intel.com with ESMTP; 03 Jun 2020 05:33:17 -0700 Received: from kbuild by dad89584b564 with local (Exim 4.92) (envelope-from ) id 1jgSa4-00009e-46; Wed, 03 Jun 2020 12:33:16 +0000 Date: Wed, 3 Jun 2020 20:32:23 +0800 From: kernel test robot To: "Jason, A., Donenfeld," Cc: kbuild-all@lists.01.org, clang-built-linux@googlegroups.com, linux-kernel@vger.kernel.org, Herbert Xu Subject: arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available Message-ID: <202006032021.Me2swOyK%lkp@intel.com> MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="zYM0uCDKw75PZbzx" Content-Disposition: inline User-Agent: Mutt/1.10.1 (2018-07-13) Sender: linux-kernel-owner@vger.kernel.org Precedence: bulk List-ID: X-Mailing-List: linux-kernel@vger.kernel.org --zYM0uCDKw75PZbzx Content-Type: text/plain; charset=us-ascii Content-Disposition: inline Hi Jason, FYI, the error/warning still remains. tree: https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git master head: d6f9469a03d832dcd17041ed67774ffb5f3e73b3 commit: 07b586fe06625b0b610dc3d3a969c51913d143d4 crypto: x86/curve25519 - replace with formally verified implementation date: 4 months ago config: x86_64-randconfig-r012-20200603 (attached as .config) compiler: clang version 11.0.0 (https://github.com/llvm/llvm-project 16437992cac249f6fe1efd392d20e3469b47e39e) reproduce (this is a W=1 build): wget https://raw.githubusercontent.com/intel/lkp-tests/master/sbin/make.cross -O ~/bin/make.cross chmod +x ~/bin/make.cross # install x86_64 cross compiling tool for clang build # apt-get install binutils-x86-64-linux-gnu git checkout 07b586fe06625b0b610dc3d3a969c51913d143d4 # save the attached .config to linux build tree COMPILER_INSTALL_PATH=$HOME/0day COMPILER=clang make.cross ARCH=x86_64 If you fix the issue, kindly add following tag as appropriate Reported-by: kernel test robot All errors (new ones prefixed by >>, old ones prefixed by <<): >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available " movq 0(%1), %%rdx;" /* f[0] */ ^ >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available >> arch/x86/crypto/curve25519-x86_64.c:518:3: error: inline assembly requires more registers than available arch/x86/crypto/curve25519-x86_64.c:609:3: error: inline assembly requires more registers than available " movq 0(%1), %%rdx;" /* f[0] */ ^ arch/x86/crypto/curve25519-x86_64.c:609:3: error: inline assembly requires more registers than available 11 errors generated. vim +518 arch/x86/crypto/curve25519-x86_64.c 509 510 /* Computes the square of a field element: out <- f * f 511 * Uses the 8-element buffer tmp for intermediate results */ 512 static inline void fsqr(u64 *out, const u64 *f, u64 *tmp) 513 { 514 asm volatile( 515 /* Compute the raw multiplication: tmp <- f * f */ 516 517 /* Step 1: Compute all partial products */ > 518 " movq 0(%1), %%rdx;" /* f[0] */ 519 " mulxq 8(%1), %%r8, %%r14;" " xor %%r15, %%r15;" /* f[1]*f[0] */ 520 " mulxq 16(%1), %%r9, %%r10;" " adcx %%r14, %%r9;" /* f[2]*f[0] */ 521 " mulxq 24(%1), %%rax, %%rcx;" " adcx %%rax, %%r10;" /* f[3]*f[0] */ 522 " movq 24(%1), %%rdx;" /* f[3] */ 523 " mulxq 8(%1), %%r11, %%r12;" " adcx %%rcx, %%r11;" /* f[1]*f[3] */ 524 " mulxq 16(%1), %%rax, %%r13;" " adcx %%rax, %%r12;" /* f[2]*f[3] */ 525 " movq 8(%1), %%rdx;" " adcx %%r15, %%r13;" /* f1 */ 526 " mulxq 16(%1), %%rax, %%rcx;" " mov $0, %%r14;" /* f[2]*f[1] */ 527 528 /* Step 2: Compute two parallel carry chains */ 529 " xor %%r15, %%r15;" 530 " adox %%rax, %%r10;" 531 " adcx %%r8, %%r8;" 532 " adox %%rcx, %%r11;" 533 " adcx %%r9, %%r9;" 534 " adox %%r15, %%r12;" 535 " adcx %%r10, %%r10;" 536 " adox %%r15, %%r13;" 537 " adcx %%r11, %%r11;" 538 " adox %%r15, %%r14;" 539 " adcx %%r12, %%r12;" 540 " adcx %%r13, %%r13;" 541 " adcx %%r14, %%r14;" 542 543 /* Step 3: Compute intermediate squares */ 544 " movq 0(%1), %%rdx;" " mulx %%rdx, %%rax, %%rcx;" /* f[0]^2 */ 545 " movq %%rax, 0(%0);" 546 " add %%rcx, %%r8;" " movq %%r8, 8(%0);" 547 " movq 8(%1), %%rdx;" " mulx %%rdx, %%rax, %%rcx;" /* f[1]^2 */ 548 " adcx %%rax, %%r9;" " movq %%r9, 16(%0);" 549 " adcx %%rcx, %%r10;" " movq %%r10, 24(%0);" 550 " movq 16(%1), %%rdx;" " mulx %%rdx, %%rax, %%rcx;" /* f[2]^2 */ 551 " adcx %%rax, %%r11;" " movq %%r11, 32(%0);" 552 " adcx %%rcx, %%r12;" " movq %%r12, 40(%0);" 553 " movq 24(%1), %%rdx;" " mulx %%rdx, %%rax, %%rcx;" /* f[3]^2 */ 554 " adcx %%rax, %%r13;" " movq %%r13, 48(%0);" 555 " adcx %%rcx, %%r14;" " movq %%r14, 56(%0);" 556 557 /* Line up pointers */ 558 " mov %0, %1;" 559 " mov %2, %0;" 560 561 /* Wrap the result back into the field */ 562 563 /* Step 1: Compute dst + carry == tmp_hi * 38 + tmp_lo */ 564 " mov $38, %%rdx;" 565 " mulxq 32(%1), %%r8, %%r13;" 566 " xor %%rcx, %%rcx;" 567 " adoxq 0(%1), %%r8;" 568 " mulxq 40(%1), %%r9, %%r12;" 569 " adcx %%r13, %%r9;" 570 " adoxq 8(%1), %%r9;" 571 " mulxq 48(%1), %%r10, %%r13;" 572 " adcx %%r12, %%r10;" 573 " adoxq 16(%1), %%r10;" 574 " mulxq 56(%1), %%r11, %%rax;" 575 " adcx %%r13, %%r11;" 576 " adoxq 24(%1), %%r11;" 577 " adcx %%rcx, %%rax;" 578 " adox %%rcx, %%rax;" 579 " imul %%rdx, %%rax;" 580 581 /* Step 2: Fold the carry back into dst */ 582 " add %%rax, %%r8;" 583 " adcx %%rcx, %%r9;" 584 " movq %%r9, 8(%0);" 585 " adcx %%rcx, %%r10;" 586 " movq %%r10, 16(%0);" 587 " adcx %%rcx, %%r11;" 588 " movq %%r11, 24(%0);" 589 590 /* Step 3: Fold the carry bit back in; guaranteed not to carry at this point */ 591 " mov $0, %%rax;" 592 " cmovc %%rdx, %%rax;" 593 " add %%rax, %%r8;" 594 " movq %%r8, 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