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[2620:137:e000::1:20]) by mx.google.com with ESMTP id u189-20020a6385c6000000b005250ac2d7c9si21438247pgd.693.2023.05.17.08.37.03; Wed, 17 May 2023 08:37:18 -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; dkim=pass header.i=@google.com header.s=20221208 header.b=jJ6Lv6pB; 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=REJECT sp=REJECT dis=NONE) header.from=google.com Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S231941AbjEQP2h (ORCPT + 99 others); Wed, 17 May 2023 11:28:37 -0400 Received: from lindbergh.monkeyblade.net ([23.128.96.19]:56202 "EHLO lindbergh.monkeyblade.net" rhost-flags-OK-OK-OK-OK) by vger.kernel.org with ESMTP id S232417AbjEQP1h (ORCPT ); Wed, 17 May 2023 11:27:37 -0400 Received: from mail-yb1-xb4a.google.com (mail-yb1-xb4a.google.com [IPv6:2607:f8b0:4864:20::b4a]) by lindbergh.monkeyblade.net (Postfix) with ESMTPS id 926234ED4 for ; Wed, 17 May 2023 08:27:12 -0700 (PDT) Received: by mail-yb1-xb4a.google.com with SMTP id 3f1490d57ef6-b9a25f6aa0eso1546836276.1 for ; Wed, 17 May 2023 08:27:12 -0700 (PDT) DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=google.com; s=20221208; t=1684337232; x=1686929232; h=content-transfer-encoding:to:from:subject:references:mime-version :message-id:in-reply-to:date:from:to:cc:subject:date:message-id :reply-to; bh=BnAfIbmSAJy1nhwxlLI4CXbH/I642OPdNYHz63+L4Ls=; b=jJ6Lv6pBGhBdbg8dlgNbLJXToWyWeZsC2jlJJu3XSWZzgtCif8skwz5ZO/ItHRjsgd IwfmnTOgl0oTSqcfMX5ScXXbG97xEzbeGL9fbvothWyXK5zh9Li8ILBNgjaDLjm5rBsK xLkzONEoa2TyBtDYQOOniF5lk+bTSR+W+iIkrxGh+43z8DGP9Z6zhEF36yFQ006n7ls/ pn7gPyXk/8Jf9kewBYls55LuqLBrs7TpEyEI0HYzkgsyPV9hLXxeSf2tomUPXc/cwKmE uwLQgCOZAqz7GwvUKsDVTHQq/Wp8yOh7dIrcWfOEsN4jNb6wTKLY9inia89GQaQwPVz8 eziw== X-Google-DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=1e100.net; s=20221208; t=1684337232; x=1686929232; h=content-transfer-encoding:to:from:subject:references:mime-version :message-id:in-reply-to:date:x-gm-message-state:from:to:cc:subject :date:message-id:reply-to; bh=BnAfIbmSAJy1nhwxlLI4CXbH/I642OPdNYHz63+L4Ls=; b=Oy7KhMe3PsNsaIR677Aa0fPG5FOHq8aqYJi4+755fvF+mai437DAlLWx9enK69R+Kc 5T1st/+YJ0kGod4weXchrv9EJTWxhLYVZhWuldTYHaYzniBuwZtgmHptXbWN/dOJBbQv VAtxR1PJfHnSVPVez1GG0hXimUkridt1BLt13k7DLyxEyj3V8eE4tWXuqZpBkXM3rt7O 86xvRk2+awM543FoD4aqmry/bVmj1Khy7oqqtjKTRZzVdjKv6KmkfhQQrPCGfNGCMQzc yVoSX/b7dzPqf/z+HHOM3qZ3mDtvOgHKuHOrULDnzY60TPqGhguCT4qlAL3eiO71e6mg 80wA== X-Gm-Message-State: AC+VfDzmE4KY4uP7sDVFjXu/2mGxXQopn/O97IaJ4KYMeBHK9DTaFMYA AT0gCQAlXQQUFg5ApvO7/yhhT4v3GT4L X-Received: from irogers.svl.corp.google.com ([2620:15c:2d4:203:628b:7e78:d09b:39b]) (user=irogers job=sendgmr) by 2002:a25:8d09:0:b0:ba8:5e0e:f5a7 with SMTP id n9-20020a258d09000000b00ba85e0ef5a7mr910022ybl.7.1684337231873; Wed, 17 May 2023 08:27:11 -0700 (PDT) Date: Wed, 17 May 2023 08:26:23 -0700 In-Reply-To: <20230517152626.563559-1-irogers@google.com> Message-Id: <20230517152626.563559-13-irogers@google.com> Mime-Version: 1.0 References: <20230517152626.563559-1-irogers@google.com> X-Mailer: git-send-email 2.40.1.606.ga4b1b128d6-goog Subject: [PATCH v2 12/15] perf vendor events intel: Update snowridgex events From: Ian Rogers To: Peter Zijlstra , Ingo Molnar , Arnaldo Carvalho de Melo , Mark Rutland , Alexander Shishkin , Jiri Olsa , Namhyung Kim , Ian Rogers , Adrian Hunter , Kan Liang , Zhengjun Xing , John Garry , Kajol Jain , Thomas Richter , linux-kernel@vger.kernel.org, linux-perf-users@vger.kernel.org Content-Type: text/plain; charset="UTF-8" Content-Transfer-Encoding: quoted-printable X-Spam-Status: No, score=-9.6 required=5.0 tests=BAYES_00,DKIMWL_WL_MED, DKIM_SIGNED,DKIM_VALID,DKIM_VALID_AU,DKIM_VALID_EF,RCVD_IN_DNSWL_NONE, SPF_HELO_NONE,SPF_PASS,T_SCC_BODY_TEXT_LINE,USER_IN_DEF_DKIM_WL autolearn=ham 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 Update snowridgex to v1.21 that marks deprecated a number of events and adds improves descriptions. The events data was generated by: https://github.com/intel/perfmon/blob/main/scripts/create_perf_json.py Signed-off-by: Ian Rogers --- tools/perf/pmu-events/arch/x86/mapfile.csv | 2 +- .../perf/pmu-events/arch/x86/snowridgex/cache.json | 7 +++++++ .../pmu-events/arch/x86/snowridgex/memory.json | 2 ++ .../perf/pmu-events/arch/x86/snowridgex/other.json | 10 ++++++++++ .../pmu-events/arch/x86/snowridgex/pipeline.json | 3 +++ .../arch/x86/snowridgex/uncore-interconnect.json | 14 +++++++------- .../pmu-events/arch/x86/snowridgex/uncore-io.json | 8 -------- .../arch/x86/snowridgex/uncore-memory.json | 7 +++---- .../arch/x86/snowridgex/uncore-power.json | 6 +++--- 9 files changed, 36 insertions(+), 23 deletions(-) diff --git a/tools/perf/pmu-events/arch/x86/mapfile.csv b/tools/perf/pmu-ev= ents/arch/x86/mapfile.csv index 4731a92af9f9..4a1a2b8d6201 100644 --- a/tools/perf/pmu-events/arch/x86/mapfile.csv +++ b/tools/perf/pmu-events/arch/x86/mapfile.csv @@ -28,7 +28,7 @@ GenuineIntel-6-AF,v1.00,sierraforest,core GenuineIntel-6-(37|4A|4C|4D|5A),v15,silvermont,core GenuineIntel-6-(4E|5E|8E|9E|A5|A6),v56,skylake,core GenuineIntel-6-55-[01234],v1.30,skylakex,core -GenuineIntel-6-86,v1.20,snowridgex,core +GenuineIntel-6-86,v1.21,snowridgex,core GenuineIntel-6-8[CD],v1.10,tigerlake,core GenuineIntel-6-2C,v4,westmereep-dp,core GenuineIntel-6-25,v3,westmereep-sp,core diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/cache.json b/tools/p= erf/pmu-events/arch/x86/snowridgex/cache.json index 0ab90e3bf76b..c6be60584522 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/cache.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/cache.json @@ -72,6 +72,7 @@ "BriefDescription": "Counts the number of cycles the core is stall= ed due to an instruction cache or TLB miss which hit in the L2, LLC, DRAM o= r MMIO (Non-DRAM).", "EventCode": "0x34", "EventName": "MEM_BOUND_STALLS.IFETCH", + "PublicDescription": "Counts the number of cycles the core is stal= led due to an instruction cache or translation lookaside buffer (TLB) miss = which hit in the L2, LLC, DRAM or MMIO (Non-DRAM).", "SampleAfterValue": "200003", "UMask": "0x38" }, @@ -437,6 +438,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_HIT", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_HIT", "MSRIndex": "0x1a6,0x1a7", @@ -446,6 +448,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_HIT.SNOOP_HITM", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_HIT.SNOOP_HITM", "MSRIndex": "0x1a6,0x1a7", @@ -455,6 +458,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_HIT.SNOOP_HIT_NO_FWD", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_HIT.SNOOP_HIT_NO_FWD", "MSRIndex": "0x1a6,0x1a7", @@ -464,6 +468,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_HIT.SNOOP_HIT_WITH_FWD", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_HIT.SNOOP_HIT_WITH_FWD", "MSRIndex": "0x1a6,0x1a7", @@ -473,6 +478,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_HIT.SNOOP_MISS", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_HIT.SNOOP_MISS", "MSRIndex": "0x1a6,0x1a7", @@ -482,6 +488,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_HIT.SNOOP_NOT_NEEDED", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_HIT.SNOOP_NOT_NEEDED", "MSRIndex": "0x1a6,0x1a7", diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/memory.json b/tools/= perf/pmu-events/arch/x86/snowridgex/memory.json index 18621909d1a9..c02eb0e836ad 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/memory.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/memory.json @@ -96,6 +96,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_MISS", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_MISS", "MSRIndex": "0x1a6,0x1a7", @@ -105,6 +106,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.L3_MISS_LOCAL", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.L3_MISS_LOCAL", "MSRIndex": "0x1a6,0x1a7", diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/other.json b/tools/p= erf/pmu-events/arch/x86/snowridgex/other.json index 00ae180ded25..fefbc383b840 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/other.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/other.json @@ -1,6 +1,7 @@ [ { "BriefDescription": "This event is deprecated. Refer to new event = BUS_LOCK.SELF_LOCKS", + "Deprecated": "1", "EdgeDetect": "1", "EventCode": "0x63", "EventName": "BUS_LOCK.ALL", @@ -16,6 +17,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = BUS_LOCK.BLOCK_CYCLES", + "Deprecated": "1", "EventCode": "0x63", "EventName": "BUS_LOCK.CYCLES_OTHER_BLOCK", "SampleAfterValue": "200003", @@ -23,6 +25,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = BUS_LOCK.LOCK_CYCLES", + "Deprecated": "1", "EventCode": "0x63", "EventName": "BUS_LOCK.CYCLES_SELF_BLOCK", "SampleAfterValue": "200003", @@ -46,6 +49,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = MEM_BOUND_STALLS.LOAD_DRAM_HIT", + "Deprecated": "1", "EventCode": "0x34", "EventName": "C0_STALLS.LOAD_DRAM_HIT", "SampleAfterValue": "200003", @@ -53,6 +57,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = MEM_BOUND_STALLS.LOAD_L2_HIT", + "Deprecated": "1", "EventCode": "0x34", "EventName": "C0_STALLS.LOAD_L2_HIT", "SampleAfterValue": "200003", @@ -60,6 +65,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = MEM_BOUND_STALLS.LOAD_LLC_HIT", + "Deprecated": "1", "EventCode": "0x34", "EventName": "C0_STALLS.LOAD_LLC_HIT", "SampleAfterValue": "200003", @@ -207,6 +213,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.ANY_RESPONSE", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.ANY_RESPONSE", "MSRIndex": "0x1a6,0x1a7", @@ -216,6 +223,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.DRAM", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.DRAM", "MSRIndex": "0x1a6,0x1a7", @@ -225,6 +233,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.LOCAL_DRAM", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.LOCAL_DRAM", "MSRIndex": "0x1a6,0x1a7", @@ -234,6 +243,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = OCR.DEMAND_DATA_AND_L1PF_RD.OUTSTANDING", + "Deprecated": "1", "EventCode": "0XB7", "EventName": "OCR.DEMAND_DATA_RD.OUTSTANDING", "MSRIndex": "0x1a6", diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/pipeline.json b/tool= s/perf/pmu-events/arch/x86/snowridgex/pipeline.json index 9dd8c909facc..c483c0838e08 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/pipeline.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/pipeline.json @@ -165,6 +165,7 @@ }, { "BriefDescription": "This event is deprecated.", + "Deprecated": "1", "EventCode": "0xcd", "EventName": "CYCLES_DIV_BUSY.ANY", "SampleAfterValue": "2000003" @@ -283,6 +284,7 @@ }, { "BriefDescription": "This event is deprecated. Refer to new event = TOPDOWN_BAD_SPECULATION.FASTNUKE", + "Deprecated": "1", "EventCode": "0x73", "EventName": "TOPDOWN_BAD_SPECULATION.MONUKE", "SampleAfterValue": "1000003", @@ -338,6 +340,7 @@ }, { "BriefDescription": "This event is deprecated.", + "Deprecated": "1", "EventCode": "0x74", "EventName": "TOPDOWN_BE_BOUND.STORE_BUFFER", "SampleAfterValue": "1000003", diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-interconnect.= json b/tools/perf/pmu-events/arch/x86/snowridgex/uncore-interconnect.json index de3840078e21..7e2895f7fe3d 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-interconnect.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/uncore-interconnect.json @@ -590,7 +590,7 @@ "EventCode": "0x0C", "EventName": "UNC_I_TxS_REQUEST_OCCUPANCY", "PerPkg": "1", - "PublicDescription": "Outbound Request Queue Occupancy : Accumulte= s the number of outstanding outbound requests from the IRP to the switch (t= owards the devices). This can be used in conjuection with the allocations = event in order to calculate average latency of outbound requests.", + "PublicDescription": "Outbound Request Queue Occupancy : Accumulat= es the number of outstanding outbound requests from the IRP to the switch (= towards the devices). This can be used in conjunction with the allocations= event in order to calculate average latency of outbound requests.", "Unit": "IRP" }, { @@ -5570,7 +5570,7 @@ "Unit": "M2M" }, { - "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Regular : = Channel 0", + "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Regular : Cha= nnel 0", "EventCode": "0x4D", "EventName": "UNC_M2M_WPQ_NO_REG_CRD.CHN0", "PerPkg": "1", @@ -5578,7 +5578,7 @@ "Unit": "M2M" }, { - "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Regular : = Channel 1", + "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Regular : Cha= nnel 1", "EventCode": "0x4D", "EventName": "UNC_M2M_WPQ_NO_REG_CRD.CHN1", "PerPkg": "1", @@ -5586,7 +5586,7 @@ "Unit": "M2M" }, { - "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Regular : = Channel 2", + "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Regular : Cha= nnel 2", "EventCode": "0x4D", "EventName": "UNC_M2M_WPQ_NO_REG_CRD.CHN2", "PerPkg": "1", @@ -5594,7 +5594,7 @@ "Unit": "M2M" }, { - "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Special : = Channel 0", + "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Special : Cha= nnel 0", "EventCode": "0x4E", "EventName": "UNC_M2M_WPQ_NO_SPEC_CRD.CHN0", "PerPkg": "1", @@ -5602,7 +5602,7 @@ "Unit": "M2M" }, { - "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Special : = Channel 1", + "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Special : Cha= nnel 1", "EventCode": "0x4E", "EventName": "UNC_M2M_WPQ_NO_SPEC_CRD.CHN1", "PerPkg": "1", @@ -5610,7 +5610,7 @@ "Unit": "M2M" }, { - "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Special : = Channel 2", + "BriefDescription": "M2M->iMC WPQ Cycles w/Credits - Special : Cha= nnel 2", "EventCode": "0x4E", "EventName": "UNC_M2M_WPQ_NO_SPEC_CRD.CHN2", "PerPkg": "1", diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-io.json b/too= ls/perf/pmu-events/arch/x86/snowridgex/uncore-io.json index 996028071ee4..ecdd6f0f8e8f 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-io.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/uncore-io.json @@ -34,7 +34,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART0_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART0_FREERUN", "UMask": "0x20", "Unit": "iio_free_running" }, @@ -43,7 +42,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART1_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART1_FREERUN", "UMask": "0x21", "Unit": "iio_free_running" }, @@ -52,7 +50,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART2_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART2_FREERUN", "UMask": "0x22", "Unit": "iio_free_running" }, @@ -61,7 +58,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART3_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART3_FREERUN", "UMask": "0x23", "Unit": "iio_free_running" }, @@ -70,7 +66,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART4_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART4_FREERUN", "UMask": "0x24", "Unit": "iio_free_running" }, @@ -79,7 +74,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART5_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART5_FREERUN", "UMask": "0x25", "Unit": "iio_free_running" }, @@ -88,7 +82,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART6_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART6_FREERUN", "UMask": "0x26", "Unit": "iio_free_running" }, @@ -97,7 +90,6 @@ "EventCode": "0xff", "EventName": "UNC_IIO_BANDWIDTH_IN.PART7_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_IIO_BANDWIDTH_IN.PART7_FREERUN", "UMask": "0x27", "Unit": "iio_free_running" }, diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-memory.json b= /tools/perf/pmu-events/arch/x86/snowridgex/uncore-memory.json index 530e9b71b92a..b80911d498dd 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-memory.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/uncore-memory.json @@ -130,7 +130,6 @@ "EventCode": "0xff", "EventName": "UNC_M_CLOCKTICKS_FREERUN", "PerPkg": "1", - "PublicDescription": "UNC_M_CLOCKTICKS_FREERUN", "UMask": "0x10", "Unit": "imc_free_running" }, @@ -322,7 +321,7 @@ "EventCode": "0x02", "EventName": "UNC_M_PRE_COUNT.PGT", "PerPkg": "1", - "PublicDescription": "DRAM Precharge commands. : Precharge due to = page table : Counts the number of DRAM Precharge commands sent on this chan= nel. : Prechages from Page Table", + "PublicDescription": "DRAM Precharge commands. : Precharge due to = page table : Counts the number of DRAM Precharge commands sent on this chan= nel. : Precharges from Page Table", "UMask": "0x10", "Unit": "iMC" }, @@ -497,7 +496,7 @@ "EventCode": "0x82", "EventName": "UNC_M_WPQ_OCCUPANCY_PCH0", "PerPkg": "1", - "PublicDescription": "Write Pending Queue Occupancy : Accumulates = the occupancies of the Write Pending Queue each cycle. This can then be us= ed to calculate both the average queue occupancy (in conjunction with the n= umber of cycles not empty) and the average latency (in conjunction with the= number of allocations). The WPQ is used to schedule write out to the memo= ry controller and to track the writes. Requests allocate into the WPQ soon= after they enter the memory controller, and need credits for an entry in t= his buffer before being sent from the HA to the iMC. They deallocate after= being issued to DRAM. Write requests themselves are able to complete (fro= m the perspective of the rest of the system) as soon they have posted to th= e iMC. This is not to be confused with actually performing the write to DR= AM. Therefore, the average latency for this queue is actually not useful f= or deconstruction intermediate write latencies. So, we provide filtering b= ased on if the request has posted or not. By using the not posted filter, = we can track how long writes spent in the iMC before completions were sent = to the HA. The posted filter, on the other hand, provides information abou= t how much queueing is actually happenning in the iMC for writes before the= y are actually issued to memory. High average occupancies will generally c= oincide with high write major mode counts.", + "PublicDescription": "Write Pending Queue Occupancy : Accumulates = the occupancies of the Write Pending Queue each cycle. This can then be us= ed to calculate both the average queue occupancy (in conjunction with the n= umber of cycles not empty) and the average latency (in conjunction with the= number of allocations). The WPQ is used to schedule write out to the memo= ry controller and to track the writes. Requests allocate into the WPQ soon= after they enter the memory controller, and need credits for an entry in t= his buffer before being sent from the HA to the iMC. They deallocate after= being issued to DRAM. Write requests themselves are able to complete (fro= m the perspective of the rest of the system) as soon they have posted to th= e iMC. This is not to be confused with actually performing the write to DR= AM. Therefore, the average latency for this queue is actually not useful f= or deconstruction intermediate write latencies. So, we provide filtering b= ased on if the request has posted or not. By using the not posted filter, = we can track how long writes spent in the iMC before completions were sent = to the HA. The posted filter, on the other hand, provides information abou= t how much queueing is actually happening in the iMC for writes before they= are actually issued to memory. High average occupancies will generally co= incide with high write major mode counts.", "Unit": "iMC" }, { @@ -505,7 +504,7 @@ "EventCode": "0x83", "EventName": "UNC_M_WPQ_OCCUPANCY_PCH1", "PerPkg": "1", - "PublicDescription": "Write Pending Queue Occupancy : Accumulates = the occupancies of the Write Pending Queue each cycle. This can then be us= ed to calculate both the average queue occupancy (in conjunction with the n= umber of cycles not empty) and the average latency (in conjunction with the= number of allocations). The WPQ is used to schedule write out to the memo= ry controller and to track the writes. Requests allocate into the WPQ soon= after they enter the memory controller, and need credits for an entry in t= his buffer before being sent from the HA to the iMC. They deallocate after= being issued to DRAM. Write requests themselves are able to complete (fro= m the perspective of the rest of the system) as soon they have posted to th= e iMC. This is not to be confused with actually performing the write to DR= AM. Therefore, the average latency for this queue is actually not useful f= or deconstruction intermediate write latencies. So, we provide filtering b= ased on if the request has posted or not. By using the not posted filter, = we can track how long writes spent in the iMC before completions were sent = to the HA. The posted filter, on the other hand, provides information abou= t how much queueing is actually happenning in the iMC for writes before the= y are actually issued to memory. High average occupancies will generally c= oincide with high write major mode counts.", + "PublicDescription": "Write Pending Queue Occupancy : Accumulates = the occupancies of the Write Pending Queue each cycle. This can then be us= ed to calculate both the average queue occupancy (in conjunction with the n= umber of cycles not empty) and the average latency (in conjunction with the= number of allocations). The WPQ is used to schedule write out to the memo= ry controller and to track the writes. Requests allocate into the WPQ soon= after they enter the memory controller, and need credits for an entry in t= his buffer before being sent from the HA to the iMC. They deallocate after= being issued to DRAM. Write requests themselves are able to complete (fro= m the perspective of the rest of the system) as soon they have posted to th= e iMC. This is not to be confused with actually performing the write to DR= AM. Therefore, the average latency for this queue is actually not useful f= or deconstruction intermediate write latencies. So, we provide filtering b= ased on if the request has posted or not. By using the not posted filter, = we can track how long writes spent in the iMC before completions were sent = to the HA. The posted filter, on the other hand, provides information abou= t how much queueing is actually happening in the iMC for writes before they= are actually issued to memory. High average occupancies will generally co= incide with high write major mode counts.", "Unit": "iMC" }, { diff --git a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-power.json b/= tools/perf/pmu-events/arch/x86/snowridgex/uncore-power.json index 27fc155f1223..a61ffca2dfea 100644 --- a/tools/perf/pmu-events/arch/x86/snowridgex/uncore-power.json +++ b/tools/perf/pmu-events/arch/x86/snowridgex/uncore-power.json @@ -149,7 +149,7 @@ "EventCode": "0x80", "EventName": "UNC_P_POWER_STATE_OCCUPANCY.CORES_C0", "PerPkg": "1", - "PublicDescription": "Number of cores in C-State : C0 and C1 : Thi= s is an occupancy event that tracks the number of cores that are in the cho= sen C-State. It can be used by itself to get the average number of cores i= n that C-state with threshholding to generate histograms, or with other PCU= events and occupancy triggering to capture other details.", + "PublicDescription": "Number of cores in C-State : C0 and C1 : Thi= s is an occupancy event that tracks the number of cores that are in the cho= sen C-State. It can be used by itself to get the average number of cores i= n that C-state with thresholding to generate histograms, or with other PCU = events and occupancy triggering to capture other details.", "Unit": "PCU" }, { @@ -157,7 +157,7 @@ "EventCode": "0x80", "EventName": "UNC_P_POWER_STATE_OCCUPANCY.CORES_C3", "PerPkg": "1", - "PublicDescription": "Number of cores in C-State : C3 : This is an= occupancy event that tracks the number of cores that are in the chosen C-S= tate. It can be used by itself to get the average number of cores in that = C-state with threshholding to generate histograms, or with other PCU events= and occupancy triggering to capture other details.", + "PublicDescription": "Number of cores in C-State : C3 : This is an= occupancy event that tracks the number of cores that are in the chosen C-S= tate. It can be used by itself to get the average number of cores in that = C-state with thresholding to generate histograms, or with other PCU events = and occupancy triggering to capture other details.", "Unit": "PCU" }, { @@ -165,7 +165,7 @@ "EventCode": "0x80", "EventName": "UNC_P_POWER_STATE_OCCUPANCY.CORES_C6", "PerPkg": "1", - "PublicDescription": "Number of cores in C-State : C6 and C7 : Thi= s is an occupancy event that tracks the number of cores that are in the cho= sen C-State. It can be used by itself to get the average number of cores i= n that C-state with threshholding to generate histograms, or with other PCU= events and occupancy triggering to capture other details.", + "PublicDescription": "Number of cores in C-State : C6 and C7 : Thi= s is an occupancy event that tracks the number of cores that are in the cho= sen C-State. It can be used by itself to get the average number of cores i= n that C-state with thresholding to generate histograms, or with other PCU = events and occupancy triggering to capture other details.", "Unit": "PCU" }, { --=20 2.40.1.606.ga4b1b128d6-goog