From patchwork Mon Nov 4 13:30:19 2019 Content-Type: text/plain; charset="utf-8" MIME-Version: 1.0 Content-Transfer-Encoding: 7bit X-Patchwork-Submitter: Pascal Paillet X-Patchwork-Id: 11225815 X-Patchwork-Delegate: eduardo.valentin@ti.com Return-Path: Received: from mail.kernel.org (pdx-korg-mail-1.web.codeaurora.org [172.30.200.123]) by pdx-korg-patchwork-2.web.codeaurora.org (Postfix) with ESMTP id 344C8913 for ; Mon, 4 Nov 2019 13:31:03 +0000 (UTC) Received: from vger.kernel.org (vger.kernel.org [209.132.180.67]) by mail.kernel.org (Postfix) with ESMTP id 0860B20B7C for ; Mon, 4 Nov 2019 13:31:03 +0000 (UTC) Authentication-Results: mail.kernel.org; dkim=pass (2048-bit key) header.d=st.com header.i=@st.com header.b="PIgiBoa1" Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S1729246AbfKDNax (ORCPT ); Mon, 4 Nov 2019 08:30:53 -0500 Received: from mx08-00178001.pphosted.com ([91.207.212.93]:52648 "EHLO mx07-00178001.pphosted.com" rhost-flags-OK-OK-OK-FAIL) by vger.kernel.org with ESMTP id S1729153AbfKDNaw (ORCPT ); Mon, 4 Nov 2019 08:30:52 -0500 Received: from pps.filterd (m0046661.ppops.net [127.0.0.1]) by mx08-00178001.pphosted.com (8.16.0.42/8.16.0.42) with SMTP id xA4DNH0m017943; Mon, 4 Nov 2019 14:30:26 +0100 DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=st.com; h=from : to : subject : date : message-id : in-reply-to : references : mime-version : content-type; s=STMicroelectronics; bh=p03njtumV+HleK/1bWaZoOME3iGFRP863OGQq660Kvk=; b=PIgiBoa1kx8JUAVRMEO5EaQyJIOEtCjt1ITCMuEomInl3tm0zvZ2t15v2w8EffHY5xFL NQk0b5LwrdNokQLubAgkdod7vRMa8jFVVNtDpclmhcHQyT9Q0hCTwNrY2FREDyjjpPRl kygUqtUwC7fzs9qg0vNywIrdnaRKOGBcz+bTAMP9ewfJqwTPZe3cayXSizq3Ql5Elt2h 1cO1qdkuq5fJmPanp/xLSEPmqZQZbiLZdZDdekOzVNcbEmLiUMvKe3a5TXeLMK9PECBC +ZZOjGMhQ4QqP71VOVerViNK+kbiBCI014/b71K3970LohiZoGMMdk/imJvu/JMcjDYL Qw== Received: from beta.dmz-eu.st.com (beta.dmz-eu.st.com [164.129.1.35]) by mx08-00178001.pphosted.com with ESMTP id 2w11jn1vxh-1 (version=TLSv1.2 cipher=ECDHE-RSA-AES256-GCM-SHA384 bits=256 verify=NOT); Mon, 04 Nov 2019 14:30:26 +0100 Received: from euls16034.sgp.st.com (euls16034.sgp.st.com [10.75.44.20]) by beta.dmz-eu.st.com (STMicroelectronics) with ESMTP id DF34B10003D; Mon, 4 Nov 2019 14:30:25 +0100 (CET) Received: from Webmail-eu.st.com (sfhdag6node2.st.com [10.75.127.17]) by euls16034.sgp.st.com (STMicroelectronics) with ESMTP id CEE9C2FF5C2; Mon, 4 Nov 2019 14:30:25 +0100 (CET) Received: from localhost (10.75.127.50) by SFHDAG6NODE2.st.com (10.75.127.17) with Microsoft SMTP Server (TLS) id 15.0.1347.2; Mon, 4 Nov 2019 14:30:25 +0100 From: Pascal Paillet To: , , , , , , , , , , , , , Subject: [PATCH v2 4/5] thermal: stm32: improve temperature resolution Date: Mon, 4 Nov 2019 14:30:19 +0100 Message-ID: <20191104133020.8820-5-p.paillet@st.com> X-Mailer: git-send-email 2.17.1 In-Reply-To: <20191104133020.8820-1-p.paillet@st.com> References: <20191104133020.8820-1-p.paillet@st.com> MIME-Version: 1.0 X-Originating-IP: [10.75.127.50] X-ClientProxiedBy: SFHDAG4NODE3.st.com (10.75.127.12) To SFHDAG6NODE2.st.com (10.75.127.17) X-Proofpoint-Virus-Version: vendor=fsecure engine=2.50.10434:6.0.95,1.0.8 definitions=2019-11-04_08:2019-11-04,2019-11-04 signatures=0 Sender: linux-pm-owner@vger.kernel.org Precedence: bulk List-ID: X-Mailing-List: linux-pm@vger.kernel.org Currently, the temperature is rounded by 1 or 2 degrees. Change the way of computing to avoid rounds. Also simplify the sampling time management. Signed-off-by: Pascal Paillet --- drivers/thermal/st/stm_thermal.c | 58 ++++++++------------------------ 1 file changed, 14 insertions(+), 44 deletions(-) diff --git a/drivers/thermal/st/stm_thermal.c b/drivers/thermal/st/stm_thermal.c index cb72252f2800..9986716b17c1 100644 --- a/drivers/thermal/st/stm_thermal.c +++ b/drivers/thermal/st/stm_thermal.c @@ -59,7 +59,6 @@ /* Less significant bit position definitions */ #define TS1_T0_POS 16 -#define TS1_SMP_TIME_POS 16 #define TS1_HITTHD_POS 16 #define TS1_LITTHD_POS 0 #define HSREF_CLK_DIV_POS 24 @@ -83,15 +82,10 @@ #define ONE_MHZ 1000000 #define POLL_TIMEOUT 5000 #define STARTUP_TIME 40 -#define TS1_T0_VAL0 30 -#define TS1_T0_VAL1 130 +#define TS1_T0_VAL0 30000 /* 30 celsius */ +#define TS1_T0_VAL1 130000 /* 130 celsius */ #define NO_HW_TRIG 0 - -/* The Thermal Framework expects millidegrees */ -#define mcelsius(temp) ((temp) * 1000) - -/* The Sensor expects oC degrees */ -#define celsius(temp) ((temp) / 1000) +#define SAMPLING_TIME 15 struct stm_thermal_sensor { struct device *dev; @@ -259,27 +253,17 @@ static int stm_thermal_calculate_threshold(struct stm_thermal_sensor *sensor, int temp, u32 *th) { int freqM; - u32 sampling_time; - - /* Retrieve the number of periods to sample */ - sampling_time = (readl_relaxed(sensor->base + DTS_CFGR1_OFFSET) & - TS1_SMP_TIME_MASK) >> TS1_SMP_TIME_POS; /* Figure out the CLK_PTAT frequency for a given temperature */ - freqM = ((temp - sensor->t0) * sensor->ramp_coeff) - + sensor->fmt0; - - dev_dbg(sensor->dev, "%s: freqM for threshold = %d Hz", - __func__, freqM); + freqM = ((temp - sensor->t0) * sensor->ramp_coeff) / 1000 + + sensor->fmt0; /* Figure out the threshold sample number */ - *th = clk_get_rate(sensor->clk); + *th = clk_get_rate(sensor->clk) * SAMPLING_TIME / freqM; if (!*th) return -EINVAL; - *th = *th / freqM; - - *th *= sampling_time; + dev_dbg(sensor->dev, "freqM=%d Hz, threshold=0x%x", freqM, *th); return 0; } @@ -371,40 +355,26 @@ static int stm_thermal_set_trips(void *data, int low, int high) static int stm_thermal_get_temp(void *data, int *temp) { struct stm_thermal_sensor *sensor = data; - u32 sampling_time; + u32 periods; int freqM, ret; if (sensor->mode != THERMAL_DEVICE_ENABLED) return -EAGAIN; - /* Retrieve the number of samples */ - ret = readl_poll_timeout(sensor->base + DTS_DR_OFFSET, freqM, - (freqM & TS1_MFREQ_MASK), STARTUP_TIME, - POLL_TIMEOUT); - + /* Retrieve the number of periods sampled */ + ret = readl_relaxed_poll_timeout(sensor->base + DTS_DR_OFFSET, periods, + (periods & TS1_MFREQ_MASK), + STARTUP_TIME, POLL_TIMEOUT); if (ret) return ret; - if (!freqM) - return -ENODATA; - - /* Retrieve the number of periods sampled */ - sampling_time = (readl_relaxed(sensor->base + DTS_CFGR1_OFFSET) & - TS1_SMP_TIME_MASK) >> TS1_SMP_TIME_POS; - - /* Figure out the number of samples per period */ - freqM /= sampling_time; - /* Figure out the CLK_PTAT frequency */ - freqM = clk_get_rate(sensor->clk) / freqM; + freqM = (clk_get_rate(sensor->clk) * SAMPLING_TIME) / periods; if (!freqM) return -EINVAL; - dev_dbg(sensor->dev, "%s: freqM=%d\n", __func__, freqM); - /* Figure out the temperature in mili celsius */ - *temp = mcelsius(sensor->t0 + ((freqM - sensor->fmt0) / - sensor->ramp_coeff)); + *temp = (freqM - sensor->fmt0) * 1000 / sensor->ramp_coeff + sensor->t0; return 0; }