From patchwork Thu Aug 13 17:13:35 2020 Content-Type: text/plain; charset="utf-8" MIME-Version: 1.0 Content-Transfer-Encoding: 7bit X-Patchwork-Submitter: Lad Prabhakar X-Patchwork-Id: 11712739 X-Patchwork-Delegate: kieran@bingham.xyz 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 696E813A4 for ; Thu, 13 Aug 2020 17:14:02 +0000 (UTC) Received: from vger.kernel.org (vger.kernel.org [23.128.96.18]) by mail.kernel.org (Postfix) with ESMTP id 4E04620829 for ; Thu, 13 Aug 2020 17:14:02 +0000 (UTC) Received: (majordomo@vger.kernel.org) by vger.kernel.org via listexpand id S1726631AbgHMROC (ORCPT ); Thu, 13 Aug 2020 13:14:02 -0400 Received: from relmlor1.renesas.com ([210.160.252.171]:10620 "EHLO relmlie5.idc.renesas.com" rhost-flags-OK-OK-OK-FAIL) by vger.kernel.org with ESMTP id S1726248AbgHMROB (ORCPT ); Thu, 13 Aug 2020 13:14:01 -0400 X-IronPort-AV: E=Sophos;i="5.76,309,1592838000"; d="scan'208";a="54526441" Received: from unknown (HELO relmlir5.idc.renesas.com) ([10.200.68.151]) by relmlie5.idc.renesas.com with ESMTP; 14 Aug 2020 02:14:00 +0900 Received: from localhost.localdomain (unknown [10.226.36.204]) by relmlir5.idc.renesas.com (Postfix) with ESMTP id F21D64005E0F; Fri, 14 Aug 2020 02:13:57 +0900 (JST) From: Lad Prabhakar To: Steve Longerbeam , Jacopo Mondi , Sakari Ailus , Laurent Pinchart , Paul , Hugues Fruchet Cc: linux-media@vger.kernel.org, linux-kernel@vger.kernel.org, linux-renesas-soc@vger.kernel.org, Lad Prabhakar , Prabhakar Subject: [PATCH v3 1/3] media: i2c: ov5640: Enable data pins on poweron for DVP mode Date: Thu, 13 Aug 2020 18:13:35 +0100 Message-Id: <20200813171337.5540-2-prabhakar.mahadev-lad.rj@bp.renesas.com> X-Mailer: git-send-email 2.17.1 In-Reply-To: <20200813171337.5540-1-prabhakar.mahadev-lad.rj@bp.renesas.com> References: <20200813171337.5540-1-prabhakar.mahadev-lad.rj@bp.renesas.com> Sender: linux-renesas-soc-owner@vger.kernel.org Precedence: bulk List-ID: X-Mailing-List: linux-renesas-soc@vger.kernel.org During testing this sensor on iW-RainboW-G21D-Qseven platform in 8-bit DVP mode with rcar-vin bridge noticed the capture worked fine for the first run (with yavta), but for subsequent runs the bridge driver waited for the frame to be captured. Debugging further noticed the data lines were enabled/disabled in stream on/off callback and dumping the register contents 0x3017/0x3018 in ov5640_set_stream_dvp() reported the correct values, but yet frame capturing failed. To get around this issue the following actions are performed for parallel mode (DVP): 1: Keeps the sensor in software power down mode and is woken up only in ov5640_set_stream_dvp() callback. 2: Enables data lines in s_power callback 3: Configures HVP lines in s_power callback instead of configuring everytime in ov5640_set_stream_dvp(). 4: Disables MIPI interface. Fixes: f22996db44e2d ("media: ov5640: add support of DVP parallel interface") Signed-off-by: Lad Prabhakar Reviewed-by: Biju Das Tested-by: Jacopo Mondi --- drivers/media/i2c/ov5640.c | 323 ++++++++++++++++++++----------------- 1 file changed, 173 insertions(+), 150 deletions(-) diff --git a/drivers/media/i2c/ov5640.c b/drivers/media/i2c/ov5640.c index 2fe4a7ac0592..e36bc08bc17f 100644 --- a/drivers/media/i2c/ov5640.c +++ b/drivers/media/i2c/ov5640.c @@ -34,6 +34,8 @@ #define OV5640_REG_SYS_RESET02 0x3002 #define OV5640_REG_SYS_CLOCK_ENABLE02 0x3006 #define OV5640_REG_SYS_CTRL0 0x3008 +#define OV5640_REG_SYS_CTRL0_SW_PWDN 0x42 +#define OV5640_REG_SYS_CTRL0_SW_PWUP 0x02 #define OV5640_REG_CHIP_ID 0x300a #define OV5640_REG_IO_MIPI_CTRL00 0x300e #define OV5640_REG_PAD_OUTPUT_ENABLE01 0x3017 @@ -274,8 +276,7 @@ static inline struct v4l2_subdev *ctrl_to_sd(struct v4l2_ctrl *ctrl) /* YUV422 UYVY VGA@30fps */ static const struct reg_value ov5640_init_setting_30fps_VGA[] = { {0x3103, 0x11, 0, 0}, {0x3008, 0x82, 0, 5}, {0x3008, 0x42, 0, 0}, - {0x3103, 0x03, 0, 0}, {0x3017, 0x00, 0, 0}, {0x3018, 0x00, 0, 0}, - {0x3630, 0x36, 0, 0}, + {0x3103, 0x03, 0, 0}, {0x3630, 0x36, 0, 0}, {0x3631, 0x0e, 0, 0}, {0x3632, 0xe2, 0, 0}, {0x3633, 0x12, 0, 0}, {0x3621, 0xe0, 0, 0}, {0x3704, 0xa0, 0, 0}, {0x3703, 0x5a, 0, 0}, {0x3715, 0x78, 0, 0}, {0x3717, 0x01, 0, 0}, {0x370b, 0x60, 0, 0}, @@ -1120,6 +1121,12 @@ static int ov5640_load_regs(struct ov5640_dev *sensor, val = regs->val; mask = regs->mask; + /* remain in power down mode for DVP */ + if (regs->reg_addr == OV5640_REG_SYS_CTRL0 && + val == OV5640_REG_SYS_CTRL0_SW_PWUP && + sensor->ep.bus_type != V4L2_MBUS_CSI2_DPHY) + continue; + if (mask) ret = ov5640_mod_reg(sensor, reg_addr, mask, val); else @@ -1210,96 +1217,9 @@ static int ov5640_set_autogain(struct ov5640_dev *sensor, bool on) static int ov5640_set_stream_dvp(struct ov5640_dev *sensor, bool on) { - int ret; - unsigned int flags = sensor->ep.bus.parallel.flags; - u8 pclk_pol = 0; - u8 hsync_pol = 0; - u8 vsync_pol = 0; - - /* - * Note about parallel port configuration. - * - * When configured in parallel mode, the OV5640 will - * output 10 bits data on DVP data lines [9:0]. - * If only 8 bits data are wanted, the 8 bits data lines - * of the camera interface must be physically connected - * on the DVP data lines [9:2]. - * - * Control lines polarity can be configured through - * devicetree endpoint control lines properties. - * If no endpoint control lines properties are set, - * polarity will be as below: - * - VSYNC: active high - * - HREF: active low - * - PCLK: active low - */ - - if (on) { - /* - * configure parallel port control lines polarity - * - * POLARITY CTRL0 - * - [5]: PCLK polarity (0: active low, 1: active high) - * - [1]: HREF polarity (0: active low, 1: active high) - * - [0]: VSYNC polarity (mismatch here between - * datasheet and hardware, 0 is active high - * and 1 is active low...) - */ - if (flags & V4L2_MBUS_PCLK_SAMPLE_RISING) - pclk_pol = 1; - if (flags & V4L2_MBUS_HSYNC_ACTIVE_HIGH) - hsync_pol = 1; - if (flags & V4L2_MBUS_VSYNC_ACTIVE_LOW) - vsync_pol = 1; - - ret = ov5640_write_reg(sensor, - OV5640_REG_POLARITY_CTRL00, - (pclk_pol << 5) | - (hsync_pol << 1) | - vsync_pol); - - if (ret) - return ret; - } - - /* - * powerdown MIPI TX/RX PHY & disable MIPI - * - * MIPI CONTROL 00 - * 4: PWDN PHY TX - * 3: PWDN PHY RX - * 2: MIPI enable - */ - ret = ov5640_write_reg(sensor, - OV5640_REG_IO_MIPI_CTRL00, on ? 0x18 : 0); - if (ret) - return ret; - - /* - * enable VSYNC/HREF/PCLK DVP control lines - * & D[9:6] DVP data lines - * - * PAD OUTPUT ENABLE 01 - * - 6: VSYNC output enable - * - 5: HREF output enable - * - 4: PCLK output enable - * - [3:0]: D[9:6] output enable - */ - ret = ov5640_write_reg(sensor, - OV5640_REG_PAD_OUTPUT_ENABLE01, - on ? 0x7f : 0); - if (ret) - return ret; - - /* - * enable D[5:0] DVP data lines - * - * PAD OUTPUT ENABLE 02 - * - [7:2]: D[5:0] output enable - */ - return ov5640_write_reg(sensor, - OV5640_REG_PAD_OUTPUT_ENABLE02, - on ? 0xfc : 0); + return ov5640_write_reg(sensor, OV5640_REG_SYS_CTRL0, on ? + OV5640_REG_SYS_CTRL0_SW_PWUP : + OV5640_REG_SYS_CTRL0_SW_PWDN); } static int ov5640_set_stream_mipi(struct ov5640_dev *sensor, bool on) @@ -2001,6 +1921,159 @@ static void ov5640_set_power_off(struct ov5640_dev *sensor) clk_disable_unprepare(sensor->xclk); } +static int ov5640_set_power_mipi(struct ov5640_dev *sensor, bool on) +{ + int ret = 0; + + if (!on) { + /* Reset MIPI bus settings to their default values. */ + ov5640_write_reg(sensor, OV5640_REG_IO_MIPI_CTRL00, 0x58); + ov5640_write_reg(sensor, OV5640_REG_MIPI_CTRL00, 0x04); + ov5640_write_reg(sensor, OV5640_REG_PAD_OUTPUT00, 0x00); + + return ret; + } + + /* + * Power up MIPI HS Tx and LS Rx; 2 data lanes mode + * + * 0x300e = 0x40 + * [7:5] = 010 : 2 data lanes mode (see FIXME note in + * "ov5640_set_stream_mipi()") + * [4] = 0 : Power up MIPI HS Tx + * [3] = 0 : Power up MIPI LS Rx + * [2] = 0 : MIPI interface disabled + */ + ret = ov5640_write_reg(sensor, OV5640_REG_IO_MIPI_CTRL00, 0x40); + if (ret) + return ret; + + /* + * Gate clock and set LP11 in 'no packets mode' (idle) + * + * 0x4800 = 0x24 + * [5] = 1 : Gate clock when 'no packets' + * [2] = 1 : MIPI bus in LP11 when 'no packets' + */ + ret = ov5640_write_reg(sensor, OV5640_REG_MIPI_CTRL00, 0x24); + if (ret) + return ret; + + /* + * Set data lanes and clock in LP11 when 'sleeping' + * + * 0x3019 = 0x70 + * [6] = 1 : MIPI data lane 2 in LP11 when 'sleeping' + * [5] = 1 : MIPI data lane 1 in LP11 when 'sleeping' + * [4] = 1 : MIPI clock lane in LP11 when 'sleeping' + */ + ret = ov5640_write_reg(sensor, OV5640_REG_PAD_OUTPUT00, 0x70); + if (ret) + return ret; + + /* Give lanes some time to coax into LP11 state. */ + usleep_range(500, 1000); + + return 0; +} + +static int ov5640_set_power_dvp(struct ov5640_dev *sensor, bool on) +{ + unsigned int flags = sensor->ep.bus.parallel.flags; + u8 pclk_pol = 0; + u8 hsync_pol = 0; + u8 vsync_pol = 0; + int ret = 0; + + if (!on) { + /* Reset settings to their default values. */ + ov5640_write_reg(sensor, OV5640_REG_IO_MIPI_CTRL00, 0x58); + ov5640_write_reg(sensor, OV5640_REG_POLARITY_CTRL00, 0x20); + ov5640_write_reg(sensor, OV5640_REG_PAD_OUTPUT_ENABLE01, 0x00); + ov5640_write_reg(sensor, OV5640_REG_PAD_OUTPUT_ENABLE02, 0x00); + + return ret; + } + + /* + * Note about parallel port configuration. + * + * When configured in parallel mode, the OV5640 will + * output 10 bits data on DVP data lines [9:0]. + * If only 8 bits data are wanted, the 8 bits data lines + * of the camera interface must be physically connected + * on the DVP data lines [9:2]. + * + * Control lines polarity can be configured through + * devicetree endpoint control lines properties. + * If no endpoint control lines properties are set, + * polarity will be as below: + * - VSYNC: active high + * - HREF: active low + * - PCLK: active low + */ + /* + * configure parallel port control lines polarity + * + * POLARITY CTRL0 + * - [5]: PCLK polarity (0: active low, 1: active high) + * - [1]: HREF polarity (0: active low, 1: active high) + * - [0]: VSYNC polarity (mismatch here between + * datasheet and hardware, 0 is active high + * and 1 is active low...) + */ + if (flags & V4L2_MBUS_PCLK_SAMPLE_RISING) + pclk_pol = 1; + if (flags & V4L2_MBUS_HSYNC_ACTIVE_HIGH) + hsync_pol = 1; + if (flags & V4L2_MBUS_VSYNC_ACTIVE_LOW) + vsync_pol = 1; + + ret = ov5640_write_reg(sensor, OV5640_REG_POLARITY_CTRL00, + (pclk_pol << 5) | (hsync_pol << 1) | vsync_pol); + + if (ret) + return ret; + + /* + * powerdown MIPI TX/RX PHY & disable MIPI + * + * MIPI CONTROL 00 + * 4: PWDN PHY TX + * 3: PWDN PHY RX + * 2: MIPI enable + */ + ret = ov5640_write_reg(sensor, OV5640_REG_IO_MIPI_CTRL00, 0x18); + if (ret) + return ret; + + /* + * enable VSYNC/HREF/PCLK DVP control lines + * & D[9:6] DVP data lines + * + * PAD OUTPUT ENABLE 01 + * - 6: VSYNC output enable + * - 5: HREF output enable + * - 4: PCLK output enable + * - [3:0]: D[9:6] output enable + */ + ret = ov5640_write_reg(sensor, OV5640_REG_PAD_OUTPUT_ENABLE01, 0x7f); + if (ret) + return ret; + + /* + * enable D[5:0] DVP data lines + * + * PAD OUTPUT ENABLE 02 + * - [7:2]: D[5:0] output enable + */ + ret = ov5640_write_reg(sensor, OV5640_REG_PAD_OUTPUT_ENABLE02, 0xfc); + if (ret) + return ret; + + return 0; +} + static int ov5640_set_power(struct ov5640_dev *sensor, bool on) { int ret = 0; @@ -2013,67 +2086,17 @@ static int ov5640_set_power(struct ov5640_dev *sensor, bool on) ret = ov5640_restore_mode(sensor); if (ret) goto power_off; + } - /* We're done here for DVP bus, while CSI-2 needs setup. */ - if (sensor->ep.bus_type != V4L2_MBUS_CSI2_DPHY) - return 0; - - /* - * Power up MIPI HS Tx and LS Rx; 2 data lanes mode - * - * 0x300e = 0x40 - * [7:5] = 010 : 2 data lanes mode (see FIXME note in - * "ov5640_set_stream_mipi()") - * [4] = 0 : Power up MIPI HS Tx - * [3] = 0 : Power up MIPI LS Rx - * [2] = 0 : MIPI interface disabled - */ - ret = ov5640_write_reg(sensor, - OV5640_REG_IO_MIPI_CTRL00, 0x40); - if (ret) - goto power_off; - - /* - * Gate clock and set LP11 in 'no packets mode' (idle) - * - * 0x4800 = 0x24 - * [5] = 1 : Gate clock when 'no packets' - * [2] = 1 : MIPI bus in LP11 when 'no packets' - */ - ret = ov5640_write_reg(sensor, - OV5640_REG_MIPI_CTRL00, 0x24); - if (ret) - goto power_off; - - /* - * Set data lanes and clock in LP11 when 'sleeping' - * - * 0x3019 = 0x70 - * [6] = 1 : MIPI data lane 2 in LP11 when 'sleeping' - * [5] = 1 : MIPI data lane 1 in LP11 when 'sleeping' - * [4] = 1 : MIPI clock lane in LP11 when 'sleeping' - */ - ret = ov5640_write_reg(sensor, - OV5640_REG_PAD_OUTPUT00, 0x70); - if (ret) - goto power_off; - - /* Give lanes some time to coax into LP11 state. */ - usleep_range(500, 1000); - - } else { - if (sensor->ep.bus_type == V4L2_MBUS_CSI2_DPHY) { - /* Reset MIPI bus settings to their default values. */ - ov5640_write_reg(sensor, - OV5640_REG_IO_MIPI_CTRL00, 0x58); - ov5640_write_reg(sensor, - OV5640_REG_MIPI_CTRL00, 0x04); - ov5640_write_reg(sensor, - OV5640_REG_PAD_OUTPUT00, 0x00); - } + if (sensor->ep.bus_type == V4L2_MBUS_CSI2_DPHY) + ret = ov5640_set_power_mipi(sensor, on); + else + ret = ov5640_set_power_dvp(sensor, on); + if (ret) + goto power_off; + if (!on) ov5640_set_power_off(sensor); - } return 0;