Merge pull request 'jetpack-4.4.1' (#8) from jetpack-4.4.1 into master
Reviewed-on: #8
This commit is contained in:
commit
0c8e4c04c7
23
README.md
23
README.md
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@ -105,23 +105,24 @@ As the AE has interdependency with the digital gain. This gain it's and operatio
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* Digital gain equation:
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* Digital gain equation:
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*
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*
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* RANGE: 1x, 7.97x
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* RANGE: 1x, 7.97x
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* GAIN: VAL / STEPS;
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* STEPS: 1/32
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* STEPS: 1/32
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*
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*
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* SCALE FACTOR = 100.000
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* SCALE FACTOR = 3
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*
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*
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* min_gain_val = 100.000
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* min_gain_val = 102
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* max_gain_val = 797.000
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* max_gain_val = 160
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* step_gain_val = 3125
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* gain_factor = 3
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*
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* gain accepts mapping to range 32 - 53
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*/
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*/
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MT9M021 sensor datasheet:
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* <a href="https://files.niemo.de/aptina_pdfs/MT9M021-M031_Developer_Guide.pdf">MT9M021 Developer Guide</a>
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```
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```
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MT9M021 sensor datasheet:
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Where, the min_gain_val, max_gain_val, step_gain_val are part of the cameras' DTSI (tegra186-tx2-spiri-camera.dtsi) fixed parameters
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* <a href="https://files.niemo.de/aptina_pdfs/MT9M021-M031_Developer_Guide.pdf">MT9M021 Developer Guide</a>
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as per the datasheet. The step_gain_val consists of the steps (1/32 for the register) scaled to a value that makes this fraction become an significant
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in integer.
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Where, the `min_gain_val, max_gain_val, step_gain_val` are part of the cameras' DTSI (tegra186-tx2-spiri-camera.dtsi) fixed parameters
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as per the datasheet. The `gain` consists on the steps (1x + n * 1/32 for the register) scaled to a value that represents this fraction in an integer value for the gain register.
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#### Kernel Changes
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#### Kernel Changes
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@ -98,25 +98,25 @@ i2c8 = "/i2c@31e0000";
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inherent_gain = "1";
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inherent_gain = "1";
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pix_clk_hz = "74250000";
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pix_clk_hz = "74250000";
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gain_factor = "3125";
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gain_factor = "3";
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framerate_factor = "1000000";
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framerate_factor = "1000000";
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exposure_factor = "1000000";
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exposure_factor = "1000000";
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min_gain_val = "100000";
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min_gain_val = "102";
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max_gain_val = "796000";
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max_gain_val = "160";
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step_gain_val = "1";
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step_gain_val = "1";
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default_gain = "100000";
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default_gain = "102";
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min_hdr_ratio = "1";
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min_hdr_ratio = "1";
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max_hdr_ratio = "1";
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max_hdr_ratio = "1";
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min_framerate = "2000000";
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min_framerate = "2000000";
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max_framerate = "60000000";
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max_framerate = "60000000";
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step_framerate = "1";
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step_framerate = "1";
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default_framerate = "60000000"; // 60.0 fps
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default_framerate = "60000000"; // 60.0 fps
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min_exp_time = "500"; // us
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min_exp_time = "24000"; // us
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max_exp_time = "16000"; // us
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max_exp_time = "74000"; // us
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step_exp_time = "1";
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step_exp_time = "1";
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default_exp_time = "12000"; // us
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default_exp_time = "50000"; // us
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};
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};
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ports {
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ports {
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#address-cells = <0x1>;
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#address-cells = <0x1>;
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@ -185,25 +185,25 @@ i2c8 = "/i2c@31e0000";
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inherent_gain = "1";
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inherent_gain = "1";
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pix_clk_hz = "74250000";
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pix_clk_hz = "74250000";
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gain_factor = "3125";
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gain_factor = "3";
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framerate_factor = "1000000";
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framerate_factor = "1000000";
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exposure_factor = "1000000";
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exposure_factor = "1000000";
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min_gain_val = "100000";
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min_gain_val = "102";
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max_gain_val = "796000";
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max_gain_val = "160" ;
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step_gain_val = "1";
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step_gain_val = "1";
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default_gain = "100000";
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default_gain = "102";
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min_hdr_ratio = "1";
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min_hdr_ratio = "1";
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max_hdr_ratio = "1";
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max_hdr_ratio = "1";
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min_framerate = "2000000";
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min_framerate = "2000000";
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max_framerate = "60000000";
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max_framerate = "60000000";
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step_framerate = "1";
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step_framerate = "1";
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default_framerate = "60000000"; // 60.0 fps
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default_framerate = "60000000"; // 60.0 fps
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min_exp_time = "500"; // us
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min_exp_time = "24000"; // us
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max_exp_time = "16000"; // us
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max_exp_time = "74000"; // us
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step_exp_time = "1";
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step_exp_time = "1";
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default_exp_time = "12000"; // us
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default_exp_time = "50000"; // us
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};
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};
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ports {
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ports {
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#address-cells = <0x1>;
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#address-cells = <0x1>;
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@ -135,8 +135,8 @@
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#define MT9M021_ANALOG_GAIN_SHIFT 4
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#define MT9M021_ANALOG_GAIN_SHIFT 4
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#define MT9M021_ANALOG_GAIN_MASK 0x0030
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#define MT9M021_ANALOG_GAIN_MASK 0x0030
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#define MT9M021_GLOBAL_GAIN_MIN 100000
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#define MT9M021_GLOBAL_GAIN_MIN 100
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#define MT9M021_GLOBAL_GAIN_MAX 796000
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#define MT9M021_GLOBAL_GAIN_MAX 762
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#define MT9M021_GLOBAL_GAIN_DEF 100
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#define MT9M021_GLOBAL_GAIN_DEF 100
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#define MT9M021_COARSE_INT_TIME_MIN 0x0001
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#define MT9M021_COARSE_INT_TIME_MIN 0x0001
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@ -417,18 +417,17 @@ static int mt9m021_set_gain(struct tegracam_device *tc_dev, s64 val)
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* Digital gain equation:
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* Digital gain equation:
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*
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*
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* RANGE: 1x, 7.97x
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* RANGE: 1x, 7.97x
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* GAIN: VAL / STEPS;
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* STEPS: 1/32
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* STEPS: 1/32
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*
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*
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* SCALE FACTOR = 100.000
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* SCALE FACTOR = 3
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*
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*
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* min_gain_val = 100.000
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* min_gain_val = 102
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* max_gain_val = 797.000
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* max_gain_val = 160
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* gain_factor = 3125
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* gain_factor = 3
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*
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*
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* gain maps to range 32 - 255
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* gain accepts mapping to range 32 - 53
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*/
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*/
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gain = val / 3125;
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gain = val / 3;
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/* Update analog gain multiplier */
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/* Update analog gain multiplier */
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err = mt9m021_read_reg16(s_data, MT9M021_DIGITAL_TEST, ®16);
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err = mt9m021_read_reg16(s_data, MT9M021_DIGITAL_TEST, ®16);
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@ -439,14 +438,12 @@ static int mt9m021_set_gain(struct tegracam_device *tc_dev, s64 val)
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((gain_mul << MT9M021_ANALOG_GAIN_SHIFT) &
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((gain_mul << MT9M021_ANALOG_GAIN_SHIFT) &
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MT9M021_ANALOG_GAIN_MASK);
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MT9M021_ANALOG_GAIN_MASK);
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err = mt9m021_write_reg16(s_data, MT9M021_DIGITAL_TEST, reg16);
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err = mt9m021_write_reg16(s_data, MT9M021_DIGITAL_TEST, reg16);
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// msleep(10);
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if (err)
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if (err)
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goto exit;
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goto exit;
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/* Update global gain */
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/* Update global gain */
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err =
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err =
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mt9m021_write_reg16(s_data, MT9M021_GLOBAL_GAIN, gain);
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mt9m021_write_reg16(s_data, MT9M021_GLOBAL_GAIN, gain);
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// msleep(10);
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if (err)
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if (err)
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goto exit;
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goto exit;
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err =
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err =
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@ -473,7 +470,7 @@ static int mt9m021_set_frame_length(struct mt9m021 *priv, s64 val)
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err = mt9m021_write_reg16(s_data, MT9M021_FRAME_LENGTH_LINES, val);
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err = mt9m021_write_reg16(s_data, MT9M021_FRAME_LENGTH_LINES, val);
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if (err)
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if (err)
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return err;
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return err;
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msleep(30);
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msleep(30);
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return 0;
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return 0;
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}
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}
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@ -520,19 +517,18 @@ static int mt9m021_set_coarse_time(struct mt9m021 *priv, s64 val)
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err = mt9m021_write_reg16(s_data, MT9M021_COARSE_INT_TIME_CB, val);
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err = mt9m021_write_reg16(s_data, MT9M021_COARSE_INT_TIME_CB, val);
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if (err)
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if (err)
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return err;
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return err;
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// msleep(30);
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return 0;
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return 0;
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}
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}
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static int mt9m021_set_exposure(struct tegracam_device *tc_dev, s64 val)
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static int mt9m021_set_exposure(struct tegracam_device *tc_dev, s64 val)
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{
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{
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struct camera_common_data *s_data = tc_dev->s_data;
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struct camera_common_data *s_data = tc_dev->s_data;
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struct mt9m021 *priv = (struct mt9m021 *)tc_dev->priv;
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struct mt9m021 *priv = (struct mt9m021 *)tc_dev->priv;
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struct device *dev = tc_dev->dev;
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struct device *dev = tc_dev->dev;
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const struct sensor_mode_properties *mode =
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const struct sensor_mode_properties *mode =
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&s_data->sensor_props.sensor_modes[s_data->mode];
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&s_data->sensor_props.sensor_modes[s_data->mode];
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u64 coarse_time;
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u64 coarse_time;
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int err = 0;
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int err = 0;
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dev_dbg(dev, "Setting Exposure Time to : %lld", val);
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dev_dbg(dev, "Setting Exposure Time to : %lld", val);
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@ -571,7 +567,6 @@ static int mt9m021_set_analog_gain(struct tegracam_device *tc_dev, s64 val)
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((val << MT9M021_ANALOG_GAIN_SHIFT) &
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((val << MT9M021_ANALOG_GAIN_SHIFT) &
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MT9M021_ANALOG_GAIN_MASK);
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MT9M021_ANALOG_GAIN_MASK);
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err = mt9m021_write_reg16(s_data, MT9M021_DIGITAL_TEST, reg16);
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err = mt9m021_write_reg16(s_data, MT9M021_DIGITAL_TEST, reg16);
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// msleep(30);
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if (err)
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if (err)
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goto exit;
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goto exit;
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@ -627,7 +622,6 @@ static int mt9m021_set_digital_gain(struct tegracam_device *tc_dev, s64 val,
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err = mt9m021_write_reg16(s_data, gain_cb_reg, val);
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err = mt9m021_write_reg16(s_data, gain_cb_reg, val);
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if (err)
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if (err)
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goto exit;
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goto exit;
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// msleep(30);
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return 0;
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return 0;
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@ -650,7 +644,6 @@ static int mt9m021_set_test_pattern(struct tegracam_device *tc_dev, s32 val)
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else
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else
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err = mt9m021_write_reg16(s_data, MT9M021_TEST_PATTERN,
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err = mt9m021_write_reg16(s_data, MT9M021_TEST_PATTERN,
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val);
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val);
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// msleep(30);
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if (err)
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if (err)
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goto exit;
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goto exit;
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@ -963,15 +956,10 @@ static int mt9m021_col_correction(struct mt9m021 *priv)
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if (ret < 0)
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if (ret < 0)
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return ret;
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return ret;
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// msleep(200);
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// usleep(200);
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/* Enable Streaming */
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/* Enable Streaming */
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ret = mt9m021_write_table(priv, mode_table[MT9M021_MODE_START_STREAM]);
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ret = mt9m021_write_table(priv, mode_table[MT9M021_MODE_START_STREAM]);
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if (ret < 0)
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if (ret < 0)
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return ret;
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return ret;
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// msleep(200);
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// usleep(200);
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/* Disable Streaming */
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/* Disable Streaming */
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ret = mt9m021_write_table(priv, mode_table[MT9M021_MODE_STOP_STREAM]);
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ret = mt9m021_write_table(priv, mode_table[MT9M021_MODE_STOP_STREAM]);
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@ -982,8 +970,6 @@ static int mt9m021_col_correction(struct mt9m021 *priv)
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ret = mt9m021_write_reg16(s_data, MT9M021_COLUMN_CORRECTION, 0xE007);
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ret = mt9m021_write_reg16(s_data, MT9M021_COLUMN_CORRECTION, 0xE007);
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if (ret < 0)
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if (ret < 0)
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return ret;
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return ret;
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// msleep(200);
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// usleep(200);
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return ret;
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return ret;
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}
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}
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