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author | Matthias Vogelgesang <matthias.vogelgesang@gmail.com> | 2012-08-07 18:05:46 +0200 |
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committer | Matthias Vogelgesang <matthias.vogelgesang@gmail.com> | 2012-08-07 18:05:46 +0200 |
commit | cad65db83f908afa02325bf3c8343b72544aa359 (patch) | |
tree | 9d995a33610f4597742239aac51b7b0ee80b55b1 /src | |
parent | 0266f7e80438a7860883397cc6724d4a3ab14ee2 (diff) | |
download | uca-cad65db83f908afa02325bf3c8343b72544aa359.tar.gz uca-cad65db83f908afa02325bf3c8343b72544aa359.tar.bz2 uca-cad65db83f908afa02325bf3c8343b72544aa359.tar.xz uca-cad65db83f908afa02325bf3c8343b72544aa359.zip |
Properly convert register values to exposure time
Diffstat (limited to 'src')
-rw-r--r-- | src/cameras/uca-ufo-camera.c | 22 |
1 files changed, 15 insertions, 7 deletions
diff --git a/src/cameras/uca-ufo-camera.c b/src/cameras/uca-ufo-camera.c index b17e417..51b984a 100644 --- a/src/cameras/uca-ufo-camera.c +++ b/src/cameras/uca-ufo-camera.c @@ -96,7 +96,10 @@ struct _UcaUfoCameraPrivate { pcilib_t *handle; pcilib_timeout_t timeout; guint n_bits; - guint bit_mode; + enum { + FPGA_48MHZ = 0, + FPGA_40MHZ + } frequency; }; static void @@ -203,7 +206,7 @@ UcaUfoCamera *uca_ufo_camera_new(GError **error) UcaUfoCamera *camera = g_object_new(UCA_TYPE_UFO_CAMERA, NULL); UcaUfoCameraPrivate *priv = UCA_UFO_CAMERA_GET_PRIVATE(camera); - priv->bit_mode = read_register_value (handle, "bit_mode"); + priv->frequency = read_register_value (handle, "bit_mode"); adc_resolution = read_register_value (handle, "adc_resolution"); switch (adc_resolution) { @@ -307,14 +310,16 @@ static void uca_ufo_camera_grab(UcaCamera *camera, gpointer *data, GError **erro PCILIB_SET_ERROR(err, UCA_UFO_CAMERA_ERROR_MAYBE_CORRUPTED); } -static void uca_ufo_camera_set_property(GObject *object, guint property_id, const GValue *value, GParamSpec *pspec) +static void +uca_ufo_camera_set_property(GObject *object, guint property_id, const GValue *value, GParamSpec *pspec) { UcaUfoCameraPrivate *priv = UCA_UFO_CAMERA_GET_PRIVATE(object); switch (property_id) { case PROP_EXPOSURE_TIME: { - pcilib_register_value_t reg_value = (pcilib_register_value_t) EXPOSURE_TIME_SCALE * g_value_get_double(value); + const guint frequency = priv->frequency == FPGA_40MHZ ? 40 : 48; + pcilib_register_value_t reg_value = (pcilib_register_value_t) 129 / frequency * 1000 * 1000 * g_value_get_double(value); pcilib_write_register(priv->handle, NULL, "cmosis_exp_time", reg_value); } break; @@ -371,8 +376,8 @@ uca_ufo_camera_get_property(GObject *object, guint property_id, GValue *value, G break; case PROP_SENSOR_TEMPERATURE: { - const double a = priv->bit_mode == 0 ? 0.3 : 0.25; - const double b = priv->bit_mode == 0 ? 1000 : 1200; + const double a = priv->frequency == FPGA_48MHZ ? 0.3 : 0.25; + const double b = priv->frequency == FPGA_48MHZ ? 1000 : 1200; guint32 temperature; temperature = read_register_value (priv->handle, "sensor_temperature"); @@ -390,7 +395,10 @@ uca_ufo_camera_get_property(GObject *object, guint property_id, GValue *value, G } break; case PROP_EXPOSURE_TIME: - g_value_set_double (value, read_register_value (priv->handle, "cmosis_exp_time") / EXPOSURE_TIME_SCALE); + { + const gdouble frequency = priv->frequency == FPGA_40MHZ ? 40.0 : 48.0; + g_value_set_double (value, read_register_value (priv->handle, "cmosis_exp_time") * 129 / frequency / 1000 / 1000 ); + } break; case PROP_HAS_STREAMING: g_value_set_boolean(value, TRUE); |