return width > rect->width >> 1 || height > rect->height >> 1;
}
-static u8 to_clkrc(struct v4l2_fract *timeperframe, unsigned long pclk_max)
-{
- unsigned long pclk;
-
- if (timeperframe->numerator && timeperframe->denominator)
- pclk = pclk_max * timeperframe->denominator /
- (FRAME_RATE_MAX * timeperframe->numerator);
- else
- pclk = pclk_max;
-
- return (pclk_max - 1) / pclk;
-}
+#define to_clkrc(div) ((div) - 1)
/* set the format we will capture in */
static int ov6650_s_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf)
mclk = 12000000;
dev_dbg(&client->dev, "using 12MHz input clock\n");
- clkrc |= to_clkrc(&priv->tpf, priv->pclk_max);
+ clkrc |= to_clkrc(priv->tpf.numerator);
pclk = priv->pclk_max / GET_CLKRC_DIV(clkrc);
dev_dbg(&client->dev, "pixel clock divider: %ld.%ld\n",
struct i2c_client *client = v4l2_get_subdevdata(sd);
struct ov6650 *priv = to_ov6650(client);
- ival->interval.numerator = GET_CLKRC_DIV(to_clkrc(&priv->tpf,
- priv->pclk_max));
- ival->interval.denominator = FRAME_RATE_MAX;
+ ival->interval = priv->tpf;
dev_dbg(&client->dev, "Frame interval: %u/%u s\n",
ival->interval.numerator, ival->interval.denominator);
struct ov6650 *priv = to_ov6650(client);
struct v4l2_fract *tpf = &ival->interval;
int div, ret;
- u8 clkrc;
if (tpf->numerator == 0 || tpf->denominator == 0)
div = 1; /* Reset to full rate */
else if (div > GET_CLKRC_DIV(CLKRC_DIV_MASK))
div = GET_CLKRC_DIV(CLKRC_DIV_MASK);
- tpf->numerator = div;
- tpf->denominator = FRAME_RATE_MAX;
-
- clkrc = to_clkrc(tpf, priv->pclk_max);
-
- ret = ov6650_reg_rmw(client, REG_CLKRC, clkrc, CLKRC_DIV_MASK);
+ ret = ov6650_reg_rmw(client, REG_CLKRC, to_clkrc(div), CLKRC_DIV_MASK);
if (!ret) {
- priv->tpf.numerator = GET_CLKRC_DIV(clkrc);
+ priv->tpf.numerator = div;
priv->tpf.denominator = FRAME_RATE_MAX;
*tpf = priv->tpf;