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@@ -75,7 +75,7 @@ struct sd {
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struct gspca_ctrl ctrls[NCTRL];
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- __u8 packet_nr;
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+ u8 packet_nr;
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char bridge;
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#define BRIDGE_OV511 0
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@@ -94,20 +94,20 @@ struct sd {
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char snapshot_needs_reset;
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/* Determined by sensor type */
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- __u8 sif;
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+ u8 sif;
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- __u8 quality;
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+ u8 quality;
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#define QUALITY_MIN 50
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#define QUALITY_MAX 70
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#define QUALITY_DEF 50
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- __u8 stopped; /* Streaming is temporarily paused */
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- __u8 first_frame;
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+ u8 stopped; /* Streaming is temporarily paused */
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+ u8 first_frame;
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- __u8 frame_rate; /* current Framerate */
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- __u8 clockdiv; /* clockdiv override */
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+ u8 frame_rate; /* current Framerate */
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+ u8 clockdiv; /* clockdiv override */
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- char sensor; /* Type of image sensor chip (SEN_*) */
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+ u8 sensor; /* Type of image sensor chip (SEN_*) */
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#define SEN_UNKNOWN 0
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#define SEN_OV2610 1
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#define SEN_OV3610 2
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@@ -594,12 +594,12 @@ static const struct v4l2_pix_format ovfx2_ov3610_mode[] = {
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#define OV7670_REG_BD60MAX 0xab /* 60hz banding step limit */
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struct ov_regvals {
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- __u8 reg;
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- __u8 val;
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+ u8 reg;
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+ u8 val;
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};
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struct ov_i2c_regvals {
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- __u8 reg;
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- __u8 val;
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+ u8 reg;
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+ u8 val;
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};
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/* Settings for OV2610 camera chip */
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@@ -1825,7 +1825,7 @@ static unsigned char ov7670_abs_to_sm(unsigned char v)
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}
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/* Write a OV519 register */
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-static int reg_w(struct sd *sd, __u16 index, __u16 value)
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+static int reg_w(struct sd *sd, u16 index, u16 value)
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{
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int ret, req = 0;
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@@ -1868,7 +1868,7 @@ leave:
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/* Read from a OV519 register, note not valid for the w9968cf!! */
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/* returns: negative is error, pos or zero is data */
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-static int reg_r(struct sd *sd, __u16 index)
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+static int reg_r(struct sd *sd, u16 index)
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{
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int ret;
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int req;
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@@ -1902,7 +1902,7 @@ static int reg_r(struct sd *sd, __u16 index)
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/* Read 8 values from a OV519 register */
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static int reg_r8(struct sd *sd,
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- __u16 index)
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+ u16 index)
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{
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int ret;
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@@ -1927,12 +1927,12 @@ static int reg_r8(struct sd *sd,
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* of their respective state in "value".
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*/
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static int reg_w_mask(struct sd *sd,
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- __u16 index,
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- __u8 value,
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- __u8 mask)
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+ u16 index,
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+ u8 value,
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+ u8 mask)
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{
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int ret;
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- __u8 oldval;
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+ u8 oldval;
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if (mask != 0xff) {
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value &= mask; /* Enforce mask on value */
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@@ -1950,7 +1950,7 @@ static int reg_w_mask(struct sd *sd,
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* Writes multiple (n) byte value to a single register. Only valid with certain
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* registers (0x30 and 0xc4 - 0xce).
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*/
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-static int ov518_reg_w32(struct sd *sd, __u16 index, u32 value, int n)
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+static int ov518_reg_w32(struct sd *sd, u16 index, u32 value, int n)
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{
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int ret;
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@@ -1970,7 +1970,7 @@ static int ov518_reg_w32(struct sd *sd, __u16 index, u32 value, int n)
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return 0;
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}
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-static int ov511_i2c_w(struct sd *sd, __u8 reg, __u8 value)
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+static int ov511_i2c_w(struct sd *sd, u8 reg, u8 value)
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{
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int rc, retries;
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@@ -2011,7 +2011,7 @@ static int ov511_i2c_w(struct sd *sd, __u8 reg, __u8 value)
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return 0;
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}
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-static int ov511_i2c_r(struct sd *sd, __u8 reg)
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+static int ov511_i2c_r(struct sd *sd, u8 reg)
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{
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int rc, value, retries;
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@@ -2092,8 +2092,8 @@ static int ov511_i2c_r(struct sd *sd, __u8 reg)
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* always succeeds regardless of whether the sensor is present and working.
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*/
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static int ov518_i2c_w(struct sd *sd,
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- __u8 reg,
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- __u8 value)
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+ u8 reg,
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+ u8 value)
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{
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int rc;
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@@ -2126,7 +2126,7 @@ static int ov518_i2c_w(struct sd *sd,
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* This is normally only called from i2c_r(). Note that this function
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* always succeeds regardless of whether the sensor is present and working.
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*/
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-static int ov518_i2c_r(struct sd *sd, __u8 reg)
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+static int ov518_i2c_r(struct sd *sd, u8 reg)
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{
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int rc, value;
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@@ -2149,7 +2149,7 @@ static int ov518_i2c_r(struct sd *sd, __u8 reg)
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return value;
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}
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-static int ovfx2_i2c_w(struct sd *sd, __u8 reg, __u8 value)
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+static int ovfx2_i2c_w(struct sd *sd, u8 reg, u8 value)
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{
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int ret;
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@@ -2157,7 +2157,7 @@ static int ovfx2_i2c_w(struct sd *sd, __u8 reg, __u8 value)
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usb_sndctrlpipe(sd->gspca_dev.dev, 0),
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0x02,
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USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
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- (__u16)value, (__u16)reg, NULL, 0, 500);
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+ (u16) value, (u16) reg, NULL, 0, 500);
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if (ret < 0) {
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err("i2c 0x%02x -> [0x%02x] failed", value, reg);
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@@ -2168,7 +2168,7 @@ static int ovfx2_i2c_w(struct sd *sd, __u8 reg, __u8 value)
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return 0;
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}
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-static int ovfx2_i2c_r(struct sd *sd, __u8 reg)
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+static int ovfx2_i2c_r(struct sd *sd, u8 reg)
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{
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int ret;
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@@ -2176,7 +2176,7 @@ static int ovfx2_i2c_r(struct sd *sd, __u8 reg)
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usb_rcvctrlpipe(sd->gspca_dev.dev, 0),
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0x03,
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USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
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- 0, (__u16)reg, sd->gspca_dev.usb_buf, 1, 500);
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+ 0, (u16) reg, sd->gspca_dev.usb_buf, 1, 500);
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if (ret >= 0) {
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ret = sd->gspca_dev.usb_buf[0];
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@@ -2187,7 +2187,7 @@ static int ovfx2_i2c_r(struct sd *sd, __u8 reg)
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return ret;
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}
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-static int i2c_w(struct sd *sd, __u8 reg, __u8 value)
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+static int i2c_w(struct sd *sd, u8 reg, u8 value)
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{
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int ret = -1;
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@@ -2224,7 +2224,7 @@ static int i2c_w(struct sd *sd, __u8 reg, __u8 value)
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return ret;
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}
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-static int i2c_r(struct sd *sd, __u8 reg)
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+static int i2c_r(struct sd *sd, u8 reg)
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{
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int ret = -1;
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@@ -2261,12 +2261,12 @@ static int i2c_r(struct sd *sd, __u8 reg)
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* of their respective state in "value".
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*/
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static int i2c_w_mask(struct sd *sd,
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- __u8 reg,
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- __u8 value,
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- __u8 mask)
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+ u8 reg,
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+ u8 value,
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+ u8 mask)
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{
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int rc;
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- __u8 oldval;
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+ u8 oldval;
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value &= mask; /* Enforce mask on value */
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rc = i2c_r(sd, reg);
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@@ -2334,12 +2334,12 @@ static inline int ov51x_restart(struct sd *sd)
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return 0;
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}
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-static int ov51x_set_slave_ids(struct sd *sd, __u8 slave);
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+static int ov51x_set_slave_ids(struct sd *sd, u8 slave);
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/* This does an initial reset of an OmniVision sensor and ensures that I2C
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* is synchronized. Returns <0 on failure.
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*/
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-static int init_ov_sensor(struct sd *sd, __u8 slave)
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+static int init_ov_sensor(struct sd *sd, u8 slave)
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{
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int i;
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@@ -2378,7 +2378,7 @@ static int init_ov_sensor(struct sd *sd, __u8 slave)
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* Sets I2C read and write slave IDs. Returns <0 for error
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*/
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static int ov51x_set_slave_ids(struct sd *sd,
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- __u8 slave)
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+ u8 slave)
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{
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int rc;
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@@ -3601,7 +3601,7 @@ static int mode_init_ov_sensor_regs(struct sd *sd)
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{
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struct gspca_dev *gspca_dev;
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int qvga, xstart, xend, ystart, yend;
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- __u8 v;
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+ u8 v;
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gspca_dev = &sd->gspca_dev;
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qvga = gspca_dev->cam.cam_mode[(int) gspca_dev->curr_mode].priv & 1;
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@@ -4213,7 +4213,7 @@ static void setcontrast(struct gspca_dev *gspca_dev)
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i2c_w_mask(sd, OV7610_REG_CNT, val >> 4, 0x0f);
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break;
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case SEN_OV8610: {
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- static const __u8 ctab[] = {
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+ static const u8 ctab[] = {
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0x03, 0x09, 0x0b, 0x0f, 0x53, 0x6f, 0x35, 0x7f
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};
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@@ -4223,7 +4223,7 @@ static void setcontrast(struct gspca_dev *gspca_dev)
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}
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case SEN_OV7620:
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case SEN_OV7620AE: {
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- static const __u8 ctab[] = {
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+ static const u8 ctab[] = {
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0x01, 0x05, 0x09, 0x11, 0x15, 0x35, 0x37, 0x57,
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0x5b, 0xa5, 0xa7, 0xc7, 0xc9, 0xcf, 0xef, 0xff
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};
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