ALSA: usb-audio: fix uac control query argument
This patch fixes code readability and should have no functional change. Correct uac control query functions to account for the 1-based indexing of USB Audio Class control identifiers. The function parameter, u8 control, should be the constant defined in audio-v2.h to identify the control to be checked for readability or writeability. This patch fixes all callers that had adjusted, and makes explicit the mapping between audio_feature_info[] array index and the associated control identifier. Signed-off-by: Andrew Chant <achant@google.com> Signed-off-by: Takashi Iwai <tiwai@suse.de>
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9a2fe9b801
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21e9b3e931
3 changed files with 48 additions and 30 deletions
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@ -36,12 +36,12 @@
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static inline bool uac_v2v3_control_is_readable(u32 bmControls, u8 control)
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{
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return (bmControls >> (control * 2)) & 0x1;
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return (bmControls >> ((control - 1) * 2)) & 0x1;
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}
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static inline bool uac_v2v3_control_is_writeable(u32 bmControls, u8 control)
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{
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return (bmControls >> (control * 2)) & 0x2;
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return (bmControls >> ((control - 1) * 2)) & 0x2;
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}
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/* 4.7.2 Class-Specific AC Interface Descriptor */
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@ -214,7 +214,7 @@ static bool uac_clock_source_is_valid(struct snd_usb_audio *chip,
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/* If a clock source can't tell us whether it's valid, we assume it is */
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if (!uac_v2v3_control_is_readable(bmControls,
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UAC2_CS_CONTROL_CLOCK_VALID - 1))
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UAC2_CS_CONTROL_CLOCK_VALID))
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return 1;
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err = snd_usb_ctl_msg(dev, usb_rcvctrlpipe(dev, 0), UAC2_CS_CUR,
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@ -552,7 +552,8 @@ static int set_sample_rate_v2v3(struct snd_usb_audio *chip, int iface,
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bmControls = cs_desc->bmControls;
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}
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writeable = uac_v2v3_control_is_writeable(bmControls, UAC2_CS_CONTROL_SAM_FREQ - 1);
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writeable = uac_v2v3_control_is_writeable(bmControls,
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UAC2_CS_CONTROL_SAM_FREQ);
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if (writeable) {
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data = cpu_to_le32(rate);
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err = snd_usb_ctl_msg(dev, usb_sndctrlpipe(dev, 0), UAC2_CS_CUR,
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@ -879,26 +879,27 @@ static int check_input_term(struct mixer_build *state, int id,
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/* feature unit control information */
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struct usb_feature_control_info {
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int control;
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const char *name;
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int type; /* data type for uac1 */
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int type_uac2; /* data type for uac2 if different from uac1, else -1 */
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};
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static struct usb_feature_control_info audio_feature_info[] = {
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{ "Mute", USB_MIXER_INV_BOOLEAN, -1 },
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{ "Volume", USB_MIXER_S16, -1 },
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{ "Tone Control - Bass", USB_MIXER_S8, -1 },
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{ "Tone Control - Mid", USB_MIXER_S8, -1 },
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{ "Tone Control - Treble", USB_MIXER_S8, -1 },
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{ "Graphic Equalizer", USB_MIXER_S8, -1 }, /* FIXME: not implemeted yet */
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{ "Auto Gain Control", USB_MIXER_BOOLEAN, -1 },
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{ "Delay Control", USB_MIXER_U16, USB_MIXER_U32 },
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{ "Bass Boost", USB_MIXER_BOOLEAN, -1 },
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{ "Loudness", USB_MIXER_BOOLEAN, -1 },
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{ UAC_FU_MUTE, "Mute", USB_MIXER_INV_BOOLEAN, -1 },
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{ UAC_FU_VOLUME, "Volume", USB_MIXER_S16, -1 },
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{ UAC_FU_BASS, "Tone Control - Bass", USB_MIXER_S8, -1 },
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{ UAC_FU_MID, "Tone Control - Mid", USB_MIXER_S8, -1 },
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{ UAC_FU_TREBLE, "Tone Control - Treble", USB_MIXER_S8, -1 },
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{ UAC_FU_GRAPHIC_EQUALIZER, "Graphic Equalizer", USB_MIXER_S8, -1 }, /* FIXME: not implemented yet */
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{ UAC_FU_AUTOMATIC_GAIN, "Auto Gain Control", USB_MIXER_BOOLEAN, -1 },
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{ UAC_FU_DELAY, "Delay Control", USB_MIXER_U16, USB_MIXER_U32 },
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{ UAC_FU_BASS_BOOST, "Bass Boost", USB_MIXER_BOOLEAN, -1 },
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{ UAC_FU_LOUDNESS, "Loudness", USB_MIXER_BOOLEAN, -1 },
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/* UAC2 specific */
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{ "Input Gain Control", USB_MIXER_S16, -1 },
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{ "Input Gain Pad Control", USB_MIXER_S16, -1 },
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{ "Phase Inverter Control", USB_MIXER_BOOLEAN, -1 },
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{ UAC2_FU_INPUT_GAIN, "Input Gain Control", USB_MIXER_S16, -1 },
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{ UAC2_FU_INPUT_GAIN_PAD, "Input Gain Pad Control", USB_MIXER_S16, -1 },
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{ UAC2_FU_PHASE_INVERTER, "Phase Inverter Control", USB_MIXER_BOOLEAN, -1 },
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};
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/* private_free callback */
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@ -1293,6 +1294,17 @@ static void check_no_speaker_on_headset(struct snd_kcontrol *kctl,
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strlcpy(kctl->id.name, "Headphone", sizeof(kctl->id.name));
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}
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static struct usb_feature_control_info *get_feature_control_info(int control)
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{
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int i;
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for (i = 0; i < ARRAY_SIZE(audio_feature_info); ++i) {
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if (audio_feature_info[i].control == control)
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return &audio_feature_info[i];
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}
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return NULL;
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}
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static void build_feature_ctl(struct mixer_build *state, void *raw_desc,
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unsigned int ctl_mask, int control,
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struct usb_audio_term *iterm, int unitid,
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@ -1308,8 +1320,6 @@ static void build_feature_ctl(struct mixer_build *state, void *raw_desc,
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const struct usbmix_name_map *map;
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unsigned int range;
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control++; /* change from zero-based to 1-based value */
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if (control == UAC_FU_GRAPHIC_EQUALIZER) {
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/* FIXME: not supported yet */
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return;
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@ -1325,7 +1335,10 @@ static void build_feature_ctl(struct mixer_build *state, void *raw_desc,
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snd_usb_mixer_elem_init_std(&cval->head, state->mixer, unitid);
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cval->control = control;
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cval->cmask = ctl_mask;
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ctl_info = &audio_feature_info[control-1];
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ctl_info = get_feature_control_info(control);
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if (!ctl_info)
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return;
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if (state->mixer->protocol == UAC_VERSION_1)
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cval->val_type = ctl_info->type;
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else /* UAC_VERSION_2 */
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@ -1475,7 +1488,7 @@ static int parse_clock_source_unit(struct mixer_build *state, int unitid,
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* clock source validity. If that isn't readable, just bail out.
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*/
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if (!uac_v2v3_control_is_readable(hdr->bmControls,
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ilog2(UAC2_CS_CONTROL_CLOCK_VALID)))
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UAC2_CS_CONTROL_CLOCK_VALID))
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return 0;
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cval = kzalloc(sizeof(*cval), GFP_KERNEL);
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@ -1491,7 +1504,7 @@ static int parse_clock_source_unit(struct mixer_build *state, int unitid,
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cval->control = UAC2_CS_CONTROL_CLOCK_VALID;
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if (uac_v2v3_control_is_writeable(hdr->bmControls,
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ilog2(UAC2_CS_CONTROL_CLOCK_VALID)))
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UAC2_CS_CONTROL_CLOCK_VALID))
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kctl = snd_ctl_new1(&usb_feature_unit_ctl, cval);
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else {
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cval->master_readonly = 1;
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@ -1625,6 +1638,8 @@ static int parse_audio_feature_unit(struct mixer_build *state, int unitid,
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/* check all control types */
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for (i = 0; i < 10; i++) {
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unsigned int ch_bits = 0;
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int control = audio_feature_info[i].control;
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for (j = 0; j < channels; j++) {
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unsigned int mask;
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@ -1640,25 +1655,26 @@ static int parse_audio_feature_unit(struct mixer_build *state, int unitid,
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* (for ease of programming).
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*/
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if (ch_bits & 1)
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build_feature_ctl(state, _ftr, ch_bits, i,
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build_feature_ctl(state, _ftr, ch_bits, control,
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&iterm, unitid, 0);
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if (master_bits & (1 << i))
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build_feature_ctl(state, _ftr, 0, i, &iterm,
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unitid, 0);
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build_feature_ctl(state, _ftr, 0, control,
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&iterm, unitid, 0);
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}
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} else { /* UAC_VERSION_2/3 */
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for (i = 0; i < ARRAY_SIZE(audio_feature_info); i++) {
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unsigned int ch_bits = 0;
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unsigned int ch_read_only = 0;
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int control = audio_feature_info[i].control;
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for (j = 0; j < channels; j++) {
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unsigned int mask;
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mask = snd_usb_combine_bytes(bmaControls +
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csize * (j+1), csize);
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if (uac_v2v3_control_is_readable(mask, i)) {
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if (uac_v2v3_control_is_readable(mask, control)) {
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ch_bits |= (1 << j);
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if (!uac_v2v3_control_is_writeable(mask, i))
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if (!uac_v2v3_control_is_writeable(mask, control))
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ch_read_only |= (1 << j);
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}
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}
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@ -1677,11 +1693,12 @@ static int parse_audio_feature_unit(struct mixer_build *state, int unitid,
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* (for ease of programming).
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*/
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if (ch_bits & 1)
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build_feature_ctl(state, _ftr, ch_bits, i,
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build_feature_ctl(state, _ftr, ch_bits, control,
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&iterm, unitid, ch_read_only);
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if (uac_v2v3_control_is_readable(master_bits, i))
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if (uac_v2v3_control_is_readable(master_bits, control))
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build_feature_ctl(state, _ftr, 0, i, &iterm, unitid,
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!uac_v2v3_control_is_writeable(master_bits, i));
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!uac_v2v3_control_is_writeable(master_bits,
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control));
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}
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}
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