Revert "[media] rc: ir-rc5-decoder: Add encode capability"
This reverts commit a0466f15b4
.
The current code is not mature enough, the API should allow a single
protocol to be specified. Also, the current code contains heuristics
that will depend on module load order.
Signed-off-by: David Härdeman <david@hardeman.nu>
Acked-by: Antti Seppälä <a.seppala@gmail.com>
Signed-off-by: Mauro Carvalho Chehab <mchehab@osg.samsung.com>
This commit is contained in:
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@ -184,125 +184,9 @@ out:
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return -EINVAL;
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}
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static struct ir_raw_timings_manchester ir_rc5_timings = {
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.leader = RC5_UNIT,
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.pulse_space_start = 0,
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.clock = RC5_UNIT,
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.trailer_space = RC5_UNIT * 10,
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};
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static struct ir_raw_timings_manchester ir_rc5x_timings[2] = {
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{
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.leader = RC5_UNIT,
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.pulse_space_start = 0,
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.clock = RC5_UNIT,
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.trailer_space = RC5X_SPACE,
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},
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{
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.clock = RC5_UNIT,
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.trailer_space = RC5_UNIT * 10,
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},
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};
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static struct ir_raw_timings_manchester ir_rc5_sz_timings = {
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.leader = RC5_UNIT,
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.pulse_space_start = 0,
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.clock = RC5_UNIT,
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.trailer_space = RC5_UNIT * 10,
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};
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static int ir_rc5_validate_filter(const struct rc_scancode_filter *scancode,
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unsigned int important_bits)
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{
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/* all important bits of scancode should be set in mask */
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if (~scancode->mask & important_bits)
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return -EINVAL;
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/* extra bits in mask should be zero in data */
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if (scancode->mask & scancode->data & ~important_bits)
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return -EINVAL;
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return 0;
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}
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/**
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* ir_rc5_encode() - Encode a scancode as a stream of raw events
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*
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* @protocols: allowed protocols
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* @scancode: scancode filter describing scancode (helps distinguish between
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* protocol subtypes when scancode is ambiguous)
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* @events: array of raw ir events to write into
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* @max: maximum size of @events
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*
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* Returns: The number of events written.
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* -ENOBUFS if there isn't enough space in the array to fit the
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* encoding. In this case all @max events will have been written.
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* -EINVAL if the scancode is ambiguous or invalid.
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*/
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static int ir_rc5_encode(u64 protocols,
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const struct rc_scancode_filter *scancode,
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struct ir_raw_event *events, unsigned int max)
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{
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int ret;
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struct ir_raw_event *e = events;
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unsigned int data, xdata, command, commandx, system;
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/* Detect protocol and convert scancode to raw data */
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if (protocols & RC_BIT_RC5 &&
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!ir_rc5_validate_filter(scancode, 0x1f7f)) {
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/* decode scancode */
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command = (scancode->data & 0x003f) >> 0;
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commandx = (scancode->data & 0x0040) >> 6;
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system = (scancode->data & 0x1f00) >> 8;
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/* encode data */
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data = !commandx << 12 | system << 6 | command;
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/* Modulate the data */
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ret = ir_raw_gen_manchester(&e, max, &ir_rc5_timings, RC5_NBITS,
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data);
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if (ret < 0)
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return ret;
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} else if (protocols & RC_BIT_RC5X &&
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!ir_rc5_validate_filter(scancode, 0x1f7f3f)) {
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/* decode scancode */
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xdata = (scancode->data & 0x00003f) >> 0;
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command = (scancode->data & 0x003f00) >> 8;
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commandx = (scancode->data & 0x004000) >> 14;
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system = (scancode->data & 0x1f0000) >> 16;
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/* commandx and system overlap, bits must match when encoded */
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if (commandx == (system & 0x1))
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return -EINVAL;
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/* encode data */
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data = 1 << 18 | system << 12 | command << 6 | xdata;
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/* Modulate the data */
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ret = ir_raw_gen_manchester(&e, max, &ir_rc5x_timings[0],
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CHECK_RC5X_NBITS,
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data >> (RC5X_NBITS-CHECK_RC5X_NBITS));
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if (ret < 0)
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return ret;
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ret = ir_raw_gen_manchester(&e, max - (e - events),
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&ir_rc5x_timings[1],
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RC5X_NBITS - CHECK_RC5X_NBITS,
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data);
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if (ret < 0)
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return ret;
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} else if (protocols & RC_BIT_RC5_SZ &&
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!ir_rc5_validate_filter(scancode, 0x2fff)) {
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/* RC5-SZ scancode is raw enough for Manchester as it is */
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ret = ir_raw_gen_manchester(&e, max, &ir_rc5_sz_timings,
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RC5_SZ_NBITS, scancode->data & 0x2fff);
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if (ret < 0)
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return ret;
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} else {
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return -EINVAL;
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}
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return e - events;
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}
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static struct ir_raw_handler rc5_handler = {
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.protocols = RC_BIT_RC5 | RC_BIT_RC5X | RC_BIT_RC5_SZ,
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.decode = ir_rc5_decode,
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.encode = ir_rc5_encode,
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};
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static int __init ir_rc5_decode_init(void)
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