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<div id="projectname">IRremoteESP8266
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<div class="title">Todo List </div> </div>
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<dt>Member <a class="el" href="classIRrecv.html#ae4af614a45ea65cb3304ef5bd7965122">IRrecv::decodeLasertag</a> (<a class="el" href="classdecode__results.html" title="Results returned from the decoder.">decode_results</a> *results, uint16_t offset=kStartOffset, const uint16_t nbits=kLasertagBits, const bool strict=true)</dt>
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<dd><a class="anchor" id="_todo000002"></a>Convert to using <code><a class="el" href="classIRrecv.html#ade70777ad0e047e11b99b03d8f5e3728" title="Match & decode a Manchester Code <= 64bit IR message. The data is stored at result_ptr.">matchManchester()</a></code> if we can. </dd>
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<dt>Member <a class="el" href="classIRrecv.html#adab9dffbeceee514520fababd0e721bd">IRrecv::decodeRC5</a> (<a class="el" href="classdecode__results.html" title="Results returned from the decoder.">decode_results</a> *results, uint16_t offset=kStartOffset, const uint16_t nbits=kRC5XBits, const bool strict=true)</dt>
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<dd><a class="anchor" id="_todo000005"></a>Serious testing of the RC-5X and strict aspects needs to be done. </dd>
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<dt>Member <a class="el" href="classIRrecv.html#a67316499ef37db82e3b3ecaac25c5980">IRrecv::decodeRC6</a> (<a class="el" href="classdecode__results.html" title="Results returned from the decoder.">decode_results</a> *results, uint16_t offset=kStartOffset, const uint16_t nbits=kRC6Mode0Bits, const bool strict=false)</dt>
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<dd><a class="anchor" id="_todo000006"></a>Testing of the strict compliance aspects. </dd>
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<dt>Member <a class="el" href="classIRrecv.html#a3390d63ba21a835d7c74c261532a22a7">IRrecv::decodeSharp</a> (<a class="el" href="classdecode__results.html" title="Results returned from the decoder.">decode_results</a> *results, uint16_t offset=kStartOffset, const uint16_t nbits=kSharpBits, const bool strict=true, const bool expansion=true)</dt>
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<dd><a class="anchor" id="_todo000010"></a>Need to ensure capture of the inverted message as it can be missed due to the interrupt timeout used to detect an end of message. Several compliance checks are disabled until that is resolved. </dd>
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<dt>Member <a class="el" href="classIRrecv.html#ab44403411a217eb8ea75271575f8ab83">IRrecv::matchManchesterData</a> (volatile const uint16_t *data_ptr, uint64_t *result_ptr, const uint16_t remaining, const uint16_t nbits, const uint16_t half_period, const uint16_t starting_balance=0, const uint8_t tolerance=kUseDefTol, const int16_t excess=kMarkExcess, const bool MSBfirst=true, const bool GEThomas=true)</dt>
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<dd><a class="anchor" id="_todo000011"></a>Clean up and optimise this. It is just "get it working code" atm. </dd>
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<dt>Member <a class="el" href="classIRSamsungAc.html#a5627d39ea3af4d1e948fc4b8339baf9b">IRSamsungAc::getSwing</a> (void) const</dt>
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<dd><a class="anchor" id="_todo000008"></a>(Hollako) Explain why sometimes the LSB of remote_state[9] is a 1. e.g. 0xAE or 0XAF for swing move. </dd>
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<dt>Member <a class="el" href="classIRSamsungAc.html#aaa7aaca1134e1565f527fcaa96a2fa6e">IRSamsungAc::setSwing</a> (const bool on)</dt>
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<dd><a class="anchor" id="_todo000009"></a>(Hollako) Explain why sometimes the LSB of remote_state[9] is a 1. e.g. 0xAE or 0XAF for swing move. </dd>
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<dt>Member <a class="el" href="classIRsend.html#a55a79f9727590044751f291a4df83892">IRsend::sendLasertag</a> (uint64_t data, uint16_t nbits=kLasertagBits, uint16_t repeat=kLasertagMinRepeat)</dt>
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<dd><a class="anchor" id="_todo000001"></a>Convert this to use <code><a class="el" href="classIRsend.html#a7862231cbb1d50f42996c25e2f05b93e" title="Generic method for sending Manchester code messages. Will send leading or trailing 0's if the nbits i...">sendManchester()</a></code> if we can.` </dd>
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<dt>Member <a class="el" href="classIRsend.html#a2bd2ccb27ecd57e14b36f76d82af308a">IRsend::sendRC5</a> (const uint64_t data, uint16_t nbits=kRC5XBits, const uint16_t repeat=kNoRepeat)</dt>
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<dd><a class="anchor" id="_todo000004"></a>Testing of the RC-5X components. </dd>
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<dt>Member <a class="el" href="classIRsend.html#a5252dd159aad713c099de6728ac56d81">IRsend::sendSAMSUNG</a> (const uint64_t data, const uint16_t nbits=kSamsungBits, const uint16_t repeat=kNoRepeat)</dt>
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<dd><a class="anchor" id="_todo000007"></a>Confirm that is actually how Samsung sends a repeat. The refdoc doesn't indicate it is true. </dd>
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<dt>Member <a class="el" href="unionMideaProtocol.html#ab638086cc0b8d25fba57278c7ba881cb">MideaProtocol::__pad2__</a> </dt>
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<dd><a class="anchor" id="_todo000003"></a>Find out what this bit controls. </dd>
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