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@ -23,6 +23,8 @@
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const unsigned char DTMF_MASK[] = {0x82U, 0x08U, 0x20U, 0x82U, 0x00U, 0x00U, 0x82U, 0x00U, 0x00U};
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const unsigned char DTMF_SIG[] = {0x82U, 0x08U, 0x20U, 0x82U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U};
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const unsigned char NULL_AMBE_DATA_BYTES[] = {0x9E, 0x8D, 0x32, 0x88, 0x26, 0x1A, 0x3F, 0x61, 0xE8};
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const unsigned char DTMF_SYM_MASK[] = {0x10U, 0x40U, 0x08U, 0x20U};
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const unsigned char DTMF_SYM0[] = {0x00U, 0x40U, 0x08U, 0x20U};
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const unsigned char DTMF_SYM1[] = {0x00U, 0x00U, 0x00U, 0x00U};
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@ -47,9 +49,118 @@ namespace DTMFTests
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};
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TEST_F(DTMF_decode, decode_valid_dtmf)
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TEST_F(DTMF_decode, decode_reflector_module_as_number)
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{
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unsigned char D[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYMD[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYMD[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYMD[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYMD[3])};
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unsigned char Zero[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYM0[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYM0[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM0[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM0[3])};
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unsigned char One[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYM1[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYM1[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM1[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM1[3])};
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unsigned char Eight[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYM8[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYM8[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM8[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM8[3])};
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unsigned char Four[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYM4[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYM4[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM4[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM4[3])};
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CDTMF dtmf;
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(One, false);
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dtmf.decode(One, false);
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dtmf.decode(One, false);
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dtmf.decode(One, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(Eight, false);
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dtmf.decode(Eight, false);
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dtmf.decode(Eight, false);
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dtmf.decode(Eight, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(Four, false);
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dtmf.decode(Four, false);
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dtmf.decode(Four, false);
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dtmf.decode(Four, false);
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dtmf.decode(Four, true);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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EXPECT_TRUE(dtmf.hasCommand());
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EXPECT_STREQ(dtmf.translate().c_str(), "DCS018DL");
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}
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TEST_F(DTMF_decode, decode_reflector_module_as_letter)
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{
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unsigned char ambe[] = {DTMF_SIG[0],
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unsigned char D[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYMD[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYMD[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYMD[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYMD[3])};
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unsigned char Zero[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYM0[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYM0[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM0[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM0[3])};
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unsigned char One[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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@ -59,13 +170,45 @@ namespace DTMFTests
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM1[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM1[3])};
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unsigned char Eight[] = {DTMF_SIG[0],
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DTMF_SIG[1],
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DTMF_SIG[2],
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DTMF_SIG[3],
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(unsigned char)(DTMF_SIG[4] | DTMF_SYM8[0]),
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(unsigned char)(DTMF_SIG[5] | DTMF_SYM8[1]),
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DTMF_SIG[6],
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(unsigned char)(DTMF_SIG[7] | DTMF_SYM8[2]),
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(unsigned char)(DTMF_SIG[8] | DTMF_SYM8[3])};
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CDTMF dtmf;
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dtmf.decode(ambe, false);
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dtmf.decode(ambe, false);
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dtmf.decode(ambe, false);
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dtmf.decode(ambe, false);
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dtmf.decode(ambe, false);
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dtmf.decode(ambe, false);
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dtmf.decode(ambe, true);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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dtmf.decode(Zero, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(One, false);
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dtmf.decode(One, false);
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dtmf.decode(One, false);
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dtmf.decode(One, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(Eight, false);
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dtmf.decode(Eight, false);
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dtmf.decode(Eight, false);
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dtmf.decode(Eight, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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dtmf.decode(D, false);
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for(uint i = 0; i < 10U; i++) dtmf.decode(NULL_AMBE_DATA_BYTES, true);
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EXPECT_TRUE(dtmf.hasCommand());
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EXPECT_STREQ(dtmf.translate().c_str(), "DCS018DL");
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}
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}
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