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@ -40,6 +40,20 @@ uint32_t PDU2_LEN = 5;
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uint8_t pdu3[] = {0x8C, 0x00, 0xDD, 0xCD, 0xDC, 0x5D, 0xC0};
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uint8_t pdu3[] = {0x8C, 0x00, 0xDD, 0xCD, 0xDC, 0x5D, 0xC0};
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uint32_t PDU3_LEN = 7;
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uint32_t PDU3_LEN = 7;
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// D/C = 1 = Data PDU
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// RF = 0 = AMD PDU
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// P = 0 = Status PDU is not requested
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// FI = 11 = First byte of the Data field does not corresponds to the first byte of a RLC SDU,
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// Last byte of the Data field does not corresponds to the last byte of a RLC SDU
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// E = 1 = A set of E field and LI field follows from the octet following the fixed part of the header
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// SN = 0000000010 -> SN 2
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// E = 1
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// LI1 = 1010011 1110 (1342 Dec)
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// E = 0
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// LI2 = 10111011100 (1500 Dec)
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uint8_t pdu4[] = {0x9C, 0x02, 0xD3, 0xE5, 0xDC };
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uint32_t PDU4_LEN = 5;
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using namespace srslte;
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using namespace srslte;
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int main(int argc, char **argv) {
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int main(int argc, char **argv) {
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@ -106,4 +120,26 @@ int main(int argc, char **argv) {
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assert(b2.N_bytes == PDU3_LEN);
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assert(b2.N_bytes == PDU3_LEN);
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for(uint32_t i=0;i<b2.N_bytes;i++)
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for(uint32_t i=0;i<b2.N_bytes;i++)
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assert(b2.msg[i] == b1.msg[i]);
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assert(b2.msg[i] == b1.msg[i]);
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b1.reset();
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b2.reset();
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memset(&h, 0, sizeof(srslte::rlc_amd_pdu_header_t));
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memcpy(b1.msg, &pdu4[0], PDU4_LEN);
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b1.N_bytes = PDU4_LEN;
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rlc_am_read_data_pdu_header(&b1, &h);
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assert(RLC_DC_FIELD_DATA_PDU == h.dc);
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assert(0x03 == h.fi);
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assert(2 == h.N_li);
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assert(1342 == h.li[0]);
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assert(1500 == h.li[1]);
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assert(0 == h.lsf);
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assert(0 == h.p);
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assert(0 == h.rf);
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assert(0 == h.so);
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assert(2 == h.sn);
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rlc_am_write_data_pdu_header(&h, &b2);
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assert(b2.N_bytes == PDU4_LEN);
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for(uint32_t i=0;i<b2.N_bytes;i++)
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assert(b2.msg[i] == b1.msg[i]);
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}
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}
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