Commit 73db1628 authored by Khalid Ahmed's avatar Khalid Ahmed Committed by Thomas Schlichter

Renaming and moving nr_layer_mapping to a common liberary between UE and gNB

parent f1d4d5da
...@@ -49,4 +49,74 @@ void nr_modulation(uint32_t *in, ...@@ -49,4 +49,74 @@ void nr_modulation(uint32_t *in,
out[i<<1] = nr_mod_table[(offset+idx)<<1]; out[i<<1] = nr_mod_table[(offset+idx)<<1];
out[(i<<1)+1] = nr_mod_table[((offset+idx)<<1)+1]; out[(i<<1)+1] = nr_mod_table[((offset+idx)<<1)+1];
} }
}
void nr_layer_mapping(int16_t **mod_symbs,
uint8_t n_layers,
uint16_t n_symbs,
int16_t **tx_layers) {
switch (n_layers) {
case 1:
memcpy((void*)tx_layers[0], (void*)mod_symbs[0], (n_symbs<<1)*sizeof(int16_t));
break;
case 2:
case 3:
case 4:
for (int i=0; i<n_symbs/n_layers; i++)
for (int l=0; l<n_layers; l++) {
tx_layers[l][i<<1] = mod_symbs[0][(n_layers*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[0][((n_layers*i+l)<<1)+1];
}
break;
case 5:
for (int i=0; i<n_symbs>>1; i++)
for (int l=0; l<2; l++) {
tx_layers[l][i<<1] = mod_symbs[0][((i<<1)+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[0][(((i<<1)+l)<<1)+1];
}
for (int i=0; i<n_symbs/3; i++)
for (int l=2; l<5; l++) {
tx_layers[l][i<<1] = mod_symbs[1][(3*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[1][((3*i+l)<<1)+1];
}
break;
case 6:
for (int q=0; q<2; q++)
for (int i=0; i<n_symbs/3; i++)
for (int l=0; l<3; l++) {
tx_layers[l][i<<1] = mod_symbs[q][(3*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[q][((3*i+l)<<1)+1];
}
break;
case 7:
for (int i=0; i<n_symbs/3; i++)
for (int l=0; l<3; l++) {
tx_layers[l][i<<1] = mod_symbs[1][(3*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[1][((3*i+l)<<1)+1];
}
for (int i=0; i<n_symbs/4; i++)
for (int l=3; l<7; l++) {
tx_layers[l][i<<1] = mod_symbs[0][((i<<2)+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[0][(((i<<2)+l)<<1)+1];
}
break;
case 8:
for (int q=0; q<2; q++)
for (int i=0; i<n_symbs>>2; i++)
for (int l=0; l<3; l++) {
tx_layers[l][i<<1] = mod_symbs[q][((i<<2)+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[q][(((i<<2)+l)<<1)+1];
}
break;
default:
AssertFatal(0, "Invalid number of layers %d\n", n_layers);
}
} }
\ No newline at end of file
...@@ -37,4 +37,16 @@ void nr_modulation(uint32_t *in, ...@@ -37,4 +37,16 @@ void nr_modulation(uint32_t *in,
uint16_t mod_order, uint16_t mod_order,
int16_t *out); int16_t *out);
/*! \brief Perform NR layer mapping. TS 38.211 V15.4.0 subclause 7.3.1.3
@param[in] mod_symbs, double Pointer to modulated symbols for each codeword
@param[in] n_layers, number of layers
@param[in] n_symbs, number of modulated symbols
@param[out] tx_layers, modulated symbols for each layer
*/
void nr_layer_mapping(int16_t **mod_symbs,
uint8_t n_layers,
uint16_t n_symbs,
int16_t **tx_layers);
#endif #endif
\ No newline at end of file
...@@ -65,77 +65,6 @@ void nr_pdsch_codeword_scrambling(uint8_t *in, ...@@ -65,77 +65,6 @@ void nr_pdsch_codeword_scrambling(uint8_t *in,
} }
void nr_pdsch_layer_mapping(int16_t **mod_symbs,
uint8_t n_layers,
uint16_t n_symbs,
int16_t **tx_layers) {
switch (n_layers) {
case 1:
memcpy((void*)tx_layers[0], (void*)mod_symbs[0], (n_symbs<<1)*sizeof(int16_t));
break;
case 2:
case 3:
case 4:
for (int i=0; i<n_symbs/n_layers; i++)
for (int l=0; l<n_layers; l++) {
tx_layers[l][i<<1] = mod_symbs[0][(n_layers*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[0][((n_layers*i+l)<<1)+1];
}
break;
case 5:
for (int i=0; i<n_symbs>>1; i++)
for (int l=0; l<2; l++) {
tx_layers[l][i<<1] = mod_symbs[0][((i<<1)+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[0][(((i<<1)+l)<<1)+1];
}
for (int i=0; i<n_symbs/3; i++)
for (int l=2; l<5; l++) {
tx_layers[l][i<<1] = mod_symbs[1][(3*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[1][((3*i+l)<<1)+1];
}
break;
case 6:
for (int q=0; q<2; q++)
for (int i=0; i<n_symbs/3; i++)
for (int l=0; l<3; l++) {
tx_layers[l][i<<1] = mod_symbs[q][(3*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[q][((3*i+l)<<1)+1];
}
break;
case 7:
for (int i=0; i<n_symbs/3; i++)
for (int l=0; l<3; l++) {
tx_layers[l][i<<1] = mod_symbs[1][(3*i+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[1][((3*i+l)<<1)+1];
}
for (int i=0; i<n_symbs/4; i++)
for (int l=3; l<7; l++) {
tx_layers[l][i<<1] = mod_symbs[0][((i<<2)+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[0][(((i<<2)+l)<<1)+1];
}
break;
case 8:
for (int q=0; q<2; q++)
for (int i=0; i<n_symbs>>2; i++)
for (int l=0; l<3; l++) {
tx_layers[l][i<<1] = mod_symbs[q][((i<<2)+l)<<1];
tx_layers[l][(i<<1)+1] = mod_symbs[q][(((i<<2)+l)<<1)+1];
}
break;
default:
AssertFatal(0, "Invalid number of layers %d\n", n_layers);
}
}
static inline uint16_t get_pdsch_dmrs_idx(uint8_t n, uint8_t k_prime, uint8_t delta, uint8_t dmrs_type) { static inline uint16_t get_pdsch_dmrs_idx(uint8_t n, uint8_t k_prime, uint8_t delta, uint8_t dmrs_type) {
uint16_t dmrs_idx = (dmrs_type)? (6*n+k_prime+delta):((n<<2)+(k_prime<<1)+delta); uint16_t dmrs_idx = (dmrs_type)? (6*n+k_prime+delta):((n<<2)+(k_prime<<1)+delta);
return dmrs_idx; return dmrs_idx;
...@@ -223,7 +152,7 @@ for (int i=0; i<nb_symbols>>3; i++) { ...@@ -223,7 +152,7 @@ for (int i=0; i<nb_symbols>>3; i++) {
/// Layer mapping /// Layer mapping
nr_pdsch_layer_mapping(mod_symbs, nr_layer_mapping(mod_symbs,
rel15->nb_layers, rel15->nb_layers,
nb_symbols, nb_symbols,
tx_layers); tx_layers);
......
...@@ -68,11 +68,6 @@ void nr_pdsch_codeword_scrambling(uint8_t *in, ...@@ -68,11 +68,6 @@ void nr_pdsch_codeword_scrambling(uint8_t *in,
uint32_t n_RNTI, uint32_t n_RNTI,
uint32_t* out); uint32_t* out);
void nr_pdsch_layer_mapping(int16_t **mod_symbs,
uint8_t n_layers,
uint16_t n_symbs,
int16_t **tx_layers);
void nr_fill_dlsch(PHY_VARS_gNB *gNB, void nr_fill_dlsch(PHY_VARS_gNB *gNB,
int frame, int frame,
int slot, int slot,
......
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