Commit 216c4235 authored by francescomani's avatar francescomani

remove unnecessary storage of SIBs structures at RRC

parent 086ac798
This diff is collapsed.
...@@ -106,51 +106,51 @@ typedef enum RA_trigger_e { ...@@ -106,51 +106,51 @@ typedef enum RA_trigger_e {
typedef struct UE_RRC_SI_INFO_NR_r17_s { typedef struct UE_RRC_SI_INFO_NR_r17_s {
uint32_t default_otherSI_map_r17; uint32_t default_otherSI_map_r17;
NR_SIB15_r17_t *sib15; bool sib15_validity;
NR_timer_t sib15_timer; NR_timer_t sib15_timer;
NR_SIB16_r17_t *sib16; bool sib16_validity;
NR_timer_t sib16_timer; NR_timer_t sib16_timer;
NR_SIB17_r17_t *sib17; bool sib17_validity;
NR_timer_t sib17_timer; NR_timer_t sib17_timer;
NR_SIB18_r17_t *sib18; bool sib18_validity;
NR_timer_t sib18_timer; NR_timer_t sib18_timer;
NR_SIB19_r17_t *sib19; bool sib19_validity;
NR_timer_t sib19_timer; NR_timer_t sib19_timer;
NR_SIB20_r17_t *sib20; bool sib20_validity;
NR_timer_t sib20_timer; NR_timer_t sib20_timer;
NR_SIB21_r17_t *sib21; bool sib21_validity;
NR_timer_t sib21_timer; NR_timer_t sib21_timer;
} NR_UE_RRC_SI_INFO_r17; } NR_UE_RRC_SI_INFO_r17;
typedef struct UE_RRC_SI_INFO_NR_s { typedef struct UE_RRC_SI_INFO_NR_s {
uint32_t default_otherSI_map; uint32_t default_otherSI_map;
NR_SIB1_t *sib1; bool sib1_validity;
NR_timer_t sib1_timer; NR_timer_t sib1_timer;
NR_SIB2_t *sib2; bool sib2_validity;
NR_timer_t sib2_timer; NR_timer_t sib2_timer;
NR_SIB3_t *sib3; bool sib3_validity;
NR_timer_t sib3_timer; NR_timer_t sib3_timer;
NR_SIB4_t *sib4; bool sib4_validity;
NR_timer_t sib4_timer; NR_timer_t sib4_timer;
NR_SIB5_t *sib5; bool sib5_validity;
NR_timer_t sib5_timer; NR_timer_t sib5_timer;
NR_SIB6_t *sib6; bool sib6_validity;
NR_timer_t sib6_timer; NR_timer_t sib6_timer;
NR_SIB7_t *sib7; bool sib7_validity;
NR_timer_t sib7_timer; NR_timer_t sib7_timer;
NR_SIB8_t *sib8; bool sib8_validity;
NR_timer_t sib8_timer; NR_timer_t sib8_timer;
NR_SIB9_t *sib9; bool sib9_validity;
NR_timer_t sib9_timer; NR_timer_t sib9_timer;
NR_SIB10_r16_t *sib10; bool sib10_validity;
NR_timer_t sib10_timer; NR_timer_t sib10_timer;
NR_SIB11_r16_t *sib11; bool sib11_validity;
NR_timer_t sib11_timer; NR_timer_t sib11_timer;
NR_SIB12_r16_t *sib12; bool sib12_validity;
NR_timer_t sib12_timer; NR_timer_t sib12_timer;
NR_SIB13_r16_t *sib13; bool sib13_validity;
NR_timer_t sib13_timer; NR_timer_t sib13_timer;
NR_SIB14_r16_t *sib14; bool sib14_validity;
NR_timer_t sib14_timer; NR_timer_t sib14_timer;
NR_UE_RRC_SI_INFO_r17 SInfo_r17; NR_UE_RRC_SI_INFO_r17 SInfo_r17;
} NR_UE_RRC_SI_INFO; } NR_UE_RRC_SI_INFO;
...@@ -175,6 +175,7 @@ typedef struct NR_UE_Timers_Constants_s { ...@@ -175,6 +175,7 @@ typedef struct NR_UE_Timers_Constants_s {
// constants (limits configured by the network) // constants (limits configured by the network)
uint32_t N310_k; uint32_t N310_k;
uint32_t N311_k; uint32_t N311_k;
NR_UE_TimersAndConstants_t *sib1_TimersAndConstants;
} NR_UE_Timers_Constants_t; } NR_UE_Timers_Constants_t;
typedef enum { typedef enum {
......
...@@ -55,7 +55,7 @@ void nr_rrc_going_to_IDLE(NR_UE_RRC_INST_t *rrc, ...@@ -55,7 +55,7 @@ void nr_rrc_going_to_IDLE(NR_UE_RRC_INST_t *rrc,
void handle_RRCRelease(NR_UE_RRC_INST_t *rrc); void handle_RRCRelease(NR_UE_RRC_INST_t *rrc);
void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t *sib1); void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_UE_TimersAndConstants_t *ue_TimersAndConstants);
/**\brief RRC UE task. /**\brief RRC UE task.
\param void *args_p Pointer on arguments to start the task. */ \param void *args_p Pointer on arguments to start the task. */
......
...@@ -45,80 +45,80 @@ void init_SI_timers(NR_UE_RRC_SI_INFO *SInfo) ...@@ -45,80 +45,80 @@ void init_SI_timers(NR_UE_RRC_SI_INFO *SInfo)
void nr_rrc_SI_timers(NR_UE_RRC_SI_INFO *SInfo) void nr_rrc_SI_timers(NR_UE_RRC_SI_INFO *SInfo)
{ {
if (SInfo->sib1) { if (SInfo->sib1_validity) {
bool sib1_expired = nr_timer_tick(&SInfo->sib1_timer); bool sib1_expired = nr_timer_tick(&SInfo->sib1_timer);
if (sib1_expired) if (sib1_expired)
asn1cFreeStruc(asn_DEF_NR_SIB1, SInfo->sib1); SInfo->sib1_validity = false;
} }
if (SInfo->sib2) { if (SInfo->sib2_validity) {
bool sib2_expired = nr_timer_tick(&SInfo->sib2_timer); bool sib2_expired = nr_timer_tick(&SInfo->sib2_timer);
if (sib2_expired) if (sib2_expired)
asn1cFreeStruc(asn_DEF_NR_SIB2, SInfo->sib2); SInfo->sib2_validity = false;
} }
if (SInfo->sib3) { if (SInfo->sib3_validity) {
bool sib3_expired = nr_timer_tick(&SInfo->sib3_timer); bool sib3_expired = nr_timer_tick(&SInfo->sib3_timer);
if (sib3_expired) if (sib3_expired)
asn1cFreeStruc(asn_DEF_NR_SIB3, SInfo->sib3); SInfo->sib3_validity = false;
} }
if (SInfo->sib4) { if (SInfo->sib4_validity) {
bool sib4_expired = nr_timer_tick(&SInfo->sib4_timer); bool sib4_expired = nr_timer_tick(&SInfo->sib4_timer);
if (sib4_expired) if (sib4_expired)
asn1cFreeStruc(asn_DEF_NR_SIB4, SInfo->sib4); SInfo->sib4_validity = false;
} }
if (SInfo->sib5) { if (SInfo->sib5_validity) {
bool sib5_expired = nr_timer_tick(&SInfo->sib5_timer); bool sib5_expired = nr_timer_tick(&SInfo->sib5_timer);
if (sib5_expired) if (sib5_expired)
asn1cFreeStruc(asn_DEF_NR_SIB5, SInfo->sib5); SInfo->sib5_validity = false;
} }
if (SInfo->sib6) { if (SInfo->sib6_validity) {
bool sib6_expired = nr_timer_tick(&SInfo->sib6_timer); bool sib6_expired = nr_timer_tick(&SInfo->sib6_timer);
if (sib6_expired) if (sib6_expired)
asn1cFreeStruc(asn_DEF_NR_SIB6, SInfo->sib6); SInfo->sib6_validity = false;
} }
if (SInfo->sib7) { if (SInfo->sib7_validity) {
bool sib7_expired = nr_timer_tick(&SInfo->sib7_timer); bool sib7_expired = nr_timer_tick(&SInfo->sib7_timer);
if (sib7_expired) if (sib7_expired)
asn1cFreeStruc(asn_DEF_NR_SIB7, SInfo->sib7); SInfo->sib7_validity = false;
} }
if (SInfo->sib8) { if (SInfo->sib8_validity) {
bool sib8_expired = nr_timer_tick(&SInfo->sib8_timer); bool sib8_expired = nr_timer_tick(&SInfo->sib8_timer);
if (sib8_expired) if (sib8_expired)
asn1cFreeStruc(asn_DEF_NR_SIB8, SInfo->sib8); SInfo->sib8_validity = false;
} }
if (SInfo->sib9) { if (SInfo->sib9_validity) {
bool sib9_expired = nr_timer_tick(&SInfo->sib9_timer); bool sib9_expired = nr_timer_tick(&SInfo->sib9_timer);
if (sib9_expired) if (sib9_expired)
asn1cFreeStruc(asn_DEF_NR_SIB9, SInfo->sib9); SInfo->sib9_validity = false;
} }
if (SInfo->sib10) { if (SInfo->sib10_validity) {
bool sib10_expired = nr_timer_tick(&SInfo->sib10_timer); bool sib10_expired = nr_timer_tick(&SInfo->sib10_timer);
if (sib10_expired) if (sib10_expired)
asn1cFreeStruc(asn_DEF_NR_SIB10_r16, SInfo->sib10); SInfo->sib10_validity = false;
} }
if (SInfo->sib11) { if (SInfo->sib11_validity) {
bool sib11_expired = nr_timer_tick(&SInfo->sib11_timer); bool sib11_expired = nr_timer_tick(&SInfo->sib11_timer);
if (sib11_expired) if (sib11_expired)
asn1cFreeStruc(asn_DEF_NR_SIB11_r16, SInfo->sib11); SInfo->sib11_validity = false;
} }
if (SInfo->sib12) { if (SInfo->sib12_validity) {
bool sib12_expired = nr_timer_tick(&SInfo->sib12_timer); bool sib12_expired = nr_timer_tick(&SInfo->sib12_timer);
if (sib12_expired) if (sib12_expired)
asn1cFreeStruc(asn_DEF_NR_SIB12_r16, SInfo->sib12); SInfo->sib12_validity = false;
} }
if (SInfo->sib13) { if (SInfo->sib13_validity) {
bool sib13_expired = nr_timer_tick(&SInfo->sib13_timer); bool sib13_expired = nr_timer_tick(&SInfo->sib13_timer);
if (sib13_expired) if (sib13_expired)
asn1cFreeStruc(asn_DEF_NR_SIB13_r16, SInfo->sib13); SInfo->sib13_validity = false;
} }
if (SInfo->sib14) { if (SInfo->sib14_validity) {
bool sib14_expired = nr_timer_tick(&SInfo->sib14_timer); bool sib14_expired = nr_timer_tick(&SInfo->sib14_timer);
if (sib14_expired) if (sib14_expired)
asn1cFreeStruc(asn_DEF_NR_SIB14_r16, SInfo->sib14); SInfo->sib14_validity = false;
} }
if (SInfo->SInfo_r17.sib19) { if (SInfo->SInfo_r17.sib19_validity) {
bool sib19_expired = nr_timer_tick(&SInfo->SInfo_r17.sib19_timer); bool sib19_expired = nr_timer_tick(&SInfo->SInfo_r17.sib19_timer);
if (sib19_expired) if (sib19_expired)
asn1cFreeStruc(asn_DEF_NR_SIB19_r17, SInfo->SInfo_r17.sib19); SInfo->SInfo_r17.sib19_validity = false;
} }
} }
...@@ -205,11 +205,11 @@ int nr_rrc_get_T304(long t304) ...@@ -205,11 +205,11 @@ int nr_rrc_get_T304(long t304)
return target; return target;
} }
void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t *sib1) void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_UE_TimersAndConstants_t *ue_TimersAndConstants)
{ {
if(sib1 && sib1->ue_TimersAndConstants) { if(ue_TimersAndConstants) {
int k = 0; int k = 0;
switch (sib1->ue_TimersAndConstants->t301) { switch (ue_TimersAndConstants->t301) {
case NR_UE_TimersAndConstants__t301_ms100 : case NR_UE_TimersAndConstants__t301_ms100 :
k = 100; k = 100;
break; break;
...@@ -235,10 +235,10 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t ...@@ -235,10 +235,10 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t
k = 2000; k = 2000;
break; break;
default : default :
AssertFatal(false, "Invalid T301 %ld\n", sib1->ue_TimersAndConstants->t301); AssertFatal(false, "Invalid T301 %ld\n", ue_TimersAndConstants->t301);
} }
nr_timer_setup(&tac->T301, k, 10); // 10ms step nr_timer_setup(&tac->T301, k, 10); // 10ms step
switch (sib1->ue_TimersAndConstants->t310) { switch (ue_TimersAndConstants->t310) {
case NR_UE_TimersAndConstants__t310_ms0 : case NR_UE_TimersAndConstants__t310_ms0 :
k = 0; k = 0;
break; break;
...@@ -261,10 +261,10 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t ...@@ -261,10 +261,10 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t
k = 2000; k = 2000;
break; break;
default : default :
AssertFatal(false, "Invalid T310 %ld\n", sib1->ue_TimersAndConstants->t310); AssertFatal(false, "Invalid T310 %ld\n", ue_TimersAndConstants->t310);
} }
nr_timer_setup(&tac->T310, k, 10); // 10ms step nr_timer_setup(&tac->T310, k, 10); // 10ms step
switch (sib1->ue_TimersAndConstants->t311) { switch (ue_TimersAndConstants->t311) {
case NR_UE_TimersAndConstants__t311_ms1000 : case NR_UE_TimersAndConstants__t311_ms1000 :
k = 1000; k = 1000;
break; break;
...@@ -287,10 +287,10 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t ...@@ -287,10 +287,10 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t
k = 30000; k = 30000;
break; break;
default : default :
AssertFatal(false, "Invalid T311 %ld\n", sib1->ue_TimersAndConstants->t311); AssertFatal(false, "Invalid T311 %ld\n", ue_TimersAndConstants->t311);
} }
nr_timer_setup(&tac->T311, k, 10); // 10ms step nr_timer_setup(&tac->T311, k, 10); // 10ms step
switch (sib1->ue_TimersAndConstants->n310) { switch (ue_TimersAndConstants->n310) {
case NR_UE_TimersAndConstants__n310_n1 : case NR_UE_TimersAndConstants__n310_n1 :
tac->N310_k = 1; tac->N310_k = 1;
break; break;
...@@ -316,9 +316,9 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t ...@@ -316,9 +316,9 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t
tac->N310_k = 20; tac->N310_k = 20;
break; break;
default : default :
AssertFatal(false, "Invalid N310 %ld\n", sib1->ue_TimersAndConstants->n310); AssertFatal(false, "Invalid N310 %ld\n", ue_TimersAndConstants->n310);
} }
switch (sib1->ue_TimersAndConstants->n311) { switch (ue_TimersAndConstants->n311) {
case NR_UE_TimersAndConstants__n311_n1 : case NR_UE_TimersAndConstants__n311_n1 :
tac->N311_k = 1; tac->N311_k = 1;
break; break;
...@@ -344,16 +344,16 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t ...@@ -344,16 +344,16 @@ void set_rlf_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t
tac->N311_k = 10; tac->N311_k = 10;
break; break;
default : default :
AssertFatal(false, "Invalid N311 %ld\n", sib1->ue_TimersAndConstants->n311); AssertFatal(false, "Invalid N311 %ld\n", ue_TimersAndConstants->n311);
} }
} }
else else
LOG_E(NR_RRC,"SIB1 should not be NULL and neither UE_Timers_Constants\n"); LOG_E(NR_RRC,"UE_Timers_Constants should not be NULL\n");
} }
void nr_rrc_set_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t *sib1) void nr_rrc_set_sib1_timers_and_constants(NR_UE_Timers_Constants_t *tac, NR_SIB1_t *sib1)
{ {
set_rlf_sib1_timers_and_constants(tac, sib1); set_rlf_sib1_timers_and_constants(tac, sib1->ue_TimersAndConstants);
if(sib1 && sib1->ue_TimersAndConstants) { if(sib1 && sib1->ue_TimersAndConstants) {
int k = 0; int k = 0;
switch (sib1->ue_TimersAndConstants->t300) { switch (sib1->ue_TimersAndConstants->t300) {
...@@ -430,7 +430,7 @@ void nr_rrc_handle_SetupRelease_RLF_TimersAndConstants(NR_UE_RRC_INST_t *rrc, ...@@ -430,7 +430,7 @@ void nr_rrc_handle_SetupRelease_RLF_TimersAndConstants(NR_UE_RRC_INST_t *rrc,
switch(rlf_TimersAndConstants->present){ switch(rlf_TimersAndConstants->present){
case NR_SetupRelease_RLF_TimersAndConstants_PR_release : case NR_SetupRelease_RLF_TimersAndConstants_PR_release :
// use values for timers T301, T310, T311 and constants N310, N311, as included in ue-TimersAndConstants received in SIB1 // use values for timers T301, T310, T311 and constants N310, N311, as included in ue-TimersAndConstants received in SIB1
set_rlf_sib1_timers_and_constants(tac, rrc->perNB[0].SInfo.sib1); set_rlf_sib1_timers_and_constants(tac, rrc->timers_and_constants.sib1_TimersAndConstants);
break; break;
case NR_SetupRelease_RLF_TimersAndConstants_PR_setup : case NR_SetupRelease_RLF_TimersAndConstants_PR_setup :
rlf_tac = rlf_TimersAndConstants->choice.setup; rlf_tac = rlf_TimersAndConstants->choice.setup;
......
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