vendorcode/mediatek/mt8195: Fix set but unused variables
The clang compiler warns about this. Change-Id: I1584258aa24d6a0bf558b3c622bc53c156a37b09 Signed-off-by: Arthur Heymans <arthur@aheymans.xyz> Reviewed-on: https://review.coreboot.org/c/coreboot/+/74548 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Elyes Haouas <ehaouas@noos.fr>
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@ -501,7 +501,6 @@ void vIO32Write4B_All2(DRAMC_CTX_T *p, U32 reg32, U32 val32)
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{
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{
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U8 ii, u1AllCount;
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U8 ii, u1AllCount;
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U32 u4RegType = (reg32 & (0x1f << POS_BANK_NUM));
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U32 u4RegType = (reg32 & (0x1f << POS_BANK_NUM));
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U8 u1BCSupport = TRUE;
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reg32 &= 0xffff;
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reg32 &= 0xffff;
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@ -512,7 +511,6 @@ void vIO32Write4B_All2(DRAMC_CTX_T *p, U32 reg32, U32 val32)
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reg32 += Channel_A_DDRPHY_DPM_BASE_VIRTUAL;
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reg32 += Channel_A_DDRPHY_DPM_BASE_VIRTUAL;
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if (u1AllCount > 1)
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if (u1AllCount > 1)
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u1AllCount >>= 1;
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u1AllCount >>= 1;
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u1BCSupport = FALSE;
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}
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}
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else if (u4RegType >= Channel_A_DDRPHY_AO_BASE_VIRTUAL)
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else if (u4RegType >= Channel_A_DDRPHY_AO_BASE_VIRTUAL)
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{
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{
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@ -551,7 +549,6 @@ void vIO32Write4BMsk_All2(DRAMC_CTX_T *p, U32 reg32, U32 val32, U32 msk32)
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U32 u4Val, u4RegTmp;
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U32 u4Val, u4RegTmp;
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U8 ii, u1AllCount;
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U8 ii, u1AllCount;
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U32 u4RegType = (reg32 & (0x1f << POS_BANK_NUM));
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U32 u4RegType = (reg32 & (0x1f << POS_BANK_NUM));
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U8 u1BCSupport = TRUE;
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reg32 &= 0xffff;
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reg32 &= 0xffff;
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@ -562,7 +559,6 @@ void vIO32Write4BMsk_All2(DRAMC_CTX_T *p, U32 reg32, U32 val32, U32 msk32)
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reg32 += Channel_A_DDRPHY_DPM_BASE_VIRTUAL;
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reg32 += Channel_A_DDRPHY_DPM_BASE_VIRTUAL;
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if (u1AllCount > 1)
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if (u1AllCount > 1)
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u1AllCount >>= 1;
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u1AllCount >>= 1;
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u1BCSupport = FALSE;
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}
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}
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else if (u4RegType >= Channel_A_DDRPHY_AO_BASE_VIRTUAL)
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else if (u4RegType >= Channel_A_DDRPHY_AO_BASE_VIRTUAL)
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{
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{
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@ -131,7 +131,7 @@ static void DramcCalculate_Datlat_val(DRAMC_CTX_T *p)
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U32 u4TxPipeline = 0, u4RxPipeline = 0;
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U32 u4TxPipeline = 0, u4RxPipeline = 0;
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U32 u4Datlat_dsel = 0, u4Datlat_margin = 1, u4RDSEL_Offset = 2;
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U32 u4Datlat_dsel = 0, u4Datlat_margin = 1, u4RDSEL_Offset = 2;
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U32 u4DQ_P2S_Ratio = A_D->DQ_P2S_RATIO, u4CA_p2s_ratio = 0, u4CKR = A_D->CKR;
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U32 u4DQ_P2S_Ratio = A_D->DQ_P2S_RATIO, u4CA_p2s_ratio = 0, u4CKR = A_D->CKR;
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U32 u4CAdefault_delay = 1, u4CS2RL_start = 0, u4tRPRE_toggle = 0;
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U32 u4CAdefault_delay = 1, u4CS2RL_start = 0;
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U32 u4DQSIEN_ser_latency = 0, u4CA_ser_latency = 0;
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U32 u4DQSIEN_ser_latency = 0, u4CA_ser_latency = 0;
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U32 u4DQ_ui_unit = 0, u4CA_ui_unit = 0, u4Dram_ui_ratio = 2, u4MCK_unit = 0;
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U32 u4DQ_ui_unit = 0, u4CA_ui_unit = 0, u4Dram_ui_ratio = 2, u4MCK_unit = 0;
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U32 u4RL[2] = {0}, u4RLMax = 0, u4DQ_2_1stDVI4CK = 0, u4CA_MCKIO_ui_unit = 0;
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U32 u4RL[2] = {0}, u4RLMax = 0, u4DQ_2_1stDVI4CK = 0, u4CA_MCKIO_ui_unit = 0;
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@ -144,7 +144,6 @@ static void DramcCalculate_Datlat_val(DRAMC_CTX_T *p)
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if (u1IsLP4Family(p->dram_type))
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if (u1IsLP4Family(p->dram_type))
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{
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{
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u4CS2RL_start = 7;
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u4CS2RL_start = 7;
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u4tRPRE_toggle = 0;
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u4tDQSCK_Max = 3500;
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u4tDQSCK_Max = 3500;
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u4RL[0] = Get_RL_by_MR_LP4(p->dram_cbt_mode[RANK_0], 0, LP4_DRAM_INIT_RLWL_MRfield_config(p->frequency * 2));
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u4RL[0] = Get_RL_by_MR_LP4(p->dram_cbt_mode[RANK_0], 0, LP4_DRAM_INIT_RLWL_MRfield_config(p->frequency * 2));
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u4RL[1] = Get_RL_by_MR_LP4(p->dram_cbt_mode[RANK_1], 0, LP4_DRAM_INIT_RLWL_MRfield_config(p->frequency * 2));
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u4RL[1] = Get_RL_by_MR_LP4(p->dram_cbt_mode[RANK_1], 0, LP4_DRAM_INIT_RLWL_MRfield_config(p->frequency * 2));
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@ -181,6 +180,7 @@ static void DramcCalculate_Datlat_val(DRAMC_CTX_T *p)
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u4MCK_unit = u4DQ_ui_unit * u4DQ_P2S_Ratio;
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u4MCK_unit = u4DQ_ui_unit * u4DQ_P2S_Ratio;
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u4CA_p2s_ratio = u4DQ_P2S_Ratio / u4CKR;
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u4CA_p2s_ratio = u4DQ_P2S_Ratio / u4CKR;
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u4DQSIEN_ser_latency = u1GetDQSIEN_p2s_latency(u4DQ_P2S_Ratio);
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u4DQSIEN_ser_latency = u1GetDQSIEN_p2s_latency(u4DQ_P2S_Ratio);
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(void)u4DQSIEN_ser_latency;
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u4CA_ser_latency = u1GetDQ_CA_p2s_latency(u4CA_p2s_ratio, A_D->CA_FULL_RATE);
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u4CA_ser_latency = u1GetDQ_CA_p2s_latency(u4CA_p2s_ratio, A_D->CA_FULL_RATE);
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u4CA_MCKIO_ui_unit = u4DQ_ui_unit * u4CKR / (A_D->CA_FULL_RATE + 1);
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u4CA_MCKIO_ui_unit = u4DQ_ui_unit * u4CKR / (A_D->CA_FULL_RATE + 1);
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u4RX_rdcmdout2rdcmdbus_by_ps = 3 * u4MCK_unit + u4CAdefault_delay * u4CA_ui_unit + u4CA_ser_latency * u4CA_MCKIO_ui_unit /*+ RX_C->ca_default_PI * RX_C->ca_MCKIO_ps / RX_C->ca_ui_pi_ratio*/ ;
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u4RX_rdcmdout2rdcmdbus_by_ps = 3 * u4MCK_unit + u4CAdefault_delay * u4CA_ui_unit + u4CA_ser_latency * u4CA_MCKIO_ui_unit /*+ RX_C->ca_default_PI * RX_C->ca_MCKIO_ps / RX_C->ca_ui_pi_ratio*/ ;
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@ -1338,12 +1338,10 @@ static void TransferToSPMControl(DRAMC_CTX_T *p)
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#endif
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#endif
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void DPMEnableTracking(DRAMC_CTX_T *p, U32 u4Reg, U32 u4Field, U8 u1ShuIdx, U8 u1Enable)
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void DPMEnableTracking(DRAMC_CTX_T *p, U32 u4Reg, U32 u4Field, U8 u1ShuIdx, U8 u1Enable)
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{
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{
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U32 val, fld;
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U32 fld;
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fld = Fld(1, (Fld_shft(u4Field) + u1ShuIdx));
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fld = Fld(1, (Fld_shft(u4Field) + u1ShuIdx));
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val = (u1Enable) ? 1 : 0;
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vIO32WriteFldAlign_All(u4Reg, u1Enable, fld);
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vIO32WriteFldAlign_All(u4Reg, u1Enable, fld);
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}
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}
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@ -2443,7 +2443,7 @@ DRAM_STATUS_T CmdBusTrainingLP45(DRAMC_CTX_T *p, int autok, U8 K_Type)
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//U32 uiCA, uiFinishCount, uiTemp;
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//U32 uiCA, uiFinishCount, uiTemp;
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//S16 iDelay, pi_dly;
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//S16 iDelay, pi_dly;
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//S32 iFirstPass_tmp[CATRAINING_NUM], iLastPass_tmp[CATRAINING_NUM];
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//S32 iFirstPass_tmp[CATRAINING_NUM], iLastPass_tmp[CATRAINING_NUM];
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U32 uiCAWinSumMax; //uiCAWinSum,
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//uiCAWinSum,
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U8 operating_fsp;
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U8 operating_fsp;
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U16 operation_frequency;
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U16 operation_frequency;
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//S32 iCA_PerBit_DelayLine[CATRAINING_NUM] = {0}, iCK_MIN = 1000
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//S32 iCA_PerBit_DelayLine[CATRAINING_NUM] = {0}, iCK_MIN = 1000
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@ -2466,9 +2466,8 @@ DRAM_STATUS_T CmdBusTrainingLP45(DRAMC_CTX_T *p, int autok, U8 K_Type)
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S16 pi_step; //, pi_step_bk;
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S16 pi_step; //, pi_step_bk;
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S16 pi_start, pi_end;
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S16 pi_start, pi_end;
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u32 ca_ui, ca_ui_default; //, ca_ui_tmp
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u32 ca_ui; //, ca_ui_tmp
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u32 ca_mck; //Vca_mck_tmp, a_mck_default
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u32 ca_mck; //Vca_mck_tmp, a_mck_default
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u32 ca_cmd0;
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u8 ca_pin_num;
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u8 ca_pin_num;
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u8 step_respi = AUTOK_RESPI_1;
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u8 step_respi = AUTOK_RESPI_1;
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//u32 capi_max;
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//u32 capi_max;
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@ -2573,9 +2572,9 @@ DRAM_STATUS_T CmdBusTrainingLP45(DRAMC_CTX_T *p, int autok, U8 K_Type)
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#endif
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#endif
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ca_ui_default = ca_ui = get_ca_ui(p);
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ca_ui = get_ca_ui(p);
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ca_mck = get_ca_mck(p);
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ca_mck = get_ca_mck(p);
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ca_cmd0 = u4IO32Read4B(DRAMC_REG_ADDR(DDRPHY_REG_SHU_R0_CA_CMD0));
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u4IO32Read4B(DRAMC_REG_ADDR(DDRPHY_REG_SHU_R0_CA_CMD0));
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vAutoRefreshSwitch(p, DISABLE);
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vAutoRefreshSwitch(p, DISABLE);
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@ -2591,9 +2590,6 @@ DRAM_STATUS_T CmdBusTrainingLP45(DRAMC_CTX_T *p, int autok, U8 K_Type)
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vIO32WriteFldAlign(DRAMC_REG_ADDR(DRAMC_REG_TX_SET0),
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vIO32WriteFldAlign(DRAMC_REG_ADDR(DRAMC_REG_TX_SET0),
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1, TX_SET0_TXRANKFIX);
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1, TX_SET0_TXRANKFIX);
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uiCAWinSumMax = 0;
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operating_fsp = p->dram_fsp;
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operating_fsp = p->dram_fsp;
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operation_frequency = p->frequency;
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operation_frequency = p->frequency;
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@ -5628,6 +5624,7 @@ static DRAM_STATUS_T dramc_rx_dqs_gating_sw_cal(DRAMC_CTX_T *p,
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u1GatingErrorFlag=1;
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u1GatingErrorFlag=1;
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mcSHOW_ERR_MSG(("error, no all pass taps in DQS!,pass_byte_count=%d\n", pass_byte_count));
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mcSHOW_ERR_MSG(("error, no all pass taps in DQS!,pass_byte_count=%d\n", pass_byte_count));
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}
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}
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(void)u1GatingErrorFlag;
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#if (ENABLE_GATING_AUTOK_WA)
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#if (ENABLE_GATING_AUTOK_WA)
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@ -6355,7 +6352,7 @@ DRAM_STATUS_T DramcRxWindowPerbitCal(DRAMC_CTX_T *p,
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//U32 u1vrefidx;
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//U32 u1vrefidx;
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//U8 ucbit_first, ucbit_last;
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//U8 ucbit_first, ucbit_last;
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//S16 iDelay = 0, S16DelayBegin = 0, u4DelayStep=1;
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//S16 iDelay = 0, S16DelayBegin = 0, u4DelayStep=1;
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U16 u16DelayStep = 1; //u16DelayEnd = 0
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//u16DelayEnd = 0
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//U32 uiFinishCount;
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//U32 uiFinishCount;
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//U32 u4err_value, u4fail_bit, u4value;
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//U32 u4err_value, u4fail_bit, u4value;
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PASS_WIN_DATA_T FinalWinPerBit[DQ_DATA_WIDTH + RDDQC_ADD_DMI_NUM]; //WinPerBit[DQ_DATA_WIDTH + RDDQC_ADD_DMI_NUM]
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PASS_WIN_DATA_T FinalWinPerBit[DQ_DATA_WIDTH + RDDQC_ADD_DMI_NUM]; //WinPerBit[DQ_DATA_WIDTH + RDDQC_ADD_DMI_NUM]
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@ -6365,10 +6362,9 @@ DRAM_STATUS_T DramcRxWindowPerbitCal(DRAMC_CTX_T *p,
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U16 u2FinalVref [DQS_BYTE_NUMBER]= {0xe, 0xe}; //u2VrefLevel
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U16 u2FinalVref [DQS_BYTE_NUMBER]= {0xe, 0xe}; //u2VrefLevel
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U16 u2VrefBegin, u2VrefEnd, u2VrefStep;
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U16 u2VrefBegin, u2VrefEnd, u2VrefStep;
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//U32 u4fail_bit_R, u4fail_bit_F;
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//U32 u4fail_bit_R, u4fail_bit_F;
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U8 u1RXEyeScanEnable=(K_Type==NORMAL_K ? DISABLE : ENABLE),u1PrintCalibrationProc;
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U8 u1RXEyeScanEnable=(K_Type==NORMAL_K ? DISABLE : ENABLE);
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//U16 u1min_bit_by_vref[DQS_BYTE_NUMBER], u1min_winsize_by_vref[DQS_BYTE_NUMBER];
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//U16 u1min_bit_by_vref[DQS_BYTE_NUMBER], u1min_winsize_by_vref[DQS_BYTE_NUMBER];
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//U16 u1min_bit[DQS_BYTE_NUMBER], u1min_winsize[DQS_BYTE_NUMBER]={0};
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//U16 u1min_bit[DQS_BYTE_NUMBER], u1min_winsize[DQS_BYTE_NUMBER]={0};
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U8 u1CalDQMNum = 0;
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//U32 u4PassFlags = 0xFFFF;
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//U32 u4PassFlags = 0xFFFF;
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U16 backup_RX_FinalVref_Value[DQS_BYTE_NUMBER]={0};
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U16 backup_RX_FinalVref_Value[DQS_BYTE_NUMBER]={0};
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@ -6411,14 +6407,12 @@ DRAM_STATUS_T DramcRxWindowPerbitCal(DRAMC_CTX_T *p,
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#if (FEATURE_RDDQC_K_DMI == TRUE)
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#if (FEATURE_RDDQC_K_DMI == TRUE)
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if (u1UseTestEngine == PATTERN_RDDQC)
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if (u1UseTestEngine == PATTERN_RDDQC)
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{
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{
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u1CalDQMNum = 2;
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iDQMDlyPerbyte[0] = -0xFFFFFF;
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iDQMDlyPerbyte[0] = -0xFFFFFF;
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iDQMDlyPerbyte[1] = -0xFFFFFF;
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iDQMDlyPerbyte[1] = -0xFFFFFF;
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}
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}
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else
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else
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#endif
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#endif
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{
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{
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u1CalDQMNum = 0;
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iDQMDlyPerbyte[0] = u4IO32ReadFldAlign(DRAMC_REG_ADDR(DDRPHY_REG_SHU_R0_B0_RXDLY4), SHU_R0_B0_RXDLY4_RX_ARDQM0_R_DLY_B0);
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iDQMDlyPerbyte[0] = u4IO32ReadFldAlign(DRAMC_REG_ADDR(DDRPHY_REG_SHU_R0_B0_RXDLY4), SHU_R0_B0_RXDLY4_RX_ARDQM0_R_DLY_B0);
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iDQMDlyPerbyte[1] = u4IO32ReadFldAlign(DRAMC_REG_ADDR(DDRPHY_REG_SHU_R0_B1_RXDLY4), SHU_R0_B1_RXDLY4_RX_ARDQM0_R_DLY_B1);
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iDQMDlyPerbyte[1] = u4IO32ReadFldAlign(DRAMC_REG_ADDR(DDRPHY_REG_SHU_R0_B1_RXDLY4), SHU_R0_B1_RXDLY4_RX_ARDQM0_R_DLY_B1);
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@ -6528,8 +6522,6 @@ DRAM_STATUS_T DramcRxWindowPerbitCal(DRAMC_CTX_T *p,
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#endif
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#endif
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}
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}
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u1PrintCalibrationProc = ((u1VrefScanEnable == 0) || (u1RXEyeScanEnable == 1) || (u1AssignedVref != NULL));
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#if SUPPORT_SAVE_TIME_FOR_CALIBRATION
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#if SUPPORT_SAVE_TIME_FOR_CALIBRATION
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if (p->femmc_Ready == 1 && ((p->Bypass_RDDQC && u1UseTestEngine == PATTERN_RDDQC) || (p->Bypass_RXWINDOW && u1UseTestEngine == PATTERN_TEST_ENGINE)))
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if (p->femmc_Ready == 1 && ((p->Bypass_RDDQC && u1UseTestEngine == PATTERN_RDDQC) || (p->Bypass_RXWINDOW && u1UseTestEngine == PATTERN_TEST_ENGINE)))
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{
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{
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@ -6599,7 +6591,9 @@ DRAM_STATUS_T DramcRxWindowPerbitCal(DRAMC_CTX_T *p,
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else
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else
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{
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{
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u2VrefBegin = 0;
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u2VrefBegin = 0;
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(void)u2VrefBegin;
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u2VrefEnd = EYESCAN_RX_VREF_RANGE_END-1;
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u2VrefEnd = EYESCAN_RX_VREF_RANGE_END-1;
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(void)u2VrefEnd;
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//mcSHOW_DBG_MSG(("\nSet Eyescan Vref Range= %d -> %d\n",u2VrefBegin,u2VrefEnd));
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//mcSHOW_DBG_MSG(("\nSet Eyescan Vref Range= %d -> %d\n",u2VrefBegin,u2VrefEnd));
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}
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}
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#endif
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#endif
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@ -6626,11 +6620,9 @@ DRAM_STATUS_T DramcRxWindowPerbitCal(DRAMC_CTX_T *p,
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u2VrefEnd = 0;
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u2VrefEnd = 0;
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u2VrefStep = 1;
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u2VrefStep = 1;
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}
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}
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(void)u2VrefStep;
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if (u1UseTestEngine == PATTERN_RDDQC)
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u16DelayStep <<= 1;
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#if SUPPORT_SAVE_TIME_FOR_CALIBRATION
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#if SUPPORT_SAVE_TIME_FOR_CALIBRATION
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if (p->femmc_Ready == 1 && ((p->Bypass_RDDQC && u1UseTestEngine == PATTERN_RDDQC) || (p->Bypass_RXWINDOW && u1UseTestEngine == PATTERN_TEST_ENGINE)))
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if (p->femmc_Ready == 1 && ((p->Bypass_RDDQC && u1UseTestEngine == PATTERN_RDDQC) || (p->Bypass_RXWINDOW && u1UseTestEngine == PATTERN_TEST_ENGINE)))
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{
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{
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@ -7083,10 +7075,8 @@ static U8 aru1RxDatlatResult[RANK_MAX];
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DRAM_STATUS_T DramcRxdatlatCal(DRAMC_CTX_T *p)
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DRAM_STATUS_T DramcRxdatlatCal(DRAMC_CTX_T *p)
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{
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{
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//U8 ii, ucStartCalVal = 0;
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//U8 ii, ucStartCalVal = 0;
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U32 u4prv_register_080;
|
|
||||||
//U32 u4err_value = 0xffffffff;
|
//U32 u4err_value = 0xffffffff;
|
||||||
U8 ucfirst, ucbegin, ucsum, ucbest_step; //ucpipe_num = 0;
|
U8 ucbest_step; //ucpipe_num = 0;
|
||||||
U16 u2DatlatBegin;
|
|
||||||
|
|
||||||
|
|
||||||
if (!p)
|
if (!p)
|
||||||
|
@ -7104,7 +7094,7 @@ DRAM_STATUS_T DramcRxdatlatCal(DRAMC_CTX_T *p)
|
||||||
mcSHOW_DBG_MSG(("[RxdatlatCal]\n"));
|
mcSHOW_DBG_MSG(("[RxdatlatCal]\n"));
|
||||||
|
|
||||||
|
|
||||||
u4prv_register_080 = u4IO32Read4B(DRAMC_REG_ADDR(DDRPHY_REG_MISC_SHU_RDAT));
|
u4IO32Read4B(DRAMC_REG_ADDR(DDRPHY_REG_MISC_SHU_RDAT));
|
||||||
|
|
||||||
|
|
||||||
vSetCalibrationResult(p, DRAM_CALIBRATION_DATLAT, DRAM_FAIL);
|
vSetCalibrationResult(p, DRAM_CALIBRATION_DATLAT, DRAM_FAIL);
|
||||||
|
@ -7115,12 +7105,7 @@ DRAM_STATUS_T DramcRxdatlatCal(DRAMC_CTX_T *p)
|
||||||
//mcDUMP_REG_MSG(("DATLAT Default: 0x%x\n", ucbest_step));
|
//mcDUMP_REG_MSG(("DATLAT Default: 0x%x\n", ucbest_step));
|
||||||
|
|
||||||
|
|
||||||
ucfirst = 0xff;
|
|
||||||
ucbegin = 0;
|
|
||||||
ucsum = 0;
|
|
||||||
|
|
||||||
DramcEngine2Init(p, p->test2_1, p->test2_2, p->test_pattern | 0x80, 0, TE_UI_SHIFT);
|
DramcEngine2Init(p, p->test2_1, p->test2_2, p->test_pattern | 0x80, 0, TE_UI_SHIFT);
|
||||||
u2DatlatBegin = 0;
|
|
||||||
|
|
||||||
#if (SUPPORT_SAVE_TIME_FOR_CALIBRATION && BYPASS_DATLAT)
|
#if (SUPPORT_SAVE_TIME_FOR_CALIBRATION && BYPASS_DATLAT)
|
||||||
if (p->femmc_Ready == 1)
|
if (p->femmc_Ready == 1)
|
||||||
|
@ -9202,9 +9187,6 @@ void DramcTxOECalibration(DRAMC_CTX_T *p)
|
||||||
//U8 ucdq_ui_large_reg_value=0xff, ucdq_ui_small_reg_value=0xff;
|
//U8 ucdq_ui_large_reg_value=0xff, ucdq_ui_small_reg_value=0xff;
|
||||||
//U8 ucdq_final_dqm_oen_ui_large[DQS_BYTE_NUMBER] = {0}, ucdq_final_dqm_oen_ui_small[DQS_BYTE_NUMBER] = {0};
|
//U8 ucdq_final_dqm_oen_ui_large[DQS_BYTE_NUMBER] = {0}, ucdq_final_dqm_oen_ui_small[DQS_BYTE_NUMBER] = {0};
|
||||||
//DRAM_STATUS_T KResult;
|
//DRAM_STATUS_T KResult;
|
||||||
U8 u1TxDQOEShift = 0;
|
|
||||||
|
|
||||||
u1TxDQOEShift = TX_DQ_OE_SHIFT_LP4;
|
|
||||||
|
|
||||||
//mcDUMP_REG_MSG(("\n[dumpRG] DramcTXOECalibration\n"));
|
//mcDUMP_REG_MSG(("\n[dumpRG] DramcTXOECalibration\n"));
|
||||||
#if VENDER_JV_LOG
|
#if VENDER_JV_LOG
|
||||||
|
@ -9670,6 +9652,7 @@ static void DramcJmeterCalib(DRAMC_CTX_T *p, JMETER_T *pJmtrInfo, U16 u2JmDlySte
|
||||||
U8 check;
|
U8 check;
|
||||||
|
|
||||||
check = u4IO32ReadFldAlign(DRAMC_REG_ADDR(DDRPHY_REG_MISC_DUTYSCAN1), MISC_DUTYSCAN1_EYESCAN_DQS_OPT);
|
check = u4IO32ReadFldAlign(DRAMC_REG_ADDR(DDRPHY_REG_MISC_DUTYSCAN1), MISC_DUTYSCAN1_EYESCAN_DQS_OPT);
|
||||||
|
(void)check;
|
||||||
|
|
||||||
for (ucdqs_dly = u2Jm_dly_start; ucdqs_dly < u2Jm_dly_end; ucdqs_dly += u2Jm_dly_step)
|
for (ucdqs_dly = u2Jm_dly_start; ucdqs_dly < u2Jm_dly_end; ucdqs_dly += u2Jm_dly_step)
|
||||||
{
|
{
|
||||||
|
|
|
@ -151,6 +151,7 @@ void vSetVcoreByFreq(DRAMC_CTX_T *p)
|
||||||
//int ret;
|
//int ret;
|
||||||
|
|
||||||
vio18 = vcore = vdram = vddq = vmddr = 0;
|
vio18 = vcore = vdram = vddq = vmddr = 0;
|
||||||
|
(void)vio18;
|
||||||
|
|
||||||
#if __ETT__
|
#if __ETT__
|
||||||
hqa_set_voltage_by_freq(p, &vio18, &vcore, &vdram, &vddq, &vmddr);
|
hqa_set_voltage_by_freq(p, &vio18, &vcore, &vdram, &vddq, &vmddr);
|
||||||
|
|
|
@ -673,9 +673,6 @@ void get_rank_size_by_emi(unsigned long long dram_rank_size[DRAMC_MAX_RK])
|
||||||
unsigned long long ch0_rank0_size, ch0_rank1_size;
|
unsigned long long ch0_rank0_size, ch0_rank1_size;
|
||||||
unsigned long long ch1_rank0_size, ch1_rank1_size;
|
unsigned long long ch1_rank0_size, ch1_rank1_size;
|
||||||
unsigned int cen_emi_conh = mt_emi_sync_read(EMI_CONH);
|
unsigned int cen_emi_conh = mt_emi_sync_read(EMI_CONH);
|
||||||
unsigned long long dq_width;
|
|
||||||
|
|
||||||
dq_width = 2;
|
|
||||||
|
|
||||||
dram_rank_size[0] = 0;
|
dram_rank_size[0] = 0;
|
||||||
dram_rank_size[1] = 0;
|
dram_rank_size[1] = 0;
|
||||||
|
|
|
@ -73,6 +73,7 @@
|
||||||
/* mcSHOW_DBG_MSG3: Medium Low */
|
/* mcSHOW_DBG_MSG3: Medium Low */
|
||||||
/* mcSHOW_DBG_MSG4: Low */
|
/* mcSHOW_DBG_MSG4: Low */
|
||||||
/**********************************************/
|
/**********************************************/
|
||||||
|
|
||||||
#if __FLASH_TOOL_DA__
|
#if __FLASH_TOOL_DA__
|
||||||
#define printf DBG_MSG
|
#define printf DBG_MSG
|
||||||
#define print DBG_MSG
|
#define print DBG_MSG
|
||||||
|
@ -246,10 +247,10 @@
|
||||||
#define mcSHOW_TIME_MSG(_x_)
|
#define mcSHOW_TIME_MSG(_x_)
|
||||||
#define mcSHOW_ERR_MSG(_x_) {print _x_;}
|
#define mcSHOW_ERR_MSG(_x_) {print _x_;}
|
||||||
#else
|
#else
|
||||||
#define mcSHOW_DBG_MSG(_x_)
|
#define mcSHOW_DBG_MSG(_x_) { if (0) { print _x_; } }
|
||||||
#define mcSHOW_DBG_MSG2(_x_)
|
#define mcSHOW_DBG_MSG2(_x_) { if (0) { print _x_; } }
|
||||||
#define mcSHOW_DBG_MSG3(_x_)
|
#define mcSHOW_DBG_MSG3(_x_)
|
||||||
#define mcSHOW_DBG_MSG4(_x_)
|
#define mcSHOW_DBG_MSG4(_x_) { if (0) { print _x_; } }
|
||||||
#define mcSHOW_DBG_MSG5(_x_)
|
#define mcSHOW_DBG_MSG5(_x_)
|
||||||
#define mcSHOW_DBG_MSG6(_x_)
|
#define mcSHOW_DBG_MSG6(_x_)
|
||||||
#define mcSHOW_JV_LOG_MSG(_x_)
|
#define mcSHOW_JV_LOG_MSG(_x_)
|
||||||
|
|
|
@ -65,6 +65,7 @@ extern void vIO32Write4B_All2(DRAMC_CTX_T *p, U32 reg32, U32 val32);
|
||||||
UINT16 upk = 1; \
|
UINT16 upk = 1; \
|
||||||
INT32 msk = (INT32)(list); \
|
INT32 msk = (INT32)(list); \
|
||||||
{ upk = 0; \
|
{ upk = 0; \
|
||||||
|
(void)upk; \
|
||||||
((U32)msk == 0xffffffff)? (vIO32Write4B(reg32, (list))): (((U32)msk)? vIO32Write4BMsk(reg32, (list), ((U32)msk)):(U32)0); \
|
((U32)msk == 0xffffffff)? (vIO32Write4B(reg32, (list))): (((U32)msk)? vIO32Write4BMsk(reg32, (list), ((U32)msk)):(U32)0); \
|
||||||
} \
|
} \
|
||||||
}/*lint -restore */
|
}/*lint -restore */
|
||||||
|
@ -80,6 +81,7 @@ extern void vIO32Write4B_All2(DRAMC_CTX_T *p, U32 reg32, U32 val32);
|
||||||
UINT16 upk = 1; \
|
UINT16 upk = 1; \
|
||||||
INT32 msk = (INT32)(list); \
|
INT32 msk = (INT32)(list); \
|
||||||
{ upk = 0; \
|
{ upk = 0; \
|
||||||
|
(void)upk; \
|
||||||
((U32)msk == 0xffffffff)? (vIO32Write4B_All(reg32, (list))): (((U32)msk)? vIO32Write4BMsk_All(reg32, (list), ((U32)msk)): (void)0); \
|
((U32)msk == 0xffffffff)? (vIO32Write4B_All(reg32, (list))): (((U32)msk)? vIO32Write4BMsk_All(reg32, (list), ((U32)msk)): (void)0); \
|
||||||
} \
|
} \
|
||||||
}/*lint -restore */
|
}/*lint -restore */
|
||||||
|
|
Loading…
Reference in New Issue