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https://github.com/CTCaer/hekate.git
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mtc: Fix temperature deltas for clk tree delays when negative
This commit is contained in:
parent
7a66e0298a
commit
afb749560a
1 changed files with 85 additions and 94 deletions
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@ -1527,60 +1527,51 @@ static u32 _dvfs_power_ramp_up(bool flip_backward, emc_table_t *src_emc_table_en
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static u32 _minerva_update_clock_tree_delay(emc_table_t *src_emc_entry, emc_table_t *dst_emc_entry, u32 dram_dev_num, u32 channel1_enabled, enum tree_update_mode_t update_type)
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{
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s32 temp_ch0_0 = 0;
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s32 temp_ch0_1 = 0;
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s32 temp_ch1_0 = 0;
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s32 temp_ch1_1 = 0;
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s32 dst_rate_mhz;
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u32 cval = 0;
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s32 tdel0_0 = 0;
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s32 tdel0_1 = 0;
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s32 tdel1_0 = 0;
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s32 tdel1_1 = 0;
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s32 tmp_tdel0_0 = 0;
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u32 adelta = 0;
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s32 tdelta = 0;
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u32 temp_ch0_0 = 0;
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u32 temp_ch0_1 = 0;
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u32 temp_ch1_0 = 0;
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u32 temp_ch1_1 = 0;
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temp_ch0_0 = 0x10624DD3; // div 1000 denominator
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temp_ch0_1 = dst_emc_entry->rate_khz;
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dst_rate_mhz = dst_emc_entry->rate_khz / 1000;
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u32 upd_type_bits = 1 << update_type;
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u32 dst_rate_mhz = dst_emc_entry->rate_khz / 1000;
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u32 src_rate_mhz_2x = (src_emc_entry->rate_khz / 1000) * 2;
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u32 tval = 1000 * (1000 * _actual_osc_clocks(src_emc_entry->run_clocks) / (src_emc_entry->rate_khz / 1000));
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if (update_type <= PERIODIC_TRAINING_UPDATE)
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u32 tval = 1000000 * _actual_osc_clocks(src_emc_entry->run_clocks);
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if (update_type > PERIODIC_TRAINING_UPDATE)
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return 0;
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if (upd_type_bits & 0x5400)
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{
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temp_ch0_1 = 1 << update_type;
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temp_ch0_0 = 0x5400;
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if (upd_type_bits & 0x5400)
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_request_mmr_data(0x80130000, channel1_enabled); // Dev0 MRR 19.
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temp_ch0_0 = (EMC(EMC_MRR) & 0xFF) << 8;
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temp_ch0_1 = EMC(EMC_MRR) & 0xFF00;
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if (channel1_enabled)
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{
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_request_mmr_data(0x80130000, channel1_enabled); // Dev0 MRR 19.
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temp_ch0_0 = (EMC(EMC_MRR) & 0xFF) << 8;
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temp_ch0_1 = EMC(EMC_MRR) & 0xFF00;
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if (channel1_enabled)
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{
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temp_ch1_0 = (EMC_CH1(EMC_MRR) & 0xFF) << 8;
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temp_ch1_1 = EMC_CH1(EMC_MRR) & 0xFF00;
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}
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temp_ch1_0 = (EMC_CH1(EMC_MRR) & 0xFF) << 8;
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temp_ch1_1 = EMC_CH1(EMC_MRR) & 0xFF00;
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}
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_request_mmr_data(0x80120000, channel1_enabled); // Dev0 MRR 18.
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temp_ch0_0 |= EMC(EMC_MRR) & 0xFF;
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temp_ch0_1 |= (EMC(EMC_MRR) & 0xFF00) >> 8;
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if (channel1_enabled)
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{
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temp_ch1_0 |= EMC_CH1(EMC_MRR) & 0xFF;
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temp_ch1_1 |= (EMC_CH1(EMC_MRR) & 0xFF00) >> 8;
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}
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_request_mmr_data(0x80120000, channel1_enabled); // Dev0 MRR 18.
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temp_ch0_0 |= EMC(EMC_MRR) & 0xFF;
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temp_ch0_1 |= (EMC(EMC_MRR) & 0xFF00) >> 8;
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if (channel1_enabled)
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{
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temp_ch1_0 |= EMC_CH1(EMC_MRR) & 0xFF;
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temp_ch1_1 |= (EMC_CH1(EMC_MRR) & 0xFF00) >> 8;
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}
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}
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//u32 delay = (u64)((u64)_actual_osc_clocks(src_emc_entry->run_clocks) * 1000000) / (u64)(src_emc_entry->rate_khz * 2);
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cval = tval / (2 * temp_ch0_0);
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cval = tval / (src_rate_mhz_2x * temp_ch0_0);
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switch (update_type)
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{
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case DVFS_PT1:
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case TRAINING_PT1:
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dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u0_idx += 100 * cval;
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tdel0_0 = 0;
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if (update_type > PERIODIC_TRAINING_UPDATE || !(upd_type_bits & 0x6800))
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goto calc_td0_0;
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break;
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@ -1598,20 +1589,20 @@ static u32 _minerva_update_clock_tree_delay(emc_table_t *src_emc_entry, emc_tabl
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/ (dst_emc_entry->ptfv_list.ptfv_movavg_weight_idx + 1);
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break;
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default:
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tdel0_0 = 0;
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if (update_type > PERIODIC_TRAINING_UPDATE || !(upd_type_bits & 0x6800))
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goto calc_td0_0;
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break;
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}
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tdel0_0 = dst_emc_entry->current_dram_clktree_c0d0u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u0_idx / 100);
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if (tdel0_0 < 0)
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tdel0_0 = !tdel0_0;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel0_0 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c0d0u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u0_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c0d0u0 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u0_idx / 100;
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calc_td0_0:
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cval = tval / (2 * temp_ch0_1);
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cval = tval / (src_rate_mhz_2x * temp_ch0_1);
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switch (update_type)
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{
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case DVFS_PT1:
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@ -1639,18 +1630,18 @@ calc_td0_0:
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break;
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}
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tdel0_1 = dst_emc_entry->current_dram_clktree_c0d0u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u1_idx / 100);
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if (tdel0_1 < 0)
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tdel0_1 = !tdel0_1;
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if (tdel0_1 > tdel0_0)
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tdel0_0 = tdel0_1;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel0_1 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c0d0u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u1_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c0d0u1 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d0u1_idx / 100;
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calc_td1_0:
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if (channel1_enabled)
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{
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cval = tval / (2 * temp_ch1_0);
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cval = tval / (src_rate_mhz_2x * temp_ch1_0);
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switch (update_type)
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{
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case DVFS_PT1:
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@ -1678,16 +1669,16 @@ calc_td1_0:
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break;
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}
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tdel1_0 = dst_emc_entry->current_dram_clktree_c1d0u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d0u0_idx / 100);
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if (tdel1_0 < 0)
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tdel1_0 = !tdel1_0;
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if (tdel1_0 > tdel0_0)
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tdel0_0 = tdel1_0;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel1_0 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c1d0u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d0u0_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c1d0u0 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d0u0_idx / 100;
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calc_td1_1:
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cval = tval / (2 * temp_ch1_1);
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cval = tval / (src_rate_mhz_2x * temp_ch1_1);
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switch (update_type)
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{
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case DVFS_PT1:
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@ -1715,12 +1706,12 @@ calc_td1_1:
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break;
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}
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tdel1_1 = dst_emc_entry->current_dram_clktree_c1d0u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d0u1_idx / 100);
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if (tdel1_1 < 0)
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tdel1_1 = !tdel1_1;
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if (tdel1_1 > tdel0_0)
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tdel0_0 = tdel1_1;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel1_1 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c1d0u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d0u1_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c1d0u1 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d0u1_idx / 100;
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}
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@ -1749,7 +1740,7 @@ calc_dev2:
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}
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}
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cval = tval / (2 * temp_ch0_0);
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cval = tval / (src_rate_mhz_2x * temp_ch0_0);
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switch (update_type )
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{
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case DVFS_PT1:
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@ -1777,16 +1768,16 @@ calc_dev2:
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break;
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}
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tmp_tdel0_0 = dst_emc_entry->current_dram_clktree_c0d1u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d1u0_idx / 100);
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if (tmp_tdel0_0 < 0)
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tmp_tdel0_0 = !tmp_tdel0_0;
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if (tmp_tdel0_0 > tdel0_0)
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tdel0_0 = tmp_tdel0_0;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tmp_tdel0_0 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c0d1u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d1u0_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c0d1u0 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d1u0_idx / 100;
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calc_tmp_td0_1:
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cval = tval / (2 * temp_ch0_1);
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cval = tval / (src_rate_mhz_2x * temp_ch0_1);
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switch (update_type)
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{
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case DVFS_PT1:
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@ -1814,18 +1805,18 @@ calc_tmp_td0_1:
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break;
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}
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tdel0_1 = dst_emc_entry->current_dram_clktree_c0d1u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d1u1_idx / 100);
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if (tdel0_1 < 0)
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tdel0_1 = !tdel0_1;
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if (tdel0_1 > tdel0_0)
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tdel0_0 = tdel0_1;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel0_1 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c0d1u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d1u1_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c0d1u1 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c0d1u1_idx / 100;
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calc_tmp_td1_0:
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if (channel1_enabled)
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{
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cval = tval / (2 * temp_ch1_0);
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cval = tval / (src_rate_mhz_2x * temp_ch1_0);
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switch (update_type)
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{
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case DVFS_PT1:
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break;
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}
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tdel1_0 = dst_emc_entry->current_dram_clktree_c1d1u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d1u0_idx / 100);
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if (tdel1_0 < 0)
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tdel1_0 = !tdel1_0;
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if (tdel1_0 > tdel0_0)
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tdel0_0 = tdel1_0;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel1_0 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c1d1u0 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d1u0_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c1d1u0 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d1u0_idx / 100;
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calc_tmp_td1_1:
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cval = tval / (2 * temp_ch1_1);
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cval = tval / (src_rate_mhz_2x * temp_ch1_1);
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switch (update_type)
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{
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case DVFS_PT1:
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@ -1890,12 +1881,12 @@ calc_tmp_td1_1:
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break;
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}
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tdel1_1 = dst_emc_entry->current_dram_clktree_c1d1u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d1u1_idx / 100);
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if (tdel1_1 < 0)
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tdel1_1 = !tdel1_1;
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if (tdel1_1 > tdel0_0)
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tdel0_0 = tdel1_1;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdel1_1 << 7) / 1000000) > dst_emc_entry->tree_margin)
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tdelta = dst_emc_entry->current_dram_clktree_c1d1u1 - (dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d1u1_idx / 100);
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if (tdelta < 0)
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tdelta = -tdelta;
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if (tdelta > adelta)
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adelta = tdelta;
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if (update_type == TRAINING_UPDATE || ((dst_rate_mhz * tdelta << 7) / 1000000) > dst_emc_entry->tree_margin)
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dst_emc_entry->current_dram_clktree_c1d1u1 = dst_emc_entry->ptfv_list.ptfv_dqsosc_movavg_c1d1u1_idx / 100;
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}
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@ -1912,7 +1903,7 @@ out:
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dst_emc_entry->trained_dram_clktree_c1d1u1 = dst_emc_entry->current_dram_clktree_c1d1u1;
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}
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return (u32)tdel0_0;
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return (u32)adelta;
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}
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static u32 _minerva_periodic_compensation_handler(emc_table_t *src_emc_entry, emc_table_t *dst_emc_entry, u32 dram_dev_num, u32 channel1_enabled, enum comp_seq_t seq_type)
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