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https://git.kernel.org/pub/scm/network/wireless/iwd.git
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band: Add HT RX rate estimation
Similarly to commit 27d302a0 ("band: Add a utility to estimate VHT rx data rate"), this commit adds an RX data rate estimation utility for HT connections.
This commit is contained in:
parent
2686baae69
commit
575f603f89
104
src/band.c
104
src/band.c
@ -119,6 +119,110 @@ bool band_ofdm_rate(uint8_t index, enum ofdm_channel_width width,
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return true;
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}
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static bool find_best_mcs_ht(const struct band *band,
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const uint8_t *tx_mcs_set,
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uint8_t max_mcs, enum ofdm_channel_width width,
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int32_t rssi, bool sgi,
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uint64_t *out_data_rate)
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{
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int i;
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/*
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* TODO: Support MCS values 32 - 76
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*
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* The MCS values > 31 use an unequal modulation, and the number of
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* supported MCS indexes per NSS differs. We do not consider them
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* here for now to keep things simple(r).
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*/
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for (i = max_mcs; i >= 0; i--) {
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if (!test_bit(band->ht_mcs_set, i))
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continue;
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if (!test_bit(tx_mcs_set, i))
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continue;
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if (band_ofdm_rate(i % 8, width, rssi,
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(i / 8) + 1, sgi, out_data_rate))
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return true;
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}
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return false;
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}
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int band_estimate_ht_rx_rate(const struct band *band,
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const uint8_t *htc, const uint8_t *hto,
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int32_t rssi, uint64_t *out_data_rate)
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{
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uint8_t channel_offset;
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int max_mcs = 31;
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bool sgi;
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uint8_t unequal_tx_mcs_set[16];
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const uint8_t *tx_mcs_set;
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if (!band->ht_supported)
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return -ENOTSUP;
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if (!htc || !hto)
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return -ENOTSUP;
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memset(unequal_tx_mcs_set, 0, sizeof(unequal_tx_mcs_set));
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tx_mcs_set = htc + 5;
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/*
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* Check 'Tx MCS Set Defined' at bit 96 and 'Tx MCS Set Unequal' at
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* bit 97 of the Supported MCS Set field. Also extract 'Tx Maximum
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* Number of Spatial Streams Supported' field at bits 98 and 99.
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*
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* Note 44 on page 1662 of 802.11-2016 states:
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* "How a non-AP STA determines an AP’s HT MCS transmission support,
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* if the Tx MCS Set subfield in the HT Capabilities element
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* advertised by the AP is equal to 0 or if he Tx Rx MCS Set Not Equal
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* subfield in that element is equal to 1, is implementation dependent.
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* The non-AP STA might conservatively use the basic HT-MCS set, or it
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* might use knowledge of past transmissions by the AP, or it might
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* use other means.
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*/
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if (test_bit(tx_mcs_set, 96)) {
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if (test_bit(tx_mcs_set, 97)) {
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uint8_t max_nss = bit_field(tx_mcs_set[12], 2, 2);
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max_mcs = max_nss * 4 + 7;
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/*
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* For purposes of finding the best MCS below, assume
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* the AP can send any MCS up to max_nss (i.e 0-7 for
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* 1 nss, 0-15 for 2 nss, 0-23 for 3 nss, 0-31 for 4
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*/
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memset(unequal_tx_mcs_set, 0xff, max_nss + 1);
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tx_mcs_set = unequal_tx_mcs_set;
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}
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} else
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max_mcs = 7;
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/* Test for 40 Mhz operation */
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channel_offset = bit_field(hto[3], 0, 2);
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if (test_bit(hto + 3, 2) &&
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(channel_offset == 1 || channel_offset == 3)) {
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sgi = test_bit(band->ht_capabilities, 6) &&
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test_bit(htc + 2, 6);
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if (find_best_mcs_ht(band, tx_mcs_set, max_mcs,
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OFDM_CHANNEL_WIDTH_40MHZ,
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rssi, sgi, out_data_rate))
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return 0;
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}
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sgi = test_bit(band->ht_capabilities, 5) && test_bit(htc + 2, 5);
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if (find_best_mcs_ht(band, tx_mcs_set, max_mcs,
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OFDM_CHANNEL_WIDTH_20MHZ,
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rssi, sgi, out_data_rate))
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return 0;
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return -EINVAL;
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}
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static bool find_best_mcs_vht(uint8_t max_index, enum ofdm_channel_width width,
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int32_t rssi, uint8_t nss, bool sgi,
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uint64_t *out_data_rate)
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@ -48,3 +48,6 @@ int band_estimate_vht_rx_rate(const struct band *band,
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const uint8_t *vhtc, const uint8_t *vhto,
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const uint8_t *htc, const uint8_t *hto,
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int32_t rssi, uint64_t *out_data_rate);
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int band_estimate_ht_rx_rate(const struct band *band,
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const uint8_t *htc, const uint8_t *hto,
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int32_t rssi, uint64_t *out_data_rate);
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