Add a bunch of missing "zephyr/" prefixes to #include statements in various test and test framework files. Signed-off-by: Fabio Baltieri <fabiobaltieri@google.com>
768 lines
18 KiB
C
768 lines
18 KiB
C
/*
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* Copyright (c) 2020 Demant
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr/types.h>
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#include <zephyr/ztest.h>
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#include "kconfig.h"
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#define ULL_LLCP_UNITTEST
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#include <zephyr/bluetooth/hci.h>
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#include <zephyr/sys/byteorder.h>
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#include <zephyr/sys/slist.h>
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#include <zephyr/sys/util.h>
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#include "hal/ccm.h"
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#include "util/util.h"
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#include "util/mem.h"
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#include "util/memq.h"
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#include "util/dbuf.h"
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#include "pdu.h"
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#include "ll.h"
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#include "ll_settings.h"
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#include "lll.h"
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#include "lll_df_types.h"
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#include "lll_conn.h"
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#include "lll_conn_iso.h"
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#include "ull_tx_queue.h"
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#include "isoal.h"
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#include "ull_iso_types.h"
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#include "ull_conn_iso_types.h"
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#include "ull_conn_types.h"
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#include "ull_llcp.h"
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#include "ull_conn_internal.h"
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#include "ull_llcp_internal.h"
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#include "helper_pdu.h"
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#include "helper_util.h"
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#define INTVL_MIN 6U /* multiple of 1.25 ms (min 6, max 3200) */
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#define INTVL_MAX 6U /* multiple of 1.25 ms (min 6, max 3200) */
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#define LATENCY 1U
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#define TIMEOUT 10U /* multiple of 10 ms (min 10, max 3200) */
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#define PREFER_S8_CODING 1
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#define PREFER_S2_CODING 0
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static struct ll_conn conn;
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struct pdu_data_llctrl_conn_update_ind conn_update_ind = { .win_size = 1U,
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.win_offset = 0U,
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.interval = INTVL_MAX,
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.latency = LATENCY,
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.timeout = TIMEOUT,
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.instant = 6U };
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struct pdu_data_llctrl_conn_param_req conn_param_req_B = {
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.interval_min = INTVL_MIN,
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.interval_max = INTVL_MAX,
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.latency = LATENCY + 1U, /* differentiate parameter */
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.timeout = TIMEOUT + 1U, /* differentiate parameter */
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.preferred_periodicity = 0U,
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.reference_conn_event_count = 0u,
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.offset0 = 0x0000U,
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.offset1 = 0xffffU,
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.offset2 = 0xffffU,
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.offset3 = 0xffffU,
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.offset4 = 0xffffU,
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.offset5 = 0xffffU
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};
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struct pdu_data_llctrl_conn_param_rsp conn_param_rsp = { .interval_min = INTVL_MIN,
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.interval_max = INTVL_MAX,
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.latency = LATENCY,
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.timeout = TIMEOUT,
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.preferred_periodicity = 0U,
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.reference_conn_event_count = 0u,
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.offset0 = 0x0000U,
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.offset1 = 0xffffU,
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.offset2 = 0xffffU,
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.offset3 = 0xffffU,
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.offset4 = 0xffffU,
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.offset5 = 0xffffU };
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struct pdu_data_llctrl_conn_param_req *req_B = &conn_param_req_B;
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static void setup(void)
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{
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test_setup(&conn);
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/* Emulate initial conn state */
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conn.phy_pref_rx = PHY_1M | PHY_2M | PHY_CODED;
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conn.phy_pref_tx = PHY_1M | PHY_2M | PHY_CODED;
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conn.lll.phy_flags = PREFER_S2_CODING;
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conn.lll.phy_tx_time = PHY_1M;
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conn.lll.phy_rx = PHY_1M;
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conn.lll.phy_tx = PHY_1M;
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/* Init DLE data */
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ull_conn_default_tx_octets_set(251);
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ull_conn_default_tx_time_set(2120);
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ull_dle_init(&conn, PHY_1M);
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/* Emulate different remote numbers to trigger update of eff */
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conn.lll.dle.remote.max_tx_octets = PDU_DC_PAYLOAD_SIZE_MIN * 3;
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conn.lll.dle.remote.max_rx_octets = PDU_DC_PAYLOAD_SIZE_MIN * 3;
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conn.lll.dle.remote.max_tx_time = PDU_DC_MAX_US(conn.lll.dle.remote.max_tx_octets,
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PHY_1M);
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conn.lll.dle.remote.max_rx_time = PDU_DC_MAX_US(conn.lll.dle.remote.max_rx_octets,
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PHY_1M);
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ull_dle_update_eff(&conn);
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}
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#define CHECK_PREF_PHY_STATE(_conn, _tx, _rx) \
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do { \
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zassert_equal(_conn.phy_pref_rx, _rx, \
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"Preferred RX PHY mismatch %d (actual) != %d (expected)", \
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_conn.phy_pref_rx, _rx); \
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zassert_equal(_conn.phy_pref_tx, _tx, \
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"Preferred TX PHY mismatch %d (actual) != %d (expected)", \
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_conn.phy_pref_tx, _tx); \
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} while (0)
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#define CHECK_CURRENT_PHY_STATE(_conn, _tx, _flags, _rx) \
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do { \
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zassert_equal(_conn.lll.phy_rx, _rx, \
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"Current RX PHY mismatch %d (actual) != %d (expected)", \
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_conn.lll.phy_rx, _rx); \
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zassert_equal(_conn.lll.phy_tx, _tx, \
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"Current TX PHY mismatch %d (actual) != %d (expected)", \
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_conn.lll.phy_tx, _tx); \
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zassert_equal(_conn.lll.phy_rx, _rx, \
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"Current Flags mismatch %d (actual) != %d (expected)", \
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_conn.lll.phy_flags, _flags); \
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} while (0)
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static bool is_instant_reached(struct ll_conn *conn, uint16_t instant)
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{
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return ((event_counter(conn) - instant) & 0xFFFF) <= 0x7FFF;
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}
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void test_phy_update_central_loc_collision(void)
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{
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uint8_t err;
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struct node_tx *tx;
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struct node_rx_pdu *ntf;
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struct pdu_data *pdu;
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struct pdu_data_llctrl_phy_req req = { .rx_phys = PHY_2M, .tx_phys = PHY_2M };
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struct pdu_data_llctrl_phy_req rsp = { .rx_phys = PHY_1M | PHY_2M,
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.tx_phys = PHY_1M | PHY_2M };
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struct pdu_data_llctrl_phy_upd_ind ind = { .instant = 9,
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.c_to_p_phy = PHY_2M,
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.p_to_c_phy = PHY_2M };
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uint16_t instant;
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struct pdu_data_llctrl_reject_ext_ind reject_ext_ind = {
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.reject_opcode = PDU_DATA_LLCTRL_TYPE_PHY_REQ,
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.error_code = BT_HCI_ERR_LL_PROC_COLLISION
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};
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struct node_rx_pu pu = { .status = BT_HCI_ERR_SUCCESS };
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/* Role */
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test_set_role(&conn, BT_HCI_ROLE_CENTRAL);
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/* Emulate valid feature exchange */
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conn.llcp.fex.valid = 1;
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/* Connect */
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ull_cp_state_set(&conn, ULL_CP_CONNECTED);
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/* Initiate an PHY Update Procedure */
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err = ull_cp_phy_update(&conn, PHY_2M, PREFER_S8_CODING, PHY_2M, 1);
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zassert_equal(err, BT_HCI_ERR_SUCCESS, NULL);
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should have one LL Control PDU */
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lt_rx(LL_PHY_REQ, &conn, &tx, &req);
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lt_rx_q_is_empty(&conn);
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/* Rx - emulate colliding PHY_REQ from peer */
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lt_tx(LL_PHY_REQ, &conn, &req);
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/* Check that data tx is paused */
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zassert_equal(conn.tx_q.pause_data, 1U, "Data tx is not paused");
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Check that data tx is paused */
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zassert_equal(conn.tx_q.pause_data, 1U, "Data tx is paused");
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/* Done */
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event_done(&conn);
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/* Check that data tx is not paused */
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zassert_equal(conn.tx_q.pause_data, 1U, "Data tx is not paused");
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/* Release Tx */
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ull_cp_release_tx(&conn, tx);
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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test_print_conn(&conn);
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/* Tx Queue should have one LL Control PDU */
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printf("Tx REJECT\n");
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lt_rx(LL_REJECT_EXT_IND, &conn, &tx, &reject_ext_ind);
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lt_rx_q_is_empty(&conn);
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Done */
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printf("Done again\n");
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event_done(&conn);
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/* Release Tx */
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ull_cp_release_tx(&conn, tx);
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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printf("Empty\n");
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lt_rx_q_is_empty(&conn);
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/* Rx */
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printf("Tx again\n");
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lt_tx(LL_PHY_RSP, &conn, &rsp);
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Done */
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event_done(&conn);
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/* Check that data tx is paused */
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zassert_equal(conn.tx_q.pause_data, 1U, "Data tx is not paused");
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should have one LL Control PDU */
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printf("And again\n");
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lt_rx(LL_PHY_UPDATE_IND, &conn, &tx, &ind);
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lt_rx_q_is_empty(&conn);
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Done */
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event_done(&conn);
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/* Check that data tx is not paused */
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zassert_equal(conn.tx_q.pause_data, 0U, "Data tx is paused");
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/* Save Instant */
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pdu = (struct pdu_data *)tx->pdu;
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instant = sys_le16_to_cpu(pdu->llctrl.phy_upd_ind.instant);
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/* Release Tx */
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ull_cp_release_tx(&conn, tx);
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/* */
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while (!is_instant_reached(&conn, instant)) {
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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lt_rx_q_is_empty(&conn);
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/* Done */
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event_done(&conn);
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/* There should NOT be a host notification */
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ut_rx_q_is_empty();
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}
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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lt_rx_q_is_empty(&conn);
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/* Done */
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event_done(&conn);
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/* There should be one host notification */
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ut_rx_node(NODE_PHY_UPDATE, &ntf, &pu);
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ut_rx_q_is_empty();
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/* Release Ntf */
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ull_cp_release_ntf(ntf);
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zassert_equal(ctx_buffers_free(), test_ctx_buffers_cnt(),
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"Free CTX buffers %d", ctx_buffers_free());
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}
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void test_phy_update_central_rem_collision(void)
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{
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uint8_t err;
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struct node_tx *tx;
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struct node_rx_pdu *ntf;
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struct pdu_data *pdu;
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struct pdu_data_llctrl_phy_req req_peripheral = { .rx_phys = PHY_1M, .tx_phys = PHY_2M };
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struct pdu_data_llctrl_phy_req req_central = { .rx_phys = PHY_2M, .tx_phys = PHY_2M };
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struct pdu_data_llctrl_phy_req rsp = { .rx_phys = PHY_1M | PHY_2M,
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.tx_phys = PHY_1M | PHY_2M };
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struct pdu_data_llctrl_phy_upd_ind ind_1 = { .instant = 7,
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.c_to_p_phy = 0,
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.p_to_c_phy = PHY_2M };
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struct pdu_data_llctrl_phy_upd_ind ind_2 = { .instant = 15,
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.c_to_p_phy = PHY_2M,
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.p_to_c_phy = 0 };
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uint16_t instant;
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struct node_rx_pu pu = { .status = BT_HCI_ERR_SUCCESS };
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/* Role */
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test_set_role(&conn, BT_HCI_ROLE_CENTRAL);
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/* Connect */
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ull_cp_state_set(&conn, ULL_CP_CONNECTED);
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Rx */
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lt_tx(LL_PHY_REQ, &conn, &req_peripheral);
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/* Done */
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event_done(&conn);
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/*** ***/
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/* Initiate an PHY Update Procedure */
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err = ull_cp_phy_update(&conn, PHY_2M, PREFER_S8_CODING, PHY_2M, 1);
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zassert_equal(err, BT_HCI_ERR_SUCCESS, NULL);
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should have one LL Control PDU */
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lt_rx(LL_PHY_UPDATE_IND, &conn, &tx, &ind_1);
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lt_rx_q_is_empty(&conn);
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Done */
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event_done(&conn);
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/* Save Instant */
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pdu = (struct pdu_data *)tx->pdu;
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instant = sys_le16_to_cpu(pdu->llctrl.phy_upd_ind.instant);
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/* Release Tx */
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ull_cp_release_tx(&conn, tx);
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/* */
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while (!is_instant_reached(&conn, instant)) {
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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lt_rx_q_is_empty(&conn);
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/* Done */
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event_done(&conn);
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/* There should NOT be a host notification */
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ut_rx_q_is_empty();
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}
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/*** ***/
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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lt_rx_q_is_empty(&conn);
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/* Done */
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event_done(&conn);
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should have one LL Control PDU */
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lt_rx(LL_PHY_REQ, &conn, &tx, &req_central);
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lt_rx_q_is_empty(&conn);
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/* Rx */
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lt_tx(LL_PHY_RSP, &conn, &rsp);
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Done */
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event_done(&conn);
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/* Release Tx */
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ull_cp_release_tx(&conn, tx);
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/* There should be one host notification */
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ut_rx_node(NODE_PHY_UPDATE, &ntf, &pu);
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ut_rx_q_is_empty();
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/* Release Ntf */
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ull_cp_release_ntf(ntf);
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should have one LL Control PDU */
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lt_rx(LL_PHY_UPDATE_IND, &conn, &tx, &ind_2);
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lt_rx_q_is_empty(&conn);
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/* TX Ack */
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event_tx_ack(&conn, tx);
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/* Done */
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event_done(&conn);
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/* Save Instant */
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pdu = (struct pdu_data *)tx->pdu;
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instant = sys_le16_to_cpu(pdu->llctrl.phy_upd_ind.instant);
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/* Release Tx */
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ull_cp_release_tx(&conn, tx);
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/* */
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while (!is_instant_reached(&conn, instant)) {
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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lt_rx_q_is_empty(&conn);
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/* Done */
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event_done(&conn);
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/* There should NOT be a host notification */
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ut_rx_q_is_empty();
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}
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/* Prepare */
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event_prepare(&conn);
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/* Tx Queue should NOT have a LL Control PDU */
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lt_rx_q_is_empty(&conn);
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/* Done */
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event_done(&conn);
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/* There should be one host notification */
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ut_rx_node(NODE_PHY_UPDATE, &ntf, &pu);
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ut_rx_q_is_empty();
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/* Release Ntf */
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ull_cp_release_ntf(ntf);
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zassert_equal(ctx_buffers_free(), test_ctx_buffers_cnt(),
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"Free CTX buffers %d", ctx_buffers_free());
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}
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void test_phy_update_periph_loc_collision(void)
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{
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uint8_t err;
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struct node_tx *tx;
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struct node_rx_pdu *ntf;
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struct pdu_data_llctrl_phy_req req_central = { .rx_phys = PHY_1M, .tx_phys = PHY_2M };
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struct pdu_data_llctrl_phy_req req_peripheral = { .rx_phys = PHY_2M, .tx_phys = PHY_2M };
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struct pdu_data_llctrl_phy_req rsp = { .rx_phys = PHY_2M, .tx_phys = PHY_2M };
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struct pdu_data_llctrl_phy_upd_ind ind = { .instant = 7,
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.c_to_p_phy = PHY_2M,
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.p_to_c_phy = PHY_1M };
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uint16_t instant;
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struct pdu_data_llctrl_reject_ext_ind reject_ext_ind = {
|
|
.reject_opcode = PDU_DATA_LLCTRL_TYPE_PHY_REQ,
|
|
.error_code = BT_HCI_ERR_LL_PROC_COLLISION
|
|
};
|
|
|
|
struct node_rx_pu pu = { 0 };
|
|
|
|
/* Role */
|
|
test_set_role(&conn, BT_HCI_ROLE_PERIPHERAL);
|
|
|
|
/* Connect */
|
|
ull_cp_state_set(&conn, ULL_CP_CONNECTED);
|
|
|
|
/*** ***/
|
|
|
|
/* Initiate an PHY Update Procedure */
|
|
err = ull_cp_phy_update(&conn, PHY_2M, PREFER_S8_CODING, PHY_2M, 1);
|
|
zassert_equal(err, BT_HCI_ERR_SUCCESS, NULL);
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* Tx Queue should have one LL Control PDU */
|
|
lt_rx(LL_PHY_REQ, &conn, &tx, &req_peripheral);
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* Rx */
|
|
lt_tx(LL_PHY_REQ, &conn, &req_central);
|
|
|
|
/* TX Ack */
|
|
event_tx_ack(&conn, tx);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* Release Tx */
|
|
ull_cp_release_tx(&conn, tx);
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* Tx Queue should have one LL Control PDU */
|
|
lt_rx(LL_PHY_RSP, &conn, &tx, &rsp);
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* Rx */
|
|
lt_tx(LL_REJECT_EXT_IND, &conn, &reject_ext_ind);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* There should be one host notification */
|
|
pu.status = BT_HCI_ERR_LL_PROC_COLLISION;
|
|
ut_rx_node(NODE_PHY_UPDATE, &ntf, &pu);
|
|
ut_rx_q_is_empty();
|
|
|
|
/* Release Ntf */
|
|
ull_cp_release_ntf(ntf);
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* Rx */
|
|
ind.instant = instant = event_counter(&conn) + 6;
|
|
lt_tx(LL_PHY_UPDATE_IND, &conn, &ind);
|
|
|
|
/* TX Ack */
|
|
event_tx_ack(&conn, tx);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* Release Tx */
|
|
ull_cp_release_tx(&conn, tx);
|
|
|
|
/* */
|
|
while (!is_instant_reached(&conn, instant)) {
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* Tx Queue should NOT have a LL Control PDU */
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* There should NOT be a host notification */
|
|
ut_rx_q_is_empty();
|
|
}
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* Tx Queue should NOT have a LL Control PDU */
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* There should be one host notification */
|
|
pu.status = BT_HCI_ERR_SUCCESS;
|
|
ut_rx_node(NODE_PHY_UPDATE, &ntf, &pu);
|
|
ut_rx_q_is_empty();
|
|
|
|
/* Release Ntf */
|
|
ull_cp_release_ntf(ntf);
|
|
|
|
zassert_equal(ctx_buffers_free(), test_ctx_buffers_cnt(),
|
|
"Free CTX buffers %d", ctx_buffers_free());
|
|
}
|
|
|
|
void test_phy_conn_update_central_loc_collision(void)
|
|
{
|
|
uint8_t err;
|
|
struct node_tx *tx;
|
|
struct node_rx_pdu *ntf;
|
|
struct pdu_data *pdu;
|
|
uint16_t instant;
|
|
|
|
struct pdu_data_llctrl_reject_ext_ind reject_ext_ind = {
|
|
.reject_opcode = PDU_DATA_LLCTRL_TYPE_CONN_PARAM_REQ,
|
|
.error_code = BT_HCI_ERR_DIFF_TRANS_COLLISION
|
|
};
|
|
struct pdu_data_llctrl_phy_req req = { .rx_phys = PHY_2M, .tx_phys = PHY_2M };
|
|
struct pdu_data_llctrl_phy_req rsp = { .rx_phys = PHY_1M | PHY_2M,
|
|
.tx_phys = PHY_1M | PHY_2M };
|
|
struct pdu_data_llctrl_phy_upd_ind ind = { .instant = 9,
|
|
.c_to_p_phy = PHY_2M,
|
|
.p_to_c_phy = PHY_2M };
|
|
|
|
struct node_rx_pu pu = { .status = BT_HCI_ERR_SUCCESS };
|
|
|
|
/* Role */
|
|
test_set_role(&conn, BT_HCI_ROLE_CENTRAL);
|
|
|
|
/* Emulate valid feature exchange */
|
|
conn.llcp.fex.valid = 1;
|
|
|
|
/* Connect */
|
|
ull_cp_state_set(&conn, ULL_CP_CONNECTED);
|
|
|
|
/* (A) Initiate a PHY update procedure */
|
|
|
|
err = ull_cp_phy_update(&conn, PHY_2M, PREFER_S8_CODING, PHY_2M, 1);
|
|
zassert_equal(err, BT_HCI_ERR_SUCCESS, NULL);
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* (A) Tx Queue should have one LL Control PDU */
|
|
lt_rx(LL_PHY_REQ, &conn, &tx, &req);
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* (B) Rx */
|
|
lt_tx(LL_CONNECTION_PARAM_REQ, &conn, req_B);
|
|
|
|
event_tx_ack(&conn, tx);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* Release Tx */
|
|
ull_cp_release_tx(&conn, tx);
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* (B) Rx Queue should have a REJECT_EXT_IND PDU */
|
|
lt_rx(LL_REJECT_EXT_IND, &conn, &tx, &reject_ext_ind);
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
event_tx_ack(&conn, tx);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* Release Tx */
|
|
ull_cp_release_tx(&conn, tx);
|
|
|
|
/**/
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* (B) Tx Queue should NOT have a LL Control PDU */
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* (A) Rx */
|
|
lt_tx(LL_PHY_RSP, &conn, &rsp);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
zassert_equal(conn.tx_q.pause_data, 1U, "Data tx is not paused");
|
|
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* (A) Tx Queue should have one LL Control PDU */
|
|
lt_rx(LL_PHY_UPDATE_IND, &conn, &tx, &ind);
|
|
lt_rx_q_is_empty(&conn);
|
|
event_tx_ack(&conn, tx);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* Save Instant */
|
|
pdu = (struct pdu_data *)tx->pdu;
|
|
instant = sys_le16_to_cpu(pdu->llctrl.phy_upd_ind.instant);
|
|
|
|
/* Release Tx */
|
|
ull_cp_release_tx(&conn, tx);
|
|
|
|
/* */
|
|
while (!is_instant_reached(&conn, instant)) {
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* (A) Tx Queue should NOT have a LL Control PDU */
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* (A) There should NOT be a host notification */
|
|
ut_rx_q_is_empty();
|
|
}
|
|
|
|
/* Prepare */
|
|
event_prepare(&conn);
|
|
|
|
/* (A) Tx Queue should NOT have a LL Control PDU */
|
|
lt_rx_q_is_empty(&conn);
|
|
|
|
/* Done */
|
|
event_done(&conn);
|
|
|
|
/* (A) There should be one host notification */
|
|
ut_rx_node(NODE_PHY_UPDATE, &ntf, &pu);
|
|
|
|
ut_rx_q_is_empty();
|
|
|
|
/* Release Ntf */
|
|
ull_cp_release_ntf(ntf);
|
|
zassert_equal(ctx_buffers_free(), test_ctx_buffers_cnt(),
|
|
"Free CTX buffers %d", ctx_buffers_free());
|
|
}
|
|
|
|
|
|
void test_main(void)
|
|
{
|
|
ztest_test_suite(
|
|
collision,
|
|
ztest_unit_test_setup_teardown(test_phy_update_central_loc_collision, setup,
|
|
unit_test_noop),
|
|
ztest_unit_test_setup_teardown(test_phy_update_central_rem_collision, setup,
|
|
unit_test_noop),
|
|
ztest_unit_test_setup_teardown(test_phy_update_periph_loc_collision, setup,
|
|
unit_test_noop),
|
|
ztest_unit_test_setup_teardown(test_phy_conn_update_central_loc_collision, setup,
|
|
unit_test_noop));
|
|
|
|
ztest_run_test_suite(collision);
|
|
}
|