243 lines
6.0 KiB
C
243 lines
6.0 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Test cases for for the DRM DP MST helpers
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*/
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#define PREFIX_STR "[drm_dp_mst_helper]"
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#include <drm/drm_dp_mst_helper.h>
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#include <drm/drm_print.h>
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#include "../drm_dp_mst_topology_internal.h"
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#include "test-drm_modeset_common.h"
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int igt_dp_mst_calc_pbn_mode(void *ignored)
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{
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int pbn, i;
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const struct {
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int rate;
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int bpp;
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int expected;
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bool dsc;
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} test_params[] = {
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{ 154000, 30, 689, false },
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{ 234000, 30, 1047, false },
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{ 297000, 24, 1063, false },
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{ 332880, 24, 50, true },
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{ 324540, 24, 49, true },
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};
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for (i = 0; i < ARRAY_SIZE(test_params); i++) {
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pbn = drm_dp_calc_pbn_mode(test_params[i].rate,
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test_params[i].bpp,
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test_params[i].dsc);
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FAIL(pbn != test_params[i].expected,
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"Expected PBN %d for clock %d bpp %d, got %d\n",
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test_params[i].expected, test_params[i].rate,
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test_params[i].bpp, pbn);
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}
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return 0;
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}
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static bool
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sideband_msg_req_equal(const struct drm_dp_sideband_msg_req_body *in,
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const struct drm_dp_sideband_msg_req_body *out)
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{
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const struct drm_dp_remote_i2c_read_tx *txin, *txout;
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int i;
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if (in->req_type != out->req_type)
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return false;
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switch (in->req_type) {
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/*
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* Compare struct members manually for request types which can't be
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* compared simply using memcmp(). This is because said request types
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* contain pointers to other allocated structs
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*/
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case DP_REMOTE_I2C_READ:
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#define IN in->u.i2c_read
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#define OUT out->u.i2c_read
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if (IN.num_bytes_read != OUT.num_bytes_read ||
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IN.num_transactions != OUT.num_transactions ||
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IN.port_number != OUT.port_number ||
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IN.read_i2c_device_id != OUT.read_i2c_device_id)
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return false;
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for (i = 0; i < IN.num_transactions; i++) {
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txin = &IN.transactions[i];
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txout = &OUT.transactions[i];
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if (txin->i2c_dev_id != txout->i2c_dev_id ||
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txin->no_stop_bit != txout->no_stop_bit ||
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txin->num_bytes != txout->num_bytes ||
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txin->i2c_transaction_delay !=
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txout->i2c_transaction_delay)
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return false;
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if (memcmp(txin->bytes, txout->bytes,
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txin->num_bytes) != 0)
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return false;
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}
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break;
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#undef IN
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#undef OUT
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case DP_REMOTE_DPCD_WRITE:
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#define IN in->u.dpcd_write
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#define OUT out->u.dpcd_write
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if (IN.dpcd_address != OUT.dpcd_address ||
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IN.num_bytes != OUT.num_bytes ||
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IN.port_number != OUT.port_number)
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return false;
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return memcmp(IN.bytes, OUT.bytes, IN.num_bytes) == 0;
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#undef IN
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#undef OUT
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case DP_REMOTE_I2C_WRITE:
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#define IN in->u.i2c_write
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#define OUT out->u.i2c_write
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if (IN.port_number != OUT.port_number ||
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IN.write_i2c_device_id != OUT.write_i2c_device_id ||
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IN.num_bytes != OUT.num_bytes)
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return false;
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return memcmp(IN.bytes, OUT.bytes, IN.num_bytes) == 0;
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#undef IN
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#undef OUT
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default:
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return memcmp(in, out, sizeof(*in)) == 0;
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}
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return true;
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}
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static bool
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sideband_msg_req_encode_decode(struct drm_dp_sideband_msg_req_body *in)
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{
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struct drm_dp_sideband_msg_req_body out = {0};
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struct drm_printer p = drm_err_printer(PREFIX_STR);
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struct drm_dp_sideband_msg_tx txmsg;
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int i, ret;
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drm_dp_encode_sideband_req(in, &txmsg);
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ret = drm_dp_decode_sideband_req(&txmsg, &out);
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if (ret < 0) {
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drm_printf(&p, "Failed to decode sideband request: %d\n",
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ret);
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return false;
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}
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if (!sideband_msg_req_equal(in, &out)) {
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drm_printf(&p, "Encode/decode failed, expected:\n");
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drm_dp_dump_sideband_msg_req_body(in, 1, &p);
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drm_printf(&p, "Got:\n");
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drm_dp_dump_sideband_msg_req_body(&out, 1, &p);
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return false;
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}
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switch (in->req_type) {
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case DP_REMOTE_DPCD_WRITE:
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kfree(out.u.dpcd_write.bytes);
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break;
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case DP_REMOTE_I2C_READ:
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for (i = 0; i < out.u.i2c_read.num_transactions; i++)
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kfree(out.u.i2c_read.transactions[i].bytes);
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break;
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case DP_REMOTE_I2C_WRITE:
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kfree(out.u.i2c_write.bytes);
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break;
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}
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/* Clear everything but the req_type for the input */
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memset(&in->u, 0, sizeof(in->u));
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return true;
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}
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int igt_dp_mst_sideband_msg_req_decode(void *unused)
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{
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struct drm_dp_sideband_msg_req_body in = { 0 };
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u8 data[] = { 0xff, 0x0, 0xdd };
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int i;
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#define DO_TEST() FAIL_ON(!sideband_msg_req_encode_decode(&in))
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in.req_type = DP_ENUM_PATH_RESOURCES;
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in.u.port_num.port_number = 5;
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DO_TEST();
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in.req_type = DP_POWER_UP_PHY;
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in.u.port_num.port_number = 5;
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DO_TEST();
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in.req_type = DP_POWER_DOWN_PHY;
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in.u.port_num.port_number = 5;
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DO_TEST();
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in.req_type = DP_ALLOCATE_PAYLOAD;
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in.u.allocate_payload.number_sdp_streams = 3;
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for (i = 0; i < in.u.allocate_payload.number_sdp_streams; i++)
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in.u.allocate_payload.sdp_stream_sink[i] = i + 1;
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DO_TEST();
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in.u.allocate_payload.port_number = 0xf;
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DO_TEST();
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in.u.allocate_payload.vcpi = 0x7f;
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DO_TEST();
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in.u.allocate_payload.pbn = U16_MAX;
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DO_TEST();
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in.req_type = DP_QUERY_PAYLOAD;
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in.u.query_payload.port_number = 0xf;
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DO_TEST();
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in.u.query_payload.vcpi = 0x7f;
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DO_TEST();
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in.req_type = DP_REMOTE_DPCD_READ;
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in.u.dpcd_read.port_number = 0xf;
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DO_TEST();
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in.u.dpcd_read.dpcd_address = 0xfedcb;
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DO_TEST();
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in.u.dpcd_read.num_bytes = U8_MAX;
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DO_TEST();
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in.req_type = DP_REMOTE_DPCD_WRITE;
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in.u.dpcd_write.port_number = 0xf;
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DO_TEST();
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in.u.dpcd_write.dpcd_address = 0xfedcb;
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DO_TEST();
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in.u.dpcd_write.num_bytes = ARRAY_SIZE(data);
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in.u.dpcd_write.bytes = data;
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DO_TEST();
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in.req_type = DP_REMOTE_I2C_READ;
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in.u.i2c_read.port_number = 0xf;
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DO_TEST();
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in.u.i2c_read.read_i2c_device_id = 0x7f;
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DO_TEST();
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in.u.i2c_read.num_transactions = 3;
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in.u.i2c_read.num_bytes_read = ARRAY_SIZE(data) * 3;
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for (i = 0; i < in.u.i2c_read.num_transactions; i++) {
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in.u.i2c_read.transactions[i].bytes = data;
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in.u.i2c_read.transactions[i].num_bytes = ARRAY_SIZE(data);
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in.u.i2c_read.transactions[i].i2c_dev_id = 0x7f & ~i;
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in.u.i2c_read.transactions[i].i2c_transaction_delay = 0xf & ~i;
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}
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DO_TEST();
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in.req_type = DP_REMOTE_I2C_WRITE;
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in.u.i2c_write.port_number = 0xf;
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DO_TEST();
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in.u.i2c_write.write_i2c_device_id = 0x7f;
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DO_TEST();
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in.u.i2c_write.num_bytes = ARRAY_SIZE(data);
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in.u.i2c_write.bytes = data;
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DO_TEST();
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#undef DO_TEST
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return 0;
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}
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