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/* |
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* Copyright (C) 2005-2007 by Pieter Palmers |
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* |
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* This file is part of FFADO |
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* FFADO = Free Firewire (pro-)audio drivers for linux |
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* |
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* FFADO is based upon FreeBoB |
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* |
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* This program is free software: you can redistribute it and/or modify |
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* it under the terms of the GNU General Public License as published by |
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* the Free Software Foundation, either version 3 of the License, or |
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* (at your option) any later version. |
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* |
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* This program is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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* GNU General Public License for more details. |
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* |
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* You should have received a copy of the GNU General Public License |
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* along with this program. If not, see <http://www.gnu.org/licenses/>. |
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* |
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*/ |
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#include "efc_cmds_hardware.h" |
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#include <netinet/in.h> |
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#include <iostream> |
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using namespace std; |
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namespace FireWorks { |
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EfcHardwareInfoCmd::EfcHardwareInfoCmd() |
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: EfcCmd(EFC_CAT_HARDWARE_INFO, EFC_CMD_HW_HWINFO_GET_CAPS) |
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, m_nb_out_groups( 0 ) |
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, m_nb_in_groups( 0 ) |
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{} |
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bool |
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EfcHardwareInfoCmd::serialize( Util::Cmd::IOSSerialize& se ) |
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{ |
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bool result=true; |
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// the length should be specified before |
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// the header is serialized |
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m_length=EFC_HEADER_LENGTH_QUADLETS; |
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result &= EfcCmd::serialize ( se ); |
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return result; |
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} |
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bool |
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EfcHardwareInfoCmd::deserialize( Util::Cmd::IISDeserialize& de ) |
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{ |
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bool result=true; |
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uint32_t tmp; |
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result &= EfcCmd::deserialize ( de ); |
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// the serialization is different from the deserialization |
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EFC_DESERIALIZE_AND_SWAP(de, &m_flags, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &tmp, result); |
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m_guid=tmp; |
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m_guid <<= 32; |
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EFC_DESERIALIZE_AND_SWAP(de, &tmp, result); |
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m_guid |= tmp; |
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EFC_DESERIALIZE_AND_SWAP(de, &m_type, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_version, result); |
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int i=0; |
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byte_t *vname=(byte_t *)m_vendor_name; |
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for (i=0; i<HWINFO_NAME_SIZE_BYTES; i++) { |
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result &= de.read(vname++); |
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} |
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byte_t *mname=(byte_t *)m_model_name; |
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for (i=0; i<HWINFO_NAME_SIZE_BYTES; i++) { |
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result &= de.read(mname++); |
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} |
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EFC_DESERIALIZE_AND_SWAP(de, &m_supported_clocks, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_1394_playback_channels, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_1394_record_channels, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_phys_audio_out, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_phys_audio_in, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_out_groups, result); |
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for (i=0; i<HWINFO_MAX_CAPS_GROUPS; i++) { |
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result &= de.read(&(out_groups[i].type)); |
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result &= de.read(&(out_groups[i].count)); |
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} |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_in_groups, result); |
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for (i=0; i<HWINFO_MAX_CAPS_GROUPS; i++) { |
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result &= de.read(&(in_groups[i].type)); |
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result &= de.read(&(in_groups[i].count)); |
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} |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_midi_out, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_midi_in, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_max_sample_rate, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_min_sample_rate, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_dsp_version, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_arm_version, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &num_mix_play_chan, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &num_mix_rec_chan, result); |
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if (m_header.version >= 1) { |
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EFC_DESERIALIZE_AND_SWAP(de, &m_fpga_version, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_1394_play_chan_2x, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_1394_rec_chan_2x, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_1394_play_chan_4x, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_1394_rec_chan_4x, result); |
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} |
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return result; |
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} |
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void |
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EfcHardwareInfoCmd::showEfcCmd() |
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{ |
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EfcCmd::showEfcCmd(); |
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debugOutput(DEBUG_LEVEL_NORMAL, "EFC HW CAPS info:\n"); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Flags : 0x%08X\n", m_flags); |
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debugOutput(DEBUG_LEVEL_NORMAL, " GUID : %016llX\n", m_guid); |
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debugOutput(DEBUG_LEVEL_NORMAL, " HwType : 0x%08X\n", m_type); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Version : %lu\n", m_version); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Vendor : %s\n", m_vendor_name); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Model : %s\n", m_model_name); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Supported Clocks : 0x%08X\n", m_supported_clocks); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # 1394 Playback : %d\n", m_nb_1394_playback_channels); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # 1394 Record : %d\n", m_nb_1394_record_channels); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Physical out : %d\n", m_nb_phys_audio_out); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Physical in : %d\n", m_nb_phys_audio_in); |
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unsigned int i=0; |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Output Groups : %d\n", m_nb_out_groups); |
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for (i=0;i<m_nb_out_groups;i++) { |
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debugOutput(DEBUG_LEVEL_NORMAL, " Group %d: Type 0x%02X, count %d\n", |
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i, out_groups[i].type, out_groups[i].count); |
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} |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Input Groups : %d\n", m_nb_in_groups); |
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for (i=0;i<m_nb_in_groups;i++) { |
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debugOutput(DEBUG_LEVEL_NORMAL, " Group %d: Type 0x%02X, count %d\n", |
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i, in_groups[i].type, in_groups[i].count); |
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} |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Midi out : %d\n", m_nb_midi_out); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Midi in : %d\n", m_nb_midi_in); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Max Sample Rate : %d\n", m_max_sample_rate); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Min Sample Rate : %d\n", m_min_sample_rate); |
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debugOutput(DEBUG_LEVEL_NORMAL, " DSP version : 0x%08X\n", m_dsp_version); |
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debugOutput(DEBUG_LEVEL_NORMAL, " ARM version : 0x%08X\n", m_arm_version); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Mix play chann. : %d\n", num_mix_play_chan); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Mix rec chann. : %d\n", num_mix_rec_chan); |
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if (m_header.version >= 1) { |
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debugOutput(DEBUG_LEVEL_NORMAL, " FPGA version : 0x%08X\n", m_fpga_version); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # 1394 Playback (x2) : %d\n", m_nb_1394_play_chan_2x); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # 1394 Record (x2) : %d\n", m_nb_1394_rec_chan_2x); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # 1394 Playback (x4) : %d\n", m_nb_1394_play_chan_4x); |
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debugOutput(DEBUG_LEVEL_NORMAL, " # 1394 Record (x4) : %d\n", m_nb_1394_rec_chan_4x); |
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} |
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} |
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// --- polled info command |
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EfcPolledValuesCmd::EfcPolledValuesCmd() |
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: EfcCmd(EFC_CAT_HARDWARE_INFO, EFC_CMD_HW_GET_POLLED) |
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, m_nb_output_meters ( 0 ) |
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, m_nb_input_meters ( 0 ) |
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{} |
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bool |
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EfcPolledValuesCmd::serialize( Util::Cmd::IOSSerialize& se ) |
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{ |
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bool result=true; |
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// the length should be specified before |
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// the header is serialized |
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m_length=EFC_HEADER_LENGTH_QUADLETS; |
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result &= EfcCmd::serialize ( se ); |
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return result; |
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} |
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bool |
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EfcPolledValuesCmd::deserialize( Util::Cmd::IISDeserialize& de ) |
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{ |
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bool result=true; |
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result &= EfcCmd::deserialize ( de ); |
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// the serialization is different from the deserialization |
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EFC_DESERIALIZE_AND_SWAP(de, &m_status, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_detect_spdif, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_detect_adat, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_reserved3, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_reserved4, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_output_meters, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_nb_input_meters, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_reserved5, result); |
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EFC_DESERIALIZE_AND_SWAP(de, &m_reserved6, result); |
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int i=0; |
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int nb_meters=m_nb_output_meters+m_nb_input_meters; |
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assert(nb_meters<POLLED_MAX_NB_METERS); |
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for (i=0; i<nb_meters; i++) { |
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EFC_DESERIALIZE_AND_SWAP(de, (uint32_t *)&m_meters[i], result); |
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} |
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return result; |
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} |
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void |
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EfcPolledValuesCmd::showEfcCmd() |
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{ |
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EfcCmd::showEfcCmd(); |
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debugOutput(DEBUG_LEVEL_NORMAL, "EFC POLLED info:\n"); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Status : 0x%08X\n", m_status); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Detect SPDIF : 0x%08X\n", m_detect_spdif); |
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debugOutput(DEBUG_LEVEL_NORMAL, " Detect ADAT : 0x%08X\n", m_detect_adat); |
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unsigned int i=0; |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Output Meters : %d\n", m_nb_output_meters); |
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for (i=0;i<m_nb_output_meters;i++) { |
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debugOutput(DEBUG_LEVEL_NORMAL, " Meter %d: %ld\n", i, m_meters[i]); |
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} |
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debugOutput(DEBUG_LEVEL_NORMAL, " # Input Meters : %d\n", m_nb_input_meters); |
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for (;i<m_nb_output_meters+m_nb_input_meters;i++) { |
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debugOutput(DEBUG_LEVEL_NORMAL, " Meter %d: %ld\n", i, m_meters[i]); |
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} |
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} |
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} // namespace FireWorks |
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