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0001 // SPDX-License-Identifier: GPL-2.0
0002 
0003 #include "hpi_internal.h"
0004 #include "hpimsginit.h"
0005 
0006 #include "hpidebug.h"
0007 
0008 struct hpi_handle {
0009     unsigned int obj_index:12;
0010     unsigned int obj_type:4;
0011     unsigned int adapter_index:14;
0012     unsigned int spare:1;
0013     unsigned int read_only:1;
0014 };
0015 
0016 union handle_word {
0017     struct hpi_handle h;
0018     u32 w;
0019 };
0020 
0021 u32 hpi_indexes_to_handle(const char c_object, const u16 adapter_index,
0022     const u16 object_index)
0023 {
0024     union handle_word handle;
0025 
0026     handle.h.adapter_index = adapter_index;
0027     handle.h.spare = 0;
0028     handle.h.read_only = 0;
0029     handle.h.obj_type = c_object;
0030     handle.h.obj_index = object_index;
0031     return handle.w;
0032 }
0033 
0034 static u16 hpi_handle_indexes(const u32 h, u16 *p1, u16 *p2)
0035 {
0036     union handle_word uhandle;
0037     if (!h)
0038         return HPI_ERROR_INVALID_HANDLE;
0039 
0040     uhandle.w = h;
0041 
0042     *p1 = (u16)uhandle.h.adapter_index;
0043     if (p2)
0044         *p2 = (u16)uhandle.h.obj_index;
0045 
0046     return 0;
0047 }
0048 
0049 void hpi_handle_to_indexes(const u32 handle, u16 *pw_adapter_index,
0050     u16 *pw_object_index)
0051 {
0052     hpi_handle_indexes(handle, pw_adapter_index, pw_object_index);
0053 }
0054 
0055 char hpi_handle_object(const u32 handle)
0056 {
0057     union handle_word uhandle;
0058     uhandle.w = handle;
0059     return (char)uhandle.h.obj_type;
0060 }
0061 
0062 void hpi_format_to_msg(struct hpi_msg_format *pMF,
0063     const struct hpi_format *pF)
0064 {
0065     pMF->sample_rate = pF->sample_rate;
0066     pMF->bit_rate = pF->bit_rate;
0067     pMF->attributes = pF->attributes;
0068     pMF->channels = pF->channels;
0069     pMF->format = pF->format;
0070 }
0071 
0072 static void hpi_msg_to_format(struct hpi_format *pF,
0073     struct hpi_msg_format *pMF)
0074 {
0075     pF->sample_rate = pMF->sample_rate;
0076     pF->bit_rate = pMF->bit_rate;
0077     pF->attributes = pMF->attributes;
0078     pF->channels = pMF->channels;
0079     pF->format = pMF->format;
0080     pF->mode_legacy = 0;
0081     pF->unused = 0;
0082 }
0083 
0084 void hpi_stream_response_to_legacy(struct hpi_stream_res *pSR)
0085 {
0086     pSR->u.legacy_stream_info.auxiliary_data_available =
0087         pSR->u.stream_info.auxiliary_data_available;
0088     pSR->u.legacy_stream_info.state = pSR->u.stream_info.state;
0089 }
0090 
0091 static inline void hpi_send_recvV1(struct hpi_message_header *m,
0092     struct hpi_response_header *r)
0093 {
0094     hpi_send_recv((struct hpi_message *)m, (struct hpi_response *)r);
0095 }
0096 
0097 u16 hpi_subsys_get_version_ex(u32 *pversion_ex)
0098 {
0099     struct hpi_message hm;
0100     struct hpi_response hr;
0101 
0102     hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
0103         HPI_SUBSYS_GET_VERSION);
0104     hpi_send_recv(&hm, &hr);
0105     *pversion_ex = hr.u.s.data;
0106     return hr.error;
0107 }
0108 
0109 u16 hpi_subsys_get_num_adapters(int *pn_num_adapters)
0110 {
0111     struct hpi_message hm;
0112     struct hpi_response hr;
0113     hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
0114         HPI_SUBSYS_GET_NUM_ADAPTERS);
0115     hpi_send_recv(&hm, &hr);
0116     *pn_num_adapters = (int)hr.u.s.num_adapters;
0117     return hr.error;
0118 }
0119 
0120 u16 hpi_subsys_get_adapter(int iterator, u32 *padapter_index,
0121     u16 *pw_adapter_type)
0122 {
0123     struct hpi_message hm;
0124     struct hpi_response hr;
0125     hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
0126         HPI_SUBSYS_GET_ADAPTER);
0127     hm.obj_index = (u16)iterator;
0128     hpi_send_recv(&hm, &hr);
0129     *padapter_index = (int)hr.u.s.adapter_index;
0130     *pw_adapter_type = hr.u.s.adapter_type;
0131 
0132     return hr.error;
0133 }
0134 
0135 u16 hpi_adapter_open(u16 adapter_index)
0136 {
0137     struct hpi_message hm;
0138     struct hpi_response hr;
0139     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0140         HPI_ADAPTER_OPEN);
0141     hm.adapter_index = adapter_index;
0142 
0143     hpi_send_recv(&hm, &hr);
0144 
0145     return hr.error;
0146 
0147 }
0148 
0149 u16 hpi_adapter_close(u16 adapter_index)
0150 {
0151     struct hpi_message hm;
0152     struct hpi_response hr;
0153     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0154         HPI_ADAPTER_CLOSE);
0155     hm.adapter_index = adapter_index;
0156 
0157     hpi_send_recv(&hm, &hr);
0158 
0159     return hr.error;
0160 }
0161 
0162 u16 hpi_adapter_set_mode(u16 adapter_index, u32 adapter_mode)
0163 {
0164     return hpi_adapter_set_mode_ex(adapter_index, adapter_mode,
0165         HPI_ADAPTER_MODE_SET);
0166 }
0167 
0168 u16 hpi_adapter_set_mode_ex(u16 adapter_index, u32 adapter_mode,
0169     u16 query_or_set)
0170 {
0171     struct hpi_message hm;
0172     struct hpi_response hr;
0173 
0174     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0175         HPI_ADAPTER_SET_MODE);
0176     hm.adapter_index = adapter_index;
0177     hm.u.ax.mode.adapter_mode = adapter_mode;
0178     hm.u.ax.mode.query_or_set = query_or_set;
0179     hpi_send_recv(&hm, &hr);
0180     return hr.error;
0181 }
0182 
0183 u16 hpi_adapter_get_mode(u16 adapter_index, u32 *padapter_mode)
0184 {
0185     struct hpi_message hm;
0186     struct hpi_response hr;
0187     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0188         HPI_ADAPTER_GET_MODE);
0189     hm.adapter_index = adapter_index;
0190     hpi_send_recv(&hm, &hr);
0191     if (padapter_mode)
0192         *padapter_mode = hr.u.ax.mode.adapter_mode;
0193     return hr.error;
0194 }
0195 
0196 u16 hpi_adapter_get_info(u16 adapter_index, u16 *pw_num_outstreams,
0197     u16 *pw_num_instreams, u16 *pw_version, u32 *pserial_number,
0198     u16 *pw_adapter_type)
0199 {
0200     struct hpi_message hm;
0201     struct hpi_response hr;
0202     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0203         HPI_ADAPTER_GET_INFO);
0204     hm.adapter_index = adapter_index;
0205 
0206     hpi_send_recv(&hm, &hr);
0207 
0208     *pw_adapter_type = hr.u.ax.info.adapter_type;
0209     *pw_num_outstreams = hr.u.ax.info.num_outstreams;
0210     *pw_num_instreams = hr.u.ax.info.num_instreams;
0211     *pw_version = hr.u.ax.info.version;
0212     *pserial_number = hr.u.ax.info.serial_number;
0213     return hr.error;
0214 }
0215 
0216 u16 hpi_adapter_get_module_by_index(u16 adapter_index, u16 module_index,
0217     u16 *pw_num_outputs, u16 *pw_num_inputs, u16 *pw_version,
0218     u32 *pserial_number, u16 *pw_module_type, u32 *ph_module)
0219 {
0220     struct hpi_message hm;
0221     struct hpi_response hr;
0222 
0223     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0224         HPI_ADAPTER_MODULE_INFO);
0225     hm.adapter_index = adapter_index;
0226     hm.u.ax.module_info.index = module_index;
0227 
0228     hpi_send_recv(&hm, &hr);
0229 
0230     *pw_module_type = hr.u.ax.info.adapter_type;
0231     *pw_num_outputs = hr.u.ax.info.num_outstreams;
0232     *pw_num_inputs = hr.u.ax.info.num_instreams;
0233     *pw_version = hr.u.ax.info.version;
0234     *pserial_number = hr.u.ax.info.serial_number;
0235     *ph_module = 0;
0236 
0237     return hr.error;
0238 }
0239 
0240 u16 hpi_adapter_set_property(u16 adapter_index, u16 property, u16 parameter1,
0241     u16 parameter2)
0242 {
0243     struct hpi_message hm;
0244     struct hpi_response hr;
0245     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0246         HPI_ADAPTER_SET_PROPERTY);
0247     hm.adapter_index = adapter_index;
0248     hm.u.ax.property_set.property = property;
0249     hm.u.ax.property_set.parameter1 = parameter1;
0250     hm.u.ax.property_set.parameter2 = parameter2;
0251 
0252     hpi_send_recv(&hm, &hr);
0253 
0254     return hr.error;
0255 }
0256 
0257 u16 hpi_adapter_get_property(u16 adapter_index, u16 property,
0258     u16 *pw_parameter1, u16 *pw_parameter2)
0259 {
0260     struct hpi_message hm;
0261     struct hpi_response hr;
0262     hpi_init_message_response(&hm, &hr, HPI_OBJ_ADAPTER,
0263         HPI_ADAPTER_GET_PROPERTY);
0264     hm.adapter_index = adapter_index;
0265     hm.u.ax.property_set.property = property;
0266 
0267     hpi_send_recv(&hm, &hr);
0268     if (!hr.error) {
0269         if (pw_parameter1)
0270             *pw_parameter1 = hr.u.ax.property_get.parameter1;
0271         if (pw_parameter2)
0272             *pw_parameter2 = hr.u.ax.property_get.parameter2;
0273     }
0274 
0275     return hr.error;
0276 }
0277 
0278 u16 hpi_adapter_enumerate_property(u16 adapter_index, u16 index,
0279     u16 what_to_enumerate, u16 property_index, u32 *psetting)
0280 {
0281     return 0;
0282 }
0283 
0284 u16 hpi_format_create(struct hpi_format *p_format, u16 channels, u16 format,
0285     u32 sample_rate, u32 bit_rate, u32 attributes)
0286 {
0287     u16 err = 0;
0288     struct hpi_msg_format fmt;
0289 
0290     switch (channels) {
0291     case 1:
0292     case 2:
0293     case 4:
0294     case 6:
0295     case 8:
0296     case 16:
0297         break;
0298     default:
0299         err = HPI_ERROR_INVALID_CHANNELS;
0300         return err;
0301     }
0302     fmt.channels = channels;
0303 
0304     switch (format) {
0305     case HPI_FORMAT_PCM16_SIGNED:
0306     case HPI_FORMAT_PCM24_SIGNED:
0307     case HPI_FORMAT_PCM32_SIGNED:
0308     case HPI_FORMAT_PCM32_FLOAT:
0309     case HPI_FORMAT_PCM16_BIGENDIAN:
0310     case HPI_FORMAT_PCM8_UNSIGNED:
0311     case HPI_FORMAT_MPEG_L1:
0312     case HPI_FORMAT_MPEG_L2:
0313     case HPI_FORMAT_MPEG_L3:
0314     case HPI_FORMAT_DOLBY_AC2:
0315     case HPI_FORMAT_AA_TAGIT1_HITS:
0316     case HPI_FORMAT_AA_TAGIT1_INSERTS:
0317     case HPI_FORMAT_RAW_BITSTREAM:
0318     case HPI_FORMAT_AA_TAGIT1_HITS_EX1:
0319     case HPI_FORMAT_OEM1:
0320     case HPI_FORMAT_OEM2:
0321         break;
0322     default:
0323         err = HPI_ERROR_INVALID_FORMAT;
0324         return err;
0325     }
0326     fmt.format = format;
0327 
0328     if (sample_rate < 8000L) {
0329         err = HPI_ERROR_INCOMPATIBLE_SAMPLERATE;
0330         sample_rate = 8000L;
0331     }
0332     if (sample_rate > 200000L) {
0333         err = HPI_ERROR_INCOMPATIBLE_SAMPLERATE;
0334         sample_rate = 200000L;
0335     }
0336     fmt.sample_rate = sample_rate;
0337 
0338     switch (format) {
0339     case HPI_FORMAT_MPEG_L1:
0340     case HPI_FORMAT_MPEG_L2:
0341     case HPI_FORMAT_MPEG_L3:
0342         fmt.bit_rate = bit_rate;
0343         break;
0344     case HPI_FORMAT_PCM16_SIGNED:
0345     case HPI_FORMAT_PCM16_BIGENDIAN:
0346         fmt.bit_rate = channels * sample_rate * 2;
0347         break;
0348     case HPI_FORMAT_PCM32_SIGNED:
0349     case HPI_FORMAT_PCM32_FLOAT:
0350         fmt.bit_rate = channels * sample_rate * 4;
0351         break;
0352     case HPI_FORMAT_PCM8_UNSIGNED:
0353         fmt.bit_rate = channels * sample_rate;
0354         break;
0355     default:
0356         fmt.bit_rate = 0;
0357     }
0358 
0359     switch (format) {
0360     case HPI_FORMAT_MPEG_L2:
0361         if ((channels == 1)
0362             && (attributes != HPI_MPEG_MODE_DEFAULT)) {
0363             attributes = HPI_MPEG_MODE_DEFAULT;
0364             err = HPI_ERROR_INVALID_FORMAT;
0365         } else if (attributes > HPI_MPEG_MODE_DUALCHANNEL) {
0366             attributes = HPI_MPEG_MODE_DEFAULT;
0367             err = HPI_ERROR_INVALID_FORMAT;
0368         }
0369         fmt.attributes = attributes;
0370         break;
0371     default:
0372         fmt.attributes = attributes;
0373     }
0374 
0375     hpi_msg_to_format(p_format, &fmt);
0376     return err;
0377 }
0378 
0379 u16 hpi_stream_estimate_buffer_size(struct hpi_format *p_format,
0380     u32 host_polling_rate_in_milli_seconds, u32 *recommended_buffer_size)
0381 {
0382 
0383     u32 bytes_per_second;
0384     u32 size;
0385     u16 channels;
0386     struct hpi_format *pF = p_format;
0387 
0388     channels = pF->channels;
0389 
0390     switch (pF->format) {
0391     case HPI_FORMAT_PCM16_BIGENDIAN:
0392     case HPI_FORMAT_PCM16_SIGNED:
0393         bytes_per_second = pF->sample_rate * 2L * channels;
0394         break;
0395     case HPI_FORMAT_PCM24_SIGNED:
0396         bytes_per_second = pF->sample_rate * 3L * channels;
0397         break;
0398     case HPI_FORMAT_PCM32_SIGNED:
0399     case HPI_FORMAT_PCM32_FLOAT:
0400         bytes_per_second = pF->sample_rate * 4L * channels;
0401         break;
0402     case HPI_FORMAT_PCM8_UNSIGNED:
0403         bytes_per_second = pF->sample_rate * 1L * channels;
0404         break;
0405     case HPI_FORMAT_MPEG_L1:
0406     case HPI_FORMAT_MPEG_L2:
0407     case HPI_FORMAT_MPEG_L3:
0408         bytes_per_second = pF->bit_rate / 8L;
0409         break;
0410     case HPI_FORMAT_DOLBY_AC2:
0411 
0412         bytes_per_second = 256000L / 8L;
0413         break;
0414     default:
0415         return HPI_ERROR_INVALID_FORMAT;
0416     }
0417     size = (bytes_per_second * host_polling_rate_in_milli_seconds * 2) /
0418         1000L;
0419 
0420     *recommended_buffer_size =
0421         roundup_pow_of_two(((size + 4095L) & ~4095L));
0422     return 0;
0423 }
0424 
0425 u16 hpi_outstream_open(u16 adapter_index, u16 outstream_index,
0426     u32 *ph_outstream)
0427 {
0428     struct hpi_message hm;
0429     struct hpi_response hr;
0430     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0431         HPI_OSTREAM_OPEN);
0432     hm.adapter_index = adapter_index;
0433     hm.obj_index = outstream_index;
0434 
0435     hpi_send_recv(&hm, &hr);
0436 
0437     if (hr.error == 0)
0438         *ph_outstream =
0439             hpi_indexes_to_handle(HPI_OBJ_OSTREAM, adapter_index,
0440             outstream_index);
0441     else
0442         *ph_outstream = 0;
0443     return hr.error;
0444 }
0445 
0446 u16 hpi_outstream_close(u32 h_outstream)
0447 {
0448     struct hpi_message hm;
0449     struct hpi_response hr;
0450 
0451     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0452         HPI_OSTREAM_HOSTBUFFER_FREE);
0453     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0454         return HPI_ERROR_INVALID_HANDLE;
0455 
0456     hpi_send_recv(&hm, &hr);
0457 
0458     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0459         HPI_OSTREAM_GROUP_RESET);
0460     hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index);
0461     hpi_send_recv(&hm, &hr);
0462 
0463     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0464         HPI_OSTREAM_CLOSE);
0465     hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index);
0466     hpi_send_recv(&hm, &hr);
0467 
0468     return hr.error;
0469 }
0470 
0471 u16 hpi_outstream_get_info_ex(u32 h_outstream, u16 *pw_state,
0472     u32 *pbuffer_size, u32 *pdata_to_play, u32 *psamples_played,
0473     u32 *pauxiliary_data_to_play)
0474 {
0475     struct hpi_message hm;
0476     struct hpi_response hr;
0477     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0478         HPI_OSTREAM_GET_INFO);
0479     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0480         return HPI_ERROR_INVALID_HANDLE;
0481 
0482     hpi_send_recv(&hm, &hr);
0483 
0484     if (pw_state)
0485         *pw_state = hr.u.d.u.stream_info.state;
0486     if (pbuffer_size)
0487         *pbuffer_size = hr.u.d.u.stream_info.buffer_size;
0488     if (pdata_to_play)
0489         *pdata_to_play = hr.u.d.u.stream_info.data_available;
0490     if (psamples_played)
0491         *psamples_played = hr.u.d.u.stream_info.samples_transferred;
0492     if (pauxiliary_data_to_play)
0493         *pauxiliary_data_to_play =
0494             hr.u.d.u.stream_info.auxiliary_data_available;
0495     return hr.error;
0496 }
0497 
0498 u16 hpi_outstream_write_buf(u32 h_outstream, const u8 *pb_data,
0499     u32 bytes_to_write, const struct hpi_format *p_format)
0500 {
0501     struct hpi_message hm;
0502     struct hpi_response hr;
0503     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0504         HPI_OSTREAM_WRITE);
0505     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0506         return HPI_ERROR_INVALID_HANDLE;
0507     hm.u.d.u.data.pb_data = (u8 *)pb_data;
0508     hm.u.d.u.data.data_size = bytes_to_write;
0509 
0510     hpi_format_to_msg(&hm.u.d.u.data.format, p_format);
0511 
0512     hpi_send_recv(&hm, &hr);
0513 
0514     return hr.error;
0515 }
0516 
0517 u16 hpi_outstream_start(u32 h_outstream)
0518 {
0519     struct hpi_message hm;
0520     struct hpi_response hr;
0521     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0522         HPI_OSTREAM_START);
0523     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0524         return HPI_ERROR_INVALID_HANDLE;
0525 
0526     hpi_send_recv(&hm, &hr);
0527 
0528     return hr.error;
0529 }
0530 
0531 u16 hpi_outstream_wait_start(u32 h_outstream)
0532 {
0533     struct hpi_message hm;
0534     struct hpi_response hr;
0535     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0536         HPI_OSTREAM_WAIT_START);
0537     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0538         return HPI_ERROR_INVALID_HANDLE;
0539 
0540     hpi_send_recv(&hm, &hr);
0541 
0542     return hr.error;
0543 }
0544 
0545 u16 hpi_outstream_stop(u32 h_outstream)
0546 {
0547     struct hpi_message hm;
0548     struct hpi_response hr;
0549     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0550         HPI_OSTREAM_STOP);
0551     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0552         return HPI_ERROR_INVALID_HANDLE;
0553 
0554     hpi_send_recv(&hm, &hr);
0555 
0556     return hr.error;
0557 }
0558 
0559 u16 hpi_outstream_sinegen(u32 h_outstream)
0560 {
0561     struct hpi_message hm;
0562     struct hpi_response hr;
0563     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0564         HPI_OSTREAM_SINEGEN);
0565     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0566         return HPI_ERROR_INVALID_HANDLE;
0567 
0568     hpi_send_recv(&hm, &hr);
0569 
0570     return hr.error;
0571 }
0572 
0573 u16 hpi_outstream_reset(u32 h_outstream)
0574 {
0575     struct hpi_message hm;
0576     struct hpi_response hr;
0577     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0578         HPI_OSTREAM_RESET);
0579     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0580         return HPI_ERROR_INVALID_HANDLE;
0581 
0582     hpi_send_recv(&hm, &hr);
0583 
0584     return hr.error;
0585 }
0586 
0587 u16 hpi_outstream_query_format(u32 h_outstream, struct hpi_format *p_format)
0588 {
0589     struct hpi_message hm;
0590     struct hpi_response hr;
0591 
0592     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0593         HPI_OSTREAM_QUERY_FORMAT);
0594     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0595         return HPI_ERROR_INVALID_HANDLE;
0596 
0597     hpi_format_to_msg(&hm.u.d.u.data.format, p_format);
0598 
0599     hpi_send_recv(&hm, &hr);
0600 
0601     return hr.error;
0602 }
0603 
0604 u16 hpi_outstream_set_format(u32 h_outstream, struct hpi_format *p_format)
0605 {
0606     struct hpi_message hm;
0607     struct hpi_response hr;
0608 
0609     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0610         HPI_OSTREAM_SET_FORMAT);
0611     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0612         return HPI_ERROR_INVALID_HANDLE;
0613 
0614     hpi_format_to_msg(&hm.u.d.u.data.format, p_format);
0615 
0616     hpi_send_recv(&hm, &hr);
0617 
0618     return hr.error;
0619 }
0620 
0621 u16 hpi_outstream_set_velocity(u32 h_outstream, short velocity)
0622 {
0623     struct hpi_message hm;
0624     struct hpi_response hr;
0625 
0626     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0627         HPI_OSTREAM_SET_VELOCITY);
0628     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0629         return HPI_ERROR_INVALID_HANDLE;
0630     hm.u.d.u.velocity = velocity;
0631 
0632     hpi_send_recv(&hm, &hr);
0633 
0634     return hr.error;
0635 }
0636 
0637 u16 hpi_outstream_set_punch_in_out(u32 h_outstream, u32 punch_in_sample,
0638     u32 punch_out_sample)
0639 {
0640     struct hpi_message hm;
0641     struct hpi_response hr;
0642 
0643     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0644         HPI_OSTREAM_SET_PUNCHINOUT);
0645     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0646         return HPI_ERROR_INVALID_HANDLE;
0647 
0648     hm.u.d.u.pio.punch_in_sample = punch_in_sample;
0649     hm.u.d.u.pio.punch_out_sample = punch_out_sample;
0650 
0651     hpi_send_recv(&hm, &hr);
0652 
0653     return hr.error;
0654 }
0655 
0656 u16 hpi_outstream_ancillary_reset(u32 h_outstream, u16 mode)
0657 {
0658     struct hpi_message hm;
0659     struct hpi_response hr;
0660 
0661     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0662         HPI_OSTREAM_ANC_RESET);
0663     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0664         return HPI_ERROR_INVALID_HANDLE;
0665     hm.u.d.u.data.format.channels = mode;
0666     hpi_send_recv(&hm, &hr);
0667     return hr.error;
0668 }
0669 
0670 u16 hpi_outstream_ancillary_get_info(u32 h_outstream, u32 *pframes_available)
0671 {
0672     struct hpi_message hm;
0673     struct hpi_response hr;
0674 
0675     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0676         HPI_OSTREAM_ANC_GET_INFO);
0677     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0678         return HPI_ERROR_INVALID_HANDLE;
0679     hpi_send_recv(&hm, &hr);
0680     if (hr.error == 0) {
0681         if (pframes_available)
0682             *pframes_available =
0683                 hr.u.d.u.stream_info.data_available /
0684                 sizeof(struct hpi_anc_frame);
0685     }
0686     return hr.error;
0687 }
0688 
0689 u16 hpi_outstream_ancillary_read(u32 h_outstream,
0690     struct hpi_anc_frame *p_anc_frame_buffer,
0691     u32 anc_frame_buffer_size_in_bytes,
0692     u32 number_of_ancillary_frames_to_read)
0693 {
0694     struct hpi_message hm;
0695     struct hpi_response hr;
0696 
0697     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0698         HPI_OSTREAM_ANC_READ);
0699     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0700         return HPI_ERROR_INVALID_HANDLE;
0701     hm.u.d.u.data.pb_data = (u8 *)p_anc_frame_buffer;
0702     hm.u.d.u.data.data_size =
0703         number_of_ancillary_frames_to_read *
0704         sizeof(struct hpi_anc_frame);
0705     if (hm.u.d.u.data.data_size <= anc_frame_buffer_size_in_bytes)
0706         hpi_send_recv(&hm, &hr);
0707     else
0708         hr.error = HPI_ERROR_INVALID_DATASIZE;
0709     return hr.error;
0710 }
0711 
0712 u16 hpi_outstream_set_time_scale(u32 h_outstream, u32 time_scale)
0713 {
0714     struct hpi_message hm;
0715     struct hpi_response hr;
0716 
0717     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0718         HPI_OSTREAM_SET_TIMESCALE);
0719     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0720         return HPI_ERROR_INVALID_HANDLE;
0721 
0722     hm.u.d.u.time_scale = time_scale;
0723 
0724     hpi_send_recv(&hm, &hr);
0725 
0726     return hr.error;
0727 }
0728 
0729 u16 hpi_outstream_host_buffer_allocate(u32 h_outstream, u32 size_in_bytes)
0730 {
0731     struct hpi_message hm;
0732     struct hpi_response hr;
0733 
0734     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0735         HPI_OSTREAM_HOSTBUFFER_ALLOC);
0736     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0737         return HPI_ERROR_INVALID_HANDLE;
0738     hm.u.d.u.data.data_size = size_in_bytes;
0739     hpi_send_recv(&hm, &hr);
0740     return hr.error;
0741 }
0742 
0743 u16 hpi_outstream_host_buffer_get_info(u32 h_outstream, u8 **pp_buffer,
0744     struct hpi_hostbuffer_status **pp_status)
0745 {
0746     struct hpi_message hm;
0747     struct hpi_response hr;
0748 
0749     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0750         HPI_OSTREAM_HOSTBUFFER_GET_INFO);
0751     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0752         return HPI_ERROR_INVALID_HANDLE;
0753     hpi_send_recv(&hm, &hr);
0754 
0755     if (hr.error == 0) {
0756         if (pp_buffer)
0757             *pp_buffer = hr.u.d.u.hostbuffer_info.p_buffer;
0758         if (pp_status)
0759             *pp_status = hr.u.d.u.hostbuffer_info.p_status;
0760     }
0761     return hr.error;
0762 }
0763 
0764 u16 hpi_outstream_host_buffer_free(u32 h_outstream)
0765 {
0766     struct hpi_message hm;
0767     struct hpi_response hr;
0768 
0769     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0770         HPI_OSTREAM_HOSTBUFFER_FREE);
0771     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0772         return HPI_ERROR_INVALID_HANDLE;
0773     hpi_send_recv(&hm, &hr);
0774     return hr.error;
0775 }
0776 
0777 u16 hpi_outstream_group_add(u32 h_outstream, u32 h_stream)
0778 {
0779     struct hpi_message hm;
0780     struct hpi_response hr;
0781     u16 adapter;
0782     char c_obj_type;
0783 
0784     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0785         HPI_OSTREAM_GROUP_ADD);
0786 
0787     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0788         return HPI_ERROR_INVALID_HANDLE;
0789 
0790     if (hpi_handle_indexes(h_stream, &adapter,
0791             &hm.u.d.u.stream.stream_index))
0792         return HPI_ERROR_INVALID_HANDLE;
0793 
0794     c_obj_type = hpi_handle_object(h_stream);
0795     switch (c_obj_type) {
0796     case HPI_OBJ_OSTREAM:
0797     case HPI_OBJ_ISTREAM:
0798         hm.u.d.u.stream.object_type = c_obj_type;
0799         break;
0800     default:
0801         return HPI_ERROR_INVALID_OBJ;
0802     }
0803     if (adapter != hm.adapter_index)
0804         return HPI_ERROR_NO_INTERADAPTER_GROUPS;
0805 
0806     hpi_send_recv(&hm, &hr);
0807     return hr.error;
0808 }
0809 
0810 u16 hpi_outstream_group_get_map(u32 h_outstream, u32 *poutstream_map,
0811     u32 *pinstream_map)
0812 {
0813     struct hpi_message hm;
0814     struct hpi_response hr;
0815 
0816     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0817         HPI_OSTREAM_GROUP_GETMAP);
0818     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0819         return HPI_ERROR_INVALID_HANDLE;
0820     hpi_send_recv(&hm, &hr);
0821 
0822     if (poutstream_map)
0823         *poutstream_map = hr.u.d.u.group_info.outstream_group_map;
0824     if (pinstream_map)
0825         *pinstream_map = hr.u.d.u.group_info.instream_group_map;
0826 
0827     return hr.error;
0828 }
0829 
0830 u16 hpi_outstream_group_reset(u32 h_outstream)
0831 {
0832     struct hpi_message hm;
0833     struct hpi_response hr;
0834 
0835     hpi_init_message_response(&hm, &hr, HPI_OBJ_OSTREAM,
0836         HPI_OSTREAM_GROUP_RESET);
0837     if (hpi_handle_indexes(h_outstream, &hm.adapter_index, &hm.obj_index))
0838         return HPI_ERROR_INVALID_HANDLE;
0839     hpi_send_recv(&hm, &hr);
0840     return hr.error;
0841 }
0842 
0843 u16 hpi_instream_open(u16 adapter_index, u16 instream_index, u32 *ph_instream)
0844 {
0845     struct hpi_message hm;
0846     struct hpi_response hr;
0847 
0848     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0849         HPI_ISTREAM_OPEN);
0850     hm.adapter_index = adapter_index;
0851     hm.obj_index = instream_index;
0852 
0853     hpi_send_recv(&hm, &hr);
0854 
0855     if (hr.error == 0)
0856         *ph_instream =
0857             hpi_indexes_to_handle(HPI_OBJ_ISTREAM, adapter_index,
0858             instream_index);
0859     else
0860         *ph_instream = 0;
0861 
0862     return hr.error;
0863 }
0864 
0865 u16 hpi_instream_close(u32 h_instream)
0866 {
0867     struct hpi_message hm;
0868     struct hpi_response hr;
0869 
0870     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0871         HPI_ISTREAM_HOSTBUFFER_FREE);
0872     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0873         return HPI_ERROR_INVALID_HANDLE;
0874     hpi_send_recv(&hm, &hr);
0875 
0876     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0877         HPI_ISTREAM_GROUP_RESET);
0878     hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index);
0879     hpi_send_recv(&hm, &hr);
0880 
0881     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0882         HPI_ISTREAM_CLOSE);
0883     hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index);
0884     hpi_send_recv(&hm, &hr);
0885 
0886     return hr.error;
0887 }
0888 
0889 u16 hpi_instream_query_format(u32 h_instream,
0890     const struct hpi_format *p_format)
0891 {
0892     struct hpi_message hm;
0893     struct hpi_response hr;
0894 
0895     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0896         HPI_ISTREAM_QUERY_FORMAT);
0897     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0898         return HPI_ERROR_INVALID_HANDLE;
0899     hpi_format_to_msg(&hm.u.d.u.data.format, p_format);
0900 
0901     hpi_send_recv(&hm, &hr);
0902 
0903     return hr.error;
0904 }
0905 
0906 u16 hpi_instream_set_format(u32 h_instream, const struct hpi_format *p_format)
0907 {
0908     struct hpi_message hm;
0909     struct hpi_response hr;
0910 
0911     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0912         HPI_ISTREAM_SET_FORMAT);
0913     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0914         return HPI_ERROR_INVALID_HANDLE;
0915     hpi_format_to_msg(&hm.u.d.u.data.format, p_format);
0916 
0917     hpi_send_recv(&hm, &hr);
0918 
0919     return hr.error;
0920 }
0921 
0922 u16 hpi_instream_read_buf(u32 h_instream, u8 *pb_data, u32 bytes_to_read)
0923 {
0924     struct hpi_message hm;
0925     struct hpi_response hr;
0926 
0927     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0928         HPI_ISTREAM_READ);
0929     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0930         return HPI_ERROR_INVALID_HANDLE;
0931     hm.u.d.u.data.data_size = bytes_to_read;
0932     hm.u.d.u.data.pb_data = pb_data;
0933 
0934     hpi_send_recv(&hm, &hr);
0935 
0936     return hr.error;
0937 }
0938 
0939 u16 hpi_instream_start(u32 h_instream)
0940 {
0941     struct hpi_message hm;
0942     struct hpi_response hr;
0943 
0944     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0945         HPI_ISTREAM_START);
0946     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0947         return HPI_ERROR_INVALID_HANDLE;
0948 
0949     hpi_send_recv(&hm, &hr);
0950 
0951     return hr.error;
0952 }
0953 
0954 u16 hpi_instream_wait_start(u32 h_instream)
0955 {
0956     struct hpi_message hm;
0957     struct hpi_response hr;
0958 
0959     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0960         HPI_ISTREAM_WAIT_START);
0961     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0962         return HPI_ERROR_INVALID_HANDLE;
0963 
0964     hpi_send_recv(&hm, &hr);
0965 
0966     return hr.error;
0967 }
0968 
0969 u16 hpi_instream_stop(u32 h_instream)
0970 {
0971     struct hpi_message hm;
0972     struct hpi_response hr;
0973 
0974     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0975         HPI_ISTREAM_STOP);
0976     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0977         return HPI_ERROR_INVALID_HANDLE;
0978 
0979     hpi_send_recv(&hm, &hr);
0980 
0981     return hr.error;
0982 }
0983 
0984 u16 hpi_instream_reset(u32 h_instream)
0985 {
0986     struct hpi_message hm;
0987     struct hpi_response hr;
0988 
0989     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
0990         HPI_ISTREAM_RESET);
0991     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
0992         return HPI_ERROR_INVALID_HANDLE;
0993 
0994     hpi_send_recv(&hm, &hr);
0995 
0996     return hr.error;
0997 }
0998 
0999 u16 hpi_instream_get_info_ex(u32 h_instream, u16 *pw_state, u32 *pbuffer_size,
1000     u32 *pdata_recorded, u32 *psamples_recorded,
1001     u32 *pauxiliary_data_recorded)
1002 {
1003     struct hpi_message hm;
1004     struct hpi_response hr;
1005     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1006         HPI_ISTREAM_GET_INFO);
1007     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1008         return HPI_ERROR_INVALID_HANDLE;
1009 
1010     hpi_send_recv(&hm, &hr);
1011 
1012     if (pw_state)
1013         *pw_state = hr.u.d.u.stream_info.state;
1014     if (pbuffer_size)
1015         *pbuffer_size = hr.u.d.u.stream_info.buffer_size;
1016     if (pdata_recorded)
1017         *pdata_recorded = hr.u.d.u.stream_info.data_available;
1018     if (psamples_recorded)
1019         *psamples_recorded = hr.u.d.u.stream_info.samples_transferred;
1020     if (pauxiliary_data_recorded)
1021         *pauxiliary_data_recorded =
1022             hr.u.d.u.stream_info.auxiliary_data_available;
1023     return hr.error;
1024 }
1025 
1026 u16 hpi_instream_ancillary_reset(u32 h_instream, u16 bytes_per_frame,
1027     u16 mode, u16 alignment, u16 idle_bit)
1028 {
1029     struct hpi_message hm;
1030     struct hpi_response hr;
1031     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1032         HPI_ISTREAM_ANC_RESET);
1033     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1034         return HPI_ERROR_INVALID_HANDLE;
1035     hm.u.d.u.data.format.attributes = bytes_per_frame;
1036     hm.u.d.u.data.format.format = (mode << 8) | (alignment & 0xff);
1037     hm.u.d.u.data.format.channels = idle_bit;
1038     hpi_send_recv(&hm, &hr);
1039     return hr.error;
1040 }
1041 
1042 u16 hpi_instream_ancillary_get_info(u32 h_instream, u32 *pframe_space)
1043 {
1044     struct hpi_message hm;
1045     struct hpi_response hr;
1046     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1047         HPI_ISTREAM_ANC_GET_INFO);
1048     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1049         return HPI_ERROR_INVALID_HANDLE;
1050     hpi_send_recv(&hm, &hr);
1051     if (pframe_space)
1052         *pframe_space =
1053             (hr.u.d.u.stream_info.buffer_size -
1054             hr.u.d.u.stream_info.data_available) /
1055             sizeof(struct hpi_anc_frame);
1056     return hr.error;
1057 }
1058 
1059 u16 hpi_instream_ancillary_write(u32 h_instream,
1060     const struct hpi_anc_frame *p_anc_frame_buffer,
1061     u32 anc_frame_buffer_size_in_bytes,
1062     u32 number_of_ancillary_frames_to_write)
1063 {
1064     struct hpi_message hm;
1065     struct hpi_response hr;
1066 
1067     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1068         HPI_ISTREAM_ANC_WRITE);
1069     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1070         return HPI_ERROR_INVALID_HANDLE;
1071     hm.u.d.u.data.pb_data = (u8 *)p_anc_frame_buffer;
1072     hm.u.d.u.data.data_size =
1073         number_of_ancillary_frames_to_write *
1074         sizeof(struct hpi_anc_frame);
1075     if (hm.u.d.u.data.data_size <= anc_frame_buffer_size_in_bytes)
1076         hpi_send_recv(&hm, &hr);
1077     else
1078         hr.error = HPI_ERROR_INVALID_DATASIZE;
1079     return hr.error;
1080 }
1081 
1082 u16 hpi_instream_host_buffer_allocate(u32 h_instream, u32 size_in_bytes)
1083 {
1084 
1085     struct hpi_message hm;
1086     struct hpi_response hr;
1087 
1088     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1089         HPI_ISTREAM_HOSTBUFFER_ALLOC);
1090     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1091         return HPI_ERROR_INVALID_HANDLE;
1092     hm.u.d.u.data.data_size = size_in_bytes;
1093     hpi_send_recv(&hm, &hr);
1094     return hr.error;
1095 }
1096 
1097 u16 hpi_instream_host_buffer_get_info(u32 h_instream, u8 **pp_buffer,
1098     struct hpi_hostbuffer_status **pp_status)
1099 {
1100     struct hpi_message hm;
1101     struct hpi_response hr;
1102 
1103     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1104         HPI_ISTREAM_HOSTBUFFER_GET_INFO);
1105     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1106         return HPI_ERROR_INVALID_HANDLE;
1107     hpi_send_recv(&hm, &hr);
1108 
1109     if (hr.error == 0) {
1110         if (pp_buffer)
1111             *pp_buffer = hr.u.d.u.hostbuffer_info.p_buffer;
1112         if (pp_status)
1113             *pp_status = hr.u.d.u.hostbuffer_info.p_status;
1114     }
1115     return hr.error;
1116 }
1117 
1118 u16 hpi_instream_host_buffer_free(u32 h_instream)
1119 {
1120 
1121     struct hpi_message hm;
1122     struct hpi_response hr;
1123 
1124     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1125         HPI_ISTREAM_HOSTBUFFER_FREE);
1126     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1127         return HPI_ERROR_INVALID_HANDLE;
1128     hpi_send_recv(&hm, &hr);
1129     return hr.error;
1130 }
1131 
1132 u16 hpi_instream_group_add(u32 h_instream, u32 h_stream)
1133 {
1134     struct hpi_message hm;
1135     struct hpi_response hr;
1136     u16 adapter;
1137     char c_obj_type;
1138 
1139     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1140         HPI_ISTREAM_GROUP_ADD);
1141     hr.error = 0;
1142 
1143     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1144         return HPI_ERROR_INVALID_HANDLE;
1145 
1146     if (hpi_handle_indexes(h_stream, &adapter,
1147             &hm.u.d.u.stream.stream_index))
1148         return HPI_ERROR_INVALID_HANDLE;
1149 
1150     c_obj_type = hpi_handle_object(h_stream);
1151 
1152     switch (c_obj_type) {
1153     case HPI_OBJ_OSTREAM:
1154     case HPI_OBJ_ISTREAM:
1155         hm.u.d.u.stream.object_type = c_obj_type;
1156         break;
1157     default:
1158         return HPI_ERROR_INVALID_OBJ;
1159     }
1160 
1161     if (adapter != hm.adapter_index)
1162         return HPI_ERROR_NO_INTERADAPTER_GROUPS;
1163 
1164     hpi_send_recv(&hm, &hr);
1165     return hr.error;
1166 }
1167 
1168 u16 hpi_instream_group_get_map(u32 h_instream, u32 *poutstream_map,
1169     u32 *pinstream_map)
1170 {
1171     struct hpi_message hm;
1172     struct hpi_response hr;
1173 
1174     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1175         HPI_ISTREAM_HOSTBUFFER_FREE);
1176     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1177         return HPI_ERROR_INVALID_HANDLE;
1178     hpi_send_recv(&hm, &hr);
1179 
1180     if (poutstream_map)
1181         *poutstream_map = hr.u.d.u.group_info.outstream_group_map;
1182     if (pinstream_map)
1183         *pinstream_map = hr.u.d.u.group_info.instream_group_map;
1184 
1185     return hr.error;
1186 }
1187 
1188 u16 hpi_instream_group_reset(u32 h_instream)
1189 {
1190     struct hpi_message hm;
1191     struct hpi_response hr;
1192 
1193     hpi_init_message_response(&hm, &hr, HPI_OBJ_ISTREAM,
1194         HPI_ISTREAM_GROUP_RESET);
1195     if (hpi_handle_indexes(h_instream, &hm.adapter_index, &hm.obj_index))
1196         return HPI_ERROR_INVALID_HANDLE;
1197     hpi_send_recv(&hm, &hr);
1198     return hr.error;
1199 }
1200 
1201 u16 hpi_mixer_open(u16 adapter_index, u32 *ph_mixer)
1202 {
1203     struct hpi_message hm;
1204     struct hpi_response hr;
1205     hpi_init_message_response(&hm, &hr, HPI_OBJ_MIXER, HPI_MIXER_OPEN);
1206     hm.adapter_index = adapter_index;
1207 
1208     hpi_send_recv(&hm, &hr);
1209 
1210     if (hr.error == 0)
1211         *ph_mixer =
1212             hpi_indexes_to_handle(HPI_OBJ_MIXER, adapter_index,
1213             0);
1214     else
1215         *ph_mixer = 0;
1216     return hr.error;
1217 }
1218 
1219 u16 hpi_mixer_close(u32 h_mixer)
1220 {
1221     struct hpi_message hm;
1222     struct hpi_response hr;
1223 
1224     hpi_init_message_response(&hm, &hr, HPI_OBJ_MIXER, HPI_MIXER_CLOSE);
1225     if (hpi_handle_indexes(h_mixer, &hm.adapter_index, NULL))
1226         return HPI_ERROR_INVALID_HANDLE;
1227 
1228     hpi_send_recv(&hm, &hr);
1229     return hr.error;
1230 }
1231 
1232 u16 hpi_mixer_get_control(u32 h_mixer, u16 src_node_type,
1233     u16 src_node_type_index, u16 dst_node_type, u16 dst_node_type_index,
1234     u16 control_type, u32 *ph_control)
1235 {
1236     struct hpi_message hm;
1237     struct hpi_response hr;
1238     hpi_init_message_response(&hm, &hr, HPI_OBJ_MIXER,
1239         HPI_MIXER_GET_CONTROL);
1240     if (hpi_handle_indexes(h_mixer, &hm.adapter_index, NULL))
1241         return HPI_ERROR_INVALID_HANDLE;
1242     hm.u.m.node_type1 = src_node_type;
1243     hm.u.m.node_index1 = src_node_type_index;
1244     hm.u.m.node_type2 = dst_node_type;
1245     hm.u.m.node_index2 = dst_node_type_index;
1246     hm.u.m.control_type = control_type;
1247 
1248     hpi_send_recv(&hm, &hr);
1249 
1250     if (hr.error == 0)
1251         *ph_control =
1252             hpi_indexes_to_handle(HPI_OBJ_CONTROL,
1253             hm.adapter_index, hr.u.m.control_index);
1254     else
1255         *ph_control = 0;
1256     return hr.error;
1257 }
1258 
1259 u16 hpi_mixer_get_control_by_index(u32 h_mixer, u16 control_index,
1260     u16 *pw_src_node_type, u16 *pw_src_node_index, u16 *pw_dst_node_type,
1261     u16 *pw_dst_node_index, u16 *pw_control_type, u32 *ph_control)
1262 {
1263     struct hpi_message hm;
1264     struct hpi_response hr;
1265     hpi_init_message_response(&hm, &hr, HPI_OBJ_MIXER,
1266         HPI_MIXER_GET_CONTROL_BY_INDEX);
1267     if (hpi_handle_indexes(h_mixer, &hm.adapter_index, NULL))
1268         return HPI_ERROR_INVALID_HANDLE;
1269     hm.u.m.control_index = control_index;
1270     hpi_send_recv(&hm, &hr);
1271 
1272     if (pw_src_node_type) {
1273         *pw_src_node_type =
1274             hr.u.m.src_node_type + HPI_SOURCENODE_NONE;
1275         *pw_src_node_index = hr.u.m.src_node_index;
1276         *pw_dst_node_type = hr.u.m.dst_node_type + HPI_DESTNODE_NONE;
1277         *pw_dst_node_index = hr.u.m.dst_node_index;
1278     }
1279     if (pw_control_type)
1280         *pw_control_type = hr.u.m.control_index;
1281 
1282     if (ph_control) {
1283         if (hr.error == 0)
1284             *ph_control =
1285                 hpi_indexes_to_handle(HPI_OBJ_CONTROL,
1286                 hm.adapter_index, control_index);
1287         else
1288             *ph_control = 0;
1289     }
1290     return hr.error;
1291 }
1292 
1293 u16 hpi_mixer_store(u32 h_mixer, enum HPI_MIXER_STORE_COMMAND command,
1294     u16 index)
1295 {
1296     struct hpi_message hm;
1297     struct hpi_response hr;
1298     hpi_init_message_response(&hm, &hr, HPI_OBJ_MIXER, HPI_MIXER_STORE);
1299     if (hpi_handle_indexes(h_mixer, &hm.adapter_index, NULL))
1300         return HPI_ERROR_INVALID_HANDLE;
1301     hm.u.mx.store.command = command;
1302     hm.u.mx.store.index = index;
1303     hpi_send_recv(&hm, &hr);
1304     return hr.error;
1305 }
1306 
1307 static
1308 u16 hpi_control_param_set(const u32 h_control, const u16 attrib,
1309     const u32 param1, const u32 param2)
1310 {
1311     struct hpi_message hm;
1312     struct hpi_response hr;
1313 
1314     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1315         HPI_CONTROL_SET_STATE);
1316     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1317         return HPI_ERROR_INVALID_HANDLE;
1318     hm.u.c.attribute = attrib;
1319     hm.u.c.param1 = param1;
1320     hm.u.c.param2 = param2;
1321     hpi_send_recv(&hm, &hr);
1322     return hr.error;
1323 }
1324 
1325 static u16 hpi_control_log_set2(u32 h_control, u16 attrib, short sv0,
1326     short sv1)
1327 {
1328     struct hpi_message hm;
1329     struct hpi_response hr;
1330 
1331     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1332         HPI_CONTROL_SET_STATE);
1333     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1334         return HPI_ERROR_INVALID_HANDLE;
1335     hm.u.c.attribute = attrib;
1336     hm.u.c.an_log_value[0] = sv0;
1337     hm.u.c.an_log_value[1] = sv1;
1338     hpi_send_recv(&hm, &hr);
1339     return hr.error;
1340 }
1341 
1342 static
1343 u16 hpi_control_param_get(const u32 h_control, const u16 attrib, u32 param1,
1344     u32 param2, u32 *pparam1, u32 *pparam2)
1345 {
1346     struct hpi_message hm;
1347     struct hpi_response hr;
1348 
1349     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1350         HPI_CONTROL_GET_STATE);
1351     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1352         return HPI_ERROR_INVALID_HANDLE;
1353     hm.u.c.attribute = attrib;
1354     hm.u.c.param1 = param1;
1355     hm.u.c.param2 = param2;
1356     hpi_send_recv(&hm, &hr);
1357 
1358     *pparam1 = hr.u.c.param1;
1359     if (pparam2)
1360         *pparam2 = hr.u.c.param2;
1361 
1362     return hr.error;
1363 }
1364 
1365 #define hpi_control_param1_get(h, a, p1) \
1366         hpi_control_param_get(h, a, 0, 0, p1, NULL)
1367 #define hpi_control_param2_get(h, a, p1, p2) \
1368         hpi_control_param_get(h, a, 0, 0, p1, p2)
1369 
1370 static u16 hpi_control_log_get2(u32 h_control, u16 attrib, short *sv0,
1371     short *sv1)
1372 {
1373     struct hpi_message hm;
1374     struct hpi_response hr;
1375     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1376         HPI_CONTROL_GET_STATE);
1377     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1378         return HPI_ERROR_INVALID_HANDLE;
1379     hm.u.c.attribute = attrib;
1380 
1381     hpi_send_recv(&hm, &hr);
1382     *sv0 = hr.u.c.an_log_value[0];
1383     if (sv1)
1384         *sv1 = hr.u.c.an_log_value[1];
1385     return hr.error;
1386 }
1387 
1388 static
1389 u16 hpi_control_query(const u32 h_control, const u16 attrib, const u32 index,
1390     const u32 param, u32 *psetting)
1391 {
1392     struct hpi_message hm;
1393     struct hpi_response hr;
1394 
1395     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1396         HPI_CONTROL_GET_INFO);
1397     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1398         return HPI_ERROR_INVALID_HANDLE;
1399 
1400     hm.u.c.attribute = attrib;
1401     hm.u.c.param1 = index;
1402     hm.u.c.param2 = param;
1403 
1404     hpi_send_recv(&hm, &hr);
1405     *psetting = hr.u.c.param1;
1406 
1407     return hr.error;
1408 }
1409 
1410 static u16 hpi_control_get_string(const u32 h_control, const u16 attribute,
1411     char *psz_string, const u32 string_length)
1412 {
1413     unsigned int sub_string_index = 0, j = 0;
1414     char c = 0;
1415     unsigned int n = 0;
1416     u16 err = 0;
1417 
1418     if ((string_length < 1) || (string_length > 256))
1419         return HPI_ERROR_INVALID_CONTROL_VALUE;
1420     for (sub_string_index = 0; sub_string_index < string_length;
1421         sub_string_index += 8) {
1422         struct hpi_message hm;
1423         struct hpi_response hr;
1424 
1425         hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1426             HPI_CONTROL_GET_STATE);
1427         if (hpi_handle_indexes(h_control, &hm.adapter_index,
1428                 &hm.obj_index))
1429             return HPI_ERROR_INVALID_HANDLE;
1430         hm.u.c.attribute = attribute;
1431         hm.u.c.param1 = sub_string_index;
1432         hm.u.c.param2 = 0;
1433         hpi_send_recv(&hm, &hr);
1434 
1435         if (sub_string_index == 0
1436             && (hr.u.cu.chars8.remaining_chars + 8) >
1437             string_length)
1438             return HPI_ERROR_INVALID_CONTROL_VALUE;
1439 
1440         if (hr.error) {
1441             err = hr.error;
1442             break;
1443         }
1444         for (j = 0; j < 8; j++) {
1445             c = hr.u.cu.chars8.sz_data[j];
1446             psz_string[sub_string_index + j] = c;
1447             n++;
1448             if (n >= string_length) {
1449                 psz_string[string_length - 1] = 0;
1450                 err = HPI_ERROR_INVALID_CONTROL_VALUE;
1451                 break;
1452             }
1453             if (c == 0)
1454                 break;
1455         }
1456 
1457         if ((hr.u.cu.chars8.remaining_chars == 0)
1458             && ((sub_string_index + j) < string_length)
1459             && (c != 0)) {
1460             c = 0;
1461             psz_string[sub_string_index + j] = c;
1462         }
1463         if (c == 0)
1464             break;
1465     }
1466     return err;
1467 }
1468 
1469 u16 hpi_aesebu_receiver_query_format(const u32 h_aes_rx, const u32 index,
1470     u16 *pw_format)
1471 {
1472     u32 qr;
1473     u16 err;
1474 
1475     err = hpi_control_query(h_aes_rx, HPI_AESEBURX_FORMAT, index, 0, &qr);
1476     *pw_format = (u16)qr;
1477     return err;
1478 }
1479 
1480 u16 hpi_aesebu_receiver_set_format(u32 h_control, u16 format)
1481 {
1482     return hpi_control_param_set(h_control, HPI_AESEBURX_FORMAT, format,
1483         0);
1484 }
1485 
1486 u16 hpi_aesebu_receiver_get_format(u32 h_control, u16 *pw_format)
1487 {
1488     u16 err;
1489     u32 param;
1490 
1491     err = hpi_control_param1_get(h_control, HPI_AESEBURX_FORMAT, &param);
1492     if (!err && pw_format)
1493         *pw_format = (u16)param;
1494 
1495     return err;
1496 }
1497 
1498 u16 hpi_aesebu_receiver_get_sample_rate(u32 h_control, u32 *psample_rate)
1499 {
1500     return hpi_control_param1_get(h_control, HPI_AESEBURX_SAMPLERATE,
1501         psample_rate);
1502 }
1503 
1504 u16 hpi_aesebu_receiver_get_user_data(u32 h_control, u16 index, u16 *pw_data)
1505 {
1506     struct hpi_message hm;
1507     struct hpi_response hr;
1508     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1509         HPI_CONTROL_GET_STATE);
1510     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1511         return HPI_ERROR_INVALID_HANDLE;
1512     hm.u.c.attribute = HPI_AESEBURX_USERDATA;
1513     hm.u.c.param1 = index;
1514 
1515     hpi_send_recv(&hm, &hr);
1516 
1517     if (pw_data)
1518         *pw_data = (u16)hr.u.c.param2;
1519     return hr.error;
1520 }
1521 
1522 u16 hpi_aesebu_receiver_get_channel_status(u32 h_control, u16 index,
1523     u16 *pw_data)
1524 {
1525     struct hpi_message hm;
1526     struct hpi_response hr;
1527     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1528         HPI_CONTROL_GET_STATE);
1529     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1530         return HPI_ERROR_INVALID_HANDLE;
1531     hm.u.c.attribute = HPI_AESEBURX_CHANNELSTATUS;
1532     hm.u.c.param1 = index;
1533 
1534     hpi_send_recv(&hm, &hr);
1535 
1536     if (pw_data)
1537         *pw_data = (u16)hr.u.c.param2;
1538     return hr.error;
1539 }
1540 
1541 u16 hpi_aesebu_receiver_get_error_status(u32 h_control, u16 *pw_error_data)
1542 {
1543     u32 error_data = 0;
1544     u16 err = 0;
1545 
1546     err = hpi_control_param1_get(h_control, HPI_AESEBURX_ERRORSTATUS,
1547         &error_data);
1548     if (pw_error_data)
1549         *pw_error_data = (u16)error_data;
1550     return err;
1551 }
1552 
1553 u16 hpi_aesebu_transmitter_set_sample_rate(u32 h_control, u32 sample_rate)
1554 {
1555     return hpi_control_param_set(h_control, HPI_AESEBUTX_SAMPLERATE,
1556         sample_rate, 0);
1557 }
1558 
1559 u16 hpi_aesebu_transmitter_set_user_data(u32 h_control, u16 index, u16 data)
1560 {
1561     return hpi_control_param_set(h_control, HPI_AESEBUTX_USERDATA, index,
1562         data);
1563 }
1564 
1565 u16 hpi_aesebu_transmitter_set_channel_status(u32 h_control, u16 index,
1566     u16 data)
1567 {
1568     return hpi_control_param_set(h_control, HPI_AESEBUTX_CHANNELSTATUS,
1569         index, data);
1570 }
1571 
1572 u16 hpi_aesebu_transmitter_get_channel_status(u32 h_control, u16 index,
1573     u16 *pw_data)
1574 {
1575     return HPI_ERROR_INVALID_OPERATION;
1576 }
1577 
1578 u16 hpi_aesebu_transmitter_query_format(const u32 h_aes_tx, const u32 index,
1579     u16 *pw_format)
1580 {
1581     u32 qr;
1582     u16 err;
1583 
1584     err = hpi_control_query(h_aes_tx, HPI_AESEBUTX_FORMAT, index, 0, &qr);
1585     *pw_format = (u16)qr;
1586     return err;
1587 }
1588 
1589 u16 hpi_aesebu_transmitter_set_format(u32 h_control, u16 output_format)
1590 {
1591     return hpi_control_param_set(h_control, HPI_AESEBUTX_FORMAT,
1592         output_format, 0);
1593 }
1594 
1595 u16 hpi_aesebu_transmitter_get_format(u32 h_control, u16 *pw_output_format)
1596 {
1597     u16 err;
1598     u32 param;
1599 
1600     err = hpi_control_param1_get(h_control, HPI_AESEBUTX_FORMAT, &param);
1601     if (!err && pw_output_format)
1602         *pw_output_format = (u16)param;
1603 
1604     return err;
1605 }
1606 
1607 u16 hpi_bitstream_set_clock_edge(u32 h_control, u16 edge_type)
1608 {
1609     return hpi_control_param_set(h_control, HPI_BITSTREAM_CLOCK_EDGE,
1610         edge_type, 0);
1611 }
1612 
1613 u16 hpi_bitstream_set_data_polarity(u32 h_control, u16 polarity)
1614 {
1615     return hpi_control_param_set(h_control, HPI_BITSTREAM_DATA_POLARITY,
1616         polarity, 0);
1617 }
1618 
1619 u16 hpi_bitstream_get_activity(u32 h_control, u16 *pw_clk_activity,
1620     u16 *pw_data_activity)
1621 {
1622     struct hpi_message hm;
1623     struct hpi_response hr;
1624     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1625         HPI_CONTROL_GET_STATE);
1626     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1627         return HPI_ERROR_INVALID_HANDLE;
1628     hm.u.c.attribute = HPI_BITSTREAM_ACTIVITY;
1629     hpi_send_recv(&hm, &hr);
1630     if (pw_clk_activity)
1631         *pw_clk_activity = (u16)hr.u.c.param1;
1632     if (pw_data_activity)
1633         *pw_data_activity = (u16)hr.u.c.param2;
1634     return hr.error;
1635 }
1636 
1637 u16 hpi_channel_mode_query_mode(const u32 h_mode, const u32 index,
1638     u16 *pw_mode)
1639 {
1640     u32 qr;
1641     u16 err;
1642 
1643     err = hpi_control_query(h_mode, HPI_CHANNEL_MODE_MODE, index, 0, &qr);
1644     *pw_mode = (u16)qr;
1645     return err;
1646 }
1647 
1648 u16 hpi_channel_mode_set(u32 h_control, u16 mode)
1649 {
1650     return hpi_control_param_set(h_control, HPI_CHANNEL_MODE_MODE, mode,
1651         0);
1652 }
1653 
1654 u16 hpi_channel_mode_get(u32 h_control, u16 *mode)
1655 {
1656     u32 mode32 = 0;
1657     u16 err = hpi_control_param1_get(h_control,
1658         HPI_CHANNEL_MODE_MODE, &mode32);
1659     if (mode)
1660         *mode = (u16)mode32;
1661     return err;
1662 }
1663 
1664 u16 hpi_cobranet_hmi_write(u32 h_control, u32 hmi_address, u32 byte_count,
1665     u8 *pb_data)
1666 {
1667     struct hpi_msg_cobranet_hmiwrite hm;
1668     struct hpi_response_header hr;
1669 
1670     hpi_init_message_responseV1(&hm.h, sizeof(hm), &hr, sizeof(hr),
1671         HPI_OBJ_CONTROL, HPI_CONTROL_SET_STATE);
1672 
1673     if (hpi_handle_indexes(h_control, &hm.h.adapter_index,
1674             &hm.h.obj_index))
1675         return HPI_ERROR_INVALID_HANDLE;
1676 
1677     if (byte_count > sizeof(hm.bytes))
1678         return HPI_ERROR_MESSAGE_BUFFER_TOO_SMALL;
1679 
1680     hm.p.attribute = HPI_COBRANET_SET;
1681     hm.p.byte_count = byte_count;
1682     hm.p.hmi_address = hmi_address;
1683     memcpy(hm.bytes, pb_data, byte_count);
1684     hm.h.size = (u16)(sizeof(hm.h) + sizeof(hm.p) + byte_count);
1685 
1686     hpi_send_recvV1(&hm.h, &hr);
1687     return hr.error;
1688 }
1689 
1690 u16 hpi_cobranet_hmi_read(u32 h_control, u32 hmi_address, u32 max_byte_count,
1691     u32 *pbyte_count, u8 *pb_data)
1692 {
1693     struct hpi_msg_cobranet_hmiread hm;
1694     struct hpi_res_cobranet_hmiread hr;
1695 
1696     hpi_init_message_responseV1(&hm.h, sizeof(hm), &hr.h, sizeof(hr),
1697         HPI_OBJ_CONTROL, HPI_CONTROL_GET_STATE);
1698 
1699     if (hpi_handle_indexes(h_control, &hm.h.adapter_index,
1700             &hm.h.obj_index))
1701         return HPI_ERROR_INVALID_HANDLE;
1702 
1703     if (max_byte_count > sizeof(hr.bytes))
1704         return HPI_ERROR_RESPONSE_BUFFER_TOO_SMALL;
1705 
1706     hm.p.attribute = HPI_COBRANET_GET;
1707     hm.p.byte_count = max_byte_count;
1708     hm.p.hmi_address = hmi_address;
1709 
1710     hpi_send_recvV1(&hm.h, &hr.h);
1711 
1712     if (!hr.h.error && pb_data) {
1713         if (hr.byte_count > sizeof(hr.bytes))
1714 
1715             return HPI_ERROR_RESPONSE_BUFFER_TOO_SMALL;
1716 
1717         *pbyte_count = hr.byte_count;
1718 
1719         if (hr.byte_count < max_byte_count)
1720             max_byte_count = *pbyte_count;
1721 
1722         memcpy(pb_data, hr.bytes, max_byte_count);
1723     }
1724     return hr.h.error;
1725 }
1726 
1727 u16 hpi_cobranet_hmi_get_status(u32 h_control, u32 *pstatus,
1728     u32 *preadable_size, u32 *pwriteable_size)
1729 {
1730     struct hpi_message hm;
1731     struct hpi_response hr;
1732 
1733     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1734         HPI_CONTROL_GET_STATE);
1735     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1736         return HPI_ERROR_INVALID_HANDLE;
1737 
1738     hm.u.c.attribute = HPI_COBRANET_GET_STATUS;
1739 
1740     hpi_send_recv(&hm, &hr);
1741     if (!hr.error) {
1742         if (pstatus)
1743             *pstatus = hr.u.cu.cobranet.status.status;
1744         if (preadable_size)
1745             *preadable_size =
1746                 hr.u.cu.cobranet.status.readable_size;
1747         if (pwriteable_size)
1748             *pwriteable_size =
1749                 hr.u.cu.cobranet.status.writeable_size;
1750     }
1751     return hr.error;
1752 }
1753 
1754 u16 hpi_cobranet_get_ip_address(u32 h_control, u32 *pdw_ip_address)
1755 {
1756     u32 byte_count;
1757     u32 iP;
1758     u16 err;
1759 
1760     err = hpi_cobranet_hmi_read(h_control,
1761         HPI_COBRANET_HMI_cobra_ip_mon_currentIP, 4, &byte_count,
1762         (u8 *)&iP);
1763 
1764     *pdw_ip_address =
1765         ((iP & 0xff000000) >> 8) | ((iP & 0x00ff0000) << 8) | ((iP &
1766             0x0000ff00) >> 8) | ((iP & 0x000000ff) << 8);
1767 
1768     if (err)
1769         *pdw_ip_address = 0;
1770 
1771     return err;
1772 
1773 }
1774 
1775 u16 hpi_cobranet_set_ip_address(u32 h_control, u32 dw_ip_address)
1776 {
1777     u32 iP;
1778     u16 err;
1779 
1780     iP = ((dw_ip_address & 0xff000000) >> 8) | ((dw_ip_address &
1781             0x00ff0000) << 8) | ((dw_ip_address & 0x0000ff00) >>
1782         8) | ((dw_ip_address & 0x000000ff) << 8);
1783 
1784     err = hpi_cobranet_hmi_write(h_control,
1785         HPI_COBRANET_HMI_cobra_ip_mon_currentIP, 4, (u8 *)&iP);
1786 
1787     return err;
1788 
1789 }
1790 
1791 u16 hpi_cobranet_get_static_ip_address(u32 h_control, u32 *pdw_ip_address)
1792 {
1793     u32 byte_count;
1794     u32 iP;
1795     u16 err;
1796     err = hpi_cobranet_hmi_read(h_control,
1797         HPI_COBRANET_HMI_cobra_ip_mon_staticIP, 4, &byte_count,
1798         (u8 *)&iP);
1799 
1800     *pdw_ip_address =
1801         ((iP & 0xff000000) >> 8) | ((iP & 0x00ff0000) << 8) | ((iP &
1802             0x0000ff00) >> 8) | ((iP & 0x000000ff) << 8);
1803 
1804     if (err)
1805         *pdw_ip_address = 0;
1806 
1807     return err;
1808 
1809 }
1810 
1811 u16 hpi_cobranet_set_static_ip_address(u32 h_control, u32 dw_ip_address)
1812 {
1813     u32 iP;
1814     u16 err;
1815 
1816     iP = ((dw_ip_address & 0xff000000) >> 8) | ((dw_ip_address &
1817             0x00ff0000) << 8) | ((dw_ip_address & 0x0000ff00) >>
1818         8) | ((dw_ip_address & 0x000000ff) << 8);
1819 
1820     err = hpi_cobranet_hmi_write(h_control,
1821         HPI_COBRANET_HMI_cobra_ip_mon_staticIP, 4, (u8 *)&iP);
1822 
1823     return err;
1824 
1825 }
1826 
1827 u16 hpi_cobranet_get_macaddress(u32 h_control, u32 *p_mac_msbs,
1828     u32 *p_mac_lsbs)
1829 {
1830     u32 byte_count;
1831     u16 err;
1832     u32 mac;
1833 
1834     err = hpi_cobranet_hmi_read(h_control,
1835         HPI_COBRANET_HMI_cobra_if_phy_address, 4, &byte_count,
1836         (u8 *)&mac);
1837 
1838     if (!err) {
1839         *p_mac_msbs =
1840             ((mac & 0xff000000) >> 8) | ((mac & 0x00ff0000) << 8)
1841             | ((mac & 0x0000ff00) >> 8) | ((mac & 0x000000ff) <<
1842             8);
1843 
1844         err = hpi_cobranet_hmi_read(h_control,
1845             HPI_COBRANET_HMI_cobra_if_phy_address + 1, 4,
1846             &byte_count, (u8 *)&mac);
1847     }
1848 
1849     if (!err) {
1850         *p_mac_lsbs =
1851             ((mac & 0xff000000) >> 8) | ((mac & 0x00ff0000) << 8)
1852             | ((mac & 0x0000ff00) >> 8) | ((mac & 0x000000ff) <<
1853             8);
1854     } else {
1855         *p_mac_msbs = 0;
1856         *p_mac_lsbs = 0;
1857     }
1858 
1859     return err;
1860 }
1861 
1862 u16 hpi_compander_set_enable(u32 h_control, u32 enable)
1863 {
1864     return hpi_control_param_set(h_control, HPI_GENERIC_ENABLE, enable,
1865         0);
1866 }
1867 
1868 u16 hpi_compander_get_enable(u32 h_control, u32 *enable)
1869 {
1870     return hpi_control_param1_get(h_control, HPI_GENERIC_ENABLE, enable);
1871 }
1872 
1873 u16 hpi_compander_set_makeup_gain(u32 h_control, short makeup_gain0_01dB)
1874 {
1875     return hpi_control_log_set2(h_control, HPI_COMPANDER_MAKEUPGAIN,
1876         makeup_gain0_01dB, 0);
1877 }
1878 
1879 u16 hpi_compander_get_makeup_gain(u32 h_control, short *makeup_gain0_01dB)
1880 {
1881     return hpi_control_log_get2(h_control, HPI_COMPANDER_MAKEUPGAIN,
1882         makeup_gain0_01dB, NULL);
1883 }
1884 
1885 u16 hpi_compander_set_attack_time_constant(u32 h_control, unsigned int index,
1886     u32 attack)
1887 {
1888     return hpi_control_param_set(h_control, HPI_COMPANDER_ATTACK, attack,
1889         index);
1890 }
1891 
1892 u16 hpi_compander_get_attack_time_constant(u32 h_control, unsigned int index,
1893     u32 *attack)
1894 {
1895     return hpi_control_param_get(h_control, HPI_COMPANDER_ATTACK, 0,
1896         index, attack, NULL);
1897 }
1898 
1899 u16 hpi_compander_set_decay_time_constant(u32 h_control, unsigned int index,
1900     u32 decay)
1901 {
1902     return hpi_control_param_set(h_control, HPI_COMPANDER_DECAY, decay,
1903         index);
1904 }
1905 
1906 u16 hpi_compander_get_decay_time_constant(u32 h_control, unsigned int index,
1907     u32 *decay)
1908 {
1909     return hpi_control_param_get(h_control, HPI_COMPANDER_DECAY, 0, index,
1910         decay, NULL);
1911 
1912 }
1913 
1914 u16 hpi_compander_set_threshold(u32 h_control, unsigned int index,
1915     short threshold0_01dB)
1916 {
1917     struct hpi_message hm;
1918     struct hpi_response hr;
1919 
1920     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1921         HPI_CONTROL_SET_STATE);
1922     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1923         return HPI_ERROR_INVALID_HANDLE;
1924     hm.u.c.attribute = HPI_COMPANDER_THRESHOLD;
1925     hm.u.c.param2 = index;
1926     hm.u.c.an_log_value[0] = threshold0_01dB;
1927 
1928     hpi_send_recv(&hm, &hr);
1929 
1930     return hr.error;
1931 }
1932 
1933 u16 hpi_compander_get_threshold(u32 h_control, unsigned int index,
1934     short *threshold0_01dB)
1935 {
1936     struct hpi_message hm;
1937     struct hpi_response hr;
1938 
1939     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1940         HPI_CONTROL_GET_STATE);
1941     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1942         return HPI_ERROR_INVALID_HANDLE;
1943     hm.u.c.attribute = HPI_COMPANDER_THRESHOLD;
1944     hm.u.c.param2 = index;
1945 
1946     hpi_send_recv(&hm, &hr);
1947     *threshold0_01dB = hr.u.c.an_log_value[0];
1948 
1949     return hr.error;
1950 }
1951 
1952 u16 hpi_compander_set_ratio(u32 h_control, u32 index, u32 ratio100)
1953 {
1954     return hpi_control_param_set(h_control, HPI_COMPANDER_RATIO, ratio100,
1955         index);
1956 }
1957 
1958 u16 hpi_compander_get_ratio(u32 h_control, u32 index, u32 *ratio100)
1959 {
1960     return hpi_control_param_get(h_control, HPI_COMPANDER_RATIO, 0, index,
1961         ratio100, NULL);
1962 }
1963 
1964 u16 hpi_level_query_range(u32 h_control, short *min_gain_01dB,
1965     short *max_gain_01dB, short *step_gain_01dB)
1966 {
1967     struct hpi_message hm;
1968     struct hpi_response hr;
1969 
1970     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
1971         HPI_CONTROL_GET_STATE);
1972     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
1973         return HPI_ERROR_INVALID_HANDLE;
1974     hm.u.c.attribute = HPI_LEVEL_RANGE;
1975 
1976     hpi_send_recv(&hm, &hr);
1977     if (hr.error) {
1978         hr.u.c.an_log_value[0] = 0;
1979         hr.u.c.an_log_value[1] = 0;
1980         hr.u.c.param1 = 0;
1981     }
1982     if (min_gain_01dB)
1983         *min_gain_01dB = hr.u.c.an_log_value[0];
1984     if (max_gain_01dB)
1985         *max_gain_01dB = hr.u.c.an_log_value[1];
1986     if (step_gain_01dB)
1987         *step_gain_01dB = (short)hr.u.c.param1;
1988     return hr.error;
1989 }
1990 
1991 u16 hpi_level_set_gain(u32 h_control, short an_gain0_01dB[HPI_MAX_CHANNELS]
1992     )
1993 {
1994     return hpi_control_log_set2(h_control, HPI_LEVEL_GAIN,
1995         an_gain0_01dB[0], an_gain0_01dB[1]);
1996 }
1997 
1998 u16 hpi_level_get_gain(u32 h_control, short an_gain0_01dB[HPI_MAX_CHANNELS]
1999     )
2000 {
2001     return hpi_control_log_get2(h_control, HPI_LEVEL_GAIN,
2002         &an_gain0_01dB[0], &an_gain0_01dB[1]);
2003 }
2004 
2005 u16 hpi_meter_query_channels(const u32 h_meter, u32 *p_channels)
2006 {
2007     return hpi_control_query(h_meter, HPI_METER_NUM_CHANNELS, 0, 0,
2008         p_channels);
2009 }
2010 
2011 u16 hpi_meter_get_peak(u32 h_control, short an_peakdB[HPI_MAX_CHANNELS]
2012     )
2013 {
2014     short i = 0;
2015 
2016     struct hpi_message hm;
2017     struct hpi_response hr;
2018 
2019     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2020         HPI_CONTROL_GET_STATE);
2021     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2022         return HPI_ERROR_INVALID_HANDLE;
2023     hm.obj_index = hm.obj_index;
2024     hm.u.c.attribute = HPI_METER_PEAK;
2025 
2026     hpi_send_recv(&hm, &hr);
2027 
2028     if (!hr.error)
2029         memcpy(an_peakdB, hr.u.c.an_log_value,
2030             sizeof(short) * HPI_MAX_CHANNELS);
2031     else
2032         for (i = 0; i < HPI_MAX_CHANNELS; i++)
2033             an_peakdB[i] = HPI_METER_MINIMUM;
2034     return hr.error;
2035 }
2036 
2037 u16 hpi_meter_get_rms(u32 h_control, short an_rmsdB[HPI_MAX_CHANNELS]
2038     )
2039 {
2040     short i = 0;
2041 
2042     struct hpi_message hm;
2043     struct hpi_response hr;
2044 
2045     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2046         HPI_CONTROL_GET_STATE);
2047     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2048         return HPI_ERROR_INVALID_HANDLE;
2049     hm.u.c.attribute = HPI_METER_RMS;
2050 
2051     hpi_send_recv(&hm, &hr);
2052 
2053     if (!hr.error)
2054         memcpy(an_rmsdB, hr.u.c.an_log_value,
2055             sizeof(short) * HPI_MAX_CHANNELS);
2056     else
2057         for (i = 0; i < HPI_MAX_CHANNELS; i++)
2058             an_rmsdB[i] = HPI_METER_MINIMUM;
2059 
2060     return hr.error;
2061 }
2062 
2063 u16 hpi_meter_set_rms_ballistics(u32 h_control, u16 attack, u16 decay)
2064 {
2065     return hpi_control_param_set(h_control, HPI_METER_RMS_BALLISTICS,
2066         attack, decay);
2067 }
2068 
2069 u16 hpi_meter_get_rms_ballistics(u32 h_control, u16 *pn_attack, u16 *pn_decay)
2070 {
2071     u32 attack;
2072     u32 decay;
2073     u16 error;
2074 
2075     error = hpi_control_param2_get(h_control, HPI_METER_RMS_BALLISTICS,
2076         &attack, &decay);
2077 
2078     if (pn_attack)
2079         *pn_attack = (unsigned short)attack;
2080     if (pn_decay)
2081         *pn_decay = (unsigned short)decay;
2082 
2083     return error;
2084 }
2085 
2086 u16 hpi_meter_set_peak_ballistics(u32 h_control, u16 attack, u16 decay)
2087 {
2088     return hpi_control_param_set(h_control, HPI_METER_PEAK_BALLISTICS,
2089         attack, decay);
2090 }
2091 
2092 u16 hpi_meter_get_peak_ballistics(u32 h_control, u16 *pn_attack,
2093     u16 *pn_decay)
2094 {
2095     u32 attack;
2096     u32 decay;
2097     u16 error;
2098 
2099     error = hpi_control_param2_get(h_control, HPI_METER_PEAK_BALLISTICS,
2100         &attack, &decay);
2101 
2102     if (pn_attack)
2103         *pn_attack = (short)attack;
2104     if (pn_decay)
2105         *pn_decay = (short)decay;
2106 
2107     return error;
2108 }
2109 
2110 u16 hpi_microphone_set_phantom_power(u32 h_control, u16 on_off)
2111 {
2112     return hpi_control_param_set(h_control, HPI_MICROPHONE_PHANTOM_POWER,
2113         (u32)on_off, 0);
2114 }
2115 
2116 u16 hpi_microphone_get_phantom_power(u32 h_control, u16 *pw_on_off)
2117 {
2118     u16 error = 0;
2119     u32 on_off = 0;
2120     error = hpi_control_param1_get(h_control,
2121         HPI_MICROPHONE_PHANTOM_POWER, &on_off);
2122     if (pw_on_off)
2123         *pw_on_off = (u16)on_off;
2124     return error;
2125 }
2126 
2127 u16 hpi_multiplexer_set_source(u32 h_control, u16 source_node_type,
2128     u16 source_node_index)
2129 {
2130     return hpi_control_param_set(h_control, HPI_MULTIPLEXER_SOURCE,
2131         source_node_type, source_node_index);
2132 }
2133 
2134 u16 hpi_multiplexer_get_source(u32 h_control, u16 *source_node_type,
2135     u16 *source_node_index)
2136 {
2137     u32 node, index;
2138     u16 err = hpi_control_param2_get(h_control,
2139         HPI_MULTIPLEXER_SOURCE, &node,
2140         &index);
2141     if (source_node_type)
2142         *source_node_type = (u16)node;
2143     if (source_node_index)
2144         *source_node_index = (u16)index;
2145     return err;
2146 }
2147 
2148 u16 hpi_multiplexer_query_source(u32 h_control, u16 index,
2149     u16 *source_node_type, u16 *source_node_index)
2150 {
2151     struct hpi_message hm;
2152     struct hpi_response hr;
2153     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2154         HPI_CONTROL_GET_STATE);
2155     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2156         return HPI_ERROR_INVALID_HANDLE;
2157     hm.u.c.attribute = HPI_MULTIPLEXER_QUERYSOURCE;
2158     hm.u.c.param1 = index;
2159 
2160     hpi_send_recv(&hm, &hr);
2161 
2162     if (source_node_type)
2163         *source_node_type = (u16)hr.u.c.param1;
2164     if (source_node_index)
2165         *source_node_index = (u16)hr.u.c.param2;
2166     return hr.error;
2167 }
2168 
2169 u16 hpi_parametric_eq_get_info(u32 h_control, u16 *pw_number_of_bands,
2170     u16 *pw_on_off)
2171 {
2172     u32 oB = 0;
2173     u32 oO = 0;
2174     u16 error = 0;
2175 
2176     error = hpi_control_param2_get(h_control, HPI_EQUALIZER_NUM_FILTERS,
2177         &oO, &oB);
2178     if (pw_number_of_bands)
2179         *pw_number_of_bands = (u16)oB;
2180     if (pw_on_off)
2181         *pw_on_off = (u16)oO;
2182     return error;
2183 }
2184 
2185 u16 hpi_parametric_eq_set_state(u32 h_control, u16 on_off)
2186 {
2187     return hpi_control_param_set(h_control, HPI_EQUALIZER_NUM_FILTERS,
2188         on_off, 0);
2189 }
2190 
2191 u16 hpi_parametric_eq_get_band(u32 h_control, u16 index, u16 *pn_type,
2192     u32 *pfrequency_hz, short *pnQ100, short *pn_gain0_01dB)
2193 {
2194     struct hpi_message hm;
2195     struct hpi_response hr;
2196 
2197     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2198         HPI_CONTROL_GET_STATE);
2199     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2200         return HPI_ERROR_INVALID_HANDLE;
2201     hm.u.c.attribute = HPI_EQUALIZER_FILTER;
2202     hm.u.c.param2 = index;
2203 
2204     hpi_send_recv(&hm, &hr);
2205 
2206     if (pfrequency_hz)
2207         *pfrequency_hz = hr.u.c.param1;
2208     if (pn_type)
2209         *pn_type = (u16)(hr.u.c.param2 >> 16);
2210     if (pnQ100)
2211         *pnQ100 = hr.u.c.an_log_value[1];
2212     if (pn_gain0_01dB)
2213         *pn_gain0_01dB = hr.u.c.an_log_value[0];
2214 
2215     return hr.error;
2216 }
2217 
2218 u16 hpi_parametric_eq_set_band(u32 h_control, u16 index, u16 type,
2219     u32 frequency_hz, short q100, short gain0_01dB)
2220 {
2221     struct hpi_message hm;
2222     struct hpi_response hr;
2223 
2224     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2225         HPI_CONTROL_SET_STATE);
2226     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2227         return HPI_ERROR_INVALID_HANDLE;
2228 
2229     hm.u.c.param1 = frequency_hz;
2230     hm.u.c.param2 = (index & 0xFFFFL) + ((u32)type << 16);
2231     hm.u.c.an_log_value[0] = gain0_01dB;
2232     hm.u.c.an_log_value[1] = q100;
2233     hm.u.c.attribute = HPI_EQUALIZER_FILTER;
2234 
2235     hpi_send_recv(&hm, &hr);
2236 
2237     return hr.error;
2238 }
2239 
2240 u16 hpi_parametric_eq_get_coeffs(u32 h_control, u16 index, short coeffs[5]
2241     )
2242 {
2243     struct hpi_message hm;
2244     struct hpi_response hr;
2245 
2246     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2247         HPI_CONTROL_GET_STATE);
2248     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2249         return HPI_ERROR_INVALID_HANDLE;
2250     hm.u.c.attribute = HPI_EQUALIZER_COEFFICIENTS;
2251     hm.u.c.param2 = index;
2252 
2253     hpi_send_recv(&hm, &hr);
2254 
2255     coeffs[0] = (short)hr.u.c.an_log_value[0];
2256     coeffs[1] = (short)hr.u.c.an_log_value[1];
2257     coeffs[2] = (short)hr.u.c.param1;
2258     coeffs[3] = (short)(hr.u.c.param1 >> 16);
2259     coeffs[4] = (short)hr.u.c.param2;
2260 
2261     return hr.error;
2262 }
2263 
2264 u16 hpi_sample_clock_query_source(const u32 h_clock, const u32 index,
2265     u16 *pw_source)
2266 {
2267     u32 qr;
2268     u16 err;
2269 
2270     err = hpi_control_query(h_clock, HPI_SAMPLECLOCK_SOURCE, index, 0,
2271         &qr);
2272     *pw_source = (u16)qr;
2273     return err;
2274 }
2275 
2276 u16 hpi_sample_clock_set_source(u32 h_control, u16 source)
2277 {
2278     return hpi_control_param_set(h_control, HPI_SAMPLECLOCK_SOURCE,
2279         source, 0);
2280 }
2281 
2282 u16 hpi_sample_clock_get_source(u32 h_control, u16 *pw_source)
2283 {
2284     u16 err = 0;
2285     u32 source = 0;
2286     err = hpi_control_param1_get(h_control, HPI_SAMPLECLOCK_SOURCE,
2287         &source);
2288     if (!err)
2289         if (pw_source)
2290             *pw_source = (u16)source;
2291     return err;
2292 }
2293 
2294 u16 hpi_sample_clock_query_source_index(const u32 h_clock, const u32 index,
2295     const u32 source, u16 *pw_source_index)
2296 {
2297     u32 qr;
2298     u16 err;
2299 
2300     err = hpi_control_query(h_clock, HPI_SAMPLECLOCK_SOURCE_INDEX, index,
2301         source, &qr);
2302     *pw_source_index = (u16)qr;
2303     return err;
2304 }
2305 
2306 u16 hpi_sample_clock_set_source_index(u32 h_control, u16 source_index)
2307 {
2308     return hpi_control_param_set(h_control, HPI_SAMPLECLOCK_SOURCE_INDEX,
2309         source_index, 0);
2310 }
2311 
2312 u16 hpi_sample_clock_get_source_index(u32 h_control, u16 *pw_source_index)
2313 {
2314     u16 err = 0;
2315     u32 source_index = 0;
2316     err = hpi_control_param1_get(h_control, HPI_SAMPLECLOCK_SOURCE_INDEX,
2317         &source_index);
2318     if (!err)
2319         if (pw_source_index)
2320             *pw_source_index = (u16)source_index;
2321     return err;
2322 }
2323 
2324 u16 hpi_sample_clock_query_local_rate(const u32 h_clock, const u32 index,
2325     u32 *prate)
2326 {
2327     return hpi_control_query(h_clock, HPI_SAMPLECLOCK_LOCAL_SAMPLERATE,
2328                  index, 0, prate);
2329 }
2330 
2331 u16 hpi_sample_clock_set_local_rate(u32 h_control, u32 sample_rate)
2332 {
2333     return hpi_control_param_set(h_control,
2334         HPI_SAMPLECLOCK_LOCAL_SAMPLERATE, sample_rate, 0);
2335 }
2336 
2337 u16 hpi_sample_clock_get_local_rate(u32 h_control, u32 *psample_rate)
2338 {
2339     u16 err = 0;
2340     u32 sample_rate = 0;
2341     err = hpi_control_param1_get(h_control,
2342         HPI_SAMPLECLOCK_LOCAL_SAMPLERATE, &sample_rate);
2343     if (!err)
2344         if (psample_rate)
2345             *psample_rate = sample_rate;
2346     return err;
2347 }
2348 
2349 u16 hpi_sample_clock_get_sample_rate(u32 h_control, u32 *psample_rate)
2350 {
2351     u16 err = 0;
2352     u32 sample_rate = 0;
2353     err = hpi_control_param1_get(h_control, HPI_SAMPLECLOCK_SAMPLERATE,
2354         &sample_rate);
2355     if (!err)
2356         if (psample_rate)
2357             *psample_rate = sample_rate;
2358     return err;
2359 }
2360 
2361 u16 hpi_sample_clock_set_auto(u32 h_control, u32 enable)
2362 {
2363     return hpi_control_param_set(h_control, HPI_SAMPLECLOCK_AUTO, enable,
2364         0);
2365 }
2366 
2367 u16 hpi_sample_clock_get_auto(u32 h_control, u32 *penable)
2368 {
2369     return hpi_control_param1_get(h_control, HPI_SAMPLECLOCK_AUTO,
2370         penable);
2371 }
2372 
2373 u16 hpi_sample_clock_set_local_rate_lock(u32 h_control, u32 lock)
2374 {
2375     return hpi_control_param_set(h_control, HPI_SAMPLECLOCK_LOCAL_LOCK,
2376         lock, 0);
2377 }
2378 
2379 u16 hpi_sample_clock_get_local_rate_lock(u32 h_control, u32 *plock)
2380 {
2381     return hpi_control_param1_get(h_control, HPI_SAMPLECLOCK_LOCAL_LOCK,
2382         plock);
2383 }
2384 
2385 u16 hpi_tone_detector_get_frequency(u32 h_control, u32 index, u32 *frequency)
2386 {
2387     return hpi_control_param_get(h_control, HPI_TONEDETECTOR_FREQUENCY,
2388         index, 0, frequency, NULL);
2389 }
2390 
2391 u16 hpi_tone_detector_get_state(u32 h_control, u32 *state)
2392 {
2393     return hpi_control_param1_get(h_control, HPI_TONEDETECTOR_STATE,
2394         state);
2395 }
2396 
2397 u16 hpi_tone_detector_set_enable(u32 h_control, u32 enable)
2398 {
2399     return hpi_control_param_set(h_control, HPI_GENERIC_ENABLE, enable,
2400         0);
2401 }
2402 
2403 u16 hpi_tone_detector_get_enable(u32 h_control, u32 *enable)
2404 {
2405     return hpi_control_param1_get(h_control, HPI_GENERIC_ENABLE, enable);
2406 }
2407 
2408 u16 hpi_tone_detector_set_event_enable(u32 h_control, u32 event_enable)
2409 {
2410     return hpi_control_param_set(h_control, HPI_GENERIC_EVENT_ENABLE,
2411         (u32)event_enable, 0);
2412 }
2413 
2414 u16 hpi_tone_detector_get_event_enable(u32 h_control, u32 *event_enable)
2415 {
2416     return hpi_control_param1_get(h_control, HPI_GENERIC_EVENT_ENABLE,
2417         event_enable);
2418 }
2419 
2420 u16 hpi_tone_detector_set_threshold(u32 h_control, int threshold)
2421 {
2422     return hpi_control_param_set(h_control, HPI_TONEDETECTOR_THRESHOLD,
2423         (u32)threshold, 0);
2424 }
2425 
2426 u16 hpi_tone_detector_get_threshold(u32 h_control, int *threshold)
2427 {
2428     return hpi_control_param1_get(h_control, HPI_TONEDETECTOR_THRESHOLD,
2429         (u32 *)threshold);
2430 }
2431 
2432 u16 hpi_silence_detector_get_state(u32 h_control, u32 *state)
2433 {
2434     return hpi_control_param1_get(h_control, HPI_SILENCEDETECTOR_STATE,
2435         state);
2436 }
2437 
2438 u16 hpi_silence_detector_set_enable(u32 h_control, u32 enable)
2439 {
2440     return hpi_control_param_set(h_control, HPI_GENERIC_ENABLE, enable,
2441         0);
2442 }
2443 
2444 u16 hpi_silence_detector_get_enable(u32 h_control, u32 *enable)
2445 {
2446     return hpi_control_param1_get(h_control, HPI_GENERIC_ENABLE, enable);
2447 }
2448 
2449 u16 hpi_silence_detector_set_event_enable(u32 h_control, u32 event_enable)
2450 {
2451     return hpi_control_param_set(h_control, HPI_GENERIC_EVENT_ENABLE,
2452         event_enable, 0);
2453 }
2454 
2455 u16 hpi_silence_detector_get_event_enable(u32 h_control, u32 *event_enable)
2456 {
2457     return hpi_control_param1_get(h_control, HPI_GENERIC_EVENT_ENABLE,
2458         event_enable);
2459 }
2460 
2461 u16 hpi_silence_detector_set_delay(u32 h_control, u32 delay)
2462 {
2463     return hpi_control_param_set(h_control, HPI_SILENCEDETECTOR_DELAY,
2464         delay, 0);
2465 }
2466 
2467 u16 hpi_silence_detector_get_delay(u32 h_control, u32 *delay)
2468 {
2469     return hpi_control_param1_get(h_control, HPI_SILENCEDETECTOR_DELAY,
2470         delay);
2471 }
2472 
2473 u16 hpi_silence_detector_set_threshold(u32 h_control, int threshold)
2474 {
2475     return hpi_control_param_set(h_control, HPI_SILENCEDETECTOR_THRESHOLD,
2476         threshold, 0);
2477 }
2478 
2479 u16 hpi_silence_detector_get_threshold(u32 h_control, int *threshold)
2480 {
2481     return hpi_control_param1_get(h_control,
2482         HPI_SILENCEDETECTOR_THRESHOLD, (u32 *)threshold);
2483 }
2484 
2485 u16 hpi_tuner_query_band(const u32 h_tuner, const u32 index, u16 *pw_band)
2486 {
2487     u32 qr;
2488     u16 err;
2489 
2490     err = hpi_control_query(h_tuner, HPI_TUNER_BAND, index, 0, &qr);
2491     *pw_band = (u16)qr;
2492     return err;
2493 }
2494 
2495 u16 hpi_tuner_set_band(u32 h_control, u16 band)
2496 {
2497     return hpi_control_param_set(h_control, HPI_TUNER_BAND, band, 0);
2498 }
2499 
2500 u16 hpi_tuner_get_band(u32 h_control, u16 *pw_band)
2501 {
2502     u32 band = 0;
2503     u16 error = 0;
2504 
2505     error = hpi_control_param1_get(h_control, HPI_TUNER_BAND, &band);
2506     if (pw_band)
2507         *pw_band = (u16)band;
2508     return error;
2509 }
2510 
2511 u16 hpi_tuner_query_frequency(const u32 h_tuner, const u32 index,
2512     const u16 band, u32 *pfreq)
2513 {
2514     return hpi_control_query(h_tuner, HPI_TUNER_FREQ, index, band, pfreq);
2515 }
2516 
2517 u16 hpi_tuner_set_frequency(u32 h_control, u32 freq_ink_hz)
2518 {
2519     return hpi_control_param_set(h_control, HPI_TUNER_FREQ, freq_ink_hz,
2520         0);
2521 }
2522 
2523 u16 hpi_tuner_get_frequency(u32 h_control, u32 *pw_freq_ink_hz)
2524 {
2525     return hpi_control_param1_get(h_control, HPI_TUNER_FREQ,
2526         pw_freq_ink_hz);
2527 }
2528 
2529 u16 hpi_tuner_query_gain(const u32 h_tuner, const u32 index, u16 *pw_gain)
2530 {
2531     u32 qr;
2532     u16 err;
2533 
2534     err = hpi_control_query(h_tuner, HPI_TUNER_BAND, index, 0, &qr);
2535     *pw_gain = (u16)qr;
2536     return err;
2537 }
2538 
2539 u16 hpi_tuner_set_gain(u32 h_control, short gain)
2540 {
2541     return hpi_control_param_set(h_control, HPI_TUNER_GAIN, gain, 0);
2542 }
2543 
2544 u16 hpi_tuner_get_gain(u32 h_control, short *pn_gain)
2545 {
2546     u32 gain = 0;
2547     u16 error = 0;
2548 
2549     error = hpi_control_param1_get(h_control, HPI_TUNER_GAIN, &gain);
2550     if (pn_gain)
2551         *pn_gain = (u16)gain;
2552     return error;
2553 }
2554 
2555 u16 hpi_tuner_get_rf_level(u32 h_control, short *pw_level)
2556 {
2557     struct hpi_message hm;
2558     struct hpi_response hr;
2559 
2560     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2561         HPI_CONTROL_GET_STATE);
2562     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2563         return HPI_ERROR_INVALID_HANDLE;
2564     hm.u.cu.attribute = HPI_TUNER_LEVEL_AVG;
2565     hpi_send_recv(&hm, &hr);
2566     if (pw_level)
2567         *pw_level = hr.u.cu.tuner.s_level;
2568     return hr.error;
2569 }
2570 
2571 u16 hpi_tuner_get_raw_rf_level(u32 h_control, short *pw_level)
2572 {
2573     struct hpi_message hm;
2574     struct hpi_response hr;
2575 
2576     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2577         HPI_CONTROL_GET_STATE);
2578     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2579         return HPI_ERROR_INVALID_HANDLE;
2580     hm.u.cu.attribute = HPI_TUNER_LEVEL_RAW;
2581     hpi_send_recv(&hm, &hr);
2582     if (pw_level)
2583         *pw_level = hr.u.cu.tuner.s_level;
2584     return hr.error;
2585 }
2586 
2587 u16 hpi_tuner_query_deemphasis(const u32 h_tuner, const u32 index,
2588     const u16 band, u32 *pdeemphasis)
2589 {
2590     return hpi_control_query(h_tuner, HPI_TUNER_DEEMPHASIS, index, band,
2591         pdeemphasis);
2592 }
2593 
2594 u16 hpi_tuner_set_deemphasis(u32 h_control, u32 deemphasis)
2595 {
2596     return hpi_control_param_set(h_control, HPI_TUNER_DEEMPHASIS,
2597         deemphasis, 0);
2598 }
2599 
2600 u16 hpi_tuner_get_deemphasis(u32 h_control, u32 *pdeemphasis)
2601 {
2602     return hpi_control_param1_get(h_control, HPI_TUNER_DEEMPHASIS,
2603         pdeemphasis);
2604 }
2605 
2606 u16 hpi_tuner_query_program(const u32 h_tuner, u32 *pbitmap_program)
2607 {
2608     return hpi_control_query(h_tuner, HPI_TUNER_PROGRAM, 0, 0,
2609         pbitmap_program);
2610 }
2611 
2612 u16 hpi_tuner_set_program(u32 h_control, u32 program)
2613 {
2614     return hpi_control_param_set(h_control, HPI_TUNER_PROGRAM, program,
2615         0);
2616 }
2617 
2618 u16 hpi_tuner_get_program(u32 h_control, u32 *pprogram)
2619 {
2620     return hpi_control_param1_get(h_control, HPI_TUNER_PROGRAM, pprogram);
2621 }
2622 
2623 u16 hpi_tuner_get_hd_radio_dsp_version(u32 h_control, char *psz_dsp_version,
2624     const u32 string_size)
2625 {
2626     return hpi_control_get_string(h_control,
2627         HPI_TUNER_HDRADIO_DSP_VERSION, psz_dsp_version, string_size);
2628 }
2629 
2630 u16 hpi_tuner_get_hd_radio_sdk_version(u32 h_control, char *psz_sdk_version,
2631     const u32 string_size)
2632 {
2633     return hpi_control_get_string(h_control,
2634         HPI_TUNER_HDRADIO_SDK_VERSION, psz_sdk_version, string_size);
2635 }
2636 
2637 u16 hpi_tuner_get_status(u32 h_control, u16 *pw_status_mask, u16 *pw_status)
2638 {
2639     u32 status = 0;
2640     u16 error = 0;
2641 
2642     error = hpi_control_param1_get(h_control, HPI_TUNER_STATUS, &status);
2643     if (pw_status) {
2644         if (!error) {
2645             *pw_status_mask = (u16)(status >> 16);
2646             *pw_status = (u16)(status & 0xFFFF);
2647         } else {
2648             *pw_status_mask = 0;
2649             *pw_status = 0;
2650         }
2651     }
2652     return error;
2653 }
2654 
2655 u16 hpi_tuner_set_mode(u32 h_control, u32 mode, u32 value)
2656 {
2657     return hpi_control_param_set(h_control, HPI_TUNER_MODE, mode, value);
2658 }
2659 
2660 u16 hpi_tuner_get_mode(u32 h_control, u32 mode, u32 *pn_value)
2661 {
2662     return hpi_control_param_get(h_control, HPI_TUNER_MODE, mode, 0,
2663         pn_value, NULL);
2664 }
2665 
2666 u16 hpi_tuner_get_hd_radio_signal_quality(u32 h_control, u32 *pquality)
2667 {
2668     return hpi_control_param1_get(h_control,
2669         HPI_TUNER_HDRADIO_SIGNAL_QUALITY, pquality);
2670 }
2671 
2672 u16 hpi_tuner_get_hd_radio_signal_blend(u32 h_control, u32 *pblend)
2673 {
2674     return hpi_control_param1_get(h_control, HPI_TUNER_HDRADIO_BLEND,
2675         pblend);
2676 }
2677 
2678 u16 hpi_tuner_set_hd_radio_signal_blend(u32 h_control, const u32 blend)
2679 {
2680     return hpi_control_param_set(h_control, HPI_TUNER_HDRADIO_BLEND,
2681         blend, 0);
2682 }
2683 
2684 u16 hpi_tuner_get_rds(u32 h_control, char *p_data)
2685 {
2686     struct hpi_message hm;
2687     struct hpi_response hr;
2688 
2689     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2690         HPI_CONTROL_GET_STATE);
2691     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2692         return HPI_ERROR_INVALID_HANDLE;
2693     hm.u.c.attribute = HPI_TUNER_RDS;
2694     hpi_send_recv(&hm, &hr);
2695     if (p_data) {
2696         *(u32 *)&p_data[0] = hr.u.cu.tuner.rds.data[0];
2697         *(u32 *)&p_data[4] = hr.u.cu.tuner.rds.data[1];
2698         *(u32 *)&p_data[8] = hr.u.cu.tuner.rds.bLER;
2699     }
2700     return hr.error;
2701 }
2702 
2703 u16 hpi_pad_get_channel_name(u32 h_control, char *psz_string,
2704     const u32 data_length)
2705 {
2706     return hpi_control_get_string(h_control, HPI_PAD_CHANNEL_NAME,
2707         psz_string, data_length);
2708 }
2709 
2710 u16 hpi_pad_get_artist(u32 h_control, char *psz_string, const u32 data_length)
2711 {
2712     return hpi_control_get_string(h_control, HPI_PAD_ARTIST, psz_string,
2713         data_length);
2714 }
2715 
2716 u16 hpi_pad_get_title(u32 h_control, char *psz_string, const u32 data_length)
2717 {
2718     return hpi_control_get_string(h_control, HPI_PAD_TITLE, psz_string,
2719         data_length);
2720 }
2721 
2722 u16 hpi_pad_get_comment(u32 h_control, char *psz_string,
2723     const u32 data_length)
2724 {
2725     return hpi_control_get_string(h_control, HPI_PAD_COMMENT, psz_string,
2726         data_length);
2727 }
2728 
2729 u16 hpi_pad_get_program_type(u32 h_control, u32 *ppTY)
2730 {
2731     return hpi_control_param1_get(h_control, HPI_PAD_PROGRAM_TYPE, ppTY);
2732 }
2733 
2734 u16 hpi_pad_get_rdsPI(u32 h_control, u32 *ppI)
2735 {
2736     return hpi_control_param1_get(h_control, HPI_PAD_PROGRAM_ID, ppI);
2737 }
2738 
2739 u16 hpi_volume_query_channels(const u32 h_volume, u32 *p_channels)
2740 {
2741     return hpi_control_query(h_volume, HPI_VOLUME_NUM_CHANNELS, 0, 0,
2742         p_channels);
2743 }
2744 
2745 u16 hpi_volume_set_gain(u32 h_control, short an_log_gain[HPI_MAX_CHANNELS]
2746     )
2747 {
2748     return hpi_control_log_set2(h_control, HPI_VOLUME_GAIN,
2749         an_log_gain[0], an_log_gain[1]);
2750 }
2751 
2752 u16 hpi_volume_get_gain(u32 h_control, short an_log_gain[HPI_MAX_CHANNELS]
2753     )
2754 {
2755     return hpi_control_log_get2(h_control, HPI_VOLUME_GAIN,
2756         &an_log_gain[0], &an_log_gain[1]);
2757 }
2758 
2759 u16 hpi_volume_set_mute(u32 h_control, u32 mute)
2760 {
2761     return hpi_control_param_set(h_control, HPI_VOLUME_MUTE, mute, 0);
2762 }
2763 
2764 u16 hpi_volume_get_mute(u32 h_control, u32 *mute)
2765 {
2766     return hpi_control_param1_get(h_control, HPI_VOLUME_MUTE, mute);
2767 }
2768 
2769 u16 hpi_volume_query_range(u32 h_control, short *min_gain_01dB,
2770     short *max_gain_01dB, short *step_gain_01dB)
2771 {
2772     struct hpi_message hm;
2773     struct hpi_response hr;
2774 
2775     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2776         HPI_CONTROL_GET_STATE);
2777     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2778         return HPI_ERROR_INVALID_HANDLE;
2779     hm.u.c.attribute = HPI_VOLUME_RANGE;
2780 
2781     hpi_send_recv(&hm, &hr);
2782     if (hr.error) {
2783         hr.u.c.an_log_value[0] = 0;
2784         hr.u.c.an_log_value[1] = 0;
2785         hr.u.c.param1 = 0;
2786     }
2787     if (min_gain_01dB)
2788         *min_gain_01dB = hr.u.c.an_log_value[0];
2789     if (max_gain_01dB)
2790         *max_gain_01dB = hr.u.c.an_log_value[1];
2791     if (step_gain_01dB)
2792         *step_gain_01dB = (short)hr.u.c.param1;
2793     return hr.error;
2794 }
2795 
2796 u16 hpi_volume_auto_fade_profile(u32 h_control,
2797     short an_stop_gain0_01dB[HPI_MAX_CHANNELS], u32 duration_ms,
2798     u16 profile)
2799 {
2800     struct hpi_message hm;
2801     struct hpi_response hr;
2802 
2803     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2804         HPI_CONTROL_SET_STATE);
2805     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2806         return HPI_ERROR_INVALID_HANDLE;
2807 
2808     memcpy(hm.u.c.an_log_value, an_stop_gain0_01dB,
2809         sizeof(short) * HPI_MAX_CHANNELS);
2810 
2811     hm.u.c.attribute = HPI_VOLUME_AUTOFADE;
2812     hm.u.c.param1 = duration_ms;
2813     hm.u.c.param2 = profile;
2814 
2815     hpi_send_recv(&hm, &hr);
2816 
2817     return hr.error;
2818 }
2819 
2820 u16 hpi_volume_auto_fade(u32 h_control,
2821     short an_stop_gain0_01dB[HPI_MAX_CHANNELS], u32 duration_ms)
2822 {
2823     return hpi_volume_auto_fade_profile(h_control, an_stop_gain0_01dB,
2824         duration_ms, HPI_VOLUME_AUTOFADE_LOG);
2825 }
2826 
2827 u16 hpi_volume_query_auto_fade_profile(const u32 h_volume, const u32 i,
2828     u16 *profile)
2829 {
2830     u16 e;
2831     u32 u;
2832     e = hpi_control_query(h_volume, HPI_VOLUME_AUTOFADE, i, 0, &u);
2833     *profile = (u16)u;
2834     return e;
2835 }
2836 
2837 u16 hpi_vox_set_threshold(u32 h_control, short an_gain0_01dB)
2838 {
2839     struct hpi_message hm;
2840     struct hpi_response hr;
2841     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2842         HPI_CONTROL_SET_STATE);
2843     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2844         return HPI_ERROR_INVALID_HANDLE;
2845     hm.u.c.attribute = HPI_VOX_THRESHOLD;
2846 
2847     hm.u.c.an_log_value[0] = an_gain0_01dB;
2848 
2849     hpi_send_recv(&hm, &hr);
2850 
2851     return hr.error;
2852 }
2853 
2854 u16 hpi_vox_get_threshold(u32 h_control, short *an_gain0_01dB)
2855 {
2856     struct hpi_message hm;
2857     struct hpi_response hr;
2858     hpi_init_message_response(&hm, &hr, HPI_OBJ_CONTROL,
2859         HPI_CONTROL_GET_STATE);
2860     if (hpi_handle_indexes(h_control, &hm.adapter_index, &hm.obj_index))
2861         return HPI_ERROR_INVALID_HANDLE;
2862     hm.u.c.attribute = HPI_VOX_THRESHOLD;
2863 
2864     hpi_send_recv(&hm, &hr);
2865 
2866     *an_gain0_01dB = hr.u.c.an_log_value[0];
2867 
2868     return hr.error;
2869 }