mirror of
https://github.com/autc04/Retro68.git
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476 lines
15 KiB
C++
476 lines
15 KiB
C++
/*
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Copyright (c) 2014 Intel Corporation. All Rights Reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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* Neither the name of Intel Corporation nor the names of its
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contributors may be used to endorse or promote products derived
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from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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/*! \file
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\brief The parts of the runtime library common to host and target
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*/
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#ifndef OFFLOAD_COMMON_H_INCLUDED
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#define OFFLOAD_COMMON_H_INCLUDED
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <memory.h>
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#if (defined(LINUX) || defined(FREEBSD)) && !defined(__INTEL_COMPILER)
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#include <mm_malloc.h>
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#endif
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#include "offload.h"
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#include "offload_table.h"
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#include "offload_trace.h"
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#include "offload_timer.h"
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#include "offload_util.h"
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#include "cean_util.h"
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#include "dv_util.h"
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#include "liboffload_error_codes.h"
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#include <stdarg.h>
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// Use secure getenv if it's supported
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#ifdef HAVE_SECURE_GETENV
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#define getenv(x) secure_getenv(x)
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#elif HAVE___SECURE_GETENV
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#define getenv(x) __secure_getenv(x)
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#endif
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// The debug routines
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// Host console and file logging
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extern int console_enabled;
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extern int offload_report_level;
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#define OFFLOAD_DO_TRACE (offload_report_level == 3)
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extern const char *prefix;
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extern int offload_number;
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#if !HOST_LIBRARY
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extern int mic_index;
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#endif
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#if HOST_LIBRARY
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void Offload_Report_Prolog(OffloadHostTimerData* timer_data);
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void Offload_Report_Epilog(OffloadHostTimerData* timer_data);
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void offload_report_free_data(OffloadHostTimerData * timer_data);
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void Offload_Timer_Print(void);
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#ifndef TARGET_WINNT
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#define OFFLOAD_DEBUG_INCR_OFLD_NUM() \
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__sync_add_and_fetch(&offload_number, 1)
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#else
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#define OFFLOAD_DEBUG_INCR_OFLD_NUM() \
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_InterlockedIncrement(reinterpret_cast<long*>(&offload_number))
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#endif
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#define OFFLOAD_DEBUG_PRINT_TAG_PREFIX() \
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printf("%s: ", prefix);
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#define OFFLOAD_DEBUG_PRINT_PREFIX() \
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printf("%s: ", prefix);
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#else
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#define OFFLOAD_DEBUG_PRINT_PREFIX() \
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printf("%s%d: ", prefix, mic_index);
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#endif // HOST_LIBRARY
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#define OFFLOAD_TRACE(trace_level, ...) \
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if (console_enabled >= trace_level) { \
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OFFLOAD_DEBUG_PRINT_PREFIX(); \
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printf(__VA_ARGS__); \
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fflush(NULL); \
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}
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#if OFFLOAD_DEBUG > 0
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#define OFFLOAD_DEBUG_TRACE(level, ...) \
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OFFLOAD_TRACE(level, __VA_ARGS__)
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#define OFFLOAD_REPORT(level, offload_number, stage, ...) \
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if (OFFLOAD_DO_TRACE) { \
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offload_stage_print(stage, offload_number, __VA_ARGS__); \
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fflush(NULL); \
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}
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#define OFFLOAD_DEBUG_TRACE_1(level, offload_number, stage, ...) \
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if (OFFLOAD_DO_TRACE) { \
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offload_stage_print(stage, offload_number, __VA_ARGS__); \
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fflush(NULL); \
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} \
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if (!OFFLOAD_DO_TRACE) { \
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OFFLOAD_TRACE(level, __VA_ARGS__) \
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}
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#define OFFLOAD_DEBUG_DUMP_BYTES(level, a, b) \
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__dump_bytes(level, a, b)
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extern void __dump_bytes(
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int level,
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const void *data,
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int len
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);
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#else
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#define OFFLOAD_DEBUG_LOG(level, ...)
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#define OFFLOAD_DEBUG_DUMP_BYTES(level, a, b)
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#endif
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// Runtime interface
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#define OFFLOAD_PREFIX(a) __offload_##a
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#define OFFLOAD_MALLOC OFFLOAD_PREFIX(malloc)
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#define OFFLOAD_FREE(a) _mm_free(a)
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// Forward functions
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extern void *OFFLOAD_MALLOC(size_t size, size_t align);
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// The Marshaller
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//! \enum Indicator for the type of entry on an offload item list.
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enum OffloadItemType {
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c_data = 1, //!< Plain data
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c_data_ptr, //!< Pointer data
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c_func_ptr, //!< Function pointer
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c_void_ptr, //!< void*
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c_string_ptr, //!< C string
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c_dv, //!< Dope vector variable
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c_dv_data, //!< Dope-vector data
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c_dv_data_slice, //!< Dope-vector data's slice
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c_dv_ptr, //!< Dope-vector variable pointer
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c_dv_ptr_data, //!< Dope-vector pointer data
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c_dv_ptr_data_slice,//!< Dope-vector pointer data's slice
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c_cean_var, //!< CEAN variable
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c_cean_var_ptr, //!< Pointer to CEAN variable
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c_data_ptr_array, //!< Pointer to data pointer array
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c_func_ptr_array, //!< Pointer to function pointer array
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c_void_ptr_array, //!< Pointer to void* pointer array
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c_string_ptr_array //!< Pointer to char* pointer array
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};
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#define VAR_TYPE_IS_PTR(t) ((t) == c_string_ptr || \
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(t) == c_data_ptr || \
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(t) == c_cean_var_ptr || \
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(t) == c_dv_ptr)
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#define VAR_TYPE_IS_SCALAR(t) ((t) == c_data || \
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(t) == c_void_ptr || \
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(t) == c_cean_var || \
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(t) == c_dv)
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#define VAR_TYPE_IS_DV_DATA(t) ((t) == c_dv_data || \
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(t) == c_dv_ptr_data)
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#define VAR_TYPE_IS_DV_DATA_SLICE(t) ((t) == c_dv_data_slice || \
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(t) == c_dv_ptr_data_slice)
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//! \enum Specify direction to copy offloaded variable.
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enum OffloadParameterType {
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c_parameter_unknown = -1, //!< Unknown clause
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c_parameter_nocopy, //!< Variable listed in "nocopy" clause
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c_parameter_in, //!< Variable listed in "in" clause
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c_parameter_out, //!< Variable listed in "out" clause
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c_parameter_inout //!< Variable listed in "inout" clause
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};
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//! An Offload Variable descriptor
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struct VarDesc {
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//! OffloadItemTypes of source and destination
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union {
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struct {
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uint8_t dst : 4; //!< OffloadItemType of destination
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uint8_t src : 4; //!< OffloadItemType of source
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};
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uint8_t bits;
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} type;
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//! OffloadParameterType that describes direction of data transfer
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union {
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struct {
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uint8_t in : 1; //!< Set if IN or INOUT
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uint8_t out : 1; //!< Set if OUT or INOUT
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};
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uint8_t bits;
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} direction;
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uint8_t alloc_if; //!< alloc_if modifier value
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uint8_t free_if; //!< free_if modifier value
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uint32_t align; //!< MIC alignment requested for pointer data
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//! Not used by compiler; set to 0
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/*! Used by runtime as offset to data from start of MIC buffer */
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uint32_t mic_offset;
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//! Flags describing this variable
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union {
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struct {
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//! source variable has persistent storage
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uint32_t is_static : 1;
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//! destination variable has persistent storage
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uint32_t is_static_dstn : 1;
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//! has length for c_dv && c_dv_ptr
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uint32_t has_length : 1;
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//! persisted local scalar is in stack buffer
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uint32_t is_stack_buf : 1;
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//! buffer address is sent in data
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uint32_t sink_addr : 1;
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//! alloc displacement is sent in data
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uint32_t alloc_disp : 1;
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//! source data is noncontiguous
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uint32_t is_noncont_src : 1;
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//! destination data is noncontiguous
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uint32_t is_noncont_dst : 1;
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};
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uint32_t bits;
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} flags;
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//! Not used by compiler; set to 0
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/*! Used by runtime as offset to base from data stored in a buffer */
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int64_t offset;
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//! Element byte-size of data to be transferred
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/*! For dope-vector, the size of the dope-vector */
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int64_t size;
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union {
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//! Set to 0 for array expressions and dope-vectors
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/*! Set to 1 for scalars */
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/*! Set to value of length modifier for pointers */
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int64_t count;
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//! Displacement not used by compiler
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int64_t disp;
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};
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//! This field not used by OpenMP 4.0
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/*! The alloc section expression in #pragma offload */
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union {
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void *alloc;
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int64_t ptr_arr_offset;
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};
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//! This field not used by OpenMP 4.0
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/*! The into section expression in #pragma offload */
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/*! For c_data_ptr_array this is the into ptr array */
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void *into;
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//! For an ordinary variable, address of the variable
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/*! For c_cean_var (C/C++ array expression),
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pointer to arr_desc, which is an array descriptor. */
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/*! For c_data_ptr_array (array of data pointers),
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pointer to ptr_array_descriptor,
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which is a descriptor for pointer array transfers. */
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void *ptr;
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};
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//! Auxiliary struct used when -g is enabled that holds variable names
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struct VarDesc2 {
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const char *sname; //!< Source name
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const char *dname; //!< Destination name (when "into" is used)
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};
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/*! When the OffloadItemType is c_data_ptr_array
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the ptr field of the main descriptor points to this struct. */
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/*! The type in VarDesc1 merely says c_cean_data_ptr, but the pointer
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type can be c_data_ptr, c_func_ptr, c_void_ptr, or c_string_ptr.
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Therefore the actual pointer type is in the flags field of VarDesc3. */
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/*! If flag_align_is_array/flag_alloc_if_is_array/flag_free_if_is_array
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is 0 then alignment/alloc_if/free_if are specified in VarDesc1. */
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/*! If flag_align_is_array/flag_alloc_if_is_array/flag_free_if_is_array
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is 1 then align_array/alloc_if_array/free_if_array specify
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the set of alignment/alloc_if/free_if values. */
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/*! For the other fields, if neither the scalar nor the array flag
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is set, then that modifier was not specified. If the bits are set
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they specify which modifier was set and whether it was a
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scalar or an array expression. */
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struct VarDesc3
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{
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void *ptr_array; //!< Pointer to arr_desc of array of pointers
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void *align_array; //!< Scalar value or pointer to arr_desc
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void *alloc_if_array; //!< Scalar value or pointer to arr_desc
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void *free_if_array; //!< Scalar value or pointer to arr_desc
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void *extent_start; //!< Scalar value or pointer to arr_desc
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void *extent_elements; //!< Scalar value or pointer to arr_desc
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void *into_start; //!< Scalar value or pointer to arr_desc
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void *into_elements; //!< Scalar value or pointer to arr_desc
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void *alloc_start; //!< Scalar value or pointer to arr_desc
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void *alloc_elements; //!< Scalar value or pointer to arr_desc
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/*! Flags that describe the pointer type and whether each field
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is a scalar value or an array expression. */
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/*! First 6 bits are pointer array element type:
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c_data_ptr, c_func_ptr, c_void_ptr, c_string_ptr */
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/*! Then single bits specify: */
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/*! align_array is an array */
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/*! alloc_if_array is an array */
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/*! free_if_array is an array */
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/*! extent_start is a scalar expression */
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/*! extent_start is an array expression */
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/*! extent_elements is a scalar expression */
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/*! extent_elements is an array expression */
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/*! into_start is a scalar expression */
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/*! into_start is an array expression */
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/*! into_elements is a scalar expression */
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/*! into_elements is an array expression */
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/*! alloc_start is a scalar expression */
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/*! alloc_start is an array expression */
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/*! alloc_elements is a scalar expression */
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/*! alloc_elements is an array expression */
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uint32_t array_fields;
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};
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const int flag_align_is_array = 6;
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const int flag_alloc_if_is_array = 7;
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const int flag_free_if_is_array = 8;
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const int flag_extent_start_is_scalar = 9;
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const int flag_extent_start_is_array = 10;
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const int flag_extent_elements_is_scalar = 11;
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const int flag_extent_elements_is_array = 12;
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const int flag_into_start_is_scalar = 13;
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const int flag_into_start_is_array = 14;
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const int flag_into_elements_is_scalar = 15;
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const int flag_into_elements_is_array = 16;
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const int flag_alloc_start_is_scalar = 17;
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const int flag_alloc_start_is_array = 18;
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const int flag_alloc_elements_is_scalar = 19;
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const int flag_alloc_elements_is_array = 20;
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// The Marshaller
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class Marshaller
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{
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private:
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// Start address of buffer
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char *buffer_start;
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// Current pointer within buffer
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char *buffer_ptr;
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// Physical size of data sent (including flags)
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long long buffer_size;
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// User data sent/received
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long long tfr_size;
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public:
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// Constructor
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Marshaller() :
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buffer_start(0), buffer_ptr(0),
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buffer_size(0), tfr_size(0)
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{
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}
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// Return count of user data sent/received
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long long get_tfr_size() const
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{
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return tfr_size;
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}
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// Return pointer to buffer
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char *get_buffer_start() const
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{
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return buffer_start;
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}
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// Return current size of data in buffer
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long long get_buffer_size() const
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{
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return buffer_size;
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}
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// Set buffer pointer
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void init_buffer(
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char *d,
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long long s
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)
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{
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buffer_start = buffer_ptr = d;
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buffer_size = s;
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}
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// Send data
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void send_data(
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const void *data,
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int64_t length
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);
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// Receive data
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void receive_data(
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void *data,
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int64_t length
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);
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// Send function pointer
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void send_func_ptr(
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const void* data
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);
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// Receive function pointer
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void receive_func_ptr(
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const void** data
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);
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};
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// End of the Marshaller
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// The offloaded function descriptor.
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// Sent from host to target to specify which function to run.
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// Also, sets console and file tracing levels.
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struct FunctionDescriptor
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{
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// Input data size.
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long long in_datalen;
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// Output data size.
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long long out_datalen;
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// Whether trace is requested on console.
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// A value of 1 produces only function name and data sent/received.
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// Values > 1 produce copious trace information.
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uint8_t console_enabled;
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// Flag controlling timing on the target side.
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// Values > 0 enable timing on sink.
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uint8_t timer_enabled;
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int offload_report_level;
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int offload_number;
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// number of variable descriptors
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int vars_num;
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// inout data offset if data is passed as misc/return data
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// otherwise it should be zero.
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int data_offset;
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// The name of the offloaded function
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char data[];
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};
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// typedef OFFLOAD.
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// Pointer to OffloadDescriptor.
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typedef struct OffloadDescriptor *OFFLOAD;
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#endif // OFFLOAD_COMMON_H_INCLUDED
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