Update compiletf routines in sys_darray to be more exact
This commit is contained in:
parent
1ffcd40336
commit
d682029240
197
vpi/sys_darray.c
197
vpi/sys_darray.c
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@ -23,24 +23,48 @@
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# include <math.h>
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# include <math.h>
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# include <stdlib.h>
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# include <stdlib.h>
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# include <string.h>
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# include <string.h>
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static PLI_INT32 dobject_size_compiletf(ICARUS_VPI_CONST PLI_BYTE8*name)
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static PLI_INT32 one_darray_arg_compiletf(ICARUS_VPI_CONST PLI_BYTE8*name)
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{
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{
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vpiHandle callh = vpi_handle(vpiSysTfCall, 0);
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vpiHandle callh = vpi_handle(vpiSysTfCall, 0);
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vpiHandle argv;
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vpiHandle argv, arg;
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vpiHandle arg;
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argv = vpi_iterate(vpiArgument, callh);
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argv = vpi_iterate(vpiArgument, callh);
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if (argv == 0) {
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if (argv == 0) {
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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(int)vpi_get(vpiLineNo, callh));
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s requires a string argument.\n", name);
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vpi_printf("%s requires a dynamic array, queue or string "
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"argument.\n", name);
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vpi_control(vpiFinish, 1);
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vpi_control(vpiFinish, 1);
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return 0;
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return 0;
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}
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}
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arg = vpi_scan(argv);
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arg = vpi_scan(argv); /* This should never be zero. */
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if (arg == 0) return 0;
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assert(arg);
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/* The argument must be a dynamic array, queue or string. */
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switch (vpi_get(vpiType, arg)) {
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case vpiStringVar:
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break;
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case vpiArrayVar:
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switch(vpi_get(vpiArrayType, arg)) {
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case vpiDynamicArray:
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case vpiQueueArray:
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break;
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default:
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s argument must be a dynamic array, queue or "
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"string.\n", name);
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vpi_control(vpiFinish, 1);
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}
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break;
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default:
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s argument must be a dynamic array, queue or string, "
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"given a %s.\n", name, vpi_get_str(vpiType, arg));
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vpi_control(vpiFinish, 1);
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}
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arg = vpi_scan(argv);
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arg = vpi_scan(argv);
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if (arg != 0) {
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if (arg != 0) {
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@ -48,24 +72,21 @@ static PLI_INT32 one_darray_arg_compiletf(ICARUS_VPI_CONST PLI_BYTE8*name)
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(int)vpi_get(vpiLineNo, callh));
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s has too many arguments.\n", name);
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vpi_printf("%s has too many arguments.\n", name);
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vpi_control(vpiFinish, 1);
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vpi_control(vpiFinish, 1);
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return 0;
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vpi_free_object(argv);
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}
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}
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return 0;
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return 0;
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}
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}
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static PLI_INT32 size_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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static PLI_INT32 dobject_size_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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{
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{
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vpiHandle callh = vpi_handle(vpiSysTfCall, 0);
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vpiHandle callh = vpi_handle(vpiSysTfCall, 0);
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vpiHandle argv;
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vpiHandle argv, arg;
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vpiHandle arg;
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(void)name; /* Parameter is not used. */
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(void)name; /* Parameter is not used. */
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argv = vpi_iterate(vpiArgument, callh);
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argv = vpi_iterate(vpiArgument, callh);
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assert(argv);
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arg = vpi_scan(argv);
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arg = vpi_scan(argv);
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assert(arg);
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vpi_free_object(argv);
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vpi_free_object(argv);
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int res = vpi_get(vpiSize, arg);
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int res = vpi_get(vpiSize, arg);
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@ -79,49 +100,66 @@ static PLI_INT32 size_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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return 0;
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return 0;
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}
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}
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static PLI_INT32 to_vec_compiletf(ICARUS_VPI_CONST PLI_BYTE8*user_data)
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static PLI_INT32 to_from_vec_compiletf(ICARUS_VPI_CONST PLI_BYTE8*name)
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{
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{
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(void) user_data; /* Parameter is not used. */
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vpiHandle callh = vpi_handle(vpiSysTfCall, 0);
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vpiHandle argv, arg;
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vpiHandle systf_handle, arg_iterator, arg_handle;
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argv = vpi_iterate(vpiArgument, callh);
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PLI_INT32 arg_type[2];
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if (argv == 0) {
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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/* obtain a handle to the system task instance */
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(int)vpi_get(vpiLineNo, callh));
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systf_handle = vpi_handle(vpiSysTfCall, NULL);
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vpi_printf("%s requires two arguments.\n", name);
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if (systf_handle == NULL) {
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vpi_control(vpiFinish, 1);
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vpi_printf("ERROR: $ivl_darray_method$to_vec failed to obtain systf handle\n");
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return 0;
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vpi_control(vpiFinish,0); /* abort simulation */
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return 0;
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}
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}
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/* obtain handles to system task arguments */
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/* The first argument must be a dynamic array. */
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arg_iterator = vpi_iterate(vpiArgument, systf_handle);
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arg = vpi_scan(argv); /* This should never be zero. */
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if (arg_iterator == NULL) {
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assert(arg);
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vpi_printf("ERROR: $ivl_darray_method$to_vec requires 2 arguments\n");
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if (vpi_get(vpiType, arg) != vpiArrayVar) {
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vpi_control(vpiFinish, 0);
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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return 0;
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s first argument must be a dynamic array, "
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"given a %s.\n", name, vpi_get_str(vpiType, arg));
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vpi_control(vpiFinish, 1);
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}
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if (vpi_get(vpiArrayType, arg) != vpiDynamicArray) {
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s first argument must be a dynamic array.\n", name);
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vpi_control(vpiFinish, 1);
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}
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}
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/* check the type of object in system task arguments */
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/* The second argument must be a net, reg or bit variable. */
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arg_handle = vpi_scan(arg_iterator);
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arg = vpi_scan(argv);
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for(int i = 0; i < 2; ++i) {
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if (arg == 0) {
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arg_type[i] = vpi_get(vpiType, arg_handle);
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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arg_handle = vpi_scan(arg_iterator);
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s requires a second argument.\n", name);
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vpi_control(vpiFinish, 1);
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}
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switch(vpi_get(vpiType, arg)) {
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case vpiNet:
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case vpiReg:
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case vpiBitVar:
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case vpiIntegerVar:
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break;
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default:
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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(int)vpi_get(vpiLineNo, callh));
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vpi_printf("%s second argument must be a logical net or "
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"variable.\n", name);
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vpi_control(vpiFinish, 1);
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}
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}
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if (arg_handle != NULL) { /* are there more arguments? */
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arg = vpi_scan(argv);
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vpi_printf("ERROR: $ivl_darray_method$to_vec can only have 2 arguments\n");
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if (arg != 0) {
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vpi_free_object(arg_iterator);
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vpi_printf("ERROR: %s:%d: ", vpi_get_str(vpiFile, callh),
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vpi_control(vpiFinish, 0);
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(int)vpi_get(vpiLineNo, callh));
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return 0;
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vpi_printf("%s has too many arguments.\n", name);
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}
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vpi_control(vpiFinish, 1);
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vpi_free_object(argv);
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if ((arg_type[0] != vpiRegArray) ||
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(arg_type[1] != vpiNet && arg_type[1] != vpiReg && arg_type[1] != vpiBitVar)) {
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vpi_printf("ERROR: $ivl_darray_method$to_vec value arguments must be a dynamic array and a net or reg\n");
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vpi_free_object(arg_iterator);
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vpi_control(vpiFinish, 0);
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return 0;
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}
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}
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return 0;
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return 0;
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@ -139,11 +177,8 @@ static PLI_INT32 to_vec_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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/* Fetch arguments */
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/* Fetch arguments */
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argv = vpi_iterate(vpiArgument, callh);
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argv = vpi_iterate(vpiArgument, callh);
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assert(argv);
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darr = vpi_scan(argv);
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darr = vpi_scan(argv);
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assert(darr);
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vec = vpi_scan(argv);
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vec = vpi_scan(argv);
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assert(vec);
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vpi_free_object(argv);
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vpi_free_object(argv);
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int darr_length = vpi_get(vpiSize, darr);
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int darr_length = vpi_get(vpiSize, darr);
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@ -232,55 +267,6 @@ static PLI_INT32 to_vec_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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return 0;
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return 0;
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}
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}
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static PLI_INT32 from_vec_compiletf(ICARUS_VPI_CONST PLI_BYTE8*user_data)
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{
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(void) user_data; /* Parameter is not used. */
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vpiHandle systf_handle, arg_iterator, arg_handle;
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PLI_INT32 arg_type[2];
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/* obtain a handle to the system task instance */
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systf_handle = vpi_handle(vpiSysTfCall, NULL);
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if (systf_handle == NULL) {
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vpi_printf("ERROR: $ivl_darray_method$from_vec failed to obtain systf handle\n");
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vpi_control(vpiFinish,0); /* abort simulation */
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return 0;
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}
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/* obtain handles to system task arguments */
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arg_iterator = vpi_iterate(vpiArgument, systf_handle);
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if (arg_iterator == NULL) {
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vpi_printf("ERROR: $ivl_darray_method$from_vec requires 2 arguments\n");
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vpi_control(vpiFinish, 0);
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return 0;
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}
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/* check the type of object in system task arguments */
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arg_handle = vpi_scan(arg_iterator);
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for(int i = 0; i < 2; ++i) {
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arg_type[i] = vpi_get(vpiType, arg_handle);
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arg_handle = vpi_scan(arg_iterator);
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}
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if (arg_handle != NULL) { /* are there more arguments? */
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vpi_printf("ERROR: $ivl_darray_method$from_vec can only have 2 arguments\n");
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vpi_free_object(arg_iterator);
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vpi_control(vpiFinish, 0);
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return 0;
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}
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if ((arg_type[1] != vpiNet && arg_type[1] != vpiReg && arg_type[1] != vpiBitVar) ||
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(arg_type[0] != vpiRegArray)) {
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vpi_printf("ERROR: $ivl_darray_method$from_vec value arguments must be "\
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"a net or reg and a dynamic array\n");
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vpi_free_object(arg_iterator);
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vpi_control(vpiFinish, 0);
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return 0;
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}
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return 0;
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}
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static PLI_INT32 from_vec_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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static PLI_INT32 from_vec_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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{
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{
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(void)name; /* Parameter is not used. */
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(void)name; /* Parameter is not used. */
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@ -293,11 +279,8 @@ static PLI_INT32 from_vec_calltf(ICARUS_VPI_CONST PLI_BYTE8*name)
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/* Fetch arguments */
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/* Fetch arguments */
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argv = vpi_iterate(vpiArgument, callh);
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argv = vpi_iterate(vpiArgument, callh);
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assert(argv);
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darr = vpi_scan(argv);
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darr = vpi_scan(argv);
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assert(darr);
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vec = vpi_scan(argv);
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vec = vpi_scan(argv);
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assert(vec);
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vpi_free_object(argv);
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vpi_free_object(argv);
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int darr_length = vpi_get(vpiSize, darr);
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int darr_length = vpi_get(vpiSize, darr);
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@ -372,8 +355,8 @@ void sys_darray_register(void)
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tf_data.type = vpiSysFunc;
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tf_data.type = vpiSysFunc;
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tf_data.sysfunctype = vpiIntFunc;
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tf_data.sysfunctype = vpiIntFunc;
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tf_data.tfname = "$size";
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tf_data.tfname = "$size";
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tf_data.calltf = size_calltf;
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tf_data.calltf = dobject_size_calltf;
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tf_data.compiletf = one_darray_arg_compiletf;
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tf_data.compiletf = dobject_size_compiletf;
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tf_data.sizetf = 0;
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tf_data.sizetf = 0;
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tf_data.user_data = "$size";
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tf_data.user_data = "$size";
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res = vpi_register_systf(&tf_data);
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res = vpi_register_systf(&tf_data);
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@ -383,7 +366,7 @@ void sys_darray_register(void)
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tf_data.sysfunctype = 0;
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tf_data.sysfunctype = 0;
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tf_data.tfname = "$ivl_darray_method$to_vec";
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tf_data.tfname = "$ivl_darray_method$to_vec";
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tf_data.calltf = to_vec_calltf;
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tf_data.calltf = to_vec_calltf;
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tf_data.compiletf = to_vec_compiletf;
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tf_data.compiletf = to_from_vec_compiletf;
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tf_data.sizetf = 0;
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tf_data.sizetf = 0;
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tf_data.user_data = "$ivl_darray_method$to_vec";
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tf_data.user_data = "$ivl_darray_method$to_vec";
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res = vpi_register_systf(&tf_data);
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res = vpi_register_systf(&tf_data);
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@ -393,7 +376,7 @@ void sys_darray_register(void)
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tf_data.sysfunctype = 0;
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tf_data.sysfunctype = 0;
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tf_data.tfname = "$ivl_darray_method$from_vec";
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tf_data.tfname = "$ivl_darray_method$from_vec";
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tf_data.calltf = from_vec_calltf;
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tf_data.calltf = from_vec_calltf;
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tf_data.compiletf = from_vec_compiletf;
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tf_data.compiletf = to_from_vec_compiletf;
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tf_data.sizetf = 0;
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tf_data.sizetf = 0;
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tf_data.user_data = "$ivl_darray_method$from_vec";
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tf_data.user_data = "$ivl_darray_method$from_vec";
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res = vpi_register_systf(&tf_data);
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res = vpi_register_systf(&tf_data);
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