📄 parse_62.c
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/*===========================================================================*//* SEED reader | parse_type62 | station header *//*===========================================================================*//* Name: parse_type62 Purpose: parse a response (polynomial) (type 62) blockette into a globally-available table Usage: void parse_type62 (); char *blockette; parse_type62 (blockette); Input: blockette = pointer to beginning of blockette Output: none Externals: temp_char type62_head - 1st entry in table; defined in structures.h, allocated in globals.h Warnings: none Errors: none Called by: process_stationh Calls to: parse_int - get an integer from a blockette parse_double - get a double from a blockette parse_nchar - get a fixed-length string from a blockette Algorithm: parse the blockette into a globally-available table Notes: none Problems: none known References: Halbert et al, 1988; see main routine Language: C, hopefully ANSI standard Author: Stephane Zuzlewski Revisions: 02/23/99 adapted from parse_61 for SEED version 2.2*/#include "rdseed.h"void parse_type62 (blockette)char *blockette; /* ptr to start of blockette */{ char *blockette_ptr; /* ptr to inside blockette */ struct type62 *type62; /* genl member of table */ int i; /* counter */ struct response *response; /* channel response ptr */ /* point to beginning of information, past type and length */ blockette_ptr = blockette; blockette_ptr += 7;/* +=======================================+ *//*=================| allocate space and initialize a type62 |=================*//* +=======================================+ */ type62 = (struct type62 *) alloc_linklist_element (sizeof (struct type62), "parse_type62"); /* +=======================================+ *//*=================| recover information from the type62 |=================*//* +=======================================+ */ /* recover transfer function type */ type62->transfer_fct_type = *(parse_nchar(&blockette_ptr, 1 )); /* recover cascade sequence number */ type62->stage = parse_int (&blockette_ptr, 2); /* recover response in units */ type62->input_units_code = parse_int (&blockette_ptr, 3); /* recover response out units */ type62->output_units_code = parse_int (&blockette_ptr, 3); /* recover polynomial approximation type */ type62->poly_approx_type = *(parse_nchar(&blockette_ptr, 1 )); /* recover valid frequency units */ type62->valid_freq_units = *(parse_nchar(&blockette_ptr, 1 )); /* recover lower valid frequency bound */ type62->lower_valid_freq = parse_double(&blockette_ptr, 12 ); /* recover upper valid frequency bound */ type62->upper_valid_freq = parse_double(&blockette_ptr, 12 ); /* recover lower bound of approximation */ type62->lower_bound_approx = parse_double(&blockette_ptr, 12 ); /* recover upper bound of approximation */ type62->upper_bound_approx = parse_double(&blockette_ptr, 12 ); /* recover maximum absolute error */ type62->max_abs_error = parse_double(&blockette_ptr, 12 ); /* recover number of coefficients */ type62->number_coefficients = parse_int (&blockette_ptr, 3); /* allocate space for coefficients */ type62->coefficient = (struct type62sub *) alloc_linklist_element (sizeof (struct type62sub) * type62->number_coefficients, "parse_type62->coefficient"); /* recover coefficients */ for (i = 0; i < type62->number_coefficients; i++) { type62->coefficient[i].coefficient = parse_double (&blockette_ptr, 12); type62->coefficient[i].error = parse_double (&blockette_ptr, 12); }/* +=======================================+ *//*=================| link the type62 into the type62 table |=================*//* +=======================================+ */ /* initialize the pointer to the next record as end-of-list marker */ type62->next = NULL; response = get_response ('O'); response->ptr.type62 = type62;}
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