`RGR(1)` and `RGR(2)` gave the window in pixels and nothing gave columns, rows or the cell size -- so anything placing a character *and* a sprite at the same spot had to hardcode a number measured by hand against whatever font the host loaded. The Breakout in examples/ does exactly that, `CW# = 16`, and it is the one thing in that listing that breaks on a different font or window. **`RWINDOW` is BASIC 7.0's own answer and had never been implemented here.** `RWINDOW(0)` is the current text window's rows and `RWINDOW(1)` its columns. `RWINDOW(2)` reports a C128's 40 or 80 column screen mode, and this interpreter has neither -- refused by name, because answering 0 would be a plausible lie, which is worse than a refusal that says why. The cell size in pixels is `RGR(3)` and `RGR(4)`, beside the surface's own dimensions rather than on `RWINDOW`. Two reasons: a cell size is a fact about the surface, and `RWINDOW` reports the *window*, so dividing `RGR(1)` by a column count stops being right the moment a program calls `WINDOW`. Both read a new optional `grid` entry point on `akbasic_TextSink` -- columns, rows, cell width, cell height -- implemented by the akgl sink and forwarded by the tee, in the shape `moveto` and `window` already had. NULL everywhere else, so both verbs refuse by name against a sink with no grid. `akbasic_sink_init_ stdio()` clears it for the same reason it now clears the other two. Measured on the standalone build: `RGR(3)` answers 16 and `RWINDOW` answers 50 columns by 37 rows -- the three numbers the Breakout listing had written out as constants -- and `RWINDOW` follows a `WINDOW` call while `RGR(3)` does not. tests/console_verbs.c drives the answers through a stand-in sink with a grid, since the harness sink is stdio and has none; tests/graphics_verbs.c covers the new `RGR` fields, their refusal, and the moved range bound. The `c excerpt=` block in docs/10-embedding.md moves with the header, which is `docs_examples` doing its job. TODO.md section 6 item 31's second half, struck. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
226 lines
8.2 KiB
C
226 lines
8.2 KiB
C
/**
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* @file sink_tee.c
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* @brief A text sink that writes to two others.
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*
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* The reference's Write() and Println() (basicruntime_graphics.go:140,148) put
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* every line on stdout *and* on an SDL surface. TODO.md section 1.5 turned that
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* pair of hardcoded calls into a vtable specifically so the interpreter would
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* never carry the second one, and section 3 item 5 says it again for the
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* standalone AKGL driver: do not put a hardcoded second write in the
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* interpreter. This is where the second write lives instead.
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*
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* No SDL and no libakgl. Composing two function-pointer records needs neither,
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* so this stays in the core library where the stdio-only suite can test it.
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*/
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#include <stddef.h>
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#include <akerror.h>
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#include <akbasic/error.h>
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#include <akbasic/sink.h>
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/** @brief Fetch and validate the state behind a tee sink. */
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static akerr_ErrorContext AKERR_NOIGNORE *tee_state(akbasic_TextSink *self, akbasic_TeeSink **dest)
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{
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PREPARE_ERROR(errctx);
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FAIL_ZERO_RETURN(errctx, (self != NULL && dest != NULL), AKERR_NULLPOINTER,
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"NULL argument in tee sink");
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*dest = (akbasic_TeeSink *)self->self;
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FAIL_ZERO_RETURN(errctx, (*dest != NULL), AKERR_NULLPOINTER,
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"tee sink has no state");
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SUCCEED_RETURN(errctx);
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}
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static akerr_ErrorContext *tee_write(akbasic_TextSink *self, const char *text)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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PASS(errctx, tee_state(self, &state));
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PASS(errctx, state->primary->write(state->primary, text));
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PASS(errctx, state->mirror->write(state->mirror, text));
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SUCCEED_RETURN(errctx);
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}
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static akerr_ErrorContext *tee_writeln(akbasic_TextSink *self, const char *text)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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PASS(errctx, tee_state(self, &state));
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PASS(errctx, state->primary->writeln(state->primary, text));
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PASS(errctx, state->mirror->writeln(state->mirror, text));
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SUCCEED_RETURN(errctx);
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}
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static akerr_ErrorContext *tee_readline(akbasic_TextSink *self, char *dest, size_t len, bool *eof)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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PASS(errctx, tee_state(self, &state));
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FAIL_ZERO_RETURN(errctx, (dest != NULL && eof != NULL), AKERR_NULLPOINTER,
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"NULL argument in tee sink readline");
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if ( state->reader == NULL ) {
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/*
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* A pair with no reader reports end of input rather than raising, which
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* is the contract sink.h states: running off the end is how RUNSTREAM
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* mode finishes normally and INPUT already handles it.
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*/
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if ( len > 0 ) {
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dest[0] = '\0';
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}
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*eof = true;
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SUCCEED_RETURN(errctx);
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}
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PASS(errctx, state->reader->readline(state->reader, dest, len, eof));
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SUCCEED_RETURN(errctx);
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}
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static akerr_ErrorContext *tee_clear(akbasic_TextSink *self)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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PASS(errctx, tee_state(self, &state));
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PASS(errctx, state->primary->clear(state->primary));
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PASS(errctx, state->mirror->clear(state->mirror));
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SUCCEED_RETURN(errctx);
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}
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/**
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* @brief Forward a cursor move to whichever half has a cursor.
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*
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* Only one of them will: an akgl sink has a character grid and a stdio sink does
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* not. Forwarding to both would be wrong anyway -- there is one cursor, and it
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* belongs to the half that draws.
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*/
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static akerr_ErrorContext *tee_moveto(akbasic_TextSink *self, int col, int row)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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FAIL_ZERO_RETURN(errctx, (self != NULL), AKERR_NULLPOINTER, "NULL sink in moveto");
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state = (akbasic_TeeSink *)self->self;
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FAIL_ZERO_RETURN(errctx, (state != NULL), AKERR_NULLPOINTER, "tee sink has no state");
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if ( state->primary != NULL && state->primary->moveto != NULL ) {
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PASS(errctx, state->primary->moveto(state->primary, col, row));
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}
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if ( state->mirror != NULL && state->mirror->moveto != NULL ) {
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PASS(errctx, state->mirror->moveto(state->mirror, col, row));
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}
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SUCCEED_RETURN(errctx);
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}
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/**
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* @brief Constrain whichever half has a grid, for WINDOW.
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*
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* Same shape as tee_moveto() above it, and for the same reason: a stdio half has
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* no grid to constrain and a windowed half does, so the call goes to whoever can
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* take it and the other is left alone.
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*
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* This was missing, and its absence made `WINDOW` unreachable in the one build
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* that has a character grid -- the standalone AKGL frontend runs the interpreter
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* against a tee, so the fully implemented sink_window() underneath answered
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* nothing. `WINDOW` refused with "needs a text device with a character grid" on
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* the build that had one. TODO.md section 6 item 31.
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*/
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static akerr_ErrorContext *tee_window(akbasic_TextSink *self, int left, int top, int right, int bottom)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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PASS(errctx, tee_state(self, &state));
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if ( state->primary != NULL && state->primary->window != NULL ) {
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PASS(errctx, state->primary->window(state->primary, left, top, right, bottom));
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}
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if ( state->mirror != NULL && state->mirror->window != NULL ) {
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PASS(errctx, state->mirror->window(state->mirror, left, top, right, bottom));
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}
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SUCCEED_RETURN(errctx);
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}
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/**
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* @brief Report the grid of whichever half has one.
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*
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* The first half that answers wins rather than both being consulted, because
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* there is one grid and only one half can have it -- the same reasoning
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* tee_moveto() gives about there being one cursor.
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*/
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static akerr_ErrorContext *tee_grid(akbasic_TextSink *self, int *columns, int *rows, int *cellw, int *cellh)
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{
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PREPARE_ERROR(errctx);
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akbasic_TeeSink *state = NULL;
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PASS(errctx, tee_state(self, &state));
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if ( state->primary != NULL && state->primary->grid != NULL ) {
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PASS(errctx, state->primary->grid(state->primary, columns, rows, cellw, cellh));
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SUCCEED_RETURN(errctx);
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}
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if ( state->mirror != NULL && state->mirror->grid != NULL ) {
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PASS(errctx, state->mirror->grid(state->mirror, columns, rows, cellw, cellh));
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SUCCEED_RETURN(errctx);
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}
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FAIL_RETURN(errctx, AKBASIC_ERR_STATE, "neither half of this tee has a character grid");
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}
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akerr_ErrorContext *akbasic_sink_init_tee(akbasic_TextSink *obj, akbasic_TeeSink *state, akbasic_TextSink *primary, akbasic_TextSink *mirror, akbasic_TextSink *reader)
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{
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PREPARE_ERROR(errctx);
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FAIL_ZERO_RETURN(errctx, (obj != NULL && state != NULL), AKERR_NULLPOINTER,
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"NULL argument in sink_init_tee");
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FAIL_ZERO_RETURN(errctx, (primary != NULL && mirror != NULL), AKERR_NULLPOINTER,
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"A tee sink needs two sinks to write to");
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/*
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* Refused rather than quietly accepted. A third sink here would read from
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* somewhere nothing writes to, which is the sort of wiring mistake that
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* shows up much later as a program that never sees its own input.
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*/
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FAIL_ZERO_RETURN(errctx, (reader == NULL || reader == primary || reader == mirror),
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AKBASIC_ERR_VALUE,
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"A tee sink's reader must be one of the two sinks it writes to");
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state->primary = primary;
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state->mirror = mirror;
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state->reader = reader;
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obj->self = state;
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obj->write = tee_write;
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obj->writeln = tee_writeln;
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obj->readline = tee_readline;
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obj->clear = tee_clear;
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/*
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* Cleared first, because the two below are conditional and an initializer
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* that leaves a field alone is not an initializer: a caller with a sink on
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* the stack would get whatever was in that memory, and `CHAR` decides
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* whether it can move a cursor by testing this pointer for NULL.
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*/
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obj->moveto = NULL;
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obj->window = NULL;
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obj->grid = NULL;
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/*
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* Offered only when a half can actually do it, so CHAR's refusal against a
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* stdio-only driver still reads correctly through a tee.
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*/
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if ( (primary != NULL && primary->moveto != NULL) ||
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(mirror != NULL && mirror->moveto != NULL) ) {
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obj->moveto = tee_moveto;
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}
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/* Same rule for WINDOW, so its refusal against a grid-less pair still reads
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correctly through a tee. */
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if ( (primary != NULL && primary->window != NULL) ||
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(mirror != NULL && mirror->window != NULL) ) {
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obj->window = tee_window;
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}
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/* And for the grid RWINDOW and RGR read. */
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if ( (primary != NULL && primary->grid != NULL) ||
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(mirror != NULL && mirror->grid != NULL) ) {
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obj->grid = tee_grid;
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}
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SUCCEED_RETURN(errctx);
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}
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