A demo recorder: --record-pad writes what --pad reads
One byte a frame, in exactly the format the player takes, so a recording needs no conversion and there is no second format to keep in step. That symmetry is the feature, and it makes the strongest form of the claim testable: a recording is made OF a playback, and the bytes coming out have to be the bytes that went in. It exists because some inputs cannot sensibly be written by hand. Flying a lander from one base to another is a few hundred frames of steering that has to arrive somewhere eight cells wide, and several attempts at authoring one got within two columns and no closer. That is a piloting exercise rather than a test. Playing it once and keeping what happened is the answer. A BYTE FOR EVERY FRAME, written inside the loop that advances the recordings rather than after it, so a machine that jumped several frames at once still writes one for each. A recording is a timeline: one that skipped the frames nobody looked at would play back faster than it was flown. What is recorded is what the DEVICE WOULD REPORT, not the live state - a recording of a playback that wrote the live state would be a file of noughts. And it is flushed as it goes, because a recording is usually stopped by whoever is playing rather than by the program ending, and a demo lost to a buffer is a demo flown twice. Tests/replay.sh is where this and whatever follows it are checked. Twelve scripts now. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01E2JrLzFvuFX9fgi1LDRjrW
This commit is contained in:
co-authored by
Claude Opus 5
parent
caf5e1f99d
commit
a163c670d0
@@ -238,6 +238,15 @@ uint8_t machineStart(Machine *m, const EmulatorOptions *options, const char *pro
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padFromFile(n, pad);
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}
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for (int n = 0; n < options->padRecordCount; n++) {
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FILE *pad = fopen(options->padRecord[n], "wb");
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if (pad == NULL) {
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fprintf(stderr, "Error: Couldn't write pad file: %s\n", options->padRecord[n]);
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return 0;
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}
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padRecordTo(n, pad);
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}
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if (options->keyboard != NULL) {
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keyboardFile = fopen(options->keyboard, "rb");
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if (keyboardFile == NULL) {
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+31
-1
@@ -10,6 +10,7 @@ static uint8_t held[PAD_COUNT];
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static FILE *recorded[PAD_COUNT];
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static uint8_t live[PAD_COUNT];
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static int connected[PAD_COUNT];
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static FILE *recording[PAD_COUNT];
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// ---- The frame the recordings advance on ----
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//
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@@ -36,6 +37,19 @@ void padReset(void) {
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started = 0;
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}
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// What the device would report for this pad, which is what a recording has to hold: a
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// recording of a playback that wrote the LIVE state would be a file of noughts.
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static uint8_t effective(int which) {
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return (recorded[which] != NULL) ? held[which] : live[which];
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}
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void padRecordTo(int which, FILE *file) {
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if (which < 0 || which >= PAD_COUNT) {
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return;
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}
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recording[which] = file;
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}
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void padFromFile(int which, FILE *file) {
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if (which < 0 || which >= PAD_COUNT) {
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return;
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@@ -72,6 +86,22 @@ void padTick(unsigned long now) {
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// off the edge of the world long after the test meant to stop.
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held[n] = (byte == EOF) ? 0 : (uint8_t)byte;
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}
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// ---- And a byte written for every frame that went by ----
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//
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// Inside the loop rather than after it, so a machine that jumped several frames at
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// once still writes one byte for each of them. A recording is a TIMELINE, and one
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// that skipped the frames nobody was looking at would play back faster than it was
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// flown.
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//
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// Flushed as it goes, because a recording is usually stopped by whoever is playing
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// rather than by the program ending, and a demo lost to a buffer would be a demo
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// flown twice.
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for (int n = 0; n < PAD_COUNT; n++) {
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if (recording[n] != NULL) {
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fputc(effective(n), recording[n]);
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fflush(recording[n]);
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}
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}
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}
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}
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@@ -96,5 +126,5 @@ uint8_t padRead(uint8_t port) {
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}
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// A recording wins over a live pad, so a test is not at the mercy of whatever somebody
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// is leaning on while it runs.
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return (recorded[which] != NULL) ? held[which] : live[which];
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return effective(which);
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}
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@@ -79,6 +79,18 @@ void padFromFile(int which, FILE *file);
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// underneath was reporting its buttons perfectly.
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void padSet(int which, int connected, uint8_t held);
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// ---- Writing one down ----
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//
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// A demo recorder. What it writes is EXACTLY WHAT --pad READS, one byte a frame, so playing a
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// recording back needs no conversion and no second format - and the round trip is a property
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// worth testing: play a file while recording it and the same bytes come out.
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//
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// It exists because some inputs cannot sensibly be written by hand. Flying a lander from one
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// base to another is a few hundred frames of steering that has to arrive somewhere four cells
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// wide, and hand-authoring one is a piloting exercise rather than a test. Playing it once and
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// keeping what happened is the whole answer.
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void padRecordTo(int which, FILE *file);
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void padTick(unsigned long now);
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uint8_t padRead(uint8_t port);
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@@ -38,6 +38,10 @@ void printHelp(const char *programName) {
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printf(" again for the next pad. A byte is the buttons held:\n");
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printf(" 1 right, 2 left, 4 down, 8 up, 16 A, 32 B, 64 start,\n");
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printf(" 128 select.\n");
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printf(" -Y, --record-pad FILE\n");
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printf(" Write what a controller held, one byte a frame, in the\n");
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printf(" format --pad reads. Given again for the next pad. Play a\n");
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printf(" thing once and keep what happened.\n");
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printf(" -N, --sound FILE Save every sample the machine made, as raw signed 16 bit\n");
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printf(" at 48kHz. What --screen is for a picture: the only way to\n");
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printf(" check a sound on a machine with no speaker.\n");
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@@ -57,6 +61,7 @@ uint8_t parseOptions(int argc, char *argv[], EmulatorOptions *options) {
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{"keyboard", required_argument, 0, 'K'},
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{"sound", required_argument, 0, 'N'},
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{"pad", required_argument, 0, 'P'},
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{"record-pad", required_argument, 0, 'Y'},
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{"help", no_argument, 0, 'h'},
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{0, 0, 0, 0 }
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};
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@@ -76,7 +81,7 @@ uint8_t parseOptions(int argc, char *argv[], EmulatorOptions *options) {
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*options = (EmulatorOptions){0};
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// Parse options
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while ((opt = getopt_long(argc, argv, "dc:fhD:WL:S:K:N:R:P:", long_options, &option_index)) != -1) {
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while ((opt = getopt_long(argc, argv, "dc:fhD:WL:S:K:N:R:P:Y:", long_options, &option_index)) != -1) {
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switch (opt) {
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case 'd':
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options->debug = 1;
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@@ -136,6 +141,11 @@ uint8_t parseOptions(int argc, char *argv[], EmulatorOptions *options) {
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case 'N':
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options->sound = optarg;
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break;
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case 'Y':
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if (options->padRecordCount < PAD_DRIVE_COUNT) {
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options->padRecord[options->padRecordCount++] = optarg;
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}
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break;
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case 'P':
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// Fills the pads in turn, the same way --disk fills the drives, so the first
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// one named is pad nought and the machine has as many as were asked for.
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@@ -47,6 +47,9 @@ typedef struct {
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// line editing was in when it broke twice in two days.
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const char *pads[PAD_DRIVE_COUNT];
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int padCount; // --pad given more than once fills them in turn, like --disk.
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// Where to write what each pad held, one byte a frame, in the format --pad reads.
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const char *padRecord[PAD_DRIVE_COUNT];
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int padRecordCount;
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} EmulatorOptions;
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uint8_t parseOptions(int argc, char *argv[], EmulatorOptions *options);
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+13
-1
@@ -9,7 +9,7 @@ believe them.
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## What The Suite Claims:
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The suite is not one thing. It is eleven scripts making five different kinds of claim, and
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The suite is not one thing. It is twelve scripts making five different kinds of claim, and
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knowing which claim you are relying on is the whole point of this document. A recorded
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transcript and a byte-for-byte comparison against a second implementation both print
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`[ok ]`, and they are worth wildly different amounts.
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@@ -64,12 +64,24 @@ Individual scripts can be run on their own, from anywhere:
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./Tests/agree.sh The two filesystems against each other.
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./Tests/lint.sh SplitLint against its fixture and the corpus baseline.
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./Tests/lint.sh --bless Record the corpus baseline. See below.
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./Tests/replay.sh A recording of input, played back as itself.
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./Tests/docs.sh The manuals against the code.
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```
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`Tests/makedisks.sh` is not in that list because it checks nothing. It builds the disk
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images the other scripts read, and `run.sh` calls it.
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`Tests/replay.sh` checks that `--record-pad` and `--pad` are the same format read two ways.
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A recording is written one byte a frame and is only worth having if playing it back does what
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was recorded, so the strongest form of that claim is checked: a recording is made **of a
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playback**, and the bytes coming out have to be the bytes that went in.
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It exists because some inputs cannot sensibly be written by hand. Flying a lander from one
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base to another is a few hundred frames of steering that has to arrive somewhere eight cells
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wide, and several attempts at authoring one by hand got within two columns and no closer. That
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is a piloting exercise rather than a test; playing it once and keeping what happened is the
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answer.
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`Tests/break.sh` is not in it either, for the reason turned round: it checks that a check
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works. Run it by hand when a check is written, not as part of `make test`.
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Executable
+103
@@ -0,0 +1,103 @@
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#!/usr/bin/env bash
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# Checks that what the machine records is what it plays back.
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#
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# --record-pad writes what a controller held, one byte a frame, in exactly the format --pad
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# reads. That symmetry is the whole feature and it is the whole of what is checked here: a
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# recording is only worth having if playing it back does what was recorded.
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#
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# ---- Why it exists ----
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#
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# Some inputs cannot sensibly be written by hand. Flying a lander from one base to another is
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# a few hundred frames of steering that has to arrive somewhere eight cells wide, and several
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# attempts at hand-authoring one got within two columns and no closer. That is a piloting
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# exercise rather than a test. Playing it once and keeping what happened is the answer, and
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# this is what says the keeping works.
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#
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# Written by Anachronaut
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set -u
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ROOT="$(cd "$(dirname "$0")/.." && pwd)"
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BUILD="$ROOT/Tests/build/replay"
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ASM="$ROOT/Assembler"
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EMU="$ROOT/SplitBit"
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for tool in "$ASM" "$EMU"; do
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[ -x "$tool" ] || { echo "$(basename "$tool") is not built."; exit 1; }
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done
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rm -rf "$BUILD"; mkdir -p "$BUILD"
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PASS=0
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FAIL=0
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FAILED_NAMES=()
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GREEN=$'\033[32m'; RED=$'\033[31m'; RESET=$'\033[0m'
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[ -t 1 ] || { GREEN=""; RED=""; RESET=""; }
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result() {
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if [ "$1" = "ok" ]; then
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PASS=$((PASS + 1)); printf " [%sok %s] %-40s %s\n" "$GREEN" "$RESET" "$2" "$3"
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else
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FAIL=$((FAIL + 1)); FAILED_NAMES+=("$2")
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printf " [%sFAIL%s] %-40s %s\n" "$RED" "$RESET" "$2" "$3"
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fi
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}
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echo "Checking that a recording plays back as itself."
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# A program that reads a pad every frame and stops. It is the one in testPrograms rather than
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# a new one, because what is being checked is the recording and not the reading.
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"$ASM" "$ROOT/Programs/testPrograms/padTest.asm" -o "$BUILD/padTest.bin" > "$BUILD/asm.log" 2>&1 \
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|| { echo "padTest did not assemble."; exit 1; }
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# ---- Played and recorded at the same time ----
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#
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# The strongest form of the claim: the recording is made OF a playback, so if the two formats
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# ever drift apart the bytes coming out stop matching the bytes going in.
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"$EMU" --fast --pad "$ROOT/Tests/input/padTest.pad" \
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--record-pad "$BUILD/roundtrip.pad" "$BUILD/padTest.bin" > "$BUILD/roundtrip.out" 2>&1
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SAME="$(python3 -c "
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first = open('$ROOT/Tests/input/padTest.pad', 'rb').read()
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again = open('$BUILD/roundtrip.pad', 'rb').read()
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print('yes' if again[:len(first)] == first else 'no')
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" 2>/dev/null || echo error)"
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[ "$SAME" = "yes" ] \
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&& result ok "a recording of a playback is the playback" "byte for byte, in and out" \
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|| result no "a recording of a playback is the playback" "the bytes differ"
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# ---- One byte a frame, and the frame is the machine's ----
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#
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# A recording is a TIMELINE. If it were a byte a read, a program that polled twice in one
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# frame would record twice as fast as it flew; if it skipped frames nobody looked at, it would
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# play back faster than it was flown. So the count is the number of frames the machine ran,
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# which at 16,667 cycles a frame is arithmetic rather than a guess.
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"$EMU" --fast --cycles 500000 --record-pad "$BUILD/timeline.pad" \
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"$BUILD/padTest.bin" > "$BUILD/timeline.out" 2>&1
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WROTE="$(wc -c < "$BUILD/timeline.pad" | tr -d ' ')"
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# The machine halts of its own accord well before the limit, so what is checked is that the
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# count is frames-of-something rather than bytes-of-nothing: more than none, and fewer than
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# the limit could possibly hold.
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[ "$WROTE" -gt 0 ] && [ "$WROTE" -le 30 ] \
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&& result ok "a byte for every frame and no more" "$WROTE frames of it" \
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|| result no "a byte for every frame and no more" "$WROTE bytes, which is not a frame count"
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# ---- And a machine with no controller records that honestly ----
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#
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# Nothing held is nought, which is what a pad nobody is touching reports and what a machine
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# with no pad at all reports. A recorder that wrote something else would make a fixture that
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# pressed buttons nobody pressed.
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QUIET="$(python3 -c "
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data = open('$BUILD/timeline.pad', 'rb').read()
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print('yes' if set(data) <= {0} else 'no')
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" 2>/dev/null || echo error)"
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[ "$QUIET" = "yes" ] \
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&& result ok "and nothing held is written as nothing" "no buttons nobody pressed" \
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|| result no "and nothing held is written as nothing" "the recording holds something"
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echo
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if [ "$FAIL" -eq 0 ]; then
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echo "All $PASS replay checks passed."
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exit 0
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fi
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echo "$PASS passed, $FAIL failed: ${FAILED_NAMES[*]}"
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exit 1
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@@ -358,6 +358,8 @@ test: all strict
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@echo
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@./Tests/agree.sh
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@echo
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@./Tests/replay.sh
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@echo
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@./Tests/docs.sh
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# Rebuild all three tools with the address and undefined behaviour sanitizers and run
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@@ -405,6 +407,8 @@ sanitize:
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@echo
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@./Tests/agree.sh
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@echo
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@./Tests/replay.sh
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@echo
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@./Tests/docs.sh
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@$(MAKE) --no-print-directory clean
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@$(MAKE) --no-print-directory
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