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Author SHA1 Message Date
Hanif Koh c59ac3ef88 Open Project Attachments Through One Guarded Helper
The Edit Project Info view launched attachments directly, without the
checks the project page has. Both now call
desktop_open_project_attachment, which checks that the file is inside
the auxiliary directory, asks for confirmation where needed and then
opens it.

The auxiliary root was built through encode_path, which returns code
page bytes on Windows, while boost::filesystem reads a narrow string as
UTF-8. With a non-ASCII temporary directory the root never matched and
no attachment opened. It is now built from the UTF-8 path directly.

The list of program extensions could not be kept complete and let
unknown types open without a prompt. It is replaced by
is_safe_to_open_file_name, a list of plain document, image, model and
video types that open directly. Everything else asks first.
2026-09-29 12:14:00 +08:00
Hanif Koh 6dafd6e067 Confirm Before Opening Program Attachments and Load Only HTTPS Images
Opening a project attachment whose type runs as a program or script
(executables, installers, shortcuts, shell and PowerShell scripts, macOS
command files and apps, Linux desktop entries) now asks for confirmation
first. The check lives in libslic3r as is_executable_file_name and ignores
the trailing dots and spaces Windows strips from file names.

Images in project descriptions are kept only when they load over https,
so opening the Project tab no longer issues plain-http requests.
2026-09-28 17:05:29 +08:00
Hanif Koh e39fd0f839 Tighten Project Page Description Rendering and Keep More Formatting
Link and image URLs in descriptions must now start with an http or https
scheme as written and parse as such with the URL parser. Preview images are
built as DOM nodes like the file list, and accessory names show their full
text as a tooltip.

Descriptions keep more plain formatting: del, ins, figure, figcaption, dl,
dt, dd, caption, q, abbr, kbd and wbr, plus alt, title, width and height on
images, colspan and rowspan on table cells and start on ordered lists.
Numeric attributes must be plain integers. Embedded YouTube players become
a link to the video.
2026-09-28 15:23:31 +08:00
Hanif Koh e5af09d900 Escape Project Metadata in the Project Page and Restrict Accessory Opening
The Project page rendered the model and profile name, author, description
and accessory file names from the 3MF as live HTML. Names, authors and file
names are now set as text, and the file list is built from DOM nodes with
bound click handlers instead of concatenated markup. Descriptions can
legitimately carry rich-text HTML, so they are rebuilt from an inert
DOMParser document, keeping only plain formatting tags, http(s) links and
http(s) images, with every other attribute dropped.

Opening an accessory from the page now only launches regular files that
lie inside the project's extracted auxiliary directory. The containment
check is a new libslic3r helper, is_absolute_path_within_root, built on
is_path_within_root so symlinks leading out of the root are rejected too.
2026-09-28 05:56:10 +08:00
117 changed files with 791 additions and 1717 deletions
+45 -105
View File
@@ -1,7 +1,5 @@
name: Daily OFL OTA Update
run-name: Daily OFL OTA Update [OFL barrier]
# This workflow is intended for creating and publishing the OrcaFilamentLibrary (OFL) OPC package to
# https://github.com/OrcaSlicer/orcaslicer-profiles, which generates an OTA update.
# This cronjob runs daily at 00:00 UTC every day and scans main plus every release/vX.Y.Z branch for
@@ -14,9 +12,9 @@ run-name: Daily OFL OTA Update [OFL barrier]
# vendor-dispatch path is also what makes post_merge_profiles.yml call the OTA auto-publish API after
# uploading - see post_merge_profiles.yml for both sides of that contract.
#
# Each run captures a timestamp, dispatches the needed OFL publishers, waits for
# all of them to finish, then clears the pending-publish table once. Changes merged
# after that timestamp remain pending for the next run.
# At the start of each run, the pending-publish table is cleared up to a captured
# timestamp (POST /api/v1/ota/ofl/pending/clear?timestamp=...). Changes merged after
# that timestamp remain pending for the next run.
on:
schedule:
@@ -36,14 +34,32 @@ jobs:
if: ${{ github.repository == 'OrcaSlicer/OrcaSlicer' }}
runs-on: ubuntu-24.04
steps:
- name: Capture start timestamp
- name: Capture start timestamp and clear OFL pending queue
id: start
shell: bash
env:
OTA_API_BASE_URL: ${{ vars.OTA_API_BASE_URL }}
OTA_API_KEY: ${{ secrets.OFL_OTA_PUBLISH_KEY }}
run: |
set -euo pipefail
[ -n "$OTA_API_BASE_URL" ] || { echo "::error::vars.OTA_API_BASE_URL is not set"; exit 1; }
[ -n "$OTA_API_KEY" ] || { echo "::error::secrets.OFL_OTA_PUBLISH_KEY is not set"; exit 1; }
timestamp="$(date -u +%s)"
echo "timestamp=$timestamp" >> "$GITHUB_OUTPUT"
resp_file="$RUNNER_TEMP/ota-pending-clear-response.json"
status="$(curl -sS -o "$resp_file" -w '%{http_code}' -X POST \
"${OTA_API_BASE_URL%/}/api/v1/ota/ofl/pending/clear?timestamp=$timestamp" \
-H "Authorization: Bearer $OTA_API_KEY")"
body="$(cat "$resp_file")"
echo "$body"
if [ "$status" != "200" ]; then
echo "::error::OTA pending-clear call failed with HTTP $status"
exit 1
fi
- name: Checkout repository
uses: actions/checkout@v7
with:
@@ -68,21 +84,27 @@ jobs:
| grep -E '^(main|release/v[0-9]+\.[0-9]+\.[0-9]+)$' | sort -u
)
# The cron run is the checkpoint: a successful run means every
# dispatched branch publisher completed and the pending queue was
# cleared. Manual or push-triggered post_merge_profiles runs are not
# checkpoints for this scan.
successful_cron_runs="$(gh api --method GET \
"repos/${{ github.repository }}/actions/workflows/ofl-ota-cronjob.yml/runs" \
-f status=success -f branch=main -f per_page=100 --paginate \
--jq '.workflow_runs[] | select((.display_title // "") | contains("[OFL barrier]"))')"
since="$(jq -rs 'sort_by(.run_started_at) | last.run_started_at // empty' <<< "$successful_cron_runs")"
for branch in "${branches[@]}"; do
echo "::group::$branch"
# post_merge_profiles.yml's own run history, not this workflow's: this
# workflow only ever runs against main (schedule, or workflow_dispatch
# --ref main), so its head branch never varies - filtering ITS history
# by $branch would never match anything except main. post_merge_profiles.yml
# genuinely runs per-branch (this dispatch below sets --ref "$branch"),
# so its history is the real per-branch checkpoint. It also means a
# failed publish naturally gets retried tomorrow: the checkpoint only
# advances on a run that actually succeeded.
# --method GET is required, not cosmetic: gh api defaults to POST
# whenever -f fields are present unless a method is given
# explicitly, and POST on this list-runs endpoint 404s - confirmed
# on real Actions infrastructure, not just reasoned about.
since="$(gh api --method GET "repos/${{ github.repository }}/actions/workflows/post_merge_profiles.yml/runs" \
-f status=success -f branch="$branch" -f per_page=1 \
--jq '.workflow_runs[0].run_started_at // empty')"
if [ -z "$since" ]; then
echo "No prior successful OFL cron run; checking $branch through $SCAN_UNTIL."
echo "No prior successful run for $branch; checking OFL changes up to $SCAN_UNTIL."
changed_files="$(git log --until="$SCAN_UNTIL" --name-only --pretty=format: "origin/$branch" -- \
resources/profiles/OrcaFilamentLibrary resources/profiles/OrcaFilamentLibrary.json \
| sed '/^$/d')"
@@ -102,98 +124,16 @@ jobs:
fi
if [ "$changed" = true ]; then
dispatch_id="${GITHUB_RUN_ID}-${branch//\//-}"
# Record successful dispatches for the barrier step below.
# Branches whose workflow predates workflow_dispatch are skipped
# with a warning, as they were before the barrier was added.
if gh workflow run post_merge_profiles.yml \
# Tolerate a per-branch failure (e.g. a pre-existing release branch
# whose post_merge_profiles.yml predates the vendor/auto_publish
# inputs) rather than aborting the whole scan under set -e.
if ! gh workflow run post_merge_profiles.yml \
--repo "${{ github.repository }}" \
--ref "$branch" \
-f vendor="$VENDOR" -f auto_publish=true \
-f ofl_cron_dispatch_id="$dispatch_id"; then
printf '%s\t%s\n' "$branch" "$dispatch_id" >> "$RUNNER_TEMP/ofl-dispatches.tsv"
else
echo "::warning::skipping $branch because post_merge_profiles.yml could not be dispatched at that ref"
-f vendor="$VENDOR" -f auto_publish=true; then
echo "::warning::failed to dispatch post_merge_profiles.yml for $branch - its post_merge_profiles.yml at this ref may predate the vendor/auto_publish inputs"
fi
fi
echo "::endgroup::"
done
- name: Wait for OFL publishers
id: wait
shell: bash
env:
GH_TOKEN: ${{ secrets.GITHUB_TOKEN }}
DISPATCHES_FILE: ${{ runner.temp }}/ofl-dispatches.tsv
run: |
set -euo pipefail
if [ ! -s "$DISPATCHES_FILE" ]; then
echo "No OFL publisher workflows were dispatched; pending queue will not be cleared."
echo "publishers_dispatched=false" >> "$GITHUB_OUTPUT"
exit 0
fi
: > "$RUNNER_TEMP/ofl-run-ids.tsv"
while IFS=$'\t' read -r branch dispatch_id; do
[ -n "$branch" ] || continue
echo "Waiting for OFL publisher on $branch ($dispatch_id)"
run_id=""
for _ in {1..120}; do
runs_json="$(gh api --method GET \
"repos/${{ github.repository }}/actions/workflows/post_merge_profiles.yml/runs" \
-f branch="$branch" -f event=workflow_dispatch -f per_page=100)"
run_id="$(jq -r --arg marker "[OFL cron $dispatch_id]" \
'[.workflow_runs[] | select((.display_title // "") | contains($marker))] \
| sort_by(.created_at) | last | .id // empty' <<< "$runs_json")"
[ -n "$run_id" ] && break
sleep 5
done
if [ -z "$run_id" ]; then
echo "::error::could not find dispatched post_merge_profiles run for $branch ($dispatch_id)"
exit 1
fi
printf '%s\t%s\n' "$branch" "$run_id" >> "$RUNNER_TEMP/ofl-run-ids.tsv"
done < "$DISPATCHES_FILE"
all_success=true
while IFS=$'\t' read -r branch run_id; do
[ -n "$run_id" ] || continue
echo "Watching OFL publisher run $run_id for $branch"
if ! gh run watch "$run_id" --repo "${{ github.repository }}" --exit-status; then
all_success=false
fi
done < "$RUNNER_TEMP/ofl-run-ids.tsv"
if [ "$all_success" != true ]; then
echo "::error::one or more OFL publisher workflows failed; pending queue will not be cleared"
exit 1
fi
echo "publishers_dispatched=true" >> "$GITHUB_OUTPUT"
- name: Clear OFL pending queue
if: steps.wait.outputs.publishers_dispatched == 'true'
shell: bash
env:
OTA_API_BASE_URL: ${{ vars.OTA_API_BASE_URL }}
OTA_API_KEY: ${{ secrets.OFL_OTA_PUBLISH_KEY }}
TIMESTAMP: ${{ steps.start.outputs.timestamp }}
run: |
set -euo pipefail
[ -n "$OTA_API_BASE_URL" ] || { echo "::error::vars.OTA_API_BASE_URL is not set"; exit 1; }
[ -n "$OTA_API_KEY" ] || { echo "::error::secrets.OFL_OTA_PUBLISH_KEY is not set"; exit 1; }
resp_file="$RUNNER_TEMP/ota-pending-clear-response.json"
status="$(curl -sS -o "$resp_file" -w '%{http_code}' -X POST \
"${OTA_API_BASE_URL%/}/api/v1/ota/ofl/pending/clear?timestamp=$TIMESTAMP" \
-H "Authorization: Bearer $OTA_API_KEY")"
body="$(cat "$resp_file")"
echo "$body"
if [ "$status" != "200" ]; then
echo "::error::OTA pending-clear call failed with HTTP $status"
exit 1
fi
-15
View File
@@ -1,14 +1,5 @@
name: Post-merge profiles
run-name: >-
Post-merge profiles${{
inputs.ofl_cron_dispatch_id != '' &&
inputs.vendor == 'OrcaFilamentLibrary' &&
(inputs.auto_publish == true || inputs.auto_publish == 'true') &&
format(' [OFL cron {0}]', inputs.ofl_cron_dispatch_id) ||
''
}}
# Push-triggered counterpart to check_profiles.yml (which only gates PRs). When a
# profile change lands on main or a release branch, rebuild the affected vendors'
# binary preset caches (<vendor>.opc) and publish each as a versioned ZIP asset on
@@ -68,12 +59,6 @@ on:
required: false
type: boolean
default: false
ofl_cron_dispatch_id:
description: >-
Unique marker supplied by the trusted OFL daily cron so it can find
and wait for this dispatched workflow run.
required: false
type: string
permissions:
contents: read
+55 -155
View File
@@ -1,6 +1,6 @@
{
"name": "Blocks",
"version": "02.04.00.13",
"version": "02.04.00.04",
"force_update": "0",
"description": "Blocks configurations",
"machine_model_list": [
@@ -43,8 +43,8 @@
"sub_path": "process/0.16mm Optimal 0.4 nozzle @Blocks_RF50.json"
},
{
"name": "0.20mm Standard 0.4 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.20mm Standard 0.4 nozzle @Blocks_Pro_S100.json"
"name": "0.20mm Standard 0.4 nozzle @Blocks",
"sub_path": "process/0.20mm Standard 0.4 nozzle @Blocks.json"
},
{
"name": "0.20mm Standard 0.4 nozzle @Blocks_RD50_V2",
@@ -55,8 +55,8 @@
"sub_path": "process/0.20mm Standard 0.4 nozzle @Blocks_RF50.json"
},
{
"name": "0.24mm Draft 0.4 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.24mm Draft 0.4 nozzle @Blocks_Pro_S100.json"
"name": "0.24mm Draft 0.4 nozzle @Blocks",
"sub_path": "process/0.24mm Draft 0.4 nozzle @Blocks.json"
},
{
"name": "0.24mm Draft 0.4 nozzle @Blocks_RD50_V2",
@@ -75,8 +75,8 @@
"sub_path": "process/0.28mm Extra Draft 0.4 nozzle @Blocks_RF50.json"
},
{
"name": "0.30mm Extra Draft 0.4 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.30mm Extra Draft 0.4 nozzle @Blocks_Pro_S100.json"
"name": "0.30mm Extra Draft 0.4 nozzle @Blocks",
"sub_path": "process/0.30mm Extra Draft 0.4 nozzle @Blocks.json"
},
{
"name": "fdm_process_common 0.6 nozzle",
@@ -111,8 +111,8 @@
"sub_path": "process/0.26mm Standard 0.6 nozzle @Blocks_RF50.json"
},
{
"name": "0.30mm Standard 0.6 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.30mm Standard 0.6 nozzle @Blocks_Pro_S100.json"
"name": "0.30mm Standard 0.6 nozzle @Blocks",
"sub_path": "process/0.30mm Standard 0.6 nozzle @Blocks.json"
},
{
"name": "0.32mm Draft 0.6 nozzle @Blocks_RD50_V2",
@@ -131,12 +131,12 @@
"sub_path": "process/0.38mm Extra Draft 0.6 nozzle @Blocks_RF50.json"
},
{
"name": "0.40mm Draft 0.6 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.40mm Draft 0.6 nozzle @Blocks_Pro_S100.json"
"name": "0.40mm Draft 0.6 nozzle @Blocks",
"sub_path": "process/0.40mm Draft 0.6 nozzle @Blocks.json"
},
{
"name": "0.30mm Optimal 0.8 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.30mm Optimal 0.8 nozzle @Blocks_Pro_S100.json"
"name": "0.30mm Optimal 0.8 nozzle @Blocks",
"sub_path": "process/0.30mm Optimal 0.8 nozzle @Blocks.json"
},
{
"name": "0.30mm Optimal 0.8 nozzle @Blocks_RD50_V2",
@@ -155,8 +155,8 @@
"sub_path": "process/0.38mm Standard 0.8 nozzle @Blocks_RF50.json"
},
{
"name": "0.40mm Standard 0.8 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.40mm Standard 0.8 nozzle @Blocks_Pro_S100.json"
"name": "0.40mm Standard 0.8 nozzle @Blocks",
"sub_path": "process/0.40mm Standard 0.8 nozzle @Blocks.json"
},
{
"name": "0.46mm Draft 0.8 nozzle @Blocks_RD50_V2",
@@ -167,8 +167,8 @@
"sub_path": "process/0.46mm Draft 0.8 nozzle @Blocks_RF50.json"
},
{
"name": "0.50mm Draft 0.8 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.50mm Draft 0.8 nozzle @Blocks_Pro_S100.json"
"name": "0.50mm Draft 0.8 nozzle @Blocks",
"sub_path": "process/0.50mm Draft 0.8 nozzle @Blocks.json"
},
{
"name": "0.54mm Extra Draft 0.8 nozzle @Blocks_RD50_V2",
@@ -179,36 +179,36 @@
"sub_path": "process/0.54mm Extra Draft 0.8 nozzle @Blocks_RF50.json"
},
{
"name": "0.30mm Optimal 1.0 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.30mm Optimal 1.0 nozzle @Blocks_Pro_S100.json"
"name": "0.30mm Optimal 1.0 nozzle @Blocks",
"sub_path": "process/0.30mm Optimal 1.0 nozzle @Blocks.json"
},
{
"name": "0.50mm Standard 1.0 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.50mm Standard 1.0 nozzle @Blocks_Pro_S100.json"
"name": "0.50mm Standard 1.0 nozzle @Blocks",
"sub_path": "process/0.50mm Standard 1.0 nozzle @Blocks.json"
},
{
"name": "0.60mm Draft 1.0 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.60mm Draft 1.0 nozzle @Blocks_Pro_S100.json"
"name": "0.60mm Draft 1.0 nozzle @Blocks",
"sub_path": "process/0.60mm Draft 1.0 nozzle @Blocks.json"
},
{
"name": "0.70mm Extra Draft 1.0 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.70mm Extra Draft 1.0 nozzle @Blocks_Pro_S100.json"
"name": "0.70mm Extra Draft 1.0 nozzle @Blocks",
"sub_path": "process/0.70mm Extra Draft 1.0 nozzle @Blocks.json"
},
{
"name": "0.50mm Optimal 1.2 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.50mm Optimal 1.2 nozzle @Blocks_Pro_S100.json"
"name": "0.50mm Optimal 1.2 nozzle @Blocks",
"sub_path": "process/0.50mm Optimal 1.2 nozzle @Blocks.json"
},
{
"name": "0.60mm Standard 1.2 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.60mm Standard 1.2 nozzle @Blocks_Pro_S100.json"
"name": "0.60mm Standard 1.2 nozzle @Blocks",
"sub_path": "process/0.60mm Standard 1.2 nozzle @Blocks.json"
},
{
"name": "0.70mm Draft 1.2 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.70mm Draft 1.2 nozzle @Blocks_Pro_S100.json"
"name": "0.70mm Draft 1.2 nozzle @Blocks",
"sub_path": "process/0.70mm Draft 1.2 nozzle @Blocks.json"
},
{
"name": "0.80mm Extra Draft 1.2 nozzle @Blocks_Pro_S100",
"sub_path": "process/0.80mm Extra Draft 1.2 nozzle @Blocks_Pro_S100.json"
"name": "0.80mm Extra Draft 1.2 nozzle @Blocks",
"sub_path": "process/0.80mm Extra Draft 1.2 nozzle @Blocks.json"
}
],
"filament_list": [
@@ -249,148 +249,48 @@
"sub_path": "filament/fdm_filament_tpu.json"
},
{
"name": "Blocks ABS @base",
"sub_path": "filament/Blocks ABS @base.json"
"name": "Generic ABS @Blocks",
"sub_path": "filament/Generic ABS @Blocks.json"
},
{
"name": "Blocks ASA @base",
"sub_path": "filament/Blocks ASA @base.json"
"name": "Generic ASA @Blocks",
"sub_path": "filament/Generic ASA @Blocks.json"
},
{
"name": "Blocks ASA-CF @base",
"sub_path": "filament/Blocks ASA-CF @base.json"
"name": "Generic ASA-CF @Blocks",
"sub_path": "filament/Generic ASA-CF @Blocks.json"
},
{
"name": "Blocks PA @base",
"sub_path": "filament/Blocks PA @base.json"
"name": "Generic PA @Blocks",
"sub_path": "filament/Generic PA @Blocks.json"
},
{
"name": "Blocks PA-CF @base",
"sub_path": "filament/Blocks PA-CF @base.json"
"name": "Generic PA-CF @Blocks",
"sub_path": "filament/Generic PA-CF @Blocks.json"
},
{
"name": "Blocks PC @base",
"sub_path": "filament/Blocks PC @base.json"
"name": "Generic PC @Blocks",
"sub_path": "filament/Generic PC @Blocks.json"
},
{
"name": "Blocks PETG @base",
"sub_path": "filament/Blocks PETG @base.json"
"name": "Generic PETG @Blocks",
"sub_path": "filament/Generic PETG @Blocks.json"
},
{
"name": "Blocks PLA @base",
"sub_path": "filament/Blocks PLA @base.json"
"name": "Generic PLA @Blocks",
"sub_path": "filament/Generic PLA @Blocks.json"
},
{
"name": "Blocks PLA-CF @base",
"sub_path": "filament/Blocks PLA-CF @base.json"
"name": "Generic PLA-CF @Blocks",
"sub_path": "filament/Generic PLA-CF @Blocks.json"
},
{
"name": "Blocks PVA @base",
"sub_path": "filament/Blocks PVA @base.json"
"name": "Generic PVA @Blocks",
"sub_path": "filament/Generic PVA @Blocks.json"
},
{
"name": "Blocks TPU @base",
"sub_path": "filament/Blocks TPU @base.json"
},
{
"name": "Blocks ABS @Blocks_RD50_V2",
"sub_path": "filament/Blocks ABS @Blocks_RD50_V2.json"
},
{
"name": "Blocks ABS @Blocks_RF50",
"sub_path": "filament/Blocks ABS @Blocks_RF50.json"
},
{
"name": "Blocks ASA @Blocks_RD50_V2",
"sub_path": "filament/Blocks ASA @Blocks_RD50_V2.json"
},
{
"name": "Blocks ASA @Blocks_RF50",
"sub_path": "filament/Blocks ASA @Blocks_RF50.json"
},
{
"name": "Blocks ASA-CF @Blocks_RD50_V2",
"sub_path": "filament/Blocks ASA-CF @Blocks_RD50_V2.json"
},
{
"name": "Blocks ASA-CF @Blocks_RF50",
"sub_path": "filament/Blocks ASA-CF @Blocks_RF50.json"
},
{
"name": "Blocks PA @Blocks_RD50_V2",
"sub_path": "filament/Blocks PA @Blocks_RD50_V2.json"
},
{
"name": "Blocks PA @Blocks_RF50",
"sub_path": "filament/Blocks PA @Blocks_RF50.json"
},
{
"name": "Blocks PA-CF @Blocks_RD50_V2",
"sub_path": "filament/Blocks PA-CF @Blocks_RD50_V2.json"
},
{
"name": "Blocks PA-CF @Blocks_RF50",
"sub_path": "filament/Blocks PA-CF @Blocks_RF50.json"
},
{
"name": "Blocks PC @Blocks_RD50_V2",
"sub_path": "filament/Blocks PC @Blocks_RD50_V2.json"
},
{
"name": "Blocks PC @Blocks_RF50",
"sub_path": "filament/Blocks PC @Blocks_RF50.json"
},
{
"name": "Blocks PETG @Blocks_Pro_S100",
"sub_path": "filament/Blocks PETG @Blocks_Pro_S100.json"
},
{
"name": "Blocks PETG @Blocks_RD50_V2",
"sub_path": "filament/Blocks PETG @Blocks_RD50_V2.json"
},
{
"name": "Blocks PETG @Blocks_RF50",
"sub_path": "filament/Blocks PETG @Blocks_RF50.json"
},
{
"name": "Blocks PLA @Blocks_Pro_S100",
"sub_path": "filament/Blocks PLA @Blocks_Pro_S100.json"
},
{
"name": "Blocks PLA @Blocks_RD50_V2",
"sub_path": "filament/Blocks PLA @Blocks_RD50_V2.json"
},
{
"name": "Blocks PLA @Blocks_RF50",
"sub_path": "filament/Blocks PLA @Blocks_RF50.json"
},
{
"name": "Blocks PLA-CF @Blocks_RD50_V2",
"sub_path": "filament/Blocks PLA-CF @Blocks_RD50_V2.json"
},
{
"name": "Blocks PLA-CF @Blocks_RF50",
"sub_path": "filament/Blocks PLA-CF @Blocks_RF50.json"
},
{
"name": "Blocks PVA @Blocks_RD50_V2",
"sub_path": "filament/Blocks PVA @Blocks_RD50_V2.json"
},
{
"name": "Blocks PVA @Blocks_RF50",
"sub_path": "filament/Blocks PVA @Blocks_RF50.json"
},
{
"name": "Blocks TPU @Blocks_Pro_S100",
"sub_path": "filament/Blocks TPU @Blocks_Pro_S100.json"
},
{
"name": "Blocks TPU @Blocks_RD50_V2",
"sub_path": "filament/Blocks TPU @Blocks_RD50_V2.json"
},
{
"name": "Blocks TPU @Blocks_RF50",
"sub_path": "filament/Blocks TPU @Blocks_RF50.json"
"name": "Generic TPU @Blocks",
"sub_path": "filament/Generic TPU @Blocks.json"
}
],
"machine_list": [
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks ABS @Blocks_RD50_V2",
"inherits": "Blocks ABS @base",
"from": "system",
"setting_id": "qhQ0qQDGJgsueCAF",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic ABS;Generic ABS @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks ABS @Blocks_RF50",
"inherits": "Blocks ABS @base",
"from": "system",
"setting_id": "bGYMFFdKiROKuSiY",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks ASA @Blocks_RD50_V2",
"inherits": "Blocks ASA @base",
"from": "system",
"setting_id": "HW7xDXThvpVFbMq5",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic ASA;Generic ASA @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks ASA @Blocks_RF50",
"inherits": "Blocks ASA @base",
"from": "system",
"setting_id": "lBW7SCsvawi4icNU",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks ASA-CF @Blocks_RD50_V2",
"inherits": "Blocks ASA-CF @base",
"from": "system",
"setting_id": "x5ksnGLGGy1PgDns",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic ASA-CF;Generic ASA-CF @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks ASA-CF @Blocks_RF50",
"inherits": "Blocks ASA-CF @base",
"from": "system",
"setting_id": "pcbd5qFiMZAvDPg1",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks PA @Blocks_RD50_V2",
"inherits": "Blocks PA @base",
"from": "system",
"setting_id": "gxD81n2jjrReLD29",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic PA;Generic PA @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PA @Blocks_RF50",
"inherits": "Blocks PA @base",
"from": "system",
"setting_id": "PzKxRMDnQUzVWRer",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,17 +0,0 @@
{
"type": "filament",
"name": "Blocks PA @base",
"inherits": "fdm_filament_pa",
"from": "system",
"filament_id": "OFidOgK4",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"filament_flow_ratio": [
"0.98"
],
"filament_max_volumetric_speed": [
"10"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks PA-CF @Blocks_RD50_V2",
"inherits": "Blocks PA-CF @base",
"from": "system",
"setting_id": "EtbeKx3rbhUo1TtM",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic PA-CF;Generic PA-CF @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PA-CF @Blocks_RF50",
"inherits": "Blocks PA-CF @base",
"from": "system",
"setting_id": "udI8Q4X7HaPIaPt4",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks PC @Blocks_RD50_V2",
"inherits": "Blocks PC @base",
"from": "system",
"setting_id": "HLc0shWnKwJzSFyW",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic PC;Generic PC @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PC @Blocks_RF50",
"inherits": "Blocks PC @base",
"from": "system",
"setting_id": "9a6bccZopMTeNHYu",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,17 +0,0 @@
{
"type": "filament",
"name": "Blocks PC @base",
"inherits": "fdm_filament_pc",
"from": "system",
"filament_id": "OFlGY0MN",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"filament_flow_ratio": [
"0.94"
],
"filament_max_volumetric_speed": [
"10"
]
}
@@ -1,16 +0,0 @@
{
"type": "filament",
"name": "Blocks PETG @Blocks_Pro_S100",
"inherits": "Blocks PETG @base",
"from": "system",
"setting_id": "AhMR49fcFqtrQ6hI",
"instantiation": "true",
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle",
"BLOCKS Pro S100 0.6 nozzle",
"BLOCKS Pro S100 0.8 nozzle",
"BLOCKS Pro S100 1.0 nozzle",
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "Blocks Generic PETG;Generic PETG @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PETG @Blocks_RD50_V2",
"inherits": "Blocks PETG @base",
"from": "system",
"setting_id": "3v7ah1zVG8MERPSJ",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
]
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PETG @Blocks_RF50",
"inherits": "Blocks PETG @base",
"from": "system",
"setting_id": "S7weR19wo9meJ6Yz",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,16 +0,0 @@
{
"type": "filament",
"name": "Blocks PLA @Blocks_Pro_S100",
"inherits": "Blocks PLA @base",
"from": "system",
"setting_id": "vWojuLYIfduLGFLL",
"instantiation": "true",
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle",
"BLOCKS Pro S100 0.6 nozzle",
"BLOCKS Pro S100 0.8 nozzle",
"BLOCKS Pro S100 1.0 nozzle",
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "Blocks Generic PLA;Generic PLA @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PLA @Blocks_RD50_V2",
"inherits": "Blocks PLA @base",
"from": "system",
"setting_id": "y7y8NcXNdp17sJUs",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
]
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PLA @Blocks_RF50",
"inherits": "Blocks PLA @base",
"from": "system",
"setting_id": "jt1MJF4eZzkkscEJ",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks PLA-CF @Blocks_RD50_V2",
"inherits": "Blocks PLA-CF @base",
"from": "system",
"setting_id": "lhBtMKP1DmOB3HOI",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic PLA-CF;Generic PLA-CF @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PLA-CF @Blocks_RF50",
"inherits": "Blocks PLA-CF @base",
"from": "system",
"setting_id": "6CU83mAyhcZ4FCPI",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,23 +0,0 @@
{
"type": "filament",
"name": "Blocks PLA-CF @base",
"inherits": "fdm_filament_pla",
"from": "system",
"filament_id": "OF6FfwOP",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"filament_flow_ratio": [
"0.95"
],
"filament_max_volumetric_speed": [
"20"
],
"filament_type": [
"PLA-CF"
],
"slow_down_layer_time": [
"7"
]
}
@@ -1,14 +0,0 @@
{
"type": "filament",
"name": "Blocks PVA @Blocks_RD50_V2",
"inherits": "Blocks PVA @base",
"from": "system",
"setting_id": "hREDqwKF6qyKkakp",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
],
"renamed_from": "Blocks Generic PVA;Generic PVA @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks PVA @Blocks_RF50",
"inherits": "Blocks PVA @base",
"from": "system",
"setting_id": "q6pKqHY7Iz4OZaAC",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,17 +0,0 @@
{
"type": "filament",
"name": "Blocks PVA @base",
"inherits": "fdm_filament_pva",
"from": "system",
"filament_id": "OFqcNuE1",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"filament_flow_ratio": [
"0.98"
],
"filament_max_volumetric_speed": [
"20"
]
}
@@ -1,16 +0,0 @@
{
"type": "filament",
"name": "Blocks TPU @Blocks_Pro_S100",
"inherits": "Blocks TPU @base",
"from": "system",
"setting_id": "6Rkz2je91JRTRoTi",
"instantiation": "true",
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle",
"BLOCKS Pro S100 0.6 nozzle",
"BLOCKS Pro S100 0.8 nozzle",
"BLOCKS Pro S100 1.0 nozzle",
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "Blocks Generic TPU;Generic TPU @Blocks"
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks TPU @Blocks_RD50_V2",
"inherits": "Blocks TPU @base",
"from": "system",
"setting_id": "mkCqRQTtXldzoEUg",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle"
]
}
@@ -1,13 +0,0 @@
{
"type": "filament",
"name": "Blocks TPU @Blocks_RF50",
"inherits": "Blocks TPU @base",
"from": "system",
"setting_id": "bCCvu5Ow1JkwIrRR",
"instantiation": "true",
"compatible_printers": [
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks ABS @base",
"name": "Generic ABS @Blocks",
"inherits": "fdm_filament_abs",
"renamed_from": "Blocks Generic ABS",
"from": "system",
"filament_id": "OFBBhiX8",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "TL1Q1kA4t36GGObG",
"filament_id": "OFY9muEs",
"instantiation": "true",
"filament_flow_ratio": [
"0.95"
],
@@ -82,5 +81,13 @@
],
"during_print_exhaust_fan_speed": [
"100"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks ASA @base",
"name": "Generic ASA @Blocks",
"inherits": "fdm_filament_asa",
"renamed_from": "Blocks Generic ASA",
"from": "system",
"filament_id": "OFTz2YXa",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "xP7cB4RHgbm4cYDD",
"filament_id": "OFLPAxz3",
"instantiation": "true",
"filament_flow_ratio": [
"0.95"
],
@@ -82,5 +81,13 @@
],
"during_print_exhaust_fan_speed": [
"100"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks ASA-CF @base",
"name": "Generic ASA-CF @Blocks",
"inherits": "fdm_filament_asa",
"renamed_from": "Blocks Generic ASA-CF",
"from": "system",
"filament_id": "OF8b9I7o",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "ju4ue7yJoz3ujny6",
"filament_id": "OF53eLVD",
"instantiation": "true",
"filament_type": [
"ASA-CF"
],
@@ -85,5 +84,13 @@
],
"during_print_exhaust_fan_speed": [
"100"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -0,0 +1,24 @@
{
"type": "filament",
"name": "Generic PA @Blocks",
"inherits": "fdm_filament_pa",
"renamed_from": "Blocks Generic PA",
"from": "system",
"setting_id": "hL3p8gAeciwDkjNK",
"filament_id": "OFg8ndtj",
"instantiation": "true",
"filament_flow_ratio": [
"0.98"
],
"filament_max_volumetric_speed": [
"10"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks PA-CF @base",
"name": "Generic PA-CF @Blocks",
"inherits": "fdm_filament_pa",
"renamed_from": "Blocks Generic PA-CF",
"from": "system",
"filament_id": "OFdWrXpL",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "T6SO0WRdnG6wcyG8",
"filament_id": "OFQLcbps",
"instantiation": "true",
"filament_type": [
"PA-CF"
],
@@ -88,5 +87,13 @@
],
"during_print_exhaust_fan_speed": [
"80"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -0,0 +1,24 @@
{
"type": "filament",
"name": "Generic PC @Blocks",
"inherits": "fdm_filament_pc",
"renamed_from": "Blocks Generic PC",
"from": "system",
"setting_id": "Xhs8PjtmwwVj0ksE",
"filament_id": "OFLakOUI",
"instantiation": "true",
"filament_flow_ratio": [
"0.94"
],
"filament_max_volumetric_speed": [
"10"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks PETG @base",
"name": "Generic PETG @Blocks",
"inherits": "fdm_filament_petg",
"renamed_from": "Blocks Generic PETG",
"from": "system",
"filament_id": "OF9t1Ga0",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "NgzPlYItKHbmGgv3",
"filament_id": "OFYPdQJh",
"instantiation": "true",
"filament_flow_ratio": [
"0.94"
],
@@ -82,5 +81,18 @@
],
"slow_down_layer_time": [
"5"
],
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle",
"BLOCKS Pro S100 0.6 nozzle",
"BLOCKS Pro S100 0.8 nozzle",
"BLOCKS Pro S100 1.0 nozzle",
"BLOCKS Pro S100 1.2 nozzle",
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks PLA @base",
"name": "Generic PLA @Blocks",
"inherits": "fdm_filament_pla",
"renamed_from": "Blocks Generic PLA",
"from": "system",
"filament_id": "OFVGAC8g",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "kjhuttx4T8OtTNmV",
"filament_id": "OFDSrzZ8",
"instantiation": "true",
"filament_flow_ratio": [
"0.95"
],
@@ -40,5 +39,18 @@
],
"during_print_exhaust_fan_speed": [
"100"
],
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle",
"BLOCKS Pro S100 0.6 nozzle",
"BLOCKS Pro S100 0.8 nozzle",
"BLOCKS Pro S100 1.0 nozzle",
"BLOCKS Pro S100 1.2 nozzle",
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -0,0 +1,30 @@
{
"type": "filament",
"name": "Generic PLA-CF @Blocks",
"inherits": "fdm_filament_pla",
"renamed_from": "Blocks Generic PLA-CF",
"from": "system",
"setting_id": "oKUqzwAWMrpiyGLf",
"filament_id": "OFWbdGsC",
"instantiation": "true",
"filament_flow_ratio": [
"0.95"
],
"filament_max_volumetric_speed": [
"20"
],
"filament_type": [
"PLA-CF"
],
"slow_down_layer_time": [
"7"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -0,0 +1,24 @@
{
"type": "filament",
"name": "Generic PVA @Blocks",
"inherits": "fdm_filament_pva",
"renamed_from": "Blocks Generic PVA",
"from": "system",
"setting_id": "tNw3oe7VovLkgUbB",
"filament_id": "OFDvXujf",
"instantiation": "true",
"filament_flow_ratio": [
"0.98"
],
"filament_max_volumetric_speed": [
"20"
],
"compatible_printers": [
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -1,13 +1,12 @@
{
"type": "filament",
"name": "Blocks TPU @base",
"name": "Generic TPU @Blocks",
"inherits": "fdm_filament_tpu",
"renamed_from": "Blocks Generic TPU",
"from": "system",
"filament_id": "OFYnedOZ",
"instantiation": "false",
"filament_vendor": [
"Blocks"
],
"setting_id": "6iVYOCZo8ugs4JA0",
"filament_id": "OFgbpcy9",
"instantiation": "true",
"filament_max_volumetric_speed": [
"4"
],
@@ -55,5 +54,18 @@
],
"during_print_exhaust_fan_speed": [
"80"
],
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle",
"BLOCKS Pro S100 0.6 nozzle",
"BLOCKS Pro S100 0.8 nozzle",
"BLOCKS Pro S100 1.0 nozzle",
"BLOCKS Pro S100 1.2 nozzle",
"BLOCKS RD50 V2 0.4 nozzle",
"BLOCKS RD50 V2 0.6 nozzle",
"BLOCKS RD50 V2 0.8 nozzle",
"BLOCKS RF50 0.4 nozzle",
"BLOCKS RF50 0.6 nozzle",
"BLOCKS RF50 0.8 nozzle"
]
}
@@ -6,7 +6,7 @@
"setting_id": "G7HQgaspHXduDM8O",
"instantiation": "true",
"printer_model": "BLOCKS Pro S100",
"default_print_profile": "0.20mm Standard 0.4 nozzle @Blocks_Pro_S100",
"default_print_profile": "0.20mm Standard 0.4 nozzle @Blocks",
"max_layer_height": [
"0.30"
],
@@ -25,8 +25,5 @@
"printable_height": "900",
"upward_compatible_machine": [
"BLOCKS Pro S100"
],
"default_filament_profile": [
"Blocks PLA @Blocks_Pro_S100"
]
}
@@ -6,7 +6,7 @@
"setting_id": "XkWdS210oUMQN17N",
"instantiation": "true",
"printer_model": "BLOCKS Pro S100",
"default_print_profile": "0.30mm Standard 0.6 nozzle @Blocks_Pro_S100",
"default_print_profile": "0.30mm Standard 0.6 nozzle @Blocks",
"max_layer_height": [
"0.50"
],
@@ -26,8 +26,5 @@
"upward_compatible_machine": [
"BLOCKS Pro S100"
],
"printer_variant": "0.6",
"default_filament_profile": [
"Blocks PLA @Blocks_Pro_S100"
]
"printer_variant": "0.6"
}
@@ -6,7 +6,7 @@
"setting_id": "I6PdeCS7SbvIlkZf",
"instantiation": "true",
"printer_model": "BLOCKS Pro S100",
"default_print_profile": "0.40mm Standard 0.8 nozzle @Blocks_Pro_S100",
"default_print_profile": "0.40mm Standard 0.8 nozzle @Blocks",
"max_layer_height": [
"0.56"
],
@@ -26,8 +26,5 @@
"upward_compatible_machine": [
"BLOCKS Pro S100"
],
"printer_variant": "0.8",
"default_filament_profile": [
"Blocks PLA @Blocks_Pro_S100"
]
"printer_variant": "0.8"
}
@@ -6,7 +6,7 @@
"setting_id": "elLdUyy9RhUoa37o",
"instantiation": "true",
"printer_model": "BLOCKS Pro S100",
"default_print_profile": "0.50mm Standard 1.0 nozzle @Blocks_Pro_S100",
"default_print_profile": "0.50mm Standard 1.0 nozzle @Blocks",
"max_layer_height": [
"0.7"
],
@@ -26,8 +26,5 @@
"upward_compatible_machine": [
"BLOCKS Pro S100"
],
"printer_variant": "1.0",
"default_filament_profile": [
"Blocks PLA @Blocks_Pro_S100"
]
"printer_variant": "1.0"
}
@@ -6,7 +6,7 @@
"setting_id": "xtsGSJ4JkbHTPi44",
"instantiation": "true",
"printer_model": "BLOCKS Pro S100",
"default_print_profile": "0.60mm Standard 1.2 nozzle @Blocks_Pro_S100",
"default_print_profile": "0.60mm Standard 1.2 nozzle @Blocks",
"max_layer_height": [
"0.8"
],
@@ -26,8 +26,5 @@
"upward_compatible_machine": [
"BLOCKS Pro S100"
],
"printer_variant": "1.2",
"default_filament_profile": [
"Blocks PLA @Blocks_Pro_S100"
]
"printer_variant": "1.2"
}
@@ -8,5 +8,5 @@
"bed_model": "PRO S100 HotBed model.stl",
"bed_texture": "PRO S100 HotBed texture.svg",
"hotend_model": "BLOCKS PrintCore.stl",
"default_materials": "Blocks PLA @Blocks_Pro_S100;Blocks PETG @Blocks_Pro_S100;Blocks TPU @Blocks_Pro_S100"
"default_materials": "Generic PLA @Blocks;Generic PETG @Blocks;Generic TPU @Blocks"
}
@@ -34,9 +34,5 @@
"printable_height": "500",
"upward_compatible_machine": [
"BLOCKS RD50 V2"
],
"printer_variant": "0.4",
"default_filament_profile": [
"Blocks PLA @Blocks_RD50_V2"
]
}
@@ -35,8 +35,5 @@
"deretraction_speed": [
"80"
],
"printer_variant": "0.6",
"default_filament_profile": [
"Blocks PLA @Blocks_RD50_V2"
]
"printer_variant": "0.6"
}
@@ -35,8 +35,5 @@
"deretraction_speed": [
"80"
],
"printer_variant": "0.8",
"default_filament_profile": [
"Blocks PLA @Blocks_RD50_V2"
]
"printer_variant": "0.8"
}
@@ -8,5 +8,5 @@
"bed_model": "RD50 V2 HotBed model.stl",
"bed_texture": "RD50 V2 HotBed texture.svg",
"hotend_model": "BLOCKS PrintCore.stl",
"default_materials": "Blocks PLA @Blocks_RD50_V2;Blocks PETG @Blocks_RD50_V2;Blocks TPU @Blocks_RD50_V2"
"default_materials": "Generic PLA @Blocks;Generic PETG @Blocks;Generic TPU @Blocks"
}
@@ -51,7 +51,7 @@
"12"
],
"retraction_length": [
"1.2"
"1"
],
"retraction_speed": [
"60"
@@ -79,10 +79,5 @@
],
"retract_before_wipe": [
"0"
],
"default_filament_profile": [
"Blocks PLA @Blocks_RF50"
],
"support_multi_bed_types": "1",
"default_bed_type": "Textured PEI Plate"
]
}
@@ -51,7 +51,7 @@
"12"
],
"retraction_length": [
"1.2"
"1"
],
"retraction_speed": [
"60"
@@ -75,8 +75,8 @@
"BLOCKS RF50"
],
"machine_start_gcode": [
"PRINT_START EXTRUDER=[nozzle_temperature_initial_layer] BED=[bed_temperature_initial_layer]\n",
"SET_PRESSURE_ADVANCE ADVANCE=0.046\n"
"PRINT_START EXTRUDER=[nozzle_temperature_initial_layer] BED=[bed_temperature_initial_layer]",
"SET_PRESSURE_ADVANCE ADVANCE=0.046"
],
"printer_variant": "0.6",
"wipe_distance": [
@@ -84,10 +84,5 @@
],
"retract_before_wipe": [
"0"
],
"default_filament_profile": [
"Blocks PLA @Blocks_RF50"
],
"support_multi_bed_types": "1",
"default_bed_type": "Textured PEI Plate"
]
}
@@ -51,7 +51,7 @@
"12"
],
"retraction_length": [
"1.2"
"1"
],
"retraction_speed": [
"60"
@@ -80,10 +80,5 @@
],
"retract_before_wipe": [
"0"
],
"default_filament_profile": [
"Blocks PLA @Blocks_RF50"
],
"support_multi_bed_types": "1",
"default_bed_type": "Textured PEI Plate"
]
}
@@ -8,6 +8,5 @@
"bed_model": "RF50 HotBed model.stl",
"bed_texture": "RF50 HotBed texture.svg",
"hotend_model": "BLOCKS PrintCore.stl",
"default_materials": "Blocks PLA @Blocks_RF50;Blocks PETG @Blocks_RF50;Blocks TPU @Blocks_RF50",
"not_support_bed_type": "Smooth Cool Plate;Engineering Plate;Textured Cool Plate;Cool Plate (SuperTack)"
"default_materials": "Generic PLA @Blocks;Generic PETG @Blocks;Generic TPU @Blocks"
}
@@ -123,6 +123,9 @@
"wipe": [
"1"
],
"default_filament_profile": [
"Generic PLA @Blocks"
],
"bed_exclude_area": [
"0x0"
],
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.20mm Standard 0.4 nozzle @Blocks_Pro_S100",
"name": "0.20mm Standard 0.4 nozzle @Blocks",
"inherits": "fdm_process_blocks_common",
"from": "system",
"setting_id": "QSEguMMChNFZsK5H",
"setting_id": "47aDtVL6E5DVr7Mt",
"instantiation": "true",
"layer_height": "0.2",
"bottom_shell_layers": "4",
"top_shell_layers": "5",
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle"
],
"renamed_from": "0.20mm Standard 0.4 nozzle @Blocks"
]
}
@@ -25,7 +25,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -61,7 +61,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.24mm Draft 0.4 nozzle @Blocks_Pro_S100",
"name": "0.24mm Draft 0.4 nozzle @Blocks",
"inherits": "fdm_process_blocks_common",
"from": "system",
"setting_id": "uALfEFHGmup6vBYI",
"setting_id": "ETADjxV6ViJQdnHA",
"instantiation": "true",
"layer_height": "0.24",
"bottom_shell_layers": "4",
"top_shell_layers": "5",
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle"
],
"renamed_from": "0.24mm Draft 0.4 nozzle @Blocks"
]
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -22,7 +22,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.30mm Extra Draft 0.4 nozzle @Blocks_Pro_S100",
"name": "0.30mm Extra Draft 0.4 nozzle @Blocks",
"inherits": "fdm_process_blocks_common",
"from": "system",
"setting_id": "HYKF5l2OGvpugSQy",
"setting_id": "UbuICsmppKDsaaZ4",
"instantiation": "true",
"bottom_shell_layers": "3",
"top_shell_layers": "4",
"layer_height": "0.30",
"compatible_printers": [
"BLOCKS Pro S100 0.4 nozzle"
],
"renamed_from": "0.30mm Extra Draft 0.4 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.30mm Optimal 0.8 nozzle @Blocks_Pro_S100",
"name": "0.30mm Optimal 0.8 nozzle @Blocks",
"inherits": "fdm_process_common 0.8 nozzle",
"from": "system",
"setting_id": "OUfZvizM5MGnvHfp",
"setting_id": "YqkYzp5zdH4R5upm",
"instantiation": "true",
"bottom_shell_layers": "3",
"top_shell_layers": "3",
"layer_height": "0.3",
"compatible_printers": [
"BLOCKS Pro S100 0.8 nozzle"
],
"renamed_from": "0.30mm Optimal 0.8 nozzle @Blocks"
]
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.30mm Optimal 1.0 nozzle @Blocks_Pro_S100",
"name": "0.30mm Optimal 1.0 nozzle @Blocks",
"inherits": "fdm_process_common 1.0 nozzle",
"from": "system",
"setting_id": "HGG9WxKVr89qNFDx",
"setting_id": "8pBawPScHkyQu0SW",
"instantiation": "true",
"bottom_shell_layers": "4",
"top_shell_layers": "4",
"layer_height": "0.30",
"compatible_printers": [
"BLOCKS Pro S100 1.0 nozzle"
],
"renamed_from": "0.30mm Optimal 1.0 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.30mm Standard 0.6 nozzle @Blocks_Pro_S100",
"name": "0.30mm Standard 0.6 nozzle @Blocks",
"inherits": "fdm_process_common 0.6 nozzle",
"from": "system",
"setting_id": "gO2I1YjBl4nf8yzr",
"setting_id": "EPI3PAVK9LpJOZWO",
"instantiation": "true",
"bottom_shell_layers": "3",
"top_shell_layers": "3",
"layer_height": "0.30",
"compatible_printers": [
"BLOCKS Pro S100 0.6 nozzle"
],
"renamed_from": "0.30mm Standard 0.6 nozzle @Blocks"
]
}
@@ -22,7 +22,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -22,7 +22,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.40mm Draft 0.6 nozzle @Blocks_Pro_S100",
"name": "0.40mm Draft 0.6 nozzle @Blocks",
"inherits": "fdm_process_common 0.6 nozzle",
"from": "system",
"setting_id": "OjsLUl1heqv1cevs",
"setting_id": "CShVKoGspbMJNPw8",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "2",
"layer_height": "0.40",
"compatible_printers": [
"BLOCKS Pro S100 0.6 nozzle"
],
"renamed_from": "0.40mm Draft 0.6 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.40mm Standard 0.8 nozzle @Blocks_Pro_S100",
"name": "0.40mm Standard 0.8 nozzle @Blocks",
"inherits": "fdm_process_common 0.8 nozzle",
"from": "system",
"setting_id": "laOTioBGySeudJpl",
"setting_id": "TSRjmfWaatY7oLJB",
"instantiation": "true",
"bottom_shell_layers": "3",
"top_shell_layers": "4",
"layer_height": "0.40",
"compatible_printers": [
"BLOCKS Pro S100 0.8 nozzle"
],
"renamed_from": "0.40mm Standard 0.8 nozzle @Blocks"
]
}
@@ -22,7 +22,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.50mm Draft 0.8 nozzle @Blocks_Pro_S100",
"name": "0.50mm Draft 0.8 nozzle @Blocks",
"inherits": "fdm_process_common 0.8 nozzle",
"from": "system",
"setting_id": "oAhgUZdADR7kP87e",
"setting_id": "vOtZHrDS88Shmf2m",
"instantiation": "true",
"bottom_shell_layers": "3",
"top_shell_layers": "4",
"layer_height": "0.50",
"compatible_printers": [
"BLOCKS Pro S100 0.8 nozzle"
],
"renamed_from": "0.50mm Draft 0.8 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.50mm Optimal 1.2 nozzle @Blocks_Pro_S100",
"name": "0.50mm Optimal 1.2 nozzle @Blocks",
"inherits": "fdm_process_common 1.2 nozzle",
"from": "system",
"setting_id": "0eqNgX26jemsBfV5",
"setting_id": "BKrEAKqDYzdH43wc",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "3",
"layer_height": "0.50",
"compatible_printers": [
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "0.50mm Optimal 1.2 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.50mm Standard 1.0 nozzle @Blocks_Pro_S100",
"name": "0.50mm Standard 1.0 nozzle @Blocks",
"inherits": "fdm_process_common 1.0 nozzle",
"from": "system",
"setting_id": "z1qCW1cEMc4QvBbV",
"setting_id": "D40iksDm7mFjhSKn",
"instantiation": "true",
"bottom_shell_layers": "3",
"top_shell_layers": "3",
"layer_height": "0.50",
"compatible_printers": [
"BLOCKS Pro S100 1.0 nozzle"
],
"renamed_from": "0.50mm Standard 1.0 nozzle @Blocks"
]
}
@@ -21,7 +21,7 @@
"top_solid_infill_flow_ratio": "0.97",
"bottom_solid_infill_flow_ratio": "1.08",
"seam_position": "aligned",
"sparse_infill_pattern": "grid",
"sparse_infill_patter": "grid",
"initial_layer_speed": "60",
"initial_layer_infill_speed": "80",
"initial_travel_speed": "100%",
@@ -57,7 +57,5 @@
"accel_to_decel_enable": "1",
"accel_to_decel_factor": "50%",
"elefant_foot_compensation": "0.25",
"elefant_foot_compensation_layers": "1",
"skirt_loops": "2",
"skirt_type": "perobject"
"elefant_foot_compensation_layers": "1"
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.60mm Draft 1.0 nozzle @Blocks_Pro_S100",
"name": "0.60mm Draft 1.0 nozzle @Blocks",
"inherits": "fdm_process_common 1.0 nozzle",
"from": "system",
"setting_id": "gTTgtfG8qb9My3hH",
"setting_id": "UJUe8XCBzZf8NyCL",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "3",
"layer_height": "0.60",
"compatible_printers": [
"BLOCKS Pro S100 1.0 nozzle"
],
"renamed_from": "0.60mm Draft 1.0 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.60mm Standard 1.2 nozzle @Blocks_Pro_S100",
"name": "0.60mm Standard 1.2 nozzle @Blocks",
"inherits": "fdm_process_common 1.2 nozzle",
"from": "system",
"setting_id": "ApcyToENCIANrI71",
"setting_id": "PSBFrTykpkytPI2Q",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "3",
"layer_height": "0.60",
"compatible_printers": [
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "0.60mm Standard 1.2 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.70mm Draft 1.2 nozzle @Blocks_Pro_S100",
"name": "0.70mm Draft 1.2 nozzle @Blocks",
"inherits": "fdm_process_common 1.2 nozzle",
"from": "system",
"setting_id": "DEv7X7zaTfxRQmjo",
"setting_id": "0ZQ0USGX9SwAKr29",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "3",
"layer_height": "0.70",
"compatible_printers": [
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "0.70mm Draft 1.2 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.70mm Extra Draft 1.0 nozzle @Blocks_Pro_S100",
"name": "0.70mm Extra Draft 1.0 nozzle @Blocks",
"inherits": "fdm_process_common 1.0 nozzle",
"from": "system",
"setting_id": "nUW7N9dJmTyQT4AG",
"setting_id": "69PFmjOVFBOIp3Qg",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "3",
"layer_height": "0.70",
"compatible_printers": [
"BLOCKS Pro S100 1.0 nozzle"
],
"renamed_from": "0.70mm Extra Draft 1.0 nozzle @Blocks"
]
}
@@ -1,15 +1,14 @@
{
"type": "process",
"name": "0.80mm Extra Draft 1.2 nozzle @Blocks_Pro_S100",
"name": "0.80mm Extra Draft 1.2 nozzle @Blocks",
"inherits": "fdm_process_common 1.2 nozzle",
"from": "system",
"setting_id": "JMy62SonRfK0cAdL",
"setting_id": "iBwRI5JJewW5HJSv",
"instantiation": "true",
"bottom_shell_layers": "2",
"top_shell_layers": "2",
"layer_height": "0.80",
"compatible_printers": [
"BLOCKS Pro S100 1.2 nozzle"
],
"renamed_from": "0.80mm Extra Draft 1.2 nozzle @Blocks"
]
}
+1 -1
View File
@@ -1,6 +1,6 @@
{
"name": "OrcaFilamentLibrary",
"version": "02.04.00.13",
"version": "02.04.00.12",
"force_update": "0",
"description": "Orca Filament Library",
"filament_list": [
@@ -6,7 +6,7 @@
"filament_id": "OFvgE0Zh",
"instantiation": "false",
"fan_cooling_layer_time": [
"81"
"80"
],
"fan_min_speed": [
"50"
+129 -30
View File
@@ -214,9 +214,9 @@ function ShowModelInfo( pModel )
SendWXDebugInfo("Model Name: "+sModelName);
$('#ModelName').html(sModelName);
$('#ModelName').text(sModelName);
$('#ModelName').attr('title',sModelName);
$('#ModelAuthorName').html(sModelAuthor);
$('#ModelAuthorName').text(sModelAuthor);
switch(UploadType)
{
@@ -268,7 +268,7 @@ function ShowModelInfo( pModel )
break;
}
$('#Model_Desc').html( html_decode(sModelDesc) );
$('#Model_Desc').empty().append( SanitizeDescHtml( html_decode(sModelDesc) ) );
let ModelPreviewList=pModel.preview_img;
let TotalPreview=ModelPreviewList.length;
@@ -281,16 +281,15 @@ function ShowModelInfo( pModel )
if(TotalPreview>0)
{
let htmlPreview='';
$('#ModelPreviewList').empty();
for(let pn=0;pn<TotalPreview;pn++)
{
//let FTmpPath=decodeURIComponent(ModelPreviewList[pn]);
let FTmpPath=ModelPreviewList[pn]['filepath'];
htmlPreview+='<div class="swiper-slide"><img class="Model_PrevImg" src="'+FTmpPath+'" /></div>';
$('#ModelPreviewList').append( $('<div class="swiper-slide"></div>').append( $('<img class="Model_PrevImg" />').attr('src',FTmpPath) ) );
}
$('#ModelPreviewList').html(htmlPreview);
$('#Model_Preview_Image').viewer({
title: false,
fullsreen: false,
@@ -410,7 +409,8 @@ function ConstructFileHtml( ID, pItem )
{
let fTotal=pItem.length;
let strHtml='';
let pBoard=$('#'+ID+' .FileListBoard');
pBoard.empty();
for( let f=0;f<fTotal;f++ )
{
let pOne=pItem[f];
@@ -443,39 +443,139 @@ function ConstructFileHtml( ID, pItem )
ImgPath='img/default.png';
}
//Add html
//Add html. File names come from the 3MF, so build the nodes rather than concatenating markup.
let pIconImg=$('<img />').attr('src',ImgPath);
let pMenu=$('<div class="FileMenu"><img src="img/s.svg" /></div>');
if( strClass!='ImageIcon' )
{
strHtml+='<div class="FileItem">'+
' <div class="'+strClass+'"><img src="'+ImgPath+'" /></div>'+
' <div class="FileText">'+
' <div class="FileName">'+tName+'</div>'+
' </div>'+
' <div class="FileMenu" onClick="OnClickOpenFile(\''+tPath+'\')"><img src="img/s.svg" /></div>'+
'</div>';
pMenu.on('click', function(){ OnClickOpenFile(tPath); });
}
else
{
ImgID++;
let TmpImgID="AF"+ImgID;
strHtml+='<div class="FileItem">'+
' <div class="'+strClass+'"><img id="'+TmpImgID+'" src="'+ImgPath+'" /></div>'+
' <div class="FileText">'+
' <div class="FileName">'+tName+'</div>'+
' </div>'+
' <div class="FileMenu" onClick="OnClickOpenImage(\''+TmpImgID+'\')"><img src="img/s.svg" /></div>'+
'</div>';
pIconImg.attr('id',TmpImgID);
pMenu.on('click', function(){ OnClickOpenImage(TmpImgID); });
}
let pFileItem=$('<div class="FileItem"></div>');
pFileItem.append( $('<div></div>').addClass(strClass).append(pIconImg) );
pFileItem.append( $('<div class="FileText"></div>').append( $('<div class="FileName"></div>').text(tName).attr('title',tName) ) );
pFileItem.append( pMenu );
pBoard.append( pFileItem );
}
$('#'+ID+' .FileListBoard').html(strHtml);
if( fTotal>0 )
$('#'+ID).show();
}
// Descriptions are untrusted 3MF metadata that may carry rich-text HTML (e.g. from MakerWorld).
// Rebuild them from an inert parse, keeping only plain formatting tags and http(s) links and images.
var DescAllowedTags=['P','BR','B','STRONG','I','EM','U','S','STRIKE','DEL','INS','SUB','SUP','SMALL','MARK',
'Q','ABBR','KBD','WBR','H1','H2','H3','H4','H5','H6','UL','OL','LI','DL','DT','DD','BLOCKQUOTE','PRE','CODE',
'HR','SPAN','DIV','FIGURE','FIGCAPTION','TABLE','CAPTION','THEAD','TBODY','TFOOT','TR','TH','TD','A','IMG'];
// Plain attributes kept per tag; the numeric ones must be plain non-negative integers.
var DescAllowedAttrs={'IMG':['alt','title','width','height'],'TD':['colspan','rowspan'],'TH':['colspan','rowspan'],'OL':['start']};
var DescNumericAttrs=['width','height','colspan','rowspan','start'];
// Dropped together with their content; any other unknown tag is unwrapped to its children.
var DescDroppedTags=['SCRIPT','STYLE','TEMPLATE','NOSCRIPT','TEXTAREA','TITLE','IFRAME','FRAME','OBJECT','EMBED','SVG','MATH'];
function IsHttpUrl( strUrl )
{
// The scheme must be written as is, so nothing the URL parser would strip can precede or split it.
if( typeof strUrl!='string' || !/^https?:/i.test(strUrl) )
return false;
try
{
let sProtocol=new URL(strUrl).protocol;
return sProtocol=='http:' || sProtocol=='https:';
}
catch(e)
{
return false;
}
}
// Images load as soon as the page opens, so only https sources are kept: no plain-http requests to the local network.
function IsHttpsUrl( strUrl )
{
return IsHttpUrl(strUrl) && new URL(strUrl).protocol=='https:';
}
// Embedded YouTube players become a plain link to the video.
function GetYouTubeEmbedUrl( pNode )
{
let sSrc=pNode.getAttribute('src');
if( !IsHttpUrl(sSrc) )
return null;
let pUrl=new URL(sSrc);
return ( pUrl.origin=='https://www.youtube.com' && pUrl.pathname.indexOf('/embed/')==0 ) ? pUrl.href : null;
}
function CopyDescNodes( pSrc, pDst )
{
for( let pNode=pSrc.firstChild;pNode!=null;pNode=pNode.nextSibling )
{
if( pNode.nodeType==Node.TEXT_NODE )
{
pDst.appendChild( document.createTextNode(pNode.nodeValue) );
continue;
}
if( pNode.nodeType!=Node.ELEMENT_NODE )
continue;
let sTag=pNode.nodeName.toUpperCase();
if( sTag=='IFRAME' )
{
let sVideoUrl=GetYouTubeEmbedUrl(pNode);
if( sVideoUrl!=null )
{
let pLink=document.createElement('A');
pLink.setAttribute('href',sVideoUrl);
pLink.textContent=sVideoUrl;
pDst.appendChild(pLink);
}
continue;
}
if( $.inArray(sTag,DescDroppedTags)>=0 )
continue;
if( $.inArray(sTag,DescAllowedTags)<0 )
{
CopyDescNodes(pNode,pDst);
continue;
}
let pElem=document.createElement(sTag);
if( sTag=='A' && IsHttpUrl(pNode.getAttribute('href')) )
pElem.setAttribute('href',pNode.getAttribute('href'));
else if( sTag=='IMG' )
{
if( !IsHttpsUrl(pNode.getAttribute('src')) )
continue;
pElem.setAttribute('src',pNode.getAttribute('src'));
}
$.each( DescAllowedAttrs[sTag]||[], function(i,sAttr){
let sValue=pNode.getAttribute(sAttr);
if( sValue!=null && ( $.inArray(sAttr,DescNumericAttrs)<0 || /^\d+$/.test(sValue) ) )
pElem.setAttribute(sAttr,sValue);
});
CopyDescNodes(pNode,pElem);
pDst.appendChild(pElem);
}
}
function SanitizeDescHtml( strHtml )
{
let pFragment=document.createDocumentFragment();
// A DOMParser document is inert: it runs no scripts and loads no resources.
let pDoc=new DOMParser().parseFromString(strHtml,'text/html');
if( pDoc && pDoc.body )
CopyDescNodes(pDoc.body,pFragment);
return pFragment;
}
function ShowProfilelInfo( pProfile )
{
//==========Profile Info==========
@@ -483,10 +583,10 @@ function ShowProfilelInfo( pProfile )
let sProfileAuthor=decodeURIComponent(pProfile.author);
let sProfileDesc=decodeURIComponent(pProfile.description);
$('#ProfileName').html(sProfileName);
$('#ProfileAuthor').html(sProfileAuthor);
$('#ProfileName').text(sProfileName);
$('#ProfileAuthor').text(sProfileAuthor);
$('#Profile_Desc').html( html_decode(sProfileDesc) );
$('#Profile_Desc').empty().append( SanitizeDescHtml( html_decode(sProfileDesc) ) );
let ProfilePreviewList=pProfile.preview_img;
let TotalPreview=ProfilePreviewList.length;
@@ -499,15 +599,14 @@ function ShowProfilelInfo( pProfile )
if(TotalPreview>0)
{
let htmlPreview='';
$('#ProfilePreviewList').empty();
for(let pn=0;pn<TotalPreview;pn++)
{
let FTmpPath=ProfilePreviewList[pn]['filepath'];
htmlPreview+='<div class="swiper-slide"><img class="Model_PrevImg" src="'+FTmpPath+'" /></div>';
$('#ProfilePreviewList').append( $('<div class="swiper-slide"></div>').append( $('<img class="Model_PrevImg" />').attr('src',FTmpPath) ) );
}
$('#ProfilePreviewList').html(htmlPreview);
$('#Profile_Preview_Image').viewer({
title: false,
fullsreen: false,
+2 -2
View File
@@ -2673,10 +2673,10 @@ void CadDocument::apply_feature(TopoDS_Shape& result, bool& have_body,
ridge = pipe.Shape();
have_ridge = !ridge.IsNull();
}
} catch (const Standard_Failure&) {
have_ridge = false; // OCCT failure — on OCCT >= 8 Standard_Failure derives from std::exception, so this handler must come first
} catch (const std::exception&) {
have_ridge = false; // fall back to the bare cylinder/bore below
} catch (const Standard_Failure&) {
have_ridge = false; // OCCT failure (not a std::exception) — must be caught here too
}
if (f.thread_internal) {
-2
View File
@@ -15,8 +15,6 @@
#include <TopExp.hxx>
#include <TopTools.hxx>
#include <TopTools_IndexedMapOfShape.hxx>
#include <TopTools_ListOfShape.hxx>
#include <TopTools_IndexedDataMapOfShapeListOfShape.hxx>
#include <Poly_Triangulation.hxx>
#include <gp_Ax2.hxx>
#include <gp_Dir.hxx>
-1
View File
@@ -25,7 +25,6 @@
#include "XCAFDoc_DocumentTool.hxx"
#include "XCAFDoc_ShapeTool.hxx"
#include "XCAFApp_Application.hxx"
#include "TDF_LabelSequence.hxx"
#include "TopoDS_Solid.hxx"
#include "TopoDS_Compound.hxx"
#include "TopoDS_Builder.hxx"
+28 -38
View File
@@ -2504,8 +2504,7 @@ void GCode::do_export(Print* print, const char* path, GCodeProcessorResult* resu
{
LifecycleEventContext ctx;
ctx.id = std::to_string(print->model().id().id);
ctx.name = print->get_model_name();
ctx.name = std::to_string(print->model().id().id);
ctx.code = LifecycleEvtCode::Ok;
ctx.msg = path;
ctx.cancellation_check = [print]() { return print->canceled(); };
@@ -2557,8 +2556,7 @@ void GCode::do_export(Print* print, const char* path, GCodeProcessorResult* resu
}
{
LifecycleEventContext ctx;
ctx.id = std::to_string(print->model().id().id);
ctx.name = print->get_model_name();
ctx.name = std::to_string(print->model().id().id);
ctx.code = LifecycleEvtCode::Error;
ctx.msg = std::string(path) + "\n" + err_msg;
ctx.cancellation_check = [print]() { return print->canceled(); };
@@ -2582,8 +2580,7 @@ void GCode::do_export(Print* print, const char* path, GCodeProcessorResult* resu
boost::nowide::remove(path_tmp.c_str());
{
LifecycleEventContext ctx;
ctx.id = std::to_string(print->model().id().id);
ctx.name = print->get_model_name();
ctx.name = std::to_string(print->model().id().id);
ctx.code = LifecycleEvtCode::Error;
ctx.msg = std::string(path) + "\n" + ex.what();
ctx.cancellation_check = [print]() { return print->canceled(); };
@@ -2696,8 +2693,7 @@ void GCode::do_export(Print* print, const char* path, GCodeProcessorResult* resu
if (ret) {
{
LifecycleEventContext ctx;
ctx.id = std::to_string(print->model().id().id);
ctx.name = print->get_model_name();
ctx.name = std::to_string(print->model().id().id);
ctx.code = LifecycleEvtCode::Error;
ctx.msg = std::string(path) + "\nFailed to rename the output G-code file: " + ret.message();
ctx.cancellation_check = [print]() { return print->canceled(); };
@@ -2716,8 +2712,7 @@ void GCode::do_export(Print* print, const char* path, GCodeProcessorResult* resu
{
LifecycleEventContext ctx;
ctx.id = std::to_string(print->model().id().id);
ctx.name = print->get_model_name();
ctx.name = std::to_string(print->model().id().id);
ctx.code = LifecycleEvtCode::Ok;
ctx.msg = path;
ctx.cancellation_check = [print]() { return print->canceled(); };
@@ -7969,20 +7964,6 @@ double GCode::calc_max_volumetric_speed(const double layer_height, const double
return res;
}
// ORCA: Overlap at or below which the overhang fan switches on; negative when it does not depend on overlap
// (Overhang_threshold_none cools every external perimeter).
static float overhang_fan_overlap_threshold(int overhang_fan_threshold)
{
switch (overhang_fan_threshold) {
case (int) Overhang_threshold_1_4: return 0.9f;
case (int) Overhang_threshold_2_4: return 0.75f;
case (int) Overhang_threshold_3_4: return 0.5f;
case (int) Overhang_threshold_4_4: return 0.25f;
case (int) Overhang_threshold_bridge: return 0.05f;
default: return -1.f;
}
}
std::string GCode::_extrude(const ExtrusionPath &path, std::string description, double speed)
{
std::string gcode;
@@ -8325,13 +8306,6 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
ConfigOptionPercents overhang_overlap_levels({90, 75, 50, 25, 13, 0});
// ORCA: Lets the path be split where the overhang fan switches, not only where the speed changes.
// Bridges and overhang perimeters are cooled regardless of overlap.
float fan_overlap_threshold = -1.f;
if (FILAMENT_CONFIG(enable_overhang_bridge_fan) && m_enable_cooling_markers && path.role() != erBridgeInfill &&
path.role() != erOverhangPerimeter)
fan_overlap_threshold = overhang_fan_overlap_threshold(FILAMENT_CONFIG(overhang_fan_threshold));
if (NOZZLE_CONFIG(slowdown_for_curled_perimeters)){
ConfigOptionFloatsOrPercents dynamic_overhang_speeds(
{FloatOrPercent{100, true},
@@ -8352,8 +8326,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
FloatOrPercent{NOZZLE_CONFIG(overhang_4_4_speed).get_abs_value(ref_speed) * 100 / ref_speed, true}});
new_points = m_extrusion_quality_estimator.estimate_extrusion_quality(path, overhang_overlap_levels, dynamic_overhang_speeds,
ref_speed, speed, NOZZLE_CONFIG(slowdown_for_curled_perimeters),
fan_overlap_threshold);
ref_speed, speed, NOZZLE_CONFIG(slowdown_for_curled_perimeters));
}else{
ConfigOptionFloatsOrPercents dynamic_overhang_speeds(
{FloatOrPercent{100, true},
@@ -8372,8 +8345,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
FloatOrPercent{NOZZLE_CONFIG(bridge_speed) * 100 / ref_speed, true}});
new_points = m_extrusion_quality_estimator.estimate_extrusion_quality(path, overhang_overlap_levels, dynamic_overhang_speeds,
ref_speed, speed, NOZZLE_CONFIG(slowdown_for_curled_perimeters),
fan_overlap_threshold);
ref_speed, speed, NOZZLE_CONFIG(slowdown_for_curled_perimeters));
}
variable_speed = std::any_of(new_points.begin(), new_points.end(),
[speed](const ProcessedPoint &p) { return fabs(double(p.speed) - speed) > 1; }); // Ignore small speed variations (under 1mm/sec)
@@ -8525,10 +8497,28 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
if (role == erBridgeInfill || role == erOverhangPerimeter) { // ORCA: Split out bridge infill to internal and external to apply separate fan settings
return true;
}
if (overhang_fan_threshold == Overhang_threshold_none)
switch (overhang_fan_threshold) {
case (int)Overhang_threshold_1_4:
return overlap <= 0.9f;
break;
case (int)Overhang_threshold_2_4:
return overlap <= 0.75f;
break;
case (int)Overhang_threshold_3_4:
return overlap <= 0.5f;
break;
case (int)Overhang_threshold_4_4:
return overlap <= 0.25f;
break;
case (int)Overhang_threshold_bridge:
return overlap <= 0.05f;
break;
case (int)Overhang_threshold_none:
return is_external_perimeter(role);
const float overlap_threshold = overhang_fan_overlap_threshold(overhang_fan_threshold);
return overlap_threshold >= 0.f && overlap <= overlap_threshold;
break;
default:
return false;
}
};
std::string comment;
+74 -110
View File
@@ -41,12 +41,10 @@ std::vector<ExtendedPoint<L::Dim>> estimate_points_properties(const POINTS&
float flow_width,
float max_line_length = -1.0f,
float min_distance = -1.0f,
// Speed an overhang distance prints at. Without it, interior sampling
// is skipped and every line over 4mm is split.
const std::function<float(float)>& distance_to_speed = {},
// Overlap (1 - distance / flow_width) at or below which the overhang
// fan switches on; negative when the fan does not depend on overlap.
float fan_overlap_threshold = -1.0f)
// Maps an overhang distance onto the speed it will be printed at. Interior sampling
// needs it to tell which of the points it could add would change the G-code, and is
// skipped without it.
const std::function<float(float)>& distance_to_speed = {})
{
bool looped = input_points.front() == input_points.back();
std::function<size_t(size_t,size_t)> get_prev_index = [](size_t idx, size_t count) {
@@ -127,43 +125,29 @@ std::vector<ExtendedPoint<L::Dim>> estimate_points_properties(const POINTS&
points.push_back(next_point);
}
// ORCA: How an overhang distance prints, which is what the passes below compare. A segment is printed at the lower
// of the speeds at its two ends, and with the overhang fan on if the overlap at either end turns it on. A point
// added to a path can therefore only change the G-code where it prints at a different speed or fan state from the
// points either side of it, and the passes below add points there and nowhere else.
const float width_inv = 1.f / flow_width;
// Whether an overhang distance turns the overhang fan on. The overlap test check_overhang_fan applies in GCode.cpp.
auto fan_on = [fan_overlap_threshold, width_inv](float distance) {
return fan_overlap_threshold >= 0.f && 1.f - distance * width_inv <= fan_overlap_threshold;
};
// Whether two overhang distances are interchangeable ie have the same speed (beyond a 1mm/sec threshold that gcode.cpp filters out on)
// and the same fan state.
auto same_speed_and_fan = [&distance_to_speed, &fan_on](float a, float b) {
return std::abs(distance_to_speed(a) - distance_to_speed(b)) <= 1.f && fan_on(a) == fan_on(b);
};
// Whether the first overhang distance prints slower than the second, beyond the 1mm/sec gcode.cpp tolerance, or turns the overhang
// fan on where the second does not. Against a supported point (overhang distance 0) it tells whether an end is
// affected by the overhang.
auto slower_or_cooled = [&distance_to_speed, &fan_on](float a, float b) {
return distance_to_speed(a) < distance_to_speed(b) - 1.f || (fan_on(a) && !fan_on(b));
};
// ORCA: Interior sampling
// The passes below infer the support under a span from its endpoints alone, so a part that is supported
// differently from both ends is invisible to them. The outer perimeter of an overhang whose ends are supported by
// reads as supported along its whole length. Probe the interior, keep the samples the endpoint interpolation fails to predict,
// and bisect either side of each one, so a span that is only partly unsupported gets points where its support actually changes
// instead of one reading being spread across all of it.
// Skipped where there is nothing to find: min_distance <= 0 when no overhang can slow this path down, and
// fan_overlap_threshold < 0 when no overhang switches the fan on. It also needs distance_to_speed to tell which of
// the points it could add would change the G-code.
if (PREV_LAYER_BOUNDARY_OFFSET && ADD_INTERSECTIONS && distance_to_speed && (min_distance > 0 || fan_overlap_threshold >= 0.f)) {
// The passes below infer the support under a span from its endpoints alone, so an interior that is supported
// differently from both ends is invisible to them: the outer perimeter of an overhang whose ends are caged by
// full height walls reads as supported along its whole length. Probe the interior, keep the samples the
// endpoint interpolation fails to predict, and bisect either side of each one, so a span that is only partly
// unsupported gets points where its support actually changes instead of one reading spread across all of it.
if (PREV_LAYER_BOUNDARY_OFFSET && ADD_INTERSECTIONS && min_distance > 0 && distance_to_speed) {
// Probe at least this densely before treating matching samples as evidence that a span is uniform. The
// segmentation pass below only splits lines of 2mm or more, and every pass here drops points closer
// together than min_spacing, so finer discovery would not produce a more precise transition.
// together than min_spacing, so finer discovery would not produce a more precise speed transition.
const double max_probe_spacing = std::max(2., 4. * min_spacing);
// A backstop for that length test, which on a non-finite length would never be met.
constexpr int max_bisection_depth = 10;
// Whether two readings are interchangeable. A segment is printed at the lower of the speeds its ends
// read, so a sample that agrees on speed with what is already known cannot change the G-code, whatever
// its distance says. The distances themselves are far too coarse a stand-in for this: the speed sections
// interpolate, so readings a small fraction of min_distance apart can still be tens of mm/s apart.
// The tolerance matches the one GCode.cpp applies when it decides a path has a variable speed at all.
auto same_speed = [&distance_to_speed](float a, float b) {
return std::abs(distance_to_speed(a) - distance_to_speed(b)) <= 1.f;
};
// Whether the first reading is printed slower than the second, once they are known to differ.
auto prints_slower = [&distance_to_speed](float a, float b) { return distance_to_speed(a) < distance_to_speed(b); };
// Part of a segment still to bisect: its positions along the segment and bisections left.
struct Subspan { double t0, t1; int depth; };
@@ -201,8 +185,8 @@ std::vector<ExtendedPoint<L::Dim>> estimate_points_properties(const POINTS&
if (!interior.empty()) {
std::sort(interior.begin(), interior.end(),
[](const std::pair<double, float>& l, const std::pair<double, float>& r) { return l.first < r.first; });
// Coarse probing keeps every sample it took until this pass can see which ones bracket a speed or
// fan transition. Matching samples cannot be discarded during discovery: one may be the last
// Coarse probing keeps every sample it took until this pass can see which ones bracket a speed
// transition. Matching samples cannot be discarded during discovery: one may be the last
// supported point before a narrow unsupported pocket found by a later probe.
size_t kept = 0;
for (size_t i = 0; i < interior.size(); ++i) {
@@ -211,15 +195,15 @@ std::vector<ExtendedPoint<L::Dim>> estimate_points_properties(const POINTS&
const bool at_end = i + 1 == interior.size(); // And nothing follows the last sample but the segment's end
const float before = at_start ? curr.distance : interior[kept - 1].second;
const float after = at_end ? next.distance : interior[i + 1].second;
// A sample is worth a point in the path only where it prints differently, in speed or fan state,
// from the points either side of it. Differing from one of the segment's own ends is not enough on
// its own where the sample is not the slower or cooled of the two: the segmentation pass below
// already confines the slowdown and cooling at an end, at a distance taken from how far out that
// end is rather than from wherever bisection happened to stop, and a point here would leave the
// span beside the end too short for that pass to run at all. Support an end cannot account for,
// where the interior is the slower or cooled of the two, is exactly what this pass is here to find.
const bool worth_before = !same_speed_and_fan(sample, before) && (!at_start || slower_or_cooled(sample, before));
const bool worth_after = !same_speed_and_fan(sample, after) && (!at_end || slower_or_cooled(sample, after));
// A sample is worth a point in the path only where it prints at a different speed from the
// readings either side of it. Differing from one of the segment's own ends is not enough on
// its own where the sample is the faster of the two: the segmentation pass below already
// ends the slowdown an end reads, at a distance taken from how far out that end is rather
// than from wherever bisection happened to stop, and a point here would leave the span
// beside the end too short for that pass to run at all. Support an end cannot account for,
// where the interior is the slower reading, is exactly what this pass is here to find.
const bool worth_before = !same_speed(sample, before) && (!at_start || prints_slower(sample, before));
const bool worth_after = !same_speed(sample, after) && (!at_end || prints_slower(sample, after));
if (worth_before || worth_after)
interior[kept++] = interior[i];
}
@@ -254,60 +238,52 @@ std::vector<ExtendedPoint<L::Dim>> estimate_points_properties(const POINTS&
if ((curr.distance > -boundary_offset && curr.distance < boundary_offset + 2.0f) ||
(next.distance > -boundary_offset && next.distance < boundary_offset + 2.0f)) {
double line_len = (next.position - curr.position).norm();
// ORCA: A line prints as slow as its slower end and is cooled if either end is, so an overhang at one
// end would otherwise slow down or cool the whole line. Split the line so that only the part beside
// that end prints that way, if the line is reasonably long (2mm or more) and at least one end prints
// slower or cooled compared with a supported point (overhang distance 0). Deciding on how the end
// prints, rather than on its overhang distance against min_distance, also catches an end whose overhang
// distance is exactly where the slowdown begins, such as an outline crossing at half a line width.
// Without distance_to_speed, split every line over 4mm.
const bool split_line = distance_to_speed ?
line_len >= 2.f && (slower_or_cooled(curr.distance, 0.f) || slower_or_cooled(next.distance, 0.f)) :
line_len > 4.0f;
if (split_line) {
// Each end's piece is that end's overhang distance plus 1.5 line widths (3 * boundary_offset) long:
// a0 ends the piece beside curr, a1 starts the piece beside next.
// ORCA: Segment path to smaller lines by adding additional points only if the path has an overhang that
// will trigger a slowdown and the path is also reasonably large, i.e. 2mm in length or more
// If there is no overhang in the start/end point, dont segment it.
// Ignore this check if the control of segmentation for overhangs is disabled (min_distance=-1)
if ((min_distance > 0 && ((std::abs(curr.distance) > min_distance) || (std::abs(next.distance) > min_distance)) && line_len >= 2.f) ||
(min_distance <= 0 && line_len > 4.0f)) {
double a0 = std::clamp((curr.distance + 3 * boundary_offset) / line_len, 0.0, 1.0);
double a1 = std::clamp(1.0f - (next.distance + 3 * boundary_offset) / line_len, 0.0, 1.0);
double t0 = std::min(a0, a1);
double t1 = std::max(a0, a1);
// Up to two cut points, in order along the line. Each takes its own overhang distance, so every
// piece prints by the overhang distances at its own two ends. t0 >= 1 or t1 <= 0 falls on the
// line's own end, so there is no cut. A cut closer than min_spacing to either end of the line is
// not meaningful and is filtered out (#6714).
ExtendedPoint<L::Dim> cut[2]{};
bool keep[2] = {false, false};
for (int k = 0; k < 2; ++k) {
const double t = k == 0 ? t0 : t1;
if (k == 0 ? t >= 1.0 : t <= 0.0)
continue;
const Vec p = curr.position + t * (next.position - curr.position);
auto [p_dist, p_near_l, p_x] = unscaled_prev_layer.template distance_from_lines_extra<SIGNED_DISTANCE>(
p.template cast<AABBScalar>());
cut[k].position = p;
cut[k].distance = float(p_dist + boundary_offset);
keep[k] = (p - curr.position).norm() > min_spacing && (next.position - p).norm() > min_spacing;
if (t0 < 1.0) {
Vec p0 = curr.position + t0 * (next.position - curr.position);
auto [p0_dist, p0_near_l, p0_x] = unscaled_prev_layer.template distance_from_lines_extra<SIGNED_DISTANCE>(
p0.template cast<AABBScalar>());
ExtendedPoint<L::Dim> new_p{};
new_p.position = p0;
new_p.distance = float(p0_dist + boundary_offset);
// ORCA: only create a new point in the path if the new point overhang distance will be used to generate a speed change
// or if this option is disabled (min_distance<=0)
if( (std::abs(p0_dist) > min_distance) || (min_distance<=0)){
// ORCA: also filter out points that are introduced to the start of the path when their distance from the start point is
// not meaningful
if ((p0 - curr.position).norm() > min_spacing && (next.position - p0).norm() > min_spacing) {
new_points.push_back(new_p);
}
}
}
if (distance_to_speed) {
// Only keep a cut that changes the G-code: one that prints differently from at least one of the
// points either side of it, which are the line's ends or the other cut where that is kept. A cut
// that prints like both would only split a move into two identical ones.
if (keep[0])
keep[0] = !same_speed_and_fan(cut[0].distance, curr.distance) ||
!same_speed_and_fan(cut[0].distance, keep[1] ? cut[1].distance : next.distance);
if (keep[1])
keep[1] = !same_speed_and_fan(cut[1].distance, keep[0] ? cut[0].distance : curr.distance) ||
!same_speed_and_fan(cut[1].distance, next.distance);
// Two cuts closer together than min_spacing would leave a micro segment between them, so only the
// first is kept.
if (keep[0] && keep[1] && (cut[1].position - cut[0].position).norm() <= min_spacing)
keep[1] = false;
if (t1 > 0.0) {
Vec p1 = curr.position + t1 * (next.position - curr.position);
auto [p1_dist, p1_near_l, p1_x] = unscaled_prev_layer.template distance_from_lines_extra<SIGNED_DISTANCE>(
p1.template cast<AABBScalar>());
ExtendedPoint<L::Dim> new_p{};
new_p.position = p1;
new_p.distance = float(p1_dist + boundary_offset);
// ORCA: only create a new point in the path if the new point overhang distance will be used to generate a speed change
// or if this option is disabled (min_distance<=0)
if( (std::abs(p1_dist) > min_distance) || (min_distance<=0)){
// ORCA: filter out points that are introduced to the end of the path when their distance from the end point is
// not meaningful
if ((p1 - curr.position).norm() > min_spacing && (next.position - p1).norm() > min_spacing) {
new_points.push_back(new_p);
}
}
}
for (int k = 0; k < 2; ++k)
if (keep[k])
new_points.push_back(cut[k]);
}
}
new_points.push_back(next);
@@ -447,10 +423,7 @@ public:
const ConfigOptionFloatsOrPercents &speeds,
float ext_perimeter_speed,
float original_speed,
bool slowdown_for_curled_edges,
// Overlap at or below which the overhang fan switches on; negative when the fan
// does not depend on overlap.
float fan_overlap_threshold = -1.0f)
bool slowdown_for_curled_edges)
{
size_t speed_sections_count = std::min(overlaps.values.size(), speeds.values.size());
std::vector<std::pair<float, float>> speed_sections;
@@ -490,8 +463,7 @@ public:
}
}
// If no overhang distance slows this path down, -1 turns interior sampling off unless the overhang fan can switch.
// Lines are only split where an end prints slower or cooled, so here only a fan switch splits them.
// If a meaningful (i.e. needing slowdown) overhang distance was not found, then we shouldn't split the lines
if (!found)
smallest_distance_with_lower_speed=-1.f;
@@ -515,17 +487,9 @@ public:
return round(final_speed);
};
// ORCA: The speed sections are built from ext_perimeter_speed, which can be above the speed this path prints at
// (original_speed, e.g. held down by resonance avoidance). Every segment is capped at original_speed below, so
// overhang distances whose speeds differ only above it print the same and must not count as a speed change when
// the path is split.
auto effective_speed = [&calculate_speed, original_speed](float distance) {
return std::min(calculate_speed(distance), original_speed);
};
std::vector<ExtendedPoint<3>> extended_points =
estimate_points_properties<true, true, true, true>(path.polyline.points, prev_layer_boundaries[current_object], path.width, -1,
smallest_distance_with_lower_speed, effective_speed, fan_overlap_threshold);
smallest_distance_with_lower_speed, calculate_speed);
const auto width_inv = 1.0f / path.width;
std::vector<ProcessedPoint> processed_points;
processed_points.reserve(extended_points.size());
+5 -10
View File
@@ -2717,8 +2717,7 @@ void Print::process(long long *time_cost_with_cache, bool use_cache)
{
LifecycleEventContext ctx;
ctx.id = std::to_string(m_model.id().id);
ctx.name = get_model_name();
ctx.name = std::to_string(m_model.id().id);
ctx.code = LifecycleEvtCode::Ok;
ctx.cancellation_check = [this]() { return canceled(); };
fire_lifecycle_event(LifecycleEvent::SliceStarted, ctx);
@@ -3345,8 +3344,7 @@ void Print::process(long long *time_cost_with_cache, bool use_cache)
{
LifecycleEventContext ctx;
ctx.id = std::to_string(m_model.id().id);
ctx.name = get_model_name();
ctx.name = std::to_string(m_model.id().id);
ctx.code = LifecycleEvtCode::Ok;
ctx.cancellation_check = [this]() { return canceled(); };
fire_lifecycle_event(LifecycleEvent::SliceGeometryFinished, ctx);
@@ -4952,8 +4950,7 @@ void Print::export_gcode_from_previous_file(const std::string& file, GCodeProces
{
{
LifecycleEventContext ctx;
ctx.id = std::to_string(m_model.id().id);
ctx.name = get_model_name();
ctx.name = std::to_string(m_model.id().id);
ctx.code = LifecycleEvtCode::Ok;
ctx.msg = file;
ctx.cancellation_check = [this]() { return canceled(); };
@@ -4983,8 +4980,7 @@ void Print::export_gcode_from_previous_file(const std::string& file, GCodeProces
BOOST_LOG_TRIVIAL(error) << __FUNCTION__ << boost::format(": found errors when process gcode file %1%") %file.c_str();
{
LifecycleEventContext ctx;
ctx.id = std::to_string(m_model.id().id);
ctx.name = get_model_name();
ctx.name = std::to_string(m_model.id().id);
ctx.code = LifecycleEvtCode::Error;
ctx.msg = file + "\n" + ex.what();
ctx.cancellation_check = [this]() { return canceled(); };
@@ -4998,8 +4994,7 @@ void Print::export_gcode_from_previous_file(const std::string& file, GCodeProces
{
LifecycleEventContext ctx;
ctx.id = std::to_string(m_model.id().id);
ctx.name = get_model_name();
ctx.name = std::to_string(m_model.id().id);
ctx.code = LifecycleEvtCode::Ok;
ctx.msg = file;
ctx.cancellation_check = [this]() { return canceled(); };
+6
View File
@@ -260,6 +260,12 @@ extern bool is_json_file(const std::string& path);
// Both '/' and '\\' are treated as separators on every platform, so an archive rejected on one OS
// is rejected on all of them.
extern bool is_path_within_root(const std::string &rel_path, const boost::filesystem::path &root);
// True if path names an entry strictly inside root: it must be spelled with root as its prefix,
// and must still resolve inside root once symlinks are followed.
extern bool is_absolute_path_within_root(const boost::filesystem::path &path, const boost::filesystem::path &root);
// True if a file with this name is of a type that the desktop opens as plain content, so it cannot run code.
// Anything unknown is not safe.
extern bool is_safe_to_open_file_name(const std::string &file_name);
// Orca: custom protocal support utils
inline bool is_orca_open(const std::string& url) { return boost::starts_with(url, "orcaslicer://open"); }
+23
View File
@@ -70,6 +70,7 @@
#include <boost/shared_ptr.hpp>
#include <boost/algorithm/string/predicate.hpp>
#include <boost/algorithm/string/case_conv.hpp>
#include <boost/filesystem.hpp>
#include <boost/filesystem/path.hpp>
#include <boost/nowide/fstream.hpp>
@@ -1112,6 +1113,28 @@ bool is_path_within_root(const std::string &rel_path, const boost::filesystem::p
}
}
bool is_absolute_path_within_root(const boost::filesystem::path &path, const boost::filesystem::path &root)
{
const boost::filesystem::path rel = path.lexically_relative(root);
return !rel.empty() && rel != "." && is_path_within_root(rel.string(), root);
}
bool is_safe_to_open_file_name(const std::string &file_name)
{
// Formats that cannot carry macros or scripts. Legacy and OpenDocument office files, HTML and SVG are left out on purpose.
static const std::vector<std::string> safe_extensions = {
"jpg", "jpeg", "jfif", "pjpeg", "pjp", "png", "gif", "bmp", "webp", "tif", "tiff",
"pdf", "txt", "md", "csv", "docx", "xlsx", "pptx",
"stl", "obj", "3mf", "amf", "ply", "step", "stp", "iges", "igs", "dxf",
"mp4", "mov", "webm"};
// The name must end in the extension itself: Windows drops trailing dots and spaces and reads ':' as a stream separator.
const size_t dot = file_name.find_last_of('.');
if (dot == std::string::npos || file_name.find_first_of("/\\:") != std::string::npos)
return false;
const std::string extension = boost::algorithm::to_lower_copy(file_name.substr(dot + 1));
return std::find(safe_extensions.begin(), safe_extensions.end(), extension) != safe_extensions.end();
}
bool is_img_file(const std::string &path)
{
return boost::iends_with(path, ".png") || boost::iends_with(path, ".svg");
+1 -6
View File
@@ -34,10 +34,6 @@ static const char* Segments_Vertex_Shader =
// ORCA: 0 during the shadow caster pass - the bias below shifts eye_position but not
// world_position, so the caster would write a depth the receiver never looks up.
"uniform float bias_scale;\n"
// draw the instances last to first, top layers before the ones they hide, so that early depth
// rejection discards most of the hidden fragments; set when the camera looks down on the print
"uniform int reverse_order;\n"
"uniform int instance_count;\n"
"in int vertex_id;\n"
"out vec3 color;\n"
"// ORCA: realistic view - the light the shadow map is able to block, kept apart from the\n"
@@ -63,8 +59,7 @@ static const char* Segments_Vertex_Shader =
" return top_diffuse + front_diffuse + top_specular;\n"
"}\n"
"void main() {\n"
" int instance = (reverse_order != 0) ? instance_count - 1 - gl_InstanceID : gl_InstanceID;\n"
" int id_a = int(texelFetch(segment_index_tex, instance).r);\n"
" int id_a = int(texelFetch(segment_index_tex, gl_InstanceID).r);\n"
" int id_b = id_a + 1;\n"
" vec3 pos_a = texelFetch(position_tex, id_a).xyz;\n"
" vec3 pos_b = texelFetch(position_tex, id_b).xyz;\n"
-11
View File
@@ -763,8 +763,6 @@ void ViewerImpl::init(const std::string& opengl_context_version)
m_uni_segments_height_width_angle_tex_id = glGetUniformLocation(m_segments_shader_id, "height_width_angle_tex");
m_uni_segments_colors_tex_id = glGetUniformLocation(m_segments_shader_id, "color_tex");
m_uni_segments_segment_index_tex_id = glGetUniformLocation(m_segments_shader_id, "segment_index_tex");
m_uni_segments_reverse_order_id = glGetUniformLocation(m_segments_shader_id, "reverse_order");
m_uni_segments_instance_count_id = glGetUniformLocation(m_segments_shader_id, "instance_count");
// ORCA: realistic view
m_uni_segments_shadow_map_id = glGetUniformLocation(m_segments_shader_id, "shadow_map");
m_uni_segments_shadow_light_vp_id = glGetUniformLocation(m_segments_shader_id, "shadow_light_vp");
@@ -2092,15 +2090,6 @@ void ViewerImpl::render_segments(const Mat4x4& view_matrix, const Mat4x4& projec
glsafe(glUniformMatrix4fv(m_uni_segments_view_matrix_id, 1, GL_FALSE, view_matrix.data()));
glsafe(glUniformMatrix4fv(m_uni_segments_projection_matrix_id, 1, GL_FALSE, projection_matrix.data()));
glsafe(glUniform3fv(m_uni_segments_camera_position_id, 1, camera_position.data()));
// The segments come in print order, bottom layer first. Seen from above, that is back to front,
// and every hidden fragment is shaded before the one that covers it. Drawing them last to first
// lets the depth test reject the hidden ones instead. The camera looks down when the world's
// up axis points towards it, which is the view matrix's (2, 2) entry being positive.
const bool top_down = !m_rendering_shadow_casters && view_matrix[10] > 0.0f;
glsafe(glUniform1i(m_uni_segments_reverse_order_id, top_down ? 1 : 0));
#ifndef ENABLE_OPENGL_ES
glsafe(glUniform1i(m_uni_segments_instance_count_id, static_cast<int>(m_enabled_segments_count)));
#endif // ENABLE_OPENGL_ES
// ORCA: realistic view. The depth pass writes the map it would otherwise read, so it shades
// with the lookup off.
glsafe(glUniform1i(m_uni_segments_shadow_map_id, m_shadow_map_texture_unit));

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